diff options
author | Eliezer Tamir <eliezert@broadcom.com> | 2007-11-15 20:09:02 +0200 |
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committer | David S. Miller <davem@davemloft.net> | 2008-01-28 15:03:53 -0800 |
commit | a2fbb9ea235467b0be6db3cec0132b6c83c0b9fb (patch) | |
tree | f6717161d5f374e84553f579eb3102bcf9ffdc0f | |
parent | faa4f7969f3340606f46515560ce193d9bd74ea4 (diff) | |
download | blackbird-op-linux-a2fbb9ea235467b0be6db3cec0132b6c83c0b9fb.tar.gz blackbird-op-linux-a2fbb9ea235467b0be6db3cec0132b6c83c0b9fb.zip |
add bnx2x driver for BCM57710
Signed-off-by: Eliezer Tamir <eliezert@broadcom.com>
Signed-off-by: David S. Miller <davem@davemloft.net>
-rw-r--r-- | drivers/net/Kconfig | 9 | ||||
-rw-r--r-- | drivers/net/Makefile | 1 | ||||
-rw-r--r-- | drivers/net/bnx2x.c | 9065 | ||||
-rw-r--r-- | drivers/net/bnx2x.h | 1071 | ||||
-rw-r--r-- | drivers/net/bnx2x_fw_defs.h | 198 | ||||
-rw-r--r-- | drivers/net/bnx2x_hsi.h | 2176 | ||||
-rw-r--r-- | drivers/net/bnx2x_init.h | 564 | ||||
-rw-r--r-- | drivers/net/bnx2x_init_values.h | 6368 | ||||
-rw-r--r-- | drivers/net/bnx2x_reg.h | 4394 | ||||
-rw-r--r-- | include/linux/pci_ids.h | 1 |
10 files changed, 23847 insertions, 0 deletions
diff --git a/drivers/net/Kconfig b/drivers/net/Kconfig index 7ae9024b5833..b034410b7ab6 100644 --- a/drivers/net/Kconfig +++ b/drivers/net/Kconfig @@ -2597,6 +2597,15 @@ config TEHUTI help Tehuti Networks 10G Ethernet NIC +config BNX2X + tristate "Broadcom NetXtremeII 10Gb support" + depends on PCI + help + This driver supports Broadcom NetXtremeII 10 gigabit Ethernet cards. + To compile this driver as a module, choose M here: the module + will be called bnx2x. This is recommended. + + endif # NETDEV_10000 source "drivers/net/tokenring/Kconfig" diff --git a/drivers/net/Makefile b/drivers/net/Makefile index 5dd2d5eb1918..5e36f203ce5c 100644 --- a/drivers/net/Makefile +++ b/drivers/net/Makefile @@ -65,6 +65,7 @@ obj-$(CONFIG_STNIC) += stnic.o 8390.o obj-$(CONFIG_FEALNX) += fealnx.o obj-$(CONFIG_TIGON3) += tg3.o obj-$(CONFIG_BNX2) += bnx2.o +obj-$(CONFIG_BNX2X) += bnx2x.o spidernet-y += spider_net.o spider_net_ethtool.o obj-$(CONFIG_SPIDER_NET) += spidernet.o sungem_phy.o obj-$(CONFIG_GELIC_NET) += ps3_gelic.o diff --git a/drivers/net/bnx2x.c b/drivers/net/bnx2x.c new file mode 100644 index 000000000000..e8c5754798ea --- /dev/null +++ b/drivers/net/bnx2x.c @@ -0,0 +1,9065 @@ +/* bnx2x.c: Broadcom Everest network driver. + * + * Copyright (c) 2007 Broadcom Corporation + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation. + * + * Written by: Eliezer Tamir <eliezert@broadcom.com> + * Based on code from Michael Chan's bnx2 driver + * UDP CSUM errata workaround by Arik Gendelman + * Slowpath rework by Vladislav Zolotarov + * Statistics and Link managment by Yitchak Gertner + * + */ + +/* define this to make the driver freeze on error + * to allow getting debug info + * (you will need to reboot afterwords) + */ +/*#define BNX2X_STOP_ON_ERROR*/ + +#include <linux/module.h> +#include <linux/moduleparam.h> +#include <linux/kernel.h> +#include <linux/device.h> /* for dev_info() */ +#include <linux/timer.h> +#include <linux/errno.h> +#include <linux/ioport.h> +#include <linux/slab.h> +#include <linux/vmalloc.h> +#include <linux/interrupt.h> +#include <linux/pci.h> +#include <linux/init.h> +#include <linux/netdevice.h> +#include <linux/etherdevice.h> +#include <linux/skbuff.h> +#include <linux/dma-mapping.h> +#include <linux/bitops.h> +#include <linux/irq.h> +#include <linux/delay.h> +#include <asm/byteorder.h> +#include <linux/time.h> +#include <linux/ethtool.h> +#include <linux/mii.h> +#ifdef NETIF_F_HW_VLAN_TX + #include <linux/if_vlan.h> + #define BCM_VLAN 1 +#endif +#include <net/ip.h> +#include <net/tcp.h> +#include <net/checksum.h> +#include <linux/workqueue.h> +#include <linux/crc32.h> +#include <linux/prefetch.h> +#include <linux/zlib.h> +#include <linux/version.h> +#include <linux/io.h> + +#include "bnx2x_reg.h" +#include "bnx2x_fw_defs.h" +#include "bnx2x_hsi.h" +#include "bnx2x.h" +#include "bnx2x_init.h" + +#define DRV_MODULE_VERSION "0.40.15" +#define DRV_MODULE_RELDATE "$DateTime: 2007/11/15 07:28:37 $" +#define BNX2X_BC_VER 0x040009 + +/* Time in jiffies before concluding the transmitter is hung. */ +#define TX_TIMEOUT (5*HZ) + +static const char version[] __devinitdata = + "Broadcom NetXtreme II 577xx 10Gigabit Ethernet Driver " + DRV_MODULE_NAME " " DRV_MODULE_VERSION " (" DRV_MODULE_RELDATE ")\n"; + +MODULE_AUTHOR("Eliezer Tamir <eliezert@broadcom.com>"); +MODULE_DESCRIPTION("Broadcom NetXtreme II BCM57710 Driver"); +MODULE_LICENSE("GPL"); +MODULE_VERSION(DRV_MODULE_VERSION); +MODULE_INFO(cvs_version, "$Revision: #356 $"); + +static int use_inta; +static int poll; +static int onefunc; +static int nomcp; +static int debug; +static int use_multi; + +module_param(use_inta, int, 0); +module_param(poll, int, 0); +module_param(onefunc, int, 0); +module_param(debug, int, 0); +MODULE_PARM_DESC(use_inta, "use INT#A instead of MSI-X"); +MODULE_PARM_DESC(poll, "use polling (for debug)"); +MODULE_PARM_DESC(onefunc, "enable only first function"); +MODULE_PARM_DESC(nomcp, "ignore managment CPU (Implies onefunc)"); +MODULE_PARM_DESC(debug, "defualt debug msglevel"); + +#ifdef BNX2X_MULTI +module_param(use_multi, int, 0); +MODULE_PARM_DESC(use_multi, "use per-CPU queues"); +#endif + +enum bnx2x_board_type { + BCM57710 = 0, +}; + +/* indexed by board_t, above */ +static const struct { + char *name; +} board_info[] __devinitdata = { + { "Broadcom NetXtreme II BCM57710 XGb" } +}; + +static const struct pci_device_id bnx2x_pci_tbl[] = { + { PCI_VENDOR_ID_BROADCOM, PCI_DEVICE_ID_NX2_57710, + PCI_ANY_ID, PCI_ANY_ID, 0, 0, BCM57710 }, + { 0 } +}; + +MODULE_DEVICE_TABLE(pci, bnx2x_pci_tbl); + +/**************************************************************************** +* General service functions +****************************************************************************/ + +/* used only at init + * locking is done by mcp + */ +static void bnx2x_reg_wr_ind(struct bnx2x *bp, u32 addr, u32 val) +{ + pci_write_config_dword(bp->pdev, PCICFG_GRC_ADDRESS, addr); + pci_write_config_dword(bp->pdev, PCICFG_GRC_DATA, val); + pci_write_config_dword(bp->pdev, PCICFG_GRC_ADDRESS, + PCICFG_VENDOR_ID_OFFSET); +} + +#ifdef BNX2X_IND_RD +static u32 bnx2x_reg_rd_ind(struct bnx2x *bp, u32 addr) +{ + u32 val; + + pci_write_config_dword(bp->pdev, PCICFG_GRC_ADDRESS, addr); + pci_read_config_dword(bp->pdev, PCICFG_GRC_DATA, &val); + pci_write_config_dword(bp->pdev, PCICFG_GRC_ADDRESS, + PCICFG_VENDOR_ID_OFFSET); + + return val; +} +#endif + +static const u32 dmae_reg_go_c[] = { + DMAE_REG_GO_C0, DMAE_REG_GO_C1, DMAE_REG_GO_C2, DMAE_REG_GO_C3, + DMAE_REG_GO_C4, DMAE_REG_GO_C5, DMAE_REG_GO_C6, DMAE_REG_GO_C7, + DMAE_REG_GO_C8, DMAE_REG_GO_C9, DMAE_REG_GO_C10, DMAE_REG_GO_C11, + DMAE_REG_GO_C12, DMAE_REG_GO_C13, DMAE_REG_GO_C14, DMAE_REG_GO_C15 +}; + +/* copy command into DMAE command memory and set DMAE command go */ +static void bnx2x_post_dmae(struct bnx2x *bp, struct dmae_command *dmae, + int idx) +{ + u32 cmd_offset; + int i; + + cmd_offset = (DMAE_REG_CMD_MEM + sizeof(struct dmae_command) * idx); + for (i = 0; i < (sizeof(struct dmae_command)/4); i++) { + REG_WR(bp, cmd_offset + i*4, *(((u32 *)dmae) + i)); + +/* DP(NETIF_MSG_DMAE, "DMAE cmd[%d].%d (0x%08x) : 0x%08x\n", + idx, i, cmd_offset + i*4, *(((u32 *)dmae) + i)); */ + } + REG_WR(bp, dmae_reg_go_c[idx], 1); +} + +static void bnx2x_write_dmae(struct bnx2x *bp, dma_addr_t dma_addr, + u32 dst_addr, u32 len32) +{ + struct dmae_command *dmae = &bp->dmae; + int port = bp->port; + u32 *wb_comp = bnx2x_sp(bp, wb_comp); + int timeout = 200; + + memset(dmae, 0, sizeof(struct dmae_command)); + + dmae->opcode = (DMAE_CMD_SRC_PCI | DMAE_CMD_DST_GRC | + DMAE_CMD_C_DST_PCI | DMAE_CMD_C_ENABLE | + DMAE_CMD_SRC_RESET | DMAE_CMD_DST_RESET | +#ifdef __BIG_ENDIAN + DMAE_CMD_ENDIANITY_B_DW_SWAP | +#else + DMAE_CMD_ENDIANITY_DW_SWAP | +#endif + (port ? DMAE_CMD_PORT_1 : DMAE_CMD_PORT_0)); + dmae->src_addr_lo = U64_LO(dma_addr); + dmae->src_addr_hi = U64_HI(dma_addr); + dmae->dst_addr_lo = dst_addr >> 2; + dmae->dst_addr_hi = 0; + dmae->len = len32; + dmae->comp_addr_lo = U64_LO(bnx2x_sp_mapping(bp, wb_comp)); + dmae->comp_addr_hi = U64_HI(bnx2x_sp_mapping(bp, wb_comp)); + dmae->comp_val = BNX2X_WB_COMP_VAL; + +/* + DP(NETIF_MSG_DMAE, "dmae: opcode 0x%08x\n" + DP_LEVEL "src_addr [%x:%08x] len [%d *4] " + "dst_addr [%x:%08x (%08x)]\n" + DP_LEVEL "comp_addr [%x:%08x] comp_val 0x%08x\n", + dmae->opcode, dmae->src_addr_hi, dmae->src_addr_lo, + dmae->len, dmae->dst_addr_hi, dmae->dst_addr_lo, dst_addr, + dmae->comp_addr_hi, dmae->comp_addr_lo, dmae->comp_val); +*/ +/* + DP(NETIF_MSG_DMAE, "data [0x%08x 0x%08x 0x%08x 0x%08x]\n", + bp->slowpath->wb_data[0], bp->slowpath->wb_data[1], + bp->slowpath->wb_data[2], bp->slowpath->wb_data[3]); +*/ + + *wb_comp = 0; + + bnx2x_post_dmae(bp, dmae, port * 8); + + udelay(5); + /* adjust timeout for emulation/FPGA */ + if (CHIP_REV_IS_SLOW(bp)) + timeout *= 100; + while (*wb_comp != BNX2X_WB_COMP_VAL) { +/* DP(NETIF_MSG_DMAE, "wb_comp 0x%08x\n", *wb_comp); */ + udelay(5); + if (!timeout) { + BNX2X_ERR("dmae timeout!\n"); + break; + } + timeout--; + } +} + +#ifdef BNX2X_DMAE_RD +static void bnx2x_read_dmae(struct bnx2x *bp, u32 src_addr, u32 len32) +{ + struct dmae_command *dmae = &bp->dmae; + int port = bp->port; + u32 *wb_comp = bnx2x_sp(bp, wb_comp); + int timeout = 200; + + memset(bnx2x_sp(bp, wb_data[0]), 0, sizeof(u32) * 4); + memset(dmae, 0, sizeof(struct dmae_command)); + + dmae->opcode = (DMAE_CMD_SRC_GRC | DMAE_CMD_DST_PCI | + DMAE_CMD_C_DST_PCI | DMAE_CMD_C_ENABLE | + DMAE_CMD_SRC_RESET | DMAE_CMD_DST_RESET | +#ifdef __BIG_ENDIAN + DMAE_CMD_ENDIANITY_B_DW_SWAP | +#else + DMAE_CMD_ENDIANITY_DW_SWAP | +#endif + (port ? DMAE_CMD_PORT_1 : DMAE_CMD_PORT_0)); + dmae->src_addr_lo = src_addr >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, wb_data)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, wb_data)); + dmae->len = len32; + dmae->comp_addr_lo = U64_LO(bnx2x_sp_mapping(bp, wb_comp)); + dmae->comp_addr_hi = U64_HI(bnx2x_sp_mapping(bp, wb_comp)); + dmae->comp_val = BNX2X_WB_COMP_VAL; + +/* + DP(NETIF_MSG_DMAE, "dmae: opcode 0x%08x\n" + DP_LEVEL "src_addr [%x:%08x] len [%d *4] " + "dst_addr [%x:%08x (%08x)]\n" + DP_LEVEL "comp_addr [%x:%08x] comp_val 0x%08x\n", + dmae->opcode, dmae->src_addr_hi, dmae->src_addr_lo, + dmae->len, dmae->dst_addr_hi, dmae->dst_addr_lo, src_addr, + dmae->comp_addr_hi, dmae->comp_addr_lo, dmae->comp_val); +*/ + + *wb_comp = 0; + + bnx2x_post_dmae(bp, dmae, port * 8); + + udelay(5); + while (*wb_comp != BNX2X_WB_COMP_VAL) { + udelay(5); + if (!timeout) { + BNX2X_ERR("dmae timeout!\n"); + break; + } + timeout--; + } +/* + DP(NETIF_MSG_DMAE, "data [0x%08x 0x%08x 0x%08x 0x%08x]\n", + bp->slowpath->wb_data[0], bp->slowpath->wb_data[1], + bp->slowpath->wb_data[2], bp->slowpath->wb_data[3]); +*/ +} +#endif + +static int bnx2x_mc_assert(struct bnx2x *bp) +{ + int i, j; + int rc = 0; + char last_idx; + const char storm[] = {"XTCU"}; + const u32 intmem_base[] = { + BAR_XSTRORM_INTMEM, + BAR_TSTRORM_INTMEM, + BAR_CSTRORM_INTMEM, + BAR_USTRORM_INTMEM + }; + + /* Go through all instances of all SEMIs */ + for (i = 0; i < 4; i++) { + last_idx = REG_RD8(bp, XSTORM_ASSERT_LIST_INDEX_OFFSET + + intmem_base[i]); + BNX2X_ERR("DATA %cSTORM_ASSERT_LIST_INDEX 0x%x\n", + storm[i], last_idx); + + /* print the asserts */ + for (j = 0; j < STROM_ASSERT_ARRAY_SIZE; j++) { + u32 row0, row1, row2, row3; + + row0 = REG_RD(bp, XSTORM_ASSERT_LIST_OFFSET(j) + + intmem_base[i]); + row1 = REG_RD(bp, XSTORM_ASSERT_LIST_OFFSET(j) + 4 + + intmem_base[i]); + row2 = REG_RD(bp, XSTORM_ASSERT_LIST_OFFSET(j) + 8 + + intmem_base[i]); + row3 = REG_RD(bp, XSTORM_ASSERT_LIST_OFFSET(j) + 12 + + intmem_base[i]); + + if (row0 != COMMON_ASM_INVALID_ASSERT_OPCODE) { + BNX2X_ERR("DATA %cSTORM_ASSERT_INDEX 0x%x =" + " 0x%08x 0x%08x 0x%08x 0x%08x\n", + storm[i], j, row3, row2, row1, row0); + rc++; + } else { + break; + } + } + } + return rc; +} +static void bnx2x_fw_dump(struct bnx2x *bp) +{ + u32 mark, offset; + u32 data[9]; + int word; + + mark = REG_RD(bp, MCP_REG_MCPR_SCRATCH + 0xf104); + printk(KERN_ERR PFX "begin fw dump (mark 0x%x)\n", mark); + + for (offset = mark - 0x08000000; offset <= 0xF900; offset += 0x8*4) { + for (word = 0; word < 8; word++) + data[word] = htonl(REG_RD(bp, MCP_REG_MCPR_SCRATCH + + offset + 4*word)); + data[8] = 0x0; + printk(KERN_ERR PFX "%s", (char *)data); + } + for (offset = 0xF108; offset <= mark - 0x08000000; offset += 0x8*4) { + for (word = 0; word < 8; word++) + data[word] = htonl(REG_RD(bp, MCP_REG_MCPR_SCRATCH + + offset + 4*word)); + data[8] = 0x0; + printk(KERN_ERR PFX "%s", (char *)data); + } + printk("\n" KERN_ERR PFX "end of fw dump\n"); +} + +static void bnx2x_panic_dump(struct bnx2x *bp) +{ + int i; + u16 j, start, end; + + BNX2X_ERR("begin crash dump -----------------\n"); + + for_each_queue(bp, i) { + struct bnx2x_fastpath *fp = &bp->fp[i]; + struct eth_tx_db_data *hw_prods = fp->hw_tx_prods; + + BNX2X_ERR("queue[%d]: tx_pkt_prod(%x) tx_pkt_cons(%x)" + " tx_bd_prod(%x) tx_bd_cons(%x) *tx_cons_sb(%x)" + " *rx_cons_sb(%x) rx_comp_prod(%x)" + " rx_comp_cons(%x) fp_c_idx(%x) fp_u_idx(%x)" + " bd data(%x,%x)\n", + i, fp->tx_pkt_prod, fp->tx_pkt_cons, fp->tx_bd_prod, + fp->tx_bd_cons, *fp->tx_cons_sb, *fp->rx_cons_sb, + fp->rx_comp_prod, fp->rx_comp_cons, fp->fp_c_idx, + fp->fp_u_idx, hw_prods->packets_prod, + hw_prods->bds_prod); + + start = TX_BD(le16_to_cpu(*fp->tx_cons_sb) - 10); + end = TX_BD(le16_to_cpu(*fp->tx_cons_sb) + 245); + for (j = start; j < end; j++) { + struct sw_tx_bd *sw_bd = &fp->tx_buf_ring[j]; + + BNX2X_ERR("packet[%x]=[%p,%x]\n", j, + sw_bd->skb, sw_bd->first_bd); + } + + start = TX_BD(fp->tx_bd_cons - 10); + end = TX_BD(fp->tx_bd_cons + 254); + for (j = start; j < end; j++) { + u32 *tx_bd = (u32 *)&fp->tx_desc_ring[j]; + + BNX2X_ERR("tx_bd[%x]=[%x:%x:%x:%x]\n", + j, tx_bd[0], tx_bd[1], tx_bd[2], tx_bd[3]); + } + + start = RX_BD(le16_to_cpu(*fp->rx_cons_sb) - 10); + end = RX_BD(le16_to_cpu(*fp->rx_cons_sb) + 503); + for (j = start; j < end; j++) { + u32 *rx_bd = (u32 *)&fp->rx_desc_ring[j]; + struct sw_rx_bd *sw_bd = &fp->rx_buf_ring[j]; + + BNX2X_ERR("rx_bd[%x]=[%x:%x] sw_bd=[%p]\n", + j, rx_bd[0], rx_bd[1], sw_bd->skb); + } + + start = RCQ_BD(fp->rx_comp_cons - 10); + end = RCQ_BD(fp->rx_comp_cons + 503); + for (j = start; j < end; j++) { + u32 *cqe = (u32 *)&fp->rx_comp_ring[j]; + + BNX2X_ERR("cqe[%x]=[%x:%x:%x:%x]\n", + j, cqe[0], cqe[1], cqe[2], cqe[3]); + } + } + + BNX2X_ERR("def_c_idx(%u) def_u_idx(%u) def_t_idx(%u)" + " def_x_idx(%u) def_att_idx(%u) attn_state(%u)" + " spq_prod_idx(%u)\n", + bp->def_c_idx, bp->def_u_idx, bp->def_t_idx, bp->def_x_idx, + bp->def_att_idx, bp->attn_state, bp->spq_prod_idx); + + + bnx2x_mc_assert(bp); + BNX2X_ERR("end crash dump -----------------\n"); + + bp->stats_state = STATS_STATE_DISABLE; + DP(BNX2X_MSG_STATS, "stats_state - DISABLE\n"); +} + +static void bnx2x_enable_int(struct bnx2x *bp) +{ + int port = bp->port; + u32 addr = port ? HC_REG_CONFIG_1 : HC_REG_CONFIG_0; + u32 val = REG_RD(bp, addr); + int msix = (bp->flags & USING_MSIX_FLAG) ? 1 : 0; + + if (msix) { + val &= ~HC_CONFIG_0_REG_SINGLE_ISR_EN_0; + val |= (HC_CONFIG_0_REG_MSI_MSIX_INT_EN_0 | + HC_CONFIG_0_REG_ATTN_BIT_EN_0); + } else { + val |= (HC_CONFIG_0_REG_SINGLE_ISR_EN_0 | + HC_CONFIG_0_REG_INT_LINE_EN_0 | + HC_CONFIG_0_REG_ATTN_BIT_EN_0); + val &= ~HC_CONFIG_0_REG_MSI_MSIX_INT_EN_0; + } + + DP(NETIF_MSG_INTR, "write %x to HC %d (addr 0x%x) msi %d\n", + val, port, addr, msix); + + REG_WR(bp, addr, val); +} + +static void bnx2x_disable_int(struct bnx2x *bp) +{ + int port = bp->port; + u32 addr = port ? HC_REG_CONFIG_1 : HC_REG_CONFIG_0; + u32 val = REG_RD(bp, addr); + + val &= ~(HC_CONFIG_0_REG_SINGLE_ISR_EN_0 | + HC_CONFIG_0_REG_MSI_MSIX_INT_EN_0 | + HC_CONFIG_0_REG_INT_LINE_EN_0 | + HC_CONFIG_0_REG_ATTN_BIT_EN_0); + + DP(NETIF_MSG_INTR, "write %x to HC %d (addr 0x%x)\n", + val, port, addr); + + REG_WR(bp, addr, val); + if (REG_RD(bp, addr) != val) + BNX2X_ERR("BUG! proper val not read from IGU!\n"); +} + +static void bnx2x_disable_int_sync(struct bnx2x *bp) +{ + + int msix = (bp->flags & USING_MSIX_FLAG) ? 1 : 0; + int i; + + atomic_inc(&bp->intr_sem); + /* prevent the HW from sending interrupts*/ + bnx2x_disable_int(bp); + + /* make sure all ISRs are done */ + if (msix) { + for_each_queue(bp, i) + synchronize_irq(bp->msix_table[i].vector); + + /* one more for the Slow Path IRQ */ + synchronize_irq(bp->msix_table[i].vector); + } else + synchronize_irq(bp->pdev->irq); + + /* make sure sp_task is not running */ + cancel_work_sync(&bp->sp_task); + +} + +/* fast path code */ + +/* + * general service functions + */ + +static inline void bnx2x_ack_sb(struct bnx2x *bp, u8 id, + u8 storm, u16 index, u8 op, u8 update) +{ + u32 igu_addr = (IGU_ADDR_INT_ACK + IGU_PORT_BASE * bp->port) * 8; + struct igu_ack_register igu_ack; + + igu_ack.status_block_index = index; + igu_ack.sb_id_and_flags = + ((id << IGU_ACK_REGISTER_STATUS_BLOCK_ID_SHIFT) | + (storm << IGU_ACK_REGISTER_STORM_ID_SHIFT) | + (update << IGU_ACK_REGISTER_UPDATE_INDEX_SHIFT) | + (op << IGU_ACK_REGISTER_INTERRUPT_MODE_SHIFT)); + +/* DP(NETIF_MSG_INTR, "write 0x%08x to IGU addr 0x%x\n", + (*(u32 *)&igu_ack), BAR_IGU_INTMEM + igu_addr); */ + REG_WR(bp, BAR_IGU_INTMEM + igu_addr, (*(u32 *)&igu_ack)); +} + +static inline u16 bnx2x_update_fpsb_idx(struct bnx2x_fastpath *fp) +{ + struct host_status_block *fpsb = fp->status_blk; + u16 rc = 0; + + barrier(); /* status block is written to by the chip */ + if (fp->fp_c_idx != fpsb->c_status_block.status_block_index) { + fp->fp_c_idx = fpsb->c_status_block.status_block_index; + rc |= 1; + } + if (fp->fp_u_idx != fpsb->u_status_block.status_block_index) { + fp->fp_u_idx = fpsb->u_status_block.status_block_index; + rc |= 2; + } + return rc; +} + +static inline int bnx2x_has_work(struct bnx2x_fastpath *fp) +{ + u16 rx_cons_sb = le16_to_cpu(*fp->rx_cons_sb); + + if ((rx_cons_sb & MAX_RCQ_DESC_CNT) == MAX_RCQ_DESC_CNT) + rx_cons_sb++; + + if ((rx_cons_sb != fp->rx_comp_cons) || + (le16_to_cpu(*fp->tx_cons_sb) != fp->tx_pkt_cons)) + return 1; + + return 0; +} + +static u16 bnx2x_ack_int(struct bnx2x *bp) +{ + u32 igu_addr = (IGU_ADDR_SIMD_MASK + IGU_PORT_BASE * bp->port) * 8; + u32 result = REG_RD(bp, BAR_IGU_INTMEM + igu_addr); + +/* DP(NETIF_MSG_INTR, "read 0x%08x from IGU addr 0x%x\n", + result, BAR_IGU_INTMEM + igu_addr); */ + +#ifdef IGU_DEBUG +#warning IGU_DEBUG active + if (result == 0) { + BNX2X_ERR("read %x from IGU\n", result); + REG_WR(bp, TM_REG_TIMER_SOFT_RST, 0); + } +#endif + return result; +} + + +/* + * fast path service functions + */ + +/* free skb in the packet ring at pos idx + * return idx of last bd freed + */ +static u16 bnx2x_free_tx_pkt(struct bnx2x *bp, struct bnx2x_fastpath *fp, + u16 idx) +{ + struct sw_tx_bd *tx_buf = &fp->tx_buf_ring[idx]; + struct eth_tx_bd *tx_bd; + struct sk_buff *skb = tx_buf->skb; + u16 bd_idx = tx_buf->first_bd; + int nbd; + + DP(BNX2X_MSG_OFF, "pkt_idx %d buff @(%p)->skb %p\n", + idx, tx_buf, skb); + + /* unmap first bd */ + DP(BNX2X_MSG_OFF, "free bd_idx %d\n", bd_idx); + tx_bd = &fp->tx_desc_ring[bd_idx]; + pci_unmap_single(bp->pdev, BD_UNMAP_ADDR(tx_bd), + BD_UNMAP_LEN(tx_bd), PCI_DMA_TODEVICE); + + nbd = le16_to_cpu(tx_bd->nbd) - 1; +#ifdef BNX2X_STOP_ON_ERROR + if (nbd > (MAX_SKB_FRAGS + 2)) { + BNX2X_ERR("bad nbd!\n"); + bnx2x_panic(); + } +#endif + + /* Skip a parse bd and the TSO split header bd + since they have no mapping */ + if (nbd) + bd_idx = TX_BD(NEXT_TX_IDX(bd_idx)); + + if (tx_bd->bd_flags.as_bitfield & (ETH_TX_BD_FLAGS_IP_CSUM | + ETH_TX_BD_FLAGS_TCP_CSUM | + ETH_TX_BD_FLAGS_SW_LSO)) { + if (--nbd) + bd_idx = TX_BD(NEXT_TX_IDX(bd_idx)); + tx_bd = &fp->tx_desc_ring[bd_idx]; + /* is this a TSO split header bd? */ + if (tx_bd->bd_flags.as_bitfield & ETH_TX_BD_FLAGS_SW_LSO) { + if (--nbd) + bd_idx = TX_BD(NEXT_TX_IDX(bd_idx)); + } + } + + /* now free frags */ + while (nbd > 0) { + + DP(BNX2X_MSG_OFF, "free frag bd_idx %d\n", bd_idx); + tx_bd = &fp->tx_desc_ring[bd_idx]; + pci_unmap_page(bp->pdev, BD_UNMAP_ADDR(tx_bd), + BD_UNMAP_LEN(tx_bd), PCI_DMA_TODEVICE); + if (--nbd) + bd_idx = TX_BD(NEXT_TX_IDX(bd_idx)); + } + + /* release skb */ + BUG_TRAP(skb); + dev_kfree_skb(skb); + tx_buf->first_bd = 0; + tx_buf->skb = NULL; + + return bd_idx; +} + +static inline u32 bnx2x_tx_avail(struct bnx2x_fastpath *fp) +{ + u16 used; + u32 prod; + u32 cons; + + /* Tell compiler that prod and cons can change */ + barrier(); + prod = fp->tx_bd_prod; + cons = fp->tx_bd_cons; + + used = (NUM_TX_BD - NUM_TX_RINGS + prod - cons + + (cons / TX_DESC_CNT) - (prod / TX_DESC_CNT)); + + if (prod >= cons) { + /* used = prod - cons - prod/size + cons/size */ + used -= NUM_TX_BD - NUM_TX_RINGS; + } + + BUG_TRAP(used <= fp->bp->tx_ring_size); + BUG_TRAP((fp->bp->tx_ring_size - used) <= MAX_TX_AVAIL); + + return (fp->bp->tx_ring_size - used); +} + +static void bnx2x_tx_int(struct bnx2x_fastpath *fp, int work) +{ + struct bnx2x *bp = fp->bp; + u16 hw_cons, sw_cons, bd_cons = fp->tx_bd_cons; + int done = 0; + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return; +#endif + + hw_cons = le16_to_cpu(*fp->tx_cons_sb); + sw_cons = fp->tx_pkt_cons; + + while (sw_cons != hw_cons) { + u16 pkt_cons; + + pkt_cons = TX_BD(sw_cons); + + /* prefetch(bp->tx_buf_ring[pkt_cons].skb); */ + + DP(NETIF_MSG_TX_DONE, "hw_cons %u sw_cons %u pkt_cons %d\n", + hw_cons, sw_cons, pkt_cons); + +/* if (NEXT_TX_IDX(sw_cons) != hw_cons) { + rmb(); + prefetch(fp->tx_buf_ring[NEXT_TX_IDX(sw_cons)].skb); + } +*/ + bd_cons = bnx2x_free_tx_pkt(bp, fp, pkt_cons); + sw_cons++; + done++; + + if (done == work) + break; + } + + fp->tx_pkt_cons = sw_cons; + fp->tx_bd_cons = bd_cons; + + /* Need to make the tx_cons update visible to start_xmit() + * before checking for netif_queue_stopped(). Without the + * memory barrier, there is a small possibility that start_xmit() + * will miss it and cause the queue to be stopped forever. + */ + smp_mb(); + + /* TBD need a thresh? */ + if (unlikely(netif_queue_stopped(bp->dev))) { + + netif_tx_lock(bp->dev); + + if (netif_queue_stopped(bp->dev) && + (bnx2x_tx_avail(fp) >= MAX_SKB_FRAGS + 3)) + netif_wake_queue(bp->dev); + + netif_tx_unlock(bp->dev); + + } +} + +static void bnx2x_sp_event(struct bnx2x_fastpath *fp, + union eth_rx_cqe *rr_cqe) +{ + struct bnx2x *bp = fp->bp; + int cid = SW_CID(rr_cqe->ramrod_cqe.conn_and_cmd_data); + int command = CQE_CMD(rr_cqe->ramrod_cqe.conn_and_cmd_data); + + DP(NETIF_MSG_RX_STATUS, + "fp %d cid %d got ramrod #%d state is %x type is %d\n", + fp->index, cid, command, bp->state, rr_cqe->ramrod_cqe.type); + + bp->spq_left++; + + if (fp->index) { + switch (command | fp->state) { + case (RAMROD_CMD_ID_ETH_CLIENT_SETUP | + BNX2X_FP_STATE_OPENING): + DP(NETIF_MSG_IFUP, "got MULTI[%d] setup ramrod\n", + cid); + fp->state = BNX2X_FP_STATE_OPEN; + break; + + case (RAMROD_CMD_ID_ETH_HALT | BNX2X_FP_STATE_HALTING): + DP(NETIF_MSG_IFDOWN, "got MULTI[%d] halt ramrod\n", + cid); + fp->state = BNX2X_FP_STATE_HALTED; + break; + + default: + BNX2X_ERR("unexpected MC reply(%d) state is %x\n", + command, fp->state); + } + mb(); /* force bnx2x_wait_ramrod to see the change */ + return; + } + switch (command | bp->state) { + case (RAMROD_CMD_ID_ETH_PORT_SETUP | BNX2X_STATE_OPENING_WAIT4_PORT): + DP(NETIF_MSG_IFUP, "got setup ramrod\n"); + bp->state = BNX2X_STATE_OPEN; + break; + + case (RAMROD_CMD_ID_ETH_HALT | BNX2X_STATE_CLOSING_WAIT4_HALT): + DP(NETIF_MSG_IFDOWN, "got halt ramrod\n"); + bp->state = BNX2X_STATE_CLOSING_WAIT4_DELETE; + fp->state = BNX2X_FP_STATE_HALTED; + break; + + case (RAMROD_CMD_ID_ETH_PORT_DEL | BNX2X_STATE_CLOSING_WAIT4_DELETE): + DP(NETIF_MSG_IFDOWN, "got delete ramrod\n"); + bp->state = BNX2X_STATE_CLOSING_WAIT4_UNLOAD; + break; + + case (RAMROD_CMD_ID_ETH_CFC_DEL | BNX2X_STATE_CLOSING_WAIT4_HALT): + DP(NETIF_MSG_IFDOWN, "got delete ramrod for MULTI[%d]\n", cid); + bnx2x_fp(bp, cid, state) = BNX2X_FP_STATE_DELETED; + break; + + case (RAMROD_CMD_ID_ETH_SET_MAC | BNX2X_STATE_OPEN): + DP(NETIF_MSG_IFUP, "got set mac ramrod\n"); + break; + + default: + BNX2X_ERR("unexpected ramrod (%d) state is %x\n", + command, bp->state); + } + + mb(); /* force bnx2x_wait_ramrod to see the change */ +} + +static inline int bnx2x_alloc_rx_skb(struct bnx2x *bp, + struct bnx2x_fastpath *fp, u16 index) +{ + struct sk_buff *skb; + struct sw_rx_bd *rx_buf = &fp->rx_buf_ring[index]; + struct eth_rx_bd *rx_bd = &fp->rx_desc_ring[index]; + dma_addr_t mapping; + + skb = netdev_alloc_skb(bp->dev, bp->rx_buf_size); + if (unlikely(skb == NULL)) + return -ENOMEM; + + mapping = pci_map_single(bp->pdev, skb->data, bp->rx_buf_use_size, + PCI_DMA_FROMDEVICE); + if (unlikely(dma_mapping_error(mapping))) { + + dev_kfree_skb(skb); + return -ENOMEM; + } + + rx_buf->skb = skb; + pci_unmap_addr_set(rx_buf, mapping, mapping); + + rx_bd->addr_hi = cpu_to_le32(U64_HI(mapping)); + rx_bd->addr_lo = cpu_to_le32(U64_LO(mapping)); + + return 0; +} + +/* note that we are not allocating a new skb, + * we are just moving one from cons to prod + * we are not creating a new mapping, + * so there is no need to check for dma_mapping_error(). + */ +static void bnx2x_reuse_rx_skb(struct bnx2x_fastpath *fp, + struct sk_buff *skb, u16 cons, u16 prod) +{ + struct bnx2x *bp = fp->bp; + struct sw_rx_bd *cons_rx_buf = &fp->rx_buf_ring[cons]; + struct sw_rx_bd *prod_rx_buf = &fp->rx_buf_ring[prod]; + struct eth_rx_bd *cons_bd = &fp->rx_desc_ring[cons]; + struct eth_rx_bd *prod_bd = &fp->rx_desc_ring[prod]; + + pci_dma_sync_single_for_device(bp->pdev, + pci_unmap_addr(cons_rx_buf, mapping), + bp->rx_offset + RX_COPY_THRESH, + PCI_DMA_FROMDEVICE); + + prod_rx_buf->skb = cons_rx_buf->skb; + pci_unmap_addr_set(prod_rx_buf, mapping, + pci_unmap_addr(cons_rx_buf, mapping)); + *prod_bd = *cons_bd; +} + +static int bnx2x_rx_int(struct bnx2x_fastpath *fp, int budget) +{ + struct bnx2x *bp = fp->bp; + u16 bd_cons, bd_prod, comp_ring_cons; + u16 hw_comp_cons, sw_comp_cons, sw_comp_prod; + int rx_pkt = 0; + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return 0; +#endif + + hw_comp_cons = le16_to_cpu(*fp->rx_cons_sb); + if ((hw_comp_cons & MAX_RCQ_DESC_CNT) == MAX_RCQ_DESC_CNT) + hw_comp_cons++; + + bd_cons = fp->rx_bd_cons; + bd_prod = fp->rx_bd_prod; + sw_comp_cons = fp->rx_comp_cons; + sw_comp_prod = fp->rx_comp_prod; + + /* Memory barrier necessary as speculative reads of the rx + * buffer can be ahead of the index in the status block + */ + rmb(); + + DP(NETIF_MSG_RX_STATUS, + "queue[%d]: hw_comp_cons %u sw_comp_cons %u\n", + fp->index, hw_comp_cons, sw_comp_cons); + + while (sw_comp_cons != hw_comp_cons) { + unsigned int len, pad; + struct sw_rx_bd *rx_buf; + struct sk_buff *skb; + union eth_rx_cqe *cqe; + + comp_ring_cons = RCQ_BD(sw_comp_cons); + bd_prod = RX_BD(bd_prod); + bd_cons = RX_BD(bd_cons); + + cqe = &fp->rx_comp_ring[comp_ring_cons]; + + DP(NETIF_MSG_RX_STATUS, "hw_comp_cons %u sw_comp_cons %u" + " comp_ring (%u) bd_ring (%u,%u)\n", + hw_comp_cons, sw_comp_cons, + comp_ring_cons, bd_prod, bd_cons); + DP(NETIF_MSG_RX_STATUS, "CQE type %x err %x status %x" + " queue %x vlan %x len %x\n", + cqe->fast_path_cqe.type, + cqe->fast_path_cqe.error_type_flags, + cqe->fast_path_cqe.status_flags, + cqe->fast_path_cqe.rss_hash_result, + cqe->fast_path_cqe.vlan_tag, cqe->fast_path_cqe.pkt_len); + + /* is this a slowpath msg? */ + if (unlikely(cqe->fast_path_cqe.type)) { + bnx2x_sp_event(fp, cqe); + goto next_cqe; + + /* this is an rx packet */ + } else { + rx_buf = &fp->rx_buf_ring[bd_cons]; + skb = rx_buf->skb; + + len = le16_to_cpu(cqe->fast_path_cqe.pkt_len); + pad = cqe->fast_path_cqe.placement_offset; + + pci_dma_sync_single_for_device(bp->pdev, + pci_unmap_addr(rx_buf, mapping), + pad + RX_COPY_THRESH, + PCI_DMA_FROMDEVICE); + prefetch(skb); + prefetch(((char *)(skb)) + 128); + + /* is this an error packet? */ + if (unlikely(cqe->fast_path_cqe.error_type_flags & + ETH_RX_ERROR_FALGS)) { + /* do we sometimes forward error packets anyway? */ + DP(NETIF_MSG_RX_ERR, + "ERROR flags(%u) Rx packet(%u)\n", + cqe->fast_path_cqe.error_type_flags, + sw_comp_cons); + /* TBD make sure MC counts this as a drop */ + goto reuse_rx; + } + + /* Since we don't have a jumbo ring + * copy small packets if mtu > 1500 + */ + if ((bp->dev->mtu > ETH_MAX_PACKET_SIZE) && + (len <= RX_COPY_THRESH)) { + struct sk_buff *new_skb; + + new_skb = netdev_alloc_skb(bp->dev, + len + pad); + if (new_skb == NULL) { + DP(NETIF_MSG_RX_ERR, + "ERROR packet dropped " + "because of alloc failure\n"); + /* TBD count this as a drop? */ + goto reuse_rx; + } + + /* aligned copy */ + skb_copy_from_linear_data_offset(skb, pad, + new_skb->data + pad, len); + skb_reserve(new_skb, pad); + skb_put(new_skb, len); + + bnx2x_reuse_rx_skb(fp, skb, bd_cons, bd_prod); + + skb = new_skb; + + } else if (bnx2x_alloc_rx_skb(bp, fp, bd_prod) == 0) { + pci_unmap_single(bp->pdev, + pci_unmap_addr(rx_buf, mapping), + bp->rx_buf_use_size, + PCI_DMA_FROMDEVICE); + skb_reserve(skb, pad); + skb_put(skb, len); + + } else { + DP(NETIF_MSG_RX_ERR, + "ERROR packet dropped because " + "of alloc failure\n"); +reuse_rx: + bnx2x_reuse_rx_skb(fp, skb, bd_cons, bd_prod); + goto next_rx; + } + + skb->protocol = eth_type_trans(skb, bp->dev); + + skb->ip_summed = CHECKSUM_NONE; + if (bp->rx_csum && BNX2X_RX_SUM_OK(cqe)) + skb->ip_summed = CHECKSUM_UNNECESSARY; + + /* TBD do we pass bad csum packets in promisc */ + } + +#ifdef BCM_VLAN + if ((le16_to_cpu(cqe->fast_path_cqe.pars_flags.flags) + & PARSING_FLAGS_NUMBER_OF_NESTED_VLANS) + && (bp->vlgrp != NULL)) + vlan_hwaccel_receive_skb(skb, bp->vlgrp, + le16_to_cpu(cqe->fast_path_cqe.vlan_tag)); + else +#endif + netif_receive_skb(skb); + + bp->dev->last_rx = jiffies; + +next_rx: + rx_buf->skb = NULL; + + bd_cons = NEXT_RX_IDX(bd_cons); + bd_prod = NEXT_RX_IDX(bd_prod); +next_cqe: + sw_comp_prod = NEXT_RCQ_IDX(sw_comp_prod); + sw_comp_cons = NEXT_RCQ_IDX(sw_comp_cons); + rx_pkt++; + + if ((rx_pkt == budget)) + break; + } /* while */ + + fp->rx_bd_cons = bd_cons; + fp->rx_bd_prod = bd_prod; + fp->rx_comp_cons = sw_comp_cons; + fp->rx_comp_prod = sw_comp_prod; + + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_RCQ_PROD_OFFSET(bp->port, fp->index), sw_comp_prod); + + mmiowb(); /* keep prod updates ordered */ + + fp->rx_pkt += rx_pkt; + fp->rx_calls++; + + return rx_pkt; +} + +static irqreturn_t bnx2x_msix_fp_int(int irq, void *fp_cookie) +{ + struct bnx2x_fastpath *fp = fp_cookie; + struct bnx2x *bp = fp->bp; + struct net_device *dev = bp->dev; + int index = fp->index; + + DP(NETIF_MSG_INTR, "got an msix interrupt on [%d]\n", index); + bnx2x_ack_sb(bp, index, USTORM_ID, 0, IGU_INT_DISABLE, 0); + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return IRQ_HANDLED; +#endif + + prefetch(fp->rx_cons_sb); + prefetch(fp->tx_cons_sb); + prefetch(&fp->status_blk->c_status_block.status_block_index); + prefetch(&fp->status_blk->u_status_block.status_block_index); + + netif_rx_schedule(dev, &bnx2x_fp(bp, index, napi)); + return IRQ_HANDLED; +} + +static irqreturn_t bnx2x_interrupt(int irq, void *dev_instance) +{ + struct net_device *dev = dev_instance; + struct bnx2x *bp = netdev_priv(dev); + u16 status = bnx2x_ack_int(bp); + + if (unlikely(status == 0)) { + DP(NETIF_MSG_INTR, "not our interrupt!\n"); + return IRQ_NONE; + } + + DP(NETIF_MSG_INTR, "got an interrupt status is %u\n", status); + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return IRQ_HANDLED; +#endif + + /* Return here if interrupt is shared and is disabled */ + if (unlikely(atomic_read(&bp->intr_sem) != 0)) { + DP(NETIF_MSG_INTR, "called but intr_sem not 0, returning\n"); + return IRQ_HANDLED; + } + + if (status & 0x2) { + struct bnx2x_fastpath *fp = &bp->fp[0]; + + prefetch(fp->rx_cons_sb); + prefetch(fp->tx_cons_sb); + prefetch(&fp->status_blk->c_status_block.status_block_index); + prefetch(&fp->status_blk->u_status_block.status_block_index); + + netif_rx_schedule(dev, &bnx2x_fp(bp, 0, napi)); + + status &= ~0x2; + if (!status) + return IRQ_HANDLED; + } + + if (unlikely(status & 0x1)) { + + schedule_work(&bp->sp_task); + + status &= ~0x1; + if (!status) + return IRQ_HANDLED; + } + + DP(NETIF_MSG_INTR, "got an unknown interrupt! (status is %u)\n", + status); + + return IRQ_HANDLED; +} + +/* end of fast path */ + +/* PHY/MAC */ + +/* + * General service functions + */ + +static void bnx2x_leds_set(struct bnx2x *bp, unsigned int speed) +{ + int port = bp->port; + + NIG_WR(NIG_REG_LED_MODE_P0 + port*4, + ((bp->hw_config & SHARED_HW_CFG_LED_MODE_MASK) >> + SHARED_HW_CFG_LED_MODE_SHIFT)); + NIG_WR(NIG_REG_LED_CONTROL_OVERRIDE_TRAFFIC_P0 + port*4, 0); + + /* Set blinking rate to ~15.9Hz */ + NIG_WR(NIG_REG_LED_CONTROL_BLINK_RATE_P0 + port*4, + LED_BLINK_RATE_VAL); + NIG_WR(NIG_REG_LED_CONTROL_BLINK_RATE_ENA_P0 + port*4, 1); + + /* On Ax chip versions for speeds less than 10G + LED scheme is different */ + if ((CHIP_REV(bp) == CHIP_REV_Ax) && (speed < SPEED_10000)) { + NIG_WR(NIG_REG_LED_CONTROL_OVERRIDE_TRAFFIC_P0 + port*4, 1); + NIG_WR(NIG_REG_LED_CONTROL_TRAFFIC_P0 + port*4, 0); + NIG_WR(NIG_REG_LED_CONTROL_BLINK_TRAFFIC_P0 + port*4, 1); + } +} + +static void bnx2x_leds_unset(struct bnx2x *bp) +{ + int port = bp->port; + + NIG_WR(NIG_REG_LED_10G_P0 + port*4, 0); + NIG_WR(NIG_REG_LED_MODE_P0 + port*4, SHARED_HW_CFG_LED_MAC1); +} + +static u32 bnx2x_bits_en(struct bnx2x *bp, u32 reg, u32 bits) +{ + u32 val = REG_RD(bp, reg); + + val |= bits; + REG_WR(bp, reg, val); + return val; +} + +static u32 bnx2x_bits_dis(struct bnx2x *bp, u32 reg, u32 bits) +{ + u32 val = REG_RD(bp, reg); + + val &= ~bits; + REG_WR(bp, reg, val); + return val; +} + +static int bnx2x_mdio22_write(struct bnx2x *bp, u32 reg, u32 val) +{ + int rc; + u32 tmp, i; + int port = bp->port; + u32 emac_base = port ? GRCBASE_EMAC1 : GRCBASE_EMAC0; + +/* DP(NETIF_MSG_HW, "phy_addr 0x%x reg 0x%x val 0x%08x\n", + bp->phy_addr, reg, val); */ + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + tmp &= ~EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, tmp); + REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + udelay(40); + } + + tmp = ((bp->phy_addr << 21) | (reg << 16) | + (val & EMAC_MDIO_COMM_DATA) | + EMAC_MDIO_COMM_COMMAND_WRITE_22 | + EMAC_MDIO_COMM_START_BUSY); + EMAC_WR(EMAC_REG_EMAC_MDIO_COMM, tmp); + + for (i = 0; i < 50; i++) { + udelay(10); + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_COMM); + if (!(tmp & EMAC_MDIO_COMM_START_BUSY)) { + udelay(5); + break; + } + } + + if (tmp & EMAC_MDIO_COMM_START_BUSY) { + BNX2X_ERR("write phy register failed\n"); + + rc = -EBUSY; + } else { + rc = 0; + } + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + tmp |= EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, tmp); + } + + return rc; +} + +static int bnx2x_mdio22_read(struct bnx2x *bp, u32 reg, u32 *ret_val) +{ + int port = bp->port; + u32 emac_base = port ? GRCBASE_EMAC1 : GRCBASE_EMAC0; + u32 val, i; + int rc; + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + val &= ~EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, val); + REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + udelay(40); + } + + val = ((bp->phy_addr << 21) | (reg << 16) | + EMAC_MDIO_COMM_COMMAND_READ_22 | + EMAC_MDIO_COMM_START_BUSY); + EMAC_WR(EMAC_REG_EMAC_MDIO_COMM, val); + + for (i = 0; i < 50; i++) { + udelay(10); + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_COMM); + if (!(val & EMAC_MDIO_COMM_START_BUSY)) { + val &= EMAC_MDIO_COMM_DATA; + break; + } + } + + if (val & EMAC_MDIO_COMM_START_BUSY) { + BNX2X_ERR("read phy register failed\n"); + + *ret_val = 0x0; + rc = -EBUSY; + } else { + *ret_val = val; + rc = 0; + } + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + val |= EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, val); + } + +/* DP(NETIF_MSG_HW, "phy_addr 0x%x reg 0x%x ret_val 0x%08x\n", + bp->phy_addr, reg, *ret_val); */ + + return rc; +} + +static int bnx2x_mdio45_write(struct bnx2x *bp, u32 reg, u32 addr, u32 val) +{ + int rc = 0; + u32 tmp, i; + int port = bp->port; + u32 emac_base = port ? GRCBASE_EMAC1 : GRCBASE_EMAC0; + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + tmp &= ~EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, tmp); + REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + udelay(40); + } + + /* set clause 45 mode */ + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + tmp |= EMAC_MDIO_MODE_CLAUSE_45; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, tmp); + + /* address */ + tmp = ((bp->phy_addr << 21) | (reg << 16) | addr | + EMAC_MDIO_COMM_COMMAND_ADDRESS | + EMAC_MDIO_COMM_START_BUSY); + EMAC_WR(EMAC_REG_EMAC_MDIO_COMM, tmp); + + for (i = 0; i < 50; i++) { + udelay(10); + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_COMM); + if (!(tmp & EMAC_MDIO_COMM_START_BUSY)) { + udelay(5); + break; + } + } + + if (tmp & EMAC_MDIO_COMM_START_BUSY) { + BNX2X_ERR("write phy register failed\n"); + + rc = -EBUSY; + } else { + /* data */ + tmp = ((bp->phy_addr << 21) | (reg << 16) | val | + EMAC_MDIO_COMM_COMMAND_WRITE_45 | + EMAC_MDIO_COMM_START_BUSY); + EMAC_WR(EMAC_REG_EMAC_MDIO_COMM, tmp); + + for (i = 0; i < 50; i++) { + udelay(10); + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_COMM); + if (!(tmp & EMAC_MDIO_COMM_START_BUSY)) { + udelay(5); + break; + } + } + + if (tmp & EMAC_MDIO_COMM_START_BUSY) { + BNX2X_ERR("write phy register failed\n"); + + rc = -EBUSY; + } + } + + /* unset clause 45 mode */ + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + tmp &= ~EMAC_MDIO_MODE_CLAUSE_45; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, tmp); + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + tmp = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + tmp |= EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, tmp); + } + + return rc; +} + +static int bnx2x_mdio45_read(struct bnx2x *bp, u32 reg, u32 addr, + u32 *ret_val) +{ + int port = bp->port; + u32 emac_base = port ? GRCBASE_EMAC1 : GRCBASE_EMAC0; + u32 val, i; + int rc = 0; + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + val &= ~EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, val); + REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + udelay(40); + } + + /* set clause 45 mode */ + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + val |= EMAC_MDIO_MODE_CLAUSE_45; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, val); + + /* address */ + val = ((bp->phy_addr << 21) | (reg << 16) | addr | + EMAC_MDIO_COMM_COMMAND_ADDRESS | + EMAC_MDIO_COMM_START_BUSY); + EMAC_WR(EMAC_REG_EMAC_MDIO_COMM, val); + + for (i = 0; i < 50; i++) { + udelay(10); + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_COMM); + if (!(val & EMAC_MDIO_COMM_START_BUSY)) { + udelay(5); + break; + } + } + + if (val & EMAC_MDIO_COMM_START_BUSY) { + BNX2X_ERR("read phy register failed\n"); + + *ret_val = 0; + rc = -EBUSY; + } else { + /* data */ + val = ((bp->phy_addr << 21) | (reg << 16) | + EMAC_MDIO_COMM_COMMAND_READ_45 | + EMAC_MDIO_COMM_START_BUSY); + EMAC_WR(EMAC_REG_EMAC_MDIO_COMM, val); + + for (i = 0; i < 50; i++) { + udelay(10); + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_COMM); + if (!(val & EMAC_MDIO_COMM_START_BUSY)) { + val &= EMAC_MDIO_COMM_DATA; + break; + } + } + + if (val & EMAC_MDIO_COMM_START_BUSY) { + BNX2X_ERR("read phy register failed\n"); + + val = 0; + rc = -EBUSY; + } + + *ret_val = val; + } + + /* unset clause 45 mode */ + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + val &= ~EMAC_MDIO_MODE_CLAUSE_45; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, val); + + if (bp->phy_flags & PHY_INT_MODE_AUTO_POLLING_FLAG) { + + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MDIO_MODE); + val |= EMAC_MDIO_MODE_AUTO_POLL; + EMAC_WR(EMAC_REG_EMAC_MDIO_MODE, val); + } + + return rc; +} + +static int bnx2x_mdio45_vwrite(struct bnx2x *bp, u32 reg, u32 addr, u32 val) +{ + int i; + u32 rd_val; + + might_sleep(); + for (i = 0; i < 10; i++) { + bnx2x_mdio45_write(bp, reg, addr, val); + msleep(5); + bnx2x_mdio45_read(bp, reg, addr, &rd_val); + /* if the read value is not the same as the value we wrote, + we should write it again */ + if (rd_val == val) + return 0; + } + BNX2X_ERR("MDIO write in CL45 failed\n"); + return -EBUSY; +} + +/* + * link managment + */ + +static void bnx2x_flow_ctrl_resolve(struct bnx2x *bp, u32 gp_status) +{ + u32 ld_pause; /* local driver */ + u32 lp_pause; /* link partner */ + u32 pause_result; + + bp->flow_ctrl = 0; + + /* reolve from gp_status in case of AN complete and not sgmii */ + if ((bp->req_autoneg & AUTONEG_FLOW_CTRL) && + (gp_status & MDIO_AN_CL73_OR_37_COMPLETE) && + (!(bp->phy_flags & PHY_SGMII_FLAG)) && + (XGXS_EXT_PHY_TYPE(bp) == PORT_HW_CFG_XGXS_EXT_PHY_TYPE_DIRECT)) { + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_AUTO_NEG_ADV, + &ld_pause); + bnx2x_mdio22_read(bp, + MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1, + &lp_pause); + pause_result = (ld_pause & + MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_MASK)>>5; + pause_result |= (lp_pause & + MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_MASK)>>7; + DP(NETIF_MSG_LINK, "pause_result 0x%x\n", pause_result); + + switch (pause_result) { /* ASYM P ASYM P */ + case 0xb: /* 1 0 1 1 */ + bp->flow_ctrl = FLOW_CTRL_TX; + break; + + case 0xe: /* 1 1 1 0 */ + bp->flow_ctrl = FLOW_CTRL_RX; + break; + + case 0x5: /* 0 1 0 1 */ + case 0x7: /* 0 1 1 1 */ + case 0xd: /* 1 1 0 1 */ + case 0xf: /* 1 1 1 1 */ + bp->flow_ctrl = FLOW_CTRL_BOTH; + break; + + default: + break; + } + + } else { /* forced mode */ + switch (bp->req_flow_ctrl) { + case FLOW_CTRL_AUTO: + if (bp->dev->mtu <= 4500) + bp->flow_ctrl = FLOW_CTRL_BOTH; + else + bp->flow_ctrl = FLOW_CTRL_TX; + break; + + case FLOW_CTRL_TX: + case FLOW_CTRL_RX: + case FLOW_CTRL_BOTH: + bp->flow_ctrl = bp->req_flow_ctrl; + break; + + case FLOW_CTRL_NONE: + default: + break; + } + } + DP(NETIF_MSG_LINK, "flow_ctrl 0x%x\n", bp->flow_ctrl); +} + +static void bnx2x_link_settings_status(struct bnx2x *bp, u32 gp_status) +{ + bp->link_status = 0; + + if (gp_status & MDIO_GP_STATUS_TOP_AN_STATUS1_LINK_STATUS) { + DP(NETIF_MSG_LINK, "link up\n"); + + bp->link_up = 1; + bp->link_status |= LINK_STATUS_LINK_UP; + + if (gp_status & MDIO_GP_STATUS_TOP_AN_STATUS1_DUPLEX_STATUS) + bp->duplex = DUPLEX_FULL; + else + bp->duplex = DUPLEX_HALF; + + bnx2x_flow_ctrl_resolve(bp, gp_status); + + switch (gp_status & GP_STATUS_SPEED_MASK) { + case GP_STATUS_10M: + bp->line_speed = SPEED_10; + if (bp->duplex == DUPLEX_FULL) + bp->link_status |= LINK_10TFD; + else + bp->link_status |= LINK_10THD; + break; + + case GP_STATUS_100M: + bp->line_speed = SPEED_100; + if (bp->duplex == DUPLEX_FULL) + bp->link_status |= LINK_100TXFD; + else + bp->link_status |= LINK_100TXHD; + break; + + case GP_STATUS_1G: + case GP_STATUS_1G_KX: + bp->line_speed = SPEED_1000; + if (bp->duplex == DUPLEX_FULL) + bp->link_status |= LINK_1000TFD; + else + bp->link_status |= LINK_1000THD; + break; + + case GP_STATUS_2_5G: + bp->line_speed = SPEED_2500; + if (bp->duplex == DUPLEX_FULL) + bp->link_status |= LINK_2500TFD; + else + bp->link_status |= LINK_2500THD; + break; + + case GP_STATUS_5G: + case GP_STATUS_6G: + BNX2X_ERR("link speed unsupported gp_status 0x%x\n", + gp_status); + break; + + case GP_STATUS_10G_KX4: + case GP_STATUS_10G_HIG: + case GP_STATUS_10G_CX4: + bp->line_speed = SPEED_10000; + bp->link_status |= LINK_10GTFD; + break; + + case GP_STATUS_12G_HIG: + bp->line_speed = SPEED_12000; + bp->link_status |= LINK_12GTFD; + break; + + case GP_STATUS_12_5G: + bp->line_speed = SPEED_12500; + bp->link_status |= LINK_12_5GTFD; + break; + + case GP_STATUS_13G: + bp->line_speed = SPEED_13000; + bp->link_status |= LINK_13GTFD; + break; + + case GP_STATUS_15G: + bp->line_speed = SPEED_15000; + bp->link_status |= LINK_15GTFD; + break; + + case GP_STATUS_16G: + bp->line_speed = SPEED_16000; + bp->link_status |= LINK_16GTFD; + break; + + default: + BNX2X_ERR("link speed unsupported gp_status 0x%x\n", + gp_status); + break; + } + + bp->link_status |= LINK_STATUS_SERDES_LINK; + + if (bp->req_autoneg & AUTONEG_SPEED) { + bp->link_status |= LINK_STATUS_AUTO_NEGOTIATE_ENABLED; + + if (gp_status & MDIO_AN_CL73_OR_37_COMPLETE) + bp->link_status |= + LINK_STATUS_AUTO_NEGOTIATE_COMPLETE; + + if (bp->autoneg & AUTONEG_PARALLEL) + bp->link_status |= + LINK_STATUS_PARALLEL_DETECTION_USED; + } + + if (bp->flow_ctrl & FLOW_CTRL_TX) + bp->link_status |= LINK_STATUS_TX_FLOW_CONTROL_ENABLED; + + if (bp->flow_ctrl & FLOW_CTRL_RX) + bp->link_status |= LINK_STATUS_RX_FLOW_CONTROL_ENABLED; + + } else { /* link_down */ + DP(NETIF_MSG_LINK, "link down\n"); + + bp->link_up = 0; + + bp->line_speed = 0; + bp->duplex = DUPLEX_FULL; + bp->flow_ctrl = 0; + } + + DP(NETIF_MSG_LINK, "gp_status 0x%x link_up %d\n" + DP_LEVEL " line_speed %d duplex %d flow_ctrl 0x%x" + " link_status 0x%x\n", + gp_status, bp->link_up, bp->line_speed, bp->duplex, bp->flow_ctrl, + bp->link_status); +} + +static void bnx2x_link_int_ack(struct bnx2x *bp, int is_10g) +{ + int port = bp->port; + + /* first reset all status + * we asume only one line will be change at a time */ + bnx2x_bits_dis(bp, NIG_REG_STATUS_INTERRUPT_PORT0 + port*4, + (NIG_XGXS0_LINK_STATUS | + NIG_SERDES0_LINK_STATUS | + NIG_STATUS_INTERRUPT_XGXS0_LINK10G)); + if (bp->link_up) { + if (is_10g) { + /* Disable the 10G link interrupt + * by writing 1 to the status register + */ + DP(NETIF_MSG_LINK, "10G XGXS link up\n"); + bnx2x_bits_en(bp, + NIG_REG_STATUS_INTERRUPT_PORT0 + port*4, + NIG_STATUS_INTERRUPT_XGXS0_LINK10G); + + } else if (bp->phy_flags & PHY_XGXS_FLAG) { + /* Disable the link interrupt + * by writing 1 to the relevant lane + * in the status register + */ + DP(NETIF_MSG_LINK, "1G XGXS link up\n"); + bnx2x_bits_en(bp, + NIG_REG_STATUS_INTERRUPT_PORT0 + port*4, + ((1 << bp->ser_lane) << + NIG_XGXS0_LINK_STATUS_SIZE)); + + } else { /* SerDes */ + DP(NETIF_MSG_LINK, "SerDes link up\n"); + /* Disable the link interrupt + * by writing 1 to the status register + */ + bnx2x_bits_en(bp, + NIG_REG_STATUS_INTERRUPT_PORT0 + port*4, + NIG_SERDES0_LINK_STATUS); + } + + } else { /* link_down */ + } +} + +static int bnx2x_ext_phy_is_link_up(struct bnx2x *bp) +{ + u32 ext_phy_type; + u32 ext_phy_addr; + u32 local_phy; + u32 val = 0; + u32 rx_sd, pcs_status; + + if (bp->phy_flags & PHY_XGXS_FLAG) { + local_phy = bp->phy_addr; + ext_phy_addr = ((bp->ext_phy_config & + PORT_HW_CFG_XGXS_EXT_PHY_ADDR_MASK) >> + PORT_HW_CFG_XGXS_EXT_PHY_ADDR_SHIFT); + bp->phy_addr = (u8)ext_phy_addr; + + ext_phy_type = XGXS_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_DIRECT: + DP(NETIF_MSG_LINK, "XGXS Direct\n"); + val = 1; + break; + + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8705: + DP(NETIF_MSG_LINK, "XGXS 8705\n"); + bnx2x_mdio45_read(bp, EXT_PHY_OPT_WIS_DEVAD, + EXT_PHY_OPT_LASI_STATUS, &val); + DP(NETIF_MSG_LINK, "8705 LASI status is %d\n", val); + + bnx2x_mdio45_read(bp, EXT_PHY_OPT_WIS_DEVAD, + EXT_PHY_OPT_LASI_STATUS, &val); + DP(NETIF_MSG_LINK, "8705 LASI status is %d\n", val); + + bnx2x_mdio45_read(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_PMD_RX_SD, &rx_sd); + val = (rx_sd & 0x1); + break; + + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8706: + DP(NETIF_MSG_LINK, "XGXS 8706\n"); + bnx2x_mdio45_read(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_LASI_STATUS, &val); + DP(NETIF_MSG_LINK, "8706 LASI status is %d\n", val); + + bnx2x_mdio45_read(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_LASI_STATUS, &val); + DP(NETIF_MSG_LINK, "8706 LASI status is %d\n", val); + + bnx2x_mdio45_read(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_PMD_RX_SD, &rx_sd); + bnx2x_mdio45_read(bp, EXT_PHY_OPT_PCS_DEVAD, + EXT_PHY_OPT_PCS_STATUS, &pcs_status); + DP(NETIF_MSG_LINK, "8706 rx_sd 0x%x" + " pcs_status 0x%x\n", rx_sd, pcs_status); + /* link is up if both bit 0 of pmd_rx and + * bit 0 of pcs_status are set + */ + val = (rx_sd & pcs_status); + break; + + default: + DP(NETIF_MSG_LINK, "BAD XGXS ext_phy_config 0x%x\n", + bp->ext_phy_config); + val = 0; + break; + } + bp->phy_addr = local_phy; + + } else { /* SerDes */ + ext_phy_type = SERDES_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_DIRECT: + DP(NETIF_MSG_LINK, "SerDes Direct\n"); + val = 1; + break; + + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_BCM5482: + DP(NETIF_MSG_LINK, "SerDes 5482\n"); + val = 1; + break; + + default: + DP(NETIF_MSG_LINK, "BAD SerDes ext_phy_config 0x%x\n", + bp->ext_phy_config); + val = 0; + break; + } + } + + return val; +} + +static void bnx2x_bmac_enable(struct bnx2x *bp, int is_lb) +{ + int port = bp->port; + u32 bmac_addr = port ? NIG_REG_INGRESS_BMAC1_MEM : + NIG_REG_INGRESS_BMAC0_MEM; + u32 wb_write[2]; + u32 val; + + DP(NETIF_MSG_LINK, "enableing BigMAC\n"); + /* reset and unreset the BigMac */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_CLEAR, + (MISC_REGISTERS_RESET_REG_2_RST_BMAC0 << port)); + msleep(5); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_SET, + (MISC_REGISTERS_RESET_REG_2_RST_BMAC0 << port)); + + /* enable access for bmac registers */ + NIG_WR(NIG_REG_BMAC0_REGS_OUT_EN + port*4, 0x1); + + /* XGXS control */ + wb_write[0] = 0x3c; + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_BMAC_XGXS_CONTROL, + wb_write, 2); + + /* tx MAC SA */ + wb_write[0] = ((bp->dev->dev_addr[2] << 24) | + (bp->dev->dev_addr[3] << 16) | + (bp->dev->dev_addr[4] << 8) | + bp->dev->dev_addr[5]); + wb_write[1] = ((bp->dev->dev_addr[0] << 8) | + bp->dev->dev_addr[1]); + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_TX_SOURCE_ADDR, + wb_write, 2); + + /* tx control */ + val = 0xc0; + if (bp->flow_ctrl & FLOW_CTRL_TX) + val |= 0x800000; + wb_write[0] = val; + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_TX_CONTROL, wb_write, 2); + + /* set tx mtu */ + wb_write[0] = ETH_MAX_JUMBO_PACKET_SIZE + ETH_OVREHEAD; /* -CRC */ + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_TX_MAX_SIZE, wb_write, 2); + + /* mac control */ + val = 0x3; + if (is_lb) { + val |= 0x4; + DP(NETIF_MSG_LINK, "enable bmac loopback\n"); + } + wb_write[0] = val; + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_BMAC_CONTROL, + wb_write, 2); + + /* rx control set to don't strip crc */ + val = 0x14; + if (bp->flow_ctrl & FLOW_CTRL_RX) + val |= 0x20; + wb_write[0] = val; + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_RX_CONTROL, wb_write, 2); + + /* set rx mtu */ + wb_write[0] = ETH_MAX_JUMBO_PACKET_SIZE + ETH_OVREHEAD; + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_RX_MAX_SIZE, wb_write, 2); + + /* set cnt max size */ + wb_write[0] = ETH_MAX_JUMBO_PACKET_SIZE + ETH_OVREHEAD; /* -VLAN */ + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_CNT_MAX_SIZE, + wb_write, 2); + + /* configure safc */ + wb_write[0] = 0x1000200; + wb_write[1] = 0; + REG_WR_DMAE(bp, bmac_addr + BIGMAC_REGISTER_RX_LLFC_MSG_FLDS, + wb_write, 2); + + /* fix for emulation */ + if (CHIP_REV(bp) == CHIP_REV_EMUL) { + wb_write[0] = 0xf000; + wb_write[1] = 0; + REG_WR_DMAE(bp, + bmac_addr + BIGMAC_REGISTER_TX_PAUSE_THRESHOLD, + wb_write, 2); + } + + /* reset old bmac stats */ + memset(&bp->old_bmac, 0, sizeof(struct bmac_stats)); + + NIG_WR(NIG_REG_XCM0_OUT_EN + port*4, 0x0); + + /* select XGXS */ + NIG_WR(NIG_REG_XGXS_SERDES0_MODE_SEL + port*4, 0x1); + NIG_WR(NIG_REG_XGXS_LANE_SEL_P0 + port*4, 0x0); + + /* disable the NIG in/out to the emac */ + NIG_WR(NIG_REG_EMAC0_IN_EN + port*4, 0x0); + NIG_WR(NIG_REG_EMAC0_PAUSE_OUT_EN + port*4, 0x0); + NIG_WR(NIG_REG_EGRESS_EMAC0_OUT_EN + port*4, 0x0); + + /* enable the NIG in/out to the bmac */ + NIG_WR(NIG_REG_EGRESS_EMAC0_PORT + port*4, 0x0); + + NIG_WR(NIG_REG_BMAC0_IN_EN + port*4, 0x1); + val = 0; + if (bp->flow_ctrl & FLOW_CTRL_TX) + val = 1; + NIG_WR(NIG_REG_BMAC0_PAUSE_OUT_EN + port*4, val); + NIG_WR(NIG_REG_BMAC0_OUT_EN + port*4, 0x1); + + bp->phy_flags |= PHY_BMAC_FLAG; + + bp->stats_state = STATS_STATE_ENABLE; +} + +static void bnx2x_emac_enable(struct bnx2x *bp) +{ + int port = bp->port; + u32 emac_base = port ? GRCBASE_EMAC1 : GRCBASE_EMAC0; + u32 val; + int timeout; + + DP(NETIF_MSG_LINK, "enableing EMAC\n"); + /* reset and unreset the emac core */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_CLEAR, + (MISC_REGISTERS_RESET_REG_2_RST_EMAC0_HARD_CORE << port)); + msleep(5); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_SET, + (MISC_REGISTERS_RESET_REG_2_RST_EMAC0_HARD_CORE << port)); + + /* enable emac and not bmac */ + NIG_WR(NIG_REG_EGRESS_EMAC0_PORT + port*4, 1); + + /* for paladium */ + if (CHIP_REV(bp) == CHIP_REV_EMUL) { + /* Use lane 1 (of lanes 0-3) */ + NIG_WR(NIG_REG_XGXS_LANE_SEL_P0 + port*4, 1); + NIG_WR(NIG_REG_XGXS_SERDES0_MODE_SEL + port*4, 1); + } + /* for fpga */ + else if (CHIP_REV(bp) == CHIP_REV_FPGA) { + /* Use lane 1 (of lanes 0-3) */ + NIG_WR(NIG_REG_XGXS_LANE_SEL_P0 + port*4, 1); + NIG_WR(NIG_REG_XGXS_SERDES0_MODE_SEL + port*4, 0); + } + /* ASIC */ + else { + if (bp->phy_flags & PHY_XGXS_FLAG) { + DP(NETIF_MSG_LINK, "XGXS\n"); + /* select the master lanes (out of 0-3) */ + NIG_WR(NIG_REG_XGXS_LANE_SEL_P0 + port*4, + bp->ser_lane); + /* select XGXS */ + NIG_WR(NIG_REG_XGXS_SERDES0_MODE_SEL + port*4, 1); + + } else { /* SerDes */ + DP(NETIF_MSG_LINK, "SerDes\n"); + /* select SerDes */ + NIG_WR(NIG_REG_XGXS_SERDES0_MODE_SEL + port*4, 0); + } + } + + /* enable emac */ + NIG_WR(NIG_REG_NIG_EMAC0_EN + port*4, 1); + + /* init emac - use read-modify-write */ + /* self clear reset */ + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MODE); + EMAC_WR(EMAC_REG_EMAC_MODE, (val | EMAC_MODE_RESET)); + + timeout = 200; + while (val & EMAC_MODE_RESET) { + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MODE); + DP(NETIF_MSG_LINK, "EMAC reset reg is %u\n", val); + if (!timeout) { + BNX2X_ERR("EMAC timeout!\n"); + break; + } + timeout--; + } + + /* reset tx part */ + EMAC_WR(EMAC_REG_EMAC_TX_MODE, EMAC_TX_MODE_RESET); + + timeout = 200; + while (val & EMAC_TX_MODE_RESET) { + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_TX_MODE); + DP(NETIF_MSG_LINK, "EMAC reset reg is %u\n", val); + if (!timeout) { + BNX2X_ERR("EMAC timeout!\n"); + break; + } + timeout--; + } + + if (CHIP_REV_IS_SLOW(bp)) { + /* config GMII mode */ + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MODE); + EMAC_WR(EMAC_REG_EMAC_MODE, (val | EMAC_MODE_PORT_GMII)); + + } else { /* ASIC */ + /* pause enable/disable */ + bnx2x_bits_dis(bp, emac_base + EMAC_REG_EMAC_RX_MODE, + EMAC_RX_MODE_FLOW_EN); + if (bp->flow_ctrl & FLOW_CTRL_RX) + bnx2x_bits_en(bp, emac_base + EMAC_REG_EMAC_RX_MODE, + EMAC_RX_MODE_FLOW_EN); + + bnx2x_bits_dis(bp, emac_base + EMAC_REG_EMAC_TX_MODE, + EMAC_TX_MODE_EXT_PAUSE_EN); + if (bp->flow_ctrl & FLOW_CTRL_TX) + bnx2x_bits_en(bp, emac_base + EMAC_REG_EMAC_TX_MODE, + EMAC_TX_MODE_EXT_PAUSE_EN); + } + + /* KEEP_VLAN_TAG, promiscous */ + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_RX_MODE); + val |= EMAC_RX_MODE_KEEP_VLAN_TAG | EMAC_RX_MODE_PROMISCUOUS; + EMAC_WR(EMAC_REG_EMAC_RX_MODE, val); + + /* identify magic packets */ + val = REG_RD(bp, emac_base + EMAC_REG_EMAC_MODE); + EMAC_WR(EMAC_REG_EMAC_MODE, (val | EMAC_MODE_MPKT)); + + /* enable emac for jumbo packets */ + EMAC_WR(EMAC_REG_EMAC_RX_MTU_SIZE, + (EMAC_RX_MTU_SIZE_JUMBO_ENA | + (ETH_MAX_JUMBO_PACKET_SIZE + ETH_OVREHEAD))); /* -VLAN */ + + /* strip CRC */ + NIG_WR(NIG_REG_NIG_INGRESS_EMAC0_NO_CRC + port*4, 0x1); + + val = ((bp->dev->dev_addr[0] << 8) | + bp->dev->dev_addr[1]); + EMAC_WR(EMAC_REG_EMAC_MAC_MATCH, val); + + val = ((bp->dev->dev_addr[2] << 24) | + (bp->dev->dev_addr[3] << 16) | + (bp->dev->dev_addr[4] << 8) | + bp->dev->dev_addr[5]); + EMAC_WR(EMAC_REG_EMAC_MAC_MATCH + 4, val); + + /* disable the NIG in/out to the bmac */ + NIG_WR(NIG_REG_BMAC0_IN_EN + port*4, 0x0); + NIG_WR(NIG_REG_BMAC0_PAUSE_OUT_EN + port*4, 0x0); + NIG_WR(NIG_REG_BMAC0_OUT_EN + port*4, 0x0); + + /* enable the NIG in/out to the emac */ + NIG_WR(NIG_REG_EMAC0_IN_EN + port*4, 0x1); + val = 0; + if (bp->flow_ctrl & FLOW_CTRL_TX) + val = 1; + NIG_WR(NIG_REG_EMAC0_PAUSE_OUT_EN + port*4, val); + NIG_WR(NIG_REG_EGRESS_EMAC0_OUT_EN + port*4, 0x1); + + if (CHIP_REV(bp) == CHIP_REV_FPGA) { + /* take the BigMac out of reset */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_SET, + (MISC_REGISTERS_RESET_REG_2_RST_BMAC0 << port)); + + /* enable access for bmac registers */ + NIG_WR(NIG_REG_BMAC0_REGS_OUT_EN + port*4, 0x1); + } + + bp->phy_flags |= PHY_EMAC_FLAG; + + bp->stats_state = STATS_STATE_ENABLE; +} + +static void bnx2x_emac_program(struct bnx2x *bp) +{ + u16 mode = 0; + int port = bp->port; + + DP(NETIF_MSG_LINK, "setting link speed & duplex\n"); + bnx2x_bits_dis(bp, GRCBASE_EMAC0 + port*0x400 + EMAC_REG_EMAC_MODE, + (EMAC_MODE_25G_MODE | + EMAC_MODE_PORT_MII_10M | + EMAC_MODE_HALF_DUPLEX)); + switch (bp->line_speed) { + case SPEED_10: + mode |= EMAC_MODE_PORT_MII_10M; + break; + + case SPEED_100: + mode |= EMAC_MODE_PORT_MII; + break; + + case SPEED_1000: + mode |= EMAC_MODE_PORT_GMII; + break; + + case SPEED_2500: + mode |= (EMAC_MODE_25G_MODE | EMAC_MODE_PORT_GMII); + break; + + default: + /* 10G not valid for EMAC */ + BNX2X_ERR("Invalid line_speed 0x%x\n", bp->line_speed); + break; + } + + if (bp->duplex == DUPLEX_HALF) + mode |= EMAC_MODE_HALF_DUPLEX; + bnx2x_bits_en(bp, GRCBASE_EMAC0 + port*0x400 + EMAC_REG_EMAC_MODE, + mode); + + bnx2x_leds_set(bp, bp->line_speed); +} + +static void bnx2x_set_sgmii_tx_driver(struct bnx2x *bp) +{ + u32 lp_up2; + u32 tx_driver; + + /* read precomp */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_OVER_1G); + bnx2x_mdio22_read(bp, MDIO_OVER_1G_LP_UP2, &lp_up2); + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_TX0); + bnx2x_mdio22_read(bp, MDIO_TX0_TX_DRIVER, &tx_driver); + + /* bits [10:7] at lp_up2, positioned at [15:12] */ + lp_up2 = (((lp_up2 & MDIO_OVER_1G_LP_UP2_PREEMPHASIS_MASK) >> + MDIO_OVER_1G_LP_UP2_PREEMPHASIS_SHIFT) << + MDIO_TX0_TX_DRIVER_PREEMPHASIS_SHIFT); + + if ((lp_up2 != 0) && + (lp_up2 != (tx_driver & MDIO_TX0_TX_DRIVER_PREEMPHASIS_MASK))) { + /* replace tx_driver bits [15:12] */ + tx_driver &= ~MDIO_TX0_TX_DRIVER_PREEMPHASIS_MASK; + tx_driver |= lp_up2; + bnx2x_mdio22_write(bp, MDIO_TX0_TX_DRIVER, tx_driver); + } +} + +static void bnx2x_pbf_update(struct bnx2x *bp) +{ + int port = bp->port; + u32 init_crd, crd; + u32 count = 1000; + u32 pause = 0; + + + /* disable port */ + REG_WR(bp, PBF_REG_DISABLE_NEW_TASK_PROC_P0 + port*4, 0x1); + + /* wait for init credit */ + init_crd = REG_RD(bp, PBF_REG_P0_INIT_CRD + port*4); + crd = REG_RD(bp, PBF_REG_P0_CREDIT + port*8); + DP(NETIF_MSG_LINK, "init_crd 0x%x crd 0x%x\n", init_crd, crd); + + while ((init_crd != crd) && count) { + msleep(5); + + crd = REG_RD(bp, PBF_REG_P0_CREDIT + port*8); + count--; + } + crd = REG_RD(bp, PBF_REG_P0_CREDIT + port*8); + if (init_crd != crd) + BNX2X_ERR("BUG! init_crd 0x%x != crd 0x%x\n", init_crd, crd); + + if (bp->flow_ctrl & FLOW_CTRL_RX) + pause = 1; + REG_WR(bp, PBF_REG_P0_PAUSE_ENABLE + port*4, pause); + if (pause) { + /* update threshold */ + REG_WR(bp, PBF_REG_P0_ARB_THRSH + port*4, 0); + /* update init credit */ + init_crd = 778; /* (800-18-4) */ + + } else { + u32 thresh = (ETH_MAX_JUMBO_PACKET_SIZE + ETH_OVREHEAD)/16; + + /* update threshold */ + REG_WR(bp, PBF_REG_P0_ARB_THRSH + port*4, thresh); + /* update init credit */ + switch (bp->line_speed) { + case SPEED_10: + case SPEED_100: + case SPEED_1000: + init_crd = thresh + 55 - 22; + break; + + case SPEED_2500: + init_crd = thresh + 138 - 22; + break; + + case SPEED_10000: + init_crd = thresh + 553 - 22; + break; + + default: + BNX2X_ERR("Invalid line_speed 0x%x\n", + bp->line_speed); + break; + } + } + REG_WR(bp, PBF_REG_P0_INIT_CRD + port*4, init_crd); + DP(NETIF_MSG_LINK, "PBF updated to speed %d credit %d\n", + bp->line_speed, init_crd); + + /* probe the credit changes */ + REG_WR(bp, PBF_REG_INIT_P0 + port*4, 0x1); + msleep(5); + REG_WR(bp, PBF_REG_INIT_P0 + port*4, 0x0); + + /* enable port */ + REG_WR(bp, PBF_REG_DISABLE_NEW_TASK_PROC_P0 + port*4, 0x0); +} + +static void bnx2x_update_mng(struct bnx2x *bp) +{ + if (!nomcp) + SHMEM_WR(bp, drv_fw_mb[bp->port].link_status, + bp->link_status); +} + +static void bnx2x_link_report(struct bnx2x *bp) +{ + if (bp->link_up) { + netif_carrier_on(bp->dev); + printk(KERN_INFO PFX "%s NIC Link is Up, ", bp->dev->name); + + printk("%d Mbps ", bp->line_speed); + + if (bp->duplex == DUPLEX_FULL) + printk("full duplex"); + else + printk("half duplex"); + + if (bp->flow_ctrl) { + if (bp->flow_ctrl & FLOW_CTRL_RX) { + printk(", receive "); + if (bp->flow_ctrl & FLOW_CTRL_TX) + printk("& transmit "); + } else { + printk(", transmit "); + } + printk("flow control ON"); + } + printk("\n"); + + } else { /* link_down */ + netif_carrier_off(bp->dev); + printk(KERN_INFO PFX "%s NIC Link is Down\n", bp->dev->name); + } +} + +static void bnx2x_link_up(struct bnx2x *bp) +{ + int port = bp->port; + + /* PBF - link up */ + bnx2x_pbf_update(bp); + + /* disable drain */ + NIG_WR(NIG_REG_EGRESS_DRAIN0_MODE + port*4, 0); + + /* update shared memory */ + bnx2x_update_mng(bp); + + /* indicate link up */ + bnx2x_link_report(bp); +} + +static void bnx2x_link_down(struct bnx2x *bp) +{ + int port = bp->port; + + /* notify stats */ + if (bp->stats_state != STATS_STATE_DISABLE) { + bp->stats_state = STATS_STATE_STOP; + DP(BNX2X_MSG_STATS, "stats_state - STOP\n"); + } + + /* indicate link down */ + bp->phy_flags &= ~(PHY_BMAC_FLAG | PHY_EMAC_FLAG); + + /* reset BigMac */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_CLEAR, + (MISC_REGISTERS_RESET_REG_2_RST_BMAC0 << port)); + + /* ignore drain flag interrupt */ + /* activate nig drain */ + NIG_WR(NIG_REG_EGRESS_DRAIN0_MODE + port*4, 1); + + /* update shared memory */ + bnx2x_update_mng(bp); + + /* indicate link down */ + bnx2x_link_report(bp); +} + +static void bnx2x_init_mac_stats(struct bnx2x *bp); + +/* This function is called upon link interrupt */ +static void bnx2x_link_update(struct bnx2x *bp) +{ + u32 gp_status; + int port = bp->port; + int i; + int link_10g; + + DP(NETIF_MSG_LINK, "port %x, is xgxs %x, stat_mask 0x%x," + " int_mask 0x%x, saved_mask 0x%x, MI_INT %x, SERDES_LINK %x," + " 10G %x, XGXS_LINK %x\n", port, (bp->phy_flags & PHY_XGXS_FLAG), + REG_RD(bp, NIG_REG_STATUS_INTERRUPT_PORT0 + port*4), + REG_RD(bp, NIG_REG_MASK_INTERRUPT_PORT0 + port*4), bp->nig_mask, + REG_RD(bp, NIG_REG_EMAC0_STATUS_MISC_MI_INT + port*0x18), + REG_RD(bp, NIG_REG_SERDES0_STATUS_LINK_STATUS + port*0x3c), + REG_RD(bp, NIG_REG_XGXS0_STATUS_LINK10G + port*0x68), + REG_RD(bp, NIG_REG_XGXS0_STATUS_LINK_STATUS + port*0x68) + ); + + might_sleep(); + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_GP_STATUS); + /* avoid fast toggling */ + for (i = 0 ; i < 10 ; i++) { + msleep(10); + bnx2x_mdio22_read(bp, MDIO_GP_STATUS_TOP_AN_STATUS1, + &gp_status); + } + + bnx2x_link_settings_status(bp, gp_status); + + /* anything 10 and over uses the bmac */ + link_10g = ((bp->line_speed >= SPEED_10000) && + (bp->line_speed <= SPEED_16000)); + + bnx2x_link_int_ack(bp, link_10g); + + /* link is up only if both local phy and external phy are up */ + if (bp->link_up && bnx2x_ext_phy_is_link_up(bp)) { + if (link_10g) { + bnx2x_bmac_enable(bp, 0); + bnx2x_leds_set(bp, SPEED_10000); + + } else { + bnx2x_emac_enable(bp); + bnx2x_emac_program(bp); + + /* AN complete? */ + if (gp_status & MDIO_AN_CL73_OR_37_COMPLETE) { + if (!(bp->phy_flags & PHY_SGMII_FLAG)) + bnx2x_set_sgmii_tx_driver(bp); + } + } + bnx2x_link_up(bp); + + } else { /* link down */ + bnx2x_leds_unset(bp); + bnx2x_link_down(bp); + } + + bnx2x_init_mac_stats(bp); +} + +/* + * Init service functions + */ + +static void bnx2x_set_aer_mmd(struct bnx2x *bp) +{ + u16 offset = (bp->phy_flags & PHY_XGXS_FLAG) ? + (bp->phy_addr + bp->ser_lane) : 0; + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_AER_BLOCK); + bnx2x_mdio22_write(bp, MDIO_AER_BLOCK_AER_REG, 0x3800 + offset); +} + +static void bnx2x_set_master_ln(struct bnx2x *bp) +{ + u32 new_master_ln; + + /* set the master_ln for AN */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_XGXS_BLOCK2); + bnx2x_mdio22_read(bp, MDIO_XGXS_BLOCK2_TEST_MODE_LANE, + &new_master_ln); + bnx2x_mdio22_write(bp, MDIO_XGXS_BLOCK2_TEST_MODE_LANE, + (new_master_ln | bp->ser_lane)); +} + +static void bnx2x_reset_unicore(struct bnx2x *bp) +{ + u32 mii_control; + int i; + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, &mii_control); + /* reset the unicore */ + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + (mii_control | MDIO_COMBO_IEEO_MII_CONTROL_RESET)); + + /* wait for the reset to self clear */ + for (i = 0; i < MDIO_ACCESS_TIMEOUT; i++) { + udelay(5); + + /* the reset erased the previous bank value */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + &mii_control); + + if (!(mii_control & MDIO_COMBO_IEEO_MII_CONTROL_RESET)) { + udelay(5); + return; + } + } + + BNX2X_ERR("BUG! unicore is still in reset!\n"); +} + +static void bnx2x_set_swap_lanes(struct bnx2x *bp) +{ + /* Each two bits represents a lane number: + No swap is 0123 => 0x1b no need to enable the swap */ + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_XGXS_BLOCK2); + if (bp->rx_lane_swap != 0x1b) { + bnx2x_mdio22_write(bp, MDIO_XGXS_BLOCK2_RX_LN_SWAP, + (bp->rx_lane_swap | + MDIO_XGXS_BLOCK2_RX_LN_SWAP_ENABLE | + MDIO_XGXS_BLOCK2_RX_LN_SWAP_FORCE_ENABLE)); + } else { + bnx2x_mdio22_write(bp, MDIO_XGXS_BLOCK2_RX_LN_SWAP, 0); + } + + if (bp->tx_lane_swap != 0x1b) { + bnx2x_mdio22_write(bp, MDIO_XGXS_BLOCK2_TX_LN_SWAP, + (bp->tx_lane_swap | + MDIO_XGXS_BLOCK2_TX_LN_SWAP_ENABLE)); + } else { + bnx2x_mdio22_write(bp, MDIO_XGXS_BLOCK2_TX_LN_SWAP, 0); + } +} + +static void bnx2x_set_parallel_detection(struct bnx2x *bp) +{ + u32 control2; + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_SERDES_DIGITAL); + bnx2x_mdio22_read(bp, MDIO_SERDES_DIGITAL_A_1000X_CONTROL2, + &control2); + + if (bp->autoneg & AUTONEG_PARALLEL) { + control2 |= MDIO_SERDES_DIGITAL_A_1000X_CONTROL2_PRL_DT_EN; + } else { + control2 &= ~MDIO_SERDES_DIGITAL_A_1000X_CONTROL2_PRL_DT_EN; + } + bnx2x_mdio22_write(bp, MDIO_SERDES_DIGITAL_A_1000X_CONTROL2, + control2); + + if (bp->phy_flags & PHY_XGXS_FLAG) { + DP(NETIF_MSG_LINK, "XGXS\n"); + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_10G_PARALLEL_DETECT); + + bnx2x_mdio22_write(bp, + MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_LINK, + MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_LINK_CNT); + + bnx2x_mdio22_read(bp, + MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_CONTROL, + &control2); + + if (bp->autoneg & AUTONEG_PARALLEL) { + control2 |= + MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_CONTROL_PARDET10G_EN; + } else { + control2 &= + ~MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_CONTROL_PARDET10G_EN; + } + bnx2x_mdio22_write(bp, + MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_CONTROL, + control2); + } +} + +static void bnx2x_set_autoneg(struct bnx2x *bp) +{ + u32 reg_val; + + /* CL37 Autoneg */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, ®_val); + if ((bp->req_autoneg & AUTONEG_SPEED) && + (bp->autoneg & AUTONEG_CL37)) { + /* CL37 Autoneg Enabled */ + reg_val |= MDIO_COMBO_IEEO_MII_CONTROL_AN_EN; + } else { + /* CL37 Autoneg Disabled */ + reg_val &= ~(MDIO_COMBO_IEEO_MII_CONTROL_AN_EN | + MDIO_COMBO_IEEO_MII_CONTROL_RESTART_AN); + } + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_MII_CONTROL, reg_val); + + /* Enable/Disable Autodetection */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_SERDES_DIGITAL); + bnx2x_mdio22_read(bp, MDIO_SERDES_DIGITAL_A_1000X_CONTROL1, ®_val); + reg_val &= ~MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_SIGNAL_DETECT_EN; + + if ((bp->req_autoneg & AUTONEG_SPEED) && + (bp->autoneg & AUTONEG_SGMII_FIBER_AUTODET)) { + reg_val |= MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_AUTODET; + } else { + reg_val &= ~MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_AUTODET; + } + bnx2x_mdio22_write(bp, MDIO_SERDES_DIGITAL_A_1000X_CONTROL1, reg_val); + + /* Enable TetonII and BAM autoneg */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_BAM_NEXT_PAGE); + bnx2x_mdio22_read(bp, MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL, + ®_val); + if ((bp->req_autoneg & AUTONEG_SPEED) && + (bp->autoneg & AUTONEG_CL37) && (bp->autoneg & AUTONEG_BAM)) { + /* Enable BAM aneg Mode and TetonII aneg Mode */ + reg_val |= (MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL_BAM_MODE | + MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL_TETON_AN); + } else { + /* TetonII and BAM Autoneg Disabled */ + reg_val &= ~(MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL_BAM_MODE | + MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL_TETON_AN); + } + bnx2x_mdio22_write(bp, MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL, + reg_val); + + /* Enable Clause 73 Aneg */ + if ((bp->req_autoneg & AUTONEG_SPEED) && + (bp->autoneg & AUTONEG_CL73)) { + /* Enable BAM Station Manager */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_CL73_USERB0); + bnx2x_mdio22_write(bp, MDIO_CL73_USERB0_CL73_BAM_CTRL1, + (MDIO_CL73_USERB0_CL73_BAM_CTRL1_BAM_EN | + MDIO_CL73_USERB0_CL73_BAM_CTRL1_BAM_STATION_MNGR_EN | + MDIO_CL73_USERB0_CL73_BAM_CTRL1_BAM_NP_AFTER_BP_EN)); + + /* Merge CL73 and CL37 aneg resolution */ + bnx2x_mdio22_read(bp, MDIO_CL73_USERB0_CL73_BAM_CTRL3, + ®_val); + bnx2x_mdio22_write(bp, MDIO_CL73_USERB0_CL73_BAM_CTRL3, + (reg_val | + MDIO_CL73_USERB0_CL73_BAM_CTRL3_USE_CL73_HCD_MR)); + + /* Set the CL73 AN speed */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_CL73_IEEEB1); + bnx2x_mdio22_read(bp, MDIO_CL73_IEEEB1_AN_ADV2, ®_val); + /* In the SerDes we support only the 1G. + In the XGXS we support the 10G KX4 + but we currently do not support the KR */ + if (bp->phy_flags & PHY_XGXS_FLAG) { + DP(NETIF_MSG_LINK, "XGXS\n"); + /* 10G KX4 */ + reg_val |= MDIO_CL73_IEEEB1_AN_ADV2_ADVR_10G_KX4; + } else { + DP(NETIF_MSG_LINK, "SerDes\n"); + /* 1000M KX */ + reg_val |= MDIO_CL73_IEEEB1_AN_ADV2_ADVR_1000M_KX; + } + bnx2x_mdio22_write(bp, MDIO_CL73_IEEEB1_AN_ADV2, reg_val); + + /* CL73 Autoneg Enabled */ + reg_val = MDIO_CL73_IEEEB0_CL73_AN_CONTROL_AN_EN; + } else { + /* CL73 Autoneg Disabled */ + reg_val = 0; + } + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_CL73_IEEEB0); + bnx2x_mdio22_write(bp, MDIO_CL73_IEEEB0_CL73_AN_CONTROL, reg_val); +} + +/* program SerDes, forced speed */ +static void bnx2x_program_serdes(struct bnx2x *bp) +{ + u32 reg_val; + + /* program duplex, disable autoneg */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, ®_val); + reg_val &= ~(MDIO_COMBO_IEEO_MII_CONTROL_FULL_DUPLEX | + MDIO_COMBO_IEEO_MII_CONTROL_AN_EN); + if (bp->req_duplex == DUPLEX_FULL) + reg_val |= MDIO_COMBO_IEEO_MII_CONTROL_FULL_DUPLEX; + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_MII_CONTROL, reg_val); + + /* program speed + - needed only if the speed is greater than 1G (2.5G or 10G) */ + if (bp->req_line_speed > SPEED_1000) { + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_SERDES_DIGITAL); + bnx2x_mdio22_read(bp, MDIO_SERDES_DIGITAL_MISC1, ®_val); + /* clearing the speed value before setting the right speed */ + reg_val &= ~MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_MASK; + reg_val |= (MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_156_25M | + MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_SEL); + if (bp->req_line_speed == SPEED_10000) + reg_val |= + MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_10G_CX4; + bnx2x_mdio22_write(bp, MDIO_SERDES_DIGITAL_MISC1, reg_val); + } +} + +static void bnx2x_set_brcm_cl37_advertisment(struct bnx2x *bp) +{ + u32 val = 0; + + /* configure the 48 bits for BAM AN */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_OVER_1G); + + /* set extended capabilities */ + if (bp->advertising & ADVERTISED_2500baseT_Full) + val |= MDIO_OVER_1G_UP1_2_5G; + if (bp->advertising & ADVERTISED_10000baseT_Full) + val |= MDIO_OVER_1G_UP1_10G; + bnx2x_mdio22_write(bp, MDIO_OVER_1G_UP1, val); + + bnx2x_mdio22_write(bp, MDIO_OVER_1G_UP3, 0); +} + +static void bnx2x_set_ieee_aneg_advertisment(struct bnx2x *bp) +{ + u32 an_adv; + + /* for AN, we are always publishing full duplex */ + an_adv = MDIO_COMBO_IEEE0_AUTO_NEG_ADV_FULL_DUPLEX; + + /* set pause */ + switch (bp->pause_mode) { + case PAUSE_SYMMETRIC: + an_adv |= MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_SYMMETRIC; + break; + case PAUSE_ASYMMETRIC: + an_adv |= MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_ASYMMETRIC; + break; + case PAUSE_BOTH: + an_adv |= MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_BOTH; + break; + case PAUSE_NONE: + an_adv |= MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_NONE; + break; + } + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_AUTO_NEG_ADV, an_adv); +} + +static void bnx2x_restart_autoneg(struct bnx2x *bp) +{ + if (bp->autoneg & AUTONEG_CL73) { + /* enable and restart clause 73 aneg */ + u32 an_ctrl; + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_CL73_IEEEB0); + bnx2x_mdio22_read(bp, MDIO_CL73_IEEEB0_CL73_AN_CONTROL, + &an_ctrl); + bnx2x_mdio22_write(bp, MDIO_CL73_IEEEB0_CL73_AN_CONTROL, + (an_ctrl | + MDIO_CL73_IEEEB0_CL73_AN_CONTROL_AN_EN | + MDIO_CL73_IEEEB0_CL73_AN_CONTROL_RESTART_AN)); + + } else { + /* Enable and restart BAM/CL37 aneg */ + u32 mii_control; + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + &mii_control); + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + (mii_control | + MDIO_COMBO_IEEO_MII_CONTROL_AN_EN | + MDIO_COMBO_IEEO_MII_CONTROL_RESTART_AN)); + } +} + +static void bnx2x_initialize_sgmii_process(struct bnx2x *bp) +{ + u32 control1; + + /* in SGMII mode, the unicore is always slave */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_SERDES_DIGITAL); + bnx2x_mdio22_read(bp, MDIO_SERDES_DIGITAL_A_1000X_CONTROL1, + &control1); + control1 |= MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_INVERT_SIGNAL_DETECT; + /* set sgmii mode (and not fiber) */ + control1 &= ~(MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_FIBER_MODE | + MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_AUTODET | + MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_MSTR_MODE); + bnx2x_mdio22_write(bp, MDIO_SERDES_DIGITAL_A_1000X_CONTROL1, + control1); + + /* if forced speed */ + if (!(bp->req_autoneg & AUTONEG_SPEED)) { + /* set speed, disable autoneg */ + u32 mii_control; + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + &mii_control); + mii_control &= ~(MDIO_COMBO_IEEO_MII_CONTROL_AN_EN | + MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_MASK | + MDIO_COMBO_IEEO_MII_CONTROL_FULL_DUPLEX); + + switch (bp->req_line_speed) { + case SPEED_100: + mii_control |= + MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_100; + break; + case SPEED_1000: + mii_control |= + MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_1000; + break; + case SPEED_10: + /* there is nothing to set for 10M */ + break; + default: + /* invalid speed for SGMII */ + DP(NETIF_MSG_LINK, "Invalid req_line_speed 0x%x\n", + bp->req_line_speed); + break; + } + + /* setting the full duplex */ + if (bp->req_duplex == DUPLEX_FULL) + mii_control |= + MDIO_COMBO_IEEO_MII_CONTROL_FULL_DUPLEX; + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + mii_control); + + } else { /* AN mode */ + /* enable and restart AN */ + bnx2x_restart_autoneg(bp); + } +} + +static void bnx2x_link_int_enable(struct bnx2x *bp) +{ + int port = bp->port; + + /* setting the status to report on link up + for either XGXS or SerDes */ + bnx2x_bits_dis(bp, NIG_REG_STATUS_INTERRUPT_PORT0 + port*4, + (NIG_XGXS0_LINK_STATUS | + NIG_STATUS_INTERRUPT_XGXS0_LINK10G | + NIG_SERDES0_LINK_STATUS)); + + if (bp->phy_flags & PHY_XGXS_FLAG) { + /* TBD - + * in force mode (not AN) we can enable just the relevant + * interrupt + * Even in AN we might enable only one according to the AN + * speed mask + */ + bnx2x_bits_en(bp, NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + (NIG_MASK_XGXS0_LINK_STATUS | + NIG_MASK_XGXS0_LINK10G)); + DP(NETIF_MSG_LINK, "enable XGXS interrupt\n"); + + } else { /* SerDes */ + bnx2x_bits_en(bp, NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + NIG_MASK_SERDES0_LINK_STATUS); + DP(NETIF_MSG_LINK, "enable SerDes interrupt\n"); + } +} + +static void bnx2x_ext_phy_init(struct bnx2x *bp) +{ + int port = bp->port; + u32 ext_phy_type; + u32 ext_phy_addr; + u32 local_phy; + + if (bp->phy_flags & PHY_XGXS_FLAG) { + local_phy = bp->phy_addr; + ext_phy_addr = ((bp->ext_phy_config & + PORT_HW_CFG_XGXS_EXT_PHY_ADDR_MASK) >> + PORT_HW_CFG_XGXS_EXT_PHY_ADDR_SHIFT); + + ext_phy_type = XGXS_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_DIRECT: + DP(NETIF_MSG_LINK, "XGXS Direct\n"); + break; + + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8705: + DP(NETIF_MSG_LINK, "XGXS 8705\n"); + bnx2x_bits_en(bp, + NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + NIG_MASK_MI_INT); + DP(NETIF_MSG_LINK, "enabled extenal phy int\n"); + + bp->phy_addr = ext_phy_type; + bnx2x_mdio45_vwrite(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_PMD_MISC_CNTL, + 0x8288); + bnx2x_mdio45_vwrite(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_PHY_IDENTIFIER, + 0x7fbf); + bnx2x_mdio45_vwrite(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_CMU_PLL_BYPASS, + 0x0100); + bnx2x_mdio45_vwrite(bp, EXT_PHY_OPT_WIS_DEVAD, + EXT_PHY_OPT_LASI_CNTL, 0x1); + break; + + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8706: + DP(NETIF_MSG_LINK, "XGXS 8706\n"); + bnx2x_bits_en(bp, + NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + NIG_MASK_MI_INT); + DP(NETIF_MSG_LINK, "enabled extenal phy int\n"); + + bp->phy_addr = ext_phy_type; + bnx2x_mdio45_vwrite(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_PMD_DIGITAL_CNT, + 0x400); + bnx2x_mdio45_vwrite(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_LASI_CNTL, 0x1); + break; + + default: + DP(NETIF_MSG_LINK, "BAD XGXS ext_phy_config 0x%x\n", + bp->ext_phy_config); + break; + } + bp->phy_addr = local_phy; + + } else { /* SerDes */ +/* ext_phy_addr = ((bp->ext_phy_config & + PORT_HW_CFG_SERDES_EXT_PHY_ADDR_MASK) >> + PORT_HW_CFG_SERDES_EXT_PHY_ADDR_SHIFT); +*/ + ext_phy_type = SERDES_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_DIRECT: + DP(NETIF_MSG_LINK, "SerDes Direct\n"); + break; + + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_BCM5482: + DP(NETIF_MSG_LINK, "SerDes 5482\n"); + bnx2x_bits_en(bp, + NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + NIG_MASK_MI_INT); + DP(NETIF_MSG_LINK, "enabled extenal phy int\n"); + break; + + default: + DP(NETIF_MSG_LINK, "BAD SerDes ext_phy_config 0x%x\n", + bp->ext_phy_config); + break; + } + } +} + +static void bnx2x_ext_phy_reset(struct bnx2x *bp) +{ + u32 ext_phy_type; + u32 ext_phy_addr; + u32 local_phy; + + if (bp->phy_flags & PHY_XGXS_FLAG) { + ext_phy_type = XGXS_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_DIRECT: + DP(NETIF_MSG_LINK, "XGXS Direct\n"); + break; + + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8705: + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8706: + DP(NETIF_MSG_LINK, "XGXS 8705/6\n"); + local_phy = bp->phy_addr; + ext_phy_addr = ((bp->ext_phy_config & + PORT_HW_CFG_XGXS_EXT_PHY_ADDR_MASK) >> + PORT_HW_CFG_XGXS_EXT_PHY_ADDR_SHIFT); + bp->phy_addr = (u8)ext_phy_addr; + bnx2x_mdio45_write(bp, EXT_PHY_OPT_PMA_PMD_DEVAD, + EXT_PHY_OPT_CNTL, 0xa040); + bp->phy_addr = local_phy; + break; + + default: + DP(NETIF_MSG_LINK, "BAD XGXS ext_phy_config 0x%x\n", + bp->ext_phy_config); + break; + } + + } else { /* SerDes */ + ext_phy_type = SERDES_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_DIRECT: + DP(NETIF_MSG_LINK, "SerDes Direct\n"); + break; + + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_BCM5482: + DP(NETIF_MSG_LINK, "SerDes 5482\n"); + break; + + default: + DP(NETIF_MSG_LINK, "BAD SerDes ext_phy_config 0x%x\n", + bp->ext_phy_config); + break; + } + } +} + +static void bnx2x_link_initialize(struct bnx2x *bp) +{ + int port = bp->port; + + /* disable attentions */ + bnx2x_bits_dis(bp, NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + (NIG_MASK_XGXS0_LINK_STATUS | + NIG_MASK_XGXS0_LINK10G | + NIG_MASK_SERDES0_LINK_STATUS | + NIG_MASK_MI_INT)); + + bnx2x_ext_phy_reset(bp); + + bnx2x_set_aer_mmd(bp); + + if (bp->phy_flags & PHY_XGXS_FLAG) + bnx2x_set_master_ln(bp); + + /* reset the SerDes and wait for reset bit return low */ + bnx2x_reset_unicore(bp); + + bnx2x_set_aer_mmd(bp); + + /* setting the masterLn_def again after the reset */ + if (bp->phy_flags & PHY_XGXS_FLAG) { + bnx2x_set_master_ln(bp); + bnx2x_set_swap_lanes(bp); + } + + /* Set Parallel Detect */ + if (bp->req_autoneg & AUTONEG_SPEED) + bnx2x_set_parallel_detection(bp); + + if (bp->phy_flags & PHY_XGXS_FLAG) { + if (bp->req_line_speed && + bp->req_line_speed < SPEED_1000) { + bp->phy_flags |= PHY_SGMII_FLAG; + } else { + bp->phy_flags &= ~PHY_SGMII_FLAG; + } + } + + if (!(bp->phy_flags & PHY_SGMII_FLAG)) { + u16 bank, rx_eq; + + rx_eq = ((bp->serdes_config & + PORT_HW_CFG_SERDES_RX_DRV_EQUALIZER_MASK) >> + PORT_HW_CFG_SERDES_RX_DRV_EQUALIZER_SHIFT); + + DP(NETIF_MSG_LINK, "setting rx eq to %d\n", rx_eq); + for (bank = MDIO_REG_BANK_RX0; bank <= MDIO_REG_BANK_RX_ALL; + bank += (MDIO_REG_BANK_RX1 - MDIO_REG_BANK_RX0)) { + MDIO_SET_REG_BANK(bp, bank); + bnx2x_mdio22_write(bp, MDIO_RX0_RX_EQ_BOOST, + ((rx_eq & + MDIO_RX0_RX_EQ_BOOST_EQUALIZER_CTRL_MASK) | + MDIO_RX0_RX_EQ_BOOST_OFFSET_CTRL)); + } + + /* forced speed requested? */ + if (!(bp->req_autoneg & AUTONEG_SPEED)) { + DP(NETIF_MSG_LINK, "not SGMII, no AN\n"); + + /* disable autoneg */ + bnx2x_set_autoneg(bp); + + /* program speed and duplex */ + bnx2x_program_serdes(bp); + + } else { /* AN_mode */ + DP(NETIF_MSG_LINK, "not SGMII, AN\n"); + + /* AN enabled */ + bnx2x_set_brcm_cl37_advertisment(bp); + + /* program duplex & pause advertisment (for aneg) */ + bnx2x_set_ieee_aneg_advertisment(bp); + + /* enable autoneg */ + bnx2x_set_autoneg(bp); + + /* enalbe and restart AN */ + bnx2x_restart_autoneg(bp); + } + + } else { /* SGMII mode */ + DP(NETIF_MSG_LINK, "SGMII\n"); + + bnx2x_initialize_sgmii_process(bp); + } + + /* enable the interrupt */ + bnx2x_link_int_enable(bp); + + /* init ext phy and enable link state int */ + bnx2x_ext_phy_init(bp); +} + +static void bnx2x_phy_deassert(struct bnx2x *bp) +{ + int port = bp->port; + u32 val; + + if (bp->phy_flags & PHY_XGXS_FLAG) { + DP(NETIF_MSG_LINK, "XGXS\n"); + val = XGXS_RESET_BITS; + + } else { /* SerDes */ + DP(NETIF_MSG_LINK, "SerDes\n"); + val = SERDES_RESET_BITS; + } + + val = val << (port*16); + + /* reset and unreset the SerDes/XGXS */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_3_CLEAR, val); + msleep(5); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_3_SET, val); +} + +static int bnx2x_phy_init(struct bnx2x *bp) +{ + DP(NETIF_MSG_LINK, "started\n"); + if (CHIP_REV(bp) == CHIP_REV_FPGA) { + bp->phy_flags |= PHY_EMAC_FLAG; + bp->link_up = 1; + bp->line_speed = SPEED_10000; + bp->duplex = DUPLEX_FULL; + NIG_WR(NIG_REG_EGRESS_DRAIN0_MODE + bp->port*4, 0); + bnx2x_emac_enable(bp); + bnx2x_link_report(bp); + return 0; + + } else if (CHIP_REV(bp) == CHIP_REV_EMUL) { + bp->phy_flags |= PHY_BMAC_FLAG; + bp->link_up = 1; + bp->line_speed = SPEED_10000; + bp->duplex = DUPLEX_FULL; + NIG_WR(NIG_REG_EGRESS_DRAIN0_MODE + bp->port*4, 0); + bnx2x_bmac_enable(bp, 0); + bnx2x_link_report(bp); + return 0; + + } else { + bnx2x_phy_deassert(bp); + bnx2x_link_initialize(bp); + } + + return 0; +} + +static void bnx2x_link_reset(struct bnx2x *bp) +{ + int port = bp->port; + + /* disable attentions */ + bnx2x_bits_dis(bp, NIG_REG_MASK_INTERRUPT_PORT0 + port*4, + (NIG_MASK_XGXS0_LINK_STATUS | + NIG_MASK_XGXS0_LINK10G | + NIG_MASK_SERDES0_LINK_STATUS | + NIG_MASK_MI_INT)); + + bnx2x_ext_phy_reset(bp); + + /* reset the SerDes/XGXS */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_3_CLEAR, + (0x1ff << (port*16))); + + /* reset EMAC / BMAC and disable NIG interfaces */ + NIG_WR(NIG_REG_BMAC0_IN_EN + port*4, 0); + NIG_WR(NIG_REG_BMAC0_OUT_EN + port*4, 0); + + NIG_WR(NIG_REG_NIG_EMAC0_EN + port*4, 0); + NIG_WR(NIG_REG_EMAC0_IN_EN + port*4, 0); + NIG_WR(NIG_REG_EGRESS_EMAC0_OUT_EN + port*4, 0); + + NIG_WR(NIG_REG_EGRESS_DRAIN0_MODE + port*4, 1); +} + +#ifdef BNX2X_XGXS_LB +static void bnx2x_set_xgxs_loopback(struct bnx2x *bp, int is_10g) +{ + int port = bp->port; + + if (is_10g) { + u32 md_devad; + + DP(NETIF_MSG_LINK, "XGXS 10G loopback enable\n"); + + /* change the uni_phy_addr in the nig */ + REG_RD(bp, (NIG_REG_XGXS0_CTRL_MD_DEVAD + port*0x18), + &md_devad); + NIG_WR(NIG_REG_XGXS0_CTRL_MD_DEVAD + port*0x18, 0x5); + + /* change the aer mmd */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_AER_BLOCK); + bnx2x_mdio22_write(bp, MDIO_AER_BLOCK_AER_REG, 0x2800); + + /* config combo IEEE0 control reg for loopback */ + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_CL73_IEEEB0); + bnx2x_mdio22_write(bp, MDIO_CL73_IEEEB0_CL73_AN_CONTROL, + 0x6041); + + /* set aer mmd back */ + bnx2x_set_aer_mmd(bp); + + /* and md_devad */ + NIG_WR(NIG_REG_XGXS0_CTRL_MD_DEVAD + port*0x18, md_devad); + + } else { + u32 mii_control; + + DP(NETIF_MSG_LINK, "XGXS 1G loopback enable\n"); + + MDIO_SET_REG_BANK(bp, MDIO_REG_BANK_COMBO_IEEE0); + bnx2x_mdio22_read(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + &mii_control); + bnx2x_mdio22_write(bp, MDIO_COMBO_IEEE0_MII_CONTROL, + (mii_control | + MDIO_COMBO_IEEO_MII_CONTROL_LOOPBACK)); + } +} +#endif + +/* end of PHY/MAC */ + +/* slow path */ + +/* + * General service functions + */ + +/* the slow path queue is odd since completions arrive on the fastpath ring */ +static int bnx2x_sp_post(struct bnx2x *bp, int command, int cid, + u32 data_hi, u32 data_lo, int common) +{ + int port = bp->port; + + DP(NETIF_MSG_TIMER, + "spe (%x:%x) command %x hw_cid %x data (%x:%x) left %x\n", + (u32)U64_HI(bp->spq_mapping), (u32)(U64_LO(bp->spq_mapping) + + (void *)bp->spq_prod_bd - (void *)bp->spq), command, + HW_CID(bp, cid), data_hi, data_lo, bp->spq_left); + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return -EIO; +#endif + + spin_lock(&bp->spq_lock); + + if (!bp->spq_left) { + BNX2X_ERR("BUG! SPQ ring full!\n"); + spin_unlock(&bp->spq_lock); + bnx2x_panic(); + return -EBUSY; + } + /* CID needs port number to be encoded int it */ + bp->spq_prod_bd->hdr.conn_and_cmd_data = + cpu_to_le32(((command << SPE_HDR_CMD_ID_SHIFT) | + HW_CID(bp, cid))); + bp->spq_prod_bd->hdr.type = cpu_to_le16(ETH_CONNECTION_TYPE); + if (common) + bp->spq_prod_bd->hdr.type |= + cpu_to_le16((1 << SPE_HDR_COMMON_RAMROD_SHIFT)); + + bp->spq_prod_bd->data.mac_config_addr.hi = cpu_to_le32(data_hi); + bp->spq_prod_bd->data.mac_config_addr.lo = cpu_to_le32(data_lo); + + bp->spq_left--; + + if (bp->spq_prod_bd == bp->spq_last_bd) { + bp->spq_prod_bd = bp->spq; + bp->spq_prod_idx = 0; + DP(NETIF_MSG_TIMER, "end of spq\n"); + + } else { + bp->spq_prod_bd++; + bp->spq_prod_idx++; + } + + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_SPQ_PROD_OFFSET(port), + bp->spq_prod_idx); + + spin_unlock(&bp->spq_lock); + return 0; +} + +/* acquire split MCP access lock register */ +static int bnx2x_lock_alr(struct bnx2x *bp) +{ + int rc = 0; + u32 i, j, val; + + might_sleep(); + i = 100; + for (j = 0; j < i*10; j++) { + val = (1UL << 31); + REG_WR(bp, GRCBASE_MCP + 0x9c, val); + val = REG_RD(bp, GRCBASE_MCP + 0x9c); + if (val & (1L << 31)) + break; + + msleep(5); + } + + if (!(val & (1L << 31))) { + BNX2X_ERR("Cannot acquire nvram interface\n"); + + rc = -EBUSY; + } + + return rc; +} + +/* Release split MCP access lock register */ +static void bnx2x_unlock_alr(struct bnx2x *bp) +{ + u32 val = 0; + + REG_WR(bp, GRCBASE_MCP + 0x9c, val); +} + +static inline u16 bnx2x_update_dsb_idx(struct bnx2x *bp) +{ + struct host_def_status_block *def_sb = bp->def_status_blk; + u16 rc = 0; + + barrier(); /* status block is written to by the chip */ + + if (bp->def_att_idx != def_sb->atten_status_block.attn_bits_index) { + bp->def_att_idx = def_sb->atten_status_block.attn_bits_index; + rc |= 1; + } + if (bp->def_c_idx != def_sb->c_def_status_block.status_block_index) { + bp->def_c_idx = def_sb->c_def_status_block.status_block_index; + rc |= 2; + } + if (bp->def_u_idx != def_sb->u_def_status_block.status_block_index) { + bp->def_u_idx = def_sb->u_def_status_block.status_block_index; + rc |= 4; + } + if (bp->def_x_idx != def_sb->x_def_status_block.status_block_index) { + bp->def_x_idx = def_sb->x_def_status_block.status_block_index; + rc |= 8; + } + if (bp->def_t_idx != def_sb->t_def_status_block.status_block_index) { + bp->def_t_idx = def_sb->t_def_status_block.status_block_index; + rc |= 16; + } + return rc; +} + +/* + * slow path service functions + */ + +static void bnx2x_attn_int_asserted(struct bnx2x *bp, u32 asserted) +{ + int port = bp->port; + u32 igu_addr = (IGU_ADDR_ATTN_BITS_SET + IGU_PORT_BASE * port) * 8; + u32 aeu_addr = port ? MISC_REG_AEU_MASK_ATTN_FUNC_1 : + MISC_REG_AEU_MASK_ATTN_FUNC_0; + u32 nig_mask_addr = port ? NIG_REG_MASK_INTERRUPT_PORT1 : + NIG_REG_MASK_INTERRUPT_PORT0; + + if (~bp->aeu_mask & (asserted & 0xff)) + BNX2X_ERR("IGU ERROR\n"); + if (bp->attn_state & asserted) + BNX2X_ERR("IGU ERROR\n"); + + DP(NETIF_MSG_HW, "aeu_mask %x newly asserted %x\n", + bp->aeu_mask, asserted); + bp->aeu_mask &= ~(asserted & 0xff); + DP(NETIF_MSG_HW, "after masking: aeu_mask %x\n", bp->aeu_mask); + + REG_WR(bp, aeu_addr, bp->aeu_mask); + + bp->attn_state |= asserted; + + if (asserted & ATTN_HARD_WIRED_MASK) { + if (asserted & ATTN_NIG_FOR_FUNC) { + u32 nig_status_port; + u32 nig_int_addr = port ? + NIG_REG_STATUS_INTERRUPT_PORT1 : + NIG_REG_STATUS_INTERRUPT_PORT0; + + bp->nig_mask = REG_RD(bp, nig_mask_addr); + REG_WR(bp, nig_mask_addr, 0); + + nig_status_port = REG_RD(bp, nig_int_addr); + bnx2x_link_update(bp); + + /* handle unicore attn? */ + } + if (asserted & ATTN_SW_TIMER_4_FUNC) + DP(NETIF_MSG_HW, "ATTN_SW_TIMER_4_FUNC!\n"); + + if (asserted & GPIO_2_FUNC) + DP(NETIF_MSG_HW, "GPIO_2_FUNC!\n"); + + if (asserted & GPIO_3_FUNC) + DP(NETIF_MSG_HW, "GPIO_3_FUNC!\n"); + + if (asserted & GPIO_4_FUNC) + DP(NETIF_MSG_HW, "GPIO_4_FUNC!\n"); + + if (port == 0) { + if (asserted & ATTN_GENERAL_ATTN_1) { + DP(NETIF_MSG_HW, "ATTN_GENERAL_ATTN_1!\n"); + REG_WR(bp, MISC_REG_AEU_GENERAL_ATTN_1, 0x0); + } + if (asserted & ATTN_GENERAL_ATTN_2) { + DP(NETIF_MSG_HW, "ATTN_GENERAL_ATTN_2!\n"); + REG_WR(bp, MISC_REG_AEU_GENERAL_ATTN_2, 0x0); + } + if (asserted & ATTN_GENERAL_ATTN_3) { + DP(NETIF_MSG_HW, "ATTN_GENERAL_ATTN_3!\n"); + REG_WR(bp, MISC_REG_AEU_GENERAL_ATTN_3, 0x0); + } + } else { + if (asserted & ATTN_GENERAL_ATTN_4) { + DP(NETIF_MSG_HW, "ATTN_GENERAL_ATTN_4!\n"); + REG_WR(bp, MISC_REG_AEU_GENERAL_ATTN_4, 0x0); + } + if (asserted & ATTN_GENERAL_ATTN_5) { + DP(NETIF_MSG_HW, "ATTN_GENERAL_ATTN_5!\n"); + REG_WR(bp, MISC_REG_AEU_GENERAL_ATTN_5, 0x0); + } + if (asserted & ATTN_GENERAL_ATTN_6) { + DP(NETIF_MSG_HW, "ATTN_GENERAL_ATTN_6!\n"); + REG_WR(bp, MISC_REG_AEU_GENERAL_ATTN_6, 0x0); + } + } + + } /* if hardwired */ + + DP(NETIF_MSG_HW, "about to mask 0x%08x at IGU addr 0x%x\n", + asserted, BAR_IGU_INTMEM + igu_addr); + REG_WR(bp, BAR_IGU_INTMEM + igu_addr, asserted); + + /* now set back the mask */ + if (asserted & ATTN_NIG_FOR_FUNC) + REG_WR(bp, nig_mask_addr, bp->nig_mask); +} + +static void bnx2x_attn_int_deasserted(struct bnx2x *bp, u32 deasserted) +{ + int port = bp->port; + int index; + struct attn_route attn; + struct attn_route group_mask; + u32 reg_addr; + u32 val; + + /* need to take HW lock because MCP or other port might also + try to handle this event */ + bnx2x_lock_alr(bp); + + attn.sig[0] = REG_RD(bp, MISC_REG_AEU_AFTER_INVERT_1_FUNC_0 + port*4); + attn.sig[1] = REG_RD(bp, MISC_REG_AEU_AFTER_INVERT_2_FUNC_0 + port*4); + attn.sig[2] = REG_RD(bp, MISC_REG_AEU_AFTER_INVERT_3_FUNC_0 + port*4); + attn.sig[3] = REG_RD(bp, MISC_REG_AEU_AFTER_INVERT_4_FUNC_0 + port*4); + DP(NETIF_MSG_HW, "attn %llx\n", (unsigned long long)attn.sig[0]); + + for (index = 0; index < MAX_DYNAMIC_ATTN_GRPS; index++) { + if (deasserted & (1 << index)) { + group_mask = bp->attn_group[index]; + + DP(NETIF_MSG_HW, "group[%d]: %llx\n", index, + (unsigned long long)group_mask.sig[0]); + + if (attn.sig[3] & group_mask.sig[3] & + EVEREST_GEN_ATTN_IN_USE_MASK) { + + if (attn.sig[3] & BNX2X_MC_ASSERT_BITS) { + + BNX2X_ERR("MC assert!\n"); + bnx2x_panic(); + + } else if (attn.sig[3] & BNX2X_MCP_ASSERT) { + + BNX2X_ERR("MCP assert!\n"); + REG_WR(bp, + MISC_REG_AEU_GENERAL_ATTN_11, 0); + bnx2x_mc_assert(bp); + + } else { + BNX2X_ERR("UNKOWEN HW ASSERT!\n"); + } + } + + if (attn.sig[1] & group_mask.sig[1] & + BNX2X_DOORQ_ASSERT) { + + val = REG_RD(bp, DORQ_REG_DORQ_INT_STS_CLR); + BNX2X_ERR("DB hw attention 0x%x\n", val); + /* DORQ discard attention */ + if (val & 0x2) + BNX2X_ERR("FATAL error from DORQ\n"); + } + + if (attn.sig[2] & group_mask.sig[2] & + AEU_INPUTS_ATTN_BITS_CFC_HW_INTERRUPT) { + + val = REG_RD(bp, CFC_REG_CFC_INT_STS_CLR); + BNX2X_ERR("CFC hw attention 0x%x\n", val); + /* CFC error attention */ + if (val & 0x2) + BNX2X_ERR("FATAL error from CFC\n"); + } + + if (attn.sig[2] & group_mask.sig[2] & + AEU_INPUTS_ATTN_BITS_PXP_HW_INTERRUPT) { + + val = REG_RD(bp, PXP_REG_PXP_INT_STS_CLR_0); + BNX2X_ERR("PXP hw attention 0x%x\n", val); + /* RQ_USDMDP_FIFO_OVERFLOW */ + if (val & 0x18000) + BNX2X_ERR("FATAL error from PXP\n"); + } + + if (attn.sig[3] & group_mask.sig[3] & + EVEREST_LATCHED_ATTN_IN_USE_MASK) { + + REG_WR(bp, MISC_REG_AEU_CLR_LATCH_SIGNAL, + 0x7ff); + DP(NETIF_MSG_HW, "got latched bits 0x%x\n", + attn.sig[3]); + } + + if ((attn.sig[0] & group_mask.sig[0] & + HW_INTERRUT_ASSERT_SET_0) || + (attn.sig[1] & group_mask.sig[1] & + HW_INTERRUT_ASSERT_SET_1) || + (attn.sig[2] & group_mask.sig[2] & + HW_INTERRUT_ASSERT_SET_2)) + BNX2X_ERR("FATAL HW block attention\n"); + + if ((attn.sig[0] & group_mask.sig[0] & + HW_PRTY_ASSERT_SET_0) || + (attn.sig[1] & group_mask.sig[1] & + HW_PRTY_ASSERT_SET_1) || + (attn.sig[2] & group_mask.sig[2] & + HW_PRTY_ASSERT_SET_2)) + BNX2X_ERR("FATAL HW block parity atention\n"); + } + } + + bnx2x_unlock_alr(bp); + + reg_addr = (IGU_ADDR_ATTN_BITS_CLR + IGU_PORT_BASE * port) * 8; + + val = ~deasserted; +/* DP(NETIF_MSG_INTR, "write 0x%08x to IGU addr 0x%x\n", + val, BAR_IGU_INTMEM + reg_addr); */ + REG_WR(bp, BAR_IGU_INTMEM + reg_addr, val); + + if (bp->aeu_mask & (deasserted & 0xff)) + BNX2X_ERR("IGU BUG\n"); + if (~bp->attn_state & deasserted) + BNX2X_ERR("IGU BUG\n"); + + reg_addr = port ? MISC_REG_AEU_MASK_ATTN_FUNC_1 : + MISC_REG_AEU_MASK_ATTN_FUNC_0; + + DP(NETIF_MSG_HW, "aeu_mask %x\n", bp->aeu_mask); + bp->aeu_mask |= (deasserted & 0xff); + + DP(NETIF_MSG_HW, "new mask %x\n", bp->aeu_mask); + REG_WR(bp, reg_addr, bp->aeu_mask); + + DP(NETIF_MSG_HW, "attn_state %x\n", bp->attn_state); + bp->attn_state &= ~deasserted; + DP(NETIF_MSG_HW, "new state %x\n", bp->attn_state); +} + +static void bnx2x_attn_int(struct bnx2x *bp) +{ + /* read local copy of bits */ + u32 attn_bits = bp->def_status_blk->atten_status_block.attn_bits; + u32 attn_ack = bp->def_status_blk->atten_status_block.attn_bits_ack; + u32 attn_state = bp->attn_state; + + /* look for changed bits */ + u32 asserted = attn_bits & ~attn_ack & ~attn_state; + u32 deasserted = ~attn_bits & attn_ack & attn_state; + + DP(NETIF_MSG_HW, + "attn_bits %x attn_ack %x asserted %x deasserted %x\n", + attn_bits, attn_ack, asserted, deasserted); + + if (~(attn_bits ^ attn_ack) & (attn_bits ^ attn_state)) + BNX2X_ERR("bad attention state\n"); + + /* handle bits that were raised */ + if (asserted) + bnx2x_attn_int_asserted(bp, asserted); + + if (deasserted) + bnx2x_attn_int_deasserted(bp, deasserted); +} + +static void bnx2x_sp_task(struct work_struct *work) +{ + struct bnx2x *bp = container_of(work, struct bnx2x, sp_task); + u16 status; + + /* Return here if interrupt is disabled */ + if (unlikely(atomic_read(&bp->intr_sem) != 0)) { + DP(NETIF_MSG_INTR, "called but intr_sem not 0, returning\n"); + return; + } + + status = bnx2x_update_dsb_idx(bp); + if (status == 0) + BNX2X_ERR("spurious slowpath interrupt!\n"); + + DP(NETIF_MSG_INTR, "got a slowpath interrupt (updated %x)\n", status); + + if (status & 0x1) { + /* HW attentions */ + bnx2x_attn_int(bp); + } + + /* CStorm events: query_stats, cfc delete ramrods */ + if (status & 0x2) + bp->stat_pending = 0; + + bnx2x_ack_sb(bp, DEF_SB_ID, ATTENTION_ID, bp->def_att_idx, + IGU_INT_NOP, 1); + bnx2x_ack_sb(bp, DEF_SB_ID, USTORM_ID, le16_to_cpu(bp->def_u_idx), + IGU_INT_NOP, 1); + bnx2x_ack_sb(bp, DEF_SB_ID, CSTORM_ID, le16_to_cpu(bp->def_c_idx), + IGU_INT_NOP, 1); + bnx2x_ack_sb(bp, DEF_SB_ID, XSTORM_ID, le16_to_cpu(bp->def_x_idx), + IGU_INT_NOP, 1); + bnx2x_ack_sb(bp, DEF_SB_ID, TSTORM_ID, le16_to_cpu(bp->def_t_idx), + IGU_INT_ENABLE, 1); +} + +static irqreturn_t bnx2x_msix_sp_int(int irq, void *dev_instance) +{ + struct net_device *dev = dev_instance; + struct bnx2x *bp = netdev_priv(dev); + + /* Return here if interrupt is disabled */ + if (unlikely(atomic_read(&bp->intr_sem) != 0)) { + DP(NETIF_MSG_INTR, "called but intr_sem not 0, returning\n"); + return IRQ_HANDLED; + } + + bnx2x_ack_sb(bp, 16, XSTORM_ID, 0, IGU_INT_DISABLE, 0); + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return IRQ_HANDLED; +#endif + + schedule_work(&bp->sp_task); + + return IRQ_HANDLED; +} + +/* end of slow path */ + +/* Statistics */ + +/**************************************************************************** +* Macros +****************************************************************************/ + +#define UPDATE_STAT(s, t) \ + do { \ + estats->t += new->s - old->s; \ + old->s = new->s; \ + } while (0) + +/* sum[hi:lo] += add[hi:lo] */ +#define ADD_64(s_hi, a_hi, s_lo, a_lo) \ + do { \ + s_lo += a_lo; \ + s_hi += a_hi + (s_lo < a_lo) ? 1 : 0; \ + } while (0) + +/* difference = minuend - subtrahend */ +#define DIFF_64(d_hi, m_hi, s_hi, d_lo, m_lo, s_lo) \ + do { \ + if (m_lo < s_lo) { /* underflow */ \ + d_hi = m_hi - s_hi; \ + if (d_hi > 0) { /* we can 'loan' 1 */ \ + d_hi--; \ + d_lo = m_lo + (UINT_MAX - s_lo) + 1; \ + } else { /* m_hi <= s_hi */ \ + d_hi = 0; \ + d_lo = 0; \ + } \ + } else { /* m_lo >= s_lo */ \ + if (m_hi < s_hi) { \ + d_hi = 0; \ + d_lo = 0; \ + } else { /* m_hi >= s_hi */ \ + d_hi = m_hi - s_hi; \ + d_lo = m_lo - s_lo; \ + } \ + } \ + } while (0) + +/* minuend -= subtrahend */ +#define SUB_64(m_hi, s_hi, m_lo, s_lo) \ + do { \ + DIFF_64(m_hi, m_hi, s_hi, m_lo, m_lo, s_lo); \ + } while (0) + +#define UPDATE_STAT64(s_hi, t_hi, s_lo, t_lo) \ + do { \ + DIFF_64(diff.hi, new->s_hi, old->s_hi, \ + diff.lo, new->s_lo, old->s_lo); \ + old->s_hi = new->s_hi; \ + old->s_lo = new->s_lo; \ + ADD_64(estats->t_hi, diff.hi, \ + estats->t_lo, diff.lo); \ + } while (0) + +/* sum[hi:lo] += add */ +#define ADD_EXTEND_64(s_hi, s_lo, a) \ + do { \ + s_lo += a; \ + s_hi += (s_lo < a) ? 1 : 0; \ + } while (0) + +#define UPDATE_EXTEND_STAT(s, t_hi, t_lo) \ + do { \ + ADD_EXTEND_64(estats->t_hi, estats->t_lo, new->s); \ + } while (0) + +#define UPDATE_EXTEND_TSTAT(s, t_hi, t_lo) \ + do { \ + diff = le32_to_cpu(tclient->s) - old_tclient->s; \ + old_tclient->s = le32_to_cpu(tclient->s); \ + ADD_EXTEND_64(estats->t_hi, estats->t_lo, diff); \ + } while (0) + +/* + * General service functions + */ + +static inline long bnx2x_hilo(u32 *hiref) +{ + u32 lo = *(hiref + 1); +#if (BITS_PER_LONG == 64) + u32 hi = *hiref; + + return HILO_U64(hi, lo); +#else + return lo; +#endif +} + +/* + * Init service functions + */ + +static void bnx2x_init_mac_stats(struct bnx2x *bp) +{ + struct dmae_command *dmae; + int port = bp->port; + int loader_idx = port * 8; + u32 opcode; + u32 mac_addr; + + bp->executer_idx = 0; + if (bp->fw_mb) { + /* MCP */ + opcode = (DMAE_CMD_SRC_PCI | DMAE_CMD_DST_GRC | + DMAE_CMD_SRC_RESET | DMAE_CMD_DST_RESET | +#ifdef __BIG_ENDIAN + DMAE_CMD_ENDIANITY_B_DW_SWAP | +#else + DMAE_CMD_ENDIANITY_DW_SWAP | +#endif + (port ? DMAE_CMD_PORT_1 : DMAE_CMD_PORT_0)); + + if (bp->link_up) + opcode |= (DMAE_CMD_C_DST_GRC | DMAE_CMD_C_ENABLE); + + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = opcode; + dmae->src_addr_lo = U64_LO(bnx2x_sp_mapping(bp, eth_stats) + + sizeof(u32)); + dmae->src_addr_hi = U64_HI(bnx2x_sp_mapping(bp, eth_stats) + + sizeof(u32)); + dmae->dst_addr_lo = bp->fw_mb >> 2; + dmae->dst_addr_hi = 0; + dmae->len = (offsetof(struct bnx2x_eth_stats, mac_stx_end) - + sizeof(u32)) >> 2; + if (bp->link_up) { + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + } else { + dmae->comp_addr_lo = 0; + dmae->comp_addr_hi = 0; + dmae->comp_val = 0; + } + } + + if (!bp->link_up) { + /* no need to collect statistics in link down */ + return; + } + + opcode = (DMAE_CMD_SRC_GRC | DMAE_CMD_DST_PCI | + DMAE_CMD_C_DST_GRC | DMAE_CMD_C_ENABLE | + DMAE_CMD_SRC_RESET | DMAE_CMD_DST_RESET | +#ifdef __BIG_ENDIAN + DMAE_CMD_ENDIANITY_B_DW_SWAP | +#else + DMAE_CMD_ENDIANITY_DW_SWAP | +#endif + (port ? DMAE_CMD_PORT_1 : DMAE_CMD_PORT_0)); + + if (bp->phy_flags & PHY_BMAC_FLAG) { + + mac_addr = (port ? NIG_REG_INGRESS_BMAC1_MEM : + NIG_REG_INGRESS_BMAC0_MEM); + + /* BIGMAC_REGISTER_TX_STAT_GTPKT .. + BIGMAC_REGISTER_TX_STAT_GTBYT */ + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = opcode; + dmae->src_addr_lo = (mac_addr + + BIGMAC_REGISTER_TX_STAT_GTPKT) >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, mac_stats)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, mac_stats)); + dmae->len = (8 + BIGMAC_REGISTER_TX_STAT_GTBYT - + BIGMAC_REGISTER_TX_STAT_GTPKT) >> 2; + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + + /* BIGMAC_REGISTER_RX_STAT_GR64 .. + BIGMAC_REGISTER_RX_STAT_GRIPJ */ + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = opcode; + dmae->src_addr_lo = (mac_addr + + BIGMAC_REGISTER_RX_STAT_GR64) >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, mac_stats) + + offsetof(struct bmac_stats, rx_gr64)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, mac_stats) + + offsetof(struct bmac_stats, rx_gr64)); + dmae->len = (8 + BIGMAC_REGISTER_RX_STAT_GRIPJ - + BIGMAC_REGISTER_RX_STAT_GR64) >> 2; + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + + } else if (bp->phy_flags & PHY_EMAC_FLAG) { + + mac_addr = (port ? GRCBASE_EMAC1 : GRCBASE_EMAC0); + + /* EMAC_REG_EMAC_RX_STAT_AC (EMAC_REG_EMAC_RX_STAT_AC_COUNT)*/ + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = opcode; + dmae->src_addr_lo = (mac_addr + + EMAC_REG_EMAC_RX_STAT_AC) >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, mac_stats)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, mac_stats)); + dmae->len = EMAC_REG_EMAC_RX_STAT_AC_COUNT; + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + + /* EMAC_REG_EMAC_RX_STAT_AC_28 */ + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = opcode; + dmae->src_addr_lo = (mac_addr + + EMAC_REG_EMAC_RX_STAT_AC_28) >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, mac_stats) + + offsetof(struct emac_stats, + rx_falsecarriererrors)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, mac_stats) + + offsetof(struct emac_stats, + rx_falsecarriererrors)); + dmae->len = 1; + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + + /* EMAC_REG_EMAC_TX_STAT_AC (EMAC_REG_EMAC_TX_STAT_AC_COUNT)*/ + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = opcode; + dmae->src_addr_lo = (mac_addr + + EMAC_REG_EMAC_TX_STAT_AC) >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, mac_stats) + + offsetof(struct emac_stats, + tx_ifhcoutoctets)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, mac_stats) + + offsetof(struct emac_stats, + tx_ifhcoutoctets)); + dmae->len = EMAC_REG_EMAC_TX_STAT_AC_COUNT; + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + } + + /* NIG */ + dmae = bnx2x_sp(bp, dmae[bp->executer_idx++]); + dmae->opcode = (DMAE_CMD_SRC_GRC | DMAE_CMD_DST_PCI | + DMAE_CMD_C_DST_PCI | DMAE_CMD_C_ENABLE | + DMAE_CMD_SRC_RESET | DMAE_CMD_DST_RESET | +#ifdef __BIG_ENDIAN + DMAE_CMD_ENDIANITY_B_DW_SWAP | +#else + DMAE_CMD_ENDIANITY_DW_SWAP | +#endif + (port ? DMAE_CMD_PORT_1 : DMAE_CMD_PORT_0)); + dmae->src_addr_lo = (port ? NIG_REG_STAT1_BRB_DISCARD : + NIG_REG_STAT0_BRB_DISCARD) >> 2; + dmae->src_addr_hi = 0; + dmae->dst_addr_lo = U64_LO(bnx2x_sp_mapping(bp, nig)); + dmae->dst_addr_hi = U64_HI(bnx2x_sp_mapping(bp, nig)); + dmae->len = (sizeof(struct nig_stats) - 2*sizeof(u32)) >> 2; + dmae->comp_addr_lo = U64_LO(bnx2x_sp_mapping(bp, nig) + + offsetof(struct nig_stats, done)); + dmae->comp_addr_hi = U64_HI(bnx2x_sp_mapping(bp, nig) + + offsetof(struct nig_stats, done)); + dmae->comp_val = 0xffffffff; +} + +static void bnx2x_init_stats(struct bnx2x *bp) +{ + int port = bp->port; + + bp->stats_state = STATS_STATE_DISABLE; + bp->executer_idx = 0; + + bp->old_brb_discard = REG_RD(bp, + NIG_REG_STAT0_BRB_DISCARD + port*0x38); + + memset(&bp->old_bmac, 0, sizeof(struct bmac_stats)); + memset(&bp->old_tclient, 0, sizeof(struct tstorm_per_client_stats)); + memset(&bp->dev->stats, 0, sizeof(struct net_device_stats)); + + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_STATS_FLAGS_OFFSET(port), 1); + REG_WR(bp, BAR_XSTRORM_INTMEM + + XSTORM_STATS_FLAGS_OFFSET(port) + 4, 0); + + REG_WR(bp, BAR_TSTRORM_INTMEM + TSTORM_STATS_FLAGS_OFFSET(port), 1); + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_STATS_FLAGS_OFFSET(port) + 4, 0); + + REG_WR(bp, BAR_CSTRORM_INTMEM + CSTORM_STATS_FLAGS_OFFSET(port), 0); + REG_WR(bp, BAR_CSTRORM_INTMEM + + CSTORM_STATS_FLAGS_OFFSET(port) + 4, 0); + + REG_WR(bp, BAR_XSTRORM_INTMEM + + XSTORM_ETH_STATS_QUERY_ADDR_OFFSET(port), + U64_LO(bnx2x_sp_mapping(bp, fw_stats))); + REG_WR(bp, BAR_XSTRORM_INTMEM + + XSTORM_ETH_STATS_QUERY_ADDR_OFFSET(port) + 4, + U64_HI(bnx2x_sp_mapping(bp, fw_stats))); + + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_ETH_STATS_QUERY_ADDR_OFFSET(port), + U64_LO(bnx2x_sp_mapping(bp, fw_stats))); + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_ETH_STATS_QUERY_ADDR_OFFSET(port) + 4, + U64_HI(bnx2x_sp_mapping(bp, fw_stats))); +} + +static void bnx2x_stop_stats(struct bnx2x *bp) +{ + might_sleep(); + if (bp->stats_state != STATS_STATE_DISABLE) { + int timeout = 10; + + bp->stats_state = STATS_STATE_STOP; + DP(BNX2X_MSG_STATS, "stats_state - STOP\n"); + + while (bp->stats_state != STATS_STATE_DISABLE) { + if (!timeout) { + BNX2X_ERR("timeout wating for stats stop\n"); + break; + } + timeout--; + msleep(100); + } + } + DP(BNX2X_MSG_STATS, "stats_state - DISABLE\n"); +} + +/* + * Statistics service functions + */ + +static void bnx2x_update_bmac_stats(struct bnx2x *bp) +{ + struct regp diff; + struct regp sum; + struct bmac_stats *new = bnx2x_sp(bp, mac_stats.bmac); + struct bmac_stats *old = &bp->old_bmac; + struct bnx2x_eth_stats *estats = bnx2x_sp(bp, eth_stats); + + sum.hi = 0; + sum.lo = 0; + + UPDATE_STAT64(tx_gtbyt.hi, total_bytes_transmitted_hi, + tx_gtbyt.lo, total_bytes_transmitted_lo); + + UPDATE_STAT64(tx_gtmca.hi, total_multicast_packets_transmitted_hi, + tx_gtmca.lo, total_multicast_packets_transmitted_lo); + ADD_64(sum.hi, diff.hi, sum.lo, diff.lo); + + UPDATE_STAT64(tx_gtgca.hi, total_broadcast_packets_transmitted_hi, + tx_gtgca.lo, total_broadcast_packets_transmitted_lo); + ADD_64(sum.hi, diff.hi, sum.lo, diff.lo); + + UPDATE_STAT64(tx_gtpkt.hi, total_unicast_packets_transmitted_hi, + tx_gtpkt.lo, total_unicast_packets_transmitted_lo); + SUB_64(estats->total_unicast_packets_transmitted_hi, sum.hi, + estats->total_unicast_packets_transmitted_lo, sum.lo); + + UPDATE_STAT(tx_gtxpf.lo, pause_xoff_frames_transmitted); + UPDATE_STAT(tx_gt64.lo, frames_transmitted_64_bytes); + UPDATE_STAT(tx_gt127.lo, frames_transmitted_65_127_bytes); + UPDATE_STAT(tx_gt255.lo, frames_transmitted_128_255_bytes); + UPDATE_STAT(tx_gt511.lo, frames_transmitted_256_511_bytes); + UPDATE_STAT(tx_gt1023.lo, frames_transmitted_512_1023_bytes); + UPDATE_STAT(tx_gt1518.lo, frames_transmitted_1024_1522_bytes); + UPDATE_STAT(tx_gt2047.lo, frames_transmitted_1523_9022_bytes); + UPDATE_STAT(tx_gt4095.lo, frames_transmitted_1523_9022_bytes); + UPDATE_STAT(tx_gt9216.lo, frames_transmitted_1523_9022_bytes); + UPDATE_STAT(tx_gt16383.lo, frames_transmitted_1523_9022_bytes); + + UPDATE_STAT(rx_grfcs.lo, crc_receive_errors); + UPDATE_STAT(rx_grund.lo, runt_packets_received); + UPDATE_STAT(rx_grovr.lo, stat_Dot3statsFramesTooLong); + UPDATE_STAT(rx_grxpf.lo, pause_xoff_frames_received); + UPDATE_STAT(rx_grxcf.lo, control_frames_received); + /* UPDATE_STAT(rx_grxpf.lo, control_frames_received); */ + UPDATE_STAT(rx_grfrg.lo, error_runt_packets_received); + UPDATE_STAT(rx_grjbr.lo, error_jabber_packets_received); + + UPDATE_STAT64(rx_grerb.hi, stat_IfHCInBadOctets_hi, + rx_grerb.lo, stat_IfHCInBadOctets_lo); + UPDATE_STAT64(tx_gtufl.hi, stat_IfHCOutBadOctets_hi, + tx_gtufl.lo, stat_IfHCOutBadOctets_lo); + UPDATE_STAT(tx_gterr.lo, stat_Dot3statsInternalMacTransmitErrors); + /* UPDATE_STAT(rx_grxpf.lo, stat_XoffStateEntered); */ + estats->stat_XoffStateEntered = estats->pause_xoff_frames_received; +} + +static void bnx2x_update_emac_stats(struct bnx2x *bp) +{ + struct emac_stats *new = bnx2x_sp(bp, mac_stats.emac); + struct bnx2x_eth_stats *estats = bnx2x_sp(bp, eth_stats); + + UPDATE_EXTEND_STAT(tx_ifhcoutoctets, total_bytes_transmitted_hi, + total_bytes_transmitted_lo); + UPDATE_EXTEND_STAT(tx_ifhcoutucastpkts, + total_unicast_packets_transmitted_hi, + total_unicast_packets_transmitted_lo); + UPDATE_EXTEND_STAT(tx_ifhcoutmulticastpkts, + total_multicast_packets_transmitted_hi, + total_multicast_packets_transmitted_lo); + UPDATE_EXTEND_STAT(tx_ifhcoutbroadcastpkts, + total_broadcast_packets_transmitted_hi, + total_broadcast_packets_transmitted_lo); + + estats->pause_xon_frames_transmitted += new->tx_outxonsent; + estats->pause_xoff_frames_transmitted += new->tx_outxoffsent; + estats->single_collision_transmit_frames += + new->tx_dot3statssinglecollisionframes; + estats->multiple_collision_transmit_frames += + new->tx_dot3statsmultiplecollisionframes; + estats->late_collision_frames += new->tx_dot3statslatecollisions; + estats->excessive_collision_frames += + new->tx_dot3statsexcessivecollisions; + estats->frames_transmitted_64_bytes += new->tx_etherstatspkts64octets; + estats->frames_transmitted_65_127_bytes += + new->tx_etherstatspkts65octetsto127octets; + estats->frames_transmitted_128_255_bytes += + new->tx_etherstatspkts128octetsto255octets; + estats->frames_transmitted_256_511_bytes += + new->tx_etherstatspkts256octetsto511octets; + estats->frames_transmitted_512_1023_bytes += + new->tx_etherstatspkts512octetsto1023octets; + estats->frames_transmitted_1024_1522_bytes += + new->tx_etherstatspkts1024octetsto1522octet; + estats->frames_transmitted_1523_9022_bytes += + new->tx_etherstatspktsover1522octets; + + estats->crc_receive_errors += new->rx_dot3statsfcserrors; + estats->alignment_errors += new->rx_dot3statsalignmenterrors; + estats->false_carrier_detections += new->rx_falsecarriererrors; + estats->runt_packets_received += new->rx_etherstatsundersizepkts; + estats->stat_Dot3statsFramesTooLong += new->rx_dot3statsframestoolong; + estats->pause_xon_frames_received += new->rx_xonpauseframesreceived; + estats->pause_xoff_frames_received += new->rx_xoffpauseframesreceived; + estats->control_frames_received += new->rx_maccontrolframesreceived; + estats->error_runt_packets_received += new->rx_etherstatsfragments; + estats->error_jabber_packets_received += new->rx_etherstatsjabbers; + + UPDATE_EXTEND_STAT(rx_ifhcinbadoctets, stat_IfHCInBadOctets_hi, + stat_IfHCInBadOctets_lo); + UPDATE_EXTEND_STAT(tx_ifhcoutbadoctets, stat_IfHCOutBadOctets_hi, + stat_IfHCOutBadOctets_lo); + estats->stat_Dot3statsInternalMacTransmitErrors += + new->tx_dot3statsinternalmactransmiterrors; + estats->stat_Dot3StatsCarrierSenseErrors += + new->rx_dot3statscarriersenseerrors; + estats->stat_Dot3StatsDeferredTransmissions += + new->tx_dot3statsdeferredtransmissions; + estats->stat_FlowControlDone += new->tx_flowcontroldone; + estats->stat_XoffStateEntered += new->rx_xoffstateentered; +} + +static int bnx2x_update_storm_stats(struct bnx2x *bp) +{ + struct eth_stats_query *stats = bnx2x_sp(bp, fw_stats); + struct tstorm_common_stats *tstats = &stats->tstorm_common; + struct tstorm_per_client_stats *tclient = + &tstats->client_statistics[0]; + struct tstorm_per_client_stats *old_tclient = &bp->old_tclient; + struct xstorm_common_stats *xstats = &stats->xstorm_common; + struct nig_stats *nstats = bnx2x_sp(bp, nig); + struct bnx2x_eth_stats *estats = bnx2x_sp(bp, eth_stats); + u32 diff; + + /* are DMAE stats valid? */ + if (nstats->done != 0xffffffff) { + DP(BNX2X_MSG_STATS, "stats not updated by dmae\n"); + return -1; + } + + /* are storm stats valid? */ + if (tstats->done.hi != 0xffffffff) { + DP(BNX2X_MSG_STATS, "stats not updated by tstorm\n"); + return -2; + } + if (xstats->done.hi != 0xffffffff) { + DP(BNX2X_MSG_STATS, "stats not updated by xstorm\n"); + return -3; + } + + estats->total_bytes_received_hi = + estats->valid_bytes_received_hi = + le32_to_cpu(tclient->total_rcv_bytes.hi); + estats->total_bytes_received_lo = + estats->valid_bytes_received_lo = + le32_to_cpu(tclient->total_rcv_bytes.lo); + ADD_64(estats->total_bytes_received_hi, + le32_to_cpu(tclient->rcv_error_bytes.hi), + estats->total_bytes_received_lo, + le32_to_cpu(tclient->rcv_error_bytes.lo)); + + UPDATE_EXTEND_TSTAT(rcv_unicast_pkts, + total_unicast_packets_received_hi, + total_unicast_packets_received_lo); + UPDATE_EXTEND_TSTAT(rcv_multicast_pkts, + total_multicast_packets_received_hi, + total_multicast_packets_received_lo); + UPDATE_EXTEND_TSTAT(rcv_broadcast_pkts, + total_broadcast_packets_received_hi, + total_broadcast_packets_received_lo); + + estats->frames_received_64_bytes = MAC_STX_NA; + estats->frames_received_65_127_bytes = MAC_STX_NA; + estats->frames_received_128_255_bytes = MAC_STX_NA; + estats->frames_received_256_511_bytes = MAC_STX_NA; + estats->frames_received_512_1023_bytes = MAC_STX_NA; + estats->frames_received_1024_1522_bytes = MAC_STX_NA; + estats->frames_received_1523_9022_bytes = MAC_STX_NA; + + estats->x_total_sent_bytes_hi = + le32_to_cpu(xstats->total_sent_bytes.hi); + estats->x_total_sent_bytes_lo = + le32_to_cpu(xstats->total_sent_bytes.lo); + estats->x_total_sent_pkts = le32_to_cpu(xstats->total_sent_pkts); + + estats->t_rcv_unicast_bytes_hi = + le32_to_cpu(tclient->rcv_unicast_bytes.hi); + estats->t_rcv_unicast_bytes_lo = + le32_to_cpu(tclient->rcv_unicast_bytes.lo); + estats->t_rcv_broadcast_bytes_hi = + le32_to_cpu(tclient->rcv_broadcast_bytes.hi); + estats->t_rcv_broadcast_bytes_lo = + le32_to_cpu(tclient->rcv_broadcast_bytes.lo); + estats->t_rcv_multicast_bytes_hi = + le32_to_cpu(tclient->rcv_multicast_bytes.hi); + estats->t_rcv_multicast_bytes_lo = + le32_to_cpu(tclient->rcv_multicast_bytes.lo); + estats->t_total_rcv_pkt = le32_to_cpu(tclient->total_rcv_pkts); + + estats->checksum_discard = le32_to_cpu(tclient->checksum_discard); + estats->packets_too_big_discard = + le32_to_cpu(tclient->packets_too_big_discard); + estats->jabber_packets_received = estats->packets_too_big_discard + + estats->stat_Dot3statsFramesTooLong; + estats->no_buff_discard = le32_to_cpu(tclient->no_buff_discard); + estats->ttl0_discard = le32_to_cpu(tclient->ttl0_discard); + estats->mac_discard = le32_to_cpu(tclient->mac_discard); + estats->mac_filter_discard = le32_to_cpu(tstats->mac_filter_discard); + estats->xxoverflow_discard = le32_to_cpu(tstats->xxoverflow_discard); + estats->brb_truncate_discard = + le32_to_cpu(tstats->brb_truncate_discard); + + estats->brb_discard += nstats->brb_discard - bp->old_brb_discard; + bp->old_brb_discard = nstats->brb_discard; + + estats->brb_packet = nstats->brb_packet; + estats->brb_truncate = nstats->brb_truncate; + estats->flow_ctrl_discard = nstats->flow_ctrl_discard; + estats->flow_ctrl_octets = nstats->flow_ctrl_octets; + estats->flow_ctrl_packet = nstats->flow_ctrl_packet; + estats->mng_discard = nstats->mng_discard; + estats->mng_octet_inp = nstats->mng_octet_inp; + estats->mng_octet_out = nstats->mng_octet_out; + estats->mng_packet_inp = nstats->mng_packet_inp; + estats->mng_packet_out = nstats->mng_packet_out; + estats->pbf_octets = nstats->pbf_octets; + estats->pbf_packet = nstats->pbf_packet; + estats->safc_inp = nstats->safc_inp; + + xstats->done.hi = 0; + tstats->done.hi = 0; + nstats->done = 0; + + return 0; +} + +static void bnx2x_update_net_stats(struct bnx2x *bp) +{ + struct bnx2x_eth_stats *estats = bnx2x_sp(bp, eth_stats); + struct net_device_stats *nstats = &bp->dev->stats; + + nstats->rx_packets = + bnx2x_hilo(&estats->total_unicast_packets_received_hi) + + bnx2x_hilo(&estats->total_multicast_packets_received_hi) + + bnx2x_hilo(&estats->total_broadcast_packets_received_hi); + + nstats->tx_packets = + bnx2x_hilo(&estats->total_unicast_packets_transmitted_hi) + + bnx2x_hilo(&estats->total_multicast_packets_transmitted_hi) + + bnx2x_hilo(&estats->total_broadcast_packets_transmitted_hi); + + nstats->rx_bytes = bnx2x_hilo(&estats->total_bytes_received_hi); + + nstats->tx_bytes = + bnx2x_hilo(&estats->total_bytes_transmitted_hi); + + nstats->rx_dropped = estats->checksum_discard + + estats->mac_discard; + nstats->tx_dropped = 0; + + nstats->multicast = + bnx2x_hilo(&estats->total_multicast_packets_transmitted_hi); + + nstats->collisions = + estats->single_collision_transmit_frames + + estats->multiple_collision_transmit_frames + + estats->late_collision_frames + + estats->excessive_collision_frames; + + nstats->rx_length_errors = estats->runt_packets_received + + estats->jabber_packets_received; + nstats->rx_over_errors = estats->no_buff_discard; + nstats->rx_crc_errors = estats->crc_receive_errors; + nstats->rx_frame_errors = estats->alignment_errors; + nstats->rx_fifo_errors = estats->brb_discard + + estats->brb_truncate_discard; + nstats->rx_missed_errors = estats->xxoverflow_discard; + + nstats->rx_errors = nstats->rx_length_errors + + nstats->rx_over_errors + + nstats->rx_crc_errors + + nstats->rx_frame_errors + + nstats->rx_fifo_errors; + + nstats->tx_aborted_errors = estats->late_collision_frames + + estats->excessive_collision_frames; + nstats->tx_carrier_errors = estats->false_carrier_detections; + nstats->tx_fifo_errors = 0; + nstats->tx_heartbeat_errors = 0; + nstats->tx_window_errors = 0; + + nstats->tx_errors = nstats->tx_aborted_errors + + nstats->tx_carrier_errors; + + estats->mac_stx_start = ++estats->mac_stx_end; +} + +static void bnx2x_update_stats(struct bnx2x *bp) +{ + int i; + + if (!bnx2x_update_storm_stats(bp)) { + + if (bp->phy_flags & PHY_BMAC_FLAG) { + bnx2x_update_bmac_stats(bp); + + } else if (bp->phy_flags & PHY_EMAC_FLAG) { + bnx2x_update_emac_stats(bp); + + } else { /* unreached */ + BNX2X_ERR("no MAC active\n"); + return; + } + + bnx2x_update_net_stats(bp); + } + + if (bp->msglevel & NETIF_MSG_TIMER) { + struct bnx2x_eth_stats *estats = bnx2x_sp(bp, eth_stats); + struct net_device_stats *nstats = &bp->dev->stats; + + printk(KERN_DEBUG "%s:\n", bp->dev->name); + printk(KERN_DEBUG " tx avail (%4x) tx hc idx (%x)" + " tx pkt (%lx)\n", + bnx2x_tx_avail(bp->fp), + *bp->fp->tx_cons_sb, nstats->tx_packets); + printk(KERN_DEBUG " rx usage (%4x) rx hc idx (%x)" + " rx pkt (%lx)\n", + (u16)(*bp->fp->rx_cons_sb - bp->fp->rx_comp_cons), + *bp->fp->rx_cons_sb, nstats->rx_packets); + printk(KERN_DEBUG " %s (Xoff events %u) brb drops %u\n", + netif_queue_stopped(bp->dev)? "Xoff" : "Xon", + estats->driver_xoff, estats->brb_discard); + printk(KERN_DEBUG "tstats: checksum_discard %u " + "packets_too_big_discard %u no_buff_discard %u " + "mac_discard %u mac_filter_discard %u " + "xxovrflow_discard %u brb_truncate_discard %u " + "ttl0_discard %u\n", + estats->checksum_discard, + estats->packets_too_big_discard, + estats->no_buff_discard, estats->mac_discard, + estats->mac_filter_discard, estats->xxoverflow_discard, + estats->brb_truncate_discard, estats->ttl0_discard); + + for_each_queue(bp, i) { + printk(KERN_DEBUG "[%d]: %lu\t%lu\t%lu\n", i, + bnx2x_fp(bp, i, tx_pkt), + bnx2x_fp(bp, i, rx_pkt), + bnx2x_fp(bp, i, rx_calls)); + } + } + + if (bp->state != BNX2X_STATE_OPEN) { + DP(BNX2X_MSG_STATS, "state is %x, returning\n", bp->state); + return; + } + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return; +#endif + + /* loader */ + if (bp->executer_idx) { + struct dmae_command *dmae = &bp->dmae; + int port = bp->port; + int loader_idx = port * 8; + + memset(dmae, 0, sizeof(struct dmae_command)); + + dmae->opcode = (DMAE_CMD_SRC_PCI | DMAE_CMD_DST_GRC | + DMAE_CMD_C_DST_GRC | DMAE_CMD_C_ENABLE | + DMAE_CMD_DST_RESET | +#ifdef __BIG_ENDIAN + DMAE_CMD_ENDIANITY_B_DW_SWAP | +#else + DMAE_CMD_ENDIANITY_DW_SWAP | +#endif + (port ? DMAE_CMD_PORT_1 : DMAE_CMD_PORT_0)); + dmae->src_addr_lo = U64_LO(bnx2x_sp_mapping(bp, dmae[0])); + dmae->src_addr_hi = U64_HI(bnx2x_sp_mapping(bp, dmae[0])); + dmae->dst_addr_lo = (DMAE_REG_CMD_MEM + + sizeof(struct dmae_command) * + (loader_idx + 1)) >> 2; + dmae->dst_addr_hi = 0; + dmae->len = sizeof(struct dmae_command) >> 2; + dmae->len--; /* !!! for A0/1 only */ + dmae->comp_addr_lo = dmae_reg_go_c[loader_idx + 1] >> 2; + dmae->comp_addr_hi = 0; + dmae->comp_val = 1; + + bnx2x_post_dmae(bp, dmae, loader_idx); + } + + if (bp->stats_state != STATS_STATE_ENABLE) { + bp->stats_state = STATS_STATE_DISABLE; + return; + } + + if (bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_STAT_QUERY, 0, 0, 0, 0) == 0) { + /* stats ramrod has it's own slot on the spe */ + bp->spq_left++; + bp->stat_pending = 1; + } +} + +static void bnx2x_timer(unsigned long data) +{ + struct bnx2x *bp = (struct bnx2x *) data; + + if (!netif_running(bp->dev)) + return; + + if (atomic_read(&bp->intr_sem) != 0) + goto bnx2x_restart_timer; + + if (poll) { + struct bnx2x_fastpath *fp = &bp->fp[0]; + int rc; + + bnx2x_tx_int(fp, 1000); + rc = bnx2x_rx_int(fp, 1000); + } + + if (!nomcp && (bp->bc_ver >= 0x040003)) { + int port = bp->port; + u32 drv_pulse; + u32 mcp_pulse; + + ++bp->fw_drv_pulse_wr_seq; + bp->fw_drv_pulse_wr_seq &= DRV_PULSE_SEQ_MASK; + /* TBD - add SYSTEM_TIME */ + drv_pulse = bp->fw_drv_pulse_wr_seq; + SHMEM_WR(bp, drv_fw_mb[port].drv_pulse_mb, drv_pulse); + + mcp_pulse = (SHMEM_RD(bp, drv_fw_mb[port].mcp_pulse_mb) & + MCP_PULSE_SEQ_MASK); + /* The delta between driver pulse and mcp response + * should be 1 (before mcp response) or 0 (after mcp response) + */ + if ((drv_pulse != mcp_pulse) && + (drv_pulse != ((mcp_pulse + 1) & MCP_PULSE_SEQ_MASK))) { + /* someone lost a heartbeat... */ + BNX2X_ERR("drv_pulse (0x%x) != mcp_pulse (0x%x)\n", + drv_pulse, mcp_pulse); + } + } + + if (bp->stats_state == STATS_STATE_DISABLE) + goto bnx2x_restart_timer; + + bnx2x_update_stats(bp); + +bnx2x_restart_timer: + mod_timer(&bp->timer, jiffies + bp->current_interval); +} + +/* end of Statistics */ + +/* nic init */ + +/* + * nic init service functions + */ + +static void bnx2x_init_sb(struct bnx2x *bp, struct host_status_block *sb, + dma_addr_t mapping, int id) +{ + int port = bp->port; + u64 section; + int index; + + /* USTORM */ + section = ((u64)mapping) + offsetof(struct host_status_block, + u_status_block); + sb->u_status_block.status_block_id = id; + + REG_WR(bp, BAR_USTRORM_INTMEM + + USTORM_SB_HOST_SB_ADDR_OFFSET(port, id), U64_LO(section)); + REG_WR(bp, BAR_USTRORM_INTMEM + + ((USTORM_SB_HOST_SB_ADDR_OFFSET(port, id)) + 4), + U64_HI(section)); + + for (index = 0; index < HC_USTORM_SB_NUM_INDICES; index++) + REG_WR16(bp, BAR_USTRORM_INTMEM + + USTORM_SB_HC_DISABLE_OFFSET(port, id, index), 0x1); + + /* CSTORM */ + section = ((u64)mapping) + offsetof(struct host_status_block, + c_status_block); + sb->c_status_block.status_block_id = id; + + REG_WR(bp, BAR_CSTRORM_INTMEM + + CSTORM_SB_HOST_SB_ADDR_OFFSET(port, id), U64_LO(section)); + REG_WR(bp, BAR_CSTRORM_INTMEM + + ((CSTORM_SB_HOST_SB_ADDR_OFFSET(port, id)) + 4), + U64_HI(section)); + + for (index = 0; index < HC_CSTORM_SB_NUM_INDICES; index++) + REG_WR16(bp, BAR_CSTRORM_INTMEM + + CSTORM_SB_HC_DISABLE_OFFSET(port, id, index), 0x1); + + bnx2x_ack_sb(bp, id, CSTORM_ID, 0, IGU_INT_ENABLE, 0); +} + +static void bnx2x_init_def_sb(struct bnx2x *bp, + struct host_def_status_block *def_sb, + dma_addr_t mapping, int id) +{ + int port = bp->port; + int index, val, reg_offset; + u64 section; + + /* ATTN */ + section = ((u64)mapping) + offsetof(struct host_def_status_block, + atten_status_block); + def_sb->atten_status_block.status_block_id = id; + + reg_offset = (port ? MISC_REG_AEU_ENABLE1_FUNC_1_OUT_0 : + MISC_REG_AEU_ENABLE1_FUNC_0_OUT_0); + + for (index = 0; index < 3; index++) { + bp->attn_group[index].sig[0] = REG_RD(bp, + reg_offset + 0x10*index); + bp->attn_group[index].sig[1] = REG_RD(bp, + reg_offset + 0x4 + 0x10*index); + bp->attn_group[index].sig[2] = REG_RD(bp, + reg_offset + 0x8 + 0x10*index); + bp->attn_group[index].sig[3] = REG_RD(bp, + reg_offset + 0xc + 0x10*index); + } + + bp->aeu_mask = REG_RD(bp, (port ? MISC_REG_AEU_MASK_ATTN_FUNC_1 : + MISC_REG_AEU_MASK_ATTN_FUNC_0)); + + reg_offset = (port ? HC_REG_ATTN_MSG1_ADDR_L : + HC_REG_ATTN_MSG0_ADDR_L); + + REG_WR(bp, reg_offset, U64_LO(section)); + REG_WR(bp, reg_offset + 4, U64_HI(section)); + + reg_offset = (port ? HC_REG_ATTN_NUM_P1 : HC_REG_ATTN_NUM_P0); + + val = REG_RD(bp, reg_offset); + val |= id; + REG_WR(bp, reg_offset, val); + + /* USTORM */ + section = ((u64)mapping) + offsetof(struct host_def_status_block, + u_def_status_block); + def_sb->u_def_status_block.status_block_id = id; + + REG_WR(bp, BAR_USTRORM_INTMEM + + USTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port), U64_LO(section)); + REG_WR(bp, BAR_USTRORM_INTMEM + + ((USTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)) + 4), + U64_HI(section)); + REG_WR(bp, BAR_USTRORM_INTMEM + USTORM_HC_BTR_OFFSET(port), + BNX2X_BTR); + + for (index = 0; index < HC_USTORM_DEF_SB_NUM_INDICES; index++) + REG_WR16(bp, BAR_USTRORM_INTMEM + + USTORM_DEF_SB_HC_DISABLE_OFFSET(port, index), 0x1); + + /* CSTORM */ + section = ((u64)mapping) + offsetof(struct host_def_status_block, + c_def_status_block); + def_sb->c_def_status_block.status_block_id = id; + + REG_WR(bp, BAR_CSTRORM_INTMEM + + CSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port), U64_LO(section)); + REG_WR(bp, BAR_CSTRORM_INTMEM + + ((CSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)) + 4), + U64_HI(section)); + REG_WR(bp, BAR_CSTRORM_INTMEM + CSTORM_HC_BTR_OFFSET(port), + BNX2X_BTR); + + for (index = 0; index < HC_CSTORM_DEF_SB_NUM_INDICES; index++) + REG_WR16(bp, BAR_CSTRORM_INTMEM + + CSTORM_DEF_SB_HC_DISABLE_OFFSET(port, index), 0x1); + + /* TSTORM */ + section = ((u64)mapping) + offsetof(struct host_def_status_block, + t_def_status_block); + def_sb->t_def_status_block.status_block_id = id; + + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port), U64_LO(section)); + REG_WR(bp, BAR_TSTRORM_INTMEM + + ((TSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)) + 4), + U64_HI(section)); + REG_WR(bp, BAR_TSTRORM_INTMEM + TSTORM_HC_BTR_OFFSET(port), + BNX2X_BTR); + + for (index = 0; index < HC_TSTORM_DEF_SB_NUM_INDICES; index++) + REG_WR16(bp, BAR_TSTRORM_INTMEM + + TSTORM_DEF_SB_HC_DISABLE_OFFSET(port, index), 0x1); + + /* XSTORM */ + section = ((u64)mapping) + offsetof(struct host_def_status_block, + x_def_status_block); + def_sb->x_def_status_block.status_block_id = id; + + REG_WR(bp, BAR_XSTRORM_INTMEM + + XSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port), U64_LO(section)); + REG_WR(bp, BAR_XSTRORM_INTMEM + + ((XSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)) + 4), + U64_HI(section)); + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_HC_BTR_OFFSET(port), + BNX2X_BTR); + + for (index = 0; index < HC_XSTORM_DEF_SB_NUM_INDICES; index++) + REG_WR16(bp, BAR_XSTRORM_INTMEM + + XSTORM_DEF_SB_HC_DISABLE_OFFSET(port, index), 0x1); + + bnx2x_ack_sb(bp, id, CSTORM_ID, 0, IGU_INT_ENABLE, 0); +} + +static void bnx2x_update_coalesce(struct bnx2x *bp) +{ + int port = bp->port; + int i; + + for_each_queue(bp, i) { + + /* HC_INDEX_U_ETH_RX_CQ_CONS */ + REG_WR8(bp, BAR_USTRORM_INTMEM + + USTORM_SB_HC_TIMEOUT_OFFSET(port, i, + HC_INDEX_U_ETH_RX_CQ_CONS), + bp->rx_ticks_int/12); + REG_WR16(bp, BAR_USTRORM_INTMEM + + USTORM_SB_HC_DISABLE_OFFSET(port, i, + HC_INDEX_U_ETH_RX_CQ_CONS), + bp->rx_ticks_int ? 0 : 1); + + /* HC_INDEX_C_ETH_TX_CQ_CONS */ + REG_WR8(bp, BAR_CSTRORM_INTMEM + + CSTORM_SB_HC_TIMEOUT_OFFSET(port, i, + HC_INDEX_C_ETH_TX_CQ_CONS), + bp->tx_ticks_int/12); + REG_WR16(bp, BAR_CSTRORM_INTMEM + + CSTORM_SB_HC_DISABLE_OFFSET(port, i, + HC_INDEX_C_ETH_TX_CQ_CONS), + bp->tx_ticks_int ? 0 : 1); + } +} + +static void bnx2x_init_rx_rings(struct bnx2x *bp) +{ + u16 ring_prod; + int i, j; + int port = bp->port; + + bp->rx_buf_use_size = bp->dev->mtu; + + bp->rx_buf_use_size += bp->rx_offset + ETH_OVREHEAD; + bp->rx_buf_size = bp->rx_buf_use_size + 64; + + for_each_queue(bp, j) { + struct bnx2x_fastpath *fp = &bp->fp[j]; + + fp->rx_bd_cons = 0; + fp->rx_cons_sb = BNX2X_RX_SB_INDEX; + + for (i = 1; i <= NUM_RX_RINGS; i++) { + struct eth_rx_bd *rx_bd; + + rx_bd = &fp->rx_desc_ring[RX_DESC_CNT * i - 2]; + rx_bd->addr_hi = + cpu_to_le32(U64_HI(fp->rx_desc_mapping + + BCM_PAGE_SIZE*(i % NUM_RX_RINGS))); + rx_bd->addr_lo = + cpu_to_le32(U64_LO(fp->rx_desc_mapping + + BCM_PAGE_SIZE*(i % NUM_RX_RINGS))); + + } + + for (i = 1; i <= NUM_RCQ_RINGS; i++) { + struct eth_rx_cqe_next_page *nextpg; + + nextpg = (struct eth_rx_cqe_next_page *) + &fp->rx_comp_ring[RCQ_DESC_CNT * i - 1]; + nextpg->addr_hi = + cpu_to_le32(U64_HI(fp->rx_comp_mapping + + BCM_PAGE_SIZE*(i % NUM_RCQ_RINGS))); + nextpg->addr_lo = + cpu_to_le32(U64_LO(fp->rx_comp_mapping + + BCM_PAGE_SIZE*(i % NUM_RCQ_RINGS))); + } + + /* rx completion queue */ + fp->rx_comp_cons = ring_prod = 0; + + for (i = 0; i < bp->rx_ring_size; i++) { + if (bnx2x_alloc_rx_skb(bp, fp, ring_prod) < 0) { + BNX2X_ERR("was only able to allocate " + "%d rx skbs\n", i); + break; + } + ring_prod = NEXT_RX_IDX(ring_prod); + BUG_TRAP(ring_prod > i); + } + + fp->rx_bd_prod = fp->rx_comp_prod = ring_prod; + fp->rx_pkt = fp->rx_calls = 0; + + /* Warning! this will genrate an interrupt (to the TSTORM) */ + /* must only be done when chip is initialized */ + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_RCQ_PROD_OFFSET(port, j), ring_prod); + if (j != 0) + continue; + + REG_WR(bp, BAR_USTRORM_INTMEM + + USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(port), + U64_LO(fp->rx_comp_mapping)); + REG_WR(bp, BAR_USTRORM_INTMEM + + USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(port) + 4, + U64_HI(fp->rx_comp_mapping)); + } +} + +static void bnx2x_init_tx_ring(struct bnx2x *bp) +{ + int i, j; + + for_each_queue(bp, j) { + struct bnx2x_fastpath *fp = &bp->fp[j]; + + for (i = 1; i <= NUM_TX_RINGS; i++) { + struct eth_tx_bd *tx_bd = + &fp->tx_desc_ring[TX_DESC_CNT * i - 1]; + + tx_bd->addr_hi = + cpu_to_le32(U64_HI(fp->tx_desc_mapping + + BCM_PAGE_SIZE*(i % NUM_TX_RINGS))); + tx_bd->addr_lo = + cpu_to_le32(U64_LO(fp->tx_desc_mapping + + BCM_PAGE_SIZE*(i % NUM_TX_RINGS))); + } + + fp->tx_pkt_prod = 0; + fp->tx_pkt_cons = 0; + fp->tx_bd_prod = 0; + fp->tx_bd_cons = 0; + fp->tx_cons_sb = BNX2X_TX_SB_INDEX; + fp->tx_pkt = 0; + } +} + +static void bnx2x_init_sp_ring(struct bnx2x *bp) +{ + int port = bp->port; + + spin_lock_init(&bp->spq_lock); + + bp->spq_left = MAX_SPQ_PENDING; + bp->spq_prod_idx = 0; + bp->dsb_sp_prod_idx = 0; + bp->dsb_sp_prod = BNX2X_SP_DSB_INDEX; + bp->spq_prod_bd = bp->spq; + bp->spq_last_bd = bp->spq_prod_bd + MAX_SP_DESC_CNT; + + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_SPQ_PAGE_BASE_OFFSET(port), + U64_LO(bp->spq_mapping)); + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_SPQ_PAGE_BASE_OFFSET(port) + 4, + U64_HI(bp->spq_mapping)); + + REG_WR(bp, XSEM_REG_FAST_MEMORY + XSTORM_SPQ_PROD_OFFSET(port), + bp->spq_prod_idx); +} + +static void bnx2x_init_context(struct bnx2x *bp) +{ + int i; + + for_each_queue(bp, i) { + struct eth_context *context = bnx2x_sp(bp, context[i].eth); + struct bnx2x_fastpath *fp = &bp->fp[i]; + + context->xstorm_st_context.tx_bd_page_base_hi = + U64_HI(fp->tx_desc_mapping); + context->xstorm_st_context.tx_bd_page_base_lo = + U64_LO(fp->tx_desc_mapping); + context->xstorm_st_context.db_data_addr_hi = + U64_HI(fp->tx_prods_mapping); + context->xstorm_st_context.db_data_addr_lo = + U64_LO(fp->tx_prods_mapping); + + context->ustorm_st_context.rx_bd_page_base_hi = + U64_HI(fp->rx_desc_mapping); + context->ustorm_st_context.rx_bd_page_base_lo = + U64_LO(fp->rx_desc_mapping); + context->ustorm_st_context.status_block_id = i; + context->ustorm_st_context.sb_index_number = + HC_INDEX_U_ETH_RX_CQ_CONS; + context->ustorm_st_context.rcq_base_address_hi = + U64_HI(fp->rx_comp_mapping); + context->ustorm_st_context.rcq_base_address_lo = + U64_LO(fp->rx_comp_mapping); + context->ustorm_st_context.flags = + USTORM_ETH_ST_CONTEXT_ENABLE_MC_ALIGNMENT; + context->ustorm_st_context.mc_alignment_size = 64; + context->ustorm_st_context.num_rss = bp->num_queues; + + context->cstorm_st_context.sb_index_number = + HC_INDEX_C_ETH_TX_CQ_CONS; + context->cstorm_st_context.status_block_id = i; + + context->xstorm_ag_context.cdu_reserved = + CDU_RSRVD_VALUE_TYPE_A(HW_CID(bp, i), + CDU_REGION_NUMBER_XCM_AG, + ETH_CONNECTION_TYPE); + context->ustorm_ag_context.cdu_usage = + CDU_RSRVD_VALUE_TYPE_A(HW_CID(bp, i), + CDU_REGION_NUMBER_UCM_AG, + ETH_CONNECTION_TYPE); + } +} + +static void bnx2x_init_ind_table(struct bnx2x *bp) +{ + int port = bp->port; + int i; + + if (!is_multi(bp)) + return; + + for (i = 0; i < TSTORM_INDIRECTION_TABLE_SIZE; i++) + REG_WR8(bp, TSTORM_INDIRECTION_TABLE_OFFSET(port) + i, + i % bp->num_queues); + + REG_WR(bp, PRS_REG_A_PRSU_20, 0xf); +} + +static void bnx2x_set_storm_rx_mode(struct bnx2x *bp) +{ + int mode = bp->rx_mode; + int port = bp->port; + struct tstorm_eth_mac_filter_config tstorm_mac_filter = {0}; + int i; + + DP(NETIF_MSG_RX_STATUS, "rx mode is %d\n", mode); + + switch (mode) { + case BNX2X_RX_MODE_NONE: /* no Rx */ + tstorm_mac_filter.ucast_drop_all = 1; + tstorm_mac_filter.mcast_drop_all = 1; + tstorm_mac_filter.bcast_drop_all = 1; + break; + case BNX2X_RX_MODE_NORMAL: + tstorm_mac_filter.bcast_accept_all = 1; + break; + case BNX2X_RX_MODE_ALLMULTI: + tstorm_mac_filter.mcast_accept_all = 1; + tstorm_mac_filter.bcast_accept_all = 1; + break; + case BNX2X_RX_MODE_PROMISC: + tstorm_mac_filter.ucast_accept_all = 1; + tstorm_mac_filter.mcast_accept_all = 1; + tstorm_mac_filter.bcast_accept_all = 1; + break; + default: + BNX2X_ERR("bad rx mode (%d)\n", mode); + } + + for (i = 0; i < sizeof(struct tstorm_eth_mac_filter_config)/4; i++) { + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_MAC_FILTER_CONFIG_OFFSET(port) + i * 4, + ((u32 *)&tstorm_mac_filter)[i]); + +/* DP(NETIF_MSG_IFUP, "tstorm_mac_filter[%d]: 0x%08x\n", i, + ((u32 *)&tstorm_mac_filter)[i]); */ + } +} + +static void bnx2x_set_client_config(struct bnx2x *bp, int client_id) +{ +#ifdef BCM_VLAN + int mode = bp->rx_mode; +#endif + int port = bp->port; + struct tstorm_eth_client_config tstorm_client = {0}; + + tstorm_client.mtu = bp->dev->mtu; + tstorm_client.statistics_counter_id = 0; + tstorm_client.config_flags = + TSTORM_ETH_CLIENT_CONFIG_STATSITICS_ENABLE; +#ifdef BCM_VLAN + if (mode && bp->vlgrp) { + tstorm_client.config_flags |= + TSTORM_ETH_CLIENT_CONFIG_VLAN_REMOVAL_ENABLE; + DP(NETIF_MSG_IFUP, "vlan removal enabled\n"); + } +#endif + tstorm_client.drop_flags = (TSTORM_ETH_CLIENT_CONFIG_DROP_IP_CS_ERR | + TSTORM_ETH_CLIENT_CONFIG_DROP_TCP_CS_ERR | + TSTORM_ETH_CLIENT_CONFIG_DROP_UDP_CS_ERR | + TSTORM_ETH_CLIENT_CONFIG_DROP_MAC_ERR); + + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_CLIENT_CONFIG_OFFSET(port, client_id), + ((u32 *)&tstorm_client)[0]); + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_CLIENT_CONFIG_OFFSET(port, client_id) + 4, + ((u32 *)&tstorm_client)[1]); + +/* DP(NETIF_MSG_IFUP, "tstorm_client: 0x%08x 0x%08x\n", + ((u32 *)&tstorm_client)[0], ((u32 *)&tstorm_client)[1]); */ +} + +static void bnx2x_init_internal(struct bnx2x *bp) +{ + int port = bp->port; + struct tstorm_eth_function_common_config tstorm_config = {0}; + struct stats_indication_flags stats_flags = {0}; + int i; + + if (is_multi(bp)) { + tstorm_config.config_flags = MULTI_FLAGS; + tstorm_config.rss_result_mask = MULTI_MASK; + } + + REG_WR(bp, BAR_TSTRORM_INTMEM + + TSTORM_FUNCTION_COMMON_CONFIG_OFFSET(port), + (*(u32 *)&tstorm_config)); + +/* DP(NETIF_MSG_IFUP, "tstorm_config: 0x%08x\n", + (*(u32 *)&tstorm_config)); */ + + bp->rx_mode = BNX2X_RX_MODE_NONE; /* no rx untill link is up */ + bnx2x_set_storm_rx_mode(bp); + + for_each_queue(bp, i) + bnx2x_set_client_config(bp, i); + + + stats_flags.collect_eth = cpu_to_le32(1); + + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_STATS_FLAGS_OFFSET(port), + ((u32 *)&stats_flags)[0]); + REG_WR(bp, BAR_XSTRORM_INTMEM + XSTORM_STATS_FLAGS_OFFSET(port) + 4, + ((u32 *)&stats_flags)[1]); + + REG_WR(bp, BAR_TSTRORM_INTMEM + TSTORM_STATS_FLAGS_OFFSET(port), + ((u32 *)&stats_flags)[0]); + REG_WR(bp, BAR_TSTRORM_INTMEM + TSTORM_STATS_FLAGS_OFFSET(port) + 4, + ((u32 *)&stats_flags)[1]); + + REG_WR(bp, BAR_CSTRORM_INTMEM + CSTORM_STATS_FLAGS_OFFSET(port), + ((u32 *)&stats_flags)[0]); + REG_WR(bp, BAR_CSTRORM_INTMEM + CSTORM_STATS_FLAGS_OFFSET(port) + 4, + ((u32 *)&stats_flags)[1]); + +/* DP(NETIF_MSG_IFUP, "stats_flags: 0x%08x 0x%08x\n", + ((u32 *)&stats_flags)[0], ((u32 *)&stats_flags)[1]); */ +} + +static void bnx2x_nic_init(struct bnx2x *bp) +{ + int i; + + for_each_queue(bp, i) { + struct bnx2x_fastpath *fp = &bp->fp[i]; + + fp->state = BNX2X_FP_STATE_CLOSED; + DP(NETIF_MSG_IFUP, "bnx2x_init_sb(%p,%p,%d);\n", + bp, fp->status_blk, i); + fp->index = i; + bnx2x_init_sb(bp, fp->status_blk, fp->status_blk_mapping, i); + } + + bnx2x_init_def_sb(bp, bp->def_status_blk, + bp->def_status_blk_mapping, 0x10); + bnx2x_update_coalesce(bp); + bnx2x_init_rx_rings(bp); + bnx2x_init_tx_ring(bp); + bnx2x_init_sp_ring(bp); + bnx2x_init_context(bp); + bnx2x_init_internal(bp); + bnx2x_init_stats(bp); + bnx2x_init_ind_table(bp); + bnx2x_enable_int(bp); + +} + +/* end of nic init */ + +/* + * gzip service functions + */ + +static int bnx2x_gunzip_init(struct bnx2x *bp) +{ + bp->gunzip_buf = pci_alloc_consistent(bp->pdev, FW_BUF_SIZE, + &bp->gunzip_mapping); + if (bp->gunzip_buf == NULL) + goto gunzip_nomem1; + + bp->strm = kmalloc(sizeof(*bp->strm), GFP_KERNEL); + if (bp->strm == NULL) + goto gunzip_nomem2; + + bp->strm->workspace = kmalloc(zlib_inflate_workspacesize(), + GFP_KERNEL); + if (bp->strm->workspace == NULL) + goto gunzip_nomem3; + + return 0; + +gunzip_nomem3: + kfree(bp->strm); + bp->strm = NULL; + +gunzip_nomem2: + pci_free_consistent(bp->pdev, FW_BUF_SIZE, bp->gunzip_buf, + bp->gunzip_mapping); + bp->gunzip_buf = NULL; + +gunzip_nomem1: + printk(KERN_ERR PFX "%s: Cannot allocate firmware buffer for" + " uncompression\n", bp->dev->name); + return -ENOMEM; +} + +static void bnx2x_gunzip_end(struct bnx2x *bp) +{ + kfree(bp->strm->workspace); + + kfree(bp->strm); + bp->strm = NULL; + + if (bp->gunzip_buf) { + pci_free_consistent(bp->pdev, FW_BUF_SIZE, bp->gunzip_buf, + bp->gunzip_mapping); + bp->gunzip_buf = NULL; + } +} + +static int bnx2x_gunzip(struct bnx2x *bp, u8 *zbuf, int len) +{ + int n, rc; + + /* check gzip header */ + if ((zbuf[0] != 0x1f) || (zbuf[1] != 0x8b) || (zbuf[2] != Z_DEFLATED)) + return -EINVAL; + + n = 10; + +#define FNAME 0x8 + + if (zbuf[3] & FNAME) + while ((zbuf[n++] != 0) && (n < len)); + + bp->strm->next_in = zbuf + n; + bp->strm->avail_in = len - n; + bp->strm->next_out = bp->gunzip_buf; + bp->strm->avail_out = FW_BUF_SIZE; + + rc = zlib_inflateInit2(bp->strm, -MAX_WBITS); + if (rc != Z_OK) + return rc; + + rc = zlib_inflate(bp->strm, Z_FINISH); + if ((rc != Z_OK) && (rc != Z_STREAM_END)) + printk(KERN_ERR PFX "%s: Firmware decompression error: %s\n", + bp->dev->name, bp->strm->msg); + + bp->gunzip_outlen = (FW_BUF_SIZE - bp->strm->avail_out); + if (bp->gunzip_outlen & 0x3) + printk(KERN_ERR PFX "%s: Firmware decompression error:" + " gunzip_outlen (%d) not aligned\n", + bp->dev->name, bp->gunzip_outlen); + bp->gunzip_outlen >>= 2; + + zlib_inflateEnd(bp->strm); + + if (rc == Z_STREAM_END) + return 0; + + return rc; +} + +/* nic load/unload */ + +/* + * general service functions + */ + +/* send a NIG loopback debug packet */ +static void bnx2x_lb_pckt(struct bnx2x *bp) +{ +#ifdef USE_DMAE + u32 wb_write[3]; +#endif + + /* Ethernet source and destination addresses */ +#ifdef USE_DMAE + wb_write[0] = 0x55555555; + wb_write[1] = 0x55555555; + wb_write[2] = 0x20; /* SOP */ + REG_WR_DMAE(bp, NIG_REG_DEBUG_PACKET_LB, wb_write, 3); +#else + REG_WR_IND(bp, NIG_REG_DEBUG_PACKET_LB, 0x55555555); + REG_WR_IND(bp, NIG_REG_DEBUG_PACKET_LB + 4, 0x55555555); + /* SOP */ + REG_WR_IND(bp, NIG_REG_DEBUG_PACKET_LB + 8, 0x20); +#endif + + /* NON-IP protocol */ +#ifdef USE_DMAE + wb_write[0] = 0x09000000; + wb_write[1] = 0x55555555; + wb_write[2] = 0x10; /* EOP, eop_bvalid = 0 */ + REG_WR_DMAE(bp, NIG_REG_DEBUG_PACKET_LB, wb_write, 3); +#else + REG_WR_IND(bp, NIG_REG_DEBUG_PACKET_LB, 0x09000000); + REG_WR_IND(bp, NIG_REG_DEBUG_PACKET_LB + 4, 0x55555555); + /* EOP, eop_bvalid = 0 */ + REG_WR_IND(bp, NIG_REG_DEBUG_PACKET_LB + 8, 0x10); +#endif +} + +/* some of the internal memories + * are not directly readable from the driver + * to test them we send debug packets + */ +static int bnx2x_int_mem_test(struct bnx2x *bp) +{ + int factor; + int count, i; + u32 val = 0; + + switch (CHIP_REV(bp)) { + case CHIP_REV_EMUL: + factor = 200; + break; + case CHIP_REV_FPGA: + factor = 120; + break; + default: + factor = 1; + break; + } + + DP(NETIF_MSG_HW, "start part1\n"); + + /* Disable inputs of parser neighbor blocks */ + REG_WR(bp, TSDM_REG_ENABLE_IN1, 0x0); + REG_WR(bp, TCM_REG_PRS_IFEN, 0x0); + REG_WR(bp, CFC_REG_DEBUG0, 0x1); + NIG_WR(NIG_REG_PRS_REQ_IN_EN, 0x0); + + /* Write 0 to parser credits for CFC search request */ + REG_WR(bp, PRS_REG_CFC_SEARCH_INITIAL_CREDIT, 0x0); + + /* send Ethernet packet */ + bnx2x_lb_pckt(bp); + + /* TODO do i reset NIG statistic? */ + /* Wait until NIG register shows 1 packet of size 0x10 */ + count = 1000 * factor; + while (count) { +#ifdef BNX2X_DMAE_RD + bnx2x_read_dmae(bp, NIG_REG_STAT2_BRB_OCTET, 2); + val = *bnx2x_sp(bp, wb_data[0]); +#else + val = REG_RD(bp, NIG_REG_STAT2_BRB_OCTET); + REG_RD(bp, NIG_REG_STAT2_BRB_OCTET + 4); +#endif + if (val == 0x10) + break; + + msleep(10); + count--; + } + if (val != 0x10) { + BNX2X_ERR("NIG timeout val = 0x%x\n", val); + return -1; + } + + /* Wait until PRS register shows 1 packet */ + count = 1000 * factor; + while (count) { + val = REG_RD(bp, PRS_REG_NUM_OF_PACKETS); + + if (val == 1) + break; + + msleep(10); + count--; + } + if (val != 0x1) { + BNX2X_ERR("PRS timeout val = 0x%x\n", val); + return -2; + } + + /* Reset and init BRB, PRS */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_CLEAR, 0x3); + msleep(50); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_SET, 0x3); + msleep(50); + bnx2x_init_block(bp, BRB1_COMMON_START, BRB1_COMMON_END); + bnx2x_init_block(bp, PRS_COMMON_START, PRS_COMMON_END); + + DP(NETIF_MSG_HW, "part2\n"); + + /* Disable inputs of parser neighbor blocks */ + REG_WR(bp, TSDM_REG_ENABLE_IN1, 0x0); + REG_WR(bp, TCM_REG_PRS_IFEN, 0x0); + REG_WR(bp, CFC_REG_DEBUG0, 0x1); + NIG_WR(NIG_REG_PRS_REQ_IN_EN, 0x0); + + /* Write 0 to parser credits for CFC search request */ + REG_WR(bp, PRS_REG_CFC_SEARCH_INITIAL_CREDIT, 0x0); + + /* send 10 Ethernet packets */ + for (i = 0; i < 10; i++) + bnx2x_lb_pckt(bp); + + /* Wait until NIG register shows 10 + 1 + packets of size 11*0x10 = 0xb0 */ + count = 1000 * factor; + while (count) { +#ifdef BNX2X_DMAE_RD + bnx2x_read_dmae(bp, NIG_REG_STAT2_BRB_OCTET, 2); + val = *bnx2x_sp(bp, wb_data[0]); +#else + val = REG_RD(bp, NIG_REG_STAT2_BRB_OCTET); + REG_RD(bp, NIG_REG_STAT2_BRB_OCTET + 4); +#endif + if (val == 0xb0) + break; + + msleep(10); + count--; + } + if (val != 0xb0) { + BNX2X_ERR("NIG timeout val = 0x%x\n", val); + return -3; + } + + /* Wait until PRS register shows 2 packets */ + val = REG_RD(bp, PRS_REG_NUM_OF_PACKETS); + if (val != 2) + BNX2X_ERR("PRS timeout val = 0x%x\n", val); + + /* Write 1 to parser credits for CFC search request */ + REG_WR(bp, PRS_REG_CFC_SEARCH_INITIAL_CREDIT, 0x1); + + /* Wait until PRS register shows 3 packets */ + msleep(10 * factor); + /* Wait until NIG register shows 1 packet of size 0x10 */ + val = REG_RD(bp, PRS_REG_NUM_OF_PACKETS); + if (val != 3) + BNX2X_ERR("PRS timeout val = 0x%x\n", val); + + /* clear NIG EOP FIFO */ + for (i = 0; i < 11; i++) + REG_RD(bp, NIG_REG_INGRESS_EOP_LB_FIFO); + val = REG_RD(bp, NIG_REG_INGRESS_EOP_LB_EMPTY); + if (val != 1) { + BNX2X_ERR("clear of NIG failed\n"); + return -4; + } + + /* Reset and init BRB, PRS, NIG */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_CLEAR, 0x03); + msleep(50); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_SET, 0x03); + msleep(50); + bnx2x_init_block(bp, BRB1_COMMON_START, BRB1_COMMON_END); + bnx2x_init_block(bp, PRS_COMMON_START, PRS_COMMON_END); +#ifndef BCM_ISCSI + /* set NIC mode */ + REG_WR(bp, PRS_REG_NIC_MODE, 1); +#endif + + /* Enable inputs of parser neighbor blocks */ + REG_WR(bp, TSDM_REG_ENABLE_IN1, 0x7fffffff); + REG_WR(bp, TCM_REG_PRS_IFEN, 0x1); + REG_WR(bp, CFC_REG_DEBUG0, 0x0); + NIG_WR(NIG_REG_PRS_REQ_IN_EN, 0x1); + + DP(NETIF_MSG_HW, "done\n"); + + return 0; /* OK */ +} + +static void enable_blocks_attention(struct bnx2x *bp) +{ + REG_WR(bp, PXP_REG_PXP_INT_MASK_0, 0); + REG_WR(bp, PXP_REG_PXP_INT_MASK_1, 0); + REG_WR(bp, DORQ_REG_DORQ_INT_MASK, 0); + REG_WR(bp, CFC_REG_CFC_INT_MASK, 0); + REG_WR(bp, QM_REG_QM_INT_MASK, 0); + REG_WR(bp, TM_REG_TM_INT_MASK, 0); + REG_WR(bp, XSDM_REG_XSDM_INT_MASK_0, 0); + REG_WR(bp, XSDM_REG_XSDM_INT_MASK_1, 0); + REG_WR(bp, XCM_REG_XCM_INT_MASK, 0); +/* REG_WR(bp, XSEM_REG_XSEM_INT_MASK_0, 0); */ +/* REG_WR(bp, XSEM_REG_XSEM_INT_MASK_1, 0); */ + REG_WR(bp, USDM_REG_USDM_INT_MASK_0, 0); + REG_WR(bp, USDM_REG_USDM_INT_MASK_1, 0); + REG_WR(bp, UCM_REG_UCM_INT_MASK, 0); +/* REG_WR(bp, USEM_REG_USEM_INT_MASK_0, 0); */ +/* REG_WR(bp, USEM_REG_USEM_INT_MASK_1, 0); */ + REG_WR(bp, GRCBASE_UPB + PB_REG_PB_INT_MASK, 0); + REG_WR(bp, CSDM_REG_CSDM_INT_MASK_0, 0); + REG_WR(bp, CSDM_REG_CSDM_INT_MASK_1, 0); + REG_WR(bp, CCM_REG_CCM_INT_MASK, 0); +/* REG_WR(bp, CSEM_REG_CSEM_INT_MASK_0, 0); */ +/* REG_WR(bp, CSEM_REG_CSEM_INT_MASK_1, 0); */ + REG_WR(bp, PXP2_REG_PXP2_INT_MASK, 0x480000); + REG_WR(bp, TSDM_REG_TSDM_INT_MASK_0, 0); + REG_WR(bp, TSDM_REG_TSDM_INT_MASK_1, 0); + REG_WR(bp, TCM_REG_TCM_INT_MASK, 0); +/* REG_WR(bp, TSEM_REG_TSEM_INT_MASK_0, 0); */ +/* REG_WR(bp, TSEM_REG_TSEM_INT_MASK_1, 0); */ + REG_WR(bp, CDU_REG_CDU_INT_MASK, 0); + REG_WR(bp, DMAE_REG_DMAE_INT_MASK, 0); +/* REG_WR(bp, MISC_REG_MISC_INT_MASK, 0); */ + REG_WR(bp, PBF_REG_PBF_INT_MASK, 0X18); /* bit 3,4 masked */ +} + +static int bnx2x_function_init(struct bnx2x *bp, int mode) +{ + int func = bp->port; + int port = func ? PORT1 : PORT0; + u32 val, i; +#ifdef USE_DMAE + u32 wb_write[2]; +#endif + + DP(BNX2X_MSG_MCP, "function is %d mode is %x\n", func, mode); + if ((func != 0) && (func != 1)) { + BNX2X_ERR("BAD function number (%d)\n", func); + return -ENODEV; + } + + bnx2x_gunzip_init(bp); + + if (mode & 0x1) { /* init common */ + DP(BNX2X_MSG_MCP, "starting common init func %d mode %x\n", + func, mode); + REG_WR(bp, MISC_REG_RESET_REG_1, 0xffffffff); + REG_WR(bp, MISC_REG_RESET_REG_2, 0xfffc); + bnx2x_init_block(bp, MISC_COMMON_START, MISC_COMMON_END); + + REG_WR(bp, MISC_REG_LCPLL_CTRL_REG_2, 0x100); + msleep(30); + REG_WR(bp, MISC_REG_LCPLL_CTRL_REG_2, 0x0); + + bnx2x_init_block(bp, PXP_COMMON_START, PXP_COMMON_END); + bnx2x_init_block(bp, PXP2_COMMON_START, PXP2_COMMON_END); + + bnx2x_init_pxp(bp); + + if (CHIP_REV(bp) == CHIP_REV_Ax) { + /* enable HW interrupt from PXP on USDM + overflow bit 16 on INT_MASK_0 */ + REG_WR(bp, PXP_REG_PXP_INT_MASK_0, 0); + } + +#ifdef __BIG_ENDIAN + REG_WR(bp, PXP2_REG_RQ_QM_ENDIAN_M, 1); + REG_WR(bp, PXP2_REG_RQ_TM_ENDIAN_M, 1); + REG_WR(bp, PXP2_REG_RQ_SRC_ENDIAN_M, 1); + REG_WR(bp, PXP2_REG_RQ_CDU_ENDIAN_M, 1); + REG_WR(bp, PXP2_REG_RQ_DBG_ENDIAN_M, 1); + REG_WR(bp, PXP2_REG_RQ_HC_ENDIAN_M, 1); + +/* REG_WR(bp, PXP2_REG_RD_PBF_SWAP_MODE, 1); */ + REG_WR(bp, PXP2_REG_RD_QM_SWAP_MODE, 1); + REG_WR(bp, PXP2_REG_RD_TM_SWAP_MODE, 1); + REG_WR(bp, PXP2_REG_RD_SRC_SWAP_MODE, 1); + REG_WR(bp, PXP2_REG_RD_CDURD_SWAP_MODE, 1); +#endif + +#ifndef BCM_ISCSI + /* set NIC mode */ + REG_WR(bp, PRS_REG_NIC_MODE, 1); +#endif + + REG_WR(bp, PXP2_REG_RQ_CDU_P_SIZE, 5); +#ifdef BCM_ISCSI + REG_WR(bp, PXP2_REG_RQ_TM_P_SIZE, 5); + REG_WR(bp, PXP2_REG_RQ_QM_P_SIZE, 5); + REG_WR(bp, PXP2_REG_RQ_SRC_P_SIZE, 5); +#endif + + bnx2x_init_block(bp, DMAE_COMMON_START, DMAE_COMMON_END); + + /* let the HW do it's magic ... */ + msleep(100); + /* finish PXP init + (can be moved up if we want to use the DMAE) */ + val = REG_RD(bp, PXP2_REG_RQ_CFG_DONE); + if (val != 1) { + BNX2X_ERR("PXP2 CFG failed\n"); + return -EBUSY; + } + + val = REG_RD(bp, PXP2_REG_RD_INIT_DONE); + if (val != 1) { + BNX2X_ERR("PXP2 RD_INIT failed\n"); + return -EBUSY; + } + + REG_WR(bp, PXP2_REG_RQ_DISABLE_INPUTS, 0); + REG_WR(bp, PXP2_REG_RD_DISABLE_INPUTS, 0); + + bnx2x_init_fill(bp, TSEM_REG_PRAM, 0, 8); + + bnx2x_init_block(bp, TCM_COMMON_START, TCM_COMMON_END); + bnx2x_init_block(bp, UCM_COMMON_START, UCM_COMMON_END); + bnx2x_init_block(bp, CCM_COMMON_START, CCM_COMMON_END); + bnx2x_init_block(bp, XCM_COMMON_START, XCM_COMMON_END); + +#ifdef BNX2X_DMAE_RD + bnx2x_read_dmae(bp, XSEM_REG_PASSIVE_BUFFER, 3); + bnx2x_read_dmae(bp, CSEM_REG_PASSIVE_BUFFER, 3); + bnx2x_read_dmae(bp, TSEM_REG_PASSIVE_BUFFER, 3); + bnx2x_read_dmae(bp, USEM_REG_PASSIVE_BUFFER, 3); +#else + REG_RD(bp, XSEM_REG_PASSIVE_BUFFER); + REG_RD(bp, XSEM_REG_PASSIVE_BUFFER + 4); + REG_RD(bp, XSEM_REG_PASSIVE_BUFFER + 8); + REG_RD(bp, CSEM_REG_PASSIVE_BUFFER); + REG_RD(bp, CSEM_REG_PASSIVE_BUFFER + 4); + REG_RD(bp, CSEM_REG_PASSIVE_BUFFER + 8); + REG_RD(bp, TSEM_REG_PASSIVE_BUFFER); + REG_RD(bp, TSEM_REG_PASSIVE_BUFFER + 4); + REG_RD(bp, TSEM_REG_PASSIVE_BUFFER + 8); + REG_RD(bp, USEM_REG_PASSIVE_BUFFER); + REG_RD(bp, USEM_REG_PASSIVE_BUFFER + 4); + REG_RD(bp, USEM_REG_PASSIVE_BUFFER + 8); +#endif + bnx2x_init_block(bp, QM_COMMON_START, QM_COMMON_END); + /* softrest pulse */ + REG_WR(bp, QM_REG_SOFT_RESET, 1); + REG_WR(bp, QM_REG_SOFT_RESET, 0); + +#ifdef BCM_ISCSI + bnx2x_init_block(bp, TIMERS_COMMON_START, TIMERS_COMMON_END); +#endif + bnx2x_init_block(bp, DQ_COMMON_START, DQ_COMMON_END); + REG_WR(bp, DORQ_REG_DPM_CID_OFST, BCM_PAGE_BITS); + if (CHIP_REV(bp) == CHIP_REV_Ax) { + /* enable hw interrupt from doorbell Q */ + REG_WR(bp, DORQ_REG_DORQ_INT_MASK, 0); + } + + bnx2x_init_block(bp, BRB1_COMMON_START, BRB1_COMMON_END); + + if (CHIP_REV_IS_SLOW(bp)) { + /* fix for emulation and FPGA for no pause */ + REG_WR(bp, BRB1_REG_PAUSE_HIGH_THRESHOLD_0, 513); + REG_WR(bp, BRB1_REG_PAUSE_HIGH_THRESHOLD_1, 513); + REG_WR(bp, BRB1_REG_PAUSE_LOW_THRESHOLD_0, 0); + REG_WR(bp, BRB1_REG_PAUSE_LOW_THRESHOLD_1, 0); + } + + bnx2x_init_block(bp, PRS_COMMON_START, PRS_COMMON_END); + + bnx2x_init_block(bp, TSDM_COMMON_START, TSDM_COMMON_END); + bnx2x_init_block(bp, CSDM_COMMON_START, CSDM_COMMON_END); + bnx2x_init_block(bp, USDM_COMMON_START, USDM_COMMON_END); + bnx2x_init_block(bp, XSDM_COMMON_START, XSDM_COMMON_END); + + bnx2x_init_fill(bp, TSTORM_INTMEM_ADDR, 0, STORM_INTMEM_SIZE); + bnx2x_init_fill(bp, CSTORM_INTMEM_ADDR, 0, STORM_INTMEM_SIZE); + bnx2x_init_fill(bp, XSTORM_INTMEM_ADDR, 0, STORM_INTMEM_SIZE); + bnx2x_init_fill(bp, USTORM_INTMEM_ADDR, 0, STORM_INTMEM_SIZE); + + bnx2x_init_block(bp, TSEM_COMMON_START, TSEM_COMMON_END); + bnx2x_init_block(bp, USEM_COMMON_START, USEM_COMMON_END); + bnx2x_init_block(bp, CSEM_COMMON_START, CSEM_COMMON_END); + bnx2x_init_block(bp, XSEM_COMMON_START, XSEM_COMMON_END); + + /* sync semi rtc */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_CLEAR, + 0x80000000); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_SET, + 0x80000000); + + bnx2x_init_block(bp, UPB_COMMON_START, UPB_COMMON_END); + bnx2x_init_block(bp, XPB_COMMON_START, XPB_COMMON_END); + bnx2x_init_block(bp, PBF_COMMON_START, PBF_COMMON_END); + + REG_WR(bp, SRC_REG_SOFT_RST, 1); + for (i = SRC_REG_KEYRSS0_0; i <= SRC_REG_KEYRSS1_9; i += 4) { + REG_WR(bp, i, 0xc0cac01a); + /* TODO: repleace with something meaningfull */ + } + /* SRCH COMMON comes here */ + REG_WR(bp, SRC_REG_SOFT_RST, 0); + + if (sizeof(union cdu_context) != 1024) { + /* we currently assume that a context is 1024 bytes */ + printk(KERN_ALERT PFX "please adjust the size of" + " cdu_context(%ld)\n", + (long)sizeof(union cdu_context)); + } + val = (4 << 24) + (0 << 12) + 1024; + REG_WR(bp, CDU_REG_CDU_GLOBAL_PARAMS, val); + bnx2x_init_block(bp, CDU_COMMON_START, CDU_COMMON_END); + + bnx2x_init_block(bp, CFC_COMMON_START, CFC_COMMON_END); + REG_WR(bp, CFC_REG_INIT_REG, 0x7FF); + + bnx2x_init_block(bp, HC_COMMON_START, HC_COMMON_END); + bnx2x_init_block(bp, MISC_AEU_COMMON_START, + MISC_AEU_COMMON_END); + /* RXPCS COMMON comes here */ + /* EMAC0 COMMON comes here */ + /* EMAC1 COMMON comes here */ + /* DBU COMMON comes here */ + /* DBG COMMON comes here */ + bnx2x_init_block(bp, NIG_COMMON_START, NIG_COMMON_END); + + if (CHIP_REV_IS_SLOW(bp)) + msleep(200); + + /* finish CFC init */ + val = REG_RD(bp, CFC_REG_LL_INIT_DONE); + if (val != 1) { + BNX2X_ERR("CFC LL_INIT failed\n"); + return -EBUSY; + } + + val = REG_RD(bp, CFC_REG_AC_INIT_DONE); + if (val != 1) { + BNX2X_ERR("CFC AC_INIT failed\n"); + return -EBUSY; + } + + val = REG_RD(bp, CFC_REG_CAM_INIT_DONE); + if (val != 1) { + BNX2X_ERR("CFC CAM_INIT failed\n"); + return -EBUSY; + } + + REG_WR(bp, CFC_REG_DEBUG0, 0); + + /* read NIG statistic + to see if this is our first up since powerup */ +#ifdef BNX2X_DMAE_RD + bnx2x_read_dmae(bp, NIG_REG_STAT2_BRB_OCTET, 2); + val = *bnx2x_sp(bp, wb_data[0]); +#else + val = REG_RD(bp, NIG_REG_STAT2_BRB_OCTET); + REG_RD(bp, NIG_REG_STAT2_BRB_OCTET + 4); +#endif + /* do internal memory self test */ + if ((val == 0) && bnx2x_int_mem_test(bp)) { + BNX2X_ERR("internal mem selftest failed\n"); + return -EBUSY; + } + + /* clear PXP2 attentions */ + REG_RD(bp, PXP2_REG_PXP2_INT_STS_CLR); + + enable_blocks_attention(bp); + /* enable_blocks_parity(bp); */ + + } /* end of common init */ + + /* per port init */ + + /* the phys address is shifted right 12 bits and has an added + 1=valid bit added to the 53rd bit + then since this is a wide register(TM) + we split it into two 32 bit writes + */ +#define RQ_ONCHIP_AT_PORT_SIZE 384 +#define ONCHIP_ADDR1(x) ((u32)(((u64)x >> 12) & 0xFFFFFFFF)) +#define ONCHIP_ADDR2(x) ((u32)((1 << 20) | ((u64)x >> 44))) +#define PXP_ONE_ILT(x) ((x << 10) | x) + + DP(BNX2X_MSG_MCP, "starting per-function init port is %x\n", func); + + REG_WR(bp, NIG_REG_MASK_INTERRUPT_PORT0 + func*4, 0); + + /* Port PXP comes here */ + /* Port PXP2 comes here */ + + /* Offset is + * Port0 0 + * Port1 384 */ + i = func * RQ_ONCHIP_AT_PORT_SIZE; +#ifdef USE_DMAE + wb_write[0] = ONCHIP_ADDR1(bnx2x_sp_mapping(bp, context)); + wb_write[1] = ONCHIP_ADDR2(bnx2x_sp_mapping(bp, context)); + REG_WR_DMAE(bp, PXP2_REG_RQ_ONCHIP_AT + i*8, wb_write, 2); +#else + REG_WR_IND(bp, PXP2_REG_RQ_ONCHIP_AT + i*8, + ONCHIP_ADDR1(bnx2x_sp_mapping(bp, context))); + REG_WR_IND(bp, PXP2_REG_RQ_ONCHIP_AT + i*8 + 4, + ONCHIP_ADDR2(bnx2x_sp_mapping(bp, context))); +#endif + REG_WR(bp, PXP2_REG_PSWRQ_CDU0_L2P + func*4, PXP_ONE_ILT(i)); + +#ifdef BCM_ISCSI + /* Port0 1 + * Port1 385 */ + i++; + wb_write[0] = ONCHIP_ADDR1(bp->timers_mapping); + wb_write[1] = ONCHIP_ADDR2(bp->timers_mapping); + REG_WR_DMAE(bp, PXP2_REG_RQ_ONCHIP_AT + i*8, wb_write, 2); + REG_WR(bp, PXP2_REG_PSWRQ_TM0_L2P + func*4, PXP_ONE_ILT(i)); + + /* Port0 2 + * Port1 386 */ + i++; + wb_write[0] = ONCHIP_ADDR1(bp->qm_mapping); + wb_write[1] = ONCHIP_ADDR2(bp->qm_mapping); + REG_WR_DMAE(bp, PXP2_REG_RQ_ONCHIP_AT + i*8, wb_write, 2); + REG_WR(bp, PXP2_REG_PSWRQ_QM0_L2P + func*4, PXP_ONE_ILT(i)); + + /* Port0 3 + * Port1 387 */ + i++; + wb_write[0] = ONCHIP_ADDR1(bp->t1_mapping); + wb_write[1] = ONCHIP_ADDR2(bp->t1_mapping); + REG_WR_DMAE(bp, PXP2_REG_RQ_ONCHIP_AT + i*8, wb_write, 2); + REG_WR(bp, PXP2_REG_PSWRQ_SRC0_L2P + func*4, PXP_ONE_ILT(i)); +#endif + + /* Port TCM comes here */ + /* Port UCM comes here */ + /* Port CCM comes here */ + bnx2x_init_block(bp, func ? XCM_PORT1_START : XCM_PORT0_START, + func ? XCM_PORT1_END : XCM_PORT0_END); + +#ifdef USE_DMAE + wb_write[0] = 0; + wb_write[1] = 0; +#endif + for (i = 0; i < 32; i++) { + REG_WR(bp, QM_REG_BASEADDR + (func*32 + i)*4, 1024 * 4 * i); +#ifdef USE_DMAE + REG_WR_DMAE(bp, QM_REG_PTRTBL + (func*32 + i)*8, wb_write, 2); +#else + REG_WR_IND(bp, QM_REG_PTRTBL + (func*32 + i)*8, 0); + REG_WR_IND(bp, QM_REG_PTRTBL + (func*32 + i)*8 + 4, 0); +#endif + } + REG_WR(bp, QM_REG_CONNNUM_0 + func*4, 1024/16 - 1); + + /* Port QM comes here */ + +#ifdef BCM_ISCSI + REG_WR(bp, TM_REG_LIN0_SCAN_TIME + func*4, 1024/64*20); + REG_WR(bp, TM_REG_LIN0_MAX_ACTIVE_CID + func*4, 31); + + bnx2x_init_block(bp, func ? TIMERS_PORT1_START : TIMERS_PORT0_START, + func ? TIMERS_PORT1_END : TIMERS_PORT0_END); +#endif + /* Port DQ comes here */ + /* Port BRB1 comes here */ + bnx2x_init_block(bp, func ? PRS_PORT1_START : PRS_PORT0_START, + func ? PRS_PORT1_END : PRS_PORT0_END); + /* Port TSDM comes here */ + /* Port CSDM comes here */ + /* Port USDM comes here */ + /* Port XSDM comes here */ + bnx2x_init_block(bp, func ? TSEM_PORT1_START : TSEM_PORT0_START, + func ? TSEM_PORT1_END : TSEM_PORT0_END); + bnx2x_init_block(bp, func ? USEM_PORT1_START : USEM_PORT0_START, + func ? USEM_PORT1_END : USEM_PORT0_END); + bnx2x_init_block(bp, func ? CSEM_PORT1_START : CSEM_PORT0_START, + func ? CSEM_PORT1_END : CSEM_PORT0_END); + bnx2x_init_block(bp, func ? XSEM_PORT1_START : XSEM_PORT0_START, + func ? XSEM_PORT1_END : XSEM_PORT0_END); + /* Port UPB comes here */ + /* Port XSDM comes here */ + bnx2x_init_block(bp, func ? PBF_PORT1_START : PBF_PORT0_START, + func ? PBF_PORT1_END : PBF_PORT0_END); + + /* configure PBF to work without PAUSE mtu 9000 */ + REG_WR(bp, PBF_REG_P0_PAUSE_ENABLE + func*4, 0); + + /* update threshold */ + REG_WR(bp, PBF_REG_P0_ARB_THRSH + func*4, (9040/16)); + /* update init credit */ + REG_WR(bp, PBF_REG_P0_INIT_CRD + func*4, (9040/16) + 553 - 22); + + /* probe changes */ + REG_WR(bp, PBF_REG_INIT_P0 + func*4, 1); + msleep(5); + REG_WR(bp, PBF_REG_INIT_P0 + func*4, 0); + +#ifdef BCM_ISCSI + /* tell the searcher where the T2 table is */ + REG_WR(bp, SRC_REG_COUNTFREE0 + func*4, 16*1024/64); + + wb_write[0] = U64_LO(bp->t2_mapping); + wb_write[1] = U64_HI(bp->t2_mapping); + REG_WR_DMAE(bp, SRC_REG_FIRSTFREE0 + func*4, wb_write, 2); + wb_write[0] = U64_LO((u64)bp->t2_mapping + 16*1024 - 64); + wb_write[1] = U64_HI((u64)bp->t2_mapping + 16*1024 - 64); + REG_WR_DMAE(bp, SRC_REG_LASTFREE0 + func*4, wb_write, 2); + + REG_WR(bp, SRC_REG_NUMBER_HASH_BITS0 + func*4, 10); + /* Port SRCH comes here */ +#endif + /* Port CDU comes here */ + /* Port CFC comes here */ + bnx2x_init_block(bp, func ? HC_PORT1_START : HC_PORT0_START, + func ? HC_PORT1_END : HC_PORT0_END); + bnx2x_init_block(bp, func ? MISC_AEU_PORT1_START : + MISC_AEU_PORT0_START, + func ? MISC_AEU_PORT1_END : MISC_AEU_PORT0_END); + /* Port PXPCS comes here */ + /* Port EMAC0 comes here */ + /* Port EMAC1 comes here */ + /* Port DBU comes here */ + /* Port DBG comes here */ + bnx2x_init_block(bp, func ? NIG_PORT1_START : NIG_PORT0_START, + func ? NIG_PORT1_END : NIG_PORT0_END); + REG_WR(bp, NIG_REG_XGXS_SERDES0_MODE_SEL + func*4, 1); + /* Port MCP comes here */ + /* Port DMAE comes here */ + + bnx2x_link_reset(bp); + + /* Reset pciex errors for debug */ + REG_WR(bp, 0x2114, 0xffffffff); + REG_WR(bp, 0x2120, 0xffffffff); + REG_WR(bp, 0x2814, 0xffffffff); + + /* !!! move to init_values.h */ + REG_WR(bp, XSDM_REG_INIT_CREDIT_PXP_CTRL, 0x1); + REG_WR(bp, USDM_REG_INIT_CREDIT_PXP_CTRL, 0x1); + REG_WR(bp, CSDM_REG_INIT_CREDIT_PXP_CTRL, 0x1); + REG_WR(bp, TSDM_REG_INIT_CREDIT_PXP_CTRL, 0x1); + + REG_WR(bp, DBG_REG_PCI_REQ_CREDIT, 0x1); + REG_WR(bp, TM_REG_PCIARB_CRDCNT_VAL, 0x1); + REG_WR(bp, CDU_REG_CDU_DEBUG, 0x264); + REG_WR(bp, CDU_REG_CDU_DEBUG, 0x0); + + bnx2x_gunzip_end(bp); + + if (!nomcp) { + port = bp->port; + + bp->fw_drv_pulse_wr_seq = + (SHMEM_RD(bp, drv_fw_mb[port].drv_pulse_mb) & + DRV_PULSE_SEQ_MASK); + bp->fw_mb = SHMEM_RD(bp, drv_fw_mb[port].fw_mb_param); + DP(BNX2X_MSG_MCP, "drv_pulse 0x%x fw_mb 0x%x\n", + bp->fw_drv_pulse_wr_seq, bp->fw_mb); + } else { + bp->fw_mb = 0; + } + + return 0; +} + + +/* send the MCP a request, block untill there is a reply */ +static u32 bnx2x_fw_command(struct bnx2x *bp, u32 command) +{ + u32 rc = 0; + u32 seq = ++bp->fw_seq; + int port = bp->port; + + SHMEM_WR(bp, drv_fw_mb[port].drv_mb_header, command|seq); + DP(BNX2X_MSG_MCP, "wrote command (%x) to FW MB\n", command|seq); + + /* let the FW do it's magic ... */ + msleep(100); /* TBD */ + + if (CHIP_REV_IS_SLOW(bp)) + msleep(900); + + rc = SHMEM_RD(bp, drv_fw_mb[port].fw_mb_header); + + DP(BNX2X_MSG_MCP, "read (%x) seq is (%x) from FW MB\n", rc, seq); + + /* is this a reply to our command? */ + if (seq == (rc & FW_MSG_SEQ_NUMBER_MASK)) { + rc &= FW_MSG_CODE_MASK; + } else { + /* FW BUG! */ + BNX2X_ERR("FW failed to respond!\n"); + bnx2x_fw_dump(bp); + rc = 0; + } + return rc; +} + +static void bnx2x_free_mem(struct bnx2x *bp) +{ + +#define BNX2X_PCI_FREE(x, y, size) \ + do { \ + if (x) { \ + pci_free_consistent(bp->pdev, size, x, y); \ + x = NULL; \ + y = 0; \ + } \ + } while (0) + +#define BNX2X_FREE(x) \ + do { \ + if (x) { \ + vfree(x); \ + x = NULL; \ + } \ + } while (0) + + int i; + + /* fastpath */ + for_each_queue(bp, i) { + + /* Status blocks */ + BNX2X_PCI_FREE(bnx2x_fp(bp, i, status_blk), + bnx2x_fp(bp, i, status_blk_mapping), + sizeof(struct host_status_block) + + sizeof(struct eth_tx_db_data)); + + /* fast path rings: tx_buf tx_desc rx_buf rx_desc rx_comp */ + BNX2X_FREE(bnx2x_fp(bp, i, tx_buf_ring)); + BNX2X_PCI_FREE(bnx2x_fp(bp, i, tx_desc_ring), + bnx2x_fp(bp, i, tx_desc_mapping), + sizeof(struct eth_tx_bd) * NUM_TX_BD); + + BNX2X_FREE(bnx2x_fp(bp, i, rx_buf_ring)); + BNX2X_PCI_FREE(bnx2x_fp(bp, i, rx_desc_ring), + bnx2x_fp(bp, i, rx_desc_mapping), + sizeof(struct eth_rx_bd) * NUM_RX_BD); + + BNX2X_PCI_FREE(bnx2x_fp(bp, i, rx_comp_ring), + bnx2x_fp(bp, i, rx_comp_mapping), + sizeof(struct eth_fast_path_rx_cqe) * + NUM_RCQ_BD); + } + + BNX2X_FREE(bp->fp); + + /* end of fastpath */ + + BNX2X_PCI_FREE(bp->def_status_blk, bp->def_status_blk_mapping, + (sizeof(struct host_def_status_block))); + + BNX2X_PCI_FREE(bp->slowpath, bp->slowpath_mapping, + (sizeof(struct bnx2x_slowpath))); + +#ifdef BCM_ISCSI + BNX2X_PCI_FREE(bp->t1, bp->t1_mapping, 64*1024); + BNX2X_PCI_FREE(bp->t2, bp->t2_mapping, 16*1024); + BNX2X_PCI_FREE(bp->timers, bp->timers_mapping, 8*1024); + BNX2X_PCI_FREE(bp->qm, bp->qm_mapping, 128*1024); +#endif + BNX2X_PCI_FREE(bp->spq, bp->spq_mapping, PAGE_SIZE); + +#undef BNX2X_PCI_FREE +#undef BNX2X_KFREE +} + +static int bnx2x_alloc_mem(struct bnx2x *bp) +{ + +#define BNX2X_PCI_ALLOC(x, y, size) \ + do { \ + x = pci_alloc_consistent(bp->pdev, size, y); \ + if (x == NULL) \ + goto alloc_mem_err; \ + memset(x, 0, size); \ + } while (0) + +#define BNX2X_ALLOC(x, size) \ + do { \ + x = vmalloc(size); \ + if (x == NULL) \ + goto alloc_mem_err; \ + memset(x, 0, size); \ + } while (0) + + int i; + + /* fastpath */ + BNX2X_ALLOC(bp->fp, sizeof(struct bnx2x_fastpath) * bp->num_queues); + + for_each_queue(bp, i) { + bnx2x_fp(bp, i, bp) = bp; + + /* Status blocks */ + BNX2X_PCI_ALLOC(bnx2x_fp(bp, i, status_blk), + &bnx2x_fp(bp, i, status_blk_mapping), + sizeof(struct host_status_block) + + sizeof(struct eth_tx_db_data)); + + bnx2x_fp(bp, i, hw_tx_prods) = + (void *)(bnx2x_fp(bp, i, status_blk) + 1); + + bnx2x_fp(bp, i, tx_prods_mapping) = + bnx2x_fp(bp, i, status_blk_mapping) + + sizeof(struct host_status_block); + + /* fast path rings: tx_buf tx_desc rx_buf rx_desc rx_comp */ + BNX2X_ALLOC(bnx2x_fp(bp, i, tx_buf_ring), + sizeof(struct sw_tx_bd) * NUM_TX_BD); + BNX2X_PCI_ALLOC(bnx2x_fp(bp, i, tx_desc_ring), + &bnx2x_fp(bp, i, tx_desc_mapping), + sizeof(struct eth_tx_bd) * NUM_TX_BD); + + BNX2X_ALLOC(bnx2x_fp(bp, i, rx_buf_ring), + sizeof(struct sw_rx_bd) * NUM_RX_BD); + BNX2X_PCI_ALLOC(bnx2x_fp(bp, i, rx_desc_ring), + &bnx2x_fp(bp, i, rx_desc_mapping), + sizeof(struct eth_rx_bd) * NUM_RX_BD); + + BNX2X_PCI_ALLOC(bnx2x_fp(bp, i, rx_comp_ring), + &bnx2x_fp(bp, i, rx_comp_mapping), + sizeof(struct eth_fast_path_rx_cqe) * + NUM_RCQ_BD); + + } + /* end of fastpath */ + + BNX2X_PCI_ALLOC(bp->def_status_blk, &bp->def_status_blk_mapping, + sizeof(struct host_def_status_block)); + + BNX2X_PCI_ALLOC(bp->slowpath, &bp->slowpath_mapping, + sizeof(struct bnx2x_slowpath)); + +#ifdef BCM_ISCSI + BNX2X_PCI_ALLOC(bp->t1, &bp->t1_mapping, 64*1024); + + /* Initialize T1 */ + for (i = 0; i < 64*1024; i += 64) { + *(u64 *)((char *)bp->t1 + i + 56) = 0x0UL; + *(u64 *)((char *)bp->t1 + i + 3) = 0x0UL; + } + + /* allocate searcher T2 table + we allocate 1/4 of alloc num for T2 + (which is not entered into the ILT) */ + BNX2X_PCI_ALLOC(bp->t2, &bp->t2_mapping, 16*1024); + + /* Initialize T2 */ + for (i = 0; i < 16*1024; i += 64) + * (u64 *)((char *)bp->t2 + i + 56) = bp->t2_mapping + i + 64; + + /* now sixup the last line in the block to point to the next block */ + *(u64 *)((char *)bp->t2 + 1024*16-8) = bp->t2_mapping; + + /* Timer block array (MAX_CONN*8) phys uncached for now 1024 conns */ + BNX2X_PCI_ALLOC(bp->timers, &bp->timers_mapping, 8*1024); + + /* QM queues (128*MAX_CONN) */ + BNX2X_PCI_ALLOC(bp->qm, &bp->qm_mapping, 128*1024); +#endif + + /* Slow path ring */ + BNX2X_PCI_ALLOC(bp->spq, &bp->spq_mapping, BCM_PAGE_SIZE); + + return 0; + +alloc_mem_err: + bnx2x_free_mem(bp); + return -ENOMEM; + +#undef BNX2X_PCI_ALLOC +#undef BNX2X_ALLOC +} + +static void bnx2x_free_tx_skbs(struct bnx2x *bp) +{ + int i; + + for_each_queue(bp, i) { + struct bnx2x_fastpath *fp = &bp->fp[i]; + + u16 bd_cons = fp->tx_bd_cons; + u16 sw_prod = fp->tx_pkt_prod; + u16 sw_cons = fp->tx_pkt_cons; + + BUG_TRAP(fp->tx_buf_ring != NULL); + + while (sw_cons != sw_prod) { + bd_cons = bnx2x_free_tx_pkt(bp, fp, TX_BD(sw_cons)); + sw_cons++; + } + } +} + +static void bnx2x_free_rx_skbs(struct bnx2x *bp) +{ + int i, j; + + for_each_queue(bp, j) { + struct bnx2x_fastpath *fp = &bp->fp[j]; + + BUG_TRAP(fp->rx_buf_ring != NULL); + + for (i = 0; i < NUM_RX_BD; i++) { + struct sw_rx_bd *rx_buf = &fp->rx_buf_ring[i]; + struct sk_buff *skb = rx_buf->skb; + + if (skb == NULL) + continue; + + pci_unmap_single(bp->pdev, + pci_unmap_addr(rx_buf, mapping), + bp->rx_buf_use_size, + PCI_DMA_FROMDEVICE); + + rx_buf->skb = NULL; + dev_kfree_skb(skb); + } + } +} + +static void bnx2x_free_skbs(struct bnx2x *bp) +{ + bnx2x_free_tx_skbs(bp); + bnx2x_free_rx_skbs(bp); +} + +static void bnx2x_free_msix_irqs(struct bnx2x *bp) +{ + int i; + + free_irq(bp->msix_table[0].vector, bp->dev); + DP(NETIF_MSG_IFDOWN, "rleased sp irq (%d)\n", + bp->msix_table[0].vector); + + for_each_queue(bp, i) { + DP(NETIF_MSG_IFDOWN, "about to rlease fp #%d->%d irq " + "state(%x)\n", i, bp->msix_table[i + 1].vector, + bnx2x_fp(bp, i, state)); + + if (bnx2x_fp(bp, i, state) != BNX2X_FP_STATE_CLOSED) { + + free_irq(bp->msix_table[i + 1].vector, &bp->fp[i]); + bnx2x_fp(bp, i, state) = BNX2X_FP_STATE_CLOSED; + + } else + DP(NETIF_MSG_IFDOWN, "irq not freed\n"); + + } + +} + +static void bnx2x_free_irq(struct bnx2x *bp) +{ + + if (bp->flags & USING_MSIX_FLAG) { + + bnx2x_free_msix_irqs(bp); + pci_disable_msix(bp->pdev); + + bp->flags &= ~USING_MSIX_FLAG; + + } else + free_irq(bp->pdev->irq, bp->dev); +} + +static int bnx2x_enable_msix(struct bnx2x *bp) +{ + + int i; + + bp->msix_table[0].entry = 0; + for_each_queue(bp, i) + bp->msix_table[i + 1].entry = i + 1; + + if (pci_enable_msix(bp->pdev, &bp->msix_table[0], + bp->num_queues + 1)){ + BNX2X_ERR("failed to enable msix\n"); + return -1; + + } + + bp->flags |= USING_MSIX_FLAG; + + return 0; + +} + + +static int bnx2x_req_msix_irqs(struct bnx2x *bp) +{ + + + int i, rc; + + DP(NETIF_MSG_IFUP, "about to request sp irq\n"); + + rc = request_irq(bp->msix_table[0].vector, bnx2x_msix_sp_int, 0, + bp->dev->name, bp->dev); + + if (rc) { + BNX2X_ERR("request sp irq failed\n"); + return -EBUSY; + } + + for_each_queue(bp, i) { + rc = request_irq(bp->msix_table[i + 1].vector, + bnx2x_msix_fp_int, 0, + bp->dev->name, &bp->fp[i]); + + if (rc) { + BNX2X_ERR("request fp #%d irq failed\n", i); + bnx2x_free_msix_irqs(bp); + return -EBUSY; + } + + bnx2x_fp(bp, i, state) = BNX2X_FP_STATE_IRQ; + + } + + return 0; + +} + +static int bnx2x_req_irq(struct bnx2x *bp) +{ + + int rc = request_irq(bp->pdev->irq, bnx2x_interrupt, + IRQF_SHARED, bp->dev->name, bp->dev); + if (!rc) + bnx2x_fp(bp, 0, state) = BNX2X_FP_STATE_IRQ; + + return rc; + +} + +/* + * Init service functions + */ + +static void bnx2x_set_mac_addr(struct bnx2x *bp) +{ + struct mac_configuration_cmd *config = bnx2x_sp(bp, mac_config); + + /* CAM allocation + * unicasts 0-31:port0 32-63:port1 + * multicast 64-127:port0 128-191:port1 + */ + config->hdr.length_6b = 2; + config->hdr.offset = bp->port ? 31 : 0; + config->hdr.reserved0 = 0; + config->hdr.reserved1 = 0; + + /* primary MAC */ + config->config_table[0].cam_entry.msb_mac_addr = + swab16(*(u16 *)&bp->dev->dev_addr[0]); + config->config_table[0].cam_entry.middle_mac_addr = + swab16(*(u16 *)&bp->dev->dev_addr[2]); + config->config_table[0].cam_entry.lsb_mac_addr = + swab16(*(u16 *)&bp->dev->dev_addr[4]); + config->config_table[0].cam_entry.flags = cpu_to_le16(bp->port); + config->config_table[0].target_table_entry.flags = 0; + config->config_table[0].target_table_entry.client_id = 0; + config->config_table[0].target_table_entry.vlan_id = 0; + + DP(NETIF_MSG_IFUP, "setting MAC (%04x:%04x:%04x)\n", + config->config_table[0].cam_entry.msb_mac_addr, + config->config_table[0].cam_entry.middle_mac_addr, + config->config_table[0].cam_entry.lsb_mac_addr); + + /* broadcast */ + config->config_table[1].cam_entry.msb_mac_addr = 0xffff; + config->config_table[1].cam_entry.middle_mac_addr = 0xffff; + config->config_table[1].cam_entry.lsb_mac_addr = 0xffff; + config->config_table[1].cam_entry.flags = cpu_to_le16(bp->port); + config->config_table[1].target_table_entry.flags = + TSTORM_CAM_TARGET_TABLE_ENTRY_BROADCAST; + config->config_table[1].target_table_entry.client_id = 0; + config->config_table[1].target_table_entry.vlan_id = 0; + + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_SET_MAC, 0, + U64_HI(bnx2x_sp_mapping(bp, mac_config)), + U64_LO(bnx2x_sp_mapping(bp, mac_config)), 0); +} + +static int bnx2x_wait_ramrod(struct bnx2x *bp, int state, int idx, + int *state_p, int poll) +{ + /* can take a while if any port is running */ + int timeout = 500; + + /* DP("waiting for state to become %d on IDX [%d]\n", + state, sb_idx); */ + + might_sleep(); + + while (timeout) { + + if (poll) { + bnx2x_rx_int(bp->fp, 10); + /* If index is different from 0 + * The reply for some commands will + * be on the none default queue + */ + if (idx) + bnx2x_rx_int(&bp->fp[idx], 10); + } + + mb(); /* state is changed by bnx2x_sp_event()*/ + + if (*state_p != state) + return 0; + + timeout--; + msleep(1); + + } + + + /* timeout! */ + BNX2X_ERR("timeout waiting for ramrod %d on %d\n", state, idx); + return -EBUSY; + +} + +static int bnx2x_setup_leading(struct bnx2x *bp) +{ + + /* reset IGU staae */ + bnx2x_ack_sb(bp, DEF_SB_ID, CSTORM_ID, 0, IGU_INT_ENABLE, 0); + + /* SETUP ramrod */ + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_PORT_SETUP, 0, 0, 0, 0); + + return bnx2x_wait_ramrod(bp, BNX2X_STATE_OPEN, 0, &(bp->state), 0); + +} + +static int bnx2x_setup_multi(struct bnx2x *bp, int index) +{ + + /* reset IGU state */ + bnx2x_ack_sb(bp, index, CSTORM_ID, 0, IGU_INT_ENABLE, 0); + + bp->fp[index].state = BNX2X_FP_STATE_OPENING; + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_CLIENT_SETUP, index, 0, index, 0); + + /* Wait for completion */ + return bnx2x_wait_ramrod(bp, BNX2X_FP_STATE_OPEN, index, + &(bp->fp[index].state), 1); + +} + + +static int bnx2x_poll(struct napi_struct *napi, int budget); +static void bnx2x_set_rx_mode(struct net_device *dev); + +static int bnx2x_nic_load(struct bnx2x *bp, int req_irq) +{ + int rc; + int i = 0; + + bp->state = BNX2X_STATE_OPENING_WAIT4_LOAD; + + /* Send LOAD_REQUEST command to MCP. + Returns the type of LOAD command: if it is the + first port to be initialized common blocks should be + initialized, otherwise - not. + */ + if (!nomcp) { + rc = bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_REQ); + if (rc == FW_MSG_CODE_DRV_LOAD_REFUSED) { + return -EBUSY; /* other port in diagnostic mode */ + } + } else { + rc = FW_MSG_CODE_DRV_LOAD_COMMON; + } + + DP(NETIF_MSG_IFUP, "set number of queues to %d\n", bp->num_queues); + + /* if we can't use msix we only need one fp, + * so try to enable msix with the requested number of fp's + * and fallback to inta with one fp + */ + if (req_irq) { + + if (use_inta) { + bp->num_queues = 1; + } else { + if (use_multi > 1 && use_multi <= 16) + /* user requested number */ + bp->num_queues = use_multi; + else if (use_multi == 1) + bp->num_queues = num_online_cpus(); + else + bp->num_queues = 1; + + if (bnx2x_enable_msix(bp)) { + /* faild to enable msix */ + bp->num_queues = 1; + if (use_multi) + BNX2X_ERR("Muti requested but failed" + " to enable MSI-X\n"); + } + } + } + + if (bnx2x_alloc_mem(bp)) + return -ENOMEM; + + if (req_irq) { + if (bp->flags & USING_MSIX_FLAG) { + if (bnx2x_req_msix_irqs(bp)) { + pci_disable_msix(bp->pdev); + goto out_error; + } + + } else { + if (bnx2x_req_irq(bp)) { + BNX2X_ERR("IRQ request failed, aborting\n"); + goto out_error; + } + } + } + + for_each_queue(bp, i) + netif_napi_add(bp->dev, &bnx2x_fp(bp, i, napi), + bnx2x_poll, 128); + + + /* Initialize HW */ + if (bnx2x_function_init(bp, (rc == FW_MSG_CODE_DRV_LOAD_COMMON))) { + BNX2X_ERR("HW init failed, aborting\n"); + goto out_error; + } + + + atomic_set(&bp->intr_sem, 0); + + /* Reenable SP tasklet */ + /*if (bp->sp_task_en) { */ + /* tasklet_enable(&bp->sp_task);*/ + /*} else { */ + /* bp->sp_task_en = 1; */ + /*} */ + + /* Setup NIC internals and enable interrupts */ + bnx2x_nic_init(bp); + + /* Send LOAD_DONE command to MCP */ + if (!nomcp) { + rc = bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE); + DP(NETIF_MSG_IFUP, "rc = 0x%x\n", rc); + if (!rc) { + BNX2X_ERR("MCP response failure, unloading\n"); + goto int_disable; + } + } + + bp->state = BNX2X_STATE_OPENING_WAIT4_PORT; + + /* Enable Rx interrupt handling before sending the ramrod + as it's completed on Rx FP queue */ + for_each_queue(bp, i) + napi_enable(&bnx2x_fp(bp, i, napi)); + + if (bnx2x_setup_leading(bp)) + goto stop_netif; + + for_each_nondefault_queue(bp, i) + if (bnx2x_setup_multi(bp, i)) + goto stop_netif; + + bnx2x_set_mac_addr(bp); + + bnx2x_phy_init(bp); + + /* Start fast path */ + if (req_irq) { /* IRQ is only requested from bnx2x_open */ + netif_start_queue(bp->dev); + if (bp->flags & USING_MSIX_FLAG) + printk(KERN_INFO PFX "%s: using MSI-X\n", + bp->dev->name); + + /* Otherwise Tx queue should be only reenabled */ + } else if (netif_running(bp->dev)) { + netif_wake_queue(bp->dev); + bnx2x_set_rx_mode(bp->dev); + } + + /* start the timer */ + mod_timer(&bp->timer, jiffies + bp->current_interval); + + return 0; + +stop_netif: + for_each_queue(bp, i) + napi_disable(&bnx2x_fp(bp, i, napi)); + +int_disable: + bnx2x_disable_int_sync(bp); + + bnx2x_free_skbs(bp); + bnx2x_free_irq(bp); + +out_error: + bnx2x_free_mem(bp); + + /* TBD we really need to reset the chip + if we want to recover from this */ + return rc; +} + +static void bnx2x_netif_stop(struct bnx2x *bp) +{ + int i; + + bp->rx_mode = BNX2X_RX_MODE_NONE; + bnx2x_set_storm_rx_mode(bp); + + bnx2x_disable_int_sync(bp); + bnx2x_link_reset(bp); + + for_each_queue(bp, i) + napi_disable(&bnx2x_fp(bp, i, napi)); + + if (netif_running(bp->dev)) { + netif_tx_disable(bp->dev); + bp->dev->trans_start = jiffies; /* prevent tx timeout */ + } +} + +static void bnx2x_reset_chip(struct bnx2x *bp, u32 reset_code) +{ + int port = bp->port; +#ifdef USE_DMAE + u32 wb_write[2]; +#endif + int base, i; + + DP(NETIF_MSG_IFDOWN, "reset called with code %x\n", reset_code); + + /* Do not rcv packets to BRB */ + REG_WR(bp, NIG_REG_LLH0_BRB1_DRV_MASK + port*4, 0x0); + /* Do not direct rcv packets that are not for MCP to the BRB */ + REG_WR(bp, (port ? NIG_REG_LLH1_BRB1_NOT_MCP : + NIG_REG_LLH0_BRB1_NOT_MCP), 0x0); + + /* Configure IGU and AEU */ + REG_WR(bp, HC_REG_CONFIG_0 + port*4, 0x1000); + REG_WR(bp, MISC_REG_AEU_MASK_ATTN_FUNC_0 + port*4, 0); + + /* TODO: Close Doorbell port? */ + + /* Clear ILT */ +#ifdef USE_DMAE + wb_write[0] = 0; + wb_write[1] = 0; +#endif + base = port * RQ_ONCHIP_AT_PORT_SIZE; + for (i = base; i < base + RQ_ONCHIP_AT_PORT_SIZE; i++) { +#ifdef USE_DMAE + REG_WR_DMAE(bp, PXP2_REG_RQ_ONCHIP_AT + i*8, wb_write, 2); +#else + REG_WR_IND(bp, PXP2_REG_RQ_ONCHIP_AT, 0); + REG_WR_IND(bp, PXP2_REG_RQ_ONCHIP_AT + 4, 0); +#endif + } + + if (reset_code == FW_MSG_CODE_DRV_UNLOAD_COMMON) { + /* reset_common */ + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_1_CLEAR, + 0xd3ffff7f); + REG_WR(bp, GRCBASE_MISC + MISC_REGISTERS_RESET_REG_2_CLEAR, + 0x1403); + } +} + +static int bnx2x_stop_multi(struct bnx2x *bp, int index) +{ + + int rc; + + /* halt the connnection */ + bp->fp[index].state = BNX2X_FP_STATE_HALTING; + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_HALT, index, 0, 0, 0); + + + rc = bnx2x_wait_ramrod(bp, BNX2X_FP_STATE_HALTED, index, + &(bp->fp[index].state), 1); + if (rc) /* timout */ + return rc; + + /* delete cfc entry */ + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_CFC_DEL, index, 0, 0, 1); + + return bnx2x_wait_ramrod(bp, BNX2X_FP_STATE_DELETED, index, + &(bp->fp[index].state), 1); + +} + + +static void bnx2x_stop_leading(struct bnx2x *bp) +{ + + /* if the other port is hadling traffic, + this can take a lot of time */ + int timeout = 500; + + might_sleep(); + + /* Send HALT ramrod */ + bp->fp[0].state = BNX2X_FP_STATE_HALTING; + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_HALT, 0, 0, 0, 0); + + if (bnx2x_wait_ramrod(bp, BNX2X_FP_STATE_HALTED, 0, + &(bp->fp[0].state), 1)) + return; + + bp->dsb_sp_prod_idx = *bp->dsb_sp_prod; + + /* Send CFC_DELETE ramrod */ + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_PORT_DEL, 0, 0, 0, 1); + + /* + Wait for completion. + we are going to reset the chip anyway + so there is not much to do if this times out + */ + while (bp->dsb_sp_prod_idx == *bp->dsb_sp_prod && timeout) { + timeout--; + msleep(1); + } + +} + +static int bnx2x_nic_unload(struct bnx2x *bp, int fre_irq) +{ + u32 reset_code = 0; + int rc; + int i; + + bp->state = BNX2X_STATE_CLOSING_WAIT4_HALT; + + /* Calling flush_scheduled_work() may deadlock because + * linkwatch_event() may be on the workqueue and it will try to get + * the rtnl_lock which we are holding. + */ + + while (bp->in_reset_task) + msleep(1); + + /* Delete the timer: do it before disabling interrupts, as it + may be stil STAT_QUERY ramrod pending after stopping the timer */ + del_timer_sync(&bp->timer); + + /* Wait until stat ramrod returns and all SP tasks complete */ + while (bp->stat_pending && (bp->spq_left != MAX_SPQ_PENDING)) + msleep(1); + + /* Stop fast path, disable MAC, disable interrupts, disable napi */ + bnx2x_netif_stop(bp); + + if (bp->flags & NO_WOL_FLAG) + reset_code = DRV_MSG_CODE_UNLOAD_REQ_WOL_MCP; + else if (bp->wol) { + u32 emac_base = bp->port ? GRCBASE_EMAC0 : GRCBASE_EMAC1; + u8 *mac_addr = bp->dev->dev_addr; + u32 val = (EMAC_MODE_MPKT | EMAC_MODE_MPKT_RCVD | + EMAC_MODE_ACPI_RCVD); + + EMAC_WR(EMAC_REG_EMAC_MODE, val); + + val = (mac_addr[0] << 8) | mac_addr[1]; + EMAC_WR(EMAC_REG_EMAC_MAC_MATCH, val); + + val = (mac_addr[2] << 24) | (mac_addr[3] << 16) | + (mac_addr[4] << 8) | mac_addr[5]; + EMAC_WR(EMAC_REG_EMAC_MAC_MATCH + 4, val); + + reset_code = DRV_MSG_CODE_UNLOAD_REQ_WOL_EN; + } else + reset_code = DRV_MSG_CODE_UNLOAD_REQ_WOL_DIS; + + for_each_nondefault_queue(bp, i) + if (bnx2x_stop_multi(bp, i)) + goto error; + + + bnx2x_stop_leading(bp); + +error: + if (!nomcp) + rc = bnx2x_fw_command(bp, reset_code); + else + rc = FW_MSG_CODE_DRV_UNLOAD_COMMON; + + /* Release IRQs */ + if (fre_irq) + bnx2x_free_irq(bp); + + /* Reset the chip */ + bnx2x_reset_chip(bp, rc); + + /* Report UNLOAD_DONE to MCP */ + if (!nomcp) + bnx2x_fw_command(bp, DRV_MSG_CODE_UNLOAD_DONE); + + /* Free SKBs and driver internals */ + bnx2x_free_skbs(bp); + bnx2x_free_mem(bp); + + bp->state = BNX2X_STATE_CLOSED; + /* Set link down */ + bp->link_up = 0; + netif_carrier_off(bp->dev); + + return 0; +} + +/* end of nic load/unload */ + +/* ethtool_ops */ + +/* + * Init service functions + */ + +static void bnx2x_link_settings_supported(struct bnx2x *bp, u32 switch_cfg) +{ + int port = bp->port; + u32 ext_phy_type; + + bp->phy_flags = 0; + + switch (switch_cfg) { + case SWITCH_CFG_1G: + BNX2X_DEV_INFO("switch_cfg 0x%x (1G)\n", switch_cfg); + + ext_phy_type = SERDES_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_DIRECT: + BNX2X_DEV_INFO("ext_phy_type 0x%x (Direct)\n", + ext_phy_type); + + bp->supported |= (SUPPORTED_10baseT_Half | + SUPPORTED_10baseT_Full | + SUPPORTED_100baseT_Half | + SUPPORTED_100baseT_Full | + SUPPORTED_1000baseT_Full | + SUPPORTED_2500baseT_Full | + SUPPORTED_TP | SUPPORTED_FIBRE | + SUPPORTED_Autoneg | + SUPPORTED_Pause | + SUPPORTED_Asym_Pause); + break; + + case PORT_HW_CFG_SERDES_EXT_PHY_TYPE_BCM5482: + BNX2X_DEV_INFO("ext_phy_type 0x%x (5482)\n", + ext_phy_type); + + bp->phy_flags |= PHY_SGMII_FLAG; + + bp->supported |= (/* SUPPORTED_10baseT_Half | + SUPPORTED_10baseT_Full | + SUPPORTED_100baseT_Half | + SUPPORTED_100baseT_Full |*/ + SUPPORTED_1000baseT_Full | + SUPPORTED_TP | SUPPORTED_FIBRE | + SUPPORTED_Autoneg | + SUPPORTED_Pause | + SUPPORTED_Asym_Pause); + break; + + default: + BNX2X_ERR("NVRAM config error. " + "BAD SerDes ext_phy_config 0x%x\n", + bp->ext_phy_config); + return; + } + + bp->phy_addr = REG_RD(bp, NIG_REG_SERDES0_CTRL_PHY_ADDR + + port*0x10); + BNX2X_DEV_INFO("phy_addr 0x%x\n", bp->phy_addr); + break; + + case SWITCH_CFG_10G: + BNX2X_DEV_INFO("switch_cfg 0x%x (10G)\n", switch_cfg); + + bp->phy_flags |= PHY_XGXS_FLAG; + + ext_phy_type = XGXS_EXT_PHY_TYPE(bp); + switch (ext_phy_type) { + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_DIRECT: + BNX2X_DEV_INFO("ext_phy_type 0x%x (Direct)\n", + ext_phy_type); + + bp->supported |= (SUPPORTED_10baseT_Half | + SUPPORTED_10baseT_Full | + SUPPORTED_100baseT_Half | + SUPPORTED_100baseT_Full | + SUPPORTED_1000baseT_Full | + SUPPORTED_2500baseT_Full | + SUPPORTED_10000baseT_Full | + SUPPORTED_TP | SUPPORTED_FIBRE | + SUPPORTED_Autoneg | + SUPPORTED_Pause | + SUPPORTED_Asym_Pause); + break; + + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8705: + case PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8706: + BNX2X_DEV_INFO("ext_phy_type 0x%x (8705/6)\n", + ext_phy_type); + + bp->supported |= (SUPPORTED_10000baseT_Full | + SUPPORTED_FIBRE | + SUPPORTED_Pause | + SUPPORTED_Asym_Pause); + break; + + default: + BNX2X_ERR("NVRAM config error. " + "BAD XGXS ext_phy_config 0x%x\n", + bp->ext_phy_config); + return; + } + + bp->phy_addr = REG_RD(bp, NIG_REG_XGXS0_CTRL_PHY_ADDR + + port*0x18); + BNX2X_DEV_INFO("phy_addr 0x%x\n", bp->phy_addr); + + bp->ser_lane = ((bp->lane_config & + PORT_HW_CFG_LANE_SWAP_CFG_MASTER_MASK) >> + PORT_HW_CFG_LANE_SWAP_CFG_MASTER_SHIFT); + bp->rx_lane_swap = ((bp->lane_config & + PORT_HW_CFG_LANE_SWAP_CFG_RX_MASK) >> + PORT_HW_CFG_LANE_SWAP_CFG_RX_SHIFT); + bp->tx_lane_swap = ((bp->lane_config & + PORT_HW_CFG_LANE_SWAP_CFG_TX_MASK) >> + PORT_HW_CFG_LANE_SWAP_CFG_TX_SHIFT); + BNX2X_DEV_INFO("rx_lane_swap 0x%x tx_lane_swap 0x%x\n", + bp->rx_lane_swap, bp->tx_lane_swap); + break; + + default: + BNX2X_ERR("BAD switch_cfg link_config 0x%x\n", + bp->link_config); + return; + } + + /* mask what we support according to speed_cap_mask */ + if (!(bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_10M_HALF)) + bp->supported &= ~SUPPORTED_10baseT_Half; + + if (!(bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_10M_FULL)) + bp->supported &= ~SUPPORTED_10baseT_Full; + + if (!(bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_100M_HALF)) + bp->supported &= ~SUPPORTED_100baseT_Half; + + if (!(bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_100M_FULL)) + bp->supported &= ~SUPPORTED_100baseT_Full; + + if (!(bp->speed_cap_mask & PORT_HW_CFG_SPEED_CAPABILITY_D0_1G)) + bp->supported &= ~(SUPPORTED_1000baseT_Half | + SUPPORTED_1000baseT_Full); + + if (!(bp->speed_cap_mask & PORT_HW_CFG_SPEED_CAPABILITY_D0_2_5G)) + bp->supported &= ~SUPPORTED_2500baseT_Full; + + if (!(bp->speed_cap_mask & PORT_HW_CFG_SPEED_CAPABILITY_D0_10G)) + bp->supported &= ~SUPPORTED_10000baseT_Full; + + BNX2X_DEV_INFO("supported 0x%x\n", bp->supported); +} + +static void bnx2x_link_settings_requested(struct bnx2x *bp) +{ + bp->req_autoneg = 0; + bp->req_duplex = DUPLEX_FULL; + + switch (bp->link_config & PORT_FEATURE_LINK_SPEED_MASK) { + case PORT_FEATURE_LINK_SPEED_AUTO: + if (bp->supported & SUPPORTED_Autoneg) { + bp->req_autoneg |= AUTONEG_SPEED; + bp->req_line_speed = 0; + bp->advertising = bp->supported; + } else { + u32 ext_phy_type; + + ext_phy_type = XGXS_EXT_PHY_TYPE(bp); + if ((ext_phy_type == + PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8705) || + (ext_phy_type == + PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8706)) { + /* force 10G, no AN */ + bp->req_line_speed = SPEED_10000; + bp->advertising = + (ADVERTISED_10000baseT_Full | + ADVERTISED_FIBRE); + break; + } + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " Autoneg not supported\n", + bp->link_config); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_10M_FULL: + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_10M_FULL) { + bp->req_line_speed = SPEED_10; + bp->advertising = (ADVERTISED_10baseT_Full | + ADVERTISED_TP); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_10M_HALF: + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_10M_HALF) { + bp->req_line_speed = SPEED_10; + bp->req_duplex = DUPLEX_HALF; + bp->advertising = (ADVERTISED_10baseT_Half | + ADVERTISED_TP); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_100M_FULL: + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_100M_FULL) { + bp->req_line_speed = SPEED_100; + bp->advertising = (ADVERTISED_100baseT_Full | + ADVERTISED_TP); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_100M_HALF: + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_100M_HALF) { + bp->req_line_speed = SPEED_100; + bp->req_duplex = DUPLEX_HALF; + bp->advertising = (ADVERTISED_100baseT_Half | + ADVERTISED_TP); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_1G: + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_1G) { + bp->req_line_speed = SPEED_1000; + bp->advertising = (ADVERTISED_1000baseT_Full | + ADVERTISED_TP); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_2_5G: + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_2_5G) { + bp->req_line_speed = SPEED_2500; + bp->advertising = (ADVERTISED_2500baseT_Full | + ADVERTISED_TP); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + case PORT_FEATURE_LINK_SPEED_10G_CX4: + case PORT_FEATURE_LINK_SPEED_10G_KX4: + case PORT_FEATURE_LINK_SPEED_10G_KR: + if (!(bp->phy_flags & PHY_XGXS_FLAG)) { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " phy_flags 0x%x\n", + bp->link_config, bp->phy_flags); + return; + } + if (bp->speed_cap_mask & + PORT_HW_CFG_SPEED_CAPABILITY_D0_10G) { + bp->req_line_speed = SPEED_10000; + bp->advertising = (ADVERTISED_10000baseT_Full | + ADVERTISED_FIBRE); + } else { + BNX2X_ERR("NVRAM config error. " + "Invalid link_config 0x%x" + " speed_cap_mask 0x%x\n", + bp->link_config, bp->speed_cap_mask); + return; + } + break; + + default: + BNX2X_ERR("NVRAM config error. " + "BAD link speed link_config 0x%x\n", + bp->link_config); + bp->req_autoneg |= AUTONEG_SPEED; + bp->req_line_speed = 0; + bp->advertising = bp->supported; + break; + } + BNX2X_DEV_INFO("req_line_speed %d req_duplex %d\n", + bp->req_line_speed, bp->req_duplex); + + bp->req_flow_ctrl = (bp->link_config & + PORT_FEATURE_FLOW_CONTROL_MASK); + /* Please refer to Table 28B-3 of the 802.3ab-1999 spec */ + switch (bp->req_flow_ctrl) { + case FLOW_CTRL_AUTO: + bp->req_autoneg |= AUTONEG_FLOW_CTRL; + if (bp->dev->mtu <= 4500) { + bp->pause_mode = PAUSE_BOTH; + bp->advertising |= (ADVERTISED_Pause | + ADVERTISED_Asym_Pause); + } else { + bp->pause_mode = PAUSE_ASYMMETRIC; + bp->advertising |= ADVERTISED_Asym_Pause; + } + break; + + case FLOW_CTRL_TX: + bp->pause_mode = PAUSE_ASYMMETRIC; + bp->advertising |= ADVERTISED_Asym_Pause; + break; + + case FLOW_CTRL_RX: + case FLOW_CTRL_BOTH: + bp->pause_mode = PAUSE_BOTH; + bp->advertising |= (ADVERTISED_Pause | + ADVERTISED_Asym_Pause); + break; + + case FLOW_CTRL_NONE: + default: + bp->pause_mode = PAUSE_NONE; + bp->advertising &= ~(ADVERTISED_Pause | + ADVERTISED_Asym_Pause); + break; + } + BNX2X_DEV_INFO("req_autoneg 0x%x req_flow_ctrl 0x%x\n" + KERN_INFO " pause_mode %d advertising 0x%x\n", + bp->req_autoneg, bp->req_flow_ctrl, + bp->pause_mode, bp->advertising); +} + +static void bnx2x_get_hwinfo(struct bnx2x *bp) +{ + u32 val, val2, val3, val4, id; + int port = bp->port; + u32 switch_cfg; + + bp->shmem_base = REG_RD(bp, MISC_REG_SHARED_MEM_ADDR); + BNX2X_DEV_INFO("shmem offset is %x\n", bp->shmem_base); + + /* Get the chip revision id and number. */ + /* chip num:16-31, rev:12-15, metal:4-11, bond_id:0-3 */ + val = REG_RD(bp, MISC_REG_CHIP_NUM); + id = ((val & 0xffff) << 16); + val = REG_RD(bp, MISC_REG_CHIP_REV); + id |= ((val & 0xf) << 12); + val = REG_RD(bp, MISC_REG_CHIP_METAL); + id |= ((val & 0xff) << 4); + REG_RD(bp, MISC_REG_BOND_ID); + id |= (val & 0xf); + bp->chip_id = id; + BNX2X_DEV_INFO("chip ID is %x\n", id); + + if (!bp->shmem_base || (bp->shmem_base != 0xAF900)) { + BNX2X_DEV_INFO("MCP not active\n"); + nomcp = 1; + goto set_mac; + } + + val = SHMEM_RD(bp, validity_map[port]); + if ((val & (SHR_MEM_VALIDITY_DEV_INFO | SHR_MEM_VALIDITY_MB)) + != (SHR_MEM_VALIDITY_DEV_INFO | SHR_MEM_VALIDITY_MB)) + BNX2X_ERR("MCP validity signature bad\n"); + + bp->fw_seq = (SHMEM_RD(bp, drv_fw_mb[port].drv_mb_header) & + DRV_MSG_SEQ_NUMBER_MASK); + + bp->hw_config = SHMEM_RD(bp, dev_info.shared_hw_config.config); + + bp->serdes_config = + SHMEM_RD(bp, dev_info.port_hw_config[bp->port].serdes_config); + bp->lane_config = + SHMEM_RD(bp, dev_info.port_hw_config[port].lane_config); + bp->ext_phy_config = + SHMEM_RD(bp, + dev_info.port_hw_config[port].external_phy_config); + bp->speed_cap_mask = + SHMEM_RD(bp, + dev_info.port_hw_config[port].speed_capability_mask); + + bp->link_config = + SHMEM_RD(bp, dev_info.port_feature_config[port].link_config); + + BNX2X_DEV_INFO("hw_config (%08x) serdes_config (%08x)\n" + KERN_INFO " lane_config (%08x) ext_phy_config (%08x)\n" + KERN_INFO " speed_cap_mask (%08x) link_config (%08x)" + " fw_seq (%08x)\n", + bp->hw_config, bp->serdes_config, bp->lane_config, + bp->ext_phy_config, bp->speed_cap_mask, + bp->link_config, bp->fw_seq); + + switch_cfg = (bp->link_config & PORT_FEATURE_CONNECTED_SWITCH_MASK); + bnx2x_link_settings_supported(bp, switch_cfg); + + bp->autoneg = (bp->hw_config & SHARED_HW_CFG_AN_ENABLE_MASK); + /* for now disable cl73 */ + bp->autoneg &= ~SHARED_HW_CFG_AN_ENABLE_CL73; + BNX2X_DEV_INFO("autoneg 0x%x\n", bp->autoneg); + + bnx2x_link_settings_requested(bp); + + val2 = SHMEM_RD(bp, dev_info.port_hw_config[port].mac_upper); + val = SHMEM_RD(bp, dev_info.port_hw_config[port].mac_lower); + bp->dev->dev_addr[0] = (u8)(val2 >> 8 & 0xff); + bp->dev->dev_addr[1] = (u8)(val2 & 0xff); + bp->dev->dev_addr[2] = (u8)(val >> 24 & 0xff); + bp->dev->dev_addr[3] = (u8)(val >> 16 & 0xff); + bp->dev->dev_addr[4] = (u8)(val >> 8 & 0xff); + bp->dev->dev_addr[5] = (u8)(val & 0xff); + + memcpy(bp->dev->perm_addr, bp->dev->dev_addr, 6); + + + val = SHMEM_RD(bp, dev_info.shared_hw_config.part_num); + val2 = SHMEM_RD(bp, dev_info.shared_hw_config.part_num[4]); + val3 = SHMEM_RD(bp, dev_info.shared_hw_config.part_num[8]); + val4 = SHMEM_RD(bp, dev_info.shared_hw_config.part_num[12]); + + printk(KERN_INFO PFX "part number %X-%X-%X-%X\n", + val, val2, val3, val4); + + /* bc ver */ + if (!nomcp) { + bp->bc_ver = val = ((SHMEM_RD(bp, dev_info.bc_rev)) >> 8); + BNX2X_DEV_INFO("bc_ver %X\n", val); + if (val < BNX2X_BC_VER) { + /* for now only warn + * later we might need to enforce this */ + BNX2X_ERR("This driver needs bc_ver %X but found %X," + " please upgrade BC\n", BNX2X_BC_VER, val); + } + } else { + bp->bc_ver = 0; + } + + val = REG_RD(bp, MCP_REG_MCPR_NVM_CFG4); + bp->flash_size = (NVRAM_1MB_SIZE << (val & MCPR_NVM_CFG4_FLASH_SIZE)); + BNX2X_DEV_INFO("flash_size 0x%x (%d)\n", + bp->flash_size, bp->flash_size); + + return; + +set_mac: /* only supposed to happen on emulation/FPGA */ + BNX2X_ERR("warning constant MAC workaround active\n"); + bp->dev->dev_addr[0] = 0; + bp->dev->dev_addr[1] = 0x50; + bp->dev->dev_addr[2] = 0xc2; + bp->dev->dev_addr[3] = 0x2c; + bp->dev->dev_addr[4] = 0x71; + bp->dev->dev_addr[5] = port ? 0x0d : 0x0e; + + memcpy(bp->dev->perm_addr, bp->dev->dev_addr, 6); + +} + +/* + * ethtool service functions + */ + +/* All ethtool functions called with rtnl_lock */ + +static int bnx2x_get_settings(struct net_device *dev, struct ethtool_cmd *cmd) +{ + struct bnx2x *bp = netdev_priv(dev); + + cmd->supported = bp->supported; + cmd->advertising = bp->advertising; + + if (netif_carrier_ok(dev)) { + cmd->speed = bp->line_speed; + cmd->duplex = bp->duplex; + } else { + cmd->speed = bp->req_line_speed; + cmd->duplex = bp->req_duplex; + } + + if (bp->phy_flags & PHY_XGXS_FLAG) { + cmd->port = PORT_FIBRE; + } else { + cmd->port = PORT_TP; + } + + cmd->phy_address = bp->phy_addr; + cmd->transceiver = XCVR_INTERNAL; + + if (bp->req_autoneg & AUTONEG_SPEED) { + cmd->autoneg = AUTONEG_ENABLE; + } else { + cmd->autoneg = AUTONEG_DISABLE; + } + + cmd->maxtxpkt = 0; + cmd->maxrxpkt = 0; + + DP(NETIF_MSG_LINK, "ethtool_cmd: cmd %d\n" + DP_LEVEL " supported 0x%x advertising 0x%x speed %d\n" + DP_LEVEL " duplex %d port %d phy_address %d transceiver %d\n" + DP_LEVEL " autoneg %d maxtxpkt %d maxrxpkt %d\n", + cmd->cmd, cmd->supported, cmd->advertising, cmd->speed, + cmd->duplex, cmd->port, cmd->phy_address, cmd->transceiver, + cmd->autoneg, cmd->maxtxpkt, cmd->maxrxpkt); + + return 0; +} + +static int bnx2x_set_settings(struct net_device *dev, struct ethtool_cmd *cmd) +{ + struct bnx2x *bp = netdev_priv(dev); + u32 advertising; + + DP(NETIF_MSG_LINK, "ethtool_cmd: cmd %d\n" + DP_LEVEL " supported 0x%x advertising 0x%x speed %d\n" + DP_LEVEL " duplex %d port %d phy_address %d transceiver %d\n" + DP_LEVEL " autoneg %d maxtxpkt %d maxrxpkt %d\n", + cmd->cmd, cmd->supported, cmd->advertising, cmd->speed, + cmd->duplex, cmd->port, cmd->phy_address, cmd->transceiver, + cmd->autoneg, cmd->maxtxpkt, cmd->maxrxpkt); + + switch (cmd->port) { + case PORT_TP: + if (!(bp->supported & SUPPORTED_TP)) + return -EINVAL; + + if (bp->phy_flags & PHY_XGXS_FLAG) { + bnx2x_link_reset(bp); + bnx2x_link_settings_supported(bp, SWITCH_CFG_1G); + bnx2x_phy_deassert(bp); + } + break; + + case PORT_FIBRE: + if (!(bp->supported & SUPPORTED_FIBRE)) + return -EINVAL; + + if (!(bp->phy_flags & PHY_XGXS_FLAG)) { + bnx2x_link_reset(bp); + bnx2x_link_settings_supported(bp, SWITCH_CFG_10G); + bnx2x_phy_deassert(bp); + } + break; + + default: + return -EINVAL; + } + + if (cmd->autoneg == AUTONEG_ENABLE) { + if (!(bp->supported & SUPPORTED_Autoneg)) + return -EINVAL; + + /* advertise the requested speed and duplex if supported */ + cmd->advertising &= bp->supported; + + bp->req_autoneg |= AUTONEG_SPEED; + bp->req_line_speed = 0; + bp->req_duplex = DUPLEX_FULL; + bp->advertising |= (ADVERTISED_Autoneg | cmd->advertising); + + } else { /* forced speed */ + /* advertise the requested speed and duplex if supported */ + switch (cmd->speed) { + case SPEED_10: + if (cmd->duplex == DUPLEX_FULL) { + if (!(bp->supported & SUPPORTED_10baseT_Full)) + return -EINVAL; + + advertising = (ADVERTISED_10baseT_Full | + ADVERTISED_TP); + } else { + if (!(bp->supported & SUPPORTED_10baseT_Half)) + return -EINVAL; + + advertising = (ADVERTISED_10baseT_Half | + ADVERTISED_TP); + } + break; + + case SPEED_100: + if (cmd->duplex == DUPLEX_FULL) { + if (!(bp->supported & + SUPPORTED_100baseT_Full)) + return -EINVAL; + + advertising = (ADVERTISED_100baseT_Full | + ADVERTISED_TP); + } else { + if (!(bp->supported & + SUPPORTED_100baseT_Half)) + return -EINVAL; + + advertising = (ADVERTISED_100baseT_Half | + ADVERTISED_TP); + } + break; + + case SPEED_1000: + if (cmd->duplex != DUPLEX_FULL) + return -EINVAL; + + if (!(bp->supported & SUPPORTED_1000baseT_Full)) + return -EINVAL; + + advertising = (ADVERTISED_1000baseT_Full | + ADVERTISED_TP); + break; + + case SPEED_2500: + if (cmd->duplex != DUPLEX_FULL) + return -EINVAL; + + if (!(bp->supported & SUPPORTED_2500baseT_Full)) + return -EINVAL; + + advertising = (ADVERTISED_2500baseT_Full | + ADVERTISED_TP); + break; + + case SPEED_10000: + if (cmd->duplex != DUPLEX_FULL) + return -EINVAL; + + if (!(bp->supported & SUPPORTED_10000baseT_Full)) + return -EINVAL; + + advertising = (ADVERTISED_10000baseT_Full | + ADVERTISED_FIBRE); + break; + + default: + return -EINVAL; + } + + bp->req_autoneg &= ~AUTONEG_SPEED; + bp->req_line_speed = cmd->speed; + bp->req_duplex = cmd->duplex; + bp->advertising = advertising; + } + + DP(NETIF_MSG_LINK, "req_autoneg 0x%x req_line_speed %d\n" + DP_LEVEL " req_duplex %d advertising 0x%x\n", + bp->req_autoneg, bp->req_line_speed, bp->req_duplex, + bp->advertising); + + bnx2x_stop_stats(bp); + bnx2x_link_initialize(bp); + + return 0; +} + +static void bnx2x_get_drvinfo(struct net_device *dev, + struct ethtool_drvinfo *info) +{ + struct bnx2x *bp = netdev_priv(dev); + + strcpy(info->driver, DRV_MODULE_NAME); + strcpy(info->version, DRV_MODULE_VERSION); + snprintf(info->fw_version, 32, "%d.%d.%d:%d (BC VER %x)", + BCM_5710_FW_MAJOR_VERSION, BCM_5710_FW_MINOR_VERSION, + BCM_5710_FW_REVISION_VERSION, BCM_5710_FW_COMPILE_FLAGS, + bp->bc_ver); + strcpy(info->bus_info, pci_name(bp->pdev)); + info->n_stats = BNX2X_NUM_STATS; + info->testinfo_len = BNX2X_NUM_TESTS; + info->eedump_len = bp->flash_size; + info->regdump_len = 0; +} + +static void bnx2x_get_wol(struct net_device *dev, struct ethtool_wolinfo *wol) +{ + struct bnx2x *bp = netdev_priv(dev); + + if (bp->flags & NO_WOL_FLAG) { + wol->supported = 0; + wol->wolopts = 0; + } else { + wol->supported = WAKE_MAGIC; + if (bp->wol) + wol->wolopts = WAKE_MAGIC; + else + wol->wolopts = 0; + } + memset(&wol->sopass, 0, sizeof(wol->sopass)); +} + +static int bnx2x_set_wol(struct net_device *dev, struct ethtool_wolinfo *wol) +{ + struct bnx2x *bp = netdev_priv(dev); + + if (wol->wolopts & ~WAKE_MAGIC) + return -EINVAL; + + if (wol->wolopts & WAKE_MAGIC) { + if (bp->flags & NO_WOL_FLAG) + return -EINVAL; + + bp->wol = 1; + } else { + bp->wol = 0; + } + return 0; +} + +static u32 bnx2x_get_msglevel(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + + return bp->msglevel; +} + +static void bnx2x_set_msglevel(struct net_device *dev, u32 level) +{ + struct bnx2x *bp = netdev_priv(dev); + + if (capable(CAP_NET_ADMIN)) + bp->msglevel = level; +} + +static int bnx2x_nway_reset(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + + if (bp->state != BNX2X_STATE_OPEN) { + DP(NETIF_MSG_PROBE, "state is %x, returning\n", bp->state); + return -EAGAIN; + } + + bnx2x_stop_stats(bp); + bnx2x_link_initialize(bp); + + return 0; +} + +static int bnx2x_get_eeprom_len(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + + return bp->flash_size; +} + +static int bnx2x_acquire_nvram_lock(struct bnx2x *bp) +{ + int port = bp->port; + int count, i; + u32 val = 0; + + /* adjust timeout for emulation/FPGA */ + count = NVRAM_TIMEOUT_COUNT; + if (CHIP_REV_IS_SLOW(bp)) + count *= 100; + + /* request access to nvram interface */ + REG_WR(bp, MCP_REG_MCPR_NVM_SW_ARB, + (MCPR_NVM_SW_ARB_ARB_REQ_SET1 << port)); + + for (i = 0; i < count*10; i++) { + val = REG_RD(bp, MCP_REG_MCPR_NVM_SW_ARB); + if (val & (MCPR_NVM_SW_ARB_ARB_ARB1 << port)) + break; + + udelay(5); + } + + if (!(val & (MCPR_NVM_SW_ARB_ARB_ARB1 << port))) { + DP(NETIF_MSG_NVM, "cannot get access to nvram interface\n"); + return -EBUSY; + } + + return 0; +} + +static int bnx2x_release_nvram_lock(struct bnx2x *bp) +{ + int port = bp->port; + int count, i; + u32 val = 0; + + /* adjust timeout for emulation/FPGA */ + count = NVRAM_TIMEOUT_COUNT; + if (CHIP_REV_IS_SLOW(bp)) + count *= 100; + + /* relinquish nvram interface */ + REG_WR(bp, MCP_REG_MCPR_NVM_SW_ARB, + (MCPR_NVM_SW_ARB_ARB_REQ_CLR1 << port)); + + for (i = 0; i < count*10; i++) { + val = REG_RD(bp, MCP_REG_MCPR_NVM_SW_ARB); + if (!(val & (MCPR_NVM_SW_ARB_ARB_ARB1 << port))) + break; + + udelay(5); + } + + if (val & (MCPR_NVM_SW_ARB_ARB_ARB1 << port)) { + DP(NETIF_MSG_NVM, "cannot free access to nvram interface\n"); + return -EBUSY; + } + + return 0; +} + +static void bnx2x_enable_nvram_access(struct bnx2x *bp) +{ + u32 val; + + val = REG_RD(bp, MCP_REG_MCPR_NVM_ACCESS_ENABLE); + + /* enable both bits, even on read */ + REG_WR(bp, MCP_REG_MCPR_NVM_ACCESS_ENABLE, + (val | MCPR_NVM_ACCESS_ENABLE_EN | + MCPR_NVM_ACCESS_ENABLE_WR_EN)); +} + +static void bnx2x_disable_nvram_access(struct bnx2x *bp) +{ + u32 val; + + val = REG_RD(bp, MCP_REG_MCPR_NVM_ACCESS_ENABLE); + + /* disable both bits, even after read */ + REG_WR(bp, MCP_REG_MCPR_NVM_ACCESS_ENABLE, + (val & ~(MCPR_NVM_ACCESS_ENABLE_EN | + MCPR_NVM_ACCESS_ENABLE_WR_EN))); +} + +static int bnx2x_nvram_read_dword(struct bnx2x *bp, u32 offset, u32 *ret_val, + u32 cmd_flags) +{ + int rc; + int count, i; + u32 val; + + /* build the command word */ + cmd_flags |= MCPR_NVM_COMMAND_DOIT; + + /* need to clear DONE bit separately */ + REG_WR(bp, MCP_REG_MCPR_NVM_COMMAND, MCPR_NVM_COMMAND_DONE); + + /* address of the NVRAM to read from */ + REG_WR(bp, MCP_REG_MCPR_NVM_ADDR, + (offset & MCPR_NVM_ADDR_NVM_ADDR_VALUE)); + + /* issue a read command */ + REG_WR(bp, MCP_REG_MCPR_NVM_COMMAND, cmd_flags); + + /* adjust timeout for emulation/FPGA */ + count = NVRAM_TIMEOUT_COUNT; + if (CHIP_REV_IS_SLOW(bp)) + count *= 100; + + /* wait for completion */ + *ret_val = 0; + rc = -EBUSY; + for (i = 0; i < count; i++) { + udelay(5); + val = REG_RD(bp, MCP_REG_MCPR_NVM_COMMAND); + + if (val & MCPR_NVM_COMMAND_DONE) { + val = REG_RD(bp, MCP_REG_MCPR_NVM_READ); + DP(NETIF_MSG_NVM, "val 0x%08x\n", val); + /* we read nvram data in cpu order + * but ethtool sees it as an array of bytes + * converting to big-endian will do the work */ + val = cpu_to_be32(val); + *ret_val = val; + rc = 0; + break; + } + } + + return rc; +} + +static int bnx2x_nvram_read(struct bnx2x *bp, u32 offset, u8 *ret_buf, + int buf_size) +{ + int rc; + u32 cmd_flags; + u32 val; + + if ((offset & 0x03) || (buf_size & 0x03) || (buf_size == 0)) { + DP(NETIF_MSG_NVM, + "Invalid paramter: offset 0x%x buf_size 0x%x\n", + offset, buf_size); + return -EINVAL; + } + + if (offset + buf_size > bp->flash_size) { + DP(NETIF_MSG_NVM, "Invalid paramter: offset (0x%x) +" + " buf_size (0x%x) > flash_size (0x%x)\n", + offset, buf_size, bp->flash_size); + return -EINVAL; + } + + /* request access to nvram interface */ + rc = bnx2x_acquire_nvram_lock(bp); + if (rc) + return rc; + + /* enable access to nvram interface */ + bnx2x_enable_nvram_access(bp); + + /* read the first word(s) */ + cmd_flags = MCPR_NVM_COMMAND_FIRST; + while ((buf_size > sizeof(u32)) && (rc == 0)) { + rc = bnx2x_nvram_read_dword(bp, offset, &val, cmd_flags); + memcpy(ret_buf, &val, 4); + + /* advance to the next dword */ + offset += sizeof(u32); + ret_buf += sizeof(u32); + buf_size -= sizeof(u32); + cmd_flags = 0; + } + + if (rc == 0) { + cmd_flags |= MCPR_NVM_COMMAND_LAST; + rc = bnx2x_nvram_read_dword(bp, offset, &val, cmd_flags); + memcpy(ret_buf, &val, 4); + } + + /* disable access to nvram interface */ + bnx2x_disable_nvram_access(bp); + bnx2x_release_nvram_lock(bp); + + return rc; +} + +static int bnx2x_get_eeprom(struct net_device *dev, + struct ethtool_eeprom *eeprom, u8 *eebuf) +{ + struct bnx2x *bp = netdev_priv(dev); + int rc; + + DP(NETIF_MSG_NVM, "ethtool_eeprom: cmd %d\n" + DP_LEVEL " magic 0x%x offset 0x%x (%d) len 0x%x (%d)\n", + eeprom->cmd, eeprom->magic, eeprom->offset, eeprom->offset, + eeprom->len, eeprom->len); + + /* parameters already validated in ethtool_get_eeprom */ + + rc = bnx2x_nvram_read(bp, eeprom->offset, eebuf, eeprom->len); + + return rc; +} + +static int bnx2x_nvram_write_dword(struct bnx2x *bp, u32 offset, u32 val, + u32 cmd_flags) +{ + int rc; + int count, i; + + /* build the command word */ + cmd_flags |= MCPR_NVM_COMMAND_DOIT | MCPR_NVM_COMMAND_WR; + + /* need to clear DONE bit separately */ + REG_WR(bp, MCP_REG_MCPR_NVM_COMMAND, MCPR_NVM_COMMAND_DONE); + + /* write the data */ + REG_WR(bp, MCP_REG_MCPR_NVM_WRITE, val); + + /* address of the NVRAM to write to */ + REG_WR(bp, MCP_REG_MCPR_NVM_ADDR, + (offset & MCPR_NVM_ADDR_NVM_ADDR_VALUE)); + + /* issue the write command */ + REG_WR(bp, MCP_REG_MCPR_NVM_COMMAND, cmd_flags); + + /* adjust timeout for emulation/FPGA */ + count = NVRAM_TIMEOUT_COUNT; + if (CHIP_REV_IS_SLOW(bp)) + count *= 100; + + /* wait for completion */ + rc = -EBUSY; + for (i = 0; i < count; i++) { + udelay(5); + val = REG_RD(bp, MCP_REG_MCPR_NVM_COMMAND); + if (val & MCPR_NVM_COMMAND_DONE) { + rc = 0; + break; + } + } + + return rc; +} + +#define BYTE_OFFSET(offset) (8 * (offset & 0x03)) + +static int bnx2x_nvram_write1(struct bnx2x *bp, u32 offset, u8 *data_buf, + int buf_size) +{ + int rc; + u32 cmd_flags; + u32 align_offset; + u32 val; + + if (offset + buf_size > bp->flash_size) { + DP(NETIF_MSG_NVM, "Invalid paramter: offset (0x%x) +" + " buf_size (0x%x) > flash_size (0x%x)\n", + offset, buf_size, bp->flash_size); + return -EINVAL; + } + + /* request access to nvram interface */ + rc = bnx2x_acquire_nvram_lock(bp); + if (rc) + return rc; + + /* enable access to nvram interface */ + bnx2x_enable_nvram_access(bp); + + cmd_flags = (MCPR_NVM_COMMAND_FIRST | MCPR_NVM_COMMAND_LAST); + align_offset = (offset & ~0x03); + rc = bnx2x_nvram_read_dword(bp, align_offset, &val, cmd_flags); + + if (rc == 0) { + val &= ~(0xff << BYTE_OFFSET(offset)); + val |= (*data_buf << BYTE_OFFSET(offset)); + + /* nvram data is returned as an array of bytes + * convert it back to cpu order */ + val = be32_to_cpu(val); + + DP(NETIF_MSG_NVM, "val 0x%08x\n", val); + + rc = bnx2x_nvram_write_dword(bp, align_offset, val, + cmd_flags); + } + + /* disable access to nvram interface */ + bnx2x_disable_nvram_access(bp); + bnx2x_release_nvram_lock(bp); + + return rc; +} + +static int bnx2x_nvram_write(struct bnx2x *bp, u32 offset, u8 *data_buf, + int buf_size) +{ + int rc; + u32 cmd_flags; + u32 val; + u32 written_so_far; + + if (buf_size == 1) { /* ethtool */ + return bnx2x_nvram_write1(bp, offset, data_buf, buf_size); + } + + if ((offset & 0x03) || (buf_size & 0x03) || (buf_size == 0)) { + DP(NETIF_MSG_NVM, + "Invalid paramter: offset 0x%x buf_size 0x%x\n", + offset, buf_size); + return -EINVAL; + } + + if (offset + buf_size > bp->flash_size) { + DP(NETIF_MSG_NVM, "Invalid paramter: offset (0x%x) +" + " buf_size (0x%x) > flash_size (0x%x)\n", + offset, buf_size, bp->flash_size); + return -EINVAL; + } + + /* request access to nvram interface */ + rc = bnx2x_acquire_nvram_lock(bp); + if (rc) + return rc; + + /* enable access to nvram interface */ + bnx2x_enable_nvram_access(bp); + + written_so_far = 0; + cmd_flags = MCPR_NVM_COMMAND_FIRST; + while ((written_so_far < buf_size) && (rc == 0)) { + if (written_so_far == (buf_size - sizeof(u32))) + cmd_flags |= MCPR_NVM_COMMAND_LAST; + else if (((offset + 4) % NVRAM_PAGE_SIZE) == 0) + cmd_flags |= MCPR_NVM_COMMAND_LAST; + else if ((offset % NVRAM_PAGE_SIZE) == 0) + cmd_flags |= MCPR_NVM_COMMAND_FIRST; + + memcpy(&val, data_buf, 4); + DP(NETIF_MSG_NVM, "val 0x%08x\n", val); + + rc = bnx2x_nvram_write_dword(bp, offset, val, cmd_flags); + + /* advance to the next dword */ + offset += sizeof(u32); + data_buf += sizeof(u32); + written_so_far += sizeof(u32); + cmd_flags = 0; + } + + /* disable access to nvram interface */ + bnx2x_disable_nvram_access(bp); + bnx2x_release_nvram_lock(bp); + + return rc; +} + +static int bnx2x_set_eeprom(struct net_device *dev, + struct ethtool_eeprom *eeprom, u8 *eebuf) +{ + struct bnx2x *bp = netdev_priv(dev); + int rc; + + DP(NETIF_MSG_NVM, "ethtool_eeprom: cmd %d\n" + DP_LEVEL " magic 0x%x offset 0x%x (%d) len 0x%x (%d)\n", + eeprom->cmd, eeprom->magic, eeprom->offset, eeprom->offset, + eeprom->len, eeprom->len); + + /* parameters already validated in ethtool_set_eeprom */ + + rc = bnx2x_nvram_write(bp, eeprom->offset, eebuf, eeprom->len); + + return rc; +} + +static int bnx2x_get_coalesce(struct net_device *dev, + struct ethtool_coalesce *coal) +{ + struct bnx2x *bp = netdev_priv(dev); + + memset(coal, 0, sizeof(struct ethtool_coalesce)); + + coal->rx_coalesce_usecs = bp->rx_ticks; + coal->tx_coalesce_usecs = bp->tx_ticks; + coal->stats_block_coalesce_usecs = bp->stats_ticks; + + return 0; +} + +static int bnx2x_set_coalesce(struct net_device *dev, + struct ethtool_coalesce *coal) +{ + struct bnx2x *bp = netdev_priv(dev); + + bp->rx_ticks = (u16) coal->rx_coalesce_usecs; + if (bp->rx_ticks > 3000) + bp->rx_ticks = 3000; + + bp->tx_ticks = (u16) coal->tx_coalesce_usecs; + if (bp->tx_ticks > 0x3000) + bp->tx_ticks = 0x3000; + + bp->stats_ticks = coal->stats_block_coalesce_usecs; + if (bp->stats_ticks > 0xffff00) + bp->stats_ticks = 0xffff00; + bp->stats_ticks &= 0xffff00; + + if (netif_running(bp->dev)) + bnx2x_update_coalesce(bp); + + return 0; +} + +static void bnx2x_get_ringparam(struct net_device *dev, + struct ethtool_ringparam *ering) +{ + struct bnx2x *bp = netdev_priv(dev); + + ering->rx_max_pending = MAX_RX_AVAIL; + ering->rx_mini_max_pending = 0; + ering->rx_jumbo_max_pending = 0; + + ering->rx_pending = bp->rx_ring_size; + ering->rx_mini_pending = 0; + ering->rx_jumbo_pending = 0; + + ering->tx_max_pending = MAX_TX_AVAIL; + ering->tx_pending = bp->tx_ring_size; +} + +static int bnx2x_set_ringparam(struct net_device *dev, + struct ethtool_ringparam *ering) +{ + struct bnx2x *bp = netdev_priv(dev); + + if ((ering->rx_pending > MAX_RX_AVAIL) || + (ering->tx_pending > MAX_TX_AVAIL) || + (ering->tx_pending <= MAX_SKB_FRAGS + 4)) + return -EINVAL; + + bp->rx_ring_size = ering->rx_pending; + bp->tx_ring_size = ering->tx_pending; + + if (netif_running(bp->dev)) { + bnx2x_nic_unload(bp, 0); + bnx2x_nic_load(bp, 0); + } + + return 0; +} + +static void bnx2x_get_pauseparam(struct net_device *dev, + struct ethtool_pauseparam *epause) +{ + struct bnx2x *bp = netdev_priv(dev); + + epause->autoneg = + ((bp->req_autoneg & AUTONEG_FLOW_CTRL) == AUTONEG_FLOW_CTRL); + epause->rx_pause = ((bp->flow_ctrl & FLOW_CTRL_RX) == FLOW_CTRL_RX); + epause->tx_pause = ((bp->flow_ctrl & FLOW_CTRL_TX) == FLOW_CTRL_TX); + + DP(NETIF_MSG_LINK, "ethtool_pauseparam: cmd %d\n" + DP_LEVEL " autoneg %d rx_pause %d tx_pause %d\n", + epause->cmd, epause->autoneg, epause->rx_pause, epause->tx_pause); +} + +static int bnx2x_set_pauseparam(struct net_device *dev, + struct ethtool_pauseparam *epause) +{ + struct bnx2x *bp = netdev_priv(dev); + + DP(NETIF_MSG_LINK, "ethtool_pauseparam: cmd %d\n" + DP_LEVEL " autoneg %d rx_pause %d tx_pause %d\n", + epause->cmd, epause->autoneg, epause->rx_pause, epause->tx_pause); + + bp->req_flow_ctrl = FLOW_CTRL_AUTO; + if (epause->autoneg) { + bp->req_autoneg |= AUTONEG_FLOW_CTRL; + if (bp->dev->mtu <= 4500) { + bp->pause_mode = PAUSE_BOTH; + bp->advertising |= (ADVERTISED_Pause | + ADVERTISED_Asym_Pause); + } else { + bp->pause_mode = PAUSE_ASYMMETRIC; + bp->advertising |= ADVERTISED_Asym_Pause; + } + + } else { + bp->req_autoneg &= ~AUTONEG_FLOW_CTRL; + + if (epause->rx_pause) + bp->req_flow_ctrl |= FLOW_CTRL_RX; + if (epause->tx_pause) + bp->req_flow_ctrl |= FLOW_CTRL_TX; + + switch (bp->req_flow_ctrl) { + case FLOW_CTRL_AUTO: + bp->req_flow_ctrl = FLOW_CTRL_NONE; + bp->pause_mode = PAUSE_NONE; + bp->advertising &= ~(ADVERTISED_Pause | + ADVERTISED_Asym_Pause); + break; + + case FLOW_CTRL_TX: + bp->pause_mode = PAUSE_ASYMMETRIC; + bp->advertising |= ADVERTISED_Asym_Pause; + break; + + case FLOW_CTRL_RX: + case FLOW_CTRL_BOTH: + bp->pause_mode = PAUSE_BOTH; + bp->advertising |= (ADVERTISED_Pause | + ADVERTISED_Asym_Pause); + break; + } + } + + DP(NETIF_MSG_LINK, "req_autoneg 0x%x req_flow_ctrl 0x%x\n" + DP_LEVEL " pause_mode %d advertising 0x%x\n", + bp->req_autoneg, bp->req_flow_ctrl, bp->pause_mode, + bp->advertising); + + bnx2x_stop_stats(bp); + bnx2x_link_initialize(bp); + + return 0; +} + +static u32 bnx2x_get_rx_csum(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + + return bp->rx_csum; +} + +static int bnx2x_set_rx_csum(struct net_device *dev, u32 data) +{ + struct bnx2x *bp = netdev_priv(dev); + + bp->rx_csum = data; + return 0; +} + +static int bnx2x_set_tso(struct net_device *dev, u32 data) +{ + if (data) + dev->features |= (NETIF_F_TSO | NETIF_F_TSO_ECN); + else + dev->features &= ~(NETIF_F_TSO | NETIF_F_TSO_ECN); + return 0; +} + +static struct { + char string[ETH_GSTRING_LEN]; +} bnx2x_tests_str_arr[BNX2X_NUM_TESTS] = { + { "MC Errors (online)" } +}; + +static int bnx2x_self_test_count(struct net_device *dev) +{ + return BNX2X_NUM_TESTS; +} + +static void bnx2x_self_test(struct net_device *dev, + struct ethtool_test *etest, u64 *buf) +{ + struct bnx2x *bp = netdev_priv(dev); + int stats_state; + + memset(buf, 0, sizeof(u64) * BNX2X_NUM_TESTS); + + if (bp->state != BNX2X_STATE_OPEN) { + DP(NETIF_MSG_PROBE, "state is %x, returning\n", bp->state); + return; + } + + stats_state = bp->stats_state; + bnx2x_stop_stats(bp); + + if (bnx2x_mc_assert(bp) != 0) { + buf[0] = 1; + etest->flags |= ETH_TEST_FL_FAILED; + } + +#ifdef BNX2X_EXTRA_DEBUG + bnx2x_panic_dump(bp); +#endif + bp->stats_state = stats_state; +} + +static struct { + char string[ETH_GSTRING_LEN]; +} bnx2x_stats_str_arr[BNX2X_NUM_STATS] = { + { "rx_bytes"}, /* 0 */ + { "rx_error_bytes"}, /* 1 */ + { "tx_bytes"}, /* 2 */ + { "tx_error_bytes"}, /* 3 */ + { "rx_ucast_packets"}, /* 4 */ + { "rx_mcast_packets"}, /* 5 */ + { "rx_bcast_packets"}, /* 6 */ + { "tx_ucast_packets"}, /* 7 */ + { "tx_mcast_packets"}, /* 8 */ + { "tx_bcast_packets"}, /* 9 */ + { "tx_mac_errors"}, /* 10 */ + { "tx_carrier_errors"}, /* 11 */ + { "rx_crc_errors"}, /* 12 */ + { "rx_align_errors"}, /* 13 */ + { "tx_single_collisions"}, /* 14 */ + { "tx_multi_collisions"}, /* 15 */ + { "tx_deferred"}, /* 16 */ + { "tx_excess_collisions"}, /* 17 */ + { "tx_late_collisions"}, /* 18 */ + { "tx_total_collisions"}, /* 19 */ + { "rx_fragments"}, /* 20 */ + { "rx_jabbers"}, /* 21 */ + { "rx_undersize_packets"}, /* 22 */ + { "rx_oversize_packets"}, /* 23 */ + { "rx_xon_frames"}, /* 24 */ + { "rx_xoff_frames"}, /* 25 */ + { "tx_xon_frames"}, /* 26 */ + { "tx_xoff_frames"}, /* 27 */ + { "rx_mac_ctrl_frames"}, /* 28 */ + { "rx_filtered_packets"}, /* 29 */ + { "rx_discards"}, /* 30 */ +}; + +#define STATS_OFFSET32(offset_name) \ + (offsetof(struct bnx2x_eth_stats, offset_name) / 4) + +static unsigned long bnx2x_stats_offset_arr[BNX2X_NUM_STATS] = { + STATS_OFFSET32(total_bytes_received_hi), /* 0 */ + STATS_OFFSET32(stat_IfHCInBadOctets_hi), /* 1 */ + STATS_OFFSET32(total_bytes_transmitted_hi), /* 2 */ + STATS_OFFSET32(stat_IfHCOutBadOctets_hi), /* 3 */ + STATS_OFFSET32(total_unicast_packets_received_hi), /* 4 */ + STATS_OFFSET32(total_multicast_packets_received_hi), /* 5 */ + STATS_OFFSET32(total_broadcast_packets_received_hi), /* 6 */ + STATS_OFFSET32(total_unicast_packets_transmitted_hi), /* 7 */ + STATS_OFFSET32(total_multicast_packets_transmitted_hi), /* 8 */ + STATS_OFFSET32(total_broadcast_packets_transmitted_hi), /* 9 */ + STATS_OFFSET32(stat_Dot3statsInternalMacTransmitErrors), /* 10 */ + STATS_OFFSET32(stat_Dot3StatsCarrierSenseErrors), /* 11 */ + STATS_OFFSET32(crc_receive_errors), /* 12 */ + STATS_OFFSET32(alignment_errors), /* 13 */ + STATS_OFFSET32(single_collision_transmit_frames), /* 14 */ + STATS_OFFSET32(multiple_collision_transmit_frames), /* 15 */ + STATS_OFFSET32(stat_Dot3StatsDeferredTransmissions), /* 16 */ + STATS_OFFSET32(excessive_collision_frames), /* 17 */ + STATS_OFFSET32(late_collision_frames), /* 18 */ + STATS_OFFSET32(number_of_bugs_found_in_stats_spec), /* 19 */ + STATS_OFFSET32(runt_packets_received), /* 20 */ + STATS_OFFSET32(jabber_packets_received), /* 21 */ + STATS_OFFSET32(error_runt_packets_received), /* 22 */ + STATS_OFFSET32(error_jabber_packets_received), /* 23 */ + STATS_OFFSET32(pause_xon_frames_received), /* 24 */ + STATS_OFFSET32(pause_xoff_frames_received), /* 25 */ + STATS_OFFSET32(pause_xon_frames_transmitted), /* 26 */ + STATS_OFFSET32(pause_xoff_frames_transmitted), /* 27 */ + STATS_OFFSET32(control_frames_received), /* 28 */ + STATS_OFFSET32(mac_filter_discard), /* 29 */ + STATS_OFFSET32(no_buff_discard), /* 30 */ +}; + +static u8 bnx2x_stats_len_arr[BNX2X_NUM_STATS] = { + 8, 0, 8, 0, 8, 8, 8, 8, 8, 8, + 4, 0, 4, 4, 4, 4, 4, 4, 4, 4, + 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, + 4, +}; + +static void bnx2x_get_strings(struct net_device *dev, u32 stringset, u8 *buf) +{ + switch (stringset) { + case ETH_SS_STATS: + memcpy(buf, bnx2x_stats_str_arr, sizeof(bnx2x_stats_str_arr)); + break; + + case ETH_SS_TEST: + memcpy(buf, bnx2x_tests_str_arr, sizeof(bnx2x_tests_str_arr)); + break; + } +} + +static int bnx2x_get_stats_count(struct net_device *dev) +{ + return BNX2X_NUM_STATS; +} + +static void bnx2x_get_ethtool_stats(struct net_device *dev, + struct ethtool_stats *stats, u64 *buf) +{ + struct bnx2x *bp = netdev_priv(dev); + u32 *hw_stats = (u32 *)bnx2x_sp_check(bp, eth_stats); + int i; + + for (i = 0; i < BNX2X_NUM_STATS; i++) { + if (bnx2x_stats_len_arr[i] == 0) { + /* skip this counter */ + buf[i] = 0; + continue; + } + if (!hw_stats) { + buf[i] = 0; + continue; + } + if (bnx2x_stats_len_arr[i] == 4) { + /* 4-byte counter */ + buf[i] = (u64) *(hw_stats + bnx2x_stats_offset_arr[i]); + continue; + } + /* 8-byte counter */ + buf[i] = HILO_U64(*(hw_stats + bnx2x_stats_offset_arr[i]), + *(hw_stats + bnx2x_stats_offset_arr[i] + 1)); + } +} + +static int bnx2x_phys_id(struct net_device *dev, u32 data) +{ + struct bnx2x *bp = netdev_priv(dev); + int i; + + if (data == 0) + data = 2; + + for (i = 0; i < (data * 2); i++) { + if ((i % 2) == 0) { + bnx2x_leds_set(bp, SPEED_1000); + } else { + bnx2x_leds_unset(bp); + } + msleep_interruptible(500); + if (signal_pending(current)) + break; + } + + if (bp->link_up) + bnx2x_leds_set(bp, bp->line_speed); + + return 0; +} + +static struct ethtool_ops bnx2x_ethtool_ops = { + .get_settings = bnx2x_get_settings, + .set_settings = bnx2x_set_settings, + .get_drvinfo = bnx2x_get_drvinfo, + .get_wol = bnx2x_get_wol, + .set_wol = bnx2x_set_wol, + .get_msglevel = bnx2x_get_msglevel, + .set_msglevel = bnx2x_set_msglevel, + .nway_reset = bnx2x_nway_reset, + .get_link = ethtool_op_get_link, + .get_eeprom_len = bnx2x_get_eeprom_len, + .get_eeprom = bnx2x_get_eeprom, + .set_eeprom = bnx2x_set_eeprom, + .get_coalesce = bnx2x_get_coalesce, + .set_coalesce = bnx2x_set_coalesce, + .get_ringparam = bnx2x_get_ringparam, + .set_ringparam = bnx2x_set_ringparam, + .get_pauseparam = bnx2x_get_pauseparam, + .set_pauseparam = bnx2x_set_pauseparam, + .get_rx_csum = bnx2x_get_rx_csum, + .set_rx_csum = bnx2x_set_rx_csum, + .get_tx_csum = ethtool_op_get_tx_csum, + .set_tx_csum = ethtool_op_set_tx_csum, + .get_sg = ethtool_op_get_sg, + .set_sg = ethtool_op_set_sg, + .get_tso = ethtool_op_get_tso, + .set_tso = bnx2x_set_tso, + .self_test_count = bnx2x_self_test_count, + .self_test = bnx2x_self_test, + .get_strings = bnx2x_get_strings, + .phys_id = bnx2x_phys_id, + .get_stats_count = bnx2x_get_stats_count, + .get_ethtool_stats = bnx2x_get_ethtool_stats +}; + +/* end of ethtool_ops */ + +/**************************************************************************** +* General service functions +****************************************************************************/ + +static int bnx2x_set_power_state(struct bnx2x *bp, pci_power_t state) +{ + u16 pmcsr; + + pci_read_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL, &pmcsr); + + switch (state) { + case PCI_D0: + pci_write_config_word(bp->pdev, + bp->pm_cap + PCI_PM_CTRL, + ((pmcsr & ~PCI_PM_CTRL_STATE_MASK) | + PCI_PM_CTRL_PME_STATUS)); + + if (pmcsr & PCI_PM_CTRL_STATE_MASK) + /* delay required during transition out of D3hot */ + msleep(20); + break; + + case PCI_D3hot: + pmcsr &= ~PCI_PM_CTRL_STATE_MASK; + pmcsr |= 3; + + if (bp->wol) + pmcsr |= PCI_PM_CTRL_PME_ENABLE; + + pci_write_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL, + pmcsr); + + /* No more memory access after this point until + * device is brought back to D0. + */ + break; + + default: + return -EINVAL; + } + return 0; +} + +/* + * net_device service functions + */ + +/* Called with rtnl_lock from vlan functions and also netif_tx_lock + * from set_multicast. + */ +static void bnx2x_set_rx_mode(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + u32 rx_mode = BNX2X_RX_MODE_NORMAL; + + DP(NETIF_MSG_IFUP, "called dev->flags = %x\n", dev->flags); + + if (dev->flags & IFF_PROMISC) + rx_mode = BNX2X_RX_MODE_PROMISC; + + else if ((dev->flags & IFF_ALLMULTI) || + (dev->mc_count > BNX2X_MAX_MULTICAST)) + rx_mode = BNX2X_RX_MODE_ALLMULTI; + + else { /* some multicasts */ + int i, old, offset; + struct dev_mc_list *mclist; + struct mac_configuration_cmd *config = + bnx2x_sp(bp, mcast_config); + + for (i = 0, mclist = dev->mc_list; + mclist && (i < dev->mc_count); + i++, mclist = mclist->next) { + + config->config_table[i].cam_entry.msb_mac_addr = + swab16(*(u16 *)&mclist->dmi_addr[0]); + config->config_table[i].cam_entry.middle_mac_addr = + swab16(*(u16 *)&mclist->dmi_addr[2]); + config->config_table[i].cam_entry.lsb_mac_addr = + swab16(*(u16 *)&mclist->dmi_addr[4]); + config->config_table[i].cam_entry.flags = + cpu_to_le16(bp->port); + config->config_table[i].target_table_entry.flags = 0; + config->config_table[i].target_table_entry. + client_id = 0; + config->config_table[i].target_table_entry. + vlan_id = 0; + + DP(NETIF_MSG_IFUP, + "setting MCAST[%d] (%04x:%04x:%04x)\n", + i, config->config_table[i].cam_entry.msb_mac_addr, + config->config_table[i].cam_entry.middle_mac_addr, + config->config_table[i].cam_entry.lsb_mac_addr); + } + old = config->hdr.length_6b; + if (old > i) { + for (; i < old; i++) { + if (CAM_IS_INVALID(config->config_table[i])) { + i--; /* already invalidated */ + break; + } + /* invalidate */ + CAM_INVALIDATE(config->config_table[i]); + } + } + + if (CHIP_REV_IS_SLOW(bp)) + offset = BNX2X_MAX_EMUL_MULTI*(1 + bp->port); + else + offset = BNX2X_MAX_MULTICAST*(1 + bp->port); + + config->hdr.length_6b = i; + config->hdr.offset = offset; + config->hdr.reserved0 = 0; + config->hdr.reserved1 = 0; + + bnx2x_sp_post(bp, RAMROD_CMD_ID_ETH_SET_MAC, 0, + U64_HI(bnx2x_sp_mapping(bp, mcast_config)), + U64_LO(bnx2x_sp_mapping(bp, mcast_config)), 0); + } + + bp->rx_mode = rx_mode; + bnx2x_set_storm_rx_mode(bp); +} + +static int bnx2x_poll(struct napi_struct *napi, int budget) +{ + struct bnx2x_fastpath *fp = container_of(napi, struct bnx2x_fastpath, + napi); + struct bnx2x *bp = fp->bp; + int work_done = 0; + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + goto out_panic; +#endif + + prefetch(fp->tx_buf_ring[TX_BD(fp->tx_pkt_cons)].skb); + prefetch(fp->rx_buf_ring[RX_BD(fp->rx_bd_cons)].skb); + prefetch((char *)(fp->rx_buf_ring[RX_BD(fp->rx_bd_cons)].skb) + 256); + + bnx2x_update_fpsb_idx(fp); + + if (le16_to_cpu(*fp->tx_cons_sb) != fp->tx_pkt_cons) + bnx2x_tx_int(fp, budget); + + + if (le16_to_cpu(*fp->rx_cons_sb) != fp->rx_comp_cons) + work_done = bnx2x_rx_int(fp, budget); + + + rmb(); /* bnx2x_has_work() reads the status block */ + + /* must not complete if we consumed full budget */ + if ((work_done < budget) && !bnx2x_has_work(fp)) { + +#ifdef BNX2X_STOP_ON_ERROR +out_panic: +#endif + netif_rx_complete(bp->dev, napi); + + bnx2x_ack_sb(bp, fp->index, USTORM_ID, + le16_to_cpu(fp->fp_u_idx), IGU_INT_NOP, 1); + bnx2x_ack_sb(bp, fp->index, CSTORM_ID, + le16_to_cpu(fp->fp_c_idx), IGU_INT_ENABLE, 1); + } + + return work_done; +} + +/* Called with netif_tx_lock. + * bnx2x_tx_int() runs without netif_tx_lock unless it needs to call + * netif_wake_queue(). + */ +static int bnx2x_start_xmit(struct sk_buff *skb, struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + struct bnx2x_fastpath *fp; + struct sw_tx_bd *tx_buf; + struct eth_tx_bd *tx_bd; + struct eth_tx_parse_bd *pbd = NULL; + u16 pkt_prod, bd_prod; + int nbd, fp_index = 0; + dma_addr_t mapping; + +#ifdef BNX2X_STOP_ON_ERROR + if (unlikely(bp->panic)) + return NETDEV_TX_BUSY; +#endif + + fp_index = smp_processor_id() % (bp->num_queues); + + fp = &bp->fp[fp_index]; + if (unlikely(bnx2x_tx_avail(bp->fp) < + (skb_shinfo(skb)->nr_frags + 3))) { + bp->slowpath->eth_stats.driver_xoff++, + netif_stop_queue(dev); + BNX2X_ERR("BUG! Tx ring full when queue awake!\n"); + return NETDEV_TX_BUSY; + } + + /* + This is a bit ugly. First we use one BD which we mark as start, + then for TSO or xsum we have a parsing info BD, + and only then we have the rest of the TSO bds. + (don't forget to mark the last one as last, + and to unmap only AFTER you write to the BD ...) + I would like to thank DovH for this mess. + */ + + pkt_prod = fp->tx_pkt_prod++; + bd_prod = fp->tx_bd_prod; + bd_prod = TX_BD(bd_prod); + + /* get a tx_buff and first bd */ + tx_buf = &fp->tx_buf_ring[TX_BD(pkt_prod)]; + tx_bd = &fp->tx_desc_ring[bd_prod]; + + tx_bd->bd_flags.as_bitfield = ETH_TX_BD_FLAGS_START_BD; + tx_bd->general_data = (UNICAST_ADDRESS << + ETH_TX_BD_ETH_ADDR_TYPE_SHIFT); + tx_bd->general_data |= 1; /* header nbd */ + + /* remeber the first bd of the packet */ + tx_buf->first_bd = bd_prod; + + DP(NETIF_MSG_TX_QUEUED, + "sending pkt %u @%p next_idx %u bd %u @%p\n", + pkt_prod, tx_buf, fp->tx_pkt_prod, bd_prod, tx_bd); + + if (skb->ip_summed == CHECKSUM_PARTIAL) { + struct iphdr *iph = ip_hdr(skb); + u8 len; + + tx_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_IP_CSUM; + + /* turn on parsing and get a bd */ + bd_prod = TX_BD(NEXT_TX_IDX(bd_prod)); + pbd = (void *)&fp->tx_desc_ring[bd_prod]; + len = ((u8 *)iph - (u8 *)skb->data) / 2; + + /* for now NS flag is not used in Linux */ + pbd->global_data = (len | + ((skb->protocol == ETH_P_8021Q) << + ETH_TX_PARSE_BD_LLC_SNAP_EN_SHIFT)); + pbd->ip_hlen = ip_hdrlen(skb) / 2; + pbd->total_hlen = cpu_to_le16(len + pbd->ip_hlen); + if (iph->protocol == IPPROTO_TCP) { + struct tcphdr *th = tcp_hdr(skb); + + tx_bd->bd_flags.as_bitfield |= + ETH_TX_BD_FLAGS_TCP_CSUM; + pbd->tcp_flags = htonl(tcp_flag_word(skb)) & 0xFFFF; + pbd->total_hlen += cpu_to_le16(tcp_hdrlen(skb) / 2); + pbd->tcp_pseudo_csum = swab16(th->check); + + } else if (iph->protocol == IPPROTO_UDP) { + struct udphdr *uh = udp_hdr(skb); + + tx_bd->bd_flags.as_bitfield |= + ETH_TX_BD_FLAGS_TCP_CSUM; + pbd->total_hlen += cpu_to_le16(4); + pbd->global_data |= ETH_TX_PARSE_BD_CS_ANY_FLG; + pbd->cs_offset = 5; /* 10 >> 1 */ + pbd->tcp_pseudo_csum = 0; + /* HW bug: we need to subtract 10 bytes before the + * UDP header from the csum + */ + uh->check = (u16) ~csum_fold(csum_sub(uh->check, + csum_partial(((u8 *)(uh)-10), 10, 0))); + } + } + + if ((bp->vlgrp != NULL) && vlan_tx_tag_present(skb)) { + tx_bd->vlan = cpu_to_le16(vlan_tx_tag_get(skb)); + tx_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_VLAN_TAG; + } else { + tx_bd->vlan = cpu_to_le16(pkt_prod); + } + + mapping = pci_map_single(bp->pdev, skb->data, + skb->len, PCI_DMA_TODEVICE); + + tx_bd->addr_hi = cpu_to_le32(U64_HI(mapping)); + tx_bd->addr_lo = cpu_to_le32(U64_LO(mapping)); + nbd = skb_shinfo(skb)->nr_frags + ((pbd == NULL)? 1 : 2); + tx_bd->nbd = cpu_to_le16(nbd); + tx_bd->nbytes = cpu_to_le16(skb_headlen(skb)); + + DP(NETIF_MSG_TX_QUEUED, "first bd @%p addr (%x:%x) nbd %d" + " nbytes %d flags %x vlan %u\n", + tx_bd, tx_bd->addr_hi, tx_bd->addr_lo, tx_bd->nbd, + tx_bd->nbytes, tx_bd->bd_flags.as_bitfield, tx_bd->vlan); + + if (skb_shinfo(skb)->gso_size && + (skb->len > (bp->dev->mtu + ETH_HLEN))) { + int hlen = 2 * le32_to_cpu(pbd->total_hlen); + + DP(NETIF_MSG_TX_QUEUED, + "TSO packet len %d hlen %d total len %d tso size %d\n", + skb->len, hlen, skb_headlen(skb), + skb_shinfo(skb)->gso_size); + + tx_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_SW_LSO; + + if (tx_bd->nbytes > cpu_to_le16(hlen)) { + /* we split the first bd into headers and data bds + * to ease the pain of our fellow micocode engineers + * we use one mapping for both bds + * So far this has only been observed to happen + * in Other Operating Systems(TM) + */ + + /* first fix first bd */ + nbd++; + tx_bd->nbd = cpu_to_le16(nbd); + tx_bd->nbytes = cpu_to_le16(hlen); + + /* we only print this as an error + * because we don't think this will ever happen. + */ + BNX2X_ERR("TSO split header size is %d (%x:%x)" + " nbd %d\n", tx_bd->nbytes, tx_bd->addr_hi, + tx_bd->addr_lo, tx_bd->nbd); + + /* now get a new data bd + * (after the pbd) and fill it */ + bd_prod = TX_BD(NEXT_TX_IDX(bd_prod)); + tx_bd = &fp->tx_desc_ring[bd_prod]; + + tx_bd->addr_hi = cpu_to_le32(U64_HI(mapping)); + tx_bd->addr_lo = cpu_to_le32(U64_LO(mapping) + hlen); + tx_bd->nbytes = cpu_to_le16(skb_headlen(skb) - hlen); + tx_bd->vlan = cpu_to_le16(pkt_prod); + /* this marks the bd + * as one that has no individual mapping + * the FW ignors this flag in a bd not maked start + */ + tx_bd->bd_flags.as_bitfield = ETH_TX_BD_FLAGS_SW_LSO; + DP(NETIF_MSG_TX_QUEUED, + "TSO split data size is %d (%x:%x)\n", + tx_bd->nbytes, tx_bd->addr_hi, tx_bd->addr_lo); + } + + if (!pbd) { + /* supposed to be unreached + * (and therefore not handled properly...) + */ + BNX2X_ERR("LSO with no PBD\n"); + BUG(); + } + + pbd->lso_mss = cpu_to_le16(skb_shinfo(skb)->gso_size); + pbd->tcp_send_seq = swab32(tcp_hdr(skb)->seq); + pbd->ip_id = swab16(ip_hdr(skb)->id); + pbd->tcp_pseudo_csum = + swab16(~csum_tcpudp_magic(ip_hdr(skb)->saddr, + ip_hdr(skb)->daddr, + 0, IPPROTO_TCP, 0)); + pbd->global_data |= ETH_TX_PARSE_BD_PSEUDO_CS_WITHOUT_LEN; + } + + { + int i; + + for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) { + skb_frag_t *frag = &skb_shinfo(skb)->frags[i]; + + bd_prod = TX_BD(NEXT_TX_IDX(bd_prod)); + tx_bd = &fp->tx_desc_ring[bd_prod]; + + mapping = pci_map_page(bp->pdev, frag->page, + frag->page_offset, + frag->size, PCI_DMA_TODEVICE); + + tx_bd->addr_hi = cpu_to_le32(U64_HI(mapping)); + tx_bd->addr_lo = cpu_to_le32(U64_LO(mapping)); + tx_bd->nbytes = cpu_to_le16(frag->size); + tx_bd->vlan = cpu_to_le16(pkt_prod); + tx_bd->bd_flags.as_bitfield = 0; + DP(NETIF_MSG_TX_QUEUED, "frag %d bd @%p" + " addr (%x:%x) nbytes %d flags %x\n", + i, tx_bd, tx_bd->addr_hi, tx_bd->addr_lo, + tx_bd->nbytes, tx_bd->bd_flags.as_bitfield); + } /* for */ + } + + /* now at last mark the bd as the last bd */ + tx_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_END_BD; + + DP(NETIF_MSG_TX_QUEUED, "last bd @%p flags %x\n", + tx_bd, tx_bd->bd_flags.as_bitfield); + + tx_buf->skb = skb; + + bd_prod = TX_BD(NEXT_TX_IDX(bd_prod)); + + /* now send a tx doorbell, counting the next bd + * if the packet contains or ends with it + */ + if (TX_BD_POFF(bd_prod) < nbd) + nbd++; + + if (pbd) + DP(NETIF_MSG_TX_QUEUED, + "PBD @%p ip_data %x ip_hlen %u ip_id %u lso_mss %u" + " tcp_flags %x xsum %x seq %u hlen %u\n", + pbd, pbd->global_data, pbd->ip_hlen, pbd->ip_id, + pbd->lso_mss, pbd->tcp_flags, pbd->tcp_pseudo_csum, + pbd->tcp_send_seq, pbd->total_hlen); + + DP(NETIF_MSG_TX_QUEUED, "doorbell: nbd %u bd %d\n", nbd, bd_prod); + + fp->hw_tx_prods->bds_prod += cpu_to_le16(nbd); + mb(); /* FW restriction: must not reorder writing nbd and packets */ + fp->hw_tx_prods->packets_prod += cpu_to_le32(1); + DOORBELL(bp, fp_index, 0); + + mmiowb(); + + fp->tx_bd_prod = bd_prod; + dev->trans_start = jiffies; + + if (unlikely(bnx2x_tx_avail(fp) < MAX_SKB_FRAGS + 3)) { + netif_stop_queue(dev); + bp->slowpath->eth_stats.driver_xoff++; + if (bnx2x_tx_avail(fp) >= MAX_SKB_FRAGS + 3) + netif_wake_queue(dev); + } + fp->tx_pkt++; + + return NETDEV_TX_OK; +} + +static struct net_device_stats *bnx2x_get_stats(struct net_device *dev) +{ + return &dev->stats; +} + +/* Called with rtnl_lock */ +static int bnx2x_open(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + + bnx2x_set_power_state(bp, PCI_D0); + + return bnx2x_nic_load(bp, 1); +} + +/* Called with rtnl_lock */ +static int bnx2x_close(struct net_device *dev) +{ + int rc; + struct bnx2x *bp = netdev_priv(dev); + + /* Unload the driver, release IRQs */ + rc = bnx2x_nic_unload(bp, 1); + if (rc) { + BNX2X_ERR("bnx2x_nic_unload failed: %d\n", rc); + return rc; + } + bnx2x_set_power_state(bp, PCI_D3hot); + + return 0; +} + +/* Called with rtnl_lock */ +static int bnx2x_change_mac_addr(struct net_device *dev, void *p) +{ + struct sockaddr *addr = p; + struct bnx2x *bp = netdev_priv(dev); + + if (!is_valid_ether_addr(addr->sa_data)) + return -EINVAL; + + memcpy(dev->dev_addr, addr->sa_data, dev->addr_len); + if (netif_running(dev)) + bnx2x_set_mac_addr(bp); + + return 0; +} + +/* Called with rtnl_lock */ +static int bnx2x_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd) +{ + struct mii_ioctl_data *data = if_mii(ifr); + struct bnx2x *bp = netdev_priv(dev); + int err; + + switch (cmd) { + case SIOCGMIIPHY: + data->phy_id = bp->phy_addr; + + /* fallthru */ + case SIOCGMIIREG: { + u32 mii_regval; + + spin_lock_bh(&bp->phy_lock); + if (bp->state == BNX2X_STATE_OPEN) { + err = bnx2x_mdio22_read(bp, data->reg_num & 0x1f, + &mii_regval); + + data->val_out = mii_regval; + } else { + err = -EAGAIN; + } + spin_unlock_bh(&bp->phy_lock); + return err; + } + + case SIOCSMIIREG: + if (!capable(CAP_NET_ADMIN)) + return -EPERM; + + spin_lock_bh(&bp->phy_lock); + if (bp->state == BNX2X_STATE_OPEN) { + err = bnx2x_mdio22_write(bp, data->reg_num & 0x1f, + data->val_in); + } else { + err = -EAGAIN; + } + spin_unlock_bh(&bp->phy_lock); + return err; + + default: + /* do nothing */ + break; + } + + return -EOPNOTSUPP; +} + +/* Called with rtnl_lock */ +static int bnx2x_change_mtu(struct net_device *dev, int new_mtu) +{ + struct bnx2x *bp = netdev_priv(dev); + + if ((new_mtu > ETH_MAX_JUMBO_PACKET_SIZE) || + ((new_mtu + ETH_HLEN) < ETH_MIN_PACKET_SIZE)) + return -EINVAL; + + /* This does not race with packet allocation + * because the actuall alloc size is + * only updated as part of load + */ + dev->mtu = new_mtu; + + if (netif_running(dev)) { + bnx2x_nic_unload(bp, 0); + bnx2x_nic_load(bp, 0); + } + return 0; +} + +static void bnx2x_tx_timeout(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + +#ifdef BNX2X_STOP_ON_ERROR + if (!bp->panic) + bnx2x_panic(); +#endif + /* This allows the netif to be shutdown gracefully before resetting */ + schedule_work(&bp->reset_task); +} + +#ifdef BCM_VLAN +/* Called with rtnl_lock */ +static void bnx2x_vlan_rx_register(struct net_device *dev, + struct vlan_group *vlgrp) +{ + struct bnx2x *bp = netdev_priv(dev); + + bp->vlgrp = vlgrp; + if (netif_running(dev)) + bnx2x_set_rx_mode(dev); +} +#endif + +#if defined(HAVE_POLL_CONTROLLER) || defined(CONFIG_NET_POLL_CONTROLLER) +static void poll_bnx2x(struct net_device *dev) +{ + struct bnx2x *bp = netdev_priv(dev); + + disable_irq(bp->pdev->irq); + bnx2x_interrupt(bp->pdev->irq, dev); + enable_irq(bp->pdev->irq); +} +#endif + +static void bnx2x_reset_task(struct work_struct *work) +{ + struct bnx2x *bp = container_of(work, struct bnx2x, reset_task); + +#ifdef BNX2X_STOP_ON_ERROR + BNX2X_ERR("reset task called but STOP_ON_ERROR defined" + " so reset not done to allow debug dump,\n" + KERN_ERR " you will need to reboot when done\n"); + return; +#endif + + if (!netif_running(bp->dev)) + return; + + bp->in_reset_task = 1; + + bnx2x_netif_stop(bp); + + bnx2x_nic_unload(bp, 0); + bnx2x_nic_load(bp, 0); + + bp->in_reset_task = 0; +} + +static int __devinit bnx2x_init_board(struct pci_dev *pdev, + struct net_device *dev) +{ + struct bnx2x *bp; + int rc; + + SET_NETDEV_DEV(dev, &pdev->dev); + bp = netdev_priv(dev); + + bp->flags = 0; + bp->port = PCI_FUNC(pdev->devfn); + + rc = pci_enable_device(pdev); + if (rc) { + printk(KERN_ERR PFX "Cannot enable PCI device, aborting\n"); + goto err_out; + } + + if (!(pci_resource_flags(pdev, 0) & IORESOURCE_MEM)) { + printk(KERN_ERR PFX "Cannot find PCI device base address," + " aborting\n"); + rc = -ENODEV; + goto err_out_disable; + } + + if (!(pci_resource_flags(pdev, 2) & IORESOURCE_MEM)) { + printk(KERN_ERR PFX "Cannot find second PCI device" + " base address, aborting\n"); + rc = -ENODEV; + goto err_out_disable; + } + + rc = pci_request_regions(pdev, DRV_MODULE_NAME); + if (rc) { + printk(KERN_ERR PFX "Cannot obtain PCI resources," + " aborting\n"); + goto err_out_disable; + } + + pci_set_master(pdev); + + bp->pm_cap = pci_find_capability(pdev, PCI_CAP_ID_PM); + if (bp->pm_cap == 0) { + printk(KERN_ERR PFX "Cannot find power management" + " capability, aborting\n"); + rc = -EIO; + goto err_out_release; + } + + bp->pcie_cap = pci_find_capability(pdev, PCI_CAP_ID_EXP); + if (bp->pcie_cap == 0) { + printk(KERN_ERR PFX "Cannot find PCI Express capability," + " aborting\n"); + rc = -EIO; + goto err_out_release; + } + + if (pci_set_dma_mask(pdev, DMA_64BIT_MASK) == 0) { + bp->flags |= USING_DAC_FLAG; + if (pci_set_consistent_dma_mask(pdev, DMA_64BIT_MASK) != 0) { + printk(KERN_ERR PFX "pci_set_consistent_dma_mask" + " failed, aborting\n"); + rc = -EIO; + goto err_out_release; + } + + } else if (pci_set_dma_mask(pdev, DMA_32BIT_MASK) != 0) { + printk(KERN_ERR PFX "System does not support DMA," + " aborting\n"); + rc = -EIO; + goto err_out_release; + } + + bp->dev = dev; + bp->pdev = pdev; + + spin_lock_init(&bp->phy_lock); + + bp->in_reset_task = 0; + + INIT_WORK(&bp->reset_task, bnx2x_reset_task); + INIT_WORK(&bp->sp_task, bnx2x_sp_task); + + dev->base_addr = dev->mem_start = pci_resource_start(pdev, 0); + dev->mem_end = pci_resource_end(pdev, 0); + + dev->irq = pdev->irq; + + bp->regview = ioremap_nocache(dev->base_addr, + pci_resource_len(pdev, 0)); + if (!bp->regview) { + printk(KERN_ERR PFX "Cannot map register space, aborting\n"); + rc = -ENOMEM; + goto err_out_release; + } + + bp->doorbells = ioremap_nocache(pci_resource_start(pdev , 2), + pci_resource_len(pdev, 2)); + if (!bp->doorbells) { + printk(KERN_ERR PFX "Cannot map doorbell space, aborting\n"); + rc = -ENOMEM; + goto err_out_unmap; + } + + bnx2x_set_power_state(bp, PCI_D0); + + bnx2x_get_hwinfo(bp); + + if (CHIP_REV(bp) == CHIP_REV_FPGA) { + printk(KERN_ERR PFX "FPGA detacted. MCP disabled," + " will only init first device\n"); + onefunc = 1; + nomcp = 1; + } + + if (nomcp) { + printk(KERN_ERR PFX "MCP disabled, will only" + " init first device\n"); + onefunc = 1; + } + + if (onefunc && bp->port) { + printk(KERN_ERR PFX "Second device disabled, exiting\n"); + rc = -ENODEV; + goto err_out_unmap; + } + + bp->tx_ring_size = MAX_TX_AVAIL; + bp->rx_ring_size = MAX_RX_AVAIL; + + bp->rx_csum = 1; + + bp->rx_offset = 0; + + bp->tx_quick_cons_trip_int = 0xff; + bp->tx_quick_cons_trip = 0xff; + bp->tx_ticks_int = 50; + bp->tx_ticks = 50; + + bp->rx_quick_cons_trip_int = 0xff; + bp->rx_quick_cons_trip = 0xff; + bp->rx_ticks_int = 25; + bp->rx_ticks = 25; + + bp->stats_ticks = 1000000 & 0xffff00; + + bp->timer_interval = HZ; + bp->current_interval = (poll ? poll : HZ); + + init_timer(&bp->timer); + bp->timer.expires = jiffies + bp->current_interval; + bp->timer.data = (unsigned long) bp; + bp->timer.function = bnx2x_timer; + + return 0; + +err_out_unmap: + if (bp->regview) { + iounmap(bp->regview); + bp->regview = NULL; + } + + if (bp->doorbells) { + iounmap(bp->doorbells); + bp->doorbells = NULL; + } + +err_out_release: + pci_release_regions(pdev); + +err_out_disable: + pci_disable_device(pdev); + pci_set_drvdata(pdev, NULL); + +err_out: + return rc; +} + +static int __devinit bnx2x_init_one(struct pci_dev *pdev, + const struct pci_device_id *ent) +{ + static int version_printed; + struct net_device *dev = NULL; + struct bnx2x *bp; + int rc, i; + int port = PCI_FUNC(pdev->devfn); + + if (version_printed++ == 0) + printk(KERN_INFO "%s", version); + + /* dev zeroed in init_etherdev */ + dev = alloc_etherdev(sizeof(*bp)); + if (!dev) + return -ENOMEM; + + netif_carrier_off(dev); + + bp = netdev_priv(dev); + bp->msglevel = debug; + + if (port && onefunc) { + printk(KERN_ERR PFX "second function disabled. exiting\n"); + return 0; + } + + rc = bnx2x_init_board(pdev, dev); + if (rc < 0) { + free_netdev(dev); + return rc; + } + + dev->hard_start_xmit = bnx2x_start_xmit; + dev->watchdog_timeo = TX_TIMEOUT; + + dev->get_stats = bnx2x_get_stats; + dev->ethtool_ops = &bnx2x_ethtool_ops; + dev->open = bnx2x_open; + dev->stop = bnx2x_close; + dev->set_multicast_list = bnx2x_set_rx_mode; + dev->set_mac_address = bnx2x_change_mac_addr; + dev->do_ioctl = bnx2x_ioctl; + dev->change_mtu = bnx2x_change_mtu; + dev->tx_timeout = bnx2x_tx_timeout; +#ifdef BCM_VLAN + dev->vlan_rx_register = bnx2x_vlan_rx_register; +#endif +#if defined(HAVE_POLL_CONTROLLER) || defined(CONFIG_NET_POLL_CONTROLLER) + dev->poll_controller = poll_bnx2x; +#endif + dev->features |= NETIF_F_SG; + if (bp->flags & USING_DAC_FLAG) + dev->features |= NETIF_F_HIGHDMA; + dev->features |= NETIF_F_IP_CSUM; +#ifdef BCM_VLAN + dev->features |= NETIF_F_HW_VLAN_TX | NETIF_F_HW_VLAN_RX; +#endif + dev->features |= NETIF_F_TSO | NETIF_F_TSO_ECN; + + rc = register_netdev(dev); + if (rc) { + printk(KERN_ERR PFX "Cannot register net device\n"); + if (bp->regview) + iounmap(bp->regview); + if (bp->doorbells) + iounmap(bp->doorbells); + pci_release_regions(pdev); + pci_disable_device(pdev); + pci_set_drvdata(pdev, NULL); + free_netdev(dev); + return rc; + } + + pci_set_drvdata(pdev, dev); + + bp->name = board_info[ent->driver_data].name; + printk(KERN_INFO "%s: %s (%c%d) PCI%s %s %dMHz " + "found at mem %lx, IRQ %d, ", + dev->name, bp->name, + ((CHIP_ID(bp) & 0xf000) >> 12) + 'A', + ((CHIP_ID(bp) & 0x0ff0) >> 4), + ((bp->flags & PCIX_FLAG) ? "-X" : ""), + ((bp->flags & PCI_32BIT_FLAG) ? "32-bit" : "64-bit"), + bp->bus_speed_mhz, + dev->base_addr, + bp->pdev->irq); + + printk("node addr "); + for (i = 0; i < 6; i++) + printk("%2.2x", dev->dev_addr[i]); + printk("\n"); + + return 0; +} + +static void __devexit bnx2x_remove_one(struct pci_dev *pdev) +{ + struct net_device *dev = pci_get_drvdata(pdev); + struct bnx2x *bp = netdev_priv(dev); + + flush_scheduled_work(); + /*tasklet_kill(&bp->sp_task);*/ + unregister_netdev(dev); + + if (bp->regview) + iounmap(bp->regview); + + if (bp->doorbells) + iounmap(bp->doorbells); + + free_netdev(dev); + pci_release_regions(pdev); + pci_disable_device(pdev); + pci_set_drvdata(pdev, NULL); +} + +static int bnx2x_suspend(struct pci_dev *pdev, pm_message_t state) +{ + struct net_device *dev = pci_get_drvdata(pdev); + struct bnx2x *bp = netdev_priv(dev); + int rc; + + if (!netif_running(dev)) + return 0; + + rc = bnx2x_nic_unload(bp, 0); + if (!rc) + return rc; + + netif_device_detach(dev); + pci_save_state(pdev); + + bnx2x_set_power_state(bp, pci_choose_state(pdev, state)); + return 0; +} + +static int bnx2x_resume(struct pci_dev *pdev) +{ + struct net_device *dev = pci_get_drvdata(pdev); + struct bnx2x *bp = netdev_priv(dev); + int rc; + + if (!netif_running(dev)) + return 0; + + pci_restore_state(pdev); + + bnx2x_set_power_state(bp, PCI_D0); + netif_device_attach(dev); + + rc = bnx2x_nic_load(bp, 0); + if (rc) + return rc; + + return 0; +} + +static struct pci_driver bnx2x_pci_driver = { + .name = DRV_MODULE_NAME, + .id_table = bnx2x_pci_tbl, + .probe = bnx2x_init_one, + .remove = __devexit_p(bnx2x_remove_one), + .suspend = bnx2x_suspend, + .resume = bnx2x_resume, +}; + +static int __init bnx2x_init(void) +{ + return pci_register_driver(&bnx2x_pci_driver); +} + +static void __exit bnx2x_cleanup(void) +{ + pci_unregister_driver(&bnx2x_pci_driver); +} + +module_init(bnx2x_init); +module_exit(bnx2x_cleanup); + diff --git a/drivers/net/bnx2x.h b/drivers/net/bnx2x.h new file mode 100644 index 000000000000..4f7ae6f77452 --- /dev/null +++ b/drivers/net/bnx2x.h @@ -0,0 +1,1071 @@ +/* bnx2x.h: Broadcom Everest network driver. + * + * Copyright (c) 2007 Broadcom Corporation + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation. + * + * Written by: Eliezer Tamir <eliezert@broadcom.com> + * Based on code from Michael Chan's bnx2 driver + */ + +#ifndef BNX2X_H +#define BNX2X_H + +/* error/debug prints */ + +#define DRV_MODULE_NAME "bnx2x" +#define PFX DRV_MODULE_NAME ": " + +/* for messages that are currently off */ +#define BNX2X_MSG_OFF 0 +#define BNX2X_MSG_MCP 0x10000 /* was: NETIF_MSG_HW */ +#define BNX2X_MSG_STATS 0x20000 /* was: NETIF_MSG_TIMER */ +#define NETIF_MSG_NVM 0x40000 /* was: NETIF_MSG_HW */ +#define NETIF_MSG_DMAE 0x80000 /* was: NETIF_MSG_HW */ + +#define DP_LEVEL KERN_NOTICE /* was: KERN_DEBUG */ + +/* regular debug print */ +#define DP(__mask, __fmt, __args...) do { \ + if (bp->msglevel & (__mask)) \ + printk(DP_LEVEL "[%s:%d(%s)]" __fmt, __FUNCTION__, \ + __LINE__, bp->dev?(bp->dev->name):"?", ##__args); \ + } while (0) + +/* for errors (never masked) */ +#define BNX2X_ERR(__fmt, __args...) do { \ + printk(KERN_ERR "[%s:%d(%s)]" __fmt, __FUNCTION__, \ + __LINE__, bp->dev?(bp->dev->name):"?", ##__args); \ + } while (0) + +/* before we have a dev->name use dev_info() */ +#define BNX2X_DEV_INFO(__fmt, __args...) do { \ + if (bp->msglevel & NETIF_MSG_PROBE) \ + dev_info(&bp->pdev->dev, __fmt, ##__args); \ + } while (0) + + +#ifdef BNX2X_STOP_ON_ERROR +#define bnx2x_panic() do { \ + bp->panic = 1; \ + BNX2X_ERR("driver assert\n"); \ + bnx2x_disable_int(bp); \ + bnx2x_panic_dump(bp); \ + } while (0) +#else +#define bnx2x_panic() do { \ + BNX2X_ERR("driver assert\n"); \ + bnx2x_panic_dump(bp); \ + } while (0) +#endif + + +#define U64_LO(x) (((u64)x) & 0xffffffff) +#define U64_HI(x) (((u64)x) >> 32) +#define HILO_U64(hi, lo) (((u64)hi << 32) + lo) + + +#define REG_ADDR(bp, offset) (bp->regview + offset) + +#define REG_RD(bp, offset) readl(REG_ADDR(bp, offset)) +#define REG_RD8(bp, offset) readb(REG_ADDR(bp, offset)) +#define REG_RD64(bp, offset) readq(REG_ADDR(bp, offset)) + +#define REG_WR(bp, offset, val) writel((u32)val, REG_ADDR(bp, offset)) +#define REG_WR8(bp, offset, val) writeb((u8)val, REG_ADDR(bp, offset)) +#define REG_WR16(bp, offset, val) writew((u16)val, REG_ADDR(bp, offset)) +#define REG_WR32(bp, offset, val) REG_WR(bp, offset, val) + +#define REG_RD_IND(bp, offset) bnx2x_reg_rd_ind(bp, offset) +#define REG_WR_IND(bp, offset, val) bnx2x_reg_wr_ind(bp, offset, val) + +#define REG_WR_DMAE(bp, offset, val, len32) \ + do { \ + memcpy(bnx2x_sp(bp, wb_data[0]), val, len32 * 4); \ + bnx2x_write_dmae(bp, bnx2x_sp_mapping(bp, wb_data), \ + offset, len32); \ + } while (0) + +#define SHMEM_RD(bp, type) \ + REG_RD(bp, bp->shmem_base + offsetof(struct shmem_region, type)) +#define SHMEM_WR(bp, type, val) \ + REG_WR(bp, bp->shmem_base + offsetof(struct shmem_region, type), val) + +#define NIG_WR(reg, val) REG_WR(bp, reg, val) +#define EMAC_WR(reg, val) REG_WR(bp, emac_base + reg, val) +#define BMAC_WR(reg, val) REG_WR(bp, GRCBASE_NIG + bmac_addr + reg, val) + + +#define for_each_queue(bp, var) for (var = 0; var < bp->num_queues; var++) + +#define for_each_nondefault_queue(bp, var) \ + for (var = 1; var < bp->num_queues; var++) +#define is_multi(bp) (bp->num_queues > 1) + + +struct regp { + u32 lo; + u32 hi; +}; + +struct bmac_stats { + struct regp tx_gtpkt; + struct regp tx_gtxpf; + struct regp tx_gtfcs; + struct regp tx_gtmca; + struct regp tx_gtgca; + struct regp tx_gtfrg; + struct regp tx_gtovr; + struct regp tx_gt64; + struct regp tx_gt127; + struct regp tx_gt255; /* 10 */ + struct regp tx_gt511; + struct regp tx_gt1023; + struct regp tx_gt1518; + struct regp tx_gt2047; + struct regp tx_gt4095; + struct regp tx_gt9216; + struct regp tx_gt16383; + struct regp tx_gtmax; + struct regp tx_gtufl; + struct regp tx_gterr; /* 20 */ + struct regp tx_gtbyt; + + struct regp rx_gr64; + struct regp rx_gr127; + struct regp rx_gr255; + struct regp rx_gr511; + struct regp rx_gr1023; + struct regp rx_gr1518; + struct regp rx_gr2047; + struct regp rx_gr4095; + struct regp rx_gr9216; /* 30 */ + struct regp rx_gr16383; + struct regp rx_grmax; + struct regp rx_grpkt; + struct regp rx_grfcs; + struct regp rx_grmca; + struct regp rx_grbca; + struct regp rx_grxcf; + struct regp rx_grxpf; + struct regp rx_grxuo; + struct regp rx_grjbr; /* 40 */ + struct regp rx_grovr; + struct regp rx_grflr; + struct regp rx_grmeg; + struct regp rx_grmeb; + struct regp rx_grbyt; + struct regp rx_grund; + struct regp rx_grfrg; + struct regp rx_grerb; + struct regp rx_grfre; + struct regp rx_gripj; /* 50 */ +}; + +struct emac_stats { + u32 rx_ifhcinoctets ; + u32 rx_ifhcinbadoctets ; + u32 rx_etherstatsfragments ; + u32 rx_ifhcinucastpkts ; + u32 rx_ifhcinmulticastpkts ; + u32 rx_ifhcinbroadcastpkts ; + u32 rx_dot3statsfcserrors ; + u32 rx_dot3statsalignmenterrors ; + u32 rx_dot3statscarriersenseerrors ; + u32 rx_xonpauseframesreceived ; /* 10 */ + u32 rx_xoffpauseframesreceived ; + u32 rx_maccontrolframesreceived ; + u32 rx_xoffstateentered ; + u32 rx_dot3statsframestoolong ; + u32 rx_etherstatsjabbers ; + u32 rx_etherstatsundersizepkts ; + u32 rx_etherstatspkts64octets ; + u32 rx_etherstatspkts65octetsto127octets ; + u32 rx_etherstatspkts128octetsto255octets ; + u32 rx_etherstatspkts256octetsto511octets ; /* 20 */ + u32 rx_etherstatspkts512octetsto1023octets ; + u32 rx_etherstatspkts1024octetsto1522octets; + u32 rx_etherstatspktsover1522octets ; + + u32 rx_falsecarriererrors ; + + u32 tx_ifhcoutoctets ; + u32 tx_ifhcoutbadoctets ; + u32 tx_etherstatscollisions ; + u32 tx_outxonsent ; + u32 tx_outxoffsent ; + u32 tx_flowcontroldone ; /* 30 */ + u32 tx_dot3statssinglecollisionframes ; + u32 tx_dot3statsmultiplecollisionframes ; + u32 tx_dot3statsdeferredtransmissions ; + u32 tx_dot3statsexcessivecollisions ; + u32 tx_dot3statslatecollisions ; + u32 tx_ifhcoutucastpkts ; + u32 tx_ifhcoutmulticastpkts ; + u32 tx_ifhcoutbroadcastpkts ; + u32 tx_etherstatspkts64octets ; + u32 tx_etherstatspkts65octetsto127octets ; /* 40 */ + u32 tx_etherstatspkts128octetsto255octets ; + u32 tx_etherstatspkts256octetsto511octets ; + u32 tx_etherstatspkts512octetsto1023octets ; + u32 tx_etherstatspkts1024octetsto1522octet ; + u32 tx_etherstatspktsover1522octets ; + u32 tx_dot3statsinternalmactransmiterrors ; /* 46 */ +}; + +union mac_stats { + struct emac_stats emac; + struct bmac_stats bmac; +}; + +struct nig_stats { + u32 brb_discard; + u32 brb_packet; + u32 brb_truncate; + u32 flow_ctrl_discard; + u32 flow_ctrl_octets; + u32 flow_ctrl_packet; + u32 mng_discard; + u32 mng_octet_inp; + u32 mng_octet_out; + u32 mng_packet_inp; + u32 mng_packet_out; + u32 pbf_octets; + u32 pbf_packet; + u32 safc_inp; + u32 done; + u32 pad; +}; + +struct bnx2x_eth_stats { + u32 pad; /* to make long counters u64 aligned */ + u32 mac_stx_start; + u32 total_bytes_received_hi; + u32 total_bytes_received_lo; + u32 total_bytes_transmitted_hi; + u32 total_bytes_transmitted_lo; + u32 total_unicast_packets_received_hi; + u32 total_unicast_packets_received_lo; + u32 total_multicast_packets_received_hi; + u32 total_multicast_packets_received_lo; + u32 total_broadcast_packets_received_hi; + u32 total_broadcast_packets_received_lo; + u32 total_unicast_packets_transmitted_hi; + u32 total_unicast_packets_transmitted_lo; + u32 total_multicast_packets_transmitted_hi; + u32 total_multicast_packets_transmitted_lo; + u32 total_broadcast_packets_transmitted_hi; + u32 total_broadcast_packets_transmitted_lo; + u32 crc_receive_errors; + u32 alignment_errors; + u32 false_carrier_detections; + u32 runt_packets_received; + u32 jabber_packets_received; + u32 pause_xon_frames_received; + u32 pause_xoff_frames_received; + u32 pause_xon_frames_transmitted; + u32 pause_xoff_frames_transmitted; + u32 single_collision_transmit_frames; + u32 multiple_collision_transmit_frames; + u32 late_collision_frames; + u32 excessive_collision_frames; + u32 control_frames_received; + u32 frames_received_64_bytes; + u32 frames_received_65_127_bytes; + u32 frames_received_128_255_bytes; + u32 frames_received_256_511_bytes; + u32 frames_received_512_1023_bytes; + u32 frames_received_1024_1522_bytes; + u32 frames_received_1523_9022_bytes; + u32 frames_transmitted_64_bytes; + u32 frames_transmitted_65_127_bytes; + u32 frames_transmitted_128_255_bytes; + u32 frames_transmitted_256_511_bytes; + u32 frames_transmitted_512_1023_bytes; + u32 frames_transmitted_1024_1522_bytes; + u32 frames_transmitted_1523_9022_bytes; + u32 valid_bytes_received_hi; + u32 valid_bytes_received_lo; + u32 error_runt_packets_received; + u32 error_jabber_packets_received; + u32 mac_stx_end; + + u32 pad2; + u32 stat_IfHCInBadOctets_hi; + u32 stat_IfHCInBadOctets_lo; + u32 stat_IfHCOutBadOctets_hi; + u32 stat_IfHCOutBadOctets_lo; + u32 stat_Dot3statsFramesTooLong; + u32 stat_Dot3statsInternalMacTransmitErrors; + u32 stat_Dot3StatsCarrierSenseErrors; + u32 stat_Dot3StatsDeferredTransmissions; + u32 stat_FlowControlDone; + u32 stat_XoffStateEntered; + + u32 x_total_sent_bytes_hi; + u32 x_total_sent_bytes_lo; + u32 x_total_sent_pkts; + + u32 t_rcv_unicast_bytes_hi; + u32 t_rcv_unicast_bytes_lo; + u32 t_rcv_broadcast_bytes_hi; + u32 t_rcv_broadcast_bytes_lo; + u32 t_rcv_multicast_bytes_hi; + u32 t_rcv_multicast_bytes_lo; + u32 t_total_rcv_pkt; + + u32 checksum_discard; + u32 packets_too_big_discard; + u32 no_buff_discard; + u32 ttl0_discard; + u32 mac_discard; + u32 mac_filter_discard; + u32 xxoverflow_discard; + u32 brb_truncate_discard; + + u32 brb_discard; + u32 brb_packet; + u32 brb_truncate; + u32 flow_ctrl_discard; + u32 flow_ctrl_octets; + u32 flow_ctrl_packet; + u32 mng_discard; + u32 mng_octet_inp; + u32 mng_octet_out; + u32 mng_packet_inp; + u32 mng_packet_out; + u32 pbf_octets; + u32 pbf_packet; + u32 safc_inp; + u32 driver_xoff; + u32 number_of_bugs_found_in_stats_spec; /* just kidding */ +}; + +#define MAC_STX_NA 0xffffffff + +#ifdef BNX2X_MULTI +#define MAX_CONTEXT 16 +#else +#define MAX_CONTEXT 1 +#endif + +union cdu_context { + struct eth_context eth; + char pad[1024]; +}; + +#define MAX_DMAE_C 5 + +/* DMA memory not used in fastpath */ +struct bnx2x_slowpath { + union cdu_context context[MAX_CONTEXT]; + struct eth_stats_query fw_stats; + struct mac_configuration_cmd mac_config; + struct mac_configuration_cmd mcast_config; + + /* used by dmae command executer */ + struct dmae_command dmae[MAX_DMAE_C]; + + union mac_stats mac_stats; + struct nig_stats nig; + struct bnx2x_eth_stats eth_stats; + + u32 wb_comp; +#define BNX2X_WB_COMP_VAL 0xe0d0d0ae + u32 wb_data[4]; +}; + +#define bnx2x_sp(bp, var) (&bp->slowpath->var) +#define bnx2x_sp_check(bp, var) ((bp->slowpath) ? (&bp->slowpath->var) : NULL) +#define bnx2x_sp_mapping(bp, var) \ + (bp->slowpath_mapping + offsetof(struct bnx2x_slowpath, var)) + + +struct sw_rx_bd { + struct sk_buff *skb; + DECLARE_PCI_UNMAP_ADDR(mapping) +}; + +struct sw_tx_bd { + struct sk_buff *skb; + u16 first_bd; +}; + +struct bnx2x_fastpath { + + struct napi_struct napi; + + struct host_status_block *status_blk; + dma_addr_t status_blk_mapping; + + struct eth_tx_db_data *hw_tx_prods; + dma_addr_t tx_prods_mapping; + + struct sw_tx_bd *tx_buf_ring; + + struct eth_tx_bd *tx_desc_ring; + dma_addr_t tx_desc_mapping; + + struct sw_rx_bd *rx_buf_ring; + + struct eth_rx_bd *rx_desc_ring; + dma_addr_t rx_desc_mapping; + + union eth_rx_cqe *rx_comp_ring; + dma_addr_t rx_comp_mapping; + + int state; +#define BNX2X_FP_STATE_CLOSED 0 +#define BNX2X_FP_STATE_IRQ 0x80000 +#define BNX2X_FP_STATE_OPENING 0x90000 +#define BNX2X_FP_STATE_OPEN 0xa0000 +#define BNX2X_FP_STATE_HALTING 0xb0000 +#define BNX2X_FP_STATE_HALTED 0xc0000 +#define BNX2X_FP_STATE_DELETED 0xd0000 +#define BNX2X_FP_STATE_CLOSE_IRQ 0xe0000 + + int index; + + u16 tx_pkt_prod; + u16 tx_pkt_cons; + u16 tx_bd_prod; + u16 tx_bd_cons; + u16 *tx_cons_sb; + + u16 fp_c_idx; + u16 fp_u_idx; + + u16 rx_bd_prod; + u16 rx_bd_cons; + u16 rx_comp_prod; + u16 rx_comp_cons; + u16 *rx_cons_sb; + + unsigned long tx_pkt, + rx_pkt, + rx_calls; + + struct bnx2x *bp; /* parent */ +}; + +#define bnx2x_fp(bp, nr, var) (bp->fp[nr].var) + + +/* attn group wiring */ +#define MAX_DYNAMIC_ATTN_GRPS 8 + +struct attn_route { + u32 sig[4]; +}; + +struct bnx2x { + /* Fields used in the tx and intr/napi performance paths + * are grouped together in the beginning of the structure + */ + struct bnx2x_fastpath *fp; + void __iomem *regview; + void __iomem *doorbells; + + struct net_device *dev; + struct pci_dev *pdev; + + atomic_t intr_sem; + struct msix_entry msix_table[MAX_CONTEXT+1]; + + int tx_ring_size; + +#ifdef BCM_VLAN + struct vlan_group *vlgrp; +#endif + + u32 rx_csum; + u32 rx_offset; + u32 rx_buf_use_size; /* useable size */ + u32 rx_buf_size; /* with alignment */ +#define ETH_OVREHEAD (ETH_HLEN + 8) /* 8 for CRC + VLAN */ +#define ETH_MIN_PACKET_SIZE 60 +#define ETH_MAX_PACKET_SIZE 1500 +#define ETH_MAX_JUMBO_PACKET_SIZE 9600 + + struct host_def_status_block *def_status_blk; +#define DEF_SB_ID 16 + u16 def_c_idx; + u16 def_u_idx; + u16 def_t_idx; + u16 def_x_idx; + u16 def_att_idx; + u32 attn_state; + struct attn_route attn_group[MAX_DYNAMIC_ATTN_GRPS]; + u32 aeu_mask; + u32 nig_mask; + + /* slow path ring */ + struct eth_spe *spq; + dma_addr_t spq_mapping; + u16 spq_prod_idx; + u16 dsb_sp_prod_idx; + struct eth_spe *spq_prod_bd; + struct eth_spe *spq_last_bd; + u16 *dsb_sp_prod; + u16 spq_left; /* serialize spq */ + spinlock_t spq_lock; + + /* Flag for marking that there is either + * STAT_QUERY or CFC DELETE ramrod pending + */ + u8 stat_pending; + + /* End of fileds used in the performance code paths */ + + int panic; + int msglevel; + + u32 flags; +#define PCIX_FLAG 1 +#define PCI_32BIT_FLAG 2 +#define ONE_TDMA_FLAG 4 /* no longer used */ +#define NO_WOL_FLAG 8 +#define USING_DAC_FLAG 0x10 +#define USING_MSIX_FLAG 0x20 +#define ASF_ENABLE_FLAG 0x40 + + int port; + + int pm_cap; + int pcie_cap; + + /* Used to synchronize phy accesses */ + spinlock_t phy_lock; + + struct work_struct reset_task; + u16 in_reset_task; + + struct work_struct sp_task; + + struct timer_list timer; + int timer_interval; + int current_interval; + + u32 shmem_base; + + u32 chip_id; +/* chip num:16-31, rev:12-15, metal:4-11, bond_id:0-3 */ +#define CHIP_ID(bp) (((bp)->chip_id) & 0xfffffff0) + +#define CHIP_NUM(bp) (((bp)->chip_id) & 0xffff0000) +#define CHIP_NUM_5710 0x57100000 + +#define CHIP_REV(bp) (((bp)->chip_id) & 0x0000f000) +#define CHIP_REV_Ax 0x00000000 +#define CHIP_REV_Bx 0x00001000 +#define CHIP_REV_Cx 0x00002000 +#define CHIP_REV_EMUL 0x0000e000 +#define CHIP_REV_FPGA 0x0000f000 +#define CHIP_REV_IS_SLOW(bp) ((CHIP_REV(bp) == CHIP_REV_EMUL) || \ + (CHIP_REV(bp) == CHIP_REV_FPGA)) + +#define CHIP_METAL(bp) (((bp)->chip_id) & 0x00000ff0) +#define CHIP_BOND_ID(bp) (((bp)->chip_id) & 0x0000000f) + + u16 fw_seq; + u16 fw_drv_pulse_wr_seq; + u32 fw_mb; + + u32 hw_config; + u32 serdes_config; + u32 lane_config; + u32 ext_phy_config; +#define XGXS_EXT_PHY_TYPE(bp) (bp->ext_phy_config & \ + PORT_HW_CFG_XGXS_EXT_PHY_TYPE_MASK) +#define SERDES_EXT_PHY_TYPE(bp) (bp->ext_phy_config & \ + PORT_HW_CFG_SERDES_EXT_PHY_TYPE_MASK) + + u32 speed_cap_mask; + u32 link_config; +#define SWITCH_CFG_1G PORT_FEATURE_CON_SWITCH_1G_SWITCH +#define SWITCH_CFG_10G PORT_FEATURE_CON_SWITCH_10G_SWITCH +#define SWITCH_CFG_AUTO_DETECT PORT_FEATURE_CON_SWITCH_AUTO_DETECT +#define SWITCH_CFG_ONE_TIME_DETECT \ + PORT_FEATURE_CON_SWITCH_ONE_TIME_DETECT + + u8 ser_lane; + u8 rx_lane_swap; + u8 tx_lane_swap; + + u8 link_up; + + u32 supported; +/* link settings - missing defines */ +#define SUPPORTED_2500baseT_Full (1 << 15) +#define SUPPORTED_CX4 (1 << 16) + + u32 phy_flags; +/*#define PHY_SERDES_FLAG 0x1*/ +#define PHY_BMAC_FLAG 0x2 +#define PHY_EMAC_FLAG 0x4 +#define PHY_XGXS_FLAG 0x8 +#define PHY_SGMII_FLAG 0x10 +#define PHY_INT_MODE_MASK_FLAG 0x300 +#define PHY_INT_MODE_AUTO_POLLING_FLAG 0x100 +#define PHY_INT_MODE_LINK_READY_FLAG 0x200 + + u32 phy_addr; + u32 phy_id; + + u32 autoneg; +#define AUTONEG_CL37 SHARED_HW_CFG_AN_ENABLE_CL37 +#define AUTONEG_CL73 SHARED_HW_CFG_AN_ENABLE_CL73 +#define AUTONEG_BAM SHARED_HW_CFG_AN_ENABLE_BAM +#define AUTONEG_PARALLEL \ + SHARED_HW_CFG_AN_ENABLE_PARALLEL_DETECTION +#define AUTONEG_SGMII_FIBER_AUTODET \ + SHARED_HW_CFG_AN_EN_SGMII_FIBER_AUTO_DETECT +#define AUTONEG_REMOTE_PHY SHARED_HW_CFG_AN_ENABLE_REMOTE_PHY + + u32 req_autoneg; +#define AUTONEG_SPEED 0x1 +#define AUTONEG_FLOW_CTRL 0x2 + + u32 req_line_speed; +/* link settings - missing defines */ +#define SPEED_12000 12000 +#define SPEED_12500 12500 +#define SPEED_13000 13000 +#define SPEED_15000 15000 +#define SPEED_16000 16000 + + u32 req_duplex; + u32 req_flow_ctrl; +#define FLOW_CTRL_AUTO PORT_FEATURE_FLOW_CONTROL_AUTO +#define FLOW_CTRL_TX PORT_FEATURE_FLOW_CONTROL_TX +#define FLOW_CTRL_RX PORT_FEATURE_FLOW_CONTROL_RX +#define FLOW_CTRL_BOTH PORT_FEATURE_FLOW_CONTROL_BOTH +#define FLOW_CTRL_NONE PORT_FEATURE_FLOW_CONTROL_NONE + + u32 pause_mode; +#define PAUSE_NONE 0 +#define PAUSE_SYMMETRIC 1 +#define PAUSE_ASYMMETRIC 2 +#define PAUSE_BOTH 3 + + u32 advertising; +/* link settings - missing defines */ +#define ADVERTISED_2500baseT_Full (1 << 15) +#define ADVERTISED_CX4 (1 << 16) + + u32 link_status; + u32 line_speed; + u32 duplex; + u32 flow_ctrl; + + u32 bc_ver; + + int flash_size; +#define NVRAM_1MB_SIZE 0x20000 /* 1M bit in bytes */ +#define NVRAM_TIMEOUT_COUNT 30000 +#define NVRAM_PAGE_SIZE 256 + + int rx_ring_size; + + u16 tx_quick_cons_trip_int; + u16 tx_quick_cons_trip; + u16 tx_ticks_int; + u16 tx_ticks; + + u16 rx_quick_cons_trip_int; + u16 rx_quick_cons_trip; + u16 rx_ticks_int; + u16 rx_ticks; + + u32 stats_ticks; + + int state; +#define BNX2X_STATE_CLOSED 0x0 +#define BNX2X_STATE_OPENING_WAIT4_LOAD 0x1000 +#define BNX2X_STATE_OPENING_WAIT4_PORT 0x2000 +#define BNX2X_STATE_OPEN 0x3000 +#define BNX2X_STATE_CLOSING_WAIT4_HALT 0x4000 +#define BNX2X_STATE_CLOSING_WAIT4_DELETE 0x5000 +#define BNX2X_STATE_CLOSING_WAIT4_UNLOAD 0x6000 +#define BNX2X_STATE_ERROR 0xF000 + + int num_queues; + + u32 rx_mode; +#define BNX2X_RX_MODE_NONE 0 +#define BNX2X_RX_MODE_NORMAL 1 +#define BNX2X_RX_MODE_ALLMULTI 2 +#define BNX2X_RX_MODE_PROMISC 3 +#define BNX2X_MAX_MULTICAST 64 +#define BNX2X_MAX_EMUL_MULTI 16 + + dma_addr_t def_status_blk_mapping; + + struct bnx2x_slowpath *slowpath; + dma_addr_t slowpath_mapping; + +#ifdef BCM_ISCSI + void *t1; + dma_addr_t t1_mapping; + void *t2; + dma_addr_t t2_mapping; + void *timers; + dma_addr_t timers_mapping; + void *qm; + dma_addr_t qm_mapping; +#endif + + char *name; + u16 bus_speed_mhz; + u8 wol; + u8 pad; + + /* used to synchronize stats collecting */ + int stats_state; +#define STATS_STATE_DISABLE 0 +#define STATS_STATE_ENABLE 1 +#define STATS_STATE_STOP 2 /* stop stats on next iteration */ + + /* used by dmae command loader */ + struct dmae_command dmae; + int executer_idx; + + u32 old_brb_discard; + struct bmac_stats old_bmac; + struct tstorm_per_client_stats old_tclient; + struct z_stream_s *strm; + void *gunzip_buf; + dma_addr_t gunzip_mapping; + int gunzip_outlen; +#define FW_BUF_SIZE 0x8000 + +}; + + +/* DMAE command defines */ +#define DMAE_CMD_SRC_PCI 0 +#define DMAE_CMD_SRC_GRC DMAE_COMMAND_SRC + +#define DMAE_CMD_DST_PCI (1 << DMAE_COMMAND_DST_SHIFT) +#define DMAE_CMD_DST_GRC (2 << DMAE_COMMAND_DST_SHIFT) + +#define DMAE_CMD_C_DST_PCI 0 +#define DMAE_CMD_C_DST_GRC (1 << DMAE_COMMAND_C_DST_SHIFT) + +#define DMAE_CMD_C_ENABLE DMAE_COMMAND_C_TYPE_ENABLE + +#define DMAE_CMD_ENDIANITY_NO_SWAP (0 << DMAE_COMMAND_ENDIANITY_SHIFT) +#define DMAE_CMD_ENDIANITY_B_SWAP (1 << DMAE_COMMAND_ENDIANITY_SHIFT) +#define DMAE_CMD_ENDIANITY_DW_SWAP (2 << DMAE_COMMAND_ENDIANITY_SHIFT) +#define DMAE_CMD_ENDIANITY_B_DW_SWAP (3 << DMAE_COMMAND_ENDIANITY_SHIFT) + +#define DMAE_CMD_PORT_0 0 +#define DMAE_CMD_PORT_1 DMAE_COMMAND_PORT + +#define DMAE_CMD_SRC_RESET DMAE_COMMAND_SRC_RESET +#define DMAE_CMD_DST_RESET DMAE_COMMAND_DST_RESET + +#define DMAE_LEN32_MAX 0x400 + + +/* MC hsi */ +#define RX_COPY_THRESH 92 +#define BCM_PAGE_BITS 12 +#define BCM_PAGE_SIZE (1 << BCM_PAGE_BITS) + +#define NUM_TX_RINGS 16 +#define TX_DESC_CNT (BCM_PAGE_SIZE / sizeof(struct eth_tx_bd)) +#define MAX_TX_DESC_CNT (TX_DESC_CNT - 1) +#define NUM_TX_BD (TX_DESC_CNT * NUM_TX_RINGS) +#define MAX_TX_BD (NUM_TX_BD - 1) +#define MAX_TX_AVAIL (MAX_TX_DESC_CNT * NUM_TX_RINGS - 2) +#define NEXT_TX_IDX(x) ((((x) & MAX_TX_DESC_CNT) == \ + (MAX_TX_DESC_CNT - 1)) ? (x) + 2 : (x) + 1) +#define TX_BD(x) ((x) & MAX_TX_BD) +#define TX_BD_POFF(x) ((x) & MAX_TX_DESC_CNT) + +/* The RX BD ring is special, each bd is 8 bytes but the last one is 16 */ +#define NUM_RX_RINGS 8 +#define RX_DESC_CNT (BCM_PAGE_SIZE / sizeof(struct eth_rx_bd)) +#define MAX_RX_DESC_CNT (RX_DESC_CNT - 2) +#define RX_DESC_MASK (RX_DESC_CNT - 1) +#define NUM_RX_BD (RX_DESC_CNT * NUM_RX_RINGS) +#define MAX_RX_BD (NUM_RX_BD - 1) +#define MAX_RX_AVAIL (MAX_RX_DESC_CNT * NUM_RX_RINGS - 2) +#define NEXT_RX_IDX(x) ((((x) & RX_DESC_MASK) == \ + (MAX_RX_DESC_CNT - 1)) ? (x) + 3 : (x) + 1) +#define RX_BD(x) ((x) & MAX_RX_BD) + +#define NUM_RCQ_RINGS (NUM_RX_RINGS * 2) +#define RCQ_DESC_CNT (BCM_PAGE_SIZE / sizeof(union eth_rx_cqe)) +#define MAX_RCQ_DESC_CNT (RCQ_DESC_CNT - 1) +#define NUM_RCQ_BD (RCQ_DESC_CNT * NUM_RCQ_RINGS) +#define MAX_RCQ_BD (NUM_RCQ_BD - 1) +#define MAX_RCQ_AVAIL (MAX_RCQ_DESC_CNT * NUM_RCQ_RINGS - 2) +#define NEXT_RCQ_IDX(x) ((((x) & MAX_RCQ_DESC_CNT) == \ + (MAX_RCQ_DESC_CNT - 1)) ? (x) + 2 : (x) + 1) +#define RCQ_BD(x) ((x) & MAX_RCQ_BD) + + +/* used on a CID received from the HW */ +#define SW_CID(x) (le32_to_cpu(x) & \ + (COMMON_RAMROD_ETH_RX_CQE_CID >> 1)) +#define CQE_CMD(x) (le32_to_cpu(x) >> \ + COMMON_RAMROD_ETH_RX_CQE_CMD_ID_SHIFT) + +#define BD_UNMAP_ADDR(bd) HILO_U64(le32_to_cpu((bd)->addr_hi), \ + le32_to_cpu((bd)->addr_lo)) +#define BD_UNMAP_LEN(bd) (le16_to_cpu((bd)->nbytes)) + + +#define STROM_ASSERT_ARRAY_SIZE 50 + + +#define MDIO_INDIRECT_REG_ADDR 0x1f +#define MDIO_SET_REG_BANK(bp, reg_bank) \ + bnx2x_mdio22_write(bp, MDIO_INDIRECT_REG_ADDR, reg_bank) + +#define MDIO_ACCESS_TIMEOUT 1000 + + +/* must be used on a CID before placing it on a HW ring */ +#define HW_CID(bp, x) (x | (bp->port << 23)) + +#define SP_DESC_CNT (BCM_PAGE_SIZE / sizeof(struct eth_spe)) +#define MAX_SP_DESC_CNT (SP_DESC_CNT - 1) + +#define ATTN_NIG_FOR_FUNC (1L << 8) +#define ATTN_SW_TIMER_4_FUNC (1L << 9) +#define GPIO_2_FUNC (1L << 10) +#define GPIO_3_FUNC (1L << 11) +#define GPIO_4_FUNC (1L << 12) +#define ATTN_GENERAL_ATTN_1 (1L << 13) +#define ATTN_GENERAL_ATTN_2 (1L << 14) +#define ATTN_GENERAL_ATTN_3 (1L << 15) +#define ATTN_GENERAL_ATTN_4 (1L << 13) +#define ATTN_GENERAL_ATTN_5 (1L << 14) +#define ATTN_GENERAL_ATTN_6 (1L << 15) + +#define ATTN_HARD_WIRED_MASK 0xff00 +#define ATTENTION_ID 4 + + +#define BNX2X_BTR 3 +#define MAX_SPQ_PENDING 8 + + +#define BNX2X_NUM_STATS 31 +#define BNX2X_NUM_TESTS 2 + + +#define DPM_TRIGER_TYPE 0x40 +#define DOORBELL(bp, cid, val) \ + do { \ + writel((u32)val, (bp)->doorbells + (BCM_PAGE_SIZE * cid) + \ + DPM_TRIGER_TYPE); \ + } while (0) + + +/* stuff added to make the code fit 80Col */ + +#define TPA_TYPE_START ETH_FAST_PATH_RX_CQE_START_FLG +#define TPA_TYPE_END ETH_FAST_PATH_RX_CQE_END_FLG +#define TPA_TYPE(cqe) (cqe->fast_path_cqe.error_type_flags & \ + (TPA_TYPE_START | TPA_TYPE_END)) +#define BNX2X_RX_SUM_OK(cqe) \ + (!(cqe->fast_path_cqe.status_flags & \ + (ETH_FAST_PATH_RX_CQE_IP_XSUM_NO_VALIDATION_FLG | \ + ETH_FAST_PATH_RX_CQE_L4_XSUM_NO_VALIDATION_FLG))) + +#define BNX2X_RX_SUM_FIX(cqe) \ + ((le16_to_cpu(cqe->fast_path_cqe.pars_flags.flags) & \ + PARSING_FLAGS_OVER_ETHERNET_PROTOCOL) == \ + (1 << PARSING_FLAGS_OVER_ETHERNET_PROTOCOL_SHIFT)) + + +#define MDIO_AN_CL73_OR_37_COMPLETE \ + (MDIO_GP_STATUS_TOP_AN_STATUS1_CL73_AUTONEG_COMPLETE | \ + MDIO_GP_STATUS_TOP_AN_STATUS1_CL37_AUTONEG_COMPLETE) + +#define GP_STATUS_PAUSE_RSOLUTION_TXSIDE \ + MDIO_GP_STATUS_TOP_AN_STATUS1_PAUSE_RSOLUTION_TXSIDE +#define GP_STATUS_PAUSE_RSOLUTION_RXSIDE \ + MDIO_GP_STATUS_TOP_AN_STATUS1_PAUSE_RSOLUTION_RXSIDE +#define GP_STATUS_SPEED_MASK \ + MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_MASK +#define GP_STATUS_10M MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10M +#define GP_STATUS_100M MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_100M +#define GP_STATUS_1G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_1G +#define GP_STATUS_2_5G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_2_5G +#define GP_STATUS_5G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_5G +#define GP_STATUS_6G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_6G +#define GP_STATUS_10G_HIG \ + MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10G_HIG +#define GP_STATUS_10G_CX4 \ + MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10G_CX4 +#define GP_STATUS_12G_HIG \ + MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_12G_HIG +#define GP_STATUS_12_5G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_12_5G +#define GP_STATUS_13G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_13G +#define GP_STATUS_15G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_15G +#define GP_STATUS_16G MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_16G +#define GP_STATUS_1G_KX MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_1G_KX +#define GP_STATUS_10G_KX4 \ + MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10G_KX4 + +#define LINK_10THD LINK_STATUS_SPEED_AND_DUPLEX_10THD +#define LINK_10TFD LINK_STATUS_SPEED_AND_DUPLEX_10TFD +#define LINK_100TXHD LINK_STATUS_SPEED_AND_DUPLEX_100TXHD +#define LINK_100T4 LINK_STATUS_SPEED_AND_DUPLEX_100T4 +#define LINK_100TXFD LINK_STATUS_SPEED_AND_DUPLEX_100TXFD +#define LINK_1000THD LINK_STATUS_SPEED_AND_DUPLEX_1000THD +#define LINK_1000TFD LINK_STATUS_SPEED_AND_DUPLEX_1000TFD +#define LINK_1000XFD LINK_STATUS_SPEED_AND_DUPLEX_1000XFD +#define LINK_2500THD LINK_STATUS_SPEED_AND_DUPLEX_2500THD +#define LINK_2500TFD LINK_STATUS_SPEED_AND_DUPLEX_2500TFD +#define LINK_2500XFD LINK_STATUS_SPEED_AND_DUPLEX_2500XFD +#define LINK_10GTFD LINK_STATUS_SPEED_AND_DUPLEX_10GTFD +#define LINK_10GXFD LINK_STATUS_SPEED_AND_DUPLEX_10GXFD +#define LINK_12GTFD LINK_STATUS_SPEED_AND_DUPLEX_12GTFD +#define LINK_12GXFD LINK_STATUS_SPEED_AND_DUPLEX_12GXFD +#define LINK_12_5GTFD LINK_STATUS_SPEED_AND_DUPLEX_12_5GTFD +#define LINK_12_5GXFD LINK_STATUS_SPEED_AND_DUPLEX_12_5GXFD +#define LINK_13GTFD LINK_STATUS_SPEED_AND_DUPLEX_13GTFD +#define LINK_13GXFD LINK_STATUS_SPEED_AND_DUPLEX_13GXFD +#define LINK_15GTFD LINK_STATUS_SPEED_AND_DUPLEX_15GTFD +#define LINK_15GXFD LINK_STATUS_SPEED_AND_DUPLEX_15GXFD +#define LINK_16GTFD LINK_STATUS_SPEED_AND_DUPLEX_16GTFD +#define LINK_16GXFD LINK_STATUS_SPEED_AND_DUPLEX_16GXFD + +#define NIG_STATUS_INTERRUPT_XGXS0_LINK10G \ + NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_XGXS0_LINK10G +#define NIG_XGXS0_LINK_STATUS \ + NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_XGXS0_LINK_STATUS +#define NIG_XGXS0_LINK_STATUS_SIZE \ + NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_XGXS0_LINK_STATUS_SIZE +#define NIG_SERDES0_LINK_STATUS \ + NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_SERDES0_LINK_STATUS +#define NIG_MASK_MI_INT \ + NIG_MASK_INTERRUPT_PORT0_REG_MASK_EMAC0_MISC_MI_INT +#define NIG_MASK_XGXS0_LINK10G \ + NIG_MASK_INTERRUPT_PORT0_REG_MASK_XGXS0_LINK10G +#define NIG_MASK_XGXS0_LINK_STATUS \ + NIG_MASK_INTERRUPT_PORT0_REG_MASK_XGXS0_LINK_STATUS +#define NIG_MASK_SERDES0_LINK_STATUS \ + NIG_MASK_INTERRUPT_PORT0_REG_MASK_SERDES0_LINK_STATUS + +#define XGXS_RESET_BITS \ + (MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_RSTB_HW | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_IDDQ | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_PWRDWN | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_PWRDWN_SD | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_TXD_FIFO_RSTB) + +#define SERDES_RESET_BITS \ + (MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_RSTB_HW | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_IDDQ | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_PWRDWN | \ + MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_PWRDWN_SD) + + +#define BNX2X_MC_ASSERT_BITS \ + (GENERAL_ATTEN_OFFSET(TSTORM_FATAL_ASSERT_ATTENTION_BIT) | \ + GENERAL_ATTEN_OFFSET(USTORM_FATAL_ASSERT_ATTENTION_BIT) | \ + GENERAL_ATTEN_OFFSET(CSTORM_FATAL_ASSERT_ATTENTION_BIT) | \ + GENERAL_ATTEN_OFFSET(XSTORM_FATAL_ASSERT_ATTENTION_BIT)) + +#define BNX2X_MCP_ASSERT \ + GENERAL_ATTEN_OFFSET(MCP_FATAL_ASSERT_ATTENTION_BIT) + +#define BNX2X_DOORQ_ASSERT \ + AEU_INPUTS_ATTN_BITS_DOORBELLQ_HW_INTERRUPT + +#define HW_INTERRUT_ASSERT_SET_0 \ + (AEU_INPUTS_ATTN_BITS_TSDM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_TCM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_TSEMI_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_PBF_HW_INTERRUPT) +#define HW_PRTY_ASSERT_SET_0 (AEU_INPUTS_ATTN_BITS_BRB_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_PARSER_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_TSDM_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_SEARCHER_PARITY_ERROR |\ + AEU_INPUTS_ATTN_BITS_TSEMI_PARITY_ERROR) +#define HW_INTERRUT_ASSERT_SET_1 \ + (AEU_INPUTS_ATTN_BITS_QM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_TIMERS_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_XSDM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_XCM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_XSEMI_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_USDM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_UCM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_USEMI_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_UPB_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_CSDM_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_CCM_HW_INTERRUPT) +#define HW_PRTY_ASSERT_SET_1 (AEU_INPUTS_ATTN_BITS_PBCLIENT_PARITY_ERROR |\ + AEU_INPUTS_ATTN_BITS_QM_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_XSDM_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_XSEMI_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_DOORBELLQ_PARITY_ERROR |\ + AEU_INPUTS_ATTN_BITS_VAUX_PCI_CORE_PARITY_ERROR |\ + AEU_INPUTS_ATTN_BITS_DEBUG_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_USDM_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_USEMI_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_UPB_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_CSDM_PARITY_ERROR) +#define HW_INTERRUT_ASSERT_SET_2 \ + (AEU_INPUTS_ATTN_BITS_CSEMI_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_CDU_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_DMAE_HW_INTERRUPT | \ + AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_HW_INTERRUPT |\ + AEU_INPUTS_ATTN_BITS_MISC_HW_INTERRUPT) +#define HW_PRTY_ASSERT_SET_2 (AEU_INPUTS_ATTN_BITS_CSEMI_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_PXP_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_PARITY_ERROR |\ + AEU_INPUTS_ATTN_BITS_CFC_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_CDU_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_IGU_PARITY_ERROR | \ + AEU_INPUTS_ATTN_BITS_MISC_PARITY_ERROR) + + +#define ETH_RX_ERROR_FALGS (ETH_FAST_PATH_RX_CQE_PHY_DECODE_ERR_FLG | \ + ETH_FAST_PATH_RX_CQE_IP_BAD_XSUM_FLG | \ + ETH_FAST_PATH_RX_CQE_L4_BAD_XSUM_FLG) + + +#define MULTI_FLAGS \ + (TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_CAPABILITY | \ + TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_TCP_CAPABILITY | \ + TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_CAPABILITY | \ + TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_TCP_CAPABILITY | \ + TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_ENABLE) + +#define MULTI_MASK 0x7f + + +#define U_SB_ETH_RX_CQ_INDEX HC_INDEX_U_ETH_RX_CQ_CONS +#define C_SB_ETH_TX_CQ_INDEX HC_INDEX_C_ETH_TX_CQ_CONS +#define C_DEF_SB_SP_INDEX HC_INDEX_DEF_C_ETH_SLOW_PATH + +#define BNX2X_RX_SB_INDEX \ + &fp->status_blk->u_status_block.index_values[U_SB_ETH_RX_CQ_INDEX] + +#define BNX2X_TX_SB_INDEX \ + &fp->status_blk->c_status_block.index_values[C_SB_ETH_TX_CQ_INDEX] + +#define BNX2X_SP_DSB_INDEX \ +&bp->def_status_blk->c_def_status_block.index_values[C_DEF_SB_SP_INDEX] + + +#define CAM_IS_INVALID(x) \ +(x.target_table_entry.flags == TSTORM_CAM_TARGET_TABLE_ENTRY_ACTION_TYPE) + +#define CAM_INVALIDATE(x) \ +x.target_table_entry.flags = TSTORM_CAM_TARGET_TABLE_ENTRY_ACTION_TYPE + + +/* MISC_REG_RESET_REG - this is here for the hsi to work don't touch */ + +#endif /* bnx2x.h */ diff --git a/drivers/net/bnx2x_fw_defs.h b/drivers/net/bnx2x_fw_defs.h new file mode 100644 index 000000000000..62a6eb81025a --- /dev/null +++ b/drivers/net/bnx2x_fw_defs.h @@ -0,0 +1,198 @@ +/* bnx2x_fw_defs.h: Broadcom Everest network driver. + * + * Copyright (c) 2007 Broadcom Corporation + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation. + */ + + +#define CSTORM_DEF_SB_HC_DISABLE_OFFSET(port, index)\ + (0x1922 + (port * 0x40) + (index * 0x4)) +#define CSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)\ + (0x1900 + (port * 0x40)) +#define CSTORM_HC_BTR_OFFSET(port)\ + (0x1984 + (port * 0xc0)) +#define CSTORM_SB_HC_DISABLE_OFFSET(port, cpu_id, index)\ + (0x141a + (port * 0x280) + (cpu_id * 0x28) + (index * 0x4)) +#define CSTORM_SB_HC_TIMEOUT_OFFSET(port, cpu_id, index)\ + (0x1418 + (port * 0x280) + (cpu_id * 0x28) + (index * 0x4)) +#define CSTORM_SB_HOST_SB_ADDR_OFFSET(port, cpu_id)\ + (0x1400 + (port * 0x280) + (cpu_id * 0x28)) +#define CSTORM_STATS_FLAGS_OFFSET(port) (0x5108 + (port * 0x8)) +#define TSTORM_CLIENT_CONFIG_OFFSET(port, client_id)\ + (0x1510 + (port * 0x240) + (client_id * 0x20)) +#define TSTORM_DEF_SB_HC_DISABLE_OFFSET(port, index)\ + (0x138a + (port * 0x28) + (index * 0x4)) +#define TSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)\ + (0x1370 + (port * 0x28)) +#define TSTORM_ETH_STATS_QUERY_ADDR_OFFSET(port)\ + (0x4b70 + (port * 0x8)) +#define TSTORM_FUNCTION_COMMON_CONFIG_OFFSET(function)\ + (0x1418 + (function * 0x30)) +#define TSTORM_HC_BTR_OFFSET(port)\ + (0x13c4 + (port * 0x18)) +#define TSTORM_INDIRECTION_TABLE_OFFSET(port)\ + (0x22c8 + (port * 0x80)) +#define TSTORM_INDIRECTION_TABLE_SIZE 0x80 +#define TSTORM_MAC_FILTER_CONFIG_OFFSET(port)\ + (0x1420 + (port * 0x30)) +#define TSTORM_RCQ_PROD_OFFSET(port, client_id)\ + (0x1508 + (port * 0x240) + (client_id * 0x20)) +#define TSTORM_STATS_FLAGS_OFFSET(port) (0x4b90 + (port * 0x8)) +#define USTORM_DEF_SB_HC_DISABLE_OFFSET(port, index)\ + (0x191a + (port * 0x28) + (index * 0x4)) +#define USTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)\ + (0x1900 + (port * 0x28)) +#define USTORM_HC_BTR_OFFSET(port)\ + (0x1954 + (port * 0xb8)) +#define USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(port)\ + (0x5408 + (port * 0x8)) +#define USTORM_SB_HC_DISABLE_OFFSET(port, cpu_id, index)\ + (0x141a + (port * 0x280) + (cpu_id * 0x28) + (index * 0x4)) +#define USTORM_SB_HC_TIMEOUT_OFFSET(port, cpu_id, index)\ + (0x1418 + (port * 0x280) + (cpu_id * 0x28) + (index * 0x4)) +#define USTORM_SB_HOST_SB_ADDR_OFFSET(port, cpu_id)\ + (0x1400 + (port * 0x280) + (cpu_id * 0x28)) +#define XSTORM_ASSERT_LIST_INDEX_OFFSET 0x1000 +#define XSTORM_ASSERT_LIST_OFFSET(idx) (0x1020 + (idx * 0x10)) +#define XSTORM_DEF_SB_HC_DISABLE_OFFSET(port, index)\ + (0x141a + (port * 0x28) + (index * 0x4)) +#define XSTORM_DEF_SB_HOST_SB_ADDR_OFFSET(port)\ + (0x1400 + (port * 0x28)) +#define XSTORM_ETH_STATS_QUERY_ADDR_OFFSET(port)\ + (0x5408 + (port * 0x8)) +#define XSTORM_HC_BTR_OFFSET(port)\ + (0x1454 + (port * 0x18)) +#define XSTORM_SPQ_PAGE_BASE_OFFSET(port)\ + (0x5328 + (port * 0x18)) +#define XSTORM_SPQ_PROD_OFFSET(port)\ + (0x5330 + (port * 0x18)) +#define XSTORM_STATS_FLAGS_OFFSET(port) (0x53f8 + (port * 0x8)) +#define COMMON_ASM_INVALID_ASSERT_OPCODE 0x0 + +/** +* This file defines HSI constatnts for the ETH flow +*/ + +/* hash types */ +#define DEFAULT_HASH_TYPE 0 +#define IPV4_HASH_TYPE 1 +#define TCP_IPV4_HASH_TYPE 2 +#define IPV6_HASH_TYPE 3 +#define TCP_IPV6_HASH_TYPE 4 + +/* values of command IDs in the ramrod message */ +#define RAMROD_CMD_ID_ETH_PORT_SETUP (80) +#define RAMROD_CMD_ID_ETH_CLIENT_SETUP (85) +#define RAMROD_CMD_ID_ETH_STAT_QUERY (90) +#define RAMROD_CMD_ID_ETH_UPDATE (100) +#define RAMROD_CMD_ID_ETH_HALT (105) +#define RAMROD_CMD_ID_ETH_SET_MAC (110) +#define RAMROD_CMD_ID_ETH_CFC_DEL (115) +#define RAMROD_CMD_ID_ETH_PORT_DEL (120) +#define RAMROD_CMD_ID_ETH_FORWARD_SETUP (125) + + +/* command values for set mac command */ +#define T_ETH_MAC_COMMAND_SET 0 +#define T_ETH_MAC_COMMAND_INVALIDATE 1 + +#define T_ETH_INDIRECTION_TABLE_SIZE 128 + +/* Maximal L2 clients supported */ +#define ETH_MAX_RX_CLIENTS (18) + +/** +* This file defines HSI constatnts common to all microcode flows +*/ + +/* Connection types */ +#define ETH_CONNECTION_TYPE 0 + +#define PROTOCOL_STATE_BIT_OFFSET 6 + +#define ETH_STATE (ETH_CONNECTION_TYPE << PROTOCOL_STATE_BIT_OFFSET) + +/* microcode fixed page page size 4K (chains and ring segments) */ +#define MC_PAGE_SIZE (4096) + +/* Host coalescing constants */ + +/* IGU constants */ +#define IGU_PORT_BASE 0x0400 + +#define IGU_ADDR_MSIX 0x0000 +#define IGU_ADDR_INT_ACK 0x0200 +#define IGU_ADDR_PROD_UPD 0x0201 +#define IGU_ADDR_ATTN_BITS_UPD 0x0202 +#define IGU_ADDR_ATTN_BITS_SET 0x0203 +#define IGU_ADDR_ATTN_BITS_CLR 0x0204 +#define IGU_ADDR_COALESCE_NOW 0x0205 +#define IGU_ADDR_SIMD_MASK 0x0206 +#define IGU_ADDR_SIMD_NOMASK 0x0207 +#define IGU_ADDR_MSI_CTL 0x0210 +#define IGU_ADDR_MSI_ADDR_LO 0x0211 +#define IGU_ADDR_MSI_ADDR_HI 0x0212 +#define IGU_ADDR_MSI_DATA 0x0213 + +#define IGU_INT_ENABLE 0 +#define IGU_INT_DISABLE 1 +#define IGU_INT_NOP 2 +#define IGU_INT_NOP2 3 + +/* index numbers */ +#define HC_USTORM_DEF_SB_NUM_INDICES 4 +#define HC_CSTORM_DEF_SB_NUM_INDICES 8 +#define HC_XSTORM_DEF_SB_NUM_INDICES 4 +#define HC_TSTORM_DEF_SB_NUM_INDICES 4 +#define HC_USTORM_SB_NUM_INDICES 4 +#define HC_CSTORM_SB_NUM_INDICES 4 + +/* index values - which counterto update */ + +#define HC_INDEX_U_ETH_RX_CQ_CONS 1 + +#define HC_INDEX_C_ETH_TX_CQ_CONS 1 + +#define HC_INDEX_DEF_X_SPQ_CONS 0 + +#define HC_INDEX_DEF_C_ETH_FW_TX_CQ_CONS 2 +#define HC_INDEX_DEF_C_ETH_SLOW_PATH 3 + +/* used by the driver to get the SB offset */ +#define USTORM_ID 0 +#define CSTORM_ID 1 +#define XSTORM_ID 2 +#define TSTORM_ID 3 +#define ATTENTION_ID 4 + +/* max number of slow path commands per port */ +#define MAX_RAMRODS_PER_PORT (8) + +/* values for RX ETH CQE type field */ +#define RX_ETH_CQE_TYPE_ETH_FASTPATH (0) +#define RX_ETH_CQE_TYPE_ETH_RAMROD (1) + +/* MAC address list size */ +#define T_MAC_ADDRESS_LIST_SIZE (96) + +#define XSTORM_IP_ID_ROLL_HALF 0x8000 +#define XSTORM_IP_ID_ROLL_ALL 0 + +#define FW_LOG_LIST_SIZE (50) + +#define NUM_OF_PROTOCOLS 4 +#define MAX_COS_NUMBER 16 +#define MAX_T_STAT_COUNTER_ID 18 + +#define T_FAIR 1 +#define FAIR_MEM 2 +#define RS_PERIODIC_TIMEOUT_IN_SDM_TICS 25 + +#define UNKNOWN_ADDRESS 0 +#define UNICAST_ADDRESS 1 +#define MULTICAST_ADDRESS 2 +#define BROADCAST_ADDRESS 3 + diff --git a/drivers/net/bnx2x_hsi.h b/drivers/net/bnx2x_hsi.h new file mode 100644 index 000000000000..6fd959c34d1f --- /dev/null +++ b/drivers/net/bnx2x_hsi.h @@ -0,0 +1,2176 @@ +/* bnx2x_hsi.h: Broadcom Everest network driver. + * + * Copyright (c) 2007 Broadcom Corporation + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation. + */ + + +#define FUNC_0 0 +#define FUNC_1 1 +#define FUNC_MAX 2 + + +/* This value (in milliseconds) determines the frequency of the driver + * issuing the PULSE message code. The firmware monitors this periodic + * pulse to determine when to switch to an OS-absent mode. */ +#define DRV_PULSE_PERIOD_MS 250 + +/* This value (in milliseconds) determines how long the driver should + * wait for an acknowledgement from the firmware before timing out. Once + * the firmware has timed out, the driver will assume there is no firmware + * running and there won't be any firmware-driver synchronization during a + * driver reset. */ +#define FW_ACK_TIME_OUT_MS 5000 + +#define FW_ACK_POLL_TIME_MS 1 + +#define FW_ACK_NUM_OF_POLL (FW_ACK_TIME_OUT_MS/FW_ACK_POLL_TIME_MS) + +/* LED Blink rate that will achieve ~15.9Hz */ +#define LED_BLINK_RATE_VAL 480 + +/**************************************************************************** + * Driver <-> FW Mailbox * + ****************************************************************************/ +struct drv_fw_mb { + u32 drv_mb_header; +#define DRV_MSG_CODE_MASK 0xffff0000 +#define DRV_MSG_CODE_LOAD_REQ 0x10000000 +#define DRV_MSG_CODE_LOAD_DONE 0x11000000 +#define DRV_MSG_CODE_UNLOAD_REQ_WOL_EN 0x20000000 +#define DRV_MSG_CODE_UNLOAD_REQ_WOL_DIS 0x20010000 +#define DRV_MSG_CODE_UNLOAD_REQ_WOL_MCP 0x20020000 +#define DRV_MSG_CODE_UNLOAD_DONE 0x21000000 +#define DRV_MSG_CODE_DIAG_ENTER_REQ 0x50000000 +#define DRV_MSG_CODE_DIAG_EXIT_REQ 0x60000000 +#define DRV_MSG_CODE_VALIDATE_KEY 0x70000000 +#define DRV_MSG_CODE_GET_CURR_KEY 0x80000000 +#define DRV_MSG_CODE_GET_UPGRADE_KEY 0x81000000 +#define DRV_MSG_CODE_GET_MANUF_KEY 0x82000000 +#define DRV_MSG_CODE_LOAD_L2B_PRAM 0x90000000 + +#define DRV_MSG_SEQ_NUMBER_MASK 0x0000ffff + + u32 drv_mb_param; + + u32 fw_mb_header; +#define FW_MSG_CODE_MASK 0xffff0000 +#define FW_MSG_CODE_DRV_LOAD_COMMON 0x11000000 +#define FW_MSG_CODE_DRV_LOAD_PORT 0x12000000 +#define FW_MSG_CODE_DRV_LOAD_REFUSED 0x13000000 +#define FW_MSG_CODE_DRV_LOAD_DONE 0x14000000 +#define FW_MSG_CODE_DRV_UNLOAD_COMMON 0x21000000 +#define FW_MSG_CODE_DRV_UNLOAD_PORT 0x22000000 +#define FW_MSG_CODE_DRV_UNLOAD_DONE 0x23000000 +#define FW_MSG_CODE_DIAG_ENTER_DONE 0x50000000 +#define FW_MSG_CODE_DIAG_REFUSE 0x51000000 +#define FW_MSG_CODE_VALIDATE_KEY_SUCCESS 0x70000000 +#define FW_MSG_CODE_VALIDATE_KEY_FAILURE 0x71000000 +#define FW_MSG_CODE_GET_KEY_DONE 0x80000000 +#define FW_MSG_CODE_NO_KEY 0x8f000000 +#define FW_MSG_CODE_LIC_INFO_NOT_READY 0x8f800000 +#define FW_MSG_CODE_L2B_PRAM_LOADED 0x90000000 +#define FW_MSG_CODE_L2B_PRAM_T_LOAD_FAILURE 0x91000000 +#define FW_MSG_CODE_L2B_PRAM_C_LOAD_FAILURE 0x92000000 +#define FW_MSG_CODE_L2B_PRAM_X_LOAD_FAILURE 0x93000000 +#define FW_MSG_CODE_L2B_PRAM_U_LOAD_FAILURE 0x94000000 + +#define FW_MSG_SEQ_NUMBER_MASK 0x0000ffff + + u32 fw_mb_param; + + u32 link_status; + /* Driver should update this field on any link change event */ + +#define LINK_STATUS_LINK_FLAG_MASK 0x00000001 +#define LINK_STATUS_LINK_UP 0x00000001 +#define LINK_STATUS_SPEED_AND_DUPLEX_MASK 0x0000001E +#define LINK_STATUS_SPEED_AND_DUPLEX_AN_NOT_COMPLETE (0<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_10THD (1<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_10TFD (2<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_100TXHD (3<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_100T4 (4<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_100TXFD (5<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_1000THD (6<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_1000TFD (7<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_1000XFD (7<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_2500THD (8<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_2500TFD (9<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_2500XFD (9<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_10GTFD (10<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_10GXFD (10<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_12GTFD (11<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_12GXFD (11<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_12_5GTFD (12<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_12_5GXFD (12<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_13GTFD (13<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_13GXFD (13<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_15GTFD (14<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_15GXFD (14<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_16GTFD (15<<1) +#define LINK_STATUS_SPEED_AND_DUPLEX_16GXFD (15<<1) + +#define LINK_STATUS_AUTO_NEGOTIATE_FLAG_MASK 0x00000020 +#define LINK_STATUS_AUTO_NEGOTIATE_ENABLED 0x00000020 + +#define LINK_STATUS_AUTO_NEGOTIATE_COMPLETE 0x00000040 +#define LINK_STATUS_PARALLEL_DETECTION_FLAG_MASK 0x00000080 +#define LINK_STATUS_PARALLEL_DETECTION_USED 0x00000080 + +#define LINK_STATUS_LINK_PARTNER_1000TFD_CAPABLE 0x00000200 +#define LINK_STATUS_LINK_PARTNER_1000THD_CAPABLE 0x00000400 +#define LINK_STATUS_LINK_PARTNER_100T4_CAPABLE 0x00000800 +#define LINK_STATUS_LINK_PARTNER_100TXFD_CAPABLE 0x00001000 +#define LINK_STATUS_LINK_PARTNER_100TXHD_CAPABLE 0x00002000 +#define LINK_STATUS_LINK_PARTNER_10TFD_CAPABLE 0x00004000 +#define LINK_STATUS_LINK_PARTNER_10THD_CAPABLE 0x00008000 + +#define LINK_STATUS_TX_FLOW_CONTROL_FLAG_MASK 0x00010000 +#define LINK_STATUS_TX_FLOW_CONTROL_ENABLED 0x00010000 + +#define LINK_STATUS_RX_FLOW_CONTROL_FLAG_MASK 0x00020000 +#define LINK_STATUS_RX_FLOW_CONTROL_ENABLED 0x00020000 + +#define LINK_STATUS_LINK_PARTNER_FLOW_CONTROL_MASK 0x000C0000 +#define LINK_STATUS_LINK_PARTNER_NOT_PAUSE_CAPABLE (0<<18) +#define LINK_STATUS_LINK_PARTNER_SYMMETRIC_PAUSE (1<<18) +#define LINK_STATUS_LINK_PARTNER_ASYMMETRIC_PAUSE (2<<18) +#define LINK_STATUS_LINK_PARTNER_BOTH_PAUSE (3<<18) + +#define LINK_STATUS_SERDES_LINK 0x00100000 + +#define LINK_STATUS_LINK_PARTNER_2500XFD_CAPABLE 0x00200000 +#define LINK_STATUS_LINK_PARTNER_2500XHD_CAPABLE 0x00400000 +#define LINK_STATUS_LINK_PARTNER_10GXFD_CAPABLE 0x00800000 +#define LINK_STATUS_LINK_PARTNER_12GXFD_CAPABLE 0x01000000 +#define LINK_STATUS_LINK_PARTNER_12_5GXFD_CAPABLE 0x02000000 +#define LINK_STATUS_LINK_PARTNER_13GXFD_CAPABLE 0x04000000 +#define LINK_STATUS_LINK_PARTNER_15GXFD_CAPABLE 0x08000000 +#define LINK_STATUS_LINK_PARTNER_16GXFD_CAPABLE 0x10000000 + + u32 drv_pulse_mb; +#define DRV_PULSE_SEQ_MASK 0x00007fff +#define DRV_PULSE_SYSTEM_TIME_MASK 0xffff0000 + /* The system time is in the format of + * (year-2001)*12*32 + month*32 + day. */ +#define DRV_PULSE_ALWAYS_ALIVE 0x00008000 + /* Indicate to the firmware not to go into the + * OS-absent when it is not getting driver pulse. + * This is used for debugging as well for PXE(MBA). */ + + u32 mcp_pulse_mb; +#define MCP_PULSE_SEQ_MASK 0x00007fff +#define MCP_PULSE_ALWAYS_ALIVE 0x00008000 + /* Indicates to the driver not to assert due to lack + * of MCP response */ +#define MCP_EVENT_MASK 0xffff0000 +#define MCP_EVENT_OTHER_DRIVER_RESET_REQ 0x00010000 + +}; + + +/**************************************************************************** + * Shared HW configuration * + ****************************************************************************/ +struct shared_hw_cfg { /* NVRAM Offset */ + /* Up to 16 bytes of NULL-terminated string */ + u8 part_num[16]; /* 0x104 */ + + u32 config; /* 0x114 */ +#define SHARED_HW_CFG_MDIO_VOLTAGE_MASK 0x00000001 +#define SHARED_HW_CFG_MDIO_VOLTAGE_SHIFT 0 +#define SHARED_HW_CFG_MDIO_VOLTAGE_1_2V 0x00000000 +#define SHARED_HW_CFG_MDIO_VOLTAGE_2_5V 0x00000001 +#define SHARED_HW_CFG_MCP_RST_ON_CORE_RST_EN 0x00000002 + +#define SHARED_HW_CFG_PORT_SWAP 0x00000004 + +#define SHARED_HW_CFG_BEACON_WOL_EN 0x00000008 + +#define SHARED_HW_CFG_MFW_SELECT_MASK 0x00000700 +#define SHARED_HW_CFG_MFW_SELECT_SHIFT 8 + /* Whatever MFW found in NVM + (if multiple found, priority order is: NC-SI, UMP, IPMI) */ +#define SHARED_HW_CFG_MFW_SELECT_DEFAULT 0x00000000 +#define SHARED_HW_CFG_MFW_SELECT_NC_SI 0x00000100 +#define SHARED_HW_CFG_MFW_SELECT_UMP 0x00000200 +#define SHARED_HW_CFG_MFW_SELECT_IPMI 0x00000300 + /* Use SPIO4 as an arbiter between: 0-NC_SI, 1-IPMI + (can only be used when an add-in board, not BMC, pulls-down SPIO4) */ +#define SHARED_HW_CFG_MFW_SELECT_SPIO4_NC_SI_IPMI 0x00000400 + /* Use SPIO4 as an arbiter between: 0-UMP, 1-IPMI + (can only be used when an add-in board, not BMC, pulls-down SPIO4) */ +#define SHARED_HW_CFG_MFW_SELECT_SPIO4_UMP_IPMI 0x00000500 + /* Use SPIO4 as an arbiter between: 0-NC-SI, 1-UMP + (can only be used when an add-in board, not BMC, pulls-down SPIO4) */ +#define SHARED_HW_CFG_MFW_SELECT_SPIO4_NC_SI_UMP 0x00000600 + +#define SHARED_HW_CFG_LED_MODE_MASK 0x000f0000 +#define SHARED_HW_CFG_LED_MODE_SHIFT 16 +#define SHARED_HW_CFG_LED_MAC1 0x00000000 +#define SHARED_HW_CFG_LED_PHY1 0x00010000 +#define SHARED_HW_CFG_LED_PHY2 0x00020000 +#define SHARED_HW_CFG_LED_PHY3 0x00030000 +#define SHARED_HW_CFG_LED_MAC2 0x00040000 +#define SHARED_HW_CFG_LED_PHY4 0x00050000 +#define SHARED_HW_CFG_LED_PHY5 0x00060000 +#define SHARED_HW_CFG_LED_PHY6 0x00070000 +#define SHARED_HW_CFG_LED_MAC3 0x00080000 +#define SHARED_HW_CFG_LED_PHY7 0x00090000 +#define SHARED_HW_CFG_LED_PHY9 0x000a0000 +#define SHARED_HW_CFG_LED_PHY11 0x000b0000 +#define SHARED_HW_CFG_LED_MAC4 0x000c0000 +#define SHARED_HW_CFG_LED_PHY8 0x000d0000 + +#define SHARED_HW_CFG_AN_ENABLE_MASK 0x3f000000 +#define SHARED_HW_CFG_AN_ENABLE_SHIFT 24 +#define SHARED_HW_CFG_AN_ENABLE_CL37 0x01000000 +#define SHARED_HW_CFG_AN_ENABLE_CL73 0x02000000 +#define SHARED_HW_CFG_AN_ENABLE_BAM 0x04000000 +#define SHARED_HW_CFG_AN_ENABLE_PARALLEL_DETECTION 0x08000000 +#define SHARED_HW_CFG_AN_EN_SGMII_FIBER_AUTO_DETECT 0x10000000 +#define SHARED_HW_CFG_AN_ENABLE_REMOTE_PHY 0x20000000 + + u32 config2; /* 0x118 */ + /* one time auto detect grace period (in sec) */ +#define SHARED_HW_CFG_GRACE_PERIOD_MASK 0x000000ff +#define SHARED_HW_CFG_GRACE_PERIOD_SHIFT 0 + +#define SHARED_HW_CFG_PCIE_GEN2_ENABLED 0x00000100 + + /* The default value for the core clock is 250MHz and it is + achieved by setting the clock change to 4 */ +#define SHARED_HW_CFG_CLOCK_CHANGE_MASK 0x00000e00 +#define SHARED_HW_CFG_CLOCK_CHANGE_SHIFT 9 + +#define SHARED_HW_CFG_SMBUS_TIMING_100KHZ 0x00000000 +#define SHARED_HW_CFG_SMBUS_TIMING_400KHZ 0x00001000 + +#define SHARED_HW_CFG_HIDE_FUNC1 0x00002000 + + u32 power_dissipated; /* 0x11c */ +#define SHARED_HW_CFG_POWER_DIS_CMN_MASK 0xff000000 +#define SHARED_HW_CFG_POWER_DIS_CMN_SHIFT 24 + +#define SHARED_HW_CFG_POWER_MGNT_SCALE_MASK 0x00ff0000 +#define SHARED_HW_CFG_POWER_MGNT_SCALE_SHIFT 16 +#define SHARED_HW_CFG_POWER_MGNT_UNKNOWN_SCALE 0x00000000 +#define SHARED_HW_CFG_POWER_MGNT_DOT_1_WATT 0x00010000 +#define SHARED_HW_CFG_POWER_MGNT_DOT_01_WATT 0x00020000 +#define SHARED_HW_CFG_POWER_MGNT_DOT_001_WATT 0x00030000 + + u32 ump_nc_si_config; /* 0x120 */ +#define SHARED_HW_CFG_UMP_NC_SI_MII_MODE_MASK 0x00000003 +#define SHARED_HW_CFG_UMP_NC_SI_MII_MODE_SHIFT 0 +#define SHARED_HW_CFG_UMP_NC_SI_MII_MODE_MAC 0x00000000 +#define SHARED_HW_CFG_UMP_NC_SI_MII_MODE_PHY 0x00000001 +#define SHARED_HW_CFG_UMP_NC_SI_MII_MODE_MII 0x00000000 +#define SHARED_HW_CFG_UMP_NC_SI_MII_MODE_RMII 0x00000002 + +#define SHARED_HW_CFG_UMP_NC_SI_NUM_DEVS_MASK 0x00000f00 +#define SHARED_HW_CFG_UMP_NC_SI_NUM_DEVS_SHIFT 8 + +#define SHARED_HW_CFG_UMP_NC_SI_EXT_PHY_TYPE_MASK 0x00ff0000 +#define SHARED_HW_CFG_UMP_NC_SI_EXT_PHY_TYPE_SHIFT 16 +#define SHARED_HW_CFG_UMP_NC_SI_EXT_PHY_TYPE_NONE 0x00000000 +#define SHARED_HW_CFG_UMP_NC_SI_EXT_PHY_TYPE_BCM5221 0x00010000 + + u32 board; /* 0x124 */ +#define SHARED_HW_CFG_BOARD_TYPE_MASK 0x0000ffff +#define SHARED_HW_CFG_BOARD_TYPE_SHIFT 0 +#define SHARED_HW_CFG_BOARD_TYPE_NONE 0x00000000 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1000 0x00000001 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1001 0x00000002 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1002G 0x00000003 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1004G 0x00000004 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1007G 0x00000005 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1015G 0x00000006 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710A1020G 0x00000007 +#define SHARED_HW_CFG_BOARD_TYPE_BCM957710T1003G 0x00000008 + +#define SHARED_HW_CFG_BOARD_VER_MASK 0xffff0000 +#define SHARED_HW_CFG_BOARD_VER_SHIFT 16 +#define SHARED_HW_CFG_BOARD_MAJOR_VER_MASK 0xf0000000 +#define SHARED_HW_CFG_BOARD_MAJOR_VER_SHIFT 28 +#define SHARED_HW_CFG_BOARD_MINOR_VER_MASK 0x0f000000 +#define SHARED_HW_CFG_BOARD_MINOR_VER_SHIFT 24 +#define SHARED_HW_CFG_BOARD_REV_MASK 0x00ff0000 +#define SHARED_HW_CFG_BOARD_REV_SHIFT 16 + + u32 reserved; /* 0x128 */ + +}; + +/**************************************************************************** + * Port HW configuration * + ****************************************************************************/ +struct port_hw_cfg { /* function 0: 0x12c-0x2bb, function 1: 0x2bc-0x44b */ + + /* Fields below are port specific (in anticipation of dual port + devices */ + u32 pci_id; +#define PORT_HW_CFG_PCI_VENDOR_ID_MASK 0xffff0000 +#define PORT_HW_CFG_PCI_DEVICE_ID_MASK 0x0000ffff + + u32 pci_sub_id; +#define PORT_HW_CFG_PCI_SUBSYS_DEVICE_ID_MASK 0xffff0000 +#define PORT_HW_CFG_PCI_SUBSYS_VENDOR_ID_MASK 0x0000ffff + + u32 power_dissipated; +#define PORT_HW_CFG_POWER_DIS_D3_MASK 0xff000000 +#define PORT_HW_CFG_POWER_DIS_D3_SHIFT 24 +#define PORT_HW_CFG_POWER_DIS_D2_MASK 0x00ff0000 +#define PORT_HW_CFG_POWER_DIS_D2_SHIFT 16 +#define PORT_HW_CFG_POWER_DIS_D1_MASK 0x0000ff00 +#define PORT_HW_CFG_POWER_DIS_D1_SHIFT 8 +#define PORT_HW_CFG_POWER_DIS_D0_MASK 0x000000ff +#define PORT_HW_CFG_POWER_DIS_D0_SHIFT 0 + + u32 power_consumed; +#define PORT_HW_CFG_POWER_CONS_D3_MASK 0xff000000 +#define PORT_HW_CFG_POWER_CONS_D3_SHIFT 24 +#define PORT_HW_CFG_POWER_CONS_D2_MASK 0x00ff0000 +#define PORT_HW_CFG_POWER_CONS_D2_SHIFT 16 +#define PORT_HW_CFG_POWER_CONS_D1_MASK 0x0000ff00 +#define PORT_HW_CFG_POWER_CONS_D1_SHIFT 8 +#define PORT_HW_CFG_POWER_CONS_D0_MASK 0x000000ff +#define PORT_HW_CFG_POWER_CONS_D0_SHIFT 0 + + u32 mac_upper; +#define PORT_HW_CFG_UPPERMAC_MASK 0x0000ffff +#define PORT_HW_CFG_UPPERMAC_SHIFT 0 + u32 mac_lower; + + u32 iscsi_mac_upper; /* Upper 16 bits are always zeroes */ + u32 iscsi_mac_lower; + + u32 rdma_mac_upper; /* Upper 16 bits are always zeroes */ + u32 rdma_mac_lower; + + u32 serdes_config; + /* for external PHY, or forced mode or during AN */ +#define PORT_HW_CFG_SERDES_TX_DRV_PRE_EMPHASIS_MASK 0xffff0000 +#define PORT_HW_CFG_SERDES_TX_DRV_PRE_EMPHASIS_SHIFT 16 + +#define PORT_HW_CFG_SERDES_RX_DRV_EQUALIZER_MASK 0x0000ffff +#define PORT_HW_CFG_SERDES_RX_DRV_EQUALIZER_SHIFT 0 + + u16 serdes_tx_driver_pre_emphasis[16]; + u16 serdes_rx_driver_equalizer[16]; + + u32 xgxs_config_lane0; + u32 xgxs_config_lane1; + u32 xgxs_config_lane2; + u32 xgxs_config_lane3; + /* for external PHY, or forced mode or during AN */ +#define PORT_HW_CFG_XGXS_TX_DRV_PRE_EMPHASIS_MASK 0xffff0000 +#define PORT_HW_CFG_XGXS_TX_DRV_PRE_EMPHASIS_SHIFT 16 + +#define PORT_HW_CFG_XGXS_RX_DRV_EQUALIZER_MASK 0x0000ffff +#define PORT_HW_CFG_XGXS_RX_DRV_EQUALIZER_SHIFT 0 + + u16 xgxs_tx_driver_pre_emphasis_lane0[16]; + u16 xgxs_tx_driver_pre_emphasis_lane1[16]; + u16 xgxs_tx_driver_pre_emphasis_lane2[16]; + u16 xgxs_tx_driver_pre_emphasis_lane3[16]; + + u16 xgxs_rx_driver_equalizer_lane0[16]; + u16 xgxs_rx_driver_equalizer_lane1[16]; + u16 xgxs_rx_driver_equalizer_lane2[16]; + u16 xgxs_rx_driver_equalizer_lane3[16]; + + u32 lane_config; +#define PORT_HW_CFG_LANE_SWAP_CFG_MASK 0x0000ffff +#define PORT_HW_CFG_LANE_SWAP_CFG_SHIFT 0 +#define PORT_HW_CFG_LANE_SWAP_CFG_TX_MASK 0x000000ff +#define PORT_HW_CFG_LANE_SWAP_CFG_TX_SHIFT 0 +#define PORT_HW_CFG_LANE_SWAP_CFG_RX_MASK 0x0000ff00 +#define PORT_HW_CFG_LANE_SWAP_CFG_RX_SHIFT 8 +#define PORT_HW_CFG_LANE_SWAP_CFG_MASTER_MASK 0x0000c000 +#define PORT_HW_CFG_LANE_SWAP_CFG_MASTER_SHIFT 14 + /* AN and forced */ +#define PORT_HW_CFG_LANE_SWAP_CFG_01230123 0x00001b1b + /* forced only */ +#define PORT_HW_CFG_LANE_SWAP_CFG_01233210 0x00001be4 + /* forced only */ +#define PORT_HW_CFG_LANE_SWAP_CFG_31203120 0x0000d8d8 + /* forced only */ +#define PORT_HW_CFG_LANE_SWAP_CFG_32103210 0x0000e4e4 + + u32 external_phy_config; +#define PORT_HW_CFG_SERDES_EXT_PHY_TYPE_MASK 0xff000000 +#define PORT_HW_CFG_SERDES_EXT_PHY_TYPE_SHIFT 24 +#define PORT_HW_CFG_SERDES_EXT_PHY_TYPE_DIRECT 0x00000000 +#define PORT_HW_CFG_SERDES_EXT_PHY_TYPE_BCM5482 0x01000000 +#define PORT_HW_CFG_SERDES_EXT_PHY_TYPE_NOT_CONN 0xff000000 + +#define PORT_HW_CFG_SERDES_EXT_PHY_ADDR_MASK 0x00ff0000 +#define PORT_HW_CFG_SERDES_EXT_PHY_ADDR_SHIFT 16 + +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_MASK 0x0000ff00 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_SHIFT 8 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_DIRECT 0x00000000 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8071 0x00000100 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8072 0x00000200 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8073 0x00000300 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8705 0x00000400 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8706 0x00000500 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8276 0x00000600 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_BCM8481 0x00000700 +#define PORT_HW_CFG_XGXS_EXT_PHY_TYPE_NOT_CONN 0x0000ff00 + +#define PORT_HW_CFG_XGXS_EXT_PHY_ADDR_MASK 0x000000ff +#define PORT_HW_CFG_XGXS_EXT_PHY_ADDR_SHIFT 0 + + u32 speed_capability_mask; +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_MASK 0xffff0000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_SHIFT 16 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_10M_FULL 0x00010000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_10M_HALF 0x00020000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_100M_HALF 0x00040000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_100M_FULL 0x00080000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_1G 0x00100000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_2_5G 0x00200000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_10G 0x00400000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_12G 0x00800000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_12_5G 0x01000000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_13G 0x02000000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_15G 0x04000000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_16G 0x08000000 +#define PORT_HW_CFG_SPEED_CAPABILITY_D0_RESERVED 0xf0000000 + +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_MASK 0x0000ffff +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_SHIFT 0 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_10M_FULL 0x00000001 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_10M_HALF 0x00000002 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_100M_HALF 0x00000004 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_100M_FULL 0x00000008 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_1G 0x00000010 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_2_5G 0x00000020 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_10G 0x00000040 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_12G 0x00000080 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_12_5G 0x00000100 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_13G 0x00000200 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_15G 0x00000400 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_16G 0x00000800 +#define PORT_HW_CFG_SPEED_CAPABILITY_D3_RESERVED 0x0000f000 + + u32 reserved[2]; + +}; + +/**************************************************************************** + * Shared Feature configuration * + ****************************************************************************/ +struct shared_feat_cfg { /* NVRAM Offset */ + u32 bmc_common; /* 0x450 */ +#define SHARED_FEATURE_BMC_ECHO_MODE_EN 0x00000001 + +}; + + +/**************************************************************************** + * Port Feature configuration * + ****************************************************************************/ +struct port_feat_cfg { /* function 0: 0x454-0x4c7, function 1: 0x4c8-0x53b */ + u32 config; +#define PORT_FEATURE_BAR1_SIZE_MASK 0x0000000f +#define PORT_FEATURE_BAR1_SIZE_SHIFT 0 +#define PORT_FEATURE_BAR1_SIZE_DISABLED 0x00000000 +#define PORT_FEATURE_BAR1_SIZE_64K 0x00000001 +#define PORT_FEATURE_BAR1_SIZE_128K 0x00000002 +#define PORT_FEATURE_BAR1_SIZE_256K 0x00000003 +#define PORT_FEATURE_BAR1_SIZE_512K 0x00000004 +#define PORT_FEATURE_BAR1_SIZE_1M 0x00000005 +#define PORT_FEATURE_BAR1_SIZE_2M 0x00000006 +#define PORT_FEATURE_BAR1_SIZE_4M 0x00000007 +#define PORT_FEATURE_BAR1_SIZE_8M 0x00000008 +#define PORT_FEATURE_BAR1_SIZE_16M 0x00000009 +#define PORT_FEATURE_BAR1_SIZE_32M 0x0000000a +#define PORT_FEATURE_BAR1_SIZE_64M 0x0000000b +#define PORT_FEATURE_BAR1_SIZE_128M 0x0000000c +#define PORT_FEATURE_BAR1_SIZE_256M 0x0000000d +#define PORT_FEATURE_BAR1_SIZE_512M 0x0000000e +#define PORT_FEATURE_BAR1_SIZE_1G 0x0000000f +#define PORT_FEATURE_BAR2_SIZE_MASK 0x000000f0 +#define PORT_FEATURE_BAR2_SIZE_SHIFT 4 +#define PORT_FEATURE_BAR2_SIZE_DISABLED 0x00000000 +#define PORT_FEATURE_BAR2_SIZE_64K 0x00000010 +#define PORT_FEATURE_BAR2_SIZE_128K 0x00000020 +#define PORT_FEATURE_BAR2_SIZE_256K 0x00000030 +#define PORT_FEATURE_BAR2_SIZE_512K 0x00000040 +#define PORT_FEATURE_BAR2_SIZE_1M 0x00000050 +#define PORT_FEATURE_BAR2_SIZE_2M 0x00000060 +#define PORT_FEATURE_BAR2_SIZE_4M 0x00000070 +#define PORT_FEATURE_BAR2_SIZE_8M 0x00000080 +#define PORT_FEATURE_BAR2_SIZE_16M 0x00000090 +#define PORT_FEATURE_BAR2_SIZE_32M 0x000000a0 +#define PORT_FEATURE_BAR2_SIZE_64M 0x000000b0 +#define PORT_FEATURE_BAR2_SIZE_128M 0x000000c0 +#define PORT_FEATURE_BAR2_SIZE_256M 0x000000d0 +#define PORT_FEATURE_BAR2_SIZE_512M 0x000000e0 +#define PORT_FEATURE_BAR2_SIZE_1G 0x000000f0 +#define PORT_FEATURE_EN_SIZE_MASK 0x07000000 +#define PORT_FEATURE_EN_SIZE_SHIFT 24 +#define PORT_FEATURE_WOL_ENABLED 0x01000000 +#define PORT_FEATURE_MBA_ENABLED 0x02000000 +#define PORT_FEATURE_MFW_ENABLED 0x04000000 + + u32 wol_config; + /* Default is used when driver sets to "auto" mode */ +#define PORT_FEATURE_WOL_DEFAULT_MASK 0x00000003 +#define PORT_FEATURE_WOL_DEFAULT_SHIFT 0 +#define PORT_FEATURE_WOL_DEFAULT_DISABLE 0x00000000 +#define PORT_FEATURE_WOL_DEFAULT_MAGIC 0x00000001 +#define PORT_FEATURE_WOL_DEFAULT_ACPI 0x00000002 +#define PORT_FEATURE_WOL_DEFAULT_MAGIC_AND_ACPI 0x00000003 +#define PORT_FEATURE_WOL_RES_PAUSE_CAP 0x00000004 +#define PORT_FEATURE_WOL_RES_ASYM_PAUSE_CAP 0x00000008 +#define PORT_FEATURE_WOL_ACPI_UPON_MGMT 0x00000010 + + u32 mba_config; +#define PORT_FEATURE_MBA_BOOT_AGENT_TYPE_MASK 0x00000003 +#define PORT_FEATURE_MBA_BOOT_AGENT_TYPE_SHIFT 0 +#define PORT_FEATURE_MBA_BOOT_AGENT_TYPE_PXE 0x00000000 +#define PORT_FEATURE_MBA_BOOT_AGENT_TYPE_RPL 0x00000001 +#define PORT_FEATURE_MBA_BOOT_AGENT_TYPE_BOOTP 0x00000002 +#define PORT_FEATURE_MBA_BOOT_AGENT_TYPE_ISCSIB 0x00000003 +#define PORT_FEATURE_MBA_RES_PAUSE_CAP 0x00000100 +#define PORT_FEATURE_MBA_RES_ASYM_PAUSE_CAP 0x00000200 +#define PORT_FEATURE_MBA_SETUP_PROMPT_ENABLE 0x00000400 +#define PORT_FEATURE_MBA_HOTKEY_CTRL_S 0x00000000 +#define PORT_FEATURE_MBA_HOTKEY_CTRL_B 0x00000800 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_MASK 0x000ff000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_SHIFT 12 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_DISABLED 0x00000000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_2K 0x00001000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_4K 0x00002000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_8K 0x00003000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_16K 0x00004000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_32K 0x00005000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_64K 0x00006000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_128K 0x00007000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_256K 0x00008000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_512K 0x00009000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_1M 0x0000a000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_2M 0x0000b000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_4M 0x0000c000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_8M 0x0000d000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_16M 0x0000e000 +#define PORT_FEATURE_MBA_EXP_ROM_SIZE_32M 0x0000f000 +#define PORT_FEATURE_MBA_MSG_TIMEOUT_MASK 0x00f00000 +#define PORT_FEATURE_MBA_MSG_TIMEOUT_SHIFT 20 +#define PORT_FEATURE_MBA_BIOS_BOOTSTRAP_MASK 0x03000000 +#define PORT_FEATURE_MBA_BIOS_BOOTSTRAP_SHIFT 24 +#define PORT_FEATURE_MBA_BIOS_BOOTSTRAP_AUTO 0x00000000 +#define PORT_FEATURE_MBA_BIOS_BOOTSTRAP_BBS 0x01000000 +#define PORT_FEATURE_MBA_BIOS_BOOTSTRAP_INT18H 0x02000000 +#define PORT_FEATURE_MBA_BIOS_BOOTSTRAP_INT19H 0x03000000 +#define PORT_FEATURE_MBA_LINK_SPEED_MASK 0x3c000000 +#define PORT_FEATURE_MBA_LINK_SPEED_SHIFT 26 +#define PORT_FEATURE_MBA_LINK_SPEED_AUTO 0x00000000 +#define PORT_FEATURE_MBA_LINK_SPEED_10HD 0x04000000 +#define PORT_FEATURE_MBA_LINK_SPEED_10FD 0x08000000 +#define PORT_FEATURE_MBA_LINK_SPEED_100HD 0x0c000000 +#define PORT_FEATURE_MBA_LINK_SPEED_100FD 0x10000000 +#define PORT_FEATURE_MBA_LINK_SPEED_1GBPS 0x14000000 +#define PORT_FEATURE_MBA_LINK_SPEED_2_5GBPS 0x18000000 +#define PORT_FEATURE_MBA_LINK_SPEED_10GBPS_CX4 0x1c000000 +#define PORT_FEATURE_MBA_LINK_SPEED_10GBPS_KX4 0x20000000 +#define PORT_FEATURE_MBA_LINK_SPEED_10GBPS_KR 0x24000000 +#define PORT_FEATURE_MBA_LINK_SPEED_12GBPS 0x28000000 +#define PORT_FEATURE_MBA_LINK_SPEED_12_5GBPS 0x2c000000 +#define PORT_FEATURE_MBA_LINK_SPEED_13GBPS 0x30000000 +#define PORT_FEATURE_MBA_LINK_SPEED_15GBPS 0x34000000 +#define PORT_FEATURE_MBA_LINK_SPEED_16GBPS 0x38000000 + + u32 bmc_config; +#define PORT_FEATURE_BMC_LINK_OVERRIDE_DEFAULT 0x00000000 +#define PORT_FEATURE_BMC_LINK_OVERRIDE_EN 0x00000001 + + u32 mba_vlan_cfg; +#define PORT_FEATURE_MBA_VLAN_TAG_MASK 0x0000ffff +#define PORT_FEATURE_MBA_VLAN_TAG_SHIFT 0 +#define PORT_FEATURE_MBA_VLAN_EN 0x00010000 + + u32 resource_cfg; +#define PORT_FEATURE_RESOURCE_CFG_VALID 0x00000001 +#define PORT_FEATURE_RESOURCE_CFG_DIAG 0x00000002 +#define PORT_FEATURE_RESOURCE_CFG_L2 0x00000004 +#define PORT_FEATURE_RESOURCE_CFG_ISCSI 0x00000008 +#define PORT_FEATURE_RESOURCE_CFG_RDMA 0x00000010 + + u32 smbus_config; + /* Obsolete */ +#define PORT_FEATURE_SMBUS_EN 0x00000001 +#define PORT_FEATURE_SMBUS_ADDR_MASK 0x000000fe +#define PORT_FEATURE_SMBUS_ADDR_SHIFT 1 + + u32 iscsib_boot_cfg; +#define PORT_FEATURE_ISCSIB_SKIP_TARGET_BOOT 0x00000001 + + u32 link_config; /* Used as HW defaults for the driver */ +#define PORT_FEATURE_CONNECTED_SWITCH_MASK 0x03000000 +#define PORT_FEATURE_CONNECTED_SWITCH_SHIFT 24 + /* (forced) low speed switch (< 10G) */ +#define PORT_FEATURE_CON_SWITCH_1G_SWITCH 0x00000000 + /* (forced) high speed switch (>= 10G) */ +#define PORT_FEATURE_CON_SWITCH_10G_SWITCH 0x01000000 +#define PORT_FEATURE_CON_SWITCH_AUTO_DETECT 0x02000000 +#define PORT_FEATURE_CON_SWITCH_ONE_TIME_DETECT 0x03000000 + +#define PORT_FEATURE_LINK_SPEED_MASK 0x000f0000 +#define PORT_FEATURE_LINK_SPEED_SHIFT 16 +#define PORT_FEATURE_LINK_SPEED_AUTO 0x00000000 +#define PORT_FEATURE_LINK_SPEED_10M_FULL 0x00010000 +#define PORT_FEATURE_LINK_SPEED_10M_HALF 0x00020000 +#define PORT_FEATURE_LINK_SPEED_100M_HALF 0x00030000 +#define PORT_FEATURE_LINK_SPEED_100M_FULL 0x00040000 +#define PORT_FEATURE_LINK_SPEED_1G 0x00050000 +#define PORT_FEATURE_LINK_SPEED_2_5G 0x00060000 +#define PORT_FEATURE_LINK_SPEED_10G_CX4 0x00070000 +#define PORT_FEATURE_LINK_SPEED_10G_KX4 0x00080000 +#define PORT_FEATURE_LINK_SPEED_10G_KR 0x00090000 +#define PORT_FEATURE_LINK_SPEED_12G 0x000a0000 +#define PORT_FEATURE_LINK_SPEED_12_5G 0x000b0000 +#define PORT_FEATURE_LINK_SPEED_13G 0x000c0000 +#define PORT_FEATURE_LINK_SPEED_15G 0x000d0000 +#define PORT_FEATURE_LINK_SPEED_16G 0x000e0000 + +#define PORT_FEATURE_FLOW_CONTROL_MASK 0x00000700 +#define PORT_FEATURE_FLOW_CONTROL_SHIFT 8 +#define PORT_FEATURE_FLOW_CONTROL_AUTO 0x00000000 +#define PORT_FEATURE_FLOW_CONTROL_TX 0x00000100 +#define PORT_FEATURE_FLOW_CONTROL_RX 0x00000200 +#define PORT_FEATURE_FLOW_CONTROL_BOTH 0x00000300 +#define PORT_FEATURE_FLOW_CONTROL_NONE 0x00000400 + + /* The default for MCP link configuration, + uses the same defines as link_config */ + u32 mfw_wol_link_cfg; + + u32 reserved[19]; + +}; + + +/**************************************************************************** + * Device Information * + ****************************************************************************/ +struct dev_info { /* size */ + + u32 bc_rev; /* 8 bits each: major, minor, build */ /* 4 */ + + struct shared_hw_cfg shared_hw_config; /* 40 */ + + struct port_hw_cfg port_hw_config[FUNC_MAX]; /* 400*2=800 */ + + struct shared_feat_cfg shared_feature_config; /* 4 */ + + struct port_feat_cfg port_feature_config[FUNC_MAX];/* 116*2=232 */ + +}; + + +/**************************************************************************** + * Management firmware state * + ****************************************************************************/ +/* Allocate 320 bytes for management firmware: still not known exactly + * how much IMD needs. */ +#define MGMTFW_STATE_WORD_SIZE 80 + +struct mgmtfw_state { + u32 opaque[MGMTFW_STATE_WORD_SIZE]; +}; + + +/**************************************************************************** + * Shared Memory Region * + ****************************************************************************/ +struct shmem_region { /* SharedMem Offset (size) */ + u32 validity_map[FUNC_MAX]; /* 0x0 (4 * 2 = 0x8) */ +#define SHR_MEM_VALIDITY_PCI_CFG 0x00000001 +#define SHR_MEM_VALIDITY_MB 0x00000002 +#define SHR_MEM_VALIDITY_DEV_INFO 0x00000004 + /* One licensing bit should be set */ +#define SHR_MEM_VALIDITY_LIC_KEY_IN_EFFECT_MASK 0x00000038 +#define SHR_MEM_VALIDITY_LIC_MANUF_KEY_IN_EFFECT 0x00000008 +#define SHR_MEM_VALIDITY_LIC_UPGRADE_KEY_IN_EFFECT 0x00000010 +#define SHR_MEM_VALIDITY_LIC_NO_KEY_IN_EFFECT 0x00000020 + + struct drv_fw_mb drv_fw_mb[FUNC_MAX]; /* 0x8 (28 * 2 = 0x38) */ + + struct dev_info dev_info; /* 0x40 (0x438) */ + +#ifdef _LICENSE_H + license_key_t drv_lic_key[FUNC_MAX]; /* 0x478 (52 * 2 = 0x68) */ +#else /* Linux! */ + u8 reserved[52*FUNC_MAX]; +#endif + + /* FW information (for internal FW use) */ + u32 fw_info_fio_offset; /* 0x4e0 (0x4) */ + struct mgmtfw_state mgmtfw_state; /* 0x4e4 (0x140) */ + +}; /* 0x624 */ + + +#define BCM_5710_FW_MAJOR_VERSION 4 +#define BCM_5710_FW_MINOR_VERSION 0 +#define BCM_5710_FW_REVISION_VERSION 14 +#define BCM_5710_FW_COMPILE_FLAGS 1 + + +/* + * attention bits + */ +struct atten_def_status_block { + u32 attn_bits; + u32 attn_bits_ack; +#if defined(__BIG_ENDIAN) + u16 attn_bits_index; + u8 reserved0; + u8 status_block_id; +#elif defined(__LITTLE_ENDIAN) + u8 status_block_id; + u8 reserved0; + u16 attn_bits_index; +#endif + u32 reserved1; +}; + + +/* + * common data for all protocols + */ +struct doorbell_hdr { + u8 header; +#define DOORBELL_HDR_RX (0x1<<0) +#define DOORBELL_HDR_RX_SHIFT 0 +#define DOORBELL_HDR_DB_TYPE (0x1<<1) +#define DOORBELL_HDR_DB_TYPE_SHIFT 1 +#define DOORBELL_HDR_DPM_SIZE (0x3<<2) +#define DOORBELL_HDR_DPM_SIZE_SHIFT 2 +#define DOORBELL_HDR_CONN_TYPE (0xF<<4) +#define DOORBELL_HDR_CONN_TYPE_SHIFT 4 +}; + +/* + * doorbell message send to the chip + */ +struct doorbell { +#if defined(__BIG_ENDIAN) + u16 zero_fill2; + u8 zero_fill1; + struct doorbell_hdr header; +#elif defined(__LITTLE_ENDIAN) + struct doorbell_hdr header; + u8 zero_fill1; + u16 zero_fill2; +#endif +}; + + +/* + * IGU driver acknowlegement register + */ +struct igu_ack_register { +#if defined(__BIG_ENDIAN) + u16 sb_id_and_flags; +#define IGU_ACK_REGISTER_STATUS_BLOCK_ID (0x1F<<0) +#define IGU_ACK_REGISTER_STATUS_BLOCK_ID_SHIFT 0 +#define IGU_ACK_REGISTER_STORM_ID (0x7<<5) +#define IGU_ACK_REGISTER_STORM_ID_SHIFT 5 +#define IGU_ACK_REGISTER_UPDATE_INDEX (0x1<<8) +#define IGU_ACK_REGISTER_UPDATE_INDEX_SHIFT 8 +#define IGU_ACK_REGISTER_INTERRUPT_MODE (0x3<<9) +#define IGU_ACK_REGISTER_INTERRUPT_MODE_SHIFT 9 +#define IGU_ACK_REGISTER_RESERVED (0x1F<<11) +#define IGU_ACK_REGISTER_RESERVED_SHIFT 11 + u16 status_block_index; +#elif defined(__LITTLE_ENDIAN) + u16 status_block_index; + u16 sb_id_and_flags; +#define IGU_ACK_REGISTER_STATUS_BLOCK_ID (0x1F<<0) +#define IGU_ACK_REGISTER_STATUS_BLOCK_ID_SHIFT 0 +#define IGU_ACK_REGISTER_STORM_ID (0x7<<5) +#define IGU_ACK_REGISTER_STORM_ID_SHIFT 5 +#define IGU_ACK_REGISTER_UPDATE_INDEX (0x1<<8) +#define IGU_ACK_REGISTER_UPDATE_INDEX_SHIFT 8 +#define IGU_ACK_REGISTER_INTERRUPT_MODE (0x3<<9) +#define IGU_ACK_REGISTER_INTERRUPT_MODE_SHIFT 9 +#define IGU_ACK_REGISTER_RESERVED (0x1F<<11) +#define IGU_ACK_REGISTER_RESERVED_SHIFT 11 +#endif +}; + + +/* + * Parser parsing flags field + */ +struct parsing_flags { + u16 flags; +#define PARSING_FLAGS_ETHERNET_ADDRESS_TYPE (0x1<<0) +#define PARSING_FLAGS_ETHERNET_ADDRESS_TYPE_SHIFT 0 +#define PARSING_FLAGS_NUMBER_OF_NESTED_VLANS (0x3<<1) +#define PARSING_FLAGS_NUMBER_OF_NESTED_VLANS_SHIFT 1 +#define PARSING_FLAGS_OVER_ETHERNET_PROTOCOL (0x3<<3) +#define PARSING_FLAGS_OVER_ETHERNET_PROTOCOL_SHIFT 3 +#define PARSING_FLAGS_IP_OPTIONS (0x1<<5) +#define PARSING_FLAGS_IP_OPTIONS_SHIFT 5 +#define PARSING_FLAGS_FRAGMENTATION_STATUS (0x1<<6) +#define PARSING_FLAGS_FRAGMENTATION_STATUS_SHIFT 6 +#define PARSING_FLAGS_OVER_IP_PROTOCOL (0x3<<7) +#define PARSING_FLAGS_OVER_IP_PROTOCOL_SHIFT 7 +#define PARSING_FLAGS_PURE_ACK_INDICATION (0x1<<9) +#define PARSING_FLAGS_PURE_ACK_INDICATION_SHIFT 9 +#define PARSING_FLAGS_TCP_OPTIONS_EXIST (0x1<<10) +#define PARSING_FLAGS_TCP_OPTIONS_EXIST_SHIFT 10 +#define PARSING_FLAGS_TIME_STAMP_EXIST_FLAG (0x1<<11) +#define PARSING_FLAGS_TIME_STAMP_EXIST_FLAG_SHIFT 11 +#define PARSING_FLAGS_CONNECTION_MATCH (0x1<<12) +#define PARSING_FLAGS_CONNECTION_MATCH_SHIFT 12 +#define PARSING_FLAGS_LLC_SNAP (0x1<<13) +#define PARSING_FLAGS_LLC_SNAP_SHIFT 13 +#define PARSING_FLAGS_RESERVED0 (0x3<<14) +#define PARSING_FLAGS_RESERVED0_SHIFT 14 +}; + + +/* + * dmae command structure + */ +struct dmae_command { + u32 opcode; +#define DMAE_COMMAND_SRC (0x1<<0) +#define DMAE_COMMAND_SRC_SHIFT 0 +#define DMAE_COMMAND_DST (0x3<<1) +#define DMAE_COMMAND_DST_SHIFT 1 +#define DMAE_COMMAND_C_DST (0x1<<3) +#define DMAE_COMMAND_C_DST_SHIFT 3 +#define DMAE_COMMAND_C_TYPE_ENABLE (0x1<<4) +#define DMAE_COMMAND_C_TYPE_ENABLE_SHIFT 4 +#define DMAE_COMMAND_C_TYPE_CRC_ENABLE (0x1<<5) +#define DMAE_COMMAND_C_TYPE_CRC_ENABLE_SHIFT 5 +#define DMAE_COMMAND_C_TYPE_CRC_OFFSET (0x7<<6) +#define DMAE_COMMAND_C_TYPE_CRC_OFFSET_SHIFT 6 +#define DMAE_COMMAND_ENDIANITY (0x3<<9) +#define DMAE_COMMAND_ENDIANITY_SHIFT 9 +#define DMAE_COMMAND_PORT (0x1<<11) +#define DMAE_COMMAND_PORT_SHIFT 11 +#define DMAE_COMMAND_CRC_RESET (0x1<<12) +#define DMAE_COMMAND_CRC_RESET_SHIFT 12 +#define DMAE_COMMAND_SRC_RESET (0x1<<13) +#define DMAE_COMMAND_SRC_RESET_SHIFT 13 +#define DMAE_COMMAND_DST_RESET (0x1<<14) +#define DMAE_COMMAND_DST_RESET_SHIFT 14 +#define DMAE_COMMAND_RESERVED0 (0x1FFFF<<15) +#define DMAE_COMMAND_RESERVED0_SHIFT 15 + u32 src_addr_lo; + u32 src_addr_hi; + u32 dst_addr_lo; + u32 dst_addr_hi; +#if defined(__BIG_ENDIAN) + u16 reserved1; + u16 len; +#elif defined(__LITTLE_ENDIAN) + u16 len; + u16 reserved1; +#endif + u32 comp_addr_lo; + u32 comp_addr_hi; + u32 comp_val; + u32 crc32; + u32 crc32_c; +#if defined(__BIG_ENDIAN) + u16 crc16_c; + u16 crc16; +#elif defined(__LITTLE_ENDIAN) + u16 crc16; + u16 crc16_c; +#endif +#if defined(__BIG_ENDIAN) + u16 reserved2; + u16 crc_t10; +#elif defined(__LITTLE_ENDIAN) + u16 crc_t10; + u16 reserved2; +#endif +#if defined(__BIG_ENDIAN) + u16 xsum8; + u16 xsum16; +#elif defined(__LITTLE_ENDIAN) + u16 xsum16; + u16 xsum8; +#endif +}; + + +struct double_regpair { + u32 regpair0_lo; + u32 regpair0_hi; + u32 regpair1_lo; + u32 regpair1_hi; +}; + + +/* + * The eth Rx Buffer Descriptor + */ +struct eth_rx_bd { + u32 addr_lo; + u32 addr_hi; +}; + +/* + * The eth storm context of Ustorm + */ +struct ustorm_eth_st_context { +#if defined(__BIG_ENDIAN) + u8 sb_index_number; + u8 status_block_id; + u8 __local_rx_bd_cons; + u8 __local_rx_bd_prod; +#elif defined(__LITTLE_ENDIAN) + u8 __local_rx_bd_prod; + u8 __local_rx_bd_cons; + u8 status_block_id; + u8 sb_index_number; +#endif +#if defined(__BIG_ENDIAN) + u16 rcq_cons; + u16 rx_bd_cons; +#elif defined(__LITTLE_ENDIAN) + u16 rx_bd_cons; + u16 rcq_cons; +#endif + u32 rx_bd_page_base_lo; + u32 rx_bd_page_base_hi; + u32 rcq_base_address_lo; + u32 rcq_base_address_hi; +#if defined(__BIG_ENDIAN) + u16 __num_of_returned_cqes; + u8 num_rss; + u8 flags; +#define USTORM_ETH_ST_CONTEXT_ENABLE_MC_ALIGNMENT (0x1<<0) +#define USTORM_ETH_ST_CONTEXT_ENABLE_MC_ALIGNMENT_SHIFT 0 +#define USTORM_ETH_ST_CONTEXT_ENABLE_DYNAMIC_HC (0x1<<1) +#define USTORM_ETH_ST_CONTEXT_ENABLE_DYNAMIC_HC_SHIFT 1 +#define USTORM_ETH_ST_CONTEXT_ENABLE_TPA (0x1<<2) +#define USTORM_ETH_ST_CONTEXT_ENABLE_TPA_SHIFT 2 +#define __USTORM_ETH_ST_CONTEXT_RESERVED0 (0x1F<<3) +#define __USTORM_ETH_ST_CONTEXT_RESERVED0_SHIFT 3 +#elif defined(__LITTLE_ENDIAN) + u8 flags; +#define USTORM_ETH_ST_CONTEXT_ENABLE_MC_ALIGNMENT (0x1<<0) +#define USTORM_ETH_ST_CONTEXT_ENABLE_MC_ALIGNMENT_SHIFT 0 +#define USTORM_ETH_ST_CONTEXT_ENABLE_DYNAMIC_HC (0x1<<1) +#define USTORM_ETH_ST_CONTEXT_ENABLE_DYNAMIC_HC_SHIFT 1 +#define USTORM_ETH_ST_CONTEXT_ENABLE_TPA (0x1<<2) +#define USTORM_ETH_ST_CONTEXT_ENABLE_TPA_SHIFT 2 +#define __USTORM_ETH_ST_CONTEXT_RESERVED0 (0x1F<<3) +#define __USTORM_ETH_ST_CONTEXT_RESERVED0_SHIFT 3 + u8 num_rss; + u16 __num_of_returned_cqes; +#endif +#if defined(__BIG_ENDIAN) + u16 mc_alignment_size; + u16 agg_threshold; +#elif defined(__LITTLE_ENDIAN) + u16 agg_threshold; + u16 mc_alignment_size; +#endif + struct eth_rx_bd __local_bd_ring[16]; +}; + +/* + * The eth storm context of Tstorm + */ +struct tstorm_eth_st_context { + u32 __reserved0[28]; +}; + +/* + * The eth aggregative context section of Xstorm + */ +struct xstorm_eth_extra_ag_context_section { +#if defined(__BIG_ENDIAN) + u8 __tcp_agg_vars1; + u8 __reserved50; + u16 __mss; +#elif defined(__LITTLE_ENDIAN) + u16 __mss; + u8 __reserved50; + u8 __tcp_agg_vars1; +#endif + u32 __snd_nxt; + u32 __tx_wnd; + u32 __snd_una; + u32 __reserved53; +#if defined(__BIG_ENDIAN) + u8 __agg_val8_th; + u8 __agg_val8; + u16 __tcp_agg_vars2; +#elif defined(__LITTLE_ENDIAN) + u16 __tcp_agg_vars2; + u8 __agg_val8; + u8 __agg_val8_th; +#endif + u32 __reserved58; + u32 __reserved59; + u32 __reserved60; + u32 __reserved61; +#if defined(__BIG_ENDIAN) + u16 __agg_val7_th; + u16 __agg_val7; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val7; + u16 __agg_val7_th; +#endif +#if defined(__BIG_ENDIAN) + u8 __tcp_agg_vars5; + u8 __tcp_agg_vars4; + u8 __tcp_agg_vars3; + u8 __reserved62; +#elif defined(__LITTLE_ENDIAN) + u8 __reserved62; + u8 __tcp_agg_vars3; + u8 __tcp_agg_vars4; + u8 __tcp_agg_vars5; +#endif + u32 __tcp_agg_vars6; +#if defined(__BIG_ENDIAN) + u16 __agg_misc6; + u16 __tcp_agg_vars7; +#elif defined(__LITTLE_ENDIAN) + u16 __tcp_agg_vars7; + u16 __agg_misc6; +#endif + u32 __agg_val10; + u32 __agg_val10_th; +#if defined(__BIG_ENDIAN) + u16 __reserved3; + u8 __reserved2; + u8 __agg_misc7; +#elif defined(__LITTLE_ENDIAN) + u8 __agg_misc7; + u8 __reserved2; + u16 __reserved3; +#endif +}; + +/* + * The eth aggregative context of Xstorm + */ +struct xstorm_eth_ag_context { +#if defined(__BIG_ENDIAN) + u16 __bd_prod; + u8 __agg_vars1; + u8 __state; +#elif defined(__LITTLE_ENDIAN) + u8 __state; + u8 __agg_vars1; + u16 __bd_prod; +#endif +#if defined(__BIG_ENDIAN) + u8 cdu_reserved; + u8 __agg_vars4; + u8 __agg_vars3; + u8 __agg_vars2; +#elif defined(__LITTLE_ENDIAN) + u8 __agg_vars2; + u8 __agg_vars3; + u8 __agg_vars4; + u8 cdu_reserved; +#endif + u32 __more_packets_to_send; +#if defined(__BIG_ENDIAN) + u16 __agg_vars5; + u16 __agg_val4_th; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val4_th; + u16 __agg_vars5; +#endif + struct xstorm_eth_extra_ag_context_section __extra_section; +#if defined(__BIG_ENDIAN) + u16 __agg_vars7; + u8 __agg_val3_th; + u8 __agg_vars6; +#elif defined(__LITTLE_ENDIAN) + u8 __agg_vars6; + u8 __agg_val3_th; + u16 __agg_vars7; +#endif +#if defined(__BIG_ENDIAN) + u16 __agg_val11_th; + u16 __agg_val11; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val11; + u16 __agg_val11_th; +#endif +#if defined(__BIG_ENDIAN) + u8 __reserved1; + u8 __agg_val6_th; + u16 __agg_val9; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val9; + u8 __agg_val6_th; + u8 __reserved1; +#endif +#if defined(__BIG_ENDIAN) + u16 __agg_val2_th; + u16 __agg_val2; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val2; + u16 __agg_val2_th; +#endif + u32 __agg_vars8; +#if defined(__BIG_ENDIAN) + u16 __agg_misc0; + u16 __agg_val4; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val4; + u16 __agg_misc0; +#endif +#if defined(__BIG_ENDIAN) + u8 __agg_val3; + u8 __agg_val6; + u8 __agg_val5_th; + u8 __agg_val5; +#elif defined(__LITTLE_ENDIAN) + u8 __agg_val5; + u8 __agg_val5_th; + u8 __agg_val6; + u8 __agg_val3; +#endif +#if defined(__BIG_ENDIAN) + u16 __agg_misc1; + u16 __bd_ind_max_val; +#elif defined(__LITTLE_ENDIAN) + u16 __bd_ind_max_val; + u16 __agg_misc1; +#endif + u32 __reserved57; + u32 __agg_misc4; + u32 __agg_misc5; +}; + +/* + * The eth aggregative context section of Tstorm + */ +struct tstorm_eth_extra_ag_context_section { + u32 __agg_val1; +#if defined(__BIG_ENDIAN) + u8 __tcp_agg_vars2; + u8 __agg_val3; + u16 __agg_val2; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val2; + u8 __agg_val3; + u8 __tcp_agg_vars2; +#endif +#if defined(__BIG_ENDIAN) + u16 __agg_val5; + u8 __agg_val6; + u8 __tcp_agg_vars3; +#elif defined(__LITTLE_ENDIAN) + u8 __tcp_agg_vars3; + u8 __agg_val6; + u16 __agg_val5; +#endif + u32 __reserved63; + u32 __reserved64; + u32 __reserved65; + u32 __reserved66; + u32 __reserved67; + u32 __tcp_agg_vars1; + u32 __reserved61; + u32 __reserved62; + u32 __reserved2; +}; + +/* + * The eth aggregative context of Tstorm + */ +struct tstorm_eth_ag_context { +#if defined(__BIG_ENDIAN) + u16 __reserved54; + u8 __agg_vars1; + u8 __state; +#elif defined(__LITTLE_ENDIAN) + u8 __state; + u8 __agg_vars1; + u16 __reserved54; +#endif +#if defined(__BIG_ENDIAN) + u16 __agg_val4; + u16 __agg_vars2; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_vars2; + u16 __agg_val4; +#endif + struct tstorm_eth_extra_ag_context_section __extra_section; +}; + +/* + * The eth aggregative context of Cstorm + */ +struct cstorm_eth_ag_context { + u32 __agg_vars1; +#if defined(__BIG_ENDIAN) + u8 __aux1_th; + u8 __aux1_val; + u16 __agg_vars2; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_vars2; + u8 __aux1_val; + u8 __aux1_th; +#endif + u32 __num_of_treated_packet; + u32 __last_packet_treated; +#if defined(__BIG_ENDIAN) + u16 __reserved58; + u16 __reserved57; +#elif defined(__LITTLE_ENDIAN) + u16 __reserved57; + u16 __reserved58; +#endif +#if defined(__BIG_ENDIAN) + u8 __reserved62; + u8 __reserved61; + u8 __reserved60; + u8 __reserved59; +#elif defined(__LITTLE_ENDIAN) + u8 __reserved59; + u8 __reserved60; + u8 __reserved61; + u8 __reserved62; +#endif +#if defined(__BIG_ENDIAN) + u16 __reserved64; + u16 __reserved63; +#elif defined(__LITTLE_ENDIAN) + u16 __reserved63; + u16 __reserved64; +#endif + u32 __reserved65; +#if defined(__BIG_ENDIAN) + u16 __agg_vars3; + u16 __rq_inv_cnt; +#elif defined(__LITTLE_ENDIAN) + u16 __rq_inv_cnt; + u16 __agg_vars3; +#endif +#if defined(__BIG_ENDIAN) + u16 __packet_index_th; + u16 __packet_index; +#elif defined(__LITTLE_ENDIAN) + u16 __packet_index; + u16 __packet_index_th; +#endif +}; + +/* + * The eth aggregative context of Ustorm + */ +struct ustorm_eth_ag_context { +#if defined(__BIG_ENDIAN) + u8 __aux_counter_flags; + u8 __agg_vars2; + u8 __agg_vars1; + u8 __state; +#elif defined(__LITTLE_ENDIAN) + u8 __state; + u8 __agg_vars1; + u8 __agg_vars2; + u8 __aux_counter_flags; +#endif +#if defined(__BIG_ENDIAN) + u8 cdu_usage; + u8 __agg_misc2; + u16 __agg_misc1; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_misc1; + u8 __agg_misc2; + u8 cdu_usage; +#endif + u32 __agg_misc4; +#if defined(__BIG_ENDIAN) + u8 __agg_val3_th; + u8 __agg_val3; + u16 __agg_misc3; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_misc3; + u8 __agg_val3; + u8 __agg_val3_th; +#endif + u32 __agg_val1; + u32 __agg_misc4_th; +#if defined(__BIG_ENDIAN) + u16 __agg_val2_th; + u16 __agg_val2; +#elif defined(__LITTLE_ENDIAN) + u16 __agg_val2; + u16 __agg_val2_th; +#endif +#if defined(__BIG_ENDIAN) + u16 __reserved2; + u8 __decision_rules; + u8 __decision_rule_enable_bits; +#elif defined(__LITTLE_ENDIAN) + u8 __decision_rule_enable_bits; + u8 __decision_rules; + u16 __reserved2; +#endif +}; + +/* + * Timers connection context + */ +struct timers_block_context { + u32 __reserved_0; + u32 __reserved_1; + u32 __reserved_2; + u32 __reserved_flags; +}; + +/* + * structure for easy accessability to assembler + */ +struct eth_tx_bd_flags { + u8 as_bitfield; +#define ETH_TX_BD_FLAGS_VLAN_TAG (0x1<<0) +#define ETH_TX_BD_FLAGS_VLAN_TAG_SHIFT 0 +#define ETH_TX_BD_FLAGS_IP_CSUM (0x1<<1) +#define ETH_TX_BD_FLAGS_IP_CSUM_SHIFT 1 +#define ETH_TX_BD_FLAGS_TCP_CSUM (0x1<<2) +#define ETH_TX_BD_FLAGS_TCP_CSUM_SHIFT 2 +#define ETH_TX_BD_FLAGS_END_BD (0x1<<3) +#define ETH_TX_BD_FLAGS_END_BD_SHIFT 3 +#define ETH_TX_BD_FLAGS_START_BD (0x1<<4) +#define ETH_TX_BD_FLAGS_START_BD_SHIFT 4 +#define ETH_TX_BD_FLAGS_HDR_POOL (0x1<<5) +#define ETH_TX_BD_FLAGS_HDR_POOL_SHIFT 5 +#define ETH_TX_BD_FLAGS_SW_LSO (0x1<<6) +#define ETH_TX_BD_FLAGS_SW_LSO_SHIFT 6 +#define ETH_TX_BD_FLAGS_IPV6 (0x1<<7) +#define ETH_TX_BD_FLAGS_IPV6_SHIFT 7 +}; + +/* + * The eth Tx Buffer Descriptor + */ +struct eth_tx_bd { + u32 addr_lo; + u32 addr_hi; + u16 nbd; + u16 nbytes; + u16 vlan; + struct eth_tx_bd_flags bd_flags; + u8 general_data; +#define ETH_TX_BD_HDR_NBDS (0x3F<<0) +#define ETH_TX_BD_HDR_NBDS_SHIFT 0 +#define ETH_TX_BD_ETH_ADDR_TYPE (0x3<<6) +#define ETH_TX_BD_ETH_ADDR_TYPE_SHIFT 6 +}; + +/* + * Tx parsing BD structure for ETH,Relevant in START + */ +struct eth_tx_parse_bd { + u8 global_data; +#define ETH_TX_PARSE_BD_IP_HDR_START_OFFSET (0xF<<0) +#define ETH_TX_PARSE_BD_IP_HDR_START_OFFSET_SHIFT 0 +#define ETH_TX_PARSE_BD_CS_ANY_FLG (0x1<<4) +#define ETH_TX_PARSE_BD_CS_ANY_FLG_SHIFT 4 +#define ETH_TX_PARSE_BD_PSEUDO_CS_WITHOUT_LEN (0x1<<5) +#define ETH_TX_PARSE_BD_PSEUDO_CS_WITHOUT_LEN_SHIFT 5 +#define ETH_TX_PARSE_BD_LLC_SNAP_EN (0x1<<6) +#define ETH_TX_PARSE_BD_LLC_SNAP_EN_SHIFT 6 +#define ETH_TX_PARSE_BD_NS_FLG (0x1<<7) +#define ETH_TX_PARSE_BD_NS_FLG_SHIFT 7 + u8 tcp_flags; +#define ETH_TX_PARSE_BD_FIN_FLG (0x1<<0) +#define ETH_TX_PARSE_BD_FIN_FLG_SHIFT 0 +#define ETH_TX_PARSE_BD_SYN_FLG (0x1<<1) +#define ETH_TX_PARSE_BD_SYN_FLG_SHIFT 1 +#define ETH_TX_PARSE_BD_RST_FLG (0x1<<2) +#define ETH_TX_PARSE_BD_RST_FLG_SHIFT 2 +#define ETH_TX_PARSE_BD_PSH_FLG (0x1<<3) +#define ETH_TX_PARSE_BD_PSH_FLG_SHIFT 3 +#define ETH_TX_PARSE_BD_ACK_FLG (0x1<<4) +#define ETH_TX_PARSE_BD_ACK_FLG_SHIFT 4 +#define ETH_TX_PARSE_BD_URG_FLG (0x1<<5) +#define ETH_TX_PARSE_BD_URG_FLG_SHIFT 5 +#define ETH_TX_PARSE_BD_ECE_FLG (0x1<<6) +#define ETH_TX_PARSE_BD_ECE_FLG_SHIFT 6 +#define ETH_TX_PARSE_BD_CWR_FLG (0x1<<7) +#define ETH_TX_PARSE_BD_CWR_FLG_SHIFT 7 + u8 ip_hlen; + s8 cs_offset; + u16 total_hlen; + u16 lso_mss; + u16 tcp_pseudo_csum; + u16 ip_id; + u32 tcp_send_seq; +}; + +/* + * The last BD in the BD memory will hold a pointer to the next BD memory + */ +struct eth_tx_next_bd { + u32 addr_lo; + u32 addr_hi; + u8 reserved[8]; +}; + +/* + * union for 3 Bd types + */ +union eth_tx_bd_types { + struct eth_tx_bd reg_bd; + struct eth_tx_parse_bd parse_bd; + struct eth_tx_next_bd next_bd; +}; + +/* + * The eth storm context of Xstorm + */ +struct xstorm_eth_st_context { + u32 tx_bd_page_base_lo; + u32 tx_bd_page_base_hi; +#if defined(__BIG_ENDIAN) + u16 tx_bd_cons; + u8 __reserved0; + u8 __local_tx_bd_prod; +#elif defined(__LITTLE_ENDIAN) + u8 __local_tx_bd_prod; + u8 __reserved0; + u16 tx_bd_cons; +#endif + u32 db_data_addr_lo; + u32 db_data_addr_hi; + u32 __pkt_cons; + u32 __gso_next; + u32 is_eth_conn_1b; + union eth_tx_bd_types __bds[13]; +}; + +/* + * The eth storm context of Cstorm + */ +struct cstorm_eth_st_context { +#if defined(__BIG_ENDIAN) + u16 __reserved0; + u8 sb_index_number; + u8 status_block_id; +#elif defined(__LITTLE_ENDIAN) + u8 status_block_id; + u8 sb_index_number; + u16 __reserved0; +#endif + u32 __reserved1[3]; +}; + +/* + * Ethernet connection context + */ +struct eth_context { + struct ustorm_eth_st_context ustorm_st_context; + struct tstorm_eth_st_context tstorm_st_context; + struct xstorm_eth_ag_context xstorm_ag_context; + struct tstorm_eth_ag_context tstorm_ag_context; + struct cstorm_eth_ag_context cstorm_ag_context; + struct ustorm_eth_ag_context ustorm_ag_context; + struct timers_block_context timers_context; + struct xstorm_eth_st_context xstorm_st_context; + struct cstorm_eth_st_context cstorm_st_context; +}; + + +/* + * ethernet doorbell + */ +struct eth_tx_doorbell { +#if defined(__BIG_ENDIAN) + u16 npackets; + u8 params; +#define ETH_TX_DOORBELL_NUM_BDS (0x3F<<0) +#define ETH_TX_DOORBELL_NUM_BDS_SHIFT 0 +#define ETH_TX_DOORBELL_RESERVED_TX_FIN_FLAG (0x1<<6) +#define ETH_TX_DOORBELL_RESERVED_TX_FIN_FLAG_SHIFT 6 +#define ETH_TX_DOORBELL_SPARE (0x1<<7) +#define ETH_TX_DOORBELL_SPARE_SHIFT 7 + struct doorbell_hdr hdr; +#elif defined(__LITTLE_ENDIAN) + struct doorbell_hdr hdr; + u8 params; +#define ETH_TX_DOORBELL_NUM_BDS (0x3F<<0) +#define ETH_TX_DOORBELL_NUM_BDS_SHIFT 0 +#define ETH_TX_DOORBELL_RESERVED_TX_FIN_FLAG (0x1<<6) +#define ETH_TX_DOORBELL_RESERVED_TX_FIN_FLAG_SHIFT 6 +#define ETH_TX_DOORBELL_SPARE (0x1<<7) +#define ETH_TX_DOORBELL_SPARE_SHIFT 7 + u16 npackets; +#endif +}; + + +/* + * ustorm status block + */ +struct ustorm_def_status_block { + u16 index_values[HC_USTORM_DEF_SB_NUM_INDICES]; + u16 status_block_index; + u8 reserved0; + u8 status_block_id; + u32 __flags; +}; + +/* + * cstorm status block + */ +struct cstorm_def_status_block { + u16 index_values[HC_CSTORM_DEF_SB_NUM_INDICES]; + u16 status_block_index; + u8 reserved0; + u8 status_block_id; + u32 __flags; +}; + +/* + * xstorm status block + */ +struct xstorm_def_status_block { + u16 index_values[HC_XSTORM_DEF_SB_NUM_INDICES]; + u16 status_block_index; + u8 reserved0; + u8 status_block_id; + u32 __flags; +}; + +/* + * tstorm status block + */ +struct tstorm_def_status_block { + u16 index_values[HC_TSTORM_DEF_SB_NUM_INDICES]; + u16 status_block_index; + u8 reserved0; + u8 status_block_id; + u32 __flags; +}; + +/* + * host status block + */ +struct host_def_status_block { + struct atten_def_status_block atten_status_block; + struct ustorm_def_status_block u_def_status_block; + struct cstorm_def_status_block c_def_status_block; + struct xstorm_def_status_block x_def_status_block; + struct tstorm_def_status_block t_def_status_block; +}; + + +/* + * ustorm status block + */ +struct ustorm_status_block { + u16 index_values[HC_USTORM_SB_NUM_INDICES]; + u16 status_block_index; + u8 reserved0; + u8 status_block_id; + u32 __flags; +}; + +/* + * cstorm status block + */ +struct cstorm_status_block { + u16 index_values[HC_CSTORM_SB_NUM_INDICES]; + u16 status_block_index; + u8 reserved0; + u8 status_block_id; + u32 __flags; +}; + +/* + * host status block + */ +struct host_status_block { + struct ustorm_status_block u_status_block; + struct cstorm_status_block c_status_block; +}; + + +/* + * The data for RSS setup ramrod + */ +struct eth_client_setup_ramrod_data { + u32 client_id_5b; + u8 is_rdma_1b; + u8 reserved0; + u16 reserved1; +}; + + +/* + * L2 dynamic host coalescing init parameters + */ +struct eth_dynamic_hc_config { + u32 threshold[3]; + u8 hc_timeout[4]; +}; + + +/* + * regular eth FP CQE parameters struct + */ +struct eth_fast_path_rx_cqe { + u8 type; + u8 error_type_flags; +#define ETH_FAST_PATH_RX_CQE_PHY_DECODE_ERR_FLG (0x1<<0) +#define ETH_FAST_PATH_RX_CQE_PHY_DECODE_ERR_FLG_SHIFT 0 +#define ETH_FAST_PATH_RX_CQE_IP_BAD_XSUM_FLG (0x1<<1) +#define ETH_FAST_PATH_RX_CQE_IP_BAD_XSUM_FLG_SHIFT 1 +#define ETH_FAST_PATH_RX_CQE_L4_BAD_XSUM_FLG (0x1<<2) +#define ETH_FAST_PATH_RX_CQE_L4_BAD_XSUM_FLG_SHIFT 2 +#define ETH_FAST_PATH_RX_CQE_START_FLG (0x1<<3) +#define ETH_FAST_PATH_RX_CQE_START_FLG_SHIFT 3 +#define ETH_FAST_PATH_RX_CQE_END_FLG (0x1<<4) +#define ETH_FAST_PATH_RX_CQE_END_FLG_SHIFT 4 +#define ETH_FAST_PATH_RX_CQE_RESERVED0 (0x7<<5) +#define ETH_FAST_PATH_RX_CQE_RESERVED0_SHIFT 5 + u8 status_flags; +#define ETH_FAST_PATH_RX_CQE_RSS_HASH_TYPE (0x7<<0) +#define ETH_FAST_PATH_RX_CQE_RSS_HASH_TYPE_SHIFT 0 +#define ETH_FAST_PATH_RX_CQE_RSS_HASH_FLG (0x1<<3) +#define ETH_FAST_PATH_RX_CQE_RSS_HASH_FLG_SHIFT 3 +#define ETH_FAST_PATH_RX_CQE_BROADCAST_FLG (0x1<<4) +#define ETH_FAST_PATH_RX_CQE_BROADCAST_FLG_SHIFT 4 +#define ETH_FAST_PATH_RX_CQE_MAC_MATCH_FLG (0x1<<5) +#define ETH_FAST_PATH_RX_CQE_MAC_MATCH_FLG_SHIFT 5 +#define ETH_FAST_PATH_RX_CQE_IP_XSUM_NO_VALIDATION_FLG (0x1<<6) +#define ETH_FAST_PATH_RX_CQE_IP_XSUM_NO_VALIDATION_FLG_SHIFT 6 +#define ETH_FAST_PATH_RX_CQE_L4_XSUM_NO_VALIDATION_FLG (0x1<<7) +#define ETH_FAST_PATH_RX_CQE_L4_XSUM_NO_VALIDATION_FLG_SHIFT 7 + u8 placement_offset; + u32 rss_hash_result; + u16 vlan_tag; + u16 pkt_len; + u16 queue_index; + struct parsing_flags pars_flags; +}; + + +/* + * The data for RSS setup ramrod + */ +struct eth_halt_ramrod_data { + u32 client_id_5b; + u32 reserved0; +}; + + +/* + * Place holder for ramrods protocol specific data + */ +struct ramrod_data { + u32 data_lo; + u32 data_hi; +}; + +/* + * union for ramrod data for ethernet protocol (CQE) (force size of 16 bits) + */ +union eth_ramrod_data { + struct ramrod_data general; +}; + + +/* + * Rx Last BD in page (in ETH) + */ +struct eth_rx_bd_next_page { + u32 addr_lo; + u32 addr_hi; + u8 reserved[8]; +}; + + +/* + * Eth Rx Cqe structure- general structure for ramrods + */ +struct common_ramrod_eth_rx_cqe { + u8 type; + u8 conn_type_3b; + u16 reserved; + u32 conn_and_cmd_data; +#define COMMON_RAMROD_ETH_RX_CQE_CID (0xFFFFFF<<0) +#define COMMON_RAMROD_ETH_RX_CQE_CID_SHIFT 0 +#define COMMON_RAMROD_ETH_RX_CQE_CMD_ID (0xFF<<24) +#define COMMON_RAMROD_ETH_RX_CQE_CMD_ID_SHIFT 24 + struct ramrod_data protocol_data; +}; + +/* + * Rx Last CQE in page (in ETH) + */ +struct eth_rx_cqe_next_page { + u32 addr_lo; + u32 addr_hi; + u32 reserved0; + u32 reserved1; +}; + +/* + * union for all eth rx cqe types (fix their sizes) + */ +union eth_rx_cqe { + struct eth_fast_path_rx_cqe fast_path_cqe; + struct common_ramrod_eth_rx_cqe ramrod_cqe; + struct eth_rx_cqe_next_page next_page_cqe; +}; + + +/* + * common data for all protocols + */ +struct spe_hdr { + u32 conn_and_cmd_data; +#define SPE_HDR_CID (0xFFFFFF<<0) +#define SPE_HDR_CID_SHIFT 0 +#define SPE_HDR_CMD_ID (0xFF<<24) +#define SPE_HDR_CMD_ID_SHIFT 24 + u16 type; +#define SPE_HDR_CONN_TYPE (0xFF<<0) +#define SPE_HDR_CONN_TYPE_SHIFT 0 +#define SPE_HDR_COMMON_RAMROD (0xFF<<8) +#define SPE_HDR_COMMON_RAMROD_SHIFT 8 + u16 reserved; +}; + +struct regpair { + u32 lo; + u32 hi; +}; + +/* + * ethernet slow path element + */ +union eth_specific_data { + u8 protocol_data[8]; + struct regpair mac_config_addr; + struct eth_client_setup_ramrod_data client_setup_ramrod_data; + struct eth_halt_ramrod_data halt_ramrod_data; + struct regpair leading_cqe_addr; + struct regpair update_data_addr; +}; + +/* + * ethernet slow path element + */ +struct eth_spe { + struct spe_hdr hdr; + union eth_specific_data data; +}; + + +/* + * doorbell data in host memory + */ +struct eth_tx_db_data { + u32 packets_prod; + u16 bds_prod; + u16 reserved; +}; + + +/* + * Common configuration parameters per port in Tstorm + */ +struct tstorm_eth_function_common_config { + u32 config_flags; +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_CAPABILITY (0x1<<0) +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_CAPABILITY_SHIFT 0 +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_TCP_CAPABILITY (0x1<<1) +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV4_TCP_CAPABILITY_SHIFT 1 +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_CAPABILITY (0x1<<2) +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_CAPABILITY_SHIFT 2 +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_TCP_CAPABILITY (0x1<<3) +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_IPV6_TCP_CAPABILITY_SHIFT 3 +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_ENABLE (0x1<<4) +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_RSS_ENABLE_SHIFT 4 +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_DEFAULT_ENABLE (0x1<<5) +#define TSTORM_ETH_FUNCTION_COMMON_CONFIG_DEFAULT_ENABLE_SHIFT 5 +#define __TSTORM_ETH_FUNCTION_COMMON_CONFIG_RESERVED0 (0x3FFFFFF<<6) +#define __TSTORM_ETH_FUNCTION_COMMON_CONFIG_RESERVED0_SHIFT 6 +#if defined(__BIG_ENDIAN) + u16 __secondary_vlan_id; + u8 leading_client_id; + u8 rss_result_mask; +#elif defined(__LITTLE_ENDIAN) + u8 rss_result_mask; + u8 leading_client_id; + u16 __secondary_vlan_id; +#endif +}; + +/* + * parameters for eth update ramrod + */ +struct eth_update_ramrod_data { + struct tstorm_eth_function_common_config func_config; + u8 indirectionTable[128]; +}; + + +/* + * MAC filtering configuration command header + */ +struct mac_configuration_hdr { + u8 length_6b; + u8 offset; + u16 reserved0; + u32 reserved1; +}; + +/* + * MAC address in list for ramrod + */ +struct tstorm_cam_entry { + u16 lsb_mac_addr; + u16 middle_mac_addr; + u16 msb_mac_addr; + u16 flags; +#define TSTORM_CAM_ENTRY_PORT_ID (0x1<<0) +#define TSTORM_CAM_ENTRY_PORT_ID_SHIFT 0 +#define TSTORM_CAM_ENTRY_RSRVVAL0 (0x7<<1) +#define TSTORM_CAM_ENTRY_RSRVVAL0_SHIFT 1 +#define TSTORM_CAM_ENTRY_RESERVED0 (0xFFF<<4) +#define TSTORM_CAM_ENTRY_RESERVED0_SHIFT 4 +}; + +/* + * MAC filtering: CAM target table entry + */ +struct tstorm_cam_target_table_entry { + u8 flags; +#define TSTORM_CAM_TARGET_TABLE_ENTRY_BROADCAST (0x1<<0) +#define TSTORM_CAM_TARGET_TABLE_ENTRY_BROADCAST_SHIFT 0 +#define TSTORM_CAM_TARGET_TABLE_ENTRY_OVERRIDE_VLAN_REMOVAL (0x1<<1) +#define TSTORM_CAM_TARGET_TABLE_ENTRY_OVERRIDE_VLAN_REMOVAL_SHIFT 1 +#define TSTORM_CAM_TARGET_TABLE_ENTRY_ACTION_TYPE (0x1<<2) +#define TSTORM_CAM_TARGET_TABLE_ENTRY_ACTION_TYPE_SHIFT 2 +#define TSTORM_CAM_TARGET_TABLE_ENTRY_RDMA_MAC (0x1<<3) +#define TSTORM_CAM_TARGET_TABLE_ENTRY_RDMA_MAC_SHIFT 3 +#define TSTORM_CAM_TARGET_TABLE_ENTRY_RESERVED0 (0xF<<4) +#define TSTORM_CAM_TARGET_TABLE_ENTRY_RESERVED0_SHIFT 4 + u8 client_id; + u16 vlan_id; +}; + +/* + * MAC address in list for ramrod + */ +struct mac_configuration_entry { + struct tstorm_cam_entry cam_entry; + struct tstorm_cam_target_table_entry target_table_entry; +}; + +/* + * MAC filtering configuration command + */ +struct mac_configuration_cmd { + struct mac_configuration_hdr hdr; + struct mac_configuration_entry config_table[64]; +}; + + +/* + * Configuration parameters per client in Tstorm + */ +struct tstorm_eth_client_config { +#if defined(__BIG_ENDIAN) + u16 statistics_counter_id; + u16 mtu; +#elif defined(__LITTLE_ENDIAN) + u16 mtu; + u16 statistics_counter_id; +#endif +#if defined(__BIG_ENDIAN) + u16 drop_flags; +#define TSTORM_ETH_CLIENT_CONFIG_DROP_IP_CS_ERR (0x1<<0) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_IP_CS_ERR_SHIFT 0 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TCP_CS_ERR (0x1<<1) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TCP_CS_ERR_SHIFT 1 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_MAC_ERR (0x1<<2) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_MAC_ERR_SHIFT 2 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TTL0 (0x1<<3) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TTL0_SHIFT 3 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_UDP_CS_ERR (0x1<<4) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_UDP_CS_ERR_SHIFT 4 +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED1 (0x7FF<<5) +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED1_SHIFT 5 + u16 config_flags; +#define TSTORM_ETH_CLIENT_CONFIG_VLAN_REMOVAL_ENABLE (0x1<<0) +#define TSTORM_ETH_CLIENT_CONFIG_VLAN_REMOVAL_ENABLE_SHIFT 0 +#define TSTORM_ETH_CLIENT_CONFIG_STATSITICS_ENABLE (0x1<<1) +#define TSTORM_ETH_CLIENT_CONFIG_STATSITICS_ENABLE_SHIFT 1 +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED0 (0x3FFF<<2) +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED0_SHIFT 2 +#elif defined(__LITTLE_ENDIAN) + u16 config_flags; +#define TSTORM_ETH_CLIENT_CONFIG_VLAN_REMOVAL_ENABLE (0x1<<0) +#define TSTORM_ETH_CLIENT_CONFIG_VLAN_REMOVAL_ENABLE_SHIFT 0 +#define TSTORM_ETH_CLIENT_CONFIG_STATSITICS_ENABLE (0x1<<1) +#define TSTORM_ETH_CLIENT_CONFIG_STATSITICS_ENABLE_SHIFT 1 +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED0 (0x3FFF<<2) +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED0_SHIFT 2 + u16 drop_flags; +#define TSTORM_ETH_CLIENT_CONFIG_DROP_IP_CS_ERR (0x1<<0) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_IP_CS_ERR_SHIFT 0 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TCP_CS_ERR (0x1<<1) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TCP_CS_ERR_SHIFT 1 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_MAC_ERR (0x1<<2) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_MAC_ERR_SHIFT 2 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TTL0 (0x1<<3) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_TTL0_SHIFT 3 +#define TSTORM_ETH_CLIENT_CONFIG_DROP_UDP_CS_ERR (0x1<<4) +#define TSTORM_ETH_CLIENT_CONFIG_DROP_UDP_CS_ERR_SHIFT 4 +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED1 (0x7FF<<5) +#define __TSTORM_ETH_CLIENT_CONFIG_RESERVED1_SHIFT 5 +#endif +}; + + +/* + * MAC filtering configuration parameters per port in Tstorm + */ +struct tstorm_eth_mac_filter_config { + u32 ucast_drop_all; + u32 ucast_accept_all; + u32 mcast_drop_all; + u32 mcast_accept_all; + u32 bcast_drop_all; + u32 bcast_accept_all; + u32 strict_vlan; + u32 __secondary_vlan_clients; +}; + + +struct rate_shaping_per_protocol { +#if defined(__BIG_ENDIAN) + u16 reserved0; + u16 protocol_rate; +#elif defined(__LITTLE_ENDIAN) + u16 protocol_rate; + u16 reserved0; +#endif + u32 protocol_quota; + s32 current_credit; + u32 reserved; +}; + +struct rate_shaping_vars { + struct rate_shaping_per_protocol protocol_vars[NUM_OF_PROTOCOLS]; + u32 pause_mask; + u32 periodic_stop; + u32 rs_periodic_timeout; + u32 rs_threshold; + u32 last_periodic_time; + u32 reserved; +}; + +struct fairness_per_protocol { + u32 credit_delta; + s32 fair_credit; +#if defined(__BIG_ENDIAN) + u16 reserved0; + u8 state; + u8 weight; +#elif defined(__LITTLE_ENDIAN) + u8 weight; + u8 state; + u16 reserved0; +#endif + u32 reserved1; +}; + +struct fairness_vars { + struct fairness_per_protocol protocol_vars[NUM_OF_PROTOCOLS]; + u32 upper_bound; + u32 port_rate; + u32 pause_mask; + u32 fair_threshold; +}; + +struct safc_struct { + u32 cur_pause_mask; + u32 expire_time; +#if defined(__BIG_ENDIAN) + u16 reserved0; + u8 cur_cos_types; + u8 safc_timeout_usec; +#elif defined(__LITTLE_ENDIAN) + u8 safc_timeout_usec; + u8 cur_cos_types; + u16 reserved0; +#endif + u32 reserved1; +}; + +struct demo_struct { + u8 con_number[NUM_OF_PROTOCOLS]; +#if defined(__BIG_ENDIAN) + u8 reserved1; + u8 fairness_enable; + u8 rate_shaping_enable; + u8 cmng_enable; +#elif defined(__LITTLE_ENDIAN) + u8 cmng_enable; + u8 rate_shaping_enable; + u8 fairness_enable; + u8 reserved1; +#endif +}; + +struct cmng_struct { + struct rate_shaping_vars rs_vars; + struct fairness_vars fair_vars; + struct safc_struct safc_vars; + struct demo_struct demo_vars; +}; + + +struct cos_to_protocol { + u8 mask[MAX_COS_NUMBER]; +}; + + +/* + * Common statistics collected by the Xstorm (per port) + */ +struct xstorm_common_stats { + struct regpair total_sent_bytes; + u32 total_sent_pkts; + u32 unicast_pkts_sent; + struct regpair unicast_bytes_sent; + struct regpair multicast_bytes_sent; + u32 multicast_pkts_sent; + u32 broadcast_pkts_sent; + struct regpair broadcast_bytes_sent; + struct regpair done; +}; + +/* + * Protocol-common statistics collected by the Tstorm (per client) + */ +struct tstorm_per_client_stats { + struct regpair total_rcv_bytes; + struct regpair rcv_unicast_bytes; + struct regpair rcv_broadcast_bytes; + struct regpair rcv_multicast_bytes; + struct regpair rcv_error_bytes; + u32 checksum_discard; + u32 packets_too_big_discard; + u32 total_rcv_pkts; + u32 rcv_unicast_pkts; + u32 rcv_broadcast_pkts; + u32 rcv_multicast_pkts; + u32 no_buff_discard; + u32 ttl0_discard; + u32 mac_discard; + u32 reserved; +}; + +/* + * Protocol-common statistics collected by the Tstorm (per port) + */ +struct tstorm_common_stats { + struct tstorm_per_client_stats client_statistics[MAX_T_STAT_COUNTER_ID]; + u32 mac_filter_discard; + u32 xxoverflow_discard; + u32 brb_truncate_discard; + u32 reserved; + struct regpair done; +}; + +/* + * Eth statistics query sturcture for the eth_stats_quesry ramrod + */ +struct eth_stats_query { + struct xstorm_common_stats xstorm_common; + struct tstorm_common_stats tstorm_common; +}; + + +/* + * FW version stored in the Xstorm RAM + */ +struct fw_version { +#if defined(__BIG_ENDIAN) + u16 patch; + u8 primary; + u8 client; +#elif defined(__LITTLE_ENDIAN) + u8 client; + u8 primary; + u16 patch; +#endif + u32 flags; +#define FW_VERSION_OPTIMIZED (0x1<<0) +#define FW_VERSION_OPTIMIZED_SHIFT 0 +#define FW_VERSION_BIG_ENDIEN (0x1<<1) +#define FW_VERSION_BIG_ENDIEN_SHIFT 1 +#define __FW_VERSION_RESERVED (0x3FFFFFFF<<2) +#define __FW_VERSION_RESERVED_SHIFT 2 +}; + + +/* + * FW version stored in first line of pram + */ +struct pram_fw_version { +#if defined(__BIG_ENDIAN) + u16 patch; + u8 primary; + u8 client; +#elif defined(__LITTLE_ENDIAN) + u8 client; + u8 primary; + u16 patch; +#endif + u8 flags; +#define PRAM_FW_VERSION_OPTIMIZED (0x1<<0) +#define PRAM_FW_VERSION_OPTIMIZED_SHIFT 0 +#define PRAM_FW_VERSION_STORM_ID (0x3<<1) +#define PRAM_FW_VERSION_STORM_ID_SHIFT 1 +#define PRAM_FW_VERSION_BIG_ENDIEN (0x1<<3) +#define PRAM_FW_VERSION_BIG_ENDIEN_SHIFT 3 +#define __PRAM_FW_VERSION_RESERVED0 (0xF<<4) +#define __PRAM_FW_VERSION_RESERVED0_SHIFT 4 +}; + + +/* + * The send queue element + */ +struct slow_path_element { + struct spe_hdr hdr; + u8 protocol_data[8]; +}; + + +/* + * eth/toe flags that indicate if to query + */ +struct stats_indication_flags { + u32 collect_eth; + u32 collect_toe; +}; + + diff --git a/drivers/net/bnx2x_init.h b/drivers/net/bnx2x_init.h new file mode 100644 index 000000000000..04f93bff2ef4 --- /dev/null +++ b/drivers/net/bnx2x_init.h @@ -0,0 +1,564 @@ +/* bnx2x_init.h: Broadcom Everest network driver. + * + * Copyright (c) 2007 Broadcom Corporation + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation. + * + * Written by: Eliezer Tamir <eliezert@broadcom.com> + */ + +#ifndef BNX2X_INIT_H +#define BNX2X_INIT_H + +#define COMMON 0x1 +#define PORT0 0x2 +#define PORT1 0x4 + +#define INIT_EMULATION 0x1 +#define INIT_FPGA 0x2 +#define INIT_ASIC 0x4 +#define INIT_HARDWARE 0x7 + +#define STORM_INTMEM_SIZE (0x5800 / 4) +#define TSTORM_INTMEM_ADDR 0x1a0000 +#define CSTORM_INTMEM_ADDR 0x220000 +#define XSTORM_INTMEM_ADDR 0x2a0000 +#define USTORM_INTMEM_ADDR 0x320000 + + +/* Init operation types and structures */ + +#define OP_RD 0x1 /* read single register */ +#define OP_WR 0x2 /* write single register */ +#define OP_IW 0x3 /* write single register using mailbox */ +#define OP_SW 0x4 /* copy a string to the device */ +#define OP_SI 0x5 /* copy a string using mailbox */ +#define OP_ZR 0x6 /* clear memory */ +#define OP_ZP 0x7 /* unzip then copy with DMAE */ +#define OP_WB 0x8 /* copy a string using DMAE */ + +struct raw_op { + u32 op :8; + u32 offset :24; + u32 raw_data; +}; + +struct op_read { + u32 op :8; + u32 offset :24; + u32 pad; +}; + +struct op_write { + u32 op :8; + u32 offset :24; + u32 val; +}; + +struct op_string_write { + u32 op :8; + u32 offset :24; +#ifdef __LITTLE_ENDIAN + u16 data_off; + u16 data_len; +#else /* __BIG_ENDIAN */ + u16 data_len; + u16 data_off; +#endif +}; + +struct op_zero { + u32 op :8; + u32 offset :24; + u32 len; +}; + +union init_op { + struct op_read read; + struct op_write write; + struct op_string_write str_wr; + struct op_zero zero; + struct raw_op raw; +}; + +#include "bnx2x_init_values.h" + +static void bnx2x_reg_wr_ind(struct bnx2x *bp, u32 addr, u32 val); + +static void bnx2x_write_dmae(struct bnx2x *bp, dma_addr_t dma_addr, + u32 dst_addr, u32 len32); + +static int bnx2x_gunzip(struct bnx2x *bp, u8 *zbuf, int len); + +static void bnx2x_init_str_wr(struct bnx2x *bp, u32 addr, const u32 *data, + u32 len) +{ + int i; + + for (i = 0; i < len; i++) { + REG_WR(bp, addr + i*4, data[i]); + if (!(i % 10000)) { + touch_softlockup_watchdog(); + cpu_relax(); + } + } +} + +#define INIT_MEM_WR(reg, data, reg_off, len) \ + bnx2x_init_str_wr(bp, reg + reg_off*4, data, len) + +static void bnx2x_init_ind_wr(struct bnx2x *bp, u32 addr, const u32 *data, + u16 len) +{ + int i; + + for (i = 0; i < len; i++) { + REG_WR_IND(bp, addr + i*4, data[i]); + if (!(i % 10000)) { + touch_softlockup_watchdog(); + cpu_relax(); + } + } +} + +static void bnx2x_init_wr_wb(struct bnx2x *bp, u32 addr, const u32 *data, + u32 len, int gunzip) +{ + int offset = 0; + + if (gunzip) { + int rc; +#ifdef __BIG_ENDIAN + int i, size; + u32 *temp; + + temp = kmalloc(len, GFP_KERNEL); + size = (len / 4) + ((len % 4) ? 1 : 0); + for (i = 0; i < size; i++) + temp[i] = swab32(data[i]); + data = temp; +#endif + rc = bnx2x_gunzip(bp, (u8 *)data, len); + if (rc) { + DP(NETIF_MSG_HW, "gunzip failed ! rc %d\n", rc); + return; + } + len = bp->gunzip_outlen; +#ifdef __BIG_ENDIAN + kfree(temp); + for (i = 0; i < len; i++) + ((u32 *)bp->gunzip_buf)[i] = + swab32(((u32 *)bp->gunzip_buf)[i]); +#endif + } else { + if ((len * 4) > FW_BUF_SIZE) { + BNX2X_ERR("LARGE DMAE OPERATION ! len 0x%x\n", len*4); + return; + } + memcpy(bp->gunzip_buf, data, len * 4); + } + + while (len > DMAE_LEN32_MAX) { + bnx2x_write_dmae(bp, bp->gunzip_mapping + offset, + addr + offset, DMAE_LEN32_MAX); + offset += DMAE_LEN32_MAX * 4; + len -= DMAE_LEN32_MAX; + } + bnx2x_write_dmae(bp, bp->gunzip_mapping + offset, addr + offset, len); +} + +#define INIT_MEM_WB(reg, data, reg_off, len) \ + bnx2x_init_wr_wb(bp, reg + reg_off*4, data, len, 0) + +#define INIT_GUNZIP_DMAE(reg, data, reg_off, len) \ + bnx2x_init_wr_wb(bp, reg + reg_off*4, data, len, 1) + +static void bnx2x_init_fill(struct bnx2x *bp, u32 addr, int fill, u32 len) +{ + int offset = 0; + + if ((len * 4) > FW_BUF_SIZE) { + BNX2X_ERR("LARGE DMAE OPERATION ! len 0x%x\n", len * 4); + return; + } + memset(bp->gunzip_buf, fill, len * 4); + + while (len > DMAE_LEN32_MAX) { + bnx2x_write_dmae(bp, bp->gunzip_mapping + offset, + addr + offset, DMAE_LEN32_MAX); + offset += DMAE_LEN32_MAX * 4; + len -= DMAE_LEN32_MAX; + } + bnx2x_write_dmae(bp, bp->gunzip_mapping + offset, addr + offset, len); +} + +static void bnx2x_init_block(struct bnx2x *bp, u32 op_start, u32 op_end) +{ + int i; + union init_op *op; + u32 op_type, addr, len; + const u32 *data; + + for (i = op_start; i < op_end; i++) { + + op = (union init_op *)&(init_ops[i]); + + op_type = op->str_wr.op; + addr = op->str_wr.offset; + len = op->str_wr.data_len; + data = init_data + op->str_wr.data_off; + + switch (op_type) { + case OP_RD: + REG_RD(bp, addr); + break; + case OP_WR: + REG_WR(bp, addr, op->write.val); + break; + case OP_SW: + bnx2x_init_str_wr(bp, addr, data, len); + break; + case OP_WB: + bnx2x_init_wr_wb(bp, addr, data, len, 0); + break; + case OP_SI: + bnx2x_init_ind_wr(bp, addr, data, len); + break; + case OP_ZR: + bnx2x_init_fill(bp, addr, 0, op->zero.len); + break; + case OP_ZP: + bnx2x_init_wr_wb(bp, addr, data, len, 1); + break; + default: + BNX2X_ERR("BAD init operation!\n"); + } + } +} + + +/**************************************************************************** +* PXP +****************************************************************************/ +/* + * This code configures the PCI read/write arbiter + * which implements a wighted round robin + * between the virtual queues in the chip. + * + * The values were derived for each PCI max payload and max request size. + * since max payload and max request size are only known at run time, + * this is done as a separate init stage. + */ + +#define NUM_WR_Q 13 +#define NUM_RD_Q 29 +#define MAX_RD_ORD 3 +#define MAX_WR_ORD 2 + +/* configuration for one arbiter queue */ +struct arb_line { + int l; + int add; + int ubound; +}; + +/* derived configuration for each read queue for each max request size */ +static const struct arb_line read_arb_data[NUM_RD_Q][MAX_RD_ORD + 1] = { + {{8 , 64 , 25}, {16 , 64 , 25}, {32 , 64 , 25}, {64 , 64 , 41} }, + {{4 , 8 , 4}, {4 , 8 , 4}, {4 , 8 , 4}, {4 , 8 , 4} }, + {{4 , 3 , 3}, {4 , 3 , 3}, {4 , 3 , 3}, {4 , 3 , 3} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {16 , 3 , 11}, {16 , 3 , 11} }, + {{8 , 64 , 25}, {16 , 64 , 25}, {32 , 64 , 25}, {64 , 64 , 41} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {64 , 3 , 41} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {64 , 3 , 41} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {64 , 3 , 41} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {64 , 3 , 41} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 3 , 6}, {16 , 3 , 11}, {32 , 3 , 21}, {32 , 3 , 21} }, + {{8 , 64 , 25}, {16 , 64 , 41}, {32 , 64 , 81}, {64 , 64 , 120} } +}; + +/* derived configuration for each write queue for each max request size */ +static const struct arb_line write_arb_data[NUM_WR_Q][MAX_WR_ORD + 1] = { + {{4 , 6 , 3}, {4 , 6 , 3}, {4 , 6 , 3} }, + {{4 , 2 , 3}, {4 , 2 , 3}, {4 , 2 , 3} }, + {{8 , 2 , 6}, {16 , 2 , 11}, {16 , 2 , 11} }, + {{8 , 2 , 6}, {16 , 2 , 11}, {32 , 2 , 21} }, + {{8 , 2 , 6}, {16 , 2 , 11}, {32 , 2 , 21} }, + {{8 , 2 , 6}, {16 , 2 , 11}, {32 , 2 , 21} }, + {{8 , 64 , 25}, {16 , 64 , 25}, {32 , 64 , 25} }, + {{8 , 2 , 6}, {16 , 2 , 11}, {16 , 2 , 11} }, + {{8 , 2 , 6}, {16 , 2 , 11}, {16 , 2 , 11} }, + {{8 , 9 , 6}, {16 , 9 , 11}, {32 , 9 , 21} }, + {{8 , 47 , 19}, {16 , 47 , 19}, {32 , 47 , 21} }, + {{8 , 9 , 6}, {16 , 9 , 11}, {16 , 9 , 11} }, + {{8 , 64 , 25}, {16 , 64 , 41}, {32 , 64 , 81} } +}; + +/* register adresses for read queues */ +static const struct arb_line read_arb_addr[NUM_RD_Q-1] = { + {PXP2_REG_RQ_BW_RD_L0, PXP2_REG_RQ_BW_RD_ADD0, + PXP2_REG_RQ_BW_RD_UBOUND0}, + {PXP2_REG_PSWRQ_BW_L1, PXP2_REG_PSWRQ_BW_ADD1, + PXP2_REG_PSWRQ_BW_UB1}, + {PXP2_REG_PSWRQ_BW_L2, PXP2_REG_PSWRQ_BW_ADD2, + PXP2_REG_PSWRQ_BW_UB2}, + {PXP2_REG_PSWRQ_BW_L3, PXP2_REG_PSWRQ_BW_ADD3, + PXP2_REG_PSWRQ_BW_UB3}, + {PXP2_REG_RQ_BW_RD_L4, PXP2_REG_RQ_BW_RD_ADD4, + PXP2_REG_RQ_BW_RD_UBOUND4}, + {PXP2_REG_RQ_BW_RD_L5, PXP2_REG_RQ_BW_RD_ADD5, + PXP2_REG_RQ_BW_RD_UBOUND5}, + {PXP2_REG_PSWRQ_BW_L6, PXP2_REG_PSWRQ_BW_ADD6, + PXP2_REG_PSWRQ_BW_UB6}, + {PXP2_REG_PSWRQ_BW_L7, PXP2_REG_PSWRQ_BW_ADD7, + PXP2_REG_PSWRQ_BW_UB7}, + {PXP2_REG_PSWRQ_BW_L8, PXP2_REG_PSWRQ_BW_ADD8, + PXP2_REG_PSWRQ_BW_UB8}, + {PXP2_REG_PSWRQ_BW_L9, PXP2_REG_PSWRQ_BW_ADD9, + PXP2_REG_PSWRQ_BW_UB9}, + {PXP2_REG_PSWRQ_BW_L10, PXP2_REG_PSWRQ_BW_ADD10, + PXP2_REG_PSWRQ_BW_UB10}, + {PXP2_REG_PSWRQ_BW_L11, PXP2_REG_PSWRQ_BW_ADD11, + PXP2_REG_PSWRQ_BW_UB11}, + {PXP2_REG_RQ_BW_RD_L12, PXP2_REG_RQ_BW_RD_ADD12, + PXP2_REG_RQ_BW_RD_UBOUND12}, + {PXP2_REG_RQ_BW_RD_L13, PXP2_REG_RQ_BW_RD_ADD13, + PXP2_REG_RQ_BW_RD_UBOUND13}, + {PXP2_REG_RQ_BW_RD_L14, PXP2_REG_RQ_BW_RD_ADD14, + PXP2_REG_RQ_BW_RD_UBOUND14}, + {PXP2_REG_RQ_BW_RD_L15, PXP2_REG_RQ_BW_RD_ADD15, + PXP2_REG_RQ_BW_RD_UBOUND15}, + {PXP2_REG_RQ_BW_RD_L16, PXP2_REG_RQ_BW_RD_ADD16, + PXP2_REG_RQ_BW_RD_UBOUND16}, + {PXP2_REG_RQ_BW_RD_L17, PXP2_REG_RQ_BW_RD_ADD17, + PXP2_REG_RQ_BW_RD_UBOUND17}, + {PXP2_REG_RQ_BW_RD_L18, PXP2_REG_RQ_BW_RD_ADD18, + PXP2_REG_RQ_BW_RD_UBOUND18}, + {PXP2_REG_RQ_BW_RD_L19, PXP2_REG_RQ_BW_RD_ADD19, + PXP2_REG_RQ_BW_RD_UBOUND19}, + {PXP2_REG_RQ_BW_RD_L20, PXP2_REG_RQ_BW_RD_ADD20, + PXP2_REG_RQ_BW_RD_UBOUND20}, + {PXP2_REG_RQ_BW_RD_L22, PXP2_REG_RQ_BW_RD_ADD22, + PXP2_REG_RQ_BW_RD_UBOUND22}, + {PXP2_REG_RQ_BW_RD_L23, PXP2_REG_RQ_BW_RD_ADD23, + PXP2_REG_RQ_BW_RD_UBOUND23}, + {PXP2_REG_RQ_BW_RD_L24, PXP2_REG_RQ_BW_RD_ADD24, + PXP2_REG_RQ_BW_RD_UBOUND24}, + {PXP2_REG_RQ_BW_RD_L25, PXP2_REG_RQ_BW_RD_ADD25, + PXP2_REG_RQ_BW_RD_UBOUND25}, + {PXP2_REG_RQ_BW_RD_L26, PXP2_REG_RQ_BW_RD_ADD26, + PXP2_REG_RQ_BW_RD_UBOUND26}, + {PXP2_REG_RQ_BW_RD_L27, PXP2_REG_RQ_BW_RD_ADD27, + PXP2_REG_RQ_BW_RD_UBOUND27}, + {PXP2_REG_PSWRQ_BW_L28, PXP2_REG_PSWRQ_BW_ADD28, + PXP2_REG_PSWRQ_BW_UB28} +}; + +/* register adresses for wrtie queues */ +static const struct arb_line write_arb_addr[NUM_WR_Q-1] = { + {PXP2_REG_PSWRQ_BW_L1, PXP2_REG_PSWRQ_BW_ADD1, + PXP2_REG_PSWRQ_BW_UB1}, + {PXP2_REG_PSWRQ_BW_L2, PXP2_REG_PSWRQ_BW_ADD2, + PXP2_REG_PSWRQ_BW_UB2}, + {PXP2_REG_PSWRQ_BW_L3, PXP2_REG_PSWRQ_BW_ADD3, + PXP2_REG_PSWRQ_BW_UB3}, + {PXP2_REG_PSWRQ_BW_L6, PXP2_REG_PSWRQ_BW_ADD6, + PXP2_REG_PSWRQ_BW_UB6}, + {PXP2_REG_PSWRQ_BW_L7, PXP2_REG_PSWRQ_BW_ADD7, + PXP2_REG_PSWRQ_BW_UB7}, + {PXP2_REG_PSWRQ_BW_L8, PXP2_REG_PSWRQ_BW_ADD8, + PXP2_REG_PSWRQ_BW_UB8}, + {PXP2_REG_PSWRQ_BW_L9, PXP2_REG_PSWRQ_BW_ADD9, + PXP2_REG_PSWRQ_BW_UB9}, + {PXP2_REG_PSWRQ_BW_L10, PXP2_REG_PSWRQ_BW_ADD10, + PXP2_REG_PSWRQ_BW_UB10}, + {PXP2_REG_PSWRQ_BW_L11, PXP2_REG_PSWRQ_BW_ADD11, + PXP2_REG_PSWRQ_BW_UB11}, + {PXP2_REG_PSWRQ_BW_L28, PXP2_REG_PSWRQ_BW_ADD28, + PXP2_REG_PSWRQ_BW_UB28}, + {PXP2_REG_RQ_BW_WR_L29, PXP2_REG_RQ_BW_WR_ADD29, + PXP2_REG_RQ_BW_WR_UBOUND29}, + {PXP2_REG_RQ_BW_WR_L30, PXP2_REG_RQ_BW_WR_ADD30, + PXP2_REG_RQ_BW_WR_UBOUND30} +}; + +static void bnx2x_init_pxp(struct bnx2x *bp) +{ + int r_order, w_order; + u32 val, i; + + pci_read_config_word(bp->pdev, + bp->pcie_cap + PCI_EXP_DEVCTL, (u16 *)&val); + DP(NETIF_MSG_HW, "read 0x%x from devctl\n", val); + w_order = ((val & PCI_EXP_DEVCTL_PAYLOAD) >> 5); + r_order = ((val & PCI_EXP_DEVCTL_READRQ) >> 12); + + if (r_order > MAX_RD_ORD) { + DP(NETIF_MSG_HW, "read order of %d order adjusted to %d\n", + r_order, MAX_RD_ORD); + r_order = MAX_RD_ORD; + } + if (w_order > MAX_WR_ORD) { + DP(NETIF_MSG_HW, "write order of %d order adjusted to %d\n", + w_order, MAX_WR_ORD); + w_order = MAX_WR_ORD; + } + DP(NETIF_MSG_HW, "read order %d write order %d\n", r_order, w_order); + + for (i = 0; i < NUM_RD_Q-1; i++) { + REG_WR(bp, read_arb_addr[i].l, read_arb_data[i][r_order].l); + REG_WR(bp, read_arb_addr[i].add, + read_arb_data[i][r_order].add); + REG_WR(bp, read_arb_addr[i].ubound, + read_arb_data[i][r_order].ubound); + } + + for (i = 0; i < NUM_WR_Q-1; i++) { + if ((write_arb_addr[i].l == PXP2_REG_RQ_BW_WR_L29) || + (write_arb_addr[i].l == PXP2_REG_RQ_BW_WR_L30)) { + + REG_WR(bp, write_arb_addr[i].l, + write_arb_data[i][w_order].l); + + REG_WR(bp, write_arb_addr[i].add, + write_arb_data[i][w_order].add); + + REG_WR(bp, write_arb_addr[i].ubound, + write_arb_data[i][w_order].ubound); + } else { + + val = REG_RD(bp, write_arb_addr[i].l); + REG_WR(bp, write_arb_addr[i].l, + val | (write_arb_data[i][w_order].l << 10)); + + val = REG_RD(bp, write_arb_addr[i].add); + REG_WR(bp, write_arb_addr[i].add, + val | (write_arb_data[i][w_order].add << 10)); + + val = REG_RD(bp, write_arb_addr[i].ubound); + REG_WR(bp, write_arb_addr[i].ubound, + val | (write_arb_data[i][w_order].ubound << 7)); + } + } + + val = write_arb_data[NUM_WR_Q-1][w_order].add; + val += write_arb_data[NUM_WR_Q-1][w_order].ubound << 10; + val += write_arb_data[NUM_WR_Q-1][w_order].l << 17; + REG_WR(bp, PXP2_REG_PSWRQ_BW_RD, val); + + val = read_arb_data[NUM_RD_Q-1][r_order].add; + val += read_arb_data[NUM_RD_Q-1][r_order].ubound << 10; + val += read_arb_data[NUM_RD_Q-1][r_order].l << 17; + REG_WR(bp, PXP2_REG_PSWRQ_BW_WR, val); + + REG_WR(bp, PXP2_REG_RQ_WR_MBS0, w_order); + REG_WR(bp, PXP2_REG_RQ_WR_MBS0 + 8, w_order); + REG_WR(bp, PXP2_REG_RQ_RD_MBS0, r_order); + REG_WR(bp, PXP2_REG_RQ_RD_MBS0 + 8, r_order); + + REG_WR(bp, PXP2_REG_WR_DMAE_TH, (128 << w_order)/16); +} + + +/**************************************************************************** +* CDU +****************************************************************************/ + +#define CDU_REGION_NUMBER_XCM_AG 2 +#define CDU_REGION_NUMBER_UCM_AG 4 + +/** + * String-to-compress [31:8] = CID (all 24 bits) + * String-to-compress [7:4] = Region + * String-to-compress [3:0] = Type + */ +#define CDU_VALID_DATA(_cid, _region, _type) \ + (((_cid) << 8) | (((_region) & 0xf) << 4) | (((_type) & 0xf))) +#define CDU_CRC8(_cid, _region, _type) \ + calc_crc8(CDU_VALID_DATA(_cid, _region, _type), 0xff) +#define CDU_RSRVD_VALUE_TYPE_A(_cid, _region, _type) \ + (0x80 | (CDU_CRC8(_cid, _region, _type) & 0x7f)) +#define CDU_RSRVD_VALUE_TYPE_B(_crc, _type) \ + (0x80 | ((_type) & 0xf << 3) | (CDU_CRC8(_cid, _region, _type) & 0x7)) +#define CDU_RSRVD_INVALIDATE_CONTEXT_VALUE(_val) ((_val) & ~0x80) + +/***************************************************************************** + * Description: + * Calculates crc 8 on a word value: polynomial 0-1-2-8 + * Code was translated from Verilog. + ****************************************************************************/ +static u8 calc_crc8(u32 data, u8 crc) +{ + u8 D[32]; + u8 NewCRC[8]; + u8 C[8]; + u8 crc_res; + u8 i; + + /* split the data into 31 bits */ + for (i = 0; i < 32; i++) { + D[i] = data & 1; + data = data >> 1; + } + + /* split the crc into 8 bits */ + for (i = 0; i < 8; i++) { + C[i] = crc & 1; + crc = crc >> 1; + } + + NewCRC[0] = D[31] ^ D[30] ^ D[28] ^ D[23] ^ D[21] ^ D[19] ^ D[18] ^ + D[16] ^ D[14] ^ D[12] ^ D[8] ^ D[7] ^ D[6] ^ D[0] ^ C[4] ^ + C[6] ^ C[7]; + NewCRC[1] = D[30] ^ D[29] ^ D[28] ^ D[24] ^ D[23] ^ D[22] ^ D[21] ^ + D[20] ^ D[18] ^ D[17] ^ D[16] ^ D[15] ^ D[14] ^ D[13] ^ + D[12] ^ D[9] ^ D[6] ^ D[1] ^ D[0] ^ C[0] ^ C[4] ^ C[5] ^ C[6]; + NewCRC[2] = D[29] ^ D[28] ^ D[25] ^ D[24] ^ D[22] ^ D[17] ^ D[15] ^ + D[13] ^ D[12] ^ D[10] ^ D[8] ^ D[6] ^ D[2] ^ D[1] ^ D[0] ^ + C[0] ^ C[1] ^ C[4] ^ C[5]; + NewCRC[3] = D[30] ^ D[29] ^ D[26] ^ D[25] ^ D[23] ^ D[18] ^ D[16] ^ + D[14] ^ D[13] ^ D[11] ^ D[9] ^ D[7] ^ D[3] ^ D[2] ^ D[1] ^ + C[1] ^ C[2] ^ C[5] ^ C[6]; + NewCRC[4] = D[31] ^ D[30] ^ D[27] ^ D[26] ^ D[24] ^ D[19] ^ D[17] ^ + D[15] ^ D[14] ^ D[12] ^ D[10] ^ D[8] ^ D[4] ^ D[3] ^ D[2] ^ + C[0] ^ C[2] ^ C[3] ^ C[6] ^ C[7]; + NewCRC[5] = D[31] ^ D[28] ^ D[27] ^ D[25] ^ D[20] ^ D[18] ^ D[16] ^ + D[15] ^ D[13] ^ D[11] ^ D[9] ^ D[5] ^ D[4] ^ D[3] ^ C[1] ^ + C[3] ^ C[4] ^ C[7]; + NewCRC[6] = D[29] ^ D[28] ^ D[26] ^ D[21] ^ D[19] ^ D[17] ^ D[16] ^ + D[14] ^ D[12] ^ D[10] ^ D[6] ^ D[5] ^ D[4] ^ C[2] ^ C[4] ^ + C[5]; + NewCRC[7] = D[30] ^ D[29] ^ D[27] ^ D[22] ^ D[20] ^ D[18] ^ D[17] ^ + D[15] ^ D[13] ^ D[11] ^ D[7] ^ D[6] ^ D[5] ^ C[3] ^ C[5] ^ + C[6]; + + crc_res = 0; + for (i = 0; i < 8; i++) + crc_res |= (NewCRC[i] << i); + + return crc_res; +} + + +#endif /* BNX2X_INIT_H */ + diff --git a/drivers/net/bnx2x_init_values.h b/drivers/net/bnx2x_init_values.h new file mode 100644 index 000000000000..bef0a9b19d68 --- /dev/null +++ b/drivers/net/bnx2x_init_values.h @@ -0,0 +1,6368 @@ +#ifndef __BNX2X_INIT_VALUES_H__ +#define __BNX2X_INIT_VALUES_H__ + +/* This array contains the list of operations needed to initialize the chip. + * + * For each block in the chip there are three init stages: + * common - HW used by both ports, + * port1 and port2 - initialization for a specific Ethernet port. + * When a port is opened or closed, the management CPU tells the driver + * whether to init/disable common HW in addition to the port HW. + * This way the first port going up will first initializes the common HW, + * and the last port going down also resets the common HW + * + * For each init stage/block there is a list of actions needed in a format: + * {operation, register, data} + * where: + * OP_WR - write a value to the chip. + * OP_RD - read a register (usually a clear on read register). + * OP_SW - string write, write a section of consecutive addresses to the chip. + * OP_SI - copy a string using indirect writes. + * OP_ZR - clear a range of memory. + * OP_ZP - unzip and copy using DMAE. + * OP_WB - string copy using DMAE. + * + * The #defines mark the stages. + * + */ + +static const struct raw_op init_ops[] = { +#define PRS_COMMON_START 0 + {OP_WR, PRS_REG_INC_VALUE, 0xf}, + {OP_WR, PRS_REG_EVENT_ID_1, 0x45}, + {OP_WR, PRS_REG_EVENT_ID_2, 0x84}, + {OP_WR, PRS_REG_EVENT_ID_3, 0x6}, + {OP_WR, PRS_REG_NO_MATCH_EVENT_ID, 0x4}, + {OP_WR, PRS_REG_CM_HDR_TYPE_0, 0x0}, + {OP_WR, PRS_REG_CM_HDR_TYPE_1, 0x12170000}, + {OP_WR, PRS_REG_CM_HDR_TYPE_2, 0x22170000}, + {OP_WR, PRS_REG_CM_HDR_TYPE_3, 0x32170000}, + {OP_ZR, PRS_REG_CM_HDR_TYPE_4, 0x5}, + {OP_WR, PRS_REG_CM_HDR_LOOPBACK_TYPE_1, 0x12150000}, + {OP_WR, PRS_REG_CM_HDR_LOOPBACK_TYPE_2, 0x22150000}, + {OP_WR, PRS_REG_CM_HDR_LOOPBACK_TYPE_3, 0x32150000}, + {OP_ZR, PRS_REG_CM_HDR_LOOPBACK_TYPE_4, 0x4}, + {OP_WR, PRS_REG_CM_NO_MATCH_HDR, 0x2100000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_0, 0x100000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_1, 0x10100000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_2, 0x20100000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_3, 0x30100000}, + {OP_ZR, PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_4, 0x4}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_0, 0x100000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_1, 0x12140000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_2, 0x22140000}, + {OP_WR, PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_3, 0x32140000}, + {OP_ZR, PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_4, 0x4}, + {OP_RD, PRS_REG_NUM_OF_PACKETS, 0x0}, + {OP_RD, PRS_REG_NUM_OF_CFC_FLUSH_MESSAGES, 0x0}, + {OP_RD, PRS_REG_NUM_OF_TRANSPARENT_FLUSH_MESSAGES, 0x0}, + {OP_RD, PRS_REG_NUM_OF_DEAD_CYCLES, 0x0}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_0, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_1, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_2, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_3, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_4, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_5, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_6, 0xff}, + {OP_WR, PRS_REG_FLUSH_REGIONS_TYPE_7, 0xff}, + {OP_WR, PRS_REG_PURE_REGIONS, 0x3e}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_0, 0x0}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_1, 0x3f}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_2, 0x3f}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_3, 0x3f}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_4, 0x0}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_5, 0x3f}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_6, 0x3f}, + {OP_WR, PRS_REG_PACKET_REGIONS_TYPE_7, 0x3f}, +#define PRS_COMMON_END 46 +#define PRS_PORT0_START 46 + {OP_WR, PRS_REG_CID_PORT_0, 0x0}, +#define PRS_PORT0_END 47 +#define PRS_PORT1_START 47 + {OP_WR, PRS_REG_CID_PORT_1, 0x800000}, +#define PRS_PORT1_END 48 +#define TSDM_COMMON_START 48 + {OP_WR, TSDM_REG_CFC_RSP_START_ADDR, 0x411}, + {OP_WR, TSDM_REG_CMP_COUNTER_START_ADDR, 0x400}, + {OP_WR, TSDM_REG_Q_COUNTER_START_ADDR, 0x404}, + {OP_WR, TSDM_REG_PCK_END_MSG_START_ADDR, 0x419}, + {OP_WR, TSDM_REG_CMP_COUNTER_MAX0, 0xffff}, + {OP_WR, TSDM_REG_CMP_COUNTER_MAX1, 0xffff}, + {OP_WR, TSDM_REG_CMP_COUNTER_MAX2, 0xffff}, + {OP_WR, TSDM_REG_CMP_COUNTER_MAX3, 0xffff}, + {OP_ZR, TSDM_REG_AGG_INT_EVENT_0, 0x80}, + {OP_WR, TSDM_REG_ENABLE_IN1, 0x7ffffff}, + {OP_WR, TSDM_REG_ENABLE_IN2, 0x3f}, + {OP_WR, TSDM_REG_ENABLE_OUT1, 0x7ffffff}, + {OP_WR, TSDM_REG_ENABLE_OUT2, 0xf}, + {OP_RD, TSDM_REG_NUM_OF_Q0_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q1_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q3_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q4_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q5_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q6_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q7_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q8_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q9_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q10_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_Q11_CMD, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_PKT_END_MSG, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_PXP_ASYNC_REQ, 0x0}, + {OP_RD, TSDM_REG_NUM_OF_ACK_AFTER_PLACE, 0x0}, + {OP_WR, TSDM_REG_TIMER_TICK, 0x3e8}, +#define TSDM_COMMON_END 76 +#define TCM_COMMON_START 76 + {OP_WR, TCM_REG_XX_MAX_LL_SZ, 0x20}, + {OP_WR, TCM_REG_XX_OVFL_EVNT_ID, 0x32}, + {OP_WR, TCM_REG_TQM_TCM_HDR_P, 0x2150020}, + {OP_WR, TCM_REG_TQM_TCM_HDR_S, 0x2150020}, + {OP_WR, TCM_REG_TM_TCM_HDR, 0x30}, + {OP_WR, TCM_REG_ERR_TCM_HDR, 0x8100000}, + {OP_WR, TCM_REG_ERR_EVNT_ID, 0x33}, + {OP_WR, TCM_REG_EXPR_EVNT_ID, 0x30}, + {OP_WR, TCM_REG_STOP_EVNT_ID, 0x31}, + {OP_WR, TCM_REG_PRS_WEIGHT, 0x4}, + {OP_WR, TCM_REG_PBF_WEIGHT, 0x5}, + {OP_WR, TCM_REG_CP_WEIGHT, 0x0}, + {OP_WR, TCM_REG_TSDM_WEIGHT, 0x4}, + {OP_WR, TCM_REG_TCM_TQM_USE_Q, 0x1}, + {OP_WR, TCM_REG_GR_ARB_TYPE, 0x1}, + {OP_WR, TCM_REG_GR_LD0_PR, 0x1}, + {OP_WR, TCM_REG_GR_LD1_PR, 0x2}, + {OP_WR, TCM_REG_CFC_INIT_CRD, 0x1}, + {OP_WR, TCM_REG_FIC0_INIT_CRD, 0x40}, + {OP_WR, TCM_REG_FIC1_INIT_CRD, 0x40}, + {OP_WR, TCM_REG_TQM_INIT_CRD, 0x20}, + {OP_WR, TCM_REG_XX_INIT_CRD, 0x13}, + {OP_WR, TCM_REG_XX_MSG_NUM, 0x20}, + {OP_ZR, TCM_REG_XX_TABLE, 0xa}, + {OP_SW, TCM_REG_XX_DESCR_TABLE, 0x200000}, + {OP_WR, TCM_REG_N_SM_CTX_LD_0, 0x7}, + {OP_WR, TCM_REG_N_SM_CTX_LD_1, 0x7}, + {OP_WR, TCM_REG_N_SM_CTX_LD_2, 0x8}, + {OP_WR, TCM_REG_N_SM_CTX_LD_3, 0x8}, + {OP_ZR, TCM_REG_N_SM_CTX_LD_4, 0x4}, + {OP_WR, TCM_REG_TCM_REG0_SZ, 0x6}, + {OP_WR, TCM_REG_PHYS_QNUM0_0, 0xd}, + {OP_WR, TCM_REG_PHYS_QNUM0_1, 0x2d}, + {OP_ZR, TCM_REG_PHYS_QNUM1_0, 0x6}, + {OP_WR, TCM_REG_TCM_STORM0_IFEN, 0x1}, + {OP_WR, TCM_REG_TCM_STORM1_IFEN, 0x1}, + {OP_WR, TCM_REG_TCM_TQM_IFEN, 0x1}, + {OP_WR, TCM_REG_STORM_TCM_IFEN, 0x1}, + {OP_WR, TCM_REG_TQM_TCM_IFEN, 0x1}, + {OP_WR, TCM_REG_TSDM_IFEN, 0x1}, + {OP_WR, TCM_REG_TM_TCM_IFEN, 0x1}, + {OP_WR, TCM_REG_PRS_IFEN, 0x1}, + {OP_WR, TCM_REG_PBF_IFEN, 0x1}, + {OP_WR, TCM_REG_USEM_IFEN, 0x1}, + {OP_WR, TCM_REG_CSEM_IFEN, 0x1}, + {OP_WR, TCM_REG_CDU_AG_WR_IFEN, 0x1}, + {OP_WR, TCM_REG_CDU_AG_RD_IFEN, 0x1}, + {OP_WR, TCM_REG_CDU_SM_WR_IFEN, 0x1}, + {OP_WR, TCM_REG_CDU_SM_RD_IFEN, 0x1}, + {OP_WR, TCM_REG_TCM_CFC_IFEN, 0x1}, +#define TCM_COMMON_END 126 +#define BRB1_COMMON_START 126 + {OP_SW, BRB1_REG_LL_RAM, 0x2000020}, + {OP_WR, BRB1_REG_SOFT_RESET, 0x1}, + {OP_RD, BRB1_REG_NUM_OF_PAUSE_CYCLES_0, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_PAUSE_CYCLES_1, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_PAUSE_CYCLES_2, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_PAUSE_CYCLES_3, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_FULL_CYCLES_0, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_FULL_CYCLES_1, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_FULL_CYCLES_2, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_FULL_CYCLES_3, 0x0}, + {OP_RD, BRB1_REG_NUM_OF_FULL_CYCLES_4, 0x0}, + {OP_SW, BRB1_REG_FREE_LIST_PRS_CRDT, 0x30220}, + {OP_WR, BRB1_REG_SOFT_RESET, 0x0}, +#define BRB1_COMMON_END 139 +#define TSEM_COMMON_START 139 + {OP_RD, TSEM_REG_MSG_NUM_FIC0, 0x0}, + {OP_RD, TSEM_REG_MSG_NUM_FIC1, 0x0}, + {OP_RD, TSEM_REG_MSG_NUM_FOC0, 0x0}, + {OP_RD, TSEM_REG_MSG_NUM_FOC1, 0x0}, + {OP_RD, TSEM_REG_MSG_NUM_FOC2, 0x0}, + {OP_RD, TSEM_REG_MSG_NUM_FOC3, 0x0}, + {OP_WR, TSEM_REG_ARB_ELEMENT0, 0x1}, + {OP_WR, TSEM_REG_ARB_ELEMENT1, 0x2}, + {OP_WR, TSEM_REG_ARB_ELEMENT2, 0x3}, + {OP_WR, TSEM_REG_ARB_ELEMENT3, 0x0}, + {OP_WR, TSEM_REG_ARB_ELEMENT4, 0x4}, + {OP_WR, TSEM_REG_ARB_CYCLE_SIZE, 0x1}, + {OP_WR, TSEM_REG_TS_0_AS, 0x0}, + {OP_WR, TSEM_REG_TS_1_AS, 0x1}, + {OP_WR, TSEM_REG_TS_2_AS, 0x4}, + {OP_WR, TSEM_REG_TS_3_AS, 0x0}, + {OP_WR, TSEM_REG_TS_4_AS, 0x1}, + {OP_WR, TSEM_REG_TS_5_AS, 0x3}, + {OP_WR, TSEM_REG_TS_6_AS, 0x0}, + {OP_WR, TSEM_REG_TS_7_AS, 0x1}, + {OP_WR, TSEM_REG_TS_8_AS, 0x4}, + {OP_WR, TSEM_REG_TS_9_AS, 0x0}, + {OP_WR, TSEM_REG_TS_10_AS, 0x1}, + {OP_WR, TSEM_REG_TS_11_AS, 0x3}, + {OP_WR, TSEM_REG_TS_12_AS, 0x0}, + {OP_WR, TSEM_REG_TS_13_AS, 0x1}, + {OP_WR, TSEM_REG_TS_14_AS, 0x4}, + {OP_WR, TSEM_REG_TS_15_AS, 0x0}, + {OP_WR, TSEM_REG_TS_16_AS, 0x4}, + {OP_WR, TSEM_REG_TS_17_AS, 0x3}, + {OP_ZR, TSEM_REG_TS_18_AS, 0x2}, + {OP_WR, TSEM_REG_ENABLE_IN, 0x3fff}, + {OP_WR, TSEM_REG_ENABLE_OUT, 0x3ff}, + {OP_WR, TSEM_REG_FIC0_DISABLE, 0x0}, + {OP_WR, TSEM_REG_FIC1_DISABLE, 0x0}, + {OP_WR, TSEM_REG_PAS_DISABLE, 0x0}, + {OP_WR, TSEM_REG_THREADS_LIST, 0xff}, + {OP_ZR, TSEM_REG_PASSIVE_BUFFER, 0x400}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x18bc0, 0x1}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x18000, 0x34}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x18040, 0x18}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x18080, 0xc}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x180c0, 0x20}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x18300, 0x7a120}, + {OP_WR, TSEM_REG_FAST_MEMORY + 0x183c0, 0x1f4}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x2000, 0x1b3}, + {OP_SW, TSEM_REG_FAST_MEMORY + 0x2000 + 0x6cc, 0x10223}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1020, 0xc8}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1000, 0x2}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x800, 0x2}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x808, 0x2}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x810, 0x4}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1fa0, 0x4}, + {OP_SW, TSEM_REG_FAST_MEMORY + 0x4cf0, 0x80224}, + {OP_ZP, TSEM_REG_INT_TABLE, 0x8c022c}, + {OP_ZP, TSEM_REG_PRAM, 0x3395024f}, + {OP_ZP, TSEM_REG_PRAM + 0x8000, 0x2c760f35}, + {OP_ZP, TSEM_REG_PRAM + 0x10000, 0x5e1a53}, + {OP_ZP, TSEM_REG_PRAM + 0x18000, 0x5e1a6b}, + {OP_ZP, TSEM_REG_PRAM + 0x20000, 0x5e1a83}, + {OP_ZP, TSEM_REG_PRAM + 0x28000, 0x5e1a9b}, + {OP_ZP, TSEM_REG_PRAM + 0x30000, 0x5e1ab3}, + {OP_ZP, TSEM_REG_PRAM + 0x38000, 0x5e1acb}, +#define TSEM_COMMON_END 202 +#define TSEM_PORT0_START 202 + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x4000, 0x16c}, + {OP_SW, TSEM_REG_FAST_MEMORY + 0x4000 + 0x5b0, 0x21ae3}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1370, 0xa}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x13c0, 0x6}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1418, 0xc}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1478, 0x12}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1508, 0x90}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x800, 0x2}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x820, 0x10}, + {OP_SW, TSEM_REG_FAST_MEMORY + 0x820 + 0x40, 0x21ae5}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x2908, 0xa}, +#define TSEM_PORT0_END 213 +#define TSEM_PORT1_START 213 + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x45b8, 0x16c}, + {OP_SW, TSEM_REG_FAST_MEMORY + 0x45b8 + 0x5b0, 0x21ae7}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1398, 0xa}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x13d8, 0x6}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1448, 0xc}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x14c0, 0x12}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x1748, 0x90}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x808, 0x2}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x868, 0x10}, + {OP_SW, TSEM_REG_FAST_MEMORY + 0x868 + 0x40, 0x21ae9}, + {OP_ZR, TSEM_REG_FAST_MEMORY + 0x2930, 0xa}, +#define TSEM_PORT1_END 224 +#define MISC_COMMON_START 224 + {OP_WR, MISC_REG_GRC_TIMEOUT_EN, 0x1}, + {OP_WR, MISC_REG_PLL_STORM_CTRL_1, 0x71d2911}, + {OP_WR, MISC_REG_PLL_STORM_CTRL_2, 0x0}, + {OP_WR, MISC_REG_PLL_STORM_CTRL_3, 0x9c0424}, + {OP_WR, MISC_REG_PLL_STORM_CTRL_4, 0x0}, + {OP_WR, MISC_REG_LCPLL_CTRL_1, 0x209}, +#define MISC_COMMON_END 230 +#define NIG_COMMON_START 230 + {OP_WR, NIG_REG_PBF_LB_IN_EN, 0x1}, + {OP_WR, NIG_REG_PRS_REQ_IN_EN, 0x1}, + {OP_WR, NIG_REG_EGRESS_DEBUG_IN_EN, 0x1}, + {OP_WR, NIG_REG_BRB_LB_OUT_EN, 0x1}, + {OP_WR, NIG_REG_PRS_EOP_OUT_EN, 0x1}, +#define NIG_COMMON_END 235 +#define NIG_PORT0_START 235 + {OP_WR, NIG_REG_LLH0_CM_HEADER, 0x300000}, + {OP_WR, NIG_REG_LLH0_EVENT_ID, 0x26}, + {OP_WR, NIG_REG_LLH0_ERROR_MASK, 0x0}, + {OP_WR, NIG_REG_LLH0_XCM_MASK, 0x4}, + {OP_WR, NIG_REG_LLH0_BRB1_NOT_MCP, 0x1}, + {OP_WR, NIG_REG_STATUS_INTERRUPT_PORT0, 0x0}, + {OP_WR, NIG_REG_LLH0_XCM_INIT_CREDIT, 0x30}, + {OP_WR, NIG_REG_BRB0_PAUSE_IN_EN, 0x1}, + {OP_WR, NIG_REG_EGRESS_PBF0_IN_EN, 0x1}, + {OP_WR, NIG_REG_BRB0_OUT_EN, 0x1}, + {OP_WR, NIG_REG_XCM0_OUT_EN, 0x1}, +#define NIG_PORT0_END 246 +#define NIG_PORT1_START 246 + {OP_WR, NIG_REG_LLH1_CM_HEADER, 0x300000}, + {OP_WR, NIG_REG_LLH1_EVENT_ID, 0x26}, + {OP_WR, NIG_REG_LLH1_ERROR_MASK, 0x0}, + {OP_WR, NIG_REG_LLH1_XCM_MASK, 0x4}, + {OP_WR, NIG_REG_LLH1_BRB1_NOT_MCP, 0x1}, + {OP_WR, NIG_REG_STATUS_INTERRUPT_PORT1, 0x0}, + {OP_WR, NIG_REG_LLH1_XCM_INIT_CREDIT, 0x30}, + {OP_WR, NIG_REG_BRB1_PAUSE_IN_EN, 0x1}, + {OP_WR, NIG_REG_EGRESS_PBF1_IN_EN, 0x1}, + {OP_WR, NIG_REG_BRB1_OUT_EN, 0x1}, + {OP_WR, NIG_REG_XCM1_OUT_EN, 0x1}, +#define NIG_PORT1_END 257 +#define UPB_COMMON_START 257 + {OP_WR, GRCBASE_UPB + PB_REG_CONTROL, 0x20}, +#define UPB_COMMON_END 258 +#define CSDM_COMMON_START 258 + {OP_WR, CSDM_REG_CFC_RSP_START_ADDR, 0xa11}, + {OP_WR, CSDM_REG_CMP_COUNTER_START_ADDR, 0xa00}, + {OP_WR, CSDM_REG_Q_COUNTER_START_ADDR, 0xa04}, + {OP_WR, CSDM_REG_CMP_COUNTER_MAX0, 0xffff}, + {OP_WR, CSDM_REG_CMP_COUNTER_MAX1, 0xffff}, + {OP_WR, CSDM_REG_CMP_COUNTER_MAX2, 0xffff}, + {OP_WR, CSDM_REG_CMP_COUNTER_MAX3, 0xffff}, + {OP_ZR, CSDM_REG_AGG_INT_EVENT_0, 0x80}, + {OP_WR, CSDM_REG_ENABLE_IN1, 0x7ffffff}, + {OP_WR, CSDM_REG_ENABLE_IN2, 0x3f}, + {OP_WR, CSDM_REG_ENABLE_OUT1, 0x7ffffff}, + {OP_WR, CSDM_REG_ENABLE_OUT2, 0xf}, + {OP_RD, CSDM_REG_NUM_OF_Q0_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q1_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q3_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q4_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q5_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q6_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q7_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q8_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q9_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q10_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_Q11_CMD, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_PKT_END_MSG, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_PXP_ASYNC_REQ, 0x0}, + {OP_RD, CSDM_REG_NUM_OF_ACK_AFTER_PLACE, 0x0}, + {OP_WR, CSDM_REG_TIMER_TICK, 0x3e8}, +#define CSDM_COMMON_END 285 +#define USDM_COMMON_START 285 + {OP_WR, USDM_REG_CFC_RSP_START_ADDR, 0xa11}, + {OP_WR, USDM_REG_CMP_COUNTER_START_ADDR, 0xa00}, + {OP_WR, USDM_REG_Q_COUNTER_START_ADDR, 0xa04}, + {OP_WR, USDM_REG_PCK_END_MSG_START_ADDR, 0xa21}, + {OP_WR, USDM_REG_CMP_COUNTER_MAX0, 0xffff}, + {OP_WR, USDM_REG_CMP_COUNTER_MAX1, 0xffff}, + {OP_WR, USDM_REG_CMP_COUNTER_MAX2, 0xffff}, + {OP_WR, USDM_REG_CMP_COUNTER_MAX3, 0xffff}, + {OP_WR, USDM_REG_AGG_INT_EVENT_0, 0x46}, + {OP_ZR, USDM_REG_AGG_INT_EVENT_1, 0x5f}, + {OP_WR, USDM_REG_AGG_INT_MODE_0, 0x1}, + {OP_ZR, USDM_REG_AGG_INT_MODE_1, 0x1f}, + {OP_WR, USDM_REG_ENABLE_IN1, 0x7ffffff}, + {OP_WR, USDM_REG_ENABLE_IN2, 0x3f}, + {OP_WR, USDM_REG_ENABLE_OUT1, 0x7ffffff}, + {OP_WR, USDM_REG_ENABLE_OUT2, 0xf}, + {OP_RD, USDM_REG_NUM_OF_Q0_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q1_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q2_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q3_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q4_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q5_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q6_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q7_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q8_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q9_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q10_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_Q11_CMD, 0x0}, + {OP_RD, USDM_REG_NUM_OF_PKT_END_MSG, 0x0}, + {OP_RD, USDM_REG_NUM_OF_PXP_ASYNC_REQ, 0x0}, + {OP_RD, USDM_REG_NUM_OF_ACK_AFTER_PLACE, 0x0}, + {OP_WR, USDM_REG_TIMER_TICK, 0x3e8}, +#define USDM_COMMON_END 317 +#define CCM_COMMON_START 317 + {OP_WR, CCM_REG_XX_OVFL_EVNT_ID, 0x32}, + {OP_WR, CCM_REG_CQM_CCM_HDR_P, 0x2150020}, + {OP_WR, CCM_REG_CQM_CCM_HDR_S, 0x2150020}, + {OP_WR, CCM_REG_ERR_CCM_HDR, 0x8100000}, + {OP_WR, CCM_REG_ERR_EVNT_ID, 0x33}, + {OP_WR, CCM_REG_TSEM_WEIGHT, 0x0}, + {OP_WR, CCM_REG_XSEM_WEIGHT, 0x4}, + {OP_WR, CCM_REG_USEM_WEIGHT, 0x4}, + {OP_ZR, CCM_REG_PBF_WEIGHT, 0x2}, + {OP_WR, CCM_REG_CQM_P_WEIGHT, 0x2}, + {OP_WR, CCM_REG_CCM_CQM_USE_Q, 0x1}, + {OP_WR, CCM_REG_CNT_AUX1_Q, 0x2}, + {OP_WR, CCM_REG_CNT_AUX2_Q, 0x2}, + {OP_WR, CCM_REG_INV_DONE_Q, 0x1}, + {OP_WR, CCM_REG_GR_ARB_TYPE, 0x1}, + {OP_WR, CCM_REG_GR_LD0_PR, 0x1}, + {OP_WR, CCM_REG_GR_LD1_PR, 0x2}, + {OP_WR, CCM_REG_CFC_INIT_CRD, 0x1}, + {OP_WR, CCM_REG_CQM_INIT_CRD, 0x20}, + {OP_WR, CCM_REG_FIC0_INIT_CRD, 0x40}, + {OP_WR, CCM_REG_FIC1_INIT_CRD, 0x40}, + {OP_WR, CCM_REG_XX_INIT_CRD, 0x3}, + {OP_WR, CCM_REG_XX_MSG_NUM, 0x18}, + {OP_ZR, CCM_REG_XX_TABLE, 0x12}, + {OP_SW, CCM_REG_XX_DESCR_TABLE, 0x241aeb}, + {OP_WR, CCM_REG_N_SM_CTX_LD_0, 0x1}, + {OP_WR, CCM_REG_N_SM_CTX_LD_1, 0x2}, + {OP_WR, CCM_REG_N_SM_CTX_LD_2, 0x8}, + {OP_WR, CCM_REG_N_SM_CTX_LD_3, 0x8}, + {OP_ZR, CCM_REG_N_SM_CTX_LD_4, 0x4}, + {OP_WR, CCM_REG_CCM_REG0_SZ, 0x4}, + {OP_WR, CCM_REG_QOS_PHYS_QNUM0_0, 0x9}, + {OP_WR, CCM_REG_QOS_PHYS_QNUM0_1, 0x29}, + {OP_WR, CCM_REG_QOS_PHYS_QNUM1_0, 0xa}, + {OP_WR, CCM_REG_QOS_PHYS_QNUM1_1, 0x2a}, + {OP_ZR, CCM_REG_QOS_PHYS_QNUM2_0, 0x4}, + {OP_WR, CCM_REG_PHYS_QNUM1_0, 0xc}, + {OP_WR, CCM_REG_PHYS_QNUM1_1, 0x2c}, + {OP_WR, CCM_REG_PHYS_QNUM2_0, 0xb}, + {OP_WR, CCM_REG_PHYS_QNUM2_1, 0x2b}, + {OP_ZR, CCM_REG_PHYS_QNUM3_0, 0x2}, + {OP_WR, CCM_REG_CCM_STORM0_IFEN, 0x1}, + {OP_WR, CCM_REG_CCM_STORM1_IFEN, 0x1}, + {OP_WR, CCM_REG_CCM_CQM_IFEN, 0x1}, + {OP_WR, CCM_REG_STORM_CCM_IFEN, 0x1}, + {OP_WR, CCM_REG_CQM_CCM_IFEN, 0x1}, + {OP_WR, CCM_REG_CSDM_IFEN, 0x1}, + {OP_WR, CCM_REG_TSEM_IFEN, 0x1}, + {OP_WR, CCM_REG_XSEM_IFEN, 0x1}, + {OP_WR, CCM_REG_USEM_IFEN, 0x1}, + {OP_WR, CCM_REG_PBF_IFEN, 0x1}, + {OP_WR, CCM_REG_CDU_AG_WR_IFEN, 0x1}, + {OP_WR, CCM_REG_CDU_AG_RD_IFEN, 0x1}, + {OP_WR, CCM_REG_CDU_SM_WR_IFEN, 0x1}, + {OP_WR, CCM_REG_CDU_SM_RD_IFEN, 0x1}, + {OP_WR, CCM_REG_CCM_CFC_IFEN, 0x1}, +#define CCM_COMMON_END 373 +#define UCM_COMMON_START 373 + {OP_WR, UCM_REG_XX_OVFL_EVNT_ID, 0x32}, + {OP_WR, UCM_REG_UQM_UCM_HDR_P, 0x2150020}, + {OP_WR, UCM_REG_UQM_UCM_HDR_S, 0x2150020}, + {OP_WR, UCM_REG_TM_UCM_HDR, 0x30}, + {OP_WR, UCM_REG_ERR_UCM_HDR, 0x8100000}, + {OP_WR, UCM_REG_ERR_EVNT_ID, 0x33}, + {OP_WR, UCM_REG_EXPR_EVNT_ID, 0x30}, + {OP_WR, UCM_REG_STOP_EVNT_ID, 0x31}, + {OP_WR, UCM_REG_TSEM_WEIGHT, 0x3}, + {OP_WR, UCM_REG_CSEM_WEIGHT, 0x0}, + {OP_WR, UCM_REG_CP_WEIGHT, 0x0}, + {OP_WR, UCM_REG_UQM_P_WEIGHT, 0x6}, + {OP_WR, UCM_REG_UCM_UQM_USE_Q, 0x1}, + {OP_WR, UCM_REG_INV_CFLG_Q, 0x1}, + {OP_WR, UCM_REG_GR_ARB_TYPE, 0x1}, + {OP_WR, UCM_REG_GR_LD0_PR, 0x1}, + {OP_WR, UCM_REG_GR_LD1_PR, 0x2}, + {OP_WR, UCM_REG_CFC_INIT_CRD, 0x1}, + {OP_WR, UCM_REG_FIC0_INIT_CRD, 0x40}, + {OP_WR, UCM_REG_FIC1_INIT_CRD, 0x40}, + {OP_WR, UCM_REG_TM_INIT_CRD, 0x4}, + {OP_WR, UCM_REG_UQM_INIT_CRD, 0x20}, + {OP_WR, UCM_REG_XX_INIT_CRD, 0xc}, + {OP_WR, UCM_REG_XX_MSG_NUM, 0x20}, + {OP_ZR, UCM_REG_XX_TABLE, 0x12}, + {OP_SW, UCM_REG_XX_DESCR_TABLE, 0x201b0f}, + {OP_WR, UCM_REG_N_SM_CTX_LD_0, 0xa}, + {OP_WR, UCM_REG_N_SM_CTX_LD_1, 0x7}, + {OP_WR, UCM_REG_N_SM_CTX_LD_2, 0xf}, + {OP_WR, UCM_REG_N_SM_CTX_LD_3, 0x10}, + {OP_ZR, UCM_REG_N_SM_CTX_LD_4, 0x4}, + {OP_WR, UCM_REG_UCM_REG0_SZ, 0x3}, + {OP_WR, UCM_REG_PHYS_QNUM0_0, 0xf}, + {OP_WR, UCM_REG_PHYS_QNUM0_1, 0x2f}, + {OP_WR, UCM_REG_PHYS_QNUM1_0, 0xe}, + {OP_WR, UCM_REG_PHYS_QNUM1_1, 0x2e}, + {OP_WR, UCM_REG_UCM_STORM0_IFEN, 0x1}, + {OP_WR, UCM_REG_UCM_STORM1_IFEN, 0x1}, + {OP_WR, UCM_REG_UCM_UQM_IFEN, 0x1}, + {OP_WR, UCM_REG_STORM_UCM_IFEN, 0x1}, + {OP_WR, UCM_REG_UQM_UCM_IFEN, 0x1}, + {OP_WR, UCM_REG_USDM_IFEN, 0x1}, + {OP_WR, UCM_REG_TM_UCM_IFEN, 0x1}, + {OP_WR, UCM_REG_UCM_TM_IFEN, 0x1}, + {OP_WR, UCM_REG_TSEM_IFEN, 0x1}, + {OP_WR, UCM_REG_CSEM_IFEN, 0x1}, + {OP_WR, UCM_REG_XSEM_IFEN, 0x1}, + {OP_WR, UCM_REG_DORQ_IFEN, 0x1}, + {OP_WR, UCM_REG_CDU_AG_WR_IFEN, 0x1}, + {OP_WR, UCM_REG_CDU_AG_RD_IFEN, 0x1}, + {OP_WR, UCM_REG_CDU_SM_WR_IFEN, 0x1}, + {OP_WR, UCM_REG_CDU_SM_RD_IFEN, 0x1}, + {OP_WR, UCM_REG_UCM_CFC_IFEN, 0x1}, +#define UCM_COMMON_END 426 +#define USEM_COMMON_START 426 + {OP_RD, USEM_REG_MSG_NUM_FIC0, 0x0}, + {OP_RD, USEM_REG_MSG_NUM_FIC1, 0x0}, + {OP_RD, USEM_REG_MSG_NUM_FOC0, 0x0}, + {OP_RD, USEM_REG_MSG_NUM_FOC1, 0x0}, + {OP_RD, USEM_REG_MSG_NUM_FOC2, 0x0}, + {OP_RD, USEM_REG_MSG_NUM_FOC3, 0x0}, + {OP_WR, USEM_REG_ARB_ELEMENT0, 0x1}, + {OP_WR, USEM_REG_ARB_ELEMENT1, 0x2}, + {OP_WR, USEM_REG_ARB_ELEMENT2, 0x3}, + {OP_WR, USEM_REG_ARB_ELEMENT3, 0x0}, + {OP_WR, USEM_REG_ARB_ELEMENT4, 0x4}, + {OP_WR, USEM_REG_ARB_CYCLE_SIZE, 0x1}, + {OP_WR, USEM_REG_TS_0_AS, 0x0}, + {OP_WR, USEM_REG_TS_1_AS, 0x1}, + {OP_WR, USEM_REG_TS_2_AS, 0x4}, + {OP_WR, USEM_REG_TS_3_AS, 0x0}, + {OP_WR, USEM_REG_TS_4_AS, 0x1}, + {OP_WR, USEM_REG_TS_5_AS, 0x3}, + {OP_WR, USEM_REG_TS_6_AS, 0x0}, + {OP_WR, USEM_REG_TS_7_AS, 0x1}, + {OP_WR, USEM_REG_TS_8_AS, 0x4}, + {OP_WR, USEM_REG_TS_9_AS, 0x0}, + {OP_WR, USEM_REG_TS_10_AS, 0x1}, + {OP_WR, USEM_REG_TS_11_AS, 0x3}, + {OP_WR, USEM_REG_TS_12_AS, 0x0}, + {OP_WR, USEM_REG_TS_13_AS, 0x1}, + {OP_WR, USEM_REG_TS_14_AS, 0x4}, + {OP_WR, USEM_REG_TS_15_AS, 0x0}, + {OP_WR, USEM_REG_TS_16_AS, 0x4}, + {OP_WR, USEM_REG_TS_17_AS, 0x3}, + {OP_ZR, USEM_REG_TS_18_AS, 0x2}, + {OP_WR, USEM_REG_ENABLE_IN, 0x3fff}, + {OP_WR, USEM_REG_ENABLE_OUT, 0x3ff}, + {OP_WR, USEM_REG_FIC0_DISABLE, 0x0}, + {OP_WR, USEM_REG_FIC1_DISABLE, 0x0}, + {OP_WR, USEM_REG_PAS_DISABLE, 0x0}, + {OP_WR, USEM_REG_THREADS_LIST, 0xffff}, + {OP_ZR, USEM_REG_PASSIVE_BUFFER, 0x800}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x18bc0, 0x1}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x18000, 0x1a}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x18040, 0x4e}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x18080, 0x10}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x180c0, 0x20}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x18300, 0x7a120}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x183c0, 0x1f4}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x18380, 0x1dcd6500}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x5000, 0x102}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1020, 0xc8}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1000, 0x2}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1e20, 0x40}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3000, 0x400}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x2400, 0x2}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x2408, 0x2}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x2410, 0x6}, + {OP_SW, USEM_REG_FAST_MEMORY + 0x2410 + 0x18, 0x21b2f}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x4b68, 0x2}, + {OP_SW, USEM_REG_FAST_MEMORY + 0x4b68 + 0x8, 0x21b31}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x4b10, 0x2}, + {OP_SW, USEM_REG_FAST_MEMORY + 0x2c30, 0x21b33}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x10800, 0x1000000}, + {OP_SW, USEM_REG_FAST_MEMORY + 0x10c00, 0x101b35}, + {OP_WR, USEM_REG_FAST_MEMORY + 0x10800, 0x0}, + {OP_SW, USEM_REG_FAST_MEMORY + 0x10c40, 0x101b45}, + {OP_ZP, USEM_REG_INT_TABLE, 0xb41b55}, + {OP_ZP, USEM_REG_PRAM, 0x32d01b82}, + {OP_ZP, USEM_REG_PRAM + 0x8000, 0x32172836}, + {OP_ZP, USEM_REG_PRAM + 0x10000, 0x1a7a34bc}, + {OP_ZP, USEM_REG_PRAM + 0x18000, 0x5f3b5b}, + {OP_ZP, USEM_REG_PRAM + 0x20000, 0x5f3b73}, + {OP_ZP, USEM_REG_PRAM + 0x28000, 0x5f3b8b}, + {OP_ZP, USEM_REG_PRAM + 0x30000, 0x5f3ba3}, + {OP_ZP, USEM_REG_PRAM + 0x38000, 0x5f3bbb}, +#define USEM_COMMON_END 498 +#define USEM_PORT0_START 498 + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1400, 0xa0}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1900, 0xa}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1950, 0x2e}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1d00, 0x24}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3000, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3100, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3200, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3300, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3400, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3500, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3600, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3700, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3800, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3900, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3a00, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3b00, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3c00, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3d00, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3e00, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3f00, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x2400, 0x2}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x4b78, 0x52}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x4e08, 0xc}, +#define USEM_PORT0_END 521 +#define USEM_PORT1_START 521 + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1680, 0xa0}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1928, 0xa}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1a08, 0x2e}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x1d90, 0x24}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3080, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3180, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3280, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3380, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3480, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3580, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3680, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3780, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3880, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3980, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3a80, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3b80, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3c80, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3d80, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3e80, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x3f80, 0x20}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x2408, 0x2}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x4cc0, 0x52}, + {OP_ZR, USEM_REG_FAST_MEMORY + 0x4e38, 0xc}, +#define USEM_PORT1_END 544 +#define CSEM_COMMON_START 544 + {OP_RD, CSEM_REG_MSG_NUM_FIC0, 0x0}, + {OP_RD, CSEM_REG_MSG_NUM_FIC1, 0x0}, + {OP_RD, CSEM_REG_MSG_NUM_FOC0, 0x0}, + {OP_RD, CSEM_REG_MSG_NUM_FOC1, 0x0}, + {OP_RD, CSEM_REG_MSG_NUM_FOC2, 0x0}, + {OP_RD, CSEM_REG_MSG_NUM_FOC3, 0x0}, + {OP_WR, CSEM_REG_ARB_ELEMENT0, 0x1}, + {OP_WR, CSEM_REG_ARB_ELEMENT1, 0x2}, + {OP_WR, CSEM_REG_ARB_ELEMENT2, 0x3}, + {OP_WR, CSEM_REG_ARB_ELEMENT3, 0x0}, + {OP_WR, CSEM_REG_ARB_ELEMENT4, 0x4}, + {OP_WR, CSEM_REG_ARB_CYCLE_SIZE, 0x1}, + {OP_WR, CSEM_REG_TS_0_AS, 0x0}, + {OP_WR, CSEM_REG_TS_1_AS, 0x1}, + {OP_WR, CSEM_REG_TS_2_AS, 0x4}, + {OP_WR, CSEM_REG_TS_3_AS, 0x0}, + {OP_WR, CSEM_REG_TS_4_AS, 0x1}, + {OP_WR, CSEM_REG_TS_5_AS, 0x3}, + {OP_WR, CSEM_REG_TS_6_AS, 0x0}, + {OP_WR, CSEM_REG_TS_7_AS, 0x1}, + {OP_WR, CSEM_REG_TS_8_AS, 0x4}, + {OP_WR, CSEM_REG_TS_9_AS, 0x0}, + {OP_WR, CSEM_REG_TS_10_AS, 0x1}, + {OP_WR, CSEM_REG_TS_11_AS, 0x3}, + {OP_WR, CSEM_REG_TS_12_AS, 0x0}, + {OP_WR, CSEM_REG_TS_13_AS, 0x1}, + {OP_WR, CSEM_REG_TS_14_AS, 0x4}, + {OP_WR, CSEM_REG_TS_15_AS, 0x0}, + {OP_WR, CSEM_REG_TS_16_AS, 0x4}, + {OP_WR, CSEM_REG_TS_17_AS, 0x3}, + {OP_ZR, CSEM_REG_TS_18_AS, 0x2}, + {OP_WR, CSEM_REG_ENABLE_IN, 0x3fff}, + {OP_WR, CSEM_REG_ENABLE_OUT, 0x3ff}, + {OP_WR, CSEM_REG_FIC0_DISABLE, 0x0}, + {OP_WR, CSEM_REG_FIC1_DISABLE, 0x0}, + {OP_WR, CSEM_REG_PAS_DISABLE, 0x0}, + {OP_WR, CSEM_REG_THREADS_LIST, 0xffff}, + {OP_ZR, CSEM_REG_PASSIVE_BUFFER, 0x800}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x18bc0, 0x1}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x18000, 0x10}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x18040, 0x12}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x18080, 0x30}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x180c0, 0xe}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x183c0, 0x1f4}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x5000, 0x42}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1020, 0xc8}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1000, 0x2}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x2000, 0xc0}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x3070, 0x80}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x4280, 0x4}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x25c0, 0x240}, + {OP_SW, CSEM_REG_FAST_MEMORY + 0x25c0 + 0x900, 0x83bd3}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x10800, 0x13fffff}, + {OP_SW, CSEM_REG_FAST_MEMORY + 0x10c00, 0x103bdb}, + {OP_WR, CSEM_REG_FAST_MEMORY + 0x10800, 0x0}, + {OP_SW, CSEM_REG_FAST_MEMORY + 0x10c40, 0x103beb}, + {OP_ZP, CSEM_REG_INT_TABLE, 0x5f3bfb}, + {OP_ZP, CSEM_REG_PRAM, 0x32423c13}, + {OP_ZP, CSEM_REG_PRAM + 0x8000, 0xf2148a4}, + {OP_ZP, CSEM_REG_PRAM + 0x10000, 0x5f4c6d}, + {OP_ZP, CSEM_REG_PRAM + 0x18000, 0x5f4c85}, + {OP_ZP, CSEM_REG_PRAM + 0x20000, 0x5f4c9d}, + {OP_ZP, CSEM_REG_PRAM + 0x28000, 0x5f4cb5}, + {OP_ZP, CSEM_REG_PRAM + 0x30000, 0x5f4ccd}, + {OP_ZP, CSEM_REG_PRAM + 0x38000, 0x5f4ce5}, +#define CSEM_COMMON_END 609 +#define CSEM_PORT0_START 609 + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1400, 0xa0}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1900, 0x10}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1980, 0x30}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x2300, 0x2}, + {OP_SW, CSEM_REG_FAST_MEMORY + 0x2300 + 0x8, 0x24cfd}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x3040, 0x6}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x2410, 0x30}, +#define CSEM_PORT0_END 616 +#define CSEM_PORT1_START 616 + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1680, 0xa0}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1940, 0x10}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x1a40, 0x30}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x2310, 0x2}, + {OP_SW, CSEM_REG_FAST_MEMORY + 0x2310 + 0x8, 0x24cff}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x3058, 0x6}, + {OP_ZR, CSEM_REG_FAST_MEMORY + 0x24d0, 0x30}, +#define CSEM_PORT1_END 623 +#define XPB_COMMON_START 623 + {OP_WR, GRCBASE_XPB + PB_REG_CONTROL, 0x20}, +#define XPB_COMMON_END 624 +#define DQ_COMMON_START 624 + {OP_WR, DORQ_REG_MODE_ACT, 0x2}, + {OP_WR, DORQ_REG_NORM_CID_OFST, 0x3}, + {OP_WR, DORQ_REG_OUTST_REQ, 0x4}, + {OP_WR, DORQ_REG_DPM_CID_ADDR, 0x8}, + {OP_WR, DORQ_REG_RSP_INIT_CRD, 0x2}, + {OP_WR, DORQ_REG_NORM_CMHEAD_TX, 0x90}, + {OP_WR, DORQ_REG_CMHEAD_RX, 0x90}, + {OP_WR, DORQ_REG_SHRT_CMHEAD, 0x800090}, + {OP_WR, DORQ_REG_ERR_CMHEAD, 0x8140000}, + {OP_WR, DORQ_REG_AGG_CMD0, 0x8a}, + {OP_WR, DORQ_REG_AGG_CMD1, 0x80}, + {OP_WR, DORQ_REG_AGG_CMD2, 0x90}, + {OP_WR, DORQ_REG_AGG_CMD3, 0x80}, + {OP_WR, DORQ_REG_SHRT_ACT_CNT, 0x6}, + {OP_WR, DORQ_REG_DQ_FIFO_FULL_TH, 0x7d0}, + {OP_WR, DORQ_REG_DQ_FIFO_AFULL_TH, 0x76c}, + {OP_WR, DORQ_REG_REGN, 0x7c1004}, + {OP_WR, DORQ_REG_IF_EN, 0xf}, +#define DQ_COMMON_END 642 +#define TIMERS_COMMON_START 642 + {OP_ZR, TM_REG_CLIN_PRIOR0_CLIENT, 0x2}, + {OP_WR, TM_REG_LIN_SETCLR_FIFO_ALFULL_THR, 0x1c}, + {OP_WR, TM_REG_CFC_AC_CRDCNT_VAL, 0x1}, + {OP_WR, TM_REG_CFC_CLD_CRDCNT_VAL, 0x1}, + {OP_WR, TM_REG_CLOUT_CRDCNT0_VAL, 0x1}, + {OP_WR, TM_REG_CLOUT_CRDCNT1_VAL, 0x1}, + {OP_WR, TM_REG_CLOUT_CRDCNT2_VAL, 0x1}, + {OP_WR, TM_REG_EXP_CRDCNT_VAL, 0x1}, + {OP_WR, TM_REG_PCIARB_CRDCNT_VAL, 0x2}, + {OP_WR, TM_REG_TIMER_TICK_SIZE, 0x3d090}, + {OP_WR, TM_REG_CL0_CONT_REGION, 0x8}, + {OP_WR, TM_REG_CL1_CONT_REGION, 0xc}, + {OP_WR, TM_REG_CL2_CONT_REGION, 0x10}, + {OP_WR, TM_REG_TM_CONTEXT_REGION, 0x20}, + {OP_WR, TM_REG_EN_TIMERS, 0x1}, + {OP_WR, TM_REG_EN_REAL_TIME_CNT, 0x1}, + {OP_WR, TM_REG_EN_CL0_INPUT, 0x1}, + {OP_WR, TM_REG_EN_CL1_INPUT, 0x1}, + {OP_WR, TM_REG_EN_CL2_INPUT, 0x1}, +#define TIMERS_COMMON_END 661 +#define TIMERS_PORT0_START 661 + {OP_ZR, TM_REG_LIN0_PHY_ADDR, 0x2}, +#define TIMERS_PORT0_END 662 +#define TIMERS_PORT1_START 662 + {OP_ZR, TM_REG_LIN1_PHY_ADDR, 0x2}, +#define TIMERS_PORT1_END 663 +#define XSDM_COMMON_START 663 + {OP_WR, XSDM_REG_CFC_RSP_START_ADDR, 0xa14}, + {OP_WR, XSDM_REG_CMP_COUNTER_START_ADDR, 0xa00}, + {OP_WR, XSDM_REG_Q_COUNTER_START_ADDR, 0xa04}, + {OP_WR, XSDM_REG_CMP_COUNTER_MAX0, 0xffff}, + {OP_WR, XSDM_REG_CMP_COUNTER_MAX1, 0xffff}, + {OP_WR, XSDM_REG_CMP_COUNTER_MAX2, 0xffff}, + {OP_WR, XSDM_REG_CMP_COUNTER_MAX3, 0xffff}, + {OP_WR, XSDM_REG_AGG_INT_EVENT_0, 0x20}, + {OP_WR, XSDM_REG_AGG_INT_EVENT_1, 0x20}, + {OP_ZR, XSDM_REG_AGG_INT_EVENT_2, 0x5e}, + {OP_WR, XSDM_REG_AGG_INT_MODE_0, 0x1}, + {OP_ZR, XSDM_REG_AGG_INT_MODE_1, 0x1f}, + {OP_WR, XSDM_REG_ENABLE_IN1, 0x7ffffff}, + {OP_WR, XSDM_REG_ENABLE_IN2, 0x3f}, + {OP_WR, XSDM_REG_ENABLE_OUT1, 0x7ffffff}, + {OP_WR, XSDM_REG_ENABLE_OUT2, 0xf}, + {OP_RD, XSDM_REG_NUM_OF_Q0_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q1_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q3_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q4_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q5_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q6_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q7_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q8_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q9_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q10_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_Q11_CMD, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_PKT_END_MSG, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_PXP_ASYNC_REQ, 0x0}, + {OP_RD, XSDM_REG_NUM_OF_ACK_AFTER_PLACE, 0x0}, + {OP_WR, XSDM_REG_TIMER_TICK, 0x3e8}, +#define XSDM_COMMON_END 694 +#define QM_COMMON_START 694 + {OP_WR, QM_REG_ACTCTRINITVAL_0, 0x6}, + {OP_WR, QM_REG_ACTCTRINITVAL_1, 0x5}, + {OP_WR, QM_REG_ACTCTRINITVAL_2, 0xa}, + {OP_WR, QM_REG_ACTCTRINITVAL_3, 0x5}, + {OP_WR, QM_REG_PCIREQAT, 0x2}, + {OP_WR, QM_REG_CMINITCRD_0, 0x4}, + {OP_WR, QM_REG_CMINITCRD_1, 0x4}, + {OP_WR, QM_REG_CMINITCRD_2, 0x4}, + {OP_WR, QM_REG_CMINITCRD_3, 0x4}, + {OP_WR, QM_REG_CMINITCRD_4, 0x4}, + {OP_WR, QM_REG_CMINITCRD_5, 0x4}, + {OP_WR, QM_REG_CMINITCRD_6, 0x4}, + {OP_WR, QM_REG_CMINITCRD_7, 0x4}, + {OP_WR, QM_REG_OUTLDREQ, 0x4}, + {OP_WR, QM_REG_CTXREG_0, 0x7c}, + {OP_WR, QM_REG_CTXREG_1, 0x3d}, + {OP_WR, QM_REG_CTXREG_2, 0x3f}, + {OP_WR, QM_REG_CTXREG_3, 0x9c}, + {OP_WR, QM_REG_ENSEC, 0x7}, + {OP_ZR, QM_REG_QVOQIDX_0, 0x5}, + {OP_WR, QM_REG_WRRWEIGHTS_0, 0x1010101}, + {OP_WR, QM_REG_QVOQIDX_5, 0x0}, + {OP_WR, QM_REG_QVOQIDX_6, 0x4}, + {OP_WR, QM_REG_QVOQIDX_7, 0x4}, + {OP_WR, QM_REG_QVOQIDX_8, 0x2}, + {OP_WR, QM_REG_WRRWEIGHTS_1, 0x8012004}, + {OP_WR, QM_REG_QVOQIDX_9, 0x5}, + {OP_WR, QM_REG_QVOQIDX_10, 0x5}, + {OP_WR, QM_REG_QVOQIDX_11, 0x5}, + {OP_WR, QM_REG_QVOQIDX_12, 0x5}, + {OP_WR, QM_REG_WRRWEIGHTS_2, 0x20081001}, + {OP_WR, QM_REG_QVOQIDX_13, 0x8}, + {OP_WR, QM_REG_QVOQIDX_14, 0x6}, + {OP_WR, QM_REG_QVOQIDX_15, 0x7}, + {OP_WR, QM_REG_QVOQIDX_16, 0x0}, + {OP_WR, QM_REG_WRRWEIGHTS_3, 0x1010120}, + {OP_ZR, QM_REG_QVOQIDX_17, 0x4}, + {OP_WR, QM_REG_WRRWEIGHTS_4, 0x1010101}, + {OP_ZR, QM_REG_QVOQIDX_21, 0x4}, + {OP_WR, QM_REG_WRRWEIGHTS_5, 0x1010101}, + {OP_ZR, QM_REG_QVOQIDX_25, 0x4}, + {OP_WR, QM_REG_WRRWEIGHTS_6, 0x1010101}, + {OP_ZR, QM_REG_QVOQIDX_29, 0x3}, + {OP_WR, QM_REG_QVOQIDX_32, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_7, 0x1010101}, + {OP_WR, QM_REG_QVOQIDX_33, 0x1}, + {OP_WR, QM_REG_QVOQIDX_34, 0x1}, + {OP_WR, QM_REG_QVOQIDX_35, 0x1}, + {OP_WR, QM_REG_QVOQIDX_36, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_8, 0x1010101}, + {OP_WR, QM_REG_QVOQIDX_37, 0x1}, + {OP_WR, QM_REG_QVOQIDX_38, 0x4}, + {OP_WR, QM_REG_QVOQIDX_39, 0x4}, + {OP_WR, QM_REG_QVOQIDX_40, 0x2}, + {OP_WR, QM_REG_WRRWEIGHTS_9, 0x8012004}, + {OP_WR, QM_REG_QVOQIDX_41, 0x5}, + {OP_WR, QM_REG_QVOQIDX_42, 0x5}, + {OP_WR, QM_REG_QVOQIDX_43, 0x5}, + {OP_WR, QM_REG_QVOQIDX_44, 0x5}, + {OP_WR, QM_REG_WRRWEIGHTS_10, 0x20081001}, + {OP_WR, QM_REG_QVOQIDX_45, 0x8}, + {OP_WR, QM_REG_QVOQIDX_46, 0x6}, + {OP_WR, QM_REG_QVOQIDX_47, 0x7}, + {OP_WR, QM_REG_QVOQIDX_48, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_11, 0x1010120}, + {OP_WR, QM_REG_QVOQIDX_49, 0x1}, + {OP_WR, QM_REG_QVOQIDX_50, 0x1}, + {OP_WR, QM_REG_QVOQIDX_51, 0x1}, + {OP_WR, QM_REG_QVOQIDX_52, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_12, 0x1010101}, + {OP_WR, QM_REG_QVOQIDX_53, 0x1}, + {OP_WR, QM_REG_QVOQIDX_54, 0x1}, + {OP_WR, QM_REG_QVOQIDX_55, 0x1}, + {OP_WR, QM_REG_QVOQIDX_56, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_13, 0x1010101}, + {OP_WR, QM_REG_QVOQIDX_57, 0x1}, + {OP_WR, QM_REG_QVOQIDX_58, 0x1}, + {OP_WR, QM_REG_QVOQIDX_59, 0x1}, + {OP_WR, QM_REG_QVOQIDX_60, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_14, 0x1010101}, + {OP_WR, QM_REG_QVOQIDX_61, 0x1}, + {OP_WR, QM_REG_QVOQIDX_62, 0x1}, + {OP_WR, QM_REG_QVOQIDX_63, 0x1}, + {OP_WR, QM_REG_WRRWEIGHTS_15, 0x1010101}, + {OP_WR, QM_REG_VOQQMASK_0_LSB, 0xffff003f}, + {OP_ZR, QM_REG_VOQQMASK_0_MSB, 0x2}, + {OP_WR, QM_REG_VOQQMASK_1_MSB, 0xffff003f}, + {OP_WR, QM_REG_VOQQMASK_2_LSB, 0x100}, + {OP_WR, QM_REG_VOQQMASK_2_MSB, 0x100}, + {OP_ZR, QM_REG_VOQQMASK_3_LSB, 0x2}, + {OP_WR, QM_REG_VOQQMASK_4_LSB, 0xc0}, + {OP_WR, QM_REG_VOQQMASK_4_MSB, 0xc0}, + {OP_WR, QM_REG_VOQQMASK_5_LSB, 0x1e00}, + {OP_WR, QM_REG_VOQQMASK_5_MSB, 0x1e00}, + {OP_WR, QM_REG_VOQQMASK_6_LSB, 0x4000}, + {OP_WR, QM_REG_VOQQMASK_6_MSB, 0x4000}, + {OP_WR, QM_REG_VOQQMASK_7_LSB, 0x8000}, + {OP_WR, QM_REG_VOQQMASK_7_MSB, 0x8000}, + {OP_WR, QM_REG_VOQQMASK_8_LSB, 0x2000}, + {OP_WR, QM_REG_VOQQMASK_8_MSB, 0x2000}, + {OP_ZR, QM_REG_VOQQMASK_9_LSB, 0x7}, + {OP_WR, QM_REG_VOQPORT_1, 0x1}, + {OP_ZR, QM_REG_VOQPORT_2, 0xa}, + {OP_WR, QM_REG_CMINTVOQMASK_0, 0xc08}, + {OP_WR, QM_REG_CMINTVOQMASK_1, 0x40}, + {OP_WR, QM_REG_CMINTVOQMASK_2, 0x100}, + {OP_WR, QM_REG_CMINTVOQMASK_3, 0x20}, + {OP_WR, QM_REG_CMINTVOQMASK_4, 0x17}, + {OP_WR, QM_REG_CMINTVOQMASK_5, 0x80}, + {OP_WR, QM_REG_CMINTVOQMASK_6, 0x200}, + {OP_WR, QM_REG_CMINTVOQMASK_7, 0x0}, + {OP_WR, QM_REG_HWAEMPTYMASK_LSB, 0xffff01ff}, + {OP_WR, QM_REG_HWAEMPTYMASK_MSB, 0xffff01ff}, + {OP_WR, QM_REG_ENBYPVOQMASK, 0x13}, + {OP_WR, QM_REG_VOQCREDITAFULLTHR, 0x13f}, + {OP_WR, QM_REG_VOQINITCREDIT_0, 0x140}, + {OP_WR, QM_REG_VOQINITCREDIT_1, 0x140}, + {OP_ZR, QM_REG_VOQINITCREDIT_2, 0x2}, + {OP_WR, QM_REG_VOQINITCREDIT_4, 0xc0}, + {OP_ZR, QM_REG_VOQINITCREDIT_5, 0x7}, + {OP_WR, QM_REG_TASKCRDCOST_0, 0x48}, + {OP_WR, QM_REG_TASKCRDCOST_1, 0x48}, + {OP_ZR, QM_REG_TASKCRDCOST_2, 0x2}, + {OP_WR, QM_REG_TASKCRDCOST_4, 0x48}, + {OP_ZR, QM_REG_TASKCRDCOST_5, 0x7}, + {OP_WR, QM_REG_BYTECRDINITVAL, 0x8000}, + {OP_WR, QM_REG_BYTECRDCOST, 0x25e4}, + {OP_WR, QM_REG_BYTECREDITAFULLTHR, 0x7fff}, + {OP_WR, QM_REG_ENBYTECRD_LSB, 0x7}, + {OP_WR, QM_REG_ENBYTECRD_MSB, 0x7}, + {OP_WR, QM_REG_BYTECRDPORT_LSB, 0x0}, + {OP_WR, QM_REG_BYTECRDPORT_MSB, 0xffffffff}, + {OP_WR, QM_REG_FUNCNUMSEL_LSB, 0x0}, + {OP_WR, QM_REG_FUNCNUMSEL_MSB, 0xffffffff}, + {OP_WR, QM_REG_CMINTEN, 0xff}, +#define QM_COMMON_END 829 +#define PBF_COMMON_START 829 + {OP_WR, PBF_REG_INIT, 0x1}, + {OP_WR, PBF_REG_INIT_P4, 0x1}, + {OP_WR, PBF_REG_MAC_LB_ENABLE, 0x1}, + {OP_WR, PBF_REG_IF_ENABLE_REG, 0x7fff}, + {OP_WR, PBF_REG_INIT_P4, 0x0}, + {OP_WR, PBF_REG_INIT, 0x0}, + {OP_WR, PBF_REG_DISABLE_NEW_TASK_PROC_P4, 0x0}, +#define PBF_COMMON_END 836 +#define PBF_PORT0_START 836 + {OP_WR, PBF_REG_INIT_P0, 0x1}, + {OP_WR, PBF_REG_MAC_IF0_ENABLE, 0x1}, + {OP_WR, PBF_REG_INIT_P0, 0x0}, + {OP_WR, PBF_REG_DISABLE_NEW_TASK_PROC_P0, 0x0}, +#define PBF_PORT0_END 840 +#define PBF_PORT1_START 840 + {OP_WR, PBF_REG_INIT_P1, 0x1}, + {OP_WR, PBF_REG_MAC_IF1_ENABLE, 0x1}, + {OP_WR, PBF_REG_INIT_P1, 0x0}, + {OP_WR, PBF_REG_DISABLE_NEW_TASK_PROC_P1, 0x0}, +#define PBF_PORT1_END 844 +#define XCM_COMMON_START 844 + {OP_WR, XCM_REG_XX_OVFL_EVNT_ID, 0x32}, + {OP_WR, XCM_REG_XQM_XCM_HDR_P, 0x3150020}, + {OP_WR, XCM_REG_XQM_XCM_HDR_S, 0x3150020}, + {OP_WR, XCM_REG_TM_XCM_HDR, 0x1000030}, + {OP_WR, XCM_REG_ERR_XCM_HDR, 0x8100000}, + {OP_WR, XCM_REG_ERR_EVNT_ID, 0x33}, + {OP_WR, XCM_REG_EXPR_EVNT_ID, 0x30}, + {OP_WR, XCM_REG_STOP_EVNT_ID, 0x31}, + {OP_WR, XCM_REG_STORM_WEIGHT, 0x2}, + {OP_WR, XCM_REG_TSEM_WEIGHT, 0x5}, + {OP_WR, XCM_REG_CSEM_WEIGHT, 0x2}, + {OP_WR, XCM_REG_USEM_WEIGHT, 0x2}, + {OP_WR, XCM_REG_PBF_WEIGHT, 0x7}, + {OP_WR, XCM_REG_NIG1_WEIGHT, 0x1}, + {OP_WR, XCM_REG_CP_WEIGHT, 0x0}, + {OP_WR, XCM_REG_XSDM_WEIGHT, 0x5}, + {OP_WR, XCM_REG_XQM_P_WEIGHT, 0x3}, + {OP_WR, XCM_REG_XCM_XQM_USE_Q, 0x1}, + {OP_WR, XCM_REG_XQM_BYP_ACT_UPD, 0x6}, + {OP_WR, XCM_REG_UNA_GT_NXT_Q, 0x0}, + {OP_WR, XCM_REG_AUX1_Q, 0x2}, + {OP_WR, XCM_REG_AUX_CNT_FLG_Q_19, 0x1}, + {OP_WR, XCM_REG_GR_ARB_TYPE, 0x1}, + {OP_WR, XCM_REG_GR_LD0_PR, 0x1}, + {OP_WR, XCM_REG_GR_LD1_PR, 0x2}, + {OP_WR, XCM_REG_CFC_INIT_CRD, 0x1}, + {OP_WR, XCM_REG_FIC0_INIT_CRD, 0x40}, + {OP_WR, XCM_REG_FIC1_INIT_CRD, 0x40}, + {OP_WR, XCM_REG_TM_INIT_CRD, 0x4}, + {OP_WR, XCM_REG_XQM_INIT_CRD, 0x20}, + {OP_WR, XCM_REG_XX_INIT_CRD, 0x2}, + {OP_WR, XCM_REG_XX_MSG_NUM, 0x1f}, + {OP_ZR, XCM_REG_XX_TABLE, 0x12}, + {OP_SW, XCM_REG_XX_DESCR_TABLE, 0x1f4d01}, + {OP_WR, XCM_REG_N_SM_CTX_LD_0, 0xf}, + {OP_WR, XCM_REG_N_SM_CTX_LD_1, 0x7}, + {OP_WR, XCM_REG_N_SM_CTX_LD_2, 0xb}, + {OP_WR, XCM_REG_N_SM_CTX_LD_3, 0xe}, + {OP_ZR, XCM_REG_N_SM_CTX_LD_4, 0x4}, + {OP_WR, XCM_REG_XCM_REG0_SZ, 0x4}, + {OP_WR, XCM_REG_XCM_STORM0_IFEN, 0x1}, + {OP_WR, XCM_REG_XCM_STORM1_IFEN, 0x1}, + {OP_WR, XCM_REG_XCM_XQM_IFEN, 0x1}, + {OP_WR, XCM_REG_STORM_XCM_IFEN, 0x1}, + {OP_WR, XCM_REG_XQM_XCM_IFEN, 0x1}, + {OP_WR, XCM_REG_XSDM_IFEN, 0x1}, + {OP_WR, XCM_REG_TM_XCM_IFEN, 0x1}, + {OP_WR, XCM_REG_XCM_TM_IFEN, 0x1}, + {OP_WR, XCM_REG_TSEM_IFEN, 0x1}, + {OP_WR, XCM_REG_CSEM_IFEN, 0x1}, + {OP_WR, XCM_REG_USEM_IFEN, 0x1}, + {OP_WR, XCM_REG_DORQ_IFEN, 0x1}, + {OP_WR, XCM_REG_PBF_IFEN, 0x1}, + {OP_WR, XCM_REG_NIG0_IFEN, 0x1}, + {OP_WR, XCM_REG_NIG1_IFEN, 0x1}, + {OP_WR, XCM_REG_CDU_AG_WR_IFEN, 0x1}, + {OP_WR, XCM_REG_CDU_AG_RD_IFEN, 0x1}, + {OP_WR, XCM_REG_CDU_SM_WR_IFEN, 0x1}, + {OP_WR, XCM_REG_CDU_SM_RD_IFEN, 0x1}, + {OP_WR, XCM_REG_XCM_CFC_IFEN, 0x1}, +#define XCM_COMMON_END 904 +#define XCM_PORT0_START 904 + {OP_WR, XCM_REG_GLB_DEL_ACK_TMR_VAL_0, 0xc8}, + {OP_WR, XCM_REG_GLB_DEL_ACK_MAX_CNT_0, 0x2}, + {OP_WR, XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD00, 0x0}, + {OP_WR, XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD10, 0x0}, + {OP_WR, XCM_REG_WU_DA_CNT_CMD00, 0x2}, + {OP_WR, XCM_REG_WU_DA_CNT_CMD10, 0x2}, + {OP_WR, XCM_REG_WU_DA_CNT_UPD_VAL00, 0xff}, + {OP_WR, XCM_REG_WU_DA_CNT_UPD_VAL10, 0xff}, +#define XCM_PORT0_END 912 +#define XCM_PORT1_START 912 + {OP_WR, XCM_REG_GLB_DEL_ACK_TMR_VAL_1, 0xc8}, + {OP_WR, XCM_REG_GLB_DEL_ACK_MAX_CNT_1, 0x2}, + {OP_WR, XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD01, 0x0}, + {OP_WR, XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD11, 0x0}, + {OP_WR, XCM_REG_WU_DA_CNT_CMD01, 0x2}, + {OP_WR, XCM_REG_WU_DA_CNT_CMD11, 0x2}, + {OP_WR, XCM_REG_WU_DA_CNT_UPD_VAL01, 0xff}, + {OP_WR, XCM_REG_WU_DA_CNT_UPD_VAL11, 0xff}, +#define XCM_PORT1_END 920 +#define XSEM_COMMON_START 920 + {OP_RD, XSEM_REG_MSG_NUM_FIC0, 0x0}, + {OP_RD, XSEM_REG_MSG_NUM_FIC1, 0x0}, + {OP_RD, XSEM_REG_MSG_NUM_FOC0, 0x0}, + {OP_RD, XSEM_REG_MSG_NUM_FOC1, 0x0}, + {OP_RD, XSEM_REG_MSG_NUM_FOC2, 0x0}, + {OP_RD, XSEM_REG_MSG_NUM_FOC3, 0x0}, + {OP_WR, XSEM_REG_ARB_ELEMENT0, 0x1}, + {OP_WR, XSEM_REG_ARB_ELEMENT1, 0x2}, + {OP_WR, XSEM_REG_ARB_ELEMENT2, 0x3}, + {OP_WR, XSEM_REG_ARB_ELEMENT3, 0x0}, + {OP_WR, XSEM_REG_ARB_ELEMENT4, 0x4}, + {OP_WR, XSEM_REG_ARB_CYCLE_SIZE, 0x1}, + {OP_WR, XSEM_REG_TS_0_AS, 0x0}, + {OP_WR, XSEM_REG_TS_1_AS, 0x1}, + {OP_WR, XSEM_REG_TS_2_AS, 0x4}, + {OP_WR, XSEM_REG_TS_3_AS, 0x0}, + {OP_WR, XSEM_REG_TS_4_AS, 0x1}, + {OP_WR, XSEM_REG_TS_5_AS, 0x3}, + {OP_WR, XSEM_REG_TS_6_AS, 0x0}, + {OP_WR, XSEM_REG_TS_7_AS, 0x1}, + {OP_WR, XSEM_REG_TS_8_AS, 0x4}, + {OP_WR, XSEM_REG_TS_9_AS, 0x0}, + {OP_WR, XSEM_REG_TS_10_AS, 0x1}, + {OP_WR, XSEM_REG_TS_11_AS, 0x3}, + {OP_WR, XSEM_REG_TS_12_AS, 0x0}, + {OP_WR, XSEM_REG_TS_13_AS, 0x1}, + {OP_WR, XSEM_REG_TS_14_AS, 0x4}, + {OP_WR, XSEM_REG_TS_15_AS, 0x0}, + {OP_WR, XSEM_REG_TS_16_AS, 0x4}, + {OP_WR, XSEM_REG_TS_17_AS, 0x3}, + {OP_ZR, XSEM_REG_TS_18_AS, 0x2}, + {OP_WR, XSEM_REG_ENABLE_IN, 0x3fff}, + {OP_WR, XSEM_REG_ENABLE_OUT, 0x3ff}, + {OP_WR, XSEM_REG_FIC0_DISABLE, 0x0}, + {OP_WR, XSEM_REG_FIC1_DISABLE, 0x0}, + {OP_WR, XSEM_REG_PAS_DISABLE, 0x0}, + {OP_WR, XSEM_REG_THREADS_LIST, 0xffff}, + {OP_ZR, XSEM_REG_PASSIVE_BUFFER, 0x800}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18bc0, 0x1}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18000, 0x0}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18040, 0x18}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18080, 0xc}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x180c0, 0x66}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18300, 0x7a120}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x183c0, 0x1f4}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18340, 0x1f4}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x18380, 0x1dcd6500}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x55d8, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x5000, 0x48}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x1020, 0xc8}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x1000, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x5128, 0x92}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x5378, 0x0}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x5380, 0x24d20}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x5428, 0x44d22}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x1518, 0x1}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x1830, 0x0}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x1838, 0x0}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x1820, 0x24d26}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x4ac0, 0x2}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x4ad8, 0x24d28}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x4b08, 0x4}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x1f50, 0x24d2a}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x10800, 0x0}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x10c00, 0x104d2c}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x10800, 0x1000000}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x10c40, 0x84d3c}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x10800, 0x2000000}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x10c60, 0x84d44}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x10800, 0x3000000}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x10c80, 0x84d4c}, + {OP_ZP, XSEM_REG_INT_TABLE, 0x814d54}, + {OP_ZP, XSEM_REG_PRAM, 0x35774d75}, + {OP_ZP, XSEM_REG_PRAM + 0x8000, 0x36525ad3}, + {OP_ZP, XSEM_REG_PRAM + 0x10000, 0x27266868}, + {OP_ZP, XSEM_REG_PRAM + 0x18000, 0x5e7232}, + {OP_ZP, XSEM_REG_PRAM + 0x20000, 0x5e724a}, + {OP_ZP, XSEM_REG_PRAM + 0x28000, 0x5e7262}, + {OP_ZP, XSEM_REG_PRAM + 0x30000, 0x5e727a}, + {OP_ZP, XSEM_REG_PRAM + 0x38000, 0x5e7292}, +#define XSEM_COMMON_END 1000 +#define XSEM_PORT0_START 1000 + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x1400, 0xa}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x1450, 0x6}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x5388, 0xc}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x5388 + 0x30, 0x272aa}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x55e0, 0x772ac}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x5600, 0x7}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x1500, 0x0}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x1508, 0x1}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3020, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3030, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3000, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3010, 0x2}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x3040, 0x0}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3048, 0xc}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x3048 + 0x30, 0x272b3}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x30b8, 0x1}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x4ac8, 0x272b5}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x4b18, 0x42}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x4d28, 0x4}, +#define XSEM_PORT0_END 1019 +#define XSEM_PORT1_START 1019 + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x1428, 0xa}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x1468, 0x6}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x53c0, 0xc}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x53c0 + 0x30, 0x272b7}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x5620, 0x772b9}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x5640, 0x7}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x1504, 0x0}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x150c, 0x1}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3028, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3038, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3008, 0x2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3018, 0x2}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x3044, 0x0}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x3080, 0xc}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x3080 + 0x30, 0x272c0}, + {OP_WR, XSEM_REG_FAST_MEMORY + 0x30bc, 0x1}, + {OP_SW, XSEM_REG_FAST_MEMORY + 0x4ad0, 0x272c2}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x4c20, 0x42}, + {OP_ZR, XSEM_REG_FAST_MEMORY + 0x4d38, 0x4}, +#define XSEM_PORT1_END 1038 +#define CDU_COMMON_START 1038 + {OP_WR, CDU_REG_CDU_CONTROL0, 0x1}, + {OP_WR, CDU_REG_CDU_CHK_MASK0, 0x3d000}, + {OP_WR, CDU_REG_CDU_CHK_MASK1, 0x3d}, + {OP_WB, CDU_REG_L1TT, 0x20072c4}, + {OP_WB, CDU_REG_MATT, 0x2074c4}, + {OP_ZR, CDU_REG_MATT + 0x80, 0x20}, +#define CDU_COMMON_END 1044 +#define DMAE_COMMON_START 1044 + {OP_WR, DMAE_REG_CRC16C_INIT, 0x0}, + {OP_WR, DMAE_REG_CRC16T10_INIT, 0x1}, + {OP_WR, DMAE_REG_PXP_REQ_INIT_CRD, 0x2}, + {OP_WR, DMAE_REG_PCI_IFEN, 0x1}, + {OP_WR, DMAE_REG_GRC_IFEN, 0x1}, +#define DMAE_COMMON_END 1049 +#define PXP_COMMON_START 1049 + {OP_SI, PXP_REG_HST_INBOUND_INT + 0x400, 0x574e4}, + {OP_SI, PXP_REG_HST_INBOUND_INT + 0x420, 0x574e9}, + {OP_SI, PXP_REG_HST_INBOUND_INT, 0x574ee}, +#define PXP_COMMON_END 1052 +#define CFC_COMMON_START 1052 + {OP_WR, CFC_REG_CONTROL0, 0x10}, + {OP_WR, CFC_REG_DISABLE_ON_ERROR, 0x3fff}, + {OP_WR, CFC_REG_LCREQ_WEIGHTS, 0x84924a}, +#define CFC_COMMON_END 1055 +#define HC_COMMON_START 1055 + {OP_ZR, HC_REG_USTORM_ADDR_FOR_COALESCE, 0x4}, +#define HC_COMMON_END 1056 +#define HC_PORT0_START 1056 + {OP_WR, HC_REG_CONFIG_0, 0x1080}, + {OP_ZR, HC_REG_UC_RAM_ADDR_0, 0x2}, + {OP_WR, HC_REG_ATTN_NUM_P0, 0x10}, + {OP_WR, HC_REG_LEADING_EDGE_0, 0xffff}, + {OP_WR, HC_REG_TRAILING_EDGE_0, 0xffff}, + {OP_WR, HC_REG_AGG_INT_0, 0x0}, + {OP_WR, HC_REG_ATTN_IDX, 0x0}, + {OP_ZR, HC_REG_ATTN_BIT, 0x2}, + {OP_WR, HC_REG_VQID_0, 0x2b5}, + {OP_WR, HC_REG_PCI_CONFIG_0, 0x0}, + {OP_ZR, HC_REG_P0_PROD_CONS, 0x4a}, + {OP_ZR, HC_REG_PBA_COMMAND, 0x2}, + {OP_WR, HC_REG_INT_MASK, 0x1ffff}, + {OP_WR, HC_REG_CONFIG_0, 0x1a82}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS, 0x24}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x120, 0x4a}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x370, 0x4a}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x5c0, 0x4a}, +#define HC_PORT0_END 1074 +#define HC_PORT1_START 1074 + {OP_WR, HC_REG_CONFIG_1, 0x1080}, + {OP_ZR, HC_REG_UC_RAM_ADDR_1, 0x2}, + {OP_WR, HC_REG_ATTN_NUM_P1, 0x10}, + {OP_WR, HC_REG_LEADING_EDGE_1, 0xffff}, + {OP_WR, HC_REG_TRAILING_EDGE_1, 0xffff}, + {OP_WR, HC_REG_AGG_INT_1, 0x0}, + {OP_WR, HC_REG_ATTN_IDX + 0x4, 0x0}, + {OP_ZR, HC_REG_ATTN_BIT + 0x8, 0x2}, + {OP_WR, HC_REG_VQID_1, 0x2b5}, + {OP_WR, HC_REG_PCI_CONFIG_1, 0x0}, + {OP_ZR, HC_REG_P1_PROD_CONS, 0x4a}, + {OP_ZR, HC_REG_PBA_COMMAND + 0x8, 0x2}, + {OP_WR, HC_REG_INT_MASK + 0x4, 0x1ffff}, + {OP_WR, HC_REG_CONFIG_1, 0x1a82}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x90, 0x24}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x248, 0x4a}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x498, 0x4a}, + {OP_ZR, HC_REG_STATISTIC_COUNTERS + 0x6e8, 0x4a}, +#define HC_PORT1_END 1092 +#define PXP2_COMMON_START 1092 + {OP_WR, PXP2_REG_PGL_CONTROL0, 0xe38324}, + {OP_WR, PXP2_REG_PGL_CONTROL1, 0x3c10}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_0, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_1, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_2, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_3, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_4, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_5, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_6, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_TSDM_7, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_1, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_2, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_3, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_4, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_5, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_6, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_USDM_7, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_2, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_3, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_4, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_5, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_6, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_7, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_0, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_1, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_2, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_3, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_4, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_5, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_6, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_CSDM_7, 0xffffffff}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_0, 0xffff5330}, + {OP_WR, PXP2_REG_PGL_INT_XSDM_1, 0xffff5348}, + {OP_WR, PXP2_REG_PGL_INT_USDM_0, 0xf0003000}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ6, 0x8}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ9, 0x8}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ10, 0x8}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ11, 0x2}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ17, 0x4}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ18, 0x5}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ19, 0x4}, + {OP_WR, PXP2_REG_RD_MAX_BLKS_VQ22, 0x0}, + {OP_WR, PXP2_REG_RD_START_INIT, 0x1}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD0, 0x40}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD1, 0x1808}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD2, 0x803}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD3, 0x803}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD4, 0x40}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD5, 0x3}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD6, 0x803}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD7, 0x803}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD8, 0x803}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD9, 0x10003}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD10, 0x803}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD11, 0x803}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD12, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD13, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD14, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD15, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD16, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD17, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD18, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD19, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD20, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD22, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD23, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD24, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD25, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD26, 0x3}, + {OP_WR, PXP2_REG_RQ_BW_RD_ADD27, 0x3}, + {OP_WR, PXP2_REG_PSWRQ_BW_ADD28, 0x2403}, + {OP_WR, PXP2_REG_RQ_BW_WR_ADD29, 0x2f}, + {OP_WR, PXP2_REG_RQ_BW_WR_ADD30, 0x9}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND0, 0x19}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB1, 0x184}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB2, 0x183}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB3, 0x306}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND4, 0x19}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND5, 0x6}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB6, 0x306}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB7, 0x306}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB8, 0x306}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB9, 0xc86}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB10, 0x306}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB11, 0x306}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND12, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND13, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND14, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND15, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND16, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND17, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND18, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND19, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND20, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND22, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND23, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND24, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND25, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND26, 0x6}, + {OP_WR, PXP2_REG_RQ_BW_RD_UBOUND27, 0x6}, + {OP_WR, PXP2_REG_PSWRQ_BW_UB28, 0x306}, + {OP_WR, PXP2_REG_RQ_BW_WR_UBOUND29, 0x13}, + {OP_WR, PXP2_REG_RQ_BW_WR_UBOUND30, 0x6}, + {OP_WR, PXP2_REG_PSWRQ_BW_L1, 0x1004}, + {OP_WR, PXP2_REG_PSWRQ_BW_L2, 0x1004}, + {OP_WR, PXP2_REG_PSWRQ_BW_RD, 0x106440}, + {OP_WR, PXP2_REG_PSWRQ_BW_WR, 0x106440}, + {OP_WR, PXP2_REG_RQ_RBC_DONE, 0x1}, +#define PXP2_COMMON_END 1200 +#define MISC_AEU_COMMON_START 1200 + {OP_ZR, MISC_REG_AEU_GENERAL_ATTN_0, 0x16}, +#define MISC_AEU_COMMON_END 1201 +#define MISC_AEU_PORT0_START 1201 + {OP_WR, MISC_REG_AEU_ENABLE1_FUNC_0_OUT_0, 0xbf5c0000}, + {OP_WR, MISC_REG_AEU_ENABLE2_FUNC_0_OUT_0, 0xfff51fef}, + {OP_WR, MISC_REG_AEU_ENABLE3_FUNC_0_OUT_0, 0xffff}, + {OP_WR, MISC_REG_AEU_ENABLE4_FUNC_0_OUT_0, 0x500003e0}, + {OP_WR, MISC_REG_AEU_ENABLE1_FUNC_0_OUT_1, 0x0}, + {OP_WR, MISC_REG_AEU_ENABLE2_FUNC_0_OUT_1, 0xa000}, + {OP_ZR, MISC_REG_AEU_ENABLE3_FUNC_0_OUT_1, 0x5}, + {OP_WR, MISC_REG_AEU_ENABLE4_FUNC_0_OUT_2, 0xfe00000}, + {OP_ZR, MISC_REG_AEU_ENABLE1_FUNC_0_OUT_3, 0x14}, + {OP_WR, MISC_REG_AEU_ENABLE1_NIG_0, 0x55540000}, + {OP_WR, MISC_REG_AEU_ENABLE2_NIG_0, 0x55555555}, + {OP_WR, MISC_REG_AEU_ENABLE3_NIG_0, 0x5555}, + {OP_WR, MISC_REG_AEU_ENABLE4_NIG_0, 0x0}, + {OP_WR, MISC_REG_AEU_ENABLE1_PXP_0, 0x55540000}, + {OP_WR, MISC_REG_AEU_ENABLE2_PXP_0, 0x55555555}, + {OP_WR, MISC_REG_AEU_ENABLE3_PXP_0, 0x5555}, + {OP_WR, MISC_REG_AEU_ENABLE4_PXP_0, 0x0}, + {OP_WR, MISC_REG_AEU_INVERTER_1_FUNC_0, 0x0}, + {OP_ZR, MISC_REG_AEU_INVERTER_2_FUNC_0, 0x3}, + {OP_WR, MISC_REG_AEU_MASK_ATTN_FUNC_0, 0x7}, +#define MISC_AEU_PORT0_END 1221 +#define MISC_AEU_PORT1_START 1221 + {OP_WR, MISC_REG_AEU_ENABLE1_FUNC_1_OUT_0, 0xbf5c0000}, + {OP_WR, MISC_REG_AEU_ENABLE2_FUNC_1_OUT_0, 0xfff51fef}, + {OP_WR, MISC_REG_AEU_ENABLE3_FUNC_1_OUT_0, 0xffff}, + {OP_WR, MISC_REG_AEU_ENABLE4_FUNC_1_OUT_0, 0x500003e0}, + {OP_WR, MISC_REG_AEU_ENABLE1_FUNC_1_OUT_1, 0x0}, + {OP_WR, MISC_REG_AEU_ENABLE2_FUNC_1_OUT_1, 0xa000}, + {OP_ZR, MISC_REG_AEU_ENABLE3_FUNC_1_OUT_1, 0x5}, + {OP_WR, MISC_REG_AEU_ENABLE4_FUNC_1_OUT_2, 0xfe00000}, + {OP_ZR, MISC_REG_AEU_ENABLE1_FUNC_1_OUT_3, 0x14}, + {OP_WR, MISC_REG_AEU_ENABLE1_NIG_1, 0x55540000}, + {OP_WR, MISC_REG_AEU_ENABLE2_NIG_1, 0x55555555}, + {OP_WR, MISC_REG_AEU_ENABLE3_NIG_1, 0x5555}, + {OP_WR, MISC_REG_AEU_ENABLE4_NIG_1, 0x0}, + {OP_WR, MISC_REG_AEU_ENABLE1_PXP_1, 0x55540000}, + {OP_WR, MISC_REG_AEU_ENABLE2_PXP_1, 0x55555555}, + {OP_WR, MISC_REG_AEU_ENABLE3_PXP_1, 0x5555}, + {OP_WR, MISC_REG_AEU_ENABLE4_PXP_1, 0x0}, + {OP_WR, MISC_REG_AEU_INVERTER_1_FUNC_1, 0x0}, + {OP_ZR, MISC_REG_AEU_INVERTER_2_FUNC_1, 0x3}, + {OP_WR, MISC_REG_AEU_MASK_ATTN_FUNC_1, 0x7} +#define MISC_AEU_PORT1_END 1241 +}; + +static const u32 init_data[] = { + 0x00010000, 0x000204c0, 0x00030980, 0x00040e40, 0x00051300, 0x000617c0, + 0x00071c80, 0x00082140, 0x00092600, 0x000a2ac0, 0x000b2f80, 0x000c3440, + 0x000d3900, 0x000e3dc0, 0x000f4280, 0x00104740, 0x00114c00, 0x001250c0, + 0x00135580, 0x00145a40, 0x00155f00, 0x001663c0, 0x00176880, 0x00186d40, + 0x00197200, 0x001a76c0, 0x001b7b80, 0x001c8040, 0x001d8500, 0x001e89c0, + 0x001f8e80, 0x00209340, 0x00002000, 0x00004000, 0x00006000, 0x00008000, + 0x0000a000, 0x0000c000, 0x0000e000, 0x00010000, 0x00012000, 0x00014000, + 0x00016000, 0x00018000, 0x0001a000, 0x0001c000, 0x0001e000, 0x00020000, + 0x00022000, 0x00024000, 0x00026000, 0x00028000, 0x0002a000, 0x0002c000, + 0x0002e000, 0x00030000, 0x00032000, 0x00034000, 0x00036000, 0x00038000, + 0x0003a000, 0x0003c000, 0x0003e000, 0x00040000, 0x00042000, 0x00044000, + 0x00046000, 0x00048000, 0x0004a000, 0x0004c000, 0x0004e000, 0x00050000, + 0x00052000, 0x00054000, 0x00056000, 0x00058000, 0x0005a000, 0x0005c000, + 0x0005e000, 0x00060000, 0x00062000, 0x00064000, 0x00066000, 0x00068000, + 0x0006a000, 0x0006c000, 0x0006e000, 0x00070000, 0x00072000, 0x00074000, + 0x00076000, 0x00078000, 0x0007a000, 0x0007c000, 0x0007e000, 0x00080000, + 0x00082000, 0x00084000, 0x00086000, 0x00088000, 0x0008a000, 0x0008c000, + 0x0008e000, 0x00090000, 0x00092000, 0x00094000, 0x00096000, 0x00098000, + 0x0009a000, 0x0009c000, 0x0009e000, 0x000a0000, 0x000a2000, 0x000a4000, + 0x000a6000, 0x000a8000, 0x000aa000, 0x000ac000, 0x000ae000, 0x000b0000, + 0x000b2000, 0x000b4000, 0x000b6000, 0x000b8000, 0x000ba000, 0x000bc000, + 0x000be000, 0x000c0000, 0x000c2000, 0x000c4000, 0x000c6000, 0x000c8000, + 0x000ca000, 0x000cc000, 0x000ce000, 0x000d0000, 0x000d2000, 0x000d4000, + 0x000d6000, 0x000d8000, 0x000da000, 0x000dc000, 0x000de000, 0x000e0000, + 0x000e2000, 0x000e4000, 0x000e6000, 0x000e8000, 0x000ea000, 0x000ec000, + 0x000ee000, 0x000f0000, 0x000f2000, 0x000f4000, 0x000f6000, 0x000f8000, + 0x000fa000, 0x000fc000, 0x000fe000, 0x00100000, 0x00102000, 0x00104000, + 0x00106000, 0x00108000, 0x0010a000, 0x0010c000, 0x0010e000, 0x00110000, + 0x00112000, 0x00114000, 0x00116000, 0x00118000, 0x0011a000, 0x0011c000, + 0x0011e000, 0x00120000, 0x00122000, 0x00124000, 0x00126000, 0x00128000, + 0x0012a000, 0x0012c000, 0x0012e000, 0x00130000, 0x00132000, 0x00134000, + 0x00136000, 0x00138000, 0x0013a000, 0x0013c000, 0x0013e000, 0x00140000, + 0x00142000, 0x00144000, 0x00146000, 0x00148000, 0x0014a000, 0x0014c000, + 0x0014e000, 0x00150000, 0x00152000, 0x00154000, 0x00156000, 0x00158000, + 0x0015a000, 0x0015c000, 0x0015e000, 0x00160000, 0x00162000, 0x00164000, + 0x00166000, 0x00168000, 0x0016a000, 0x0016c000, 0x0016e000, 0x00170000, + 0x00172000, 0x00174000, 0x00176000, 0x00178000, 0x0017a000, 0x0017c000, + 0x0017e000, 0x00180000, 0x00182000, 0x00184000, 0x00186000, 0x00188000, + 0x0018a000, 0x0018c000, 0x0018e000, 0x00190000, 0x00192000, 0x00194000, + 0x00196000, 0x00198000, 0x0019a000, 0x0019c000, 0x0019e000, 0x001a0000, + 0x001a2000, 0x001a4000, 0x001a6000, 0x001a8000, 0x001aa000, 0x001ac000, + 0x001ae000, 0x001b0000, 0x001b2000, 0x001b4000, 0x001b6000, 0x001b8000, + 0x001ba000, 0x001bc000, 0x001be000, 0x001c0000, 0x001c2000, 0x001c4000, + 0x001c6000, 0x001c8000, 0x001ca000, 0x001cc000, 0x001ce000, 0x001d0000, + 0x001d2000, 0x001d4000, 0x001d6000, 0x001d8000, 0x001da000, 0x001dc000, + 0x001de000, 0x001e0000, 0x001e2000, 0x001e4000, 0x001e6000, 0x001e8000, + 0x001ea000, 0x001ec000, 0x001ee000, 0x001f0000, 0x001f2000, 0x001f4000, + 0x001f6000, 0x001f8000, 0x001fa000, 0x001fc000, 0x001fe000, 0x00200000, + 0x00202000, 0x00204000, 0x00206000, 0x00208000, 0x0020a000, 0x0020c000, + 0x0020e000, 0x00210000, 0x00212000, 0x00214000, 0x00216000, 0x00218000, + 0x0021a000, 0x0021c000, 0x0021e000, 0x00220000, 0x00222000, 0x00224000, + 0x00226000, 0x00228000, 0x0022a000, 0x0022c000, 0x0022e000, 0x00230000, + 0x00232000, 0x00234000, 0x00236000, 0x00238000, 0x0023a000, 0x0023c000, + 0x0023e000, 0x00240000, 0x00242000, 0x00244000, 0x00246000, 0x00248000, + 0x0024a000, 0x0024c000, 0x0024e000, 0x00250000, 0x00252000, 0x00254000, + 0x00256000, 0x00258000, 0x0025a000, 0x0025c000, 0x0025e000, 0x00260000, + 0x00262000, 0x00264000, 0x00266000, 0x00268000, 0x0026a000, 0x0026c000, + 0x0026e000, 0x00270000, 0x00272000, 0x00274000, 0x00276000, 0x00278000, + 0x0027a000, 0x0027c000, 0x0027e000, 0x00280000, 0x00282000, 0x00284000, + 0x00286000, 0x00288000, 0x0028a000, 0x0028c000, 0x0028e000, 0x00290000, + 0x00292000, 0x00294000, 0x00296000, 0x00298000, 0x0029a000, 0x0029c000, + 0x0029e000, 0x002a0000, 0x002a2000, 0x002a4000, 0x002a6000, 0x002a8000, + 0x002aa000, 0x002ac000, 0x002ae000, 0x002b0000, 0x002b2000, 0x002b4000, + 0x002b6000, 0x002b8000, 0x002ba000, 0x002bc000, 0x002be000, 0x002c0000, + 0x002c2000, 0x002c4000, 0x002c6000, 0x002c8000, 0x002ca000, 0x002cc000, + 0x002ce000, 0x002d0000, 0x002d2000, 0x002d4000, 0x002d6000, 0x002d8000, + 0x002da000, 0x002dc000, 0x002de000, 0x002e0000, 0x002e2000, 0x002e4000, + 0x002e6000, 0x002e8000, 0x002ea000, 0x002ec000, 0x002ee000, 0x002f0000, + 0x002f2000, 0x002f4000, 0x002f6000, 0x002f8000, 0x002fa000, 0x002fc000, + 0x002fe000, 0x00300000, 0x00302000, 0x00304000, 0x00306000, 0x00308000, + 0x0030a000, 0x0030c000, 0x0030e000, 0x00310000, 0x00312000, 0x00314000, + 0x00316000, 0x00318000, 0x0031a000, 0x0031c000, 0x0031e000, 0x00320000, + 0x00322000, 0x00324000, 0x00326000, 0x00328000, 0x0032a000, 0x0032c000, + 0x0032e000, 0x00330000, 0x00332000, 0x00334000, 0x00336000, 0x00338000, + 0x0033a000, 0x0033c000, 0x0033e000, 0x00340000, 0x00342000, 0x00344000, + 0x00346000, 0x00348000, 0x0034a000, 0x0034c000, 0x0034e000, 0x00350000, + 0x00352000, 0x00354000, 0x00356000, 0x00358000, 0x0035a000, 0x0035c000, + 0x0035e000, 0x00360000, 0x00362000, 0x00364000, 0x00366000, 0x00368000, + 0x0036a000, 0x0036c000, 0x0036e000, 0x00370000, 0x00372000, 0x00374000, + 0x00376000, 0x00378000, 0x0037a000, 0x0037c000, 0x0037e000, 0x00380000, + 0x00382000, 0x00384000, 0x00386000, 0x00388000, 0x0038a000, 0x0038c000, + 0x0038e000, 0x00390000, 0x00392000, 0x00394000, 0x00396000, 0x00398000, + 0x0039a000, 0x0039c000, 0x0039e000, 0x003a0000, 0x003a2000, 0x003a4000, + 0x003a6000, 0x003a8000, 0x003aa000, 0x003ac000, 0x003ae000, 0x003b0000, + 0x003b2000, 0x003b4000, 0x003b6000, 0x003b8000, 0x003ba000, 0x003bc000, + 0x003be000, 0x003c0000, 0x003c2000, 0x003c4000, 0x003c6000, 0x003c8000, + 0x003ca000, 0x003cc000, 0x003ce000, 0x003d0000, 0x003d2000, 0x003d4000, + 0x003d6000, 0x003d8000, 0x003da000, 0x003dc000, 0x003de000, 0x003e0000, + 0x003e2000, 0x003e4000, 0x003e6000, 0x003e8000, 0x003ea000, 0x003ec000, + 0x003ee000, 0x003f0000, 0x003f2000, 0x003f4000, 0x003f6000, 0x003f8000, + 0x003fa000, 0x003fc000, 0x003fe000, 0x003fe001, 0x00000000, 0x000001ff, + 0x00000200, 0x00000001, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0x00088b1f, 0x00000000, + 0x51fbff00, 0x03f0c0cf, 0x3130ef8a, 0x22b1c430, 0x3b0143f8, 0x02ecdd01, + 0xdc406ec4, 0x19b7c404, 0x23dfd348, 0xf1476080, 0x03343031, 0x032f3731, + 0x423f2483, 0x4d5011fc, 0x02ef9025, 0xa40cdb15, 0x77280475, 0xf2c060fb, + 0x77629812, 0x056c1144, 0x58c8f22c, 0x4dde4d11, 0x44af950c, 0xe340ff40, + 0xfca8b235, 0x6d081948, 0x8b5f150b, 0x95051f26, 0xd0849577, 0xe76964eb, + 0x00607a36, 0x2726b9d6, 0x00000400, 0x00088b1f, 0x00000000, 0x7dedff00, + 0xd554780b, 0x333ef0b5, 0x64ccce67, 0x093c991e, 0x20f264af, 0xf09c0682, + 0x93a8a808, 0x07be3040, 0x0e22a5e4, 0x27902018, 0xf5e8bd48, 0x620c19bf, + 0x2f06d6b4, 0x93a45a2a, 0xb6968a80, 0x6c1a06c1, 0x822203b4, 0x6b06f5bf, + 0x368b6d7b, 0x2062a28a, 0xa5ebd8b9, 0xaffadaf7, 0x99def6b5, 0x91332673, + 0xfebffdaa, 0x5fa7f7df, 0xf7b3ecdd, 0xf5ed7bd9, 0xb3ef6b5e, 0xa66e6547, + 0x97d8ce5d, 0x9be507f8, 0x232c630a, 0xa1bbd65a, 0xed58cc9c, 0x9ef8731e, + 0xec66c65c, 0x4f2e44b1, 0x12ab7a87, 0xf4dd42b6, 0x4fda9d92, 0x7af5e56f, + 0x9743f773, 0xb9fb3b40, 0x05053d99, 0x589bb1eb, 0x6c276309, 0xf2f5ff8c, + 0xaf3b72fa, 0x5feeb6d6, 0x557fa0cc, 0xe1d995a7, 0x661d13fd, 0x3cd7d63f, + 0xc01984a5, 0x3eefbb50, 0xbf8c046d, 0xdbb4ac22, 0x0a7f50bd, 0xcafb421e, + 0xfb18730e, 0x33bbb9f7, 0x4ec64e03, 0x5798da36, 0x937ef843, 0xd8c453d9, + 0x59eef0aa, 0xaadfa023, 0x04cf8a5d, 0xaadaacf3, 0x8c9f2e44, 0x19b095cf, + 0xe9dea886, 0x1cb1de60, 0xcd192f86, 0xf358eb4b, 0xe30bcc24, 0x0b45b532, + 0x4dbe70b8, 0xc515d79a, 0x0f46c9cf, 0xb5eb23cd, 0xf03cc2cf, 0x144fdd5e, + 0xceb12e1f, 0x30ed82c4, 0xf67de9ff, 0xb89ddb85, 0xa15af5be, 0x258ebf4b, + 0xab1d717b, 0x2cdaadc2, 0xaad5c227, 0x8e8a2f2d, 0xcd33bd57, 0xfc96d708, + 0x7b5d4161, 0x91b2796c, 0xb4616f31, 0x7f318abe, 0x0fe113bb, 0x47c7b36b, + 0x29641f9f, 0x9deacf44, 0x45b5e666, 0x442c67c7, 0x17cccdcf, 0x2eb2bc41, + 0xb74f4f97, 0xdd231e33, 0x7788a4d6, 0x7df3c013, 0x024d8741, 0xf843df4f, + 0x7bf64ca0, 0xfeb0abd6, 0xa3cc99e4, 0x26fef10c, 0x1ed85b0b, 0x900bbd67, + 0x1630a619, 0xb7822664, 0xc26f058e, 0x50d4cfb2, 0x5fc3c005, 0xeb002b24, + 0xefe14fbd, 0xd4bccf5f, 0x9ad1beff, 0xe9bae91f, 0xe6ed92ca, 0x7496b15c, + 0xfa7f2fac, 0xb5321801, 0xbf10cfc2, 0x88ade22a, 0x43321e16, 0xca576bbb, + 0x7abc07c4, 0xc72d95fc, 0x4d93dcf9, 0xa678fa06, 0xa9ea1927, 0xf0635333, + 0xb89cf4eb, 0x4e01d440, 0x827fa9ab, 0x6958cf9a, 0xedf88db6, 0xe48d6c8e, + 0x38cb8ee6, 0x3b64775c, 0x7fa821c3, 0x08b85f17, 0x42f05aea, 0xc07c1c4f, + 0x859626cc, 0xa6c4d065, 0x466f6e0d, 0x941f023c, 0xf8517ce5, 0xa6f5941e, + 0x2814c2fe, 0x21a52b57, 0xc446cbc4, 0x330e9423, 0x3b75c06b, 0xd4f08cac, + 0x7b64a63c, 0xfba78748, 0xb94f0173, 0xb7ef71d1, 0x1f316434, 0xca840f63, + 0xc070ea43, 0xf7102e6f, 0x3cb78462, 0xf7802a12, 0x42c8ef73, 0x9034da7c, + 0x1afcfd03, 0xf3445fcc, 0x1f1e20b7, 0x9d8c7415, 0xcd3856df, 0xaf3dbf30, + 0x5dbf30ca, 0x2781f983, 0x2b5d089f, 0x8e3c07e6, 0xec07ec60, 0x96df9a5a, + 0x6fe68eb7, 0x619558d6, 0xf981a4fe, 0xd3ef38c3, 0x2e6fe609, 0xfeb8d8bc, + 0xf5c655bc, 0xcffd7c6b, 0xf989e685, 0x3ffd6893, 0xfaf8f362, 0xebe2eef3, + 0xfab8c2b7, 0xf803ddf9, 0xefbc476f, 0xdb7f804d, 0xeb8dd379, 0xae31afcf, + 0x7fe7cadf, 0x988b7421, 0xfff349df, 0xd7c2dd82, 0xcd377f9f, 0xf836b56f, + 0xcd64d03c, 0x23086a49, 0x7fe17b5f, 0x802ca0c3, 0x5942a679, 0xbc18ca94, + 0x47961dff, 0x2923b878, 0xfff61e78, 0xcdf8093c, 0x2c0bd519, 0xb94151bc, + 0x5d3c13af, 0xf6896bb9, 0xb2a5783d, 0x064beb93, 0xc00c74fa, 0xb3f3ba77, + 0xf000ffcf, 0xf628ee56, 0x8f24bd99, 0x265bdf0c, 0xe66f5296, 0x902c60f8, + 0xfa85db3d, 0x673d9029, 0x59f9353c, 0x4645e826, 0xe3e20e30, 0x13962d65, + 0x5af93a3d, 0x5f58c5b1, 0x25d63619, 0x24c8a5dc, 0xd8ca8650, 0xf79806d8, + 0x0623e804, 0xd07df27a, 0x647e5847, 0xdda2b761, 0x15f400f8, 0xb572f4d3, + 0x4272e89e, 0xb13ff8e5, 0xf8f241c5, 0x1ad5a6f9, 0x1c7847cb, 0x7cdd6480, + 0x1156f621, 0x58be73ac, 0x04b9e127, 0xcf5f15f5, 0x6bdaaefc, 0xdc02c4c0, + 0x4ef78669, 0xd416225b, 0xf0b0b75b, 0xfe3059bd, 0xb6ee0f6d, 0xf8ff4904, + 0xae489a47, 0xc81348d9, 0x968582f5, 0xef747bf7, 0x64d8ec2d, 0x8de50919, + 0x9bf3e341, 0xd3f58cab, 0x84c5b096, 0xc2a57976, 0x5bfc615a, 0x72ed8c1a, + 0x54b13f9e, 0xdf31674e, 0xf0c5a07c, 0x06575c54, 0xe1e82fd1, 0x3ebb00eb, + 0x87da246b, 0x53df14db, 0xfb05bf50, 0x1e3a444d, 0xe2f9f0d6, 0x07be2965, + 0x997860d8, 0xdf40930a, 0x78dd8577, 0x743cb557, 0xfe183291, 0x7e1c979e, + 0xebc184d3, 0x56fb8588, 0xdc3a21e6, 0x7cf8ceba, 0x7d762849, 0x3bea0f9c, + 0xd03ed34b, 0xbf6daf3d, 0x1d03ed32, 0x9cef54bf, 0x0cafa86d, 0xbfe868df, + 0x4312cb62, 0x9596b2fb, 0x9adbf686, 0x4bea1b57, 0xfa1a7742, 0xbd6ebadf, + 0x8696fda1, 0x37ed0dfb, 0xd4326d57, 0x6e3e0c6f, 0x6160bfe8, 0x795da1ab, + 0xfa0e6569, 0x305af537, 0xfde03867, 0xacacefd4, 0xb1f2894d, 0x1b8ff3e4, + 0xd93ca8b3, 0x3d72a5e8, 0xbfc82bca, 0xeb2f1f69, 0xa0e496db, 0xffbe4b9c, + 0x8d90d2c8, 0xdfcb1272, 0xcb18f2b1, 0x6837c8c7, 0xf3d91287, 0x5005851a, + 0x6e14fbee, 0x77f3e48f, 0xec65fe84, 0x1ab7921e, 0xcd63cb8d, 0x50cbc3f3, + 0x48b46a5e, 0xf1338361, 0xa15dacb8, 0x46d63075, 0x830cace3, 0x9ae81854, + 0x77b3806f, 0xafe699bf, 0x22e3e743, 0x2581f7b4, 0x791fce0a, 0xf186fb39, + 0x297f8f08, 0x48333bd5, 0x5636f62f, 0x22a07da4, 0x7e5402fe, 0xca90b8dc, + 0x2a418d13, 0xa2ac683f, 0x06c6fdf2, 0xd71a7b2a, 0x636ef951, 0x8d63ca88, + 0xbefe54cd, 0xb7ca85b1, 0xf950b71b, 0x9530c6db, 0x54fd1ba7, 0xb5a9f00e, + 0x43fd10bf, 0x432b07f6, 0x0ebd9717, 0xcdc816fe, 0x7737e919, 0xe11afaf2, + 0x4bc22737, 0xe213dd2c, 0x434c858f, 0x89292dd1, 0xc4c923d3, 0xf9c8182a, + 0xfaf6e303, 0x8abaf296, 0xe008032a, 0x0397fbd3, 0x860d22e3, 0xde3d357d, + 0xf683bb41, 0xd93365ef, 0x99f9163f, 0x1e9706ef, 0xd423401f, 0x8474bf37, + 0x35fd029f, 0x7e72f14a, 0x9cbc0af9, 0x8dddbc39, 0x964d747a, 0xa4c1f3c9, + 0x6dabebc4, 0x7538f5cf, 0x1a77d4f0, 0x945a67eb, 0x7a0fee0a, 0x478ee793, + 0x3e78f07e, 0x65ba4028, 0x59c72951, 0x3e79a593, 0x617ec348, 0x95db0f5a, + 0xf105fc42, 0xb6fbf508, 0x4e3448e1, 0x760e8e14, 0x1f27de1c, 0xff713f3b, + 0xfea17c84, 0x9a3f4349, 0x473e5975, 0xff856abb, 0x1401897f, 0xc72ea953, + 0x87376fad, 0xf3e217ac, 0xe0f9865d, 0xf58caf3d, 0x8a1bccbe, 0x427654ff, + 0xa4a807f2, 0xacde22a3, 0x18f769de, 0xa18a75f5, 0xdc39df5e, 0xf8dfd063, + 0x3657900f, 0x5ed15153, 0xe8b608d5, 0x0acd9d53, 0xf90bb7c0, 0xaf52e806, + 0xb6b57ef0, 0x8f082d1e, 0xcd3474ce, 0x3d8bc4bf, 0xb1bd685b, 0x3c6c9df0, + 0xc4d555ec, 0xcf9b57f0, 0xe38811dc, 0xf0ae7f97, 0xc4c6a538, 0x0b665ffd, + 0x584e51b9, 0x873dc856, 0x07399bf8, 0x0b7143f0, 0xcbaba3cc, 0xe9afc071, + 0x7acf678f, 0x8dafdc4d, 0x526ad79d, 0x757f09ce, 0xc2ce8ebb, 0xb1e2c775, + 0xb43ff3ae, 0xcc8dc520, 0xdf894780, 0x6ac04a5d, 0xed57f182, 0xf9434f7c, + 0x2a12d8fa, 0xc4dce7fc, 0xbf0c19f8, 0x2384eb33, 0x7b35ceba, 0xad5fe45c, + 0xede224d9, 0x79c6eb10, 0x13134e97, 0x74bd017f, 0x62e58070, 0x26dfa826, + 0x5dee326a, 0xfe4d51da, 0xa42c87d5, 0x89f53fa1, 0xfd04a5b9, 0xaded5583, + 0x3ce01f9a, 0x88154cc5, 0x4dec53af, 0xbd1d24f7, 0xd11a4c8a, 0xa366b6e9, + 0xa6fe00df, 0xa6fe0ea1, 0xcd9cbea1, 0x7638c4c9, 0xb80b66f9, 0x434eb4be, + 0x879328fb, 0x3582b0e8, 0x7afb446c, 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0x3bbff3d3, 0x1e2f5ea2, 0x59e3058d, + 0x5095bf9c, 0x8d0338af, 0x15f3c60c, 0x8a674ff2, 0xdbf98729, 0x4adefeaa, + 0xdfe5576c, 0xf167a95b, 0xad89a50d, 0x59b3af4c, 0xfa6e2cad, 0x959dfde7, + 0x9553ddcb, 0xf428b626, 0xe621b255, 0xbea6ec8a, 0xfdae5df9, 0x5a7f6c36, + 0x7e0a87d5, 0x98e8b198, 0x3a66cf82, 0xb5f9959b, 0xaf7838d2, 0x1567d28c, + 0x35b3c7d0, 0x0b14d469, 0xf01801f8, 0xf7cbbf5d, 0x77f11a7b, 0xcf09baa2, + 0x9f5e628b, 0xd8451f55, 0xc651ed53, 0xa979f067, 0x704f8bfd, 0xdc1399bf, + 0xf704e66f, 0xfdc1399b, 0xbf704e5a, 0x7c87e116, 0x4c8aa242, 0xe47f5074, + 0x828f8137, 0xc23723f8, 0xc8fe90f7, 0x0a71c7e4, 0xb7e7647f, 0xe47f0b08, + 0x91e7a95d, 0xec9bbb8f, 0xc43b436f, 0x9ffbd1e6, 0x23f943bb, 0xeeca9fbf, + 0xa5503e93, 0x22f3d29f, 0xb4f1a9fa, 0x0bd95e50, 0x37ac59df, 0xcb879010, + 0xf1a6d924, 0xb0f18fbf, 0x16ce5377, 0x1dfc28a5, 0x8b7f962a, 0x0f7e17f8, + 0xd0196f39, 0xdf7ca04f, 0xd7405ec1, 0xe71d53c7, 0x1dfd9952, 0xab2e87df, + 0x5fbfb033, 0xbf21cfc7, 0xebf139e0, 0x718181d4, 0x77e6a114, 0x53d34e76, + 0xe55e7499, 0xef153b91, 0x8af18b22, 0xfa718979, 0x5f8cb9da, 0xc50ef2c9, + 0xf6db6b3a, 0x63e02f48, 0x9c167ef1, 0xa904275b, 0xe8c69f1f, 0x5287cf42, + 0xa4bfed1a, 0x7d0f9d8a, 0xffb9adf4, 0x3ec7a013, 0x509dca13, 0x2cf3d5f5, + 0xf10fb1df, 0xd2173ea1, 0x0b4d7679, 0x3b9fcf32, 0x6bf5abbf, 0x4e217437, + 0x715097e0, 0x9b250751, 0x2d77c605, 0x4b5e96bd, 0xd2d7a5af, 0xf4b5e96b, + 0xbd2d7a5a, 0xaf4b5e96, 0x6bd2d7a5, 0xf4e5ffe9, 0xfffd007f, 0x8000c102, + 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x30001131, 0xafb00408, + 0x521cae88, 0x11447fea, 0x992c9a42, 0x326ebaf3, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0x7f6db6db, 0x98a102fc, 0x80005382, + 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x30001131, 0xafb00408, + 0x521cae88, 0x11447fea, 0x992c9a42, 0x326ebaf3, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0x7f6db6db, 0x98a102fc, 0x80005382, + 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x30001131, 0xafb00408, + 0x521cae88, 0x11447fea, 0x992c9a42, 0x326ebaf3, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0x7f6db6db, 0x98a102fc, 0x80005382, + 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x30001131, 0xafb00408, + 0x521cae88, 0x11447fea, 0x992c9a42, 0x326ebaf3, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0x7f6db6db, 0x98a102fc, 0x80005382, + 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x30001131, 0xafb00408, + 0x521cae88, 0x11447fea, 0x992c9a42, 0x326ebaf3, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0x7f6db6db, 0x98a102fc, 0x80005382, + 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x30001131, 0xafb00408, + 0x521cae88, 0x11447fea, 0x992c9a42, 0x326ebaf3, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0x7f6db6db, 0x98a102fc, 0x80005382, + 0x00008000, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0xffffffff, 0xffffffff, 0x00002000, 0x000040c0, 0x00006180, + 0x00008240, 0x0000a300, 0x0000c3c0, 0x0000e480, 0x00010540, 0x00012600, + 0x000146c0, 0x00016780, 0x00018840, 0x0001a900, 0x0001c9c0, 0x0001ea80, + 0x00020b40, 0x00022c00, 0x00024cc0, 0x00026d80, 0x00028e40, 0x0002af00, + 0x0002cfc0, 0x0002f080, 0x00031140, 0x00033200, 0x000352c0, 0x00037380, + 0x00039440, 0x0003b500, 0x0003d5c0, 0x0003f680, 0x00041740, 0x00043800, + 0x000458c0, 0x00047980, 0x00049a40, 0x00008000, 0x00010300, 0x00018600, + 0x00020900, 0x00028c00, 0x00030f00, 0x00039200, 0x00041500, 0x00049800, + 0x00051b00, 0x00059e00, 0x00062100, 0x0006a400, 0x00072700, 0x0007aa00, + 0x00082d00, 0x0008b000, 0x00093300, 0x0009b600, 0x000a3900, 0x000abc00, + 0x000b3f00, 0x000bc200, 0x000c4500, 0x000cc800, 0x000d4b00, 0x000dce00, + 0x000e5100, 0x000ed400, 0x000f5700, 0x000fda00, 0x00105d00, 0x00000028, + 0x00000000, 0x00100000, 0x00000000, 0x00000000, 0xffffffff, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x00088b1f, 0x00000000, 0x51fbff00, 0x03f0c0cf, 0x65e21f09, + 0x63e62860, 0x88237860, 0xcc2b4e2a, 0xfe9942ce, 0x0c0cccf3, 0x32f88117, + 0xe2055f10, 0xe9a48cd3, 0xb045e2b7, 0x30327377, 0x7df90358, 0x9b8b5a40, + 0xc8014181, 0xb3e201b6, 0x204bfe40, 0xadc40afe, 0xdc0c0c3c, 0x6a0c0c5c, + 0xc4042c40, 0xcdf8bcb6, 0xff2023b7, 0xaf951b9f, 0x17ca83cd, 0x3fafc6e6, + 0x7cbf0789, 0x6c790106, 0xf928b3f8, 0x4620e1f1, 0x2d43749f, 0xca86aeac, + 0x6065522f, 0xe7c40df8, 0x681ae2a1, 0x10aac5f2, 0x03329cfa, 0x7e1ab243, + 0xc80853b3, 0x000c060f, 0x4022bae9, 0x00000400, 0x00088b1f, 0x00000000, + 0x7dedff00, 0xd554780b, 0x733ef0b5, 0x27bcce66, 0x20212793, 0xf0841e4c, + 0x04242074, 0x11093a8c, 0x5076c403, 0xc2ab16fe, 0x25786784, 0x5ae5a911, + 0xc0133bff, 0x51b91688, 0x7e2da5a8, 0x68bc104e, 0x01226f69, 0x903a4483, + 0xbd08a5c0, 0x168b6ad1, 0xe088786d, 0x7e929205, 0xcfe956de, 0xe7dad6bf, + 0x9939cccc, 0x77e8f881, 0xbf41ffbf, 0xdecfb3ba, 0xd7b5ef67, 0xcfb5ef5e, + 0x30733d1e, 0xd7632776, 0x73941ff1, 0x4158c645, 0xf81d0ca4, 0x614b3ce2, + 0xc18b72ec, 0x6c64cc65, 0xe8431eca, 0x68afa84e, 0xd7588214, 0x3633301d, + 0x5b2bb181, 0xec46bd79, 0xb41b78dc, 0xb645d7b3, 0xd3b60a03, 0x8c8563a6, + 0xfe31379d, 0xb1d76f4f, 0x9916c634, 0xe3457579, 0x7e3839c1, 0x9991ab55, + 0x2df3fde1, 0x2beb07a2, 0x26410877, 0x27befb40, 0x7f180ca5, 0x32685071, + 0xe3bea0bb, 0x6765c959, 0x2f81cd6c, 0x0abce0ae, 0x4dfa9f5c, 0x7c2125cc, + 0x8d75a5ef, 0xb0696c66, 0x8c066a79, 0xe09774b3, 0x4b3cc1d6, 0x3ba10ab7, + 0x2173e027, 0xcbb8c228, 0x2b995a76, 0x9d70c38f, 0x8eb4bcd1, 0xbcc02f95, + 0x83670899, 0xe647b5e4, 0xa9f3f053, 0x72b981bf, 0xaf15f523, 0x5ef03cc0, + 0x3704aff5, 0xc75ab12e, 0xff304d7c, 0xd9e67d95, 0x7d70d92f, 0x3dae5275, + 0x7b951d7a, 0x834b1d71, 0x1b54d28d, 0x2d28d5c2, 0x6f191d1a, 0xcc4dced9, + 0x6b828a65, 0x5f00f64b, 0xfcb6bb54, 0xf054cfd4, 0xd3cc652c, 0x83f84364, + 0x9131ccd2, 0x22422de7, 0xbe38a963, 0xb19f1aa8, 0x99173d00, 0x6778843b, + 0xf477766d, 0xaa755dbe, 0xa2656df7, 0x781c6efc, 0x87de45fe, 0x2a4efd67, + 0xa9d3f937, 0x45dfb1fc, 0x9fc4fe70, 0xfd4fe547, 0x73fe7a6e, 0x2f95117f, + 0xbe543df8, 0xb2a72fe8, 0x7ea5efd1, 0x5367f92f, 0xa3efc3b9, 0xafeaffe7, + 0x7f15f2a2, 0x85ff3d2d, 0xbf95357f, 0xf9e807f4, 0x53d7f9bf, 0x04fb8cd9, + 0x16ff6ee5, 0x83f8f72a, 0xff75efd4, 0xf9f72a4e, 0x33f9e89b, 0x13283f88, + 0x3d3ace3c, 0x19424fec, 0xb0790273, 0xceb7af64, 0x59e4f500, 0xd7c03ebc, + 0x7e012750, 0x3a802c06, 0xdaa0dfec, 0xb4233ace, 0xdbc55a0f, 0x6b9c0687, + 0x743ed04c, 0x6ecf6f1d, 0x4331aef0, 0xde66f67b, 0xb0d83c3e, 0xc3ed02c6, + 0x51f6f3b7, 0xac6b9d4d, 0x85aa3ed0, 0x721adfb7, 0xfd41b5ae, 0xcf5e0ed6, + 0xb5aef4ef, 0x5dff3d43, 0xd5d89f5e, 0xef01d6b0, 0xdfc73c4f, 0xd9bde2d7, + 0x60cf9ce0, 0xee0736af, 0x4207e8f2, 0xc23e725d, 0x1cbd8cdc, 0x77d516f8, + 0xded4dc1b, 0x47aef81a, 0x92ea093f, 0x058fda9b, 0xc7bed47c, 0x53f6a5e0, + 0xbed42581, 0xfb52f247, 0x6a4ac095, 0x4b50dd7f, 0x87eeaced, 0x54bafed4, + 0x7549ed4b, 0xcfbea8eb, 0x8c196d00, 0xe33dd4e5, 0xcdfd0009, 0x511b7c11, + 0x6aeb747e, 0x12ca18ab, 0xf91d287d, 0xcd8149e9, 0x5d80fe46, 0xf27bba23, + 0x7c83c916, 0xc29bfcd7, 0x994cc497, 0xbeb052d6, 0x05a7e5e8, 0xd827e71a, + 0x71825baf, 0xce3e6fb2, 0xaa4563b8, 0xab1dc671, 0x1209c652, 0x8dfe963c, + 0xb26c7cd3, 0x4b639e1a, 0xa15e7195, 0x5bfd1c71, 0x8ab7b8d7, 0xb5bcf0d5, + 0x35e7195c, 0x7fa9271a, 0x1b7eecf0, 0xc64423f0, 0xe036fdd9, 0xd9c69327, + 0xf5a4e34f, 0x77fc9e0f, 0xe4e3548a, 0x8ca553bf, 0xce7841d3, 0xbb38dfe8, + 0x86ac99df, 0xcaa59de7, 0x9c682738, 0x575bfd21, 0xd58aeffe, 0xb96efcf0, + 0x69efce32, 0x8dfeac9c, 0x357de7b3, 0x3f79ecfd, 0xa27f3f4c, 0xb7fb7271, + 0xd40f82ae, 0x41f053f4, 0x102e7e98, 0x6ff6479e, 0xa81f3d9c, 0x07cf67e9, + 0x33f9fa61, 0x7fb633c1, 0xa3f82aeb, 0xfe0a7e9a, 0xcf9fa618, 0xfdf19e09, + 0xd3f5e783, 0x7ebcfc6a, 0x511f8c3a, 0xfb0a7840, 0x33c4cf07, 0x3c4cfc6a, + 0x8d8fc613, 0xbfdc99c6, 0xa33f5e71, 0x67ebcfc6, 0x1549f8c2, 0xf4775d70, + 0xcf135d6f, 0xf133f1aa, 0x433f186c, 0x19529e08, 0x8ce3061e, 0xbece3f89, + 0xecfc6a8b, 0x33f1c8bb, 0x3a27d3be, 0xce90dda0, 0xe4ce08dc, 0x0080de0b, + 0xa814faed, 0x30f4b0bb, 0x3d3bc81f, 0xf8d1ddea, 0x84405772, 0xc4aefb76, + 0xa2bb4ff1, 0x58e96ff5, 0x8263975c, 0x3877654e, 0x7aaa2d8b, 0x4a925952, + 0x6454a73f, 0xb369eaa8, 0xf4f554b2, 0xdeaa4707, 0x5e3058cf, 0x7cbc1f55, + 0x643eaab2, 0x7deaa955, 0x55d3e3d7, 0xeeeb59ed, 0x3673d555, 0xcf554f7c, + 0x554f3cdd, 0x54badbcf, 0xedc8de35, 0xd1f5552b, 0xd5531ebb, 0x51acb6c7, + 0x4f6dddd5, 0x3be3eaab, 0x3f8d539e, 0x54cff8e1, 0xb777c2f5, 0xa745eaa9, + 0x3fbd555e, 0x1a6bdcf9, 0x3ce6c6fb, 0x8bae4a3f, 0xc95acf68, 0x910e33ce, + 0x192d5ec8, 0xa3faa262, 0x7f546c43, 0x70df0ef4, 0x8fe3ec27, 0x6bd005f0, + 0x5bbe4a8f, 0x2fec319d, 0x4b1d39d8, 0x63a7d2c7, 0xd7db7d45, 0x80ce801b, + 0x5e874a2e, 0x650d3dcb, 0x3727ae8d, 0xe8dfca11, 0x2e916a4a, 0x4474151f, + 0xd591567f, 0x8d58dd22, 0xfd70e88c, 0x0297c2b0, 0x54f87451, 0xcaf39726, + 0x6a194fb8, 0x3eef51d3, 0x0066f756, 0x9993f2f5, 0x664cbc60, 0x9bc287ec, + 0xbc0e40a1, 0x3a68f99f, 0x09268bda, 0xf9e8d0ec, 0x347f9825, 0xf9c01fcd, + 0x6fcce3eb, 0xcd522dca, 0x52aace6f, 0x60966fcd, 0x4f63277e, 0xe7961dd7, + 0xffde9137, 0xe6987091, 0xa6ad6537, 0xac4bd7f9, 0x25bf354a, 0xf2037f3c, + 0x7f38f3c1, 0xe7f58c41, 0x3faf564e, 0xfd7aa96b, 0xcfff5f12, 0xf3c84eea, + 0x3ffd685b, 0xf5f04e17, 0xd7c63d67, 0xa371846f, 0xf18477e7, 0x5ff9c41f, + 0x69bf338e, 0xfd7ab178, 0xebd5cbd9, 0x5ff9f237, 0x9e4f7bad, 0xfff346df, + 0xaf8f7842, 0x9a71fb3f, 0x75ac68df, 0x38c9a13b, 0x441b52d4, 0x2fe600b9, + 0x050c801b, 0xc6444cf3, 0xde0c6248, 0xd164285f, 0x016a3c3e, 0x9ffe83ba, + 0xd0de8059, 0x72ed977e, 0xd017ac16, 0x6996af0e, 0x4aaec17a, 0x657819e9, + 0x57f72b41, 0xc333f818, 0xad2bbe00, 0x11fd9fbd, 0x7db05de0, 0xa025c91c, + 0x2def8674, 0x23529794, 0xe6307c72, 0xe413321d, 0x877bd329, 0x9a863bdc, + 0x2fd7683c, 0x1f630466, 0x60d85e3a, 0xc515df38, 0xa8b78b6f, 0xea824beb, + 0x097702ba, 0x81940912, 0x0b579652, 0x7f079ef3, 0x7ddd8180, 0x2c6dec06, + 0xb9b0313f, 0x0e7e785e, 0x452605fc, 0xed1d55f3, 0xabbd79cb, 0x73d61d3e, + 0xc3704abe, 0x0d81ec88, 0x3a196395, 0x7bcf0172, 0x77ef0039, 0x852ff298, + 0x7273e9d6, 0x003617f8, 0x7ff1477f, 0xb0bbc88d, 0x0ee08517, 0x7fbfe790, + 0xba054573, 0x83d7d0bc, 0x5e577def, 0xc92de2f7, 0xde98f7aa, 0xa9cdef44, + 0x1ea20c4c, 0xc36ceef8, 0x3b552eb9, 0xf1c03f30, 0xdd0fec91, 0xf1eebacf, + 0xdfb99e82, 0x75d7eea7, 0x8dd1eac0, 0xbb4b7285, 0x3dbec181, 0x8719a550, + 0x1f7f6879, 0xa878e192, 0x973edd56, 0x5fd42539, 0x9fab5773, 0xe3b40657, + 0xcf00f800, 0xf81c793c, 0xe6f844e7, 0xd7f36dcb, 0x7daa021b, 0x0a947a02, + 0xa22cf6e5, 0xbd0f5a02, 0x3fb7dd9f, 0x434041d0, 0xfb588107, 0xf9f7fffe, + 0xae7d8dff, 0x3e492d69, 0x8ad70517, 0xe7c969a6, 0xdb2dfaa2, 0x5f555339, + 0xd55fbc12, 0x4a96f17f, 0x86c2fb55, 0xf9f6aa25, 0xd5561feb, 0xa4ff032b, + 0x75773fea, 0xa1fdaa9d, 0xed54a7da, 0xab3d540f, 0xfbefdfaa, 0x77ffaaa9, + 0xdaaa3767, 0x864b0385, 0x46a8dc62, 0x881d0df2, 0x8df7aef1, 0xa1109b6c, + 0x2fae855b, 0xfca9d3f8, 0xb2a2efd4, 0xc830e50e, 0x5e3edd75, 0x1cab6cd6, + 0xa15bf28a, 0xb50c4ff3, 0x69fe5043, 0x672b55e9, 0x6325d0fb, 0x88bed083, + 0x2e596717, 0xf3ca2f30, 0x19db816e, 0xb213f3ca, 0x0d6c675e, 0x8972d7f1, + 0xd7f2dff3, 0x3f229606, 0xb942972c, 0xe3f8b6b5, 0xd68126b2, 0x1a36d8c1, + 0x10704967, 0xfbd17918, 0xf382ad9a, 0xe69141d2, 0x6e1f46af, 0xdec1da12, + 0x3f9c3a0d, 0xbee43ed4, 0xe78f0831, 0xc1c01d19, 0xdf49535a, 0x2797f25d, + 0xfe23d39f, 0xf05e54bc, 0xbcf2a6cf, 0x39e547df, 0x6795157f, 0x7654b5fc, + 0xf95357f9, 0xe5403f91, 0x2a7aff29, 0x5037f03f, 0x85bfd279, 0x83fbdfca, + 0x7bf15e54, 0xf4e854a8, 0xb57d96ff, 0xf2bdb8e8, 0xffafb8df, 0x16afbd1e, + 0x23c3939d, 0x0d06ebef, 0x55794abc, 0x61797027, 0xf31676e4, 0x788e2958, + 0xc3078955, 0x94571448, 0xf0ddc1e3, 0xd3f62777, 0x1831e537, 0xcfe8eaef, + 0x7b8e3173, 0xb191a4f5, 0xd3ebf8cc, 0x3c5c5fee, 0x46ee80b0, 0x3858b7f8, + 0x72aa015e, 0xdcec1e36, 0xf3dd7b11, 0x92cf5d78, 0x7726fdf0, 0x3c355c74, + 0xc072e22e, 0xd16af1cd, 0xdacf7b71, 0x847c722e, 0xb3efbb76, 0xc6b5e847, + 0x718b93d8, 0x2347f662, 0x36c63d43, 0x055871cb, 0x575e015f, 0x3a7ff5f0, + 0xfda04e3e, 0x1f1f105b, 0x47e0a5dd, 0x32bff0c4, 0x574aafc5, 0xae90439d, + 0x7bf4cab6, 0x027865b5, 0xe7191d1b, 0xd38b9d6e, 0x7ef04df5, 0x0e4be8f5, + 0xa657f3b4, 0xf2e79ceb, 0x456fe3e3, 0x16d3a653, 0xaab4a76d, 0x841b57eb, + 0x70371e72, 0x831acc25, 0x3ce9d1f2, 0x2c728397, 0x9c654a9d, 0xf392e995, + 0x0bf6325c, 0x2576f872, 0xea7e5f12, 0x6fbf5137, 0xe3788e1a, 0x6168e044, + 0x247de167, 0xf1d9ebd1, 0x3ba5c7fb, 0x8c245ffd, 0xc336b0c7, 0x985f6867, + 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0xbf9b293d, 0x75495463, 0xd20e1dec, 0xc22f2c7d, 0x2ec94b25, 0x6cddf45d, + 0x8faeff12, 0xf7dacce5, 0x3e4d4eb1, 0x7df9d009, 0x881bef6c, 0xccb67277, + 0x3d208bbf, 0x264949c1, 0x5cfc9bb7, 0x393fb66a, 0xe6bde29b, 0x9f54459d, + 0x4aea0b9a, 0x13d94770, 0x6ae848dc, 0x77b497a7, 0x2b0f5d31, 0x852173b5, + 0xc6855feb, 0x3e8d4ad6, 0x2b5418cb, 0x4772cfa4, 0x377ae6f6, 0x80fe8691, + 0x1f0adf7d, 0x40fe3dfc, 0x3f7407bf, 0x2cf535fd, 0xc7d2cfc6, 0x7ce3ddb9, + 0x0ffd175e, 0x511f5021, 0x6faceac7, 0x77b0233d, 0x326ebd6d, 0xbd0a0ccd, + 0x095422ef, 0xd2f7d296, 0x8598e104, 0x62e38b9d, 0x8cc3ab12, 0x63ebfc62, + 0xd39d5952, 0x9830ebce, 0xfd43dc27, 0xbf66ead7, 0x7920f8cb, 0xc51bf7d9, + 0x6c4f5e36, 0xdf644f7f, 0xee8add1f, 0x555e5af1, 0x6f62e07b, 0x5f71dbb2, + 0xf7e27e89, 0x11e38b71, 0x67c753ca, 0xf197f7f3, 0x9828a6d9, 0xe98bfb2e, + 0xea3b3fdc, 0x5f909ba6, 0xc167be7f, 0x8771df2b, 0xae887ae9, 0x40a7ba2c, + 0x4d3e90b6, 0x371de504, 0xf06df56e, 0x5064f6b3, 0xf7496c19, 0xa54eca4f, + 0xac0310ef, 0x7dc47c7d, 0x8b125eac, 0x655e2c7f, 0x2c5efcd9, 0xc14536cb, + 0xcfdfb271, 0x5e1852f1, 0xd1365fb8, 0x24f5e3a5, 0xdfea4ee9, 0x88555f25, + 0x7ccaef90, 0x02d7df91, 0xf2c3afbf, 0x25496b1d, 0xbd108ef9, 0x0c17ab4c, + 0xe0f48479, 0xa5eadd9a, 0xbe5d3b77, 0x9bde8108, 0x638e72c3, 0x88ba52fa, + 0x6c91cbeb, 0x6a0baf37, 0x580e4772, 0xf942ae28, 0x9a7c4d3f, 0x75e44237, + 0x3fe50938, 0x4addc980, 0x82995e36, 0x2ae8cf72, 0xde2d5adf, 0x66e2d1ad, + 0x66f51fbd, 0xeae9f105, 0x89fd61de, 0x4607b53f, 0x7a9fc4c8, 0xd4dbcf13, + 0xd0ead6ff, 0xa38bc99a, 0x47ef62ee, 0x297af660, 0x45be2aff, 0x9355b29e, + 0x961ef1cb, 0x5fb60171, 0x4076bbf4, 0xa6809fd3, 0x9c70ff57, 0xe2a21fd5, + 0xffa211ac, 0x754fe265, 0xf32b55dc, 0xfe7bda63, 0x19b37a56, 0xd11fd612, + 0xb26ff0ea, 0xf5cbe247, 0x55f9f506, 0x44e7ff5a, 0xa64ce7d4, 0xef28e7cf, + 0x75e56e3c, 0x156456e7, 0xff107ffd, 0xccbbfccb, 0x3e9a77f0, 0xbc512b06, + 0x8042e704, 0xbad0f9c1, 0x9fce1072, 0x469658d8, 0xfc9854f8, 0xa2ad3eec, + 0x3be9bc2f, 0xec2f681b, 0x76fcfc81, 0x7a77d2c3, 0x5e538a20, 0x5c285b74, + 0xb041b49b, 0x97be40f4, 0x41582d34, 0xb78fb46d, 0xb70f4e48, 0x0ee77a6c, + 0xe39d17ec, 0x8f1c7d98, 0x1cac5391, 0x45fc6b0e, 0xd39b787b, 0x70ba30a5, + 0xa1ed4dfd, 0xe12bdd06, 0x01ffffa5, 0xd5b93efd, 0xefd023ff, 0xe3781b15, + 0x7a6ec8e2, 0x3fbfcc83, 0xf3e7f68f, 0xfa27df80, 0x923afa7e, 0xf397dd20, + 0xf4979ba1, 0xfb8592ea, 0x807d4bcd, 0x0125c1d9, 0xf0bcec2f, 0xfee906fd, + 0xe199791e, 0xf4d6a37b, 0x39f92e5a, 0xc77e57bc, 0xe699e2fc, 0xe4dd0395, + 0x64e903ff, 0xd99f96af, 0x735ff5bc, 0x9510ccbf, 0x80ceb4d3, 0x01a03406, + 0x0340680d, 0x0680d01a, 0x0d01a034, 0x1a034068, 0x340680d0, 0x680d01a0, + 0xd01a0340, 0xa0340680, 0x40680d01, 0x80d01a03, 0x01a03406, 0x0340680d, + 0x0680d01a, 0x0d01a034, 0x1a034068, 0x340680d0, 0x680d01a0, 0xd01a0340, + 0xa0340680, 0x40680d01, 0x80d01a03, 0x01a03406, 0x0340680d, 0x055ff01a, + 0x328d1fff, 0x800060f6, 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, + 0x30001131, 0xee300408, 0xd80ea5ea, 0xabdef271, 0x964d2104, 0x5dbbcce4, + 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0xee017e3f, 0x0014ab55, 0x000014ab, 0x00088b1f, 0x00000000, 0xc5edff00, + 0x30001131, 0xee300408, 0xd80ea5ea, 0xabdef271, 0x964d2104, 0x5dbbcce4, + 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0xee017e3f, 0x0014ab55, 0x000014ab, 0x00088b1f, 0x00000000, 0xc5edff00, + 0x30001131, 0xee300408, 0xd80ea5ea, 0xabdef271, 0x964d2104, 0x5dbbcce4, + 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0xee017e3f, 0x0014ab55, 0x000014ab, 0x00088b1f, 0x00000000, 0xc5edff00, + 0x30001131, 0xee300408, 0xd80ea5ea, 0xabdef271, 0x964d2104, 0x5dbbcce4, + 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0xee017e3f, 0x0014ab55, 0x000014ab, 0x00088b1f, 0x00000000, 0xc5edff00, + 0x30001131, 0xee300408, 0xd80ea5ea, 0xabdef271, 0x964d2104, 0x5dbbcce4, + 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, + 0xee017e3f, 0x0014ab55, 0x000014ab, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x00088b1f, 0x00000000, 0x62f3ff00, 0x51f86063, 0x408cc10f, + 0x7f120cb6, 0x66476028, 0x48107d08, 0xf3e2061f, 0x2fe9a48c, 0xb9b04160, + 0x40afec80, 0xa8597833, 0x88a1bee7, 0xcfd2738f, 0x81ae792e, 0x66322ff7, + 0xe86067e6, 0x6ff047e4, 0xb3caa3f2, 0x3dd7d3f0, 0xb000c6b4, 0x00eeff4a, + 0x0000eeff, 0x00088b1f, 0x00000000, 0x7dd5ff00, 0xc554780b, 0x3d9cf0d9, + 0x3764dd97, 0x2485cd9b, 0x200d8410, 0x125c40a2, 0x126e20ee, 0xc3116088, + 0x65e28145, 0xb201ae41, 0xdb3f6911, 0x5cbb7ffa, 0xc6d6a444, 0xa0b45b4b, + 0x06a2828b, 0x82482459, 0xa5c8ba1b, 0x5835b5b4, 0x0da978aa, 0x24c4dc88, + 0x97f4b004, 0x3bef3fca, 0xce7bbb33, 0xf4bc4c6e, 0x7d6f9ffb, 0x7339867c, + 0xef3bccce, 0x6779de7d, 0x313b10a2, 0x0ae42775, 0x64246efc, 0x19084c99, + 0xbbc32d14, 0x32413cbf, 0x46bcf909, 0x08f39a75, 0x86a1d929, 0xc5f5a46f, + 0xd400a41b, 0x0893bb4d, 0xd3484819, 0xcaf7563a, 0xa08e8f0d, 0x4ca764ed, + 0x8482d136, 0x4592266d, 0x610b09c8, 0xd60a673f, 0xeab126e7, 0xee7b0de2, + 0xd7e7fe82, 0xfd12499a, 0xec8d44fe, 0x4d92fa86, 0xb4488052, 0xad21eebd, + 0x5e7fed0b, 0x39260a40, 0x63d37d69, 0x9085339a, 0x6cbfbbe5, 0x5c057182, + 0xe2167c67, 0xbfbe00d4, 0x23f63565, 0xadb03ca4, 0xa7ed0bb4, 0x99725abc, + 0xebe538e8, 0x038df0a4, 0x9014b9e1, 0x370bbf69, 0x0fb3895b, 0xc10ae183, + 0x4b1e7171, 0x6971d3d6, 0xd2a9447f, 0xe3a252ca, 0xf19cfc09, 0x4471c5ad, + 0x744bf17d, 0xc55dfa1c, 0xa60b92ab, 0x9e226158, 0xa9bf1d20, 0xf3da692e, + 0x32df9836, 0xec4a77ad, 0x0ebe663c, 0x6c0f28f3, 0x006d4ad0, 0x6e6d06d7, + 0x0b7f68bf, 0x0f56ff37, 0xd99edad7, 0x6376989e, 0x5147c679, 0x2f5a3bda, + 0xb41dc427, 0x6d01fc01, 0xf3e8ff62, 0x908d295a, 0x4cbfd04e, 0xff68969c, + 0xb9f1f884, 0xc0615c4c, 0xb8a5093b, 0xead6e962, 0x496dd3d0, 0x0db6ff1a, + 0xe9c97e78, 0x81cf98f0, 0x1cbe13e5, 0x73e57f2c, 0xf1bf9c22, 0x29f2c1f5, + 0xff9f0b9f, 0xcb1437d6, 0x96373ef5, 0x62c6facf, 0x8657c1b9, 0x9bef3def, + 0x9f26e586, 0xe8bf9f07, 0x4be58f9b, 0xfe7c4abe, 0x2c7eef8a, 0xf8fcf8b7, + 0x356fab7c, 0x557cdb96, 0xf4e76e58, 0xe00be1da, 0x9b7d3b7b, 0x05f3acb1, + 0xbe1bf9f1, 0x017f2c5a, 0xaa65a478, 0xa14cb1db, 0x4d1d4a74, 0x484d941c, + 0x32d95946, 0xa633d695, 0xa7b67ab0, 0xf146996a, 0xd69b3d94, 0x2b731d29, + 0x6999961b, 0xd652ee7b, 0x58efddde, 0xddeda16e, 0x9ef6b257, 0x93cb6555, + 0x27cf7b68, 0x8135fb59, 0xb4c9e5aa, 0xac8d9afd, 0x61b06fbd, 0xf7b695b9, + 0xd7ed61ad, 0x6c2b1d87, 0x3efd7eb4, 0x286c2f56, 0xeb42915b, 0x7d598785, + 0x0ad56348, 0xc87efd3b, 0x88fdf671, 0x4ceca096, 0x55db1fc0, 0xd2843dd7, + 0x52fed7ee, 0xd68c32b7, 0xc47dd735, 0xff66c845, 0x33a56ead, 0x865a87c5, + 0xd3fcbbed, 0xc32b5d58, 0x33fcb7f6, 0x6a9dfdf1, 0xec7fb625, 0x9df6c72f, + 0xb7b6255a, 0xf6c3eff8, 0xdb0ab53a, 0x601ecb4d, 0xdb0aad75, 0x883d9733, + 0x52a1bfef, 0xd2138760, 0x6ea3d97b, 0x966f853f, 0x7d02a9e4, 0x9caa6cd2, + 0x28b7404f, 0xaf901ce1, 0x0d322487, 0xc4a7e5e4, 0xa1e6fa89, 0xc83734ab, + 0x8343f6e1, 0xc539079f, 0xe7d4265f, 0x0f26b0be, 0xfb0a79fb, 0x3d3f68d1, + 0xf0a7efdb, 0x7ebaa19d, 0x2f99df0a, 0xf80e79fa, 0x63b939be, 0x677f6cfd, + 0x779e1eb8, 0xaf3f45ca, 0x8ef63f60, 0xaff0abcd, 0xfcf0f523, 0xa7e89175, + 0xde95e706, 0xbc767831, 0x1793f14f, 0xfbc767ed, 0xf6123f14, 0x64fd8f53, + 0x419e0c75, 0xf5d50c1f, 0xf983e833, 0xd8039fa2, 0xf58e974f, 0xe183e3b3, + 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0x6f463ebd, 0xc618ff63, 0x9150577c, 0xfcfa4fe0, 0xbd9d6625, 0x5e303774, + 0xcf2cfde8, 0x8362f383, 0x68c079c3, 0x47bca6ab, 0xf149c9ed, 0xcec0ada6, + 0xfe2ceefb, 0x500b63c7, 0x690f4b3f, 0xa0e0ac5e, 0x96ad4ae9, 0x95d373f2, + 0x4e4d14af, 0xe6ed27ca, 0x3687a5f8, 0x9c5165b4, 0x25e293f8, 0x7f858bf7, + 0x40ed4036, 0x829de2a7, 0xc383a3f3, 0x7b202e6f, 0xa5cce714, 0xb77dfcf5, + 0x76c2e8cc, 0xaf1cdf74, 0x17ac49ea, 0x2df38b75, 0x7ce352bd, 0xe724be79, + 0xbf68350f, 0xfb2f6306, 0x9e97f9f1, 0xc79f9077, 0xc62814ba, 0x47c5a28d, + 0xbea00d9f, 0xd270bfcf, 0xa2f84541, 0xa18e93ee, 0x2e03a96f, 0x50885504, + 0x3877b03c, 0xdb52bee8, 0x10c72ff3, 0x7d4f45d5, 0x34bd20e0, 0x471c2af4, + 0x41a8f61a, 0xb47afe0f, 0xf10745ef, 0x8153a5a8, 0xfdc9a531, 0xe663f71a, + 0xc23e7964, 0x092adffe, 0xf933ae7e, 0xe2d3f168, 0xce333aeb, 0xe54f6fac, + 0x763046e3, 0x0dfce096, 0x4f1c759d, 0x8e647437, 0xaabc5633, 0x28ead88f, + 0x4eefd7ee, 0x1bf9b71d, 0x941c061e, 0xd9e3d317, 0xd3878b51, 0x70f11a60, + 0xa26eb238, 0xe97f791d, 0xa844c364, 0x37afa918, 0xe56d7ccc, 0xf5e9cbcb, + 0x0e67ef62, 0xf1fe73ca, 0xfc17df1a, 0x48edffe3, 0xe209c9e6, 0x25b7e609, + 0x3ed94fe1, 0x8b23e135, 0xc0dbbf69, 0xbdfa44d7, 0x53a39c2d, 0x24335bfd, + 0xd85976fc, 0x242a0c19, 0xdbf38d9f, 0x41da106d, 0x3bf58ff6, 0x92f03fb9, + 0x981075c2, 0xd4deac71, 0xdfa9bd77, 0x8d5fbc7a, 0x30f54d9b, 0xfae283ea, + 0x6ea37b55, 0xbf316fec, 0x3476bd37, 0x0cbcf48f, 0x16599c44, 0xb2c67112, + 0xd2279597, 0xd0331cfd, 0x8ddec98f, 0x823c2761, 0x719b97e3, 0xc6277966, + 0xdfa46519, 0x30e6c6c7, 0x423d025f, 0xd8bcf4de, 0xfe3a9dd2, 0x2ba8814c, + 0xf67acd87, 0xd57b34cb, 0x02a721c4, 0x51e65bd7, 0x359e41bd, 0x8ffda768, + 0xe1fe42cf, 0x933dc7fa, 0x397b1ef8, 0xd669bd3b, 0x057b56e9, 0xc3ea8b12, + 0x5b91de90, 0xf737e490, 0x3921d860, 0x01a9e61a, 0xbdd27fd2, 0xd2ecc565, + 0xdd16f78c, 0x1d5fe38d, 0x6bd1febf, 0xc62def92, 0xe1e272de, 0x597f8a2f, + 0x43e29b33, 0x172788a7, 0x7cdd70ab, 0xeb81c3aa, 0x33a77f5a, 0x3f0bf748, + 0xadea88f2, 0xf213c4a5, 0x0b72b0cf, 0xfeeb04f1, 0x4afeb4f1, 0xe146192c, + 0x8af657f9, 0xe2e5647a, 0xaf77994f, 0x46e7164d, 0x74c98dbd, 0xffeab00f, + 0x9d442f96, 0xb16f7d69, 0xa03df10f, 0x6f30ac25, 0x9cbe07bb, 0xc6f28a50, + 0x509f3efa, 0x16eb5887, 0x54f5b479, 0x797d5036, 0xa0ceaff1, 0x74bce513, + 0x1f0fe5f8, 0x2ea5f6c0, 0xf2e63117, 0xc1d95c71, 0x0da2d37e, 0x721d7115, + 0xebbceb18, 0x7c73bd68, 0xc81ee88f, 0xbc40dbba, 0x5137ceb8, 0xb5bb16ff, + 0xa9d71b42, 0x9183b06d, 0x3ae499ea, 0xcac75eae, 0x8d864b14, 0x566bfe66, + 0x7bc42373, 0x57346e2b, 0x883dc625, 0x6b88dffc, 0x533b38dc, 0x5cec08fc, + 0x1b8c8ca0, 0x777b158d, 0xfd5321ba, 0x977ce113, 0xe3dcef5e, 0x24e6de46, + 0x1e2a1b78, 0xde84b67a, 0xa13b4e71, 0xffce94b5, 0xafb204d5, 0x9ceb7e75, + 0x9e7e4ce7, 0xc601fba7, 0x952ad69d, 0x279b65f5, 0x708baad0, 0x7626f31e, + 0xf5483732, 0x17fe8cfe, 0x8d0788cb, 0xb25c7007, 0x7d1da1ff, 0x90438854, + 0x421cdcf9, 0x3ce492a1, 0x74e2ffd8, 0x97d91be2, 0xa6fc9dde, 0xb2e5d37d, + 0xfdc45150, 0xfb88a6d5, 0x287d8f6b, 0xfe4dee8f, 0x306d6ac3, 0xfcd67ec9, + 0x80fe4d7b, 0xefd3dc5d, 0x7c4420a7, 0xd81e0b0a, 0xef2204fa, 0x1a778ad6, + 0x334aca0d, 0x7e442ff4, 0x035e4b7c, 0xea6d0b92, 0x33cce2d7, 0xcb1b49ff, + 0x5c393fe3, 0x03df9c94, 0x8a18eeb4, 0xc04dad7b, 0x28072471, 0x0b1c62ce, + 0xf97b63e4, 0x97ae2ce9, 0x6abb65a2, 0xa9956e38, 0x5b6b7140, 0xc9a9e6ff, + 0x05bfe1f9, 0xe91738aa, 0x95aa98a1, 0xa6fec527, 0x9560da1e, 0xbc17cf79, + 0x7888140d, 0x27a3f782, 0x47ee19dd, 0x6ddeb5df, 0x3d8273ed, 0xfa974ec9, + 0x0dfef9ea, 0x52a6f85f, 0xef9f019c, 0xfd6dc26a, 0xfbe953f5, 0x57cdfea5, + 0xd2a4bbf3, 0x02bf9296, 0xd5315f24, 0x7914ef45, 0xefb9bfb0, 0xd460229d, + 0x276a7e58, 0x6efdafe7, 0x8ec4e751, 0x84fbf164, 0x07826502, 0xdd653930, + 0xb857eea6, 0x55ea688e, 0x583e648d, 0x22dc7af3, 0x1e261e0f, 0x1486b620, + 0x487ced83, 0xf3ef5360, 0x16a34f2c, 0x76b63b62, 0x4bbfa26a, 0x3c97d620, + 0x00ee002f, 0x39feafc9, 0x52754c3c, 0x87964f73, 0x3eb14bde, 0xc4b1f914, + 0xfa8fdc19, 0x99c2f459, 0xcd5b8a22, 0xf50a682f, 0xbbea50c3, 0x679b736d, + 0xbde88fc5, 0xe81575e0, 0xda55e1dd, 0xc4b0ed02, 0x4d54d181, 0x1d66efca, + 0x5f9bb560, 0xc8d4abaa, 0xcb06dbef, 0xe6ce512b, 0x3b4abafe, 0x78b4f419, + 0xb634ba0f, 0x3009eb91, 0x95b65d84, 0x27f0a634, 0xf7290300, 0xb14e506e, + 0x8d61631e, 0x03a281df, 0xfde9ca67, 0x6fe4b9a8, 0x7347e4e5, 0x537bc50a, + 0x554bbd33, 0x7de27c90, 0x4d7f9aca, 0xafb3f0a1, 0x0b7b7f4d, 0x7bcda3bc, + 0x9e1b2ece, 0x4d1aadff, 0x05eb847f, 0x6edd9f51, 0xb7d5cdc6, 0xbc5f5c69, + 0xc78d1e05, 0xcca18a1b, 0xfac8bce5, 0xa78cddb9, 0xe352aa2b, 0xf03dcadb, + 0x91a11670, 0x635b4eb9, 0x0c0abfae, 0x7575775e, 0x6635b8ea, 0x36a6b69d, + 0x56e7fbf5, 0x930c9cdc, 0xc2ea6e39, 0x66c75b9e, 0xb90c7e71, 0x0cdef93c, + 0xb475e279, 0xf541c78f, 0x683c0b9a, 0x1c66e3a7, 0x01c92b6d, 0x177e28f7, + 0xa3fd9209, 0x53bfbed9, 0x719f8ade, 0x34553bf2, 0x1565ce2d, 0x29cd3f0a, + 0x514a7114, 0x9b276ca2, 0xa3ed9c72, 0xed9baf28, 0xe7ec5237, 0x533bc4d7, + 0xfc937914, 0xacc27c8e, 0x788aa223, 0x7b974b47, 0x8778a17c, 0x34dfa11a, + 0x5fd08ebd, 0x36a2de9a, 0x6ec5c751, 0x5ffef856, 0xc519f58e, 0x958bb5af, + 0x14f141a0, 0x2bfdc0f5, 0x54c3d615, 0x62704f88, 0x8f981dff, 0x4d8beea8, + 0xb6fd7513, 0xefe2f9b5, 0x9b780124, 0x64f168ec, 0x57e45d85, 0x286b0f8b, + 0xdf12cebf, 0x6ede9f29, 0x7755d3e6, 0x850af35e, 0xadaf4b45, 0x2f9ca7e4, + 0xb1463146, 0x475e20be, 0x53c7eafb, 0x917d23dc, 0xf32f479f, 0xadc2742e, + 0xa72e7eb1, 0x2fd36abf, 0xa839476e, 0x7adefdae, 0xeba5e734, 0x9530bab3, + 0x2b581887, 0xf2138fc8, 0xc7e6333b, 0x943ca6d5, 0x47e80363, 0xedfd4d6b, + 0x2eadf7cd, 0x0477efc4, 0x7e4c3d57, 0xb3d94675, 0xce2410ff, 0x9d187a4d, + 0x85addeb4, 0x090c3de2, 0x9b7ef192, 0x16f0179e, 0xd7b8e016, 0x54af718f, + 0x241777bc, 0x933eebe9, 0xb161d7d7, 0x079c764a, 0x25de9501, 0xdc3b03ae, + 0x443b6d45, 0x200b88ec, 0xfe81dfc2, 0x4fc45608, 0x9d73fcea, 0x9944723d, + 0xeff8e3c5, 0x9061f343, 0x7108ddc7, 0x3b740346, 0x32f042e1, 0xcb22b956, + 0x08af6ca9, 0x4baa5485, 0x82f64523, 0x5213a8b3, 0x2473a665, 0xb38763ce, + 0xd2a2fd56, 0x0b6011df, 0x3cfd3dd9, 0x0c79d61d, 0x0d4a4bc1, 0x555ca177, + 0x93695210, 0x1548601b, 0x39f32ff1, 0x4ddd6016, 0x01b8b77f, 0xfacd9fed, + 0xebf8f208, 0xa66a3ce9, 0xaf2d0cf3, 0xeb1615e0, 0x29129f24, 0xf39d7db2, + 0x2b11cfdd, 0x6f375e02, 0x03e2fc7d, 0xfbbf8995, 0x9eafc378, 0x2a3d3fa6, + 0xd3f70186, 0x665c4ddf, 0x9fb11add, 0x788f86ff, 0xe17dfd3f, 0x5215dfba, + 0x7ce8f23c, 0x8781f04e, 0xf60638f8, 0xb23f74e8, 0x7142b8d1, 0x128b8fdc, + 0x5c103bbc, 0x2f21b1e5, 0xf2e518ee, 0x43cca5aa, 0xab8d675e, 0xcf7a4ae3, + 0xe14e4d43, 0x91e4c1ba, 0x6aab7f25, 0x2af891fc, 0x8944a251, 0x944a2512, + 0x44a25128, 0x4a251289, 0xa2512894, 0x25128944, 0x5128944a, 0x128944a2, + 0x28944a25, 0x8944a251, 0x944a2512, 0x44a25128, 0x4a251289, 0xa2512894, + 0x25128944, 0x5128944a, 0x128944a2, 0x28944a25, 0x8944a251, 0x944a2512, + 0x44a25128, 0x4a251289, 0xa2512894, 0x25128944, 0x5128944a, 0x128944a2, + 0x28944a25, 0xffe12251, 0x72255300, 0x008000ab, 0x00000000, 0x00088b1f, + 0x00000000, 0xc5edff00, 0x30001131, 0xee300408, 0xd85aa12a, 0xaa66f6b1, + 0x964d2113, 0x5dbbcce4, 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x3d017e3f, 0x009b1baa, 0x00009b1b, 0x00088b1f, + 0x00000000, 0xc5edff00, 0x30001131, 0xee300408, 0xd85aa12a, 0xaa66f6b1, + 0x964d2113, 0x5dbbcce4, 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x3d017e3f, 0x009b1baa, 0x00009b1b, 0x00088b1f, + 0x00000000, 0xc5edff00, 0x30001131, 0xee300408, 0xd85aa12a, 0xaa66f6b1, + 0x964d2113, 0x5dbbcce4, 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x3d017e3f, 0x009b1baa, 0x00009b1b, 0x00088b1f, + 0x00000000, 0xc5edff00, 0x30001131, 0xee300408, 0xd85aa12a, 0xaa66f6b1, + 0x964d2113, 0x5dbbcce4, 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x3d017e3f, 0x009b1baa, 0x00009b1b, 0x00088b1f, + 0x00000000, 0xc5edff00, 0x30001131, 0xee300408, 0xd85aa12a, 0xaa66f6b1, + 0x964d2113, 0x5dbbcce4, 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x3d017e3f, 0x009b1baa, 0x00009b1b, 0x00088b1f, + 0x00000000, 0xc5edff00, 0x30001131, 0xee300408, 0xd85aa12a, 0xaa66f6b1, + 0x964d2113, 0x5dbbcce4, 0x6db6db15, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x3d017e3f, 0x009b1baa, 0x00009b1b, 0xffffffff, + 0xffffffff, 0xffffffff, 0xffffffff, 0x00001000, 0x00002080, 0x00003100, + 0x00004180, 0x00005200, 0x00006280, 0x00007300, 0x00008380, 0x00009400, + 0x0000a480, 0x0000b500, 0x0000c580, 0x0000d600, 0x0000e680, 0x0000f700, + 0x00010780, 0x00011800, 0x00012880, 0x00013900, 0x00014980, 0x00015a00, + 0x00016a80, 0x00017b00, 0x00018b80, 0x00019c00, 0x0001ac80, 0x0001bd00, + 0x0001cd80, 0x0001de00, 0x0001ee80, 0x0001ff00, 0x00000000, 0x00010001, + 0x000e0004, 0xcccccccd, 0xffffffff, 0xffffffff, 0xcccc0201, 0xcccccccc, + 0x00100000, 0x00000000, 0x00000000, 0xffffffff, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, 0x40000000, + 0x40000000, 0x40000000, 0x00088b1f, 0x00000000, 0x1113ff00, 0x51f86066, + 0x423ec08f, 0xac9d0c0c, 0xc4b462a8, 0x1818990b, 0x12b102fe, 0x3c430333, + 0x203aded0, 0x2388107d, 0x16181858, 0x2fd610b0, 0x022bd404, 0x2c4062c4, + 0x19b7c401, 0x9cdfb348, 0x1f0f680b, 0xc8037f82, 0x3f4024be, 0x1c360fff, + 0xfb5f40ad, 0x1819d502, 0x8aa06bfe, 0xf2a26831, 0x9bf13519, 0xcf2684c1, + 0x2167c68c, 0x63247fa0, 0x0d75b600, 0x000400f1, 0x00000000, 0x00088b1f, + 0x00000000, 0x7dd5ff00, 0xd554780b, 0x673ef0b5, 0xf3399cce, 0x00fde4cc, + 0x108f0992, 0x2104e034, 0x0432b445, 0x3b69488c, 0xc514543c, 0xf791e109, + 0xb14a3e44, 0x44033bd2, 0x350af808, 0x0380a050, 0xed168d02, 0x06823ca0, + 0xfda2901c, 0x5a1bdedb, 0xcb6ab7bd, 0x880b851f, 0x52d11921, 0xf77ac5ea, + 0xcc9f7b5a, 0xd0049339, 0x9fdffed6, 0xcfb3767e, 0xd6bdaf7e, 0xf7b5ebda, + 0xa441c448, 0x84be421c, 0xfc8471bf, 0xa484205e, 0x83bf52c6, 0xa908a3a6, + 0x2d0867d9, 0xc26425cf, 0x5c64633e, 0x136fcd0a, 0x179a2642, 0xbcb19b0f, + 0xfbcb3373, 0xdd4f6d0d, 0x01c9cb4a, 0x1349d903, 0x49116f92, 0x1467211a, + 0xd146fec2, 0xf321117c, 0xb35b2ccd, 0x426cc8ed, 0x98b797eb, 0x3fb69988, + 0x81e0d7b3, 0x429dc2fc, 0xd439d088, 0x67255c1c, 0x8417fed1, 0x45d9b084, + 0x47e93bf3, 0xd7b15e5a, 0x5dfa8210, 0xaf34b68e, 0x01f3908d, 0x9864b885, + 0xed693bdf, 0x86548405, 0xd16494f6, 0x05bb957a, 0xa9c748b7, 0xc6442cdc, + 0x42ef828d, 0xa8bb40c8, 0x5712b66a, 0x97c39b3e, 0x75c5c704, 0xc742dc2c, + 0xa912fda5, 0x61daf651, 0xcbb2b5bc, 0xf9cf831e, 0x51c71380, 0xd3cf35f3, + 0xdabb6871, 0x2c370497, 0xbe2456b1, 0xf3bf1d30, 0x73e679a0, 0x32df5836, + 0x5daecf39, 0x587ee947, 0x9b686547, 0x7983625c, 0x17e7936d, 0x6aabfac4, + 0x6bcfd64e, 0x9f74a0c3, 0x3d3e3ca6, 0x95c4201f, 0x1257cb17, 0x60db09e2, + 0xea7921fe, 0x63f7d8f0, 0xb3f71124, 0x5c40d9aa, 0x427fac4a, 0x40ddf882, + 0x2b8011dc, 0xb5bbb569, 0xa9d176fb, 0x8985b7df, 0xf31f6dbc, 0xc3ef9a79, + 0x27a70e5a, 0x4d347e61, 0x499738f0, 0x1309fd74, 0x4ab85389, 0x3246b5fb, + 0x7acbdc33, 0x186405ef, 0x888f884d, 0xe25adf38, 0x2ed21fbb, 0x4e9caeb1, + 0x3245fe9e, 0xabbd74bc, 0xfbfed604, 0x57f585c4, 0xb03d900d, 0x2aef6baf, + 0xcb90ce7a, 0xf90292d7, 0xd0d6bbf9, 0x7926932e, 0x0257c008, 0x614015b8, + 0xcb40d07b, 0x4713bbed, 0xe16971ae, 0xc61f3c57, 0x75128c73, 0xcdbce3fb, + 0x4d27cba2, 0xaf838a4c, 0x46e679cd, 0x34f3a79e, 0xd211d189, 0x67c64220, + 0x8b6f882b, 0x9ba465b3, 0x79b3b7c5, 0x85b6ce2d, 0x38ff3482, 0xe685b834, + 0xce4ddf65, 0x4741e05e, 0xa4064916, 0xe98c913e, 0x7000de59, 0x9c5078a4, + 0x03ef2573, 0x68c5fa9a, 0x1f4d225e, 0x0107c616, 0x8e012b2e, 0x481ab534, + 0x6adbac1d, 0x86a70822, 0x05cf4521, 0x9d5a7035, 0x1b94e14b, 0xb1b577eb, + 0x09b8832e, 0x23bc1359, 0xf8526528, 0x1dcdd2e6, 0x23bdf30b, 0xdb4c1c12, + 0x00ce2ee7, 0xa5322a78, 0x32f8ed03, 0xc700bf1d, 0xae38046f, 0x3f18fbe7, + 0x463792be, 0x6079be37, 0xb37c6eb9, 0x38a7c74c, 0x5df829b9, 0x63853e3e, + 0x233f2116, 0x95f1c5df, 0xfc704b81, 0xeb949906, 0x8f74b7c6, 0x7771821f, + 0x437e31f5, 0xfafd58de, 0xd7ea5607, 0xbff5b32f, 0x8f9bbc10, 0xfff5c16f, + 0xd6cddc82, 0x6c47f03f, 0xafda26fd, 0x37477c76, 0xf700c3fc, 0x5fc07dfd, + 0x7e9b7a19, 0xf5aa83fd, 0xf1b137eb, 0xc83e0d5f, 0xf8e1b7c7, 0xd90791af, + 0xc52d07fa, 0x3aa64df1, 0x991693b7, 0x21752c72, 0xfd176bc0, 0x074d3a5f, + 0x45be71d3, 0x422482d3, 0x901ffb68, 0xc5870881, 0xa850df16, 0xf142c97f, + 0x0be316cd, 0x0052b424, 0x38e5afba, 0xa977773d, 0x326d24fc, 0x4bf185b7, + 0x10e9f942, 0x96cebf3a, 0x4fbd2f4f, 0x47773be7, 0x42e0dba1, 0x6ed0247a, + 0xdf8a5f1e, 0x8841e0c0, 0x1daa7b37, 0x7b3793f8, 0xf22c70da, 0x40599f00, + 0xf03d8e70, 0xf1a35e78, 0xbe86bb4c, 0xe7d06c16, 0xbcfa422b, 0x80f1ef3a, + 0x160d3424, 0x3a3afc93, 0x8fca19ee, 0x1f93e508, 0xe9047e52, 0x08792359, + 0x94d38dce, 0x4b59115f, 0x5f70cb57, 0xfe0c48ce, 0x91583667, 0x7dad2f1e, + 0x60832658, 0x640a563e, 0xf24178cd, 0xff9d3e76, 0x089d7c3d, 0x57e022e7, + 0xb4f73d6c, 0x47a14cd6, 0xb2779d2c, 0x31a75dae, 0xf5be0462, 0x963d0920, + 0x7b2ffb41, 0x87d18f62, 0x4fd3c7fc, 0xfd26ba44, 0xf7d74a44, 0xd87e34ce, + 0x733769ae, 0x3f635aef, 0xd3e7de9a, 0xae559f7f, 0x431a77cf, 0xe5ce1146, + 0xa36c810a, 0xa7583ffd, 0xf9c7572f, 0x7db1248c, 0x43dde3e6, 0x049992d7, + 0xfe91fa59, 0xeb64e7db, 0x497ae7a0, 0xca1f383f, 0x9a4ef704, 0x8dea107f, + 0x4b7c7d84, 0xe7b3ef86, 0x90d7ba25, 0x5225f39e, 0x9273f606, 0x25271b9f, + 0x08b753e3, 0x7edfe73d, 0x4711ead8, 0xfc475cf4, 0x4e221fbc, 0x968787dc, + 0x0697bfe8, 0xf0c7d7e3, 0x3e32dfc0, 0x7be6b4f9, 0xe4aef84d, 0xa97c1ad3, + 0xcbaa9e6a, 0xd3ee8457, 0xa1b05fd5, 0xaf3e5754, 0x5e5742b1, 0x2eb0f0d6, + 0x447c1a5f, 0x25a1ff57, 0x0fe574cb, 0x95d6add6, 0xab5f2acf, 0xdbe7dfcb, + 0xef7faba8, 0x72ba6dcc, 0x0e4570e1, 0xd97e37c8, 0xe1499397, 0x135de17e, + 0xf0c42ed9, 0x73f3c558, 0xcf4c0c81, 0x2e985c07, 0xf4a57a03, 0xa9641e2f, + 0x0e697b7f, 0xf78ab9d0, 0xd9758d67, 0xf8f12740, 0xf18f4f1d, 0x03780c78, + 0xe75f50e7, 0xbc40b579, 0x025df740, 0xefd48f3b, 0x97fce67f, 0x6f48e590, + 0xc7a332d5, 0x8b3397ea, 0xe5aa5e81, 0xad9d5e48, 0x58497eef, 0xb21075c0, + 0x08a9fb1d, 0xedd0aa51, 0x3cdd20eb, 0x70188e3b, 0x3e105afc, 0xdef3816e, + 0xf8c02a5b, 0xa7b23791, 0x78f9870f, 0x25be60e6, 0x4762f915, 0x69f25260, + 0xc5e7e009, 0x26605cf4, 0x3e0267a6, 0xca074f4c, 0x5030fd31, 0x607b6987, + 0x0327a609, 0x14ff4c41, 0xbdf4c068, 0x7fa62340, 0xf4c06c0c, 0x4c21033f, + 0x4c1e033b, 0x14d4f1bb, 0x90f903cd, 0x20226fbc, 0x2e1492e2, 0x3372a97f, + 0x5c85f961, 0x2e0bee6e, 0x27defbf1, 0xbc5048fc, 0x2c59beda, 0xa8e83f6c, + 0xf3a50893, 0xbbf6c335, 0x44bcb0e7, 0xdd843f90, 0xbbb2f95a, 0xf483d85f, + 0x9fc7ef6b, 0xf381dce1, 0x9e030def, 0x8af2247f, 0x0b5dba7b, 0xc047ba0f, + 0x86b75e6f, 0xd5fe5276, 0x7c31705f, 0x2e5c06b9, 0x039cf5be, 0x0cc2e8f8, + 0xe6fa79d1, 0x1357d7be, 0x34da75ce, 0xe8b7f1f3, 0x851b17f3, 0x741e4c49, + 0x0e18cc25, 0x9e74e0f8, 0x96fb0c1e, 0xcfdaa981, 0x79d90cc2, 0x85ea193a, + 0x77643d70, 0xd517e222, 0x3fdeb047, 0xf57d1e7b, 0x5ec79b13, 0x47b68a72, + 0xdf507b19, 0x0bc4fbf5, 0xe41933e9, 0xbc6ad268, 0x85aae704, 0x40e5f7fe, + 0xbcc257e8, 0x6c3fafda, 0x826e9a08, 0xe375bbef, 0x552e76d1, 0x7d7683d7, + 0xce449fe3, 0x5941f8a8, 0x6fae09d2, 0x9d9b3556, 0xa89d7e7a, 0x325bfbcb, + 0x0dfe3a9d, 0x4af4a0ff, 0x9c120a26, 0x2b1cd5bb, 0x835b24ba, 0x1bb7e740, + 0x8bee86f0, 0x6af5605f, 0x47d97694, 0x67dc2d3f, 0xe17df3c7, 0x05efae5a, + 0x9fb41b49, 0x70778633, 0xd34ace85, 0x449ce51f, 0x9e32f9a4, 0x39aef553, + 0x7cf0ab7b, 0x94126fff, 0xc8ff3ce1, 0xe70458d0, 0x9b786553, 0x76fba1ec, + 0x80938881, 0xbf205cef, 0x91acdc77, 0x3208afe3, 0x41acb7ae, 0x79516e7f, + 0xf2a79747, 0x9f3f2e8e, 0x3d034b4c, 0x91937e6a, 0xff285e8a, 0x043bcae8, + 0x80bbf627, 0xfe04add4, 0xcdef6a7e, 0x700adcf7, 0xc8a5b03c, 0x6873f347, + 0xbf4a3f71, 0x6427cd95, 0x3aaf93a0, 0x1fb4057e, 0x755c73d9, 0x51f43d5d, + 0x669a870e, 0x85ea13c1, 0xa6459b9f, 0x9f74a9d7, 0x72753a25, 0x7e5c5e5b, + 0xf6fe5c64, 0xc6d7fcb8, 0x908a149f, 0xdefdb169, 0x44f2f82d, 0x478043e0, + 0xf9bc3109, 0xf467fdda, 0x3fe47fe8, 0x44feffb5, 0xffb4ff87, 0xfda9ffdb, + 0xff31ee0f, 0x5ff5bdc9, 0x149e8a6b, 0xdd7b1ce0, 0xe198e78c, 0x7a0839b0, + 0x19ab7f82, 0xf637dcf5, 0xd01775fd, 0x26b3e75d, 0x8e7a6262, 0x93bff280, + 0xdf767bf5, 0x0ffeb75f, 0x8d0b3f2d, 0xb60b7f69, 0xef80fad2, 0x64c8adbb, + 0x184e5eba, 0x2f5d2841, 0xefd1fd78, 0x2e2f2a11, 0x91dee2b0, 0x0f4cbf05, + 0x51fb00ad, 0x799fcb2a, 0x08284071, 0xed979e76, 0x1808c311, 0xa3ed40f7, + 0xad2fee30, 0xa42d1e84, 0xd61375f3, 0xa305fceb, 0x2ee78a7f, 0x24415e9d, + 0xe77e3757, 0xb5241c02, 0xe052f85c, 0xf0e22840, 0xd55ef4a1, 0x8f31e092, + 0xfbeaf800, 0x2e8c60b9, 0x0eff2376, 0x5bc88966, 0x77205922, 0xcb53d7c7, + 0x5540e2fd, 0xb6ec581e, 0xfd53eac5, 0x37cb3e79, 0xa0fd3166, 0x052feb0d, + 0x958d49fa, 0xd597ecf7, 0xcec891ff, 0xac3f58db, 0x53d72d7d, 0x1572e9e3, + 0xe6aacba7, 0xa6f6862f, 0x7f32f55f, 0xa65fbefc, 0xafdd0582, 0x10e6cbe0, + 0x23b5616c, 0x6bef7a82, 0x6d511edc, 0x9e1ea089, 0x3905c7c5, 0x6944f20f, + 0x8ced097f, 0xf404cc07, 0xedd79add, 0x9adfd81e, 0xf33d7ffd, 0x63bdfa33, + 0xf80dd59f, 0x0ffaf350, 0x4c6bdf71, 0xdd02d991, 0x2a1ee8bf, 0x1dfad2ff, + 0x4d9d7e7b, 0xc61d3f68, 0x55d27648, 0x613565ec, 0xcafc9c53, 0xe03e7de6, + 0x98f2019e, 0x3b5447ca, 0x53fb7c5a, 0x45cff162, 0x4417970a, 0x7c88b34f, + 0xa9df6f4b, 0x5d39525c, 0xfdabde7b, 0xbecc4a54, 0xc43f7ea4, 0x1ba87be1, + 0x2e935fce, 0xf2e83d6d, 0x02ebcc10, 0xf3834b69, 0x13f9b6a8, 0x4aed4419, + 0x2e813590, 0xbee032df, 0xa12b9b10, 0x4d4df937, 0x4cc605cf, 0x75de5097, + 0xfedfea63, 0xc28b2381, 0x4f86fe7f, 0xe91ce1b2, 0x199e643a, 0x7f39fd42, + 0xbf1834ba, 0xa0f5dca3, 0x51eb8ac1, 0xe3a4abc7, 0xf5b10bd5, 0x755c6b5f, + 0xaefc753c, 0xcfac9f8d, 0x69f8e174, 0xb8fc7e30, 0x5c753b6a, 0xde7c572a, + 0xd886978d, 0x414b96fe, 0x72c3ce19, 0x947ee122, 0x14797a93, 0xcd8841d2, + 0x74ed4977, 0x97ca9f90, 0x4a5d3edc, 0xf900f366, 0x6901e60d, 0x5ef1c6d7, + 0xfb7fa380, 0x3a520554, 0x305f5c0f, 0x221a16d3, 0x3ca0f9b0, 0x7d414c1f, + 0x777be257, 0xe9fdf026, 0x17b87f4c, 0xb81d39fb, 0xf1c6f313, 0x1437c875, + 0x85a988d2, 0x1ffd3184, 0x8f9c46f1, 0x90238a8d, 0x98f81aa7, 0x0e11c359, + 0xb6245979, 0xe913f87e, 0xcdbf2b38, 0x572ddad7, 0x30e1c53d, 0x580679c5, + 0xbe47d066, 0x08ae5da4, 0xa3f364cc, 0xbe5128f8, 0x517f84e5, 0xc79d3a78, + 0x103826ff, 0x4a7ad9ef, 0x5d056848, 0x7c73248f, 0xbe184c99, 0x5e265c34, + 0xdd3c1d8d, 0x090ef8c0, 0xe83e411e, 0x5fc1fde0, 0x9451e694, 0x245655a7, + 0x7802df64, 0x089270e1, 0x91b7638c, 0xd8047588, 0x5af3a551, 0x1b79c1f9, + 0xa8ecebcd, 0x3a78f2fa, 0xb14bed53, 0x7e70db71, 0xe2cfdfb4, 0xae2cfdfa, + 0xd6aecfdf, 0xbf270aaf, 0x740bddb2, 0x87c058fc, 0xa78ea6fb, 0x7c28f1f0, + 0x113f51f2, 0x429dee2d, 0xd616ae0c, 0x22633d15, 0xc0337fb8, 0xf4e14ce8, + 0xe8e1c278, 0xb29050a3, 0xd7fe0081, 0xfd353b73, 0xed34daf3, 0x7a415388, + 0x99c7cd5e, 0xa1fc6061, 0x9ecff39e, 0xee78cdf5, 0xee6fa8f7, 0xf7a5beab, + 0xe6bef6fa, 0x3e75ed63, 0xd55f955f, 0xff5ffebe, 0xf869711e, 0x52829396, + 0x30ccaf2f, 0x126b7ed0, 0x1dbdfccf, 0x0f5144bf, 0xf7ebfa51, 0x4af802cb, + 0x5832c7f1, 0xa056ddff, 0xf05ee7df, 0xd74996c5, 0x63af9331, 0x14e97366, + 0x86264738, 0x526496a6, 0x5abfbf3c, 0x17709b70, 0xbce8ffe9, 0xbaf3e3ee, + 0x3a4051bf, 0x21917fb8, 0x6ec5eae4, 0x41fe0b35, 0x09d567cb, 0xd3d088a1, + 0x1b4b057e, 0x3e760696, 0x3b4f6e36, 0xeaf1045c, 0x6cde3e21, 0x0c1a4a42, + 0x845bed3d, 0xef2957e3, 0x35dede27, 0x2ed1b887, 0xffcf2f16, 0xe463e419, + 0x91b921c7, 0x46c1afee, 0x31e416f1, 0xfe8dc583, 0x3037fe90, 0xdc2159fd, + 0x2e5047ce, 0xa4040722, 0x573e8bfb, 0xec55d242, 0x33025b30, 0x62f0ced1, + 0xd9a60360, 0xce043c8b, 0x412f6961, 0xa05b7f79, 0xdf0fbf1c, 0xd1942edb, + 0x176ce4bc, 0x6774d3e6, 0x1f7e0960, 0x3fafaf58, 0x644baf7c, 0xd4225cf5, + 0xc3e0367b, 0xea05cf7a, 0x7cf5bed0, 0x3ff301a0, 0xcd31040f, 0x95f3626b, + 0x2fe82a96, 0x11a045fc, 0x18fed1eb, 0x41427aff, 0x2f7c3cfe, 0x79b797ab, + 0x2dd6084c, 0x777e7939, 0x197fe639, 0x377f6108, 0xb5fde0ec, 0xb30b9412, + 0xb3afdd17, 0xce96b863, 0x030fc9d1, 0xe5752beb, 0x3f063aea, 0x6f5750b1, + 0x5890def8, 0xfdf30056, 0xe4bbee91, 0xffe0890c, 0x5cbcdfcb, 0x3b0dcfd7, + 0x15eae8d6, 0xae89feec, 0x4ddec47c, 0x75bbbcba, 0xeeaf2ebb, 0xca65f54f, + 0x5679e9d8, 0x4205f975, 0x2fdb3f28, 0xf4375e79, 0x075cb722, 0x76bca05e, + 0x69f87c2d, 0x5c7083c0, 0x4840f545, 0xb3fcb833, 0x3493ec1a, 0x27d838ff, + 0xecc82fd1, 0x3b734f54, 0x3e40dad5, 0xe0267f7e, 0xc0bafcc6, 0x0c6fcc18, + 0xcffcc24c, 0xdfcc5e02, 0x09bf3123, 0xf00da9e0, 0xda3359f4, 0xe9671087, + 0x525b5d7f, 0x923f2043, 0x32f1c68c, 0xa2e637e4, 0x3f709a5d, 0xb3a70543, + 0x955687b3, 0x7122a6ac, 0x288beb55, 0x9939511f, 0x4e9adc80, 0xefd6bd79, + 0x037f2d77, 0xfef58395, 0x0721b987, 0x258aadf0, 0x0a29c993, 0xcfcda3ef, + 0xfae9da39, 0x432c762b, 0x3abcbb7d, 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0x725f7b9f, 0x52bf1d50, 0xf9d4aff7, + 0xcd2f3127, 0xe027b4a7, 0xda88baed, 0x3847a1db, 0x2193f303, 0x659376e8, + 0x91647fe6, 0x17d9b8de, 0xfee7c1ea, 0x810de8a8, 0xe486727c, 0x66593737, + 0xfbca7bd1, 0xb1661be5, 0x26e3262f, 0xaccc38e5, 0x14e7ff22, 0xd9021bd9, + 0xa28f5e11, 0xec1a77bc, 0x9ff7ce3c, 0x7e11f760, 0x0bfef608, 0xc19fe7a0, + 0x08fc21de, 0xff3e1dec, 0xc21dec04, 0xf803f02e, 0x03f053fc, 0x61dc9708, + 0xe57a829c, 0x5f62ae6a, 0x3b3dd704, 0xd3bfe302, 0x97968733, 0x9e2a598b, + 0xdd0ea5bf, 0xe9e596ae, 0x6f9c8df4, 0x4f3377bd, 0xdfc92a4d, 0x86178c26, + 0xd7b7eefb, 0x5afbedc8, 0x37bc1cf9, 0xb2e7e389, 0x473cfc34, 0xf7c69ec5, + 0x3af066d7, 0x2b8ec539, 0x1fc82af9, 0x63acaf8d, 0x29d79c9c, 0x55663cfd, + 0x0a48f7d0, 0xfde1639c, 0x5f313e48, 0x0d4c7947, 0x44a74f90, 0x172a19f2, + 0x1d385a9f, 0x772e3acc, 0xa09768c9, 0x9e82727f, 0xe361c6e2, 0x51ef90b0, + 0x394f90ae, 0x32c64b1e, 0xf3e1988f, 0xf7aca363, 0x7e3f3a3f, 0x943150d8, + 0x3ff998fd, 0x3e80ffdd, 0x8affef06, 0x8e876b7d, 0xf7db873f, 0xca2bbd40, + 0xc1f610cf, 0xb81f603a, 0xb164dcfc, 0x1d4cb78d, 0x05483bfe, 0xebe0cdae, + 0x6a83e456, 0xc5ee3094, 0xee0fa57d, 0x91fd6067, 0xcb5bfb21, 0x94225ee8, + 0x13df018f, 0x05fafb29, 0x1ba147ae, 0xa38a3e58, 0xa81994c7, 0xc590fbce, + 0x4769efc4, 0x0762b97d, 0xf645feb4, 0xf1507f13, 0x6ec51a7a, 0xc4173c0f, + 0x82730b95, 0x513339ec, 0xfd23ad9c, 0x7bbc41f2, 0x4f7830d0, 0xb7f7eca9, + 0xcbf63eb2, 0x6fffb5f9, 0x8ff65f3c, 0x73dfa3ee, 0xefcd3ff0, 0x9bc460d1, + 0x6eee0eb1, 0xcc253bf9, 0x9e5ad5af, 0xcf21ab37, 0x7d2f7bf6, 0xae01f782, + 0xaa3c4467, 0x9733e262, 0xd3fc5097, 0x7e6131a6, 0xc7e9f1be, 0x9dbca24f, + 0x7424126d, 0xd826fed9, 0x3ba7e636, 0xf43d1e8d, 0xe7e2682f, 0x45eb6b27, + 0xfcff048f, 0x696efe42, 0xfa1a33f6, 0x234d699e, 0xfe3977af, 0x6bca7af4, + 0xcf207acf, 0xc40b7186, 0xbcf1da07, 0xfe39e4be, 0xfb2512bb, 0x1efc5adc, + 0xa05aa4af, 0x97c9537c, 0xaf75e4cb, 0x6c7909d9, 0x30483dd0, 0x14bccc5e, + 0x06d4955f, 0x086b2f3f, 0xb5ef7fce, 0x94d77c0c, 0xf9c8ebc7, 0x3f62acbd, + 0xdcab8caf, 0xfac1a7c4, 0xe3c6bfeb, 0x76d8be79, 0x0353e539, 0xf8ca17c7, + 0xca2fc019, 0xfacaf6e7, 0x62e8fc95, 0x85e29b12, 0x2e313afd, 0x50efe495, + 0xc8aedf81, 0x1f485bae, 0x8c268a8f, 0x8b34b6b3, 0x7967a46e, 0x7d377eab, + 0xf4e78537, 0x3df3a446, 0xc26ff7e4, 0x273c267b, 0x83b67c84, 0xce83a6e4, + 0x6fad99e5, 0xb697dd0d, 0x4fe84de8, 0x683f479d, 0xfd06efc7, 0x57860587, + 0x7cefcaf8, 0xd78679ac, 0xcddfc199, 0x229afdf8, 0x5f006217, 0x436bef91, + 0xc33e2af8, 0x8d35f3f3, 0xdedf2823, 0xf568b4f8, 0x39785ca1, 0x17be157f, + 0x3ce8db88, 0x7c48f805, 0xdd4cfd9e, 0x07289193, 0x05fdf8fb, 0xfdf101c8, + 0x77ce2eec, 0xc443db6d, 0x2cb57f77, 0xf7fc2d07, 0xf8ea4a49, 0x17e81079, + 0xf1abc9f9, 0x5f7c6aff, 0x7c83db20, 0x3889c671, 0xe5ef778c, 0xe988adf3, + 0x9a07bf2e, 0x20bb993e, 0x7975f515, 0x26c6eee1, 0x07891980, 0xce621999, + 0x51db3a53, 0x5cb9e04b, 0x79d79e9b, 0xca045103, 0x4bfae433, 0x53dd4ce9, + 0x5e47af68, 0xfe31f143, 0xf79c0445, 0x60cf3f00, 0xb23bd09e, 0xd8cbc0fb, + 0x7e8e946f, 0x55bca58f, 0xa2e5d3e7, 0x9bf2e45f, 0x715bedaf, 0xafddc60f, + 0x433ee8ea, 0x45dff1b0, 0xe3fd6d28, 0xc84f7887, 0x416df29a, 0xff209bbf, + 0xfe2941ae, 0x37b602ae, 0xe8067a68, 0x3fa6ed80, 0x165d7bd1, 0x9e92875e, + 0x71848370, 0xcc65c6ec, 0x943e9911, 0xe764679d, 0x8729ef95, 0x3986c38d, + 0x2fe2506f, 0x12331ee6, 0x7df94cf5, 0xad0ec505, 0x3c5bbf95, 0x7529df71, + 0x96afd22c, 0x714c8eff, 0x389fd82b, 0x7922df3a, 0x38aee73b, 0xbf9782a2, + 0x468ab944, 0x0e68fab9, 0xc7db2ff6, 0x3c0683fb, 0xdf871919, 0x4f286b29, + 0x7937d01b, 0xa3df867c, 0x05f3bb40, 0x0ea6c581, 0xab6a2f61, 0x421e8f37, + 0x2e214a6e, 0xca8745c3, 0xb829b38f, 0x768377df, 0xf8f7c264, 0x9726567d, + 0x662cf72f, 0x0d5ffdc1, 0x40d8f92a, 0x947e067e, 0x19e660ea, 0xc972df29, + 0xd5ced2e7, 0x51273a26, 0xed538dfc, 0xf299b33d, 0x43972332, 0x63dfa335, + 0xb68d54e9, 0xef380d6e, 0x4e979ce8, 0x6fc59fdf, 0xdc70faf4, 0xb58205be, + 0x44e69a06, 0x5f2efcf1, 0x0bdb2f65, 0xb8a86fed, 0xf30e7ddf, 0x17fd1137, + 0xff419397, 0x93cfcfc6, 0x7f3c8d0b, 0x9adca8f3, 0xa61df489, 0xdd94eb1b, + 0x2bd52d76, 0x1d291ced, 0x677c0268, 0xefd90e71, 0x73f1df23, 0x5a65bef4, + 0xf33bf3f2, 0xae51cbec, 0x4f1b2e77, 0xd208afed, 0xe33f7863, 0x7da48e2e, + 0xcfc85cec, 0x4c2e771b, 0x5967f6a4, 0xdf1a955f, 0xd9fbe6ab, 0x3a04d8f9, + 0x39d38dff, 0xbef1b372, 0xd8c7be58, 0xc24b6a99, 0x0527d37a, 0x71bbb2fb, + 0x1a0609bc, 0xe24590ef, 0xc6cb12f7, 0xe907b63f, 0x8a9a4634, 0x7e0fdb76, + 0x7ff00def, 0x4dd86c7f, 0xf71732f5, 0xc705b99f, 0xe4057d2f, 0x37f7c60f, + 0xebbe8318, 0x66efbe57, 0xc5b4df6a, 0xb0bf40c6, 0xbcb5d791, 0xeaf6e464, + 0x3373cea0, 0xe4725fbc, 0xebb45cb3, 0xdafb07fe, 0xdaee3193, 0x243af02f, + 0xde2e5777, 0x87a89647, 0xce6faf8e, 0x4f4bf1e6, 0x8c52d44b, 0x63fa84e7, + 0xe252df54, 0xe7435dbd, 0xd9bf7254, 0x866e3cd9, 0xed1f747e, 0xdfc827de, + 0x05a6f8bb, 0x752b5bde, 0xb8fb3dcd, 0x6b34951c, 0x92e47be8, 0x51ff46fa, + 0x59d43fc4, 0xf55d7c51, 0x783ee897, 0xe8074bf6, 0x3fef02de, 0x473a08de, + 0x3b39dfe6, 0xaae63b65, 0x395ec917, 0x77f9ca9b, 0x19e2f55f, 0xd28fbdc2, + 0xf15d34ef, 0x27731d5d, 0x5f4912ab, 0x29e6b193, 0xa5f4bdb4, 0x206e23b6, + 0xbda1e961, 0x2ee7e8d1, 0x2345d474, 0x55dc61dd, 0x5e7c11da, 0x2b883dfc, + 0x7d05b5c7, 0x6ef2e69f, 0x02ebc4b9, 0x845fc8bb, 0xff80bff6, 0x6f7f3f00, + 0xd91dfcb6, 0xf25aecb5, 0x14b1f5ff, 0xa6fac157, 0x13b77e05, 0x0f4bffea, + 0x0dde7e5c, 0xbb073ded, 0x96f5c79f, 0xd515f77d, 0xf557b123, 0xdae6b754, + 0x73f93eff, 0xcd7fbde5, 0x7fa871e6, 0x583ddedf, 0x2fffea97, 0xf347159d, + 0x22997db7, 0xe36839e1, 0xf10f7437, 0xfa7cb69b, 0x8737e6de, 0xd0fc2767, + 0xb7281177, 0x75c0cc9e, 0x92bf8879, 0xac503bfc, 0xfc218655, 0x3c74de3a, + 0x1179d705, 0xba754df8, 0x72f73f12, 0xbee9cb7a, 0x8007f101, 0x8786cebe, + 0xb8ffa12f, 0x4d9cff1a, 0x61bd6f8b, 0x2b43d90a, 0xf58b95aa, 0xe87ffdd1, + 0xfb7c037b, 0xc4e3e04f, 0x86bfc11f, 0x70ff342d, 0xff88bbfc, 0x081d3e00, + 0xa6e5dfe1, 0xeb1dffbb, 0x6c535968, 0x8128f7d0, 0x08fdf374, 0x7c0915ba, + 0xdb66dffc, 0xf4bed19a, 0x0f617c1c, 0xdf2309d6, 0x2eb0966e, 0x330a72ed, + 0x7d30f7e2, 0x697f282b, 0xaed099d3, 0x407db495, 0xeb97e3fa, 0x80cfe029, + 0x06cfce7e, 0x2fc83afe, 0x55d9b6c9, 0xa2e9f46b, 0xf4efe907, 0xa2942c2c, + 0x7a19f9e9, 0x8c72e1ee, 0x2ddfc3f4, 0xdd8e7a73, 0x97c10c26, 0x9e34ecde, + 0xd1467927, 0xff6bcbbe, 0x00c0e3c2, 0x91d3097e, 0x6e28674f, 0x0a4f8e1c, + 0xeff24c1d, 0xadf00d88, 0x685feb96, 0x87f0177f, 0x7e653fee, 0xf7f0ff21, + 0xceb85cd4, 0x20cf8e68, 0x0d80f85c, 0xd5fc0f61, 0xfce3ca3a, 0x83c9f721, + 0xd79079fc, 0xa9ea855d, 0xf4e1cfbc, 0xabd3d143, 0xd2a7ffad, 0x52d92fe7, + 0x7428bc90, 0x6876f9ea, 0xcf1c6e3b, 0x9f67fef5, 0x3504da3f, 0x7f3a0f8b, + 0xf3c78c34, 0x4133a6c7, 0x7eca8fe7, 0xda73e47b, 0xf922fd9e, 0xeff2cdc7, + 0x0bda84ac, 0xd0983be5, 0xd7938ef5, 0x7f7f94eb, 0xd1a0e7a1, 0x7a718063, + 0x79216f5e, 0xd19c3676, 0x7b6a79e2, 0x9efa21fd, 0xf41fd14e, 0xf5809e13, + 0x2c78bcf7, 0xce36ec97, 0x275f0433, 0x33cf978c, 0xc79e875b, 0x682970d5, + 0x57b7529e, 0x57ab754b, 0xda82ef99, 0x778e3b76, 0x7eff83a1, 0xd0ef05e1, + 0xf1a6a9e7, 0x615cf91a, 0x2fe0873b, 0xbcfe01ed, 0x1b4db053, 0xc30c2a3f, + 0x30c30c30, 0x0c30c30c, 0xc30c30c3, 0x30c30c30, 0x0c30c30c, 0xc30c30c3, + 0x30c30c30, 0x0c30c30c, 0xc30c30c3, 0x30c30c30, 0x0c30c30c, 0xc30c30c3, + 0x30c30c30, 0x0c30c30c, 0xc30c30c3, 0x30c30c30, 0xc1b7ff0c, 0x8dca0bff, + 0x8000e737, 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x20000131, + 0x22b0030c, 0xb0131302, 0x14e7ff1b, 0x93c9084d, 0x26ebaf39, 0x6db6db63, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xf6db6db6, 0x10192fc7, + 0x8000dcb1, 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x20000131, + 0x22b0030c, 0xb0131302, 0x14e7ff1b, 0x93c9084d, 0x26ebaf39, 0x6db6db63, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xf6db6db6, 0x10192fc7, + 0x8000dcb1, 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x20000131, + 0x22b0030c, 0xb0131302, 0x14e7ff1b, 0x93c9084d, 0x26ebaf39, 0x6db6db63, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xf6db6db6, 0x10192fc7, + 0x8000dcb1, 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x20000131, + 0x22b0030c, 0xb0131302, 0x14e7ff1b, 0x93c9084d, 0x26ebaf39, 0x6db6db63, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xf6db6db6, 0x10192fc7, + 0x8000dcb1, 0x00008000, 0x00088b1f, 0x00000000, 0xc5edff00, 0x20000131, + 0x22b0030c, 0xb0131302, 0x14e7ff1b, 0x93c9084d, 0x26ebaf39, 0x6db6db63, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, + 0xdb6db6db, 0xb6db6db6, 0x6db6db6d, 0xdb6db6db, 0xf6db6db6, 0x10192fc7, + 0x8000dcb1, 0x00008000, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0x00100000, 0x00000000, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, 0xffffffff, + 0xffffffff, 0xffffffff, 0x00100000, 0x00000000, 0xfffffff3, 0x314fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0000cf3c, 0xcdcdcdcd, + 0xfffffff1, 0x30efffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0001cf3c, 0xcdcdcdcd, 0xfffffff6, 0x305fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0002cf3c, 0xcdcdcdcd, 0xfffff406, 0x1cbfffff, + 0x0c30c305, 0xc30c30c3, 0xcf300014, 0xf3cf3cf3, 0x0004cf3c, 0xcdcdcdcd, + 0xfffffff2, 0x304fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0008cf3c, 0xcdcdcdcd, 0xfffffffa, 0x302fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0010cf3c, 0xcdcdcdcd, 0xfffffff7, 0x31efffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0020cf3c, 0xcdcdcdcd, + 0xfffffff5, 0x302fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0040cf3c, 0xcdcdcdcd, 0xfffffff3, 0x310fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0000cf3c, 0xcdcdcdcd, 0xfffffff1, 0x310fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0001cf3c, 0xcdcdcdcd, + 0xfffffff6, 0x305fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0002cf3c, 0xcdcdcdcd, 0xfffff406, 0x1cbfffff, 0x0c30c305, 0xc30c30c3, + 0xcf300014, 0xf3cf3cf3, 0x0004cf3c, 0xcdcdcdcd, 0xfffffff2, 0x304fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0008cf3c, 0xcdcdcdcd, + 0xfffffffa, 0x302fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0010cf3c, 0xcdcdcdcd, 0xfffffff7, 0x30efffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0020cf3c, 0xcdcdcdcd, 0xfffffff5, 0x304fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0040cf3c, 0xcdcdcdcd, + 0xfffffff3, 0x31efffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0000cf3c, 0xcdcdcdcd, 0xfffffff1, 0x310fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0001cf3c, 0xcdcdcdcd, 0xfffffff6, 0x305fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0002cf3c, 0xcdcdcdcd, + 0xfffff406, 0x1cbfffff, 0x0c30c305, 0xc30c30c3, 0xcf300014, 0xf3cf3cf3, + 0x0004cf3c, 0xcdcdcdcd, 0xfffffff2, 0x304fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0008cf3c, 0xcdcdcdcd, 0xfffffffa, 0x302fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0010cf3c, 0xcdcdcdcd, + 0xffffff97, 0x056fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cc000, 0xf3cf3cf3, + 0x0020cf3c, 0xcdcdcdcd, 0xfffffff5, 0x310fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0040cf3c, 0xcdcdcdcd, 0xfffffff3, 0x320fffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, 0x0000cf3c, 0xcdcdcdcd, + 0xfffffff1, 0x310fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0001cf3c, 0xcdcdcdcd, 0xfffffff6, 0x305fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf300, 0xf3cf3cf3, 0x0002cf3c, 0xcdcdcdcd, 0xfffff406, 0x1cbfffff, + 0x0c30c305, 0xc30c30c3, 0xcf300014, 0xf3cf3cf3, 0x0004cf3c, 0xcdcdcdcd, + 0xfffffff2, 0x304fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0008cf3c, 0xcdcdcdcd, 0xffffff8a, 0x042fffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cc000, 0xf3cf3cf3, 0x0010cf3c, 0xcdcdcdcd, 0xffffff97, 0x05cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cc000, 0xf3cf3cf3, 0x0020cf3c, 0xcdcdcdcd, + 0xfffffff5, 0x310fffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf300, 0xf3cf3cf3, + 0x0040cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0000cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0001cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0002cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0004cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0008cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0010cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0020cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0040cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0000cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0001cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0002cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0004cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0008cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0010cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0020cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0040cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0000cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0001cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0002cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0004cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0008cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0010cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0020cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0040cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0000cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0001cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0002cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0004cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0008cf3c, 0xcdcdcdcd, + 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, + 0x0010cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, 0x0c30c30c, 0xc30c30c3, + 0xcf3cf3cc, 0xf3cf3cf3, 0x0020cf3c, 0xcdcdcdcd, 0xffffffff, 0x30cfffff, + 0x0c30c30c, 0xc30c30c3, 0xcf3cf3cc, 0xf3cf3cf3, 0x0040cf3c, 0xcdcdcdcd, + 0x000a0000, 0x000700a0, 0x00028110, 0x000b8138, 0x000201f0, 0x00010210, + 0x000f0220, 0x00010310, 0x00080000, 0x00080080, 0x00028100, 0x000b8128, + 0x000201e0, 0x00010200, 0x00070210, 0x00020280, 0x000f0000, 0x000800f0, + 0x00028170, 0x000b8198, 0x00020250, 0x00010270, 0x000b8280, 0x00080338, + 0x00100000, 0x00080100, 0x00028180, 0x000b81a8, 0x00020260, 0x00018280, + 0x000e8298, 0x00080380, 0xcccccccc, 0xcccccccc, 0xcccccccc, 0xcccccccc, + 0x00002000, 0xcccccccc, 0xcccccccc, 0xcccccccc, 0xcccccccc, 0x00002000, + 0xcccccccc, 0xcccccccc, 0xcccccccc, 0xcccccccc, 0x00002000 +}; + +#endif /*__BNX2X_INIT_VALUES_H__*/ diff --git a/drivers/net/bnx2x_reg.h b/drivers/net/bnx2x_reg.h new file mode 100644 index 000000000000..86055297ab02 --- /dev/null +++ b/drivers/net/bnx2x_reg.h @@ -0,0 +1,4394 @@ +/* bnx2x_reg.h: Broadcom Everest network driver. + * + * Copyright (c) 2007 Broadcom Corporation + * + * This program is free software; you can redistribute it and/or modify + * it under the terms of the GNU General Public License as published by + * the Free Software Foundation. + * + * The registers description starts with the regsister Access type followed + * by size in bits. For example [RW 32]. The access types are: + * R - Read only + * RC - Clear on read + * RW - Read/Write + * ST - Statistics register (clear on read) + * W - Write only + * WB - Wide bus register - the size is over 32 bits and it should be + * read/write in consecutive 32 bits accesses + * WR - Write Clear (write 1 to clear the bit) + * + */ + + +/* [R 19] Interrupt register #0 read */ +#define BRB1_REG_BRB1_INT_STS 0x6011c +/* [RW 4] Parity mask register #0 read/write */ +#define BRB1_REG_BRB1_PRTY_MASK 0x60138 +/* [RW 10] At address BRB1_IND_FREE_LIST_PRS_CRDT initialize free head. At + address BRB1_IND_FREE_LIST_PRS_CRDT+1 initialize free tail. At address + BRB1_IND_FREE_LIST_PRS_CRDT+2 initialize parser initial credit. */ +#define BRB1_REG_FREE_LIST_PRS_CRDT 0x60200 +/* [RW 23] LL RAM data. */ +#define BRB1_REG_LL_RAM 0x61000 +/* [R 24] The number of full blocks. */ +#define BRB1_REG_NUM_OF_FULL_BLOCKS 0x60090 +/* [ST 32] The number of cycles that the write_full signal towards MAC #0 + was asserted. */ +#define BRB1_REG_NUM_OF_FULL_CYCLES_0 0x600c8 +#define BRB1_REG_NUM_OF_FULL_CYCLES_1 0x600cc +#define BRB1_REG_NUM_OF_FULL_CYCLES_2 0x600d0 +#define BRB1_REG_NUM_OF_FULL_CYCLES_3 0x600d4 +#define BRB1_REG_NUM_OF_FULL_CYCLES_4 0x600d8 +/* [ST 32] The number of cycles that the pause signal towards MAC #0 was + asserted. */ +#define BRB1_REG_NUM_OF_PAUSE_CYCLES_0 0x600b8 +#define BRB1_REG_NUM_OF_PAUSE_CYCLES_1 0x600bc +#define BRB1_REG_NUM_OF_PAUSE_CYCLES_2 0x600c0 +#define BRB1_REG_NUM_OF_PAUSE_CYCLES_3 0x600c4 +/* [RW 10] Write client 0: De-assert pause threshold. */ +#define BRB1_REG_PAUSE_HIGH_THRESHOLD_0 0x60078 +#define BRB1_REG_PAUSE_HIGH_THRESHOLD_1 0x6007c +/* [RW 10] Write client 0: Assert pause threshold. */ +#define BRB1_REG_PAUSE_LOW_THRESHOLD_0 0x60068 +#define BRB1_REG_PAUSE_LOW_THRESHOLD_1 0x6006c +/* [RW 1] Reset the design by software. */ +#define BRB1_REG_SOFT_RESET 0x600dc +/* [R 5] Used to read the value of the XX protection CAM occupancy counter. */ +#define CCM_REG_CAM_OCCUP 0xd0188 +/* [RW 1] CM - CFC Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_CCM_CFC_IFEN 0xd003c +/* [RW 1] CM - QM Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_CCM_CQM_IFEN 0xd000c +/* [RW 1] If set the Q index; received from the QM is inserted to event ID. + Otherwise 0 is inserted. */ +#define CCM_REG_CCM_CQM_USE_Q 0xd00c0 +/* [RW 11] Interrupt mask register #0 read/write */ +#define CCM_REG_CCM_INT_MASK 0xd01e4 +/* [R 11] Interrupt register #0 read */ +#define CCM_REG_CCM_INT_STS 0xd01d8 +/* [RW 3] The size of AG context region 0 in REG-pairs. Designates the MS + REG-pair number (e.g. if region 0 is 6 REG-pairs; the value should be 5). + Is used to determine the number of the AG context REG-pairs written back; + when the input message Reg1WbFlg isn't set. */ +#define CCM_REG_CCM_REG0_SZ 0xd00c4 +/* [RW 1] CM - STORM 0 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_CCM_STORM0_IFEN 0xd0004 +/* [RW 1] CM - STORM 1 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_CCM_STORM1_IFEN 0xd0008 +/* [RW 1] CDU AG read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define CCM_REG_CDU_AG_RD_IFEN 0xd0030 +/* [RW 1] CDU AG write Interface enable. If 0 - the request and valid input + are disregarded; all other signals are treated as usual; if 1 - normal + activity. */ +#define CCM_REG_CDU_AG_WR_IFEN 0xd002c +/* [RW 1] CDU STORM read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define CCM_REG_CDU_SM_RD_IFEN 0xd0038 +/* [RW 1] CDU STORM write Interface enable. If 0 - the request and valid + input is disregarded; all other signals are treated as usual; if 1 - + normal activity. */ +#define CCM_REG_CDU_SM_WR_IFEN 0xd0034 +/* [RW 4] CFC output initial credit. Max credit available - 15.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 1 at start-up. */ +#define CCM_REG_CFC_INIT_CRD 0xd0204 +/* [RW 2] Auxillary counter flag Q number 1. */ +#define CCM_REG_CNT_AUX1_Q 0xd00c8 +/* [RW 2] Auxillary counter flag Q number 2. */ +#define CCM_REG_CNT_AUX2_Q 0xd00cc +/* [RW 28] The CM header value for QM request (primary). */ +#define CCM_REG_CQM_CCM_HDR_P 0xd008c +/* [RW 28] The CM header value for QM request (secondary). */ +#define CCM_REG_CQM_CCM_HDR_S 0xd0090 +/* [RW 1] QM - CM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_CQM_CCM_IFEN 0xd0014 +/* [RW 6] QM output initial credit. Max credit available - 32. Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 32 at start-up. */ +#define CCM_REG_CQM_INIT_CRD 0xd020c +/* [RW 3] The weight of the QM (primary) input in the WRR mechanism. 0 + stands for weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define CCM_REG_CQM_P_WEIGHT 0xd00b8 +/* [RW 1] Input SDM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_CSDM_IFEN 0xd0018 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the SDM interface is detected. */ +#define CCM_REG_CSDM_LENGTH_MIS 0xd0170 +/* [RW 28] The CM header for QM formatting in case of an error in the QM + inputs. */ +#define CCM_REG_ERR_CCM_HDR 0xd0094 +/* [RW 8] The Event ID in case the input message ErrorFlg is set. */ +#define CCM_REG_ERR_EVNT_ID 0xd0098 +/* [RW 8] FIC0 output initial credit. Max credit available - 255. Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define CCM_REG_FIC0_INIT_CRD 0xd0210 +/* [RW 8] FIC1 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define CCM_REG_FIC1_INIT_CRD 0xd0214 +/* [RW 1] Arbitration between Input Arbiter groups: 0 - fair Round-Robin; 1 + - strict priority defined by ~ccm_registers_gr_ag_pr.gr_ag_pr; + ~ccm_registers_gr_ld0_pr.gr_ld0_pr and + ~ccm_registers_gr_ld1_pr.gr_ld1_pr. Groups are according to channels and + outputs to STORM: aggregation; load FIC0; load FIC1 and store. */ +#define CCM_REG_GR_ARB_TYPE 0xd015c +/* [RW 2] Load (FIC0) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed; that the Store channel priority is + the compliment to 4 of the rest priorities - Aggregation channel; Load + (FIC0) channel and Load (FIC1). */ +#define CCM_REG_GR_LD0_PR 0xd0164 +/* [RW 2] Load (FIC1) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed; that the Store channel priority is + the compliment to 4 of the rest priorities - Aggregation channel; Load + (FIC0) channel and Load (FIC1). */ +#define CCM_REG_GR_LD1_PR 0xd0168 +/* [RW 2] General flags index. */ +#define CCM_REG_INV_DONE_Q 0xd0108 +/* [RW 4] The number of double REG-pairs(128 bits); loaded from the STORM + context and sent to STORM; for a specific connection type. The double + REG-pairs are used in order to align to STORM context row size of 128 + bits. The offset of these data in the STORM context is always 0. Index + _(0..15) stands for the connection type (one of 16). */ +#define CCM_REG_N_SM_CTX_LD_0 0xd004c +#define CCM_REG_N_SM_CTX_LD_1 0xd0050 +#define CCM_REG_N_SM_CTX_LD_10 0xd0074 +#define CCM_REG_N_SM_CTX_LD_11 0xd0078 +#define CCM_REG_N_SM_CTX_LD_12 0xd007c +#define CCM_REG_N_SM_CTX_LD_13 0xd0080 +#define CCM_REG_N_SM_CTX_LD_14 0xd0084 +#define CCM_REG_N_SM_CTX_LD_15 0xd0088 +#define CCM_REG_N_SM_CTX_LD_2 0xd0054 +#define CCM_REG_N_SM_CTX_LD_3 0xd0058 +#define CCM_REG_N_SM_CTX_LD_4 0xd005c +/* [RW 1] Input pbf Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define CCM_REG_PBF_IFEN 0xd0028 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the pbf interface is detected. */ +#define CCM_REG_PBF_LENGTH_MIS 0xd0180 +/* [RW 3] The weight of the input pbf in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define CCM_REG_PBF_WEIGHT 0xd00ac +/* [RW 6] The physical queue number of queue number 1 per port index. */ +#define CCM_REG_PHYS_QNUM1_0 0xd0134 +#define CCM_REG_PHYS_QNUM1_1 0xd0138 +/* [RW 6] The physical queue number of queue number 2 per port index. */ +#define CCM_REG_PHYS_QNUM2_0 0xd013c +#define CCM_REG_PHYS_QNUM2_1 0xd0140 +/* [RW 6] The physical queue number of queue number 3 per port index. */ +#define CCM_REG_PHYS_QNUM3_0 0xd0144 +/* [RW 6] The physical queue number of queue number 0 with QOS equal 0 port + index 0. */ +#define CCM_REG_QOS_PHYS_QNUM0_0 0xd0114 +#define CCM_REG_QOS_PHYS_QNUM0_1 0xd0118 +/* [RW 6] The physical queue number of queue number 0 with QOS equal 1 port + index 0. */ +#define CCM_REG_QOS_PHYS_QNUM1_0 0xd011c +#define CCM_REG_QOS_PHYS_QNUM1_1 0xd0120 +/* [RW 6] The physical queue number of queue number 0 with QOS equal 2 port + index 0. */ +#define CCM_REG_QOS_PHYS_QNUM2_0 0xd0124 +/* [RW 1] STORM - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define CCM_REG_STORM_CCM_IFEN 0xd0010 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the STORM interface is detected. */ +#define CCM_REG_STORM_LENGTH_MIS 0xd016c +/* [RW 1] Input tsem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define CCM_REG_TSEM_IFEN 0xd001c +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the tsem interface is detected. */ +#define CCM_REG_TSEM_LENGTH_MIS 0xd0174 +/* [RW 3] The weight of the input tsem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define CCM_REG_TSEM_WEIGHT 0xd00a0 +/* [RW 1] Input usem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define CCM_REG_USEM_IFEN 0xd0024 +/* [RC 1] Set when message length mismatch (relative to last indication) at + the usem interface is detected. */ +#define CCM_REG_USEM_LENGTH_MIS 0xd017c +/* [RW 3] The weight of the input usem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define CCM_REG_USEM_WEIGHT 0xd00a8 +/* [RW 1] Input xsem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define CCM_REG_XSEM_IFEN 0xd0020 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the xsem interface is detected. */ +#define CCM_REG_XSEM_LENGTH_MIS 0xd0178 +/* [RW 3] The weight of the input xsem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define CCM_REG_XSEM_WEIGHT 0xd00a4 +/* [RW 19] Indirect access to the descriptor table of the XX protection + mechanism. The fields are: [5:0] - message length; [12:6] - message + pointer; 18:13] - next pointer. */ +#define CCM_REG_XX_DESCR_TABLE 0xd0300 +/* [R 7] Used to read the value of XX protection Free counter. */ +#define CCM_REG_XX_FREE 0xd0184 +/* [RW 6] Initial value for the credit counter; responsible for fulfilling + of the Input Stage XX protection buffer by the XX protection pending + messages. Max credit available - 127. Write writes the initial credit + value; read returns the current value of the credit counter. Must be + initialized to maximum XX protected message size - 2 at start-up. */ +#define CCM_REG_XX_INIT_CRD 0xd0220 +/* [RW 7] The maximum number of pending messages; which may be stored in XX + protection. At read the ~ccm_registers_xx_free.xx_free counter is read. + At write comprises the start value of the ~ccm_registers_xx_free.xx_free + counter. */ +#define CCM_REG_XX_MSG_NUM 0xd0224 +/* [RW 8] The Event ID; sent to the STORM in case of XX overflow. */ +#define CCM_REG_XX_OVFL_EVNT_ID 0xd0044 +/* [RW 18] Indirect access to the XX table of the XX protection mechanism. + The fields are: [5:0] - tail pointer; 11:6] - Link List size; 17:12] - + header pointer. */ +#define CCM_REG_XX_TABLE 0xd0280 +#define CDU_REG_CDU_CHK_MASK0 0x101000 +#define CDU_REG_CDU_CHK_MASK1 0x101004 +#define CDU_REG_CDU_CONTROL0 0x101008 +#define CDU_REG_CDU_DEBUG 0x101010 +#define CDU_REG_CDU_GLOBAL_PARAMS 0x101020 +/* [RW 7] Interrupt mask register #0 read/write */ +#define CDU_REG_CDU_INT_MASK 0x10103c +/* [R 7] Interrupt register #0 read */ +#define CDU_REG_CDU_INT_STS 0x101030 +/* [RW 5] Parity mask register #0 read/write */ +#define CDU_REG_CDU_PRTY_MASK 0x10104c +/* [RC 32] logging of error data in case of a CDU load error: + {expected_cid[15:0]; xpected_type[2:0]; xpected_region[2:0]; ctive_error; + ype_error; ctual_active; ctual_compressed_context}; */ +#define CDU_REG_ERROR_DATA 0x101014 +/* [WB 216] L1TT ram access. each entry has the following format : + {mrege_regions[7:0]; ffset12[5:0]...offset0[5:0]; + ength12[5:0]...length0[5:0]; d12[3:0]...id0[3:0]} */ +#define CDU_REG_L1TT 0x101800 +/* [WB 24] MATT ram access. each entry has the following + format:{RegionLength[11:0]; egionOffset[11:0]} */ +#define CDU_REG_MATT 0x101100 +/* [R 1] indication the initializing the activity counter by the hardware + was done. */ +#define CFC_REG_AC_INIT_DONE 0x104078 +/* [RW 13] activity counter ram access */ +#define CFC_REG_ACTIVITY_COUNTER 0x104400 +#define CFC_REG_ACTIVITY_COUNTER_SIZE 256 +/* [R 1] indication the initializing the cams by the hardware was done. */ +#define CFC_REG_CAM_INIT_DONE 0x10407c +/* [RW 2] Interrupt mask register #0 read/write */ +#define CFC_REG_CFC_INT_MASK 0x104108 +/* [R 2] Interrupt register #0 read */ +#define CFC_REG_CFC_INT_STS 0x1040fc +/* [RC 2] Interrupt register #0 read clear */ +#define CFC_REG_CFC_INT_STS_CLR 0x104100 +/* [RW 4] Parity mask register #0 read/write */ +#define CFC_REG_CFC_PRTY_MASK 0x104118 +/* [RW 21] CID cam access (21:1 - Data; alid - 0) */ +#define CFC_REG_CID_CAM 0x104800 +#define CFC_REG_CONTROL0 0x104028 +#define CFC_REG_DEBUG0 0x104050 +/* [RW 14] indicates per error (in #cfc_registers_cfc_error_vector.cfc_error + vector) whether the cfc should be disabled upon it */ +#define CFC_REG_DISABLE_ON_ERROR 0x104044 +/* [RC 14] CFC error vector. when the CFC detects an internal error it will + set one of these bits. the bit description can be found in CFC + specifications */ +#define CFC_REG_ERROR_VECTOR 0x10403c +#define CFC_REG_INIT_REG 0x10404c +/* [RW 24] {weight_load_client7[2:0] to weight_load_client0[2:0]}. this + field allows changing the priorities of the weighted-round-robin arbiter + which selects which CFC load client should be served next */ +#define CFC_REG_LCREQ_WEIGHTS 0x104084 +/* [R 1] indication the initializing the link list by the hardware was done. */ +#define CFC_REG_LL_INIT_DONE 0x104074 +/* [R 9] Number of allocated LCIDs which are at empty state */ +#define CFC_REG_NUM_LCIDS_ALLOC 0x104020 +/* [R 9] Number of Arriving LCIDs in Link List Block */ +#define CFC_REG_NUM_LCIDS_ARRIVING 0x104004 +/* [R 9] Number of Inside LCIDs in Link List Block */ +#define CFC_REG_NUM_LCIDS_INSIDE 0x104008 +/* [R 9] Number of Leaving LCIDs in Link List Block */ +#define CFC_REG_NUM_LCIDS_LEAVING 0x104018 +/* [RW 8] The event id for aggregated interrupt 0 */ +#define CSDM_REG_AGG_INT_EVENT_0 0xc2038 +/* [RW 13] The start address in the internal RAM for the cfc_rsp lcid */ +#define CSDM_REG_CFC_RSP_START_ADDR 0xc2008 +/* [RW 16] The maximum value of the competion counter #0 */ +#define CSDM_REG_CMP_COUNTER_MAX0 0xc201c +/* [RW 16] The maximum value of the competion counter #1 */ +#define CSDM_REG_CMP_COUNTER_MAX1 0xc2020 +/* [RW 16] The maximum value of the competion counter #2 */ +#define CSDM_REG_CMP_COUNTER_MAX2 0xc2024 +/* [RW 16] The maximum value of the competion counter #3 */ +#define CSDM_REG_CMP_COUNTER_MAX3 0xc2028 +/* [RW 13] The start address in the internal RAM for the completion + counters. */ +#define CSDM_REG_CMP_COUNTER_START_ADDR 0xc200c +/* [RW 32] Interrupt mask register #0 read/write */ +#define CSDM_REG_CSDM_INT_MASK_0 0xc229c +#define CSDM_REG_CSDM_INT_MASK_1 0xc22ac +/* [RW 11] Parity mask register #0 read/write */ +#define CSDM_REG_CSDM_PRTY_MASK 0xc22bc +#define CSDM_REG_ENABLE_IN1 0xc2238 +#define CSDM_REG_ENABLE_IN2 0xc223c +#define CSDM_REG_ENABLE_OUT1 0xc2240 +#define CSDM_REG_ENABLE_OUT2 0xc2244 +/* [RW 4] The initial number of messages that can be sent to the pxp control + interface without receiving any ACK. */ +#define CSDM_REG_INIT_CREDIT_PXP_CTRL 0xc24bc +/* [ST 32] The number of ACK after placement messages received */ +#define CSDM_REG_NUM_OF_ACK_AFTER_PLACE 0xc227c +/* [ST 32] The number of packet end messages received from the parser */ +#define CSDM_REG_NUM_OF_PKT_END_MSG 0xc2274 +/* [ST 32] The number of requests received from the pxp async if */ +#define CSDM_REG_NUM_OF_PXP_ASYNC_REQ 0xc2278 +/* [ST 32] The number of commands received in queue 0 */ +#define CSDM_REG_NUM_OF_Q0_CMD 0xc2248 +/* [ST 32] The number of commands received in queue 10 */ +#define CSDM_REG_NUM_OF_Q10_CMD 0xc226c +/* [ST 32] The number of commands received in queue 11 */ +#define CSDM_REG_NUM_OF_Q11_CMD 0xc2270 +/* [ST 32] The number of commands received in queue 1 */ +#define CSDM_REG_NUM_OF_Q1_CMD 0xc224c +/* [ST 32] The number of commands received in queue 3 */ +#define CSDM_REG_NUM_OF_Q3_CMD 0xc2250 +/* [ST 32] The number of commands received in queue 4 */ +#define CSDM_REG_NUM_OF_Q4_CMD 0xc2254 +/* [ST 32] The number of commands received in queue 5 */ +#define CSDM_REG_NUM_OF_Q5_CMD 0xc2258 +/* [ST 32] The number of commands received in queue 6 */ +#define CSDM_REG_NUM_OF_Q6_CMD 0xc225c +/* [ST 32] The number of commands received in queue 7 */ +#define CSDM_REG_NUM_OF_Q7_CMD 0xc2260 +/* [ST 32] The number of commands received in queue 8 */ +#define CSDM_REG_NUM_OF_Q8_CMD 0xc2264 +/* [ST 32] The number of commands received in queue 9 */ +#define CSDM_REG_NUM_OF_Q9_CMD 0xc2268 +/* [RW 13] The start address in the internal RAM for queue counters */ +#define CSDM_REG_Q_COUNTER_START_ADDR 0xc2010 +/* [R 1] pxp_ctrl rd_data fifo empty in sdm_dma_rsp block */ +#define CSDM_REG_RSP_PXP_CTRL_RDATA_EMPTY 0xc2548 +/* [R 1] parser fifo empty in sdm_sync block */ +#define CSDM_REG_SYNC_PARSER_EMPTY 0xc2550 +/* [R 1] parser serial fifo empty in sdm_sync block */ +#define CSDM_REG_SYNC_SYNC_EMPTY 0xc2558 +/* [RW 32] Tick for timer counter. Applicable only when + ~csdm_registers_timer_tick_enable.timer_tick_enable =1 */ +#define CSDM_REG_TIMER_TICK 0xc2000 +/* [RW 5] The number of time_slots in the arbitration cycle */ +#define CSEM_REG_ARB_CYCLE_SIZE 0x200034 +/* [RW 3] The source that is associated with arbitration element 0. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2 */ +#define CSEM_REG_ARB_ELEMENT0 0x200020 +/* [RW 3] The source that is associated with arbitration element 1. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~csem_registers_arb_element0.arb_element0 */ +#define CSEM_REG_ARB_ELEMENT1 0x200024 +/* [RW 3] The source that is associated with arbitration element 2. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~csem_registers_arb_element0.arb_element0 + and ~csem_registers_arb_element1.arb_element1 */ +#define CSEM_REG_ARB_ELEMENT2 0x200028 +/* [RW 3] The source that is associated with arbitration element 3. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2.Could + not be equal to register ~csem_registers_arb_element0.arb_element0 and + ~csem_registers_arb_element1.arb_element1 and + ~csem_registers_arb_element2.arb_element2 */ +#define CSEM_REG_ARB_ELEMENT3 0x20002c +/* [RW 3] The source that is associated with arbitration element 4. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~csem_registers_arb_element0.arb_element0 + and ~csem_registers_arb_element1.arb_element1 and + ~csem_registers_arb_element2.arb_element2 and + ~csem_registers_arb_element3.arb_element3 */ +#define CSEM_REG_ARB_ELEMENT4 0x200030 +/* [RW 32] Interrupt mask register #0 read/write */ +#define CSEM_REG_CSEM_INT_MASK_0 0x200110 +#define CSEM_REG_CSEM_INT_MASK_1 0x200120 +/* [RW 32] Parity mask register #0 read/write */ +#define CSEM_REG_CSEM_PRTY_MASK_0 0x200130 +#define CSEM_REG_CSEM_PRTY_MASK_1 0x200140 +#define CSEM_REG_ENABLE_IN 0x2000a4 +#define CSEM_REG_ENABLE_OUT 0x2000a8 +/* [RW 32] This address space contains all registers and memories that are + placed in SEM_FAST block. The SEM_FAST registers are described in + appendix B. In order to access the SEM_FAST registers the base address + CSEM_REGISTERS_FAST_MEMORY (Offset: 0x220000) should be added to each + SEM_FAST register offset. */ +#define CSEM_REG_FAST_MEMORY 0x220000 +/* [RW 1] Disables input messages from FIC0 May be updated during run_time + by the microcode */ +#define CSEM_REG_FIC0_DISABLE 0x200224 +/* [RW 1] Disables input messages from FIC1 May be updated during run_time + by the microcode */ +#define CSEM_REG_FIC1_DISABLE 0x200234 +/* [RW 15] Interrupt table Read and write access to it is not possible in + the middle of the work */ +#define CSEM_REG_INT_TABLE 0x200400 +/* [ST 24] Statistics register. The number of messages that entered through + FIC0 */ +#define CSEM_REG_MSG_NUM_FIC0 0x200000 +/* [ST 24] Statistics register. The number of messages that entered through + FIC1 */ +#define CSEM_REG_MSG_NUM_FIC1 0x200004 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC0 */ +#define CSEM_REG_MSG_NUM_FOC0 0x200008 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC1 */ +#define CSEM_REG_MSG_NUM_FOC1 0x20000c +/* [ST 24] Statistics register. The number of messages that were sent to + FOC2 */ +#define CSEM_REG_MSG_NUM_FOC2 0x200010 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC3 */ +#define CSEM_REG_MSG_NUM_FOC3 0x200014 +/* [RW 1] Disables input messages from the passive buffer May be updated + during run_time by the microcode */ +#define CSEM_REG_PAS_DISABLE 0x20024c +/* [WB 128] Debug only. Passive buffer memory */ +#define CSEM_REG_PASSIVE_BUFFER 0x202000 +/* [WB 46] pram memory. B45 is parity; b[44:0] - data. */ +#define CSEM_REG_PRAM 0x240000 +/* [R 16] Valid sleeping threads indication have bit per thread */ +#define CSEM_REG_SLEEP_THREADS_VALID 0x20026c +/* [R 1] EXT_STORE FIFO is empty in sem_slow_ls_ext */ +#define CSEM_REG_SLOW_EXT_STORE_EMPTY 0x2002a0 +/* [RW 16] List of free threads . There is a bit per thread. */ +#define CSEM_REG_THREADS_LIST 0x2002e4 +/* [RW 3] The arbitration scheme of time_slot 0 */ +#define CSEM_REG_TS_0_AS 0x200038 +/* [RW 3] The arbitration scheme of time_slot 10 */ +#define CSEM_REG_TS_10_AS 0x200060 +/* [RW 3] The arbitration scheme of time_slot 11 */ +#define CSEM_REG_TS_11_AS 0x200064 +/* [RW 3] The arbitration scheme of time_slot 12 */ +#define CSEM_REG_TS_12_AS 0x200068 +/* [RW 3] The arbitration scheme of time_slot 13 */ +#define CSEM_REG_TS_13_AS 0x20006c +/* [RW 3] The arbitration scheme of time_slot 14 */ +#define CSEM_REG_TS_14_AS 0x200070 +/* [RW 3] The arbitration scheme of time_slot 15 */ +#define CSEM_REG_TS_15_AS 0x200074 +/* [RW 3] The arbitration scheme of time_slot 16 */ +#define CSEM_REG_TS_16_AS 0x200078 +/* [RW 3] The arbitration scheme of time_slot 17 */ +#define CSEM_REG_TS_17_AS 0x20007c +/* [RW 3] The arbitration scheme of time_slot 18 */ +#define CSEM_REG_TS_18_AS 0x200080 +/* [RW 3] The arbitration scheme of time_slot 1 */ +#define CSEM_REG_TS_1_AS 0x20003c +/* [RW 3] The arbitration scheme of time_slot 2 */ +#define CSEM_REG_TS_2_AS 0x200040 +/* [RW 3] The arbitration scheme of time_slot 3 */ +#define CSEM_REG_TS_3_AS 0x200044 +/* [RW 3] The arbitration scheme of time_slot 4 */ +#define CSEM_REG_TS_4_AS 0x200048 +/* [RW 3] The arbitration scheme of time_slot 5 */ +#define CSEM_REG_TS_5_AS 0x20004c +/* [RW 3] The arbitration scheme of time_slot 6 */ +#define CSEM_REG_TS_6_AS 0x200050 +/* [RW 3] The arbitration scheme of time_slot 7 */ +#define CSEM_REG_TS_7_AS 0x200054 +/* [RW 3] The arbitration scheme of time_slot 8 */ +#define CSEM_REG_TS_8_AS 0x200058 +/* [RW 3] The arbitration scheme of time_slot 9 */ +#define CSEM_REG_TS_9_AS 0x20005c +/* [RW 1] Parity mask register #0 read/write */ +#define DBG_REG_DBG_PRTY_MASK 0xc0a8 +/* [RW 2] debug only: These bits indicate the credit for PCI request type 4 + interface; MUST be configured AFTER pci_ext_buffer_strt_addr_lsb/msb are + configured */ +#define DBG_REG_PCI_REQ_CREDIT 0xc120 +/* [RW 32] Commands memory. The address to command X; row Y is to calculated + as 14*X+Y. */ +#define DMAE_REG_CMD_MEM 0x102400 +/* [RW 1] If 0 - the CRC-16c initial value is all zeroes; if 1 - the CRC-16c + initial value is all ones. */ +#define DMAE_REG_CRC16C_INIT 0x10201c +/* [RW 1] If 0 - the CRC-16 T10 initial value is all zeroes; if 1 - the + CRC-16 T10 initial value is all ones. */ +#define DMAE_REG_CRC16T10_INIT 0x102020 +/* [RW 2] Interrupt mask register #0 read/write */ +#define DMAE_REG_DMAE_INT_MASK 0x102054 +/* [RW 4] Parity mask register #0 read/write */ +#define DMAE_REG_DMAE_PRTY_MASK 0x102064 +/* [RW 1] Command 0 go. */ +#define DMAE_REG_GO_C0 0x102080 +/* [RW 1] Command 1 go. */ +#define DMAE_REG_GO_C1 0x102084 +/* [RW 1] Command 10 go. */ +#define DMAE_REG_GO_C10 0x102088 +#define DMAE_REG_GO_C10_SIZE 1 +/* [RW 1] Command 11 go. */ +#define DMAE_REG_GO_C11 0x10208c +#define DMAE_REG_GO_C11_SIZE 1 +/* [RW 1] Command 12 go. */ +#define DMAE_REG_GO_C12 0x102090 +#define DMAE_REG_GO_C12_SIZE 1 +/* [RW 1] Command 13 go. */ +#define DMAE_REG_GO_C13 0x102094 +#define DMAE_REG_GO_C13_SIZE 1 +/* [RW 1] Command 14 go. */ +#define DMAE_REG_GO_C14 0x102098 +#define DMAE_REG_GO_C14_SIZE 1 +/* [RW 1] Command 15 go. */ +#define DMAE_REG_GO_C15 0x10209c +#define DMAE_REG_GO_C15_SIZE 1 +/* [RW 1] Command 10 go. */ +#define DMAE_REG_GO_C10 0x102088 +/* [RW 1] Command 11 go. */ +#define DMAE_REG_GO_C11 0x10208c +/* [RW 1] Command 12 go. */ +#define DMAE_REG_GO_C12 0x102090 +/* [RW 1] Command 13 go. */ +#define DMAE_REG_GO_C13 0x102094 +/* [RW 1] Command 14 go. */ +#define DMAE_REG_GO_C14 0x102098 +/* [RW 1] Command 15 go. */ +#define DMAE_REG_GO_C15 0x10209c +/* [RW 1] Command 2 go. */ +#define DMAE_REG_GO_C2 0x1020a0 +/* [RW 1] Command 3 go. */ +#define DMAE_REG_GO_C3 0x1020a4 +/* [RW 1] Command 4 go. */ +#define DMAE_REG_GO_C4 0x1020a8 +/* [RW 1] Command 5 go. */ +#define DMAE_REG_GO_C5 0x1020ac +/* [RW 1] Command 6 go. */ +#define DMAE_REG_GO_C6 0x1020b0 +/* [RW 1] Command 7 go. */ +#define DMAE_REG_GO_C7 0x1020b4 +/* [RW 1] Command 8 go. */ +#define DMAE_REG_GO_C8 0x1020b8 +/* [RW 1] Command 9 go. */ +#define DMAE_REG_GO_C9 0x1020bc +/* [RW 1] DMAE GRC Interface (Target; aster) enable. If 0 - the acknowledge + input is disregarded; valid is deasserted; all other signals are treated + as usual; if 1 - normal activity. */ +#define DMAE_REG_GRC_IFEN 0x102008 +/* [RW 1] DMAE PCI Interface (Request; ead; rite) enable. If 0 - the + acknowledge input is disregarded; valid is deasserted; full is asserted; + all other signals are treated as usual; if 1 - normal activity. */ +#define DMAE_REG_PCI_IFEN 0x102004 +/* [RW 4] DMAE- PCI Request Interface initial credit. Write writes the + initial value to the credit counter; related to the address. Read returns + the current value of the counter. */ +#define DMAE_REG_PXP_REQ_INIT_CRD 0x1020c0 +/* [RW 8] Aggregation command. */ +#define DORQ_REG_AGG_CMD0 0x170060 +/* [RW 8] Aggregation command. */ +#define DORQ_REG_AGG_CMD1 0x170064 +/* [RW 8] Aggregation command. */ +#define DORQ_REG_AGG_CMD2 0x170068 +/* [RW 8] Aggregation command. */ +#define DORQ_REG_AGG_CMD3 0x17006c +/* [RW 28] UCM Header. */ +#define DORQ_REG_CMHEAD_RX 0x170050 +/* [RW 5] Interrupt mask register #0 read/write */ +#define DORQ_REG_DORQ_INT_MASK 0x170180 +/* [R 5] Interrupt register #0 read */ +#define DORQ_REG_DORQ_INT_STS 0x170174 +/* [RC 5] Interrupt register #0 read clear */ +#define DORQ_REG_DORQ_INT_STS_CLR 0x170178 +/* [RW 2] Parity mask register #0 read/write */ +#define DORQ_REG_DORQ_PRTY_MASK 0x170190 +/* [RW 8] The address to write the DPM CID to STORM. */ +#define DORQ_REG_DPM_CID_ADDR 0x170044 +/* [RW 5] The DPM mode CID extraction offset. */ +#define DORQ_REG_DPM_CID_OFST 0x170030 +/* [RW 12] The threshold of the DQ FIFO to send the almost full interrupt. */ +#define DORQ_REG_DQ_FIFO_AFULL_TH 0x17007c +/* [RW 12] The threshold of the DQ FIFO to send the full interrupt. */ +#define DORQ_REG_DQ_FIFO_FULL_TH 0x170078 +/* [R 13] Current value of the DQ FIFO fill level according to following + pointer. The range is 0 - 256 FIFO rows; where each row stands for the + doorbell. */ +#define DORQ_REG_DQ_FILL_LVLF 0x1700a4 +/* [R 1] DQ FIFO full status. Is set; when FIFO filling level is more or + equal to full threshold; reset on full clear. */ +#define DORQ_REG_DQ_FULL_ST 0x1700c0 +/* [RW 28] The value sent to CM header in the case of CFC load error. */ +#define DORQ_REG_ERR_CMHEAD 0x170058 +#define DORQ_REG_IF_EN 0x170004 +#define DORQ_REG_MODE_ACT 0x170008 +/* [RW 5] The normal mode CID extraction offset. */ +#define DORQ_REG_NORM_CID_OFST 0x17002c +/* [RW 28] TCM Header when only TCP context is loaded. */ +#define DORQ_REG_NORM_CMHEAD_TX 0x17004c +/* [RW 3] The number of simultaneous outstanding requests to Context Fetch + Interface. */ +#define DORQ_REG_OUTST_REQ 0x17003c +#define DORQ_REG_REGN 0x170038 +/* [R 4] Current value of response A counter credit. Initial credit is + configured through write to ~dorq_registers_rsp_init_crd.rsp_init_crd + register. */ +#define DORQ_REG_RSPA_CRD_CNT 0x1700ac +/* [R 4] Current value of response B counter credit. Initial credit is + configured through write to ~dorq_registers_rsp_init_crd.rsp_init_crd + register. */ +#define DORQ_REG_RSPB_CRD_CNT 0x1700b0 +/* [RW 4] The initial credit at the Doorbell Response Interface. The write + writes the same initial credit to the rspa_crd_cnt and rspb_crd_cnt. The + read reads this written value. */ +#define DORQ_REG_RSP_INIT_CRD 0x170048 +/* [RW 4] Initial activity counter value on the load request; when the + shortcut is done. */ +#define DORQ_REG_SHRT_ACT_CNT 0x170070 +/* [RW 28] TCM Header when both ULP and TCP context is loaded. */ +#define DORQ_REG_SHRT_CMHEAD 0x170054 +#define HC_CONFIG_0_REG_ATTN_BIT_EN_0 (0x1<<4) +#define HC_CONFIG_0_REG_INT_LINE_EN_0 (0x1<<3) +#define HC_CONFIG_0_REG_MSI_MSIX_INT_EN_0 (0x1<<2) +#define HC_CONFIG_0_REG_SINGLE_ISR_EN_0 (0x1<<1) +#define HC_REG_AGG_INT_0 0x108050 +#define HC_REG_AGG_INT_1 0x108054 +/* [RW 16] attention bit and attention acknowledge bits status for port 0 + and 1 according to the following address map: addr 0 - attn_bit_0; addr 1 + - attn_ack_bit_0; addr 2 - attn_bit_1; addr 3 - attn_ack_bit_1; */ +#define HC_REG_ATTN_BIT 0x108120 +/* [RW 16] attn bits status index for attn bit msg; addr 0 - function 0; + addr 1 - functin 1 */ +#define HC_REG_ATTN_IDX 0x108100 +/* [RW 32] port 0 lower 32 bits address field for attn messag. */ +#define HC_REG_ATTN_MSG0_ADDR_L 0x108018 +/* [RW 32] port 1 lower 32 bits address field for attn messag. */ +#define HC_REG_ATTN_MSG1_ADDR_L 0x108020 +/* [RW 8] status block number for attn bit msg - function 0; */ +#define HC_REG_ATTN_NUM_P0 0x108038 +/* [RW 8] status block number for attn bit msg - function 1 */ +#define HC_REG_ATTN_NUM_P1 0x10803c +#define HC_REG_CONFIG_0 0x108000 +#define HC_REG_CONFIG_1 0x108004 +/* [RW 3] Parity mask register #0 read/write */ +#define HC_REG_HC_PRTY_MASK 0x1080a0 +/* [RW 17] status block interrupt mask; one in each bit means unmask; zerow + in each bit means mask; bit 0 - default SB; bit 1 - SB_0; bit 2 - SB_1... + bit 16- SB_15; addr 0 - port 0; addr 1 - port 1 */ +#define HC_REG_INT_MASK 0x108108 +/* [RW 16] port 0 attn bit condition monitoring; each bit that is set will + lock a change fron 0 to 1 in the corresponding attention signals that + comes from the AEU */ +#define HC_REG_LEADING_EDGE_0 0x108040 +#define HC_REG_LEADING_EDGE_1 0x108048 +/* [RW 16] all producer and consumer of port 0 according to the following + addresses; U_prod: 0-15; C_prod: 16-31; U_cons: 32-47; C_cons:48-63; + Defoult_prod: U/C/X/T/Attn-64/65/66/67/68; Defoult_cons: + U/C/X/T/Attn-69/70/71/72/73 */ +#define HC_REG_P0_PROD_CONS 0x108200 +/* [RW 16] all producer and consumer of port 1according to the following + addresses; U_prod: 0-15; C_prod: 16-31; U_cons: 32-47; C_cons:48-63; + Defoult_prod: U/C/X/T/Attn-64/65/66/67/68; Defoult_cons: + U/C/X/T/Attn-69/70/71/72/73 */ +#define HC_REG_P1_PROD_CONS 0x108400 +/* [W 1] This register is write only and has 4 addresses as follow: 0 = + clear all PBA bits port 0; 1 = clear all pending interrupts request + port0; 2 = clear all PBA bits port 1; 3 = clear all pending interrupts + request port1; here is no meaning for the data in this register */ +#define HC_REG_PBA_COMMAND 0x108140 +#define HC_REG_PCI_CONFIG_0 0x108010 +#define HC_REG_PCI_CONFIG_1 0x108014 +/* [RW 24] all counters acording to the following address: LSB: 0=read; 1= + read_clear; 0-71 = HW counters (the inside order is the same as the + interrupt table in the spec); 72-219 = SW counters 1 (stops after first + consumer upd) the inside order is: 72-103 - U_non_default_p0; 104-135 + C_non_defaul_p0; 36-145 U/C/X/T/Attn_default_p0; 146-177 + U_non_default_p1; 178-209 C_non_defaul_p1; 10-219 U/C/X/T/Attn_default_p1 + ; 220-367 = SW counters 2 (stops when prod=cons) the inside order is: + 220-251 - U_non_default_p0; 252-283 C_non_defaul_p0; 84-293 + U/C/X/T/Attn_default_p0; 294-325 U_non_default_p1; 326-357 + C_non_defaul_p1; 58-367 U/C/X/T/Attn_default_p1 ; 368-515 = mailbox + counters; (the inside order of the mailbox counter is 368-431 U and C + non_default_p0; 432-441 U/C/X/T/Attn_default_p0; 442-505 U and C + non_default_p1; 506-515 U/C/X/T/Attn_default_p1) */ +#define HC_REG_STATISTIC_COUNTERS 0x109000 +/* [RW 16] port 0 attn bit condition monitoring; each bit that is set will + lock a change fron 1 to 0 in the corresponding attention signals that + comes from the AEU */ +#define HC_REG_TRAILING_EDGE_0 0x108044 +#define HC_REG_TRAILING_EDGE_1 0x10804c +#define HC_REG_UC_RAM_ADDR_0 0x108028 +#define HC_REG_UC_RAM_ADDR_1 0x108030 +/* [RW 16] ustorm address for coalesc now message */ +#define HC_REG_USTORM_ADDR_FOR_COALESCE 0x108068 +#define HC_REG_VQID_0 0x108008 +#define HC_REG_VQID_1 0x10800c +#define MCP_REG_MCPR_NVM_ACCESS_ENABLE 0x86424 +#define MCP_REG_MCPR_NVM_ADDR 0x8640c +#define MCP_REG_MCPR_NVM_CFG4 0x8642c +#define MCP_REG_MCPR_NVM_COMMAND 0x86400 +#define MCP_REG_MCPR_NVM_READ 0x86410 +#define MCP_REG_MCPR_NVM_SW_ARB 0x86420 +#define MCP_REG_MCPR_NVM_WRITE 0x86408 +#define MCP_REG_MCPR_NVM_WRITE1 0x86428 +#define MCP_REG_MCPR_SCRATCH 0xa0000 +/* [R 32] read first 32 bit after inversion of function 0. mapped as + follows: [0] NIG attention for function0; [1] NIG attention for + function1; [2] GPIO1 mcp; [3] GPIO2 mcp; [4] GPIO3 mcp; [5] GPIO4 mcp; + [6] GPIO1 function 1; [7] GPIO2 function 1; [8] GPIO3 function 1; [9] + GPIO4 function 1; [10] PCIE glue/PXP VPD event function0; [11] PCIE + glue/PXP VPD event function1; [12] PCIE glue/PXP Expansion ROM event0; + [13] PCIE glue/PXP Expansion ROM event1; [14] SPIO4; [15] SPIO5; [16] + MSI/X indication for mcp; [17] MSI/X indication for function 1; [18] BRB + Parity error; [19] BRB Hw interrupt; [20] PRS Parity error; [21] PRS Hw + interrupt; [22] SRC Parity error; [23] SRC Hw interrupt; [24] TSDM Parity + error; [25] TSDM Hw interrupt; [26] TCM Parity error; [27] TCM Hw + interrupt; [28] TSEMI Parity error; [29] TSEMI Hw interrupt; [30] PBF + Parity error; [31] PBF Hw interrupt; */ +#define MISC_REG_AEU_AFTER_INVERT_1_FUNC_0 0xa42c +#define MISC_REG_AEU_AFTER_INVERT_1_FUNC_1 0xa430 +/* [R 32] read first 32 bit after inversion of mcp. mapped as follows: [0] + NIG attention for function0; [1] NIG attention for function1; [2] GPIO1 + mcp; [3] GPIO2 mcp; [4] GPIO3 mcp; [5] GPIO4 mcp; [6] GPIO1 function 1; + [7] GPIO2 function 1; [8] GPIO3 function 1; [9] GPIO4 function 1; [10] + PCIE glue/PXP VPD event function0; [11] PCIE glue/PXP VPD event + function1; [12] PCIE glue/PXP Expansion ROM event0; [13] PCIE glue/PXP + Expansion ROM event1; [14] SPIO4; [15] SPIO5; [16] MSI/X indication for + mcp; [17] MSI/X indication for function 1; [18] BRB Parity error; [19] + BRB Hw interrupt; [20] PRS Parity error; [21] PRS Hw interrupt; [22] SRC + Parity error; [23] SRC Hw interrupt; [24] TSDM Parity error; [25] TSDM Hw + interrupt; [26] TCM Parity error; [27] TCM Hw interrupt; [28] TSEMI + Parity error; [29] TSEMI Hw interrupt; [30] PBF Parity error; [31] PBF Hw + interrupt; */ +#define MISC_REG_AEU_AFTER_INVERT_1_MCP 0xa434 +/* [R 32] read second 32 bit after inversion of function 0. mapped as + follows: [0] PBClient Parity error; [1] PBClient Hw interrupt; [2] QM + Parity error; [3] QM Hw interrupt; [4] Timers Parity error; [5] Timers Hw + interrupt; [6] XSDM Parity error; [7] XSDM Hw interrupt; [8] XCM Parity + error; [9] XCM Hw interrupt; [10] XSEMI Parity error; [11] XSEMI Hw + interrupt; [12] DoorbellQ Parity error; [13] DoorbellQ Hw interrupt; [14] + NIG Parity error; [15] NIG Hw interrupt; [16] Vaux PCI core Parity error; + [17] Vaux PCI core Hw interrupt; [18] Debug Parity error; [19] Debug Hw + interrupt; [20] USDM Parity error; [21] USDM Hw interrupt; [22] UCM + Parity error; [23] UCM Hw interrupt; [24] USEMI Parity error; [25] USEMI + Hw interrupt; [26] UPB Parity error; [27] UPB Hw interrupt; [28] CSDM + Parity error; [29] CSDM Hw interrupt; [30] CCM Parity error; [31] CCM Hw + interrupt; */ +#define MISC_REG_AEU_AFTER_INVERT_2_FUNC_0 0xa438 +#define MISC_REG_AEU_AFTER_INVERT_2_FUNC_1 0xa43c +/* [R 32] read second 32 bit after inversion of mcp. mapped as follows: [0] + PBClient Parity error; [1] PBClient Hw interrupt; [2] QM Parity error; + [3] QM Hw interrupt; [4] Timers Parity error; [5] Timers Hw interrupt; + [6] XSDM Parity error; [7] XSDM Hw interrupt; [8] XCM Parity error; [9] + XCM Hw interrupt; [10] XSEMI Parity error; [11] XSEMI Hw interrupt; [12] + DoorbellQ Parity error; [13] DoorbellQ Hw interrupt; [14] NIG Parity + error; [15] NIG Hw interrupt; [16] Vaux PCI core Parity error; [17] Vaux + PCI core Hw interrupt; [18] Debug Parity error; [19] Debug Hw interrupt; + [20] USDM Parity error; [21] USDM Hw interrupt; [22] UCM Parity error; + [23] UCM Hw interrupt; [24] USEMI Parity error; [25] USEMI Hw interrupt; + [26] UPB Parity error; [27] UPB Hw interrupt; [28] CSDM Parity error; + [29] CSDM Hw interrupt; [30] CCM Parity error; [31] CCM Hw interrupt; */ +#define MISC_REG_AEU_AFTER_INVERT_2_MCP 0xa440 +/* [R 32] read third 32 bit after inversion of function 0. mapped as + follows: [0] CSEMI Parity error; [1] CSEMI Hw interrupt; [2] PXP Parity + error; [3] PXP Hw interrupt; [4] PXPpciClockClient Parity error; [5] + PXPpciClockClient Hw interrupt; [6] CFC Parity error; [7] CFC Hw + interrupt; [8] CDU Parity error; [9] CDU Hw interrupt; [10] DMAE Parity + error; [11] DMAE Hw interrupt; [12] IGU (HC) Parity error; [13] IGU (HC) + Hw interrupt; [14] MISC Parity error; [15] MISC Hw interrupt; [16] + pxp_misc_mps_attn; [17] Flash event; [18] SMB event; [19] MCP attn0; [20] + MCP attn1; [21] SW timers attn_1 func0; [22] SW timers attn_2 func0; [23] + SW timers attn_3 func0; [24] SW timers attn_4 func0; [25] PERST; [26] SW + timers attn_1 func1; [27] SW timers attn_2 func1; [28] SW timers attn_3 + func1; [29] SW timers attn_4 func1; [30] General attn0; [31] General + attn1; */ +#define MISC_REG_AEU_AFTER_INVERT_3_FUNC_0 0xa444 +#define MISC_REG_AEU_AFTER_INVERT_3_FUNC_1 0xa448 +/* [R 32] read third 32 bit after inversion of mcp. mapped as follows: [0] + CSEMI Parity error; [1] CSEMI Hw interrupt; [2] PXP Parity error; [3] PXP + Hw interrupt; [4] PXPpciClockClient Parity error; [5] PXPpciClockClient + Hw interrupt; [6] CFC Parity error; [7] CFC Hw interrupt; [8] CDU Parity + error; [9] CDU Hw interrupt; [10] DMAE Parity error; [11] DMAE Hw + interrupt; [12] IGU (HC) Parity error; [13] IGU (HC) Hw interrupt; [14] + MISC Parity error; [15] MISC Hw interrupt; [16] pxp_misc_mps_attn; [17] + Flash event; [18] SMB event; [19] MCP attn0; [20] MCP attn1; [21] SW + timers attn_1 func0; [22] SW timers attn_2 func0; [23] SW timers attn_3 + func0; [24] SW timers attn_4 func0; [25] PERST; [26] SW timers attn_1 + func1; [27] SW timers attn_2 func1; [28] SW timers attn_3 func1; [29] SW + timers attn_4 func1; [30] General attn0; [31] General attn1; */ +#define MISC_REG_AEU_AFTER_INVERT_3_MCP 0xa44c +/* [R 32] read fourth 32 bit after inversion of function 0. mapped as + follows: [0] General attn2; [1] General attn3; [2] General attn4; [3] + General attn5; [4] General attn6; [5] General attn7; [6] General attn8; + [7] General attn9; [8] General attn10; [9] General attn11; [10] General + attn12; [11] General attn13; [12] General attn14; [13] General attn15; + [14] General attn16; [15] General attn17; [16] General attn18; [17] + General attn19; [18] General attn20; [19] General attn21; [20] Main power + interrupt; [21] RBCR Latched attn; [22] RBCT Latched attn; [23] RBCN + Latched attn; [24] RBCU Latched attn; [25] RBCP Latched attn; [26] GRC + Latched timeout attention; [27] GRC Latched reserved access attention; + [28] MCP Latched rom_parity; [29] MCP Latched ump_rx_parity; [30] MCP + Latched ump_tx_parity; [31] MCP Latched scpad_parity; */ +#define MISC_REG_AEU_AFTER_INVERT_4_FUNC_0 0xa450 +#define MISC_REG_AEU_AFTER_INVERT_4_FUNC_1 0xa454 +/* [R 32] read fourth 32 bit after inversion of mcp. mapped as follows: [0] + General attn2; [1] General attn3; [2] General attn4; [3] General attn5; + [4] General attn6; [5] General attn7; [6] General attn8; [7] General + attn9; [8] General attn10; [9] General attn11; [10] General attn12; [11] + General attn13; [12] General attn14; [13] General attn15; [14] General + attn16; [15] General attn17; [16] General attn18; [17] General attn19; + [18] General attn20; [19] General attn21; [20] Main power interrupt; [21] + RBCR Latched attn; [22] RBCT Latched attn; [23] RBCN Latched attn; [24] + RBCU Latched attn; [25] RBCP Latched attn; [26] GRC Latched timeout + attention; [27] GRC Latched reserved access attention; [28] MCP Latched + rom_parity; [29] MCP Latched ump_rx_parity; [30] MCP Latched + ump_tx_parity; [31] MCP Latched scpad_parity; */ +#define MISC_REG_AEU_AFTER_INVERT_4_MCP 0xa458 +/* [W 11] write to this register results with the clear of the latched + signals; one in d0 clears RBCR latch; one in d1 clears RBCT latch; one in + d2 clears RBCN latch; one in d3 clears RBCU latch; one in d4 clears RBCP + latch; one in d5 clears GRC Latched timeout attention; one in d6 clears + GRC Latched reserved access attention; one in d7 clears Latched + rom_parity; one in d8 clears Latched ump_rx_parity; one in d9 clears + Latched ump_tx_parity; one in d10 clears Latched scpad_parity; read from + this register return zero */ +#define MISC_REG_AEU_CLR_LATCH_SIGNAL 0xa45c +/* [RW 32] first 32b for enabling the output for function 0 output0. mapped + as follows: [0] NIG attention for function0; [1] NIG attention for + function1; [2] GPIO1 function 0; [3] GPIO2 function 0; [4] GPIO3 function + 0; [5] GPIO4 function 0; [6] GPIO1 function 1; [7] GPIO2 function 1; [8] + GPIO3 function 1; [9] GPIO4 function 1; [10] PCIE glue/PXP VPD event + function0; [11] PCIE glue/PXP VPD event function1; [12] PCIE glue/PXP + Expansion ROM event0; [13] PCIE glue/PXP Expansion ROM event1; [14] + SPIO4; [15] SPIO5; [16] MSI/X indication for function 0; [17] MSI/X + indication for function 1; [18] BRB Parity error; [19] BRB Hw interrupt; + [20] PRS Parity error; [21] PRS Hw interrupt; [22] SRC Parity error; [23] + SRC Hw interrupt; [24] TSDM Parity error; [25] TSDM Hw interrupt; [26] + TCM Parity error; [27] TCM Hw interrupt; [28] TSEMI Parity error; [29] + TSEMI Hw interrupt; [30] PBF Parity error; [31] PBF Hw interrupt; */ +#define MISC_REG_AEU_ENABLE1_FUNC_0_OUT_0 0xa06c +#define MISC_REG_AEU_ENABLE1_FUNC_0_OUT_1 0xa07c +#define MISC_REG_AEU_ENABLE1_FUNC_0_OUT_3 0xa09c +/* [RW 32] first 32b for enabling the output for function 1 output0. mapped + as follows: [0] NIG attention for function0; [1] NIG attention for + function1; [2] GPIO1 function 1; [3] GPIO2 function 1; [4] GPIO3 function + 1; [5] GPIO4 function 1; [6] GPIO1 function 1; [7] GPIO2 function 1; [8] + GPIO3 function 1; [9] GPIO4 function 1; [10] PCIE glue/PXP VPD event + function0; [11] PCIE glue/PXP VPD event function1; [12] PCIE glue/PXP + Expansion ROM event0; [13] PCIE glue/PXP Expansion ROM event1; [14] + SPIO4; [15] SPIO5; [16] MSI/X indication for function 1; [17] MSI/X + indication for function 1; [18] BRB Parity error; [19] BRB Hw interrupt; + [20] PRS Parity error; [21] PRS Hw interrupt; [22] SRC Parity error; [23] + SRC Hw interrupt; [24] TSDM Parity error; [25] TSDM Hw interrupt; [26] + TCM Parity error; [27] TCM Hw interrupt; [28] TSEMI Parity error; [29] + TSEMI Hw interrupt; [30] PBF Parity error; [31] PBF Hw interrupt; */ +#define MISC_REG_AEU_ENABLE1_FUNC_1_OUT_0 0xa10c +#define MISC_REG_AEU_ENABLE1_FUNC_1_OUT_1 0xa11c +#define MISC_REG_AEU_ENABLE1_FUNC_1_OUT_3 0xa13c +/* [RW 32] first 32b for enabling the output for close the gate nig 0. + mapped as follows: [0] NIG attention for function0; [1] NIG attention for + function1; [2] GPIO1 function 0; [3] GPIO2 function 0; [4] GPIO3 function + 0; [5] GPIO4 function 0; [6] GPIO1 function 1; [7] GPIO2 function 1; [8] + GPIO3 function 1; [9] GPIO4 function 1; [10] PCIE glue/PXP VPD event + function0; [11] PCIE glue/PXP VPD event function1; [12] PCIE glue/PXP + Expansion ROM event0; [13] PCIE glue/PXP Expansion ROM event1; [14] + SPIO4; [15] SPIO5; [16] MSI/X indication for function 0; [17] MSI/X + indication for function 1; [18] BRB Parity error; [19] BRB Hw interrupt; + [20] PRS Parity error; [21] PRS Hw interrupt; [22] SRC Parity error; [23] + SRC Hw interrupt; [24] TSDM Parity error; [25] TSDM Hw interrupt; [26] + TCM Parity error; [27] TCM Hw interrupt; [28] TSEMI Parity error; [29] + TSEMI Hw interrupt; [30] PBF Parity error; [31] PBF Hw interrupt; */ +#define MISC_REG_AEU_ENABLE1_NIG_0 0xa0ec +#define MISC_REG_AEU_ENABLE1_NIG_1 0xa18c +/* [RW 32] first 32b for enabling the output for close the gate pxp 0. + mapped as follows: [0] NIG attention for function0; [1] NIG attention for + function1; [2] GPIO1 function 0; [3] GPIO2 function 0; [4] GPIO3 function + 0; [5] GPIO4 function 0; [6] GPIO1 function 1; [7] GPIO2 function 1; [8] + GPIO3 function 1; [9] GPIO4 function 1; [10] PCIE glue/PXP VPD event + function0; [11] PCIE glue/PXP VPD event function1; [12] PCIE glue/PXP + Expansion ROM event0; [13] PCIE glue/PXP Expansion ROM event1; [14] + SPIO4; [15] SPIO5; [16] MSI/X indication for function 0; [17] MSI/X + indication for function 1; [18] BRB Parity error; [19] BRB Hw interrupt; + [20] PRS Parity error; [21] PRS Hw interrupt; [22] SRC Parity error; [23] + SRC Hw interrupt; [24] TSDM Parity error; [25] TSDM Hw interrupt; [26] + TCM Parity error; [27] TCM Hw interrupt; [28] TSEMI Parity error; [29] + TSEMI Hw interrupt; [30] PBF Parity error; [31] PBF Hw interrupt; */ +#define MISC_REG_AEU_ENABLE1_PXP_0 0xa0fc +#define MISC_REG_AEU_ENABLE1_PXP_1 0xa19c +/* [RW 32] second 32b for enabling the output for function 0 output0. mapped + as follows: [0] PBClient Parity error; [1] PBClient Hw interrupt; [2] QM + Parity error; [3] QM Hw interrupt; [4] Timers Parity error; [5] Timers Hw + interrupt; [6] XSDM Parity error; [7] XSDM Hw interrupt; [8] XCM Parity + error; [9] XCM Hw interrupt; [10] XSEMI Parity error; [11] XSEMI Hw + interrupt; [12] DoorbellQ Parity error; [13] DoorbellQ Hw interrupt; [14] + NIG Parity error; [15] NIG Hw interrupt; [16] Vaux PCI core Parity error; + [17] Vaux PCI core Hw interrupt; [18] Debug Parity error; [19] Debug Hw + interrupt; [20] USDM Parity error; [21] USDM Hw interrupt; [22] UCM + Parity error; [23] UCM Hw interrupt; [24] USEMI Parity error; [25] USEMI + Hw interrupt; [26] UPB Parity error; [27] UPB Hw interrupt; [28] CSDM + Parity error; [29] CSDM Hw interrupt; [30] CCM Parity error; [31] CCM Hw + interrupt; */ +#define MISC_REG_AEU_ENABLE2_FUNC_0_OUT_0 0xa070 +#define MISC_REG_AEU_ENABLE2_FUNC_0_OUT_1 0xa080 +/* [RW 32] second 32b for enabling the output for function 1 output0. mapped + as follows: [0] PBClient Parity error; [1] PBClient Hw interrupt; [2] QM + Parity error; [3] QM Hw interrupt; [4] Timers Parity error; [5] Timers Hw + interrupt; [6] XSDM Parity error; [7] XSDM Hw interrupt; [8] XCM Parity + error; [9] XCM Hw interrupt; [10] XSEMI Parity error; [11] XSEMI Hw + interrupt; [12] DoorbellQ Parity error; [13] DoorbellQ Hw interrupt; [14] + NIG Parity error; [15] NIG Hw interrupt; [16] Vaux PCI core Parity error; + [17] Vaux PCI core Hw interrupt; [18] Debug Parity error; [19] Debug Hw + interrupt; [20] USDM Parity error; [21] USDM Hw interrupt; [22] UCM + Parity error; [23] UCM Hw interrupt; [24] USEMI Parity error; [25] USEMI + Hw interrupt; [26] UPB Parity error; [27] UPB Hw interrupt; [28] CSDM + Parity error; [29] CSDM Hw interrupt; [30] CCM Parity error; [31] CCM Hw + interrupt; */ +#define MISC_REG_AEU_ENABLE2_FUNC_1_OUT_0 0xa110 +#define MISC_REG_AEU_ENABLE2_FUNC_1_OUT_1 0xa120 +/* [RW 32] second 32b for enabling the output for close the gate nig 0. + mapped as follows: [0] PBClient Parity error; [1] PBClient Hw interrupt; + [2] QM Parity error; [3] QM Hw interrupt; [4] Timers Parity error; [5] + Timers Hw interrupt; [6] XSDM Parity error; [7] XSDM Hw interrupt; [8] + XCM Parity error; [9] XCM Hw interrupt; [10] XSEMI Parity error; [11] + XSEMI Hw interrupt; [12] DoorbellQ Parity error; [13] DoorbellQ Hw + interrupt; [14] NIG Parity error; [15] NIG Hw interrupt; [16] Vaux PCI + core Parity error; [17] Vaux PCI core Hw interrupt; [18] Debug Parity + error; [19] Debug Hw interrupt; [20] USDM Parity error; [21] USDM Hw + interrupt; [22] UCM Parity error; [23] UCM Hw interrupt; [24] USEMI + Parity error; [25] USEMI Hw interrupt; [26] UPB Parity error; [27] UPB Hw + interrupt; [28] CSDM Parity error; [29] CSDM Hw interrupt; [30] CCM + Parity error; [31] CCM Hw interrupt; */ +#define MISC_REG_AEU_ENABLE2_NIG_0 0xa0f0 +#define MISC_REG_AEU_ENABLE2_NIG_1 0xa190 +/* [RW 32] second 32b for enabling the output for close the gate pxp 0. + mapped as follows: [0] PBClient Parity error; [1] PBClient Hw interrupt; + [2] QM Parity error; [3] QM Hw interrupt; [4] Timers Parity error; [5] + Timers Hw interrupt; [6] XSDM Parity error; [7] XSDM Hw interrupt; [8] + XCM Parity error; [9] XCM Hw interrupt; [10] XSEMI Parity error; [11] + XSEMI Hw interrupt; [12] DoorbellQ Parity error; [13] DoorbellQ Hw + interrupt; [14] NIG Parity error; [15] NIG Hw interrupt; [16] Vaux PCI + core Parity error; [17] Vaux PCI core Hw interrupt; [18] Debug Parity + error; [19] Debug Hw interrupt; [20] USDM Parity error; [21] USDM Hw + interrupt; [22] UCM Parity error; [23] UCM Hw interrupt; [24] USEMI + Parity error; [25] USEMI Hw interrupt; [26] UPB Parity error; [27] UPB Hw + interrupt; [28] CSDM Parity error; [29] CSDM Hw interrupt; [30] CCM + Parity error; [31] CCM Hw interrupt; */ +#define MISC_REG_AEU_ENABLE2_PXP_0 0xa100 +#define MISC_REG_AEU_ENABLE2_PXP_1 0xa1a0 +/* [RW 32] third 32b for enabling the output for function 0 output0. mapped + as follows: [0] CSEMI Parity error; [1] CSEMI Hw interrupt; [2] PXP + Parity error; [3] PXP Hw interrupt; [4] PXPpciClockClient Parity error; + [5] PXPpciClockClient Hw interrupt; [6] CFC Parity error; [7] CFC Hw + interrupt; [8] CDU Parity error; [9] CDU Hw interrupt; [10] DMAE Parity + error; [11] DMAE Hw interrupt; [12] IGU (HC) Parity error; [13] IGU (HC) + Hw interrupt; [14] MISC Parity error; [15] MISC Hw interrupt; [16] + pxp_misc_mps_attn; [17] Flash event; [18] SMB event; [19] MCP attn0; [20] + MCP attn1; [21] SW timers attn_1 func0; [22] SW timers attn_2 func0; [23] + SW timers attn_3 func0; [24] SW timers attn_4 func0; [25] PERST; [26] SW + timers attn_1 func1; [27] SW timers attn_2 func1; [28] SW timers attn_3 + func1; [29] SW timers attn_4 func1; [30] General attn0; [31] General + attn1; */ +#define MISC_REG_AEU_ENABLE3_FUNC_0_OUT_0 0xa074 +#define MISC_REG_AEU_ENABLE3_FUNC_0_OUT_1 0xa084 +/* [RW 32] third 32b for enabling the output for function 1 output0. mapped + as follows: [0] CSEMI Parity error; [1] CSEMI Hw interrupt; [2] PXP + Parity error; [3] PXP Hw interrupt; [4] PXPpciClockClient Parity error; + [5] PXPpciClockClient Hw interrupt; [6] CFC Parity error; [7] CFC Hw + interrupt; [8] CDU Parity error; [9] CDU Hw interrupt; [10] DMAE Parity + error; [11] DMAE Hw interrupt; [12] IGU (HC) Parity error; [13] IGU (HC) + Hw interrupt; [14] MISC Parity error; [15] MISC Hw interrupt; [16] + pxp_misc_mps_attn; [17] Flash event; [18] SMB event; [19] MCP attn0; [20] + MCP attn1; [21] SW timers attn_1 func0; [22] SW timers attn_2 func0; [23] + SW timers attn_3 func0; [24] SW timers attn_4 func0; [25] PERST; [26] SW + timers attn_1 func1; [27] SW timers attn_2 func1; [28] SW timers attn_3 + func1; [29] SW timers attn_4 func1; [30] General attn0; [31] General + attn1; */ +#define MISC_REG_AEU_ENABLE3_FUNC_1_OUT_0 0xa114 +#define MISC_REG_AEU_ENABLE3_FUNC_1_OUT_1 0xa124 +/* [RW 32] third 32b for enabling the output for close the gate nig 0. + mapped as follows: [0] CSEMI Parity error; [1] CSEMI Hw interrupt; [2] + PXP Parity error; [3] PXP Hw interrupt; [4] PXPpciClockClient Parity + error; [5] PXPpciClockClient Hw interrupt; [6] CFC Parity error; [7] CFC + Hw interrupt; [8] CDU Parity error; [9] CDU Hw interrupt; [10] DMAE + Parity error; [11] DMAE Hw interrupt; [12] IGU (HC) Parity error; [13] + IGU (HC) Hw interrupt; [14] MISC Parity error; [15] MISC Hw interrupt; + [16] pxp_misc_mps_attn; [17] Flash event; [18] SMB event; [19] MCP attn0; + [20] MCP attn1; [21] SW timers attn_1 func0; [22] SW timers attn_2 func0; + [23] SW timers attn_3 func0; [24] SW timers attn_4 func0; [25] PERST; + [26] SW timers attn_1 func1; [27] SW timers attn_2 func1; [28] SW timers + attn_3 func1; [29] SW timers attn_4 func1; [30] General attn0; [31] + General attn1; */ +#define MISC_REG_AEU_ENABLE3_NIG_0 0xa0f4 +#define MISC_REG_AEU_ENABLE3_NIG_1 0xa194 +/* [RW 32] third 32b for enabling the output for close the gate pxp 0. + mapped as follows: [0] CSEMI Parity error; [1] CSEMI Hw interrupt; [2] + PXP Parity error; [3] PXP Hw interrupt; [4] PXPpciClockClient Parity + error; [5] PXPpciClockClient Hw interrupt; [6] CFC Parity error; [7] CFC + Hw interrupt; [8] CDU Parity error; [9] CDU Hw interrupt; [10] DMAE + Parity error; [11] DMAE Hw interrupt; [12] IGU (HC) Parity error; [13] + IGU (HC) Hw interrupt; [14] MISC Parity error; [15] MISC Hw interrupt; + [16] pxp_misc_mps_attn; [17] Flash event; [18] SMB event; [19] MCP attn0; + [20] MCP attn1; [21] SW timers attn_1 func0; [22] SW timers attn_2 func0; + [23] SW timers attn_3 func0; [24] SW timers attn_4 func0; [25] PERST; + [26] SW timers attn_1 func1; [27] SW timers attn_2 func1; [28] SW timers + attn_3 func1; [29] SW timers attn_4 func1; [30] General attn0; [31] + General attn1; */ +#define MISC_REG_AEU_ENABLE3_PXP_0 0xa104 +#define MISC_REG_AEU_ENABLE3_PXP_1 0xa1a4 +/* [RW 32] fourth 32b for enabling the output for function 0 output0.mapped + as follows: [0] General attn2; [1] General attn3; [2] General attn4; [3] + General attn5; [4] General attn6; [5] General attn7; [6] General attn8; + [7] General attn9; [8] General attn10; [9] General attn11; [10] General + attn12; [11] General attn13; [12] General attn14; [13] General attn15; + [14] General attn16; [15] General attn17; [16] General attn18; [17] + General attn19; [18] General attn20; [19] General attn21; [20] Main power + interrupt; [21] RBCR Latched attn; [22] RBCT Latched attn; [23] RBCN + Latched attn; [24] RBCU Latched attn; [25] RBCP Latched attn; [26] GRC + Latched timeout attention; [27] GRC Latched reserved access attention; + [28] MCP Latched rom_parity; [29] MCP Latched ump_rx_parity; [30] MCP + Latched ump_tx_parity; [31] MCP Latched scpad_parity; */ +#define MISC_REG_AEU_ENABLE4_FUNC_0_OUT_0 0xa078 +#define MISC_REG_AEU_ENABLE4_FUNC_0_OUT_2 0xa098 +/* [RW 32] fourth 32b for enabling the output for function 1 output0.mapped + as follows: [0] General attn2; [1] General attn3; [2] General attn4; [3] + General attn5; [4] General attn6; [5] General attn7; [6] General attn8; + [7] General attn9; [8] General attn10; [9] General attn11; [10] General + attn12; [11] General attn13; [12] General attn14; [13] General attn15; + [14] General attn16; [15] General attn17; [16] General attn18; [17] + General attn19; [18] General attn20; [19] General attn21; [20] Main power + interrupt; [21] RBCR Latched attn; [22] RBCT Latched attn; [23] RBCN + Latched attn; [24] RBCU Latched attn; [25] RBCP Latched attn; [26] GRC + Latched timeout attention; [27] GRC Latched reserved access attention; + [28] MCP Latched rom_parity; [29] MCP Latched ump_rx_parity; [30] MCP + Latched ump_tx_parity; [31] MCP Latched scpad_parity; */ +#define MISC_REG_AEU_ENABLE4_FUNC_1_OUT_0 0xa118 +#define MISC_REG_AEU_ENABLE4_FUNC_1_OUT_2 0xa138 +/* [RW 32] fourth 32b for enabling the output for close the gate nig + 0.mapped as follows: [0] General attn2; [1] General attn3; [2] General + attn4; [3] General attn5; [4] General attn6; [5] General attn7; [6] + General attn8; [7] General attn9; [8] General attn10; [9] General attn11; + [10] General attn12; [11] General attn13; [12] General attn14; [13] + General attn15; [14] General attn16; [15] General attn17; [16] General + attn18; [17] General attn19; [18] General attn20; [19] General attn21; + [20] Main power interrupt; [21] RBCR Latched attn; [22] RBCT Latched + attn; [23] RBCN Latched attn; [24] RBCU Latched attn; [25] RBCP Latched + attn; [26] GRC Latched timeout attention; [27] GRC Latched reserved + access attention; [28] MCP Latched rom_parity; [29] MCP Latched + ump_rx_parity; [30] MCP Latched ump_tx_parity; [31] MCP Latched + scpad_parity; */ +#define MISC_REG_AEU_ENABLE4_NIG_0 0xa0f8 +#define MISC_REG_AEU_ENABLE4_NIG_1 0xa198 +/* [RW 32] fourth 32b for enabling the output for close the gate pxp + 0.mapped as follows: [0] General attn2; [1] General attn3; [2] General + attn4; [3] General attn5; [4] General attn6; [5] General attn7; [6] + General attn8; [7] General attn9; [8] General attn10; [9] General attn11; + [10] General attn12; [11] General attn13; [12] General attn14; [13] + General attn15; [14] General attn16; [15] General attn17; [16] General + attn18; [17] General attn19; [18] General attn20; [19] General attn21; + [20] Main power interrupt; [21] RBCR Latched attn; [22] RBCT Latched + attn; [23] RBCN Latched attn; [24] RBCU Latched attn; [25] RBCP Latched + attn; [26] GRC Latched timeout attention; [27] GRC Latched reserved + access attention; [28] MCP Latched rom_parity; [29] MCP Latched + ump_rx_parity; [30] MCP Latched ump_tx_parity; [31] MCP Latched + scpad_parity; */ +#define MISC_REG_AEU_ENABLE4_PXP_0 0xa108 +#define MISC_REG_AEU_ENABLE4_PXP_1 0xa1a8 +/* [RW 1] set/clr general attention 0; this will set/clr bit 94 in the aeu + 128 bit vector */ +#define MISC_REG_AEU_GENERAL_ATTN_0 0xa000 +#define MISC_REG_AEU_GENERAL_ATTN_1 0xa004 +#define MISC_REG_AEU_GENERAL_ATTN_10 0xa028 +#define MISC_REG_AEU_GENERAL_ATTN_11 0xa02c +#define MISC_REG_AEU_GENERAL_ATTN_12 0xa030 +#define MISC_REG_AEU_GENERAL_ATTN_13 0xa034 +#define MISC_REG_AEU_GENERAL_ATTN_14 0xa038 +#define MISC_REG_AEU_GENERAL_ATTN_15 0xa03c +#define MISC_REG_AEU_GENERAL_ATTN_16 0xa040 +#define MISC_REG_AEU_GENERAL_ATTN_17 0xa044 +#define MISC_REG_AEU_GENERAL_ATTN_18 0xa048 +#define MISC_REG_AEU_GENERAL_ATTN_19 0xa04c +#define MISC_REG_AEU_GENERAL_ATTN_11 0xa02c +#define MISC_REG_AEU_GENERAL_ATTN_2 0xa008 +#define MISC_REG_AEU_GENERAL_ATTN_20 0xa050 +#define MISC_REG_AEU_GENERAL_ATTN_21 0xa054 +#define MISC_REG_AEU_GENERAL_ATTN_3 0xa00c +#define MISC_REG_AEU_GENERAL_ATTN_4 0xa010 +#define MISC_REG_AEU_GENERAL_ATTN_5 0xa014 +#define MISC_REG_AEU_GENERAL_ATTN_6 0xa018 +/* [RW 32] first 32b for inverting the input for function 0; for each bit: + 0= do not invert; 1= invert; mapped as follows: [0] NIG attention for + function0; [1] NIG attention for function1; [2] GPIO1 mcp; [3] GPIO2 mcp; + [4] GPIO3 mcp; [5] GPIO4 mcp; [6] GPIO1 function 1; [7] GPIO2 function 1; + [8] GPIO3 function 1; [9] GPIO4 function 1; [10] PCIE glue/PXP VPD event + function0; [11] PCIE glue/PXP VPD event function1; [12] PCIE glue/PXP + Expansion ROM event0; [13] PCIE glue/PXP Expansion ROM event1; [14] + SPIO4; [15] SPIO5; [16] MSI/X indication for mcp; [17] MSI/X indication + for function 1; [18] BRB Parity error; [19] BRB Hw interrupt; [20] PRS + Parity error; [21] PRS Hw interrupt; [22] SRC Parity error; [23] SRC Hw + interrupt; [24] TSDM Parity error; [25] TSDM Hw interrupt; [26] TCM + Parity error; [27] TCM Hw interrupt; [28] TSEMI Parity error; [29] TSEMI + Hw interrupt; [30] PBF Parity error; [31] PBF Hw interrupt; */ +#define MISC_REG_AEU_INVERTER_1_FUNC_0 0xa22c +#define MISC_REG_AEU_INVERTER_1_FUNC_1 0xa23c +/* [RW 32] second 32b for inverting the input for function 0; for each bit: + 0= do not invert; 1= invert. mapped as follows: [0] PBClient Parity + error; [1] PBClient Hw interrupt; [2] QM Parity error; [3] QM Hw + interrupt; [4] Timers Parity error; [5] Timers Hw interrupt; [6] XSDM + Parity error; [7] XSDM Hw interrupt; [8] XCM Parity error; [9] XCM Hw + interrupt; [10] XSEMI Parity error; [11] XSEMI Hw interrupt; [12] + DoorbellQ Parity error; [13] DoorbellQ Hw interrupt; [14] NIG Parity + error; [15] NIG Hw interrupt; [16] Vaux PCI core Parity error; [17] Vaux + PCI core Hw interrupt; [18] Debug Parity error; [19] Debug Hw interrupt; + [20] USDM Parity error; [21] USDM Hw interrupt; [22] UCM Parity error; + [23] UCM Hw interrupt; [24] USEMI Parity error; [25] USEMI Hw interrupt; + [26] UPB Parity error; [27] UPB Hw interrupt; [28] CSDM Parity error; + [29] CSDM Hw interrupt; [30] CCM Parity error; [31] CCM Hw interrupt; */ +#define MISC_REG_AEU_INVERTER_2_FUNC_0 0xa230 +#define MISC_REG_AEU_INVERTER_2_FUNC_1 0xa240 +/* [RW 10] [7:0] = mask 8 attention output signals toward IGU function0; + [9:8] = mask close the gates signals of function 0 toward PXP [8] and NIG + [9]. Zero = mask; one = unmask */ +#define MISC_REG_AEU_MASK_ATTN_FUNC_0 0xa060 +#define MISC_REG_AEU_MASK_ATTN_FUNC_1 0xa064 +/* [R 4] This field indicates the type of the device. '0' - 2 Ports; '1' - 1 + Port. */ +#define MISC_REG_BOND_ID 0xa400 +/* [R 8] These bits indicate the metal revision of the chip. This value + starts at 0x00 for each all-layer tape-out and increments by one for each + tape-out. */ +#define MISC_REG_CHIP_METAL 0xa404 +/* [R 16] These bits indicate the part number for the chip. */ +#define MISC_REG_CHIP_NUM 0xa408 +/* [R 4] These bits indicate the base revision of the chip. This value + starts at 0x0 for the A0 tape-out and increments by one for each + all-layer tape-out. */ +#define MISC_REG_CHIP_REV 0xa40c +/* [RW 1] Setting this bit enables a timer in the GRC block to timeout any + access that does not finish within + ~misc_registers_grc_timout_val.grc_timeout_val cycles. When this bit is + cleared; this timeout is disabled. If this timeout occurs; the GRC shall + assert it attention output. */ +#define MISC_REG_GRC_TIMEOUT_EN 0xa280 +/* [RW 28] 28 LSB of LCPLL first register; reset val = 521. inside order of + the bits is: [2:0] OAC reset value 001) CML output buffer bias control; + 111 for +40%; 011 for +20%; 001 for 0%; 000 for -20%. [5:3] Icp_ctrl + (reset value 001) Charge pump current control; 111 for 720u; 011 for + 600u; 001 for 480u and 000 for 360u. [7:6] Bias_ctrl (reset value 00) + Global bias control; When bit 7 is high bias current will be 10 0gh; When + bit 6 is high bias will be 100w; Valid values are 00; 10; 01. [10:8] + Pll_observe (reset value 010) Bits to control observability. bit 10 is + for test bias; bit 9 is for test CK; bit 8 is test Vc. [12:11] Vth_ctrl + (reset value 00) Comparator threshold control. 00 for 0.6V; 01 for 0.54V + and 10 for 0.66V. [13] pllSeqStart (reset value 0) Enables VCO tuning + sequencer: 1= sequencer disabled; 0= sequencer enabled (inverted + internally). [14] reserved (reset value 0) Reset for VCO sequencer is + connected to RESET input directly. [15] capRetry_en (reset value 0) + enable retry on cap search failure (inverted). [16] freqMonitor_e (reset + value 0) bit to continuously monitor vco freq (inverted). [17] + freqDetRestart_en (reset value 0) bit to enable restart when not freq + locked (inverted). [18] freqDetRetry_en (reset value 0) bit to enable + retry on freq det failure(inverted). [19] pllForceFdone_en (reset value + 0) bit to enable pllForceFdone & pllForceFpass into pllSeq. [20] + pllForceFdone (reset value 0) bit to force freqDone. [21] pllForceFpass + (reset value 0) bit to force freqPass. [22] pllForceDone_en (reset value + 0) bit to enable pllForceCapDone. [23] pllForceCapDone (reset value 0) + bit to force capDone. [24] pllForceCapPass_en (reset value 0) bit to + enable pllForceCapPass. [25] pllForceCapPass (reset value 0) bit to force + capPass. [26] capRestart (reset value 0) bit to force cap sequencer to + restart. [27] capSelectM_en (reset value 0) bit to enable cap select + register bits. */ +#define MISC_REG_LCPLL_CTRL_1 0xa2a4 +#define MISC_REG_LCPLL_CTRL_REG_2 0xa2a8 +/* [RW 4] Interrupt mask register #0 read/write */ +#define MISC_REG_MISC_INT_MASK 0xa388 +/* [RW 1] Parity mask register #0 read/write */ +#define MISC_REG_MISC_PRTY_MASK 0xa398 +/* [RW 32] 32 LSB of storm PLL first register; reset val = 0x 071d2911. + inside order of the bits is: [0] P1 divider[0] (reset value 1); [1] P1 + divider[1] (reset value 0); [2] P1 divider[2] (reset value 0); [3] P1 + divider[3] (reset value 0); [4] P2 divider[0] (reset value 1); [5] P2 + divider[1] (reset value 0); [6] P2 divider[2] (reset value 0); [7] P2 + divider[3] (reset value 0); [8] ph_det_dis (reset value 1); [9] + freq_det_dis (reset value 0); [10] Icpx[0] (reset value 0); [11] Icpx[1] + (reset value 1); [12] Icpx[2] (reset value 0); [13] Icpx[3] (reset value + 1); [14] Icpx[4] (reset value 0); [15] Icpx[5] (reset value 0); [16] + Rx[0] (reset value 1); [17] Rx[1] (reset value 0); [18] vc_en (reset + value 1); [19] vco_rng[0] (reset value 1); [20] vco_rng[1] (reset value + 1); [21] Kvco_xf[0] (reset value 0); [22] Kvco_xf[1] (reset value 0); + [23] Kvco_xf[2] (reset value 0); [24] Kvco_xs[0] (reset value 1); [25] + Kvco_xs[1] (reset value 1); [26] Kvco_xs[2] (reset value 1); [27] + testd_en (reset value 0); [28] testd_sel[0] (reset value 0); [29] + testd_sel[1] (reset value 0); [30] testd_sel[2] (reset value 0); [31] + testa_en (reset value 0); */ +#define MISC_REG_PLL_STORM_CTRL_1 0xa294 +#define MISC_REG_PLL_STORM_CTRL_2 0xa298 +#define MISC_REG_PLL_STORM_CTRL_3 0xa29c +#define MISC_REG_PLL_STORM_CTRL_4 0xa2a0 +/* [RW 32] reset reg#1; rite/read one = the specific block is out of reset; + write/read zero = the specific block is in reset; addr 0-wr- the write + value will be written to the register; addr 1-set - one will be written + to all the bits that have the value of one in the data written (bits that + have the value of zero will not be change) ; addr 2-clear - zero will be + written to all the bits that have the value of one in the data written + (bits that have the value of zero will not be change); addr 3-ignore; + read ignore from all addr except addr 00; inside order of the bits is: + [0] rst_brb1; [1] rst_prs; [2] rst_src; [3] rst_tsdm; [4] rst_tsem; [5] + rst_tcm; [6] rst_rbcr; [7] rst_nig; [8] rst_usdm; [9] rst_ucm; [10] + rst_usem; [11] rst_upb; [12] rst_ccm; [13] rst_csem; [14] rst_csdm; [15] + rst_rbcu; [16] rst_pbf; [17] rst_qm; [18] rst_tm; [19] rst_dorq; [20] + rst_xcm; [21] rst_xsdm; [22] rst_xsem; [23] rst_rbct; [24] rst_cdu; [25] + rst_cfc; [26] rst_pxp; [27] rst_pxpv; [28] rst_rbcp; [29] rst_hc; [30] + rst_dmae; [31] rst_semi_rtc; */ +#define MISC_REG_RESET_REG_1 0xa580 +#define MISC_REG_RESET_REG_2 0xa590 +/* [RW 20] 20 bit GRC address where the scratch-pad of the MCP that is + shared with the driver resides */ +#define MISC_REG_SHARED_MEM_ADDR 0xa2b4 +#define NIG_MASK_INTERRUPT_PORT0_REG_MASK_EMAC0_MISC_MI_INT (0x1<<0) +#define NIG_MASK_INTERRUPT_PORT0_REG_MASK_SERDES0_LINK_STATUS (0x1<<9) +#define NIG_MASK_INTERRUPT_PORT0_REG_MASK_XGXS0_LINK10G (0x1<<15) +#define NIG_MASK_INTERRUPT_PORT0_REG_MASK_XGXS0_LINK_STATUS (0xf<<18) +/* [RW 1] Input enable for RX_BMAC0 IF */ +#define NIG_REG_BMAC0_IN_EN 0x100ac +/* [RW 1] output enable for TX_BMAC0 IF */ +#define NIG_REG_BMAC0_OUT_EN 0x100e0 +/* [RW 1] output enable for TX BMAC pause port 0 IF */ +#define NIG_REG_BMAC0_PAUSE_OUT_EN 0x10110 +/* [RW 1] output enable for RX_BMAC0_REGS IF */ +#define NIG_REG_BMAC0_REGS_OUT_EN 0x100e8 +/* [RW 1] output enable for RX BRB1 port0 IF */ +#define NIG_REG_BRB0_OUT_EN 0x100f8 +/* [RW 1] Input enable for TX BRB1 pause port 0 IF */ +#define NIG_REG_BRB0_PAUSE_IN_EN 0x100c4 +/* [RW 1] output enable for RX BRB1 port1 IF */ +#define NIG_REG_BRB1_OUT_EN 0x100fc +/* [RW 1] Input enable for TX BRB1 pause port 1 IF */ +#define NIG_REG_BRB1_PAUSE_IN_EN 0x100c8 +/* [RW 1] output enable for RX BRB1 LP IF */ +#define NIG_REG_BRB_LB_OUT_EN 0x10100 +/* [WB_W 72] Debug packet to LP from RBC; Data spelling:[63:0] data; 64] + error; [67:65]eop_bvalid; [68]eop; [69]sop; [70]port_id; 71]flush */ +#define NIG_REG_DEBUG_PACKET_LB 0x10800 +/* [RW 1] Input enable for TX Debug packet */ +#define NIG_REG_EGRESS_DEBUG_IN_EN 0x100dc +/* [RW 1] If 1 - egress drain mode for port0 is active. In this mode all + packets from PBFare not forwarded to the MAC and just deleted from FIFO. + First packet may be deleted from the middle. And last packet will be + always deleted till the end. */ +#define NIG_REG_EGRESS_DRAIN0_MODE 0x10060 +/* [RW 1] Output enable to EMAC0 */ +#define NIG_REG_EGRESS_EMAC0_OUT_EN 0x10120 +/* [RW 1] MAC configuration for packets of port0. If 1 - all packet outputs + to emac for port0; other way to bmac for port0 */ +#define NIG_REG_EGRESS_EMAC0_PORT 0x10058 +/* [RW 1] Input enable for TX PBF user packet port0 IF */ +#define NIG_REG_EGRESS_PBF0_IN_EN 0x100cc +/* [RW 1] Input enable for TX PBF user packet port1 IF */ +#define NIG_REG_EGRESS_PBF1_IN_EN 0x100d0 +/* [RW 1] Input enable for RX_EMAC0 IF */ +#define NIG_REG_EMAC0_IN_EN 0x100a4 +/* [RW 1] output enable for TX EMAC pause port 0 IF */ +#define NIG_REG_EMAC0_PAUSE_OUT_EN 0x10118 +/* [R 1] status from emac0. This bit is set when MDINT from either the + EXT_MDINT pin or from the Copper PHY is driven low. This condition must + be cleared in the attached PHY device that is driving the MINT pin. */ +#define NIG_REG_EMAC0_STATUS_MISC_MI_INT 0x10494 +/* [WB 48] This address space contains BMAC0 registers. The BMAC registers + are described in appendix A. In order to access the BMAC0 registers; the + base address; NIG_REGISTERS_INGRESS_BMAC0_MEM; Offset: 0x10c00; should be + added to each BMAC register offset */ +#define NIG_REG_INGRESS_BMAC0_MEM 0x10c00 +/* [WB 48] This address space contains BMAC1 registers. The BMAC registers + are described in appendix A. In order to access the BMAC0 registers; the + base address; NIG_REGISTERS_INGRESS_BMAC1_MEM; Offset: 0x11000; should be + added to each BMAC register offset */ +#define NIG_REG_INGRESS_BMAC1_MEM 0x11000 +/* [R 1] FIFO empty in EOP descriptor FIFO of LP in NIG_RX_EOP */ +#define NIG_REG_INGRESS_EOP_LB_EMPTY 0x104e0 +/* [RW 17] Debug only. RX_EOP_DSCR_lb_FIFO in NIG_RX_EOP. Data + packet_length[13:0]; mac_error[14]; trunc_error[15]; parity[16] */ +#define NIG_REG_INGRESS_EOP_LB_FIFO 0x104e4 +/* [RW 1] led 10g for port 0 */ +#define NIG_REG_LED_10G_P0 0x10320 +/* [RW 1] Port0: This bit is set to enable the use of the + ~nig_registers_led_control_blink_rate_p0.led_control_blink_rate_p0 field + defined below. If this bit is cleared; then the blink rate will be about + 8Hz. */ +#define NIG_REG_LED_CONTROL_BLINK_RATE_ENA_P0 0x10318 +/* [RW 12] Port0: Specifies the period of each blink cycle (on + off) for + Traffic LED in milliseconds. Must be a non-zero value. This 12-bit field + is reset to 0x080; giving a default blink period of approximately 8Hz. */ +#define NIG_REG_LED_CONTROL_BLINK_RATE_P0 0x10310 +/* [RW 1] Port0: If set along with the + nig_registers_led_control_override_traffic_p0.led_control_override_traffic_p0 + bit and ~nig_registers_led_control_traffic_p0.led_control_traffic_p0 LED + bit; the Traffic LED will blink with the blink rate specified in + ~nig_registers_led_control_blink_rate_p0.led_control_blink_rate_p0 and + ~nig_registers_led_control_blink_rate_ena_p0.led_control_blink_rate_ena_p0 + fields. */ +#define NIG_REG_LED_CONTROL_BLINK_TRAFFIC_P0 0x10308 +/* [RW 1] Port0: If set overrides hardware control of the Traffic LED. The + Traffic LED will then be controlled via bit ~nig_registers_ + led_control_traffic_p0.led_control_traffic_p0 and bit + ~nig_registers_led_control_blink_traffic_p0.led_control_blink_traffic_p0 */ +#define NIG_REG_LED_CONTROL_OVERRIDE_TRAFFIC_P0 0x102f8 +/* [RW 1] Port0: If set along with the led_control_override_trafic_p0 bit; + turns on the Traffic LED. If the led_control_blink_traffic_p0 bit is also + set; the LED will blink with blink rate specified in + ~nig_registers_led_control_blink_rate_p0.led_control_blink_rate_p0 and + ~nig_regsters_led_control_blink_rate_ena_p0.led_control_blink_rate_ena_p0 + fields. */ +#define NIG_REG_LED_CONTROL_TRAFFIC_P0 0x10300 +/* [RW 4] led mode for port0: 0 MAC; 1-3 PHY1; 4 MAC2; 5-7 PHY4; 8-MAC3; + 9-11PHY7; 12 MAC4; 13-15 PHY10; */ +#define NIG_REG_LED_MODE_P0 0x102f0 +#define NIG_REG_LLH0_BRB1_DRV_MASK 0x10244 +/* [RW 1] send to BRB1 if no match on any of RMP rules. */ +#define NIG_REG_LLH0_BRB1_NOT_MCP 0x1025c +/* [RW 32] cm header for llh0 */ +#define NIG_REG_LLH0_CM_HEADER 0x1007c +#define NIG_REG_LLH0_ERROR_MASK 0x1008c +/* [RW 8] event id for llh0 */ +#define NIG_REG_LLH0_EVENT_ID 0x10084 +/* [RW 8] init credit counter for port0 in LLH */ +#define NIG_REG_LLH0_XCM_INIT_CREDIT 0x10554 +#define NIG_REG_LLH0_XCM_MASK 0x10130 +/* [RW 1] send to BRB1 if no match on any of RMP rules. */ +#define NIG_REG_LLH1_BRB1_NOT_MCP 0x102dc +/* [RW 32] cm header for llh1 */ +#define NIG_REG_LLH1_CM_HEADER 0x10080 +#define NIG_REG_LLH1_ERROR_MASK 0x10090 +/* [RW 8] event id for llh1 */ +#define NIG_REG_LLH1_EVENT_ID 0x10088 +/* [RW 8] init credit counter for port1 in LLH */ +#define NIG_REG_LLH1_XCM_INIT_CREDIT 0x10564 +#define NIG_REG_LLH1_XCM_MASK 0x10134 +#define NIG_REG_MASK_INTERRUPT_PORT0 0x10330 +#define NIG_REG_MASK_INTERRUPT_PORT1 0x10334 +/* [RW 1] Output signal from NIG to EMAC0. When set enables the EMAC0 block. */ +#define NIG_REG_NIG_EMAC0_EN 0x1003c +/* [RW 1] Output signal from NIG to TX_EMAC0. When set indicates to the + EMAC0 to strip the CRC from the ingress packets. */ +#define NIG_REG_NIG_INGRESS_EMAC0_NO_CRC 0x10044 +/* [RW 1] Input enable for RX PBF LP IF */ +#define NIG_REG_PBF_LB_IN_EN 0x100b4 +/* [RW 1] output enable for RX parser descriptor IF */ +#define NIG_REG_PRS_EOP_OUT_EN 0x10104 +/* [RW 1] Input enable for RX parser request IF */ +#define NIG_REG_PRS_REQ_IN_EN 0x100b8 +/* [RW 5] control to serdes - CL22 PHY_ADD and CL45 PRTAD */ +#define NIG_REG_SERDES0_CTRL_PHY_ADDR 0x10374 +/* [R 1] status from serdes0 that inputs to interrupt logic of link status */ +#define NIG_REG_SERDES0_STATUS_LINK_STATUS 0x10578 +/* [R 32] Rx statistics : In user packets discarded due to BRB backpressure + for port0 */ +#define NIG_REG_STAT0_BRB_DISCARD 0x105f0 +/* [R 32] Rx statistics : In user packets discarded due to BRB backpressure + for port1 */ +#define NIG_REG_STAT1_BRB_DISCARD 0x10628 +/* [WB_R 64] Rx statistics : User octets received for LP */ +#define NIG_REG_STAT2_BRB_OCTET 0x107e0 +#define NIG_REG_STATUS_INTERRUPT_PORT0 0x10328 +#define NIG_REG_STATUS_INTERRUPT_PORT1 0x1032c +/* [RW 1] output enable for RX_XCM0 IF */ +#define NIG_REG_XCM0_OUT_EN 0x100f0 +/* [RW 1] output enable for RX_XCM1 IF */ +#define NIG_REG_XCM1_OUT_EN 0x100f4 +/* [RW 5] control to xgxs - CL45 DEVAD */ +#define NIG_REG_XGXS0_CTRL_MD_DEVAD 0x1033c +/* [RW 5] control to xgxs - CL22 PHY_ADD and CL45 PRTAD */ +#define NIG_REG_XGXS0_CTRL_PHY_ADDR 0x10340 +/* [R 1] status from xgxs0 that inputs to interrupt logic of link10g. */ +#define NIG_REG_XGXS0_STATUS_LINK10G 0x10680 +/* [R 4] status from xgxs0 that inputs to interrupt logic of link status */ +#define NIG_REG_XGXS0_STATUS_LINK_STATUS 0x10684 +/* [RW 2] selection for XGXS lane of port 0 in NIG_MUX block */ +#define NIG_REG_XGXS_LANE_SEL_P0 0x102e8 +/* [RW 1] selection for port0 for NIG_MUX block : 0 = SerDes; 1 = XGXS */ +#define NIG_REG_XGXS_SERDES0_MODE_SEL 0x102e0 +#define NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_SERDES0_LINK_STATUS (0x1<<9) +#define NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_XGXS0_LINK10G (0x1<<15) +#define NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_XGXS0_LINK_STATUS (0xf<<18) +#define NIG_STATUS_INTERRUPT_PORT0_REG_STATUS_XGXS0_LINK_STATUS_SIZE 18 +/* [RW 1] Disable processing further tasks from port 0 (after ending the + current task in process). */ +#define PBF_REG_DISABLE_NEW_TASK_PROC_P0 0x14005c +/* [RW 1] Disable processing further tasks from port 1 (after ending the + current task in process). */ +#define PBF_REG_DISABLE_NEW_TASK_PROC_P1 0x140060 +/* [RW 1] Disable processing further tasks from port 4 (after ending the + current task in process). */ +#define PBF_REG_DISABLE_NEW_TASK_PROC_P4 0x14006c +#define PBF_REG_IF_ENABLE_REG 0x140044 +/* [RW 1] Init bit. When set the initial credits are copied to the credit + registers (except the port credits). Should be set and then reset after + the configuration of the block has ended. */ +#define PBF_REG_INIT 0x140000 +/* [RW 1] Init bit for port 0. When set the initial credit of port 0 is + copied to the credit register. Should be set and then reset after the + configuration of the port has ended. */ +#define PBF_REG_INIT_P0 0x140004 +/* [RW 1] Init bit for port 1. When set the initial credit of port 1 is + copied to the credit register. Should be set and then reset after the + configuration of the port has ended. */ +#define PBF_REG_INIT_P1 0x140008 +/* [RW 1] Init bit for port 4. When set the initial credit of port 4 is + copied to the credit register. Should be set and then reset after the + configuration of the port has ended. */ +#define PBF_REG_INIT_P4 0x14000c +/* [RW 1] Enable for mac interface 0. */ +#define PBF_REG_MAC_IF0_ENABLE 0x140030 +/* [RW 1] Enable for mac interface 1. */ +#define PBF_REG_MAC_IF1_ENABLE 0x140034 +/* [RW 1] Enable for the loopback interface. */ +#define PBF_REG_MAC_LB_ENABLE 0x140040 +/* [RW 10] Port 0 threshold used by arbiter in 16 byte lines used when pause + not suppoterd. */ +#define PBF_REG_P0_ARB_THRSH 0x1400e4 +/* [R 11] Current credit for port 0 in the tx port buffers in 16 byte lines. */ +#define PBF_REG_P0_CREDIT 0x140200 +/* [RW 11] Initial credit for port 0 in the tx port buffers in 16 byte + lines. */ +#define PBF_REG_P0_INIT_CRD 0x1400d0 +/* [RW 1] Indication that pause is enabled for port 0. */ +#define PBF_REG_P0_PAUSE_ENABLE 0x140014 +/* [R 8] Number of tasks in port 0 task queue. */ +#define PBF_REG_P0_TASK_CNT 0x140204 +/* [R 11] Current credit for port 1 in the tx port buffers in 16 byte lines. */ +#define PBF_REG_P1_CREDIT 0x140208 +/* [RW 11] Initial credit for port 1 in the tx port buffers in 16 byte + lines. */ +#define PBF_REG_P1_INIT_CRD 0x1400d4 +/* [R 8] Number of tasks in port 1 task queue. */ +#define PBF_REG_P1_TASK_CNT 0x14020c +/* [R 11] Current credit for port 4 in the tx port buffers in 16 byte lines. */ +#define PBF_REG_P4_CREDIT 0x140210 +/* [RW 11] Initial credit for port 4 in the tx port buffers in 16 byte + lines. */ +#define PBF_REG_P4_INIT_CRD 0x1400e0 +/* [R 8] Number of tasks in port 4 task queue. */ +#define PBF_REG_P4_TASK_CNT 0x140214 +/* [RW 5] Interrupt mask register #0 read/write */ +#define PBF_REG_PBF_INT_MASK 0x1401d4 +/* [R 5] Interrupt register #0 read */ +#define PBF_REG_PBF_INT_STS 0x1401c8 +#define PB_REG_CONTROL 0 +/* [RW 2] Interrupt mask register #0 read/write */ +#define PB_REG_PB_INT_MASK 0x28 +/* [R 2] Interrupt register #0 read */ +#define PB_REG_PB_INT_STS 0x1c +/* [RW 4] Parity mask register #0 read/write */ +#define PB_REG_PB_PRTY_MASK 0x38 +#define PRS_REG_A_PRSU_20 0x40134 +/* [R 8] debug only: CFC load request current credit. Transaction based. */ +#define PRS_REG_CFC_LD_CURRENT_CREDIT 0x40164 +/* [R 8] debug only: CFC search request current credit. Transaction based. */ +#define PRS_REG_CFC_SEARCH_CURRENT_CREDIT 0x40168 +/* [RW 6] The initial credit for the search message to the CFC interface. + Credit is transaction based. */ +#define PRS_REG_CFC_SEARCH_INITIAL_CREDIT 0x4011c +/* [RW 24] CID for port 0 if no match */ +#define PRS_REG_CID_PORT_0 0x400fc +#define PRS_REG_CID_PORT_1 0x40100 +/* [RW 32] The CM header for flush message where 'load existed' bit in CFC + load response is reset and packet type is 0. Used in packet start message + to TCM. */ +#define PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_0 0x400dc +#define PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_1 0x400e0 +#define PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_2 0x400e4 +#define PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_3 0x400e8 +#define PRS_REG_CM_HDR_FLUSH_LOAD_TYPE_4 0x400ec +/* [RW 32] The CM header for flush message where 'load existed' bit in CFC + load response is set and packet type is 0. Used in packet start message + to TCM. */ +#define PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_0 0x400bc +#define PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_1 0x400c0 +#define PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_2 0x400c4 +#define PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_3 0x400c8 +#define PRS_REG_CM_HDR_FLUSH_NO_LOAD_TYPE_4 0x400cc +/* [RW 32] The CM header for a match and packet type 1 for loopback port. + Used in packet start message to TCM. */ +#define PRS_REG_CM_HDR_LOOPBACK_TYPE_1 0x4009c +#define PRS_REG_CM_HDR_LOOPBACK_TYPE_2 0x400a0 +#define PRS_REG_CM_HDR_LOOPBACK_TYPE_3 0x400a4 +#define PRS_REG_CM_HDR_LOOPBACK_TYPE_4 0x400a8 +/* [RW 32] The CM header for a match and packet type 0. Used in packet start + message to TCM. */ +#define PRS_REG_CM_HDR_TYPE_0 0x40078 +#define PRS_REG_CM_HDR_TYPE_1 0x4007c +#define PRS_REG_CM_HDR_TYPE_2 0x40080 +#define PRS_REG_CM_HDR_TYPE_3 0x40084 +#define PRS_REG_CM_HDR_TYPE_4 0x40088 +/* [RW 32] The CM header in case there was not a match on the connection */ +#define PRS_REG_CM_NO_MATCH_HDR 0x400b8 +/* [RW 8] The 8-bit event ID for a match and packet type 1. Used in packet + start message to TCM. */ +#define PRS_REG_EVENT_ID_1 0x40054 +#define PRS_REG_EVENT_ID_2 0x40058 +#define PRS_REG_EVENT_ID_3 0x4005c +/* [RW 8] Context region for flush packet with packet type 0. Used in CFC + load request message. */ +#define PRS_REG_FLUSH_REGIONS_TYPE_0 0x40004 +#define PRS_REG_FLUSH_REGIONS_TYPE_1 0x40008 +#define PRS_REG_FLUSH_REGIONS_TYPE_2 0x4000c +#define PRS_REG_FLUSH_REGIONS_TYPE_3 0x40010 +#define PRS_REG_FLUSH_REGIONS_TYPE_4 0x40014 +#define PRS_REG_FLUSH_REGIONS_TYPE_5 0x40018 +#define PRS_REG_FLUSH_REGIONS_TYPE_6 0x4001c +#define PRS_REG_FLUSH_REGIONS_TYPE_7 0x40020 +/* [RW 4] The increment value to send in the CFC load request message */ +#define PRS_REG_INC_VALUE 0x40048 +/* [RW 1] If set indicates not to send messages to CFC on received packets */ +#define PRS_REG_NIC_MODE 0x40138 +/* [RW 8] The 8-bit event ID for cases where there is no match on the + connection. Used in packet start message to TCM. */ +#define PRS_REG_NO_MATCH_EVENT_ID 0x40070 +/* [ST 24] The number of input CFC flush packets */ +#define PRS_REG_NUM_OF_CFC_FLUSH_MESSAGES 0x40128 +/* [ST 32] The number of cycles the Parser halted its operation since it + could not allocate the next serial number */ +#define PRS_REG_NUM_OF_DEAD_CYCLES 0x40130 +/* [ST 24] The number of input packets */ +#define PRS_REG_NUM_OF_PACKETS 0x40124 +/* [ST 24] The number of input transparent flush packets */ +#define PRS_REG_NUM_OF_TRANSPARENT_FLUSH_MESSAGES 0x4012c +/* [RW 8] Context region for received Ethernet packet with a match and + packet type 0. Used in CFC load request message */ +#define PRS_REG_PACKET_REGIONS_TYPE_0 0x40028 +#define PRS_REG_PACKET_REGIONS_TYPE_1 0x4002c +#define PRS_REG_PACKET_REGIONS_TYPE_2 0x40030 +#define PRS_REG_PACKET_REGIONS_TYPE_3 0x40034 +#define PRS_REG_PACKET_REGIONS_TYPE_4 0x40038 +#define PRS_REG_PACKET_REGIONS_TYPE_5 0x4003c +#define PRS_REG_PACKET_REGIONS_TYPE_6 0x40040 +#define PRS_REG_PACKET_REGIONS_TYPE_7 0x40044 +/* [R 2] debug only: Number of pending requests for CAC on port 0. */ +#define PRS_REG_PENDING_BRB_CAC0_RQ 0x40174 +/* [R 2] debug only: Number of pending requests for header parsing. */ +#define PRS_REG_PENDING_BRB_PRS_RQ 0x40170 +/* [R 1] Interrupt register #0 read */ +#define PRS_REG_PRS_INT_STS 0x40188 +/* [RW 8] Parity mask register #0 read/write */ +#define PRS_REG_PRS_PRTY_MASK 0x401a4 +/* [RW 8] Context region for pure acknowledge packets. Used in CFC load + request message */ +#define PRS_REG_PURE_REGIONS 0x40024 +/* [R 32] debug only: Serial number status lsb 32 bits. '1' indicates this + serail number was released by SDM but cannot be used because a previous + serial number was not released. */ +#define PRS_REG_SERIAL_NUM_STATUS_LSB 0x40154 +/* [R 32] debug only: Serial number status msb 32 bits. '1' indicates this + serail number was released by SDM but cannot be used because a previous + serial number was not released. */ +#define PRS_REG_SERIAL_NUM_STATUS_MSB 0x40158 +/* [R 4] debug only: SRC current credit. Transaction based. */ +#define PRS_REG_SRC_CURRENT_CREDIT 0x4016c +/* [R 8] debug only: TCM current credit. Cycle based. */ +#define PRS_REG_TCM_CURRENT_CREDIT 0x40160 +/* [R 8] debug only: TSDM current credit. Transaction based. */ +#define PRS_REG_TSDM_CURRENT_CREDIT 0x4015c +/* [R 6] Debug only: Number of used entries in the data FIFO */ +#define PXP2_REG_HST_DATA_FIFO_STATUS 0x12047c +/* [R 7] Debug only: Number of used entries in the header FIFO */ +#define PXP2_REG_HST_HEADER_FIFO_STATUS 0x120478 +#define PXP2_REG_PGL_CONTROL0 0x120490 +#define PXP2_REG_PGL_CONTROL1 0x120514 +/* [RW 32] Inbound interrupt table for CSDM: bits[31:16]-mask; + its[15:0]-address */ +#define PXP2_REG_PGL_INT_CSDM_0 0x1204f4 +#define PXP2_REG_PGL_INT_CSDM_1 0x1204f8 +#define PXP2_REG_PGL_INT_CSDM_2 0x1204fc +#define PXP2_REG_PGL_INT_CSDM_3 0x120500 +#define PXP2_REG_PGL_INT_CSDM_4 0x120504 +#define PXP2_REG_PGL_INT_CSDM_5 0x120508 +#define PXP2_REG_PGL_INT_CSDM_6 0x12050c +#define PXP2_REG_PGL_INT_CSDM_7 0x120510 +/* [RW 32] Inbound interrupt table for TSDM: bits[31:16]-mask; + its[15:0]-address */ +#define PXP2_REG_PGL_INT_TSDM_0 0x120494 +#define PXP2_REG_PGL_INT_TSDM_1 0x120498 +#define PXP2_REG_PGL_INT_TSDM_2 0x12049c +#define PXP2_REG_PGL_INT_TSDM_3 0x1204a0 +#define PXP2_REG_PGL_INT_TSDM_4 0x1204a4 +#define PXP2_REG_PGL_INT_TSDM_5 0x1204a8 +#define PXP2_REG_PGL_INT_TSDM_6 0x1204ac +#define PXP2_REG_PGL_INT_TSDM_7 0x1204b0 +/* [RW 32] Inbound interrupt table for USDM: bits[31:16]-mask; + its[15:0]-address */ +#define PXP2_REG_PGL_INT_USDM_0 0x1204b4 +#define PXP2_REG_PGL_INT_USDM_1 0x1204b8 +#define PXP2_REG_PGL_INT_USDM_2 0x1204bc +#define PXP2_REG_PGL_INT_USDM_3 0x1204c0 +#define PXP2_REG_PGL_INT_USDM_4 0x1204c4 +#define PXP2_REG_PGL_INT_USDM_5 0x1204c8 +#define PXP2_REG_PGL_INT_USDM_6 0x1204cc +#define PXP2_REG_PGL_INT_USDM_7 0x1204d0 +/* [RW 32] Inbound interrupt table for XSDM: bits[31:16]-mask; + its[15:0]-address */ +#define PXP2_REG_PGL_INT_XSDM_0 0x1204d4 +#define PXP2_REG_PGL_INT_XSDM_1 0x1204d8 +#define PXP2_REG_PGL_INT_XSDM_2 0x1204dc +#define PXP2_REG_PGL_INT_XSDM_3 0x1204e0 +#define PXP2_REG_PGL_INT_XSDM_4 0x1204e4 +#define PXP2_REG_PGL_INT_XSDM_5 0x1204e8 +#define PXP2_REG_PGL_INT_XSDM_6 0x1204ec +#define PXP2_REG_PGL_INT_XSDM_7 0x1204f0 +/* [R 1] this bit indicates that a read request was blocked because of + bus_master_en was deasserted */ +#define PXP2_REG_PGL_READ_BLOCKED 0x120568 +/* [R 6] debug only */ +#define PXP2_REG_PGL_TXR_CDTS 0x120528 +/* [R 18] debug only */ +#define PXP2_REG_PGL_TXW_CDTS 0x12052c +/* [R 1] this bit indicates that a write request was blocked because of + bus_master_en was deasserted */ +#define PXP2_REG_PGL_WRITE_BLOCKED 0x120564 +#define PXP2_REG_PSWRQ_BW_ADD1 0x1201c0 +#define PXP2_REG_PSWRQ_BW_ADD10 0x1201e4 +#define PXP2_REG_PSWRQ_BW_ADD11 0x1201e8 +#define PXP2_REG_PSWRQ_BW_ADD10 0x1201e4 +#define PXP2_REG_PSWRQ_BW_ADD11 0x1201e8 +#define PXP2_REG_PSWRQ_BW_ADD2 0x1201c4 +#define PXP2_REG_PSWRQ_BW_ADD28 0x120228 +#define PXP2_REG_PSWRQ_BW_ADD28 0x120228 +#define PXP2_REG_PSWRQ_BW_ADD3 0x1201c8 +#define PXP2_REG_PSWRQ_BW_ADD6 0x1201d4 +#define PXP2_REG_PSWRQ_BW_ADD7 0x1201d8 +#define PXP2_REG_PSWRQ_BW_ADD8 0x1201dc +#define PXP2_REG_PSWRQ_BW_ADD9 0x1201e0 +#define PXP2_REG_PSWRQ_BW_CREDIT 0x12032c +#define PXP2_REG_PSWRQ_BW_L1 0x1202b0 +#define PXP2_REG_PSWRQ_BW_L10 0x1202d4 +#define PXP2_REG_PSWRQ_BW_L11 0x1202d8 +#define PXP2_REG_PSWRQ_BW_L10 0x1202d4 +#define PXP2_REG_PSWRQ_BW_L11 0x1202d8 +#define PXP2_REG_PSWRQ_BW_L2 0x1202b4 +#define PXP2_REG_PSWRQ_BW_L28 0x120318 +#define PXP2_REG_PSWRQ_BW_L28 0x120318 +#define PXP2_REG_PSWRQ_BW_L3 0x1202b8 +#define PXP2_REG_PSWRQ_BW_L6 0x1202c4 +#define PXP2_REG_PSWRQ_BW_L7 0x1202c8 +#define PXP2_REG_PSWRQ_BW_L8 0x1202cc +#define PXP2_REG_PSWRQ_BW_L9 0x1202d0 +#define PXP2_REG_PSWRQ_BW_RD 0x120324 +#define PXP2_REG_PSWRQ_BW_UB1 0x120238 +#define PXP2_REG_PSWRQ_BW_UB10 0x12025c +#define PXP2_REG_PSWRQ_BW_UB11 0x120260 +#define PXP2_REG_PSWRQ_BW_UB10 0x12025c +#define PXP2_REG_PSWRQ_BW_UB11 0x120260 +#define PXP2_REG_PSWRQ_BW_UB2 0x12023c +#define PXP2_REG_PSWRQ_BW_UB28 0x1202a0 +#define PXP2_REG_PSWRQ_BW_UB28 0x1202a0 +#define PXP2_REG_PSWRQ_BW_UB3 0x120240 +#define PXP2_REG_PSWRQ_BW_UB6 0x12024c +#define PXP2_REG_PSWRQ_BW_UB7 0x120250 +#define PXP2_REG_PSWRQ_BW_UB8 0x120254 +#define PXP2_REG_PSWRQ_BW_UB9 0x120258 +#define PXP2_REG_PSWRQ_BW_WR 0x120328 +#define PXP2_REG_PSWRQ_CDU0_L2P 0x120000 +#define PXP2_REG_PSWRQ_QM0_L2P 0x120038 +#define PXP2_REG_PSWRQ_SRC0_L2P 0x120054 +#define PXP2_REG_PSWRQ_TM0_L2P 0x12001c +/* [RW 25] Interrupt mask register #0 read/write */ +#define PXP2_REG_PXP2_INT_MASK 0x120578 +/* [R 25] Interrupt register #0 read */ +#define PXP2_REG_PXP2_INT_STS 0x12056c +/* [RC 25] Interrupt register #0 read clear */ +#define PXP2_REG_PXP2_INT_STS_CLR 0x120570 +/* [RW 32] Parity mask register #0 read/write */ +#define PXP2_REG_PXP2_PRTY_MASK_0 0x120588 +#define PXP2_REG_PXP2_PRTY_MASK_1 0x120598 +/* [R 1] Debug only: The 'almost full' indication from each fifo (gives + indication about backpressure) */ +#define PXP2_REG_RD_ALMOST_FULL_0 0x120424 +/* [R 8] Debug only: The blocks counter - number of unused block ids */ +#define PXP2_REG_RD_BLK_CNT 0x120418 +/* [RW 8] Debug only: Total number of available blocks in Tetris Buffer. + Must be bigger than 6. Normally should not be changed. */ +#define PXP2_REG_RD_BLK_NUM_CFG 0x12040c +/* [RW 2] CDU byte swapping mode configuration for master read requests */ +#define PXP2_REG_RD_CDURD_SWAP_MODE 0x120404 +/* [RW 1] When '1'; inputs to the PSWRD block are ignored */ +#define PXP2_REG_RD_DISABLE_INPUTS 0x120374 +/* [R 1] PSWRD internal memories initialization is done */ +#define PXP2_REG_RD_INIT_DONE 0x120370 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq10 */ +#define PXP2_REG_RD_MAX_BLKS_VQ10 0x1203a0 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq11 */ +#define PXP2_REG_RD_MAX_BLKS_VQ11 0x1203a4 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq17 */ +#define PXP2_REG_RD_MAX_BLKS_VQ17 0x1203bc +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq18 */ +#define PXP2_REG_RD_MAX_BLKS_VQ18 0x1203c0 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq19 */ +#define PXP2_REG_RD_MAX_BLKS_VQ19 0x1203c4 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq22 */ +#define PXP2_REG_RD_MAX_BLKS_VQ22 0x1203d0 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq6 */ +#define PXP2_REG_RD_MAX_BLKS_VQ6 0x120390 +/* [RW 8] The maximum number of blocks in Tetris Buffer that can be + allocated for vq9 */ +#define PXP2_REG_RD_MAX_BLKS_VQ9 0x12039c +/* [RW 2] PBF byte swapping mode configuration for master read requests */ +#define PXP2_REG_RD_PBF_SWAP_MODE 0x1203f4 +/* [R 1] Debug only: Indication if delivery ports are idle */ +#define PXP2_REG_RD_PORT_IS_IDLE_0 0x12041c +#define PXP2_REG_RD_PORT_IS_IDLE_1 0x120420 +/* [RW 2] QM byte swapping mode configuration for master read requests */ +#define PXP2_REG_RD_QM_SWAP_MODE 0x1203f8 +/* [R 7] Debug only: The SR counter - number of unused sub request ids */ +#define PXP2_REG_RD_SR_CNT 0x120414 +/* [RW 2] SRC byte swapping mode configuration for master read requests */ +#define PXP2_REG_RD_SRC_SWAP_MODE 0x120400 +/* [RW 7] Debug only: Total number of available PCI read sub-requests. Must + be bigger than 1. Normally should not be changed. */ +#define PXP2_REG_RD_SR_NUM_CFG 0x120408 +/* [RW 1] Signals the PSWRD block to start initializing internal memories */ +#define PXP2_REG_RD_START_INIT 0x12036c +/* [RW 2] TM byte swapping mode configuration for master read requests */ +#define PXP2_REG_RD_TM_SWAP_MODE 0x1203fc +/* [RW 10] Bandwidth addition to VQ0 write requests */ +#define PXP2_REG_RQ_BW_RD_ADD0 0x1201bc +/* [RW 10] Bandwidth addition to VQ12 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD12 0x1201ec +/* [RW 10] Bandwidth addition to VQ13 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD13 0x1201f0 +/* [RW 10] Bandwidth addition to VQ14 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD14 0x1201f4 +/* [RW 10] Bandwidth addition to VQ15 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD15 0x1201f8 +/* [RW 10] Bandwidth addition to VQ16 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD16 0x1201fc +/* [RW 10] Bandwidth addition to VQ17 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD17 0x120200 +/* [RW 10] Bandwidth addition to VQ18 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD18 0x120204 +/* [RW 10] Bandwidth addition to VQ19 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD19 0x120208 +/* [RW 10] Bandwidth addition to VQ20 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD20 0x12020c +/* [RW 10] Bandwidth addition to VQ22 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD22 0x120210 +/* [RW 10] Bandwidth addition to VQ23 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD23 0x120214 +/* [RW 10] Bandwidth addition to VQ24 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD24 0x120218 +/* [RW 10] Bandwidth addition to VQ25 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD25 0x12021c +/* [RW 10] Bandwidth addition to VQ26 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD26 0x120220 +/* [RW 10] Bandwidth addition to VQ27 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD27 0x120224 +/* [RW 10] Bandwidth addition to VQ4 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD4 0x1201cc +/* [RW 10] Bandwidth addition to VQ5 read requests */ +#define PXP2_REG_RQ_BW_RD_ADD5 0x1201d0 +/* [RW 10] Bandwidth Typical L for VQ0 Read requests */ +#define PXP2_REG_RQ_BW_RD_L0 0x1202ac +/* [RW 10] Bandwidth Typical L for VQ12 Read requests */ +#define PXP2_REG_RQ_BW_RD_L12 0x1202dc +/* [RW 10] Bandwidth Typical L for VQ13 Read requests */ +#define PXP2_REG_RQ_BW_RD_L13 0x1202e0 +/* [RW 10] Bandwidth Typical L for VQ14 Read requests */ +#define PXP2_REG_RQ_BW_RD_L14 0x1202e4 +/* [RW 10] Bandwidth Typical L for VQ15 Read requests */ +#define PXP2_REG_RQ_BW_RD_L15 0x1202e8 +/* [RW 10] Bandwidth Typical L for VQ16 Read requests */ +#define PXP2_REG_RQ_BW_RD_L16 0x1202ec +/* [RW 10] Bandwidth Typical L for VQ17 Read requests */ +#define PXP2_REG_RQ_BW_RD_L17 0x1202f0 +/* [RW 10] Bandwidth Typical L for VQ18 Read requests */ +#define PXP2_REG_RQ_BW_RD_L18 0x1202f4 +/* [RW 10] Bandwidth Typical L for VQ19 Read requests */ +#define PXP2_REG_RQ_BW_RD_L19 0x1202f8 +/* [RW 10] Bandwidth Typical L for VQ20 Read requests */ +#define PXP2_REG_RQ_BW_RD_L20 0x1202fc +/* [RW 10] Bandwidth Typical L for VQ22 Read requests */ +#define PXP2_REG_RQ_BW_RD_L22 0x120300 +/* [RW 10] Bandwidth Typical L for VQ23 Read requests */ +#define PXP2_REG_RQ_BW_RD_L23 0x120304 +/* [RW 10] Bandwidth Typical L for VQ24 Read requests */ +#define PXP2_REG_RQ_BW_RD_L24 0x120308 +/* [RW 10] Bandwidth Typical L for VQ25 Read requests */ +#define PXP2_REG_RQ_BW_RD_L25 0x12030c +/* [RW 10] Bandwidth Typical L for VQ26 Read requests */ +#define PXP2_REG_RQ_BW_RD_L26 0x120310 +/* [RW 10] Bandwidth Typical L for VQ27 Read requests */ +#define PXP2_REG_RQ_BW_RD_L27 0x120314 +/* [RW 10] Bandwidth Typical L for VQ4 Read requests */ +#define PXP2_REG_RQ_BW_RD_L4 0x1202bc +/* [RW 10] Bandwidth Typical L for VQ5 Read- currently not used */ +#define PXP2_REG_RQ_BW_RD_L5 0x1202c0 +/* [RW 7] Bandwidth upper bound for VQ0 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND0 0x120234 +/* [RW 7] Bandwidth upper bound for VQ12 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND12 0x120264 +/* [RW 7] Bandwidth upper bound for VQ13 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND13 0x120268 +/* [RW 7] Bandwidth upper bound for VQ14 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND14 0x12026c +/* [RW 7] Bandwidth upper bound for VQ15 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND15 0x120270 +/* [RW 7] Bandwidth upper bound for VQ16 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND16 0x120274 +/* [RW 7] Bandwidth upper bound for VQ17 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND17 0x120278 +/* [RW 7] Bandwidth upper bound for VQ18 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND18 0x12027c +/* [RW 7] Bandwidth upper bound for VQ19 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND19 0x120280 +/* [RW 7] Bandwidth upper bound for VQ20 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND20 0x120284 +/* [RW 7] Bandwidth upper bound for VQ22 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND22 0x120288 +/* [RW 7] Bandwidth upper bound for VQ23 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND23 0x12028c +/* [RW 7] Bandwidth upper bound for VQ24 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND24 0x120290 +/* [RW 7] Bandwidth upper bound for VQ25 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND25 0x120294 +/* [RW 7] Bandwidth upper bound for VQ26 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND26 0x120298 +/* [RW 7] Bandwidth upper bound for VQ27 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND27 0x12029c +/* [RW 7] Bandwidth upper bound for VQ4 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND4 0x120244 +/* [RW 7] Bandwidth upper bound for VQ5 read requests */ +#define PXP2_REG_RQ_BW_RD_UBOUND5 0x120248 +/* [RW 10] Bandwidth addition to VQ29 write requests */ +#define PXP2_REG_RQ_BW_WR_ADD29 0x12022c +/* [RW 10] Bandwidth addition to VQ30 write requests */ +#define PXP2_REG_RQ_BW_WR_ADD30 0x120230 +/* [RW 10] Bandwidth Typical L for VQ29 Write requests */ +#define PXP2_REG_RQ_BW_WR_L29 0x12031c +/* [RW 10] Bandwidth Typical L for VQ30 Write requests */ +#define PXP2_REG_RQ_BW_WR_L30 0x120320 +/* [RW 7] Bandwidth upper bound for VQ29 */ +#define PXP2_REG_RQ_BW_WR_UBOUND29 0x1202a4 +/* [RW 7] Bandwidth upper bound for VQ30 */ +#define PXP2_REG_RQ_BW_WR_UBOUND30 0x1202a8 +/* [RW 2] Endian mode for cdu */ +#define PXP2_REG_RQ_CDU_ENDIAN_M 0x1201a0 +/* [RW 3] page size in L2P table for CDU module; -4k; -8k; -16k; -32k; -64k; + -128k */ +#define PXP2_REG_RQ_CDU_P_SIZE 0x120018 +/* [R 1] 1' indicates that the requester has finished its internal + configuration */ +#define PXP2_REG_RQ_CFG_DONE 0x1201b4 +/* [RW 2] Endian mode for debug */ +#define PXP2_REG_RQ_DBG_ENDIAN_M 0x1201a4 +/* [RW 1] When '1'; requests will enter input buffers but wont get out + towards the glue */ +#define PXP2_REG_RQ_DISABLE_INPUTS 0x120330 +/* [RW 2] Endian mode for hc */ +#define PXP2_REG_RQ_HC_ENDIAN_M 0x1201a8 +/* [WB 53] Onchip address table */ +#define PXP2_REG_RQ_ONCHIP_AT 0x122000 +/* [RW 2] Endian mode for qm */ +#define PXP2_REG_RQ_QM_ENDIAN_M 0x120194 +/* [RW 3] page size in L2P table for QM module; -4k; -8k; -16k; -32k; -64k; + -128k */ +#define PXP2_REG_RQ_QM_P_SIZE 0x120050 +/* [RW 1] 1' indicates that the RBC has finished configurating the PSWRQ */ +#define PXP2_REG_RQ_RBC_DONE 0x1201b0 +/* [RW 3] Max burst size filed for read requests port 0; 000 - 128B; + 001:256B; 010: 512B; 11:1K:100:2K; 01:4K */ +#define PXP2_REG_RQ_RD_MBS0 0x120160 +/* [RW 2] Endian mode for src */ +#define PXP2_REG_RQ_SRC_ENDIAN_M 0x12019c +/* [RW 3] page size in L2P table for SRC module; -4k; -8k; -16k; -32k; -64k; + -128k */ +#define PXP2_REG_RQ_SRC_P_SIZE 0x12006c +/* [RW 2] Endian mode for tm */ +#define PXP2_REG_RQ_TM_ENDIAN_M 0x120198 +/* [RW 3] page size in L2P table for TM module; -4k; -8k; -16k; -32k; -64k; + -128k */ +#define PXP2_REG_RQ_TM_P_SIZE 0x120034 +/* [R 5] Number of entries in the ufifo; his fifo has l2p completions */ +#define PXP2_REG_RQ_UFIFO_NUM_OF_ENTRY 0x12080c +/* [R 8] Number of entries occupied by vq 0 in pswrq memory */ +#define PXP2_REG_RQ_VQ0_ENTRY_CNT 0x120810 +/* [R 8] Number of entries occupied by vq 10 in pswrq memory */ +#define PXP2_REG_RQ_VQ10_ENTRY_CNT 0x120818 +/* [R 8] Number of entries occupied by vq 11 in pswrq memory */ +#define PXP2_REG_RQ_VQ11_ENTRY_CNT 0x120820 +/* [R 8] Number of entries occupied by vq 12 in pswrq memory */ +#define PXP2_REG_RQ_VQ12_ENTRY_CNT 0x120828 +/* [R 8] Number of entries occupied by vq 13 in pswrq memory */ +#define PXP2_REG_RQ_VQ13_ENTRY_CNT 0x120830 +/* [R 8] Number of entries occupied by vq 14 in pswrq memory */ +#define PXP2_REG_RQ_VQ14_ENTRY_CNT 0x120838 +/* [R 8] Number of entries occupied by vq 15 in pswrq memory */ +#define PXP2_REG_RQ_VQ15_ENTRY_CNT 0x120840 +/* [R 8] Number of entries occupied by vq 16 in pswrq memory */ +#define PXP2_REG_RQ_VQ16_ENTRY_CNT 0x120848 +/* [R 8] Number of entries occupied by vq 17 in pswrq memory */ +#define PXP2_REG_RQ_VQ17_ENTRY_CNT 0x120850 +/* [R 8] Number of entries occupied by vq 18 in pswrq memory */ +#define PXP2_REG_RQ_VQ18_ENTRY_CNT 0x120858 +/* [R 8] Number of entries occupied by vq 19 in pswrq memory */ +#define PXP2_REG_RQ_VQ19_ENTRY_CNT 0x120860 +/* [R 8] Number of entries occupied by vq 1 in pswrq memory */ +#define PXP2_REG_RQ_VQ1_ENTRY_CNT 0x120868 +/* [R 8] Number of entries occupied by vq 20 in pswrq memory */ +#define PXP2_REG_RQ_VQ20_ENTRY_CNT 0x120870 +/* [R 8] Number of entries occupied by vq 21 in pswrq memory */ +#define PXP2_REG_RQ_VQ21_ENTRY_CNT 0x120878 +/* [R 8] Number of entries occupied by vq 22 in pswrq memory */ +#define PXP2_REG_RQ_VQ22_ENTRY_CNT 0x120880 +/* [R 8] Number of entries occupied by vq 23 in pswrq memory */ +#define PXP2_REG_RQ_VQ23_ENTRY_CNT 0x120888 +/* [R 8] Number of entries occupied by vq 24 in pswrq memory */ +#define PXP2_REG_RQ_VQ24_ENTRY_CNT 0x120890 +/* [R 8] Number of entries occupied by vq 25 in pswrq memory */ +#define PXP2_REG_RQ_VQ25_ENTRY_CNT 0x120898 +/* [R 8] Number of entries occupied by vq 26 in pswrq memory */ +#define PXP2_REG_RQ_VQ26_ENTRY_CNT 0x1208a0 +/* [R 8] Number of entries occupied by vq 27 in pswrq memory */ +#define PXP2_REG_RQ_VQ27_ENTRY_CNT 0x1208a8 +/* [R 8] Number of entries occupied by vq 28 in pswrq memory */ +#define PXP2_REG_RQ_VQ28_ENTRY_CNT 0x1208b0 +/* [R 8] Number of entries occupied by vq 29 in pswrq memory */ +#define PXP2_REG_RQ_VQ29_ENTRY_CNT 0x1208b8 +/* [R 8] Number of entries occupied by vq 2 in pswrq memory */ +#define PXP2_REG_RQ_VQ2_ENTRY_CNT 0x1208c0 +/* [R 8] Number of entries occupied by vq 30 in pswrq memory */ +#define PXP2_REG_RQ_VQ30_ENTRY_CNT 0x1208c8 +/* [R 8] Number of entries occupied by vq 31 in pswrq memory */ +#define PXP2_REG_RQ_VQ31_ENTRY_CNT 0x1208d0 +/* [R 8] Number of entries occupied by vq 3 in pswrq memory */ +#define PXP2_REG_RQ_VQ3_ENTRY_CNT 0x1208d8 +/* [R 8] Number of entries occupied by vq 4 in pswrq memory */ +#define PXP2_REG_RQ_VQ4_ENTRY_CNT 0x1208e0 +/* [R 8] Number of entries occupied by vq 5 in pswrq memory */ +#define PXP2_REG_RQ_VQ5_ENTRY_CNT 0x1208e8 +/* [R 8] Number of entries occupied by vq 6 in pswrq memory */ +#define PXP2_REG_RQ_VQ6_ENTRY_CNT 0x1208f0 +/* [R 8] Number of entries occupied by vq 7 in pswrq memory */ +#define PXP2_REG_RQ_VQ7_ENTRY_CNT 0x1208f8 +/* [R 8] Number of entries occupied by vq 8 in pswrq memory */ +#define PXP2_REG_RQ_VQ8_ENTRY_CNT 0x120900 +/* [R 8] Number of entries occupied by vq 9 in pswrq memory */ +#define PXP2_REG_RQ_VQ9_ENTRY_CNT 0x120908 +/* [RW 3] Max burst size filed for write requests port 0; 000 - 128B; + 001:256B; 010: 512B; */ +#define PXP2_REG_RQ_WR_MBS0 0x12015c +/* [RW 10] if Number of entries in dmae fifo will be higer than this + threshold then has_payload indication will be asserted; the default value + should be equal to > write MBS size! */ +#define PXP2_REG_WR_DMAE_TH 0x120368 +/* [R 1] debug only: Indication if PSWHST arbiter is idle */ +#define PXP_REG_HST_ARB_IS_IDLE 0x103004 +/* [R 8] debug only: A bit mask for all PSWHST arbiter clients. '1' means + this client is waiting for the arbiter. */ +#define PXP_REG_HST_CLIENTS_WAITING_TO_ARB 0x103008 +/* [WB 160] Used for initialization of the inbound interrupts memory */ +#define PXP_REG_HST_INBOUND_INT 0x103800 +/* [RW 32] Interrupt mask register #0 read/write */ +#define PXP_REG_PXP_INT_MASK_0 0x103074 +#define PXP_REG_PXP_INT_MASK_1 0x103084 +/* [R 32] Interrupt register #0 read */ +#define PXP_REG_PXP_INT_STS_0 0x103068 +#define PXP_REG_PXP_INT_STS_1 0x103078 +/* [RC 32] Interrupt register #0 read clear */ +#define PXP_REG_PXP_INT_STS_CLR_0 0x10306c +/* [RW 26] Parity mask register #0 read/write */ +#define PXP_REG_PXP_PRTY_MASK 0x103094 +/* [RW 4] The activity counter initial increment value sent in the load + request */ +#define QM_REG_ACTCTRINITVAL_0 0x168040 +#define QM_REG_ACTCTRINITVAL_1 0x168044 +#define QM_REG_ACTCTRINITVAL_2 0x168048 +#define QM_REG_ACTCTRINITVAL_3 0x16804c +/* [RW 32] The base logical address (in bytes) of each physical queue. The + index I represents the physical queue number. The 12 lsbs are ignore and + considered zero so practically there are only 20 bits in this register. */ +#define QM_REG_BASEADDR 0x168900 +/* [RW 16] The byte credit cost for each task. This value is for both ports */ +#define QM_REG_BYTECRDCOST 0x168234 +/* [RW 16] The initial byte credit value for both ports. */ +#define QM_REG_BYTECRDINITVAL 0x168238 +/* [RW 32] A bit per physical queue. If the bit is cleared then the physical + queue uses port 0 else it uses port 1. */ +#define QM_REG_BYTECRDPORT_LSB 0x168228 +/* [RW 32] A bit per physical queue. If the bit is cleared then the physical + queue uses port 0 else it uses port 1. */ +#define QM_REG_BYTECRDPORT_MSB 0x168224 +/* [RW 16] The byte credit value that if above the QM is considered almost + full */ +#define QM_REG_BYTECREDITAFULLTHR 0x168094 +/* [RW 4] The initial credit for interface */ +#define QM_REG_CMINITCRD_0 0x1680cc +#define QM_REG_CMINITCRD_1 0x1680d0 +#define QM_REG_CMINITCRD_2 0x1680d4 +#define QM_REG_CMINITCRD_3 0x1680d8 +#define QM_REG_CMINITCRD_4 0x1680dc +#define QM_REG_CMINITCRD_5 0x1680e0 +#define QM_REG_CMINITCRD_6 0x1680e4 +#define QM_REG_CMINITCRD_7 0x1680e8 +/* [RW 8] A mask bit per CM interface. If this bit is 0 then this interface + is masked */ +#define QM_REG_CMINTEN 0x1680ec +/* [RW 12] A bit vector which indicates which one of the queues are tied to + interface 0 */ +#define QM_REG_CMINTVOQMASK_0 0x1681f4 +#define QM_REG_CMINTVOQMASK_1 0x1681f8 +#define QM_REG_CMINTVOQMASK_2 0x1681fc +#define QM_REG_CMINTVOQMASK_3 0x168200 +#define QM_REG_CMINTVOQMASK_4 0x168204 +#define QM_REG_CMINTVOQMASK_5 0x168208 +#define QM_REG_CMINTVOQMASK_6 0x16820c +#define QM_REG_CMINTVOQMASK_7 0x168210 +/* [RW 20] The number of connections divided by 16 which dictates the size + of each queue per port 0 */ +#define QM_REG_CONNNUM_0 0x168020 +/* [R 6] Keep the fill level of the fifo from write client 4 */ +#define QM_REG_CQM_WRC_FIFOLVL 0x168018 +/* [RW 8] The context regions sent in the CFC load request */ +#define QM_REG_CTXREG_0 0x168030 +#define QM_REG_CTXREG_1 0x168034 +#define QM_REG_CTXREG_2 0x168038 +#define QM_REG_CTXREG_3 0x16803c +/* [RW 12] The VOQ mask used to select the VOQs which needs to be full for + bypass enable */ +#define QM_REG_ENBYPVOQMASK 0x16823c +/* [RW 32] A bit mask per each physical queue. If a bit is set then the + physical queue uses the byte credit */ +#define QM_REG_ENBYTECRD_LSB 0x168220 +/* [RW 32] A bit mask per each physical queue. If a bit is set then the + physical queue uses the byte credit */ +#define QM_REG_ENBYTECRD_MSB 0x16821c +/* [RW 4] If cleared then the secondary interface will not be served by the + RR arbiter */ +#define QM_REG_ENSEC 0x1680f0 +/* [RW 32] A bit vector per each physical queue which selects which function + number to use on PCI access for that queue. */ +#define QM_REG_FUNCNUMSEL_LSB 0x168230 +/* [RW 32] A bit vector per each physical queue which selects which function + number to use on PCI access for that queue. */ +#define QM_REG_FUNCNUMSEL_MSB 0x16822c +/* [RW 32] A mask register to mask the Almost empty signals which will not + be use for the almost empty indication to the HW block */ +#define QM_REG_HWAEMPTYMASK_LSB 0x168218 +/* [RW 32] A mask register to mask the Almost empty signals which will not + be use for the almost empty indication to the HW block */ +#define QM_REG_HWAEMPTYMASK_MSB 0x168214 +/* [RW 4] The number of outstanding request to CFC */ +#define QM_REG_OUTLDREQ 0x168804 +/* [RC 1] A flag to indicate that overflow error occurred in one of the + queues. */ +#define QM_REG_OVFERROR 0x16805c +/* [RC 6] the Q were the qverflow occurs */ +#define QM_REG_OVFQNUM 0x168058 +/* [R 32] Pause state for physical queues 31-0 */ +#define QM_REG_PAUSESTATE0 0x168410 +/* [R 32] Pause state for physical queues 64-32 */ +#define QM_REG_PAUSESTATE1 0x168414 +/* [RW 2] The PCI attributes field used in the PCI request. */ +#define QM_REG_PCIREQAT 0x168054 +/* [R 16] The byte credit of port 0 */ +#define QM_REG_PORT0BYTECRD 0x168300 +/* [R 16] The byte credit of port 1 */ +#define QM_REG_PORT1BYTECRD 0x168304 +/* [WB 54] Pointer Table Memory; The mapping is as follow: ptrtbl[53:30] + read pointer; ptrtbl[29:6] write pointer; ptrtbl[5:4] read bank0; + ptrtbl[3:2] read bank 1; ptrtbl[1:0] write bank; */ +#define QM_REG_PTRTBL 0x168a00 +/* [RW 2] Interrupt mask register #0 read/write */ +#define QM_REG_QM_INT_MASK 0x168444 +/* [R 2] Interrupt register #0 read */ +#define QM_REG_QM_INT_STS 0x168438 +/* [RW 9] Parity mask register #0 read/write */ +#define QM_REG_QM_PRTY_MASK 0x168454 +/* [R 32] Current queues in pipeline: Queues from 32 to 63 */ +#define QM_REG_QSTATUS_HIGH 0x16802c +/* [R 32] Current queues in pipeline: Queues from 0 to 31 */ +#define QM_REG_QSTATUS_LOW 0x168028 +/* [R 24] The number of tasks queued for each queue */ +#define QM_REG_QTASKCTR_0 0x168308 +/* [RW 4] Queue tied to VOQ */ +#define QM_REG_QVOQIDX_0 0x1680f4 +#define QM_REG_QVOQIDX_10 0x16811c +#define QM_REG_QVOQIDX_11 0x168120 +#define QM_REG_QVOQIDX_12 0x168124 +#define QM_REG_QVOQIDX_13 0x168128 +#define QM_REG_QVOQIDX_14 0x16812c +#define QM_REG_QVOQIDX_15 0x168130 +#define QM_REG_QVOQIDX_16 0x168134 +#define QM_REG_QVOQIDX_17 0x168138 +#define QM_REG_QVOQIDX_21 0x168148 +#define QM_REG_QVOQIDX_25 0x168158 +#define QM_REG_QVOQIDX_29 0x168168 +#define QM_REG_QVOQIDX_32 0x168174 +#define QM_REG_QVOQIDX_33 0x168178 +#define QM_REG_QVOQIDX_34 0x16817c +#define QM_REG_QVOQIDX_35 0x168180 +#define QM_REG_QVOQIDX_36 0x168184 +#define QM_REG_QVOQIDX_37 0x168188 +#define QM_REG_QVOQIDX_38 0x16818c +#define QM_REG_QVOQIDX_39 0x168190 +#define QM_REG_QVOQIDX_40 0x168194 +#define QM_REG_QVOQIDX_41 0x168198 +#define QM_REG_QVOQIDX_42 0x16819c +#define QM_REG_QVOQIDX_43 0x1681a0 +#define QM_REG_QVOQIDX_44 0x1681a4 +#define QM_REG_QVOQIDX_45 0x1681a8 +#define QM_REG_QVOQIDX_46 0x1681ac +#define QM_REG_QVOQIDX_47 0x1681b0 +#define QM_REG_QVOQIDX_48 0x1681b4 +#define QM_REG_QVOQIDX_49 0x1681b8 +#define QM_REG_QVOQIDX_5 0x168108 +#define QM_REG_QVOQIDX_50 0x1681bc +#define QM_REG_QVOQIDX_51 0x1681c0 +#define QM_REG_QVOQIDX_52 0x1681c4 +#define QM_REG_QVOQIDX_53 0x1681c8 +#define QM_REG_QVOQIDX_54 0x1681cc +#define QM_REG_QVOQIDX_55 0x1681d0 +#define QM_REG_QVOQIDX_56 0x1681d4 +#define QM_REG_QVOQIDX_57 0x1681d8 +#define QM_REG_QVOQIDX_58 0x1681dc +#define QM_REG_QVOQIDX_59 0x1681e0 +#define QM_REG_QVOQIDX_50 0x1681bc +#define QM_REG_QVOQIDX_51 0x1681c0 +#define QM_REG_QVOQIDX_52 0x1681c4 +#define QM_REG_QVOQIDX_53 0x1681c8 +#define QM_REG_QVOQIDX_54 0x1681cc +#define QM_REG_QVOQIDX_55 0x1681d0 +#define QM_REG_QVOQIDX_56 0x1681d4 +#define QM_REG_QVOQIDX_57 0x1681d8 +#define QM_REG_QVOQIDX_58 0x1681dc +#define QM_REG_QVOQIDX_59 0x1681e0 +#define QM_REG_QVOQIDX_6 0x16810c +#define QM_REG_QVOQIDX_60 0x1681e4 +#define QM_REG_QVOQIDX_61 0x1681e8 +#define QM_REG_QVOQIDX_62 0x1681ec +#define QM_REG_QVOQIDX_63 0x1681f0 +#define QM_REG_QVOQIDX_60 0x1681e4 +#define QM_REG_QVOQIDX_61 0x1681e8 +#define QM_REG_QVOQIDX_62 0x1681ec +#define QM_REG_QVOQIDX_63 0x1681f0 +#define QM_REG_QVOQIDX_7 0x168110 +#define QM_REG_QVOQIDX_8 0x168114 +#define QM_REG_QVOQIDX_9 0x168118 +/* [R 24] Remaining pause timeout for port 0 */ +#define QM_REG_REMAINPAUSETM0 0x168418 +/* [R 24] Remaining pause timeout for port 1 */ +#define QM_REG_REMAINPAUSETM1 0x16841c +/* [RW 1] Initialization bit command */ +#define QM_REG_SOFT_RESET 0x168428 +/* [RW 8] The credit cost per every task in the QM. A value per each VOQ */ +#define QM_REG_TASKCRDCOST_0 0x16809c +#define QM_REG_TASKCRDCOST_1 0x1680a0 +#define QM_REG_TASKCRDCOST_10 0x1680c4 +#define QM_REG_TASKCRDCOST_11 0x1680c8 +#define QM_REG_TASKCRDCOST_2 0x1680a4 +#define QM_REG_TASKCRDCOST_4 0x1680ac +#define QM_REG_TASKCRDCOST_5 0x1680b0 +/* [R 6] Keep the fill level of the fifo from write client 3 */ +#define QM_REG_TQM_WRC_FIFOLVL 0x168010 +/* [R 6] Keep the fill level of the fifo from write client 2 */ +#define QM_REG_UQM_WRC_FIFOLVL 0x168008 +/* [RC 32] Credit update error register */ +#define QM_REG_VOQCRDERRREG 0x168408 +/* [R 16] The credit value for each VOQ */ +#define QM_REG_VOQCREDIT_0 0x1682d0 +#define QM_REG_VOQCREDIT_1 0x1682d4 +#define QM_REG_VOQCREDIT_10 0x1682f8 +#define QM_REG_VOQCREDIT_11 0x1682fc +#define QM_REG_VOQCREDIT_4 0x1682e0 +/* [RW 16] The credit value that if above the QM is considered almost full */ +#define QM_REG_VOQCREDITAFULLTHR 0x168090 +/* [RW 16] The init and maximum credit for each VoQ */ +#define QM_REG_VOQINITCREDIT_0 0x168060 +#define QM_REG_VOQINITCREDIT_1 0x168064 +#define QM_REG_VOQINITCREDIT_10 0x168088 +#define QM_REG_VOQINITCREDIT_11 0x16808c +#define QM_REG_VOQINITCREDIT_2 0x168068 +#define QM_REG_VOQINITCREDIT_4 0x168070 +#define QM_REG_VOQINITCREDIT_5 0x168074 +/* [RW 1] The port of which VOQ belongs */ +#define QM_REG_VOQPORT_1 0x1682a4 +#define QM_REG_VOQPORT_10 0x1682c8 +#define QM_REG_VOQPORT_11 0x1682cc +#define QM_REG_VOQPORT_2 0x1682a8 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_0_LSB 0x168240 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_0_MSB 0x168244 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_1_MSB 0x16824c +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_2_LSB 0x168250 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_2_MSB 0x168254 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_3_LSB 0x168258 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_4_LSB 0x168260 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_4_MSB 0x168264 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_5_LSB 0x168268 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_5_MSB 0x16826c +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_6_LSB 0x168270 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_6_MSB 0x168274 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_7_LSB 0x168278 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_7_MSB 0x16827c +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_8_LSB 0x168280 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_8_MSB 0x168284 +/* [RW 32] The physical queue number associated with each VOQ */ +#define QM_REG_VOQQMASK_9_LSB 0x168288 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_0 0x16880c +#define QM_REG_WRRWEIGHTS_1 0x168810 +#define QM_REG_WRRWEIGHTS_10 0x168814 +#define QM_REG_WRRWEIGHTS_10_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_11 0x168818 +#define QM_REG_WRRWEIGHTS_11_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_12 0x16881c +#define QM_REG_WRRWEIGHTS_12_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_13 0x168820 +#define QM_REG_WRRWEIGHTS_13_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_14 0x168824 +#define QM_REG_WRRWEIGHTS_14_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_15 0x168828 +#define QM_REG_WRRWEIGHTS_15_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_10 0x168814 +#define QM_REG_WRRWEIGHTS_11 0x168818 +#define QM_REG_WRRWEIGHTS_12 0x16881c +#define QM_REG_WRRWEIGHTS_13 0x168820 +#define QM_REG_WRRWEIGHTS_14 0x168824 +#define QM_REG_WRRWEIGHTS_15 0x168828 +#define QM_REG_WRRWEIGHTS_2 0x16882c +#define QM_REG_WRRWEIGHTS_3 0x168830 +#define QM_REG_WRRWEIGHTS_4 0x168834 +#define QM_REG_WRRWEIGHTS_5 0x168838 +#define QM_REG_WRRWEIGHTS_6 0x16883c +#define QM_REG_WRRWEIGHTS_7 0x168840 +#define QM_REG_WRRWEIGHTS_8 0x168844 +#define QM_REG_WRRWEIGHTS_9 0x168848 +/* [R 6] Keep the fill level of the fifo from write client 1 */ +#define QM_REG_XQM_WRC_FIFOLVL 0x168000 +#define DORQ_DORQ_INT_STS_REG_ADDRESS_ERROR (0x1<<0) +#define DORQ_DORQ_INT_STS_REG_ADDRESS_ERROR_SIZE 0 +#define DORQ_DORQ_INT_STS_CLR_REG_ADDRESS_ERROR (0x1<<0) +#define DORQ_DORQ_INT_STS_CLR_REG_ADDRESS_ERROR_SIZE 0 +#define DORQ_DORQ_INT_STS_WR_REG_ADDRESS_ERROR (0x1<<0) +#define DORQ_DORQ_INT_STS_WR_REG_ADDRESS_ERROR_SIZE 0 +#define DORQ_DORQ_INT_MASK_REG_ADDRESS_ERROR (0x1<<0) +#define DORQ_DORQ_INT_MASK_REG_ADDRESS_ERROR_SIZE 0 +#define NIG_NIG_INT_STS_0_REG_ADDRESS_ERROR (0x1<<0) +#define NIG_NIG_INT_STS_0_REG_ADDRESS_ERROR_SIZE 0 +#define NIG_NIG_INT_STS_CLR_0_REG_ADDRESS_ERROR (0x1<<0) +#define NIG_NIG_INT_STS_CLR_0_REG_ADDRESS_ERROR_SIZE 0 +#define NIG_NIG_INT_STS_WR_0_REG_ADDRESS_ERROR (0x1<<0) +#define NIG_NIG_INT_STS_WR_0_REG_ADDRESS_ERROR_SIZE 0 +#define NIG_NIG_INT_MASK_0_REG_ADDRESS_ERROR (0x1<<0) +#define NIG_NIG_INT_MASK_0_REG_ADDRESS_ERROR_SIZE 0 +#define TCM_TCM_INT_STS_REG_ADDRESS_ERROR (0x1<<0) +#define TCM_TCM_INT_STS_REG_ADDRESS_ERROR_SIZE 0 +#define TCM_TCM_INT_STS_CLR_REG_ADDRESS_ERROR (0x1<<0) +#define TCM_TCM_INT_STS_CLR_REG_ADDRESS_ERROR_SIZE 0 +#define TCM_TCM_INT_STS_WR_REG_ADDRESS_ERROR (0x1<<0) +#define TCM_TCM_INT_STS_WR_REG_ADDRESS_ERROR_SIZE 0 +#define TCM_TCM_INT_MASK_REG_ADDRESS_ERROR (0x1<<0) +#define TCM_TCM_INT_MASK_REG_ADDRESS_ERROR_SIZE 0 +#define CFC_DEBUG1_REG_WRITE_AC (0x1<<4) +#define CFC_DEBUG1_REG_WRITE_AC_SIZE 4 +/* [R 1] debug only: This bit indicates wheter indicates that external + buffer was wrapped (oldest data was thrown); Relevant only when + ~dbg_registers_debug_target=2 (PCI) & ~dbg_registers_full_mode=1 (wrap); */ +#define DBG_REG_WRAP_ON_EXT_BUFFER 0xc124 +#define DBG_REG_WRAP_ON_EXT_BUFFER_SIZE 1 +/* [R 1] debug only: This bit indicates wheter the internal buffer was + wrapped (oldest data was thrown) Relevant only when + ~dbg_registers_debug_target=0 (internal buffer) */ +#define DBG_REG_WRAP_ON_INT_BUFFER 0xc128 +#define DBG_REG_WRAP_ON_INT_BUFFER_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_0 0x16880c +#define QM_REG_WRRWEIGHTS_0_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_1 0x168810 +#define QM_REG_WRRWEIGHTS_1_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_10 0x168814 +#define QM_REG_WRRWEIGHTS_10_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_11 0x168818 +#define QM_REG_WRRWEIGHTS_11_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_12 0x16881c +#define QM_REG_WRRWEIGHTS_12_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_13 0x168820 +#define QM_REG_WRRWEIGHTS_13_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_14 0x168824 +#define QM_REG_WRRWEIGHTS_14_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_15 0x168828 +#define QM_REG_WRRWEIGHTS_15_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_2 0x16882c +#define QM_REG_WRRWEIGHTS_2_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_3 0x168830 +#define QM_REG_WRRWEIGHTS_3_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_4 0x168834 +#define QM_REG_WRRWEIGHTS_4_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_5 0x168838 +#define QM_REG_WRRWEIGHTS_5_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_6 0x16883c +#define QM_REG_WRRWEIGHTS_6_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_7 0x168840 +#define QM_REG_WRRWEIGHTS_7_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_8 0x168844 +#define QM_REG_WRRWEIGHTS_8_SIZE 1 +/* [RW 32] Wrr weights */ +#define QM_REG_WRRWEIGHTS_9 0x168848 +#define QM_REG_WRRWEIGHTS_9_SIZE 1 +/* [RW 22] Number of free element in the free list of T2 entries - port 0. */ +#define SRC_REG_COUNTFREE0 0x40500 +/* [WB 64] First free element in the free list of T2 entries - port 0. */ +#define SRC_REG_FIRSTFREE0 0x40510 +#define SRC_REG_KEYRSS0_0 0x40408 +#define SRC_REG_KEYRSS1_9 0x40454 +/* [WB 64] Last free element in the free list of T2 entries - port 0. */ +#define SRC_REG_LASTFREE0 0x40530 +/* [RW 5] The number of hash bits used for the search (h); Values can be 8 + to 24. */ +#define SRC_REG_NUMBER_HASH_BITS0 0x40400 +/* [RW 1] Reset internal state machines. */ +#define SRC_REG_SOFT_RST 0x4049c +/* [R 1] Interrupt register #0 read */ +#define SRC_REG_SRC_INT_STS 0x404ac +/* [RW 3] Parity mask register #0 read/write */ +#define SRC_REG_SRC_PRTY_MASK 0x404c8 +/* [R 4] Used to read the value of the XX protection CAM occupancy counter. */ +#define TCM_REG_CAM_OCCUP 0x5017c +/* [RW 1] CDU AG read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define TCM_REG_CDU_AG_RD_IFEN 0x50034 +/* [RW 1] CDU AG write Interface enable. If 0 - the request and valid input + are disregarded; all other signals are treated as usual; if 1 - normal + activity. */ +#define TCM_REG_CDU_AG_WR_IFEN 0x50030 +/* [RW 1] CDU STORM read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define TCM_REG_CDU_SM_RD_IFEN 0x5003c +/* [RW 1] CDU STORM write Interface enable. If 0 - the request and valid + input is disregarded; all other signals are treated as usual; if 1 - + normal activity. */ +#define TCM_REG_CDU_SM_WR_IFEN 0x50038 +/* [RW 4] CFC output initial credit. Max credit available - 15.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 1 at start-up. */ +#define TCM_REG_CFC_INIT_CRD 0x50204 +/* [RW 3] The weight of the CP input in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define TCM_REG_CP_WEIGHT 0x500c0 +/* [RW 1] Input csem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define TCM_REG_CSEM_IFEN 0x5002c +/* [RC 1] Message length mismatch (relative to last indication) at the In#9 + interface. */ +#define TCM_REG_CSEM_LENGTH_MIS 0x50174 +/* [RW 8] The Event ID in case of ErrorFlg is set in the input message. */ +#define TCM_REG_ERR_EVNT_ID 0x500a0 +/* [RW 28] The CM erroneous header for QM and Timers formatting. */ +#define TCM_REG_ERR_TCM_HDR 0x5009c +/* [RW 8] The Event ID for Timers expiration. */ +#define TCM_REG_EXPR_EVNT_ID 0x500a4 +/* [RW 8] FIC0 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define TCM_REG_FIC0_INIT_CRD 0x5020c +/* [RW 8] FIC1 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define TCM_REG_FIC1_INIT_CRD 0x50210 +/* [RW 1] Arbitration between Input Arbiter groups: 0 - fair Round-Robin; 1 + - strict priority defined by ~tcm_registers_gr_ag_pr.gr_ag_pr; + ~tcm_registers_gr_ld0_pr.gr_ld0_pr and + ~tcm_registers_gr_ld1_pr.gr_ld1_pr. */ +#define TCM_REG_GR_ARB_TYPE 0x50114 +/* [RW 2] Load (FIC0) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed that the Store channel is the + compliment of the other 3 groups. */ +#define TCM_REG_GR_LD0_PR 0x5011c +/* [RW 2] Load (FIC1) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed that the Store channel is the + compliment of the other 3 groups. */ +#define TCM_REG_GR_LD1_PR 0x50120 +/* [RW 4] The number of double REG-pairs; loaded from the STORM context and + sent to STORM; for a specific connection type. The double REG-pairs are + used to align to STORM context row size of 128 bits. The offset of these + data in the STORM context is always 0. Index _i stands for the connection + type (one of 16). */ +#define TCM_REG_N_SM_CTX_LD_0 0x50050 +#define TCM_REG_N_SM_CTX_LD_1 0x50054 +#define TCM_REG_N_SM_CTX_LD_10 0x50078 +#define TCM_REG_N_SM_CTX_LD_11 0x5007c +#define TCM_REG_N_SM_CTX_LD_12 0x50080 +#define TCM_REG_N_SM_CTX_LD_13 0x50084 +#define TCM_REG_N_SM_CTX_LD_14 0x50088 +#define TCM_REG_N_SM_CTX_LD_15 0x5008c +#define TCM_REG_N_SM_CTX_LD_2 0x50058 +#define TCM_REG_N_SM_CTX_LD_3 0x5005c +#define TCM_REG_N_SM_CTX_LD_4 0x50060 +/* [RW 1] Input pbf Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_PBF_IFEN 0x50024 +/* [RC 1] Message length mismatch (relative to last indication) at the In#7 + interface. */ +#define TCM_REG_PBF_LENGTH_MIS 0x5016c +/* [RW 3] The weight of the input pbf in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define TCM_REG_PBF_WEIGHT 0x500b4 +/* [RW 6] The physical queue number 0 per port index. */ +#define TCM_REG_PHYS_QNUM0_0 0x500e0 +#define TCM_REG_PHYS_QNUM0_1 0x500e4 +/* [RW 6] The physical queue number 1 per port index. */ +#define TCM_REG_PHYS_QNUM1_0 0x500e8 +/* [RW 1] Input prs Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_PRS_IFEN 0x50020 +/* [RC 1] Message length mismatch (relative to last indication) at the In#6 + interface. */ +#define TCM_REG_PRS_LENGTH_MIS 0x50168 +/* [RW 3] The weight of the input prs in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define TCM_REG_PRS_WEIGHT 0x500b0 +/* [RW 8] The Event ID for Timers formatting in case of stop done. */ +#define TCM_REG_STOP_EVNT_ID 0x500a8 +/* [RC 1] Message length mismatch (relative to last indication) at the STORM + interface. */ +#define TCM_REG_STORM_LENGTH_MIS 0x50160 +/* [RW 1] STORM - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define TCM_REG_STORM_TCM_IFEN 0x50010 +/* [RW 1] CM - CFC Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_TCM_CFC_IFEN 0x50040 +/* [RW 11] Interrupt mask register #0 read/write */ +#define TCM_REG_TCM_INT_MASK 0x501dc +/* [R 11] Interrupt register #0 read */ +#define TCM_REG_TCM_INT_STS 0x501d0 +/* [RW 3] The size of AG context region 0 in REG-pairs. Designates the MS + REG-pair number (e.g. if region 0 is 6 REG-pairs; the value should be 5). + Is used to determine the number of the AG context REG-pairs written back; + when the input message Reg1WbFlg isn't set. */ +#define TCM_REG_TCM_REG0_SZ 0x500d8 +/* [RW 1] CM - STORM 0 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_TCM_STORM0_IFEN 0x50004 +/* [RW 1] CM - STORM 1 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_TCM_STORM1_IFEN 0x50008 +/* [RW 1] CM - QM Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_TCM_TQM_IFEN 0x5000c +/* [RW 1] If set the Q index; received from the QM is inserted to event ID. */ +#define TCM_REG_TCM_TQM_USE_Q 0x500d4 +/* [RW 28] The CM header for Timers expiration command. */ +#define TCM_REG_TM_TCM_HDR 0x50098 +/* [RW 1] Timers - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define TCM_REG_TM_TCM_IFEN 0x5001c +/* [RW 6] QM output initial credit. Max credit available - 32.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 32 at start-up. */ +#define TCM_REG_TQM_INIT_CRD 0x5021c +/* [RW 28] The CM header value for QM request (primary). */ +#define TCM_REG_TQM_TCM_HDR_P 0x50090 +/* [RW 28] The CM header value for QM request (secondary). */ +#define TCM_REG_TQM_TCM_HDR_S 0x50094 +/* [RW 1] QM - CM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_TQM_TCM_IFEN 0x50014 +/* [RW 1] Input SDM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define TCM_REG_TSDM_IFEN 0x50018 +/* [RC 1] Message length mismatch (relative to last indication) at the SDM + interface. */ +#define TCM_REG_TSDM_LENGTH_MIS 0x50164 +/* [RW 3] The weight of the SDM input in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define TCM_REG_TSDM_WEIGHT 0x500c4 +/* [RW 1] Input usem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define TCM_REG_USEM_IFEN 0x50028 +/* [RC 1] Message length mismatch (relative to last indication) at the In#8 + interface. */ +#define TCM_REG_USEM_LENGTH_MIS 0x50170 +/* [RW 21] Indirect access to the descriptor table of the XX protection + mechanism. The fields are: [5:0] - length of the message; 15:6] - message + pointer; 20:16] - next pointer. */ +#define TCM_REG_XX_DESCR_TABLE 0x50280 +/* [R 6] Use to read the value of XX protection Free counter. */ +#define TCM_REG_XX_FREE 0x50178 +/* [RW 6] Initial value for the credit counter; responsible for fulfilling + of the Input Stage XX protection buffer by the XX protection pending + messages. Max credit available - 127.Write writes the initial credit + value; read returns the current value of the credit counter. Must be + initialized to 19 at start-up. */ +#define TCM_REG_XX_INIT_CRD 0x50220 +/* [RW 6] Maximum link list size (messages locked) per connection in the XX + protection. */ +#define TCM_REG_XX_MAX_LL_SZ 0x50044 +/* [RW 6] The maximum number of pending messages; which may be stored in XX + protection. ~tcm_registers_xx_free.xx_free is read on read. */ +#define TCM_REG_XX_MSG_NUM 0x50224 +/* [RW 8] The Event ID; sent to the STORM in case of XX overflow. */ +#define TCM_REG_XX_OVFL_EVNT_ID 0x50048 +/* [RW 16] Indirect access to the XX table of the XX protection mechanism. + The fields are:[4:0] - tail pointer; [10:5] - Link List size; 15:11] - + header pointer. */ +#define TCM_REG_XX_TABLE 0x50240 +/* [RW 4] Load value for for cfc ac credit cnt. */ +#define TM_REG_CFC_AC_CRDCNT_VAL 0x164208 +/* [RW 4] Load value for cfc cld credit cnt. */ +#define TM_REG_CFC_CLD_CRDCNT_VAL 0x164210 +/* [RW 8] Client0 context region. */ +#define TM_REG_CL0_CONT_REGION 0x164030 +/* [RW 8] Client1 context region. */ +#define TM_REG_CL1_CONT_REGION 0x164034 +/* [RW 8] Client2 context region. */ +#define TM_REG_CL2_CONT_REGION 0x164038 +/* [RW 2] Client in High priority client number. */ +#define TM_REG_CLIN_PRIOR0_CLIENT 0x164024 +/* [RW 4] Load value for clout0 cred cnt. */ +#define TM_REG_CLOUT_CRDCNT0_VAL 0x164220 +/* [RW 4] Load value for clout1 cred cnt. */ +#define TM_REG_CLOUT_CRDCNT1_VAL 0x164228 +/* [RW 4] Load value for clout2 cred cnt. */ +#define TM_REG_CLOUT_CRDCNT2_VAL 0x164230 +/* [RW 1] Enable client0 input. */ +#define TM_REG_EN_CL0_INPUT 0x164008 +/* [RW 1] Enable client1 input. */ +#define TM_REG_EN_CL1_INPUT 0x16400c +/* [RW 1] Enable client2 input. */ +#define TM_REG_EN_CL2_INPUT 0x164010 +/* [RW 1] Enable real time counter. */ +#define TM_REG_EN_REAL_TIME_CNT 0x1640d8 +/* [RW 1] Enable for Timers state machines. */ +#define TM_REG_EN_TIMERS 0x164000 +/* [RW 4] Load value for expiration credit cnt. CFC max number of + outstanding load requests for timers (expiration) context loading. */ +#define TM_REG_EXP_CRDCNT_VAL 0x164238 +/* [RW 18] Linear0 Max active cid. */ +#define TM_REG_LIN0_MAX_ACTIVE_CID 0x164048 +/* [WB 64] Linear0 phy address. */ +#define TM_REG_LIN0_PHY_ADDR 0x164270 +/* [RW 24] Linear0 array scan timeout. */ +#define TM_REG_LIN0_SCAN_TIME 0x16403c +/* [WB 64] Linear1 phy address. */ +#define TM_REG_LIN1_PHY_ADDR 0x164280 +/* [RW 6] Linear timer set_clear fifo threshold. */ +#define TM_REG_LIN_SETCLR_FIFO_ALFULL_THR 0x164070 +/* [RW 2] Load value for pci arbiter credit cnt. */ +#define TM_REG_PCIARB_CRDCNT_VAL 0x164260 +/* [RW 1] Timer software reset - active high. */ +#define TM_REG_TIMER_SOFT_RST 0x164004 +/* [RW 20] The amount of hardware cycles for each timer tick. */ +#define TM_REG_TIMER_TICK_SIZE 0x16401c +/* [RW 8] Timers Context region. */ +#define TM_REG_TM_CONTEXT_REGION 0x164044 +/* [RW 1] Interrupt mask register #0 read/write */ +#define TM_REG_TM_INT_MASK 0x1640fc +/* [R 1] Interrupt register #0 read */ +#define TM_REG_TM_INT_STS 0x1640f0 +/* [RW 8] The event id for aggregated interrupt 0 */ +#define TSDM_REG_AGG_INT_EVENT_0 0x42038 +/* [RW 13] The start address in the internal RAM for the cfc_rsp lcid */ +#define TSDM_REG_CFC_RSP_START_ADDR 0x42008 +/* [RW 16] The maximum value of the competion counter #0 */ +#define TSDM_REG_CMP_COUNTER_MAX0 0x4201c +/* [RW 16] The maximum value of the competion counter #1 */ +#define TSDM_REG_CMP_COUNTER_MAX1 0x42020 +/* [RW 16] The maximum value of the competion counter #2 */ +#define TSDM_REG_CMP_COUNTER_MAX2 0x42024 +/* [RW 16] The maximum value of the competion counter #3 */ +#define TSDM_REG_CMP_COUNTER_MAX3 0x42028 +/* [RW 13] The start address in the internal RAM for the completion + counters. */ +#define TSDM_REG_CMP_COUNTER_START_ADDR 0x4200c +#define TSDM_REG_ENABLE_IN1 0x42238 +#define TSDM_REG_ENABLE_IN2 0x4223c +#define TSDM_REG_ENABLE_OUT1 0x42240 +#define TSDM_REG_ENABLE_OUT2 0x42244 +/* [RW 4] The initial number of messages that can be sent to the pxp control + interface without receiving any ACK. */ +#define TSDM_REG_INIT_CREDIT_PXP_CTRL 0x424bc +/* [ST 32] The number of ACK after placement messages received */ +#define TSDM_REG_NUM_OF_ACK_AFTER_PLACE 0x4227c +/* [ST 32] The number of packet end messages received from the parser */ +#define TSDM_REG_NUM_OF_PKT_END_MSG 0x42274 +/* [ST 32] The number of requests received from the pxp async if */ +#define TSDM_REG_NUM_OF_PXP_ASYNC_REQ 0x42278 +/* [ST 32] The number of commands received in queue 0 */ +#define TSDM_REG_NUM_OF_Q0_CMD 0x42248 +/* [ST 32] The number of commands received in queue 10 */ +#define TSDM_REG_NUM_OF_Q10_CMD 0x4226c +/* [ST 32] The number of commands received in queue 11 */ +#define TSDM_REG_NUM_OF_Q11_CMD 0x42270 +/* [ST 32] The number of commands received in queue 1 */ +#define TSDM_REG_NUM_OF_Q1_CMD 0x4224c +/* [ST 32] The number of commands received in queue 3 */ +#define TSDM_REG_NUM_OF_Q3_CMD 0x42250 +/* [ST 32] The number of commands received in queue 4 */ +#define TSDM_REG_NUM_OF_Q4_CMD 0x42254 +/* [ST 32] The number of commands received in queue 5 */ +#define TSDM_REG_NUM_OF_Q5_CMD 0x42258 +/* [ST 32] The number of commands received in queue 6 */ +#define TSDM_REG_NUM_OF_Q6_CMD 0x4225c +/* [ST 32] The number of commands received in queue 7 */ +#define TSDM_REG_NUM_OF_Q7_CMD 0x42260 +/* [ST 32] The number of commands received in queue 8 */ +#define TSDM_REG_NUM_OF_Q8_CMD 0x42264 +/* [ST 32] The number of commands received in queue 9 */ +#define TSDM_REG_NUM_OF_Q9_CMD 0x42268 +/* [RW 13] The start address in the internal RAM for the packet end message */ +#define TSDM_REG_PCK_END_MSG_START_ADDR 0x42014 +/* [RW 13] The start address in the internal RAM for queue counters */ +#define TSDM_REG_Q_COUNTER_START_ADDR 0x42010 +/* [R 1] pxp_ctrl rd_data fifo empty in sdm_dma_rsp block */ +#define TSDM_REG_RSP_PXP_CTRL_RDATA_EMPTY 0x42548 +/* [R 1] parser fifo empty in sdm_sync block */ +#define TSDM_REG_SYNC_PARSER_EMPTY 0x42550 +/* [R 1] parser serial fifo empty in sdm_sync block */ +#define TSDM_REG_SYNC_SYNC_EMPTY 0x42558 +/* [RW 32] Tick for timer counter. Applicable only when + ~tsdm_registers_timer_tick_enable.timer_tick_enable =1 */ +#define TSDM_REG_TIMER_TICK 0x42000 +/* [RW 32] Interrupt mask register #0 read/write */ +#define TSDM_REG_TSDM_INT_MASK_0 0x4229c +#define TSDM_REG_TSDM_INT_MASK_1 0x422ac +/* [RW 11] Parity mask register #0 read/write */ +#define TSDM_REG_TSDM_PRTY_MASK 0x422bc +/* [RW 5] The number of time_slots in the arbitration cycle */ +#define TSEM_REG_ARB_CYCLE_SIZE 0x180034 +/* [RW 3] The source that is associated with arbitration element 0. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2 */ +#define TSEM_REG_ARB_ELEMENT0 0x180020 +/* [RW 3] The source that is associated with arbitration element 1. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~tsem_registers_arb_element0.arb_element0 */ +#define TSEM_REG_ARB_ELEMENT1 0x180024 +/* [RW 3] The source that is associated with arbitration element 2. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~tsem_registers_arb_element0.arb_element0 + and ~tsem_registers_arb_element1.arb_element1 */ +#define TSEM_REG_ARB_ELEMENT2 0x180028 +/* [RW 3] The source that is associated with arbitration element 3. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2.Could + not be equal to register ~tsem_registers_arb_element0.arb_element0 and + ~tsem_registers_arb_element1.arb_element1 and + ~tsem_registers_arb_element2.arb_element2 */ +#define TSEM_REG_ARB_ELEMENT3 0x18002c +/* [RW 3] The source that is associated with arbitration element 4. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~tsem_registers_arb_element0.arb_element0 + and ~tsem_registers_arb_element1.arb_element1 and + ~tsem_registers_arb_element2.arb_element2 and + ~tsem_registers_arb_element3.arb_element3 */ +#define TSEM_REG_ARB_ELEMENT4 0x180030 +#define TSEM_REG_ENABLE_IN 0x1800a4 +#define TSEM_REG_ENABLE_OUT 0x1800a8 +/* [RW 32] This address space contains all registers and memories that are + placed in SEM_FAST block. The SEM_FAST registers are described in + appendix B. In order to access the SEM_FAST registers the base address + TSEM_REGISTERS_FAST_MEMORY (Offset: 0x1a0000) should be added to each + SEM_FAST register offset. */ +#define TSEM_REG_FAST_MEMORY 0x1a0000 +/* [RW 1] Disables input messages from FIC0 May be updated during run_time + by the microcode */ +#define TSEM_REG_FIC0_DISABLE 0x180224 +/* [RW 1] Disables input messages from FIC1 May be updated during run_time + by the microcode */ +#define TSEM_REG_FIC1_DISABLE 0x180234 +/* [RW 15] Interrupt table Read and write access to it is not possible in + the middle of the work */ +#define TSEM_REG_INT_TABLE 0x180400 +/* [ST 24] Statistics register. The number of messages that entered through + FIC0 */ +#define TSEM_REG_MSG_NUM_FIC0 0x180000 +/* [ST 24] Statistics register. The number of messages that entered through + FIC1 */ +#define TSEM_REG_MSG_NUM_FIC1 0x180004 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC0 */ +#define TSEM_REG_MSG_NUM_FOC0 0x180008 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC1 */ +#define TSEM_REG_MSG_NUM_FOC1 0x18000c +/* [ST 24] Statistics register. The number of messages that were sent to + FOC2 */ +#define TSEM_REG_MSG_NUM_FOC2 0x180010 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC3 */ +#define TSEM_REG_MSG_NUM_FOC3 0x180014 +/* [RW 1] Disables input messages from the passive buffer May be updated + during run_time by the microcode */ +#define TSEM_REG_PAS_DISABLE 0x18024c +/* [WB 128] Debug only. Passive buffer memory */ +#define TSEM_REG_PASSIVE_BUFFER 0x181000 +/* [WB 46] pram memory. B45 is parity; b[44:0] - data. */ +#define TSEM_REG_PRAM 0x1c0000 +/* [R 8] Valid sleeping threads indication have bit per thread */ +#define TSEM_REG_SLEEP_THREADS_VALID 0x18026c +/* [R 1] EXT_STORE FIFO is empty in sem_slow_ls_ext */ +#define TSEM_REG_SLOW_EXT_STORE_EMPTY 0x1802a0 +/* [RW 8] List of free threads . There is a bit per thread. */ +#define TSEM_REG_THREADS_LIST 0x1802e4 +/* [RW 3] The arbitration scheme of time_slot 0 */ +#define TSEM_REG_TS_0_AS 0x180038 +/* [RW 3] The arbitration scheme of time_slot 10 */ +#define TSEM_REG_TS_10_AS 0x180060 +/* [RW 3] The arbitration scheme of time_slot 11 */ +#define TSEM_REG_TS_11_AS 0x180064 +/* [RW 3] The arbitration scheme of time_slot 12 */ +#define TSEM_REG_TS_12_AS 0x180068 +/* [RW 3] The arbitration scheme of time_slot 13 */ +#define TSEM_REG_TS_13_AS 0x18006c +/* [RW 3] The arbitration scheme of time_slot 14 */ +#define TSEM_REG_TS_14_AS 0x180070 +/* [RW 3] The arbitration scheme of time_slot 15 */ +#define TSEM_REG_TS_15_AS 0x180074 +/* [RW 3] The arbitration scheme of time_slot 16 */ +#define TSEM_REG_TS_16_AS 0x180078 +/* [RW 3] The arbitration scheme of time_slot 17 */ +#define TSEM_REG_TS_17_AS 0x18007c +/* [RW 3] The arbitration scheme of time_slot 18 */ +#define TSEM_REG_TS_18_AS 0x180080 +/* [RW 3] The arbitration scheme of time_slot 1 */ +#define TSEM_REG_TS_1_AS 0x18003c +/* [RW 3] The arbitration scheme of time_slot 2 */ +#define TSEM_REG_TS_2_AS 0x180040 +/* [RW 3] The arbitration scheme of time_slot 3 */ +#define TSEM_REG_TS_3_AS 0x180044 +/* [RW 3] The arbitration scheme of time_slot 4 */ +#define TSEM_REG_TS_4_AS 0x180048 +/* [RW 3] The arbitration scheme of time_slot 5 */ +#define TSEM_REG_TS_5_AS 0x18004c +/* [RW 3] The arbitration scheme of time_slot 6 */ +#define TSEM_REG_TS_6_AS 0x180050 +/* [RW 3] The arbitration scheme of time_slot 7 */ +#define TSEM_REG_TS_7_AS 0x180054 +/* [RW 3] The arbitration scheme of time_slot 8 */ +#define TSEM_REG_TS_8_AS 0x180058 +/* [RW 3] The arbitration scheme of time_slot 9 */ +#define TSEM_REG_TS_9_AS 0x18005c +/* [RW 32] Interrupt mask register #0 read/write */ +#define TSEM_REG_TSEM_INT_MASK_0 0x180100 +#define TSEM_REG_TSEM_INT_MASK_1 0x180110 +/* [RW 32] Parity mask register #0 read/write */ +#define TSEM_REG_TSEM_PRTY_MASK_0 0x180120 +#define TSEM_REG_TSEM_PRTY_MASK_1 0x180130 +/* [R 5] Used to read the XX protection CAM occupancy counter. */ +#define UCM_REG_CAM_OCCUP 0xe0170 +/* [RW 1] CDU AG read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define UCM_REG_CDU_AG_RD_IFEN 0xe0038 +/* [RW 1] CDU AG write Interface enable. If 0 - the request and valid input + are disregarded; all other signals are treated as usual; if 1 - normal + activity. */ +#define UCM_REG_CDU_AG_WR_IFEN 0xe0034 +/* [RW 1] CDU STORM read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define UCM_REG_CDU_SM_RD_IFEN 0xe0040 +/* [RW 1] CDU STORM write Interface enable. If 0 - the request and valid + input is disregarded; all other signals are treated as usual; if 1 - + normal activity. */ +#define UCM_REG_CDU_SM_WR_IFEN 0xe003c +/* [RW 4] CFC output initial credit. Max credit available - 15.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 1 at start-up. */ +#define UCM_REG_CFC_INIT_CRD 0xe0204 +/* [RW 3] The weight of the CP input in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define UCM_REG_CP_WEIGHT 0xe00c4 +/* [RW 1] Input csem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_CSEM_IFEN 0xe0028 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the csem interface is detected. */ +#define UCM_REG_CSEM_LENGTH_MIS 0xe0160 +/* [RW 3] The weight of the input csem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define UCM_REG_CSEM_WEIGHT 0xe00b8 +/* [RW 1] Input dorq Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_DORQ_IFEN 0xe0030 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the dorq interface is detected. */ +#define UCM_REG_DORQ_LENGTH_MIS 0xe0168 +/* [RW 8] The Event ID in case ErrorFlg input message bit is set. */ +#define UCM_REG_ERR_EVNT_ID 0xe00a4 +/* [RW 28] The CM erroneous header for QM and Timers formatting. */ +#define UCM_REG_ERR_UCM_HDR 0xe00a0 +/* [RW 8] The Event ID for Timers expiration. */ +#define UCM_REG_EXPR_EVNT_ID 0xe00a8 +/* [RW 8] FIC0 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define UCM_REG_FIC0_INIT_CRD 0xe020c +/* [RW 8] FIC1 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define UCM_REG_FIC1_INIT_CRD 0xe0210 +/* [RW 1] Arbitration between Input Arbiter groups: 0 - fair Round-Robin; 1 + - strict priority defined by ~ucm_registers_gr_ag_pr.gr_ag_pr; + ~ucm_registers_gr_ld0_pr.gr_ld0_pr and + ~ucm_registers_gr_ld1_pr.gr_ld1_pr. */ +#define UCM_REG_GR_ARB_TYPE 0xe0144 +/* [RW 2] Load (FIC0) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed that the Store channel group is + compliment to the others. */ +#define UCM_REG_GR_LD0_PR 0xe014c +/* [RW 2] Load (FIC1) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed that the Store channel group is + compliment to the others. */ +#define UCM_REG_GR_LD1_PR 0xe0150 +/* [RW 2] The queue index for invalidate counter flag decision. */ +#define UCM_REG_INV_CFLG_Q 0xe00e4 +/* [RW 5] The number of double REG-pairs; loaded from the STORM context and + sent to STORM; for a specific connection type. the double REG-pairs are + used in order to align to STORM context row size of 128 bits. The offset + of these data in the STORM context is always 0. Index _i stands for the + connection type (one of 16). */ +#define UCM_REG_N_SM_CTX_LD_0 0xe0054 +#define UCM_REG_N_SM_CTX_LD_1 0xe0058 +#define UCM_REG_N_SM_CTX_LD_10 0xe007c +#define UCM_REG_N_SM_CTX_LD_11 0xe0080 +#define UCM_REG_N_SM_CTX_LD_12 0xe0084 +#define UCM_REG_N_SM_CTX_LD_13 0xe0088 +#define UCM_REG_N_SM_CTX_LD_14 0xe008c +#define UCM_REG_N_SM_CTX_LD_15 0xe0090 +#define UCM_REG_N_SM_CTX_LD_2 0xe005c +#define UCM_REG_N_SM_CTX_LD_3 0xe0060 +#define UCM_REG_N_SM_CTX_LD_4 0xe0064 +/* [RW 6] The physical queue number 0 per port index (CID[23]) */ +#define UCM_REG_PHYS_QNUM0_0 0xe0110 +#define UCM_REG_PHYS_QNUM0_1 0xe0114 +/* [RW 6] The physical queue number 1 per port index (CID[23]) */ +#define UCM_REG_PHYS_QNUM1_0 0xe0118 +#define UCM_REG_PHYS_QNUM1_1 0xe011c +/* [RW 8] The Event ID for Timers formatting in case of stop done. */ +#define UCM_REG_STOP_EVNT_ID 0xe00ac +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the STORM interface is detected. */ +#define UCM_REG_STORM_LENGTH_MIS 0xe0154 +/* [RW 1] STORM - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_STORM_UCM_IFEN 0xe0010 +/* [RW 4] Timers output initial credit. Max credit available - 15.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 4 at start-up. */ +#define UCM_REG_TM_INIT_CRD 0xe021c +/* [RW 28] The CM header for Timers expiration command. */ +#define UCM_REG_TM_UCM_HDR 0xe009c +/* [RW 1] Timers - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_TM_UCM_IFEN 0xe001c +/* [RW 1] Input tsem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_TSEM_IFEN 0xe0024 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the tsem interface is detected. */ +#define UCM_REG_TSEM_LENGTH_MIS 0xe015c +/* [RW 3] The weight of the input tsem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define UCM_REG_TSEM_WEIGHT 0xe00b4 +/* [RW 1] CM - CFC Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define UCM_REG_UCM_CFC_IFEN 0xe0044 +/* [RW 11] Interrupt mask register #0 read/write */ +#define UCM_REG_UCM_INT_MASK 0xe01d4 +/* [R 11] Interrupt register #0 read */ +#define UCM_REG_UCM_INT_STS 0xe01c8 +/* [RW 2] The size of AG context region 0 in REG-pairs. Designates the MS + REG-pair number (e.g. if region 0 is 6 REG-pairs; the value should be 5). + Is used to determine the number of the AG context REG-pairs written back; + when the Reg1WbFlg isn't set. */ +#define UCM_REG_UCM_REG0_SZ 0xe00dc +/* [RW 1] CM - STORM 0 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define UCM_REG_UCM_STORM0_IFEN 0xe0004 +/* [RW 1] CM - STORM 1 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define UCM_REG_UCM_STORM1_IFEN 0xe0008 +/* [RW 1] CM - Timers Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_UCM_TM_IFEN 0xe0020 +/* [RW 1] CM - QM Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define UCM_REG_UCM_UQM_IFEN 0xe000c +/* [RW 1] If set the Q index; received from the QM is inserted to event ID. */ +#define UCM_REG_UCM_UQM_USE_Q 0xe00d8 +/* [RW 6] QM output initial credit. Max credit available - 32.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 32 at start-up. */ +#define UCM_REG_UQM_INIT_CRD 0xe0220 +/* [RW 3] The weight of the QM (primary) input in the WRR mechanism. 0 + stands for weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define UCM_REG_UQM_P_WEIGHT 0xe00cc +/* [RW 28] The CM header value for QM request (primary). */ +#define UCM_REG_UQM_UCM_HDR_P 0xe0094 +/* [RW 28] The CM header value for QM request (secondary). */ +#define UCM_REG_UQM_UCM_HDR_S 0xe0098 +/* [RW 1] QM - CM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define UCM_REG_UQM_UCM_IFEN 0xe0014 +/* [RW 1] Input SDM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define UCM_REG_USDM_IFEN 0xe0018 +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the SDM interface is detected. */ +#define UCM_REG_USDM_LENGTH_MIS 0xe0158 +/* [RW 1] Input xsem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define UCM_REG_XSEM_IFEN 0xe002c +/* [RC 1] Set when the message length mismatch (relative to last indication) + at the xsem interface isdetected. */ +#define UCM_REG_XSEM_LENGTH_MIS 0xe0164 +/* [RW 20] Indirect access to the descriptor table of the XX protection + mechanism. The fields are:[5:0] - message length; 14:6] - message + pointer; 19:15] - next pointer. */ +#define UCM_REG_XX_DESCR_TABLE 0xe0280 +/* [R 6] Use to read the XX protection Free counter. */ +#define UCM_REG_XX_FREE 0xe016c +/* [RW 6] Initial value for the credit counter; responsible for fulfilling + of the Input Stage XX protection buffer by the XX protection pending + messages. Write writes the initial credit value; read returns the current + value of the credit counter. Must be initialized to 12 at start-up. */ +#define UCM_REG_XX_INIT_CRD 0xe0224 +/* [RW 6] The maximum number of pending messages; which may be stored in XX + protection. ~ucm_registers_xx_free.xx_free read on read. */ +#define UCM_REG_XX_MSG_NUM 0xe0228 +/* [RW 8] The Event ID; sent to the STORM in case of XX overflow. */ +#define UCM_REG_XX_OVFL_EVNT_ID 0xe004c +/* [RW 16] Indirect access to the XX table of the XX protection mechanism. + The fields are: [4:0] - tail pointer; 10:5] - Link List size; 15:11] - + header pointer. */ +#define UCM_REG_XX_TABLE 0xe0300 +/* [RW 8] The event id for aggregated interrupt 0 */ +#define USDM_REG_AGG_INT_EVENT_0 0xc4038 +#define USDM_REG_AGG_INT_EVENT_1 0xc403c +#define USDM_REG_AGG_INT_EVENT_10 0xc4060 +#define USDM_REG_AGG_INT_EVENT_11 0xc4064 +#define USDM_REG_AGG_INT_EVENT_12 0xc4068 +#define USDM_REG_AGG_INT_EVENT_13 0xc406c +#define USDM_REG_AGG_INT_EVENT_14 0xc4070 +#define USDM_REG_AGG_INT_EVENT_15 0xc4074 +#define USDM_REG_AGG_INT_EVENT_16 0xc4078 +#define USDM_REG_AGG_INT_EVENT_17 0xc407c +#define USDM_REG_AGG_INT_EVENT_18 0xc4080 +#define USDM_REG_AGG_INT_EVENT_19 0xc4084 +/* [RW 1] For each aggregated interrupt index whether the mode is normal (0) + or auto-mask-mode (1) */ +#define USDM_REG_AGG_INT_MODE_0 0xc41b8 +#define USDM_REG_AGG_INT_MODE_1 0xc41bc +#define USDM_REG_AGG_INT_MODE_10 0xc41e0 +#define USDM_REG_AGG_INT_MODE_11 0xc41e4 +#define USDM_REG_AGG_INT_MODE_12 0xc41e8 +#define USDM_REG_AGG_INT_MODE_13 0xc41ec +#define USDM_REG_AGG_INT_MODE_14 0xc41f0 +#define USDM_REG_AGG_INT_MODE_15 0xc41f4 +#define USDM_REG_AGG_INT_MODE_16 0xc41f8 +#define USDM_REG_AGG_INT_MODE_17 0xc41fc +#define USDM_REG_AGG_INT_MODE_18 0xc4200 +#define USDM_REG_AGG_INT_MODE_19 0xc4204 +/* [RW 13] The start address in the internal RAM for the cfc_rsp lcid */ +#define USDM_REG_CFC_RSP_START_ADDR 0xc4008 +/* [RW 16] The maximum value of the competion counter #0 */ +#define USDM_REG_CMP_COUNTER_MAX0 0xc401c +/* [RW 16] The maximum value of the competion counter #1 */ +#define USDM_REG_CMP_COUNTER_MAX1 0xc4020 +/* [RW 16] The maximum value of the competion counter #2 */ +#define USDM_REG_CMP_COUNTER_MAX2 0xc4024 +/* [RW 16] The maximum value of the competion counter #3 */ +#define USDM_REG_CMP_COUNTER_MAX3 0xc4028 +/* [RW 13] The start address in the internal RAM for the completion + counters. */ +#define USDM_REG_CMP_COUNTER_START_ADDR 0xc400c +#define USDM_REG_ENABLE_IN1 0xc4238 +#define USDM_REG_ENABLE_IN2 0xc423c +#define USDM_REG_ENABLE_OUT1 0xc4240 +#define USDM_REG_ENABLE_OUT2 0xc4244 +/* [RW 4] The initial number of messages that can be sent to the pxp control + interface without receiving any ACK. */ +#define USDM_REG_INIT_CREDIT_PXP_CTRL 0xc44c0 +/* [ST 32] The number of ACK after placement messages received */ +#define USDM_REG_NUM_OF_ACK_AFTER_PLACE 0xc4280 +/* [ST 32] The number of packet end messages received from the parser */ +#define USDM_REG_NUM_OF_PKT_END_MSG 0xc4278 +/* [ST 32] The number of requests received from the pxp async if */ +#define USDM_REG_NUM_OF_PXP_ASYNC_REQ 0xc427c +/* [ST 32] The number of commands received in queue 0 */ +#define USDM_REG_NUM_OF_Q0_CMD 0xc4248 +/* [ST 32] The number of commands received in queue 10 */ +#define USDM_REG_NUM_OF_Q10_CMD 0xc4270 +/* [ST 32] The number of commands received in queue 11 */ +#define USDM_REG_NUM_OF_Q11_CMD 0xc4274 +/* [ST 32] The number of commands received in queue 1 */ +#define USDM_REG_NUM_OF_Q1_CMD 0xc424c +/* [ST 32] The number of commands received in queue 2 */ +#define USDM_REG_NUM_OF_Q2_CMD 0xc4250 +/* [ST 32] The number of commands received in queue 3 */ +#define USDM_REG_NUM_OF_Q3_CMD 0xc4254 +/* [ST 32] The number of commands received in queue 4 */ +#define USDM_REG_NUM_OF_Q4_CMD 0xc4258 +/* [ST 32] The number of commands received in queue 5 */ +#define USDM_REG_NUM_OF_Q5_CMD 0xc425c +/* [ST 32] The number of commands received in queue 6 */ +#define USDM_REG_NUM_OF_Q6_CMD 0xc4260 +/* [ST 32] The number of commands received in queue 7 */ +#define USDM_REG_NUM_OF_Q7_CMD 0xc4264 +/* [ST 32] The number of commands received in queue 8 */ +#define USDM_REG_NUM_OF_Q8_CMD 0xc4268 +/* [ST 32] The number of commands received in queue 9 */ +#define USDM_REG_NUM_OF_Q9_CMD 0xc426c +/* [RW 13] The start address in the internal RAM for the packet end message */ +#define USDM_REG_PCK_END_MSG_START_ADDR 0xc4014 +/* [RW 13] The start address in the internal RAM for queue counters */ +#define USDM_REG_Q_COUNTER_START_ADDR 0xc4010 +/* [R 1] pxp_ctrl rd_data fifo empty in sdm_dma_rsp block */ +#define USDM_REG_RSP_PXP_CTRL_RDATA_EMPTY 0xc4550 +/* [R 1] parser fifo empty in sdm_sync block */ +#define USDM_REG_SYNC_PARSER_EMPTY 0xc4558 +/* [R 1] parser serial fifo empty in sdm_sync block */ +#define USDM_REG_SYNC_SYNC_EMPTY 0xc4560 +/* [RW 32] Tick for timer counter. Applicable only when + ~usdm_registers_timer_tick_enable.timer_tick_enable =1 */ +#define USDM_REG_TIMER_TICK 0xc4000 +/* [RW 32] Interrupt mask register #0 read/write */ +#define USDM_REG_USDM_INT_MASK_0 0xc42a0 +#define USDM_REG_USDM_INT_MASK_1 0xc42b0 +/* [RW 11] Parity mask register #0 read/write */ +#define USDM_REG_USDM_PRTY_MASK 0xc42c0 +/* [RW 5] The number of time_slots in the arbitration cycle */ +#define USEM_REG_ARB_CYCLE_SIZE 0x300034 +/* [RW 3] The source that is associated with arbitration element 0. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2 */ +#define USEM_REG_ARB_ELEMENT0 0x300020 +/* [RW 3] The source that is associated with arbitration element 1. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~usem_registers_arb_element0.arb_element0 */ +#define USEM_REG_ARB_ELEMENT1 0x300024 +/* [RW 3] The source that is associated with arbitration element 2. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~usem_registers_arb_element0.arb_element0 + and ~usem_registers_arb_element1.arb_element1 */ +#define USEM_REG_ARB_ELEMENT2 0x300028 +/* [RW 3] The source that is associated with arbitration element 3. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2.Could + not be equal to register ~usem_registers_arb_element0.arb_element0 and + ~usem_registers_arb_element1.arb_element1 and + ~usem_registers_arb_element2.arb_element2 */ +#define USEM_REG_ARB_ELEMENT3 0x30002c +/* [RW 3] The source that is associated with arbitration element 4. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~usem_registers_arb_element0.arb_element0 + and ~usem_registers_arb_element1.arb_element1 and + ~usem_registers_arb_element2.arb_element2 and + ~usem_registers_arb_element3.arb_element3 */ +#define USEM_REG_ARB_ELEMENT4 0x300030 +#define USEM_REG_ENABLE_IN 0x3000a4 +#define USEM_REG_ENABLE_OUT 0x3000a8 +/* [RW 32] This address space contains all registers and memories that are + placed in SEM_FAST block. The SEM_FAST registers are described in + appendix B. In order to access the SEM_FAST registers... the base address + USEM_REGISTERS_FAST_MEMORY (Offset: 0x320000) should be added to each + SEM_FAST register offset. */ +#define USEM_REG_FAST_MEMORY 0x320000 +/* [RW 1] Disables input messages from FIC0 May be updated during run_time + by the microcode */ +#define USEM_REG_FIC0_DISABLE 0x300224 +/* [RW 1] Disables input messages from FIC1 May be updated during run_time + by the microcode */ +#define USEM_REG_FIC1_DISABLE 0x300234 +/* [RW 15] Interrupt table Read and write access to it is not possible in + the middle of the work */ +#define USEM_REG_INT_TABLE 0x300400 +/* [ST 24] Statistics register. The number of messages that entered through + FIC0 */ +#define USEM_REG_MSG_NUM_FIC0 0x300000 +/* [ST 24] Statistics register. The number of messages that entered through + FIC1 */ +#define USEM_REG_MSG_NUM_FIC1 0x300004 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC0 */ +#define USEM_REG_MSG_NUM_FOC0 0x300008 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC1 */ +#define USEM_REG_MSG_NUM_FOC1 0x30000c +/* [ST 24] Statistics register. The number of messages that were sent to + FOC2 */ +#define USEM_REG_MSG_NUM_FOC2 0x300010 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC3 */ +#define USEM_REG_MSG_NUM_FOC3 0x300014 +/* [RW 1] Disables input messages from the passive buffer May be updated + during run_time by the microcode */ +#define USEM_REG_PAS_DISABLE 0x30024c +/* [WB 128] Debug only. Passive buffer memory */ +#define USEM_REG_PASSIVE_BUFFER 0x302000 +/* [WB 46] pram memory. B45 is parity; b[44:0] - data. */ +#define USEM_REG_PRAM 0x340000 +/* [R 16] Valid sleeping threads indication have bit per thread */ +#define USEM_REG_SLEEP_THREADS_VALID 0x30026c +/* [R 1] EXT_STORE FIFO is empty in sem_slow_ls_ext */ +#define USEM_REG_SLOW_EXT_STORE_EMPTY 0x3002a0 +/* [RW 16] List of free threads . There is a bit per thread. */ +#define USEM_REG_THREADS_LIST 0x3002e4 +/* [RW 3] The arbitration scheme of time_slot 0 */ +#define USEM_REG_TS_0_AS 0x300038 +/* [RW 3] The arbitration scheme of time_slot 10 */ +#define USEM_REG_TS_10_AS 0x300060 +/* [RW 3] The arbitration scheme of time_slot 11 */ +#define USEM_REG_TS_11_AS 0x300064 +/* [RW 3] The arbitration scheme of time_slot 12 */ +#define USEM_REG_TS_12_AS 0x300068 +/* [RW 3] The arbitration scheme of time_slot 13 */ +#define USEM_REG_TS_13_AS 0x30006c +/* [RW 3] The arbitration scheme of time_slot 14 */ +#define USEM_REG_TS_14_AS 0x300070 +/* [RW 3] The arbitration scheme of time_slot 15 */ +#define USEM_REG_TS_15_AS 0x300074 +/* [RW 3] The arbitration scheme of time_slot 16 */ +#define USEM_REG_TS_16_AS 0x300078 +/* [RW 3] The arbitration scheme of time_slot 17 */ +#define USEM_REG_TS_17_AS 0x30007c +/* [RW 3] The arbitration scheme of time_slot 18 */ +#define USEM_REG_TS_18_AS 0x300080 +/* [RW 3] The arbitration scheme of time_slot 1 */ +#define USEM_REG_TS_1_AS 0x30003c +/* [RW 3] The arbitration scheme of time_slot 2 */ +#define USEM_REG_TS_2_AS 0x300040 +/* [RW 3] The arbitration scheme of time_slot 3 */ +#define USEM_REG_TS_3_AS 0x300044 +/* [RW 3] The arbitration scheme of time_slot 4 */ +#define USEM_REG_TS_4_AS 0x300048 +/* [RW 3] The arbitration scheme of time_slot 5 */ +#define USEM_REG_TS_5_AS 0x30004c +/* [RW 3] The arbitration scheme of time_slot 6 */ +#define USEM_REG_TS_6_AS 0x300050 +/* [RW 3] The arbitration scheme of time_slot 7 */ +#define USEM_REG_TS_7_AS 0x300054 +/* [RW 3] The arbitration scheme of time_slot 8 */ +#define USEM_REG_TS_8_AS 0x300058 +/* [RW 3] The arbitration scheme of time_slot 9 */ +#define USEM_REG_TS_9_AS 0x30005c +/* [RW 32] Interrupt mask register #0 read/write */ +#define USEM_REG_USEM_INT_MASK_0 0x300110 +#define USEM_REG_USEM_INT_MASK_1 0x300120 +/* [RW 32] Parity mask register #0 read/write */ +#define USEM_REG_USEM_PRTY_MASK_0 0x300130 +#define USEM_REG_USEM_PRTY_MASK_1 0x300140 +/* [RW 2] The queue index for registration on Aux1 counter flag. */ +#define XCM_REG_AUX1_Q 0x20134 +/* [RW 2] Per each decision rule the queue index to register to. */ +#define XCM_REG_AUX_CNT_FLG_Q_19 0x201b0 +/* [R 5] Used to read the XX protection CAM occupancy counter. */ +#define XCM_REG_CAM_OCCUP 0x20244 +/* [RW 1] CDU AG read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define XCM_REG_CDU_AG_RD_IFEN 0x20044 +/* [RW 1] CDU AG write Interface enable. If 0 - the request and valid input + are disregarded; all other signals are treated as usual; if 1 - normal + activity. */ +#define XCM_REG_CDU_AG_WR_IFEN 0x20040 +/* [RW 1] CDU STORM read Interface enable. If 0 - the request input is + disregarded; valid output is deasserted; all other signals are treated as + usual; if 1 - normal activity. */ +#define XCM_REG_CDU_SM_RD_IFEN 0x2004c +/* [RW 1] CDU STORM write Interface enable. If 0 - the request and valid + input is disregarded; all other signals are treated as usual; if 1 - + normal activity. */ +#define XCM_REG_CDU_SM_WR_IFEN 0x20048 +/* [RW 4] CFC output initial credit. Max credit available - 15.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 1 at start-up. */ +#define XCM_REG_CFC_INIT_CRD 0x20404 +/* [RW 3] The weight of the CP input in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_CP_WEIGHT 0x200dc +/* [RW 1] Input csem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_CSEM_IFEN 0x20028 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the csem interface. */ +#define XCM_REG_CSEM_LENGTH_MIS 0x20228 +/* [RW 3] The weight of the input csem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_CSEM_WEIGHT 0x200c4 +/* [RW 1] Input dorq Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_DORQ_IFEN 0x20030 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the dorq interface. */ +#define XCM_REG_DORQ_LENGTH_MIS 0x20230 +/* [RW 8] The Event ID in case the ErrorFlg input message bit is set. */ +#define XCM_REG_ERR_EVNT_ID 0x200b0 +/* [RW 28] The CM erroneous header for QM and Timers formatting. */ +#define XCM_REG_ERR_XCM_HDR 0x200ac +/* [RW 8] The Event ID for Timers expiration. */ +#define XCM_REG_EXPR_EVNT_ID 0x200b4 +/* [RW 8] FIC0 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define XCM_REG_FIC0_INIT_CRD 0x2040c +/* [RW 8] FIC1 output initial credit. Max credit available - 255.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 64 at start-up. */ +#define XCM_REG_FIC1_INIT_CRD 0x20410 +/* [RW 8] The maximum delayed ACK counter value.Must be at least 2. Per port + value. */ +#define XCM_REG_GLB_DEL_ACK_MAX_CNT_0 0x20118 +#define XCM_REG_GLB_DEL_ACK_MAX_CNT_1 0x2011c +/* [RW 28] The delayed ACK timeout in ticks. Per port value. */ +#define XCM_REG_GLB_DEL_ACK_TMR_VAL_0 0x20108 +#define XCM_REG_GLB_DEL_ACK_TMR_VAL_1 0x2010c +/* [RW 1] Arbitratiojn between Input Arbiter groups: 0 - fair Round-Robin; 1 + - strict priority defined by ~xcm_registers_gr_ag_pr.gr_ag_pr; + ~xcm_registers_gr_ld0_pr.gr_ld0_pr and + ~xcm_registers_gr_ld1_pr.gr_ld1_pr. */ +#define XCM_REG_GR_ARB_TYPE 0x2020c +/* [RW 2] Load (FIC0) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed that the Channel group is the + compliment of the other 3 groups. */ +#define XCM_REG_GR_LD0_PR 0x20214 +/* [RW 2] Load (FIC1) channel group priority. The lowest priority is 0; the + highest priority is 3. It is supposed that the Channel group is the + compliment of the other 3 groups. */ +#define XCM_REG_GR_LD1_PR 0x20218 +/* [RW 1] Input nig0 Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_NIG0_IFEN 0x20038 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the nig0 interface. */ +#define XCM_REG_NIG0_LENGTH_MIS 0x20238 +/* [RW 1] Input nig1 Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_NIG1_IFEN 0x2003c +/* [RC 1] Set at message length mismatch (relative to last indication) at + the nig1 interface. */ +#define XCM_REG_NIG1_LENGTH_MIS 0x2023c +/* [RW 3] The weight of the input nig1 in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_NIG1_WEIGHT 0x200d8 +/* [RW 5] The number of double REG-pairs; loaded from the STORM context and + sent to STORM; for a specific connection type. The double REG-pairs are + used in order to align to STORM context row size of 128 bits. The offset + of these data in the STORM context is always 0. Index _i stands for the + connection type (one of 16). */ +#define XCM_REG_N_SM_CTX_LD_0 0x20060 +#define XCM_REG_N_SM_CTX_LD_1 0x20064 +#define XCM_REG_N_SM_CTX_LD_10 0x20088 +#define XCM_REG_N_SM_CTX_LD_11 0x2008c +#define XCM_REG_N_SM_CTX_LD_12 0x20090 +#define XCM_REG_N_SM_CTX_LD_13 0x20094 +#define XCM_REG_N_SM_CTX_LD_14 0x20098 +#define XCM_REG_N_SM_CTX_LD_15 0x2009c +#define XCM_REG_N_SM_CTX_LD_2 0x20068 +#define XCM_REG_N_SM_CTX_LD_3 0x2006c +#define XCM_REG_N_SM_CTX_LD_4 0x20070 +/* [RW 1] Input pbf Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_PBF_IFEN 0x20034 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the pbf interface. */ +#define XCM_REG_PBF_LENGTH_MIS 0x20234 +/* [RW 3] The weight of the input pbf in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_PBF_WEIGHT 0x200d0 +/* [RW 8] The Event ID for Timers formatting in case of stop done. */ +#define XCM_REG_STOP_EVNT_ID 0x200b8 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the STORM interface. */ +#define XCM_REG_STORM_LENGTH_MIS 0x2021c +/* [RW 3] The weight of the STORM input in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_STORM_WEIGHT 0x200bc +/* [RW 1] STORM - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_STORM_XCM_IFEN 0x20010 +/* [RW 4] Timers output initial credit. Max credit available - 15.Write + writes the initial credit value; read returns the current value of the + credit counter. Must be initialized to 4 at start-up. */ +#define XCM_REG_TM_INIT_CRD 0x2041c +/* [RW 28] The CM header for Timers expiration command. */ +#define XCM_REG_TM_XCM_HDR 0x200a8 +/* [RW 1] Timers - CM Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_TM_XCM_IFEN 0x2001c +/* [RW 1] Input tsem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_TSEM_IFEN 0x20024 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the tsem interface. */ +#define XCM_REG_TSEM_LENGTH_MIS 0x20224 +/* [RW 3] The weight of the input tsem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_TSEM_WEIGHT 0x200c0 +/* [RW 2] The queue index for registration on UNA greater NXT decision rule. */ +#define XCM_REG_UNA_GT_NXT_Q 0x20120 +/* [RW 1] Input usem Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_USEM_IFEN 0x2002c +/* [RC 1] Message length mismatch (relative to last indication) at the usem + interface. */ +#define XCM_REG_USEM_LENGTH_MIS 0x2022c +/* [RW 3] The weight of the input usem in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_USEM_WEIGHT 0x200c8 +/* [RW 2] DA counter command; used in case of window update doorbell.The + first index stands for the value DaEnable of that connection. The second + index stands for port number. */ +#define XCM_REG_WU_DA_CNT_CMD00 0x201d4 +/* [RW 2] DA counter command; used in case of window update doorbell.The + first index stands for the value DaEnable of that connection. The second + index stands for port number. */ +#define XCM_REG_WU_DA_CNT_CMD01 0x201d8 +/* [RW 2] DA counter command; used in case of window update doorbell.The + first index stands for the value DaEnable of that connection. The second + index stands for port number. */ +#define XCM_REG_WU_DA_CNT_CMD10 0x201dc +/* [RW 2] DA counter command; used in case of window update doorbell.The + first index stands for the value DaEnable of that connection. The second + index stands for port number. */ +#define XCM_REG_WU_DA_CNT_CMD11 0x201e0 +/* [RW 8] DA counter update value used in case of window update doorbell.The + first index stands for the value DaEnable of that connection. The second + index stands for port number. */ +#define XCM_REG_WU_DA_CNT_UPD_VAL00 0x201e4 +/* [RW 8] DA counter update value; used in case of window update + doorbell.The first index stands for the value DaEnable of that + connection. The second index stands for port number. */ +#define XCM_REG_WU_DA_CNT_UPD_VAL01 0x201e8 +/* [RW 8] DA counter update value; used in case of window update + doorbell.The first index stands for the value DaEnable of that + connection. The second index stands for port number. */ +#define XCM_REG_WU_DA_CNT_UPD_VAL10 0x201ec +/* [RW 8] DA counter update value; used in case of window update + doorbell.The first index stands for the value DaEnable of that + connection. The second index stands for port number. */ +#define XCM_REG_WU_DA_CNT_UPD_VAL11 0x201f0 +/* [RW 1] DA timer command; used in case of window update doorbell.The first + index stands for the value DaEnable of that connection. The second index + stands for port number. */ +#define XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD00 0x201c4 +/* [RW 1] DA timer command; used in case of window update doorbell.The first + index stands for the value DaEnable of that connection. The second index + stands for port number. */ +#define XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD01 0x201c8 +/* [RW 1] DA timer command; used in case of window update doorbell.The first + index stands for the value DaEnable of that connection. The second index + stands for port number. */ +#define XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD10 0x201cc +/* [RW 1] DA timer command; used in case of window update doorbell.The first + index stands for the value DaEnable of that connection. The second index + stands for port number. */ +#define XCM_REG_WU_DA_SET_TMR_CNT_FLG_CMD11 0x201d0 +/* [RW 1] CM - CFC Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_XCM_CFC_IFEN 0x20050 +/* [RW 14] Interrupt mask register #0 read/write */ +#define XCM_REG_XCM_INT_MASK 0x202b4 +/* [R 14] Interrupt register #0 read */ +#define XCM_REG_XCM_INT_STS 0x202a8 +/* [RW 4] The size of AG context region 0 in REG-pairs. Designates the MS + REG-pair number (e.g. if region 0 is 6 REG-pairs; the value should be 5). + Is used to determine the number of the AG context REG-pairs written back; + when the Reg1WbFlg isn't set. */ +#define XCM_REG_XCM_REG0_SZ 0x200f4 +/* [RW 1] CM - STORM 0 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_XCM_STORM0_IFEN 0x20004 +/* [RW 1] CM - STORM 1 Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_XCM_STORM1_IFEN 0x20008 +/* [RW 1] CM - Timers Interface enable. If 0 - the valid input is + disregarded; acknowledge output is deasserted; all other signals are + treated as usual; if 1 - normal activity. */ +#define XCM_REG_XCM_TM_IFEN 0x20020 +/* [RW 1] CM - QM Interface enable. If 0 - the acknowledge input is + disregarded; valid is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_XCM_XQM_IFEN 0x2000c +/* [RW 1] If set the Q index; received from the QM is inserted to event ID. */ +#define XCM_REG_XCM_XQM_USE_Q 0x200f0 +/* [RW 4] The value by which CFC updates the activity counter at QM bypass. */ +#define XCM_REG_XQM_BYP_ACT_UPD 0x200fc +/* [RW 6] QM output initial credit. Max credit available - 32.Write writes + the initial credit value; read returns the current value of the credit + counter. Must be initialized to 32 at start-up. */ +#define XCM_REG_XQM_INIT_CRD 0x20420 +/* [RW 3] The weight of the QM (primary) input in the WRR mechanism. 0 + stands for weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_XQM_P_WEIGHT 0x200e4 +/* [RW 28] The CM header value for QM request (primary). */ +#define XCM_REG_XQM_XCM_HDR_P 0x200a0 +/* [RW 28] The CM header value for QM request (secondary). */ +#define XCM_REG_XQM_XCM_HDR_S 0x200a4 +/* [RW 1] QM - CM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_XQM_XCM_IFEN 0x20014 +/* [RW 1] Input SDM Interface enable. If 0 - the valid input is disregarded; + acknowledge output is deasserted; all other signals are treated as usual; + if 1 - normal activity. */ +#define XCM_REG_XSDM_IFEN 0x20018 +/* [RC 1] Set at message length mismatch (relative to last indication) at + the SDM interface. */ +#define XCM_REG_XSDM_LENGTH_MIS 0x20220 +/* [RW 3] The weight of the SDM input in the WRR mechanism. 0 stands for + weight 8 (the most prioritised); 1 stands for weight 1(least + prioritised); 2 stands for weight 2; tc. */ +#define XCM_REG_XSDM_WEIGHT 0x200e0 +/* [RW 17] Indirect access to the descriptor table of the XX protection + mechanism. The fields are: [5:0] - message length; 11:6] - message + pointer; 16:12] - next pointer. */ +#define XCM_REG_XX_DESCR_TABLE 0x20480 +/* [R 6] Used to read the XX protection Free counter. */ +#define XCM_REG_XX_FREE 0x20240 +/* [RW 6] Initial value for the credit counter; responsible for fulfilling + of the Input Stage XX protection buffer by the XX protection pending + messages. Max credit available - 3.Write writes the initial credit value; + read returns the current value of the credit counter. Must be initialized + to 2 at start-up. */ +#define XCM_REG_XX_INIT_CRD 0x20424 +/* [RW 6] The maximum number of pending messages; which may be stored in XX + protection. ~xcm_registers_xx_free.xx_free read on read. */ +#define XCM_REG_XX_MSG_NUM 0x20428 +/* [RW 8] The Event ID; sent to the STORM in case of XX overflow. */ +#define XCM_REG_XX_OVFL_EVNT_ID 0x20058 +/* [RW 15] Indirect access to the XX table of the XX protection mechanism. + The fields are:[4:0] - tail pointer; 9:5] - Link List size; 14:10] - + header pointer. */ +#define XCM_REG_XX_TABLE 0x20500 +/* [RW 8] The event id for aggregated interrupt 0 */ +#define XSDM_REG_AGG_INT_EVENT_0 0x166038 +#define XSDM_REG_AGG_INT_EVENT_1 0x16603c +#define XSDM_REG_AGG_INT_EVENT_10 0x166060 +#define XSDM_REG_AGG_INT_EVENT_11 0x166064 +#define XSDM_REG_AGG_INT_EVENT_12 0x166068 +#define XSDM_REG_AGG_INT_EVENT_13 0x16606c +#define XSDM_REG_AGG_INT_EVENT_14 0x166070 +#define XSDM_REG_AGG_INT_EVENT_15 0x166074 +#define XSDM_REG_AGG_INT_EVENT_16 0x166078 +#define XSDM_REG_AGG_INT_EVENT_17 0x16607c +#define XSDM_REG_AGG_INT_EVENT_18 0x166080 +#define XSDM_REG_AGG_INT_EVENT_19 0x166084 +#define XSDM_REG_AGG_INT_EVENT_2 0x166040 +#define XSDM_REG_AGG_INT_EVENT_20 0x166088 +#define XSDM_REG_AGG_INT_EVENT_21 0x16608c +#define XSDM_REG_AGG_INT_EVENT_22 0x166090 +#define XSDM_REG_AGG_INT_EVENT_23 0x166094 +#define XSDM_REG_AGG_INT_EVENT_24 0x166098 +#define XSDM_REG_AGG_INT_EVENT_25 0x16609c +#define XSDM_REG_AGG_INT_EVENT_26 0x1660a0 +#define XSDM_REG_AGG_INT_EVENT_27 0x1660a4 +#define XSDM_REG_AGG_INT_EVENT_28 0x1660a8 +#define XSDM_REG_AGG_INT_EVENT_29 0x1660ac +/* [RW 1] For each aggregated interrupt index whether the mode is normal (0) + or auto-mask-mode (1) */ +#define XSDM_REG_AGG_INT_MODE_0 0x1661b8 +#define XSDM_REG_AGG_INT_MODE_1 0x1661bc +#define XSDM_REG_AGG_INT_MODE_10 0x1661e0 +#define XSDM_REG_AGG_INT_MODE_11 0x1661e4 +#define XSDM_REG_AGG_INT_MODE_12 0x1661e8 +#define XSDM_REG_AGG_INT_MODE_13 0x1661ec +#define XSDM_REG_AGG_INT_MODE_14 0x1661f0 +#define XSDM_REG_AGG_INT_MODE_15 0x1661f4 +#define XSDM_REG_AGG_INT_MODE_16 0x1661f8 +#define XSDM_REG_AGG_INT_MODE_17 0x1661fc +#define XSDM_REG_AGG_INT_MODE_18 0x166200 +#define XSDM_REG_AGG_INT_MODE_19 0x166204 +/* [RW 13] The start address in the internal RAM for the cfc_rsp lcid */ +#define XSDM_REG_CFC_RSP_START_ADDR 0x166008 +/* [RW 16] The maximum value of the competion counter #0 */ +#define XSDM_REG_CMP_COUNTER_MAX0 0x16601c +/* [RW 16] The maximum value of the competion counter #1 */ +#define XSDM_REG_CMP_COUNTER_MAX1 0x166020 +/* [RW 16] The maximum value of the competion counter #2 */ +#define XSDM_REG_CMP_COUNTER_MAX2 0x166024 +/* [RW 16] The maximum value of the competion counter #3 */ +#define XSDM_REG_CMP_COUNTER_MAX3 0x166028 +/* [RW 13] The start address in the internal RAM for the completion + counters. */ +#define XSDM_REG_CMP_COUNTER_START_ADDR 0x16600c +#define XSDM_REG_ENABLE_IN1 0x166238 +#define XSDM_REG_ENABLE_IN2 0x16623c +#define XSDM_REG_ENABLE_OUT1 0x166240 +#define XSDM_REG_ENABLE_OUT2 0x166244 +/* [RW 4] The initial number of messages that can be sent to the pxp control + interface without receiving any ACK. */ +#define XSDM_REG_INIT_CREDIT_PXP_CTRL 0x1664bc +/* [ST 32] The number of ACK after placement messages received */ +#define XSDM_REG_NUM_OF_ACK_AFTER_PLACE 0x16627c +/* [ST 32] The number of packet end messages received from the parser */ +#define XSDM_REG_NUM_OF_PKT_END_MSG 0x166274 +/* [ST 32] The number of requests received from the pxp async if */ +#define XSDM_REG_NUM_OF_PXP_ASYNC_REQ 0x166278 +/* [ST 32] The number of commands received in queue 0 */ +#define XSDM_REG_NUM_OF_Q0_CMD 0x166248 +/* [ST 32] The number of commands received in queue 10 */ +#define XSDM_REG_NUM_OF_Q10_CMD 0x16626c +/* [ST 32] The number of commands received in queue 11 */ +#define XSDM_REG_NUM_OF_Q11_CMD 0x166270 +/* [ST 32] The number of commands received in queue 1 */ +#define XSDM_REG_NUM_OF_Q1_CMD 0x16624c +/* [ST 32] The number of commands received in queue 3 */ +#define XSDM_REG_NUM_OF_Q3_CMD 0x166250 +/* [ST 32] The number of commands received in queue 4 */ +#define XSDM_REG_NUM_OF_Q4_CMD 0x166254 +/* [ST 32] The number of commands received in queue 5 */ +#define XSDM_REG_NUM_OF_Q5_CMD 0x166258 +/* [ST 32] The number of commands received in queue 6 */ +#define XSDM_REG_NUM_OF_Q6_CMD 0x16625c +/* [ST 32] The number of commands received in queue 7 */ +#define XSDM_REG_NUM_OF_Q7_CMD 0x166260 +/* [ST 32] The number of commands received in queue 8 */ +#define XSDM_REG_NUM_OF_Q8_CMD 0x166264 +/* [ST 32] The number of commands received in queue 9 */ +#define XSDM_REG_NUM_OF_Q9_CMD 0x166268 +/* [RW 13] The start address in the internal RAM for queue counters */ +#define XSDM_REG_Q_COUNTER_START_ADDR 0x166010 +/* [R 1] pxp_ctrl rd_data fifo empty in sdm_dma_rsp block */ +#define XSDM_REG_RSP_PXP_CTRL_RDATA_EMPTY 0x166548 +/* [R 1] parser fifo empty in sdm_sync block */ +#define XSDM_REG_SYNC_PARSER_EMPTY 0x166550 +/* [R 1] parser serial fifo empty in sdm_sync block */ +#define XSDM_REG_SYNC_SYNC_EMPTY 0x166558 +/* [RW 32] Tick for timer counter. Applicable only when + ~xsdm_registers_timer_tick_enable.timer_tick_enable =1 */ +#define XSDM_REG_TIMER_TICK 0x166000 +/* [RW 32] Interrupt mask register #0 read/write */ +#define XSDM_REG_XSDM_INT_MASK_0 0x16629c +#define XSDM_REG_XSDM_INT_MASK_1 0x1662ac +/* [RW 11] Parity mask register #0 read/write */ +#define XSDM_REG_XSDM_PRTY_MASK 0x1662bc +/* [RW 5] The number of time_slots in the arbitration cycle */ +#define XSEM_REG_ARB_CYCLE_SIZE 0x280034 +/* [RW 3] The source that is associated with arbitration element 0. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2 */ +#define XSEM_REG_ARB_ELEMENT0 0x280020 +/* [RW 3] The source that is associated with arbitration element 1. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~xsem_registers_arb_element0.arb_element0 */ +#define XSEM_REG_ARB_ELEMENT1 0x280024 +/* [RW 3] The source that is associated with arbitration element 2. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~xsem_registers_arb_element0.arb_element0 + and ~xsem_registers_arb_element1.arb_element1 */ +#define XSEM_REG_ARB_ELEMENT2 0x280028 +/* [RW 3] The source that is associated with arbitration element 3. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2.Could + not be equal to register ~xsem_registers_arb_element0.arb_element0 and + ~xsem_registers_arb_element1.arb_element1 and + ~xsem_registers_arb_element2.arb_element2 */ +#define XSEM_REG_ARB_ELEMENT3 0x28002c +/* [RW 3] The source that is associated with arbitration element 4. Source + decoding is: 0- foc0; 1-fic1; 2-sleeping thread with priority 0; 3- + sleeping thread with priority 1; 4- sleeping thread with priority 2. + Could not be equal to register ~xsem_registers_arb_element0.arb_element0 + and ~xsem_registers_arb_element1.arb_element1 and + ~xsem_registers_arb_element2.arb_element2 and + ~xsem_registers_arb_element3.arb_element3 */ +#define XSEM_REG_ARB_ELEMENT4 0x280030 +#define XSEM_REG_ENABLE_IN 0x2800a4 +#define XSEM_REG_ENABLE_OUT 0x2800a8 +/* [RW 32] This address space contains all registers and memories that are + placed in SEM_FAST block. The SEM_FAST registers are described in + appendix B. In order to access the SEM_FAST registers the base address + XSEM_REGISTERS_FAST_MEMORY (Offset: 0x2a0000) should be added to each + SEM_FAST register offset. */ +#define XSEM_REG_FAST_MEMORY 0x2a0000 +/* [RW 1] Disables input messages from FIC0 May be updated during run_time + by the microcode */ +#define XSEM_REG_FIC0_DISABLE 0x280224 +/* [RW 1] Disables input messages from FIC1 May be updated during run_time + by the microcode */ +#define XSEM_REG_FIC1_DISABLE 0x280234 +/* [RW 15] Interrupt table Read and write access to it is not possible in + the middle of the work */ +#define XSEM_REG_INT_TABLE 0x280400 +/* [ST 24] Statistics register. The number of messages that entered through + FIC0 */ +#define XSEM_REG_MSG_NUM_FIC0 0x280000 +/* [ST 24] Statistics register. The number of messages that entered through + FIC1 */ +#define XSEM_REG_MSG_NUM_FIC1 0x280004 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC0 */ +#define XSEM_REG_MSG_NUM_FOC0 0x280008 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC1 */ +#define XSEM_REG_MSG_NUM_FOC1 0x28000c +/* [ST 24] Statistics register. The number of messages that were sent to + FOC2 */ +#define XSEM_REG_MSG_NUM_FOC2 0x280010 +/* [ST 24] Statistics register. The number of messages that were sent to + FOC3 */ +#define XSEM_REG_MSG_NUM_FOC3 0x280014 +/* [RW 1] Disables input messages from the passive buffer May be updated + during run_time by the microcode */ +#define XSEM_REG_PAS_DISABLE 0x28024c +/* [WB 128] Debug only. Passive buffer memory */ +#define XSEM_REG_PASSIVE_BUFFER 0x282000 +/* [WB 46] pram memory. B45 is parity; b[44:0] - data. */ +#define XSEM_REG_PRAM 0x2c0000 +/* [R 16] Valid sleeping threads indication have bit per thread */ +#define XSEM_REG_SLEEP_THREADS_VALID 0x28026c +/* [R 1] EXT_STORE FIFO is empty in sem_slow_ls_ext */ +#define XSEM_REG_SLOW_EXT_STORE_EMPTY 0x2802a0 +/* [RW 16] List of free threads . There is a bit per thread. */ +#define XSEM_REG_THREADS_LIST 0x2802e4 +/* [RW 3] The arbitration scheme of time_slot 0 */ +#define XSEM_REG_TS_0_AS 0x280038 +/* [RW 3] The arbitration scheme of time_slot 10 */ +#define XSEM_REG_TS_10_AS 0x280060 +/* [RW 3] The arbitration scheme of time_slot 11 */ +#define XSEM_REG_TS_11_AS 0x280064 +/* [RW 3] The arbitration scheme of time_slot 12 */ +#define XSEM_REG_TS_12_AS 0x280068 +/* [RW 3] The arbitration scheme of time_slot 13 */ +#define XSEM_REG_TS_13_AS 0x28006c +/* [RW 3] The arbitration scheme of time_slot 14 */ +#define XSEM_REG_TS_14_AS 0x280070 +/* [RW 3] The arbitration scheme of time_slot 15 */ +#define XSEM_REG_TS_15_AS 0x280074 +/* [RW 3] The arbitration scheme of time_slot 16 */ +#define XSEM_REG_TS_16_AS 0x280078 +/* [RW 3] The arbitration scheme of time_slot 17 */ +#define XSEM_REG_TS_17_AS 0x28007c +/* [RW 3] The arbitration scheme of time_slot 18 */ +#define XSEM_REG_TS_18_AS 0x280080 +/* [RW 3] The arbitration scheme of time_slot 1 */ +#define XSEM_REG_TS_1_AS 0x28003c +/* [RW 3] The arbitration scheme of time_slot 2 */ +#define XSEM_REG_TS_2_AS 0x280040 +/* [RW 3] The arbitration scheme of time_slot 3 */ +#define XSEM_REG_TS_3_AS 0x280044 +/* [RW 3] The arbitration scheme of time_slot 4 */ +#define XSEM_REG_TS_4_AS 0x280048 +/* [RW 3] The arbitration scheme of time_slot 5 */ +#define XSEM_REG_TS_5_AS 0x28004c +/* [RW 3] The arbitration scheme of time_slot 6 */ +#define XSEM_REG_TS_6_AS 0x280050 +/* [RW 3] The arbitration scheme of time_slot 7 */ +#define XSEM_REG_TS_7_AS 0x280054 +/* [RW 3] The arbitration scheme of time_slot 8 */ +#define XSEM_REG_TS_8_AS 0x280058 +/* [RW 3] The arbitration scheme of time_slot 9 */ +#define XSEM_REG_TS_9_AS 0x28005c +/* [RW 32] Interrupt mask register #0 read/write */ +#define XSEM_REG_XSEM_INT_MASK_0 0x280110 +#define XSEM_REG_XSEM_INT_MASK_1 0x280120 +/* [RW 32] Parity mask register #0 read/write */ +#define XSEM_REG_XSEM_PRTY_MASK_0 0x280130 +#define XSEM_REG_XSEM_PRTY_MASK_1 0x280140 +#define MCPR_NVM_ACCESS_ENABLE_EN (1L<<0) +#define MCPR_NVM_ACCESS_ENABLE_WR_EN (1L<<1) +#define MCPR_NVM_ADDR_NVM_ADDR_VALUE (0xffffffL<<0) +#define MCPR_NVM_CFG4_FLASH_SIZE (0x7L<<0) +#define MCPR_NVM_COMMAND_DOIT (1L<<4) +#define MCPR_NVM_COMMAND_DONE (1L<<3) +#define MCPR_NVM_COMMAND_FIRST (1L<<7) +#define MCPR_NVM_COMMAND_LAST (1L<<8) +#define MCPR_NVM_COMMAND_WR (1L<<5) +#define MCPR_NVM_COMMAND_WREN (1L<<16) +#define MCPR_NVM_COMMAND_WREN_BITSHIFT 16 +#define MCPR_NVM_COMMAND_WRDI (1L<<17) +#define MCPR_NVM_COMMAND_WRDI_BITSHIFT 17 +#define MCPR_NVM_SW_ARB_ARB_ARB1 (1L<<9) +#define MCPR_NVM_SW_ARB_ARB_REQ_CLR1 (1L<<5) +#define MCPR_NVM_SW_ARB_ARB_REQ_SET1 (1L<<1) +#define BIGMAC_REGISTER_BMAC_CONTROL (0x00<<3) +#define BIGMAC_REGISTER_BMAC_XGXS_CONTROL (0x01<<3) +#define BIGMAC_REGISTER_CNT_MAX_SIZE (0x05<<3) +#define BIGMAC_REGISTER_RX_CONTROL (0x21<<3) +#define BIGMAC_REGISTER_RX_LLFC_MSG_FLDS (0x46<<3) +#define BIGMAC_REGISTER_RX_MAX_SIZE (0x23<<3) +#define BIGMAC_REGISTER_RX_STAT_GR64 (0x26<<3) +#define BIGMAC_REGISTER_RX_STAT_GRIPJ (0x42<<3) +#define BIGMAC_REGISTER_TX_CONTROL (0x07<<3) +#define BIGMAC_REGISTER_TX_MAX_SIZE (0x09<<3) +#define BIGMAC_REGISTER_TX_PAUSE_THRESHOLD (0x0A<<3) +#define BIGMAC_REGISTER_TX_SOURCE_ADDR (0x08<<3) +#define BIGMAC_REGISTER_TX_STAT_GTBYT (0x20<<3) +#define BIGMAC_REGISTER_TX_STAT_GTPKT (0x0C<<3) +#define EMAC_MDIO_COMM_COMMAND_ADDRESS (0L<<26) +#define EMAC_MDIO_COMM_COMMAND_READ_22 (2L<<26) +#define EMAC_MDIO_COMM_COMMAND_READ_45 (3L<<26) +#define EMAC_MDIO_COMM_COMMAND_WRITE_22 (1L<<26) +#define EMAC_MDIO_COMM_COMMAND_WRITE_45 (1L<<26) +#define EMAC_MDIO_COMM_DATA (0xffffL<<0) +#define EMAC_MDIO_COMM_START_BUSY (1L<<29) +#define EMAC_MDIO_MODE_AUTO_POLL (1L<<4) +#define EMAC_MDIO_MODE_CLAUSE_45 (1L<<31) +#define EMAC_MODE_25G_MODE (1L<<5) +#define EMAC_MODE_ACPI_RCVD (1L<<20) +#define EMAC_MODE_HALF_DUPLEX (1L<<1) +#define EMAC_MODE_MPKT (1L<<18) +#define EMAC_MODE_MPKT_RCVD (1L<<19) +#define EMAC_MODE_PORT_GMII (2L<<2) +#define EMAC_MODE_PORT_MII (1L<<2) +#define EMAC_MODE_PORT_MII_10M (3L<<2) +#define EMAC_MODE_RESET (1L<<0) +#define EMAC_REG_EMAC_MAC_MATCH 0x10 +#define EMAC_REG_EMAC_MDIO_COMM 0xac +#define EMAC_REG_EMAC_MDIO_MODE 0xb4 +#define EMAC_REG_EMAC_MODE 0x0 +#define EMAC_REG_EMAC_RX_MODE 0xc8 +#define EMAC_REG_EMAC_RX_MTU_SIZE 0x9c +#define EMAC_REG_EMAC_RX_STAT_AC 0x180 +#define EMAC_REG_EMAC_RX_STAT_AC_28 0x1f4 +#define EMAC_REG_EMAC_RX_STAT_AC_COUNT 23 +#define EMAC_REG_EMAC_TX_MODE 0xbc +#define EMAC_REG_EMAC_TX_STAT_AC 0x280 +#define EMAC_REG_EMAC_TX_STAT_AC_COUNT 22 +#define EMAC_RX_MODE_FLOW_EN (1L<<2) +#define EMAC_RX_MODE_KEEP_VLAN_TAG (1L<<10) +#define EMAC_RX_MODE_PROMISCUOUS (1L<<8) +#define EMAC_RX_MTU_SIZE_JUMBO_ENA (1L<<31) +#define EMAC_TX_MODE_EXT_PAUSE_EN (1L<<3) +#define EMAC_TX_MODE_RESET (1L<<0) +#define MISC_REGISTERS_RESET_REG_1_CLEAR 0x588 +#define MISC_REGISTERS_RESET_REG_1_SET 0x584 +#define MISC_REGISTERS_RESET_REG_2_CLEAR 0x598 +#define MISC_REGISTERS_RESET_REG_2_RST_BMAC0 (0x1<<0) +#define MISC_REGISTERS_RESET_REG_2_RST_EMAC0_HARD_CORE (0x1<<14) +#define MISC_REGISTERS_RESET_REG_2_SET 0x594 +#define MISC_REGISTERS_RESET_REG_3_CLEAR 0x5a8 +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_IDDQ (0x1<<1) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_PWRDWN (0x1<<2) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_PWRDWN_SD (0x1<<3) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_SERDES0_RSTB_HW (0x1<<0) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_IDDQ (0x1<<5) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_PWRDWN (0x1<<6) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_PWRDWN_SD (0x1<<7) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_RSTB_HW (0x1<<4) +#define MISC_REGISTERS_RESET_REG_3_MISC_NIG_MUX_XGXS0_TXD_FIFO_RSTB (0x1<<8) +#define MISC_REGISTERS_RESET_REG_3_SET 0x5a4 +#define AEU_INPUTS_ATTN_BITS_BRB_PARITY_ERROR (1<<18) +#define AEU_INPUTS_ATTN_BITS_CCM_HW_INTERRUPT (1<<31) +#define AEU_INPUTS_ATTN_BITS_CDU_HW_INTERRUPT (1<<9) +#define AEU_INPUTS_ATTN_BITS_CDU_PARITY_ERROR (1<<8) +#define AEU_INPUTS_ATTN_BITS_CFC_HW_INTERRUPT (1<<7) +#define AEU_INPUTS_ATTN_BITS_CFC_PARITY_ERROR (1<<6) +#define AEU_INPUTS_ATTN_BITS_CSDM_HW_INTERRUPT (1<<29) +#define AEU_INPUTS_ATTN_BITS_CSDM_PARITY_ERROR (1<<28) +#define AEU_INPUTS_ATTN_BITS_CSEMI_HW_INTERRUPT (1<<1) +#define AEU_INPUTS_ATTN_BITS_CSEMI_PARITY_ERROR (1<<0) +#define AEU_INPUTS_ATTN_BITS_DEBUG_PARITY_ERROR (1<<18) +#define AEU_INPUTS_ATTN_BITS_DMAE_HW_INTERRUPT (1<<11) +#define AEU_INPUTS_ATTN_BITS_DOORBELLQ_HW_INTERRUPT (1<<13) +#define AEU_INPUTS_ATTN_BITS_DOORBELLQ_PARITY_ERROR (1<<12) +#define AEU_INPUTS_ATTN_BITS_IGU_PARITY_ERROR (1<<12) +#define AEU_INPUTS_ATTN_BITS_MISC_HW_INTERRUPT (1<<15) +#define AEU_INPUTS_ATTN_BITS_MISC_PARITY_ERROR (1<<14) +#define AEU_INPUTS_ATTN_BITS_PARSER_PARITY_ERROR (1<<20) +#define AEU_INPUTS_ATTN_BITS_PBCLIENT_PARITY_ERROR (1<<0) +#define AEU_INPUTS_ATTN_BITS_PBF_HW_INTERRUPT (1<<31) +#define AEU_INPUTS_ATTN_BITS_PXP_HW_INTERRUPT (1<<3) +#define AEU_INPUTS_ATTN_BITS_PXP_PARITY_ERROR (1<<2) +#define AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_HW_INTERRUPT (1<<5) +#define AEU_INPUTS_ATTN_BITS_PXPPCICLOCKCLIENT_PARITY_ERROR (1<<4) +#define AEU_INPUTS_ATTN_BITS_QM_HW_INTERRUPT (1<<3) +#define AEU_INPUTS_ATTN_BITS_QM_PARITY_ERROR (1<<2) +#define AEU_INPUTS_ATTN_BITS_SEARCHER_PARITY_ERROR (1<<22) +#define AEU_INPUTS_ATTN_BITS_TCM_HW_INTERRUPT (1<<27) +#define AEU_INPUTS_ATTN_BITS_TIMERS_HW_INTERRUPT (1<<5) +#define AEU_INPUTS_ATTN_BITS_TSDM_HW_INTERRUPT (1<<25) +#define AEU_INPUTS_ATTN_BITS_TSDM_PARITY_ERROR (1<<24) +#define AEU_INPUTS_ATTN_BITS_TSEMI_HW_INTERRUPT (1<<29) +#define AEU_INPUTS_ATTN_BITS_TSEMI_PARITY_ERROR (1<<28) +#define AEU_INPUTS_ATTN_BITS_UCM_HW_INTERRUPT (1<<23) +#define AEU_INPUTS_ATTN_BITS_UPB_HW_INTERRUPT (1<<27) +#define AEU_INPUTS_ATTN_BITS_UPB_PARITY_ERROR (1<<26) +#define AEU_INPUTS_ATTN_BITS_USDM_HW_INTERRUPT (1<<21) +#define AEU_INPUTS_ATTN_BITS_USDM_PARITY_ERROR (1<<20) +#define AEU_INPUTS_ATTN_BITS_USEMI_HW_INTERRUPT (1<<25) +#define AEU_INPUTS_ATTN_BITS_USEMI_PARITY_ERROR (1<<24) +#define AEU_INPUTS_ATTN_BITS_VAUX_PCI_CORE_PARITY_ERROR (1<<16) +#define AEU_INPUTS_ATTN_BITS_XCM_HW_INTERRUPT (1<<9) +#define AEU_INPUTS_ATTN_BITS_XSDM_HW_INTERRUPT (1<<7) +#define AEU_INPUTS_ATTN_BITS_XSDM_PARITY_ERROR (1<<6) +#define AEU_INPUTS_ATTN_BITS_XSEMI_HW_INTERRUPT (1<<11) +#define AEU_INPUTS_ATTN_BITS_XSEMI_PARITY_ERROR (1<<10) +#define RESERVED_GENERAL_ATTENTION_BIT_0 0 + +#define EVEREST_GEN_ATTN_IN_USE_MASK 0x3e0 +#define EVEREST_LATCHED_ATTN_IN_USE_MASK 0xffe00000 + +#define RESERVED_GENERAL_ATTENTION_BIT_6 6 +#define RESERVED_GENERAL_ATTENTION_BIT_7 7 +#define RESERVED_GENERAL_ATTENTION_BIT_8 8 +#define RESERVED_GENERAL_ATTENTION_BIT_9 9 +#define RESERVED_GENERAL_ATTENTION_BIT_10 10 +#define RESERVED_GENERAL_ATTENTION_BIT_11 11 +#define RESERVED_GENERAL_ATTENTION_BIT_12 12 +#define RESERVED_GENERAL_ATTENTION_BIT_13 13 +#define RESERVED_GENERAL_ATTENTION_BIT_14 14 +#define RESERVED_GENERAL_ATTENTION_BIT_15 15 +#define RESERVED_GENERAL_ATTENTION_BIT_16 16 +#define RESERVED_GENERAL_ATTENTION_BIT_17 17 +#define RESERVED_GENERAL_ATTENTION_BIT_18 18 +#define RESERVED_GENERAL_ATTENTION_BIT_19 19 +#define RESERVED_GENERAL_ATTENTION_BIT_20 20 +#define RESERVED_GENERAL_ATTENTION_BIT_21 21 + +/* storm asserts attention bits */ +#define TSTORM_FATAL_ASSERT_ATTENTION_BIT RESERVED_GENERAL_ATTENTION_BIT_7 +#define USTORM_FATAL_ASSERT_ATTENTION_BIT RESERVED_GENERAL_ATTENTION_BIT_8 +#define CSTORM_FATAL_ASSERT_ATTENTION_BIT RESERVED_GENERAL_ATTENTION_BIT_9 +#define XSTORM_FATAL_ASSERT_ATTENTION_BIT RESERVED_GENERAL_ATTENTION_BIT_10 + +/* mcp error attention bit */ +#define MCP_FATAL_ASSERT_ATTENTION_BIT RESERVED_GENERAL_ATTENTION_BIT_11 + +#define LATCHED_ATTN_RBCR 23 +#define LATCHED_ATTN_RBCT 24 +#define LATCHED_ATTN_RBCN 25 +#define LATCHED_ATTN_RBCU 26 +#define LATCHED_ATTN_RBCP 27 +#define LATCHED_ATTN_TIMEOUT_GRC 28 +#define LATCHED_ATTN_RSVD_GRC 29 +#define LATCHED_ATTN_ROM_PARITY_MCP 30 +#define LATCHED_ATTN_UM_RX_PARITY_MCP 31 +#define LATCHED_ATTN_UM_TX_PARITY_MCP 32 +#define LATCHED_ATTN_SCPAD_PARITY_MCP 33 + +#define GENERAL_ATTEN_WORD(atten_name) ((94 + atten_name) / 32) +#define GENERAL_ATTEN_OFFSET(atten_name) (1 << ((94 + atten_name) % 32)) +/* + * This file defines GRC base address for every block. + * This file is included by chipsim, asm microcode and cpp microcode. + * These values are used in Design.xml on regBase attribute + * Use the base with the generated offsets of specific registers. + */ + +#define GRCBASE_PXPCS 0x000000 +#define GRCBASE_PCICONFIG 0x002000 +#define GRCBASE_PCIREG 0x002400 +#define GRCBASE_EMAC0 0x008000 +#define GRCBASE_EMAC1 0x008400 +#define GRCBASE_DBU 0x008800 +#define GRCBASE_MISC 0x00A000 +#define GRCBASE_DBG 0x00C000 +#define GRCBASE_NIG 0x010000 +#define GRCBASE_XCM 0x020000 +#define GRCBASE_PRS 0x040000 +#define GRCBASE_SRCH 0x040400 +#define GRCBASE_TSDM 0x042000 +#define GRCBASE_TCM 0x050000 +#define GRCBASE_BRB1 0x060000 +#define GRCBASE_MCP 0x080000 +#define GRCBASE_UPB 0x0C1000 +#define GRCBASE_CSDM 0x0C2000 +#define GRCBASE_USDM 0x0C4000 +#define GRCBASE_CCM 0x0D0000 +#define GRCBASE_UCM 0x0E0000 +#define GRCBASE_CDU 0x101000 +#define GRCBASE_DMAE 0x102000 +#define GRCBASE_PXP 0x103000 +#define GRCBASE_CFC 0x104000 +#define GRCBASE_HC 0x108000 +#define GRCBASE_PXP2 0x120000 +#define GRCBASE_PBF 0x140000 +#define GRCBASE_XPB 0x161000 +#define GRCBASE_TIMERS 0x164000 +#define GRCBASE_XSDM 0x166000 +#define GRCBASE_QM 0x168000 +#define GRCBASE_DQ 0x170000 +#define GRCBASE_TSEM 0x180000 +#define GRCBASE_CSEM 0x200000 +#define GRCBASE_XSEM 0x280000 +#define GRCBASE_USEM 0x300000 +#define GRCBASE_MISC_AEU GRCBASE_MISC + + +/*the offset of the configuration space in the pci core register*/ +#define PCICFG_OFFSET 0x2000 +#define PCICFG_VENDOR_ID_OFFSET 0x00 +#define PCICFG_DEVICE_ID_OFFSET 0x02 +#define PCICFG_SUBSYSTEM_VENDOR_ID_OFFSET 0x2c +#define PCICFG_SUBSYSTEM_ID_OFFSET 0x2e +#define PCICFG_INT_LINE 0x3c +#define PCICFG_INT_PIN 0x3d +#define PCICFG_CACHE_LINE_SIZE 0x0c +#define PCICFG_LATENCY_TIMER 0x0d +#define PCICFG_REVESION_ID 0x08 +#define PCICFG_BAR_1_LOW 0x10 +#define PCICFG_BAR_1_HIGH 0x14 +#define PCICFG_BAR_2_LOW 0x18 +#define PCICFG_BAR_2_HIGH 0x1c +#define PCICFG_GRC_ADDRESS 0x78 +#define PCICFG_GRC_DATA 0x80 +#define PCICFG_DEVICE_CONTROL 0xb4 +#define PCICFG_LINK_CONTROL 0xbc + +#define BAR_USTRORM_INTMEM 0x400000 +#define BAR_CSTRORM_INTMEM 0x410000 +#define BAR_XSTRORM_INTMEM 0x420000 +#define BAR_TSTRORM_INTMEM 0x430000 + +#define BAR_IGU_INTMEM 0x440000 + +#define BAR_DOORBELL_OFFSET 0x800000 + +#define BAR_ME_REGISTER 0x450000 + + +#define GRC_CONFIG_2_SIZE_REG 0x408 /* config_2 offset */ +#define PCI_CONFIG_2_BAR1_SIZE (0xfL<<0) +#define PCI_CONFIG_2_BAR1_SIZE_DISABLED (0L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_64K (1L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_128K (2L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_256K (3L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_512K (4L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_1M (5L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_2M (6L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_4M (7L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_8M (8L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_16M (9L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_32M (10L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_64M (11L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_128M (12L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_256M (13L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_512M (14L<<0) +#define PCI_CONFIG_2_BAR1_SIZE_1G (15L<<0) +#define PCI_CONFIG_2_BAR1_64ENA (1L<<4) +#define PCI_CONFIG_2_EXP_ROM_RETRY (1L<<5) +#define PCI_CONFIG_2_CFG_CYCLE_RETRY (1L<<6) +#define PCI_CONFIG_2_FIRST_CFG_DONE (1L<<7) +#define PCI_CONFIG_2_EXP_ROM_SIZE (0xffL<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_DISABLED (0L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_2K (1L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_4K (2L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_8K (3L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_16K (4L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_32K (5L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_64K (6L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_128K (7L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_256K (8L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_512K (9L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_1M (10L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_2M (11L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_4M (12L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_8M (13L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_16M (14L<<8) +#define PCI_CONFIG_2_EXP_ROM_SIZE_32M (15L<<8) +#define PCI_CONFIG_2_BAR_PREFETCH (1L<<16) +#define PCI_CONFIG_2_RESERVED0 (0x7fffL<<17) + +/* config_3 offset */ +#define GRC_CONFIG_3_SIZE_REG (0x40c) +#define PCI_CONFIG_3_STICKY_BYTE (0xffL<<0) +#define PCI_CONFIG_3_FORCE_PME (1L<<24) +#define PCI_CONFIG_3_PME_STATUS (1L<<25) +#define PCI_CONFIG_3_PME_ENABLE (1L<<26) +#define PCI_CONFIG_3_PM_STATE (0x3L<<27) +#define PCI_CONFIG_3_VAUX_PRESET (1L<<30) +#define PCI_CONFIG_3_PCI_POWER (1L<<31) + +/* config_2 offset */ +#define GRC_CONFIG_2_SIZE_REG 0x408 + +#define GRC_BAR2_CONFIG 0x4e0 +#define PCI_CONFIG_2_BAR2_SIZE (0xfL<<0) +#define PCI_CONFIG_2_BAR2_SIZE_DISABLED (0L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_64K (1L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_128K (2L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_256K (3L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_512K (4L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_1M (5L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_2M (6L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_4M (7L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_8M (8L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_16M (9L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_32M (10L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_64M (11L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_128M (12L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_256M (13L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_512M (14L<<0) +#define PCI_CONFIG_2_BAR2_SIZE_1G (15L<<0) +#define PCI_CONFIG_2_BAR2_64ENA (1L<<4) + +#define PCI_PM_DATA_A (0x410) +#define PCI_PM_DATA_B (0x414) +#define PCI_ID_VAL1 (0x434) +#define PCI_ID_VAL2 (0x438) + +#define MDIO_REG_BANK_CL73_IEEEB0 0x0 +#define MDIO_CL73_IEEEB0_CL73_AN_CONTROL 0x0 +#define MDIO_CL73_IEEEB0_CL73_AN_CONTROL_RESTART_AN 0x0200 +#define MDIO_CL73_IEEEB0_CL73_AN_CONTROL_AN_EN 0x1000 +#define MDIO_CL73_IEEEB0_CL73_AN_CONTROL_MAIN_RST 0x8000 + +#define MDIO_REG_BANK_CL73_IEEEB1 0x10 +#define MDIO_CL73_IEEEB1_AN_ADV2 0x01 +#define MDIO_CL73_IEEEB1_AN_ADV2_ADVR_1000M 0x0000 +#define MDIO_CL73_IEEEB1_AN_ADV2_ADVR_1000M_KX 0x0020 +#define MDIO_CL73_IEEEB1_AN_ADV2_ADVR_10G_KX4 0x0040 +#define MDIO_CL73_IEEEB1_AN_ADV2_ADVR_10G_KR 0x0080 + +#define MDIO_REG_BANK_RX0 0x80b0 +#define MDIO_RX0_RX_EQ_BOOST 0x1c +#define MDIO_RX0_RX_EQ_BOOST_EQUALIZER_CTRL_MASK 0x7 +#define MDIO_RX0_RX_EQ_BOOST_OFFSET_CTRL 0x10 + +#define MDIO_REG_BANK_RX1 0x80c0 +#define MDIO_RX1_RX_EQ_BOOST 0x1c +#define MDIO_RX1_RX_EQ_BOOST_EQUALIZER_CTRL_MASK 0x7 +#define MDIO_RX1_RX_EQ_BOOST_OFFSET_CTRL 0x10 + +#define MDIO_REG_BANK_RX2 0x80d0 +#define MDIO_RX2_RX_EQ_BOOST 0x1c +#define MDIO_RX2_RX_EQ_BOOST_EQUALIZER_CTRL_MASK 0x7 +#define MDIO_RX2_RX_EQ_BOOST_OFFSET_CTRL 0x10 + +#define MDIO_REG_BANK_RX3 0x80e0 +#define MDIO_RX3_RX_EQ_BOOST 0x1c +#define MDIO_RX3_RX_EQ_BOOST_EQUALIZER_CTRL_MASK 0x7 +#define MDIO_RX3_RX_EQ_BOOST_OFFSET_CTRL 0x10 + +#define MDIO_REG_BANK_RX_ALL 0x80f0 +#define MDIO_RX_ALL_RX_EQ_BOOST 0x1c +#define MDIO_RX_ALL_RX_EQ_BOOST_EQUALIZER_CTRL_MASK 0x7 +#define MDIO_RX_ALL_RX_EQ_BOOST_OFFSET_CTRL 0x10 + +#define MDIO_REG_BANK_TX0 0x8060 +#define MDIO_TX0_TX_DRIVER 0x17 +#define MDIO_TX0_TX_DRIVER_PREEMPHASIS_MASK 0xf000 +#define MDIO_TX0_TX_DRIVER_PREEMPHASIS_SHIFT 12 +#define MDIO_TX0_TX_DRIVER_IDRIVER_MASK 0x0f00 +#define MDIO_TX0_TX_DRIVER_IDRIVER_SHIFT 8 +#define MDIO_TX0_TX_DRIVER_IPREDRIVER_MASK 0x00f0 +#define MDIO_TX0_TX_DRIVER_IPREDRIVER_SHIFT 4 +#define MDIO_TX0_TX_DRIVER_IFULLSPD_MASK 0x000e +#define MDIO_TX0_TX_DRIVER_IFULLSPD_SHIFT 1 +#define MDIO_TX0_TX_DRIVER_ICBUF1T 1 + +#define MDIO_REG_BANK_XGXS_BLOCK0 0x8000 +#define MDIO_BLOCK0_XGXS_CONTROL 0x10 + +#define MDIO_REG_BANK_XGXS_BLOCK1 0x8010 +#define MDIO_BLOCK1_LANE_CTRL0 0x15 +#define MDIO_BLOCK1_LANE_CTRL1 0x16 +#define MDIO_BLOCK1_LANE_CTRL2 0x17 +#define MDIO_BLOCK1_LANE_PRBS 0x19 + +#define MDIO_REG_BANK_XGXS_BLOCK2 0x8100 +#define MDIO_XGXS_BLOCK2_RX_LN_SWAP 0x10 +#define MDIO_XGXS_BLOCK2_RX_LN_SWAP_ENABLE 0x8000 +#define MDIO_XGXS_BLOCK2_RX_LN_SWAP_FORCE_ENABLE 0x4000 +#define MDIO_XGXS_BLOCK2_TX_LN_SWAP 0x11 +#define MDIO_XGXS_BLOCK2_TX_LN_SWAP_ENABLE 0x8000 +#define MDIO_XGXS_BLOCK2_TEST_MODE_LANE 0x15 + +#define MDIO_REG_BANK_GP_STATUS 0x8120 +#define MDIO_GP_STATUS_TOP_AN_STATUS1 0x1B +#define MDIO_GP_STATUS_TOP_AN_STATUS1_CL73_AUTONEG_COMPLETE 0x0001 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_CL37_AUTONEG_COMPLETE 0x0002 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_LINK_STATUS 0x0004 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_DUPLEX_STATUS 0x0008 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_CL73_MR_LP_NP_AN_ABLE 0x0010 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_CL73_LP_NP_BAM_ABLE 0x0020 + +#define MDIO_GP_STATUS_TOP_AN_STATUS1_PAUSE_RSOLUTION_TXSIDE 0x0040 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_PAUSE_RSOLUTION_RXSIDE 0x0080 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_MASK 0x3f00 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10M 0x0000 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_100M 0x0100 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_1G 0x0200 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_2_5G 0x0300 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_5G 0x0400 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_6G 0x0500 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10G_HIG 0x0600 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10G_CX4 0x0700 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_12G_HIG 0x0800 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_12_5G 0x0900 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_13G 0x0A00 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_15G 0x0B00 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_16G 0x0C00 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_1G_KX 0x0D00 +#define MDIO_GP_STATUS_TOP_AN_STATUS1_ACTUAL_SPEED_10G_KX4 0x0E00 + + +#define MDIO_REG_BANK_10G_PARALLEL_DETECT 0x8130 +#define MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_CONTROL 0x11 +#define MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_CONTROL_PARDET10G_EN 0x1 +#define MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_LINK 0x13 +#define MDIO_10G_PARALLEL_DETECT_PAR_DET_10G_LINK_CNT (0xb71<<1) + +#define MDIO_REG_BANK_SERDES_DIGITAL 0x8300 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1 0x10 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_FIBER_MODE 0x0001 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_TBI_IF 0x0002 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_SIGNAL_DETECT_EN 0x0004 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_INVERT_SIGNAL_DETECT 0x0008 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_AUTODET 0x0010 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL1_MSTR_MODE 0x0020 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL2 0x11 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL2_PRL_DT_EN 0x0001 +#define MDIO_SERDES_DIGITAL_A_1000X_CONTROL2_AN_FST_TMR 0x0040 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1 0x14 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_DUPLEX 0x0004 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_SPEED_MASK 0x0018 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_SPEED_SHIFT 3 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_SPEED_2_5G 0x0018 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_SPEED_1G 0x0010 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_SPEED_100M 0x0008 +#define MDIO_SERDES_DIGITAL_A_1000X_STATUS1_SPEED_10M 0x0000 +#define MDIO_SERDES_DIGITAL_MISC1 0x18 +#define MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_MASK 0xE000 +#define MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_25M 0x0000 +#define MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_100M 0x2000 +#define MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_125M 0x4000 +#define MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_156_25M 0x6000 +#define MDIO_SERDES_DIGITAL_MISC1_REFCLK_SEL_187_5M 0x8000 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_SEL 0x0010 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_MASK 0x000f +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_2_5G 0x0000 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_5G 0x0001 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_6G 0x0002 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_10G_HIG 0x0003 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_10G_CX4 0x0004 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_12G 0x0005 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_12_5G 0x0006 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_13G 0x0007 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_15G 0x0008 +#define MDIO_SERDES_DIGITAL_MISC1_FORCE_SPEED_16G 0x0009 + +#define MDIO_REG_BANK_OVER_1G 0x8320 +#define MDIO_OVER_1G_DIGCTL_3_4 0x14 +#define MDIO_OVER_1G_DIGCTL_3_4_MP_ID_MASK 0xffe0 +#define MDIO_OVER_1G_DIGCTL_3_4_MP_ID_SHIFT 5 +#define MDIO_OVER_1G_UP1 0x19 +#define MDIO_OVER_1G_UP1_2_5G 0x0001 +#define MDIO_OVER_1G_UP1_5G 0x0002 +#define MDIO_OVER_1G_UP1_6G 0x0004 +#define MDIO_OVER_1G_UP1_10G 0x0010 +#define MDIO_OVER_1G_UP1_10GH 0x0008 +#define MDIO_OVER_1G_UP1_12G 0x0020 +#define MDIO_OVER_1G_UP1_12_5G 0x0040 +#define MDIO_OVER_1G_UP1_13G 0x0080 +#define MDIO_OVER_1G_UP1_15G 0x0100 +#define MDIO_OVER_1G_UP1_16G 0x0200 +#define MDIO_OVER_1G_UP2 0x1A +#define MDIO_OVER_1G_UP2_IPREDRIVER_MASK 0x0007 +#define MDIO_OVER_1G_UP2_IDRIVER_MASK 0x0038 +#define MDIO_OVER_1G_UP2_PREEMPHASIS_MASK 0x03C0 +#define MDIO_OVER_1G_UP3 0x1B +#define MDIO_OVER_1G_UP3_HIGIG2 0x0001 +#define MDIO_OVER_1G_LP_UP1 0x1C +#define MDIO_OVER_1G_LP_UP2 0x1D +#define MDIO_OVER_1G_LP_UP2_MR_ADV_OVER_1G_MASK 0x03ff +#define MDIO_OVER_1G_LP_UP2_PREEMPHASIS_MASK 0x0780 +#define MDIO_OVER_1G_LP_UP2_PREEMPHASIS_SHIFT 7 +#define MDIO_OVER_1G_LP_UP3 0x1E + +#define MDIO_REG_BANK_BAM_NEXT_PAGE 0x8350 +#define MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL 0x10 +#define MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL_BAM_MODE 0x0001 +#define MDIO_BAM_NEXT_PAGE_MP5_NEXT_PAGE_CTRL_TETON_AN 0x0002 + +#define MDIO_REG_BANK_CL73_USERB0 0x8370 +#define MDIO_CL73_USERB0_CL73_BAM_CTRL1 0x12 +#define MDIO_CL73_USERB0_CL73_BAM_CTRL1_BAM_EN 0x8000 +#define MDIO_CL73_USERB0_CL73_BAM_CTRL1_BAM_STATION_MNGR_EN 0x4000 +#define MDIO_CL73_USERB0_CL73_BAM_CTRL1_BAM_NP_AFTER_BP_EN 0x2000 +#define MDIO_CL73_USERB0_CL73_BAM_CTRL3 0x14 +#define MDIO_CL73_USERB0_CL73_BAM_CTRL3_USE_CL73_HCD_MR 0x0001 + +#define MDIO_REG_BANK_AER_BLOCK 0xFFD0 +#define MDIO_AER_BLOCK_AER_REG 0x1E + +#define MDIO_REG_BANK_COMBO_IEEE0 0xFFE0 +#define MDIO_COMBO_IEEE0_MII_CONTROL 0x10 +#define MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_MASK 0x2040 +#define MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_10 0x0000 +#define MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_100 0x2000 +#define MDIO_COMBO_IEEO_MII_CONTROL_MAN_SGMII_SP_1000 0x0040 +#define MDIO_COMBO_IEEO_MII_CONTROL_FULL_DUPLEX 0x0100 +#define MDIO_COMBO_IEEO_MII_CONTROL_RESTART_AN 0x0200 +#define MDIO_COMBO_IEEO_MII_CONTROL_AN_EN 0x1000 +#define MDIO_COMBO_IEEO_MII_CONTROL_LOOPBACK 0x4000 +#define MDIO_COMBO_IEEO_MII_CONTROL_RESET 0x8000 +#define MDIO_COMBO_IEEE0_MII_STATUS 0x11 +#define MDIO_COMBO_IEEE0_MII_STATUS_LINK_PASS 0x0004 +#define MDIO_COMBO_IEEE0_MII_STATUS_AUTONEG_COMPLETE 0x0020 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV 0x14 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_FULL_DUPLEX 0x0020 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_HALF_DUPLEX 0x0040 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_MASK 0x0180 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_NONE 0x0000 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_SYMMETRIC 0x0080 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_ASYMMETRIC 0x0100 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_PAUSE_BOTH 0x0180 +#define MDIO_COMBO_IEEE0_AUTO_NEG_ADV_NEXT_PAGE 0x8000 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1 0x15 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_NEXT_PAGE 0x8000 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_ACK 0x4000 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_PAUSE_MASK 0x0180 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_PAUSE_NONE\ + 0x0000 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_PAUSE_BOTH\ + 0x0180 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_HALF_DUP_CAP 0x0040 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_FULL_DUP_CAP 0x0020 +#define MDIO_COMBO_IEEE0_AUTO_NEG_LINK_PARTNER_ABILITY1_SGMII_MODE 0x0001 + + +#define EXT_PHY_OPT_PMA_PMD_DEVAD 0x1 +#define EXT_PHY_OPT_WIS_DEVAD 0x2 +#define EXT_PHY_OPT_PCS_DEVAD 0x3 +#define EXT_PHY_OPT_PHY_XS_DEVAD 0x4 +#define EXT_PHY_OPT_CNTL 0x0 +#define EXT_PHY_OPT_PMD_RX_SD 0xa +#define EXT_PHY_OPT_PMD_MISC_CNTL 0xca0a +#define EXT_PHY_OPT_PHY_IDENTIFIER 0xc800 +#define EXT_PHY_OPT_PMD_DIGITAL_CNT 0xc808 +#define EXT_PHY_OPT_PMD_DIGITAL_SATUS 0xc809 +#define EXT_PHY_OPT_CMU_PLL_BYPASS 0xca09 +#define EXT_PHY_OPT_LASI_CNTL 0x9002 +#define EXT_PHY_OPT_RX_ALARM 0x9003 +#define EXT_PHY_OPT_LASI_STATUS 0x9005 +#define EXT_PHY_OPT_PCS_STATUS 0x0020 +#define EXT_PHY_OPT_XGXS_LANE_STATUS 0x0018 + +#define EXT_PHY_KR_PMA_PMD_DEVAD 0x1 +#define EXT_PHY_KR_PCS_DEVAD 0x3 +#define EXT_PHY_KR_AUTO_NEG_DEVAD 0x7 +#define EXT_PHY_KR_CTRL 0x0000 +#define EXT_PHY_KR_CTRL2 0x0007 +#define EXT_PHY_KR_PCS_STATUS 0x0020 +#define EXT_PHY_KR_PMD_CTRL 0x0096 +#define EXT_PHY_KR_LASI_CNTL 0x9002 +#define EXT_PHY_KR_LASI_STATUS 0x9005 +#define EXT_PHY_KR_MISC_CTRL1 0xca85 +#define EXT_PHY_KR_GEN_CTRL 0xca10 +#define EXT_PHY_KR_ROM_CODE 0xca19 + diff --git a/include/linux/pci_ids.h b/include/linux/pci_ids.h index 1fbd0256e86b..f162d9c1226c 100644 --- a/include/linux/pci_ids.h +++ b/include/linux/pci_ids.h @@ -1943,6 +1943,7 @@ #define PCI_DEVICE_ID_NX2_5706 0x164a #define PCI_DEVICE_ID_NX2_5708 0x164c #define PCI_DEVICE_ID_TIGON3_5702FE 0x164d +#define PCI_DEVICE_ID_NX2_57710 0x164e #define PCI_DEVICE_ID_TIGON3_5705 0x1653 #define PCI_DEVICE_ID_TIGON3_5705_2 0x1654 #define PCI_DEVICE_ID_TIGON3_5720 0x1658 |