/* * Simulate a SPI port * * Copyright (c) 2011-2013 The Chromium OS Authors. * See file CREDITS for list of people who contributed to this * project. * * Licensed under the GPL-2 or later. */ #include #include #include #include #include #include #include #include #include #include DECLARE_GLOBAL_DATA_PTR; #ifndef CONFIG_SPI_IDLE_VAL # define CONFIG_SPI_IDLE_VAL 0xFF #endif const char *sandbox_spi_parse_spec(const char *arg, unsigned long *bus, unsigned long *cs) { char *endp; *bus = simple_strtoul(arg, &endp, 0); if (*endp != ':' || *bus >= CONFIG_SANDBOX_SPI_MAX_BUS) return NULL; *cs = simple_strtoul(endp + 1, &endp, 0); if (*endp != ':' || *cs >= CONFIG_SANDBOX_SPI_MAX_CS) return NULL; return endp + 1; } __weak int sandbox_spi_get_emul(struct sandbox_state *state, struct udevice *bus, struct udevice *slave, struct udevice **emulp) { return -ENOENT; } static int sandbox_spi_xfer(struct udevice *slave, unsigned int bitlen, const void *dout, void *din, unsigned long flags) { struct udevice *bus = slave->parent; struct sandbox_state *state = state_get_current(); struct dm_spi_emul_ops *ops; struct udevice *emul; uint bytes = bitlen / 8, i; int ret; u8 *tx = (void *)dout, *rx = din; uint busnum, cs; if (bitlen == 0) return 0; /* we can only do 8 bit transfers */ if (bitlen % 8) { printf("sandbox_spi: xfer: invalid bitlen size %u; needs to be 8bit\n", bitlen); return -EINVAL; } busnum = bus->seq; cs = spi_chip_select(slave); if (busnum >= CONFIG_SANDBOX_SPI_MAX_BUS || cs >= CONFIG_SANDBOX_SPI_MAX_CS) { printf("%s: busnum=%u, cs=%u: out of range\n", __func__, busnum, cs); return -ENOENT; } ret = sandbox_spi_get_emul(state, bus, slave, &emul); if (ret) { printf("%s: busnum=%u, cs=%u: no emulation available (err=%d)\n", __func__, busnum, cs, ret); return -ENOENT; } ret = device_probe(emul); if (ret) return ret; /* make sure rx/tx buffers are full so clients can assume */ if (!tx) { debug("sandbox_spi: xfer: auto-allocating tx scratch buffer\n"); tx = malloc(bytes); if (!tx) { debug("sandbox_spi: Out of memory\n"); return -ENOMEM; } } if (!rx) { debug("sandbox_spi: xfer: auto-allocating rx scratch buffer\n"); rx = malloc(bytes); if (!rx) { debug("sandbox_spi: Out of memory\n"); return -ENOMEM; } } ops = spi_emul_get_ops(emul); ret = ops->xfer(emul, bitlen, dout, din, flags); debug("sandbox_spi: xfer: got back %i (that's %s)\n rx:", ret, ret ? "bad" : "good"); for (i = 0; i < bytes; ++i) debug(" %u:%02x", i, rx[i]); debug("\n"); if (tx != dout) free(tx); if (rx != din) free(rx); return ret; } static int sandbox_spi_set_speed(struct udevice *bus, uint speed) { return 0; } static int sandbox_spi_set_mode(struct udevice *bus, uint mode) { return 0; } static int sandbox_cs_info(struct udevice *bus, uint cs, struct spi_cs_info *info) { /* Always allow activity on CS 0 */ if (cs >= 1) return -ENODEV; return 0; } static const struct dm_spi_ops sandbox_spi_ops = { .xfer = sandbox_spi_xfer, .set_speed = sandbox_spi_set_speed, .set_mode = sandbox_spi_set_mode, .cs_info = sandbox_cs_info, }; static const struct udevice_id sandbox_spi_ids[] = { { .compatible = "sandbox,spi" }, { } }; U_BOOT_DRIVER(spi_sandbox) = { .name = "spi_sandbox", .id = UCLASS_SPI, .of_match = sandbox_spi_ids, .ops = &sandbox_spi_ops, };