diff options
Diffstat (limited to 'drivers/thunderbolt/tb.h')
-rw-r--r-- | drivers/thunderbolt/tb.h | 182 |
1 files changed, 177 insertions, 5 deletions
diff --git a/drivers/thunderbolt/tb.h b/drivers/thunderbolt/tb.h index 6407d529871d..2eb2bcd3cca3 100644 --- a/drivers/thunderbolt/tb.h +++ b/drivers/thunderbolt/tb.h @@ -44,6 +44,39 @@ struct tb_switch_nvm { #define TB_SWITCH_KEY_SIZE 32 #define TB_SWITCH_MAX_DEPTH 6 +#define USB4_SWITCH_MAX_DEPTH 5 + +/** + * enum tb_switch_tmu_rate - TMU refresh rate + * @TB_SWITCH_TMU_RATE_OFF: %0 (Disable Time Sync handshake) + * @TB_SWITCH_TMU_RATE_HIFI: %16 us time interval between successive + * transmission of the Delay Request TSNOS + * (Time Sync Notification Ordered Set) on a Link + * @TB_SWITCH_TMU_RATE_NORMAL: %1 ms time interval between successive + * transmission of the Delay Request TSNOS on + * a Link + */ +enum tb_switch_tmu_rate { + TB_SWITCH_TMU_RATE_OFF = 0, + TB_SWITCH_TMU_RATE_HIFI = 16, + TB_SWITCH_TMU_RATE_NORMAL = 1000, +}; + +/** + * struct tb_switch_tmu - Structure holding switch TMU configuration + * @cap: Offset to the TMU capability (%0 if not found) + * @has_ucap: Does the switch support uni-directional mode + * @rate: TMU refresh rate related to upstream switch. In case of root + * switch this holds the domain rate. + * @unidirectional: Is the TMU in uni-directional or bi-directional mode + * related to upstream switch. Don't case for root switch. + */ +struct tb_switch_tmu { + int cap; + bool has_ucap; + enum tb_switch_tmu_rate rate; + bool unidirectional; +}; /** * struct tb_switch - a thunderbolt switch @@ -54,6 +87,7 @@ struct tb_switch_nvm { * mailbox this will hold the pointer to that (%NULL * otherwise). If set it also means the switch has * upgradeable NVM. + * @tmu: The switch TMU configuration * @tb: Pointer to the domain the switch belongs to * @uid: Unique ID of the switch * @uuid: UUID of the switch (or %NULL if not supported) @@ -61,6 +95,8 @@ struct tb_switch_nvm { * @device: Device ID of the switch * @vendor_name: Name of the vendor (or %NULL if not known) * @device_name: Name of the device (or %NULL if not known) + * @link_speed: Speed of the link in Gb/s + * @link_width: Width of the link (1 or 2) * @generation: Switch Thunderbolt generation * @cap_plug_events: Offset to the plug events capability (%0 if not found) * @cap_lc: Offset to the link controller capability (%0 if not found) @@ -90,6 +126,7 @@ struct tb_switch { struct tb_regs_switch_header config; struct tb_port *ports; struct tb_dma_port *dma_port; + struct tb_switch_tmu tmu; struct tb *tb; u64 uid; uuid_t *uuid; @@ -97,6 +134,8 @@ struct tb_switch { u16 device; const char *vendor_name; const char *device_name; + unsigned int link_speed; + unsigned int link_width; unsigned int generation; int cap_plug_events; int cap_lc; @@ -124,14 +163,18 @@ struct tb_switch { * @remote: Remote port (%NULL if not connected) * @xdomain: Remote host (%NULL if not connected) * @cap_phy: Offset, zero if not found + * @cap_tmu: Offset of the adapter specific TMU capability (%0 if not present) * @cap_adap: Offset of the adapter specific capability (%0 if not present) + * @cap_usb4: Offset to the USB4 port capability (%0 if not present) * @port: Port number on switch * @disabled: Disabled by eeprom + * @bonded: true if the port is bonded (two lanes combined as one) * @dual_link_port: If the switch is connected using two ports, points * to the other port. * @link_nr: Is this primary or secondary port on the dual_link. * @in_hopids: Currently allocated input HopIDs * @out_hopids: Currently allocated output HopIDs + * @list: Used to link ports to DP resources list */ struct tb_port { struct tb_regs_port_header config; @@ -139,13 +182,17 @@ struct tb_port { struct tb_port *remote; struct tb_xdomain *xdomain; int cap_phy; + int cap_tmu; int cap_adap; + int cap_usb4; u8 port; bool disabled; + bool bonded; struct tb_port *dual_link_port; u8 link_nr:1; struct ida in_hopids; struct ida out_hopids; + struct list_head list; }; /** @@ -385,6 +432,16 @@ static inline bool tb_port_is_dpout(const struct tb_port *port) return port && port->config.type == TB_TYPE_DP_HDMI_OUT; } +static inline bool tb_port_is_usb3_down(const struct tb_port *port) +{ + return port && port->config.type == TB_TYPE_USB3_DOWN; +} + +static inline bool tb_port_is_usb3_up(const struct tb_port *port) +{ + return port && port->config.type == TB_TYPE_USB3_UP; +} + static inline int tb_sw_read(struct tb_switch *sw, void *buffer, enum tb_cfg_space space, u32 offset, u32 length) { @@ -399,7 +456,7 @@ static inline int tb_sw_read(struct tb_switch *sw, void *buffer, length); } -static inline int tb_sw_write(struct tb_switch *sw, void *buffer, +static inline int tb_sw_write(struct tb_switch *sw, const void *buffer, enum tb_cfg_space space, u32 offset, u32 length) { if (sw->is_unplugged) @@ -525,11 +582,24 @@ void tb_switch_suspend(struct tb_switch *sw); int tb_switch_resume(struct tb_switch *sw); int tb_switch_reset(struct tb *tb, u64 route); void tb_sw_set_unplugged(struct tb_switch *sw); +struct tb_port *tb_switch_find_port(struct tb_switch *sw, + enum tb_port_type type); struct tb_switch *tb_switch_find_by_link_depth(struct tb *tb, u8 link, u8 depth); struct tb_switch *tb_switch_find_by_uuid(struct tb *tb, const uuid_t *uuid); struct tb_switch *tb_switch_find_by_route(struct tb *tb, u64 route); +/** + * tb_switch_for_each_port() - Iterate over each switch port + * @sw: Switch whose ports to iterate + * @p: Port used as iterator + * + * Iterates over each switch port skipping the control port (port %0). + */ +#define tb_switch_for_each_port(sw, p) \ + for ((p) = &(sw)->ports[1]; \ + (p) <= &(sw)->ports[(sw)->config.max_port_number]; (p)++) + static inline struct tb_switch *tb_switch_get(struct tb_switch *sw) { if (sw) @@ -559,17 +629,17 @@ static inline struct tb_switch *tb_switch_parent(struct tb_switch *sw) return tb_to_switch(sw->dev.parent); } -static inline bool tb_switch_is_lr(const struct tb_switch *sw) +static inline bool tb_switch_is_light_ridge(const struct tb_switch *sw) { return sw->config.device_id == PCI_DEVICE_ID_INTEL_LIGHT_RIDGE; } -static inline bool tb_switch_is_er(const struct tb_switch *sw) +static inline bool tb_switch_is_eagle_ridge(const struct tb_switch *sw) { return sw->config.device_id == PCI_DEVICE_ID_INTEL_EAGLE_RIDGE; } -static inline bool tb_switch_is_cr(const struct tb_switch *sw) +static inline bool tb_switch_is_cactus_ridge(const struct tb_switch *sw) { switch (sw->config.device_id) { case PCI_DEVICE_ID_INTEL_CACTUS_RIDGE_2C: @@ -580,7 +650,7 @@ static inline bool tb_switch_is_cr(const struct tb_switch *sw) } } -static inline bool tb_switch_is_fr(const struct tb_switch *sw) +static inline bool tb_switch_is_falcon_ridge(const struct tb_switch *sw) { switch (sw->config.device_id) { case PCI_DEVICE_ID_INTEL_FALCON_RIDGE_2C_BRIDGE: @@ -591,10 +661,79 @@ static inline bool tb_switch_is_fr(const struct tb_switch *sw) } } +static inline bool tb_switch_is_alpine_ridge(const struct tb_switch *sw) +{ + switch (sw->config.device_id) { + case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_2C_BRIDGE: + case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_LP_BRIDGE: + case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_4C_BRIDGE: + case PCI_DEVICE_ID_INTEL_ALPINE_RIDGE_C_2C_BRIDGE: + return true; + default: + return false; + } +} + +static inline bool tb_switch_is_titan_ridge(const struct tb_switch *sw) +{ + switch (sw->config.device_id) { + case PCI_DEVICE_ID_INTEL_TITAN_RIDGE_2C_BRIDGE: + case PCI_DEVICE_ID_INTEL_TITAN_RIDGE_4C_BRIDGE: + case PCI_DEVICE_ID_INTEL_TITAN_RIDGE_DD_BRIDGE: + return true; + default: + return false; + } +} + +/** + * tb_switch_is_usb4() - Is the switch USB4 compliant + * @sw: Switch to check + * + * Returns true if the @sw is USB4 compliant router, false otherwise. + */ +static inline bool tb_switch_is_usb4(const struct tb_switch *sw) +{ + return sw->config.thunderbolt_version == USB4_VERSION_1_0; +} + +/** + * tb_switch_is_icm() - Is the switch handled by ICM firmware + * @sw: Switch to check + * + * In case there is a need to differentiate whether ICM firmware or SW CM + * is handling @sw this function can be called. It is valid to call this + * after tb_switch_alloc() and tb_switch_configure() has been called + * (latter only for SW CM case). + */ +static inline bool tb_switch_is_icm(const struct tb_switch *sw) +{ + return !sw->config.enabled; +} + +int tb_switch_lane_bonding_enable(struct tb_switch *sw); +void tb_switch_lane_bonding_disable(struct tb_switch *sw); + +bool tb_switch_query_dp_resource(struct tb_switch *sw, struct tb_port *in); +int tb_switch_alloc_dp_resource(struct tb_switch *sw, struct tb_port *in); +void tb_switch_dealloc_dp_resource(struct tb_switch *sw, struct tb_port *in); + +int tb_switch_tmu_init(struct tb_switch *sw); +int tb_switch_tmu_post_time(struct tb_switch *sw); +int tb_switch_tmu_disable(struct tb_switch *sw); +int tb_switch_tmu_enable(struct tb_switch *sw); + +static inline bool tb_switch_tmu_is_enabled(const struct tb_switch *sw) +{ + return sw->tmu.rate == TB_SWITCH_TMU_RATE_HIFI && + !sw->tmu.unidirectional; +} + int tb_wait_for_port(struct tb_port *port, bool wait_if_unplugged); int tb_port_add_nfc_credits(struct tb_port *port, int credits); int tb_port_set_initial_credits(struct tb_port *port, u32 credits); int tb_port_clear_counter(struct tb_port *port, int counter); +int tb_port_unlock(struct tb_port *port); int tb_port_alloc_in_hopid(struct tb_port *port, int hopid, int max_hopid); void tb_port_release_in_hopid(struct tb_port *port, int hopid); int tb_port_alloc_out_hopid(struct tb_port *port, int hopid, int max_hopid); @@ -603,9 +742,13 @@ struct tb_port *tb_next_port_on_path(struct tb_port *start, struct tb_port *end, struct tb_port *prev); int tb_switch_find_vse_cap(struct tb_switch *sw, enum tb_switch_vse_cap vsec); +int tb_switch_find_cap(struct tb_switch *sw, enum tb_switch_cap cap); int tb_port_find_cap(struct tb_port *port, enum tb_port_cap cap); bool tb_port_is_enabled(struct tb_port *port); +bool tb_usb3_port_is_enabled(struct tb_port *port); +int tb_usb3_port_enable(struct tb_port *port, bool enable); + bool tb_pci_port_is_enabled(struct tb_port *port); int tb_pci_port_enable(struct tb_port *port, bool enable); @@ -626,6 +769,8 @@ void tb_path_free(struct tb_path *path); int tb_path_activate(struct tb_path *path); void tb_path_deactivate(struct tb_path *path); bool tb_path_is_invalid(struct tb_path *path); +bool tb_path_switch_on_path(const struct tb_path *path, + const struct tb_switch *sw); int tb_drom_read(struct tb_switch *sw); int tb_drom_read_uid_only(struct tb_switch *sw, u64 *uid); @@ -634,6 +779,10 @@ int tb_lc_read_uuid(struct tb_switch *sw, u32 *uuid); int tb_lc_configure_link(struct tb_switch *sw); void tb_lc_unconfigure_link(struct tb_switch *sw); int tb_lc_set_sleep(struct tb_switch *sw); +bool tb_lc_lane_bonding_possible(struct tb_switch *sw); +bool tb_lc_dp_sink_query(struct tb_switch *sw, struct tb_port *in); +int tb_lc_dp_sink_alloc(struct tb_switch *sw, struct tb_port *in); +int tb_lc_dp_sink_dealloc(struct tb_switch *sw, struct tb_port *in); static inline int tb_route_length(u64 route) { @@ -663,4 +812,27 @@ void tb_xdomain_remove(struct tb_xdomain *xd); struct tb_xdomain *tb_xdomain_find_by_link_depth(struct tb *tb, u8 link, u8 depth); +int usb4_switch_setup(struct tb_switch *sw); +int usb4_switch_read_uid(struct tb_switch *sw, u64 *uid); +int usb4_switch_drom_read(struct tb_switch *sw, unsigned int address, void *buf, + size_t size); +int usb4_switch_configure_link(struct tb_switch *sw); +void usb4_switch_unconfigure_link(struct tb_switch *sw); +bool usb4_switch_lane_bonding_possible(struct tb_switch *sw); +int usb4_switch_set_sleep(struct tb_switch *sw); +int usb4_switch_nvm_sector_size(struct tb_switch *sw); +int usb4_switch_nvm_read(struct tb_switch *sw, unsigned int address, void *buf, + size_t size); +int usb4_switch_nvm_write(struct tb_switch *sw, unsigned int address, + const void *buf, size_t size); +int usb4_switch_nvm_authenticate(struct tb_switch *sw); +bool usb4_switch_query_dp_resource(struct tb_switch *sw, struct tb_port *in); +int usb4_switch_alloc_dp_resource(struct tb_switch *sw, struct tb_port *in); +int usb4_switch_dealloc_dp_resource(struct tb_switch *sw, struct tb_port *in); +struct tb_port *usb4_switch_map_pcie_down(struct tb_switch *sw, + const struct tb_port *port); +struct tb_port *usb4_switch_map_usb3_down(struct tb_switch *sw, + const struct tb_port *port); + +int usb4_port_unlock(struct tb_port *port); #endif |