ufshcd.h 48 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-or-later */
  2. /*
  3. * Universal Flash Storage Host controller driver
  4. * Copyright (C) 2011-2013 Samsung India Software Operations
  5. * Copyright (c) 2013-2016, The Linux Foundation. All rights reserved.
  6. *
  7. * Authors:
  8. * Santosh Yaraganavi <santosh.sy@samsung.com>
  9. * Vinayak Holikatti <h.vinayak@samsung.com>
  10. */
  11. #ifndef _UFSHCD_H
  12. #define _UFSHCD_H
  13. #include <linux/bitfield.h>
  14. #include <linux/blk-crypto-profile.h>
  15. #include <linux/blk-mq.h>
  16. #include <linux/devfreq.h>
  17. #include <linux/fault-inject.h>
  18. #include <linux/debugfs.h>
  19. #include <linux/msi.h>
  20. #include <linux/pm_runtime.h>
  21. #include <linux/dma-direction.h>
  22. #include <scsi/scsi_device.h>
  23. #include <scsi/scsi_host.h>
  24. #include <ufs/unipro.h>
  25. #include <ufs/ufs.h>
  26. #include <ufs/ufs_quirks.h>
  27. #include <ufs/ufshci.h>
  28. #define UFSHCD "ufshcd"
  29. struct scsi_device;
  30. struct ufs_hba;
  31. enum dev_cmd_type {
  32. DEV_CMD_TYPE_NOP = 0x0,
  33. DEV_CMD_TYPE_QUERY = 0x1,
  34. DEV_CMD_TYPE_RPMB = 0x2,
  35. };
  36. enum ufs_event_type {
  37. /* uic specific errors */
  38. UFS_EVT_PA_ERR = 0,
  39. UFS_EVT_DL_ERR,
  40. UFS_EVT_NL_ERR,
  41. UFS_EVT_TL_ERR,
  42. UFS_EVT_DME_ERR,
  43. /* fatal errors */
  44. UFS_EVT_AUTO_HIBERN8_ERR,
  45. UFS_EVT_FATAL_ERR,
  46. UFS_EVT_LINK_STARTUP_FAIL,
  47. UFS_EVT_RESUME_ERR,
  48. UFS_EVT_SUSPEND_ERR,
  49. UFS_EVT_WL_SUSP_ERR,
  50. UFS_EVT_WL_RES_ERR,
  51. /* abnormal events */
  52. UFS_EVT_DEV_RESET,
  53. UFS_EVT_HOST_RESET,
  54. UFS_EVT_ABORT,
  55. UFS_EVT_CNT,
  56. };
  57. /**
  58. * struct uic_command - UIC command structure
  59. * @command: UIC command
  60. * @argument1: UIC command argument 1
  61. * @argument2: UIC command argument 2
  62. * @argument3: UIC command argument 3
  63. * @cmd_active: Indicate if UIC command is outstanding
  64. * @done: UIC command completion
  65. */
  66. struct uic_command {
  67. const u32 command;
  68. const u32 argument1;
  69. u32 argument2;
  70. u32 argument3;
  71. int cmd_active;
  72. struct completion done;
  73. };
  74. /* Used to differentiate the power management options */
  75. enum ufs_pm_op {
  76. UFS_RUNTIME_PM,
  77. UFS_SYSTEM_PM,
  78. UFS_SHUTDOWN_PM,
  79. };
  80. /* Host <-> Device UniPro Link state */
  81. enum uic_link_state {
  82. UIC_LINK_OFF_STATE = 0, /* Link powered down or disabled */
  83. UIC_LINK_ACTIVE_STATE = 1, /* Link is in Fast/Slow/Sleep state */
  84. UIC_LINK_HIBERN8_STATE = 2, /* Link is in Hibernate state */
  85. UIC_LINK_BROKEN_STATE = 3, /* Link is in broken state */
  86. };
  87. #define ufshcd_is_link_off(hba) ((hba)->uic_link_state == UIC_LINK_OFF_STATE)
  88. #define ufshcd_is_link_active(hba) ((hba)->uic_link_state == \
  89. UIC_LINK_ACTIVE_STATE)
  90. #define ufshcd_is_link_hibern8(hba) ((hba)->uic_link_state == \
  91. UIC_LINK_HIBERN8_STATE)
  92. #define ufshcd_is_link_broken(hba) ((hba)->uic_link_state == \
  93. UIC_LINK_BROKEN_STATE)
  94. #define ufshcd_set_link_off(hba) ((hba)->uic_link_state = UIC_LINK_OFF_STATE)
  95. #define ufshcd_set_link_active(hba) ((hba)->uic_link_state = \
  96. UIC_LINK_ACTIVE_STATE)
  97. #define ufshcd_set_link_hibern8(hba) ((hba)->uic_link_state = \
  98. UIC_LINK_HIBERN8_STATE)
  99. #define ufshcd_set_link_broken(hba) ((hba)->uic_link_state = \
  100. UIC_LINK_BROKEN_STATE)
  101. #define ufshcd_set_ufs_dev_active(h) \
  102. ((h)->curr_dev_pwr_mode = UFS_ACTIVE_PWR_MODE)
  103. #define ufshcd_set_ufs_dev_sleep(h) \
  104. ((h)->curr_dev_pwr_mode = UFS_SLEEP_PWR_MODE)
  105. #define ufshcd_set_ufs_dev_poweroff(h) \
  106. ((h)->curr_dev_pwr_mode = UFS_POWERDOWN_PWR_MODE)
  107. #define ufshcd_set_ufs_dev_deepsleep(h) \
  108. ((h)->curr_dev_pwr_mode = UFS_DEEPSLEEP_PWR_MODE)
  109. #define ufshcd_is_ufs_dev_active(h) \
  110. ((h)->curr_dev_pwr_mode == UFS_ACTIVE_PWR_MODE)
  111. #define ufshcd_is_ufs_dev_sleep(h) \
  112. ((h)->curr_dev_pwr_mode == UFS_SLEEP_PWR_MODE)
  113. #define ufshcd_is_ufs_dev_poweroff(h) \
  114. ((h)->curr_dev_pwr_mode == UFS_POWERDOWN_PWR_MODE)
  115. #define ufshcd_is_ufs_dev_deepsleep(h) \
  116. ((h)->curr_dev_pwr_mode == UFS_DEEPSLEEP_PWR_MODE)
  117. /*
  118. * UFS Power management levels.
  119. * Each level is in increasing order of power savings, except DeepSleep
  120. * which is lower than PowerDown with power on but not PowerDown with
  121. * power off.
  122. */
  123. enum ufs_pm_level {
  124. UFS_PM_LVL_0,
  125. UFS_PM_LVL_1,
  126. UFS_PM_LVL_2,
  127. UFS_PM_LVL_3,
  128. UFS_PM_LVL_4,
  129. UFS_PM_LVL_5,
  130. UFS_PM_LVL_6,
  131. UFS_PM_LVL_MAX
  132. };
  133. struct ufs_pm_lvl_states {
  134. enum ufs_dev_pwr_mode dev_state;
  135. enum uic_link_state link_state;
  136. };
  137. /**
  138. * struct ufshcd_lrb - local reference block
  139. * @utr_descriptor_ptr: UTRD address of the command
  140. * @ucd_req_ptr: UCD address of the command
  141. * @ucd_rsp_ptr: Response UPIU address for this command
  142. * @ucd_prdt_ptr: PRDT address of the command
  143. * @utrd_dma_addr: UTRD dma address for debug
  144. * @ucd_prdt_dma_addr: PRDT dma address for debug
  145. * @ucd_rsp_dma_addr: UPIU response dma address for debug
  146. * @ucd_req_dma_addr: UPIU request dma address for debug
  147. * @cmd: pointer to SCSI command
  148. * @scsi_status: SCSI status of the command
  149. * @command_type: SCSI, UFS, Query.
  150. * @task_tag: Task tag of the command
  151. * @lun: LUN of the command
  152. * @intr_cmd: Interrupt command (doesn't participate in interrupt aggregation)
  153. * @issue_time_stamp: time stamp for debug purposes (CLOCK_MONOTONIC)
  154. * @issue_time_stamp_local_clock: time stamp for debug purposes (local_clock)
  155. * @compl_time_stamp: time stamp for statistics (CLOCK_MONOTONIC)
  156. * @compl_time_stamp_local_clock: time stamp for debug purposes (local_clock)
  157. * @crypto_key_slot: the key slot to use for inline crypto (-1 if none)
  158. * @data_unit_num: the data unit number for the first block for inline crypto
  159. * @req_abort_skip: skip request abort task flag
  160. */
  161. struct ufshcd_lrb {
  162. struct utp_transfer_req_desc *utr_descriptor_ptr;
  163. struct utp_upiu_req *ucd_req_ptr;
  164. struct utp_upiu_rsp *ucd_rsp_ptr;
  165. struct ufshcd_sg_entry *ucd_prdt_ptr;
  166. dma_addr_t utrd_dma_addr;
  167. dma_addr_t ucd_req_dma_addr;
  168. dma_addr_t ucd_rsp_dma_addr;
  169. dma_addr_t ucd_prdt_dma_addr;
  170. struct scsi_cmnd *cmd;
  171. int scsi_status;
  172. int command_type;
  173. int task_tag;
  174. u8 lun; /* UPIU LUN id field is only 8-bit wide */
  175. bool intr_cmd;
  176. ktime_t issue_time_stamp;
  177. u64 issue_time_stamp_local_clock;
  178. ktime_t compl_time_stamp;
  179. u64 compl_time_stamp_local_clock;
  180. #ifdef CONFIG_SCSI_UFS_CRYPTO
  181. int crypto_key_slot;
  182. u64 data_unit_num;
  183. #endif
  184. bool req_abort_skip;
  185. };
  186. /**
  187. * struct ufs_query_req - parameters for building a query request
  188. * @query_func: UPIU header query function
  189. * @upiu_req: the query request data
  190. */
  191. struct ufs_query_req {
  192. u8 query_func;
  193. struct utp_upiu_query upiu_req;
  194. };
  195. /**
  196. * struct ufs_query_resp - UPIU QUERY
  197. * @response: device response code
  198. * @upiu_res: query response data
  199. */
  200. struct ufs_query_res {
  201. struct utp_upiu_query upiu_res;
  202. };
  203. /**
  204. * struct ufs_query - holds relevant data structures for query request
  205. * @request: request upiu and function
  206. * @descriptor: buffer for sending/receiving descriptor
  207. * @response: response upiu and response
  208. */
  209. struct ufs_query {
  210. struct ufs_query_req request;
  211. u8 *descriptor;
  212. struct ufs_query_res response;
  213. };
  214. /**
  215. * struct ufs_dev_cmd - all assosiated fields with device management commands
  216. * @type: device management command type - Query, NOP OUT
  217. * @lock: lock to allow one command at a time
  218. * @complete: internal commands completion
  219. * @query: Device management query information
  220. */
  221. struct ufs_dev_cmd {
  222. enum dev_cmd_type type;
  223. struct mutex lock;
  224. struct completion *complete;
  225. struct ufs_query query;
  226. };
  227. /**
  228. * struct ufs_clk_info - UFS clock related info
  229. * @list: list headed by hba->clk_list_head
  230. * @clk: clock node
  231. * @name: clock name
  232. * @max_freq: maximum frequency supported by the clock
  233. * @min_freq: min frequency that can be used for clock scaling
  234. * @curr_freq: indicates the current frequency that it is set to
  235. * @keep_link_active: indicates that the clk should not be disabled if
  236. * link is active
  237. * @enabled: variable to check against multiple enable/disable
  238. */
  239. struct ufs_clk_info {
  240. struct list_head list;
  241. struct clk *clk;
  242. const char *name;
  243. u32 max_freq;
  244. u32 min_freq;
  245. u32 curr_freq;
  246. bool keep_link_active;
  247. bool enabled;
  248. };
  249. enum ufs_notify_change_status {
  250. PRE_CHANGE,
  251. POST_CHANGE,
  252. };
  253. struct ufs_pa_layer_attr {
  254. u32 gear_rx;
  255. u32 gear_tx;
  256. u32 lane_rx;
  257. u32 lane_tx;
  258. u32 pwr_rx;
  259. u32 pwr_tx;
  260. u32 hs_rate;
  261. };
  262. struct ufs_pwr_mode_info {
  263. bool is_valid;
  264. struct ufs_pa_layer_attr info;
  265. };
  266. /**
  267. * struct ufs_hba_variant_ops - variant specific callbacks
  268. * @name: variant name
  269. * @max_num_rtt: maximum RTT supported by the host
  270. * @init: called when the driver is initialized
  271. * @exit: called to cleanup everything done in init
  272. * @set_dma_mask: For setting another DMA mask than indicated by the 64AS
  273. * capability bit.
  274. * @get_ufs_hci_version: called to get UFS HCI version
  275. * @clk_scale_notify: notifies that clks are scaled up/down
  276. * @setup_clocks: called before touching any of the controller registers
  277. * @hce_enable_notify: called before and after HCE enable bit is set to allow
  278. * variant specific Uni-Pro initialization.
  279. * @link_startup_notify: called before and after Link startup is carried out
  280. * to allow variant specific Uni-Pro initialization.
  281. * @pwr_change_notify: called before and after a power mode change
  282. * is carried out to allow vendor spesific capabilities
  283. * to be set. PRE_CHANGE can modify final_params based
  284. * on desired_pwr_mode, but POST_CHANGE must not alter
  285. * the final_params parameter
  286. * @setup_xfer_req: called before any transfer request is issued
  287. * to set some things
  288. * @setup_task_mgmt: called before any task management request is issued
  289. * to set some things
  290. * @hibern8_notify: called around hibern8 enter/exit
  291. * @apply_dev_quirks: called to apply device specific quirks
  292. * @fixup_dev_quirks: called to modify device specific quirks
  293. * @suspend: called during host controller PM callback
  294. * @resume: called during host controller PM callback
  295. * @dbg_register_dump: used to dump controller debug information
  296. * @phy_initialization: used to initialize phys
  297. * @device_reset: called to issue a reset pulse on the UFS device
  298. * @config_scaling_param: called to configure clock scaling parameters
  299. * @program_key: program or evict an inline encryption key
  300. * @fill_crypto_prdt: initialize crypto-related fields in the PRDT
  301. * @event_notify: called to notify important events
  302. * @mcq_config_resource: called to configure MCQ platform resources
  303. * @get_hba_mac: reports maximum number of outstanding commands supported by
  304. * the controller. Should be implemented for UFSHCI 4.0 or later
  305. * controllers that are not compliant with the UFSHCI 4.0 specification.
  306. * @op_runtime_config: called to config Operation and runtime regs Pointers
  307. * @get_outstanding_cqs: called to get outstanding completion queues
  308. * @config_esi: called to config Event Specific Interrupt
  309. * @config_scsi_dev: called to configure SCSI device parameters
  310. */
  311. struct ufs_hba_variant_ops {
  312. const char *name;
  313. int max_num_rtt;
  314. int (*init)(struct ufs_hba *);
  315. void (*exit)(struct ufs_hba *);
  316. u32 (*get_ufs_hci_version)(struct ufs_hba *);
  317. int (*set_dma_mask)(struct ufs_hba *);
  318. int (*clk_scale_notify)(struct ufs_hba *, bool,
  319. enum ufs_notify_change_status);
  320. int (*setup_clocks)(struct ufs_hba *, bool,
  321. enum ufs_notify_change_status);
  322. int (*hce_enable_notify)(struct ufs_hba *,
  323. enum ufs_notify_change_status);
  324. int (*link_startup_notify)(struct ufs_hba *,
  325. enum ufs_notify_change_status);
  326. int (*pwr_change_notify)(struct ufs_hba *,
  327. enum ufs_notify_change_status status,
  328. struct ufs_pa_layer_attr *desired_pwr_mode,
  329. struct ufs_pa_layer_attr *final_params);
  330. void (*setup_xfer_req)(struct ufs_hba *hba, int tag,
  331. bool is_scsi_cmd);
  332. void (*setup_task_mgmt)(struct ufs_hba *, int, u8);
  333. void (*hibern8_notify)(struct ufs_hba *, enum uic_cmd_dme,
  334. enum ufs_notify_change_status);
  335. int (*apply_dev_quirks)(struct ufs_hba *hba);
  336. void (*fixup_dev_quirks)(struct ufs_hba *hba);
  337. int (*suspend)(struct ufs_hba *, enum ufs_pm_op,
  338. enum ufs_notify_change_status);
  339. int (*resume)(struct ufs_hba *, enum ufs_pm_op);
  340. void (*dbg_register_dump)(struct ufs_hba *hba);
  341. int (*phy_initialization)(struct ufs_hba *);
  342. int (*device_reset)(struct ufs_hba *hba);
  343. void (*config_scaling_param)(struct ufs_hba *hba,
  344. struct devfreq_dev_profile *profile,
  345. struct devfreq_simple_ondemand_data *data);
  346. int (*program_key)(struct ufs_hba *hba,
  347. const union ufs_crypto_cfg_entry *cfg, int slot);
  348. int (*fill_crypto_prdt)(struct ufs_hba *hba,
  349. const struct bio_crypt_ctx *crypt_ctx,
  350. void *prdt, unsigned int num_segments);
  351. void (*event_notify)(struct ufs_hba *hba,
  352. enum ufs_event_type evt, void *data);
  353. int (*mcq_config_resource)(struct ufs_hba *hba);
  354. int (*get_hba_mac)(struct ufs_hba *hba);
  355. int (*op_runtime_config)(struct ufs_hba *hba);
  356. int (*get_outstanding_cqs)(struct ufs_hba *hba,
  357. unsigned long *ocqs);
  358. int (*config_esi)(struct ufs_hba *hba);
  359. };
  360. /* clock gating state */
  361. enum clk_gating_state {
  362. CLKS_OFF,
  363. CLKS_ON,
  364. REQ_CLKS_OFF,
  365. REQ_CLKS_ON,
  366. };
  367. /**
  368. * struct ufs_clk_gating - UFS clock gating related info
  369. * @gate_work: worker to turn off clocks after some delay as specified in
  370. * delay_ms
  371. * @ungate_work: worker to turn on clocks that will be used in case of
  372. * interrupt context
  373. * @clk_gating_workq: workqueue for clock gating work.
  374. * @lock: serialize access to some struct ufs_clk_gating members. An outer lock
  375. * relative to the host lock
  376. * @state: the current clocks state
  377. * @delay_ms: gating delay in ms
  378. * @is_suspended: clk gating is suspended when set to 1 which can be used
  379. * during suspend/resume
  380. * @delay_attr: sysfs attribute to control delay_attr
  381. * @enable_attr: sysfs attribute to enable/disable clock gating
  382. * @is_enabled: Indicates the current status of clock gating
  383. * @is_initialized: Indicates whether clock gating is initialized or not
  384. * @active_reqs: number of requests that are pending and should be waited for
  385. * completion before gating clocks.
  386. */
  387. struct ufs_clk_gating {
  388. struct delayed_work gate_work;
  389. struct work_struct ungate_work;
  390. struct workqueue_struct *clk_gating_workq;
  391. spinlock_t lock;
  392. enum clk_gating_state state;
  393. unsigned long delay_ms;
  394. bool is_suspended;
  395. struct device_attribute delay_attr;
  396. struct device_attribute enable_attr;
  397. bool is_enabled;
  398. bool is_initialized;
  399. int active_reqs;
  400. };
  401. /**
  402. * struct ufs_clk_scaling - UFS clock scaling related data
  403. * @active_reqs: number of requests that are pending. If this is zero when
  404. * devfreq ->target() function is called then schedule "suspend_work" to
  405. * suspend devfreq.
  406. * @tot_busy_t: Total busy time in current polling window
  407. * @window_start_t: Start time (in jiffies) of the current polling window
  408. * @busy_start_t: Start time of current busy period
  409. * @enable_attr: sysfs attribute to enable/disable clock scaling
  410. * @saved_pwr_info: UFS power mode may also be changed during scaling and this
  411. * one keeps track of previous power mode.
  412. * @workq: workqueue to schedule devfreq suspend/resume work
  413. * @suspend_work: worker to suspend devfreq
  414. * @resume_work: worker to resume devfreq
  415. * @target_freq: frequency requested by devfreq framework
  416. * @min_gear: lowest HS gear to scale down to
  417. * @is_enabled: tracks if scaling is currently enabled or not, controlled by
  418. * clkscale_enable sysfs node
  419. * @is_allowed: tracks if scaling is currently allowed or not, used to block
  420. * clock scaling which is not invoked from devfreq governor
  421. * @is_initialized: Indicates whether clock scaling is initialized or not
  422. * @is_busy_started: tracks if busy period has started or not
  423. * @is_suspended: tracks if devfreq is suspended or not
  424. */
  425. struct ufs_clk_scaling {
  426. int active_reqs;
  427. unsigned long tot_busy_t;
  428. ktime_t window_start_t;
  429. ktime_t busy_start_t;
  430. struct device_attribute enable_attr;
  431. struct ufs_pa_layer_attr saved_pwr_info;
  432. struct workqueue_struct *workq;
  433. struct work_struct suspend_work;
  434. struct work_struct resume_work;
  435. unsigned long target_freq;
  436. u32 min_gear;
  437. bool is_enabled;
  438. bool is_allowed;
  439. bool is_initialized;
  440. bool is_busy_started;
  441. bool is_suspended;
  442. bool suspend_on_no_request;
  443. };
  444. #define UFS_EVENT_HIST_LENGTH 8
  445. /**
  446. * struct ufs_event_hist - keeps history of errors
  447. * @pos: index to indicate cyclic buffer position
  448. * @val: cyclic buffer for registers value
  449. * @tstamp: cyclic buffer for time stamp
  450. * @cnt: error counter
  451. */
  452. struct ufs_event_hist {
  453. int pos;
  454. u32 val[UFS_EVENT_HIST_LENGTH];
  455. u64 tstamp[UFS_EVENT_HIST_LENGTH];
  456. unsigned long long cnt;
  457. };
  458. /**
  459. * struct ufs_stats - keeps usage/err statistics
  460. * @last_intr_status: record the last interrupt status.
  461. * @last_intr_ts: record the last interrupt timestamp.
  462. * @hibern8_exit_cnt: Counter to keep track of number of exits,
  463. * reset this after link-startup.
  464. * @last_hibern8_exit_tstamp: Set time after the hibern8 exit.
  465. * Clear after the first successful command completion.
  466. * @event: array with event history.
  467. */
  468. struct ufs_stats {
  469. u32 last_intr_status;
  470. u64 last_intr_ts;
  471. u32 hibern8_exit_cnt;
  472. u64 last_hibern8_exit_tstamp;
  473. struct ufs_event_hist event[UFS_EVT_CNT];
  474. };
  475. /**
  476. * enum ufshcd_state - UFS host controller state
  477. * @UFSHCD_STATE_RESET: Link is not operational. Postpone SCSI command
  478. * processing.
  479. * @UFSHCD_STATE_OPERATIONAL: The host controller is operational and can process
  480. * SCSI commands.
  481. * @UFSHCD_STATE_EH_SCHEDULED_NON_FATAL: The error handler has been scheduled.
  482. * SCSI commands may be submitted to the controller.
  483. * @UFSHCD_STATE_EH_SCHEDULED_FATAL: The error handler has been scheduled. Fail
  484. * newly submitted SCSI commands with error code DID_BAD_TARGET.
  485. * @UFSHCD_STATE_ERROR: An unrecoverable error occurred, e.g. link recovery
  486. * failed. Fail all SCSI commands with error code DID_ERROR.
  487. */
  488. enum ufshcd_state {
  489. UFSHCD_STATE_RESET,
  490. UFSHCD_STATE_OPERATIONAL,
  491. UFSHCD_STATE_EH_SCHEDULED_NON_FATAL,
  492. UFSHCD_STATE_EH_SCHEDULED_FATAL,
  493. UFSHCD_STATE_ERROR,
  494. };
  495. enum ufshcd_quirks {
  496. /* Interrupt aggregation support is broken */
  497. UFSHCD_QUIRK_BROKEN_INTR_AGGR = 1 << 0,
  498. /*
  499. * delay before each dme command is required as the unipro
  500. * layer has shown instabilities
  501. */
  502. UFSHCD_QUIRK_DELAY_BEFORE_DME_CMDS = 1 << 1,
  503. /*
  504. * If UFS host controller is having issue in processing LCC (Line
  505. * Control Command) coming from device then enable this quirk.
  506. * When this quirk is enabled, host controller driver should disable
  507. * the LCC transmission on UFS device (by clearing TX_LCC_ENABLE
  508. * attribute of device to 0).
  509. */
  510. UFSHCD_QUIRK_BROKEN_LCC = 1 << 2,
  511. /*
  512. * The attribute PA_RXHSUNTERMCAP specifies whether or not the
  513. * inbound Link supports unterminated line in HS mode. Setting this
  514. * attribute to 1 fixes moving to HS gear.
  515. */
  516. UFSHCD_QUIRK_BROKEN_PA_RXHSUNTERMCAP = 1 << 3,
  517. /*
  518. * This quirk needs to be enabled if the host controller only allows
  519. * accessing the peer dme attributes in AUTO mode (FAST AUTO or
  520. * SLOW AUTO).
  521. */
  522. UFSHCD_QUIRK_DME_PEER_ACCESS_AUTO_MODE = 1 << 4,
  523. /*
  524. * This quirk needs to be enabled if the host controller doesn't
  525. * advertise the correct version in UFS_VER register. If this quirk
  526. * is enabled, standard UFS host driver will call the vendor specific
  527. * ops (get_ufs_hci_version) to get the correct version.
  528. */
  529. UFSHCD_QUIRK_BROKEN_UFS_HCI_VERSION = 1 << 5,
  530. /*
  531. * Clear handling for transfer/task request list is just opposite.
  532. */
  533. UFSHCI_QUIRK_BROKEN_REQ_LIST_CLR = 1 << 6,
  534. /*
  535. * This quirk needs to be enabled if host controller doesn't allow
  536. * that the interrupt aggregation timer and counter are reset by s/w.
  537. */
  538. UFSHCI_QUIRK_SKIP_RESET_INTR_AGGR = 1 << 7,
  539. /*
  540. * This quirks needs to be enabled if host controller cannot be
  541. * enabled via HCE register.
  542. */
  543. UFSHCI_QUIRK_BROKEN_HCE = 1 << 8,
  544. /*
  545. * This quirk needs to be enabled if the host controller regards
  546. * resolution of the values of PRDTO and PRDTL in UTRD as byte.
  547. */
  548. UFSHCD_QUIRK_PRDT_BYTE_GRAN = 1 << 9,
  549. /*
  550. * This quirk needs to be enabled if the host controller reports
  551. * OCS FATAL ERROR with device error through sense data
  552. */
  553. UFSHCD_QUIRK_BROKEN_OCS_FATAL_ERROR = 1 << 10,
  554. /*
  555. * This quirk needs to be enabled if the host controller has
  556. * auto-hibernate capability but it doesn't work.
  557. */
  558. UFSHCD_QUIRK_BROKEN_AUTO_HIBERN8 = 1 << 11,
  559. /*
  560. * This quirk needs to disable manual flush for write booster
  561. */
  562. UFSHCI_QUIRK_SKIP_MANUAL_WB_FLUSH_CTRL = 1 << 12,
  563. /*
  564. * This quirk needs to disable unipro timeout values
  565. * before power mode change
  566. */
  567. UFSHCD_QUIRK_SKIP_DEF_UNIPRO_TIMEOUT_SETTING = 1 << 13,
  568. /*
  569. * This quirk needs to be enabled if the host controller does not
  570. * support UIC command
  571. */
  572. UFSHCD_QUIRK_BROKEN_UIC_CMD = 1 << 15,
  573. /*
  574. * This quirk needs to be enabled if the host controller cannot
  575. * support physical host configuration.
  576. */
  577. UFSHCD_QUIRK_SKIP_PH_CONFIGURATION = 1 << 16,
  578. /*
  579. * This quirk needs to be enabled if the host controller has
  580. * auto-hibernate capability but it's FASTAUTO only.
  581. */
  582. UFSHCD_QUIRK_HIBERN_FASTAUTO = 1 << 18,
  583. /*
  584. * This quirk needs to be enabled if the host controller needs
  585. * to reinit the device after switching to maximum gear.
  586. */
  587. UFSHCD_QUIRK_REINIT_AFTER_MAX_GEAR_SWITCH = 1 << 19,
  588. /*
  589. * Some host raises interrupt (per queue) in addition to
  590. * CQES (traditional) when ESI is disabled.
  591. * Enable this quirk will disable CQES and use per queue interrupt.
  592. */
  593. UFSHCD_QUIRK_MCQ_BROKEN_INTR = 1 << 20,
  594. /*
  595. * Some host does not implement SQ Run Time Command (SQRTC) register
  596. * thus need this quirk to skip related flow.
  597. */
  598. UFSHCD_QUIRK_MCQ_BROKEN_RTC = 1 << 21,
  599. /*
  600. * This quirk needs to be enabled if the host controller supports inline
  601. * encryption but it needs to initialize the crypto capabilities in a
  602. * nonstandard way and/or needs to override blk_crypto_ll_ops. If
  603. * enabled, the standard code won't initialize the blk_crypto_profile;
  604. * ufs_hba_variant_ops::init() must do it instead.
  605. */
  606. UFSHCD_QUIRK_CUSTOM_CRYPTO_PROFILE = 1 << 22,
  607. /*
  608. * This quirk needs to be enabled if the host controller supports inline
  609. * encryption but does not support the CRYPTO_GENERAL_ENABLE bit, i.e.
  610. * host controller initialization fails if that bit is set.
  611. */
  612. UFSHCD_QUIRK_BROKEN_CRYPTO_ENABLE = 1 << 23,
  613. /*
  614. * This quirk needs to be enabled if the host controller driver copies
  615. * cryptographic keys into the PRDT in order to send them to hardware,
  616. * and therefore the PRDT should be zeroized after each request (as per
  617. * the standard best practice for managing keys).
  618. */
  619. UFSHCD_QUIRK_KEYS_IN_PRDT = 1 << 24,
  620. /*
  621. * This quirk indicates that the controller reports the value 1 (not
  622. * supported) in the Legacy Single DoorBell Support (LSDBS) bit of the
  623. * Controller Capabilities register although it supports the legacy
  624. * single doorbell mode.
  625. */
  626. UFSHCD_QUIRK_BROKEN_LSDBS_CAP = 1 << 25,
  627. };
  628. enum ufshcd_caps {
  629. /* Allow dynamic clk gating */
  630. UFSHCD_CAP_CLK_GATING = 1 << 0,
  631. /* Allow hiberb8 with clk gating */
  632. UFSHCD_CAP_HIBERN8_WITH_CLK_GATING = 1 << 1,
  633. /* Allow dynamic clk scaling */
  634. UFSHCD_CAP_CLK_SCALING = 1 << 2,
  635. /* Allow auto bkops to enabled during runtime suspend */
  636. UFSHCD_CAP_AUTO_BKOPS_SUSPEND = 1 << 3,
  637. /*
  638. * This capability allows host controller driver to use the UFS HCI's
  639. * interrupt aggregation capability.
  640. * CAUTION: Enabling this might reduce overall UFS throughput.
  641. */
  642. UFSHCD_CAP_INTR_AGGR = 1 << 4,
  643. /*
  644. * This capability allows the device auto-bkops to be always enabled
  645. * except during suspend (both runtime and suspend).
  646. * Enabling this capability means that device will always be allowed
  647. * to do background operation when it's active but it might degrade
  648. * the performance of ongoing read/write operations.
  649. */
  650. UFSHCD_CAP_KEEP_AUTO_BKOPS_ENABLED_EXCEPT_SUSPEND = 1 << 5,
  651. /*
  652. * This capability allows host controller driver to automatically
  653. * enable runtime power management by itself instead of waiting
  654. * for userspace to control the power management.
  655. */
  656. UFSHCD_CAP_RPM_AUTOSUSPEND = 1 << 6,
  657. /*
  658. * This capability allows the host controller driver to turn-on
  659. * WriteBooster, if the underlying device supports it and is
  660. * provisioned to be used. This would increase the write performance.
  661. */
  662. UFSHCD_CAP_WB_EN = 1 << 7,
  663. /*
  664. * This capability allows the host controller driver to use the
  665. * inline crypto engine, if it is present
  666. */
  667. UFSHCD_CAP_CRYPTO = 1 << 8,
  668. /*
  669. * This capability allows the controller regulators to be put into
  670. * lpm mode aggressively during clock gating.
  671. * This would increase power savings.
  672. */
  673. UFSHCD_CAP_AGGR_POWER_COLLAPSE = 1 << 9,
  674. /*
  675. * This capability allows the host controller driver to use DeepSleep,
  676. * if it is supported by the UFS device. The host controller driver must
  677. * support device hardware reset via the hba->device_reset() callback,
  678. * in order to exit DeepSleep state.
  679. */
  680. UFSHCD_CAP_DEEPSLEEP = 1 << 10,
  681. /*
  682. * This capability allows the host controller driver to use temperature
  683. * notification if it is supported by the UFS device.
  684. */
  685. UFSHCD_CAP_TEMP_NOTIF = 1 << 11,
  686. /*
  687. * Enable WriteBooster when scaling up the clock and disable
  688. * WriteBooster when scaling the clock down.
  689. */
  690. UFSHCD_CAP_WB_WITH_CLK_SCALING = 1 << 12,
  691. };
  692. struct ufs_hba_variant_params {
  693. struct devfreq_dev_profile devfreq_profile;
  694. struct devfreq_simple_ondemand_data ondemand_data;
  695. u16 hba_enable_delay_us;
  696. u32 wb_flush_threshold;
  697. };
  698. struct ufs_hba_monitor {
  699. unsigned long chunk_size;
  700. unsigned long nr_sec_rw[2];
  701. ktime_t total_busy[2];
  702. unsigned long nr_req[2];
  703. /* latencies*/
  704. ktime_t lat_sum[2];
  705. ktime_t lat_max[2];
  706. ktime_t lat_min[2];
  707. u32 nr_queued[2];
  708. ktime_t busy_start_ts[2];
  709. ktime_t enabled_ts;
  710. bool enabled;
  711. };
  712. /**
  713. * struct ufshcd_res_info_t - MCQ related resource regions
  714. *
  715. * @name: resource name
  716. * @resource: pointer to resource region
  717. * @base: register base address
  718. */
  719. struct ufshcd_res_info {
  720. const char *name;
  721. struct resource *resource;
  722. void __iomem *base;
  723. };
  724. enum ufshcd_res {
  725. RES_UFS,
  726. RES_MCQ,
  727. RES_MCQ_SQD,
  728. RES_MCQ_SQIS,
  729. RES_MCQ_CQD,
  730. RES_MCQ_CQIS,
  731. RES_MCQ_VS,
  732. RES_MAX,
  733. };
  734. /**
  735. * struct ufshcd_mcq_opr_info_t - Operation and Runtime registers
  736. *
  737. * @offset: Doorbell Address Offset
  738. * @stride: Steps proportional to queue [0...31]
  739. * @base: base address
  740. */
  741. struct ufshcd_mcq_opr_info_t {
  742. unsigned long offset;
  743. unsigned long stride;
  744. void __iomem *base;
  745. };
  746. enum ufshcd_mcq_opr {
  747. OPR_SQD,
  748. OPR_SQIS,
  749. OPR_CQD,
  750. OPR_CQIS,
  751. OPR_MAX,
  752. };
  753. /**
  754. * struct ufs_hba - per adapter private structure
  755. * @mmio_base: UFSHCI base register address
  756. * @ucdl_base_addr: UFS Command Descriptor base address
  757. * @utrdl_base_addr: UTP Transfer Request Descriptor base address
  758. * @utmrdl_base_addr: UTP Task Management Descriptor base address
  759. * @ucdl_dma_addr: UFS Command Descriptor DMA address
  760. * @utrdl_dma_addr: UTRDL DMA address
  761. * @utmrdl_dma_addr: UTMRDL DMA address
  762. * @host: Scsi_Host instance of the driver
  763. * @dev: device handle
  764. * @ufs_device_wlun: WLUN that controls the entire UFS device.
  765. * @hwmon_device: device instance registered with the hwmon core.
  766. * @curr_dev_pwr_mode: active UFS device power mode.
  767. * @uic_link_state: active state of the link to the UFS device.
  768. * @rpm_lvl: desired UFS power management level during runtime PM.
  769. * @spm_lvl: desired UFS power management level during system PM.
  770. * @pm_op_in_progress: whether or not a PM operation is in progress.
  771. * @ahit: value of Auto-Hibernate Idle Timer register.
  772. * @lrb: local reference block
  773. * @outstanding_tasks: Bits representing outstanding task requests
  774. * @outstanding_lock: Protects @outstanding_reqs.
  775. * @outstanding_reqs: Bits representing outstanding transfer requests
  776. * @capabilities: UFS Controller Capabilities
  777. * @mcq_capabilities: UFS Multi Circular Queue capabilities
  778. * @nutrs: Transfer Request Queue depth supported by controller
  779. * @nortt - Max outstanding RTTs supported by controller
  780. * @nutmrs: Task Management Queue depth supported by controller
  781. * @reserved_slot: Used to submit device commands. Protected by @dev_cmd.lock.
  782. * @ufs_version: UFS Version to which controller complies
  783. * @vops: pointer to variant specific operations
  784. * @vps: pointer to variant specific parameters
  785. * @priv: pointer to variant specific private data
  786. * @sg_entry_size: size of struct ufshcd_sg_entry (may include variant fields)
  787. * @irq: Irq number of the controller
  788. * @is_irq_enabled: whether or not the UFS controller interrupt is enabled.
  789. * @dev_ref_clk_freq: reference clock frequency
  790. * @quirks: bitmask with information about deviations from the UFSHCI standard.
  791. * @dev_quirks: bitmask with information about deviations from the UFS standard.
  792. * @tmf_tag_set: TMF tag set.
  793. * @tmf_queue: Used to allocate TMF tags.
  794. * @tmf_rqs: array with pointers to TMF requests while these are in progress.
  795. * @active_uic_cmd: handle of active UIC command
  796. * @uic_cmd_mutex: mutex for UIC command
  797. * @uic_async_done: completion used during UIC processing
  798. * @ufshcd_state: UFSHCD state
  799. * @eh_flags: Error handling flags
  800. * @intr_mask: Interrupt Mask Bits
  801. * @ee_ctrl_mask: Exception event control mask
  802. * @ee_drv_mask: Exception event mask for driver
  803. * @ee_usr_mask: Exception event mask for user (set via debugfs)
  804. * @ee_ctrl_mutex: Used to serialize exception event information.
  805. * @is_powered: flag to check if HBA is powered
  806. * @shutting_down: flag to check if shutdown has been invoked
  807. * @host_sem: semaphore used to serialize concurrent contexts
  808. * @eh_wq: Workqueue that eh_work works on
  809. * @eh_work: Worker to handle UFS errors that require s/w attention
  810. * @eeh_work: Worker to handle exception events
  811. * @errors: HBA errors
  812. * @uic_error: UFS interconnect layer error status
  813. * @saved_err: sticky error mask
  814. * @saved_uic_err: sticky UIC error mask
  815. * @ufs_stats: various error counters
  816. * @force_reset: flag to force eh_work perform a full reset
  817. * @force_pmc: flag to force a power mode change
  818. * @silence_err_logs: flag to silence error logs
  819. * @dev_cmd: ufs device management command information
  820. * @last_dme_cmd_tstamp: time stamp of the last completed DME command
  821. * @nop_out_timeout: NOP OUT timeout value
  822. * @dev_info: information about the UFS device
  823. * @auto_bkops_enabled: to track whether bkops is enabled in device
  824. * @vreg_info: UFS device voltage regulator information
  825. * @clk_list_head: UFS host controller clocks list node head
  826. * @use_pm_opp: Indicates whether OPP based scaling is used or not
  827. * @req_abort_count: number of times ufshcd_abort() has been called
  828. * @lanes_per_direction: number of lanes per data direction between the UFS
  829. * controller and the UFS device.
  830. * @pwr_info: holds current power mode
  831. * @max_pwr_info: keeps the device max valid pwm
  832. * @clk_gating: information related to clock gating
  833. * @caps: bitmask with information about UFS controller capabilities
  834. * @devfreq: frequency scaling information owned by the devfreq core
  835. * @clk_scaling: frequency scaling information owned by the UFS driver
  836. * @system_suspending: system suspend has been started and system resume has
  837. * not yet finished.
  838. * @is_sys_suspended: UFS device has been suspended because of system suspend
  839. * @urgent_bkops_lvl: keeps track of urgent bkops level for device
  840. * @is_urgent_bkops_lvl_checked: keeps track if the urgent bkops level for
  841. * device is known or not.
  842. * @wb_mutex: used to serialize devfreq and sysfs write booster toggling
  843. * @clk_scaling_lock: used to serialize device commands and clock scaling
  844. * @desc_size: descriptor sizes reported by device
  845. * @scsi_block_reqs_cnt: reference counting for scsi block requests
  846. * @bsg_dev: struct device associated with the BSG queue
  847. * @bsg_queue: BSG queue associated with the UFS controller
  848. * @rpm_dev_flush_recheck_work: used to suspend from RPM (runtime power
  849. * management) after the UFS device has finished a WriteBooster buffer
  850. * flush or auto BKOP.
  851. * @monitor: statistics about UFS commands
  852. * @crypto_capabilities: Content of crypto capabilities register (0x100)
  853. * @crypto_cap_array: Array of crypto capabilities
  854. * @crypto_cfg_register: Start of the crypto cfg array
  855. * @crypto_profile: the crypto profile of this hba (if applicable)
  856. * @debugfs_root: UFS controller debugfs root directory
  857. * @debugfs_ee_work: used to restore ee_ctrl_mask after a delay
  858. * @debugfs_ee_rate_limit_ms: user configurable delay after which to restore
  859. * ee_ctrl_mask
  860. * @luns_avail: number of regular and well known LUNs supported by the UFS
  861. * device
  862. * @nr_hw_queues: number of hardware queues configured
  863. * @nr_queues: number of Queues of different queue types
  864. * @complete_put: whether or not to call ufshcd_rpm_put() from inside
  865. * ufshcd_resume_complete()
  866. * @ext_iid_sup: is EXT_IID is supported by UFSHC
  867. * @mcq_sup: is mcq supported by UFSHC
  868. * @mcq_enabled: is mcq ready to accept requests
  869. * @res: array of resource info of MCQ registers
  870. * @mcq_base: Multi circular queue registers base address
  871. * @uhq: array of supported hardware queues
  872. * @dev_cmd_queue: Queue for issuing device management commands
  873. * @mcq_opr: MCQ operation and runtime registers
  874. * @ufs_rtc_update_work: A work for UFS RTC periodic update
  875. * @pm_qos_req: PM QoS request handle
  876. * @pm_qos_enabled: flag to check if pm qos is enabled
  877. */
  878. struct ufs_hba {
  879. void __iomem *mmio_base;
  880. /* Virtual memory reference */
  881. struct utp_transfer_cmd_desc *ucdl_base_addr;
  882. struct utp_transfer_req_desc *utrdl_base_addr;
  883. struct utp_task_req_desc *utmrdl_base_addr;
  884. /* DMA memory reference */
  885. dma_addr_t ucdl_dma_addr;
  886. dma_addr_t utrdl_dma_addr;
  887. dma_addr_t utmrdl_dma_addr;
  888. struct Scsi_Host *host;
  889. struct device *dev;
  890. struct scsi_device *ufs_device_wlun;
  891. #ifdef CONFIG_SCSI_UFS_HWMON
  892. struct device *hwmon_device;
  893. #endif
  894. enum ufs_dev_pwr_mode curr_dev_pwr_mode;
  895. enum uic_link_state uic_link_state;
  896. /* Desired UFS power management level during runtime PM */
  897. enum ufs_pm_level rpm_lvl;
  898. /* Desired UFS power management level during system PM */
  899. enum ufs_pm_level spm_lvl;
  900. int pm_op_in_progress;
  901. /* Auto-Hibernate Idle Timer register value */
  902. u32 ahit;
  903. struct ufshcd_lrb *lrb;
  904. unsigned long outstanding_tasks;
  905. spinlock_t outstanding_lock;
  906. unsigned long outstanding_reqs;
  907. u32 capabilities;
  908. int nutrs;
  909. int nortt;
  910. u32 mcq_capabilities;
  911. int nutmrs;
  912. u32 reserved_slot;
  913. u32 ufs_version;
  914. const struct ufs_hba_variant_ops *vops;
  915. struct ufs_hba_variant_params *vps;
  916. void *priv;
  917. #ifdef CONFIG_SCSI_UFS_VARIABLE_SG_ENTRY_SIZE
  918. size_t sg_entry_size;
  919. #endif
  920. unsigned int irq;
  921. bool is_irq_enabled;
  922. enum ufs_ref_clk_freq dev_ref_clk_freq;
  923. unsigned int quirks; /* Deviations from standard UFSHCI spec. */
  924. /* Device deviations from standard UFS device spec. */
  925. unsigned int dev_quirks;
  926. struct blk_mq_tag_set tmf_tag_set;
  927. struct request_queue *tmf_queue;
  928. struct request **tmf_rqs;
  929. struct uic_command *active_uic_cmd;
  930. struct mutex uic_cmd_mutex;
  931. struct completion *uic_async_done;
  932. enum ufshcd_state ufshcd_state;
  933. u32 eh_flags;
  934. u32 intr_mask;
  935. u16 ee_ctrl_mask;
  936. u16 ee_drv_mask;
  937. u16 ee_usr_mask;
  938. struct mutex ee_ctrl_mutex;
  939. bool is_powered;
  940. bool shutting_down;
  941. struct semaphore host_sem;
  942. /* Work Queues */
  943. struct workqueue_struct *eh_wq;
  944. struct work_struct eh_work;
  945. struct work_struct eeh_work;
  946. /* HBA Errors */
  947. u32 errors;
  948. u32 uic_error;
  949. u32 saved_err;
  950. u32 saved_uic_err;
  951. struct ufs_stats ufs_stats;
  952. bool force_reset;
  953. bool force_pmc;
  954. bool silence_err_logs;
  955. /* Device management request data */
  956. struct ufs_dev_cmd dev_cmd;
  957. ktime_t last_dme_cmd_tstamp;
  958. int nop_out_timeout;
  959. /* Keeps information of the UFS device connected to this host */
  960. struct ufs_dev_info dev_info;
  961. bool auto_bkops_enabled;
  962. struct ufs_vreg_info vreg_info;
  963. struct list_head clk_list_head;
  964. bool use_pm_opp;
  965. /* Number of requests aborts */
  966. int req_abort_count;
  967. /* Number of lanes available (1 or 2) for Rx/Tx */
  968. u32 lanes_per_direction;
  969. struct ufs_pa_layer_attr pwr_info;
  970. struct ufs_pwr_mode_info max_pwr_info;
  971. struct ufs_clk_gating clk_gating;
  972. /* Control to enable/disable host capabilities */
  973. u32 caps;
  974. struct devfreq *devfreq;
  975. struct ufs_clk_scaling clk_scaling;
  976. bool system_suspending;
  977. bool is_sys_suspended;
  978. enum bkops_status urgent_bkops_lvl;
  979. bool is_urgent_bkops_lvl_checked;
  980. struct mutex wb_mutex;
  981. struct rw_semaphore clk_scaling_lock;
  982. atomic_t scsi_block_reqs_cnt;
  983. struct device bsg_dev;
  984. struct request_queue *bsg_queue;
  985. struct delayed_work rpm_dev_flush_recheck_work;
  986. struct ufs_hba_monitor monitor;
  987. #ifdef CONFIG_SCSI_UFS_CRYPTO
  988. union ufs_crypto_capabilities crypto_capabilities;
  989. union ufs_crypto_cap_entry *crypto_cap_array;
  990. u32 crypto_cfg_register;
  991. struct blk_crypto_profile crypto_profile;
  992. #endif
  993. #ifdef CONFIG_DEBUG_FS
  994. struct dentry *debugfs_root;
  995. struct delayed_work debugfs_ee_work;
  996. u32 debugfs_ee_rate_limit_ms;
  997. #endif
  998. #ifdef CONFIG_SCSI_UFS_FAULT_INJECTION
  999. struct fault_attr trigger_eh_attr;
  1000. struct fault_attr timeout_attr;
  1001. #endif
  1002. u32 luns_avail;
  1003. unsigned int nr_hw_queues;
  1004. unsigned int nr_queues[HCTX_MAX_TYPES];
  1005. bool complete_put;
  1006. bool ext_iid_sup;
  1007. bool scsi_host_added;
  1008. bool mcq_sup;
  1009. bool lsdb_sup;
  1010. bool mcq_enabled;
  1011. struct ufshcd_res_info res[RES_MAX];
  1012. void __iomem *mcq_base;
  1013. struct ufs_hw_queue *uhq;
  1014. struct ufs_hw_queue *dev_cmd_queue;
  1015. struct ufshcd_mcq_opr_info_t mcq_opr[OPR_MAX];
  1016. struct delayed_work ufs_rtc_update_work;
  1017. struct pm_qos_request pm_qos_req;
  1018. bool pm_qos_enabled;
  1019. };
  1020. /**
  1021. * struct ufs_hw_queue - per hardware queue structure
  1022. * @mcq_sq_head: base address of submission queue head pointer
  1023. * @mcq_sq_tail: base address of submission queue tail pointer
  1024. * @mcq_cq_head: base address of completion queue head pointer
  1025. * @mcq_cq_tail: base address of completion queue tail pointer
  1026. * @sqe_base_addr: submission queue entry base address
  1027. * @sqe_dma_addr: submission queue dma address
  1028. * @cqe_base_addr: completion queue base address
  1029. * @cqe_dma_addr: completion queue dma address
  1030. * @max_entries: max number of slots in this hardware queue
  1031. * @id: hardware queue ID
  1032. * @sq_tp_slot: current slot to which SQ tail pointer is pointing
  1033. * @sq_lock: serialize submission queue access
  1034. * @cq_tail_slot: current slot to which CQ tail pointer is pointing
  1035. * @cq_head_slot: current slot to which CQ head pointer is pointing
  1036. * @cq_lock: Synchronize between multiple polling instances
  1037. * @sq_mutex: prevent submission queue concurrent access
  1038. */
  1039. struct ufs_hw_queue {
  1040. void __iomem *mcq_sq_head;
  1041. void __iomem *mcq_sq_tail;
  1042. void __iomem *mcq_cq_head;
  1043. void __iomem *mcq_cq_tail;
  1044. struct utp_transfer_req_desc *sqe_base_addr;
  1045. dma_addr_t sqe_dma_addr;
  1046. struct cq_entry *cqe_base_addr;
  1047. dma_addr_t cqe_dma_addr;
  1048. u32 max_entries;
  1049. u32 id;
  1050. u32 sq_tail_slot;
  1051. spinlock_t sq_lock;
  1052. u32 cq_tail_slot;
  1053. u32 cq_head_slot;
  1054. spinlock_t cq_lock;
  1055. /* prevent concurrent access to submission queue */
  1056. struct mutex sq_mutex;
  1057. };
  1058. #define MCQ_QCFG_SIZE 0x40
  1059. static inline unsigned int ufshcd_mcq_opr_offset(struct ufs_hba *hba,
  1060. enum ufshcd_mcq_opr opr, int idx)
  1061. {
  1062. return hba->mcq_opr[opr].offset + hba->mcq_opr[opr].stride * idx;
  1063. }
  1064. static inline unsigned int ufshcd_mcq_cfg_offset(unsigned int reg, int idx)
  1065. {
  1066. return reg + MCQ_QCFG_SIZE * idx;
  1067. }
  1068. #ifdef CONFIG_SCSI_UFS_VARIABLE_SG_ENTRY_SIZE
  1069. static inline size_t ufshcd_sg_entry_size(const struct ufs_hba *hba)
  1070. {
  1071. return hba->sg_entry_size;
  1072. }
  1073. static inline void ufshcd_set_sg_entry_size(struct ufs_hba *hba, size_t sg_entry_size)
  1074. {
  1075. WARN_ON_ONCE(sg_entry_size < sizeof(struct ufshcd_sg_entry));
  1076. hba->sg_entry_size = sg_entry_size;
  1077. }
  1078. #else
  1079. static inline size_t ufshcd_sg_entry_size(const struct ufs_hba *hba)
  1080. {
  1081. return sizeof(struct ufshcd_sg_entry);
  1082. }
  1083. #define ufshcd_set_sg_entry_size(hba, sg_entry_size) \
  1084. ({ (void)(hba); BUILD_BUG_ON(sg_entry_size != sizeof(struct ufshcd_sg_entry)); })
  1085. #endif
  1086. static inline size_t ufshcd_get_ucd_size(const struct ufs_hba *hba)
  1087. {
  1088. return sizeof(struct utp_transfer_cmd_desc) + SG_ALL * ufshcd_sg_entry_size(hba);
  1089. }
  1090. /* Returns true if clocks can be gated. Otherwise false */
  1091. static inline bool ufshcd_is_clkgating_allowed(struct ufs_hba *hba)
  1092. {
  1093. return hba->caps & UFSHCD_CAP_CLK_GATING;
  1094. }
  1095. static inline bool ufshcd_can_hibern8_during_gating(struct ufs_hba *hba)
  1096. {
  1097. return hba->caps & UFSHCD_CAP_HIBERN8_WITH_CLK_GATING;
  1098. }
  1099. static inline int ufshcd_is_clkscaling_supported(struct ufs_hba *hba)
  1100. {
  1101. return hba->caps & UFSHCD_CAP_CLK_SCALING;
  1102. }
  1103. static inline bool ufshcd_can_autobkops_during_suspend(struct ufs_hba *hba)
  1104. {
  1105. return hba->caps & UFSHCD_CAP_AUTO_BKOPS_SUSPEND;
  1106. }
  1107. static inline bool ufshcd_is_rpm_autosuspend_allowed(struct ufs_hba *hba)
  1108. {
  1109. return hba->caps & UFSHCD_CAP_RPM_AUTOSUSPEND;
  1110. }
  1111. static inline bool ufshcd_is_intr_aggr_allowed(struct ufs_hba *hba)
  1112. {
  1113. return (hba->caps & UFSHCD_CAP_INTR_AGGR) &&
  1114. !(hba->quirks & UFSHCD_QUIRK_BROKEN_INTR_AGGR);
  1115. }
  1116. static inline bool ufshcd_can_aggressive_pc(struct ufs_hba *hba)
  1117. {
  1118. return !!(ufshcd_is_link_hibern8(hba) &&
  1119. (hba->caps & UFSHCD_CAP_AGGR_POWER_COLLAPSE));
  1120. }
  1121. static inline bool ufshcd_is_auto_hibern8_supported(struct ufs_hba *hba)
  1122. {
  1123. return (hba->capabilities & MASK_AUTO_HIBERN8_SUPPORT) &&
  1124. !(hba->quirks & UFSHCD_QUIRK_BROKEN_AUTO_HIBERN8);
  1125. }
  1126. static inline bool ufshcd_is_auto_hibern8_enabled(struct ufs_hba *hba)
  1127. {
  1128. return FIELD_GET(UFSHCI_AHIBERN8_TIMER_MASK, hba->ahit);
  1129. }
  1130. static inline bool ufshcd_is_wb_allowed(struct ufs_hba *hba)
  1131. {
  1132. return hba->caps & UFSHCD_CAP_WB_EN;
  1133. }
  1134. static inline bool ufshcd_enable_wb_if_scaling_up(struct ufs_hba *hba)
  1135. {
  1136. return hba->caps & UFSHCD_CAP_WB_WITH_CLK_SCALING;
  1137. }
  1138. #define ufsmcq_writel(hba, val, reg) \
  1139. writel((val), (hba)->mcq_base + (reg))
  1140. #define ufsmcq_readl(hba, reg) \
  1141. readl((hba)->mcq_base + (reg))
  1142. #define ufsmcq_writelx(hba, val, reg) \
  1143. writel_relaxed((val), (hba)->mcq_base + (reg))
  1144. #define ufsmcq_readlx(hba, reg) \
  1145. readl_relaxed((hba)->mcq_base + (reg))
  1146. #define ufshcd_writel(hba, val, reg) \
  1147. writel((val), (hba)->mmio_base + (reg))
  1148. #define ufshcd_readl(hba, reg) \
  1149. readl((hba)->mmio_base + (reg))
  1150. /**
  1151. * ufshcd_rmwl - perform read/modify/write for a controller register
  1152. * @hba: per adapter instance
  1153. * @mask: mask to apply on read value
  1154. * @val: actual value to write
  1155. * @reg: register address
  1156. */
  1157. static inline void ufshcd_rmwl(struct ufs_hba *hba, u32 mask, u32 val, u32 reg)
  1158. {
  1159. u32 tmp;
  1160. tmp = ufshcd_readl(hba, reg);
  1161. tmp &= ~mask;
  1162. tmp |= (val & mask);
  1163. ufshcd_writel(hba, tmp, reg);
  1164. }
  1165. void ufshcd_enable_irq(struct ufs_hba *hba);
  1166. void ufshcd_disable_irq(struct ufs_hba *hba);
  1167. int ufshcd_alloc_host(struct device *, struct ufs_hba **);
  1168. int ufshcd_hba_enable(struct ufs_hba *hba);
  1169. int ufshcd_init(struct ufs_hba *, void __iomem *, unsigned int);
  1170. int ufshcd_link_recovery(struct ufs_hba *hba);
  1171. int ufshcd_make_hba_operational(struct ufs_hba *hba);
  1172. void ufshcd_remove(struct ufs_hba *);
  1173. int ufshcd_uic_hibern8_enter(struct ufs_hba *hba);
  1174. int ufshcd_uic_hibern8_exit(struct ufs_hba *hba);
  1175. void ufshcd_delay_us(unsigned long us, unsigned long tolerance);
  1176. void ufshcd_parse_dev_ref_clk_freq(struct ufs_hba *hba, struct clk *refclk);
  1177. void ufshcd_update_evt_hist(struct ufs_hba *hba, u32 id, u32 val);
  1178. void ufshcd_hba_stop(struct ufs_hba *hba);
  1179. void ufshcd_schedule_eh_work(struct ufs_hba *hba);
  1180. void ufshcd_mcq_config_mac(struct ufs_hba *hba, u32 max_active_cmds);
  1181. unsigned int ufshcd_mcq_queue_cfg_addr(struct ufs_hba *hba);
  1182. u32 ufshcd_mcq_read_cqis(struct ufs_hba *hba, int i);
  1183. void ufshcd_mcq_write_cqis(struct ufs_hba *hba, u32 val, int i);
  1184. unsigned long ufshcd_mcq_poll_cqe_lock(struct ufs_hba *hba,
  1185. struct ufs_hw_queue *hwq);
  1186. void ufshcd_mcq_make_queues_operational(struct ufs_hba *hba);
  1187. void ufshcd_mcq_enable_esi(struct ufs_hba *hba);
  1188. void ufshcd_mcq_enable(struct ufs_hba *hba);
  1189. void ufshcd_mcq_config_esi(struct ufs_hba *hba, struct msi_msg *msg);
  1190. int ufshcd_opp_config_clks(struct device *dev, struct opp_table *opp_table,
  1191. struct dev_pm_opp *opp, void *data,
  1192. bool scaling_down);
  1193. /**
  1194. * ufshcd_set_variant - set variant specific data to the hba
  1195. * @hba: per adapter instance
  1196. * @variant: pointer to variant specific data
  1197. */
  1198. static inline void ufshcd_set_variant(struct ufs_hba *hba, void *variant)
  1199. {
  1200. BUG_ON(!hba);
  1201. hba->priv = variant;
  1202. }
  1203. /**
  1204. * ufshcd_get_variant - get variant specific data from the hba
  1205. * @hba: per adapter instance
  1206. */
  1207. static inline void *ufshcd_get_variant(struct ufs_hba *hba)
  1208. {
  1209. BUG_ON(!hba);
  1210. return hba->priv;
  1211. }
  1212. #ifdef CONFIG_PM
  1213. extern int ufshcd_runtime_suspend(struct device *dev);
  1214. extern int ufshcd_runtime_resume(struct device *dev);
  1215. #endif
  1216. #ifdef CONFIG_PM_SLEEP
  1217. extern int ufshcd_system_suspend(struct device *dev);
  1218. extern int ufshcd_system_resume(struct device *dev);
  1219. extern int ufshcd_system_freeze(struct device *dev);
  1220. extern int ufshcd_system_thaw(struct device *dev);
  1221. extern int ufshcd_system_restore(struct device *dev);
  1222. #endif
  1223. extern int ufshcd_dme_configure_adapt(struct ufs_hba *hba,
  1224. int agreed_gear,
  1225. int adapt_val);
  1226. extern int ufshcd_dme_set_attr(struct ufs_hba *hba, u32 attr_sel,
  1227. u8 attr_set, u32 mib_val, u8 peer);
  1228. extern int ufshcd_dme_get_attr(struct ufs_hba *hba, u32 attr_sel,
  1229. u32 *mib_val, u8 peer);
  1230. extern int ufshcd_config_pwr_mode(struct ufs_hba *hba,
  1231. struct ufs_pa_layer_attr *desired_pwr_mode);
  1232. extern int ufshcd_uic_change_pwr_mode(struct ufs_hba *hba, u8 mode);
  1233. /* UIC command interfaces for DME primitives */
  1234. #define DME_LOCAL 0
  1235. #define DME_PEER 1
  1236. #define ATTR_SET_NOR 0 /* NORMAL */
  1237. #define ATTR_SET_ST 1 /* STATIC */
  1238. static inline int ufshcd_dme_set(struct ufs_hba *hba, u32 attr_sel,
  1239. u32 mib_val)
  1240. {
  1241. return ufshcd_dme_set_attr(hba, attr_sel, ATTR_SET_NOR,
  1242. mib_val, DME_LOCAL);
  1243. }
  1244. static inline int ufshcd_dme_st_set(struct ufs_hba *hba, u32 attr_sel,
  1245. u32 mib_val)
  1246. {
  1247. return ufshcd_dme_set_attr(hba, attr_sel, ATTR_SET_ST,
  1248. mib_val, DME_LOCAL);
  1249. }
  1250. static inline int ufshcd_dme_peer_set(struct ufs_hba *hba, u32 attr_sel,
  1251. u32 mib_val)
  1252. {
  1253. return ufshcd_dme_set_attr(hba, attr_sel, ATTR_SET_NOR,
  1254. mib_val, DME_PEER);
  1255. }
  1256. static inline int ufshcd_dme_peer_st_set(struct ufs_hba *hba, u32 attr_sel,
  1257. u32 mib_val)
  1258. {
  1259. return ufshcd_dme_set_attr(hba, attr_sel, ATTR_SET_ST,
  1260. mib_val, DME_PEER);
  1261. }
  1262. static inline int ufshcd_dme_get(struct ufs_hba *hba,
  1263. u32 attr_sel, u32 *mib_val)
  1264. {
  1265. return ufshcd_dme_get_attr(hba, attr_sel, mib_val, DME_LOCAL);
  1266. }
  1267. static inline int ufshcd_dme_peer_get(struct ufs_hba *hba,
  1268. u32 attr_sel, u32 *mib_val)
  1269. {
  1270. return ufshcd_dme_get_attr(hba, attr_sel, mib_val, DME_PEER);
  1271. }
  1272. static inline bool ufshcd_is_hs_mode(struct ufs_pa_layer_attr *pwr_info)
  1273. {
  1274. return (pwr_info->pwr_rx == FAST_MODE ||
  1275. pwr_info->pwr_rx == FASTAUTO_MODE) &&
  1276. (pwr_info->pwr_tx == FAST_MODE ||
  1277. pwr_info->pwr_tx == FASTAUTO_MODE);
  1278. }
  1279. static inline int ufshcd_disable_host_tx_lcc(struct ufs_hba *hba)
  1280. {
  1281. return ufshcd_dme_set(hba, UIC_ARG_MIB(PA_LOCAL_TX_LCC_ENABLE), 0);
  1282. }
  1283. void ufshcd_auto_hibern8_update(struct ufs_hba *hba, u32 ahit);
  1284. void ufshcd_fixup_dev_quirks(struct ufs_hba *hba,
  1285. const struct ufs_dev_quirk *fixups);
  1286. #define SD_ASCII_STD true
  1287. #define SD_RAW false
  1288. int ufshcd_read_string_desc(struct ufs_hba *hba, u8 desc_index,
  1289. u8 **buf, bool ascii);
  1290. void ufshcd_hold(struct ufs_hba *hba);
  1291. void ufshcd_release(struct ufs_hba *hba);
  1292. void ufshcd_clkgate_delay_set(struct device *dev, unsigned long value);
  1293. int ufshcd_get_vreg(struct device *dev, struct ufs_vreg *vreg);
  1294. int ufshcd_send_uic_cmd(struct ufs_hba *hba, struct uic_command *uic_cmd);
  1295. int ufshcd_advanced_rpmb_req_handler(struct ufs_hba *hba, struct utp_upiu_req *req_upiu,
  1296. struct utp_upiu_req *rsp_upiu, struct ufs_ehs *ehs_req,
  1297. struct ufs_ehs *ehs_rsp, int sg_cnt,
  1298. struct scatterlist *sg_list, enum dma_data_direction dir);
  1299. int ufshcd_wb_toggle(struct ufs_hba *hba, bool enable);
  1300. int ufshcd_wb_toggle_buf_flush(struct ufs_hba *hba, bool enable);
  1301. int ufshcd_suspend_prepare(struct device *dev);
  1302. int __ufshcd_suspend_prepare(struct device *dev, bool rpm_ok_for_spm);
  1303. void ufshcd_resume_complete(struct device *dev);
  1304. bool ufshcd_is_hba_active(struct ufs_hba *hba);
  1305. void ufshcd_pm_qos_init(struct ufs_hba *hba);
  1306. void ufshcd_pm_qos_exit(struct ufs_hba *hba);
  1307. /* Wrapper functions for safely calling variant operations */
  1308. static inline int ufshcd_vops_init(struct ufs_hba *hba)
  1309. {
  1310. if (hba->vops && hba->vops->init)
  1311. return hba->vops->init(hba);
  1312. return 0;
  1313. }
  1314. static inline int ufshcd_vops_phy_initialization(struct ufs_hba *hba)
  1315. {
  1316. if (hba->vops && hba->vops->phy_initialization)
  1317. return hba->vops->phy_initialization(hba);
  1318. return 0;
  1319. }
  1320. extern const struct ufs_pm_lvl_states ufs_pm_lvl_states[];
  1321. int ufshcd_dump_regs(struct ufs_hba *hba, size_t offset, size_t len,
  1322. const char *prefix);
  1323. int __ufshcd_write_ee_control(struct ufs_hba *hba, u32 ee_ctrl_mask);
  1324. int ufshcd_write_ee_control(struct ufs_hba *hba);
  1325. int ufshcd_update_ee_control(struct ufs_hba *hba, u16 *mask,
  1326. const u16 *other_mask, u16 set, u16 clr);
  1327. #endif /* End of Header */