1 /* SPDX-License-Identifier: GPL-2.0-or-later */ 2 3 #ifndef _UFSHCD_PRIV_H_ 4 #define _UFSHCD_PRIV_H_ 5 6 #include <linux/pm_runtime.h> 7 #include <ufs/ufshcd.h> 8 9 static inline bool ufshcd_is_user_access_allowed(struct ufs_hba *hba) 10 { 11 return !hba->shutting_down; 12 } 13 14 void ufshcd_schedule_eh_work(struct ufs_hba *hba); 15 16 static inline bool ufshcd_keep_autobkops_enabled_except_suspend( 17 struct ufs_hba *hba) 18 { 19 return hba->caps & UFSHCD_CAP_KEEP_AUTO_BKOPS_ENABLED_EXCEPT_SUSPEND; 20 } 21 22 static inline u8 ufshcd_wb_get_query_index(struct ufs_hba *hba) 23 { 24 if (hba->dev_info.wb_buffer_type == WB_BUF_MODE_LU_DEDICATED) 25 return hba->dev_info.wb_dedicated_lu; 26 return 0; 27 } 28 29 static inline bool ufshcd_is_wb_buf_flush_allowed(struct ufs_hba *hba) 30 { 31 return ufshcd_is_wb_allowed(hba) && 32 !(hba->quirks & UFSHCI_QUIRK_SKIP_MANUAL_WB_FLUSH_CTRL); 33 } 34 35 #ifdef CONFIG_SCSI_UFS_HWMON 36 void ufs_hwmon_probe(struct ufs_hba *hba, u8 mask); 37 void ufs_hwmon_remove(struct ufs_hba *hba); 38 void ufs_hwmon_notify_event(struct ufs_hba *hba, u8 ee_mask); 39 #else 40 static inline void ufs_hwmon_probe(struct ufs_hba *hba, u8 mask) {} 41 static inline void ufs_hwmon_remove(struct ufs_hba *hba) {} 42 static inline void ufs_hwmon_notify_event(struct ufs_hba *hba, u8 ee_mask) {} 43 #endif 44 45 int ufshcd_query_descriptor_retry(struct ufs_hba *hba, 46 enum query_opcode opcode, 47 enum desc_idn idn, u8 index, 48 u8 selector, 49 u8 *desc_buf, int *buf_len); 50 int ufshcd_read_desc_param(struct ufs_hba *hba, 51 enum desc_idn desc_id, 52 int desc_index, 53 u8 param_offset, 54 u8 *param_read_buf, 55 u8 param_size); 56 int ufshcd_query_attr_retry(struct ufs_hba *hba, enum query_opcode opcode, 57 enum attr_idn idn, u8 index, u8 selector, 58 u32 *attr_val); 59 int ufshcd_query_attr(struct ufs_hba *hba, enum query_opcode opcode, 60 enum attr_idn idn, u8 index, u8 selector, u32 *attr_val); 61 int ufshcd_query_flag(struct ufs_hba *hba, enum query_opcode opcode, 62 enum flag_idn idn, u8 index, bool *flag_res); 63 void ufshcd_auto_hibern8_update(struct ufs_hba *hba, u32 ahit); 64 void ufshcd_compl_one_cqe(struct ufs_hba *hba, int task_tag, 65 struct cq_entry *cqe); 66 int ufshcd_mcq_init(struct ufs_hba *hba); 67 void ufshcd_mcq_disable(struct ufs_hba *hba); 68 int ufshcd_mcq_decide_queue_depth(struct ufs_hba *hba); 69 int ufshcd_mcq_memory_alloc(struct ufs_hba *hba); 70 struct ufs_hw_queue *ufshcd_mcq_req_to_hwq(struct ufs_hba *hba, 71 struct request *req); 72 void ufshcd_mcq_compl_all_cqes_lock(struct ufs_hba *hba, 73 struct ufs_hw_queue *hwq); 74 bool ufshcd_cmd_inflight(struct scsi_cmnd *cmd); 75 int ufshcd_mcq_sq_cleanup(struct ufs_hba *hba, int task_tag); 76 int ufshcd_mcq_abort(struct scsi_cmnd *cmd); 77 int ufshcd_try_to_abort_task(struct ufs_hba *hba, int tag); 78 void ufshcd_release_scsi_cmd(struct ufs_hba *hba, 79 struct ufshcd_lrb *lrbp); 80 81 #define SD_ASCII_STD true 82 #define SD_RAW false 83 int ufshcd_read_string_desc(struct ufs_hba *hba, u8 desc_index, 84 u8 **buf, bool ascii); 85 86 int ufshcd_send_uic_cmd(struct ufs_hba *hba, struct uic_command *uic_cmd); 87 int ufshcd_send_bsg_uic_cmd(struct ufs_hba *hba, struct uic_command *uic_cmd); 88 89 int ufshcd_exec_raw_upiu_cmd(struct ufs_hba *hba, 90 struct utp_upiu_req *req_upiu, 91 struct utp_upiu_req *rsp_upiu, 92 enum upiu_request_transaction msgcode, 93 u8 *desc_buff, int *buff_len, 94 enum query_opcode desc_op); 95 96 int ufshcd_wb_toggle(struct ufs_hba *hba, bool enable); 97 98 /* Wrapper functions for safely calling variant operations */ 99 static inline const char *ufshcd_get_var_name(struct ufs_hba *hba) 100 { 101 if (hba->vops) 102 return hba->vops->name; 103 return ""; 104 } 105 106 static inline void ufshcd_vops_exit(struct ufs_hba *hba) 107 { 108 if (hba->vops && hba->vops->exit) 109 return hba->vops->exit(hba); 110 } 111 112 static inline u32 ufshcd_vops_get_ufs_hci_version(struct ufs_hba *hba) 113 { 114 if (hba->vops && hba->vops->get_ufs_hci_version) 115 return hba->vops->get_ufs_hci_version(hba); 116 117 return ufshcd_readl(hba, REG_UFS_VERSION); 118 } 119 120 static inline int ufshcd_vops_clk_scale_notify(struct ufs_hba *hba, 121 bool up, enum ufs_notify_change_status status) 122 { 123 if (hba->vops && hba->vops->clk_scale_notify) 124 return hba->vops->clk_scale_notify(hba, up, status); 125 return 0; 126 } 127 128 static inline void ufshcd_vops_event_notify(struct ufs_hba *hba, 129 enum ufs_event_type evt, 130 void *data) 131 { 132 if (hba->vops && hba->vops->event_notify) 133 hba->vops->event_notify(hba, evt, data); 134 } 135 136 static inline int ufshcd_vops_setup_clocks(struct ufs_hba *hba, bool on, 137 enum ufs_notify_change_status status) 138 { 139 if (hba->vops && hba->vops->setup_clocks) 140 return hba->vops->setup_clocks(hba, on, status); 141 return 0; 142 } 143 144 static inline int ufshcd_vops_hce_enable_notify(struct ufs_hba *hba, 145 bool status) 146 { 147 if (hba->vops && hba->vops->hce_enable_notify) 148 return hba->vops->hce_enable_notify(hba, status); 149 150 return 0; 151 } 152 static inline int ufshcd_vops_link_startup_notify(struct ufs_hba *hba, 153 bool status) 154 { 155 if (hba->vops && hba->vops->link_startup_notify) 156 return hba->vops->link_startup_notify(hba, status); 157 158 return 0; 159 } 160 161 static inline int ufshcd_vops_pwr_change_notify(struct ufs_hba *hba, 162 enum ufs_notify_change_status status, 163 struct ufs_pa_layer_attr *dev_max_params, 164 struct ufs_pa_layer_attr *dev_req_params) 165 { 166 if (hba->vops && hba->vops->pwr_change_notify) 167 return hba->vops->pwr_change_notify(hba, status, 168 dev_max_params, dev_req_params); 169 170 return -ENOTSUPP; 171 } 172 173 static inline void ufshcd_vops_setup_task_mgmt(struct ufs_hba *hba, 174 int tag, u8 tm_function) 175 { 176 if (hba->vops && hba->vops->setup_task_mgmt) 177 return hba->vops->setup_task_mgmt(hba, tag, tm_function); 178 } 179 180 static inline void ufshcd_vops_hibern8_notify(struct ufs_hba *hba, 181 enum uic_cmd_dme cmd, 182 enum ufs_notify_change_status status) 183 { 184 if (hba->vops && hba->vops->hibern8_notify) 185 return hba->vops->hibern8_notify(hba, cmd, status); 186 } 187 188 static inline int ufshcd_vops_apply_dev_quirks(struct ufs_hba *hba) 189 { 190 if (hba->vops && hba->vops->apply_dev_quirks) 191 return hba->vops->apply_dev_quirks(hba); 192 return 0; 193 } 194 195 static inline void ufshcd_vops_fixup_dev_quirks(struct ufs_hba *hba) 196 { 197 if (hba->vops && hba->vops->fixup_dev_quirks) 198 hba->vops->fixup_dev_quirks(hba); 199 } 200 201 static inline int ufshcd_vops_suspend(struct ufs_hba *hba, enum ufs_pm_op op, 202 enum ufs_notify_change_status status) 203 { 204 if (hba->vops && hba->vops->suspend) 205 return hba->vops->suspend(hba, op, status); 206 207 return 0; 208 } 209 210 static inline int ufshcd_vops_resume(struct ufs_hba *hba, enum ufs_pm_op op) 211 { 212 if (hba->vops && hba->vops->resume) 213 return hba->vops->resume(hba, op); 214 215 return 0; 216 } 217 218 static inline void ufshcd_vops_dbg_register_dump(struct ufs_hba *hba) 219 { 220 if (hba->vops && hba->vops->dbg_register_dump) 221 hba->vops->dbg_register_dump(hba); 222 } 223 224 static inline int ufshcd_vops_device_reset(struct ufs_hba *hba) 225 { 226 if (hba->vops && hba->vops->device_reset) 227 return hba->vops->device_reset(hba); 228 229 return -EOPNOTSUPP; 230 } 231 232 static inline void ufshcd_vops_config_scaling_param(struct ufs_hba *hba, 233 struct devfreq_dev_profile *p, 234 struct devfreq_simple_ondemand_data *data) 235 { 236 if (hba->vops && hba->vops->config_scaling_param) 237 hba->vops->config_scaling_param(hba, p, data); 238 } 239 240 static inline void ufshcd_vops_reinit_notify(struct ufs_hba *hba) 241 { 242 if (hba->vops && hba->vops->reinit_notify) 243 hba->vops->reinit_notify(hba); 244 } 245 246 static inline int ufshcd_vops_mcq_config_resource(struct ufs_hba *hba) 247 { 248 if (hba->vops && hba->vops->mcq_config_resource) 249 return hba->vops->mcq_config_resource(hba); 250 251 return -EOPNOTSUPP; 252 } 253 254 static inline int ufshcd_mcq_vops_op_runtime_config(struct ufs_hba *hba) 255 { 256 if (hba->vops && hba->vops->op_runtime_config) 257 return hba->vops->op_runtime_config(hba); 258 259 return -EOPNOTSUPP; 260 } 261 262 static inline int ufshcd_vops_get_outstanding_cqs(struct ufs_hba *hba, 263 unsigned long *ocqs) 264 { 265 if (hba->vops && hba->vops->get_outstanding_cqs) 266 return hba->vops->get_outstanding_cqs(hba, ocqs); 267 268 return -EOPNOTSUPP; 269 } 270 271 static inline int ufshcd_mcq_vops_config_esi(struct ufs_hba *hba) 272 { 273 if (hba->vops && hba->vops->config_esi) 274 return hba->vops->config_esi(hba); 275 276 return -EOPNOTSUPP; 277 } 278 279 extern const struct ufs_pm_lvl_states ufs_pm_lvl_states[]; 280 281 /** 282 * ufshcd_scsi_to_upiu_lun - maps scsi LUN to UPIU LUN 283 * @scsi_lun: scsi LUN id 284 * 285 * Return: UPIU LUN id 286 */ 287 static inline u8 ufshcd_scsi_to_upiu_lun(unsigned int scsi_lun) 288 { 289 if (scsi_is_wlun(scsi_lun)) 290 return (scsi_lun & UFS_UPIU_MAX_UNIT_NUM_ID) 291 | UFS_UPIU_WLUN_ID; 292 else 293 return scsi_lun & UFS_UPIU_MAX_UNIT_NUM_ID; 294 } 295 296 int __ufshcd_write_ee_control(struct ufs_hba *hba, u32 ee_ctrl_mask); 297 int ufshcd_write_ee_control(struct ufs_hba *hba); 298 int ufshcd_update_ee_control(struct ufs_hba *hba, u16 *mask, 299 const u16 *other_mask, u16 set, u16 clr); 300 301 static inline int ufshcd_update_ee_drv_mask(struct ufs_hba *hba, 302 u16 set, u16 clr) 303 { 304 return ufshcd_update_ee_control(hba, &hba->ee_drv_mask, 305 &hba->ee_usr_mask, set, clr); 306 } 307 308 static inline int ufshcd_update_ee_usr_mask(struct ufs_hba *hba, 309 u16 set, u16 clr) 310 { 311 return ufshcd_update_ee_control(hba, &hba->ee_usr_mask, 312 &hba->ee_drv_mask, set, clr); 313 } 314 315 static inline int ufshcd_rpm_get_sync(struct ufs_hba *hba) 316 { 317 return pm_runtime_get_sync(&hba->ufs_device_wlun->sdev_gendev); 318 } 319 320 static inline int ufshcd_rpm_get_if_active(struct ufs_hba *hba) 321 { 322 return pm_runtime_get_if_active(&hba->ufs_device_wlun->sdev_gendev); 323 } 324 325 static inline int ufshcd_rpm_put_sync(struct ufs_hba *hba) 326 { 327 return pm_runtime_put_sync(&hba->ufs_device_wlun->sdev_gendev); 328 } 329 330 static inline void ufshcd_rpm_get_noresume(struct ufs_hba *hba) 331 { 332 pm_runtime_get_noresume(&hba->ufs_device_wlun->sdev_gendev); 333 } 334 335 static inline int ufshcd_rpm_resume(struct ufs_hba *hba) 336 { 337 return pm_runtime_resume(&hba->ufs_device_wlun->sdev_gendev); 338 } 339 340 static inline int ufshcd_rpm_put(struct ufs_hba *hba) 341 { 342 return pm_runtime_put(&hba->ufs_device_wlun->sdev_gendev); 343 } 344 345 /** 346 * ufs_is_valid_unit_desc_lun - checks if the given LUN has a unit descriptor 347 * @dev_info: pointer of instance of struct ufs_dev_info 348 * @lun: LU number to check 349 * @return: true if the lun has a matching unit descriptor, false otherwise 350 */ 351 static inline bool ufs_is_valid_unit_desc_lun(struct ufs_dev_info *dev_info, u8 lun) 352 { 353 if (!dev_info || !dev_info->max_lu_supported) { 354 pr_err("Max General LU supported by UFS isn't initialized\n"); 355 return false; 356 } 357 return lun == UFS_UPIU_RPMB_WLUN || (lun < dev_info->max_lu_supported); 358 } 359 360 static inline void ufshcd_inc_sq_tail(struct ufs_hw_queue *q) 361 __must_hold(&q->sq_lock) 362 { 363 u32 val; 364 365 q->sq_tail_slot++; 366 if (q->sq_tail_slot == q->max_entries) 367 q->sq_tail_slot = 0; 368 val = q->sq_tail_slot * sizeof(struct utp_transfer_req_desc); 369 writel(val, q->mcq_sq_tail); 370 } 371 372 static inline void ufshcd_mcq_update_cq_tail_slot(struct ufs_hw_queue *q) 373 { 374 u32 val = readl(q->mcq_cq_tail); 375 376 q->cq_tail_slot = val / sizeof(struct cq_entry); 377 } 378 379 static inline bool ufshcd_mcq_is_cq_empty(struct ufs_hw_queue *q) 380 { 381 return q->cq_head_slot == q->cq_tail_slot; 382 } 383 384 static inline void ufshcd_mcq_inc_cq_head_slot(struct ufs_hw_queue *q) 385 { 386 q->cq_head_slot++; 387 if (q->cq_head_slot == q->max_entries) 388 q->cq_head_slot = 0; 389 } 390 391 static inline void ufshcd_mcq_update_cq_head(struct ufs_hw_queue *q) 392 { 393 writel(q->cq_head_slot * sizeof(struct cq_entry), q->mcq_cq_head); 394 } 395 396 static inline struct cq_entry *ufshcd_mcq_cur_cqe(struct ufs_hw_queue *q) 397 { 398 struct cq_entry *cqe = q->cqe_base_addr; 399 400 return cqe + q->cq_head_slot; 401 } 402 403 static inline u32 ufshcd_mcq_get_sq_head_slot(struct ufs_hw_queue *q) 404 { 405 u32 val = readl(q->mcq_sq_head); 406 407 return val / sizeof(struct utp_transfer_req_desc); 408 } 409 410 #endif /* _UFSHCD_PRIV_H_ */ 411