xref: /linux/drivers/ufs/core/ufshcd-priv.h (revision 1623bc27a85a93e82194c8d077eccc464efa67db)
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