cam_custom_context.c 43 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2019-2020, The Linux Foundation. All rights reserved.
  4. */
  5. #include <linux/debugfs.h>
  6. #include <linux/videodev2.h>
  7. #include <linux/slab.h>
  8. #include <linux/uaccess.h>
  9. #include <linux/ratelimit.h>
  10. #include "cam_mem_mgr.h"
  11. #include "cam_sync_api.h"
  12. #include "cam_req_mgr_dev.h"
  13. #include "cam_trace.h"
  14. #include "cam_debug_util.h"
  15. #include "cam_packet_util.h"
  16. #include "cam_context_utils.h"
  17. #include "cam_custom_context.h"
  18. #include "cam_common_util.h"
  19. static const char custom_dev_name[] = "cam-custom";
  20. static int __cam_custom_ctx_handle_irq_in_activated(
  21. void *context, uint32_t evt_id, void *evt_data);
  22. static int __cam_custom_ctx_start_dev_in_ready(
  23. struct cam_context *ctx, struct cam_start_stop_dev_cmd *cmd);
  24. static int __cam_custom_ctx_apply_req_in_activated_state(
  25. struct cam_context *ctx, struct cam_req_mgr_apply_request *apply,
  26. uint32_t next_state);
  27. static int __cam_custom_ctx_apply_default_settings(
  28. struct cam_context *ctx, struct cam_req_mgr_apply_request *apply);
  29. static int __cam_custom_ctx_apply_req_in_activated(
  30. struct cam_context *ctx, struct cam_req_mgr_apply_request *apply)
  31. {
  32. int rc = 0;
  33. struct cam_custom_context *custom_ctx =
  34. (struct cam_custom_context *) ctx->ctx_priv;
  35. rc = __cam_custom_ctx_apply_req_in_activated_state(
  36. ctx, apply, CAM_CUSTOM_CTX_ACTIVATED_APPLIED);
  37. CAM_DBG(CAM_CUSTOM, "new substate %d", custom_ctx->substate_activated);
  38. if (rc)
  39. CAM_ERR(CAM_CUSTOM, "Apply failed in state %d rc %d",
  40. custom_ctx->substate_activated, rc);
  41. return rc;
  42. }
  43. static int __cam_custom_ctx_handle_error(
  44. struct cam_custom_context *custom_ctx, void *evt_data)
  45. {
  46. /*
  47. * Handle any HW error scenerios here, all the
  48. * requests in all the lists can be signaled error.
  49. * Notify UMD about this error if needed.
  50. */
  51. return 0;
  52. }
  53. static int __cam_custom_ctx_reg_upd_in_sof(
  54. struct cam_custom_context *custom_ctx, void *evt_data)
  55. {
  56. struct cam_ctx_request *req = NULL;
  57. struct cam_custom_dev_ctx_req *req_custom;
  58. struct cam_context *ctx = custom_ctx->base;
  59. custom_ctx->frame_id++;
  60. /*
  61. * This is for the first update before streamon.
  62. * The initial setting will cause the reg_upd in the
  63. * first frame.
  64. */
  65. if (!list_empty(&ctx->wait_req_list)) {
  66. req = list_first_entry(&ctx->wait_req_list,
  67. struct cam_ctx_request, list);
  68. list_del_init(&req->list);
  69. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  70. if (req_custom->num_fence_map_out == req_custom->num_acked) {
  71. list_add_tail(&req->list, &ctx->free_req_list);
  72. } else {
  73. list_add_tail(&req->list, &ctx->active_req_list);
  74. custom_ctx->active_req_cnt++;
  75. CAM_DBG(CAM_REQ,
  76. "move request %lld to active list(cnt = %d), ctx %u",
  77. req->request_id, custom_ctx->active_req_cnt,
  78. ctx->ctx_id);
  79. }
  80. }
  81. return 0;
  82. }
  83. static int __cam_custom_ctx_reg_upd_in_applied_state(
  84. struct cam_custom_context *custom_ctx, void *evt_data)
  85. {
  86. struct cam_ctx_request *req;
  87. struct cam_context *ctx = custom_ctx->base;
  88. struct cam_custom_dev_ctx_req *req_custom;
  89. custom_ctx->frame_id++;
  90. if (list_empty(&ctx->wait_req_list)) {
  91. CAM_ERR(CAM_CUSTOM,
  92. "Reg upd ack with no waiting request");
  93. goto end;
  94. }
  95. req = list_first_entry(&ctx->wait_req_list,
  96. struct cam_ctx_request, list);
  97. list_del_init(&req->list);
  98. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  99. if (req_custom->num_fence_map_out != 0) {
  100. list_add_tail(&req->list, &ctx->active_req_list);
  101. custom_ctx->active_req_cnt++;
  102. CAM_DBG(CAM_REQ,
  103. "move request %lld to active list(cnt = %d), ctx %u",
  104. req->request_id, custom_ctx->active_req_cnt,
  105. ctx->ctx_id);
  106. } else {
  107. /* no io config, so the request is completed. */
  108. list_add_tail(&req->list, &ctx->free_req_list);
  109. CAM_DBG(CAM_ISP,
  110. "move active request %lld to free list(cnt = %d), ctx %u",
  111. req->request_id, custom_ctx->active_req_cnt,
  112. ctx->ctx_id);
  113. }
  114. custom_ctx->substate_activated = CAM_CUSTOM_CTX_ACTIVATED_SOF;
  115. CAM_DBG(CAM_CUSTOM, "next substate %d", custom_ctx->substate_activated);
  116. end:
  117. return 0;
  118. }
  119. static int __cam_custom_ctx_frame_done(
  120. struct cam_custom_context *custom_ctx, void *evt_data)
  121. {
  122. int rc = 0, i, j;
  123. uint64_t frame_done_req_id;
  124. struct cam_ctx_request *req;
  125. struct cam_custom_dev_ctx_req *req_custom;
  126. struct cam_context *ctx = custom_ctx->base;
  127. struct cam_custom_hw_done_event_data *done_data =
  128. (struct cam_custom_hw_done_event_data *)evt_data;
  129. if (list_empty(&ctx->active_req_list)) {
  130. CAM_DBG(CAM_CUSTOM, "Frame done with no active request");
  131. return 0;
  132. }
  133. req = list_first_entry(&ctx->active_req_list,
  134. struct cam_ctx_request, list);
  135. req_custom = req->req_priv;
  136. for (i = 0; i < done_data->num_handles; i++) {
  137. for (j = 0; j < req_custom->num_fence_map_out; j++) {
  138. if (done_data->resource_handle[i] ==
  139. req_custom->fence_map_out[j].resource_handle)
  140. break;
  141. }
  142. if (j == req_custom->num_fence_map_out) {
  143. CAM_ERR(CAM_CUSTOM,
  144. "Can not find matching rsrc handle 0x%x!",
  145. done_data->resource_handle[i]);
  146. rc = -EINVAL;
  147. continue;
  148. }
  149. if (req_custom->fence_map_out[j].sync_id == -1) {
  150. CAM_WARN(CAM_CUSTOM,
  151. "Duplicate frame done for req %lld",
  152. req->request_id);
  153. continue;
  154. }
  155. rc = cam_sync_signal(req_custom->fence_map_out[j].sync_id,
  156. CAM_SYNC_STATE_SIGNALED_SUCCESS,
  157. CAM_SYNC_COMMON_EVENT_SUCCESS);
  158. if (rc)
  159. CAM_ERR(CAM_CUSTOM, "Sync failed with rc = %d", rc);
  160. req_custom->num_acked++;
  161. req_custom->fence_map_out[j].sync_id = -1;
  162. }
  163. if (req_custom->num_acked > req_custom->num_fence_map_out) {
  164. CAM_ERR(CAM_CUSTOM,
  165. "WARNING: req_id %lld num_acked %d > map_out %d, ctx %u",
  166. req->request_id, req_custom->num_acked,
  167. req_custom->num_fence_map_out, ctx->ctx_id);
  168. }
  169. if (req_custom->num_acked != req_custom->num_fence_map_out)
  170. return rc;
  171. custom_ctx->active_req_cnt--;
  172. frame_done_req_id = req->request_id;
  173. list_del_init(&req->list);
  174. list_add_tail(&req->list, &ctx->free_req_list);
  175. CAM_DBG(CAM_REQ,
  176. "Move active request %lld to free list(cnt = %d) [all fences done], ctx %u",
  177. frame_done_req_id, custom_ctx->active_req_cnt, ctx->ctx_id);
  178. return rc;
  179. }
  180. static struct cam_ctx_ops
  181. cam_custom_ctx_activated_state_machine
  182. [CAM_CUSTOM_CTX_ACTIVATED_MAX] = {
  183. /* SOF */
  184. {
  185. .ioctl_ops = {},
  186. .crm_ops = {
  187. .apply_req = __cam_custom_ctx_apply_req_in_activated,
  188. .notify_frame_skip =
  189. __cam_custom_ctx_apply_default_settings,
  190. },
  191. .irq_ops = NULL,
  192. },
  193. /* APPLIED */
  194. {
  195. .ioctl_ops = {},
  196. .crm_ops = {
  197. .apply_req = __cam_custom_ctx_apply_req_in_activated,
  198. .notify_frame_skip =
  199. __cam_custom_ctx_apply_default_settings,
  200. },
  201. .irq_ops = NULL,
  202. },
  203. /* HW ERROR */
  204. {
  205. .ioctl_ops = {},
  206. .crm_ops = {},
  207. .irq_ops = NULL,
  208. },
  209. /* HALT */
  210. {
  211. .ioctl_ops = {},
  212. .crm_ops = {},
  213. .irq_ops = NULL,
  214. },
  215. };
  216. static struct cam_custom_ctx_irq_ops
  217. cam_custom_ctx_activated_state_machine_irq
  218. [CAM_CUSTOM_CTX_ACTIVATED_MAX] = {
  219. /* SOF */
  220. {
  221. .irq_ops = {
  222. __cam_custom_ctx_handle_error,
  223. __cam_custom_ctx_reg_upd_in_sof,
  224. __cam_custom_ctx_frame_done,
  225. },
  226. },
  227. /* APPLIED */
  228. {
  229. .irq_ops = {
  230. __cam_custom_ctx_handle_error,
  231. __cam_custom_ctx_reg_upd_in_applied_state,
  232. __cam_custom_ctx_frame_done,
  233. },
  234. },
  235. /* HW ERROR */
  236. {
  237. .irq_ops = {
  238. NULL,
  239. NULL,
  240. NULL,
  241. },
  242. },
  243. /* HALT */
  244. {
  245. },
  246. };
  247. static int __cam_custom_ctx_enqueue_request_in_order(
  248. struct cam_context *ctx, struct cam_ctx_request *req)
  249. {
  250. struct cam_ctx_request *req_current;
  251. struct cam_ctx_request *req_prev;
  252. struct list_head temp_list;
  253. INIT_LIST_HEAD(&temp_list);
  254. spin_lock_bh(&ctx->lock);
  255. if (list_empty(&ctx->pending_req_list)) {
  256. list_add_tail(&req->list, &ctx->pending_req_list);
  257. } else {
  258. list_for_each_entry_safe_reverse(
  259. req_current, req_prev, &ctx->pending_req_list, list) {
  260. if (req->request_id < req_current->request_id) {
  261. list_del_init(&req_current->list);
  262. list_add(&req_current->list, &temp_list);
  263. continue;
  264. } else if (req->request_id == req_current->request_id) {
  265. CAM_WARN(CAM_CUSTOM,
  266. "Received duplicated request %lld",
  267. req->request_id);
  268. }
  269. break;
  270. }
  271. list_add_tail(&req->list, &ctx->pending_req_list);
  272. if (!list_empty(&temp_list)) {
  273. list_for_each_entry_safe(
  274. req_current, req_prev, &temp_list, list) {
  275. list_del_init(&req_current->list);
  276. list_add_tail(&req_current->list,
  277. &ctx->pending_req_list);
  278. }
  279. }
  280. }
  281. spin_unlock_bh(&ctx->lock);
  282. return 0;
  283. }
  284. static int __cam_custom_ctx_flush_req(struct cam_context *ctx,
  285. struct list_head *req_list, struct cam_req_mgr_flush_request *flush_req)
  286. {
  287. int i, rc;
  288. uint32_t cancel_req_id_found = 0;
  289. struct cam_ctx_request *req;
  290. struct cam_ctx_request *req_temp;
  291. struct cam_custom_dev_ctx_req *req_custom;
  292. struct list_head flush_list;
  293. INIT_LIST_HEAD(&flush_list);
  294. if (list_empty(req_list)) {
  295. CAM_DBG(CAM_CUSTOM, "request list is empty");
  296. if (flush_req->type == CAM_REQ_MGR_FLUSH_TYPE_CANCEL_REQ) {
  297. CAM_ERR(CAM_CUSTOM, "no request to cancel");
  298. return -EINVAL;
  299. } else {
  300. return 0;
  301. }
  302. }
  303. CAM_DBG(CAM_CUSTOM, "Flush [%u] in progress for req_id %llu",
  304. flush_req->type, flush_req->req_id);
  305. list_for_each_entry_safe(req, req_temp, req_list, list) {
  306. if (flush_req->type == CAM_REQ_MGR_FLUSH_TYPE_CANCEL_REQ) {
  307. if (req->request_id != flush_req->req_id) {
  308. continue;
  309. } else {
  310. list_del_init(&req->list);
  311. list_add_tail(&req->list, &flush_list);
  312. cancel_req_id_found = 1;
  313. break;
  314. }
  315. }
  316. list_del_init(&req->list);
  317. list_add_tail(&req->list, &flush_list);
  318. }
  319. list_for_each_entry_safe(req, req_temp, &flush_list, list) {
  320. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  321. for (i = 0; i < req_custom->num_fence_map_out; i++) {
  322. if (req_custom->fence_map_out[i].sync_id != -1) {
  323. CAM_DBG(CAM_CUSTOM,
  324. "Flush req 0x%llx, fence %d",
  325. req->request_id,
  326. req_custom->fence_map_out[i].sync_id);
  327. rc = cam_sync_signal(
  328. req_custom->fence_map_out[i].sync_id,
  329. CAM_SYNC_STATE_SIGNALED_CANCEL,
  330. CAM_SYNC_COMMON_EVENT_FLUSH);
  331. if (rc)
  332. CAM_ERR_RATE_LIMIT(CAM_CUSTOM,
  333. "signal fence failed\n");
  334. req_custom->fence_map_out[i].sync_id = -1;
  335. }
  336. }
  337. list_add_tail(&req->list, &ctx->free_req_list);
  338. }
  339. if (flush_req->type == CAM_REQ_MGR_FLUSH_TYPE_CANCEL_REQ &&
  340. !cancel_req_id_found)
  341. CAM_DBG(CAM_CUSTOM,
  342. "Flush request id:%lld is not found in the list",
  343. flush_req->req_id);
  344. return 0;
  345. }
  346. static int __cam_custom_ctx_unlink_in_acquired(struct cam_context *ctx,
  347. struct cam_req_mgr_core_dev_link_setup *unlink)
  348. {
  349. ctx->link_hdl = -1;
  350. ctx->ctx_crm_intf = NULL;
  351. return 0;
  352. }
  353. static int __cam_custom_ctx_unlink_in_ready(struct cam_context *ctx,
  354. struct cam_req_mgr_core_dev_link_setup *unlink)
  355. {
  356. ctx->link_hdl = -1;
  357. ctx->ctx_crm_intf = NULL;
  358. ctx->state = CAM_CTX_ACQUIRED;
  359. return 0;
  360. }
  361. static int __cam_custom_ctx_get_dev_info_in_acquired(struct cam_context *ctx,
  362. struct cam_req_mgr_device_info *dev_info)
  363. {
  364. dev_info->dev_hdl = ctx->dev_hdl;
  365. strlcpy(dev_info->name, CAM_CUSTOM_DEV_NAME, sizeof(dev_info->name));
  366. dev_info->dev_id = CAM_REQ_MGR_DEVICE_CUSTOM_HW;
  367. dev_info->p_delay = 1;
  368. dev_info->trigger = CAM_TRIGGER_POINT_SOF;
  369. return 0;
  370. }
  371. static int __cam_custom_ctx_flush_req_in_top_state(
  372. struct cam_context *ctx,
  373. struct cam_req_mgr_flush_request *flush_req)
  374. {
  375. int rc = 0;
  376. struct cam_custom_context *custom_ctx;
  377. struct cam_hw_reset_args reset_args;
  378. struct cam_hw_stop_args stop_args;
  379. struct cam_custom_stop_args custom_stop;
  380. custom_ctx =
  381. (struct cam_custom_context *) ctx->ctx_priv;
  382. CAM_DBG(CAM_CUSTOM, "Flushing pending list");
  383. spin_lock_bh(&ctx->lock);
  384. __cam_custom_ctx_flush_req(ctx, &ctx->pending_req_list, flush_req);
  385. spin_unlock_bh(&ctx->lock);
  386. if (flush_req->type == CAM_REQ_MGR_FLUSH_TYPE_ALL) {
  387. if (ctx->state <= CAM_CTX_READY) {
  388. ctx->state = CAM_CTX_ACQUIRED;
  389. goto end;
  390. }
  391. spin_lock_bh(&ctx->lock);
  392. ctx->state = CAM_CTX_FLUSHED;
  393. spin_unlock_bh(&ctx->lock);
  394. CAM_INFO(CAM_CUSTOM, "Last request id to flush is %lld",
  395. flush_req->req_id);
  396. ctx->last_flush_req = flush_req->req_id;
  397. /* stop hw first */
  398. if (ctx->hw_mgr_intf->hw_stop) {
  399. custom_stop.stop_only = true;
  400. stop_args.ctxt_to_hw_map = ctx->ctxt_to_hw_map;
  401. stop_args.args = (void *) &custom_stop;
  402. rc = ctx->hw_mgr_intf->hw_stop(
  403. ctx->hw_mgr_intf->hw_mgr_priv, &stop_args);
  404. if (rc)
  405. CAM_ERR(CAM_CUSTOM,
  406. "HW stop failed in flush rc %d", rc);
  407. }
  408. spin_lock_bh(&ctx->lock);
  409. if (!list_empty(&ctx->wait_req_list))
  410. __cam_custom_ctx_flush_req(ctx, &ctx->wait_req_list,
  411. flush_req);
  412. if (!list_empty(&ctx->active_req_list))
  413. __cam_custom_ctx_flush_req(ctx, &ctx->active_req_list,
  414. flush_req);
  415. custom_ctx->active_req_cnt = 0;
  416. spin_unlock_bh(&ctx->lock);
  417. reset_args.ctxt_to_hw_map = custom_ctx->hw_ctx;
  418. rc = ctx->hw_mgr_intf->hw_reset(ctx->hw_mgr_intf->hw_mgr_priv,
  419. &reset_args);
  420. if (rc)
  421. CAM_ERR(CAM_CUSTOM,
  422. "Reset HW failed in flush rc %d", rc);
  423. custom_ctx->init_received = false;
  424. }
  425. end:
  426. return rc;
  427. }
  428. static int __cam_custom_ctx_flush_req_in_ready(
  429. struct cam_context *ctx,
  430. struct cam_req_mgr_flush_request *flush_req)
  431. {
  432. int rc = 0;
  433. CAM_DBG(CAM_CUSTOM, "try to flush pending list");
  434. spin_lock_bh(&ctx->lock);
  435. rc = __cam_custom_ctx_flush_req(ctx, &ctx->pending_req_list, flush_req);
  436. /* if nothing is in pending req list, change state to acquire */
  437. if (list_empty(&ctx->pending_req_list))
  438. ctx->state = CAM_CTX_ACQUIRED;
  439. spin_unlock_bh(&ctx->lock);
  440. CAM_DBG(CAM_CUSTOM, "Flush request in ready state. next state %d",
  441. ctx->state);
  442. return rc;
  443. }
  444. static int __cam_custom_stop_dev_core(
  445. struct cam_context *ctx, struct cam_start_stop_dev_cmd *stop_cmd)
  446. {
  447. int rc = 0;
  448. uint32_t i;
  449. struct cam_custom_context *ctx_custom =
  450. (struct cam_custom_context *) ctx->ctx_priv;
  451. struct cam_ctx_request *req;
  452. struct cam_custom_dev_ctx_req *req_custom;
  453. struct cam_hw_stop_args stop;
  454. struct cam_custom_stop_args custom_stop;
  455. if ((ctx->state != CAM_CTX_FLUSHED) && (ctx_custom->hw_ctx) &&
  456. (ctx->hw_mgr_intf->hw_stop)) {
  457. custom_stop.stop_only = false;
  458. stop.ctxt_to_hw_map = ctx_custom->hw_ctx;
  459. stop.args = (void *) &custom_stop;
  460. rc = ctx->hw_mgr_intf->hw_stop(ctx->hw_mgr_intf->hw_mgr_priv,
  461. &stop);
  462. if (rc)
  463. CAM_ERR(CAM_CUSTOM, "HW stop failed rc %d", rc);
  464. }
  465. while (!list_empty(&ctx->pending_req_list)) {
  466. req = list_first_entry(&ctx->pending_req_list,
  467. struct cam_ctx_request, list);
  468. list_del_init(&req->list);
  469. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  470. CAM_DBG(CAM_CUSTOM,
  471. "signal fence in pending list. fence num %d",
  472. req_custom->num_fence_map_out);
  473. for (i = 0; i < req_custom->num_fence_map_out; i++)
  474. if (req_custom->fence_map_out[i].sync_id != -1) {
  475. cam_sync_signal(
  476. req_custom->fence_map_out[i].sync_id,
  477. CAM_SYNC_STATE_SIGNALED_CANCEL,
  478. CAM_SYNC_COMMON_EVENT_STOP);
  479. }
  480. list_add_tail(&req->list, &ctx->free_req_list);
  481. }
  482. while (!list_empty(&ctx->wait_req_list)) {
  483. req = list_first_entry(&ctx->wait_req_list,
  484. struct cam_ctx_request, list);
  485. list_del_init(&req->list);
  486. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  487. CAM_DBG(CAM_CUSTOM, "signal fence in wait list. fence num %d",
  488. req_custom->num_fence_map_out);
  489. for (i = 0; i < req_custom->num_fence_map_out; i++)
  490. if (req_custom->fence_map_out[i].sync_id != -1) {
  491. cam_sync_signal(
  492. req_custom->fence_map_out[i].sync_id,
  493. CAM_SYNC_STATE_SIGNALED_CANCEL,
  494. CAM_SYNC_COMMON_EVENT_STOP);
  495. }
  496. list_add_tail(&req->list, &ctx->free_req_list);
  497. }
  498. while (!list_empty(&ctx->active_req_list)) {
  499. req = list_first_entry(&ctx->active_req_list,
  500. struct cam_ctx_request, list);
  501. list_del_init(&req->list);
  502. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  503. CAM_DBG(CAM_CUSTOM, "signal fence in active list. fence num %d",
  504. req_custom->num_fence_map_out);
  505. for (i = 0; i < req_custom->num_fence_map_out; i++)
  506. if (req_custom->fence_map_out[i].sync_id != -1) {
  507. cam_sync_signal(
  508. req_custom->fence_map_out[i].sync_id,
  509. CAM_SYNC_STATE_SIGNALED_CANCEL,
  510. CAM_SYNC_COMMON_EVENT_STOP);
  511. }
  512. list_add_tail(&req->list, &ctx->free_req_list);
  513. }
  514. ctx_custom->frame_id = 0;
  515. ctx_custom->active_req_cnt = 0;
  516. CAM_DBG(CAM_CUSTOM, "Stop device success next state %d on ctx %u",
  517. ctx->state, ctx->ctx_id);
  518. if (!stop_cmd) {
  519. rc = __cam_custom_ctx_unlink_in_ready(ctx, NULL);
  520. if (rc)
  521. CAM_ERR(CAM_CUSTOM, "Unlink failed rc=%d", rc);
  522. }
  523. return rc;
  524. }
  525. static int __cam_custom_stop_dev_in_activated(struct cam_context *ctx,
  526. struct cam_start_stop_dev_cmd *cmd)
  527. {
  528. struct cam_custom_context *ctx_custom =
  529. (struct cam_custom_context *)ctx->ctx_priv;
  530. __cam_custom_stop_dev_core(ctx, cmd);
  531. ctx_custom->init_received = false;
  532. ctx->state = CAM_CTX_ACQUIRED;
  533. return 0;
  534. }
  535. static int __cam_custom_ctx_release_hw_in_top_state(
  536. struct cam_context *ctx, void *cmd)
  537. {
  538. int rc = 0;
  539. struct cam_hw_release_args rel_arg;
  540. struct cam_req_mgr_flush_request flush_req;
  541. struct cam_custom_context *custom_ctx =
  542. (struct cam_custom_context *) ctx->ctx_priv;
  543. if (custom_ctx->hw_ctx) {
  544. rel_arg.ctxt_to_hw_map = custom_ctx->hw_ctx;
  545. rc = ctx->hw_mgr_intf->hw_release(ctx->hw_mgr_intf->hw_mgr_priv,
  546. &rel_arg);
  547. custom_ctx->hw_ctx = NULL;
  548. if (rc)
  549. CAM_ERR(CAM_CUSTOM,
  550. "Failed to release HW for ctx:%u", ctx->ctx_id);
  551. } else {
  552. CAM_ERR(CAM_CUSTOM, "No HW resources acquired for this ctx");
  553. }
  554. ctx->last_flush_req = 0;
  555. custom_ctx->frame_id = 0;
  556. custom_ctx->active_req_cnt = 0;
  557. custom_ctx->hw_acquired = false;
  558. custom_ctx->init_received = false;
  559. /* check for active requests as well */
  560. flush_req.type = CAM_REQ_MGR_FLUSH_TYPE_ALL;
  561. flush_req.link_hdl = ctx->link_hdl;
  562. flush_req.dev_hdl = ctx->dev_hdl;
  563. flush_req.req_id = 0;
  564. CAM_DBG(CAM_CUSTOM, "try to flush pending list");
  565. spin_lock_bh(&ctx->lock);
  566. rc = __cam_custom_ctx_flush_req(ctx, &ctx->pending_req_list,
  567. &flush_req);
  568. spin_unlock_bh(&ctx->lock);
  569. ctx->state = CAM_CTX_ACQUIRED;
  570. CAM_DBG(CAM_CUSTOM, "Release HW success[%u] next state %d",
  571. ctx->ctx_id, ctx->state);
  572. return rc;
  573. }
  574. static int __cam_custom_ctx_release_hw_in_activated_state(
  575. struct cam_context *ctx, void *cmd)
  576. {
  577. int rc = 0;
  578. rc = __cam_custom_stop_dev_in_activated(ctx, NULL);
  579. if (rc)
  580. CAM_ERR(CAM_CUSTOM, "Stop device failed rc=%d", rc);
  581. rc = __cam_custom_ctx_release_hw_in_top_state(ctx, cmd);
  582. if (rc)
  583. CAM_ERR(CAM_CUSTOM, "Release hw failed rc=%d", rc);
  584. return rc;
  585. }
  586. static int __cam_custom_release_dev_in_acquired(struct cam_context *ctx,
  587. struct cam_release_dev_cmd *cmd)
  588. {
  589. int rc;
  590. struct cam_custom_context *ctx_custom =
  591. (struct cam_custom_context *) ctx->ctx_priv;
  592. struct cam_req_mgr_flush_request flush_req;
  593. if (cmd && ctx_custom->hw_ctx) {
  594. CAM_ERR(CAM_CUSTOM, "releasing hw");
  595. __cam_custom_ctx_release_hw_in_top_state(ctx, NULL);
  596. }
  597. ctx->ctx_crm_intf = NULL;
  598. ctx->last_flush_req = 0;
  599. ctx_custom->frame_id = 0;
  600. ctx_custom->active_req_cnt = 0;
  601. ctx_custom->hw_acquired = false;
  602. ctx_custom->init_received = false;
  603. if (!list_empty(&ctx->active_req_list))
  604. CAM_ERR(CAM_CUSTOM, "Active list is not empty");
  605. /* Flush all the pending request list */
  606. flush_req.type = CAM_REQ_MGR_FLUSH_TYPE_ALL;
  607. flush_req.link_hdl = ctx->link_hdl;
  608. flush_req.dev_hdl = ctx->dev_hdl;
  609. flush_req.req_id = 0;
  610. CAM_DBG(CAM_CUSTOM, "try to flush pending list");
  611. spin_lock_bh(&ctx->lock);
  612. rc = __cam_custom_ctx_flush_req(ctx, &ctx->pending_req_list,
  613. &flush_req);
  614. spin_unlock_bh(&ctx->lock);
  615. ctx->state = CAM_CTX_AVAILABLE;
  616. CAM_DBG(CAM_CUSTOM, "Release device success[%u] next state %d",
  617. ctx->ctx_id, ctx->state);
  618. return rc;
  619. }
  620. static int __cam_custom_ctx_apply_default_settings(
  621. struct cam_context *ctx, struct cam_req_mgr_apply_request *apply)
  622. {
  623. int rc = 0;
  624. struct cam_custom_context *custom_ctx =
  625. (struct cam_custom_context *) ctx->ctx_priv;
  626. struct cam_hw_cmd_args hw_cmd_args;
  627. struct cam_custom_hw_cmd_args custom_hw_cmd_args;
  628. hw_cmd_args.ctxt_to_hw_map = custom_ctx->hw_ctx;
  629. hw_cmd_args.cmd_type = CAM_HW_MGR_CMD_INTERNAL;
  630. custom_hw_cmd_args.cmd_type =
  631. CAM_CUSTOM_HW_MGR_PROG_DEFAULT_CONFIG;
  632. hw_cmd_args.u.internal_args = (void *)&custom_hw_cmd_args;
  633. rc = ctx->hw_mgr_intf->hw_cmd(ctx->hw_mgr_intf->hw_mgr_priv,
  634. &hw_cmd_args);
  635. if (rc)
  636. CAM_ERR(CAM_CUSTOM,
  637. "Failed to apply default settings rc %d", rc);
  638. else
  639. CAM_DBG(CAM_CUSTOM, "Applied default settings rc %d", rc);
  640. return rc;
  641. }
  642. static int __cam_custom_ctx_apply_req_in_activated_state(
  643. struct cam_context *ctx, struct cam_req_mgr_apply_request *apply,
  644. uint32_t next_state)
  645. {
  646. int rc = 0;
  647. struct cam_ctx_request *req;
  648. struct cam_custom_dev_ctx_req *req_custom;
  649. struct cam_custom_context *custom_ctx = NULL;
  650. struct cam_hw_config_args cfg;
  651. if (list_empty(&ctx->pending_req_list)) {
  652. CAM_ERR(CAM_CUSTOM, "No available request for Apply id %lld",
  653. apply->request_id);
  654. rc = -EFAULT;
  655. goto end;
  656. }
  657. if (!list_empty(&ctx->wait_req_list))
  658. CAM_WARN(CAM_CUSTOM, "Apply invoked with a req in wait list");
  659. custom_ctx = (struct cam_custom_context *) ctx->ctx_priv;
  660. spin_lock_bh(&ctx->lock);
  661. req = list_first_entry(&ctx->pending_req_list, struct cam_ctx_request,
  662. list);
  663. spin_unlock_bh(&ctx->lock);
  664. /*
  665. * Check whether the request id is matching the tip
  666. */
  667. if (req->request_id != apply->request_id) {
  668. CAM_ERR_RATE_LIMIT(CAM_CUSTOM,
  669. "Invalid Request Id asking %llu existing %llu",
  670. apply->request_id, req->request_id);
  671. rc = -EFAULT;
  672. goto end;
  673. }
  674. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  675. cfg.ctxt_to_hw_map = custom_ctx->hw_ctx;
  676. cfg.request_id = req->request_id;
  677. cfg.hw_update_entries = req_custom->cfg;
  678. cfg.num_hw_update_entries = req_custom->num_cfg;
  679. cfg.priv = &req_custom->hw_update_data;
  680. cfg.init_packet = 0;
  681. rc = ctx->hw_mgr_intf->hw_config(ctx->hw_mgr_intf->hw_mgr_priv, &cfg);
  682. if (rc) {
  683. CAM_ERR_RATE_LIMIT(CAM_CUSTOM,
  684. "Can not apply the configuration");
  685. } else {
  686. spin_lock_bh(&ctx->lock);
  687. custom_ctx->substate_activated = next_state;
  688. list_del_init(&req->list);
  689. list_add_tail(&req->list, &ctx->wait_req_list);
  690. spin_unlock_bh(&ctx->lock);
  691. }
  692. end:
  693. return rc;
  694. }
  695. static int __cam_custom_ctx_acquire_hw_v1(
  696. struct cam_context *ctx, void *args)
  697. {
  698. int rc = 0;
  699. struct cam_acquire_hw_cmd_v1 *cmd =
  700. (struct cam_acquire_hw_cmd_v1 *)args;
  701. struct cam_hw_acquire_args param;
  702. struct cam_custom_context *ctx_custom =
  703. (struct cam_custom_context *) ctx->ctx_priv;
  704. struct cam_custom_acquire_hw_info *acquire_hw_info = NULL;
  705. if (!ctx->hw_mgr_intf) {
  706. CAM_ERR(CAM_CUSTOM, "HW interface is not ready");
  707. rc = -EFAULT;
  708. goto end;
  709. }
  710. CAM_DBG(CAM_CUSTOM,
  711. "session_hdl 0x%x, hdl type %d, res %lld",
  712. cmd->session_handle, cmd->handle_type, cmd->resource_hdl);
  713. if (cmd->handle_type != 1) {
  714. CAM_ERR(CAM_CUSTOM, "Only user pointer is supported");
  715. rc = -EINVAL;
  716. goto end;
  717. }
  718. if (cmd->data_size < sizeof(*acquire_hw_info)) {
  719. CAM_ERR(CAM_CUSTOM, "data_size is not a valid value");
  720. goto end;
  721. }
  722. acquire_hw_info = kzalloc(cmd->data_size, GFP_KERNEL);
  723. if (!acquire_hw_info) {
  724. rc = -ENOMEM;
  725. goto end;
  726. }
  727. CAM_DBG(CAM_CUSTOM, "start copy resources from user");
  728. if (copy_from_user(acquire_hw_info, (void __user *)cmd->resource_hdl,
  729. cmd->data_size)) {
  730. rc = -EFAULT;
  731. goto free_res;
  732. }
  733. memset(&param, 0, sizeof(param));
  734. param.context_data = ctx;
  735. param.event_cb = ctx->irq_cb_intf;
  736. param.acquire_info_size = cmd->data_size;
  737. param.acquire_info = (uint64_t) acquire_hw_info;
  738. /* call HW manager to reserve the resource */
  739. rc = ctx->hw_mgr_intf->hw_acquire(ctx->hw_mgr_intf->hw_mgr_priv,
  740. &param);
  741. if (rc != 0) {
  742. CAM_ERR(CAM_CUSTOM, "Acquire HW failed");
  743. goto free_res;
  744. }
  745. ctx_custom->substate_machine_irq =
  746. cam_custom_ctx_activated_state_machine_irq;
  747. ctx_custom->substate_machine =
  748. cam_custom_ctx_activated_state_machine;
  749. ctx_custom->hw_ctx = param.ctxt_to_hw_map;
  750. ctx_custom->hw_acquired = true;
  751. ctx->ctxt_to_hw_map = param.ctxt_to_hw_map;
  752. CAM_DBG(CAM_CUSTOM,
  753. "Acquire HW success on session_hdl 0x%xs for ctx_id %u",
  754. ctx->session_hdl, ctx->ctx_id);
  755. kfree(acquire_hw_info);
  756. return rc;
  757. free_res:
  758. kfree(acquire_hw_info);
  759. end:
  760. return rc;
  761. }
  762. static int __cam_custom_ctx_acquire_dev_in_available(
  763. struct cam_context *ctx, struct cam_acquire_dev_cmd *cmd)
  764. {
  765. int rc = 0;
  766. struct cam_create_dev_hdl req_hdl_param;
  767. if (!ctx->hw_mgr_intf) {
  768. CAM_ERR(CAM_CUSTOM, "HW interface is not ready");
  769. rc = -EFAULT;
  770. return rc;
  771. }
  772. CAM_DBG(CAM_CUSTOM,
  773. "session_hdl 0x%x, num_resources %d, hdl type %d, res %lld",
  774. cmd->session_handle, cmd->num_resources,
  775. cmd->handle_type, cmd->resource_hdl);
  776. if (cmd->num_resources != CAM_API_COMPAT_CONSTANT) {
  777. CAM_ERR(CAM_CUSTOM, "Invalid num_resources 0x%x",
  778. cmd->num_resources);
  779. return -EINVAL;
  780. }
  781. req_hdl_param.session_hdl = cmd->session_handle;
  782. req_hdl_param.v4l2_sub_dev_flag = 0;
  783. req_hdl_param.media_entity_flag = 0;
  784. req_hdl_param.ops = ctx->crm_ctx_intf;
  785. req_hdl_param.priv = ctx;
  786. CAM_DBG(CAM_CUSTOM, "get device handle from bridge");
  787. ctx->dev_hdl = cam_create_device_hdl(&req_hdl_param);
  788. if (ctx->dev_hdl <= 0) {
  789. rc = -EFAULT;
  790. CAM_ERR(CAM_CUSTOM, "Can not create device handle");
  791. return rc;
  792. }
  793. cmd->dev_handle = ctx->dev_hdl;
  794. ctx->session_hdl = cmd->session_handle;
  795. ctx->state = CAM_CTX_ACQUIRED;
  796. CAM_DBG(CAM_CUSTOM,
  797. "Acquire dev success on session_hdl 0x%x for ctx %u",
  798. cmd->session_handle, ctx->ctx_id);
  799. return rc;
  800. }
  801. static int __cam_custom_ctx_enqueue_init_request(
  802. struct cam_context *ctx, struct cam_ctx_request *req)
  803. {
  804. int rc = 0;
  805. struct cam_ctx_request *req_old;
  806. struct cam_custom_dev_ctx_req *req_custom_old;
  807. struct cam_custom_dev_ctx_req *req_custom_new;
  808. spin_lock_bh(&ctx->lock);
  809. if (list_empty(&ctx->pending_req_list)) {
  810. list_add_tail(&req->list, &ctx->pending_req_list);
  811. goto end;
  812. }
  813. req_old = list_first_entry(&ctx->pending_req_list,
  814. struct cam_ctx_request, list);
  815. req_custom_old = (struct cam_custom_dev_ctx_req *) req_old->req_priv;
  816. req_custom_new = (struct cam_custom_dev_ctx_req *) req->req_priv;
  817. if (req_custom_old->hw_update_data.packet_opcode_type ==
  818. CAM_CUSTOM_PACKET_INIT_DEV) {
  819. if ((req_custom_old->num_cfg + req_custom_new->num_cfg) >=
  820. CAM_CUSTOM_CTX_CFG_MAX) {
  821. CAM_WARN(CAM_CUSTOM, "Can not merge INIT pkt");
  822. rc = -ENOMEM;
  823. }
  824. if (req_custom_old->num_fence_map_out != 0 ||
  825. req_custom_old->num_fence_map_in != 0) {
  826. CAM_WARN(CAM_CUSTOM, "Invalid INIT pkt sequence");
  827. rc = -EINVAL;
  828. }
  829. if (!rc) {
  830. memcpy(req_custom_old->fence_map_out,
  831. req_custom_new->fence_map_out,
  832. sizeof(req_custom_new->fence_map_out[0])*
  833. req_custom_new->num_fence_map_out);
  834. req_custom_old->num_fence_map_out =
  835. req_custom_new->num_fence_map_out;
  836. memcpy(req_custom_old->fence_map_in,
  837. req_custom_new->fence_map_in,
  838. sizeof(req_custom_new->fence_map_in[0])*
  839. req_custom_new->num_fence_map_in);
  840. req_custom_old->num_fence_map_in =
  841. req_custom_new->num_fence_map_in;
  842. memcpy(&req_custom_old->cfg[req_custom_old->num_cfg],
  843. req_custom_new->cfg,
  844. sizeof(req_custom_new->cfg[0])*
  845. req_custom_new->num_cfg);
  846. req_custom_old->num_cfg += req_custom_new->num_cfg;
  847. req_old->request_id = req->request_id;
  848. list_add_tail(&req->list, &ctx->free_req_list);
  849. }
  850. } else {
  851. CAM_WARN(CAM_CUSTOM,
  852. "Received Update pkt before INIT pkt. req_id= %lld",
  853. req->request_id);
  854. rc = -EINVAL;
  855. }
  856. end:
  857. spin_unlock_bh(&ctx->lock);
  858. return rc;
  859. }
  860. static int __cam_custom_ctx_config_dev(struct cam_context *ctx,
  861. struct cam_config_dev_cmd *cmd)
  862. {
  863. int rc = 0, i;
  864. struct cam_ctx_request *req = NULL;
  865. struct cam_custom_dev_ctx_req *req_custom;
  866. uintptr_t packet_addr;
  867. struct cam_packet *packet;
  868. size_t len = 0;
  869. struct cam_hw_prepare_update_args cfg;
  870. struct cam_req_mgr_add_request add_req;
  871. struct cam_custom_context *ctx_custom =
  872. (struct cam_custom_context *) ctx->ctx_priv;
  873. /* get free request */
  874. spin_lock_bh(&ctx->lock);
  875. if (!list_empty(&ctx->free_req_list)) {
  876. req = list_first_entry(&ctx->free_req_list,
  877. struct cam_ctx_request, list);
  878. list_del_init(&req->list);
  879. }
  880. spin_unlock_bh(&ctx->lock);
  881. if (!req) {
  882. CAM_ERR(CAM_CUSTOM, "No more request obj free");
  883. return -ENOMEM;
  884. }
  885. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  886. /* for config dev, only memory handle is supported */
  887. /* map packet from the memhandle */
  888. rc = cam_mem_get_cpu_buf((int32_t) cmd->packet_handle,
  889. &packet_addr, &len);
  890. if (rc != 0) {
  891. CAM_ERR(CAM_CUSTOM, "Can not get packet address");
  892. rc = -EINVAL;
  893. goto free_req;
  894. }
  895. packet = (struct cam_packet *)(packet_addr + (uint32_t)cmd->offset);
  896. CAM_DBG(CAM_CUSTOM, "pack_handle %llx", cmd->packet_handle);
  897. CAM_DBG(CAM_CUSTOM, "packet address is 0x%zx", packet_addr);
  898. CAM_DBG(CAM_CUSTOM, "packet with length %zu, offset 0x%llx",
  899. len, cmd->offset);
  900. CAM_DBG(CAM_CUSTOM, "Packet request id %lld",
  901. packet->header.request_id);
  902. CAM_DBG(CAM_CUSTOM, "Packet size 0x%x", packet->header.size);
  903. CAM_DBG(CAM_CUSTOM, "packet op %d", packet->header.op_code);
  904. if ((((packet->header.op_code) & 0xF) ==
  905. CAM_CUSTOM_PACKET_UPDATE_DEV)
  906. && (packet->header.request_id <= ctx->last_flush_req)) {
  907. CAM_DBG(CAM_CUSTOM,
  908. "request %lld has been flushed, reject packet",
  909. packet->header.request_id);
  910. rc = -EINVAL;
  911. goto free_req;
  912. }
  913. /* preprocess the configuration */
  914. memset(&cfg, 0, sizeof(cfg));
  915. cfg.packet = packet;
  916. cfg.ctxt_to_hw_map = ctx_custom->hw_ctx;
  917. cfg.out_map_entries = req_custom->fence_map_out;
  918. cfg.max_out_map_entries = CAM_CUSTOM_DEV_CTX_RES_MAX;
  919. cfg.in_map_entries = req_custom->fence_map_in;
  920. cfg.max_in_map_entries = CAM_CUSTOM_DEV_CTX_RES_MAX;
  921. cfg.priv = &req_custom->hw_update_data;
  922. cfg.pf_data = &(req->pf_data);
  923. rc = ctx->hw_mgr_intf->hw_prepare_update(
  924. ctx->hw_mgr_intf->hw_mgr_priv, &cfg);
  925. if (rc != 0) {
  926. CAM_ERR(CAM_CUSTOM, "Prepare config packet failed in HW layer");
  927. rc = -EFAULT;
  928. goto free_req;
  929. }
  930. req_custom->num_cfg = cfg.num_hw_update_entries;
  931. req_custom->num_fence_map_out = cfg.num_out_map_entries;
  932. req_custom->num_fence_map_in = cfg.num_in_map_entries;
  933. req_custom->num_acked = 0;
  934. req_custom->hw_update_data.num_cfg = cfg.num_out_map_entries;
  935. for (i = 0; i < req_custom->num_fence_map_out; i++) {
  936. rc = cam_sync_get_obj_ref(req_custom->fence_map_out[i].sync_id);
  937. if (rc) {
  938. CAM_ERR(CAM_CUSTOM, "Can't get ref for fence %d",
  939. req_custom->fence_map_out[i].sync_id);
  940. goto put_ref;
  941. }
  942. }
  943. CAM_DBG(CAM_CUSTOM,
  944. "num_entry: %d, num fence out: %d, num fence in: %d",
  945. req_custom->num_cfg, req_custom->num_fence_map_out,
  946. req_custom->num_fence_map_in);
  947. req->request_id = packet->header.request_id;
  948. req->status = 1;
  949. CAM_DBG(CAM_CUSTOM, "Packet request id %lld packet opcode:%d",
  950. packet->header.request_id,
  951. req_custom->hw_update_data.packet_opcode_type);
  952. if (req_custom->hw_update_data.packet_opcode_type ==
  953. CAM_CUSTOM_PACKET_INIT_DEV) {
  954. if (ctx->state < CAM_CTX_ACTIVATED) {
  955. rc = __cam_custom_ctx_enqueue_init_request(ctx, req);
  956. if (rc)
  957. CAM_ERR(CAM_CUSTOM, "Enqueue INIT pkt failed");
  958. ctx_custom->init_received = true;
  959. } else {
  960. rc = -EINVAL;
  961. CAM_ERR(CAM_CUSTOM, "Recevied INIT pkt in wrong state");
  962. }
  963. } else {
  964. if ((ctx->state != CAM_CTX_FLUSHED) &&
  965. (ctx->state >= CAM_CTX_READY) &&
  966. (ctx->ctx_crm_intf->add_req)) {
  967. add_req.link_hdl = ctx->link_hdl;
  968. add_req.dev_hdl = ctx->dev_hdl;
  969. add_req.req_id = req->request_id;
  970. add_req.skip_before_applying = 0;
  971. rc = ctx->ctx_crm_intf->add_req(&add_req);
  972. if (rc) {
  973. CAM_ERR(CAM_CUSTOM,
  974. "Add req failed: req id=%llu",
  975. req->request_id);
  976. } else {
  977. __cam_custom_ctx_enqueue_request_in_order(
  978. ctx, req);
  979. }
  980. } else {
  981. rc = -EINVAL;
  982. CAM_ERR(CAM_CUSTOM, "Recevied Update in wrong state");
  983. }
  984. }
  985. if (rc)
  986. goto put_ref;
  987. CAM_DBG(CAM_CUSTOM,
  988. "Preprocessing Config req_id %lld successful on ctx %u",
  989. req->request_id, ctx->ctx_id);
  990. return rc;
  991. put_ref:
  992. for (--i; i >= 0; i--) {
  993. if (cam_sync_put_obj_ref(req_custom->fence_map_out[i].sync_id))
  994. CAM_ERR(CAM_CUSTOM, "Failed to put ref of fence %d",
  995. req_custom->fence_map_out[i].sync_id);
  996. }
  997. free_req:
  998. spin_lock_bh(&ctx->lock);
  999. list_add_tail(&req->list, &ctx->free_req_list);
  1000. spin_unlock_bh(&ctx->lock);
  1001. return rc;
  1002. }
  1003. static int __cam_custom_ctx_config_dev_in_flushed(struct cam_context *ctx,
  1004. struct cam_config_dev_cmd *cmd)
  1005. {
  1006. int rc = 0;
  1007. struct cam_start_stop_dev_cmd start_cmd;
  1008. struct cam_custom_context *custom_ctx =
  1009. (struct cam_custom_context *) ctx->ctx_priv;
  1010. if (!custom_ctx->hw_acquired) {
  1011. CAM_ERR(CAM_CUSTOM, "HW is not acquired, reject packet");
  1012. rc = -EINVAL;
  1013. goto end;
  1014. }
  1015. rc = __cam_custom_ctx_config_dev(ctx, cmd);
  1016. if (rc)
  1017. goto end;
  1018. if (!custom_ctx->init_received) {
  1019. CAM_WARN(CAM_CUSTOM,
  1020. "Received update packet in flushed state, skip start");
  1021. goto end;
  1022. }
  1023. start_cmd.dev_handle = cmd->dev_handle;
  1024. start_cmd.session_handle = cmd->session_handle;
  1025. rc = __cam_custom_ctx_start_dev_in_ready(ctx, &start_cmd);
  1026. if (rc)
  1027. CAM_ERR(CAM_CUSTOM,
  1028. "Failed to re-start HW after flush rc: %d", rc);
  1029. else
  1030. CAM_INFO(CAM_CUSTOM,
  1031. "Received init after flush. Re-start HW complete.");
  1032. end:
  1033. return rc;
  1034. }
  1035. static int __cam_custom_ctx_config_dev_in_acquired(struct cam_context *ctx,
  1036. struct cam_config_dev_cmd *cmd)
  1037. {
  1038. int rc = 0;
  1039. struct cam_custom_context *ctx_custom =
  1040. (struct cam_custom_context *) ctx->ctx_priv;
  1041. if (!ctx_custom->hw_acquired) {
  1042. CAM_ERR(CAM_CUSTOM, "HW not acquired, reject config packet");
  1043. return -EAGAIN;
  1044. }
  1045. rc = __cam_custom_ctx_config_dev(ctx, cmd);
  1046. if (!rc && (ctx->link_hdl >= 0))
  1047. ctx->state = CAM_CTX_READY;
  1048. return rc;
  1049. }
  1050. static int __cam_custom_ctx_link_in_acquired(struct cam_context *ctx,
  1051. struct cam_req_mgr_core_dev_link_setup *link)
  1052. {
  1053. struct cam_custom_context *ctx_custom =
  1054. (struct cam_custom_context *) ctx->ctx_priv;
  1055. ctx->link_hdl = link->link_hdl;
  1056. ctx->ctx_crm_intf = link->crm_cb;
  1057. ctx_custom->subscribe_event = link->subscribe_event;
  1058. /* change state only if we had the init config */
  1059. if (ctx_custom->init_received)
  1060. ctx->state = CAM_CTX_READY;
  1061. CAM_DBG(CAM_CUSTOM, "next state %d", ctx->state);
  1062. return 0;
  1063. }
  1064. static int __cam_custom_ctx_start_dev_in_ready(struct cam_context *ctx,
  1065. struct cam_start_stop_dev_cmd *cmd)
  1066. {
  1067. int rc = 0;
  1068. struct cam_custom_start_args custom_start;
  1069. struct cam_ctx_request *req;
  1070. struct cam_custom_dev_ctx_req *req_custom;
  1071. struct cam_custom_context *ctx_custom =
  1072. (struct cam_custom_context *) ctx->ctx_priv;
  1073. if (cmd->session_handle != ctx->session_hdl ||
  1074. cmd->dev_handle != ctx->dev_hdl) {
  1075. rc = -EPERM;
  1076. goto end;
  1077. }
  1078. if (list_empty(&ctx->pending_req_list)) {
  1079. /* should never happen */
  1080. CAM_ERR(CAM_CUSTOM, "Start device with empty configuration");
  1081. rc = -EFAULT;
  1082. goto end;
  1083. } else {
  1084. req = list_first_entry(&ctx->pending_req_list,
  1085. struct cam_ctx_request, list);
  1086. }
  1087. req_custom = (struct cam_custom_dev_ctx_req *) req->req_priv;
  1088. if (!ctx_custom->hw_ctx) {
  1089. CAM_ERR(CAM_CUSTOM, "Wrong hw context pointer.");
  1090. rc = -EFAULT;
  1091. goto end;
  1092. }
  1093. custom_start.hw_config.ctxt_to_hw_map = ctx_custom->hw_ctx;
  1094. custom_start.hw_config.request_id = req->request_id;
  1095. custom_start.hw_config.hw_update_entries = req_custom->cfg;
  1096. custom_start.hw_config.num_hw_update_entries = req_custom->num_cfg;
  1097. custom_start.hw_config.priv = &req_custom->hw_update_data;
  1098. custom_start.hw_config.init_packet = 1;
  1099. if (ctx->state == CAM_CTX_FLUSHED)
  1100. custom_start.start_only = true;
  1101. else
  1102. custom_start.start_only = false;
  1103. ctx_custom->frame_id = 0;
  1104. ctx_custom->active_req_cnt = 0;
  1105. ctx_custom->substate_activated =
  1106. (req_custom->num_fence_map_out) ?
  1107. CAM_CUSTOM_CTX_ACTIVATED_APPLIED :
  1108. CAM_CUSTOM_CTX_ACTIVATED_SOF;
  1109. ctx->state = CAM_CTX_ACTIVATED;
  1110. rc = ctx->hw_mgr_intf->hw_start(ctx->hw_mgr_intf->hw_mgr_priv,
  1111. &custom_start);
  1112. if (rc) {
  1113. /* HW failure. User need to clean up the resource */
  1114. CAM_ERR(CAM_CUSTOM, "Start HW failed");
  1115. ctx->state = CAM_CTX_READY;
  1116. goto end;
  1117. }
  1118. CAM_DBG(CAM_CUSTOM, "start device success ctx %u",
  1119. ctx->ctx_id);
  1120. spin_lock_bh(&ctx->lock);
  1121. list_del_init(&req->list);
  1122. list_add_tail(&req->list, &ctx->wait_req_list);
  1123. spin_unlock_bh(&ctx->lock);
  1124. end:
  1125. return rc;
  1126. }
  1127. static int __cam_custom_ctx_release_dev_in_activated(struct cam_context *ctx,
  1128. struct cam_release_dev_cmd *cmd)
  1129. {
  1130. int rc = 0;
  1131. rc = __cam_custom_stop_dev_core(ctx, NULL);
  1132. if (rc)
  1133. CAM_ERR(CAM_CUSTOM, "Stop device failed rc=%d", rc);
  1134. rc = __cam_custom_release_dev_in_acquired(ctx, cmd);
  1135. if (rc)
  1136. CAM_ERR(CAM_CUSTOM, "Release device failed rc=%d", rc);
  1137. return rc;
  1138. }
  1139. static int __cam_custom_ctx_unlink_in_activated(struct cam_context *ctx,
  1140. struct cam_req_mgr_core_dev_link_setup *unlink)
  1141. {
  1142. int rc = 0;
  1143. CAM_WARN(CAM_CUSTOM,
  1144. "Received unlink in activated state. It's unexpected");
  1145. rc = __cam_custom_stop_dev_in_activated(ctx, NULL);
  1146. if (rc)
  1147. CAM_WARN(CAM_CUSTOM, "Stop device failed rc=%d", rc);
  1148. rc = __cam_custom_ctx_unlink_in_ready(ctx, unlink);
  1149. if (rc)
  1150. CAM_ERR(CAM_CUSTOM, "Unlink failed rc=%d", rc);
  1151. return rc;
  1152. }
  1153. static int __cam_custom_ctx_process_evt(struct cam_context *ctx,
  1154. struct cam_req_mgr_link_evt_data *link_evt_data)
  1155. {
  1156. switch (link_evt_data->evt_type) {
  1157. case CAM_REQ_MGR_LINK_EVT_ERR:
  1158. /* Handle error/bubble related issues */
  1159. break;
  1160. default:
  1161. CAM_WARN(CAM_CUSTOM, "Unknown event from CRM");
  1162. break;
  1163. }
  1164. return 0;
  1165. }
  1166. static int __cam_custom_ctx_handle_irq_in_activated(void *context,
  1167. uint32_t evt_id, void *evt_data)
  1168. {
  1169. int rc = 0;
  1170. struct cam_custom_ctx_irq_ops *custom_irq_ops = NULL;
  1171. struct cam_context *ctx = (struct cam_context *)context;
  1172. struct cam_custom_context *ctx_custom =
  1173. (struct cam_custom_context *)ctx->ctx_priv;
  1174. spin_lock(&ctx->lock);
  1175. CAM_DBG(CAM_CUSTOM, "Enter: State %d, Substate %d, evt id %d",
  1176. ctx->state, ctx_custom->substate_activated, evt_id);
  1177. custom_irq_ops = &ctx_custom->substate_machine_irq[
  1178. ctx_custom->substate_activated];
  1179. if (custom_irq_ops->irq_ops[evt_id])
  1180. rc = custom_irq_ops->irq_ops[evt_id](ctx_custom,
  1181. evt_data);
  1182. else
  1183. CAM_DBG(CAM_CUSTOM, "No handle function for substate %d",
  1184. ctx_custom->substate_activated);
  1185. CAM_DBG(CAM_CUSTOM, "Exit: State %d Substate %d",
  1186. ctx->state, ctx_custom->substate_activated);
  1187. spin_unlock(&ctx->lock);
  1188. return rc;
  1189. }
  1190. static int __cam_custom_ctx_acquire_hw_in_acquired(
  1191. struct cam_context *ctx, void *args)
  1192. {
  1193. int rc = -EINVAL;
  1194. uint32_t api_version;
  1195. if (!ctx || !args) {
  1196. CAM_ERR(CAM_CUSTOM, "Invalid input pointer");
  1197. return rc;
  1198. }
  1199. api_version = *((uint32_t *)args);
  1200. if (api_version == 1)
  1201. rc = __cam_custom_ctx_acquire_hw_v1(ctx, args);
  1202. else
  1203. CAM_ERR(CAM_CUSTOM, "Unsupported api version %d",
  1204. api_version);
  1205. return rc;
  1206. }
  1207. static int __cam_custom_ctx_apply_req(struct cam_context *ctx,
  1208. struct cam_req_mgr_apply_request *apply)
  1209. {
  1210. int rc = 0;
  1211. struct cam_ctx_ops *ctx_ops = NULL;
  1212. struct cam_custom_context *custom_ctx =
  1213. (struct cam_custom_context *) ctx->ctx_priv;
  1214. CAM_DBG(CAM_CUSTOM,
  1215. "Enter: apply req in Substate %d request _id:%lld",
  1216. custom_ctx->substate_activated, apply->request_id);
  1217. ctx_ops = &custom_ctx->substate_machine[
  1218. custom_ctx->substate_activated];
  1219. if (ctx_ops->crm_ops.apply_req) {
  1220. rc = ctx_ops->crm_ops.apply_req(ctx, apply);
  1221. } else {
  1222. CAM_WARN_RATE_LIMIT(CAM_CUSTOM,
  1223. "No handle function in activated substate %d",
  1224. custom_ctx->substate_activated);
  1225. rc = -EFAULT;
  1226. }
  1227. if (rc)
  1228. CAM_WARN_RATE_LIMIT(CAM_CUSTOM,
  1229. "Apply failed in active substate %d rc %d",
  1230. custom_ctx->substate_activated, rc);
  1231. return rc;
  1232. }
  1233. static int __cam_custom_ctx_apply_default_req(
  1234. struct cam_context *ctx,
  1235. struct cam_req_mgr_apply_request *apply)
  1236. {
  1237. int rc = 0;
  1238. struct cam_ctx_ops *ctx_ops = NULL;
  1239. struct cam_custom_context *custom_ctx =
  1240. (struct cam_custom_context *) ctx->ctx_priv;
  1241. CAM_DBG(CAM_CUSTOM,
  1242. "Enter: apply req in Substate %d request _id:%lld",
  1243. custom_ctx->substate_activated, apply->request_id);
  1244. ctx_ops = &custom_ctx->substate_machine[
  1245. custom_ctx->substate_activated];
  1246. if (ctx_ops->crm_ops.notify_frame_skip) {
  1247. rc = ctx_ops->crm_ops.notify_frame_skip(ctx, apply);
  1248. } else {
  1249. CAM_WARN_RATE_LIMIT(CAM_CUSTOM,
  1250. "No handle function in activated substate %d",
  1251. custom_ctx->substate_activated);
  1252. rc = -EFAULT;
  1253. }
  1254. if (rc)
  1255. CAM_WARN_RATE_LIMIT(CAM_CUSTOM,
  1256. "Apply default failed in active substate %d rc %d",
  1257. custom_ctx->substate_activated, rc);
  1258. return rc;
  1259. }
  1260. /* top state machine */
  1261. static struct cam_ctx_ops
  1262. cam_custom_dev_ctx_top_state_machine[CAM_CTX_STATE_MAX] = {
  1263. /* Uninit */
  1264. {
  1265. .ioctl_ops = {},
  1266. .crm_ops = {},
  1267. .irq_ops = NULL,
  1268. },
  1269. /* Available */
  1270. {
  1271. .ioctl_ops = {
  1272. .acquire_dev =
  1273. __cam_custom_ctx_acquire_dev_in_available,
  1274. },
  1275. .crm_ops = {},
  1276. .irq_ops = NULL,
  1277. },
  1278. /* Acquired */
  1279. {
  1280. .ioctl_ops = {
  1281. .acquire_hw = __cam_custom_ctx_acquire_hw_in_acquired,
  1282. .release_dev = __cam_custom_release_dev_in_acquired,
  1283. .config_dev = __cam_custom_ctx_config_dev_in_acquired,
  1284. .release_hw = __cam_custom_ctx_release_hw_in_top_state,
  1285. },
  1286. .crm_ops = {
  1287. .link = __cam_custom_ctx_link_in_acquired,
  1288. .unlink = __cam_custom_ctx_unlink_in_acquired,
  1289. .get_dev_info =
  1290. __cam_custom_ctx_get_dev_info_in_acquired,
  1291. .flush_req = __cam_custom_ctx_flush_req_in_top_state,
  1292. },
  1293. .irq_ops = NULL,
  1294. .pagefault_ops = NULL,
  1295. },
  1296. /* Ready */
  1297. {
  1298. .ioctl_ops = {
  1299. .start_dev = __cam_custom_ctx_start_dev_in_ready,
  1300. .release_dev = __cam_custom_release_dev_in_acquired,
  1301. .config_dev = __cam_custom_ctx_config_dev,
  1302. .release_hw = __cam_custom_ctx_release_hw_in_top_state,
  1303. },
  1304. .crm_ops = {
  1305. .unlink = __cam_custom_ctx_unlink_in_ready,
  1306. .flush_req = __cam_custom_ctx_flush_req_in_ready,
  1307. },
  1308. .irq_ops = NULL,
  1309. .pagefault_ops = NULL,
  1310. },
  1311. /* Flushed */
  1312. {
  1313. .ioctl_ops = {
  1314. .stop_dev = __cam_custom_stop_dev_in_activated,
  1315. .release_dev =
  1316. __cam_custom_ctx_release_dev_in_activated,
  1317. .config_dev = __cam_custom_ctx_config_dev_in_flushed,
  1318. .release_hw =
  1319. __cam_custom_ctx_release_hw_in_activated_state,
  1320. },
  1321. .crm_ops = {
  1322. .unlink = __cam_custom_ctx_unlink_in_ready,
  1323. },
  1324. .irq_ops = NULL,
  1325. },
  1326. /* Activated */
  1327. {
  1328. .ioctl_ops = {
  1329. .stop_dev = __cam_custom_stop_dev_in_activated,
  1330. .release_dev =
  1331. __cam_custom_ctx_release_dev_in_activated,
  1332. .config_dev = __cam_custom_ctx_config_dev,
  1333. .release_hw =
  1334. __cam_custom_ctx_release_hw_in_activated_state,
  1335. },
  1336. .crm_ops = {
  1337. .unlink = __cam_custom_ctx_unlink_in_activated,
  1338. .apply_req = __cam_custom_ctx_apply_req,
  1339. .notify_frame_skip =
  1340. __cam_custom_ctx_apply_default_req,
  1341. .flush_req = __cam_custom_ctx_flush_req_in_top_state,
  1342. .process_evt = __cam_custom_ctx_process_evt,
  1343. },
  1344. .irq_ops = __cam_custom_ctx_handle_irq_in_activated,
  1345. .pagefault_ops = NULL,
  1346. },
  1347. };
  1348. int cam_custom_dev_context_init(struct cam_custom_context *ctx,
  1349. struct cam_context *ctx_base,
  1350. struct cam_req_mgr_kmd_ops *crm_node_intf,
  1351. struct cam_hw_mgr_intf *hw_intf,
  1352. uint32_t ctx_id)
  1353. {
  1354. int rc = -1, i = 0;
  1355. if (!ctx || !ctx_base) {
  1356. CAM_ERR(CAM_CUSTOM, "Invalid Context");
  1357. return -EINVAL;
  1358. }
  1359. /* Custom HW context setup */
  1360. memset(ctx, 0, sizeof(*ctx));
  1361. ctx->base = ctx_base;
  1362. ctx->frame_id = 0;
  1363. ctx->active_req_cnt = 0;
  1364. ctx->hw_ctx = NULL;
  1365. for (i = 0; i < CAM_CTX_REQ_MAX; i++) {
  1366. ctx->req_base[i].req_priv = &ctx->req_custom[i];
  1367. ctx->req_custom[i].base = &ctx->req_base[i];
  1368. }
  1369. /* camera context setup */
  1370. rc = cam_context_init(ctx_base, custom_dev_name, CAM_CUSTOM, ctx_id,
  1371. crm_node_intf, hw_intf, ctx->req_base, CAM_CTX_REQ_MAX);
  1372. if (rc) {
  1373. CAM_ERR(CAM_CUSTOM, "Camera Context Base init failed");
  1374. return rc;
  1375. }
  1376. /* link camera context with custom HW context */
  1377. ctx_base->state_machine = cam_custom_dev_ctx_top_state_machine;
  1378. ctx_base->ctx_priv = ctx;
  1379. return rc;
  1380. }
  1381. int cam_custom_dev_context_deinit(struct cam_custom_context *ctx)
  1382. {
  1383. if (ctx->base)
  1384. cam_context_deinit(ctx->base);
  1385. memset(ctx, 0, sizeof(*ctx));
  1386. return 0;
  1387. }