msm_vidc_driver.h 22 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only */
  2. /*
  3. * Copyright (c) 2020-2021,, The Linux Foundation. All rights reserved.
  4. * Copyright (c) 2022-2023 Qualcomm Innovation Center, Inc. All rights reserved.
  5. */
  6. #ifndef _MSM_VIDC_DRIVER_H_
  7. #define _MSM_VIDC_DRIVER_H_
  8. #include <linux/workqueue.h>
  9. #include <linux/iommu.h>
  10. #include "msm_vidc_internal.h"
  11. #include "msm_vidc_core.h"
  12. #include "msm_vidc_inst.h"
  13. #define MSM_VIDC_SESSION_INACTIVE_THRESHOLD_MS 1000
  14. #define HEIC_GRID_DIMENSION 512
  15. enum msm_vidc_debugfs_event;
  16. static inline bool is_decode_session(struct msm_vidc_inst *inst)
  17. {
  18. return inst->domain == MSM_VIDC_DECODER;
  19. }
  20. static inline bool is_encode_session(struct msm_vidc_inst *inst)
  21. {
  22. return inst->domain == MSM_VIDC_ENCODER;
  23. }
  24. static inline bool is_image_encode_session(struct msm_vidc_inst *inst)
  25. {
  26. return inst->codec == MSM_VIDC_HEIC && inst->domain == MSM_VIDC_ENCODER;
  27. }
  28. static inline bool is_image_decode_session(struct msm_vidc_inst *inst)
  29. {
  30. return inst->codec == MSM_VIDC_HEIC && inst->domain == MSM_VIDC_DECODER;
  31. }
  32. static inline bool is_image_session(struct msm_vidc_inst *inst)
  33. {
  34. return inst->codec == MSM_VIDC_HEIC;
  35. }
  36. static inline bool is_secure_session(struct msm_vidc_inst *inst)
  37. {
  38. return !!(inst->capabilities->cap[SECURE_MODE].value);
  39. }
  40. static inline bool is_input_buffer(enum msm_vidc_buffer_type buffer_type)
  41. {
  42. return buffer_type == MSM_VIDC_BUF_INPUT;
  43. }
  44. static inline bool is_output_buffer(enum msm_vidc_buffer_type buffer_type)
  45. {
  46. return buffer_type == MSM_VIDC_BUF_OUTPUT;
  47. }
  48. static inline bool is_input_meta_buffer(enum msm_vidc_buffer_type buffer_type)
  49. {
  50. return buffer_type == MSM_VIDC_BUF_INPUT_META;
  51. }
  52. static inline bool is_output_meta_buffer(enum msm_vidc_buffer_type buffer_type)
  53. {
  54. return buffer_type == MSM_VIDC_BUF_OUTPUT_META;
  55. }
  56. static inline bool is_ts_reorder_allowed(struct msm_vidc_inst *inst)
  57. {
  58. return !!(inst->capabilities->cap[TS_REORDER].value &&
  59. is_decode_session(inst) && !is_image_session(inst));
  60. }
  61. static inline bool is_scaling_enabled(struct msm_vidc_inst *inst)
  62. {
  63. return inst->crop.left != inst->compose.left ||
  64. inst->crop.top != inst->compose.top ||
  65. inst->crop.width != inst->compose.width ||
  66. inst->crop.height != inst->compose.height;
  67. }
  68. static inline bool is_rotation_90_or_270(struct msm_vidc_inst *inst)
  69. {
  70. return inst->capabilities->cap[ROTATION].value == 90 ||
  71. inst->capabilities->cap[ROTATION].value == 270;
  72. }
  73. static inline bool is_internal_buffer(enum msm_vidc_buffer_type buffer_type)
  74. {
  75. return buffer_type == MSM_VIDC_BUF_BIN ||
  76. buffer_type == MSM_VIDC_BUF_ARP ||
  77. buffer_type == MSM_VIDC_BUF_COMV ||
  78. buffer_type == MSM_VIDC_BUF_NON_COMV ||
  79. buffer_type == MSM_VIDC_BUF_LINE ||
  80. buffer_type == MSM_VIDC_BUF_DPB ||
  81. buffer_type == MSM_VIDC_BUF_PERSIST ||
  82. buffer_type == MSM_VIDC_BUF_VPSS ||
  83. buffer_type == MSM_VIDC_BUF_PARTIAL_DATA;
  84. }
  85. static inline bool is_meta_cap(struct msm_vidc_inst *inst, u32 cap)
  86. {
  87. if (inst->capabilities->cap[cap].flags & CAP_FLAG_META)
  88. return true;
  89. return false;
  90. }
  91. static inline bool is_meta_rx_inp_enabled(struct msm_vidc_inst *inst, u32 cap)
  92. {
  93. bool enabled = false;
  94. if (!is_meta_cap(inst, cap))
  95. return false;
  96. if (inst->capabilities->cap[cap].value & MSM_VIDC_META_ENABLE &&
  97. inst->capabilities->cap[cap].value & MSM_VIDC_META_RX_INPUT)
  98. enabled = true;
  99. return enabled;
  100. }
  101. static inline bool is_meta_rx_out_enabled(struct msm_vidc_inst *inst, u32 cap)
  102. {
  103. bool enabled = false;
  104. if (!is_meta_cap(inst, cap))
  105. return false;
  106. if (inst->capabilities->cap[cap].value & MSM_VIDC_META_ENABLE &&
  107. inst->capabilities->cap[cap].value & MSM_VIDC_META_RX_OUTPUT)
  108. enabled = true;
  109. return enabled;
  110. }
  111. static inline bool is_meta_tx_inp_enabled(struct msm_vidc_inst *inst, u32 cap)
  112. {
  113. bool enabled = false;
  114. if (!is_meta_cap(inst, cap))
  115. return false;
  116. if (inst->capabilities->cap[cap].value & MSM_VIDC_META_ENABLE &&
  117. inst->capabilities->cap[cap].value & MSM_VIDC_META_TX_INPUT)
  118. enabled = true;
  119. return enabled;
  120. }
  121. static inline bool is_dyn_meta_tx_inp_enabled(struct msm_vidc_inst *inst, u32 cap)
  122. {
  123. bool enabled = false;
  124. if (!is_meta_cap(inst, cap))
  125. return false;
  126. if (inst->capabilities->cap[cap].value & MSM_VIDC_META_DYN_ENABLE &&
  127. inst->capabilities->cap[cap].value & MSM_VIDC_META_TX_INPUT)
  128. enabled = true;
  129. return enabled;
  130. }
  131. static inline bool is_meta_tx_out_enabled(struct msm_vidc_inst *inst, u32 cap)
  132. {
  133. bool enabled = false;
  134. if (!is_meta_cap(inst, cap))
  135. return false;
  136. if (inst->capabilities->cap[cap].value & MSM_VIDC_META_ENABLE &&
  137. inst->capabilities->cap[cap].value & MSM_VIDC_META_TX_OUTPUT)
  138. enabled = true;
  139. return enabled;
  140. }
  141. static inline bool is_dyn_meta_tx_out_enabled(struct msm_vidc_inst *inst, u32 cap)
  142. {
  143. bool enabled = false;
  144. if (!is_meta_cap(inst, cap))
  145. return false;
  146. if (inst->capabilities->cap[cap].value & MSM_VIDC_META_DYN_ENABLE &&
  147. inst->capabilities->cap[cap].value & MSM_VIDC_META_TX_OUTPUT)
  148. enabled = true;
  149. return enabled;
  150. }
  151. static inline bool is_any_meta_tx_out_enabled(struct msm_vidc_inst *inst)
  152. {
  153. bool enabled = false;
  154. u32 i;
  155. for (i = INST_CAP_NONE + 1; i < INST_CAP_MAX; i++) {
  156. if (is_meta_tx_out_enabled(inst, i) ||
  157. is_dyn_meta_tx_out_enabled(inst, i)) {
  158. enabled = true;
  159. break;
  160. }
  161. }
  162. return enabled;
  163. }
  164. static inline bool is_any_meta_tx_inp_enabled(struct msm_vidc_inst *inst)
  165. {
  166. bool enabled = false;
  167. u32 i;
  168. for (i = INST_CAP_NONE + 1; i < INST_CAP_MAX; i++) {
  169. if (is_meta_tx_inp_enabled(inst, i) ||
  170. is_dyn_meta_tx_inp_enabled(inst, i)) {
  171. enabled = true;
  172. break;
  173. }
  174. }
  175. return enabled;
  176. }
  177. static inline bool is_input_meta_enabled(struct msm_vidc_inst *inst)
  178. {
  179. bool enabled = false;
  180. u32 i;
  181. for (i = INST_CAP_NONE + 1; i < INST_CAP_MAX; i++) {
  182. if (is_meta_tx_inp_enabled(inst, i) ||
  183. is_dyn_meta_tx_inp_enabled(inst, i) ||
  184. is_meta_rx_inp_enabled(inst, i)) {
  185. enabled = true;
  186. break;
  187. }
  188. }
  189. return enabled;
  190. }
  191. static inline bool is_output_meta_enabled(struct msm_vidc_inst *inst)
  192. {
  193. bool enabled = false;
  194. u32 i;
  195. for (i = INST_CAP_NONE + 1; i < INST_CAP_MAX; i++) {
  196. if (is_meta_tx_out_enabled(inst, i) ||
  197. is_dyn_meta_tx_out_enabled(inst, i) ||
  198. is_meta_rx_out_enabled(inst, i)) {
  199. enabled = true;
  200. break;
  201. }
  202. }
  203. return enabled;
  204. }
  205. static inline bool is_meta_enabled(struct msm_vidc_inst *inst, unsigned int type)
  206. {
  207. bool enabled = false;
  208. if (type == MSM_VIDC_BUF_INPUT)
  209. enabled = is_input_meta_enabled(inst);
  210. else if (type == MSM_VIDC_BUF_OUTPUT)
  211. enabled = is_output_meta_enabled(inst);
  212. return enabled;
  213. }
  214. static inline bool is_outbuf_fence_enabled(struct msm_vidc_inst *inst)
  215. {
  216. return is_meta_rx_inp_enabled(inst, META_OUTBUF_FENCE);
  217. }
  218. static inline bool is_linear_yuv_colorformat(enum msm_vidc_colorformat_type colorformat)
  219. {
  220. return colorformat == MSM_VIDC_FMT_NV12 ||
  221. colorformat == MSM_VIDC_FMT_NV21 ||
  222. colorformat == MSM_VIDC_FMT_P010;
  223. }
  224. static inline bool is_linear_rgba_colorformat(enum msm_vidc_colorformat_type colorformat)
  225. {
  226. return colorformat == MSM_VIDC_FMT_RGBA8888;
  227. }
  228. static inline bool is_linear_colorformat(enum msm_vidc_colorformat_type colorformat)
  229. {
  230. return is_linear_yuv_colorformat(colorformat) || is_linear_rgba_colorformat(colorformat);
  231. }
  232. static inline bool is_ubwc_colorformat(enum msm_vidc_colorformat_type colorformat)
  233. {
  234. return colorformat == MSM_VIDC_FMT_NV12C ||
  235. colorformat == MSM_VIDC_FMT_TP10C ||
  236. colorformat == MSM_VIDC_FMT_RGBA8888C;
  237. }
  238. static inline bool is_10bit_colorformat(enum msm_vidc_colorformat_type colorformat)
  239. {
  240. return colorformat == MSM_VIDC_FMT_P010 ||
  241. colorformat == MSM_VIDC_FMT_TP10C;
  242. }
  243. static inline bool is_8bit_colorformat(enum msm_vidc_colorformat_type colorformat)
  244. {
  245. return colorformat == MSM_VIDC_FMT_NV12 ||
  246. colorformat == MSM_VIDC_FMT_NV12C ||
  247. colorformat == MSM_VIDC_FMT_NV21 ||
  248. colorformat == MSM_VIDC_FMT_RGBA8888 ||
  249. colorformat == MSM_VIDC_FMT_RGBA8888C;
  250. }
  251. static inline bool is_rgba_colorformat(enum msm_vidc_colorformat_type colorformat)
  252. {
  253. return colorformat == MSM_VIDC_FMT_RGBA8888 ||
  254. colorformat == MSM_VIDC_FMT_RGBA8888C;
  255. }
  256. static inline bool is_thumbnail_session(struct msm_vidc_inst *inst)
  257. {
  258. return !!(inst->capabilities->cap[THUMBNAIL_MODE].value);
  259. }
  260. static inline bool is_low_power_session(struct msm_vidc_inst *inst)
  261. {
  262. return (inst->capabilities->cap[QUALITY_MODE].value ==
  263. MSM_VIDC_POWER_SAVE_MODE);
  264. }
  265. static inline bool is_realtime_session(struct msm_vidc_inst *inst)
  266. {
  267. return inst->capabilities->cap[PRIORITY].value == 0 ? true : false;
  268. }
  269. static inline bool is_critical_priority_session(struct msm_vidc_inst *inst)
  270. {
  271. return !!(inst->capabilities->cap[CRITICAL_PRIORITY].value);
  272. }
  273. static inline bool is_lowlatency_session(struct msm_vidc_inst *inst)
  274. {
  275. return !!(inst->capabilities->cap[LOWLATENCY_MODE].value);
  276. }
  277. static inline bool is_hierb_type_requested(struct msm_vidc_inst *inst)
  278. {
  279. return (inst->codec == MSM_VIDC_H264 &&
  280. inst->capabilities->cap[LAYER_TYPE].value ==
  281. V4L2_MPEG_VIDEO_H264_HIERARCHICAL_CODING_B) ||
  282. (inst->codec == MSM_VIDC_HEVC &&
  283. inst->capabilities->cap[LAYER_TYPE].value ==
  284. V4L2_MPEG_VIDEO_HEVC_HIERARCHICAL_CODING_B);
  285. }
  286. static inline bool is_active_session(u64 prev, u64 curr)
  287. {
  288. u64 ts_delta;
  289. if (!prev || !curr)
  290. return true;
  291. ts_delta = (prev < curr) ? curr - prev : prev - curr;
  292. return ((ts_delta / NSEC_PER_MSEC) <=
  293. MSM_VIDC_SESSION_INACTIVE_THRESHOLD_MS);
  294. }
  295. static inline bool is_session_error(struct msm_vidc_inst *inst)
  296. {
  297. return inst->state == MSM_VIDC_ERROR;
  298. }
  299. static inline bool is_secure_region(enum msm_vidc_buffer_region region)
  300. {
  301. return !(region == MSM_VIDC_NON_SECURE ||
  302. region == MSM_VIDC_NON_SECURE_PIXEL);
  303. }
  304. static inline bool is_enc_slice_delivery_mode(struct msm_vidc_inst *inst)
  305. {
  306. if (is_decode_session(inst))
  307. return false;
  308. return (inst->capabilities->cap[SLICE_MODE].value ==
  309. V4L2_MPEG_VIDEO_MULTI_SLICE_MODE_MAX_MB &&
  310. inst->capabilities->cap[DELIVERY_MODE].value);
  311. }
  312. const char *cap_name(enum msm_vidc_inst_capability_type cap_id);
  313. const char *v4l2_pixelfmt_name(struct msm_vidc_inst *inst, u32 pixelfmt);
  314. const char *v4l2_type_name(u32 port);
  315. void print_vidc_buffer(u32 tag, const char *tag_str, const char *str, struct msm_vidc_inst *inst,
  316. struct msm_vidc_buffer *vbuf);
  317. void print_vb2_buffer(const char *str, struct msm_vidc_inst *inst,
  318. struct vb2_buffer *vb2);
  319. enum msm_vidc_codec_type v4l2_codec_to_driver(struct msm_vidc_inst *inst,
  320. u32 v4l2_codec, const char *func);
  321. u32 v4l2_codec_from_driver(struct msm_vidc_inst *inst, enum msm_vidc_codec_type codec,
  322. const char *func);
  323. enum msm_vidc_colorformat_type v4l2_colorformat_to_driver(struct msm_vidc_inst *inst,
  324. u32 colorformat, const char *func);
  325. u32 v4l2_colorformat_from_driver(struct msm_vidc_inst *inst,
  326. enum msm_vidc_colorformat_type colorformat, const char *func);
  327. u32 v4l2_color_primaries_to_driver(struct msm_vidc_inst *inst,
  328. u32 v4l2_primaries, const char *func);
  329. u32 v4l2_color_primaries_from_driver(struct msm_vidc_inst *inst,
  330. u32 vidc_color_primaries, const char *func);
  331. u32 v4l2_transfer_char_to_driver(struct msm_vidc_inst *inst,
  332. u32 v4l2_transfer_char, const char *func);
  333. u32 v4l2_transfer_char_from_driver(struct msm_vidc_inst *inst,
  334. u32 vidc_transfer_char, const char *func);
  335. u32 v4l2_matrix_coeff_to_driver(struct msm_vidc_inst *inst,
  336. u32 v4l2_matrix_coeff, const char *func);
  337. u32 v4l2_matrix_coeff_from_driver(struct msm_vidc_inst *inst,
  338. u32 vidc_matrix_coeff, const char *func);
  339. int v4l2_type_to_driver_port(struct msm_vidc_inst *inst, u32 type,
  340. const char *func);
  341. const char *allow_name(enum msm_vidc_allow allow);
  342. int msm_vidc_create_internal_buffer(struct msm_vidc_inst *inst,
  343. enum msm_vidc_buffer_type buffer_type, u32 index);
  344. int msm_vidc_get_internal_buffers(struct msm_vidc_inst *inst,
  345. enum msm_vidc_buffer_type buffer_type);
  346. int msm_vidc_create_internal_buffers(struct msm_vidc_inst *inst,
  347. enum msm_vidc_buffer_type buffer_type);
  348. int msm_vidc_queue_internal_buffers(struct msm_vidc_inst *inst,
  349. enum msm_vidc_buffer_type buffer_type);
  350. int msm_vidc_alloc_and_queue_session_internal_buffers(struct msm_vidc_inst *inst,
  351. enum msm_vidc_buffer_type buffer_type);
  352. int msm_vidc_release_internal_buffers(struct msm_vidc_inst *inst,
  353. enum msm_vidc_buffer_type buffer_type);
  354. int msm_vidc_vb2_buffer_done(struct msm_vidc_inst *inst,
  355. struct msm_vidc_buffer *buf);
  356. int msm_vidc_remove_dangling_session(struct msm_vidc_inst *inst);
  357. int msm_vidc_remove_session(struct msm_vidc_inst *inst);
  358. int msm_vidc_add_session(struct msm_vidc_inst *inst);
  359. int msm_vidc_session_open(struct msm_vidc_inst *inst);
  360. int msm_vidc_session_set_codec(struct msm_vidc_inst *inst);
  361. int msm_vidc_session_set_secure_mode(struct msm_vidc_inst *inst);
  362. int msm_vidc_session_set_default_header(struct msm_vidc_inst *inst);
  363. int msm_vidc_session_streamoff(struct msm_vidc_inst *inst,
  364. enum msm_vidc_port_type port);
  365. int msm_vidc_session_close(struct msm_vidc_inst *inst);
  366. int msm_vidc_kill_session(struct msm_vidc_inst* inst);
  367. int msm_vidc_get_inst_capability(struct msm_vidc_inst *inst);
  368. int msm_vidc_change_core_state(struct msm_vidc_core *core,
  369. enum msm_vidc_core_state request_state, const char *func);
  370. int msm_vidc_change_core_sub_state(struct msm_vidc_core *core,
  371. enum msm_vidc_core_sub_state clear_sub_states,
  372. enum msm_vidc_core_sub_state set_sub_states, const char *func);
  373. int msm_vidc_core_init(struct msm_vidc_core *core);
  374. int msm_vidc_core_init_wait(struct msm_vidc_core *core);
  375. int msm_vidc_core_deinit(struct msm_vidc_core *core, bool force);
  376. int msm_vidc_print_residency_stats(struct msm_vidc_core *core);
  377. int msm_vidc_reset_residency_stats(struct msm_vidc_core *core);
  378. int msm_vidc_core_deinit_locked(struct msm_vidc_core *core, bool force);
  379. int msm_vidc_inst_timeout(struct msm_vidc_inst *inst);
  380. int msm_vidc_print_buffer_info(struct msm_vidc_inst *inst);
  381. int msm_vidc_print_inst_info(struct msm_vidc_inst *inst);
  382. void msm_vidc_print_core_info(struct msm_vidc_core *core);
  383. int msm_vidc_smmu_fault_handler(struct iommu_domain *domain,
  384. struct device *dev, unsigned long iova, int flags, void *data);
  385. int msm_vidc_trigger_ssr(struct msm_vidc_core *core,
  386. u64 trigger_ssr_val);
  387. void msm_vidc_ssr_handler(struct work_struct *work);
  388. int msm_vidc_trigger_stability(struct msm_vidc_core *core,
  389. u64 trigger_stability_val);
  390. void msm_vidc_stability_handler(struct work_struct *work);
  391. int cancel_stability_work_sync(struct msm_vidc_inst *inst);
  392. void msm_vidc_fw_unload_handler(struct work_struct *work);
  393. int msm_vidc_suspend_locked(struct msm_vidc_core *core);
  394. void msm_vidc_batch_handler(struct work_struct *work);
  395. int msm_vidc_event_queue_init(struct msm_vidc_inst *inst);
  396. int msm_vidc_event_queue_deinit(struct msm_vidc_inst *inst);
  397. int msm_vidc_vb2_queue_init(struct msm_vidc_inst *inst);
  398. int msm_vidc_vb2_queue_deinit(struct msm_vidc_inst *inst);
  399. int msm_vidc_get_control(struct msm_vidc_inst *inst, struct v4l2_ctrl *ctrl);
  400. struct msm_vidc_buffers *msm_vidc_get_buffers(struct msm_vidc_inst *inst,
  401. enum msm_vidc_buffer_type buffer_type, const char *func);
  402. struct msm_vidc_mem_list *msm_vidc_get_mem_info(
  403. struct msm_vidc_inst *inst, enum msm_vidc_buffer_type buffer_type,
  404. const char *func);
  405. struct msm_vidc_buffer *msm_vidc_get_driver_buf(struct msm_vidc_inst *inst,
  406. struct vb2_buffer *vb2);
  407. int msm_vidc_allocate_buffers(struct msm_vidc_inst *inst,
  408. enum msm_vidc_buffer_type buf_type, u32 num_buffers);
  409. int msm_vidc_free_buffers(struct msm_vidc_inst *inst,
  410. enum msm_vidc_buffer_type buf_type);
  411. void msm_vidc_update_stats(struct msm_vidc_inst *inst,
  412. struct msm_vidc_buffer *buf, enum msm_vidc_debugfs_event etype);
  413. void msm_vidc_stats_handler(struct work_struct *work);
  414. int schedule_stats_work(struct msm_vidc_inst *inst);
  415. int cancel_stats_work_sync(struct msm_vidc_inst *inst);
  416. void msm_vidc_print_stats(struct msm_vidc_inst *inst);
  417. void msm_vidc_print_memory_stats(struct msm_vidc_inst *inst);
  418. enum msm_vidc_buffer_type v4l2_type_to_driver(u32 type,
  419. const char *func);
  420. int msm_vidc_buf_queue(struct msm_vidc_inst *inst, struct msm_vidc_buffer *buf);
  421. int msm_vidc_queue_buffer_single(struct msm_vidc_inst *inst,
  422. struct vb2_buffer *vb2);
  423. int msm_vidc_queue_deferred_buffers(struct msm_vidc_inst *inst,
  424. enum msm_vidc_buffer_type buf_type);
  425. int msm_vidc_destroy_internal_buffer(struct msm_vidc_inst *inst,
  426. struct msm_vidc_buffer *buffer);
  427. void msm_vidc_destroy_buffers(struct msm_vidc_inst *inst);
  428. int msm_vidc_flush_buffers(struct msm_vidc_inst* inst,
  429. enum msm_vidc_buffer_type type);
  430. int msm_vidc_flush_read_only_buffers(struct msm_vidc_inst *inst,
  431. enum msm_vidc_buffer_type type);
  432. struct msm_vidc_buffer *get_meta_buffer(struct msm_vidc_inst *inst,
  433. struct msm_vidc_buffer *vbuf);
  434. struct msm_vidc_inst *get_inst_ref(struct msm_vidc_core *core,
  435. struct msm_vidc_inst *instance);
  436. struct msm_vidc_inst *get_inst(struct msm_vidc_core *core,
  437. u32 session_id);
  438. void put_inst(struct msm_vidc_inst *inst);
  439. bool msm_vidc_allow_s_fmt(struct msm_vidc_inst *inst, u32 type);
  440. bool msm_vidc_allow_metadata_delivery(struct msm_vidc_inst *inst,
  441. u32 cap_id, u32 port);
  442. bool msm_vidc_allow_metadata_subscription(struct msm_vidc_inst *inst,
  443. u32 cap_id, u32 port);
  444. bool msm_vidc_allow_property(struct msm_vidc_inst *inst, u32 hfi_id);
  445. int msm_vidc_update_property_cap(struct msm_vidc_inst *inst, u32 hfi_id,
  446. bool allow);
  447. enum msm_vidc_allow msm_vidc_allow_input_psc(struct msm_vidc_inst *inst);
  448. bool msm_vidc_allow_drain_last_flag(struct msm_vidc_inst *inst);
  449. bool msm_vidc_allow_psc_last_flag(struct msm_vidc_inst *inst);
  450. enum msm_vidc_allow msm_vidc_allow_pm_suspend(struct msm_vidc_core *core);
  451. int msm_vidc_state_change_streamon(struct msm_vidc_inst *inst, u32 type);
  452. int msm_vidc_state_change_streamoff(struct msm_vidc_inst *inst, u32 type);
  453. int msm_vidc_state_change_input_psc(struct msm_vidc_inst *inst);
  454. int msm_vidc_state_change_drain_last_flag(struct msm_vidc_inst *inst);
  455. int msm_vidc_state_change_psc_last_flag(struct msm_vidc_inst *inst);
  456. int msm_vidc_process_drain(struct msm_vidc_inst *inst);
  457. int msm_vidc_process_resume(struct msm_vidc_inst *inst);
  458. int msm_vidc_process_streamon_input(struct msm_vidc_inst *inst);
  459. int msm_vidc_process_streamon_output(struct msm_vidc_inst *inst);
  460. int msm_vidc_process_stop_done(struct msm_vidc_inst *inst,
  461. enum signal_session_response signal_type);
  462. int msm_vidc_process_drain_done(struct msm_vidc_inst *inst);
  463. int msm_vidc_process_drain_last_flag(struct msm_vidc_inst *inst);
  464. int msm_vidc_process_psc_last_flag(struct msm_vidc_inst *inst);
  465. int msm_vidc_get_mbs_per_frame(struct msm_vidc_inst *inst);
  466. u32 msm_vidc_get_max_bitrate(struct msm_vidc_inst* inst);
  467. int msm_vidc_get_fps(struct msm_vidc_inst *inst);
  468. int msm_vidc_num_buffers(struct msm_vidc_inst *inst,
  469. enum msm_vidc_buffer_type type, enum msm_vidc_buffer_attributes attr);
  470. void core_lock(struct msm_vidc_core *core, const char *function);
  471. void core_unlock(struct msm_vidc_core *core, const char *function);
  472. bool core_lock_check(struct msm_vidc_core *core, const char *function);
  473. void inst_lock(struct msm_vidc_inst *inst, const char *function);
  474. void inst_unlock(struct msm_vidc_inst *inst, const char *function);
  475. bool inst_lock_check(struct msm_vidc_inst *inst, const char *function);
  476. bool client_lock_check(struct msm_vidc_inst *inst, const char *func);
  477. void client_lock(struct msm_vidc_inst *inst, const char *function);
  478. void client_unlock(struct msm_vidc_inst *inst, const char *function);
  479. int msm_vidc_update_bitstream_buffer_size(struct msm_vidc_inst *inst);
  480. int msm_vidc_update_meta_port_settings(struct msm_vidc_inst *inst);
  481. int msm_vidc_update_buffer_count(struct msm_vidc_inst *inst, u32 port);
  482. void msm_vidc_schedule_core_deinit(struct msm_vidc_core *core);
  483. bool msm_vidc_is_super_buffer(struct msm_vidc_inst *inst);
  484. int msm_vidc_init_core_caps(struct msm_vidc_core* core);
  485. int msm_vidc_init_instance_caps(struct msm_vidc_core* core);
  486. int msm_vidc_deinit_core_caps(struct msm_vidc_core* core);
  487. int msm_vidc_deinit_instance_caps(struct msm_vidc_core* core);
  488. int msm_vidc_update_debug_str(struct msm_vidc_inst *inst);
  489. void msm_vidc_allow_dcvs(struct msm_vidc_inst *inst);
  490. bool msm_vidc_allow_decode_batch(struct msm_vidc_inst *inst);
  491. int msm_vidc_check_session_supported(struct msm_vidc_inst *inst);
  492. bool msm_vidc_ignore_session_load(struct msm_vidc_inst *inst);
  493. int msm_vidc_check_core_mbps(struct msm_vidc_inst *inst);
  494. int msm_vidc_check_core_mbpf(struct msm_vidc_inst *inst);
  495. int msm_vidc_check_scaling_supported(struct msm_vidc_inst *inst);
  496. int msm_vidc_update_timestamp_rate(struct msm_vidc_inst *inst, u64 timestamp);
  497. int msm_vidc_set_auto_framerate(struct msm_vidc_inst *inst, u64 timestamp);
  498. int msm_vidc_get_timestamp_rate(struct msm_vidc_inst *inst);
  499. int msm_vidc_flush_ts(struct msm_vidc_inst *inst);
  500. int msm_vidc_ts_reorder_insert_timestamp(struct msm_vidc_inst *inst, u64 timestamp);
  501. int msm_vidc_ts_reorder_remove_timestamp(struct msm_vidc_inst *inst, u64 timestamp);
  502. int msm_vidc_ts_reorder_get_first_timestamp(struct msm_vidc_inst *inst, u64 *timestamp);
  503. int msm_vidc_ts_reorder_flush(struct msm_vidc_inst *inst);
  504. const char *buf_name(enum msm_vidc_buffer_type type);
  505. bool res_is_greater_than(u32 width, u32 height,
  506. u32 ref_width, u32 ref_height);
  507. bool res_is_greater_than_or_equal_to(u32 width, u32 height,
  508. u32 ref_width, u32 ref_height);
  509. bool res_is_less_than(u32 width, u32 height,
  510. u32 ref_width, u32 ref_height);
  511. bool res_is_less_than_or_equal_to(u32 width, u32 height,
  512. u32 ref_width, u32 ref_height);
  513. bool is_hevc_10bit_decode_session(struct msm_vidc_inst *inst);
  514. int signal_session_msg_receipt(struct msm_vidc_inst *inst,
  515. enum signal_session_response cmd);
  516. int msm_vidc_get_properties(struct msm_vidc_inst *inst);
  517. int msm_vidc_update_input_rate(struct msm_vidc_inst *inst, u64 time_us);
  518. int msm_vidc_add_buffer_stats(struct msm_vidc_inst *inst,
  519. struct msm_vidc_buffer *buf, u64 timestamp);
  520. int msm_vidc_remove_buffer_stats(struct msm_vidc_inst *inst,
  521. struct msm_vidc_buffer *buf, u64 timestamp);
  522. int msm_vidc_flush_buffer_stats(struct msm_vidc_inst *inst);
  523. int msm_vidc_get_input_rate(struct msm_vidc_inst *inst);
  524. int msm_vidc_get_frame_rate(struct msm_vidc_inst *inst);
  525. int msm_vidc_get_operating_rate(struct msm_vidc_inst *inst);
  526. int msm_vidc_alloc_and_queue_input_internal_buffers(struct msm_vidc_inst *inst);
  527. int vb2_buffer_to_driver(struct vb2_buffer *vb2, struct msm_vidc_buffer *buf);
  528. struct msm_vidc_buffer *msm_vidc_fetch_buffer(struct msm_vidc_inst *inst,
  529. struct vb2_buffer *vb2);
  530. struct context_bank_info *msm_vidc_get_context_bank_for_region(struct msm_vidc_core *core,
  531. enum msm_vidc_buffer_region region);
  532. struct context_bank_info *msm_vidc_get_context_bank_for_device(
  533. struct msm_vidc_core *core, struct device *dev);
  534. #endif // _MSM_VIDC_DRIVER_H_