msm_vidc_internal.h 16 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only */
  2. /*
  3. * Copyright (c) 2020, The Linux Foundation. All rights reserved.
  4. */
  5. #ifndef _MSM_VIDC_INTERNAL_H_
  6. #define _MSM_VIDC_INTERNAL_H_
  7. #include <linux/bits.h>
  8. #include <linux/workqueue.h>
  9. #include <media/v4l2-dev.h>
  10. #include <media/v4l2-device.h>
  11. #include <media/v4l2-ioctl.h>
  12. #include <media/v4l2-event.h>
  13. #include <media/v4l2-ctrls.h>
  14. #include <media/videobuf2-core.h>
  15. #include <media/videobuf2-v4l2.h>
  16. #define MAX_NAME_LENGTH 128
  17. #define MAX_MATRIX_COEFFS 9
  18. #define MAX_BIAS_COEFFS 3
  19. #define MAX_LIMIT_COEFFS 6
  20. #define MAX_DEBUGFS_NAME 50
  21. #define DEFAULT_TIMEOUT 3
  22. #define DEFAULT_HEIGHT 240
  23. #define DEFAULT_WIDTH 320
  24. #define MAX_HEIGHT 4320
  25. #define MAX_WIDTH 8192
  26. #define MIN_SUPPORTED_WIDTH 32
  27. #define MIN_SUPPORTED_HEIGHT 32
  28. #define DEFAULT_FPS 30
  29. #define MINIMUM_FPS 1
  30. #define MAXIMUM_FPS 960
  31. #define SINGLE_INPUT_BUFFER 1
  32. #define SINGLE_OUTPUT_BUFFER 1
  33. #define MAX_NUM_INPUT_BUFFERS VIDEO_MAX_FRAME // same as VB2_MAX_FRAME
  34. #define MAX_NUM_OUTPUT_BUFFERS VIDEO_MAX_FRAME // same as VB2_MAX_FRAME
  35. #define MAX_SUPPORTED_INSTANCES 16
  36. #define MAX_BSE_VPP_DELAY 6
  37. #define DEFAULT_BSE_VPP_DELAY 2
  38. #define MAX_CAP_PARENTS 16
  39. #define MAX_CAP_CHILDREN 16
  40. /* TODO
  41. * #define MAX_SUPERFRAME_COUNT 32
  42. */
  43. /* Maintains the number of FTB's between each FBD over a window */
  44. #define DCVS_FTB_WINDOW 16
  45. /* Superframe can have maximum of 32 frames */
  46. #define VIDC_SUPERFRAME_MAX 32
  47. #define COLOR_RANGE_UNSPECIFIED (-1)
  48. #define V4L2_EVENT_VIDC_BASE 10
  49. #define INPUT_MPLANE V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE
  50. #define OUTPUT_MPLANE V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE
  51. #define INPUT_META_PLANE V4L2_BUF_TYPE_META_OUTPUT
  52. #define OUTPUT_META_PLANE V4L2_BUF_TYPE_META_CAPTURE
  53. #define VIDC_IFACEQ_MAX_PKT_SIZE 1024
  54. #define VIDC_IFACEQ_MED_PKT_SIZE 768
  55. #define VIDC_IFACEQ_MIN_PKT_SIZE 8
  56. #define VIDC_IFACEQ_VAR_SMALL_PKT_SIZE 100
  57. #define VIDC_IFACEQ_VAR_LARGE_PKT_SIZE 512
  58. #define VIDC_IFACEQ_VAR_HUGE_PKT_SIZE (1024*12)
  59. #define NUM_MBS_PER_SEC(__height, __width, __fps) \
  60. (NUM_MBS_PER_FRAME(__height, __width) * __fps)
  61. #define NUM_MBS_PER_FRAME(__height, __width) \
  62. ((ALIGN(__height, 16) / 16) * (ALIGN(__width, 16) / 16))
  63. #define IS_PRIV_CTRL(idx) ( \
  64. (V4L2_CTRL_ID2WHICH(idx) == V4L2_CTRL_CLASS_MPEG) && \
  65. V4L2_CTRL_DRIVER_PRIV(idx))
  66. #define BUFFER_ALIGNMENT_SIZE(x) x
  67. #define NUM_MBS_720P (((1280 + 15) >> 4) * ((720 + 15) >> 4))
  68. #define NUM_MBS_4k (((4096 + 15) >> 4) * ((2304 + 15) >> 4))
  69. #define DB_H264_DISABLE_SLICE_BOUNDARY \
  70. V4L2_MPEG_VIDEO_H264_LOOP_FILTER_MODE_DISABLED_AT_SLICE_BOUNDARY
  71. #define DB_HEVC_DISABLE_SLICE_BOUNDARY \
  72. V4L2_MPEG_VIDEO_HEVC_LOOP_FILTER_MODE_DISABLED_AT_SLICE_BOUNDARY
  73. /*
  74. * Convert Q16 number into Integer and Fractional part upto 2 places.
  75. * Ex : 105752 / 65536 = 1.61; 1.61 in Q16 = 105752;
  76. * Integer part = 105752 / 65536 = 1;
  77. * Reminder = 105752 * 0xFFFF = 40216; Last 16 bits.
  78. * Fractional part = 40216 * 100 / 65536 = 61;
  79. * Now convert to FP(1, 61, 100).
  80. */
  81. #define Q16_INT(q) ((q) >> 16)
  82. #define Q16_FRAC(q) ((((q) & 0xFFFF) * 100) >> 16)
  83. enum msm_vidc_domain_type {
  84. MSM_VIDC_ENCODER = BIT(0),
  85. MSM_VIDC_DECODER = BIT(1),
  86. };
  87. enum msm_vidc_codec_type {
  88. MSM_VIDC_H264 = BIT(0),
  89. MSM_VIDC_HEVC = BIT(1),
  90. MSM_VIDC_VP9 = BIT(2),
  91. MSM_VIDC_MPEG2 = BIT(3),
  92. };
  93. enum msm_vidc_colorformat_type {
  94. MSM_VIDC_FMT_NONE = 0,
  95. MSM_VIDC_FMT_NV12,
  96. MSM_VIDC_FMT_NV21,
  97. MSM_VIDC_FMT_NV12_UBWC,
  98. MSM_VIDC_FMT_NV12_P010,
  99. MSM_VIDC_FMT_NV12_TP10_UBWC,
  100. MSM_VIDC_FMT_RGBA8888,
  101. MSM_VIDC_FMT_RGBA8888_UBWC,
  102. };
  103. enum msm_vidc_buffer_type {
  104. MSM_VIDC_BUF_NONE = 0,
  105. MSM_VIDC_BUF_INPUT,
  106. MSM_VIDC_BUF_OUTPUT,
  107. MSM_VIDC_BUF_INPUT_META,
  108. MSM_VIDC_BUF_OUTPUT_META,
  109. MSM_VIDC_BUF_QUEUE,
  110. MSM_VIDC_BUF_BIN,
  111. MSM_VIDC_BUF_ARP,
  112. MSM_VIDC_BUF_COMV,
  113. MSM_VIDC_BUF_NON_COMV,
  114. MSM_VIDC_BUF_LINE,
  115. MSM_VIDC_BUF_DPB,
  116. MSM_VIDC_BUF_PERSIST,
  117. };
  118. /* always match with v4l2 flags V4L2_BUF_FLAG_* */
  119. enum msm_vidc_buffer_flags {
  120. MSM_VIDC_BUF_FLAG_KEYFRAME = 0x00000008,
  121. MSM_VIDC_BUF_FLAG_PFRAME = 0x00000010,
  122. MSM_VIDC_BUF_FLAG_BFRAME = 0x00000020,
  123. MSM_VIDC_BUF_FLAG_ERROR = 0x00000040,
  124. MSM_VIDC_BUF_FLAG_LAST = 0x00100000,
  125. // TODO: remove below flags
  126. MSM_VIDC_BUF_FLAG_CODECCONFIG = 0x01000000,
  127. MSM_VIDC_BUF_FLAG_SUBFRAME = 0x02000000,
  128. };
  129. enum msm_vidc_buffer_attributes {
  130. MSM_VIDC_ATTR_DEFERRED = BIT(0),
  131. MSM_VIDC_ATTR_READ_ONLY = BIT(1),
  132. MSM_VIDC_ATTR_PENDING_RELEASE = BIT(2),
  133. MSM_VIDC_ATTR_QUEUED = BIT(3),
  134. };
  135. enum msm_vidc_buffer_region {
  136. MSM_VIDC_REGION_NONE = 0,
  137. MSM_VIDC_NON_SECURE,
  138. MSM_VIDC_SECURE_PIXEL,
  139. MSM_VIDC_SECURE_NONPIXEL,
  140. MSM_VIDC_SECURE_BITSTREAM,
  141. };
  142. enum msm_vidc_port_type {
  143. INPUT_PORT = 0,
  144. OUTPUT_PORT,
  145. INPUT_META_PORT,
  146. OUTPUT_META_PORT,
  147. MAX_PORT,
  148. };
  149. enum msm_vidc_stage_type {
  150. MSM_VIDC_STAGE_NONE = 0,
  151. MSM_VIDC_STAGE_1 = 1,
  152. MSM_VIDC_STAGE_2 = 2,
  153. };
  154. enum msm_vidc_pipe_type {
  155. MSM_VIDC_PIPE_NONE = 0,
  156. MSM_VIDC_PIPE_1 = 1,
  157. MSM_VIDC_PIPE_2 = 2,
  158. MSM_VIDC_PIPE_4 = 4,
  159. };
  160. enum msm_vidc_core_capability_type {
  161. CORE_CAP_NONE = 0,
  162. ENC_CODECS,
  163. DEC_CODECS,
  164. MAX_SESSION_COUNT,
  165. MAX_SECURE_SESSION_COUNT,
  166. MAX_LOAD,
  167. MAX_MBPF,
  168. MAX_MBPS,
  169. MAX_MBPF_HQ,
  170. MAX_MBPS_HQ,
  171. MAX_MBPF_B_FRAME,
  172. MAX_MBPS_B_FRAME,
  173. NUM_VPP_PIPE,
  174. SW_PC,
  175. SW_PC_DELAY,
  176. FW_UNLOAD,
  177. FW_UNLOAD_DELAY,
  178. HW_RESPONSE_TIMEOUT,
  179. DEBUG_TIMEOUT,
  180. PREFIX_BUF_COUNT_PIX,
  181. PREFIX_BUF_SIZE_PIX,
  182. PREFIX_BUF_COUNT_NON_PIX,
  183. PREFIX_BUF_SIZE_NON_PIX,
  184. PAGEFAULT_NON_FATAL,
  185. PAGETABLE_CACHING,
  186. DCVS,
  187. DECODE_BATCH,
  188. DECODE_BATCH_TIMEOUT,
  189. AV_SYNC_WINDOW_SIZE,
  190. CLK_FREQ_THRESHOLD,
  191. CORE_CAP_MAX,
  192. };
  193. enum msm_vidc_inst_capability_type {
  194. INST_CAP_NONE = 0,
  195. FRAME_WIDTH,
  196. FRAME_HEIGHT,
  197. PIX_FMTS,
  198. MIN_BUFFERS_INPUT,
  199. MIN_BUFFERS_OUTPUT,
  200. MBPF,
  201. MBPS,
  202. FRAME_RATE,
  203. SCALE_X,
  204. SCALE_Y,
  205. B_FRAME,
  206. POWER_SAVE_MBPS,
  207. BATCH_MBPF,
  208. BATCH_FRAME_RATE,
  209. LOSSLESS_FRAME_WIDTH,
  210. LOSSLESS_FRAME_HEIGHT,
  211. LOSSLESS_MBPF,
  212. ALL_INTRA_FRAME_RATE,
  213. HEVC_IMAGE_FRAME_WIDTH,
  214. HEVC_IMAGE_FRAME_HEIGHT,
  215. HEIC_IMAGE_FRAME_WIDTH,
  216. HEIC_IMAGE_FRAME_HEIGHT,
  217. MB_CYCLES_VSP,
  218. MB_CYCLES_VPP,
  219. MB_CYCLES_LP,
  220. MB_CYCLES_FW,
  221. MB_CYCLES_FW_VPP,
  222. HFLIP,
  223. VFLIP,
  224. PREPEND_SPSPPS_TO_IDR,
  225. REQUEST_I_FRAME,
  226. SLICE_INTERFACE,
  227. FRAME_RC,
  228. BITRATE_MODE,
  229. HEADER_MODE,
  230. GOP_SIZE,
  231. GOP_CLOSURE,
  232. BIT_RATE,
  233. SECURE_FRAME_WIDTH,
  234. SECURE_FRAME_HEIGHT,
  235. SECURE_MBPF,
  236. SECURE_MODE,
  237. BLUR_TYPES,
  238. BLUR_RESOLUTION,
  239. CSC_CUSTOM_MATRIX,
  240. HEIC,
  241. LOWLATENCY_MODE,
  242. LTR_COUNT,
  243. USE_LTR,
  244. MARK_LTR,
  245. BASELAYER_PRIORITY,
  246. IR_RANDOM,
  247. AU_DELIMITER,
  248. TIME_DELTA_BASED_RC,
  249. CONTENT_ADAPTIVE_CODING,
  250. BITRATE_BOOST,
  251. ROTATION,
  252. VBV_DELAY,
  253. MIN_FRAME_QP,
  254. MAX_FRAME_QP,
  255. HEVC_HIER_QP,
  256. I_FRAME_QP,
  257. P_FRAME_QP,
  258. I_FRAME_MIN_QP,
  259. I_FRAME_MAX_QP,
  260. P_FRAME_MIN_QP,
  261. P_FRAME_MAX_QP,
  262. B_FRAME_QP,
  263. B_FRAME_MIN_QP,
  264. B_FRAME_MAX_QP,
  265. HIER_CODING_TYPE,
  266. HIER_CODING_LAYER,
  267. L0_QP,
  268. L1_QP,
  269. L2_QP,
  270. L3_QP,
  271. L4_QP,
  272. L5_QP,
  273. PROFILE,
  274. LEVEL,
  275. HEVC_TIER,
  276. LF_MODE,
  277. LF_ALPHA,
  278. LF_BETA,
  279. LF_TC,
  280. LOSSLESS,
  281. L0_BR,
  282. L1_BR,
  283. L2_BR,
  284. L3_BR,
  285. L4_BR,
  286. L5_BR,
  287. SLICE_MAX_BYTES,
  288. SLICE_MAX_MB,
  289. SLICE_MODE,
  290. CABAC_BITRATE,
  291. MB_RC,
  292. TRANSFORM_8X8,
  293. ENTROPY_MODE,
  294. HIER_CODING,
  295. HIER_LAYER_QP,
  296. CHROMA_QP_INDEX_OFFSET,
  297. DISPLAY_DELAY_ENABLE,
  298. DISPLAY_DELAY,
  299. INST_CAP_MAX,
  300. };
  301. enum msm_vidc_inst_capability_flags {
  302. CAP_FLAG_NONE = 0,
  303. CAP_FLAG_ROOT = BIT(0),
  304. CAP_FLAG_DYNAMIC_ALLOWED = BIT(1),
  305. CAP_FLAG_MENU = BIT(2),
  306. };
  307. struct msm_vidc_inst_cap {
  308. enum msm_vidc_inst_capability_type cap;
  309. s32 min;
  310. s32 max;
  311. u32 step_or_mask;
  312. s32 value;
  313. u32 v4l2_id;
  314. u32 hfi_id;
  315. enum msm_vidc_inst_capability_flags flags;
  316. enum msm_vidc_inst_capability_type parents[MAX_CAP_PARENTS];
  317. enum msm_vidc_inst_capability_type children[MAX_CAP_CHILDREN];
  318. int (*adjust)(void *inst,
  319. struct v4l2_ctrl *ctrl);
  320. int (*set)(void *inst,
  321. enum msm_vidc_inst_capability_type cap_id);
  322. };
  323. struct msm_vidc_inst_capability {
  324. enum msm_vidc_domain_type domain;
  325. enum msm_vidc_codec_type codec;
  326. struct msm_vidc_inst_cap cap[INST_CAP_MAX];
  327. };
  328. struct msm_vidc_core_capability {
  329. enum msm_vidc_core_capability_type type;
  330. u32 value;
  331. };
  332. struct msm_vidc_inst_cap_entry {
  333. /* list of struct msm_vidc_inst_cap_entry */
  334. struct list_head list;
  335. enum msm_vidc_inst_capability_type cap_id;
  336. };
  337. enum efuse_purpose {
  338. SKU_VERSION = 0,
  339. };
  340. enum sku_version {
  341. SKU_VERSION_0 = 0,
  342. SKU_VERSION_1,
  343. SKU_VERSION_2,
  344. };
  345. enum msm_vidc_ssr_trigger_type {
  346. SSR_ERR_FATAL = 1,
  347. SSR_SW_DIV_BY_ZERO,
  348. SSR_HW_WDOG_IRQ,
  349. };
  350. enum msm_vidc_cache_op {
  351. MSM_VIDC_CACHE_CLEAN,
  352. MSM_VIDC_CACHE_INVALIDATE,
  353. MSM_VIDC_CACHE_CLEAN_INVALIDATE,
  354. };
  355. enum msm_vidc_dcvs_flags {
  356. MSM_VIDC_DCVS_INCR = BIT(0),
  357. MSM_VIDC_DCVS_DECR = BIT(1),
  358. };
  359. enum msm_vidc_clock_properties {
  360. CLOCK_PROP_HAS_SCALING = BIT(0),
  361. CLOCK_PROP_HAS_MEM_RETENTION = BIT(1),
  362. };
  363. enum profiling_points {
  364. FRAME_PROCESSING = 0,
  365. MAX_PROFILING_POINTS,
  366. };
  367. enum signal_session_response {
  368. SIGNAL_CMD_STOP_INPUT = 0,
  369. SIGNAL_CMD_STOP_OUTPUT,
  370. SIGNAL_CMD_CLOSE,
  371. MAX_SIGNAL,
  372. };
  373. #define HFI_MASK_QHDR_TX_TYPE 0xFF000000
  374. #define HFI_MASK_QHDR_RX_TYPE 0x00FF0000
  375. #define HFI_MASK_QHDR_PRI_TYPE 0x0000FF00
  376. #define HFI_MASK_QHDR_Q_ID_TYPE 0x000000FF
  377. #define HFI_Q_ID_HOST_TO_CTRL_CMD_Q 0x00
  378. #define HFI_Q_ID_CTRL_TO_HOST_MSG_Q 0x01
  379. #define HFI_Q_ID_CTRL_TO_HOST_DEBUG_Q 0x02
  380. #define HFI_MASK_QHDR_STATUS 0x000000FF
  381. #define VIDC_IFACEQ_NUMQ 3
  382. #define VIDC_IFACEQ_CMDQ_IDX 0
  383. #define VIDC_IFACEQ_MSGQ_IDX 1
  384. #define VIDC_IFACEQ_DBGQ_IDX 2
  385. #define VIDC_IFACEQ_MAX_BUF_COUNT 50
  386. #define VIDC_IFACE_MAX_PARALLEL_CLNTS 16
  387. #define VIDC_IFACEQ_DFLT_QHDR 0x01010000
  388. struct hfi_queue_table_header {
  389. u32 qtbl_version;
  390. u32 qtbl_size;
  391. u32 qtbl_qhdr0_offset;
  392. u32 qtbl_qhdr_size;
  393. u32 qtbl_num_q;
  394. u32 qtbl_num_active_q;
  395. void *device_addr;
  396. char name[256];
  397. };
  398. struct hfi_queue_header {
  399. u32 qhdr_status;
  400. u32 qhdr_start_addr;
  401. u32 qhdr_type;
  402. u32 qhdr_q_size;
  403. u32 qhdr_pkt_size;
  404. u32 qhdr_pkt_drop_cnt;
  405. u32 qhdr_rx_wm;
  406. u32 qhdr_tx_wm;
  407. u32 qhdr_rx_req;
  408. u32 qhdr_tx_req;
  409. u32 qhdr_rx_irq_status;
  410. u32 qhdr_tx_irq_status;
  411. u32 qhdr_read_idx;
  412. u32 qhdr_write_idx;
  413. };
  414. #define VIDC_IFACEQ_TABLE_SIZE (sizeof(struct hfi_queue_table_header) \
  415. + sizeof(struct hfi_queue_header) * VIDC_IFACEQ_NUMQ)
  416. #define VIDC_IFACEQ_QUEUE_SIZE (VIDC_IFACEQ_MAX_PKT_SIZE * \
  417. VIDC_IFACEQ_MAX_BUF_COUNT * VIDC_IFACE_MAX_PARALLEL_CLNTS)
  418. #define VIDC_IFACEQ_GET_QHDR_START_ADDR(ptr, i) \
  419. (void *)((ptr + sizeof(struct hfi_queue_table_header)) + \
  420. (i * sizeof(struct hfi_queue_header)))
  421. #define QDSS_SIZE 4096
  422. #define SFR_SIZE 4096
  423. #define QUEUE_SIZE (VIDC_IFACEQ_TABLE_SIZE + \
  424. (VIDC_IFACEQ_QUEUE_SIZE * VIDC_IFACEQ_NUMQ))
  425. #define ALIGNED_QDSS_SIZE ALIGN(QDSS_SIZE, SZ_4K)
  426. #define ALIGNED_SFR_SIZE ALIGN(SFR_SIZE, SZ_4K)
  427. #define ALIGNED_QUEUE_SIZE ALIGN(QUEUE_SIZE, SZ_4K)
  428. #define SHARED_QSIZE ALIGN(ALIGNED_SFR_SIZE + ALIGNED_QUEUE_SIZE + \
  429. ALIGNED_QDSS_SIZE, SZ_1M)
  430. struct buf_count {
  431. u32 etb;
  432. u32 ftb;
  433. u32 fbd;
  434. u32 ebd;
  435. };
  436. struct profile_data {
  437. u32 start;
  438. u32 stop;
  439. u32 cumulative;
  440. char name[64];
  441. u32 sampling;
  442. u32 average;
  443. };
  444. struct msm_vidc_debug {
  445. struct profile_data pdata[MAX_PROFILING_POINTS];
  446. u32 profile;
  447. u32 samples;
  448. struct buf_count count;
  449. };
  450. struct msm_vidc_input_cr_data {
  451. struct list_head list;
  452. u32 index;
  453. u32 input_cr;
  454. };
  455. struct msm_vidc_timestamps {
  456. struct list_head list;
  457. u64 timestamp_us;
  458. u32 framerate;
  459. bool is_valid;
  460. };
  461. struct msm_vidc_session_idle {
  462. bool idle;
  463. u64 last_activity_time_ns;
  464. };
  465. struct msm_vidc_color_info {
  466. u32 colorspace;
  467. u32 ycbcr_enc;
  468. u32 xfer_func;
  469. u32 quantization;
  470. };
  471. struct msm_vidc_crop {
  472. u32 x;
  473. u32 y;
  474. u32 width;
  475. u32 height;
  476. };
  477. struct msm_vidc_properties {
  478. u32 frame_rate;
  479. u32 operating_rate;
  480. u32 bit_rate;
  481. u32 profile;
  482. u32 level;
  483. u32 entropy_mode;
  484. u32 rc_type;
  485. };
  486. struct msm_vidc_subscription_params {
  487. u32 align_width;
  488. u32 align_height;
  489. struct msm_vidc_crop crop;
  490. struct msm_vidc_color_info color_info;
  491. u32 bit_depth;
  492. u32 cabac;
  493. u32 interlace;
  494. u32 min_count;
  495. u32 pic_order_cnt;
  496. u32 profile;
  497. };
  498. struct msm_vidc_decode_vpp_delay {
  499. bool enable;
  500. u32 size;
  501. };
  502. struct msm_vidc_decode_batch {
  503. bool enable;
  504. u32 size;
  505. struct delayed_work work;
  506. };
  507. struct msm_vidc_power {
  508. u32 buffer_counter;
  509. u32 min_threshold;
  510. u32 nom_threshold;
  511. u32 max_threshold;
  512. bool dcvs_mode;
  513. u32 dcvs_window;
  514. u64 min_freq;
  515. u64 curr_freq;
  516. u32 ddr_bw;
  517. u32 sys_cache_bw;
  518. u32 dcvs_flags;
  519. };
  520. struct msm_vidc_alloc {
  521. struct list_head list;
  522. enum msm_vidc_buffer_type type;
  523. enum msm_vidc_buffer_region region;
  524. u32 size;
  525. u8 cached:1;
  526. u8 secure:1;
  527. u8 map_kernel:1;
  528. struct dma_buf *dmabuf;
  529. void *kvaddr;
  530. };
  531. struct msm_vidc_allocations {
  532. struct list_head list; // list of "struct msm_vidc_alloc"
  533. };
  534. struct msm_vidc_map {
  535. struct list_head list;
  536. bool valid;
  537. enum msm_vidc_buffer_type type;
  538. enum msm_vidc_buffer_region region;
  539. struct dma_buf *dmabuf;
  540. u32 refcount;
  541. u64 device_addr;
  542. struct sg_table *table;
  543. struct dma_buf_attachment *attach;
  544. };
  545. struct msm_vidc_mappings {
  546. struct list_head list; // list of "struct msm_vidc_map"
  547. };
  548. struct msm_vidc_buffer {
  549. struct list_head list;
  550. bool valid;
  551. enum msm_vidc_buffer_type type;
  552. u32 index;
  553. int fd;
  554. u32 buffer_size;
  555. u32 data_offset;
  556. u32 data_size;
  557. u64 device_addr;
  558. void *dmabuf;
  559. u32 flags;
  560. u64 timestamp;
  561. enum msm_vidc_buffer_attributes attr;
  562. };
  563. struct msm_vidc_buffers {
  564. struct list_head list; // list of "struct msm_vidc_buffer"
  565. u32 min_count;
  566. u32 extra_count;
  567. u32 actual_count;
  568. u32 size;
  569. };
  570. struct msm_vidc_ssr {
  571. bool trigger;
  572. enum msm_vidc_ssr_trigger_type ssr_type;
  573. };
  574. #define call_mem_op(c, op, ...) \
  575. (((c) && (c)->mem_ops && (c)->mem_ops->op) ? \
  576. ((c)->mem_ops->op(__VA_ARGS__)) : 0)
  577. struct msm_vidc_memory_ops {
  578. int (*allocate)(void *inst, struct msm_vidc_buffer *mbuf);
  579. int (*dma_map)(void *inst, struct msm_vidc_buffer *mbuf);
  580. int (*dma_unmap)(void *inst, struct msm_vidc_buffer *mbuf);
  581. int (*free)(void *inst, struct msm_vidc_buffer *mbuf);
  582. int (*cache_op)(void *inst, struct msm_vidc_buffer *mbuf,
  583. enum msm_vidc_cache_op cache_op);
  584. };
  585. #endif // _MSM_VIDC_INTERNAL_H_