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  1. /*
  2. * H.264 HW decode acceleration through VA API
  3. *
  4. * Copyright (C) 2008-2009 Splitted-Desktop Systems
  5. *
  6. * This file is part of Libav.
  7. *
  8. * Libav is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU Lesser General Public
  10. * License as published by the Free Software Foundation; either
  11. * version 2.1 of the License, or (at your option) any later version.
  12. *
  13. * Libav is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  16. * Lesser General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU Lesser General Public
  19. * License along with Libav; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. */
  22. #include "h264dec.h"
  23. #include "h264_ps.h"
  24. #include "vaapi_decode.h"
  25. /**
  26. * @file
  27. * This file implements the glue code between Libav's and VA API's
  28. * structures for H.264 decoding.
  29. */
  30. /**
  31. * Initialize an empty VA API picture.
  32. *
  33. * VA API requires a fixed-size reference picture array.
  34. */
  35. static void init_vaapi_pic(VAPictureH264 *va_pic)
  36. {
  37. va_pic->picture_id = VA_INVALID_ID;
  38. va_pic->flags = VA_PICTURE_H264_INVALID;
  39. va_pic->TopFieldOrderCnt = 0;
  40. va_pic->BottomFieldOrderCnt = 0;
  41. }
  42. /**
  43. * Translate an Libav Picture into its VA API form.
  44. *
  45. * @param[out] va_pic A pointer to VA API's own picture struct
  46. * @param[in] pic A pointer to the Libav picture struct to convert
  47. * @param[in] pic_structure The picture field type (as defined in mpegvideo.h),
  48. * supersedes pic's field type if nonzero.
  49. */
  50. static void fill_vaapi_pic(VAPictureH264 *va_pic,
  51. const H264Picture *pic,
  52. int pic_structure)
  53. {
  54. if (pic_structure == 0)
  55. pic_structure = pic->reference;
  56. pic_structure &= PICT_FRAME; /* PICT_TOP_FIELD|PICT_BOTTOM_FIELD */
  57. va_pic->picture_id = ff_vaapi_get_surface_id(pic->f);
  58. va_pic->frame_idx = pic->long_ref ? pic->pic_id : pic->frame_num;
  59. va_pic->flags = 0;
  60. if (pic_structure != PICT_FRAME)
  61. va_pic->flags |= (pic_structure & PICT_TOP_FIELD) ? VA_PICTURE_H264_TOP_FIELD : VA_PICTURE_H264_BOTTOM_FIELD;
  62. if (pic->reference)
  63. va_pic->flags |= pic->long_ref ? VA_PICTURE_H264_LONG_TERM_REFERENCE : VA_PICTURE_H264_SHORT_TERM_REFERENCE;
  64. va_pic->TopFieldOrderCnt = 0;
  65. if (pic->field_poc[0] != INT_MAX)
  66. va_pic->TopFieldOrderCnt = pic->field_poc[0];
  67. va_pic->BottomFieldOrderCnt = 0;
  68. if (pic->field_poc[1] != INT_MAX)
  69. va_pic->BottomFieldOrderCnt = pic->field_poc[1];
  70. }
  71. /** Decoded Picture Buffer (DPB). */
  72. typedef struct DPB {
  73. int size; ///< Current number of reference frames in the DPB
  74. int max_size; ///< Max number of reference frames. This is FF_ARRAY_ELEMS(VAPictureParameterBufferH264.ReferenceFrames)
  75. VAPictureH264 *va_pics; ///< Pointer to VAPictureParameterBufferH264.ReferenceFrames array
  76. } DPB;
  77. /**
  78. * Append picture to the decoded picture buffer, in a VA API form that
  79. * merges the second field picture attributes with the first, if
  80. * available. The decoded picture buffer's size must be large enough
  81. * to receive the new VA API picture object.
  82. */
  83. static int dpb_add(DPB *dpb, const H264Picture *pic)
  84. {
  85. int i;
  86. if (dpb->size >= dpb->max_size)
  87. return -1;
  88. for (i = 0; i < dpb->size; i++) {
  89. VAPictureH264 * const va_pic = &dpb->va_pics[i];
  90. if (va_pic->picture_id == ff_vaapi_get_surface_id(pic->f)) {
  91. VAPictureH264 temp_va_pic;
  92. fill_vaapi_pic(&temp_va_pic, pic, 0);
  93. if ((temp_va_pic.flags ^ va_pic->flags) & (VA_PICTURE_H264_TOP_FIELD | VA_PICTURE_H264_BOTTOM_FIELD)) {
  94. va_pic->flags |= temp_va_pic.flags & (VA_PICTURE_H264_TOP_FIELD | VA_PICTURE_H264_BOTTOM_FIELD);
  95. /* Merge second field */
  96. if (temp_va_pic.flags & VA_PICTURE_H264_TOP_FIELD) {
  97. va_pic->TopFieldOrderCnt = temp_va_pic.TopFieldOrderCnt;
  98. } else {
  99. va_pic->BottomFieldOrderCnt = temp_va_pic.BottomFieldOrderCnt;
  100. }
  101. }
  102. return 0;
  103. }
  104. }
  105. fill_vaapi_pic(&dpb->va_pics[dpb->size++], pic, 0);
  106. return 0;
  107. }
  108. /** Fill in VA API reference frames array. */
  109. static int fill_vaapi_ReferenceFrames(VAPictureParameterBufferH264 *pic_param,
  110. const H264Context *h)
  111. {
  112. DPB dpb;
  113. int i;
  114. dpb.size = 0;
  115. dpb.max_size = FF_ARRAY_ELEMS(pic_param->ReferenceFrames);
  116. dpb.va_pics = pic_param->ReferenceFrames;
  117. for (i = 0; i < dpb.max_size; i++)
  118. init_vaapi_pic(&dpb.va_pics[i]);
  119. for (i = 0; i < h->short_ref_count; i++) {
  120. const H264Picture *pic = h->short_ref[i];
  121. if (pic && pic->reference && dpb_add(&dpb, pic) < 0)
  122. return -1;
  123. }
  124. for (i = 0; i < 16; i++) {
  125. const H264Picture *pic = h->long_ref[i];
  126. if (pic && pic->reference && dpb_add(&dpb, pic) < 0)
  127. return -1;
  128. }
  129. return 0;
  130. }
  131. /**
  132. * Fill in VA API reference picture lists from the Libav reference
  133. * picture list.
  134. *
  135. * @param[out] RefPicList VA API internal reference picture list
  136. * @param[in] ref_list A pointer to the Libav reference list
  137. * @param[in] ref_count The number of reference pictures in ref_list
  138. */
  139. static void fill_vaapi_RefPicList(VAPictureH264 RefPicList[32],
  140. const H264Ref *ref_list,
  141. unsigned int ref_count)
  142. {
  143. unsigned int i, n = 0;
  144. for (i = 0; i < ref_count; i++)
  145. if (ref_list[i].reference)
  146. fill_vaapi_pic(&RefPicList[n++], ref_list[i].parent, 0);
  147. for (; n < 32; n++)
  148. init_vaapi_pic(&RefPicList[n]);
  149. }
  150. /**
  151. * Fill in prediction weight table.
  152. *
  153. * VA API requires a plain prediction weight table as it does not infer
  154. * any value.
  155. *
  156. * @param[in] h A pointer to the current H.264 context
  157. * @param[in] list The reference frame list index to use
  158. * @param[out] luma_weight_flag VA API plain luma weight flag
  159. * @param[out] luma_weight VA API plain luma weight table
  160. * @param[out] luma_offset VA API plain luma offset table
  161. * @param[out] chroma_weight_flag VA API plain chroma weight flag
  162. * @param[out] chroma_weight VA API plain chroma weight table
  163. * @param[out] chroma_offset VA API plain chroma offset table
  164. */
  165. static void fill_vaapi_plain_pred_weight_table(const H264Context *h,
  166. int list,
  167. unsigned char *luma_weight_flag,
  168. short luma_weight[32],
  169. short luma_offset[32],
  170. unsigned char *chroma_weight_flag,
  171. short chroma_weight[32][2],
  172. short chroma_offset[32][2])
  173. {
  174. const H264SliceContext *sl = &h->slice_ctx[0];
  175. unsigned int i, j;
  176. *luma_weight_flag = sl->pwt.luma_weight_flag[list];
  177. *chroma_weight_flag = sl->pwt.chroma_weight_flag[list];
  178. for (i = 0; i < sl->ref_count[list]; i++) {
  179. /* VA API also wants the inferred (default) values, not
  180. only what is available in the bitstream (7.4.3.2). */
  181. if (sl->pwt.luma_weight_flag[list]) {
  182. luma_weight[i] = sl->pwt.luma_weight[i][list][0];
  183. luma_offset[i] = sl->pwt.luma_weight[i][list][1];
  184. } else {
  185. luma_weight[i] = 1 << sl->pwt.luma_log2_weight_denom;
  186. luma_offset[i] = 0;
  187. }
  188. for (j = 0; j < 2; j++) {
  189. if (sl->pwt.chroma_weight_flag[list]) {
  190. chroma_weight[i][j] = sl->pwt.chroma_weight[i][list][j][0];
  191. chroma_offset[i][j] = sl->pwt.chroma_weight[i][list][j][1];
  192. } else {
  193. chroma_weight[i][j] = 1 << sl->pwt.chroma_log2_weight_denom;
  194. chroma_offset[i][j] = 0;
  195. }
  196. }
  197. }
  198. }
  199. /** Initialize and start decoding a frame with VA API. */
  200. static int vaapi_h264_start_frame(AVCodecContext *avctx,
  201. av_unused const uint8_t *buffer,
  202. av_unused uint32_t size)
  203. {
  204. const H264Context *h = avctx->priv_data;
  205. VAAPIDecodePicture *pic = h->cur_pic_ptr->hwaccel_picture_private;
  206. const PPS *pps = h->ps.pps;
  207. const SPS *sps = h->ps.sps;
  208. VAPictureParameterBufferH264 pic_param;
  209. VAIQMatrixBufferH264 iq_matrix;
  210. int err;
  211. pic->output_surface = ff_vaapi_get_surface_id(h->cur_pic_ptr->f);
  212. pic_param = (VAPictureParameterBufferH264) {
  213. .picture_width_in_mbs_minus1 = h->mb_width - 1,
  214. .picture_height_in_mbs_minus1 = h->mb_height - 1,
  215. .bit_depth_luma_minus8 = sps->bit_depth_luma - 8,
  216. .bit_depth_chroma_minus8 = sps->bit_depth_chroma - 8,
  217. .num_ref_frames = sps->ref_frame_count,
  218. .seq_fields.bits = {
  219. .chroma_format_idc = sps->chroma_format_idc,
  220. .residual_colour_transform_flag = sps->residual_color_transform_flag,
  221. .gaps_in_frame_num_value_allowed_flag = sps->gaps_in_frame_num_allowed_flag,
  222. .frame_mbs_only_flag = sps->frame_mbs_only_flag,
  223. .mb_adaptive_frame_field_flag = sps->mb_aff,
  224. .direct_8x8_inference_flag = sps->direct_8x8_inference_flag,
  225. .MinLumaBiPredSize8x8 = sps->level_idc >= 31, /* A.3.3.2 */
  226. .log2_max_frame_num_minus4 = sps->log2_max_frame_num - 4,
  227. .pic_order_cnt_type = sps->poc_type,
  228. .log2_max_pic_order_cnt_lsb_minus4 = sps->log2_max_poc_lsb - 4,
  229. .delta_pic_order_always_zero_flag = sps->delta_pic_order_always_zero_flag,
  230. },
  231. .num_slice_groups_minus1 = pps->slice_group_count - 1,
  232. .slice_group_map_type = pps->mb_slice_group_map_type,
  233. .slice_group_change_rate_minus1 = 0, /* FMO is not implemented */
  234. .pic_init_qp_minus26 = pps->init_qp - 26,
  235. .pic_init_qs_minus26 = pps->init_qs - 26,
  236. .chroma_qp_index_offset = pps->chroma_qp_index_offset[0],
  237. .second_chroma_qp_index_offset = pps->chroma_qp_index_offset[1],
  238. .pic_fields.bits = {
  239. .entropy_coding_mode_flag = pps->cabac,
  240. .weighted_pred_flag = pps->weighted_pred,
  241. .weighted_bipred_idc = pps->weighted_bipred_idc,
  242. .transform_8x8_mode_flag = pps->transform_8x8_mode,
  243. .field_pic_flag = h->picture_structure != PICT_FRAME,
  244. .constrained_intra_pred_flag = pps->constrained_intra_pred,
  245. .pic_order_present_flag = pps->pic_order_present,
  246. .deblocking_filter_control_present_flag = pps->deblocking_filter_parameters_present,
  247. .redundant_pic_cnt_present_flag = pps->redundant_pic_cnt_present,
  248. .reference_pic_flag = h->nal_ref_idc != 0,
  249. },
  250. .frame_num = h->poc.frame_num,
  251. };
  252. fill_vaapi_pic(&pic_param.CurrPic, h->cur_pic_ptr, h->picture_structure);
  253. err = fill_vaapi_ReferenceFrames(&pic_param, h);
  254. if (err < 0)
  255. goto fail;
  256. err = ff_vaapi_decode_make_param_buffer(avctx, pic,
  257. VAPictureParameterBufferType,
  258. &pic_param, sizeof(pic_param));
  259. if (err < 0)
  260. goto fail;
  261. memcpy(iq_matrix.ScalingList4x4,
  262. pps->scaling_matrix4, sizeof(iq_matrix.ScalingList4x4));
  263. memcpy(iq_matrix.ScalingList8x8[0],
  264. pps->scaling_matrix8[0], sizeof(iq_matrix.ScalingList8x8[0]));
  265. memcpy(iq_matrix.ScalingList8x8[1],
  266. pps->scaling_matrix8[3], sizeof(iq_matrix.ScalingList8x8[0]));
  267. err = ff_vaapi_decode_make_param_buffer(avctx, pic,
  268. VAIQMatrixBufferType,
  269. &iq_matrix, sizeof(iq_matrix));
  270. if (err < 0)
  271. goto fail;
  272. return 0;
  273. fail:
  274. ff_vaapi_decode_cancel(avctx, pic);
  275. return err;
  276. }
  277. /** End a hardware decoding based frame. */
  278. static int vaapi_h264_end_frame(AVCodecContext *avctx)
  279. {
  280. const H264Context *h = avctx->priv_data;
  281. VAAPIDecodePicture *pic = h->cur_pic_ptr->hwaccel_picture_private;
  282. H264SliceContext *sl = &h->slice_ctx[0];
  283. int ret;
  284. ret = ff_vaapi_decode_issue(avctx, pic);
  285. if (ret < 0)
  286. goto finish;
  287. ff_h264_draw_horiz_band(h, sl, 0, h->avctx->height);
  288. finish:
  289. return ret;
  290. }
  291. /** Decode the given H.264 slice with VA API. */
  292. static int vaapi_h264_decode_slice(AVCodecContext *avctx,
  293. const uint8_t *buffer,
  294. uint32_t size)
  295. {
  296. const H264Context *h = avctx->priv_data;
  297. VAAPIDecodePicture *pic = h->cur_pic_ptr->hwaccel_picture_private;
  298. const H264SliceContext *sl = &h->slice_ctx[0];
  299. VASliceParameterBufferH264 slice_param;
  300. int err;
  301. slice_param = (VASliceParameterBufferH264) {
  302. .slice_data_size = size,
  303. .slice_data_offset = 0,
  304. .slice_data_flag = VA_SLICE_DATA_FLAG_ALL,
  305. .slice_data_bit_offset = get_bits_count(&sl->gb),
  306. .first_mb_in_slice = (sl->mb_y >> FIELD_OR_MBAFF_PICTURE(h)) * h->mb_width + sl->mb_x,
  307. .slice_type = ff_h264_get_slice_type(sl),
  308. .direct_spatial_mv_pred_flag = sl->slice_type == AV_PICTURE_TYPE_B ? sl->direct_spatial_mv_pred : 0,
  309. .num_ref_idx_l0_active_minus1 = sl->list_count > 0 ? sl->ref_count[0] - 1 : 0,
  310. .num_ref_idx_l1_active_minus1 = sl->list_count > 1 ? sl->ref_count[1] - 1 : 0,
  311. .cabac_init_idc = sl->cabac_init_idc,
  312. .slice_qp_delta = sl->qscale - h->ps.pps->init_qp,
  313. .disable_deblocking_filter_idc = sl->deblocking_filter < 2 ? !sl->deblocking_filter : sl->deblocking_filter,
  314. .slice_alpha_c0_offset_div2 = sl->slice_alpha_c0_offset / 2,
  315. .slice_beta_offset_div2 = sl->slice_beta_offset / 2,
  316. .luma_log2_weight_denom = sl->pwt.luma_log2_weight_denom,
  317. .chroma_log2_weight_denom = sl->pwt.chroma_log2_weight_denom,
  318. };
  319. fill_vaapi_RefPicList(slice_param.RefPicList0, sl->ref_list[0],
  320. sl->list_count > 0 ? sl->ref_count[0] : 0);
  321. fill_vaapi_RefPicList(slice_param.RefPicList1, sl->ref_list[1],
  322. sl->list_count > 1 ? sl->ref_count[1] : 0);
  323. fill_vaapi_plain_pred_weight_table(h, 0,
  324. &slice_param.luma_weight_l0_flag,
  325. slice_param.luma_weight_l0,
  326. slice_param.luma_offset_l0,
  327. &slice_param.chroma_weight_l0_flag,
  328. slice_param.chroma_weight_l0,
  329. slice_param.chroma_offset_l0);
  330. fill_vaapi_plain_pred_weight_table(h, 1,
  331. &slice_param.luma_weight_l1_flag,
  332. slice_param.luma_weight_l1,
  333. slice_param.luma_offset_l1,
  334. &slice_param.chroma_weight_l1_flag,
  335. slice_param.chroma_weight_l1,
  336. slice_param.chroma_offset_l1);
  337. err = ff_vaapi_decode_make_slice_buffer(avctx, pic,
  338. &slice_param, sizeof(slice_param),
  339. buffer, size);
  340. if (err) {
  341. ff_vaapi_decode_cancel(avctx, pic);
  342. return err;
  343. }
  344. return 0;
  345. }
  346. AVHWAccel ff_h264_vaapi_hwaccel = {
  347. .name = "h264_vaapi",
  348. .type = AVMEDIA_TYPE_VIDEO,
  349. .id = AV_CODEC_ID_H264,
  350. .pix_fmt = AV_PIX_FMT_VAAPI,
  351. .start_frame = &vaapi_h264_start_frame,
  352. .end_frame = &vaapi_h264_end_frame,
  353. .decode_slice = &vaapi_h264_decode_slice,
  354. .frame_priv_data_size = sizeof(VAAPIDecodePicture),
  355. .init = &ff_vaapi_decode_init,
  356. .uninit = &ff_vaapi_decode_uninit,
  357. .priv_data_size = sizeof(VAAPIDecodeContext),
  358. };