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  1. /*
  2. * This file is part of Libav.
  3. *
  4. * Libav is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Lesser General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2.1 of the License, or (at your option) any later version.
  8. *
  9. * Libav is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * Lesser General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Lesser General Public
  15. * License along with Libav; if not, write to the Free Software
  16. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  17. */
  18. #include <va/va.h>
  19. #include <va/va_enc_h264.h>
  20. #include "libavutil/avassert.h"
  21. #include "libavutil/internal.h"
  22. #include "libavutil/opt.h"
  23. #include "libavutil/pixfmt.h"
  24. #include "avcodec.h"
  25. #include "h264.h"
  26. #include "h264_sei.h"
  27. #include "internal.h"
  28. #include "vaapi_encode.h"
  29. #include "vaapi_encode_h26x.h"
  30. enum {
  31. SLICE_TYPE_P = 0,
  32. SLICE_TYPE_B = 1,
  33. SLICE_TYPE_I = 2,
  34. SLICE_TYPE_SP = 3,
  35. SLICE_TYPE_SI = 4,
  36. };
  37. // This structure contains all possibly-useful per-sequence syntax elements
  38. // which are not already contained in the various VAAPI structures.
  39. typedef struct VAAPIEncodeH264MiscSequenceParams {
  40. unsigned int profile_idc;
  41. char constraint_set0_flag;
  42. char constraint_set1_flag;
  43. char constraint_set2_flag;
  44. char constraint_set3_flag;
  45. char constraint_set4_flag;
  46. char constraint_set5_flag;
  47. char separate_colour_plane_flag;
  48. char qpprime_y_zero_transform_bypass_flag;
  49. char gaps_in_frame_num_allowed_flag;
  50. char delta_pic_order_always_zero_flag;
  51. char bottom_field_pic_order_in_frame_present_flag;
  52. unsigned int num_slice_groups_minus1;
  53. unsigned int slice_group_map_type;
  54. int pic_init_qs_minus26;
  55. char overscan_info_present_flag;
  56. char overscan_appropriate_flag;
  57. char video_signal_type_present_flag;
  58. unsigned int video_format;
  59. char video_full_range_flag;
  60. char colour_description_present_flag;
  61. unsigned int colour_primaries;
  62. unsigned int transfer_characteristics;
  63. unsigned int matrix_coefficients;
  64. char chroma_loc_info_present_flag;
  65. unsigned int chroma_sample_loc_type_top_field;
  66. unsigned int chroma_sample_loc_type_bottom_field;
  67. // Some timing elements are in VAEncSequenceParameterBufferH264.
  68. char fixed_frame_rate_flag;
  69. char nal_hrd_parameters_present_flag;
  70. char vcl_hrd_parameters_present_flag;
  71. char low_delay_hrd_flag;
  72. char pic_struct_present_flag;
  73. char bitstream_restriction_flag;
  74. unsigned int cpb_cnt_minus1;
  75. unsigned int bit_rate_scale;
  76. unsigned int cpb_size_scale;
  77. unsigned int bit_rate_value_minus1[32];
  78. unsigned int cpb_size_value_minus1[32];
  79. char cbr_flag[32];
  80. unsigned int initial_cpb_removal_delay_length_minus1;
  81. unsigned int cpb_removal_delay_length_minus1;
  82. unsigned int dpb_output_delay_length_minus1;
  83. unsigned int time_offset_length;
  84. unsigned int initial_cpb_removal_delay;
  85. unsigned int initial_cpb_removal_delay_offset;
  86. unsigned int pic_struct;
  87. } VAAPIEncodeH264MiscSequenceParams;
  88. // This structure contains all possibly-useful per-slice syntax elements
  89. // which are not already contained in the various VAAPI structures.
  90. typedef struct VAAPIEncodeH264MiscSliceParams {
  91. unsigned int nal_unit_type;
  92. unsigned int nal_ref_idc;
  93. unsigned int colour_plane_id;
  94. char field_pic_flag;
  95. char bottom_field_flag;
  96. unsigned int redundant_pic_cnt;
  97. char sp_for_switch_flag;
  98. int slice_qs_delta;
  99. char ref_pic_list_modification_flag_l0;
  100. char ref_pic_list_modification_flag_l1;
  101. char no_output_of_prior_pics_flag;
  102. char long_term_reference_flag;
  103. char adaptive_ref_pic_marking_mode_flag;
  104. } VAAPIEncodeH264MiscSliceParams;
  105. typedef struct VAAPIEncodeH264Slice {
  106. VAAPIEncodeH264MiscSliceParams misc_slice_params;
  107. } VAAPIEncodeH264Slice;
  108. typedef struct VAAPIEncodeH264Context {
  109. VAAPIEncodeH264MiscSequenceParams misc_sequence_params;
  110. int mb_width;
  111. int mb_height;
  112. int fixed_qp_idr;
  113. int fixed_qp_p;
  114. int fixed_qp_b;
  115. int next_frame_num;
  116. int64_t idr_pic_count;
  117. int cpb_delay;
  118. int dpb_delay;
  119. // Rate control configuration.
  120. int send_timing_sei;
  121. #if VA_CHECK_VERSION(0, 36, 0)
  122. // Speed-quality tradeoff setting.
  123. struct {
  124. VAEncMiscParameterBuffer misc;
  125. VAEncMiscParameterBufferQualityLevel quality;
  126. } quality_params;
  127. #endif
  128. } VAAPIEncodeH264Context;
  129. typedef struct VAAPIEncodeH264Options {
  130. int qp;
  131. int quality;
  132. int low_power;
  133. } VAAPIEncodeH264Options;
  134. #define vseq_var(name) vseq->name, name
  135. #define vseq_field(name) vseq->seq_fields.bits.name, name
  136. #define vvui_field(name) vseq->vui_fields.bits.name, name
  137. #define vpic_var(name) vpic->name, name
  138. #define vpic_field(name) vpic->pic_fields.bits.name, name
  139. #define vslice_var(name) vslice->name, name
  140. #define vslice_field(name) vslice->slice_fields.bits.name, name
  141. #define mseq_var(name) mseq->name, name
  142. #define mslice_var(name) mslice->name, name
  143. static void vaapi_encode_h264_write_nal_header(PutBitContext *pbc,
  144. int nal_unit_type, int nal_ref_idc)
  145. {
  146. u(1, 0, forbidden_zero_bit);
  147. u(2, nal_ref_idc, nal_ref_idc);
  148. u(5, nal_unit_type, nal_unit_type);
  149. }
  150. static void vaapi_encode_h264_write_trailing_rbsp(PutBitContext *pbc)
  151. {
  152. u(1, 1, rbsp_stop_one_bit);
  153. while (put_bits_count(pbc) & 7)
  154. u(1, 0, rbsp_alignment_zero_bit);
  155. }
  156. static void vaapi_encode_h264_write_vui(PutBitContext *pbc,
  157. VAAPIEncodeContext *ctx)
  158. {
  159. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  160. VAAPIEncodeH264Context *priv = ctx->priv_data;
  161. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  162. int i;
  163. u(1, vvui_field(aspect_ratio_info_present_flag));
  164. if (vseq->vui_fields.bits.aspect_ratio_info_present_flag) {
  165. u(8, vseq_var(aspect_ratio_idc));
  166. if (vseq->aspect_ratio_idc == 255) {
  167. u(16, vseq_var(sar_width));
  168. u(16, vseq_var(sar_height));
  169. }
  170. }
  171. u(1, mseq_var(overscan_info_present_flag));
  172. if (mseq->overscan_info_present_flag)
  173. u(1, mseq_var(overscan_appropriate_flag));
  174. u(1, mseq_var(video_signal_type_present_flag));
  175. if (mseq->video_signal_type_present_flag) {
  176. u(3, mseq_var(video_format));
  177. u(1, mseq_var(video_full_range_flag));
  178. u(1, mseq_var(colour_description_present_flag));
  179. if (mseq->colour_description_present_flag) {
  180. u(8, mseq_var(colour_primaries));
  181. u(8, mseq_var(transfer_characteristics));
  182. u(8, mseq_var(matrix_coefficients));
  183. }
  184. }
  185. u(1, mseq_var(chroma_loc_info_present_flag));
  186. if (mseq->chroma_loc_info_present_flag) {
  187. ue(mseq_var(chroma_sample_loc_type_top_field));
  188. ue(mseq_var(chroma_sample_loc_type_bottom_field));
  189. }
  190. u(1, vvui_field(timing_info_present_flag));
  191. if (vseq->vui_fields.bits.timing_info_present_flag) {
  192. u(32, vseq_var(num_units_in_tick));
  193. u(32, vseq_var(time_scale));
  194. u(1, mseq_var(fixed_frame_rate_flag));
  195. }
  196. u(1, mseq_var(nal_hrd_parameters_present_flag));
  197. if (mseq->nal_hrd_parameters_present_flag) {
  198. ue(mseq_var(cpb_cnt_minus1));
  199. u(4, mseq_var(bit_rate_scale));
  200. u(4, mseq_var(cpb_size_scale));
  201. for (i = 0; i <= mseq->cpb_cnt_minus1; i++) {
  202. ue(mseq_var(bit_rate_value_minus1[i]));
  203. ue(mseq_var(cpb_size_value_minus1[i]));
  204. u(1, mseq_var(cbr_flag[i]));
  205. }
  206. u(5, mseq_var(initial_cpb_removal_delay_length_minus1));
  207. u(5, mseq_var(cpb_removal_delay_length_minus1));
  208. u(5, mseq_var(dpb_output_delay_length_minus1));
  209. u(5, mseq_var(time_offset_length));
  210. }
  211. u(1, mseq_var(vcl_hrd_parameters_present_flag));
  212. if (mseq->vcl_hrd_parameters_present_flag) {
  213. av_assert0(0 && "vcl hrd parameters not supported");
  214. }
  215. if (mseq->nal_hrd_parameters_present_flag ||
  216. mseq->vcl_hrd_parameters_present_flag)
  217. u(1, mseq_var(low_delay_hrd_flag));
  218. u(1, mseq_var(pic_struct_present_flag));
  219. u(1, vvui_field(bitstream_restriction_flag));
  220. if (vseq->vui_fields.bits.bitstream_restriction_flag) {
  221. av_assert0(0 && "bitstream restrictions not supported");
  222. }
  223. }
  224. static void vaapi_encode_h264_write_sps(PutBitContext *pbc,
  225. VAAPIEncodeContext *ctx)
  226. {
  227. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  228. VAAPIEncodeH264Context *priv = ctx->priv_data;
  229. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  230. int i;
  231. vaapi_encode_h264_write_nal_header(pbc, H264_NAL_SPS, 3);
  232. u(8, mseq_var(profile_idc));
  233. u(1, mseq_var(constraint_set0_flag));
  234. u(1, mseq_var(constraint_set1_flag));
  235. u(1, mseq_var(constraint_set2_flag));
  236. u(1, mseq_var(constraint_set3_flag));
  237. u(1, mseq_var(constraint_set4_flag));
  238. u(1, mseq_var(constraint_set5_flag));
  239. u(2, 0, reserved_zero_2bits);
  240. u(8, vseq_var(level_idc));
  241. ue(vseq_var(seq_parameter_set_id));
  242. if (mseq->profile_idc == 100 || mseq->profile_idc == 110 ||
  243. mseq->profile_idc == 122 || mseq->profile_idc == 244 ||
  244. mseq->profile_idc == 44 || mseq->profile_idc == 83 ||
  245. mseq->profile_idc == 86 || mseq->profile_idc == 118 ||
  246. mseq->profile_idc == 128 || mseq->profile_idc == 138) {
  247. ue(vseq_field(chroma_format_idc));
  248. if (vseq->seq_fields.bits.chroma_format_idc == 3)
  249. u(1, mseq_var(separate_colour_plane_flag));
  250. ue(vseq_var(bit_depth_luma_minus8));
  251. ue(vseq_var(bit_depth_chroma_minus8));
  252. u(1, mseq_var(qpprime_y_zero_transform_bypass_flag));
  253. u(1, vseq_field(seq_scaling_matrix_present_flag));
  254. if (vseq->seq_fields.bits.seq_scaling_matrix_present_flag) {
  255. av_assert0(0 && "scaling matrices not supported");
  256. }
  257. }
  258. ue(vseq_field(log2_max_frame_num_minus4));
  259. ue(vseq_field(pic_order_cnt_type));
  260. if (vseq->seq_fields.bits.pic_order_cnt_type == 0) {
  261. ue(vseq_field(log2_max_pic_order_cnt_lsb_minus4));
  262. } else if (vseq->seq_fields.bits.pic_order_cnt_type == 1) {
  263. u(1, mseq_var(delta_pic_order_always_zero_flag));
  264. se(vseq_var(offset_for_non_ref_pic));
  265. se(vseq_var(offset_for_top_to_bottom_field));
  266. ue(vseq_var(num_ref_frames_in_pic_order_cnt_cycle));
  267. for (i = 0; i < vseq->num_ref_frames_in_pic_order_cnt_cycle; i++)
  268. se(vseq_var(offset_for_ref_frame[i]));
  269. }
  270. ue(vseq_var(max_num_ref_frames));
  271. u(1, mseq_var(gaps_in_frame_num_allowed_flag));
  272. ue(vseq->picture_width_in_mbs - 1, pic_width_in_mbs_minus1);
  273. ue(vseq->picture_height_in_mbs - 1, pic_height_in_mbs_minus1);
  274. u(1, vseq_field(frame_mbs_only_flag));
  275. if (!vseq->seq_fields.bits.frame_mbs_only_flag)
  276. u(1, vseq_field(mb_adaptive_frame_field_flag));
  277. u(1, vseq_field(direct_8x8_inference_flag));
  278. u(1, vseq_var(frame_cropping_flag));
  279. if (vseq->frame_cropping_flag) {
  280. ue(vseq_var(frame_crop_left_offset));
  281. ue(vseq_var(frame_crop_right_offset));
  282. ue(vseq_var(frame_crop_top_offset));
  283. ue(vseq_var(frame_crop_bottom_offset));
  284. }
  285. u(1, vseq_var(vui_parameters_present_flag));
  286. if (vseq->vui_parameters_present_flag)
  287. vaapi_encode_h264_write_vui(pbc, ctx);
  288. vaapi_encode_h264_write_trailing_rbsp(pbc);
  289. }
  290. static void vaapi_encode_h264_write_pps(PutBitContext *pbc,
  291. VAAPIEncodeContext *ctx)
  292. {
  293. VAEncPictureParameterBufferH264 *vpic = ctx->codec_picture_params;
  294. VAAPIEncodeH264Context *priv = ctx->priv_data;
  295. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  296. vaapi_encode_h264_write_nal_header(pbc, H264_NAL_PPS, 3);
  297. ue(vpic_var(pic_parameter_set_id));
  298. ue(vpic_var(seq_parameter_set_id));
  299. u(1, vpic_field(entropy_coding_mode_flag));
  300. u(1, mseq_var(bottom_field_pic_order_in_frame_present_flag));
  301. ue(mseq_var(num_slice_groups_minus1));
  302. if (mseq->num_slice_groups_minus1 > 0) {
  303. ue(mseq_var(slice_group_map_type));
  304. av_assert0(0 && "slice groups not supported");
  305. }
  306. ue(vpic_var(num_ref_idx_l0_active_minus1));
  307. ue(vpic_var(num_ref_idx_l1_active_minus1));
  308. u(1, vpic_field(weighted_pred_flag));
  309. u(2, vpic_field(weighted_bipred_idc));
  310. se(vpic->pic_init_qp - 26, pic_init_qp_minus26);
  311. se(mseq_var(pic_init_qs_minus26));
  312. se(vpic_var(chroma_qp_index_offset));
  313. u(1, vpic_field(deblocking_filter_control_present_flag));
  314. u(1, vpic_field(constrained_intra_pred_flag));
  315. u(1, vpic_field(redundant_pic_cnt_present_flag));
  316. u(1, vpic_field(transform_8x8_mode_flag));
  317. u(1, vpic_field(pic_scaling_matrix_present_flag));
  318. if (vpic->pic_fields.bits.pic_scaling_matrix_present_flag) {
  319. av_assert0(0 && "scaling matrices not supported");
  320. }
  321. se(vpic_var(second_chroma_qp_index_offset));
  322. vaapi_encode_h264_write_trailing_rbsp(pbc);
  323. }
  324. static void vaapi_encode_h264_write_slice_header2(PutBitContext *pbc,
  325. VAAPIEncodeContext *ctx,
  326. VAAPIEncodePicture *pic,
  327. VAAPIEncodeSlice *slice)
  328. {
  329. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  330. VAEncPictureParameterBufferH264 *vpic = pic->codec_picture_params;
  331. VAEncSliceParameterBufferH264 *vslice = slice->codec_slice_params;
  332. VAAPIEncodeH264Context *priv = ctx->priv_data;
  333. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  334. VAAPIEncodeH264Slice *pslice = slice->priv_data;
  335. VAAPIEncodeH264MiscSliceParams *mslice = &pslice->misc_slice_params;
  336. vaapi_encode_h264_write_nal_header(pbc, mslice->nal_unit_type,
  337. mslice->nal_ref_idc);
  338. ue(vslice->macroblock_address, first_mb_in_slice);
  339. ue(vslice_var(slice_type));
  340. ue(vpic_var(pic_parameter_set_id));
  341. if (mseq->separate_colour_plane_flag) {
  342. u(2, mslice_var(colour_plane_id));
  343. }
  344. u(4 + vseq->seq_fields.bits.log2_max_frame_num_minus4,
  345. (vpic->frame_num &
  346. ((1 << (4 + vseq->seq_fields.bits.log2_max_frame_num_minus4)) - 1)),
  347. frame_num);
  348. if (!vseq->seq_fields.bits.frame_mbs_only_flag) {
  349. u(1, mslice_var(field_pic_flag));
  350. if (mslice->field_pic_flag)
  351. u(1, mslice_var(bottom_field_flag));
  352. }
  353. if (vpic->pic_fields.bits.idr_pic_flag) {
  354. ue(vslice_var(idr_pic_id));
  355. }
  356. if (vseq->seq_fields.bits.pic_order_cnt_type == 0) {
  357. u(4 + vseq->seq_fields.bits.log2_max_pic_order_cnt_lsb_minus4,
  358. vslice_var(pic_order_cnt_lsb));
  359. if (mseq->bottom_field_pic_order_in_frame_present_flag &&
  360. !mslice->field_pic_flag) {
  361. se(vslice_var(delta_pic_order_cnt_bottom));
  362. }
  363. }
  364. if (vseq->seq_fields.bits.pic_order_cnt_type == 1 &&
  365. !vseq->seq_fields.bits.delta_pic_order_always_zero_flag) {
  366. se(vslice_var(delta_pic_order_cnt[0]));
  367. if (mseq->bottom_field_pic_order_in_frame_present_flag &&
  368. !mslice->field_pic_flag) {
  369. se(vslice_var(delta_pic_order_cnt[1]));
  370. }
  371. }
  372. if (vpic->pic_fields.bits.redundant_pic_cnt_present_flag) {
  373. ue(mslice_var(redundant_pic_cnt));
  374. }
  375. if (vslice->slice_type == SLICE_TYPE_B) {
  376. u(1, vslice_var(direct_spatial_mv_pred_flag));
  377. }
  378. if (vslice->slice_type == SLICE_TYPE_P ||
  379. vslice->slice_type == SLICE_TYPE_SP ||
  380. vslice->slice_type == SLICE_TYPE_B) {
  381. u(1, vslice_var(num_ref_idx_active_override_flag));
  382. if (vslice->num_ref_idx_active_override_flag) {
  383. ue(vslice_var(num_ref_idx_l0_active_minus1));
  384. if (vslice->slice_type == SLICE_TYPE_B)
  385. ue(vslice_var(num_ref_idx_l1_active_minus1));
  386. }
  387. }
  388. if (mslice->nal_unit_type == 20 || mslice->nal_unit_type == 21) {
  389. av_assert0(0 && "no MVC support");
  390. } else {
  391. if (vslice->slice_type % 5 != 2 && vslice->slice_type % 5 != 4) {
  392. u(1, mslice_var(ref_pic_list_modification_flag_l0));
  393. if (mslice->ref_pic_list_modification_flag_l0) {
  394. av_assert0(0 && "ref pic list modification");
  395. }
  396. }
  397. if (vslice->slice_type % 5 == 1) {
  398. u(1, mslice_var(ref_pic_list_modification_flag_l1));
  399. if (mslice->ref_pic_list_modification_flag_l1) {
  400. av_assert0(0 && "ref pic list modification");
  401. }
  402. }
  403. }
  404. if ((vpic->pic_fields.bits.weighted_pred_flag &&
  405. (vslice->slice_type == SLICE_TYPE_P ||
  406. vslice->slice_type == SLICE_TYPE_SP)) ||
  407. (vpic->pic_fields.bits.weighted_bipred_idc == 1 &&
  408. vslice->slice_type == SLICE_TYPE_B)) {
  409. av_assert0(0 && "prediction weights not supported");
  410. }
  411. av_assert0(mslice->nal_ref_idc > 0 ==
  412. vpic->pic_fields.bits.reference_pic_flag);
  413. if (mslice->nal_ref_idc != 0) {
  414. if (vpic->pic_fields.bits.idr_pic_flag) {
  415. u(1, mslice_var(no_output_of_prior_pics_flag));
  416. u(1, mslice_var(long_term_reference_flag));
  417. } else {
  418. u(1, mslice_var(adaptive_ref_pic_marking_mode_flag));
  419. if (mslice->adaptive_ref_pic_marking_mode_flag) {
  420. av_assert0(0 && "MMCOs not supported");
  421. }
  422. }
  423. }
  424. if (vpic->pic_fields.bits.entropy_coding_mode_flag &&
  425. vslice->slice_type != SLICE_TYPE_I &&
  426. vslice->slice_type != SLICE_TYPE_SI) {
  427. ue(vslice_var(cabac_init_idc));
  428. }
  429. se(vslice_var(slice_qp_delta));
  430. if (vslice->slice_type == SLICE_TYPE_SP ||
  431. vslice->slice_type == SLICE_TYPE_SI) {
  432. if (vslice->slice_type == SLICE_TYPE_SP)
  433. u(1, mslice_var(sp_for_switch_flag));
  434. se(mslice_var(slice_qs_delta));
  435. }
  436. if (vpic->pic_fields.bits.deblocking_filter_control_present_flag) {
  437. ue(vslice_var(disable_deblocking_filter_idc));
  438. if (vslice->disable_deblocking_filter_idc != 1) {
  439. se(vslice_var(slice_alpha_c0_offset_div2));
  440. se(vslice_var(slice_beta_offset_div2));
  441. }
  442. }
  443. if (mseq->num_slice_groups_minus1 > 0 &&
  444. mseq->slice_group_map_type >= 3 && mseq->slice_group_map_type <= 5) {
  445. av_assert0(0 && "slice groups not supported");
  446. }
  447. // No alignment - this need not be a byte boundary.
  448. }
  449. static void vaapi_encode_h264_write_buffering_period(PutBitContext *pbc,
  450. VAAPIEncodeContext *ctx,
  451. VAAPIEncodePicture *pic)
  452. {
  453. VAAPIEncodeH264Context *priv = ctx->priv_data;
  454. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  455. VAEncPictureParameterBufferH264 *vpic = pic->codec_picture_params;
  456. int i;
  457. ue(vpic_var(seq_parameter_set_id));
  458. if (mseq->nal_hrd_parameters_present_flag) {
  459. for (i = 0; i <= mseq->cpb_cnt_minus1; i++) {
  460. u(mseq->initial_cpb_removal_delay_length_minus1 + 1,
  461. mseq_var(initial_cpb_removal_delay));
  462. u(mseq->initial_cpb_removal_delay_length_minus1 + 1,
  463. mseq_var(initial_cpb_removal_delay_offset));
  464. }
  465. }
  466. if (mseq->vcl_hrd_parameters_present_flag) {
  467. av_assert0(0 && "vcl hrd parameters not supported");
  468. }
  469. }
  470. static void vaapi_encode_h264_write_pic_timing(PutBitContext *pbc,
  471. VAAPIEncodeContext *ctx,
  472. VAAPIEncodePicture *pic)
  473. {
  474. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  475. VAAPIEncodeH264Context *priv = ctx->priv_data;
  476. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  477. int i, num_clock_ts;
  478. if (mseq->nal_hrd_parameters_present_flag ||
  479. mseq->vcl_hrd_parameters_present_flag) {
  480. u(mseq->cpb_removal_delay_length_minus1 + 1,
  481. 2 * vseq->num_units_in_tick * priv->cpb_delay,
  482. cpb_removal_delay);
  483. u(mseq->dpb_output_delay_length_minus1 + 1,
  484. 2 * vseq->num_units_in_tick * priv->dpb_delay,
  485. dpb_output_delay);
  486. }
  487. if (mseq->pic_struct_present_flag) {
  488. u(4, mseq_var(pic_struct));
  489. num_clock_ts = (mseq->pic_struct <= 2 ? 1 :
  490. mseq->pic_struct <= 4 ? 2 :
  491. mseq->pic_struct <= 8 ? 3 : 0);
  492. for (i = 0; i < num_clock_ts; i++) {
  493. u(1, 0, clock_timestamp_flag[i]);
  494. // No full timestamp information.
  495. }
  496. }
  497. }
  498. static void vaapi_encode_h264_write_identifier(PutBitContext *pbc,
  499. VAAPIEncodeContext *ctx,
  500. VAAPIEncodePicture *pic)
  501. {
  502. const char *lavc = LIBAVCODEC_IDENT;
  503. const char *vaapi = VA_VERSION_S;
  504. const char *driver = vaQueryVendorString(ctx->hwctx->display);
  505. char tmp[256];
  506. int i;
  507. // Random (version 4) ISO 11578 UUID.
  508. uint8_t uuid[16] = {
  509. 0x59, 0x94, 0x8b, 0x28, 0x11, 0xec, 0x45, 0xaf,
  510. 0x96, 0x75, 0x19, 0xd4, 0x1f, 0xea, 0xa9, 0x4d,
  511. };
  512. for (i = 0; i < 16; i++)
  513. u(8, uuid[i], uuid_iso_iec_11578);
  514. snprintf(tmp, sizeof(tmp), "%s / VAAPI %s / %s", lavc, vaapi, driver);
  515. for (i = 0; i < sizeof(tmp) && tmp[i]; i++)
  516. u(8, tmp[i], user_data_payload_byte);
  517. }
  518. static void vaapi_encode_h264_write_sei(PutBitContext *pbc,
  519. VAAPIEncodeContext *ctx,
  520. VAAPIEncodePicture *pic)
  521. {
  522. VAAPIEncodeH264Context *priv = ctx->priv_data;
  523. PutBitContext payload_bits;
  524. char payload[256];
  525. int payload_type, payload_size, i;
  526. void (*write_payload)(PutBitContext *pbc,
  527. VAAPIEncodeContext *ctx,
  528. VAAPIEncodePicture *pic) = NULL;
  529. vaapi_encode_h264_write_nal_header(pbc, H264_NAL_SEI, 0);
  530. for (payload_type = 0; payload_type < 64; payload_type++) {
  531. switch (payload_type) {
  532. case SEI_TYPE_BUFFERING_PERIOD:
  533. if (!priv->send_timing_sei ||
  534. pic->type != PICTURE_TYPE_IDR)
  535. continue;
  536. write_payload = &vaapi_encode_h264_write_buffering_period;
  537. break;
  538. case SEI_TYPE_PIC_TIMING:
  539. if (!priv->send_timing_sei)
  540. continue;
  541. write_payload = &vaapi_encode_h264_write_pic_timing;
  542. break;
  543. case SEI_TYPE_USER_DATA_UNREGISTERED:
  544. if (pic->encode_order != 0)
  545. continue;
  546. write_payload = &vaapi_encode_h264_write_identifier;
  547. break;
  548. default:
  549. continue;
  550. }
  551. init_put_bits(&payload_bits, payload, sizeof(payload));
  552. write_payload(&payload_bits, ctx, pic);
  553. if (put_bits_count(&payload_bits) & 7) {
  554. write_u(&payload_bits, 1, 1, bit_equal_to_one);
  555. while (put_bits_count(&payload_bits) & 7)
  556. write_u(&payload_bits, 1, 0, bit_equal_to_zero);
  557. }
  558. payload_size = put_bits_count(&payload_bits) / 8;
  559. flush_put_bits(&payload_bits);
  560. u(8, payload_type, last_payload_type_byte);
  561. u(8, payload_size, last_payload_size_byte);
  562. for (i = 0; i < payload_size; i++)
  563. u(8, payload[i] & 0xff, sei_payload);
  564. }
  565. vaapi_encode_h264_write_trailing_rbsp(pbc);
  566. }
  567. static int vaapi_encode_h264_write_sequence_header(AVCodecContext *avctx,
  568. char *data, size_t *data_len)
  569. {
  570. VAAPIEncodeContext *ctx = avctx->priv_data;
  571. PutBitContext pbc;
  572. char tmp[256];
  573. int err;
  574. size_t nal_len, bit_len, bit_pos, next_len;
  575. bit_len = *data_len;
  576. bit_pos = 0;
  577. init_put_bits(&pbc, tmp, sizeof(tmp));
  578. vaapi_encode_h264_write_sps(&pbc, ctx);
  579. nal_len = put_bits_count(&pbc);
  580. flush_put_bits(&pbc);
  581. next_len = bit_len - bit_pos;
  582. err = ff_vaapi_encode_h26x_nal_unit_to_byte_stream(data + bit_pos / 8,
  583. &next_len,
  584. tmp, nal_len);
  585. if (err < 0)
  586. return err;
  587. bit_pos += next_len;
  588. init_put_bits(&pbc, tmp, sizeof(tmp));
  589. vaapi_encode_h264_write_pps(&pbc, ctx);
  590. nal_len = put_bits_count(&pbc);
  591. flush_put_bits(&pbc);
  592. next_len = bit_len - bit_pos;
  593. err = ff_vaapi_encode_h26x_nal_unit_to_byte_stream(data + bit_pos / 8,
  594. &next_len,
  595. tmp, nal_len);
  596. if (err < 0)
  597. return err;
  598. bit_pos += next_len;
  599. *data_len = bit_pos;
  600. return 0;
  601. }
  602. static int vaapi_encode_h264_write_slice_header(AVCodecContext *avctx,
  603. VAAPIEncodePicture *pic,
  604. VAAPIEncodeSlice *slice,
  605. char *data, size_t *data_len)
  606. {
  607. VAAPIEncodeContext *ctx = avctx->priv_data;
  608. PutBitContext pbc;
  609. char tmp[256];
  610. size_t header_len;
  611. init_put_bits(&pbc, tmp, sizeof(tmp));
  612. vaapi_encode_h264_write_slice_header2(&pbc, ctx, pic, slice);
  613. header_len = put_bits_count(&pbc);
  614. flush_put_bits(&pbc);
  615. return ff_vaapi_encode_h26x_nal_unit_to_byte_stream(data, data_len,
  616. tmp, header_len);
  617. }
  618. static int vaapi_encode_h264_write_extra_header(AVCodecContext *avctx,
  619. VAAPIEncodePicture *pic,
  620. int index, int *type,
  621. char *data, size_t *data_len)
  622. {
  623. VAAPIEncodeContext *ctx = avctx->priv_data;
  624. PutBitContext pbc;
  625. char tmp[256];
  626. size_t header_len;
  627. if (index == 0 && ctx->va_rc_mode == VA_RC_CBR) {
  628. *type = VAEncPackedHeaderH264_SEI;
  629. init_put_bits(&pbc, tmp, sizeof(tmp));
  630. vaapi_encode_h264_write_sei(&pbc, ctx, pic);
  631. header_len = put_bits_count(&pbc);
  632. flush_put_bits(&pbc);
  633. return ff_vaapi_encode_h26x_nal_unit_to_byte_stream(data, data_len,
  634. tmp, header_len);
  635. } else {
  636. return AVERROR_EOF;
  637. }
  638. }
  639. static int vaapi_encode_h264_init_sequence_params(AVCodecContext *avctx)
  640. {
  641. VAAPIEncodeContext *ctx = avctx->priv_data;
  642. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  643. VAEncPictureParameterBufferH264 *vpic = ctx->codec_picture_params;
  644. VAAPIEncodeH264Context *priv = ctx->priv_data;
  645. VAAPIEncodeH264MiscSequenceParams *mseq = &priv->misc_sequence_params;
  646. int i;
  647. {
  648. vseq->seq_parameter_set_id = 0;
  649. vseq->level_idc = avctx->level;
  650. vseq->max_num_ref_frames = 1 + (avctx->max_b_frames > 0);
  651. vseq->picture_width_in_mbs = priv->mb_width;
  652. vseq->picture_height_in_mbs = priv->mb_height;
  653. vseq->seq_fields.bits.chroma_format_idc = 1;
  654. vseq->seq_fields.bits.frame_mbs_only_flag = 1;
  655. vseq->seq_fields.bits.direct_8x8_inference_flag = 1;
  656. vseq->seq_fields.bits.log2_max_frame_num_minus4 = 4;
  657. vseq->seq_fields.bits.pic_order_cnt_type = 0;
  658. if (avctx->width != ctx->surface_width ||
  659. avctx->height != ctx->surface_height) {
  660. vseq->frame_cropping_flag = 1;
  661. vseq->frame_crop_left_offset = 0;
  662. vseq->frame_crop_right_offset =
  663. (ctx->surface_width - avctx->width) / 2;
  664. vseq->frame_crop_top_offset = 0;
  665. vseq->frame_crop_bottom_offset =
  666. (ctx->surface_height - avctx->height) / 2;
  667. } else {
  668. vseq->frame_cropping_flag = 0;
  669. }
  670. vseq->vui_parameters_present_flag = 1;
  671. if (avctx->sample_aspect_ratio.num != 0) {
  672. vseq->vui_fields.bits.aspect_ratio_info_present_flag = 1;
  673. // There is a large enum of these which we could support
  674. // individually rather than using the generic X/Y form?
  675. if (avctx->sample_aspect_ratio.num ==
  676. avctx->sample_aspect_ratio.den) {
  677. vseq->aspect_ratio_idc = 1;
  678. } else {
  679. vseq->aspect_ratio_idc = 255; // Extended SAR.
  680. vseq->sar_width = avctx->sample_aspect_ratio.num;
  681. vseq->sar_height = avctx->sample_aspect_ratio.den;
  682. }
  683. }
  684. if (avctx->color_primaries != AVCOL_PRI_UNSPECIFIED ||
  685. avctx->color_trc != AVCOL_TRC_UNSPECIFIED ||
  686. avctx->colorspace != AVCOL_SPC_UNSPECIFIED) {
  687. mseq->video_signal_type_present_flag = 1;
  688. mseq->video_format = 5; // Unspecified.
  689. mseq->video_full_range_flag = 0;
  690. mseq->colour_description_present_flag = 1;
  691. // These enums are derived from the standard and hence
  692. // we can just use the values directly.
  693. mseq->colour_primaries = avctx->color_primaries;
  694. mseq->transfer_characteristics = avctx->color_trc;
  695. mseq->matrix_coefficients = avctx->colorspace;
  696. }
  697. vseq->bits_per_second = avctx->bit_rate;
  698. vseq->vui_fields.bits.timing_info_present_flag = 1;
  699. if (avctx->framerate.num > 0 && avctx->framerate.den > 0) {
  700. vseq->num_units_in_tick = avctx->framerate.num;
  701. vseq->time_scale = 2 * avctx->framerate.den;
  702. mseq->fixed_frame_rate_flag = 1;
  703. } else {
  704. vseq->num_units_in_tick = avctx->time_base.num;
  705. vseq->time_scale = 2 * avctx->time_base.den;
  706. mseq->fixed_frame_rate_flag = 0;
  707. }
  708. if (ctx->va_rc_mode == VA_RC_CBR) {
  709. priv->send_timing_sei = 1;
  710. mseq->nal_hrd_parameters_present_flag = 1;
  711. mseq->cpb_cnt_minus1 = 0;
  712. // Try to scale these to a sensible range so that the
  713. // golomb encode of the value is not overlong.
  714. mseq->bit_rate_scale =
  715. av_clip_uintp2(av_log2(avctx->bit_rate) - 15 - 6, 4);
  716. mseq->bit_rate_value_minus1[0] =
  717. (avctx->bit_rate >> mseq->bit_rate_scale + 6) - 1;
  718. mseq->cpb_size_scale =
  719. av_clip_uintp2(av_log2(ctx->hrd_params.hrd.buffer_size) - 15 - 4, 4);
  720. mseq->cpb_size_value_minus1[0] =
  721. (ctx->hrd_params.hrd.buffer_size >> mseq->cpb_size_scale + 4) - 1;
  722. // CBR mode isn't actually available here, despite naming.
  723. mseq->cbr_flag[0] = 0;
  724. mseq->initial_cpb_removal_delay_length_minus1 = 23;
  725. mseq->cpb_removal_delay_length_minus1 = 23;
  726. mseq->dpb_output_delay_length_minus1 = 7;
  727. mseq->time_offset_length = 0;
  728. // This calculation can easily overflow 32 bits.
  729. mseq->initial_cpb_removal_delay = 90000 *
  730. (uint64_t)ctx->hrd_params.hrd.initial_buffer_fullness /
  731. ctx->hrd_params.hrd.buffer_size;
  732. mseq->initial_cpb_removal_delay_offset = 0;
  733. } else {
  734. priv->send_timing_sei = 0;
  735. mseq->nal_hrd_parameters_present_flag = 0;
  736. }
  737. vseq->intra_period = ctx->p_per_i * (ctx->b_per_p + 1);
  738. vseq->intra_idr_period = vseq->intra_period;
  739. vseq->ip_period = ctx->b_per_p + 1;
  740. }
  741. {
  742. vpic->CurrPic.picture_id = VA_INVALID_ID;
  743. vpic->CurrPic.flags = VA_PICTURE_H264_INVALID;
  744. for (i = 0; i < FF_ARRAY_ELEMS(vpic->ReferenceFrames); i++) {
  745. vpic->ReferenceFrames[i].picture_id = VA_INVALID_ID;
  746. vpic->ReferenceFrames[i].flags = VA_PICTURE_H264_INVALID;
  747. }
  748. vpic->coded_buf = VA_INVALID_ID;
  749. vpic->pic_parameter_set_id = 0;
  750. vpic->seq_parameter_set_id = 0;
  751. vpic->num_ref_idx_l0_active_minus1 = 0;
  752. vpic->num_ref_idx_l1_active_minus1 = 0;
  753. vpic->pic_fields.bits.entropy_coding_mode_flag =
  754. ((avctx->profile & 0xff) != 66);
  755. vpic->pic_fields.bits.weighted_pred_flag = 0;
  756. vpic->pic_fields.bits.weighted_bipred_idc = 0;
  757. vpic->pic_fields.bits.transform_8x8_mode_flag =
  758. ((avctx->profile & 0xff) >= 100);
  759. vpic->pic_init_qp = priv->fixed_qp_idr;
  760. }
  761. {
  762. mseq->profile_idc = avctx->profile & 0xff;
  763. if (avctx->profile & FF_PROFILE_H264_CONSTRAINED)
  764. mseq->constraint_set1_flag = 1;
  765. if (avctx->profile & FF_PROFILE_H264_INTRA)
  766. mseq->constraint_set3_flag = 1;
  767. }
  768. return 0;
  769. }
  770. static int vaapi_encode_h264_init_picture_params(AVCodecContext *avctx,
  771. VAAPIEncodePicture *pic)
  772. {
  773. VAAPIEncodeContext *ctx = avctx->priv_data;
  774. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  775. VAEncPictureParameterBufferH264 *vpic = pic->codec_picture_params;
  776. VAAPIEncodeH264Context *priv = ctx->priv_data;
  777. int i;
  778. if (pic->type == PICTURE_TYPE_IDR) {
  779. av_assert0(pic->display_order == pic->encode_order);
  780. vpic->frame_num = 0;
  781. priv->next_frame_num = 1;
  782. priv->cpb_delay = 0;
  783. } else {
  784. vpic->frame_num = priv->next_frame_num;
  785. if (pic->type != PICTURE_TYPE_B) {
  786. // nal_ref_idc != 0
  787. ++priv->next_frame_num;
  788. }
  789. ++priv->cpb_delay;
  790. }
  791. priv->dpb_delay = pic->display_order - pic->encode_order + 1;
  792. vpic->frame_num = vpic->frame_num &
  793. ((1 << (4 + vseq->seq_fields.bits.log2_max_frame_num_minus4)) - 1);
  794. vpic->CurrPic.picture_id = pic->recon_surface;
  795. vpic->CurrPic.frame_idx = vpic->frame_num;
  796. vpic->CurrPic.flags = 0;
  797. vpic->CurrPic.TopFieldOrderCnt = pic->display_order;
  798. vpic->CurrPic.BottomFieldOrderCnt = pic->display_order;
  799. for (i = 0; i < pic->nb_refs; i++) {
  800. VAAPIEncodePicture *ref = pic->refs[i];
  801. av_assert0(ref && ref->encode_order < pic->encode_order);
  802. vpic->ReferenceFrames[i].picture_id = ref->recon_surface;
  803. vpic->ReferenceFrames[i].frame_idx = ref->encode_order;
  804. vpic->ReferenceFrames[i].flags = VA_PICTURE_H264_SHORT_TERM_REFERENCE;
  805. vpic->ReferenceFrames[i].TopFieldOrderCnt = ref->display_order;
  806. vpic->ReferenceFrames[i].BottomFieldOrderCnt = ref->display_order;
  807. }
  808. for (; i < FF_ARRAY_ELEMS(vpic->ReferenceFrames); i++) {
  809. vpic->ReferenceFrames[i].picture_id = VA_INVALID_ID;
  810. vpic->ReferenceFrames[i].flags = VA_PICTURE_H264_INVALID;
  811. }
  812. vpic->coded_buf = pic->output_buffer;
  813. vpic->pic_fields.bits.idr_pic_flag = (pic->type == PICTURE_TYPE_IDR);
  814. vpic->pic_fields.bits.reference_pic_flag = (pic->type != PICTURE_TYPE_B);
  815. pic->nb_slices = 1;
  816. return 0;
  817. }
  818. static int vaapi_encode_h264_init_slice_params(AVCodecContext *avctx,
  819. VAAPIEncodePicture *pic,
  820. VAAPIEncodeSlice *slice)
  821. {
  822. VAAPIEncodeContext *ctx = avctx->priv_data;
  823. VAEncSequenceParameterBufferH264 *vseq = ctx->codec_sequence_params;
  824. VAEncPictureParameterBufferH264 *vpic = pic->codec_picture_params;
  825. VAEncSliceParameterBufferH264 *vslice = slice->codec_slice_params;
  826. VAAPIEncodeH264Context *priv = ctx->priv_data;
  827. VAAPIEncodeH264Slice *pslice;
  828. VAAPIEncodeH264MiscSliceParams *mslice;
  829. int i;
  830. slice->priv_data = av_mallocz(sizeof(*pslice));
  831. if (!slice->priv_data)
  832. return AVERROR(ENOMEM);
  833. pslice = slice->priv_data;
  834. mslice = &pslice->misc_slice_params;
  835. if (pic->type == PICTURE_TYPE_IDR)
  836. mslice->nal_unit_type = H264_NAL_IDR_SLICE;
  837. else
  838. mslice->nal_unit_type = H264_NAL_SLICE;
  839. switch (pic->type) {
  840. case PICTURE_TYPE_IDR:
  841. vslice->slice_type = SLICE_TYPE_I;
  842. mslice->nal_ref_idc = 3;
  843. break;
  844. case PICTURE_TYPE_I:
  845. vslice->slice_type = SLICE_TYPE_I;
  846. mslice->nal_ref_idc = 2;
  847. break;
  848. case PICTURE_TYPE_P:
  849. vslice->slice_type = SLICE_TYPE_P;
  850. mslice->nal_ref_idc = 1;
  851. break;
  852. case PICTURE_TYPE_B:
  853. vslice->slice_type = SLICE_TYPE_B;
  854. mslice->nal_ref_idc = 0;
  855. break;
  856. default:
  857. av_assert0(0 && "invalid picture type");
  858. }
  859. // Only one slice per frame.
  860. vslice->macroblock_address = 0;
  861. vslice->num_macroblocks = priv->mb_width * priv->mb_height;
  862. vslice->macroblock_info = VA_INVALID_ID;
  863. vslice->pic_parameter_set_id = vpic->pic_parameter_set_id;
  864. vslice->idr_pic_id = priv->idr_pic_count++;
  865. vslice->pic_order_cnt_lsb = pic->display_order &
  866. ((1 << (4 + vseq->seq_fields.bits.log2_max_pic_order_cnt_lsb_minus4)) - 1);
  867. for (i = 0; i < FF_ARRAY_ELEMS(vslice->RefPicList0); i++) {
  868. vslice->RefPicList0[i].picture_id = VA_INVALID_ID;
  869. vslice->RefPicList0[i].flags = VA_PICTURE_H264_INVALID;
  870. vslice->RefPicList1[i].picture_id = VA_INVALID_ID;
  871. vslice->RefPicList1[i].flags = VA_PICTURE_H264_INVALID;
  872. }
  873. av_assert0(pic->nb_refs <= 2);
  874. if (pic->nb_refs >= 1) {
  875. // Backward reference for P- or B-frame.
  876. av_assert0(pic->type == PICTURE_TYPE_P ||
  877. pic->type == PICTURE_TYPE_B);
  878. vslice->num_ref_idx_l0_active_minus1 = 0;
  879. vslice->RefPicList0[0] = vpic->ReferenceFrames[0];
  880. }
  881. if (pic->nb_refs >= 2) {
  882. // Forward reference for B-frame.
  883. av_assert0(pic->type == PICTURE_TYPE_B);
  884. vslice->num_ref_idx_l1_active_minus1 = 0;
  885. vslice->RefPicList1[0] = vpic->ReferenceFrames[1];
  886. }
  887. if (pic->type == PICTURE_TYPE_B)
  888. vslice->slice_qp_delta = priv->fixed_qp_b - vpic->pic_init_qp;
  889. else if (pic->type == PICTURE_TYPE_P)
  890. vslice->slice_qp_delta = priv->fixed_qp_p - vpic->pic_init_qp;
  891. else
  892. vslice->slice_qp_delta = priv->fixed_qp_idr - vpic->pic_init_qp;
  893. vslice->direct_spatial_mv_pred_flag = 1;
  894. return 0;
  895. }
  896. static av_cold int vaapi_encode_h264_configure(AVCodecContext *avctx)
  897. {
  898. VAAPIEncodeContext *ctx = avctx->priv_data;
  899. VAAPIEncodeH264Context *priv = ctx->priv_data;
  900. VAAPIEncodeH264Options *opt = ctx->codec_options;
  901. priv->mb_width = FFALIGN(avctx->width, 16) / 16;
  902. priv->mb_height = FFALIGN(avctx->height, 16) / 16;
  903. if (ctx->va_rc_mode == VA_RC_CQP) {
  904. priv->fixed_qp_p = opt->qp;
  905. if (avctx->i_quant_factor > 0.0)
  906. priv->fixed_qp_idr = (int)((priv->fixed_qp_p * avctx->i_quant_factor +
  907. avctx->i_quant_offset) + 0.5);
  908. else
  909. priv->fixed_qp_idr = priv->fixed_qp_p;
  910. if (avctx->b_quant_factor > 0.0)
  911. priv->fixed_qp_b = (int)((priv->fixed_qp_p * avctx->b_quant_factor +
  912. avctx->b_quant_offset) + 0.5);
  913. else
  914. priv->fixed_qp_b = priv->fixed_qp_p;
  915. av_log(avctx, AV_LOG_DEBUG, "Using fixed QP = "
  916. "%d / %d / %d for IDR- / P- / B-frames.\n",
  917. priv->fixed_qp_idr, priv->fixed_qp_p, priv->fixed_qp_b);
  918. } else if (ctx->va_rc_mode == VA_RC_CBR) {
  919. // These still need to be set for pic_init_qp/slice_qp_delta.
  920. priv->fixed_qp_idr = 26;
  921. priv->fixed_qp_p = 26;
  922. priv->fixed_qp_b = 26;
  923. av_log(avctx, AV_LOG_DEBUG, "Using constant-bitrate = %d bps.\n",
  924. avctx->bit_rate);
  925. } else {
  926. av_assert0(0 && "Invalid RC mode.");
  927. }
  928. if (opt->quality > 0) {
  929. #if VA_CHECK_VERSION(0, 36, 0)
  930. priv->quality_params.misc.type =
  931. VAEncMiscParameterTypeQualityLevel;
  932. priv->quality_params.quality.quality_level = opt->quality;
  933. ctx->global_params[ctx->nb_global_params] =
  934. &priv->quality_params.misc;
  935. ctx->global_params_size[ctx->nb_global_params++] =
  936. sizeof(priv->quality_params);
  937. #else
  938. av_log(avctx, AV_LOG_WARNING, "The encode quality option is not "
  939. "supported with this VAAPI version.\n");
  940. #endif
  941. }
  942. return 0;
  943. }
  944. static const VAAPIEncodeType vaapi_encode_type_h264 = {
  945. .priv_data_size = sizeof(VAAPIEncodeH264Context),
  946. .configure = &vaapi_encode_h264_configure,
  947. .sequence_params_size = sizeof(VAEncSequenceParameterBufferH264),
  948. .init_sequence_params = &vaapi_encode_h264_init_sequence_params,
  949. .picture_params_size = sizeof(VAEncPictureParameterBufferH264),
  950. .init_picture_params = &vaapi_encode_h264_init_picture_params,
  951. .slice_params_size = sizeof(VAEncSliceParameterBufferH264),
  952. .init_slice_params = &vaapi_encode_h264_init_slice_params,
  953. .sequence_header_type = VAEncPackedHeaderSequence,
  954. .write_sequence_header = &vaapi_encode_h264_write_sequence_header,
  955. .slice_header_type = VAEncPackedHeaderH264_Slice,
  956. .write_slice_header = &vaapi_encode_h264_write_slice_header,
  957. .write_extra_header = &vaapi_encode_h264_write_extra_header,
  958. };
  959. static av_cold int vaapi_encode_h264_init(AVCodecContext *avctx)
  960. {
  961. VAAPIEncodeContext *ctx = avctx->priv_data;
  962. VAAPIEncodeH264Options *opt =
  963. (VAAPIEncodeH264Options*)ctx->codec_options_data;
  964. ctx->codec = &vaapi_encode_type_h264;
  965. switch (avctx->profile) {
  966. case FF_PROFILE_H264_CONSTRAINED_BASELINE:
  967. ctx->va_profile = VAProfileH264ConstrainedBaseline;
  968. break;
  969. case FF_PROFILE_H264_BASELINE:
  970. ctx->va_profile = VAProfileH264Baseline;
  971. break;
  972. case FF_PROFILE_H264_MAIN:
  973. ctx->va_profile = VAProfileH264Main;
  974. break;
  975. case FF_PROFILE_H264_EXTENDED:
  976. av_log(avctx, AV_LOG_ERROR, "H.264 extended profile "
  977. "is not supported.\n");
  978. return AVERROR_PATCHWELCOME;
  979. case FF_PROFILE_UNKNOWN:
  980. case FF_PROFILE_H264_HIGH:
  981. ctx->va_profile = VAProfileH264High;
  982. break;
  983. case FF_PROFILE_H264_HIGH_10:
  984. case FF_PROFILE_H264_HIGH_10_INTRA:
  985. av_log(avctx, AV_LOG_ERROR, "H.264 10-bit profiles "
  986. "are not supported.\n");
  987. return AVERROR_PATCHWELCOME;
  988. case FF_PROFILE_H264_HIGH_422:
  989. case FF_PROFILE_H264_HIGH_422_INTRA:
  990. case FF_PROFILE_H264_HIGH_444:
  991. case FF_PROFILE_H264_HIGH_444_PREDICTIVE:
  992. case FF_PROFILE_H264_HIGH_444_INTRA:
  993. case FF_PROFILE_H264_CAVLC_444:
  994. av_log(avctx, AV_LOG_ERROR, "H.264 non-4:2:0 profiles "
  995. "are not supported.\n");
  996. return AVERROR_PATCHWELCOME;
  997. default:
  998. av_log(avctx, AV_LOG_ERROR, "Unknown H.264 profile %d.\n",
  999. avctx->profile);
  1000. return AVERROR(EINVAL);
  1001. }
  1002. if (opt->low_power) {
  1003. #if VA_CHECK_VERSION(0, 39, 2)
  1004. ctx->va_entrypoint = VAEntrypointEncSliceLP;
  1005. #else
  1006. av_log(avctx, AV_LOG_ERROR, "Low-power encoding is not "
  1007. "supported with this VAAPI version.\n");
  1008. return AVERROR(EINVAL);
  1009. #endif
  1010. } else {
  1011. ctx->va_entrypoint = VAEntrypointEncSlice;
  1012. }
  1013. // Only 8-bit encode is supported.
  1014. ctx->va_rt_format = VA_RT_FORMAT_YUV420;
  1015. if (avctx->bit_rate > 0)
  1016. ctx->va_rc_mode = VA_RC_CBR;
  1017. else
  1018. ctx->va_rc_mode = VA_RC_CQP;
  1019. ctx->va_packed_headers =
  1020. VA_ENC_PACKED_HEADER_SEQUENCE | // SPS and PPS.
  1021. VA_ENC_PACKED_HEADER_SLICE | // Slice headers.
  1022. VA_ENC_PACKED_HEADER_MISC; // SEI.
  1023. ctx->surface_width = FFALIGN(avctx->width, 16);
  1024. ctx->surface_height = FFALIGN(avctx->height, 16);
  1025. return ff_vaapi_encode_init(avctx);
  1026. }
  1027. #define OFFSET(x) (offsetof(VAAPIEncodeContext, codec_options_data) + \
  1028. offsetof(VAAPIEncodeH264Options, x))
  1029. #define FLAGS (AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_ENCODING_PARAM)
  1030. static const AVOption vaapi_encode_h264_options[] = {
  1031. { "qp", "Constant QP (for P-frames; scaled by qfactor/qoffset for I/B)",
  1032. OFFSET(qp), AV_OPT_TYPE_INT, { .i64 = 20 }, 0, 52, FLAGS },
  1033. { "quality", "Set encode quality (trades off against speed, higher is faster)",
  1034. OFFSET(quality), AV_OPT_TYPE_INT, { .i64 = 0 }, 0, 8, FLAGS },
  1035. { "low_power", "Use low-power encoding mode (experimental: only supported "
  1036. "on some platforms, does not support all features)",
  1037. OFFSET(low_power), AV_OPT_TYPE_INT, { .i64 = 0 }, 0, 1, FLAGS },
  1038. { NULL },
  1039. };
  1040. static const AVCodecDefault vaapi_encode_h264_defaults[] = {
  1041. { "profile", "100" },
  1042. { "level", "51" },
  1043. { "b", "0" },
  1044. { "bf", "2" },
  1045. { "g", "120" },
  1046. { "i_qfactor", "1.0" },
  1047. { "i_qoffset", "0.0" },
  1048. { "b_qfactor", "1.2" },
  1049. { "b_qoffset", "0.0" },
  1050. { NULL },
  1051. };
  1052. static const AVClass vaapi_encode_h264_class = {
  1053. .class_name = "h264_vaapi",
  1054. .item_name = av_default_item_name,
  1055. .option = vaapi_encode_h264_options,
  1056. .version = LIBAVUTIL_VERSION_INT,
  1057. };
  1058. AVCodec ff_h264_vaapi_encoder = {
  1059. .name = "h264_vaapi",
  1060. .long_name = NULL_IF_CONFIG_SMALL("H.264/AVC (VAAPI)"),
  1061. .type = AVMEDIA_TYPE_VIDEO,
  1062. .id = AV_CODEC_ID_H264,
  1063. .priv_data_size = (sizeof(VAAPIEncodeContext) +
  1064. sizeof(VAAPIEncodeH264Options)),
  1065. .init = &vaapi_encode_h264_init,
  1066. .encode2 = &ff_vaapi_encode2,
  1067. .close = &ff_vaapi_encode_close,
  1068. .priv_class = &vaapi_encode_h264_class,
  1069. .capabilities = AV_CODEC_CAP_DELAY,
  1070. .defaults = vaapi_encode_h264_defaults,
  1071. .pix_fmts = (const enum AVPixelFormat[]) {
  1072. AV_PIX_FMT_VAAPI,
  1073. AV_PIX_FMT_NONE,
  1074. },
  1075. };