You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

713 lines
27KB

  1. /*
  2. * Video Decode and Presentation API for UNIX (VDPAU) is used for
  3. * HW decode acceleration for MPEG-1/2, MPEG-4 ASP, H.264 and VC-1.
  4. *
  5. * Copyright (c) 2008 NVIDIA
  6. *
  7. * This file is part of FFmpeg.
  8. *
  9. * FFmpeg is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU Lesser General Public
  11. * License as published by the Free Software Foundation; either
  12. * version 2.1 of the License, or (at your option) any later version.
  13. *
  14. * FFmpeg is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  17. * Lesser General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU Lesser General Public
  20. * License along with FFmpeg; if not, write to the Free Software
  21. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  22. */
  23. #include <limits.h>
  24. #include "libavutil/avassert.h"
  25. #include "avcodec.h"
  26. #include "internal.h"
  27. #include "h264.h"
  28. #include "vc1.h"
  29. #undef NDEBUG
  30. #include <assert.h>
  31. #include "vdpau.h"
  32. #include "vdpau_internal.h"
  33. /**
  34. * @addtogroup VDPAU_Decoding
  35. *
  36. * @{
  37. */
  38. static int vdpau_error(VdpStatus status)
  39. {
  40. switch (status) {
  41. case VDP_STATUS_OK:
  42. return 0;
  43. case VDP_STATUS_NO_IMPLEMENTATION:
  44. return AVERROR(ENOSYS);
  45. case VDP_STATUS_DISPLAY_PREEMPTED:
  46. return AVERROR(EIO);
  47. case VDP_STATUS_INVALID_HANDLE:
  48. return AVERROR(EBADF);
  49. case VDP_STATUS_INVALID_POINTER:
  50. return AVERROR(EFAULT);
  51. case VDP_STATUS_RESOURCES:
  52. return AVERROR(ENOBUFS);
  53. case VDP_STATUS_HANDLE_DEVICE_MISMATCH:
  54. return AVERROR(EXDEV);
  55. case VDP_STATUS_ERROR:
  56. return AVERROR(EIO);
  57. default:
  58. return AVERROR(EINVAL);
  59. }
  60. }
  61. AVVDPAUContext *av_alloc_vdpaucontext(void)
  62. {
  63. return av_vdpau_alloc_context();
  64. }
  65. MAKE_ACCESSORS(AVVDPAUContext, vdpau_hwaccel, AVVDPAU_Render2, render2)
  66. int ff_vdpau_common_init(AVCodecContext *avctx, VdpDecoderProfile profile,
  67. int level)
  68. {
  69. VDPAUHWContext *hwctx = avctx->hwaccel_context;
  70. VDPAUContext *vdctx = avctx->internal->hwaccel_priv_data;
  71. VdpVideoSurfaceQueryCapabilities *surface_query_caps;
  72. VdpDecoderQueryCapabilities *decoder_query_caps;
  73. VdpDecoderCreate *create;
  74. void *func;
  75. VdpStatus status;
  76. VdpBool supported;
  77. uint32_t max_level, max_mb, max_width, max_height;
  78. /* See vdpau/vdpau.h for alignment constraints. */
  79. uint32_t width = (avctx->coded_width + 1) & ~1;
  80. uint32_t height = (avctx->coded_height + 3) & ~3;
  81. vdctx->width = UINT32_MAX;
  82. vdctx->height = UINT32_MAX;
  83. if (!hwctx) {
  84. vdctx->device = VDP_INVALID_HANDLE;
  85. av_log(avctx, AV_LOG_WARNING, "hwaccel_context has not been setup by the user application, cannot initialize\n");
  86. return 0;
  87. }
  88. if (hwctx->context.decoder != VDP_INVALID_HANDLE) {
  89. vdctx->decoder = hwctx->context.decoder;
  90. vdctx->render = hwctx->context.render;
  91. vdctx->device = VDP_INVALID_HANDLE;
  92. return 0; /* Decoder created by user */
  93. }
  94. hwctx->reset = 0;
  95. vdctx->device = hwctx->device;
  96. vdctx->get_proc_address = hwctx->get_proc_address;
  97. if (hwctx->flags & AV_HWACCEL_FLAG_IGNORE_LEVEL)
  98. level = 0;
  99. else if (level < 0)
  100. return AVERROR(ENOTSUP);
  101. status = vdctx->get_proc_address(vdctx->device,
  102. VDP_FUNC_ID_VIDEO_SURFACE_QUERY_CAPABILITIES,
  103. &func);
  104. if (status != VDP_STATUS_OK)
  105. return vdpau_error(status);
  106. else
  107. surface_query_caps = func;
  108. status = surface_query_caps(vdctx->device, VDP_CHROMA_TYPE_420, &supported,
  109. &max_width, &max_height);
  110. if (status != VDP_STATUS_OK)
  111. return vdpau_error(status);
  112. if (supported != VDP_TRUE ||
  113. max_width < width || max_height < height)
  114. return AVERROR(ENOTSUP);
  115. status = vdctx->get_proc_address(vdctx->device,
  116. VDP_FUNC_ID_DECODER_QUERY_CAPABILITIES,
  117. &func);
  118. if (status != VDP_STATUS_OK)
  119. return vdpau_error(status);
  120. else
  121. decoder_query_caps = func;
  122. status = decoder_query_caps(vdctx->device, profile, &supported, &max_level,
  123. &max_mb, &max_width, &max_height);
  124. if (status != VDP_STATUS_OK)
  125. return vdpau_error(status);
  126. if (supported != VDP_TRUE || max_level < level ||
  127. max_width < width || max_height < height)
  128. return AVERROR(ENOTSUP);
  129. status = vdctx->get_proc_address(vdctx->device, VDP_FUNC_ID_DECODER_CREATE,
  130. &func);
  131. if (status != VDP_STATUS_OK)
  132. return vdpau_error(status);
  133. else
  134. create = func;
  135. status = vdctx->get_proc_address(vdctx->device, VDP_FUNC_ID_DECODER_RENDER,
  136. &func);
  137. if (status != VDP_STATUS_OK)
  138. return vdpau_error(status);
  139. else
  140. vdctx->render = func;
  141. status = create(vdctx->device, profile, width, height, avctx->refs,
  142. &vdctx->decoder);
  143. if (status == VDP_STATUS_OK) {
  144. vdctx->width = avctx->coded_width;
  145. vdctx->height = avctx->coded_height;
  146. }
  147. return vdpau_error(status);
  148. }
  149. int ff_vdpau_common_uninit(AVCodecContext *avctx)
  150. {
  151. VDPAUContext *vdctx = avctx->internal->hwaccel_priv_data;
  152. VdpDecoderDestroy *destroy;
  153. void *func;
  154. VdpStatus status;
  155. if (vdctx->device == VDP_INVALID_HANDLE)
  156. return 0; /* Decoder created and destroyed by user */
  157. if (vdctx->width == UINT32_MAX && vdctx->height == UINT32_MAX)
  158. return 0;
  159. status = vdctx->get_proc_address(vdctx->device,
  160. VDP_FUNC_ID_DECODER_DESTROY, &func);
  161. if (status != VDP_STATUS_OK)
  162. return vdpau_error(status);
  163. else
  164. destroy = func;
  165. status = destroy(vdctx->decoder);
  166. return vdpau_error(status);
  167. }
  168. static int ff_vdpau_common_reinit(AVCodecContext *avctx)
  169. {
  170. VDPAUHWContext *hwctx = avctx->hwaccel_context;
  171. VDPAUContext *vdctx = avctx->internal->hwaccel_priv_data;
  172. if (vdctx->device == VDP_INVALID_HANDLE)
  173. return 0; /* Decoder created by user */
  174. if (avctx->coded_width == vdctx->width &&
  175. avctx->coded_height == vdctx->height && !hwctx->reset)
  176. return 0;
  177. avctx->hwaccel->uninit(avctx);
  178. return avctx->hwaccel->init(avctx);
  179. }
  180. int ff_vdpau_common_start_frame(struct vdpau_picture_context *pic_ctx,
  181. av_unused const uint8_t *buffer,
  182. av_unused uint32_t size)
  183. {
  184. pic_ctx->bitstream_buffers_allocated = 0;
  185. pic_ctx->bitstream_buffers_used = 0;
  186. pic_ctx->bitstream_buffers = NULL;
  187. return 0;
  188. }
  189. int ff_vdpau_common_end_frame(AVCodecContext *avctx, AVFrame *frame,
  190. struct vdpau_picture_context *pic_ctx)
  191. {
  192. VDPAUContext *vdctx = avctx->internal->hwaccel_priv_data;
  193. AVVDPAUContext *hwctx = avctx->hwaccel_context;
  194. VdpVideoSurface surf = ff_vdpau_get_surface_id(frame);
  195. VdpStatus status;
  196. int val;
  197. val = ff_vdpau_common_reinit(avctx);
  198. if (val < 0)
  199. return val;
  200. #if FF_API_BUFS_VDPAU
  201. FF_DISABLE_DEPRECATION_WARNINGS
  202. hwctx->info = pic_ctx->info;
  203. hwctx->bitstream_buffers = pic_ctx->bitstream_buffers;
  204. hwctx->bitstream_buffers_used = pic_ctx->bitstream_buffers_used;
  205. hwctx->bitstream_buffers_allocated = pic_ctx->bitstream_buffers_allocated;
  206. FF_ENABLE_DEPRECATION_WARNINGS
  207. #endif
  208. if (!hwctx->render && hwctx->render2) {
  209. status = hwctx->render2(avctx, frame, (void *)&pic_ctx->info,
  210. pic_ctx->bitstream_buffers_used, pic_ctx->bitstream_buffers);
  211. } else
  212. status = vdctx->render(vdctx->decoder, surf, (void *)&pic_ctx->info,
  213. pic_ctx->bitstream_buffers_used,
  214. pic_ctx->bitstream_buffers);
  215. av_freep(&pic_ctx->bitstream_buffers);
  216. #if FF_API_BUFS_VDPAU
  217. FF_DISABLE_DEPRECATION_WARNINGS
  218. hwctx->bitstream_buffers = NULL;
  219. hwctx->bitstream_buffers_used = 0;
  220. hwctx->bitstream_buffers_allocated = 0;
  221. FF_ENABLE_DEPRECATION_WARNINGS
  222. #endif
  223. return vdpau_error(status);
  224. }
  225. #if CONFIG_H263_VDPAU_HWACCEL || CONFIG_MPEG1_VDPAU_HWACCEL || \
  226. CONFIG_MPEG2_VDPAU_HWACCEL || CONFIG_MPEG4_VDPAU_HWACCEL || \
  227. CONFIG_VC1_VDPAU_HWACCEL || CONFIG_WMV3_VDPAU_HWACCEL
  228. int ff_vdpau_mpeg_end_frame(AVCodecContext *avctx)
  229. {
  230. MpegEncContext *s = avctx->priv_data;
  231. Picture *pic = s->current_picture_ptr;
  232. struct vdpau_picture_context *pic_ctx = pic->hwaccel_picture_private;
  233. int val;
  234. val = ff_vdpau_common_end_frame(avctx, pic->f, pic_ctx);
  235. if (val < 0)
  236. return val;
  237. ff_mpeg_draw_horiz_band(s, 0, s->avctx->height);
  238. return 0;
  239. }
  240. #endif
  241. int ff_vdpau_add_buffer(struct vdpau_picture_context *pic_ctx,
  242. const uint8_t *buf, uint32_t size)
  243. {
  244. VdpBitstreamBuffer *buffers = pic_ctx->bitstream_buffers;
  245. buffers = av_fast_realloc(buffers, &pic_ctx->bitstream_buffers_allocated,
  246. (pic_ctx->bitstream_buffers_used + 1) * sizeof(*buffers));
  247. if (!buffers)
  248. return AVERROR(ENOMEM);
  249. pic_ctx->bitstream_buffers = buffers;
  250. buffers += pic_ctx->bitstream_buffers_used++;
  251. buffers->struct_version = VDP_BITSTREAM_BUFFER_VERSION;
  252. buffers->bitstream = buf;
  253. buffers->bitstream_bytes = size;
  254. return 0;
  255. }
  256. /* Obsolete non-hwaccel VDPAU support below... */
  257. void ff_vdpau_h264_set_reference_frames(H264Context *h)
  258. {
  259. struct vdpau_render_state *render, *render_ref;
  260. VdpReferenceFrameH264 *rf, *rf2;
  261. H264Picture *pic;
  262. int i, list, pic_frame_idx;
  263. render = (struct vdpau_render_state *)h->cur_pic_ptr->f.data[0];
  264. assert(render);
  265. rf = &render->info.h264.referenceFrames[0];
  266. #define H264_RF_COUNT FF_ARRAY_ELEMS(render->info.h264.referenceFrames)
  267. for (list = 0; list < 2; ++list) {
  268. H264Picture **lp = list ? h->long_ref : h->short_ref;
  269. int ls = list ? 16 : h->short_ref_count;
  270. for (i = 0; i < ls; ++i) {
  271. pic = lp[i];
  272. if (!pic || !pic->reference)
  273. continue;
  274. pic_frame_idx = pic->long_ref ? pic->pic_id : pic->frame_num;
  275. render_ref = (struct vdpau_render_state *)pic->f.data[0];
  276. assert(render_ref);
  277. rf2 = &render->info.h264.referenceFrames[0];
  278. while (rf2 != rf) {
  279. if (
  280. (rf2->surface == render_ref->surface)
  281. && (rf2->is_long_term == pic->long_ref)
  282. && (rf2->frame_idx == pic_frame_idx)
  283. )
  284. break;
  285. ++rf2;
  286. }
  287. if (rf2 != rf) {
  288. rf2->top_is_reference |= (pic->reference & PICT_TOP_FIELD) ? VDP_TRUE : VDP_FALSE;
  289. rf2->bottom_is_reference |= (pic->reference & PICT_BOTTOM_FIELD) ? VDP_TRUE : VDP_FALSE;
  290. continue;
  291. }
  292. if (rf >= &render->info.h264.referenceFrames[H264_RF_COUNT])
  293. continue;
  294. rf->surface = render_ref->surface;
  295. rf->is_long_term = pic->long_ref;
  296. rf->top_is_reference = (pic->reference & PICT_TOP_FIELD) ? VDP_TRUE : VDP_FALSE;
  297. rf->bottom_is_reference = (pic->reference & PICT_BOTTOM_FIELD) ? VDP_TRUE : VDP_FALSE;
  298. rf->field_order_cnt[0] = pic->field_poc[0];
  299. rf->field_order_cnt[1] = pic->field_poc[1];
  300. rf->frame_idx = pic_frame_idx;
  301. ++rf;
  302. }
  303. }
  304. for (; rf < &render->info.h264.referenceFrames[H264_RF_COUNT]; ++rf) {
  305. rf->surface = VDP_INVALID_HANDLE;
  306. rf->is_long_term = 0;
  307. rf->top_is_reference = 0;
  308. rf->bottom_is_reference = 0;
  309. rf->field_order_cnt[0] = 0;
  310. rf->field_order_cnt[1] = 0;
  311. rf->frame_idx = 0;
  312. }
  313. }
  314. void ff_vdpau_add_data_chunk(uint8_t *data, const uint8_t *buf, int buf_size)
  315. {
  316. struct vdpau_render_state *render = (struct vdpau_render_state*)data;
  317. assert(render);
  318. render->bitstream_buffers= av_fast_realloc(
  319. render->bitstream_buffers,
  320. &render->bitstream_buffers_allocated,
  321. sizeof(*render->bitstream_buffers)*(render->bitstream_buffers_used + 1)
  322. );
  323. render->bitstream_buffers[render->bitstream_buffers_used].struct_version = VDP_BITSTREAM_BUFFER_VERSION;
  324. render->bitstream_buffers[render->bitstream_buffers_used].bitstream = buf;
  325. render->bitstream_buffers[render->bitstream_buffers_used].bitstream_bytes = buf_size;
  326. render->bitstream_buffers_used++;
  327. }
  328. #if CONFIG_H264_VDPAU_DECODER
  329. void ff_vdpau_h264_picture_start(H264Context *h)
  330. {
  331. struct vdpau_render_state *render;
  332. int i;
  333. render = (struct vdpau_render_state *)h->cur_pic_ptr->f.data[0];
  334. assert(render);
  335. for (i = 0; i < 2; ++i) {
  336. int foc = h->cur_pic_ptr->field_poc[i];
  337. if (foc == INT_MAX)
  338. foc = 0;
  339. render->info.h264.field_order_cnt[i] = foc;
  340. }
  341. render->info.h264.frame_num = h->frame_num;
  342. }
  343. void ff_vdpau_h264_picture_complete(H264Context *h)
  344. {
  345. struct vdpau_render_state *render;
  346. render = (struct vdpau_render_state *)h->cur_pic_ptr->f.data[0];
  347. assert(render);
  348. render->info.h264.slice_count = h->slice_num;
  349. if (render->info.h264.slice_count < 1)
  350. return;
  351. render->info.h264.is_reference = (h->cur_pic_ptr->reference & 3) ? VDP_TRUE : VDP_FALSE;
  352. render->info.h264.field_pic_flag = h->picture_structure != PICT_FRAME;
  353. render->info.h264.bottom_field_flag = h->picture_structure == PICT_BOTTOM_FIELD;
  354. render->info.h264.num_ref_frames = h->sps.ref_frame_count;
  355. render->info.h264.mb_adaptive_frame_field_flag = h->sps.mb_aff && !render->info.h264.field_pic_flag;
  356. render->info.h264.constrained_intra_pred_flag = h->pps.constrained_intra_pred;
  357. render->info.h264.weighted_pred_flag = h->pps.weighted_pred;
  358. render->info.h264.weighted_bipred_idc = h->pps.weighted_bipred_idc;
  359. render->info.h264.frame_mbs_only_flag = h->sps.frame_mbs_only_flag;
  360. render->info.h264.transform_8x8_mode_flag = h->pps.transform_8x8_mode;
  361. render->info.h264.chroma_qp_index_offset = h->pps.chroma_qp_index_offset[0];
  362. render->info.h264.second_chroma_qp_index_offset = h->pps.chroma_qp_index_offset[1];
  363. render->info.h264.pic_init_qp_minus26 = h->pps.init_qp - 26;
  364. render->info.h264.num_ref_idx_l0_active_minus1 = h->pps.ref_count[0] - 1;
  365. render->info.h264.num_ref_idx_l1_active_minus1 = h->pps.ref_count[1] - 1;
  366. render->info.h264.log2_max_frame_num_minus4 = h->sps.log2_max_frame_num - 4;
  367. render->info.h264.pic_order_cnt_type = h->sps.poc_type;
  368. render->info.h264.log2_max_pic_order_cnt_lsb_minus4 = h->sps.poc_type ? 0 : h->sps.log2_max_poc_lsb - 4;
  369. render->info.h264.delta_pic_order_always_zero_flag = h->sps.delta_pic_order_always_zero_flag;
  370. render->info.h264.direct_8x8_inference_flag = h->sps.direct_8x8_inference_flag;
  371. render->info.h264.entropy_coding_mode_flag = h->pps.cabac;
  372. render->info.h264.pic_order_present_flag = h->pps.pic_order_present;
  373. render->info.h264.deblocking_filter_control_present_flag = h->pps.deblocking_filter_parameters_present;
  374. render->info.h264.redundant_pic_cnt_present_flag = h->pps.redundant_pic_cnt_present;
  375. memcpy(render->info.h264.scaling_lists_4x4, h->pps.scaling_matrix4, sizeof(render->info.h264.scaling_lists_4x4));
  376. memcpy(render->info.h264.scaling_lists_8x8[0], h->pps.scaling_matrix8[0], sizeof(render->info.h264.scaling_lists_8x8[0]));
  377. memcpy(render->info.h264.scaling_lists_8x8[1], h->pps.scaling_matrix8[3], sizeof(render->info.h264.scaling_lists_8x8[0]));
  378. ff_h264_draw_horiz_band(h, 0, h->avctx->height);
  379. render->bitstream_buffers_used = 0;
  380. }
  381. #endif /* CONFIG_H264_VDPAU_DECODER */
  382. #if CONFIG_MPEG_VDPAU_DECODER || CONFIG_MPEG1_VDPAU_DECODER
  383. void ff_vdpau_mpeg_picture_complete(MpegEncContext *s, const uint8_t *buf,
  384. int buf_size, int slice_count)
  385. {
  386. struct vdpau_render_state *render, *last, *next;
  387. int i;
  388. if (!s->current_picture_ptr) return;
  389. render = (struct vdpau_render_state *)s->current_picture_ptr->f->data[0];
  390. assert(render);
  391. /* fill VdpPictureInfoMPEG1Or2 struct */
  392. render->info.mpeg.picture_structure = s->picture_structure;
  393. render->info.mpeg.picture_coding_type = s->pict_type;
  394. render->info.mpeg.intra_dc_precision = s->intra_dc_precision;
  395. render->info.mpeg.frame_pred_frame_dct = s->frame_pred_frame_dct;
  396. render->info.mpeg.concealment_motion_vectors = s->concealment_motion_vectors;
  397. render->info.mpeg.intra_vlc_format = s->intra_vlc_format;
  398. render->info.mpeg.alternate_scan = s->alternate_scan;
  399. render->info.mpeg.q_scale_type = s->q_scale_type;
  400. render->info.mpeg.top_field_first = s->top_field_first;
  401. render->info.mpeg.full_pel_forward_vector = s->full_pel[0]; // MPEG-1 only. Set 0 for MPEG-2
  402. render->info.mpeg.full_pel_backward_vector = s->full_pel[1]; // MPEG-1 only. Set 0 for MPEG-2
  403. render->info.mpeg.f_code[0][0] = s->mpeg_f_code[0][0]; // For MPEG-1 fill both horiz. & vert.
  404. render->info.mpeg.f_code[0][1] = s->mpeg_f_code[0][1];
  405. render->info.mpeg.f_code[1][0] = s->mpeg_f_code[1][0];
  406. render->info.mpeg.f_code[1][1] = s->mpeg_f_code[1][1];
  407. for (i = 0; i < 64; ++i) {
  408. render->info.mpeg.intra_quantizer_matrix[i] = s->intra_matrix[i];
  409. render->info.mpeg.non_intra_quantizer_matrix[i] = s->inter_matrix[i];
  410. }
  411. render->info.mpeg.forward_reference = VDP_INVALID_HANDLE;
  412. render->info.mpeg.backward_reference = VDP_INVALID_HANDLE;
  413. switch(s->pict_type){
  414. case AV_PICTURE_TYPE_B:
  415. next = (struct vdpau_render_state *)s->next_picture.f->data[0];
  416. assert(next);
  417. render->info.mpeg.backward_reference = next->surface;
  418. // no return here, going to set forward prediction
  419. case AV_PICTURE_TYPE_P:
  420. last = (struct vdpau_render_state *)s->last_picture.f->data[0];
  421. if (!last) // FIXME: Does this test make sense?
  422. last = render; // predict second field from the first
  423. render->info.mpeg.forward_reference = last->surface;
  424. }
  425. ff_vdpau_add_data_chunk(s->current_picture_ptr->f->data[0], buf, buf_size);
  426. render->info.mpeg.slice_count = slice_count;
  427. if (slice_count)
  428. ff_mpeg_draw_horiz_band(s, 0, s->avctx->height);
  429. render->bitstream_buffers_used = 0;
  430. }
  431. #endif /* CONFIG_MPEG_VDPAU_DECODER || CONFIG_MPEG1_VDPAU_DECODER */
  432. #if CONFIG_VC1_VDPAU_DECODER
  433. void ff_vdpau_vc1_decode_picture(MpegEncContext *s, const uint8_t *buf,
  434. int buf_size)
  435. {
  436. VC1Context *v = s->avctx->priv_data;
  437. struct vdpau_render_state *render, *last, *next;
  438. render = (struct vdpau_render_state *)s->current_picture.f->data[0];
  439. assert(render);
  440. /* fill LvPictureInfoVC1 struct */
  441. render->info.vc1.frame_coding_mode = v->fcm ? v->fcm + 1 : 0;
  442. render->info.vc1.postprocflag = v->postprocflag;
  443. render->info.vc1.pulldown = v->broadcast;
  444. render->info.vc1.interlace = v->interlace;
  445. render->info.vc1.tfcntrflag = v->tfcntrflag;
  446. render->info.vc1.finterpflag = v->finterpflag;
  447. render->info.vc1.psf = v->psf;
  448. render->info.vc1.dquant = v->dquant;
  449. render->info.vc1.panscan_flag = v->panscanflag;
  450. render->info.vc1.refdist_flag = v->refdist_flag;
  451. render->info.vc1.quantizer = v->quantizer_mode;
  452. render->info.vc1.extended_mv = v->extended_mv;
  453. render->info.vc1.extended_dmv = v->extended_dmv;
  454. render->info.vc1.overlap = v->overlap;
  455. render->info.vc1.vstransform = v->vstransform;
  456. render->info.vc1.loopfilter = v->s.loop_filter;
  457. render->info.vc1.fastuvmc = v->fastuvmc;
  458. render->info.vc1.range_mapy_flag = v->range_mapy_flag;
  459. render->info.vc1.range_mapy = v->range_mapy;
  460. render->info.vc1.range_mapuv_flag = v->range_mapuv_flag;
  461. render->info.vc1.range_mapuv = v->range_mapuv;
  462. /* Specific to simple/main profile only */
  463. render->info.vc1.multires = v->multires;
  464. render->info.vc1.syncmarker = v->resync_marker;
  465. render->info.vc1.rangered = v->rangered | (v->rangeredfrm << 1);
  466. render->info.vc1.maxbframes = v->s.max_b_frames;
  467. render->info.vc1.deblockEnable = v->postprocflag & 1;
  468. render->info.vc1.pquant = v->pq;
  469. render->info.vc1.forward_reference = VDP_INVALID_HANDLE;
  470. render->info.vc1.backward_reference = VDP_INVALID_HANDLE;
  471. if (v->bi_type)
  472. render->info.vc1.picture_type = 4;
  473. else
  474. render->info.vc1.picture_type = s->pict_type - 1 + s->pict_type / 3;
  475. switch(s->pict_type){
  476. case AV_PICTURE_TYPE_B:
  477. next = (struct vdpau_render_state *)s->next_picture.f->data[0];
  478. assert(next);
  479. render->info.vc1.backward_reference = next->surface;
  480. // no break here, going to set forward prediction
  481. case AV_PICTURE_TYPE_P:
  482. last = (struct vdpau_render_state *)s->last_picture.f->data[0];
  483. if (!last) // FIXME: Does this test make sense?
  484. last = render; // predict second field from the first
  485. render->info.vc1.forward_reference = last->surface;
  486. }
  487. ff_vdpau_add_data_chunk(s->current_picture_ptr->f->data[0], buf, buf_size);
  488. render->info.vc1.slice_count = 1;
  489. ff_mpeg_draw_horiz_band(s, 0, s->avctx->height);
  490. render->bitstream_buffers_used = 0;
  491. }
  492. #endif /* (CONFIG_VC1_VDPAU_DECODER */
  493. #if CONFIG_MPEG4_VDPAU_DECODER
  494. void ff_vdpau_mpeg4_decode_picture(Mpeg4DecContext *ctx, const uint8_t *buf,
  495. int buf_size)
  496. {
  497. MpegEncContext *s = &ctx->m;
  498. struct vdpau_render_state *render, *last, *next;
  499. int i;
  500. if (!s->current_picture_ptr) return;
  501. render = (struct vdpau_render_state *)s->current_picture_ptr->f->data[0];
  502. assert(render);
  503. /* fill VdpPictureInfoMPEG4Part2 struct */
  504. render->info.mpeg4.trd[0] = s->pp_time;
  505. render->info.mpeg4.trb[0] = s->pb_time;
  506. render->info.mpeg4.trd[1] = s->pp_field_time >> 1;
  507. render->info.mpeg4.trb[1] = s->pb_field_time >> 1;
  508. render->info.mpeg4.vop_time_increment_resolution = s->avctx->time_base.den;
  509. render->info.mpeg4.vop_coding_type = 0;
  510. render->info.mpeg4.vop_fcode_forward = s->f_code;
  511. render->info.mpeg4.vop_fcode_backward = s->b_code;
  512. render->info.mpeg4.resync_marker_disable = !ctx->resync_marker;
  513. render->info.mpeg4.interlaced = !s->progressive_sequence;
  514. render->info.mpeg4.quant_type = s->mpeg_quant;
  515. render->info.mpeg4.quarter_sample = s->quarter_sample;
  516. render->info.mpeg4.short_video_header = s->avctx->codec->id == AV_CODEC_ID_H263;
  517. render->info.mpeg4.rounding_control = s->no_rounding;
  518. render->info.mpeg4.alternate_vertical_scan_flag = s->alternate_scan;
  519. render->info.mpeg4.top_field_first = s->top_field_first;
  520. for (i = 0; i < 64; ++i) {
  521. render->info.mpeg4.intra_quantizer_matrix[i] = s->intra_matrix[i];
  522. render->info.mpeg4.non_intra_quantizer_matrix[i] = s->inter_matrix[i];
  523. }
  524. render->info.mpeg4.forward_reference = VDP_INVALID_HANDLE;
  525. render->info.mpeg4.backward_reference = VDP_INVALID_HANDLE;
  526. switch (s->pict_type) {
  527. case AV_PICTURE_TYPE_B:
  528. next = (struct vdpau_render_state *)s->next_picture.f->data[0];
  529. assert(next);
  530. render->info.mpeg4.backward_reference = next->surface;
  531. render->info.mpeg4.vop_coding_type = 2;
  532. // no break here, going to set forward prediction
  533. case AV_PICTURE_TYPE_P:
  534. last = (struct vdpau_render_state *)s->last_picture.f->data[0];
  535. assert(last);
  536. render->info.mpeg4.forward_reference = last->surface;
  537. }
  538. ff_vdpau_add_data_chunk(s->current_picture_ptr->f->data[0], buf, buf_size);
  539. ff_mpeg_draw_horiz_band(s, 0, s->avctx->height);
  540. render->bitstream_buffers_used = 0;
  541. }
  542. #endif /* CONFIG_MPEG4_VDPAU_DECODER */
  543. int av_vdpau_get_profile(AVCodecContext *avctx, VdpDecoderProfile *profile)
  544. {
  545. #define PROFILE(prof) \
  546. do { \
  547. *profile = VDP_DECODER_PROFILE_##prof; \
  548. return 0; \
  549. } while (0)
  550. switch (avctx->codec_id) {
  551. case AV_CODEC_ID_MPEG1VIDEO: PROFILE(MPEG1);
  552. case AV_CODEC_ID_MPEG2VIDEO:
  553. switch (avctx->profile) {
  554. case FF_PROFILE_MPEG2_MAIN: PROFILE(MPEG2_MAIN);
  555. case FF_PROFILE_MPEG2_SIMPLE: PROFILE(MPEG2_SIMPLE);
  556. default: return AVERROR(EINVAL);
  557. }
  558. case AV_CODEC_ID_H263: PROFILE(MPEG4_PART2_ASP);
  559. case AV_CODEC_ID_MPEG4:
  560. switch (avctx->profile) {
  561. case FF_PROFILE_MPEG4_SIMPLE: PROFILE(MPEG4_PART2_SP);
  562. case FF_PROFILE_MPEG4_ADVANCED_SIMPLE: PROFILE(MPEG4_PART2_ASP);
  563. default: return AVERROR(EINVAL);
  564. }
  565. case AV_CODEC_ID_H264:
  566. switch (avctx->profile & ~FF_PROFILE_H264_INTRA) {
  567. case FF_PROFILE_H264_BASELINE: PROFILE(H264_BASELINE);
  568. case FF_PROFILE_H264_CONSTRAINED_BASELINE:
  569. case FF_PROFILE_H264_MAIN: PROFILE(H264_MAIN);
  570. case FF_PROFILE_H264_HIGH: PROFILE(H264_HIGH);
  571. #ifdef VDP_DECODER_PROFILE_H264_EXTENDED
  572. case FF_PROFILE_H264_EXTENDED: PROFILE(H264_EXTENDED);
  573. #endif
  574. default: return AVERROR(EINVAL);
  575. }
  576. case AV_CODEC_ID_WMV3:
  577. case AV_CODEC_ID_VC1:
  578. switch (avctx->profile) {
  579. case FF_PROFILE_VC1_SIMPLE: PROFILE(VC1_SIMPLE);
  580. case FF_PROFILE_VC1_MAIN: PROFILE(VC1_MAIN);
  581. case FF_PROFILE_VC1_ADVANCED: PROFILE(VC1_ADVANCED);
  582. default: return AVERROR(EINVAL);
  583. }
  584. }
  585. return AVERROR(EINVAL);
  586. #undef PROFILE
  587. }
  588. AVVDPAUContext *av_vdpau_alloc_context(void)
  589. {
  590. return av_mallocz(sizeof(AVVDPAUContext));
  591. }
  592. int av_vdpau_bind_context(AVCodecContext *avctx, VdpDevice device,
  593. VdpGetProcAddress *get_proc, unsigned flags)
  594. {
  595. VDPAUHWContext *hwctx;
  596. if (flags & ~AV_HWACCEL_FLAG_IGNORE_LEVEL)
  597. return AVERROR(EINVAL);
  598. if (av_reallocp(&avctx->hwaccel_context, sizeof(*hwctx)))
  599. return AVERROR(ENOMEM);
  600. hwctx = avctx->hwaccel_context;
  601. memset(hwctx, 0, sizeof(*hwctx));
  602. hwctx->context.decoder = VDP_INVALID_HANDLE;
  603. hwctx->device = device;
  604. hwctx->get_proc_address = get_proc;
  605. hwctx->flags = flags;
  606. hwctx->reset = 1;
  607. return 0;
  608. }
  609. /* @}*/