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cuviddec.c
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1 /*
2  * Nvidia CUVID decoder
3  * Copyright (c) 2016 Timo Rothenpieler <timo@rothenpieler.org>
4  *
5  * This file is part of FFmpeg.
6  *
7  * FFmpeg is free software; you can redistribute it and/or
8  * modify it under the terms of the GNU Lesser General Public
9  * License as published by the Free Software Foundation; either
10  * version 2.1 of the License, or (at your option) any later version.
11  *
12  * FFmpeg is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15  * Lesser General Public License for more details.
16  *
17  * You should have received a copy of the GNU Lesser General Public
18  * License along with FFmpeg; if not, write to the Free Software
19  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20  */
21 
23 
24 #include "libavutil/buffer.h"
25 #include "libavutil/mathematics.h"
26 #include "libavutil/hwcontext.h"
28 #include "libavutil/fifo.h"
29 #include "libavutil/log.h"
30 #include "libavutil/opt.h"
31 #include "libavutil/pixdesc.h"
32 
33 #include "avcodec.h"
34 #include "decode.h"
35 #include "hwaccel.h"
36 #include "internal.h"
37 
38 typedef struct CuvidContext
39 {
41 
42  CUvideodecoder cudecoder;
43  CUvideoparser cuparser;
44 
45  char *cu_gpu;
48  char *crop_expr;
49  char *resize_expr;
50 
51  struct {
52  int left;
53  int top;
54  int right;
55  int bottom;
56  } crop;
57 
58  struct {
59  int width;
60  int height;
61  } resize;
62 
65 
67 
69 
72  int64_t prev_pts;
73 
76 
77  int *key_frame;
78 
79  cudaVideoCodec codec_type;
80  cudaVideoChromaFormat chroma_format;
81 
82  CUVIDDECODECAPS caps8, caps10, caps12;
83 
84  CUVIDPARSERPARAMS cuparseinfo;
85  CUVIDEOFORMATEX cuparse_ext;
86 
87  CudaFunctions *cudl;
88  CuvidFunctions *cvdl;
89 } CuvidContext;
90 
91 typedef struct CuvidParsedFrame
92 {
93  CUVIDPARSERDISPINFO dispinfo;
97 
98 static int check_cu(AVCodecContext *avctx, CUresult err, const char *func)
99 {
100  CuvidContext *ctx = avctx->priv_data;
101  const char *err_name;
102  const char *err_string;
103 
104  av_log(avctx, AV_LOG_TRACE, "Calling %s\n", func);
105 
106  if (err == CUDA_SUCCESS)
107  return 0;
108 
109  ctx->cudl->cuGetErrorName(err, &err_name);
110  ctx->cudl->cuGetErrorString(err, &err_string);
111 
112  av_log(avctx, AV_LOG_ERROR, "%s failed", func);
113  if (err_name && err_string)
114  av_log(avctx, AV_LOG_ERROR, " -> %s: %s", err_name, err_string);
115  av_log(avctx, AV_LOG_ERROR, "\n");
116 
117  return AVERROR_EXTERNAL;
118 }
119 
120 #define CHECK_CU(x) check_cu(avctx, (x), #x)
121 
122 static int CUDAAPI cuvid_handle_video_sequence(void *opaque, CUVIDEOFORMAT* format)
123 {
124  AVCodecContext *avctx = opaque;
125  CuvidContext *ctx = avctx->priv_data;
126  AVHWFramesContext *hwframe_ctx = (AVHWFramesContext*)ctx->hwframe->data;
127  CUVIDDECODECAPS *caps = NULL;
128  CUVIDDECODECREATEINFO cuinfo;
129  int surface_fmt;
130 
131  int old_width = avctx->width;
132  int old_height = avctx->height;
133 
135  AV_PIX_FMT_NONE, // Will be updated below
136  AV_PIX_FMT_NONE };
137 
138  av_log(avctx, AV_LOG_TRACE, "pfnSequenceCallback, progressive_sequence=%d\n", format->progressive_sequence);
139 
140  memset(&cuinfo, 0, sizeof(cuinfo));
141 
142  ctx->internal_error = 0;
143 
144  avctx->coded_width = cuinfo.ulWidth = format->coded_width;
145  avctx->coded_height = cuinfo.ulHeight = format->coded_height;
146 
147  // apply cropping
148  cuinfo.display_area.left = format->display_area.left + ctx->crop.left;
149  cuinfo.display_area.top = format->display_area.top + ctx->crop.top;
150  cuinfo.display_area.right = format->display_area.right - ctx->crop.right;
151  cuinfo.display_area.bottom = format->display_area.bottom - ctx->crop.bottom;
152 
153  // width and height need to be set before calling ff_get_format
154  if (ctx->resize_expr) {
155  avctx->width = ctx->resize.width;
156  avctx->height = ctx->resize.height;
157  } else {
158  avctx->width = cuinfo.display_area.right - cuinfo.display_area.left;
159  avctx->height = cuinfo.display_area.bottom - cuinfo.display_area.top;
160  }
161 
162  // target width/height need to be multiples of two
163  cuinfo.ulTargetWidth = avctx->width = (avctx->width + 1) & ~1;
164  cuinfo.ulTargetHeight = avctx->height = (avctx->height + 1) & ~1;
165 
166  // aspect ratio conversion, 1:1, depends on scaled resolution
167  cuinfo.target_rect.left = 0;
168  cuinfo.target_rect.top = 0;
169  cuinfo.target_rect.right = cuinfo.ulTargetWidth;
170  cuinfo.target_rect.bottom = cuinfo.ulTargetHeight;
171 
172  switch (format->bit_depth_luma_minus8) {
173  case 0: // 8-bit
175  caps = &ctx->caps8;
176  break;
177  case 2: // 10-bit
179  caps = &ctx->caps10;
180  break;
181  case 4: // 12-bit
183  caps = &ctx->caps12;
184  break;
185  default:
186  break;
187  }
188 
189  if (!caps || !caps->bIsSupported) {
190  av_log(avctx, AV_LOG_ERROR, "unsupported bit depth: %d\n",
191  format->bit_depth_luma_minus8 + 8);
192  ctx->internal_error = AVERROR(EINVAL);
193  return 0;
194  }
195 
196  surface_fmt = ff_get_format(avctx, pix_fmts);
197  if (surface_fmt < 0) {
198  av_log(avctx, AV_LOG_ERROR, "ff_get_format failed: %d\n", surface_fmt);
199  ctx->internal_error = AVERROR(EINVAL);
200  return 0;
201  }
202 
203  av_log(avctx, AV_LOG_VERBOSE, "Formats: Original: %s | HW: %s | SW: %s\n",
204  av_get_pix_fmt_name(avctx->pix_fmt),
205  av_get_pix_fmt_name(surface_fmt),
206  av_get_pix_fmt_name(avctx->sw_pix_fmt));
207 
208  avctx->pix_fmt = surface_fmt;
209 
210  // Update our hwframe ctx, as the get_format callback might have refreshed it!
211  if (avctx->hw_frames_ctx) {
212  av_buffer_unref(&ctx->hwframe);
213 
214  ctx->hwframe = av_buffer_ref(avctx->hw_frames_ctx);
215  if (!ctx->hwframe) {
216  ctx->internal_error = AVERROR(ENOMEM);
217  return 0;
218  }
219 
220  hwframe_ctx = (AVHWFramesContext*)ctx->hwframe->data;
221  }
222 
223  ff_set_sar(avctx, av_div_q(
224  (AVRational){ format->display_aspect_ratio.x, format->display_aspect_ratio.y },
225  (AVRational){ avctx->width, avctx->height }));
226 
227  ctx->deint_mode_current = format->progressive_sequence
228  ? cudaVideoDeinterlaceMode_Weave
229  : ctx->deint_mode;
230 
231  if (!format->progressive_sequence && ctx->deint_mode_current == cudaVideoDeinterlaceMode_Weave)
233  else
234  avctx->flags &= ~AV_CODEC_FLAG_INTERLACED_DCT;
235 
236  if (format->video_signal_description.video_full_range_flag)
237  avctx->color_range = AVCOL_RANGE_JPEG;
238  else
239  avctx->color_range = AVCOL_RANGE_MPEG;
240 
241  avctx->color_primaries = format->video_signal_description.color_primaries;
242  avctx->color_trc = format->video_signal_description.transfer_characteristics;
243  avctx->colorspace = format->video_signal_description.matrix_coefficients;
244 
245  if (format->bitrate)
246  avctx->bit_rate = format->bitrate;
247 
248  if (format->frame_rate.numerator && format->frame_rate.denominator) {
249  avctx->framerate.num = format->frame_rate.numerator;
250  avctx->framerate.den = format->frame_rate.denominator;
251  }
252 
253  if (ctx->cudecoder
254  && avctx->coded_width == format->coded_width
255  && avctx->coded_height == format->coded_height
256  && avctx->width == old_width
257  && avctx->height == old_height
258  && ctx->chroma_format == format->chroma_format
259  && ctx->codec_type == format->codec)
260  return 1;
261 
262  if (ctx->cudecoder) {
263  av_log(avctx, AV_LOG_TRACE, "Re-initializing decoder\n");
264  ctx->internal_error = CHECK_CU(ctx->cvdl->cuvidDestroyDecoder(ctx->cudecoder));
265  if (ctx->internal_error < 0)
266  return 0;
267  ctx->cudecoder = NULL;
268  }
269 
270  if (hwframe_ctx->pool && (
271  hwframe_ctx->width < avctx->width ||
272  hwframe_ctx->height < avctx->height ||
273  hwframe_ctx->format != AV_PIX_FMT_CUDA ||
274  hwframe_ctx->sw_format != avctx->sw_pix_fmt)) {
275  av_log(avctx, AV_LOG_ERROR, "AVHWFramesContext is already initialized with incompatible parameters\n");
276  av_log(avctx, AV_LOG_DEBUG, "width: %d <-> %d\n", hwframe_ctx->width, avctx->width);
277  av_log(avctx, AV_LOG_DEBUG, "height: %d <-> %d\n", hwframe_ctx->height, avctx->height);
278  av_log(avctx, AV_LOG_DEBUG, "format: %s <-> cuda\n", av_get_pix_fmt_name(hwframe_ctx->format));
279  av_log(avctx, AV_LOG_DEBUG, "sw_format: %s <-> %s\n",
280  av_get_pix_fmt_name(hwframe_ctx->sw_format), av_get_pix_fmt_name(avctx->sw_pix_fmt));
281  ctx->internal_error = AVERROR(EINVAL);
282  return 0;
283  }
284 
285  if (format->chroma_format != cudaVideoChromaFormat_420) {
286  av_log(avctx, AV_LOG_ERROR, "Chroma formats other than 420 are not supported\n");
287  ctx->internal_error = AVERROR(EINVAL);
288  return 0;
289  }
290 
291  ctx->chroma_format = format->chroma_format;
292 
293  cuinfo.CodecType = ctx->codec_type = format->codec;
294  cuinfo.ChromaFormat = format->chroma_format;
295 
296  switch (avctx->sw_pix_fmt) {
297  case AV_PIX_FMT_NV12:
298  cuinfo.OutputFormat = cudaVideoSurfaceFormat_NV12;
299  break;
300  case AV_PIX_FMT_P010:
301  case AV_PIX_FMT_P016:
302  cuinfo.OutputFormat = cudaVideoSurfaceFormat_P016;
303  break;
304  default:
305  av_log(avctx, AV_LOG_ERROR, "Output formats other than NV12, P010 or P016 are not supported\n");
306  ctx->internal_error = AVERROR(EINVAL);
307  return 0;
308  }
309 
310  cuinfo.ulNumDecodeSurfaces = ctx->nb_surfaces;
311  cuinfo.ulNumOutputSurfaces = 1;
312  cuinfo.ulCreationFlags = cudaVideoCreate_PreferCUVID;
313  cuinfo.bitDepthMinus8 = format->bit_depth_luma_minus8;
314  cuinfo.DeinterlaceMode = ctx->deint_mode_current;
315 
316  if (ctx->deint_mode_current != cudaVideoDeinterlaceMode_Weave && !ctx->drop_second_field)
317  avctx->framerate = av_mul_q(avctx->framerate, (AVRational){2, 1});
318 
319  ctx->internal_error = CHECK_CU(ctx->cvdl->cuvidCreateDecoder(&ctx->cudecoder, &cuinfo));
320  if (ctx->internal_error < 0)
321  return 0;
322 
323  if (!hwframe_ctx->pool) {
324  hwframe_ctx->format = AV_PIX_FMT_CUDA;
325  hwframe_ctx->sw_format = avctx->sw_pix_fmt;
326  hwframe_ctx->width = avctx->width;
327  hwframe_ctx->height = avctx->height;
328 
329  if ((ctx->internal_error = av_hwframe_ctx_init(ctx->hwframe)) < 0) {
330  av_log(avctx, AV_LOG_ERROR, "av_hwframe_ctx_init failed\n");
331  return 0;
332  }
333  }
334 
335  return 1;
336 }
337 
338 static int CUDAAPI cuvid_handle_picture_decode(void *opaque, CUVIDPICPARAMS* picparams)
339 {
340  AVCodecContext *avctx = opaque;
341  CuvidContext *ctx = avctx->priv_data;
342 
343  av_log(avctx, AV_LOG_TRACE, "pfnDecodePicture\n");
344 
345  ctx->key_frame[picparams->CurrPicIdx] = picparams->intra_pic_flag;
346 
347  ctx->internal_error = CHECK_CU(ctx->cvdl->cuvidDecodePicture(ctx->cudecoder, picparams));
348  if (ctx->internal_error < 0)
349  return 0;
350 
351  return 1;
352 }
353 
354 static int CUDAAPI cuvid_handle_picture_display(void *opaque, CUVIDPARSERDISPINFO* dispinfo)
355 {
356  AVCodecContext *avctx = opaque;
357  CuvidContext *ctx = avctx->priv_data;
358  CuvidParsedFrame parsed_frame = { { 0 } };
359 
360  parsed_frame.dispinfo = *dispinfo;
361  ctx->internal_error = 0;
362 
363  if (ctx->deint_mode_current == cudaVideoDeinterlaceMode_Weave) {
364  av_fifo_generic_write(ctx->frame_queue, &parsed_frame, sizeof(CuvidParsedFrame), NULL);
365  } else {
366  parsed_frame.is_deinterlacing = 1;
367  av_fifo_generic_write(ctx->frame_queue, &parsed_frame, sizeof(CuvidParsedFrame), NULL);
368  if (!ctx->drop_second_field) {
369  parsed_frame.second_field = 1;
370  av_fifo_generic_write(ctx->frame_queue, &parsed_frame, sizeof(CuvidParsedFrame), NULL);
371  }
372  }
373 
374  return 1;
375 }
376 
378 {
379  CuvidContext *ctx = avctx->priv_data;
380 
381  int delay = ctx->cuparseinfo.ulMaxDisplayDelay;
382  if (ctx->deint_mode != cudaVideoDeinterlaceMode_Weave && !ctx->drop_second_field)
383  delay *= 2;
384 
385  return (av_fifo_size(ctx->frame_queue) / sizeof(CuvidParsedFrame)) + delay >= ctx->nb_surfaces;
386 }
387 
388 static int cuvid_decode_packet(AVCodecContext *avctx, const AVPacket *avpkt)
389 {
390  CuvidContext *ctx = avctx->priv_data;
391  AVHWDeviceContext *device_ctx = (AVHWDeviceContext*)ctx->hwdevice->data;
392  AVCUDADeviceContext *device_hwctx = device_ctx->hwctx;
393  CUcontext dummy, cuda_ctx = device_hwctx->cuda_ctx;
394  CUVIDSOURCEDATAPACKET cupkt;
395  AVPacket filter_packet = { 0 };
396  AVPacket filtered_packet = { 0 };
397  int ret = 0, eret = 0, is_flush = ctx->decoder_flushing;
398 
399  av_log(avctx, AV_LOG_TRACE, "cuvid_decode_packet\n");
400 
401  if (is_flush && avpkt && avpkt->size)
402  return AVERROR_EOF;
403 
404  if (cuvid_is_buffer_full(avctx) && avpkt && avpkt->size)
405  return AVERROR(EAGAIN);
406 
407  if (ctx->bsf && avpkt && avpkt->size) {
408  if ((ret = av_packet_ref(&filter_packet, avpkt)) < 0) {
409  av_log(avctx, AV_LOG_ERROR, "av_packet_ref failed\n");
410  return ret;
411  }
412 
413  if ((ret = av_bsf_send_packet(ctx->bsf, &filter_packet)) < 0) {
414  av_log(avctx, AV_LOG_ERROR, "av_bsf_send_packet failed\n");
416  return ret;
417  }
418 
419  if ((ret = av_bsf_receive_packet(ctx->bsf, &filtered_packet)) < 0) {
420  av_log(avctx, AV_LOG_ERROR, "av_bsf_receive_packet failed\n");
421  return ret;
422  }
423 
424  avpkt = &filtered_packet;
425  }
426 
427  ret = CHECK_CU(ctx->cudl->cuCtxPushCurrent(cuda_ctx));
428  if (ret < 0) {
429  av_packet_unref(&filtered_packet);
430  return ret;
431  }
432 
433  memset(&cupkt, 0, sizeof(cupkt));
434 
435  if (avpkt && avpkt->size) {
436  cupkt.payload_size = avpkt->size;
437  cupkt.payload = avpkt->data;
438 
439  if (avpkt->pts != AV_NOPTS_VALUE) {
440  cupkt.flags = CUVID_PKT_TIMESTAMP;
441  if (avctx->pkt_timebase.num && avctx->pkt_timebase.den)
442  cupkt.timestamp = av_rescale_q(avpkt->pts, avctx->pkt_timebase, (AVRational){1, 10000000});
443  else
444  cupkt.timestamp = avpkt->pts;
445  }
446  } else {
447  cupkt.flags = CUVID_PKT_ENDOFSTREAM;
448  ctx->decoder_flushing = 1;
449  }
450 
451  ret = CHECK_CU(ctx->cvdl->cuvidParseVideoData(ctx->cuparser, &cupkt));
452 
453  av_packet_unref(&filtered_packet);
454 
455  if (ret < 0)
456  goto error;
457 
458  // cuvidParseVideoData doesn't return an error just because stuff failed...
459  if (ctx->internal_error) {
460  av_log(avctx, AV_LOG_ERROR, "cuvid decode callback error\n");
461  ret = ctx->internal_error;
462  goto error;
463  }
464 
465 error:
466  eret = CHECK_CU(ctx->cudl->cuCtxPopCurrent(&dummy));
467 
468  if (eret < 0)
469  return eret;
470  else if (ret < 0)
471  return ret;
472  else if (is_flush)
473  return AVERROR_EOF;
474  else
475  return 0;
476 }
477 
479 {
480  CuvidContext *ctx = avctx->priv_data;
481  AVHWDeviceContext *device_ctx = (AVHWDeviceContext*)ctx->hwdevice->data;
482  AVCUDADeviceContext *device_hwctx = device_ctx->hwctx;
483  CUcontext dummy, cuda_ctx = device_hwctx->cuda_ctx;
484  CUdeviceptr mapped_frame = 0;
485  int ret = 0, eret = 0;
486 
487  av_log(avctx, AV_LOG_TRACE, "cuvid_output_frame\n");
488 
489  if (ctx->decoder_flushing) {
490  ret = cuvid_decode_packet(avctx, NULL);
491  if (ret < 0 && ret != AVERROR_EOF)
492  return ret;
493  }
494 
495  if (!cuvid_is_buffer_full(avctx)) {
496  AVPacket pkt = {0};
497  ret = ff_decode_get_packet(avctx, &pkt);
498  if (ret < 0 && ret != AVERROR_EOF)
499  return ret;
500  ret = cuvid_decode_packet(avctx, &pkt);
501  av_packet_unref(&pkt);
502  // cuvid_is_buffer_full() should avoid this.
503  if (ret == AVERROR(EAGAIN))
504  ret = AVERROR_EXTERNAL;
505  if (ret < 0 && ret != AVERROR_EOF)
506  return ret;
507  }
508 
509  ret = CHECK_CU(ctx->cudl->cuCtxPushCurrent(cuda_ctx));
510  if (ret < 0)
511  return ret;
512 
513  if (av_fifo_size(ctx->frame_queue)) {
514  CuvidParsedFrame parsed_frame;
515  CUVIDPROCPARAMS params;
516  unsigned int pitch = 0;
517  int offset = 0;
518  int i;
519 
520  av_fifo_generic_read(ctx->frame_queue, &parsed_frame, sizeof(CuvidParsedFrame), NULL);
521 
522  memset(&params, 0, sizeof(params));
523  params.progressive_frame = parsed_frame.dispinfo.progressive_frame;
524  params.second_field = parsed_frame.second_field;
525  params.top_field_first = parsed_frame.dispinfo.top_field_first;
526 
527  ret = CHECK_CU(ctx->cvdl->cuvidMapVideoFrame(ctx->cudecoder, parsed_frame.dispinfo.picture_index, &mapped_frame, &pitch, &params));
528  if (ret < 0)
529  goto error;
530 
531  if (avctx->pix_fmt == AV_PIX_FMT_CUDA) {
532  ret = av_hwframe_get_buffer(ctx->hwframe, frame, 0);
533  if (ret < 0) {
534  av_log(avctx, AV_LOG_ERROR, "av_hwframe_get_buffer failed\n");
535  goto error;
536  }
537 
538  ret = ff_decode_frame_props(avctx, frame);
539  if (ret < 0) {
540  av_log(avctx, AV_LOG_ERROR, "ff_decode_frame_props failed\n");
541  goto error;
542  }
543 
544  for (i = 0; i < 2; i++) {
545  CUDA_MEMCPY2D cpy = {
546  .srcMemoryType = CU_MEMORYTYPE_DEVICE,
547  .dstMemoryType = CU_MEMORYTYPE_DEVICE,
548  .srcDevice = mapped_frame,
549  .dstDevice = (CUdeviceptr)frame->data[i],
550  .srcPitch = pitch,
551  .dstPitch = frame->linesize[i],
552  .srcY = offset,
553  .WidthInBytes = FFMIN(pitch, frame->linesize[i]),
554  .Height = avctx->height >> (i ? 1 : 0),
555  };
556 
557  ret = CHECK_CU(ctx->cudl->cuMemcpy2DAsync(&cpy, device_hwctx->stream));
558  if (ret < 0)
559  goto error;
560 
561  offset += avctx->height;
562  }
563 
564  ret = CHECK_CU(ctx->cudl->cuStreamSynchronize(device_hwctx->stream));
565  if (ret < 0)
566  goto error;
567  } else if (avctx->pix_fmt == AV_PIX_FMT_NV12 ||
568  avctx->pix_fmt == AV_PIX_FMT_P010 ||
569  avctx->pix_fmt == AV_PIX_FMT_P016) {
570  AVFrame *tmp_frame = av_frame_alloc();
571  if (!tmp_frame) {
572  av_log(avctx, AV_LOG_ERROR, "av_frame_alloc failed\n");
573  ret = AVERROR(ENOMEM);
574  goto error;
575  }
576 
577  tmp_frame->format = AV_PIX_FMT_CUDA;
578  tmp_frame->hw_frames_ctx = av_buffer_ref(ctx->hwframe);
579  tmp_frame->data[0] = (uint8_t*)mapped_frame;
580  tmp_frame->linesize[0] = pitch;
581  tmp_frame->data[1] = (uint8_t*)(mapped_frame + avctx->height * pitch);
582  tmp_frame->linesize[1] = pitch;
583  tmp_frame->width = avctx->width;
584  tmp_frame->height = avctx->height;
585 
586  ret = ff_get_buffer(avctx, frame, 0);
587  if (ret < 0) {
588  av_log(avctx, AV_LOG_ERROR, "ff_get_buffer failed\n");
589  av_frame_free(&tmp_frame);
590  goto error;
591  }
592 
593  ret = av_hwframe_transfer_data(frame, tmp_frame, 0);
594  if (ret) {
595  av_log(avctx, AV_LOG_ERROR, "av_hwframe_transfer_data failed\n");
596  av_frame_free(&tmp_frame);
597  goto error;
598  }
599  av_frame_free(&tmp_frame);
600  } else {
601  ret = AVERROR_BUG;
602  goto error;
603  }
604 
605  frame->key_frame = ctx->key_frame[parsed_frame.dispinfo.picture_index];
606  frame->width = avctx->width;
607  frame->height = avctx->height;
608  if (avctx->pkt_timebase.num && avctx->pkt_timebase.den)
609  frame->pts = av_rescale_q(parsed_frame.dispinfo.timestamp, (AVRational){1, 10000000}, avctx->pkt_timebase);
610  else
611  frame->pts = parsed_frame.dispinfo.timestamp;
612 
613  if (parsed_frame.second_field) {
614  if (ctx->prev_pts == INT64_MIN) {
615  ctx->prev_pts = frame->pts;
616  frame->pts += (avctx->pkt_timebase.den * avctx->framerate.den) / (avctx->pkt_timebase.num * avctx->framerate.num);
617  } else {
618  int pts_diff = (frame->pts - ctx->prev_pts) / 2;
619  ctx->prev_pts = frame->pts;
620  frame->pts += pts_diff;
621  }
622  }
623 
624  /* CUVIDs opaque reordering breaks the internal pkt logic.
625  * So set pkt_pts and clear all the other pkt_ fields.
626  */
627 #if FF_API_PKT_PTS
629  frame->pkt_pts = frame->pts;
631 #endif
632  frame->pkt_pos = -1;
633  frame->pkt_duration = 0;
634  frame->pkt_size = -1;
635 
636  frame->interlaced_frame = !parsed_frame.is_deinterlacing && !parsed_frame.dispinfo.progressive_frame;
637 
638  if (frame->interlaced_frame)
639  frame->top_field_first = parsed_frame.dispinfo.top_field_first;
640  } else if (ctx->decoder_flushing) {
641  ret = AVERROR_EOF;
642  } else {
643  ret = AVERROR(EAGAIN);
644  }
645 
646 error:
647  if (mapped_frame)
648  eret = CHECK_CU(ctx->cvdl->cuvidUnmapVideoFrame(ctx->cudecoder, mapped_frame));
649 
650  eret = CHECK_CU(ctx->cudl->cuCtxPopCurrent(&dummy));
651 
652  if (eret < 0)
653  return eret;
654  else
655  return ret;
656 }
657 
658 static int cuvid_decode_frame(AVCodecContext *avctx, void *data, int *got_frame, AVPacket *avpkt)
659 {
660  CuvidContext *ctx = avctx->priv_data;
661  AVFrame *frame = data;
662  int ret = 0;
663 
664  av_log(avctx, AV_LOG_TRACE, "cuvid_decode_frame\n");
665 
666  if (ctx->deint_mode_current != cudaVideoDeinterlaceMode_Weave) {
667  av_log(avctx, AV_LOG_ERROR, "Deinterlacing is not supported via the old API\n");
668  return AVERROR(EINVAL);
669  }
670 
671  if (!ctx->decoder_flushing) {
672  ret = cuvid_decode_packet(avctx, avpkt);
673  if (ret < 0)
674  return ret;
675  }
676 
677  ret = cuvid_output_frame(avctx, frame);
678  if (ret == AVERROR(EAGAIN) || ret == AVERROR_EOF) {
679  *got_frame = 0;
680  } else if (ret < 0) {
681  return ret;
682  } else {
683  *got_frame = 1;
684  }
685 
686  return 0;
687 }
688 
690 {
691  CuvidContext *ctx = avctx->priv_data;
692 
693  av_fifo_freep(&ctx->frame_queue);
694 
695  if (ctx->bsf)
696  av_bsf_free(&ctx->bsf);
697 
698  if (ctx->cuparser)
699  ctx->cvdl->cuvidDestroyVideoParser(ctx->cuparser);
700 
701  if (ctx->cudecoder)
702  ctx->cvdl->cuvidDestroyDecoder(ctx->cudecoder);
703 
704  ctx->cudl = NULL;
705 
706  av_buffer_unref(&ctx->hwframe);
707  av_buffer_unref(&ctx->hwdevice);
708 
709  av_freep(&ctx->key_frame);
710 
711  cuvid_free_functions(&ctx->cvdl);
712 
713  return 0;
714 }
715 
717  const CUVIDPARSERPARAMS *cuparseinfo,
718  int probed_width,
719  int probed_height,
720  int bit_depth)
721 {
722  CuvidContext *ctx = avctx->priv_data;
723  CUVIDDECODECAPS *caps;
724  int res8 = 0, res10 = 0, res12 = 0;
725 
726  if (!ctx->cvdl->cuvidGetDecoderCaps) {
727  av_log(avctx, AV_LOG_WARNING, "Used Nvidia driver is too old to perform a capability check.\n");
728  av_log(avctx, AV_LOG_WARNING, "The minimum required version is "
729 #if defined(_WIN32) || defined(__CYGWIN__)
730  "378.66"
731 #else
732  "378.13"
733 #endif
734  ". Continuing blind.\n");
735  ctx->caps8.bIsSupported = ctx->caps10.bIsSupported = 1;
736  // 12 bit was not supported before the capability check was introduced, so disable it.
737  ctx->caps12.bIsSupported = 0;
738  return 0;
739  }
740 
741  ctx->caps8.eCodecType = ctx->caps10.eCodecType = ctx->caps12.eCodecType
742  = cuparseinfo->CodecType;
743  ctx->caps8.eChromaFormat = ctx->caps10.eChromaFormat = ctx->caps12.eChromaFormat
744  = cudaVideoChromaFormat_420;
745 
746  ctx->caps8.nBitDepthMinus8 = 0;
747  ctx->caps10.nBitDepthMinus8 = 2;
748  ctx->caps12.nBitDepthMinus8 = 4;
749 
750  res8 = CHECK_CU(ctx->cvdl->cuvidGetDecoderCaps(&ctx->caps8));
751  res10 = CHECK_CU(ctx->cvdl->cuvidGetDecoderCaps(&ctx->caps10));
752  res12 = CHECK_CU(ctx->cvdl->cuvidGetDecoderCaps(&ctx->caps12));
753 
754  av_log(avctx, AV_LOG_VERBOSE, "CUVID capabilities for %s:\n", avctx->codec->name);
755  av_log(avctx, AV_LOG_VERBOSE, "8 bit: supported: %d, min_width: %d, max_width: %d, min_height: %d, max_height: %d\n",
756  ctx->caps8.bIsSupported, ctx->caps8.nMinWidth, ctx->caps8.nMaxWidth, ctx->caps8.nMinHeight, ctx->caps8.nMaxHeight);
757  av_log(avctx, AV_LOG_VERBOSE, "10 bit: supported: %d, min_width: %d, max_width: %d, min_height: %d, max_height: %d\n",
758  ctx->caps10.bIsSupported, ctx->caps10.nMinWidth, ctx->caps10.nMaxWidth, ctx->caps10.nMinHeight, ctx->caps10.nMaxHeight);
759  av_log(avctx, AV_LOG_VERBOSE, "12 bit: supported: %d, min_width: %d, max_width: %d, min_height: %d, max_height: %d\n",
760  ctx->caps12.bIsSupported, ctx->caps12.nMinWidth, ctx->caps12.nMaxWidth, ctx->caps12.nMinHeight, ctx->caps12.nMaxHeight);
761 
762  switch (bit_depth) {
763  case 10:
764  caps = &ctx->caps10;
765  if (res10 < 0)
766  return res10;
767  break;
768  case 12:
769  caps = &ctx->caps12;
770  if (res12 < 0)
771  return res12;
772  break;
773  default:
774  caps = &ctx->caps8;
775  if (res8 < 0)
776  return res8;
777  }
778 
779  if (!ctx->caps8.bIsSupported) {
780  av_log(avctx, AV_LOG_ERROR, "Codec %s is not supported.\n", avctx->codec->name);
781  return AVERROR(EINVAL);
782  }
783 
784  if (!caps->bIsSupported) {
785  av_log(avctx, AV_LOG_ERROR, "Bit depth %d is not supported.\n", bit_depth);
786  return AVERROR(EINVAL);
787  }
788 
789  if (probed_width > caps->nMaxWidth || probed_width < caps->nMinWidth) {
790  av_log(avctx, AV_LOG_ERROR, "Video width %d not within range from %d to %d\n",
791  probed_width, caps->nMinWidth, caps->nMaxWidth);
792  return AVERROR(EINVAL);
793  }
794 
795  if (probed_height > caps->nMaxHeight || probed_height < caps->nMinHeight) {
796  av_log(avctx, AV_LOG_ERROR, "Video height %d not within range from %d to %d\n",
797  probed_height, caps->nMinHeight, caps->nMaxHeight);
798  return AVERROR(EINVAL);
799  }
800 
801  return 0;
802 }
803 
805 {
806  CuvidContext *ctx = avctx->priv_data;
807  AVCUDADeviceContext *device_hwctx;
808  AVHWDeviceContext *device_ctx;
809  AVHWFramesContext *hwframe_ctx;
810  CUVIDSOURCEDATAPACKET seq_pkt;
811  CUcontext cuda_ctx = NULL;
812  CUcontext dummy;
813  const AVBitStreamFilter *bsf;
814  int ret = 0;
815 
818  AV_PIX_FMT_NONE };
819 
820  int probed_width = avctx->coded_width ? avctx->coded_width : 1280;
821  int probed_height = avctx->coded_height ? avctx->coded_height : 720;
822  int probed_bit_depth = 8;
823 
824  const AVPixFmtDescriptor *probe_desc = av_pix_fmt_desc_get(avctx->pix_fmt);
825  if (probe_desc && probe_desc->nb_components)
826  probed_bit_depth = probe_desc->comp[0].depth;
827 
828  // Accelerated transcoding scenarios with 'ffmpeg' require that the
829  // pix_fmt be set to AV_PIX_FMT_CUDA early. The sw_pix_fmt, and the
830  // pix_fmt for non-accelerated transcoding, do not need to be correct
831  // but need to be set to something. We arbitrarily pick NV12.
832  ret = ff_get_format(avctx, pix_fmts);
833  if (ret < 0) {
834  av_log(avctx, AV_LOG_ERROR, "ff_get_format failed: %d\n", ret);
835  return ret;
836  }
837  avctx->pix_fmt = ret;
838 
839  if (ctx->resize_expr && sscanf(ctx->resize_expr, "%dx%d",
840  &ctx->resize.width, &ctx->resize.height) != 2) {
841  av_log(avctx, AV_LOG_ERROR, "Invalid resize expressions\n");
842  ret = AVERROR(EINVAL);
843  goto error;
844  }
845 
846  if (ctx->crop_expr && sscanf(ctx->crop_expr, "%dx%dx%dx%d",
847  &ctx->crop.top, &ctx->crop.bottom,
848  &ctx->crop.left, &ctx->crop.right) != 4) {
849  av_log(avctx, AV_LOG_ERROR, "Invalid cropping expressions\n");
850  ret = AVERROR(EINVAL);
851  goto error;
852  }
853 
854  ret = cuvid_load_functions(&ctx->cvdl, avctx);
855  if (ret < 0) {
856  av_log(avctx, AV_LOG_ERROR, "Failed loading nvcuvid.\n");
857  goto error;
858  }
859 
860  ctx->frame_queue = av_fifo_alloc(ctx->nb_surfaces * sizeof(CuvidParsedFrame));
861  if (!ctx->frame_queue) {
862  ret = AVERROR(ENOMEM);
863  goto error;
864  }
865 
866  if (avctx->hw_frames_ctx) {
867  ctx->hwframe = av_buffer_ref(avctx->hw_frames_ctx);
868  if (!ctx->hwframe) {
869  ret = AVERROR(ENOMEM);
870  goto error;
871  }
872 
873  hwframe_ctx = (AVHWFramesContext*)ctx->hwframe->data;
874 
875  ctx->hwdevice = av_buffer_ref(hwframe_ctx->device_ref);
876  if (!ctx->hwdevice) {
877  ret = AVERROR(ENOMEM);
878  goto error;
879  }
880  } else {
881  if (avctx->hw_device_ctx) {
882  ctx->hwdevice = av_buffer_ref(avctx->hw_device_ctx);
883  if (!ctx->hwdevice) {
884  ret = AVERROR(ENOMEM);
885  goto error;
886  }
887  } else {
889  if (ret < 0)
890  goto error;
891  }
892 
894  if (!ctx->hwframe) {
895  av_log(avctx, AV_LOG_ERROR, "av_hwframe_ctx_alloc failed\n");
896  ret = AVERROR(ENOMEM);
897  goto error;
898  }
899 
900  hwframe_ctx = (AVHWFramesContext*)ctx->hwframe->data;
901  }
902 
903  device_ctx = hwframe_ctx->device_ctx;
904  device_hwctx = device_ctx->hwctx;
905 
906  cuda_ctx = device_hwctx->cuda_ctx;
907  ctx->cudl = device_hwctx->internal->cuda_dl;
908 
909  memset(&ctx->cuparseinfo, 0, sizeof(ctx->cuparseinfo));
910  memset(&ctx->cuparse_ext, 0, sizeof(ctx->cuparse_ext));
911  memset(&seq_pkt, 0, sizeof(seq_pkt));
912 
913  ctx->cuparseinfo.pExtVideoInfo = &ctx->cuparse_ext;
914 
915  switch (avctx->codec->id) {
916 #if CONFIG_H264_CUVID_DECODER
917  case AV_CODEC_ID_H264:
918  ctx->cuparseinfo.CodecType = cudaVideoCodec_H264;
919  break;
920 #endif
921 #if CONFIG_HEVC_CUVID_DECODER
922  case AV_CODEC_ID_HEVC:
923  ctx->cuparseinfo.CodecType = cudaVideoCodec_HEVC;
924  break;
925 #endif
926 #if CONFIG_MJPEG_CUVID_DECODER
927  case AV_CODEC_ID_MJPEG:
928  ctx->cuparseinfo.CodecType = cudaVideoCodec_JPEG;
929  break;
930 #endif
931 #if CONFIG_MPEG1_CUVID_DECODER
933  ctx->cuparseinfo.CodecType = cudaVideoCodec_MPEG1;
934  break;
935 #endif
936 #if CONFIG_MPEG2_CUVID_DECODER
938  ctx->cuparseinfo.CodecType = cudaVideoCodec_MPEG2;
939  break;
940 #endif
941 #if CONFIG_MPEG4_CUVID_DECODER
942  case AV_CODEC_ID_MPEG4:
943  ctx->cuparseinfo.CodecType = cudaVideoCodec_MPEG4;
944  break;
945 #endif
946 #if CONFIG_VP8_CUVID_DECODER
947  case AV_CODEC_ID_VP8:
948  ctx->cuparseinfo.CodecType = cudaVideoCodec_VP8;
949  break;
950 #endif
951 #if CONFIG_VP9_CUVID_DECODER
952  case AV_CODEC_ID_VP9:
953  ctx->cuparseinfo.CodecType = cudaVideoCodec_VP9;
954  break;
955 #endif
956 #if CONFIG_VC1_CUVID_DECODER
957  case AV_CODEC_ID_VC1:
958  ctx->cuparseinfo.CodecType = cudaVideoCodec_VC1;
959  break;
960 #endif
961  default:
962  av_log(avctx, AV_LOG_ERROR, "Invalid CUVID codec!\n");
963  return AVERROR_BUG;
964  }
965 
966  if (avctx->codec->id == AV_CODEC_ID_H264 || avctx->codec->id == AV_CODEC_ID_HEVC) {
967  if (avctx->codec->id == AV_CODEC_ID_H264)
968  bsf = av_bsf_get_by_name("h264_mp4toannexb");
969  else
970  bsf = av_bsf_get_by_name("hevc_mp4toannexb");
971 
972  if (!bsf) {
973  ret = AVERROR_BSF_NOT_FOUND;
974  goto error;
975  }
976  if (ret = av_bsf_alloc(bsf, &ctx->bsf)) {
977  goto error;
978  }
979  if (((ret = avcodec_parameters_from_context(ctx->bsf->par_in, avctx)) < 0) || ((ret = av_bsf_init(ctx->bsf)) < 0)) {
980  av_bsf_free(&ctx->bsf);
981  goto error;
982  }
983 
984  ctx->cuparse_ext.format.seqhdr_data_length = ctx->bsf->par_out->extradata_size;
985  memcpy(ctx->cuparse_ext.raw_seqhdr_data,
986  ctx->bsf->par_out->extradata,
987  FFMIN(sizeof(ctx->cuparse_ext.raw_seqhdr_data), ctx->bsf->par_out->extradata_size));
988  } else if (avctx->extradata_size > 0) {
989  ctx->cuparse_ext.format.seqhdr_data_length = avctx->extradata_size;
990  memcpy(ctx->cuparse_ext.raw_seqhdr_data,
991  avctx->extradata,
992  FFMIN(sizeof(ctx->cuparse_ext.raw_seqhdr_data), avctx->extradata_size));
993  }
994 
995  ctx->key_frame = av_mallocz(ctx->nb_surfaces * sizeof(int));
996  if (!ctx->key_frame) {
997  ret = AVERROR(ENOMEM);
998  goto error;
999  }
1000 
1001  ctx->cuparseinfo.ulMaxNumDecodeSurfaces = ctx->nb_surfaces;
1002  ctx->cuparseinfo.ulMaxDisplayDelay = 4;
1003  ctx->cuparseinfo.pUserData = avctx;
1004  ctx->cuparseinfo.pfnSequenceCallback = cuvid_handle_video_sequence;
1005  ctx->cuparseinfo.pfnDecodePicture = cuvid_handle_picture_decode;
1006  ctx->cuparseinfo.pfnDisplayPicture = cuvid_handle_picture_display;
1007 
1008  ret = CHECK_CU(ctx->cudl->cuCtxPushCurrent(cuda_ctx));
1009  if (ret < 0)
1010  goto error;
1011 
1012  ret = cuvid_test_capabilities(avctx, &ctx->cuparseinfo,
1013  probed_width,
1014  probed_height,
1015  probed_bit_depth);
1016  if (ret < 0)
1017  goto error;
1018 
1019  ret = CHECK_CU(ctx->cvdl->cuvidCreateVideoParser(&ctx->cuparser, &ctx->cuparseinfo));
1020  if (ret < 0)
1021  goto error;
1022 
1023  seq_pkt.payload = ctx->cuparse_ext.raw_seqhdr_data;
1024  seq_pkt.payload_size = ctx->cuparse_ext.format.seqhdr_data_length;
1025 
1026  if (seq_pkt.payload && seq_pkt.payload_size) {
1027  ret = CHECK_CU(ctx->cvdl->cuvidParseVideoData(ctx->cuparser, &seq_pkt));
1028  if (ret < 0)
1029  goto error;
1030  }
1031 
1032  ret = CHECK_CU(ctx->cudl->cuCtxPopCurrent(&dummy));
1033  if (ret < 0)
1034  goto error;
1035 
1036  ctx->prev_pts = INT64_MIN;
1037 
1038  if (!avctx->pkt_timebase.num || !avctx->pkt_timebase.den)
1039  av_log(avctx, AV_LOG_WARNING, "Invalid pkt_timebase, passing timestamps as-is.\n");
1040 
1041  return 0;
1042 
1043 error:
1044  cuvid_decode_end(avctx);
1045  return ret;
1046 }
1047 
1048 static void cuvid_flush(AVCodecContext *avctx)
1049 {
1050  CuvidContext *ctx = avctx->priv_data;
1051  AVHWDeviceContext *device_ctx = (AVHWDeviceContext*)ctx->hwdevice->data;
1052  AVCUDADeviceContext *device_hwctx = device_ctx->hwctx;
1053  CUcontext dummy, cuda_ctx = device_hwctx->cuda_ctx;
1054  CUVIDSOURCEDATAPACKET seq_pkt = { 0 };
1055  int ret;
1056 
1057  ret = CHECK_CU(ctx->cudl->cuCtxPushCurrent(cuda_ctx));
1058  if (ret < 0)
1059  goto error;
1060 
1061  av_fifo_freep(&ctx->frame_queue);
1062 
1063  ctx->frame_queue = av_fifo_alloc(ctx->nb_surfaces * sizeof(CuvidParsedFrame));
1064  if (!ctx->frame_queue) {
1065  av_log(avctx, AV_LOG_ERROR, "Failed to recreate frame queue on flush\n");
1066  return;
1067  }
1068 
1069  if (ctx->cudecoder) {
1070  ctx->cvdl->cuvidDestroyDecoder(ctx->cudecoder);
1071  ctx->cudecoder = NULL;
1072  }
1073 
1074  if (ctx->cuparser) {
1075  ctx->cvdl->cuvidDestroyVideoParser(ctx->cuparser);
1076  ctx->cuparser = NULL;
1077  }
1078 
1079  ret = CHECK_CU(ctx->cvdl->cuvidCreateVideoParser(&ctx->cuparser, &ctx->cuparseinfo));
1080  if (ret < 0)
1081  goto error;
1082 
1083  seq_pkt.payload = ctx->cuparse_ext.raw_seqhdr_data;
1084  seq_pkt.payload_size = ctx->cuparse_ext.format.seqhdr_data_length;
1085 
1086  if (seq_pkt.payload && seq_pkt.payload_size) {
1087  ret = CHECK_CU(ctx->cvdl->cuvidParseVideoData(ctx->cuparser, &seq_pkt));
1088  if (ret < 0)
1089  goto error;
1090  }
1091 
1092  ret = CHECK_CU(ctx->cudl->cuCtxPopCurrent(&dummy));
1093  if (ret < 0)
1094  goto error;
1095 
1096  ctx->prev_pts = INT64_MIN;
1097  ctx->decoder_flushing = 0;
1098 
1099  return;
1100  error:
1101  av_log(avctx, AV_LOG_ERROR, "CUDA reinit on flush failed\n");
1102 }
1103 
1104 #define OFFSET(x) offsetof(CuvidContext, x)
1105 #define VD AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_DECODING_PARAM
1106 static const AVOption options[] = {
1107  { "deint", "Set deinterlacing mode", OFFSET(deint_mode), AV_OPT_TYPE_INT, { .i64 = cudaVideoDeinterlaceMode_Weave }, cudaVideoDeinterlaceMode_Weave, cudaVideoDeinterlaceMode_Adaptive, VD, "deint" },
1108  { "weave", "Weave deinterlacing (do nothing)", 0, AV_OPT_TYPE_CONST, { .i64 = cudaVideoDeinterlaceMode_Weave }, 0, 0, VD, "deint" },
1109  { "bob", "Bob deinterlacing", 0, AV_OPT_TYPE_CONST, { .i64 = cudaVideoDeinterlaceMode_Bob }, 0, 0, VD, "deint" },
1110  { "adaptive", "Adaptive deinterlacing", 0, AV_OPT_TYPE_CONST, { .i64 = cudaVideoDeinterlaceMode_Adaptive }, 0, 0, VD, "deint" },
1111  { "gpu", "GPU to be used for decoding", OFFSET(cu_gpu), AV_OPT_TYPE_STRING, { .str = NULL }, 0, 0, VD },
1112  { "surfaces", "Maximum surfaces to be used for decoding", OFFSET(nb_surfaces), AV_OPT_TYPE_INT, { .i64 = 25 }, 0, INT_MAX, VD },
1113  { "drop_second_field", "Drop second field when deinterlacing", OFFSET(drop_second_field), AV_OPT_TYPE_BOOL, { .i64 = 0 }, 0, 1, VD },
1114  { "crop", "Crop (top)x(bottom)x(left)x(right)", OFFSET(crop_expr), AV_OPT_TYPE_STRING, { .str = NULL }, 0, 0, VD },
1115  { "resize", "Resize (width)x(height)", OFFSET(resize_expr), AV_OPT_TYPE_STRING, { .str = NULL }, 0, 0, VD },
1116  { NULL }
1117 };
1118 
1120  &(const AVCodecHWConfigInternal) {
1121  .public = {
1125  .device_type = AV_HWDEVICE_TYPE_CUDA
1126  },
1127  .hwaccel = NULL,
1128  },
1129  NULL
1130 };
1131 
1132 #define DEFINE_CUVID_CODEC(x, X) \
1133  static const AVClass x##_cuvid_class = { \
1134  .class_name = #x "_cuvid", \
1135  .item_name = av_default_item_name, \
1136  .option = options, \
1137  .version = LIBAVUTIL_VERSION_INT, \
1138  }; \
1139  AVCodec ff_##x##_cuvid_decoder = { \
1140  .name = #x "_cuvid", \
1141  .long_name = NULL_IF_CONFIG_SMALL("Nvidia CUVID " #X " decoder"), \
1142  .type = AVMEDIA_TYPE_VIDEO, \
1143  .id = AV_CODEC_ID_##X, \
1144  .priv_data_size = sizeof(CuvidContext), \
1145  .priv_class = &x##_cuvid_class, \
1146  .init = cuvid_decode_init, \
1147  .close = cuvid_decode_end, \
1148  .decode = cuvid_decode_frame, \
1149  .receive_frame = cuvid_output_frame, \
1150  .flush = cuvid_flush, \
1151  .capabilities = AV_CODEC_CAP_DELAY | AV_CODEC_CAP_AVOID_PROBING | AV_CODEC_CAP_HARDWARE, \
1152  .pix_fmts = (const enum AVPixelFormat[]){ AV_PIX_FMT_CUDA, \
1153  AV_PIX_FMT_NV12, \
1154  AV_PIX_FMT_P010, \
1155  AV_PIX_FMT_P016, \
1156  AV_PIX_FMT_NONE }, \
1157  .hw_configs = cuvid_hw_configs, \
1158  .wrapper_name = "cuvid", \
1159  };
1160 
1161 #if CONFIG_HEVC_CUVID_DECODER
1162 DEFINE_CUVID_CODEC(hevc, HEVC)
1163 #endif
1164 
1165 #if CONFIG_H264_CUVID_DECODER
1166 DEFINE_CUVID_CODEC(h264, H264)
1167 #endif
1168 
1169 #if CONFIG_MJPEG_CUVID_DECODER
1170 DEFINE_CUVID_CODEC(mjpeg, MJPEG)
1171 #endif
1172 
1173 #if CONFIG_MPEG1_CUVID_DECODER
1174 DEFINE_CUVID_CODEC(mpeg1, MPEG1VIDEO)
1175 #endif
1176 
1177 #if CONFIG_MPEG2_CUVID_DECODER
1178 DEFINE_CUVID_CODEC(mpeg2, MPEG2VIDEO)
1179 #endif
1180 
1181 #if CONFIG_MPEG4_CUVID_DECODER
1182 DEFINE_CUVID_CODEC(mpeg4, MPEG4)
1183 #endif
1184 
1185 #if CONFIG_VP8_CUVID_DECODER
1186 DEFINE_CUVID_CODEC(vp8, VP8)
1187 #endif
1188 
1189 #if CONFIG_VP9_CUVID_DECODER
1190 DEFINE_CUVID_CODEC(vp9, VP9)
1191 #endif
1192 
1193 #if CONFIG_VC1_CUVID_DECODER
1194 DEFINE_CUVID_CODEC(vc1, VC1)
1195 #endif
This struct aggregates all the (hardware/vendor-specific) "high-level" state, i.e.
Definition: hwcontext.h:60
AVCodecHWConfig public
This is the structure which will be returned to the user by avcodec_get_hw_config().
Definition: hwaccel.h:34
void av_bsf_free(AVBSFContext **ctx)
Free a bitstream filter context and everything associated with it; write NULL into the supplied point...
Definition: bsf.c:35
#define NULL
Definition: coverity.c:32
int ff_get_format(AVCodecContext *avctx, const enum AVPixelFormat *fmt)
Select the (possibly hardware accelerated) pixel format.
Definition: decode.c:1326
const struct AVCodec * codec
Definition: avcodec.h:1542
AVRational framerate
Definition: avcodec.h:3056
char * crop_expr
Definition: cuviddec.c:48
AVCodecParameters * par_out
Parameters of the output stream.
Definition: avcodec.h:5737
int decoder_flushing
Definition: cuviddec.c:75
AVRational av_div_q(AVRational b, AVRational c)
Divide one rational by another.
Definition: rational.c:88
static const char * format[]
Definition: af_aiir.c:330
void av_buffer_unref(AVBufferRef **buf)
Free a given reference and automatically free the buffer if there are no more references to it...
Definition: buffer.c:125
const AVPixFmtDescriptor * av_pix_fmt_desc_get(enum AVPixelFormat pix_fmt)
Definition: pixdesc.c:2446
This structure describes decoded (raw) audio or video data.
Definition: frame.h:226
AVBufferRef * hwdevice
Definition: cuviddec.c:63
AVOption.
Definition: opt.h:246
ptrdiff_t const GLvoid * data
Definition: opengl_enc.c:101
#define AV_CODEC_FLAG_INTERLACED_DCT
Use interlaced DCT.
Definition: avcodec.h:883
The codec supports this format by some internal method.
Definition: avcodec.h:3386
int coded_width
Bitstream width / height, may be different from width/height e.g.
Definition: avcodec.h:1721
int64_t pkt_pos
reordered pos from the last AVPacket that has been input into the decoder
Definition: frame.h:498
static av_cold int cuvid_decode_init(AVCodecContext *avctx)
Definition: cuviddec.c:804
#define AV_LOG_WARNING
Something somehow does not look correct.
Definition: log.h:182
CUVIDDECODECAPS caps8
Definition: cuviddec.c:82
int bottom
Definition: cuviddec.c:55
CuvidFunctions * cvdl
Definition: cuviddec.c:88
AVCUDADeviceContextInternal * internal
int num
Numerator.
Definition: rational.h:59
The bitstream filter state.
Definition: avcodec.h:5703
int deint_mode
Definition: cuviddec.c:70
const AVBitStreamFilter * av_bsf_get_by_name(const char *name)
enum AVPixelFormat pix_fmt
Pixel format, see AV_PIX_FMT_xxx.
Definition: avcodec.h:1743
int nb_surfaces
Definition: cuviddec.c:46
void * av_mallocz(size_t size)
Allocate a memory block with alignment suitable for all memory accesses (including vectors if availab...
Definition: mem.c:236
CUVIDPARSERPARAMS cuparseinfo
Definition: cuviddec.c:84
int ff_decode_frame_props(AVCodecContext *avctx, AVFrame *frame)
Set various frame properties from the codec context / packet data.
Definition: decode.c:1692
static av_cold int cuvid_decode_end(AVCodecContext *avctx)
Definition: cuviddec.c:689
static AVPacket pkt
int av_bsf_init(AVBSFContext *ctx)
Prepare the filter for use, after all the parameters and options have been set.
Definition: bsf.c:134
int av_fifo_generic_write(AVFifoBuffer *f, void *src, int size, int(*func)(void *, void *, int))
Feed data from a user-supplied callback to an AVFifoBuffer.
Definition: fifo.c:122
int deint_mode_current
Definition: cuviddec.c:71
AVBufferRef * hw_frames_ctx
For hwaccel-format frames, this should be a reference to the AVHWFramesContext describing the frame...
Definition: frame.h:564
#define AV_PIX_FMT_P016
Definition: pixfmt.h:427
int av_bsf_alloc(const AVBitStreamFilter *filter, AVBSFContext **ctx)
Allocate a context for a given bitstream filter.
Definition: bsf.c:81
#define AV_PIX_FMT_P010
Definition: pixfmt.h:426
int av_bsf_receive_packet(AVBSFContext *ctx, AVPacket *pkt)
Retrieve a filtered packet.
Definition: bsf.c:211
struct CuvidContext::@68 crop
AVComponentDescriptor comp[4]
Parameters that describe how pixels are packed.
Definition: pixdesc.h:117
uint8_t
#define av_cold
Definition: attributes.h:82
AVFrame * av_frame_alloc(void)
Allocate an AVFrame and set its fields to default values.
Definition: frame.c:189
AVOptions.
#define AV_LOG_TRACE
Extremely verbose debugging, useful for libav* development.
Definition: log.h:202
int internal_error
Definition: cuviddec.c:74
CUvideoparser cuparser
Definition: cuviddec.c:43
static int cuvid_decode_packet(AVCodecContext *avctx, const AVPacket *avpkt)
Definition: cuviddec.c:388
int ff_decode_get_packet(AVCodecContext *avctx, AVPacket *pkt)
Called by decoders to get the next packet for decoding.
Definition: decode.c:329
int64_t pts
Presentation timestamp in time_base units (time when frame should be shown to user).
Definition: frame.h:319
int is_deinterlacing
Definition: cuviddec.c:95
enum AVPixelFormat pix_fmt
A hardware pixel format which the codec can use.
Definition: avcodec.h:3402
struct CuvidContext::@69 resize
AVFifoBuffer * frame_queue
Definition: cuviddec.c:68
uint8_t * extradata
some codecs need / can use extradata like Huffman tables.
Definition: avcodec.h:1634
#define OFFSET(x)
Definition: cuviddec.c:1104
static AVFrame * frame
void * hwctx
The format-specific data, allocated and freed by libavutil along with this context.
Definition: hwcontext.h:91
int height
Definition: cuviddec.c:60
int av_hwdevice_ctx_create(AVBufferRef **pdevice_ref, enum AVHWDeviceType type, const char *device, AVDictionary *opts, int flags)
Open a device of the specified type and create an AVHWDeviceContext for it.
Definition: hwcontext.c:571
int flags
Flags modifying the (de)muxer behaviour.
Definition: avformat.h:1482
int * key_frame
Definition: cuviddec.c:77
int ff_set_sar(AVCodecContext *avctx, AVRational sar)
Check that the provided sample aspect ratio is valid and set it on the codec context.
Definition: utils.c:119
#define AVERROR_EOF
End of file.
Definition: error.h:55
#define AV_LOG_VERBOSE
Detailed information.
Definition: log.h:192
int interlaced_frame
The content of the picture is interlaced.
Definition: frame.h:373
char * resize_expr
Definition: cuviddec.c:49
The codec supports this format via the hw_device_ctx interface.
Definition: avcodec.h:3370
#define av_log(a,...)
int av_packet_ref(AVPacket *dst, const AVPacket *src)
Setup a new reference to the data described by a given packet.
Definition: avpacket.c:607
int64_t av_rescale_q(int64_t a, AVRational bq, AVRational cq)
Rescale a 64-bit integer by 2 rational numbers.
Definition: mathematics.c:142
CudaFunctions * cudl
Definition: cuviddec.c:87
AVRational pkt_timebase
Timebase in which pkt_dts/pts and AVPacket.dts/pts are.
Definition: avcodec.h:3070
enum AVCodecID id
Definition: avcodec.h:3438
cudaVideoChromaFormat chroma_format
Definition: cuviddec.c:80
int width
Definition: frame.h:284
#define AV_LOG_ERROR
Something went wrong and cannot losslessly be recovered.
Definition: log.h:176
AVClass * avclass
Definition: cuviddec.c:40
cudaVideoCodec codec_type
Definition: cuviddec.c:79
#define AVERROR(e)
Definition: error.h:43
void av_frame_free(AVFrame **frame)
Free the frame and any dynamically allocated objects in it, e.g.
Definition: frame.c:202
CUVIDDECODECAPS caps12
Definition: cuviddec.c:82
#define AV_LOG_DEBUG
Stuff which is only useful for libav* developers.
Definition: log.h:197
int av_fifo_generic_read(AVFifoBuffer *f, void *dest, int buf_size, void(*func)(void *, void *, int))
Feed data from an AVFifoBuffer to a user-supplied callback.
Definition: fifo.c:213
GLenum GLint * params
Definition: opengl_enc.c:114
planar YUV 4:2:0, 12bpp, 1 plane for Y and 1 plane for the UV components, which are interleaved (firs...
Definition: pixfmt.h:89
const char * name
Name of the codec implementation.
Definition: avcodec.h:3431
int av_hwframe_ctx_init(AVBufferRef *ref)
Finalize the context before use.
Definition: hwcontext.c:329
static void cuvid_flush(AVCodecContext *avctx)
Definition: cuviddec.c:1048
static const uint8_t offset[127][2]
Definition: vf_spp.c:92
int av_hwframe_get_buffer(AVBufferRef *hwframe_ref, AVFrame *frame, int flags)
Allocate a new frame attached to the given AVHWFramesContext.
Definition: hwcontext.c:465
int extradata_size
Size of the extradata content in bytes.
Definition: avcodec.h:3918
int av_hwframe_transfer_data(AVFrame *dst, const AVFrame *src, int flags)
Copy data to or from a hw surface.
Definition: hwcontext.c:439
static int check_cu(AVCodecContext *avctx, CUresult err, const char *func)
Definition: cuviddec.c:98
uint8_t nb_components
The number of components each pixel has, (1-4)
Definition: pixdesc.h:83
#define FFMIN(a, b)
Definition: common.h:96
CUVIDDECODECAPS caps10
Definition: cuviddec.c:82
AVHWDeviceContext * device_ctx
The parent AVHWDeviceContext.
Definition: hwcontext.h:148
static int CUDAAPI cuvid_handle_video_sequence(void *opaque, CUVIDEOFORMAT *format)
Definition: cuviddec.c:122
int width
picture width / height.
Definition: avcodec.h:1706
static int filter_packet(AVFormatContext *avf, ConcatStream *cs, AVPacket *pkt)
Definition: concatdec.c:533
AVBufferRef * hw_frames_ctx
A reference to the AVHWFramesContext describing the input (for encoding) or output (decoding) frames...
Definition: avcodec.h:3213
static void bit_depth(AudioStatsContext *s, uint64_t mask, uint64_t imask, AVRational *depth)
Definition: af_astats.c:155
AVBufferRef * hwframe
Definition: cuviddec.c:64
int av_bsf_send_packet(AVBSFContext *ctx, AVPacket *pkt)
Submit a packet for filtering.
Definition: bsf.c:185
AVFormatContext * ctx
Definition: movenc.c:48
static int cuvid_output_frame(AVCodecContext *avctx, AVFrame *frame)
Definition: cuviddec.c:478
#define AVERROR_BSF_NOT_FOUND
Bitstream filter not found.
Definition: error.h:49
FFmpeg internal API for CUDA.
int dummy
Definition: motion.c:64
static int CUDAAPI cuvid_handle_picture_decode(void *opaque, CUVIDPICPARAMS *picparams)
Definition: cuviddec.c:338
HW acceleration through CUDA.
Definition: pixfmt.h:235
preferred ID for MPEG-1/2 video decoding
Definition: avcodec.h:220
static void error(const char *err)
the normal 2^n-1 "JPEG" YUV ranges
Definition: pixfmt.h:512
CUvideodecoder cudecoder
Definition: cuviddec.c:42
static int cuvid_decode_frame(AVCodecContext *avctx, void *data, int *got_frame, AVPacket *avpkt)
Definition: cuviddec.c:658
int format
format of the frame, -1 if unknown or unset Values correspond to enum AVPixelFormat for video frames...
Definition: frame.h:299
int drop_second_field
Definition: cuviddec.c:47
Libavcodec external API header.
int64_t pkt_duration
duration of the corresponding packet, expressed in AVStream->time_base units, 0 if unknown...
Definition: frame.h:506
int av_fifo_size(const AVFifoBuffer *f)
Return the amount of data in bytes in the AVFifoBuffer, that is the amount of data you can read from ...
Definition: fifo.c:77
int linesize[AV_NUM_DATA_POINTERS]
For video, size in bytes of each picture line.
Definition: frame.h:257
Descriptor that unambiguously describes how the bits of a pixel are stored in the up to 4 data planes...
Definition: pixdesc.h:81
main external API structure.
Definition: avcodec.h:1533
void av_packet_unref(AVPacket *pkt)
Wipe the packet.
Definition: avpacket.c:598
uint8_t * data
The data buffer.
Definition: buffer.h:89
static int cuvid_test_capabilities(AVCodecContext *avctx, const CUVIDPARSERPARAMS *cuparseinfo, int probed_width, int probed_height, int bit_depth)
Definition: cuviddec.c:716
int ff_get_buffer(AVCodecContext *avctx, AVFrame *frame, int flags)
Get a buffer for a frame.
Definition: decode.c:1918
a very simple circular buffer FIFO implementation
AVBSFContext * bsf
Definition: cuviddec.c:66
static const AVOption options[]
Definition: cuviddec.c:1106
int extradata_size
Definition: avcodec.h:1635
static const AVCodecHWConfigInternal * cuvid_hw_configs[]
Definition: cuviddec.c:1119
#define AVERROR_BUG
Internal bug, also see AVERROR_BUG2.
Definition: error.h:50
This struct is allocated as AVHWDeviceContext.hwctx.
int coded_height
Definition: avcodec.h:1721
Describe the class of an AVClass context structure.
Definition: log.h:67
Rational number (pair of numerator and denominator).
Definition: rational.h:58
int avcodec_parameters_from_context(AVCodecParameters *par, const AVCodecContext *codec)
Fill the parameters struct based on the values from the supplied codec context.
Definition: utils.c:2031
This struct describes a set or pool of "hardware" frames (i.e.
Definition: hwcontext.h:123
int(* func)(AVBPrint *dst, const char *in, const char *arg)
Definition: jacosubdec.c:67
refcounted data buffer API
#define DEFINE_CUVID_CODEC(x, X)
Definition: cuviddec.c:1132
char * cu_gpu
Definition: cuviddec.c:45
static enum AVPixelFormat pix_fmts[]
Definition: libkvazaar.c:266
CUVIDPARSERDISPINFO dispinfo
Definition: cuviddec.c:93
uint8_t * data[AV_NUM_DATA_POINTERS]
pointer to the picture/channel planes.
Definition: frame.h:240
AVBufferRef * device_ref
A reference to the parent AVHWDeviceContext.
Definition: hwcontext.h:140
attribute_deprecated int64_t pkt_pts
PTS copied from the AVPacket that was decoded to produce this frame.
Definition: frame.h:327
the normal 219*2^(n-8) "MPEG" YUV ranges
Definition: pixfmt.h:511
A reference to a data buffer.
Definition: buffer.h:81
#define FF_DISABLE_DEPRECATION_WARNINGS
Definition: internal.h:84
common internal api header.
AVBufferRef * av_hwframe_ctx_alloc(AVBufferRef *device_ref_in)
Allocate an AVHWFramesContext tied to a given device context.
Definition: hwcontext.c:243
int64_t prev_pts
Definition: cuviddec.c:72
static int CUDAAPI cuvid_handle_picture_display(void *opaque, CUVIDPARSERDISPINFO *dispinfo)
Definition: cuviddec.c:354
AVBufferRef * av_buffer_ref(AVBufferRef *buf)
Create a new reference to an AVBuffer.
Definition: buffer.c:93
int den
Denominator.
Definition: rational.h:60
#define CHECK_CU(x)
Definition: cuviddec.c:120
void * priv_data
Definition: avcodec.h:1560
AVFifoBuffer * av_fifo_alloc(unsigned int size)
Initialize an AVFifoBuffer.
Definition: fifo.c:43
#define FF_ENABLE_DEPRECATION_WARNINGS
Definition: internal.h:85
int top_field_first
If the content is interlaced, is top field displayed first.
Definition: frame.h:378
int key_frame
1 -> keyframe, 0-> not
Definition: frame.h:304
uint8_t * extradata
Extra binary data needed for initializing the decoder, codec-dependent.
Definition: avcodec.h:3914
AVRational av_mul_q(AVRational b, AVRational c)
Multiply two rationals.
Definition: rational.c:80
int height
Definition: frame.h:284
#define av_freep(p)
CUVIDEOFORMATEX cuparse_ext
Definition: cuviddec.c:85
void av_fifo_freep(AVFifoBuffer **f)
Free an AVFifoBuffer and reset pointer to NULL.
Definition: fifo.c:63
#define VD
Definition: cuviddec.c:1105
const char * av_get_pix_fmt_name(enum AVPixelFormat pix_fmt)
Return the short name for a pixel format, NULL in case pix_fmt is unknown.
Definition: pixdesc.c:2362
int depth
Number of bits in the component.
Definition: pixdesc.h:58
AVBufferRef * hw_device_ctx
A reference to the AVHWDeviceContext describing the device which will be used by a hardware encoder/d...
Definition: avcodec.h:3265
int pkt_size
size of the corresponding packet containing the compressed frame.
Definition: frame.h:540
#define AVERROR_EXTERNAL
Generic error in an external library.
Definition: error.h:57
AVPixelFormat
Pixel format.
Definition: pixfmt.h:64
This structure stores compressed data.
Definition: avcodec.h:1422
AVCodecParameters * par_in
Parameters of the input stream.
Definition: avcodec.h:5731
#define AV_NOPTS_VALUE
Undefined timestamp value.
Definition: avutil.h:248
static int cuvid_is_buffer_full(AVCodecContext *avctx)
Definition: cuviddec.c:377