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  1. /*
  2. * Copyright (c) 2010, Google, Inc.
  3. *
  4. * This file is part of FFmpeg.
  5. *
  6. * FFmpeg is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2.1 of the License, or (at your option) any later version.
  10. *
  11. * FFmpeg is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with FFmpeg; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. /**
  21. * @file
  22. * VP8 encoder support via libvpx
  23. */
  24. #define VPX_DISABLE_CTRL_TYPECHECKS 1
  25. #define VPX_CODEC_DISABLE_COMPAT 1
  26. #include <vpx/vpx_encoder.h>
  27. #include <vpx/vp8cx.h>
  28. #include "avcodec.h"
  29. #include "libavutil/base64.h"
  30. #include "libavutil/opt.h"
  31. /**
  32. * Portion of struct vpx_codec_cx_pkt from vpx_encoder.h.
  33. * One encoded frame returned from the library.
  34. */
  35. struct FrameListData {
  36. void *buf; /**< compressed data buffer */
  37. size_t sz; /**< length of compressed data */
  38. int64_t pts; /**< time stamp to show frame
  39. (in timebase units) */
  40. unsigned long duration; /**< duration to show frame
  41. (in timebase units) */
  42. uint32_t flags; /**< flags for this frame */
  43. struct FrameListData *next;
  44. };
  45. typedef struct VP8EncoderContext {
  46. AVClass *av_class;
  47. struct vpx_codec_ctx encoder;
  48. struct vpx_image rawimg;
  49. struct vpx_fixed_buf twopass_stats;
  50. int deadline; //i.e., RT/GOOD/BEST
  51. struct FrameListData *coded_frame_list;
  52. int cpuused;
  53. /**
  54. * VP8 specific flags, see VP8F_* below.
  55. */
  56. int flags;
  57. #define VP8F_ERROR_RESILIENT 0x00000001 ///< Enable measures appropriate for streaming over lossy links
  58. #define VP8F_AUTO_ALT_REF 0x00000002 ///< Enable automatic alternate reference frame generation
  59. int arnr_max_frames;
  60. int arnr_strength;
  61. int arnr_type;
  62. } VP8Context;
  63. #define V AV_OPT_FLAG_VIDEO_PARAM
  64. #define E AV_OPT_FLAG_ENCODING_PARAM
  65. static const AVOption options[]={
  66. {"speed", "", offsetof(VP8Context, cpuused), FF_OPT_TYPE_INT, 3, -16, 16, V|E},
  67. {"quality", "", offsetof(VP8Context, deadline), FF_OPT_TYPE_INT, VPX_DL_GOOD_QUALITY, INT_MIN, INT_MAX, V|E, "quality"},
  68. {"best", NULL, 0, FF_OPT_TYPE_CONST, VPX_DL_BEST_QUALITY, INT_MIN, INT_MAX, V|E, "quality"},
  69. {"good", NULL, 0, FF_OPT_TYPE_CONST, VPX_DL_GOOD_QUALITY, INT_MIN, INT_MAX, V|E, "quality"},
  70. {"realtime", NULL, 0, FF_OPT_TYPE_CONST, VPX_DL_REALTIME, INT_MIN, INT_MAX, V|E, "quality"},
  71. {"vp8flags", "", offsetof(VP8Context, flags), FF_OPT_TYPE_FLAGS, 0, 0, UINT_MAX, V|E, "flags"},
  72. {"error_resilient", "enable error resilience", 0, FF_OPT_TYPE_CONST, VP8F_ERROR_RESILIENT, INT_MIN, INT_MAX, V|E, "flags"},
  73. {"altref", "enable use of alternate reference frames (VP8/2-pass only)", 0, FF_OPT_TYPE_CONST, VP8F_AUTO_ALT_REF, INT_MIN, INT_MAX, V|E, "flags"},
  74. {"arnr_max_frames", "altref noise reduction max frame count", offsetof(VP8Context, arnr_max_frames), FF_OPT_TYPE_INT, 0, 0, 15, V|E},
  75. {"arnr_strength", "altref noise reduction filter strength", offsetof(VP8Context, arnr_strength), FF_OPT_TYPE_INT, 3, 0, 6, V|E},
  76. {"arnr_type", "altref noise reduction filter type", offsetof(VP8Context, arnr_type), FF_OPT_TYPE_INT, 3, 1, 3, V|E},
  77. {NULL}
  78. };
  79. static const AVClass class = { "libvpx", av_default_item_name, options, LIBAVUTIL_VERSION_INT };
  80. #undef V
  81. #undef E
  82. /** String mappings for enum vp8e_enc_control_id */
  83. static const char *ctlidstr[] = {
  84. [VP8E_UPD_ENTROPY] = "VP8E_UPD_ENTROPY",
  85. [VP8E_UPD_REFERENCE] = "VP8E_UPD_REFERENCE",
  86. [VP8E_USE_REFERENCE] = "VP8E_USE_REFERENCE",
  87. [VP8E_SET_ROI_MAP] = "VP8E_SET_ROI_MAP",
  88. [VP8E_SET_ACTIVEMAP] = "VP8E_SET_ACTIVEMAP",
  89. [VP8E_SET_SCALEMODE] = "VP8E_SET_SCALEMODE",
  90. [VP8E_SET_CPUUSED] = "VP8E_SET_CPUUSED",
  91. [VP8E_SET_ENABLEAUTOALTREF] = "VP8E_SET_ENABLEAUTOALTREF",
  92. [VP8E_SET_NOISE_SENSITIVITY] = "VP8E_SET_NOISE_SENSITIVITY",
  93. [VP8E_SET_SHARPNESS] = "VP8E_SET_SHARPNESS",
  94. [VP8E_SET_STATIC_THRESHOLD] = "VP8E_SET_STATIC_THRESHOLD",
  95. [VP8E_SET_TOKEN_PARTITIONS] = "VP8E_SET_TOKEN_PARTITIONS",
  96. [VP8E_GET_LAST_QUANTIZER] = "VP8E_GET_LAST_QUANTIZER",
  97. [VP8E_SET_ARNR_MAXFRAMES] = "VP8E_SET_ARNR_MAXFRAMES",
  98. [VP8E_SET_ARNR_STRENGTH] = "VP8E_SET_ARNR_STRENGTH",
  99. [VP8E_SET_ARNR_TYPE] = "VP8E_SET_ARNR_TYPE",
  100. [VP8E_SET_CQ_LEVEL] = "VP8E_SET_CQ_LEVEL",
  101. };
  102. static av_cold void log_encoder_error(AVCodecContext *avctx, const char *desc)
  103. {
  104. VP8Context *ctx = avctx->priv_data;
  105. const char *error = vpx_codec_error(&ctx->encoder);
  106. const char *detail = vpx_codec_error_detail(&ctx->encoder);
  107. av_log(avctx, AV_LOG_ERROR, "%s: %s\n", desc, error);
  108. if (detail)
  109. av_log(avctx, AV_LOG_ERROR, " Additional information: %s\n", detail);
  110. }
  111. static av_cold void dump_enc_cfg(AVCodecContext *avctx,
  112. const struct vpx_codec_enc_cfg *cfg)
  113. {
  114. int width = -30;
  115. int level = AV_LOG_DEBUG;
  116. av_log(avctx, level, "vpx_codec_enc_cfg\n");
  117. av_log(avctx, level, "generic settings\n"
  118. " %*s%u\n %*s%u\n %*s%u\n %*s%u\n %*s%u\n"
  119. " %*s{%u/%u}\n %*s%u\n %*s%d\n %*s%u\n",
  120. width, "g_usage:", cfg->g_usage,
  121. width, "g_threads:", cfg->g_threads,
  122. width, "g_profile:", cfg->g_profile,
  123. width, "g_w:", cfg->g_w,
  124. width, "g_h:", cfg->g_h,
  125. width, "g_timebase:", cfg->g_timebase.num, cfg->g_timebase.den,
  126. width, "g_error_resilient:", cfg->g_error_resilient,
  127. width, "g_pass:", cfg->g_pass,
  128. width, "g_lag_in_frames:", cfg->g_lag_in_frames);
  129. av_log(avctx, level, "rate control settings\n"
  130. " %*s%u\n %*s%u\n %*s%u\n %*s%u\n"
  131. " %*s%d\n %*s%p(%zu)\n %*s%u\n",
  132. width, "rc_dropframe_thresh:", cfg->rc_dropframe_thresh,
  133. width, "rc_resize_allowed:", cfg->rc_resize_allowed,
  134. width, "rc_resize_up_thresh:", cfg->rc_resize_up_thresh,
  135. width, "rc_resize_down_thresh:", cfg->rc_resize_down_thresh,
  136. width, "rc_end_usage:", cfg->rc_end_usage,
  137. width, "rc_twopass_stats_in:", cfg->rc_twopass_stats_in.buf, cfg->rc_twopass_stats_in.sz,
  138. width, "rc_target_bitrate:", cfg->rc_target_bitrate);
  139. av_log(avctx, level, "quantizer settings\n"
  140. " %*s%u\n %*s%u\n",
  141. width, "rc_min_quantizer:", cfg->rc_min_quantizer,
  142. width, "rc_max_quantizer:", cfg->rc_max_quantizer);
  143. av_log(avctx, level, "bitrate tolerance\n"
  144. " %*s%u\n %*s%u\n",
  145. width, "rc_undershoot_pct:", cfg->rc_undershoot_pct,
  146. width, "rc_overshoot_pct:", cfg->rc_overshoot_pct);
  147. av_log(avctx, level, "decoder buffer model\n"
  148. " %*s%u\n %*s%u\n %*s%u\n",
  149. width, "rc_buf_sz:", cfg->rc_buf_sz,
  150. width, "rc_buf_initial_sz:", cfg->rc_buf_initial_sz,
  151. width, "rc_buf_optimal_sz:", cfg->rc_buf_optimal_sz);
  152. av_log(avctx, level, "2 pass rate control settings\n"
  153. " %*s%u\n %*s%u\n %*s%u\n",
  154. width, "rc_2pass_vbr_bias_pct:", cfg->rc_2pass_vbr_bias_pct,
  155. width, "rc_2pass_vbr_minsection_pct:", cfg->rc_2pass_vbr_minsection_pct,
  156. width, "rc_2pass_vbr_maxsection_pct:", cfg->rc_2pass_vbr_maxsection_pct);
  157. av_log(avctx, level, "keyframing settings\n"
  158. " %*s%d\n %*s%u\n %*s%u\n",
  159. width, "kf_mode:", cfg->kf_mode,
  160. width, "kf_min_dist:", cfg->kf_min_dist,
  161. width, "kf_max_dist:", cfg->kf_max_dist);
  162. av_log(avctx, level, "\n");
  163. }
  164. static void coded_frame_add(void *list, struct FrameListData *cx_frame)
  165. {
  166. struct FrameListData **p = list;
  167. while (*p != NULL)
  168. p = &(*p)->next;
  169. *p = cx_frame;
  170. cx_frame->next = NULL;
  171. }
  172. static av_cold void free_coded_frame(struct FrameListData *cx_frame)
  173. {
  174. av_freep(&cx_frame->buf);
  175. av_freep(&cx_frame);
  176. }
  177. static av_cold void free_frame_list(struct FrameListData *list)
  178. {
  179. struct FrameListData *p = list;
  180. while (p) {
  181. list = list->next;
  182. free_coded_frame(p);
  183. p = list;
  184. }
  185. }
  186. static av_cold int codecctl_int(AVCodecContext *avctx,
  187. enum vp8e_enc_control_id id, int val)
  188. {
  189. VP8Context *ctx = avctx->priv_data;
  190. char buf[80];
  191. int width = -30;
  192. int res;
  193. snprintf(buf, sizeof(buf), "%s:", ctlidstr[id]);
  194. av_log(avctx, AV_LOG_DEBUG, " %*s%d\n", width, buf, val);
  195. res = vpx_codec_control(&ctx->encoder, id, val);
  196. if (res != VPX_CODEC_OK) {
  197. snprintf(buf, sizeof(buf), "Failed to set %s codec control",
  198. ctlidstr[id]);
  199. log_encoder_error(avctx, buf);
  200. }
  201. return res == VPX_CODEC_OK ? 0 : AVERROR(EINVAL);
  202. }
  203. static av_cold int vp8_free(AVCodecContext *avctx)
  204. {
  205. VP8Context *ctx = avctx->priv_data;
  206. vpx_codec_destroy(&ctx->encoder);
  207. av_freep(&ctx->twopass_stats.buf);
  208. av_freep(&avctx->coded_frame);
  209. av_freep(&avctx->stats_out);
  210. free_frame_list(ctx->coded_frame_list);
  211. return 0;
  212. }
  213. static av_cold int vp8_init(AVCodecContext *avctx)
  214. {
  215. VP8Context *ctx = avctx->priv_data;
  216. const struct vpx_codec_iface *iface = &vpx_codec_vp8_cx_algo;
  217. struct vpx_codec_enc_cfg enccfg;
  218. int res;
  219. av_log(avctx, AV_LOG_INFO, "%s\n", vpx_codec_version_str());
  220. av_log(avctx, AV_LOG_VERBOSE, "%s\n", vpx_codec_build_config());
  221. if ((res = vpx_codec_enc_config_default(iface, &enccfg, 0)) != VPX_CODEC_OK) {
  222. av_log(avctx, AV_LOG_ERROR, "Failed to get config: %s\n",
  223. vpx_codec_err_to_string(res));
  224. return AVERROR(EINVAL);
  225. }
  226. dump_enc_cfg(avctx, &enccfg);
  227. enccfg.g_w = avctx->width;
  228. enccfg.g_h = avctx->height;
  229. enccfg.g_timebase.num = avctx->time_base.num;
  230. enccfg.g_timebase.den = avctx->time_base.den;
  231. enccfg.g_threads = avctx->thread_count;
  232. enccfg.g_lag_in_frames= FFMIN(avctx->rc_lookahead, 25); //0-25, avoids init failure
  233. if (avctx->flags & CODEC_FLAG_PASS1)
  234. enccfg.g_pass = VPX_RC_FIRST_PASS;
  235. else if (avctx->flags & CODEC_FLAG_PASS2)
  236. enccfg.g_pass = VPX_RC_LAST_PASS;
  237. else
  238. enccfg.g_pass = VPX_RC_ONE_PASS;
  239. if (avctx->rc_min_rate == avctx->rc_max_rate &&
  240. avctx->rc_min_rate == avctx->bit_rate)
  241. enccfg.rc_end_usage = VPX_CBR;
  242. else if (avctx->crf)
  243. enccfg.rc_end_usage = VPX_CQ;
  244. enccfg.rc_target_bitrate = av_rescale_rnd(avctx->bit_rate, 1, 1000,
  245. AV_ROUND_NEAR_INF);
  246. enccfg.rc_min_quantizer = avctx->qmin;
  247. enccfg.rc_max_quantizer = avctx->qmax;
  248. enccfg.rc_dropframe_thresh = avctx->frame_skip_threshold;
  249. //0-100 (0 => CBR, 100 => VBR)
  250. enccfg.rc_2pass_vbr_bias_pct = round(avctx->qcompress * 100);
  251. enccfg.rc_2pass_vbr_minsection_pct =
  252. avctx->rc_min_rate * 100LL / avctx->bit_rate;
  253. if (avctx->rc_max_rate)
  254. enccfg.rc_2pass_vbr_maxsection_pct =
  255. avctx->rc_max_rate * 100LL / avctx->bit_rate;
  256. if (avctx->rc_buffer_size)
  257. enccfg.rc_buf_sz =
  258. avctx->rc_buffer_size * 1000LL / avctx->bit_rate;
  259. if (avctx->rc_initial_buffer_occupancy)
  260. enccfg.rc_buf_initial_sz =
  261. avctx->rc_initial_buffer_occupancy * 1000LL / avctx->bit_rate;
  262. enccfg.rc_buf_optimal_sz = enccfg.rc_buf_sz * 5 / 6;
  263. enccfg.rc_undershoot_pct = round(avctx->rc_buffer_aggressivity * 100);
  264. //_enc_init() will balk if kf_min_dist differs from max w/VPX_KF_AUTO
  265. if (avctx->keyint_min == avctx->gop_size)
  266. enccfg.kf_min_dist = avctx->keyint_min;
  267. enccfg.kf_max_dist = avctx->gop_size;
  268. if (enccfg.g_pass == VPX_RC_FIRST_PASS)
  269. enccfg.g_lag_in_frames = 0;
  270. else if (enccfg.g_pass == VPX_RC_LAST_PASS) {
  271. int decode_size;
  272. if (!avctx->stats_in) {
  273. av_log(avctx, AV_LOG_ERROR, "No stats file for second pass\n");
  274. return AVERROR_INVALIDDATA;
  275. }
  276. ctx->twopass_stats.sz = strlen(avctx->stats_in) * 3 / 4;
  277. ctx->twopass_stats.buf = av_malloc(ctx->twopass_stats.sz);
  278. if (!ctx->twopass_stats.buf) {
  279. av_log(avctx, AV_LOG_ERROR,
  280. "Stat buffer alloc (%zu bytes) failed\n",
  281. ctx->twopass_stats.sz);
  282. return AVERROR(ENOMEM);
  283. }
  284. decode_size = av_base64_decode(ctx->twopass_stats.buf, avctx->stats_in,
  285. ctx->twopass_stats.sz);
  286. if (decode_size < 0) {
  287. av_log(avctx, AV_LOG_ERROR, "Stat buffer decode failed\n");
  288. return AVERROR_INVALIDDATA;
  289. }
  290. ctx->twopass_stats.sz = decode_size;
  291. enccfg.rc_twopass_stats_in = ctx->twopass_stats;
  292. }
  293. /* 0-3: For non-zero values the encoder increasingly optimizes for reduced
  294. complexity playback on low powered devices at the expense of encode
  295. quality. */
  296. if (avctx->profile != FF_PROFILE_UNKNOWN)
  297. enccfg.g_profile = avctx->profile;
  298. enccfg.g_error_resilient = ctx->flags & VP8F_ERROR_RESILIENT;
  299. dump_enc_cfg(avctx, &enccfg);
  300. /* Construct Encoder Context */
  301. res = vpx_codec_enc_init(&ctx->encoder, iface, &enccfg, 0);
  302. if (res != VPX_CODEC_OK) {
  303. log_encoder_error(avctx, "Failed to initialize encoder");
  304. return AVERROR(EINVAL);
  305. }
  306. //codec control failures are currently treated only as warnings
  307. av_log(avctx, AV_LOG_DEBUG, "vpx_codec_control\n");
  308. codecctl_int(avctx, VP8E_SET_CPUUSED, ctx->cpuused);
  309. codecctl_int(avctx, VP8E_SET_NOISE_SENSITIVITY, avctx->noise_reduction);
  310. codecctl_int(avctx, VP8E_SET_TOKEN_PARTITIONS, av_log2(avctx->slices));
  311. codecctl_int(avctx, VP8E_SET_STATIC_THRESHOLD, avctx->mb_threshold);
  312. codecctl_int(avctx, VP8E_SET_CQ_LEVEL, (int)avctx->crf);
  313. codecctl_int(avctx, VP8E_SET_ENABLEAUTOALTREF, !!(ctx->flags & VP8F_AUTO_ALT_REF));
  314. codecctl_int(avctx, VP8E_SET_ARNR_MAXFRAMES, ctx->arnr_max_frames);
  315. codecctl_int(avctx, VP8E_SET_ARNR_STRENGTH, ctx->arnr_strength);
  316. codecctl_int(avctx, VP8E_SET_ARNR_TYPE, ctx->arnr_type);
  317. av_log(avctx, AV_LOG_DEBUG, "Using deadline: %d\n", ctx->deadline);
  318. //provide dummy value to initialize wrapper, values will be updated each _encode()
  319. vpx_img_wrap(&ctx->rawimg, VPX_IMG_FMT_I420, avctx->width, avctx->height, 1,
  320. (unsigned char*)1);
  321. avctx->coded_frame = avcodec_alloc_frame();
  322. if (!avctx->coded_frame) {
  323. av_log(avctx, AV_LOG_ERROR, "Error allocating coded frame\n");
  324. vp8_free(avctx);
  325. return AVERROR(ENOMEM);
  326. }
  327. return 0;
  328. }
  329. static inline void cx_pktcpy(struct FrameListData *dst,
  330. const struct vpx_codec_cx_pkt *src)
  331. {
  332. dst->pts = src->data.frame.pts;
  333. dst->duration = src->data.frame.duration;
  334. dst->flags = src->data.frame.flags;
  335. dst->sz = src->data.frame.sz;
  336. dst->buf = src->data.frame.buf;
  337. }
  338. /**
  339. * Store coded frame information in format suitable for return from encode().
  340. *
  341. * Write buffer information from @a cx_frame to @a buf & @a buf_size.
  342. * Timing/frame details to @a coded_frame.
  343. * @return Frame size written to @a buf on success
  344. * @return AVERROR(EINVAL) on error
  345. */
  346. static int storeframe(AVCodecContext *avctx, struct FrameListData *cx_frame,
  347. uint8_t *buf, int buf_size, AVFrame *coded_frame)
  348. {
  349. if ((int) cx_frame->sz <= buf_size) {
  350. buf_size = cx_frame->sz;
  351. memcpy(buf, cx_frame->buf, buf_size);
  352. coded_frame->pts = cx_frame->pts;
  353. coded_frame->key_frame = !!(cx_frame->flags & VPX_FRAME_IS_KEY);
  354. if (coded_frame->key_frame)
  355. coded_frame->pict_type = AV_PICTURE_TYPE_I;
  356. else
  357. coded_frame->pict_type = AV_PICTURE_TYPE_P;
  358. } else {
  359. av_log(avctx, AV_LOG_ERROR,
  360. "Compressed frame larger than storage provided! (%zu/%d)\n",
  361. cx_frame->sz, buf_size);
  362. return AVERROR(EINVAL);
  363. }
  364. return buf_size;
  365. }
  366. /**
  367. * Queue multiple output frames from the encoder, returning the front-most.
  368. * In cases where vpx_codec_get_cx_data() returns more than 1 frame append
  369. * the frame queue. Return the head frame if available.
  370. * @return Stored frame size
  371. * @return AVERROR(EINVAL) on output size error
  372. * @return AVERROR(ENOMEM) on coded frame queue data allocation error
  373. */
  374. static int queue_frames(AVCodecContext *avctx, uint8_t *buf, int buf_size,
  375. AVFrame *coded_frame)
  376. {
  377. VP8Context *ctx = avctx->priv_data;
  378. const struct vpx_codec_cx_pkt *pkt;
  379. const void *iter = NULL;
  380. int size = 0;
  381. if (ctx->coded_frame_list) {
  382. struct FrameListData *cx_frame = ctx->coded_frame_list;
  383. /* return the leading frame if we've already begun queueing */
  384. size = storeframe(avctx, cx_frame, buf, buf_size, coded_frame);
  385. if (size < 0)
  386. return AVERROR(EINVAL);
  387. ctx->coded_frame_list = cx_frame->next;
  388. free_coded_frame(cx_frame);
  389. }
  390. /* consume all available output from the encoder before returning. buffers
  391. are only good through the next vpx_codec call */
  392. while ((pkt = vpx_codec_get_cx_data(&ctx->encoder, &iter))) {
  393. switch (pkt->kind) {
  394. case VPX_CODEC_CX_FRAME_PKT:
  395. if (!size) {
  396. struct FrameListData cx_frame;
  397. /* avoid storing the frame when the list is empty and we haven't yet
  398. provided a frame for output */
  399. assert(!ctx->coded_frame_list);
  400. cx_pktcpy(&cx_frame, pkt);
  401. size = storeframe(avctx, &cx_frame, buf, buf_size, coded_frame);
  402. if (size < 0)
  403. return AVERROR(EINVAL);
  404. } else {
  405. struct FrameListData *cx_frame =
  406. av_malloc(sizeof(struct FrameListData));
  407. if (!cx_frame) {
  408. av_log(avctx, AV_LOG_ERROR,
  409. "Frame queue element alloc failed\n");
  410. return AVERROR(ENOMEM);
  411. }
  412. cx_pktcpy(cx_frame, pkt);
  413. cx_frame->buf = av_malloc(cx_frame->sz);
  414. if (!cx_frame->buf) {
  415. av_log(avctx, AV_LOG_ERROR,
  416. "Data buffer alloc (%zu bytes) failed\n",
  417. cx_frame->sz);
  418. return AVERROR(ENOMEM);
  419. }
  420. memcpy(cx_frame->buf, pkt->data.frame.buf, pkt->data.frame.sz);
  421. coded_frame_add(&ctx->coded_frame_list, cx_frame);
  422. }
  423. break;
  424. case VPX_CODEC_STATS_PKT: {
  425. struct vpx_fixed_buf *stats = &ctx->twopass_stats;
  426. stats->buf = av_realloc(stats->buf,
  427. stats->sz + pkt->data.twopass_stats.sz);
  428. if (!stats->buf) {
  429. av_log(avctx, AV_LOG_ERROR, "Stat buffer realloc failed\n");
  430. return AVERROR(ENOMEM);
  431. }
  432. memcpy((uint8_t*)stats->buf + stats->sz,
  433. pkt->data.twopass_stats.buf, pkt->data.twopass_stats.sz);
  434. stats->sz += pkt->data.twopass_stats.sz;
  435. break;
  436. }
  437. case VPX_CODEC_PSNR_PKT: //FIXME add support for CODEC_FLAG_PSNR
  438. case VPX_CODEC_CUSTOM_PKT:
  439. //ignore unsupported/unrecognized packet types
  440. break;
  441. }
  442. }
  443. return size;
  444. }
  445. static int vp8_encode(AVCodecContext *avctx, uint8_t *buf, int buf_size,
  446. void *data)
  447. {
  448. VP8Context *ctx = avctx->priv_data;
  449. AVFrame *frame = data;
  450. struct vpx_image *rawimg = NULL;
  451. int64_t timestamp = 0;
  452. int res, coded_size;
  453. if (frame) {
  454. rawimg = &ctx->rawimg;
  455. rawimg->planes[VPX_PLANE_Y] = frame->data[0];
  456. rawimg->planes[VPX_PLANE_U] = frame->data[1];
  457. rawimg->planes[VPX_PLANE_V] = frame->data[2];
  458. rawimg->stride[VPX_PLANE_Y] = frame->linesize[0];
  459. rawimg->stride[VPX_PLANE_U] = frame->linesize[1];
  460. rawimg->stride[VPX_PLANE_V] = frame->linesize[2];
  461. timestamp = frame->pts;
  462. }
  463. res = vpx_codec_encode(&ctx->encoder, rawimg, timestamp,
  464. avctx->ticks_per_frame, 0, ctx->deadline);
  465. if (res != VPX_CODEC_OK) {
  466. log_encoder_error(avctx, "Error encoding frame");
  467. return AVERROR_INVALIDDATA;
  468. }
  469. coded_size = queue_frames(avctx, buf, buf_size, avctx->coded_frame);
  470. if (!frame && avctx->flags & CODEC_FLAG_PASS1) {
  471. unsigned int b64_size = AV_BASE64_SIZE(ctx->twopass_stats.sz);
  472. avctx->stats_out = av_malloc(b64_size);
  473. if (!avctx->stats_out) {
  474. av_log(avctx, AV_LOG_ERROR, "Stat buffer alloc (%d bytes) failed\n",
  475. b64_size);
  476. return AVERROR(ENOMEM);
  477. }
  478. av_base64_encode(avctx->stats_out, b64_size, ctx->twopass_stats.buf,
  479. ctx->twopass_stats.sz);
  480. }
  481. return coded_size;
  482. }
  483. AVCodec ff_libvpx_encoder = {
  484. "libvpx",
  485. AVMEDIA_TYPE_VIDEO,
  486. CODEC_ID_VP8,
  487. sizeof(VP8Context),
  488. vp8_init,
  489. vp8_encode,
  490. vp8_free,
  491. NULL,
  492. CODEC_CAP_DELAY,
  493. .pix_fmts = (const enum PixelFormat[]){PIX_FMT_YUV420P, PIX_FMT_NONE},
  494. .long_name = NULL_IF_CONFIG_SMALL("libvpx VP8"),
  495. .priv_class= &class,
  496. };