| @@ -1281,6 +1281,116 @@ int ff_set_ref_count(H264Context *h) | |||
| return 0; | |||
| } | |||
| static int find_start_code(const uint8_t *buf, int buf_size, | |||
| int buf_index, int next_avc) | |||
| { | |||
| // start code prefix search | |||
| for (; buf_index + 3 < next_avc; buf_index++) | |||
| // This should always succeed in the first iteration. | |||
| if (buf[buf_index] == 0 && | |||
| buf[buf_index + 1] == 0 && | |||
| buf[buf_index + 2] == 1) | |||
| break; | |||
| if (buf_index + 3 >= buf_size) | |||
| return buf_size; | |||
| return buf_index + 3; | |||
| } | |||
| static int get_avc_nalsize(H264Context *h, const uint8_t *buf, | |||
| int buf_size, int *buf_index) | |||
| { | |||
| int i, nalsize = 0; | |||
| if (*buf_index >= buf_size - h->nal_length_size) | |||
| return -1; | |||
| for (i = 0; i < h->nal_length_size; i++) | |||
| nalsize = (nalsize << 8) | buf[(*buf_index)++]; | |||
| if (nalsize <= 0 || nalsize > buf_size - *buf_index) { | |||
| av_log(h->avctx, AV_LOG_ERROR, | |||
| "AVC: nal size %d\n", nalsize); | |||
| return -1; | |||
| } | |||
| return nalsize; | |||
| } | |||
| static int get_bit_length(H264Context *h, const uint8_t *buf, | |||
| const uint8_t *ptr, int dst_length, | |||
| int i, int next_avc) | |||
| { | |||
| if ((h->workaround_bugs & FF_BUG_AUTODETECT) && i + 3 < next_avc && | |||
| buf[i] == 0x00 && buf[i + 1] == 0x00 && | |||
| buf[i + 2] == 0x01 && buf[i + 3] == 0xE0) | |||
| h->workaround_bugs |= FF_BUG_TRUNCATED; | |||
| if (!(h->workaround_bugs & FF_BUG_TRUNCATED)) | |||
| while (dst_length > 0 && ptr[dst_length - 1] == 0) | |||
| dst_length--; | |||
| if (!dst_length) | |||
| return 0; | |||
| return 8 * dst_length - decode_rbsp_trailing(h, ptr + dst_length - 1); | |||
| } | |||
| static int get_last_needed_nal(H264Context *h, const uint8_t *buf, int buf_size) | |||
| { | |||
| int next_avc = h->is_avc ? 0 : buf_size; | |||
| int nal_index = 0; | |||
| int buf_index = 0; | |||
| int nals_needed = 0; | |||
| while(1) { | |||
| int nalsize = 0; | |||
| int dst_length, bit_length, consumed; | |||
| const uint8_t *ptr; | |||
| if (buf_index >= next_avc) { | |||
| nalsize = get_avc_nalsize(h, buf, buf_size, &buf_index); | |||
| if (nalsize < 0) | |||
| break; | |||
| next_avc = buf_index + nalsize; | |||
| } else { | |||
| buf_index = find_start_code(buf, buf_size, buf_index, next_avc); | |||
| if (buf_index >= buf_size) | |||
| break; | |||
| } | |||
| ptr = ff_h264_decode_nal(h, buf + buf_index, &dst_length, &consumed, | |||
| next_avc - buf_index); | |||
| if (ptr == NULL || dst_length < 0) | |||
| return AVERROR_INVALIDDATA; | |||
| buf_index += consumed; | |||
| bit_length = get_bit_length(h, buf, ptr, dst_length, | |||
| buf_index, next_avc); | |||
| nal_index++; | |||
| /* packets can sometimes contain multiple PPS/SPS, | |||
| * e.g. two PAFF field pictures in one packet, or a demuxer | |||
| * which splits NALs strangely if so, when frame threading we | |||
| * can't start the next thread until we've read all of them */ | |||
| switch (h->nal_unit_type) { | |||
| case NAL_SPS: | |||
| case NAL_PPS: | |||
| nals_needed = nal_index; | |||
| break; | |||
| case NAL_DPA: | |||
| case NAL_IDR_SLICE: | |||
| case NAL_SLICE: | |||
| init_get_bits(&h->gb, ptr, bit_length); | |||
| if (!get_ue_golomb(&h->gb)) | |||
| nals_needed = nal_index; | |||
| } | |||
| } | |||
| return nals_needed; | |||
| } | |||
| static int decode_nal_units(H264Context *h, const uint8_t *buf, int buf_size, | |||
| int parse_extradata) | |||
| { | |||
| @@ -1289,7 +1399,6 @@ static int decode_nal_units(H264Context *h, const uint8_t *buf, int buf_size, | |||
| int buf_index; | |||
| unsigned context_count; | |||
| int next_avc; | |||
| int pass = !(avctx->active_thread_type & FF_THREAD_FRAME); | |||
| int nals_needed = 0; ///< number of NALs that need decoding before the next frame thread starts | |||
| int nal_index; | |||
| int ret = 0; | |||
| @@ -1302,7 +1411,10 @@ static int decode_nal_units(H264Context *h, const uint8_t *buf, int buf_size, | |||
| ff_h264_reset_sei(h); | |||
| } | |||
| for (; pass <= 1; pass++) { | |||
| if (avctx->active_thread_type & FF_THREAD_FRAME) | |||
| nals_needed = get_last_needed_nal(h, buf, buf_size); | |||
| { | |||
| buf_index = 0; | |||
| context_count = 0; | |||
| next_avc = h->is_avc ? 0 : buf_size; | |||
| @@ -1312,38 +1424,18 @@ static int decode_nal_units(H264Context *h, const uint8_t *buf, int buf_size, | |||
| int dst_length; | |||
| int bit_length; | |||
| const uint8_t *ptr; | |||
| int i, nalsize = 0; | |||
| int nalsize = 0; | |||
| int err; | |||
| if (buf_index >= next_avc) { | |||
| if (buf_index >= buf_size - h->nal_length_size) | |||
| break; | |||
| nalsize = 0; | |||
| for (i = 0; i < h->nal_length_size; i++) | |||
| nalsize = (nalsize << 8) | buf[buf_index++]; | |||
| if (nalsize <= 0 || nalsize > buf_size - buf_index) { | |||
| av_log(h->avctx, AV_LOG_ERROR, | |||
| "AVC: nal size %d\n", nalsize); | |||
| nalsize = get_avc_nalsize(h, buf, buf_size, &buf_index); | |||
| if (nalsize < 0) | |||
| break; | |||
| } | |||
| next_avc = buf_index + nalsize; | |||
| } else { | |||
| // start code prefix search | |||
| for (; buf_index + 3 < next_avc; buf_index++) | |||
| // This should always succeed in the first iteration. | |||
| if (buf[buf_index] == 0 && | |||
| buf[buf_index + 1] == 0 && | |||
| buf[buf_index + 2] == 1) | |||
| break; | |||
| if (buf_index + 3 >= buf_size) { | |||
| buf_index = buf_size; | |||
| buf_index = find_start_code(buf, buf_size, buf_index, next_avc); | |||
| if (buf_index >= buf_size) | |||
| break; | |||
| } | |||
| buf_index += 3; | |||
| if (buf_index >= next_avc) | |||
| continue; | |||
| } | |||
| hx = h->thread_context[context_count]; | |||
| @@ -1354,18 +1446,9 @@ static int decode_nal_units(H264Context *h, const uint8_t *buf, int buf_size, | |||
| ret = -1; | |||
| goto end; | |||
| } | |||
| i = buf_index + consumed; | |||
| if ((h->workaround_bugs & FF_BUG_AUTODETECT) && i + 3 < next_avc && | |||
| buf[i] == 0x00 && buf[i + 1] == 0x00 && | |||
| buf[i + 2] == 0x01 && buf[i + 3] == 0xE0) | |||
| h->workaround_bugs |= FF_BUG_TRUNCATED; | |||
| if (!(h->workaround_bugs & FF_BUG_TRUNCATED)) | |||
| while (dst_length > 0 && ptr[dst_length - 1] == 0) | |||
| dst_length--; | |||
| bit_length = !dst_length ? 0 | |||
| : (8 * dst_length - | |||
| decode_rbsp_trailing(h, ptr + dst_length - 1)); | |||
| bit_length = get_bit_length(h, buf, ptr, dst_length, | |||
| buf_index + consumed, next_avc); | |||
| if (h->avctx->debug & FF_DEBUG_STARTCODE) | |||
| av_log(h->avctx, AV_LOG_DEBUG, | |||
| @@ -1380,26 +1463,6 @@ static int decode_nal_units(H264Context *h, const uint8_t *buf, int buf_size, | |||
| buf_index += consumed; | |||
| nal_index++; | |||
| if (pass == 0) { | |||
| /* packets can sometimes contain multiple PPS/SPS, | |||
| * e.g. two PAFF field pictures in one packet, or a demuxer | |||
| * which splits NALs strangely if so, when frame threading we | |||
| * can't start the next thread until we've read all of them */ | |||
| switch (hx->nal_unit_type) { | |||
| case NAL_SPS: | |||
| case NAL_PPS: | |||
| nals_needed = nal_index; | |||
| break; | |||
| case NAL_DPA: | |||
| case NAL_IDR_SLICE: | |||
| case NAL_SLICE: | |||
| init_get_bits(&hx->gb, ptr, bit_length); | |||
| if (!get_ue_golomb(&hx->gb)) | |||
| nals_needed = nal_index; | |||
| } | |||
| continue; | |||
| } | |||
| if (avctx->skip_frame >= AVDISCARD_NONREF && | |||
| h->nal_ref_idc == 0 && | |||
| h->nal_unit_type != NAL_SEI) | |||