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@ -300,11 +300,6 @@ static av_cold int decode_init(AVCodecContext *avctx) |
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s->packet_loss = 1; |
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s->len_prefix = (s->decode_flags & 0x40); |
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if (!s->len_prefix) { |
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av_log_ask_for_sample(avctx, "no length prefix\n"); |
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return AVERROR_INVALIDDATA; |
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} |
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/** get frame len */ |
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s->samples_per_frame = 1 << ff_wma_get_frame_len_bits(avctx->sample_rate, |
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3, s->decode_flags); |
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@ -1368,6 +1363,7 @@ static int decode_frame(WMAProDecodeCtx *s) |
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} else |
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s->samples += s->num_channels * s->samples_per_frame; |
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if (s->len_prefix) { |
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if (len != (get_bits_count(gb) - s->frame_offset) + 2) { |
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/** FIXME: not sure if this is always an error */ |
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av_log(s->avctx, AV_LOG_ERROR, "frame[%i] would have to skip %i bits\n", |
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@ -1378,6 +1374,10 @@ static int decode_frame(WMAProDecodeCtx *s) |
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/** skip the rest of the frame data */ |
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skip_bits_long(gb, len - (get_bits_count(gb) - s->frame_offset) - 1); |
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} else { |
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while (get_bits_count(gb) < s->num_saved_bits && get_bits1(gb) == 0) { |
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} |
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} |
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/** decode trailer bit */ |
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more_frames = get_bits1(gb); |
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@ -1515,18 +1515,34 @@ static int decode_packet(AVCodecContext *avctx, |
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s->num_saved_bits - s->frame_offset); |
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} |
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s->packet_loss = 0; |
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if (s->packet_loss) { |
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/** reset number of saved bits so that the decoder
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does not start to decode incomplete frames in the |
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s->len_prefix == 0 case */ |
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s->num_saved_bits = 0; |
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s->packet_loss = 0; |
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} |
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} else { |
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int frame_size; |
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s->buf_bit_size = avpkt->size << 3; |
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init_get_bits(gb, avpkt->data, s->buf_bit_size); |
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skip_bits(gb, s->packet_offset); |
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if (remaining_bits(s, gb) > s->log2_frame_size && |
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if (s->len_prefix && remaining_bits(s, gb) > s->log2_frame_size && |
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(frame_size = show_bits(gb, s->log2_frame_size)) && |
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frame_size <= remaining_bits(s, gb)) { |
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save_bits(s, gb, frame_size, 0); |
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s->packet_done = !decode_frame(s); |
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} else if (!s->len_prefix |
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&& s->num_saved_bits > get_bits_count(&s->gb)) { |
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/** when the frames do not have a length prefix, we don't know
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the compressed length of the individual frames |
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however, we know what part of a new packet belongs to the |
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previous frame |
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therefore we save the incoming packet first, then we append |
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the "previous frame" data from the next packet so that |
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we get a buffer that only contains full frames */ |
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s->packet_done = !decode_frame(s); |
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} else |
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s->packet_done = 1; |
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} |
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