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@ -156,19 +156,26 @@ static int decode_tag(AVCodecContext * avctx, |
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const uint8_t *buf = avpkt->data; |
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int buf_size = avpkt->size; |
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NellyMoserDecodeContext *s = avctx->priv_data; |
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int blocks, i; |
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int blocks, i, block_size; |
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int16_t* samples; |
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*data_size = 0; |
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samples = (int16_t*)data; |
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if (buf_size < avctx->block_align) |
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if (buf_size < avctx->block_align) { |
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*data_size = 0; |
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return buf_size; |
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} |
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if (buf_size % 64) { |
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av_log(avctx, AV_LOG_ERROR, "Tag size %d.\n", buf_size); |
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*data_size = 0; |
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return buf_size; |
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} |
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blocks = buf_size / 64; |
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block_size = NELLY_SAMPLES * av_get_bytes_per_sample(avctx->sample_fmt); |
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blocks = FFMIN(buf_size / 64, *data_size / block_size); |
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if (blocks <= 0) { |
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av_log(avctx, AV_LOG_ERROR, "Output buffer is too small\n"); |
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return AVERROR(EINVAL); |
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} |
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/* Normal numbers of blocks for sample rates:
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* 8000 Hz - 1 |
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* 11025 Hz - 2 |
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@ -180,8 +187,8 @@ static int decode_tag(AVCodecContext * avctx, |
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for (i=0 ; i<blocks ; i++) { |
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nelly_decode_block(s, &buf[i*NELLY_BLOCK_LEN], s->float_buf); |
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s->fmt_conv.float_to_int16(&samples[i*NELLY_SAMPLES], s->float_buf, NELLY_SAMPLES); |
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*data_size += NELLY_SAMPLES*sizeof(int16_t); |
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} |
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*data_size = blocks * block_size; |
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return buf_size; |
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} |
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