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@@ -504,9 +504,6 @@ static int adpcm_decode_frame(AVCodecContext *avctx, |
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if (st && channel) |
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samples++; |
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*samples++ = cs->predictor; |
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samples += st; |
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for(m=32; n>0 && m>0; n--, m--) { /* in QuickTime, IMA is encoded by chuncks of 34 bytes (=64 samples) */ |
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*samples = adpcm_ima_expand_nibble(cs, src[0] & 0x0F); |
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samples += avctx->channels; |
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@@ -517,7 +514,7 @@ static int adpcm_decode_frame(AVCodecContext *avctx, |
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if(st) { /* handle stereo interlacing */ |
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c->channel = (channel + 1) % 2; /* we get one packet for left, then one for right data */ |
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if(channel == 0) { /* wait for the other packet before outputing anything */ |
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if(channel == 1) { /* wait for the other packet before outputing anything */ |
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*data_size = 0; |
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return src - buf; |
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} |
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@@ -583,12 +580,10 @@ static int adpcm_decode_frame(AVCodecContext *avctx, |
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if(st){ |
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c->status[1].step_index= (int16_t)(src[0] + (src[1]<<8)); src+=2; |
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} |
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// if (cs->step_index < 0) cs->step_index = 0; |
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// if (cs->step_index > 88) cs->step_index = 88; |
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if (cs->step_index < 0) cs->step_index = 0; |
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if (cs->step_index > 88) cs->step_index = 88; |
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m= (buf_size - (src - buf))>>st; |
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//printf("%d %d %d %d\n", st, m, c->status[0].predictor, c->status[0].step_index); |
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//FIXME / XXX decode chanels individual & interleave samples |
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for(i=0; i<m; i++) { |
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*samples++ = adpcm_4xa_expand_nibble(&c->status[0], src[i] & 0x0F); |
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if (st) |
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