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DCA: fix multichannel -> 2 channel downmix.
Patch by Nick Brereton Originally committed as revision 24555 to svn://svn.ffmpeg.org/ffmpeg/trunk
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@ -879,17 +879,19 @@ static void lfe_interpolation_fir(DCAContext *s, int decimation_select,
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/* downmixing routines */
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#define MIX_REAR1(samples, si1, rs, coef) \
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samples[i] += samples[si1] * coef[rs][0]; \
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samples[i+256] += samples[si1] * coef[rs][1];
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samples[i] += (samples[si1] - add_bias) * coef[rs][0]; \
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samples[i+256] += (samples[si1] - add_bias) * coef[rs][1];
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#define MIX_REAR2(samples, si1, si2, rs, coef) \
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samples[i] += samples[si1] * coef[rs][0] + samples[si2] * coef[rs+1][0]; \
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samples[i+256] += samples[si1] * coef[rs][1] + samples[si2] * coef[rs+1][1];
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samples[i] += (samples[si1] - add_bias) * coef[rs][0] + (samples[si2] - add_bias) * coef[rs+1][0]; \
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samples[i+256] += (samples[si1] - add_bias) * coef[rs][1] + (samples[si2] - add_bias) * coef[rs+1][1];
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#define MIX_FRONT3(samples, coef) \
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t = samples[i]; \
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samples[i] = t * coef[0][0] + samples[i+256] * coef[1][0] + samples[i+512] * coef[2][0]; \
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samples[i+256] = t * coef[0][1] + samples[i+256] * coef[1][1] + samples[i+512] * coef[2][1];
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t = samples[i+c] - add_bias; \
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u = samples[i+l] - add_bias; \
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v = samples[i+r] - add_bias; \
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samples[i] = t * coef[0][0] + u * coef[1][0] + v * coef[2][0] + add_bias; \
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samples[i+256] = t * coef[0][1] + u * coef[1][1] + v * coef[2][1] + add_bias;
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#define DOWNMIX_TO_STEREO(op1, op2) \
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for (i = 0; i < 256; i++){ \
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@ -898,10 +900,12 @@ static void lfe_interpolation_fir(DCAContext *s, int decimation_select,
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}
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static void dca_downmix(float *samples, int srcfmt,
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int downmix_coef[DCA_PRIM_CHANNELS_MAX][2])
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int downmix_coef[DCA_PRIM_CHANNELS_MAX][2],
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const int8_t *channel_mapping, float add_bias)
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{
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int c,l,r,sl,sr,s;
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int i;
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float t;
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float t, u, v;
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float coef[DCA_PRIM_CHANNELS_MAX][2];
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for (i=0; i<DCA_PRIM_CHANNELS_MAX; i++) {
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@ -920,21 +924,36 @@ static void dca_downmix(float *samples, int srcfmt,
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case DCA_STEREO:
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break;
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case DCA_3F:
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c = channel_mapping[0] * 256;
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l = channel_mapping[1] * 256;
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r = channel_mapping[2] * 256;
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DOWNMIX_TO_STEREO(MIX_FRONT3(samples, coef),);
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break;
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case DCA_2F1R:
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DOWNMIX_TO_STEREO(MIX_REAR1(samples, i + 512, 2, coef),);
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s = channel_mapping[2] * 256;
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DOWNMIX_TO_STEREO(MIX_REAR1(samples, i + s, 2, coef),);
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break;
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case DCA_3F1R:
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c = channel_mapping[0] * 256;
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l = channel_mapping[1] * 256;
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r = channel_mapping[2] * 256;
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s = channel_mapping[3] * 256;
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DOWNMIX_TO_STEREO(MIX_FRONT3(samples, coef),
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MIX_REAR1(samples, i + 768, 3, coef));
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MIX_REAR1(samples, i + s, 3, coef));
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break;
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case DCA_2F2R:
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DOWNMIX_TO_STEREO(MIX_REAR2(samples, i + 512, i + 768, 2, coef),);
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sl = channel_mapping[2] * 256;
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sr = channel_mapping[3] * 256;
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DOWNMIX_TO_STEREO(MIX_REAR2(samples, i + sl, i + sr, 2, coef),);
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break;
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case DCA_3F2R:
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c = channel_mapping[0] * 256;
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l = channel_mapping[1] * 256;
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r = channel_mapping[2] * 256;
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sl = channel_mapping[3] * 256;
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sr = channel_mapping[4] * 256;
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DOWNMIX_TO_STEREO(MIX_FRONT3(samples, coef),
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MIX_REAR2(samples, i + 768, i + 1024, 3, coef));
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MIX_REAR2(samples, i + sl, i + sr, 3, coef));
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break;
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}
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}
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@ -1117,7 +1136,7 @@ static int dca_filter_channels(DCAContext * s, int block_index)
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/* Down mixing */
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if (s->avctx->request_channels == 2 && s->prim_channels > 2) {
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dca_downmix(s->samples, s->amode, s->downmix_coef);
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dca_downmix(s->samples, s->amode, s->downmix_coef, s->channel_order_tab, s->add_bias);
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}
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/* Generate LFE samples for this subsubframe FIXME!!! */
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