More simplifications to the VQ search
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1 changed files with 5 additions and 10 deletions
15
libcelt/vq.c
15
libcelt/vq.c
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@ -167,7 +167,7 @@ void alg_quant(celt_norm *X, int N, int K, int spread, int B, celt_norm *lowband
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VARDECL(celt_norm, y);
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VARDECL(int, iy);
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VARDECL(celt_word16, signx);
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int j;
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int i, j;
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celt_word16 s;
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int pulsesLeft;
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celt_word32 sum;
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@ -284,31 +284,28 @@ void alg_quant(celt_norm *X, int N, int K, int spread, int B, celt_norm *lowband
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pulsesLeft=0;
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}
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while (pulsesLeft > 0)
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s = SHL16(1, yshift);
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for (i=0;i<pulsesLeft;i++)
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{
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int best_id;
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celt_word16 magnitude;
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celt_word32 best_num = -VERY_LARGE16;
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celt_word16 best_den = 0;
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#ifdef FIXED_POINT
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int rshift;
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#endif
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#ifdef FIXED_POINT
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rshift = yshift+1+celt_ilog2(K-pulsesLeft+1);
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rshift = yshift+1+celt_ilog2(K-pulsesLeft+i+1);
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#endif
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magnitude = SHL16(1, yshift);
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best_id = 0;
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/* The squared magnitude term gets added anyway, so we might as well
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add it outside the loop */
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yy = MAC16_16(yy, magnitude,magnitude);
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yy = MAC16_16(yy, s,s);
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/* Choose between fast and accurate strategy depending on where we are in the search */
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/* This should ensure that anything we can process will have a better score */
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j=0;
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do {
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celt_word16 Rxy, Ryy;
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/* Select sign based on X[j] alone */
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s = magnitude;
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/* Temporary sums of the new pulse(s) */
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Rxy = EXTRACT16(SHR32(MAC16_16(xy, s,X[j]),rshift));
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/* We're multiplying y[j] by two so we don't have to do it here */
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@ -329,7 +326,6 @@ void alg_quant(celt_norm *X, int N, int K, int spread, int B, celt_norm *lowband
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} while (++j<N);
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j = best_id;
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s = SHL16(1, yshift);
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/* Updating the sums of the new pulse(s) */
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xy = xy + MULT16_16(s,X[j]);
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@ -340,7 +336,6 @@ void alg_quant(celt_norm *X, int N, int K, int spread, int B, celt_norm *lowband
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/* Multiplying y[j] by 2 so we don't have to do it everywhere else */
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y[j] += 2*s;
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iy[j]++;
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pulsesLeft--;
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}
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/* Put the original sign back */
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