Fine energy allocation cleanup
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f1c8fb1067
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3 changed files with 23 additions and 18 deletions
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@ -839,7 +839,7 @@ int celt_encode_with_ec_float(CELTEncoder * restrict st, const celt_sig * pcm, c
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for (i=0;i<st->mode->nbEBands;i++)
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offsets[i] = 0;
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bits = nbCompressedBytes*8 - ec_enc_tell(enc, 0) - 1;
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compute_allocation(st->mode, st->start, st->end, offsets, bits, pulses, fine_quant, fine_priority, C, M);
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compute_allocation(st->mode, st->start, st->end, offsets, bits, pulses, fine_quant, fine_priority, C, LM);
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quant_fine_energy(st->mode, st->start, st->end, bandE, oldBandE, error, fine_quant, enc, C);
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@ -1509,7 +1509,7 @@ int celt_decode_with_ec_float(CELTDecoder * restrict st, const unsigned char *da
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bits = len*8 - ec_dec_tell(dec, 0) - 1;
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ALLOC(fine_quant, st->mode->nbEBands, int);
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compute_allocation(st->mode, st->start, st->end, offsets, bits, pulses, fine_quant, fine_priority, C, M);
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compute_allocation(st->mode, st->start, st->end, offsets, bits, pulses, fine_quant, fine_priority, C, LM);
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/*bits = ec_dec_tell(dec, 0);
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compute_fine_allocation(st->mode, fine_quant, (20*C+len*8/5-(ec_dec_tell(dec, 0)-bits))/C);*/
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@ -136,7 +136,7 @@ void compute_pulse_cache(CELTMode *m, int LM)
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static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int *bits1, int *bits2, int total, int *bits, int *ebits, int *fine_priority, int len, int _C, int M)
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static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int *bits1, int *bits2, int total, int *bits, int *ebits, int *fine_priority, int len, int _C, int LM)
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{
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int psum;
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int lo, hi;
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@ -145,7 +145,7 @@ static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int
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const int C = CHANNELS(_C);
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SAVE_STACK;
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logM = log2_frac(M, BITRES);
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logM = LM<<BITRES;
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lo = 0;
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hi = 1<<BITRES;
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while (hi-lo != 1)
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@ -181,13 +181,18 @@ static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int
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{
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int N0, N, den;
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int offset;
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int NClogN;
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N0 = m->eBands[j+1]-m->eBands[j];
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N=M*N0;
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N=N0<<LM;
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NClogN = N*C*(m->logN[j] + logM);
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/* Compensate for the extra DoF in stereo */
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den=(C*N+ ((C==2 && N>2) ? 1 : 0));
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/* Offset for the number of fine bits compared to their "fair share" of total/N */
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offset = N*C*(((m->logN[j] + logM)>>1)-FINE_OFFSET);
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/* Offset for the number of fine bits by log2(N)/2 + FINE_OFFSET
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compared to their "fair share" of total/N */
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offset = (NClogN>>1)-N*C*FINE_OFFSET;
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/* N=2 is the only point that doesn't match the curve */
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if (N==2)
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@ -195,10 +200,11 @@ static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int
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/* Changing the offset for allocating the second and third fine energy bit */
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if (bits[j] + offset < den*2<<BITRES)
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offset += (m->logN[j] + logM)*N*C>>2;
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offset += NClogN>>2;
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else if (bits[j] + offset < den*3<<BITRES)
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offset += (m->logN[j] + logM)*N*C>>3;
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offset += NClogN>>3;
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/* Divide with rounding */
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ebits[j] = (bits[j] + offset + (den<<(BITRES-1))) / (den<<BITRES);
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/* If we rounded down, make it a candidate for final fine energy pass */
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@ -215,12 +221,11 @@ static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int
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if (C*ebits[j] > (bits[j]>>BITRES))
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ebits[j] = bits[j]/C >> BITRES;
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/* More than that is useless because that's about as far as PVQ can go */
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if (ebits[j]>7)
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ebits[j]=7;
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if (ebits[j]<0)
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ebits[j]=0;
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/* The bits used for fine allocation can't be used for pulses */
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/* The other bits are assigned to PVQ */
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bits[j] -= C*ebits[j]<<BITRES;
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if (bits[j] < 0)
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bits[j] = 0;
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@ -228,7 +233,7 @@ static inline void interp_bits2pulses(const CELTMode *m, int start, int end, int
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RESTORE_STACK;
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}
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void compute_allocation(const CELTMode *m, int start, int end, int *offsets, int total, int *pulses, int *ebits, int *fine_priority, int _C, int M)
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void compute_allocation(const CELTMode *m, int start, int end, int *offsets, int total, int *pulses, int *ebits, int *fine_priority, int _C, int LM)
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{
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int lo, hi, len, j;
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const int C = CHANNELS(_C);
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@ -249,7 +254,7 @@ void compute_allocation(const CELTMode *m, int start, int end, int *offsets, int
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for (j=start;j<end;j++)
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{
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int N = m->eBands[j+1]-m->eBands[j];
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bits1[j] = (C*M*N*m->allocVectors[mid*len+j] + offsets[j]);
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bits1[j] = ((C*N*m->allocVectors[mid*len+j]<<LM) + offsets[j]);
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if (bits1[j] < 0)
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bits1[j] = 0;
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psum += bits1[j];
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@ -266,14 +271,14 @@ void compute_allocation(const CELTMode *m, int start, int end, int *offsets, int
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for (j=start;j<end;j++)
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{
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int N = m->eBands[j+1]-m->eBands[j];
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bits1[j] = C*M*N*m->allocVectors[lo*len+j] + offsets[j];
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bits2[j] = C*M*N*m->allocVectors[hi*len+j] + offsets[j];
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bits1[j] = (C*N*m->allocVectors[lo*len+j]<<LM) + offsets[j];
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bits2[j] = (C*N*m->allocVectors[hi*len+j]<<LM) + offsets[j];
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if (bits1[j] < 0)
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bits1[j] = 0;
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if (bits2[j] < 0)
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bits2[j] = 0;
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}
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interp_bits2pulses(m, start, end, bits1, bits2, total, pulses, ebits, fine_priority, len, C, M);
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interp_bits2pulses(m, start, end, bits1, bits2, total, pulses, ebits, fine_priority, len, C, LM);
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RESTORE_STACK;
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}
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@ -104,7 +104,7 @@ celt_int16 **compute_alloc_cache(CELTMode *m, int M);
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@param pulses Number of pulses per band (returned)
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@return Total number of bits allocated
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*/
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void compute_allocation(const CELTMode *m, int start, int end, int *offsets, int total, int *pulses, int *ebits, int *fine_priority, int _C, int M);
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void compute_allocation(const CELTMode *m, int start, int end, int *offsets, int total, int *pulses, int *ebits, int *fine_priority, int _C, int LM);
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#endif
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