enabling denorm pitch only at low bit-rate
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00fb6b0765
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3 changed files with 22 additions and 13 deletions
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@ -216,7 +216,7 @@ void denormalise_bands(const CELTMode *m, const celt_norm_t * restrict X, celt_s
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}
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}
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int compute_new_pitch(const CELTMode *m, const celt_sig_t *X, const celt_sig_t *P, int *gain_id)
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int compute_new_pitch(const CELTMode *m, const celt_sig_t *X, const celt_sig_t *P, int norm_rate, int *gain_id)
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{
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int j ;
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celt_word16_t g;
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@ -248,22 +248,31 @@ int compute_new_pitch(const CELTMode *m, const celt_sig_t *X, const celt_sig_t *
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#ifdef FIXED_POINT
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{
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celt_word32_t num, den;
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celt_word16_t fact;
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fact = MULT16_16(QCONST16(.04, 14), norm_rate);
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if (fact < QCONST16(1., 14))
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fact = QCONST16(1., 14);
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num = Sxy;
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den = EPSILON+Sxx+MULT16_32_Q15(QCONST16(.03,15),Syy);
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shift = celt_ilog2(Sxy)-16;
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if (shift < 0)
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shift = 0;
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g = DIV32(SHL32(SHR32(num,shift),14),SHR32(den,shift));
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if (Sxy < SHR32(MULT16_16(celt_sqrt(EPSILON+Sxx),celt_sqrt(EPSILON+Syy)),1))
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if (Sxy < MULT16_32_Q15(fact, MULT16_16(celt_sqrt(EPSILON+Sxx),celt_sqrt(EPSILON+Syy))))
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g = 0;
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/* This MUST round down */
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*gain_id = EXTRACT16(SHR32(MULT16_16(20,(g-QCONST16(.5,14))),14));
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}
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#else
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g = Sxy/(.1+Sxx+.03*Syy);
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if (Sxy < .5*celt_sqrt(.1+Sxx*Syy))
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g = 0;
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*gain_id = floor(20*(g-.5));
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{
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float fact = .04*norm_rate;
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if (fact < 1)
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fact = 1;
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g = Sxy/(.1+Sxx+.03*Syy);
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if (Sxy < .5*fact*celt_sqrt(1+Sxx*Syy))
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g = 0;
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*gain_id = floor(20*(g-.5));
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}
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#endif
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if (*gain_id < 0)
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{
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@ -64,7 +64,7 @@ void renormalise_bands(const CELTMode *m, celt_norm_t * restrict X);
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*/
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void denormalise_bands(const CELTMode *m, const celt_norm_t * restrict X, celt_sig_t * restrict freq, const celt_ener_t *bands);
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int compute_new_pitch(const CELTMode *m, const celt_sig_t *X, const celt_sig_t *P, int *gain_id);
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int compute_new_pitch(const CELTMode *m, const celt_sig_t *X, const celt_sig_t *P, int norm_rate, int *gain_id);
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void apply_new_pitch(const CELTMode *m, celt_sig_t *X, const celt_sig_t *P, int gain_id, int pred);
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@ -523,6 +523,7 @@ int celt_encode_float(CELTEncoder * restrict st, const celt_sig_t * pcm, celt_si
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int mdct_weight_shift = 0;
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int mdct_weight_pos=0;
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int gain_id=0;
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int norm_rate;
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SAVE_STACK;
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if (check_encoder(st) != CELT_OK)
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@ -659,15 +660,13 @@ int celt_encode_float(CELTEncoder * restrict st, const celt_sig_t * pcm, celt_si
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#endif
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}
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compute_band_energies(st->mode, freq, bandE);
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for (i=0;i<st->mode->nbEBands*C;i++)
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bandLogE[i] = amp2Log(bandE[i]);
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norm_rate = (nbCompressedBytes-5)*8*(celt_uint32_t)st->mode->Fs/(C*N)>>10;
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/* Pitch analysis: we do it early to save on the peak stack space */
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/* Don't use pitch if there isn't enough data available yet,
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or if we're using shortBlocks */
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has_pitch = st->pitch_enabled && st->pitch_permitted && (N <= 512)
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&& (st->pitch_available >= MAX_PERIOD) && (!shortBlocks);
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&& (st->pitch_available >= MAX_PERIOD) && (!shortBlocks)
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&& norm_rate < 50;
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if (has_pitch)
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{
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find_spectral_pitch(st->mode, st->mode->fft, &st->mode->psy, in, st->out_mem, st->mode->window, NULL, 2*N-2*N4, MAX_PERIOD-(2*N-2*N4), &pitch_index);
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@ -682,8 +681,9 @@ int celt_encode_float(CELTEncoder * restrict st, const celt_sig_t * pcm, celt_si
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ALLOC(pitch_freq, C*N, celt_sig_t); /**< Interleaved signal MDCTs */
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if (has_pitch)
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{
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compute_mdcts(st->mode, 0, st->out_mem+pitch_index*C, pitch_freq);
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has_pitch = compute_new_pitch(st->mode, freq, pitch_freq, &gain_id);
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has_pitch = compute_new_pitch(st->mode, freq, pitch_freq, norm_rate, &gain_id);
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}
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if (has_pitch)
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