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opus: simplify coarse energy beta coefficients
Just put the subtraction in the table. Signed-off-by: Rostislav Pehlivanov <atomnuker@gmail.com>
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9b93795890
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@ -29,25 +29,21 @@
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#include "opustab.h"
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#include "opus_pvq.h"
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/* Use the 2D z-transform to apply prediction in both the time domain (alpha)
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* and the frequency domain (beta) */
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static void celt_decode_coarse_energy(CeltFrame *f, OpusRangeCoder *rc)
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{
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int i, j;
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float prev[2] = {0};
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float alpha, beta;
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const uint8_t *model;
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float prev[2] = { 0 };
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float alpha = ff_celt_alpha_coef[f->size];
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float beta = ff_celt_beta_coef[f->size];
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const uint8_t *model = ff_celt_coarse_energy_dist[f->size][0];
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/* use the 2D z-transform to apply prediction in both */
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/* the time domain (alpha) and the frequency domain (beta) */
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if (opus_rc_tell(rc)+3 <= f->framebits && ff_opus_rc_dec_log(rc, 3)) {
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/* intra frame */
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alpha = 0;
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beta = 1.0f - 4915.0f/32768.0f;
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/* intra frame */
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if (opus_rc_tell(rc) + 3 <= f->framebits && ff_opus_rc_dec_log(rc, 3)) {
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alpha = 0.0f;
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beta = 1.0f - (4915.0f/32768.0f);
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model = ff_celt_coarse_energy_dist[f->size][1];
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} else {
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alpha = ff_celt_alpha_coef[f->size];
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beta = 1.0f - ff_celt_beta_coef[f->size];
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model = ff_celt_coarse_energy_dist[f->size][0];
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}
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for (i = 0; i < CELT_MAX_BANDS; i++) {
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@ -644,10 +644,10 @@ static void exp_quant_coarse(OpusRangeCoder *rc, CeltFrame *f,
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if (intra) {
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alpha = 0.0f;
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beta = 1.0f - 4915.0f/32768.0f;
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beta = 1.0f - (4915.0f/32768.0f);
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} else {
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alpha = ff_celt_alpha_coef[f->size];
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beta = 1.0f - ff_celt_beta_coef[f->size];
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beta = ff_celt_beta_coef[f->size];
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}
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for (i = f->start_band; i < f->end_band; i++) {
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@ -796,8 +796,8 @@ const float ff_celt_alpha_coef[] = {
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29440.0f/32768.0f, 26112.0f/32768.0f, 21248.0f/32768.0f, 16384.0f/32768.0f
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};
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const float ff_celt_beta_coef[] = { /* TODO: precompute 1 minus this if the code ends up neater */
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30147.0f/32768.0f, 22282.0f/32768.0f, 12124.0f/32768.0f, 6554.0f/32768.0f
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const float ff_celt_beta_coef[] = {
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1.0f - (30147.0f/32768.0f), 1.0f - (22282.0f/32768.0f), 1.0f - (12124.0f/32768.0f), 1.0f - (6554.0f/32768.0f),
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};
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const uint8_t ff_celt_coarse_energy_dist[4][2][42] = {
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