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@@ -498,7 +498,7 @@ static void gen_dirac_train(int16_t *buf, int pitch_lag) |
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* @param pitch_lag closed loop pitch lag |
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* @param index current subframe index |
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*/ |
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static void gen_fcb_excitation(int16_t *vector, G723_1_Subframe subfrm, |
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static void gen_fcb_excitation(int16_t *vector, G723_1_Subframe *subfrm, |
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enum Rate cur_rate, int pitch_lag, int index) |
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{ |
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int temp, i, j; |
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@@ -506,34 +506,34 @@ static void gen_fcb_excitation(int16_t *vector, G723_1_Subframe subfrm, |
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memset(vector, 0, SUBFRAME_LEN * sizeof(*vector)); |
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if (cur_rate == RATE_6300) { |
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if (subfrm.pulse_pos >= max_pos[index]) |
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if (subfrm->pulse_pos >= max_pos[index]) |
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return; |
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/* Decode amplitudes and positions */ |
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j = PULSE_MAX - pulses[index]; |
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temp = subfrm.pulse_pos; |
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temp = subfrm->pulse_pos; |
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for (i = 0; i < SUBFRAME_LEN / GRID_SIZE; i++) { |
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temp -= combinatorial_table[j][i]; |
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if (temp >= 0) |
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continue; |
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temp += combinatorial_table[j++][i]; |
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if (subfrm.pulse_sign & (1 << (PULSE_MAX - j))) { |
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vector[subfrm.grid_index + GRID_SIZE * i] = |
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-fixed_cb_gain[subfrm.amp_index]; |
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if (subfrm->pulse_sign & (1 << (PULSE_MAX - j))) { |
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vector[subfrm->grid_index + GRID_SIZE * i] = |
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-fixed_cb_gain[subfrm->amp_index]; |
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} else { |
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vector[subfrm.grid_index + GRID_SIZE * i] = |
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fixed_cb_gain[subfrm.amp_index]; |
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vector[subfrm->grid_index + GRID_SIZE * i] = |
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fixed_cb_gain[subfrm->amp_index]; |
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} |
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if (j == PULSE_MAX) |
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break; |
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} |
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if (subfrm.dirac_train == 1) |
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if (subfrm->dirac_train == 1) |
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gen_dirac_train(vector, pitch_lag); |
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} else { /* 5300 bps */ |
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int cb_gain = fixed_cb_gain[subfrm.amp_index]; |
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int cb_shift = subfrm.grid_index; |
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int cb_sign = subfrm.pulse_sign; |
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int cb_pos = subfrm.pulse_pos; |
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int cb_gain = fixed_cb_gain[subfrm->amp_index]; |
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int cb_shift = subfrm->grid_index; |
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int cb_sign = subfrm->pulse_sign; |
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int cb_pos = subfrm->pulse_pos; |
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int offset, beta, lag; |
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for (i = 0; i < 8; i += 2) { |
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@@ -544,9 +544,9 @@ static void gen_fcb_excitation(int16_t *vector, G723_1_Subframe subfrm, |
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} |
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/* Enhance harmonic components */ |
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lag = pitch_contrib[subfrm.ad_cb_gain << 1] + pitch_lag + |
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subfrm.ad_cb_lag - 1; |
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beta = pitch_contrib[(subfrm.ad_cb_gain << 1) + 1]; |
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lag = pitch_contrib[subfrm->ad_cb_gain << 1] + pitch_lag + |
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subfrm->ad_cb_lag - 1; |
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beta = pitch_contrib[(subfrm->ad_cb_gain << 1) + 1]; |
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if (lag < SUBFRAME_LEN - 2) { |
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for (i = lag; i < SUBFRAME_LEN; i++) |
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@@ -586,12 +586,12 @@ static int dot_product(const int16_t *a, const int16_t *b, int length) |
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* Generate adaptive codebook excitation. |
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*/ |
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static void gen_acb_excitation(int16_t *vector, int16_t *prev_excitation, |
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int pitch_lag, G723_1_Subframe subfrm, |
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int pitch_lag, G723_1_Subframe *subfrm, |
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enum Rate cur_rate) |
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{ |
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int16_t residual[SUBFRAME_LEN + PITCH_ORDER - 1]; |
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const int16_t *cb_ptr; |
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int lag = pitch_lag + subfrm.ad_cb_lag - 1; |
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int lag = pitch_lag + subfrm->ad_cb_lag - 1; |
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int i; |
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int sum; |
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@@ -605,7 +605,7 @@ static void gen_acb_excitation(int16_t *vector, int16_t *prev_excitation, |
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cb_ptr = adaptive_cb_gain170; |
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/* Calculate adaptive vector */ |
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cb_ptr += subfrm.ad_cb_gain * 20; |
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cb_ptr += subfrm->ad_cb_gain * 20; |
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for (i = 0; i < SUBFRAME_LEN; i++) { |
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sum = dot_product(residual + i, cb_ptr, PITCH_ORDER); |
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vector[i] = av_sat_dadd32(1 << 15, sum) >> 16; |
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@@ -1057,10 +1057,10 @@ static int g723_1_decode_frame(AVCodecContext *avctx, void *data, |
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p->interp_gain = fixed_cb_gain[(p->subframe[2].amp_index + |
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p->subframe[3].amp_index) >> 1]; |
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for (i = 0; i < SUBFRAMES; i++) { |
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gen_fcb_excitation(vector_ptr, p->subframe[i], p->cur_rate, |
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gen_fcb_excitation(vector_ptr, &p->subframe[i], p->cur_rate, |
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p->pitch_lag[i >> 1], i); |
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gen_acb_excitation(acb_vector, &p->excitation[SUBFRAME_LEN * i], |
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p->pitch_lag[i >> 1], p->subframe[i], |
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p->pitch_lag[i >> 1], &p->subframe[i], |
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p->cur_rate); |
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/* Get the total excitation */ |
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for (j = 0; j < SUBFRAME_LEN; j++) { |
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