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@ -1349,8 +1349,8 @@ static int sbr_hf_gen(AACContext *ac, SpectralBandReplication *sbr, |
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/// Generate the subband filtered lowband
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static int sbr_x_gen(SpectralBandReplication *sbr, float X[2][38][64], |
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const float X_low[32][40][2], const float Y[2][38][64][2], |
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int ch) |
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const float Y0[38][64][2], const float Y1[38][64][2], |
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const float X_low[32][40][2], int ch) |
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{ |
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int k, i; |
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const int i_f = 32; |
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@ -1364,8 +1364,8 @@ static int sbr_x_gen(SpectralBandReplication *sbr, float X[2][38][64], |
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} |
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for (; k < sbr->kx[0] + sbr->m[0]; k++) { |
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for (i = 0; i < i_Temp; i++) { |
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X[0][i][k] = Y[0][i + i_f][k][0]; |
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X[1][i][k] = Y[0][i + i_f][k][1]; |
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X[0][i][k] = Y0[i + i_f][k][0]; |
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X[1][i][k] = Y0[i + i_f][k][1]; |
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} |
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} |
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@ -1377,8 +1377,8 @@ static int sbr_x_gen(SpectralBandReplication *sbr, float X[2][38][64], |
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} |
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for (; k < sbr->kx[1] + sbr->m[1]; k++) { |
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for (i = i_Temp; i < i_f; i++) { |
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X[0][i][k] = Y[1][i][k][0]; |
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X[1][i][k] = Y[1][i][k][1]; |
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X[0][i][k] = Y1[i][k][0]; |
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X[1][i][k] = Y1[i][k][1]; |
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} |
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} |
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return 0; |
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@ -1537,7 +1537,8 @@ static void sbr_gain_calc(AACContext *ac, SpectralBandReplication *sbr, |
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} |
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/// Assembling HF Signals (14496-3 sp04 p220)
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static void sbr_hf_assemble(float Y[2][38][64][2], const float X_high[64][40][2], |
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static void sbr_hf_assemble(float Y1[38][64][2], |
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const float X_high[64][40][2], |
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SpectralBandReplication *sbr, SBRData *ch_data, |
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const int e_a[2]) |
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{ |
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@ -1559,7 +1560,6 @@ static void sbr_hf_assemble(float Y[2][38][64][2], const float X_high[64][40][2] |
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float (*g_temp)[48] = ch_data->g_temp, (*q_temp)[48] = ch_data->q_temp; |
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int indexnoise = ch_data->f_indexnoise; |
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int indexsine = ch_data->f_indexsine; |
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memcpy(Y[0], Y[1], sizeof(Y[0])); |
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if (sbr->reset) { |
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for (i = 0; i < h_SL; i++) { |
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@ -1602,18 +1602,18 @@ static void sbr_hf_assemble(float Y[2][38][64][2], const float X_high[64][40][2] |
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q_filt = q_temp[i]; |
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} |
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sbr->dsp.hf_g_filt(Y[1][i] + kx, X_high + kx, g_filt, m_max, |
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sbr->dsp.hf_g_filt(Y1[i] + kx, X_high + kx, g_filt, m_max, |
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i + ENVELOPE_ADJUSTMENT_OFFSET); |
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if (e != e_a[0] && e != e_a[1]) { |
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sbr->dsp.hf_apply_noise[indexsine](Y[1][i] + kx, sbr->s_m[e], |
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sbr->dsp.hf_apply_noise[indexsine](Y1[i] + kx, sbr->s_m[e], |
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q_filt, indexnoise, |
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kx, m_max); |
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} else { |
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for (m = 0; m < m_max; m++) { |
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Y[1][i][m + kx][0] += |
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Y1[i][m + kx][0] += |
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sbr->s_m[e][m] * phi[0][indexsine]; |
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Y[1][i][m + kx][1] += |
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Y1[i][m + kx][1] += |
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sbr->s_m[e][m] * (phi[1][indexsine] * phi_sign); |
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phi_sign = -phi_sign; |
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} |
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@ -1653,12 +1653,17 @@ void ff_sbr_apply(AACContext *ac, SpectralBandReplication *sbr, int id_aac, |
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sbr_mapping(ac, sbr, &sbr->data[ch], sbr->data[ch].e_a); |
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sbr_env_estimate(sbr->e_curr, sbr->X_high, sbr, &sbr->data[ch]); |
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sbr_gain_calc(ac, sbr, &sbr->data[ch], sbr->data[ch].e_a); |
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sbr_hf_assemble(sbr->data[ch].Y, sbr->X_high, sbr, &sbr->data[ch], |
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sbr->data[ch].Ypos ^= 1; |
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sbr_hf_assemble(sbr->data[ch].Y[sbr->data[ch].Ypos], |
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sbr->X_high, sbr, &sbr->data[ch], |
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sbr->data[ch].e_a); |
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} |
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/* synthesis */ |
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sbr_x_gen(sbr, sbr->X[ch], sbr->X_low, sbr->data[ch].Y, ch); |
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sbr_x_gen(sbr, sbr->X[ch], |
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sbr->data[ch].Y[1-sbr->data[ch].Ypos], |
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sbr->data[ch].Y[ sbr->data[ch].Ypos], |
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sbr->X_low, ch); |
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} |
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if (ac->m4ac.ps == 1) { |
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