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@ -436,7 +436,6 @@ static int decode_band_types(AACContext * ac, enum BandType band_type[120], |
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/**
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* Decode scalefactors; reference: table 4.47. |
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* |
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* @param mix_gain channel gain (Not used by AAC bitstream.) |
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* @param global_gain first scalefactor value as scalefactors are differentially coded |
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* @param band_type array of the used band type |
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* @param band_type_run_end array of the last scalefactor band of a band type run |
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@ -445,7 +444,7 @@ static int decode_band_types(AACContext * ac, enum BandType band_type[120], |
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* @return Returns error status. 0 - OK, !0 - error |
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*/ |
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static int decode_scalefactors(AACContext * ac, float sf[120], GetBitContext * gb, |
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float mix_gain, unsigned int global_gain, IndividualChannelStream * ics, |
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unsigned int global_gain, IndividualChannelStream * ics, |
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enum BandType band_type[120], int band_type_run_end[120]) { |
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const int sf_offset = ac->sf_offset + (ics->window_sequence[0] == EIGHT_SHORT_SEQUENCE ? 12 : 0); |
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int g, i, idx = 0; |
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@ -469,7 +468,6 @@ static int decode_scalefactors(AACContext * ac, float sf[120], GetBitContext * g |
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return -1; |
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} |
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sf[idx] = ff_aac_pow2sf_tab[-offset[2] + 300]; |
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sf[idx] *= mix_gain; |
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} |
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}else if(band_type[idx] == NOISE_BT) { |
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for(; i < run_end; i++, idx++) { |
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@ -483,7 +481,6 @@ static int decode_scalefactors(AACContext * ac, float sf[120], GetBitContext * g |
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return -1; |
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} |
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sf[idx] = -ff_aac_pow2sf_tab[ offset[1] + sf_offset]; |
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sf[idx] *= mix_gain; |
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} |
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}else { |
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for(; i < run_end; i++, idx++) { |
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@ -494,7 +491,6 @@ static int decode_scalefactors(AACContext * ac, float sf[120], GetBitContext * g |
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return -1; |
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} |
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sf[idx] = -ff_aac_pow2sf_tab[ offset[0] + sf_offset]; |
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sf[idx] *= mix_gain; |
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} |
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} |
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} |
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@ -649,7 +645,7 @@ static int decode_cpe(AACContext * ac, GetBitContext * gb, int elem_id) { |
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*/ |
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static int decode_sbr_extension(AACContext * ac, GetBitContext * gb, int crc, int cnt) { |
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// TODO : sbr_extension implementation
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av_log(ac->avccontext, AV_LOG_DEBUG, "aac: SBR not yet supported.\n"); |
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av_log_missing_feature(ac->avccontext, "SBR", 0); |
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skip_bits_long(gb, 8*cnt - 4); // -4 due to reading extension type
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return cnt; |
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} |
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@ -769,11 +765,10 @@ static void apply_dependent_coupling(AACContext * ac, SingleChannelElement * sce |
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for (g = 0; g < ics->num_window_groups; g++) { |
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for (i = 0; i < ics->max_sfb; i++, idx++) { |
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if (cc->ch[0].band_type[idx] != ZERO_BT) { |
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float gain = cc->coup.gain[index][idx] * sce->mixing_gain; |
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for (group = 0; group < ics->group_len[g]; group++) { |
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for (k = offsets[i]; k < offsets[i+1]; k++) { |
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// XXX dsputil-ize
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dest[group*128+k] += gain * src[group*128+k]; |
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dest[group*128+k] += cc->coup.gain[index][idx] * src[group*128+k]; |
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} |
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} |
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} |
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@ -790,9 +785,8 @@ static void apply_dependent_coupling(AACContext * ac, SingleChannelElement * sce |
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*/ |
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static void apply_independent_coupling(AACContext * ac, SingleChannelElement * sce, ChannelElement * cc, int index) { |
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int i; |
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float gain = cc->coup.gain[index][0] * sce->mixing_gain; |
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for (i = 0; i < 1024; i++) |
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sce->ret[i] += gain * (cc->ch[0].ret[i] - ac->add_bias); |
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sce->ret[i] += cc->coup.gain[index][0] * (cc->ch[0].ret[i] - ac->add_bias); |
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} |
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if (!ac->is_saved) { |
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@ -817,11 +811,11 @@ static void apply_independent_coupling(AACContext * ac, SingleChannelElement * s |
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static av_cold int aac_decode_close(AVCodecContext * avccontext) { |
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AACContext * ac = avccontext->priv_data; |
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int i, j; |
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int i, type; |
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for (i = 0; i < MAX_ELEM_ID; i++) { |
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for(j = 0; j < 4; j++) |
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av_freep(&ac->che[j][i]); |
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for(type = 0; type < 4; type++) |
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av_freep(&ac->che[type][i]); |
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} |
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ff_mdct_end(&ac->mdct); |
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