60 5, 6, 7, 8, 9, 10, 11, 12, 14, 16
84 { { 2, 7 }, { 7, 2 }, },
86 { { 2, 7 }, { 7, 2 }, },
87 { { 2, 7 }, { 5, 5 }, { 7, 2 }, },
88 { { 2, 7 }, { 7, 2 }, { 6, 6 }, },
89 { { 2, 7 }, { 5, 5 }, { 7, 2 }, { 8, 8 }, },
90 { { 2, 7 }, { 7, 2 }, { 6, 7 }, { 7, 6 }, },
91 { { 2, 7 }, { 5, 5 }, { 7, 2 }, { 6, 7 }, { 7, 6 }, },
102 return ((code - (levels >> 1)) << 24) / levels;
114 for (i = 0; i < 128; i++) {
122 for (i = 0; i < 32; i++) {
128 for (i = 0; i < 128; i++) {
140 for (i = 0; i < 7; i++) {
144 for (i = 0; i < 15; i++) {
151 for (i = 0; i < 256; i++) {
152 int v = (i >> 5) - ((i >> 7) << 3) - 5;
181 if (avctx->
channels > 0 && avctx->request_channels > 0 &&
182 avctx->request_channels < avctx->
channels &&
183 avctx->request_channels <= 2) {
184 avctx->
channels = avctx->request_channels;
288 }
else if (CONFIG_EAC3_DECODER) {
330 norm0 = 1.0f / norm0;
331 norm1 = 1.0f / norm1;
351 int i, j, grp, group_size;
356 group_size = exp_strategy + (exp_strategy ==
EXP_D45);
357 for (grp = 0, i = 0; grp < ngrps; grp++) {
366 for (i = 0, j = 0; i < ngrps * 3; i++) {
367 prevexp += dexp[i] - 2;
370 switch (group_size) {
371 case 4: dexps[j++] = prevexp;
372 dexps[j++] = prevexp;
373 case 2: dexps[j++] = prevexp;
374 case 1: dexps[j++] = prevexp;
391 int band_start = bin;
396 for (bin = band_start; bin < band_end; bin++) {
401 for (bin = band_start; bin < band_end; bin++)
429 int end_freq = s->
end_freq[ch_index];
431 int8_t *exps = s->
dexps[ch_index];
437 for (freq = start_freq; freq < end_freq; freq++) {
438 int bap = baps[freq];
499 coeffs[freq] = mantissa >> exps[freq];
530 if (!blk && CONFIG_EAC3_DECODER)
532 for (bin = s->
start_freq[ch]; bin < s->end_freq[ch]; bin++) {
549 for (ch = 1; ch <= s->
channels; ch++) {
605 for (ch = 1; ch <= channels; ch++) {
609 for (i = 0; i < 128; i++)
614 for (i = 0; i < 128; i++)
631 int channel_data_size =
sizeof(s->
delay[0]);
636 memcpy(s->
delay[1], s->
delay[0], channel_data_size);
639 memset(s->
delay[3], 0, channel_data_size);
641 memset(s->
delay[2], 0, channel_data_size);
644 memset(s->
delay[4], 0, channel_data_size);
646 memset(s->
delay[3], 0, channel_data_size);
648 memcpy(s->
delay[2], s->
delay[1], channel_data_size);
649 memset(s->
delay[1], 0, channel_data_size);
671 int ecpl,
int start_subband,
int end_subband,
672 const uint8_t *default_band_struct,
673 int *num_bands,
uint8_t *band_sizes)
675 int subbnd, bnd, n_subbands, n_bands=0;
680 n_subbands = end_subband - start_subband;
684 for (subbnd = 0; subbnd < n_subbands - 1; subbnd++) {
685 coded_band_struct[subbnd] =
get_bits1(gbc);
687 band_struct = coded_band_struct;
689 band_struct = &default_band_struct[start_subband+1];
698 if (num_bands || band_sizes ) {
699 n_bands = n_subbands;
700 bnd_sz[0] = ecpl ? 6 : 12;
701 for (bnd = 0, subbnd = 1; subbnd < n_subbands; subbnd++) {
702 int subbnd_size = (ecpl && subbnd < 4) ? 6 : 12;
703 if (band_struct[subbnd - 1]) {
705 bnd_sz[bnd] += subbnd_size;
707 bnd_sz[++bnd] = subbnd_size;
714 *num_bands = n_bands;
716 memcpy(band_sizes, bnd_sz, n_bands);
727 int different_transforms;
734 different_transforms = 0;
736 for (ch = 1; ch <= fbw_channels; ch++) {
739 different_transforms = 1;
745 for (ch = 1; ch <= fbw_channels; ch++) {
756 }
else if (blk == 0) {
765 int dst_start_freq, dst_end_freq, src_start_freq,
766 start_subband, end_subband;
772 for (ch = 1; ch <= fbw_channels; ch++)
779 start_subband =
get_bits(gbc, 3) + 2;
780 if (start_subband > 7)
781 start_subband += start_subband - 7;
784 end_subband += end_subband - 7;
785 dst_start_freq = dst_start_freq * 12 + 25;
786 src_start_freq = start_subband * 12 + 25;
787 dst_end_freq = end_subband * 12 + 25;
790 if (start_subband >= end_subband) {
792 "range (%d >= %d)\n", start_subband, end_subband);
795 if (dst_start_freq >= src_start_freq) {
797 "copy start bin (%d >= %d)\n", dst_start_freq, src_start_freq);
806 start_subband, end_subband,
811 for (ch = 1; ch <= fbw_channels; ch++) {
820 for (ch = 1; ch <= fbw_channels; ch++) {
824 int bin, master_spx_coord;
827 spx_blend =
get_bits(gbc, 5) * (1.0f/32);
828 master_spx_coord =
get_bits(gbc, 2) * 3;
833 int spx_coord_exp, spx_coord_mant;
834 float nratio, sblend, nblend, spx_coord;
838 nratio = ((float)((bin + (bandsize >> 1))) / s->
spx_dst_end_freq) - spx_blend;
839 nratio = av_clipf(nratio, 0.0f, 1.0f);
840 nblend = sqrtf(3.0f * nratio);
842 sblend = sqrtf(1.0f - nratio);
848 if (spx_coord_exp == 15) spx_coord_mant <<= 1;
849 else spx_coord_mant += 4;
850 spx_coord_mant <<= (25 - spx_coord_exp - master_spx_coord);
851 spx_coord = spx_coord_mant * (1.0f / (1 << 23));
871 int cpl_start_subband, cpl_end_subband;
890 for (ch = 1; ch <= fbw_channels; ch++)
899 cpl_start_subband =
get_bits(gbc, 4);
902 if (cpl_start_subband >= cpl_end_subband) {
904 cpl_start_subband, cpl_end_subband);
916 for (ch = 1; ch <= fbw_channels; ch++) {
923 }
else if (!s->
eac3) {
926 "be present in block 0\n");
936 int cpl_coords_exist = 0;
938 for (ch = 1; ch <= fbw_channels; ch++) {
941 int master_cpl_coord, cpl_coord_exp, cpl_coord_mant;
943 cpl_coords_exist = 1;
944 master_cpl_coord = 3 *
get_bits(gbc, 2);
948 if (cpl_coord_exp == 15)
949 s->
cpl_coords[ch][bnd] = cpl_coord_mant << 22;
951 s->
cpl_coords[ch][bnd] = (cpl_coord_mant + 16) << 21;
952 s->
cpl_coords[ch][bnd] >>= (cpl_coord_exp + master_cpl_coord);
956 "be present in block 0\n");
985 "new rematrixing strategy not present in block 0\n");
991 for (ch = !cpl_in_use; ch <= s->
channels; ch++) {
995 bit_alloc_stages[ch] = 3;
999 for (ch = 1; ch <= fbw_channels; ch++) {
1009 int bandwidth_code =
get_bits(gbc, 6);
1010 if (bandwidth_code > 60) {
1014 s->
end_freq[ch] = bandwidth_code * 3 + 73;
1018 if (blk > 0 && s->
end_freq[ch] != prev)
1028 for (ch = !cpl_in_use; ch <= s->
channels; ch++) {
1050 for (ch = !cpl_in_use; ch <= s->
channels; ch++)
1051 bit_alloc_stages[ch] =
FFMAX(bit_alloc_stages[ch], 2);
1054 "be present in block 0\n");
1060 if (!s->
eac3 || !blk) {
1064 csnr = (
get_bits(gbc, 6) - 15) << 4;
1065 for (i = ch = !cpl_in_use; ch <= s->
channels; ch++) {
1068 snr = (csnr +
get_bits(gbc, 4)) << 2;
1071 bit_alloc_stages[ch] =
FFMAX(bit_alloc_stages[ch], 1);
1081 bit_alloc_stages[ch] =
FFMAX(bit_alloc_stages[ch], 2);
1084 }
else if (!s->
eac3 && !blk) {
1092 for (ch = !cpl_in_use; ch <= s->
channels; ch++) {
1097 bit_alloc_stages[ch] =
FFMAX(bit_alloc_stages[ch], 2);
1099 }
else if (s->
eac3 && !blk) {
1100 for (ch = !cpl_in_use; ch <= s->
channels; ch++)
1122 }
else if (!s->
eac3 && !blk) {
1124 "be present in block 0\n");
1133 for (ch = !cpl_in_use; ch <= fbw_channels; ch++) {
1139 bit_alloc_stages[ch] =
FFMAX(bit_alloc_stages[ch], 2);
1142 for (ch = !cpl_in_use; ch <= fbw_channels; ch++) {
1145 for (seg = 0; seg < s->
dba_nsegs[ch]; seg++) {
1151 bit_alloc_stages[ch] =
FFMAX(bit_alloc_stages[ch], 2);
1154 }
else if (blk == 0) {
1155 for (ch = 0; ch <= s->
channels; ch++) {
1161 for (ch = !cpl_in_use; ch <= s->
channels; ch++) {
1162 if (bit_alloc_stages[ch] > 2) {
1168 if (bit_alloc_stages[ch] > 1) {
1181 if (bit_alloc_stages[ch] > 0) {
1189 bap_tab, s->
bap[ch]);
1211 for (ch = 1; ch <= s->
channels; ch++) {
1212 float gain = 1.0 / 4194304.0f;
1233 if (different_transforms) {
1243 if (downmix_output) {
1248 if (downmix_output) {
1269 int *got_frame_ptr,
AVPacket *avpkt)
1273 int buf_size = avpkt->
size;
1281 if (buf_size >= 2 &&
AV_RB16(buf) == 0x770B) {
1313 "skipping frame\n");
1354 if (avctx->request_channels > 0 && avctx->request_channels <= 2 &&
1355 avctx->request_channels < s->
channels) {
1391 output[ch] = s->
output[ch];
1394 for (ch = 0; ch < s->
channels; ch++) {
1395 if (ch < s->out_channels)
1396 s->
outptr[channel_map[ch]] = (
float *)frame->
data[ch];
1407 output[ch] = s->
outptr[channel_map[ch]];
1409 if (!ch || channel_map[ch])
1437 #define OFFSET(x) offsetof(AC3DecodeContext, x)
1438 #define PAR (AV_OPT_FLAG_DECODING_PARAM | AV_OPT_FLAG_AUDIO_PARAM)
1440 {
"drc_scale",
"percentage of dynamic range compression to apply",
OFFSET(drc_scale),
AV_OPT_TYPE_FLOAT, {.dbl = 1.0}, 0.0, 1.0,
PAR },
1442 {
"dmix_mode",
"Preferred Stereo Downmix Mode",
OFFSET(preferred_stereo_downmix),
AV_OPT_TYPE_INT, {.i64 = -1 }, -1, 2, 0,
"dmix_mode"},
1443 {
"ltrt_cmixlev",
"Lt/Rt Center Mix Level",
OFFSET(ltrt_center_mix_level),
AV_OPT_TYPE_FLOAT, {.dbl = -1.0 }, -1.0, 2.0, 0},
1444 {
"ltrt_surmixlev",
"Lt/Rt Surround Mix Level",
OFFSET(ltrt_surround_mix_level),
AV_OPT_TYPE_FLOAT, {.dbl = -1.0 }, -1.0, 2.0, 0},
1445 {
"loro_cmixlev",
"Lo/Ro Center Mix Level",
OFFSET(loro_center_mix_level),
AV_OPT_TYPE_FLOAT, {.dbl = -1.0 }, -1.0, 2.0, 0},
1446 {
"loro_surmixlev",
"Lo/Ro Surround Mix Level",
OFFSET(loro_surround_mix_level),
AV_OPT_TYPE_FLOAT, {.dbl = -1.0 }, -1.0, 2.0, 0},
1473 #if CONFIG_EAC3_DECODER
1474 static const AVClass eac3_decoder_class = {
1493 .priv_class = &eac3_decoder_class,