36 #define BITSTREAM_READER_LE 
   49 #define V_MAX_VLCS (1 << 16) 
   50 #define V_MAX_PARTITIONS (1 << 20) 
  165     (13.1f * atan(0.00074f * (x)) + 2.24f * atan(1.85e-8f * (x) * (x)) + 1e-4f * (x)) 
  167 static const char idx_err_str[] = 
"Index value %d out of range (0 - %d) for %s at %s:%i\n";
 
  168 #define VALIDATE_INDEX(idx, limit) \ 
  170         av_log(vc->avctx, AV_LOG_ERROR,\ 
  172                (int)(idx), (int)(limit - 1), #idx, __FILE__, __LINE__);\ 
  173         return AVERROR_INVALIDDATA;\ 
  175 #define GET_VALIDATED_INDEX(idx, bits, limit) \ 
  177         idx = get_bits(gb, bits);\ 
  178         VALIDATE_INDEX(idx, limit)\ 
  183     double mant = 
val & 0x1fffff;
 
  184     long exp    = (
val & 0x7fe00000
L) >> 21;
 
  185     if (
val & 0x80000000)
 
  187     return ldexp(mant, 
exp - 20 - 768);
 
  202         for (
i = 0; 
i < vc->residue_count; 
i++)
 
  211         for (
i = 0; 
i < vc->codebook_count; ++
i) {
 
  218         for (
i = 0; 
i < vc->floor_count; ++
i) {
 
  219             if (vc->floors[
i].floor_type == 0) {
 
  222                 av_freep(&vc->floors[
i].data.t0.book_list);
 
  231         for (
i = 0; 
i < vc->mapping_count; ++
i) {
 
  246     uint8_t  *tmp_vlc_bits  = 
NULL;
 
  247     uint32_t *tmp_vlc_codes = 
NULL;
 
  249     uint16_t *codebook_multiplicands = 
NULL;
 
  252     vc->codebook_count = 
get_bits(gb, 8) + 1;
 
  254     ff_dlog(
NULL, 
" Codebooks: %d \n", vc->codebook_count);
 
  256     vc->codebooks = 
av_mallocz(vc->codebook_count * 
sizeof(*vc->codebooks));
 
  260     if (!vc->codebooks ||
 
  261         !tmp_vlc_bits || !tmp_vlc_codes || !codebook_multiplicands) {
 
  266     for (
cb = 0; 
cb < vc->codebook_count; ++
cb) {
 
  268         unsigned ordered, t, entries, used_entries = 0;
 
  274                    " %u. Codebook setup data corrupt.\n", 
cb);
 
  282                    " %u. Codebook's dimension is invalid (%d).\n",
 
  290                    " %u. Codebook has too many entries (%u).\n",
 
  298         ff_dlog(
NULL, 
" codebook_dimensions %d, codebook_entries %u\n",
 
  311                 for (ce = 0; ce < entries; ++ce) {
 
  314                         tmp_vlc_bits[ce] = 
get_bits(gb, 5) + 1;
 
  317                         tmp_vlc_bits[ce] = 0;
 
  322                 used_entries = entries;
 
  323                 for (ce = 0; ce < entries; ++ce)
 
  324                     tmp_vlc_bits[ce] = 
get_bits(gb, 5) + 1;
 
  327             unsigned current_entry  = 0;
 
  328             unsigned current_length = 
get_bits(gb, 5) + 1;
 
  330             ff_dlog(
NULL, 
" ordered, current length: %u\n", current_length);  
 
  332             used_entries = entries;
 
  333             for (; current_entry < used_entries && current_length <= 32; ++current_length) {
 
  342                 for (
i = current_entry; 
i < number+current_entry; ++
i)
 
  343                     if (
i < used_entries)
 
  344                         tmp_vlc_bits[
i] = current_length;
 
  346                 current_entry+=number;
 
  348             if (current_entry>used_entries) {
 
  368             unsigned codebook_value_bits = 
get_bits(gb, 4) + 1;
 
  369             unsigned codebook_sequence_p = 
get_bits1(gb);
 
  375             ff_dlog(
NULL, 
" We expect %d numbers for building the codevectors. \n",
 
  376                     codebook_lookup_values);
 
  378                     codebook_delta_value, codebook_minimum_value);
 
  380             for (
i = 0; 
i < codebook_lookup_values; ++
i) {
 
  381                 codebook_multiplicands[
i] = 
get_bits(gb, codebook_value_bits);
 
  383                 ff_dlog(
NULL, 
" multiplicands*delta+minmum : %e \n",
 
  384                         (
float)codebook_multiplicands[
i] * codebook_delta_value + codebook_minimum_value);
 
  385                 ff_dlog(
NULL, 
" multiplicand %u\n", codebook_multiplicands[
i]);
 
  400             for (j = 0, 
i = 0; 
i < entries; ++
i) {
 
  403                 if (tmp_vlc_bits[
i]) {
 
  405                     unsigned lookup_offset = 
i;
 
  407                     ff_dlog(vc->avctx, 
"Lookup offset %u ,", 
i);
 
  409                     for (k = 0; k < 
dim; ++k) {
 
  410                         unsigned multiplicand_offset = lookup_offset % codebook_lookup_values;
 
  411                         codebook_setup->
codevectors[j * 
dim + k] = codebook_multiplicands[multiplicand_offset] * codebook_delta_value + codebook_minimum_value + last;
 
  412                         if (codebook_sequence_p)
 
  414                         lookup_offset/=codebook_lookup_values;
 
  416                     tmp_vlc_bits[j] = tmp_vlc_bits[
i];
 
  418                     ff_dlog(vc->avctx, 
"real lookup offset %u, vector: ", j);
 
  419                     for (k = 0; k < 
dim; ++k)
 
  427             if (j != used_entries) {
 
  432             entries = used_entries;
 
  446         for (t = 0; t < entries; ++t)
 
  447             if (tmp_vlc_bits[t] >= codebook_setup->
maxdepth)
 
  448                 codebook_setup->
maxdepth = tmp_vlc_bits[t];
 
  458                             entries, tmp_vlc_bits, 
sizeof(*tmp_vlc_bits),
 
  459                             sizeof(*tmp_vlc_bits), tmp_vlc_codes,
 
  460                             sizeof(*tmp_vlc_codes), 
sizeof(*tmp_vlc_codes),
 
  469     av_free(codebook_multiplicands);
 
  476     av_free(codebook_multiplicands);
 
  485     unsigned i, vorbis_time_count = 
get_bits(gb, 6) + 1;
 
  487     for (
i = 0; 
i < vorbis_time_count; ++
i) {
 
  488         unsigned vorbis_tdtransform = 
get_bits(gb, 16);
 
  490         ff_dlog(
NULL, 
" Vorbis time domain transform %u: %u\n",
 
  491                 vorbis_time_count, vorbis_tdtransform);
 
  493         if (vorbis_tdtransform) {
 
  505 static int create_map(vorbis_context *vc, 
unsigned floor_number);
 
  513     vc->floor_count = 
get_bits(gb, 6) + 1;
 
  515     vc->floors = 
av_mallocz(vc->floor_count * 
sizeof(*vc->floors));
 
  519     for (
i = 0; 
i < vc->floor_count; ++
i) {
 
  527             int maximum_class = -1;
 
  528             unsigned rangebits, rangemax, floor1_values = 2;
 
  542                 ff_dlog(
NULL, 
" %d. floor %d partition class %d \n",
 
  547             ff_dlog(
NULL, 
" maximum class %d \n", maximum_class);
 
  549             for (j = 0; j <= maximum_class; ++j) {
 
  553                 ff_dlog(
NULL, 
" %d floor %d class dim: %d subclasses %d \n", 
i, j,
 
  587                        "A rangebits value of 0 is not compliant with the Vorbis I specification.\n");
 
  590             rangemax = (1 << rangebits);
 
  591             if (rangemax > vc->blocksize[1] / 2) {
 
  593                        "Floor value is too large for blocksize: %u (%"PRIu32
")\n",
 
  594                        rangemax, vc->blocksize[1] / 2);
 
  604                     ff_dlog(
NULL, 
" %u. floor1 Y coord. %d\n", floor1_values,
 
  616             unsigned max_codebook_dim = 0;
 
  633                        "Floor 0 bark map size is 0.\n");
 
  652                     if (vc->codebooks[book_idx].dimensions > max_codebook_dim)
 
  653                         max_codebook_dim = vc->codebooks[book_idx].dimensions;
 
  703     vc->residue_count = 
get_bits(gb, 6)+1;
 
  704     vc->residues      = 
av_mallocz(vc->residue_count * 
sizeof(*vc->residues));
 
  708     ff_dlog(
NULL, 
" There are %d residues. \n", vc->residue_count);
 
  710     for (
i = 0; 
i < vc->residue_count; ++
i) {
 
  713         unsigned high_bits, low_bits;
 
  723         if (res_setup->
begin>res_setup->
end ||
 
  726                    "partition out of bounds: type, begin, end, size, blocksize: %"PRIu16
", %"PRIu32
", %"PRIu32
", %u, %"PRIu32
"\n",
 
  743         ff_dlog(
NULL, 
"    begin %"PRIu32
" end %"PRIu32
" part.size %u classif.s %"PRIu8
" classbook %"PRIu8
"\n",
 
  752             cascade[j] = (high_bits << 3) + low_bits;
 
  759             for (k = 0; k < 8; ++k) {
 
  760                 if (cascade[j]&(1 << k)) {
 
  763                     ff_dlog(
NULL, 
"     %u class cascade depth %u book: %d\n",
 
  764                             j, k, res_setup->
books[j][k]);
 
  769                     res_setup->
books[j][k] = -1;
 
  784     vc->mapping_count = 
get_bits(gb, 6)+1;
 
  785     vc->mappings      = 
av_mallocz(vc->mapping_count * 
sizeof(*vc->mappings));
 
  789     ff_dlog(
NULL, 
" There are %d mappings. \n", vc->mapping_count);
 
  791     for (
i = 0; 
i < vc->mapping_count; ++
i) {
 
  795             av_log(vc->avctx, 
AV_LOG_ERROR, 
"Other mappings than type 0 are not compliant with the Vorbis I specification. \n");
 
  806             if (vc->audio_channels < 2) {
 
  808                        "Square polar channel mapping with less than two channels is not compliant with the Vorbis I specification.\n");
 
  814                                                        sizeof(*mapping_setup->
angle));
 
  834         if (mapping_setup->
submaps>1) {
 
  836                                             sizeof(*mapping_setup->
mux));
 
  837             if (!mapping_setup->
mux)
 
  840             for (j = 0; j < vc->audio_channels; ++j)
 
  844         for (j = 0; j < mapping_setup->
submaps; ++j) {
 
  849             ff_dlog(
NULL, 
"   %u mapping %u submap : floor %d, residue %d\n", 
i, j,
 
  859 static int create_map(vorbis_context *vc, 
unsigned floor_number)
 
  867     for (blockflag = 0; blockflag < 2; ++blockflag) {
 
  868         n = vc->blocksize[blockflag] / 2;
 
  869         floors[floor_number].
data.
t0.
map[blockflag] =
 
  871         if (!floors[floor_number].
data.t0.map[blockflag])
 
  875         vf  = &floors[floor_number].
data.
t0;
 
  877         for (idx = 0; idx < n; ++idx) {
 
  879                              (vf->bark_map_size / 
BARK(vf->rate / 2.0f)));
 
  880             if (vf->bark_map_size-1 < 
map[idx])
 
  881                 map[idx] = vf->bark_map_size - 1;
 
  884         vf->map_size[blockflag] = n;
 
  887     for (idx = 0; idx <= n; ++idx) {
 
  888         ff_dlog(
NULL, 
"floor0 map: map at pos %d is %"PRId32
"\n", idx, 
map[idx]);
 
  899     vc->mode_count = 
get_bits(gb, 6) + 1;
 
  900     vc->modes      = 
av_mallocz(vc->mode_count * 
sizeof(*vc->modes));
 
  904     ff_dlog(
NULL, 
" There are %d modes.\n", vc->mode_count);
 
  906     for (
i = 0; 
i < vc->mode_count; ++
i) {
 
  914         ff_dlog(
NULL, 
" %u mode: blockflag %d, windowtype %d, transformtype %d, mapping %d\n",
 
  931         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis setup header packet corrupt (no vorbis signature). \n");
 
  936         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis setup header packet corrupt (codebooks). \n");
 
  940         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis setup header packet corrupt (time domain transforms). \n");
 
  948         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis setup header packet corrupt (residues). \n");
 
  952         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis setup header packet corrupt (mappings). \n");
 
  960         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis setup header packet corrupt (framing flag). \n");
 
  979         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis id header packet corrupt (no vorbis signature). \n");
 
  984     vc->audio_channels = 
get_bits(gb, 8);
 
  985     if (vc->audio_channels <= 0) {
 
  990     if (vc->audio_samplerate <= 0) {
 
  999     if (bl0 > 13 || bl0 < 6 || bl1 > 13 || bl1 < 6 || bl1 < bl0) {
 
 1000         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis id header packet corrupt (illegal blocksize). \n");
 
 1003     vc->blocksize[0] = (1 << bl0);
 
 1004     vc->blocksize[1] = (1 << bl1);
 
 1009         av_log(vc->avctx, 
AV_LOG_ERROR, 
" Vorbis id header packet corrupt (framing flag not set). \n");
 
 1013     vc->channel_residues =  
av_malloc_array(vc->blocksize[1]  / 2, vc->audio_channels * 
sizeof(*vc->channel_residues));
 
 1014     vc->saved            =  
av_calloc(vc->blocksize[1] / 4, vc->audio_channels * 
sizeof(*vc->saved));
 
 1015     if (!vc->channel_residues || !vc->saved)
 
 1018     vc->previous_window  = -1;
 
 1021                      vc->blocksize[0] >> 1, &
scale, 0);
 
 1026                      vc->blocksize[1] >> 1, &
scale, 0);
 
 1034     ff_dlog(
NULL, 
" vorbis version %"PRIu32
" \n audio_channels %"PRIu8
" \n audio_samplerate %"PRIu32
" \n bitrate_max %"PRIu32
" \n bitrate_nom %"PRIu32
" \n bitrate_min %"PRIu32
" \n blk_0 %"PRIu32
" blk_1 %"PRIu32
" \n ",
 
 1035             vc->version, vc->audio_channels, vc->audio_samplerate, vc->bitrate_maximum, vc->bitrate_nominal, vc->bitrate_minimum, vc->blocksize[0], vc->blocksize[1]);
 
 1054     const uint8_t *header_start[3];
 
 1076     if (hdr_type != 1) {
 
 1088     if (hdr_type != 5) {
 
 1100     if (vc->audio_channels > 8) {
 
 1120     float *lsp = vf->lsp;
 
 1123     unsigned blockflag = vc->modes[vc->mode_number].blockflag;
 
 1125     if (!vf->amplitude_bits)
 
 1128     amplitude = 
get_bits64(&vc->gb, vf->amplitude_bits);
 
 1129     if (amplitude > 0) {
 
 1131         unsigned idx, lsp_len = 0;
 
 1135         if (book_idx >= vf->num_books) {
 
 1139         ff_dlog(
NULL, 
"floor0 dec: booknumber: %u\n", book_idx);
 
 1140         codebook = vc->codebooks[vf->book_list[book_idx]];
 
 1145         while (lsp_len<vf->order) {
 
 1156             ff_dlog(
NULL, 
"floor0 dec: vector offset: %d\n", vec_off);
 
 1158             for (idx = 0; idx < 
codebook.dimensions; ++idx)
 
 1159                 lsp[lsp_len+idx] = 
codebook.codevectors[vec_off+idx] + last;
 
 1160             last = lsp[lsp_len+idx-1]; 
 
 1167             for (idx = 0; idx < lsp_len; ++idx)
 
 1168                 ff_dlog(
NULL, 
"floor0 dec: coeff at %d is %f\n", idx, lsp[idx]);
 
 1174             int order = vf->order;
 
 1175             float wstep = 
M_PI / vf->bark_map_size;
 
 1177             for (
i = 0; 
i < order; 
i++)
 
 1178                 lsp[
i] = 2.0
f * cos(lsp[
i]);
 
 1180             ff_dlog(
NULL, 
"floor0 synth: map_size = %"PRIu32
"; m = %d; wstep = %f\n",
 
 1181                     vf->map_size[blockflag], order, wstep);
 
 1184             while (i < vf->map_size[blockflag]) {
 
 1185                 int j, iter_cond = vf->map[blockflag][
i];
 
 1188                 float two_cos_w = 2.0f * cos(wstep * iter_cond); 
 
 1191                 for (j = 0; j + 1 < order; j += 2) {
 
 1192                     q *= lsp[j]     - two_cos_w;
 
 1193                     p *= lsp[j + 1] - two_cos_w;
 
 1196                     p *= p * (2.0f - two_cos_w);
 
 1197                     q *= q * (2.0f + two_cos_w);
 
 1199                     q *= two_cos_w-lsp[j]; 
 
 1202                     p *= p * (4.f - two_cos_w * two_cos_w);
 
 1210                 q = 
exp((((amplitude*vf->amplitude_offset) /
 
 1211                           (((1ULL << vf->amplitude_bits) - 1) * sqrt(p + q)))
 
 1212                          - vf->amplitude_offset) * .11512925f);
 
 1217                 } 
while (vf->map[blockflag][
i] == iter_cond);
 
 1235     uint16_t range_v[4] = { 256, 128, 86, 64 };
 
 1236     unsigned range = range_v[vf->multiplier - 1];
 
 1237     uint16_t floor1_Y[258];
 
 1238     uint16_t floor1_Y_final[258];
 
 1239     int floor1_flag[258];
 
 1240     unsigned partition_class, cdim, cbits, csub, cval, 
offset, 
i, j;
 
 1241     int book, adx, ady, dy, off, predicted, err;
 
 1252     ff_dlog(
NULL, 
"floor 0 Y %d floor 1 Y %d \n", floor1_Y[0], floor1_Y[1]);
 
 1255     for (
i = 0; 
i < vf->partitions; ++
i) {
 
 1256         partition_class = vf->partition_class[
i];
 
 1257         cdim   = vf->class_dimensions[partition_class];
 
 1258         cbits  = vf->class_subclasses[partition_class];
 
 1259         csub = (1 << cbits) - 1;
 
 1265             cval = 
get_vlc2(gb, vc->codebooks[vf->class_masterbook[partition_class]].vlc.table,
 
 1266                             vc->codebooks[vf->class_masterbook[partition_class]].nb_bits, 3);
 
 1268         for (j = 0; j < cdim; ++j) {
 
 1269             book = vf->subclass_books[partition_class][cval & csub];
 
 1271             ff_dlog(
NULL, 
"book %d Cbits %u cval %u  bits:%d\n",
 
 1274             cval = cval >> cbits;
 
 1276                 int v = 
get_vlc2(gb, vc->codebooks[book].vlc.table,
 
 1277                                  vc->codebooks[book].nb_bits, 3);
 
 1295     floor1_Y_final[0] = floor1_Y[0];
 
 1296     floor1_Y_final[1] = floor1_Y[1];
 
 1298     for (
i = 2; 
i < vf->x_list_dim; ++
i) {
 
 1299         unsigned val, highroom, lowroom, room, high_neigh_offs, low_neigh_offs;
 
 1301         low_neigh_offs  = vf->list[
i].low;
 
 1302         high_neigh_offs = vf->list[
i].high;
 
 1303         dy  = floor1_Y_final[high_neigh_offs] - floor1_Y_final[low_neigh_offs];  
 
 1304         adx = vf->list[high_neigh_offs].x - vf->list[low_neigh_offs].x;
 
 1306         err = ady * (vf->list[
i].x - vf->list[low_neigh_offs].x);
 
 1309             predicted = floor1_Y_final[low_neigh_offs] - off;
 
 1311             predicted = floor1_Y_final[low_neigh_offs] + off;
 
 1315         highroom = 
range-predicted;
 
 1316         lowroom  = predicted;
 
 1317         if (highroom < lowroom) {
 
 1318             room = highroom * 2;
 
 1323             floor1_flag[low_neigh_offs]  = 1;
 
 1324             floor1_flag[high_neigh_offs] = 1;
 
 1327                 if (highroom > lowroom) {
 
 1344         ff_dlog(
NULL, 
" Decoded floor(%d) = %u / val %u\n",
 
 1345                 vf->list[
i].x, floor1_Y_final[
i], 
val);
 
 1359                                            uint8_t *do_not_decode,
 
 1361                                            int partition_count,
 
 1367     unsigned c_p_c         = 
codebook->dimensions;
 
 1370     for (p = 0, j = 0; j < ch_used; ++j) {
 
 1371         if (!do_not_decode[j]) {
 
 1381                        "Invalid vlc code decoding %d channel.", j);
 
 1386                 for (
i = partition_count + c_p_c - 1; 
i >= partition_count; 
i--) {
 
 1387                     if (
i < ptns_to_read)
 
 1391             for (
i = partition_count + c_p_c - 1; 
i >= partition_count; 
i--) {
 
 1392                 temp2 = (((uint64_t)
temp) * inverse_class) >> 32;
 
 1394                 if (
i < ptns_to_read)
 
 1409                                                            uint8_t *do_not_decode,
 
 1416     unsigned c_p_c        = vc->codebooks[vr->
classbook].dimensions;
 
 1418     unsigned pass, ch_used, 
i, j, k, l;
 
 1419     unsigned max_output = (ch - 1) * vlen;
 
 1421     int libvorbis_bug = 0;
 
 1424         for (j = 1; j < ch; ++j)
 
 1425             do_not_decode[0] &= do_not_decode[j];  
 
 1426         if (do_not_decode[0])
 
 1429         max_output += vr->
end / ch;
 
 1432         max_output += vr->
end;
 
 1435     if (max_output > ch_left * vlen) {
 
 1436         if (max_output <= ch_left * vlen + vr->partition_size*ch_used/ch) {
 
 1445     ff_dlog(
NULL, 
" residue type 0/1/2 decode begin, ch: %d  cpc %d  \n", ch, c_p_c);
 
 1447     for (pass = 0; pass <= vr->
maxpass; ++pass) { 
 
 1448         int voffset, partition_count, j_times_ptns_to_read;
 
 1450         voffset = vr->
begin;
 
 1451         for (partition_count = 0; partition_count < ptns_to_read;) {  
 
 1453                 int ret = 
setup_classifs(vc, vr, do_not_decode, ch_used, partition_count, ptns_to_read);
 
 1457             for (
i = 0; (
i < c_p_c) && (partition_count < ptns_to_read); ++
i) {
 
 1458                 for (j_times_ptns_to_read = 0, j = 0; j < ch_used; ++j) {
 
 1461                     if (!do_not_decode[j]) {
 
 1462                         unsigned vqclass = classifs[j_times_ptns_to_read + partition_count];
 
 1463                         int vqbook  = vr->
books[vqclass][pass];
 
 1465                         if (vqbook >= 0 && vc->codebooks[vqbook].codevectors) {
 
 1467                             unsigned dim  = vc->codebooks[vqbook].dimensions;
 
 1476                                 voffs = voffset+j*vlen;
 
 1477                                 for (k = 0; k < 
step; ++k) {
 
 1482                                     for (l = 0; l < 
dim; ++l)
 
 1483                                         vec[voffs + k + l * 
step] += 
codebook.codevectors[coffs + l];
 
 1485                             } 
else if (vr_type == 1) {
 
 1486                                 voffs = voffset + j * vlen;
 
 1487                                 for (k = 0; k < 
step; ++k) {
 
 1492                                     for (l = 0; l < 
dim; ++l, ++voffs) {
 
 1493                                         vec[voffs]+=
codebook.codevectors[coffs+l];
 
 1495                                         ff_dlog(
NULL, 
" pass %d offs: %d curr: %f change: %f cv offs.: %d  \n",
 
 1496                                                 pass, voffs, vec[voffs], 
codebook.codevectors[coffs+l], coffs);
 
 1499                             } 
else if (vr_type == 2 && ch == 2 && (voffset & 1) == 0 && (
dim & 1) == 0) { 
 
 1500                                 voffs = voffset >> 1;
 
 1503                                     for (k = 0; k < 
step; ++k) {
 
 1508                                         vec[voffs + k       ] += 
codebook.codevectors[coffs    ];
 
 1509                                         vec[voffs + k + vlen] += 
codebook.codevectors[coffs + 1];
 
 1511                                 } 
else if (
dim == 4) {
 
 1512                                     for (k = 0; k < 
step; ++k, voffs += 2) {
 
 1517                                         vec[voffs           ] += 
codebook.codevectors[coffs    ];
 
 1518                                         vec[voffs + 1       ] += 
codebook.codevectors[coffs + 2];
 
 1519                                         vec[voffs + vlen    ] += 
codebook.codevectors[coffs + 1];
 
 1520                                         vec[voffs + vlen + 1] += 
codebook.codevectors[coffs + 3];
 
 1523                                 for (k = 0; k < 
step; ++k) {
 
 1528                                     for (l = 0; l < 
dim; l += 2, voffs++) {
 
 1529                                         vec[voffs       ] += 
codebook.codevectors[coffs + l    ];
 
 1530                                         vec[voffs + vlen] += 
codebook.codevectors[coffs + l + 1];
 
 1532                                         ff_dlog(
NULL, 
" pass %d offs: %d curr: %f change: %f cv offs.: %d+%d  \n",
 
 1533                                                 pass, voffset / ch + (voffs % ch) * vlen,
 
 1534                                                 vec[voffset / ch + (voffs % ch) * vlen],
 
 1535                                                 codebook.codevectors[coffs + l], coffs, l);
 
 1539                             } 
else if (vr_type == 2) {
 
 1540                                 unsigned voffs_div = ch == 1 ? voffset : 
FASTDIV(voffset, ch);
 
 1541                                 unsigned voffs_mod = voffset - voffs_div * ch;
 
 1543                                 for (k = 0; k < 
step; ++k) {
 
 1548                                     for (l = 0; l < 
dim; ++l) {
 
 1549                                         vec[voffs_div + voffs_mod * vlen] +=
 
 1552                                         ff_dlog(
NULL, 
" pass %d offs: %d curr: %f change: %f cv offs.: %d+%d  \n",
 
 1553                                                 pass, voffs_div + voffs_mod * vlen,
 
 1554                                                 vec[voffs_div + voffs_mod * vlen],
 
 1555                                                 codebook.codevectors[coffs + l], coffs, l);
 
 1557                                         if (++voffs_mod == ch) {
 
 1566                     j_times_ptns_to_read += ptns_to_read;
 
 1572         if (libvorbis_bug && !pass) {
 
 1573             for (j = 0; j < ch_used; ++j) {
 
 1574                 if (!do_not_decode[j]) {
 
 1576                                 vc->codebooks[vr->
classbook].nb_bits, 3);
 
 1586                                         uint8_t *do_not_decode,
 
 1587                                         float *vec, 
unsigned vlen,
 
 1592     else if (vr->
type == 1)
 
 1594     else if (vr->
type == 0)
 
 1609     int previous_window = vc->previous_window;
 
 1610     unsigned mode_number, blockflag, blocksize;
 
 1612     uint8_t no_residue[255];
 
 1613     uint8_t do_not_decode[255];
 
 1615     float *ch_res_ptr   = vc->channel_residues;
 
 1616     uint8_t res_chan[255];
 
 1617     unsigned res_num = 0;
 
 1619     unsigned ch_left = vc->audio_channels;
 
 1627     if (vc->mode_count == 1) {
 
 1632     vc->mode_number = mode_number;
 
 1633     mapping = &vc->mappings[vc->modes[mode_number].mapping];
 
 1635     ff_dlog(
NULL, 
" Mode number: %u , mapping: %d , blocktype %d\n", mode_number,
 
 1636             vc->modes[mode_number].mapping, vc->modes[mode_number].blockflag);
 
 1638     blockflag = vc->modes[mode_number].blockflag;
 
 1639     blocksize = vc->blocksize[blockflag];
 
 1640     vlen = blocksize / 2;
 
 1643         if (previous_window < 0)
 
 1644             previous_window = 
code>>1;
 
 1645     } 
else if (previous_window < 0)
 
 1646         previous_window = 0;
 
 1648     memset(ch_res_ptr,   0, 
sizeof(
float) * vc->audio_channels * vlen); 
 
 1649     for (
i = 0; 
i < vc->audio_channels; ++
i)
 
 1650         memset(floor_ptr[
i], 0, vlen * 
sizeof(floor_ptr[0][0])); 
 
 1654     for (
i = 0; 
i < vc->audio_channels; ++
i) {
 
 1669         no_residue[
i] = 
ret;
 
 1675         if (!(no_residue[mapping->
magnitude[
i]] & no_residue[mapping->
angle[
i]])) {
 
 1677             no_residue[mapping->
angle[
i]]     = 0;
 
 1688         for (j = 0; j < vc->audio_channels; ++j) {
 
 1689             if ((mapping->
submaps == 1) || (
i == mapping->
mux[j])) {
 
 1690                 res_chan[j] = res_num;
 
 1691                 if (no_residue[j]) {
 
 1692                     do_not_decode[ch] = 1;
 
 1694                     do_not_decode[ch] = 0;
 
 1711         ch_res_ptr += ch * vlen;
 
 1723         mag = vc->channel_residues+res_chan[mapping->
magnitude[
i]] * blocksize / 2;
 
 1724         ang = vc->channel_residues+res_chan[mapping->
angle[
i]]     * blocksize / 2;
 
 1725         vc->dsp.vorbis_inverse_coupling(mag, ang, blocksize / 2);
 
 1730     mdct = vc->mdct[blockflag];
 
 1731     mdct_fn = vc->mdct_fn[blockflag];
 
 1733     for (j = vc->audio_channels-1;j >= 0; j--) {
 
 1734         ch_res_ptr   = vc->channel_residues + res_chan[j] * blocksize / 2;
 
 1735         vc->fdsp->vector_fmul(floor_ptr[j], floor_ptr[j], ch_res_ptr, blocksize / 2);
 
 1736         mdct_fn(mdct, ch_res_ptr, floor_ptr[j], 
sizeof(
float));
 
 1741     retlen = (blocksize + vc->blocksize[previous_window]) / 4;
 
 1742     for (j = 0; j < vc->audio_channels; j++) {
 
 1743         unsigned bs0 = vc->blocksize[0];
 
 1744         unsigned bs1 = vc->blocksize[1];
 
 1745         float *residue    = vc->channel_residues + res_chan[j] * blocksize / 2;
 
 1746         float *saved      = vc->saved + j * bs1 / 4;
 
 1747         float *
ret        = floor_ptr[j];
 
 1748         float *buf        = residue;
 
 1749         const float *
win  = vc->win[blockflag & previous_window];
 
 1751         if (blockflag == previous_window) {
 
 1752             vc->fdsp->vector_fmul_window(
ret, saved, buf, 
win, blocksize / 4);
 
 1753         } 
else if (blockflag > previous_window) {
 
 1754             vc->fdsp->vector_fmul_window(
ret, saved, buf, 
win, bs0 / 4);
 
 1755             memcpy(
ret+bs0/2, buf+bs0/4, ((bs1-bs0)/4) * 
sizeof(
float));
 
 1757             memcpy(
ret, saved, ((bs1 - bs0) / 4) * 
sizeof(
float));
 
 1758             vc->fdsp->vector_fmul_window(
ret + (bs1 - bs0) / 4, saved + (bs1 - bs0) / 4, buf, 
win, bs0 / 4);
 
 1760         memcpy(saved, buf + blocksize / 4, blocksize / 4 * 
sizeof(
float));
 
 1763     vc->previous_window = blockflag;
 
 1770                                int *got_frame_ptr, 
AVPacket *avpkt)
 
 1772     const uint8_t *buf = avpkt->
data;
 
 1773     int buf_size       = avpkt->
size;
 
 1776     float *channel_ptrs[255];
 
 1781     if (*buf == 1 && buf_size > 7) {
 
 1793         if (vc->audio_channels > 8) {
 
 1804     if (*buf == 3 && buf_size > 7) {
 
 1809     if (*buf == 5 && buf_size > 7 && vc->channel_residues && !vc->modes) {
 
 1821     if (!vc->channel_residues || !vc->modes) {
 
 1831     if (vc->audio_channels > 8) {
 
 1832         for (
i = 0; 
i < vc->audio_channels; 
i++)
 
 1835         for (
i = 0; 
i < vc->audio_channels; 
i++) {
 
 1847     if (!vc->first_frame) {
 
 1848         vc->first_frame = 1;
 
 1852     ff_dlog(
NULL, 
"parsed %d bytes %d bits, returned %d samples (*ch*bits) \n",
 
 1877         memset(vc->saved, 0, (vc->blocksize[1] / 4) * vc->audio_channels *
 
 1878                              sizeof(*vc->saved));
 
 1880     vc->previous_window = -1;
 
 1881     vc->first_frame = 0;
 
 1889     .priv_data_size  = 
sizeof(vorbis_context),