38 #define BITSTREAM_READER_LE
49 #define QDM2_LIST_ADD(list, size, packet) \
52 list[size - 1].next = &list[size]; \
54 list[size].packet = packet; \
55 list[size].next = NULL; \
60 #define QDM2_SB_USED(sub_sampling) (((sub_sampling) >= 2) ? 30 : 8 << (sub_sampling))
62 #define FIX_NOISE_IDX(noise_idx) \
63 if ((noise_idx) >= 3840) \
64 (noise_idx) -= 3840; \
66 #define SB_DITHERING_NOISE(sb,noise_idx) (noise_table[(noise_idx)++] * sb_noise_attenuation[(sb)])
68 #define SAMPLES_NEEDED \
69 av_log (NULL,AV_LOG_INFO,"This file triggers some untested code. Please contact the developers.\n");
71 #define SAMPLES_NEEDED_2(why) \
72 av_log (NULL,AV_LOG_INFO,"This file triggers some missing code. Please contact the developers.\nPosition: %s\n",why);
74 #define QDM2_MAX_FRAME_SIZE 512
196 0, 5, 1, 5, 5, 5, 5, 5, 2, 5, 5, 5, 5, 5, 5, 5, 3, 5, 5, 5, 5, 5, 4
220 if ((value & ~3) > 0)
232 return (value & 1) ? ((value + 1) >> 1) : -(value >> 1);
248 for (i = 0; i <
length; i++)
251 return (uint16_t)(value & 0xffff);
265 if (sub_packet->
type == 0) {
266 sub_packet->
size = 0;
271 if (sub_packet->
type & 0x80) {
272 sub_packet->
size <<= 8;
274 sub_packet->
type &= 0x7f;
277 if (sub_packet->
type == 0x7f)
298 while (list && list->
packet) {
314 int i, j,
n, ch, sum;
319 for (i = 0; i <
n; i++) {
322 for (j = 0; j < 8; j++)
329 for (j = 0; j < 8; j++)
351 for (j = 0; j < 64; j++) {
375 for (ch = 0; ch < channels; ch++) {
376 for (j = 0; j < 64; ) {
377 if (coding_method[ch][sb][j] < 8)
379 if ((coding_method[ch][sb][j] - 8) > 22) {
383 switch (
switchtable[coding_method[ch][sb][j] - 8]) {
407 for (k = 0; k <
run; k++) {
409 if (coding_method[ch][sb + (j + k) / 64][(j + k) % 64] > coding_method[ch][sb][j]) {
413 memset(&coding_method[ch][sb][j + k], case_val,
415 memset(&coding_method[ch][sb][j + k], case_val,
436 int i, sb, ch, sb_used;
440 for (sb = 0; sb < 30; sb++)
441 for (i = 0; i < 8; i++) {
455 for (sb = 0; sb < sb_used; sb++)
457 for (i = 0; i < 64; i++) {
466 for (sb = 0; sb < sb_used; sb++) {
467 if ((sb >= 4) && (sb <= 23)) {
469 for (i = 0; i < 64; i++) {
483 for (i = 0; i < 64; i++) {
495 for (i = 0; i < 64; i++) {
527 int c,
int superblocktype_2_3,
532 int add1, add2, add3, add4;
535 if (!superblocktype_2_3) {
540 for (sb = 0; sb < 30; sb++) {
541 for (j = 1; j < 63; j++) {
542 add1 = tone_level_idx[ch][sb][j] - 10;
545 add2 = add3 = add4 = 0;
561 tmp = tone_level_idx[ch][sb][j + 1] * 2 - add4 - add3 - add2 - add1;
564 tone_level_idx_temp[ch][sb][j + 1] = tmp & 0xff;
566 tone_level_idx_temp[ch][sb][0] = tone_level_idx_temp[ch][sb][1];
570 for (sb = 0; sb < 30; sb++)
571 for (j = 0; j < 64; j++)
572 acc += tone_level_idx_temp[ch][sb][j];
574 multres = 0x66666667LL * (acc * 10);
575 esp_40 = (multres >> 32) / 8 + ((multres & 0xffffffff) >> 31);
577 for (sb = 0; sb < 30; sb++)
578 for (j = 0; j < 64; j++) {
579 comp = tone_level_idx_temp[ch][sb][j]* esp_40 * 10;
610 coding_method[ch][sb][j] = ((tmp & 0xfffa) + 30 )& 0xff;
612 for (sb = 0; sb < 30; sb++)
615 for (sb = 0; sb < 30; sb++)
616 for (j = 0; j < 64; j++)
618 if (coding_method[ch][sb][j] < 10)
619 coding_method[ch][sb][j] = 10;
622 if (coding_method[ch][sb][j] < 16)
623 coding_method[ch][sb][j] = 16;
625 if (coding_method[ch][sb][j] < 30)
626 coding_method[ch][sb][j] = 30;
631 for (sb = 0; sb < 30; sb++)
632 for (j = 0; j < 64; j++)
651 int length,
int sb_min,
int sb_max)
653 int sb, j, k,
n, ch,
run, channels;
654 int joined_stereo, zero_encoding;
656 float type34_div = 0;
657 float type34_predictor;
659 int sign_bits[16] = {0};
663 for (sb=sb_min; sb < sb_max; sb++)
669 for (sb = sb_min; sb < sb_max; sb++) {
681 for (j = 0; j < 16; j++)
684 for (j = 0; j < 64; j++)
697 for (ch = 0; ch < channels; ch++) {
700 type34_predictor = 0.0;
703 for (j = 0; j < 128; ) {
708 for (k = 0; k < 5; k++) {
709 if ((j + 2 * k) >= 128)
720 for (k = 0; k < 5; k++)
723 for (k = 0; k < 5; k++)
726 for (k = 0; k < 10; k++)
738 f -=
noise_samples[((sb + 1) * (j +5 * ch + 1)) & 127] * 9.0 / 40.0;
749 for (k = 0; k < 5; k++) {
761 for (k = 0; k < 5; k++)
765 for (k = 0; k < 5; k++)
779 for (k = 0; k < 3; k++)
782 for (k = 0; k < 3; k++)
805 type34_div = (float)(1 <<
get_bits(gb, 2));
806 samples[0] = ((float)
get_bits(gb, 5) - 16.0) / 15.0;
807 type34_predictor = samples[0];
816 type34_predictor = samples[0];
831 for (k = 0; k < run && j + k < 128; k++) {
833 q->
tone_level[0][sb][(j + k) / 2] * samples[k];
835 if (sign_bits[(j + k) / 8])
837 q->
tone_level[1][sb][(j + k) / 2] * -samples[k];
840 q->
tone_level[1][sb][(j + k) / 2] * samples[k];
844 for (k = 0; k <
run; k++)
875 quantized_coeffs[0] =
level;
877 for (i = 0; i < 7; ) {
889 for (k = 1; k <=
run; k++)
890 quantized_coeffs[i + k] = (level + ((k * diff) / run));
922 for (sb = 0; sb <
n; sb++)
924 for (j = 0; j < 8; j++) {
928 for (k=0; k < 8; k++) {
934 for (k=0; k < 8; k++)
941 for (sb = 0; sb <
n; sb++)
949 for (j = 0; j < 8; j++)
955 for (sb = 0; sb <
n; sb++)
957 for (j = 0; j < 8; j++) {
979 for (i = 1; i <
n; i++)
984 for (j = 0; j < (8 - 1); ) {
991 for (k = 1; k <=
run; k++)
1000 for (i = 0; i < 8; i++)
1094 if (nodes[0] && nodes[1] && nodes[2])
1100 if (nodes[0] && nodes[1] && nodes[3])
1115 int i, packet_bytes, sub_packet_size, sub_packets_D;
1116 unsigned int next_index = 0;
1130 if (header.
type < 2 || header.
type >= 8) {
1141 if (header.
type == 2 || header.
type == 4 || header.
type == 5) {
1157 for (i = 0; i < 6; i++)
1161 for (i = 0; packet_bytes > 0; i++) {
1178 if (next_index >= header.
size)
1186 sub_packet_size = ((packet->
size > 0xff) ? 1 : 0) + packet->
size + 2;
1188 if (packet->
type == 0)
1191 if (sub_packet_size > packet_bytes) {
1192 if (packet->
type != 10 && packet->
type != 11 && packet->
type != 12)
1194 packet->
size += packet_bytes - sub_packet_size;
1197 packet_bytes -= sub_packet_size;
1203 if (packet->
type == 8) {
1206 }
else if (packet->
type >= 9 && packet->
type <= 12) {
1209 }
else if (packet->
type == 13) {
1210 for (j = 0; j < 6; j++)
1212 }
else if (packet->
type == 14) {
1213 for (j = 0; j < 6; j++)
1215 }
else if (packet->
type == 15) {
1218 }
else if (packet->
type >= 16 && packet->
type < 48 &&
1243 ((sub_packet >= 16) ? (sub_packet - 16) : sub_packet);
1254 int channel, stereo, phase, exp;
1255 int local_int_4, local_int_8, stereo_phase, local_int_10;
1256 int local_int_14, stereo_exp, local_int_20, local_int_28;
1263 local_int_10 = 1 << (q->
group_order - duration - 1);
1270 if(local_int_4 < q->group_size)
1276 local_int_4 += local_int_10;
1277 local_int_28 += (1 << local_int_8);
1279 local_int_4 += 8 * local_int_10;
1280 local_int_28 += (8 << local_int_8);
1286 while (offset >= (local_int_10 - 1)) {
1287 offset += (1 - (local_int_10 - 1));
1288 local_int_4 += local_int_10;
1289 local_int_28 += (1 << local_int_8);
1296 local_int_14 = (offset >> local_int_8);
1310 exp = (exp < 0) ? 0 : exp;
1319 if (stereo_phase < 0)
1324 int sub_packet = (local_int_20 + local_int_28);
1327 channel, exp, phase);
1331 stereo_exp, stereo_phase);
1347 for (i = 0; i < 5; i++)
1357 if (value > min && value < max) {
1370 (packet->
type < 16 || packet->
type >= 48 ||
1382 type = packet->
type;
1384 if ((type >= 17 && type < 24) || (type >= 33 && type < 40)) {
1387 if (duration >= 0 && duration < 4)
1389 }
else if (type == 31) {
1390 for (j = 0; j < 4; j++)
1392 }
else if (type == 46) {
1393 for (j = 0; j < 6; j++)
1395 for (j = 0; j < 4; j++)
1401 for (i = 0, j = -1; i < 5; i++)
1416 const double iscale = 2.0 *
M_PI / 512.0;
1422 c.
im = level * sin(tone->
phase * iscale);
1423 c.
re = level * cos(tone->
phase * iscale);
1432 f[1] = -tone->
table[4];
1434 f[2] = 1.0 - tone->
table[2] - tone->
table[3];
1435 f[3] = tone->
table[1] + tone->
table[4] - 1.0;
1437 f[5] = tone->
table[2];
1438 for (i = 0; i < 2; i++) {
1442 c.
im * ((tone->
cutoff <= i) ? -f[i] : f[i]);
1444 for (i = 0; i < 4; i++) {
1460 const double iscale = 0.25 *
M_PI;
1462 for (ch = 0; ch < q->
channels; ch++) {
1494 for (i = 0; i < 4; i++)
1507 if (offset < q->frequency_range) {
1511 tone.
cutoff = (offset >= 60) ? 3 : 2;
1550 int i, k, ch, sb_used, sub_sampling, dither_state = 0;
1555 for (ch = 0; ch < q->
channels; ch++)
1556 for (i = 0; i < 8; i++)
1557 for (k = sb_used; k <
SBLIMIT; k++)
1561 float *samples_ptr = q->
samples + ch;
1563 for (i = 0; i < 8; i++) {
1576 for (ch = 0; ch < q->
channels; ch++)
1609 int tmp_val, tmp,
size;
1655 while (extradata_size > 7) {
1656 if (!memcmp(extradata,
"frmaQDM", 7))
1662 if (extradata_size < 12) {
1668 if (memcmp(extradata,
"frmaQDM", 7)) {
1673 if (extradata[7] ==
'C') {
1680 extradata_size -= 8;
1684 if(size > extradata_size){
1686 extradata_size, size);
1739 case 0: tmp = 40;
break;
1740 case 1: tmp = 48;
break;
1741 case 2: tmp = 56;
break;
1742 case 3: tmp = 72;
break;
1743 case 4: tmp = 80;
break;
1744 case 5: tmp = 100;
break;
1748 if ((tmp * 1000) < avctx->
bit_rate) tmp_val = 1;
1749 if ((tmp * 1440) < avctx->
bit_rate) tmp_val = 2;
1750 if ((tmp * 1760) < avctx->
bit_rate) tmp_val = 3;
1751 if ((tmp * 2240) < avctx->
bit_rate) tmp_val = 4;
1802 memset(&q->
output_buffer[frame_size], 0, frame_size *
sizeof(
float));
1820 for (ch = 0; ch < q->
channels; ch++) {
1851 int *got_frame_ptr,
AVPacket *avpkt)
1855 int buf_size = avpkt->
size;
1862 if(buf_size < s->checksum_size)
1869 out = (int16_t *)frame->
data[0];
1871 for (i = 0; i < 16; i++) {