43 #define ENVELOPE_ADJUSTMENT_OFFSET 2
44 #define NOISE_FLOOR_OFFSET 6.0f
78 { 60, 60, 24, 24, 31, 31, 12, 12, 31, 12 };
80 #define SBR_INIT_VLC_STATIC(num, size) \
81 INIT_VLC_STATIC(&vlc_sbr[num], 9, sbr_tmp[num].table_size / sbr_tmp[num].elem_size, \
82 sbr_tmp[num].sbr_bits , 1, 1, \
83 sbr_tmp[num].sbr_codes, sbr_tmp[num].elem_size, sbr_tmp[num].elem_size, \
86 #define SBR_VLC_ROW(name) \
87 { name ## _codes, name ## _bits, sizeof(name ## _codes), sizeof(name ## _codes[0]) }
93 const void *sbr_codes, *sbr_bits;
94 const unsigned int table_size, elem_size;
120 for (n = 1; n < 320; n++)
125 for (n = 0; n < 320; n++)
146 sbr->
kx[0] = sbr->
kx[1];
167 return *(
const int16_t *)a - *(
const int16_t *)
b;
173 for (i = 0; i <= last_el; i++)
174 if (table[i] == needle)
184 static const float bands_warped[3] = { 1.32715174233856803909f,
185 1.18509277094158210129f,
186 1.11987160404675912501f };
187 const float lim_bands_per_octave_warped = bands_warped[sbr->
bs_limiter_bands - 1];
188 int16_t patch_borders[7];
191 patch_borders[0] = sbr->
kx[1];
198 memcpy(sbr->
f_tablelim + sbr->
n[0] + 1, patch_borders + 1,
199 (sbr->
num_patches - 1) *
sizeof(patch_borders[0]));
206 while (out < sbr->f_tablelim + sbr->
n_lim) {
207 if (*in >= *out * lim_bands_per_octave_warped) {
209 }
else if (*in == *out ||
249 if (bs_header_extra_1) {
263 if (bs_header_extra_2) {
283 int i,
min = array[0];
284 for (i = 1; i < nel; i++)
285 min =
FFMIN(array[i], min);
289 static void make_bands(int16_t* bands,
int start,
int stop,
int num_bands)
291 int k, previous, present;
294 base =
powf((
float)stop / start, 1.0f / num_bands);
298 for (k = 0; k < num_bands-1; k++) {
301 bands[k] = present - previous;
304 bands[num_bands-1] = stop - previous;
314 if (bs_xover_band >= n_master) {
316 "Invalid bitstream, crossover band index beyond array bounds: %d\n",
327 unsigned int temp, max_qmf_subbands;
328 unsigned int start_min, stop_min;
330 const int8_t *sbr_offset_ptr;
353 case 44100:
case 48000:
case 64000:
356 case 88200:
case 96000:
case 128000:
case 176400:
case 192000:
361 "Unsupported sample rate for SBR: %d\n", sbr->
sample_rate);
371 sbr->
k[2] = stop_min;
375 sbr->
k[2] += stop_dk[k];
377 sbr->
k[2] = 2*sbr->
k[0];
379 sbr->
k[2] = 3*sbr->
k[0];
385 sbr->
k[2] =
FFMIN(64, sbr->
k[2]);
389 max_qmf_subbands = 48;
391 max_qmf_subbands = 35;
393 max_qmf_subbands = 32;
395 if (sbr->
k[2] - sbr->
k[0] > max_qmf_subbands) {
397 "Invalid bitstream, too many QMF subbands: %d\n", sbr->
k[2] - sbr->
k[0]);
405 sbr->
n_master = ((sbr->
k[2] - sbr->
k[0] + (dk&2)) >> dk) << 1;
409 for (k = 1; k <= sbr->
n_master; k++)
412 k2diff = sbr->
k[2] - sbr->
k[0] - sbr->
n_master * dk;
421 for (k = 1; k <= sbr->
n_master; k++)
426 int two_regions, num_bands_0;
427 int vdk0_max, vdk1_min;
430 if (49 * sbr->
k[2] > 110 * sbr->
k[0]) {
432 sbr->
k[1] = 2 * sbr->
k[0];
435 sbr->
k[1] = sbr->
k[2];
438 num_bands_0 =
lrintf(half_bands *
log2f(sbr->
k[1] / (
float)sbr->
k[0])) * 2;
440 if (num_bands_0 <= 0) {
450 vdk0_max = vk0[num_bands_0];
453 for (k = 1; k <= num_bands_0; k++) {
463 float invwarp = spectrum->
bs_alter_scale ? 0.76923076923076923077f
465 int num_bands_1 =
lrintf(half_bands * invwarp *
466 log2f(sbr->
k[2] / (
float)sbr->
k[1])) * 2;
472 if (vdk1_min < vdk0_max) {
475 change =
FFMIN(vdk0_max - vk1[1], (vk1[num_bands_1] - vk1[1]) >> 1);
477 vk1[num_bands_1] -= change;
483 for (k = 1; k <= num_bands_1; k++) {
491 sbr->
n_master = num_bands_0 + num_bands_1;
495 (num_bands_0 + 1) *
sizeof(sbr->
f_master[0]));
496 memcpy(&sbr->
f_master[num_bands_0 + 1], vk1 + 1,
497 num_bands_1 *
sizeof(sbr->
f_master[0]));
515 int usb = sbr->
kx[1];
520 if (goal_sb < sbr->kx[1] + sbr->
m[1]) {
521 for (k = 0; sbr->
f_master[k] < goal_sb; k++) ;
527 for (i = k; i == k || sb > (sbr->
k[0] - 1 + msb - odd); i--) {
529 odd = (sb + sbr->
k[0]) & 1;
553 }
while (sb != sbr->
kx[1] + sbr->
m[1]);
567 sbr->
n[0] = (sbr->
n[1] + 1) >> 1;
570 (sbr->
n[1] + 1) *
sizeof(sbr->
f_master[0]));
575 if (sbr->
kx[1] + sbr->
m[1] > 64) {
577 "Stop frequency border too high: %d\n", sbr->
kx[1] + sbr->
m[1]);
580 if (sbr->
kx[1] > 32) {
586 temp = sbr->
n[1] & 1;
587 for (k = 1; k <= sbr->
n[0]; k++)
591 log2f(sbr->
k[2] / (
float)sbr->
kx[1])));
599 for (k = 1; k <= sbr->
n_q; k++) {
600 temp += (sbr->
n[0] -
temp) / (sbr->
n_q + 1 - k);
619 for (i = 0; i < elements; i++) {
633 unsigned bs_pointer = 0;
635 int abs_bord_trail = 16;
636 int num_rel_lead, num_rel_trail;
637 unsigned bs_num_env_old = ch_data->
bs_num_env;
652 "Invalid bitstream, too many SBR envelopes in FIXFIX type SBR frame: %d\n",
657 ch_data->
t_env[0] = 0;
660 abs_bord_trail = (abs_bord_trail + (ch_data->
bs_num_env >> 1)) /
662 for (i = 0; i < num_rel_lead; i++)
663 ch_data->
t_env[i + 1] = ch_data->
t_env[i] + abs_bord_trail;
673 ch_data->
t_env[0] = 0;
676 for (i = 0; i < num_rel_trail; i++)
691 for (i = 0; i < num_rel_lead; i++)
703 ch_data->
bs_num_env = num_rel_lead + num_rel_trail + 1;
707 "Invalid bitstream, too many SBR envelopes in VARVAR type SBR frame: %d\n",
714 for (i = 0; i < num_rel_lead; i++)
716 for (i = 0; i < num_rel_trail; i++)
728 "Invalid bitstream, bs_pointer points to a middle noise border outside the time borders table: %d\n",
734 if (ch_data->
t_env[i-1] > ch_data->
t_env[i]) {
742 ch_data->
t_q[0] = ch_data->
t_env[0];
753 else if (bs_pointer == 1)
756 idx = bs_pointer - 1;
758 ch_data->
t_q[1] = ch_data->
t_env[idx];
761 ch_data->
e_a[0] = -(ch_data->
e_a[1] != bs_num_env_old);
762 ch_data->
e_a[1] = -1;
766 ch_data->
e_a[1] = bs_pointer - 1;
780 memcpy(dst->
t_q, src->
t_q,
sizeof(dst->
t_q));
785 dst->
e_a[1] = src->
e_a[1];
803 for (i = 0; i < sbr->
n_q; i++)
812 VLC_TYPE (*t_huff)[2], (*f_huff)[2];
815 const int odd = sbr->
n[1] & 1;
851 for (j = 0; j < sbr->
n[ch_data->
bs_freq_res[i + 1]]; j++)
854 for (j = 0; j < sbr->
n[ch_data->
bs_freq_res[i + 1]]; j++) {
859 for (j = 0; j < sbr->
n[ch_data->
bs_freq_res[i + 1]]; j++) {
860 k = j ? 2*j - odd : 0;
866 for (j = 1; j < sbr->
n[ch_data->
bs_freq_res[i + 1]]; j++)
880 VLC_TYPE (*t_huff)[2], (*f_huff)[2];
898 for (j = 0; j < sbr->
n_q; j++)
902 for (j = 1; j < sbr->
n_q; j++)
914 int bs_extension_id,
int *num_bits_left)
916 switch (bs_extension_id) {
919 av_log(ac->
avctx,
AV_LOG_ERROR,
"Parametric Stereo signaled to be not-present but was found in the bitstream.\n");
934 if (bs_extension_id || *num_bits_left > 16 ||
show_bits(gb, *num_bits_left))
1021 "Invalid bitstream - cannot apply SBR to element type %d\n", id_aac);
1026 int num_bits_left =
get_bits(gb, 4);
1027 if (num_bits_left == 15)
1030 num_bits_left <<= 3;
1031 while (num_bits_left > 7) {
1035 if (num_bits_left < 0) {
1038 if (num_bits_left > 0)
1053 "SBR reset failed. Switching SBR to pure upsampling mode.\n");
1069 unsigned int num_sbr_bits = 0, num_align_bits;
1070 unsigned bytes_read;
1087 sbr->
kx[0] = sbr->
kx[1];
1088 sbr->
m[0] = sbr->
m[1];
1101 num_align_bits = ((cnt << 3) - 4 - num_sbr_bits) & 7;
1102 bytes_read = ((num_sbr_bits + num_align_bits + 4) >> 3);
1104 if (bytes_read > cnt) {
1106 "Expected to read %d SBR bytes actually read %d.\n", cnt, bytes_read);
1129 fac = temp1 / (1.0f + temp2);
1135 for (k = 0; k < sbr->
n_q; k++) {
1143 fac = temp1 / (1.0f + temp2);
1149 for (ch = 0; ch < (id_aac ==
TYPE_CPE) + 1; ch++) {
1162 for (k = 0; k < sbr->
n_q; k++)
1177 float z[320],
float W[2][32][32][2],
int buf_idx)
1180 memcpy(x , x+1024, (320-32)*
sizeof(x[0]));
1181 memcpy(x+288, in, 1024*
sizeof(x[0]));
1182 for (i = 0; i < 32; i++) {
1199 float *out,
float X[2][38][64],
1200 float mdct_buf[2][64],
1201 float *
v0,
int *v_off,
const unsigned int div)
1205 const int step = 128 >> div;
1207 for (i = 0; i < 32; i++) {
1208 if (*v_off < step) {
1209 int saved_samples = (1280 - 128) >> div;
1217 for (n = 0; n < 32; n++) {
1218 X[0][i][ n] = -X[0][i][n];
1219 X[0][i][32+n] = X[1][i][31-n];
1221 mdct->
imdct_half(mdct, mdct_buf[0], X[0][i]);
1225 mdct->
imdct_half(mdct, mdct_buf[0], X[0][i]);
1226 mdct->
imdct_half(mdct, mdct_buf[1], X[1][i]);
1229 fdsp->
vector_fmul (out, v , sbr_qmf_window , 64 >> div);
1230 dsp->
vector_fmul_add(out, v + ( 192 >> div), sbr_qmf_window + ( 64 >> div), out , 64 >> div);
1231 dsp->
vector_fmul_add(out, v + ( 256 >> div), sbr_qmf_window + (128 >> div), out , 64 >> div);
1232 dsp->
vector_fmul_add(out, v + ( 448 >> div), sbr_qmf_window + (192 >> div), out , 64 >> div);
1233 dsp->
vector_fmul_add(out, v + ( 512 >> div), sbr_qmf_window + (256 >> div), out , 64 >> div);
1234 dsp->
vector_fmul_add(out, v + ( 704 >> div), sbr_qmf_window + (320 >> div), out , 64 >> div);
1235 dsp->
vector_fmul_add(out, v + ( 768 >> div), sbr_qmf_window + (384 >> div), out , 64 >> div);
1236 dsp->
vector_fmul_add(out, v + ( 960 >> div), sbr_qmf_window + (448 >> div), out , 64 >> div);
1237 dsp->
vector_fmul_add(out, v + (1024 >> div), sbr_qmf_window + (512 >> div), out , 64 >> div);
1238 dsp->
vector_fmul_add(out, v + (1216 >> div), sbr_qmf_window + (576 >> div), out , 64 >> div);
1248 float (*alpha0)[2],
float (*alpha1)[2],
1249 const float X_low[32][40][2],
int k0)
1252 for (k = 0; k < k0; k++) {
1258 dk = phi[2][1][0] * phi[1][0][0] -
1259 (phi[1][1][0] * phi[1][1][0] + phi[1][1][1] * phi[1][1][1]) / 1.000001f;
1265 float temp_real, temp_im;
1266 temp_real = phi[0][0][0] * phi[1][1][0] -
1267 phi[0][0][1] * phi[1][1][1] -
1268 phi[0][1][0] * phi[1][0][0];
1269 temp_im = phi[0][0][0] * phi[1][1][1] +
1270 phi[0][0][1] * phi[1][1][0] -
1271 phi[0][1][1] * phi[1][0][0];
1273 alpha1[k][0] = temp_real / dk;
1274 alpha1[k][1] = temp_im / dk;
1277 if (!phi[1][0][0]) {
1281 float temp_real, temp_im;
1282 temp_real = phi[0][0][0] + alpha1[k][0] * phi[1][1][0] +
1283 alpha1[k][1] * phi[1][1][1];
1284 temp_im = phi[0][0][1] + alpha1[k][1] * phi[1][1][0] -
1285 alpha1[k][0] * phi[1][1][1];
1287 alpha0[k][0] = -temp_real / phi[1][0][0];
1288 alpha0[k][1] = -temp_im / phi[1][0][0];
1291 if (alpha1[k][0] * alpha1[k][0] + alpha1[k][1] * alpha1[k][1] >= 16.0f ||
1292 alpha0[k][0] * alpha0[k][0] + alpha0[k][1] * alpha0[k][1] >= 16.0f) {
1306 static const float bw_tab[] = { 0.0f, 0.75f, 0.9f, 0.98f };
1308 for (i = 0; i < sbr->
n_q; i++) {
1314 if (new_bw < ch_data->bw_array[i]) {
1315 new_bw = 0.75f * new_bw + 0.25f * ch_data->
bw_array[i];
1317 new_bw = 0.90625f * new_bw + 0.09375f * ch_data->
bw_array[i];
1318 ch_data->
bw_array[i] = new_bw < 0.015625f ? 0.0f : new_bw;
1324 float X_low[32][40][2],
const float W[2][32][32][2],
1328 const int t_HFGen = 8;
1330 memset(X_low, 0, 32*
sizeof(*X_low));
1331 for (k = 0; k < sbr->
kx[1]; k++) {
1332 for (i = t_HFGen; i < i_f + t_HFGen; i++) {
1333 X_low[k][i][0] = W[buf_idx][i - t_HFGen][k][0];
1334 X_low[k][i][1] = W[buf_idx][i - t_HFGen][k][1];
1337 buf_idx = 1-buf_idx;
1338 for (k = 0; k < sbr->
kx[0]; k++) {
1339 for (i = 0; i < t_HFGen; i++) {
1340 X_low[k][i][0] = W[buf_idx][i + i_f - t_HFGen][k][0];
1341 X_low[k][i][1] = W[buf_idx][i + i_f - t_HFGen][k][1];
1349 float X_high[64][40][2],
const float X_low[32][40][2],
1350 const float (*alpha0)[2],
const float (*alpha1)[2],
1351 const float bw_array[5],
const uint8_t *t_env,
1366 "ERROR : no subband found for frequency %d\n", k);
1372 alpha0[p], alpha1[p], bw_array[g],
1373 2 * t_env[0], 2 * t_env[bs_num_env]);
1376 if (k < sbr->
m[1] + sbr->
kx[1])
1377 memset(X_high + k, 0, (sbr->
m[1] + sbr->
kx[1] - k) *
sizeof(*X_high));
1384 const float Y0[38][64][2],
const float Y1[38][64][2],
1385 const float X_low[32][40][2],
int ch)
1390 memset(X, 0, 2*
sizeof(*X));
1391 for (k = 0; k < sbr->
kx[0]; k++) {
1392 for (i = 0; i < i_Temp; i++) {
1397 for (; k < sbr->
kx[0] + sbr->
m[0]; k++) {
1398 for (i = 0; i < i_Temp; i++) {
1399 X[0][i][k] = Y0[i + i_f][k][0];
1400 X[1][i][k] = Y0[i + i_f][k][1];
1404 for (k = 0; k < sbr->
kx[1]; k++) {
1405 for (i = i_Temp; i < 38; i++) {
1410 for (; k < sbr->
kx[1] + sbr->
m[1]; k++) {
1411 for (i = i_Temp; i < i_f; i++) {
1412 X[0][i][k] = Y1[i][k][0];
1413 X[1][i][k] = Y1[i][k][1];
1429 const unsigned int ilim = sbr->
n[ch_data->
bs_freq_res[e + 1]];
1433 if (sbr->
kx[1] != table[0]) {
1435 "Derived frequency tables were not regenerated.\n");
1439 for (i = 0; i < ilim; i++)
1440 for (m = table[i]; m < table[i + 1]; m++)
1445 for (i = 0; i < sbr->
n_q; i++)
1446 for (m = sbr->
f_tablenoise[i]; m < sbr->f_tablenoise[i + 1]; m++)
1449 for (i = 0; i < sbr->
n[1]; i++) {
1451 const unsigned int m_midpoint =
1455 (e >= e_a[1] || (ch_data->
s_indexmapped[0][m_midpoint - sbr->
kx[1]] == 1));
1459 for (i = 0; i < ilim; i++) {
1460 int additional_sinusoid_present = 0;
1461 for (m = table[i]; m < table[i + 1]; m++) {
1463 additional_sinusoid_present = 1;
1467 memset(&sbr->
s_mapped[e][table[i] - sbr->
kx[1]], additional_sinusoid_present,
1468 (table[i + 1] - table[i]) *
sizeof(sbr->
s_mapped[e][0]));
1481 int kx1 = sbr->
kx[1];
1485 const float recip_env_size = 0.5f / (ch_data->
t_env[e + 1] - ch_data->
t_env[e]);
1489 for (m = 0; m < sbr->
m[1]; m++) {
1490 float sum = sbr->
dsp.
sum_square(X_high[m+kx1] + ilb, iub - ilb);
1491 e_curr[e][
m] = sum * recip_env_size;
1498 const int env_size = 2 * (ch_data->
t_env[e + 1] - ch_data->
t_env[e]);
1503 for (p = 0; p < sbr->
n[ch_data->
bs_freq_res[e + 1]]; p++) {
1505 const int den = env_size * (table[p + 1] - table[p]);
1507 for (k = table[p]; k < table[p + 1]; k++) {
1511 for (k = table[p]; k < table[p + 1]; k++) {
1512 e_curr[e][k - kx1] = sum;
1524 SBRData *ch_data,
const int e_a[2])
1528 static const float limgain[4] = { 0.70795, 1.0, 1.41254, 10000000000 };
1531 int delta = !((e == e_a[1]) || (e == e_a[0]));
1532 for (k = 0; k < sbr->
n_lim; k++) {
1533 float gain_boost, gain_max;
1534 float sum[2] = { 0.0f, 0.0f };
1535 for (m = sbr->
f_tablelim[k] - sbr->
kx[1]; m < sbr->f_tablelim[k + 1] - sbr->
kx[1]; m++) {
1541 ((1.0f + sbr->
e_curr[e][m]) *
1542 (1.0f + sbr->
q_mapped[e][m] * delta)));
1545 ((1.0f + sbr->
e_curr[e][m]) *
1549 for (m = sbr->
f_tablelim[k] - sbr->
kx[1]; m < sbr->f_tablelim[k + 1] - sbr->
kx[1]; m++) {
1553 gain_max = limgain[sbr->
bs_limiter_gains] * sqrtf((FLT_EPSILON + sum[0]) / (FLT_EPSILON + sum[1]));
1554 gain_max =
FFMIN(100000.f, gain_max);
1555 for (m = sbr->
f_tablelim[k] - sbr->
kx[1]; m < sbr->f_tablelim[k + 1] - sbr->
kx[1]; m++) {
1556 float q_m_max = sbr->
q_m[e][
m] * gain_max / sbr->
gain[e][
m];
1560 sum[0] = sum[1] = 0.0f;
1561 for (m = sbr->
f_tablelim[k] - sbr->
kx[1]; m < sbr->f_tablelim[k + 1] - sbr->
kx[1]; m++) {
1565 + (delta && !sbr->
s_m[e][
m]) * sbr->
q_m[e][m] * sbr->
q_m[e][m];
1567 gain_boost = sqrtf((FLT_EPSILON + sum[0]) / (FLT_EPSILON + sum[1]));
1568 gain_boost =
FFMIN(1.584893192f, gain_boost);
1569 for (m = sbr->
f_tablelim[k] - sbr->
kx[1]; m < sbr->f_tablelim[k + 1] - sbr->
kx[1]; m++) {
1570 sbr->
gain[e][
m] *= gain_boost;
1571 sbr->
q_m[e][
m] *= gain_boost;
1572 sbr->
s_m[e][
m] *= gain_boost;
1580 const float X_high[64][40][2],
1586 const int kx = sbr->
kx[1];
1587 const int m_max = sbr->
m[1];
1588 static const float h_smooth[5] = {
1595 float (*g_temp)[48] = ch_data->
g_temp, (*q_temp)[48] = ch_data->
q_temp;
1600 for (i = 0; i < h_SL; i++) {
1601 memcpy(g_temp[i + 2*ch_data->
t_env[0]], sbr->
gain[0], m_max *
sizeof(sbr->
gain[0][0]));
1602 memcpy(q_temp[i + 2*ch_data->
t_env[0]], sbr->
q_m[0], m_max *
sizeof(sbr->
q_m[0][0]));
1610 for (i = 2 * ch_data->
t_env[e]; i < 2 * ch_data->t_env[e + 1]; i++) {
1611 memcpy(g_temp[h_SL + i], sbr->
gain[e], m_max *
sizeof(sbr->
gain[0][0]));
1612 memcpy(q_temp[h_SL + i], sbr->
q_m[e], m_max *
sizeof(sbr->
q_m[0][0]));
1617 for (i = 2 * ch_data->
t_env[e]; i < 2 * ch_data->t_env[e + 1]; i++) {
1620 float *g_filt, *q_filt;
1622 if (h_SL && e != e_a[0] && e != e_a[1]) {
1623 g_filt = g_filt_tab;
1624 q_filt = q_filt_tab;
1625 for (m = 0; m < m_max; m++) {
1626 const int idx1 = i + h_SL;
1629 for (j = 0; j <= h_SL; j++) {
1630 g_filt[
m] += g_temp[idx1 - j][
m] * h_smooth[j];
1631 q_filt[
m] += q_temp[idx1 - j][
m] * h_smooth[j];
1635 g_filt = g_temp[i + h_SL];
1639 sbr->
dsp.
hf_g_filt(Y1[i] + kx, X_high + kx, g_filt, m_max,
1642 if (e != e_a[0] && e != e_a[1]) {
1647 int idx = indexsine&1;
1648 int A = (1-((indexsine+(kx & 1))&2));
1649 int B = (A^(-idx)) + idx;
1650 float *out = &Y1[i][kx][idx];
1651 float *in = sbr->
s_m[e];
1652 for (m = 0; m+1 < m_max; m+=2) {
1653 out[2*
m ] += in[
m ] *
A;
1654 out[2*m+2] += in[m+1] *
B;
1657 out[2*
m ] += in[
m ] *
A;
1659 indexnoise = (indexnoise + m_max) & 0x1ff;
1660 indexsine = (indexsine + 1) & 3;
1672 int nch = (id_aac ==
TYPE_CPE) ? 2 : 1;
1676 sbr->
kx[0] = sbr->
kx[1];
1677 sbr->
m[0] = sbr->
m[1];
1685 for (ch = 0; ch < nch; ch++) {
1721 memcpy(sbr->
X[1], sbr->
X[0],
sizeof(sbr->
X[0]));