43 #define MUL(a,b) (((int64_t)(a) * (int64_t)(b)) >> FRAC_BITS)
45 #define SAMPLES_BUF_SIZE 4096
68 float scale_factor_inv_table[64];
85 if (channels <= 0 || channels > 2){
86 av_log(avctx,
AV_LOG_ERROR,
"encoding %d channel(s) is not allowed in mp2\n", channels);
89 bitrate = bitrate / 1000;
92 avctx->
delay = 512 - 32 + 1;
142 av_dlog(avctx,
"%d kb/s, %d Hz, frame_size=%d bits, table=%d, padincr=%x\n",
162 v = (int)(
exp2((3 - i) / 3.0) * (1 << 20));
167 s->scale_factor_inv_table[i] =
exp2(-(3 - i) / 3.0) / (float)(1 << 20);
208 for(j=31;j>=3;j-=2) tab[j] += tab[j - 2];
252 x1 =
MUL((t[8] - x2), xp[0]);
253 x2 =
MUL((t[8] + x2), xp[1]);
266 xr =
MUL(t[28],xp[0]);
270 xr =
MUL(t[4],xp[1]);
271 t[ 4] = (t[24] - xr);
272 t[24] = (t[24] + xr);
274 xr =
MUL(t[20],xp[2]);
278 xr =
MUL(t[12],xp[3]);
279 t[12] = (t[16] - xr);
280 t[16] = (t[16] + xr);
285 for (i = 0; i < 4; i++) {
286 xr =
MUL(tab[30-i*4],xp[0]);
287 tab[30-i*4] = (tab[i*4] - xr);
288 tab[ i*4] = (tab[i*4] + xr);
290 xr =
MUL(tab[ 2+i*4],xp[1]);
291 tab[ 2+i*4] = (tab[28-i*4] - xr);
292 tab[28-i*4] = (tab[28-i*4] + xr);
294 xr =
MUL(tab[31-i*4],xp[0]);
295 tab[31-i*4] = (tab[1+i*4] - xr);
296 tab[ 1+i*4] = (tab[1+i*4] + xr);
298 xr =
MUL(tab[ 3+i*4],xp[1]);
299 tab[ 3+i*4] = (tab[29-i*4] - xr);
300 tab[29-i*4] = (tab[29-i*4] + xr);
308 xr =
MUL(t1[0], *xp);
321 #define WSHIFT (WFRAC_BITS + 15 - FRAC_BITS)
336 s->
samples_buf[ch][offset + (31 - i)] = samples[0];
345 sum = p[0*64] * q[0*64];
346 sum += p[1*64] * q[1*64];
347 sum += p[2*64] * q[2*64];
348 sum += p[3*64] * q[3*64];
349 sum += p[4*64] * q[4*64];
350 sum += p[5*64] * q[5*64];
351 sum += p[6*64] * q[6*64];
352 sum += p[7*64] * q[7*64];
357 tmp1[0] = tmp[16] >>
WSHIFT;
358 for( i=1; i<=16; i++ ) tmp1[i] = (tmp[i+16]+tmp[16-i]) >>
WSHIFT;
359 for( i=17; i<=31; i++ ) tmp1[i] = (tmp[i+16]-tmp[80-i]) >>
WSHIFT;
377 unsigned char scale_code[
SBLIMIT],
378 unsigned char scale_factors[SBLIMIT][3],
379 int sb_samples[3][12][SBLIMIT],
382 int *p, vmax,
v,
n, i, j, k, code;
384 unsigned char *sf = &scale_factors[0][0];
386 for(j=0;j<sblimit;j++) {
389 p = &sb_samples[i][0][j];
402 index = (21 -
n) * 3 - 3;
404 while (vmax <= s->scale_factor_table[index+1])
413 av_dlog(NULL,
"%2d:%d in=%x %x %d\n",
426 switch(d1 * 5 + d2) {
458 sf[1] = sf[2] = sf[0];
463 sf[0] = sf[1] = sf[2];
469 sf[0] = sf[2] = sf[1];
475 sf[1] = sf[2] = sf[0];
482 av_dlog(NULL,
"%d: %2d %2d %2d %d %d -> %d\n", j,
483 sf[0], sf[1], sf[2], d1, d2, code);
484 scale_code[j] = code;
502 #define SB_NOTALLOCATED 0
503 #define SB_ALLOCATED 1
514 int i, ch,
b, max_smr, max_ch, max_sb, current_frame_size, max_frame_size;
518 const unsigned char *alloc;
520 memcpy(smr, smr1, s->
nb_channels *
sizeof(
short) * SBLIMIT);
536 current_frame_size = 32;
550 if (smr[ch][i] > max_smr && subband_status[ch][i] !=
SB_NOMORE) {
551 max_smr = smr[ch][i];
559 av_dlog(NULL,
"current=%d max=%d max_sb=%d max_ch=%d alloc=%d\n",
560 current_frame_size, max_frame_size, max_sb, max_ch,
566 for(i=0;i<max_sb;i++) {
567 alloc += 1 << alloc[0];
581 if (current_frame_size + incr <= max_frame_size) {
584 current_frame_size += incr;
586 smr[max_ch][max_sb] = smr1[max_ch][max_sb] -
quant_snr[alloc[
b]];
588 if (b == ((1 << alloc[0]) - 1))
589 subband_status[max_ch][max_sb] =
SB_NOMORE;
594 subband_status[max_ch][max_sb] =
SB_NOMORE;
597 *padding = max_frame_size - current_frame_size;
609 int i, j, k, l, bit_alloc_bits,
b, ch;
637 j += 1 << bit_alloc_bits;
692 a = (float)sample * s->scale_factor_inv_table[s->
scale_factors[ch][i][k]];
693 q[m] = (
int)((a + 1.0) * steps * 0.5);
704 q1 = sample << (-
shift);
706 q1 = sample >>
shift;
707 q1 = (q1 *
mult) >>
P;
711 q[
m] = (q1 * (unsigned)steps) >> (
P + 1);
722 q[0] + steps * (q[1] + steps * q[2]));
731 j += 1 << bit_alloc_bits;
737 for(i=0;i<padding;i++)
748 const int16_t *samples = (
const int16_t *)frame->
data[0];