Searched refs:SBLIMIT (Results 1 - 17 of 17) sorted by relevance
/netgear-R7000-V1.0.7.12_1.2.5/ap/gpl/minidlna/ffmpeg-2.3.4/libavcodec/ |
H A D | mpegaudiotab.h | 95 static const float fixed_smr[SBLIMIT] = {
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H A D | mpegaudio.h | 43 #define SBLIMIT 32 /* number of subbands */ macro
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H A D | mpc.h | 71 DECLARE_ALIGNED(16, int32_t, sb_samples)[MPA_MAX_CHANNELS][36][SBLIMIT];
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H A D | mpegaudioenc_template.c | 58 int sb_samples[MPA_MAX_CHANNELS][3][12][SBLIMIT]; 59 unsigned char scale_factors[MPA_MAX_CHANNELS][SBLIMIT][3]; /* scale factors */ 61 unsigned char scale_code[MPA_MAX_CHANNELS][SBLIMIT]; 377 unsigned char scale_code[SBLIMIT], 378 unsigned char scale_factors[SBLIMIT][3], 379 int sb_samples[3][12][SBLIMIT], 392 p += SBLIMIT; 492 static void psycho_acoustic_model(MpegAudioContext *s, short smr[SBLIMIT]) 510 short smr1[MPA_MAX_CHANNELS][SBLIMIT], 511 unsigned char bit_alloc[MPA_MAX_CHANNELS][SBLIMIT], [all...] |
H A D | mpegaudiodsp_template.c | 359 out[(9 + j) * SBLIMIT] = MULH3(t1, win[ 9 + j], 1) + buf[4*(9 + j)]; 360 out[(8 - j) * SBLIMIT] = MULH3(t1, win[ 8 - j], 1) + buf[4*(8 - j)]; 366 out[(9 + 8 - j) * SBLIMIT] = MULH3(t1, win[ 9 + 8 - j], 1) + buf[4*(9 + 8 - j)]; 367 out[ j * SBLIMIT] = MULH3(t1, win[ j], 1) + buf[4*( j)]; 377 out[(9 + 4) * SBLIMIT] = MULH3(t1, win[ 9 + 4], 1) + buf[4*(9 + 4)]; 378 out[(8 - 4) * SBLIMIT] = MULH3(t1, win[ 8 - 4], 1) + buf[4*(8 - 4)];
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H A D | mpegaudiodec_template.c | 67 DECLARE_ALIGNED(16, INTFLOAT, sb_hybrid)[SBLIMIT * 18]; /* 576 samples */ 80 DECLARE_ALIGNED(32, INTFLOAT, sb_samples)[MPA_MAX_CHANNELS][36][SBLIMIT]; 81 INTFLOAT mdct_buf[MPA_MAX_CHANNELS][SBLIMIT * 18]; /* previous samples, for layer 3 MDCT */ 489 uint8_t allocation[MPA_MAX_CHANNELS][SBLIMIT]; 490 uint8_t scale_factors[MPA_MAX_CHANNELS][SBLIMIT]; 495 bound = SBLIMIT; 503 for (i = bound; i < SBLIMIT; i++) 513 for (i = bound; i < SBLIMIT; i++) { 534 for (i = bound; i < SBLIMIT; i++) { 556 unsigned char bit_alloc[MPA_MAX_CHANNELS][SBLIMIT]; [all...] |
H A D | qdm2.c | 177 DECLARE_ALIGNED(32, float, sb_samples)[MPA_MAX_CHANNELS][128][SBLIMIT]; 1724 for (k = sb_used; k < SBLIMIT; k++)
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/netgear-R7000-V1.0.7.12_1.2.5/ap/gpl/iserver/libav-0.8.8/libavcodec/ |
H A D | mpegaudio.h | 43 #define SBLIMIT 32 /* number of subbands */ macro
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H A D | mpegaudiotab.h | 109 static const float fixed_smr[SBLIMIT] = {
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H A D | mpc.h | 72 DECLARE_ALIGNED(16, int32_t, sb_samples)[MPA_MAX_CHANNELS][36][SBLIMIT];
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H A D | mpegaudioenc.c | 53 int sb_samples[MPA_MAX_CHANNELS][3][12][SBLIMIT]; 54 unsigned char scale_factors[MPA_MAX_CHANNELS][SBLIMIT][3]; /* scale factors */ 56 unsigned char scale_code[MPA_MAX_CHANNELS][SBLIMIT]; 364 static void compute_scale_factors(unsigned char scale_code[SBLIMIT], 365 unsigned char scale_factors[SBLIMIT][3], 366 int sb_samples[3][12][SBLIMIT], 379 p += SBLIMIT; 479 static void psycho_acoustic_model(MpegAudioContext *s, short smr[SBLIMIT]) 497 short smr1[MPA_MAX_CHANNELS][SBLIMIT], 498 unsigned char bit_alloc[MPA_MAX_CHANNELS][SBLIMIT], [all...] |
H A D | mpegaudiodsp_template.c | 359 out[(9 + j) * SBLIMIT] = MULH3(t1, win[ 9 + j], 1) + buf[4*(9 + j)]; 360 out[(8 - j) * SBLIMIT] = MULH3(t1, win[ 8 - j], 1) + buf[4*(8 - j)]; 366 out[(9 + 8 - j) * SBLIMIT] = MULH3(t1, win[ 9 + 8 - j], 1) + buf[4*(9 + 8 - j)]; 367 out[ j * SBLIMIT] = MULH3(t1, win[ j], 1) + buf[4*( j)]; 377 out[(9 + 4) * SBLIMIT] = MULH3(t1, win[ 9 + 4], 1) + buf[4*(9 + 4)]; 378 out[(8 - 4) * SBLIMIT] = MULH3(t1, win[ 8 - 4], 1) + buf[4*(8 - 4)];
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H A D | mpegaudiodec.c | 62 DECLARE_ALIGNED(16, INTFLOAT, sb_hybrid)[SBLIMIT * 18]; /* 576 samples */ 75 DECLARE_ALIGNED(32, INTFLOAT, sb_samples)[MPA_MAX_CHANNELS][36][SBLIMIT]; 76 INTFLOAT mdct_buf[MPA_MAX_CHANNELS][SBLIMIT * 18]; /* previous samples, for layer 3 MDCT */ 500 uint8_t allocation[MPA_MAX_CHANNELS][SBLIMIT]; 501 uint8_t scale_factors[MPA_MAX_CHANNELS][SBLIMIT]; 506 bound = SBLIMIT; 514 for (i = bound; i < SBLIMIT; i++) 524 for (i = bound; i < SBLIMIT; i++) { 545 for (i = bound; i < SBLIMIT; i++) { 567 unsigned char bit_alloc[MPA_MAX_CHANNELS][SBLIMIT]; [all...] |
H A D | qdm2.c | 181 DECLARE_ALIGNED(32, float, sb_samples)[MPA_MAX_CHANNELS][128][SBLIMIT]; 1623 for (k=sb_used; k < SBLIMIT; k++)
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/netgear-R7000-V1.0.7.12_1.2.5/ap/gpl/minidlna/ffmpeg-2.3.4/libavcodec/mips/ |
H A D | compute_antialias_fixed.h | 73 n = SBLIMIT - 1;
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/netgear-R7000-V1.0.7.12_1.2.5/ap/gpl/minidlna/ffmpeg-2.3.4/libavcodec/x86/ |
H A D | imdct36.asm | 74 %define SBLIMIT 32 322 movss [outq + 64*SBLIMIT], m6 324 movss [outq + 68*SBLIMIT], m6 329 STORE m6, m7, outq + 16*SBLIMIT, 4*SBLIMIT 335 STORE m4, m6, outq + 32*SBLIMIT, 4*SBLIMIT 341 STORE m3, m7, outq + 48*SBLIMIT, 4*SBLIMIT 346 STORE m2, m7, outq, 4*SBLIMIT [all...] |
/netgear-R7000-V1.0.7.12_1.2.5/ap/gpl/iserver/libav-0.8.8/libavcodec/x86/ |
H A D | imdct36_sse.asm | 75 %define SBLIMIT 32 314 movss [outq + 64*SBLIMIT], m6 316 movss [outq + 68*SBLIMIT], m6 321 STORE m6, m7, outq + 16*SBLIMIT, 4*SBLIMIT 327 STORE m4, m6, outq + 32*SBLIMIT, 4*SBLIMIT 333 STORE m3, m7, outq + 48*SBLIMIT, 4*SBLIMIT 338 STORE m2, m7, outq, 4*SBLIMIT [all...] |
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