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Justin Rugglesdda3f0e2011-02-10 17:20:361/*
Diego Biurrun831a1182014-01-29 12:12:592 * AC-3 DSP functions
Justin Rugglesdda3f0e2011-02-10 17:20:363 * Copyright (c) 2011 Justin Ruggles
4 *
5 * This file is part of FFmpeg.
6 *
7 * FFmpeg is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
11 *
12 * FFmpeg is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with FFmpeg; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
Anton Khirnove1537102020-05-27 12:54:3822#include "libavutil/mem_internal.h"
23
Justin Rugglesdda3f0e2011-02-10 17:20:3624#include "avcodec.h"
Mans Rullgard6d9f52b2011-03-11 02:49:5525#include "ac3.h"
Justin Rugglesdda3f0e2011-02-10 17:20:3626#include "ac3dsp.h"
Mans Rullgardf507a9f2011-04-03 18:38:4127#include "mathops.h"
Justin Rugglesdda3f0e2011-02-10 17:20:3628
29static void ac3_exponent_min_c(uint8_t *exp, int num_reuse_blocks, int nb_coefs)
30{
31 int blk, i;
32
33 if (!num_reuse_blocks)
34 return;
35
36 for (i = 0; i < nb_coefs; i++) {
37 uint8_t min_exp = *exp;
38 uint8_t *exp1 = exp + 256;
39 for (blk = 0; blk < num_reuse_blocks; blk++) {
40 uint8_t next_exp = *exp1;
41 if (next_exp < min_exp)
42 min_exp = next_exp;
43 exp1 += 256;
44 }
45 *exp++ = min_exp;
46 }
47}
48
Justin Rugglesfbb6b492011-02-13 19:49:5049static int ac3_max_msb_abs_int16_c(const int16_t *src, int len)
50{
51 int i, v = 0;
52 for (i = 0; i < len; i++)
53 v |= abs(src[i]);
54 return v;
55}
56
Justin Rugglesf1efbca2011-03-11 21:45:0157static void ac3_lshift_int16_c(int16_t *src, unsigned int len,
58 unsigned int shift)
59{
60 uint32_t *src32 = (uint32_t *)src;
61 const uint32_t mask = ~(((1 << shift) - 1) << 16);
62 int i;
63 len >>= 1;
64 for (i = 0; i < len; i += 8) {
65 src32[i ] = (src32[i ] << shift) & mask;
66 src32[i+1] = (src32[i+1] << shift) & mask;
67 src32[i+2] = (src32[i+2] << shift) & mask;
68 src32[i+3] = (src32[i+3] << shift) & mask;
69 src32[i+4] = (src32[i+4] << shift) & mask;
70 src32[i+5] = (src32[i+5] << shift) & mask;
71 src32[i+6] = (src32[i+6] << shift) & mask;
72 src32[i+7] = (src32[i+7] << shift) & mask;
73 }
74}
75
76static void ac3_rshift_int32_c(int32_t *src, unsigned int len,
77 unsigned int shift)
78{
79 do {
80 *src++ >>= shift;
81 *src++ >>= shift;
82 *src++ >>= shift;
83 *src++ >>= shift;
84 *src++ >>= shift;
85 *src++ >>= shift;
86 *src++ >>= shift;
87 *src++ >>= shift;
88 len -= 8;
89 } while (len > 0);
90}
91
Justin Ruggles0f999cf2011-03-16 02:29:0492static void float_to_fixed24_c(int32_t *dst, const float *src, unsigned int len)
93{
94 const float scale = 1 << 24;
95 do {
96 *dst++ = lrintf(*src++ * scale);
97 *dst++ = lrintf(*src++ * scale);
98 *dst++ = lrintf(*src++ * scale);
99 *dst++ = lrintf(*src++ * scale);
100 *dst++ = lrintf(*src++ * scale);
101 *dst++ = lrintf(*src++ * scale);
102 *dst++ = lrintf(*src++ * scale);
103 *dst++ = lrintf(*src++ * scale);
104 len -= 8;
105 } while (len > 0);
106}
107
Mans Rullgard6d9f52b2011-03-11 02:49:55108static void ac3_bit_alloc_calc_bap_c(int16_t *mask, int16_t *psd,
109 int start, int end,
110 int snr_offset, int floor,
111 const uint8_t *bap_tab, uint8_t *bap)
112{
Mans Rullgard034b03e2012-01-31 18:20:33113 int bin, band, band_end;
Mans Rullgard6d9f52b2011-03-11 02:49:55114
115 /* special case, if snr offset is -960, set all bap's to zero */
116 if (snr_offset == -960) {
117 memset(bap, 0, AC3_MAX_COEFS);
118 return;
119 }
120
121 bin = start;
122 band = ff_ac3_bin_to_band_tab[start];
123 do {
124 int m = (FFMAX(mask[band] - snr_offset - floor, 0) & 0x1FE0) + floor;
Mans Rullgard034b03e2012-01-31 18:20:33125 band_end = ff_ac3_band_start_tab[++band];
126 band_end = FFMIN(band_end, end);
127
Mans Rullgard6d9f52b2011-03-11 02:49:55128 for (; bin < band_end; bin++) {
Peter Meerwald9abc80f2015-02-20 00:35:35129 int address = av_clip_uintp2((psd[bin] - m) >> 5, 6);
Mans Rullgard6d9f52b2011-03-11 02:49:55130 bap[bin] = bap_tab[address];
131 }
Mans Rullgard034b03e2012-01-31 18:20:33132 } while (end > band_end);
Mans Rullgard6d9f52b2011-03-11 02:49:55133}
134
Justin Ruggles6ca23db2011-05-26 19:53:25135static void ac3_update_bap_counts_c(uint16_t mant_cnt[16], uint8_t *bap,
136 int len)
Mans Rullgard52fd16a2011-03-11 17:16:27137{
Justin Rugglesdc0ad402011-05-28 18:40:16138 while (len-- > 0)
Justin Ruggles6ca23db2011-05-26 19:53:25139 mant_cnt[bap[len]]++;
140}
Mans Rullgard52fd16a2011-03-11 17:16:27141
Justin Ruggles6ca23db2011-05-26 19:53:25142DECLARE_ALIGNED(16, const uint16_t, ff_ac3_bap_bits)[16] = {
143 0, 0, 0, 3, 0, 4, 5, 6, 7, 8, 9, 10, 11, 12, 14, 16
144};
145
146static int ac3_compute_mantissa_size_c(uint16_t mant_cnt[6][16])
147{
148 int blk, bap;
149 int bits = 0;
150
151 for (blk = 0; blk < AC3_MAX_BLOCKS; blk++) {
152 // bap=1 : 3 mantissas in 5 bits
153 bits += (mant_cnt[blk][1] / 3) * 5;
154 // bap=2 : 3 mantissas in 7 bits
155 // bap=4 : 2 mantissas in 7 bits
156 bits += ((mant_cnt[blk][2] / 3) + (mant_cnt[blk][4] >> 1)) * 7;
157 // bap=3 : 1 mantissa in 3 bits
158 bits += mant_cnt[blk][3] * 3;
159 // bap=5 to 15 : get bits per mantissa from table
160 for (bap = 5; bap < 16; bap++)
161 bits += mant_cnt[blk][bap] * ff_ac3_bap_bits[bap];
Mans Rullgard52fd16a2011-03-11 17:16:27162 }
163 return bits;
164}
165
Mans Rullgard2310ee42011-03-12 22:16:49166static void ac3_extract_exponents_c(uint8_t *exp, int32_t *coef, int nb_coefs)
167{
168 int i;
169
170 for (i = 0; i < nb_coefs; i++) {
Mans Rullgard2310ee42011-03-12 22:16:49171 int v = abs(coef[i]);
Justin Ruggles8b7b2d62011-06-16 20:55:33172 exp[i] = v ? 23 - av_log2(v) : 24;
Mans Rullgard2310ee42011-03-12 22:16:49173 }
174}
175
Mans Rullgardf507a9f2011-04-03 18:38:41176static void ac3_sum_square_butterfly_int32_c(int64_t sum[4],
177 const int32_t *coef0,
178 const int32_t *coef1,
179 int len)
180{
181 int i;
182
183 sum[0] = sum[1] = sum[2] = sum[3] = 0;
184
185 for (i = 0; i < len; i++) {
186 int lt = coef0[i];
187 int rt = coef1[i];
188 int md = lt + rt;
189 int sd = lt - rt;
190 MAC64(sum[0], lt, lt);
191 MAC64(sum[1], rt, rt);
192 MAC64(sum[2], md, md);
193 MAC64(sum[3], sd, sd);
194 }
195}
196
197static void ac3_sum_square_butterfly_float_c(float sum[4],
198 const float *coef0,
199 const float *coef1,
200 int len)
201{
202 int i;
203
204 sum[0] = sum[1] = sum[2] = sum[3] = 0;
205
206 for (i = 0; i < len; i++) {
207 float lt = coef0[i];
208 float rt = coef1[i];
209 float md = lt + rt;
210 float sd = lt - rt;
211 sum[0] += lt * lt;
212 sum[1] += rt * rt;
213 sum[2] += md * md;
214 sum[3] += sd * sd;
215 }
216}
217
Justin Rugglesb57e38f2015-10-28 14:38:22218static void ac3_downmix_5_to_2_symmetric_c(float **samples, float **matrix,
219 int len)
220{
221 int i;
222 float v0, v1;
223 float front_mix = matrix[0][0];
224 float center_mix = matrix[0][1];
225 float surround_mix = matrix[0][3];
226
227 for (i = 0; i < len; i++) {
228 v0 = samples[0][i] * front_mix +
229 samples[1][i] * center_mix +
230 samples[3][i] * surround_mix;
231
232 v1 = samples[1][i] * center_mix +
233 samples[2][i] * front_mix +
234 samples[4][i] * surround_mix;
235
236 samples[0][i] = v0;
237 samples[1][i] = v1;
238 }
239}
240
241static void ac3_downmix_5_to_1_symmetric_c(float **samples, float **matrix,
242 int len)
243{
244 int i;
245 float front_mix = matrix[0][0];
246 float center_mix = matrix[0][1];
247 float surround_mix = matrix[0][3];
248
249 for (i = 0; i < len; i++) {
250 samples[0][i] = samples[0][i] * front_mix +
251 samples[1][i] * center_mix +
252 samples[2][i] * front_mix +
253 samples[3][i] * surround_mix +
254 samples[4][i] * surround_mix;
255 }
256}
257
Justin Ruggles43717462015-10-28 14:38:20258static void ac3_downmix_c(float **samples, float **matrix,
Mans Rullgard97cb9232012-09-11 16:55:11259 int out_ch, int in_ch, int len)
260{
261 int i, j;
262 float v0, v1;
Justin Rugglesa9ba5952015-10-28 14:38:21263
Justin Rugglesb57e38f2015-10-28 14:38:22264 if (out_ch == 2) {
Mans Rullgard97cb9232012-09-11 16:55:11265 for (i = 0; i < len; i++) {
266 v0 = v1 = 0.0f;
267 for (j = 0; j < in_ch; j++) {
Justin Ruggles43717462015-10-28 14:38:20268 v0 += samples[j][i] * matrix[0][j];
269 v1 += samples[j][i] * matrix[1][j];
Mans Rullgard97cb9232012-09-11 16:55:11270 }
271 samples[0][i] = v0;
272 samples[1][i] = v1;
273 }
274 } else if (out_ch == 1) {
275 for (i = 0; i < len; i++) {
276 v0 = 0.0f;
277 for (j = 0; j < in_ch; j++)
Justin Ruggles43717462015-10-28 14:38:20278 v0 += samples[j][i] * matrix[0][j];
Mans Rullgard97cb9232012-09-11 16:55:11279 samples[0][i] = v0;
280 }
281 }
282}
283
James Almer91ccd382017-03-22 15:28:58284static void ac3_downmix_5_to_2_symmetric_c_fixed(int32_t **samples, int16_t **matrix,
285 int len)
286{
287 int i;
288 int64_t v0, v1;
289 int16_t front_mix = matrix[0][0];
290 int16_t center_mix = matrix[0][1];
291 int16_t surround_mix = matrix[0][3];
292
293 for (i = 0; i < len; i++) {
294 v0 = (int64_t)samples[0][i] * front_mix +
295 (int64_t)samples[1][i] * center_mix +
296 (int64_t)samples[3][i] * surround_mix;
297
298 v1 = (int64_t)samples[1][i] * center_mix +
299 (int64_t)samples[2][i] * front_mix +
300 (int64_t)samples[4][i] * surround_mix;
301
302 samples[0][i] = (v0+2048)>>12;
303 samples[1][i] = (v1+2048)>>12;
304 }
305}
306
307static void ac3_downmix_5_to_1_symmetric_c_fixed(int32_t **samples, int16_t **matrix,
308 int len)
309{
310 int i;
311 int64_t v0;
312 int16_t front_mix = matrix[0][0];
313 int16_t center_mix = matrix[0][1];
314 int16_t surround_mix = matrix[0][3];
315
316 for (i = 0; i < len; i++) {
317 v0 = (int64_t)samples[0][i] * front_mix +
318 (int64_t)samples[1][i] * center_mix +
319 (int64_t)samples[2][i] * front_mix +
320 (int64_t)samples[3][i] * surround_mix +
321 (int64_t)samples[4][i] * surround_mix;
322
323 samples[0][i] = (v0+2048)>>12;
324 }
325}
326
Clément Bœsche39d4ff2017-03-22 10:11:28327static void ac3_downmix_c_fixed(int32_t **samples, int16_t **matrix,
Nedeljko Babic696e34a2014-04-01 14:31:08328 int out_ch, int in_ch, int len)
329{
330 int i, j;
331 int64_t v0, v1;
332 if (out_ch == 2) {
333 for (i = 0; i < len; i++) {
334 v0 = v1 = 0;
335 for (j = 0; j < in_ch; j++) {
Clément Bœsche39d4ff2017-03-22 10:11:28336 v0 += (int64_t)samples[j][i] * matrix[0][j];
337 v1 += (int64_t)samples[j][i] * matrix[1][j];
Nedeljko Babic696e34a2014-04-01 14:31:08338 }
339 samples[0][i] = (v0+2048)>>12;
340 samples[1][i] = (v1+2048)>>12;
341 }
342 } else if (out_ch == 1) {
343 for (i = 0; i < len; i++) {
344 v0 = 0;
345 for (j = 0; j < in_ch; j++)
Clément Bœsche39d4ff2017-03-22 10:11:28346 v0 += (int64_t)samples[j][i] * matrix[0][j];
Nedeljko Babic696e34a2014-04-01 14:31:08347 samples[0][i] = (v0+2048)>>12;
348 }
349 }
350}
351
Clément Bœschc66bd8f2017-03-22 11:44:49352void ff_ac3dsp_downmix_fixed(AC3DSPContext *c, int32_t **samples, int16_t **matrix,
353 int out_ch, int in_ch, int len)
354{
James Almer91ccd382017-03-22 15:28:58355 if (c->in_channels != in_ch || c->out_channels != out_ch) {
356 c->in_channels = in_ch;
357 c->out_channels = out_ch;
358 c->downmix_fixed = NULL;
359
360 if (in_ch == 5 && out_ch == 2 &&
361 !(matrix[1][0] | matrix[0][2] |
362 matrix[1][3] | matrix[0][4] |
363 (matrix[0][1] ^ matrix[1][1]) |
364 (matrix[0][0] ^ matrix[1][2]))) {
365 c->downmix_fixed = ac3_downmix_5_to_2_symmetric_c_fixed;
366 } else if (in_ch == 5 && out_ch == 1 &&
367 matrix[0][0] == matrix[0][2] &&
368 matrix[0][3] == matrix[0][4]) {
369 c->downmix_fixed = ac3_downmix_5_to_1_symmetric_c_fixed;
370 }
371 }
372
Clément Bœschc66bd8f2017-03-22 11:44:49373 if (c->downmix_fixed)
374 c->downmix_fixed(samples, matrix, len);
375 else
376 ac3_downmix_c_fixed(samples, matrix, out_ch, in_ch, len);
377}
378
Diego Biurrun4958f352013-12-06 12:22:40379static void apply_window_int16_c(int16_t *output, const int16_t *input,
380 const int16_t *window, unsigned int len)
381{
382 int i;
383 int len2 = len >> 1;
384
385 for (i = 0; i < len2; i++) {
386 int16_t w = window[i];
387 output[i] = (MUL16(input[i], w) + (1 << 14)) >> 15;
388 output[len-i-1] = (MUL16(input[len-i-1], w) + (1 << 14)) >> 15;
389 }
390}
391
Justin Rugglesb57e38f2015-10-28 14:38:22392void ff_ac3dsp_downmix(AC3DSPContext *c, float **samples, float **matrix,
393 int out_ch, int in_ch, int len)
394{
395 if (c->in_channels != in_ch || c->out_channels != out_ch) {
396 int **matrix_cmp = (int **)matrix;
397
398 c->in_channels = in_ch;
399 c->out_channels = out_ch;
400 c->downmix = NULL;
401
402 if (in_ch == 5 && out_ch == 2 &&
403 !(matrix_cmp[1][0] | matrix_cmp[0][2] |
404 matrix_cmp[1][3] | matrix_cmp[0][4] |
405 (matrix_cmp[0][1] ^ matrix_cmp[1][1]) |
406 (matrix_cmp[0][0] ^ matrix_cmp[1][2]))) {
407 c->downmix = ac3_downmix_5_to_2_symmetric_c;
408 } else if (in_ch == 5 && out_ch == 1 &&
409 matrix_cmp[0][0] == matrix_cmp[0][2] &&
410 matrix_cmp[0][3] == matrix_cmp[0][4]) {
411 c->downmix = ac3_downmix_5_to_1_symmetric_c;
412 }
413
414 if (ARCH_X86)
415 ff_ac3dsp_set_downmix_x86(c);
416 }
417
418 if (c->downmix)
419 c->downmix(samples, matrix, len);
420 else
421 ac3_downmix_c(samples, matrix, out_ch, in_ch, len);
422}
423
Justin Ruggles0f999cf2011-03-16 02:29:04424av_cold void ff_ac3dsp_init(AC3DSPContext *c, int bit_exact)
Justin Rugglesdda3f0e2011-02-10 17:20:36425{
426 c->ac3_exponent_min = ac3_exponent_min_c;
Justin Rugglesfbb6b492011-02-13 19:49:50427 c->ac3_max_msb_abs_int16 = ac3_max_msb_abs_int16_c;
Justin Rugglesf1efbca2011-03-11 21:45:01428 c->ac3_lshift_int16 = ac3_lshift_int16_c;
429 c->ac3_rshift_int32 = ac3_rshift_int32_c;
Justin Ruggles0f999cf2011-03-16 02:29:04430 c->float_to_fixed24 = float_to_fixed24_c;
Mans Rullgard6d9f52b2011-03-11 02:49:55431 c->bit_alloc_calc_bap = ac3_bit_alloc_calc_bap_c;
Justin Ruggles6ca23db2011-05-26 19:53:25432 c->update_bap_counts = ac3_update_bap_counts_c;
Mans Rullgard52fd16a2011-03-11 17:16:27433 c->compute_mantissa_size = ac3_compute_mantissa_size_c;
Mans Rullgard2310ee42011-03-12 22:16:49434 c->extract_exponents = ac3_extract_exponents_c;
Mans Rullgardf507a9f2011-04-03 18:38:41435 c->sum_square_butterfly_int32 = ac3_sum_square_butterfly_int32_c;
436 c->sum_square_butterfly_float = ac3_sum_square_butterfly_float_c;
Justin Rugglesb57e38f2015-10-28 14:38:22437 c->in_channels = 0;
438 c->out_channels = 0;
439 c->downmix = NULL;
Clément Bœschc66bd8f2017-03-22 11:44:49440 c->downmix_fixed = NULL;
Diego Biurrun4958f352013-12-06 12:22:40441 c->apply_window_int16 = apply_window_int16_c;
Justin Rugglesdda3f0e2011-02-10 17:20:36442
Mans Rullgardf4855a92011-03-09 19:51:50443 if (ARCH_ARM)
444 ff_ac3dsp_init_arm(c, bit_exact);
Janne Grunauf101eab2012-10-05 17:54:10445 if (ARCH_X86)
Justin Ruggles0f999cf2011-03-16 02:29:04446 ff_ac3dsp_init_x86(c, bit_exact);
Bojan Zivkovica74ae462012-11-06 13:06:21447 if (ARCH_MIPS)
448 ff_ac3dsp_init_mips(c, bit_exact);
Justin Rugglesdda3f0e2011-02-10 17:20:36449}