Coverage Report

Created: 2026-09-03 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libxaac/encoder/ixheaace_bits_count.c
Line
Count
Source
1
/******************************************************************************
2
 *                                                                            *
3
 * Copyright (C) 2023 The Android Open Source Project
4
 *
5
 * Licensed under the Apache License, Version 2.0 (the "License");
6
 * you may not use this file except in compliance with the License.
7
 * You may obtain a copy of the License at:
8
 *
9
 * http://www.apache.org/licenses/LICENSE-2.0
10
 *
11
 * Unless required by applicable law or agreed to in writing, software
12
 * distributed under the License is distributed on an "AS IS" BASIS,
13
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14
 * See the License for the specific language governing permissions and
15
 * limitations under the License.
16
 *
17
 *****************************************************************************
18
 * Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore
19
 */
20
#include <limits.h>
21
#include <stdlib.h>
22
#include "ixheaac_type_def.h"
23
#include "ixheaac_constants.h"
24
#include "impd_drc_common_enc.h"
25
#include "impd_drc_uni_drc.h"
26
#include "impd_drc_tables.h"
27
#include "impd_drc_api.h"
28
#include "ixheaace_api.h"
29
#include "ixheaace_aac_constants.h"
30
31
#include "ixheaac_basic_ops32.h"
32
#include "ixheaac_basic_ops16.h"
33
#include "ixheaac_basic_ops40.h"
34
#include "ixheaac_basic_ops.h"
35
36
#include "ixheaace_bitbuffer.h"
37
#include "ixheaace_psy_const.h"
38
#include "ixheaace_tns.h"
39
#include "ixheaace_tns_params.h"
40
#include "ixheaace_rom.h"
41
#include "ixheaace_bits_count.h"
42
43
#include "ixheaace_common_rom.h"
44
#include "ixheaace_common_utils.h"
45
46
VOID ia_enhaacplus_enc_count1_2_3_4_5_6_7_8_9_10_11(const WORD16 *values, const WORD32 width,
47
                                                    WORD32 *bitcnt,
48
                                                    ixheaace_huffman_tables *pstr_huffman_tbl,
49
8.72M
                                                    WORD32 invalid_bitcnt) {
50
8.72M
  WORD32 i;
51
8.72M
  WORD32 bits1_2, bits3_4, bits5_6, bits7_8, bits9_10, bit11, sc;
52
8.72M
  WORD32 temp_0, temp_1, temp_2, temp_3;
53
8.72M
  (VOID) invalid_bitcnt;
54
8.72M
  bits1_2 = 0;
55
8.72M
  bits3_4 = 0;
56
8.72M
  bits5_6 = 0;
57
8.72M
  bits7_8 = 0;
58
8.72M
  bits9_10 = 0;
59
8.72M
  bit11 = 0;
60
8.72M
  sc = 0;
61
62
41.0M
  for (i = 0; i < width; i += 4) {
63
32.2M
    temp_0 = values[i + 0];
64
32.2M
    temp_1 = values[i + 1];
65
32.2M
    temp_2 = values[i + 2];
66
32.2M
    temp_3 = values[i + 3];
67
68
32.2M
    bits1_2 +=
69
32.2M
        EXPAND(pstr_huffman_tbl->huff_ltab1_2[temp_0 + 1][temp_1 + 1][temp_2 + 1][temp_3 + 1]);
70
71
32.2M
    bits5_6 += EXPAND(pstr_huffman_tbl->huff_ltab5_6[temp_0 + 4][temp_1 + 4]);
72
73
32.2M
    bits5_6 += EXPAND(pstr_huffman_tbl->huff_ltab5_6[temp_2 + 4][temp_3 + 4]);
74
75
32.2M
    sc += (temp_0 != 0) + (temp_1 != 0) + (temp_2 != 0) + (temp_3 != 0);
76
77
32.2M
    temp_0 = abs32(temp_0);
78
32.2M
    temp_1 = abs32(temp_1);
79
32.2M
    temp_2 = abs32(temp_2);
80
32.2M
    temp_3 = abs32(temp_3);
81
82
32.2M
    bits3_4 += EXPAND(pstr_huffman_tbl->huff_ltab3_4[temp_0][temp_1][temp_2][temp_3]);
83
84
32.2M
    bits7_8 += EXPAND(pstr_huffman_tbl->huff_ltab7_8[temp_0][temp_1]);
85
86
32.2M
    bits7_8 += EXPAND(pstr_huffman_tbl->huff_ltab7_8[temp_2][temp_3]);
87
88
32.2M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
89
90
32.2M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_2][temp_3]);
91
92
32.2M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_0][temp_1]);
93
94
32.2M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_2][temp_3]);
95
32.2M
  }
96
97
8.72M
  bitcnt[1] = HI_EXPLTAB(bits1_2);
98
99
8.72M
  bitcnt[2] = LO_EXPLTAB(bits1_2);
100
101
8.72M
  bitcnt[3] = HI_EXPLTAB(bits3_4) + sc;
102
103
8.72M
  bitcnt[4] = LO_EXPLTAB(bits3_4) + sc;
104
105
8.72M
  bitcnt[5] = HI_EXPLTAB(bits5_6);
106
107
8.72M
  bitcnt[6] = LO_EXPLTAB(bits5_6);
108
109
8.72M
  bitcnt[7] = HI_EXPLTAB(bits7_8) + sc;
110
111
8.72M
  bitcnt[8] = LO_EXPLTAB(bits7_8) + sc;
112
113
8.72M
  bitcnt[9] = HI_EXPLTAB(bits9_10) + sc;
114
115
8.72M
  bitcnt[10] = LO_EXPLTAB(bits9_10) + sc;
116
117
8.72M
  bitcnt[11] = bit11 + sc;
118
8.72M
}
119
120
static VOID ia_enhaacplus_enc_count3_4_5_6_7_8_9_10_11(const WORD16 *values, const WORD32 width,
121
                                                       WORD32 *bitcnt,
122
                                                       ixheaace_huffman_tables *pstr_huffman_tbl,
123
668k
                                                       WORD32 invalid_bitcnt) {
124
668k
  WORD32 i;
125
668k
  WORD32 bits3_4, bits5_6, bits7_8, bits9_10, bit11, sc;
126
668k
  WORD32 temp_0, temp_1, temp_2, temp_3;
127
128
668k
  bits3_4 = 0;
129
668k
  bits5_6 = 0;
130
668k
  bits7_8 = 0;
131
668k
  bits9_10 = 0;
132
668k
  bit11 = 0;
133
668k
  sc = 0;
134
135
2.73M
  for (i = 0; i < width; i += 4) {
136
2.07M
    temp_0 = values[i + 0];
137
2.07M
    temp_1 = values[i + 1];
138
2.07M
    temp_2 = values[i + 2];
139
2.07M
    temp_3 = values[i + 3];
140
141
2.07M
    bits5_6 += EXPAND(pstr_huffman_tbl->huff_ltab5_6[temp_0 + 4][temp_1 + 4]);
142
143
2.07M
    bits5_6 += EXPAND(pstr_huffman_tbl->huff_ltab5_6[temp_2 + 4][temp_3 + 4]);
144
145
2.07M
    temp_0 = abs32(temp_0);
146
2.07M
    temp_1 = abs32(temp_1);
147
2.07M
    temp_2 = abs32(temp_2);
148
2.07M
    temp_3 = abs32(temp_3);
149
150
2.07M
    bits3_4 += EXPAND(pstr_huffman_tbl->huff_ltab3_4[temp_0][temp_1][temp_2][temp_3]);
151
152
2.07M
    bits7_8 += EXPAND(pstr_huffman_tbl->huff_ltab7_8[temp_0][temp_1]);
153
154
2.07M
    bits7_8 += EXPAND(pstr_huffman_tbl->huff_ltab7_8[temp_2][temp_3]);
155
156
2.07M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
157
158
2.07M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_2][temp_3]);
159
160
2.07M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_0][temp_1]);
161
162
2.07M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_2][temp_3]);
163
164
2.07M
    sc += (temp_0 > 0) + (temp_1 > 0) + (temp_2 > 0) + (temp_3 > 0);
165
2.07M
  }
166
167
668k
  bitcnt[1] = invalid_bitcnt;
168
668k
  bitcnt[2] = invalid_bitcnt;
169
170
668k
  bitcnt[3] = HI_EXPLTAB(bits3_4) + sc;
171
172
668k
  bitcnt[4] = LO_EXPLTAB(bits3_4) + sc;
173
174
668k
  bitcnt[5] = HI_EXPLTAB(bits5_6);
175
176
668k
  bitcnt[6] = LO_EXPLTAB(bits5_6);
177
178
668k
  bitcnt[7] = HI_EXPLTAB(bits7_8) + sc;
179
180
668k
  bitcnt[8] = LO_EXPLTAB(bits7_8) + sc;
181
182
668k
  bitcnt[9] = HI_EXPLTAB(bits9_10) + sc;
183
184
668k
  bitcnt[10] = LO_EXPLTAB(bits9_10) + sc;
185
186
668k
  bitcnt[11] = bit11 + sc;
187
668k
}
188
189
static VOID ia_enhaacplus_enc_count5_6_7_8_9_10_11(const WORD16 *values, const WORD32 width,
190
                                                   WORD32 *bitcnt,
191
                                                   ixheaace_huffman_tables *pstr_huffman_tbl,
192
587k
                                                   WORD32 invalid_bitcnt) {
193
587k
  WORD32 i;
194
587k
  WORD32 bits5_6, bits7_8, bits9_10, bit11, sc;
195
587k
  WORD32 temp_0, temp_1;
196
197
587k
  bits5_6 = 0;
198
587k
  bits7_8 = 0;
199
587k
  bits9_10 = 0;
200
587k
  bit11 = 0;
201
587k
  sc = 0;
202
203
4.38M
  for (i = 0; i < width; i += 2) {
204
3.79M
    temp_0 = values[i + 0];
205
3.79M
    temp_1 = values[i + 1];
206
207
3.79M
    bits5_6 += EXPAND(pstr_huffman_tbl->huff_ltab5_6[temp_0 + 4][temp_1 + 4]);
208
209
3.79M
    temp_0 = abs32(temp_0);
210
3.79M
    temp_1 = abs32(temp_1);
211
212
3.79M
    bits7_8 += EXPAND(pstr_huffman_tbl->huff_ltab7_8[temp_0][temp_1]);
213
214
3.79M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
215
216
3.79M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_0][temp_1]);
217
218
3.79M
    sc += (temp_0 > 0) + (temp_1 > 0);
219
3.79M
  }
220
221
587k
  bitcnt[1] = invalid_bitcnt;
222
587k
  bitcnt[2] = invalid_bitcnt;
223
587k
  bitcnt[3] = invalid_bitcnt;
224
587k
  bitcnt[4] = invalid_bitcnt;
225
226
587k
  bitcnt[5] = HI_EXPLTAB(bits5_6);
227
228
587k
  bitcnt[6] = LO_EXPLTAB(bits5_6);
229
230
587k
  bitcnt[7] = HI_EXPLTAB(bits7_8) + sc;
231
232
587k
  bitcnt[8] = LO_EXPLTAB(bits7_8) + sc;
233
234
587k
  bitcnt[9] = HI_EXPLTAB(bits9_10) + sc;
235
236
587k
  bitcnt[10] = LO_EXPLTAB(bits9_10) + sc;
237
238
587k
  bitcnt[11] = bit11 + sc;
239
587k
}
240
241
static VOID ia_enhaacplus_enc_count7_8_9_10_11(const WORD16 *values, const WORD32 width,
242
                                               WORD32 *bitcnt,
243
                                               ixheaace_huffman_tables *pstr_huffman_tbl,
244
594k
                                               WORD32 invalid_bitcnt) {
245
594k
  WORD32 i;
246
594k
  WORD32 bits7_8, bits9_10, bit11, sc;
247
594k
  WORD32 temp_0, temp_1;
248
249
594k
  bits7_8 = 0;
250
594k
  bits9_10 = 0;
251
594k
  bit11 = 0;
252
594k
  sc = 0;
253
254
4.78M
  for (i = 0; i < width; i += 2) {
255
4.19M
    temp_0 = abs32(values[i + 0]);
256
4.19M
    temp_1 = abs32(values[i + 1]);
257
258
4.19M
    bits7_8 += EXPAND(pstr_huffman_tbl->huff_ltab7_8[temp_0][temp_1]);
259
260
4.19M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
261
262
4.19M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_0][temp_1]);
263
264
4.19M
    sc += (temp_0 > 0) + (temp_1 > 0);
265
4.19M
  }
266
267
594k
  bitcnt[1] = invalid_bitcnt;
268
594k
  bitcnt[2] = invalid_bitcnt;
269
594k
  bitcnt[3] = invalid_bitcnt;
270
594k
  bitcnt[4] = invalid_bitcnt;
271
594k
  bitcnt[5] = invalid_bitcnt;
272
594k
  bitcnt[6] = invalid_bitcnt;
273
274
594k
  bitcnt[7] = HI_EXPLTAB(bits7_8) + sc;
275
276
594k
  bitcnt[8] = LO_EXPLTAB(bits7_8) + sc;
277
278
594k
  bitcnt[9] = HI_EXPLTAB(bits9_10) + sc;
279
280
594k
  bitcnt[10] = LO_EXPLTAB(bits9_10) + sc;
281
282
594k
  bitcnt[11] = bit11 + sc;
283
594k
}
284
285
static VOID ia_enhaacplus_enc_count9_10_11(const WORD16 *values, const WORD32 width,
286
                                           WORD32 *bitcnt,
287
                                           ixheaace_huffman_tables *pstr_huffman_tbl,
288
559k
                                           WORD32 invalid_bitcnt) {
289
559k
  WORD32 i;
290
559k
  WORD32 bits9_10, bit11, sc;
291
559k
  WORD32 temp_0, temp_1;
292
293
559k
  bits9_10 = 0;
294
559k
  bit11 = 0;
295
559k
  sc = 0;
296
297
5.02M
  for (i = 0; i < width; i += 2) {
298
4.46M
    temp_0 = abs32(values[i + 0]);
299
4.46M
    temp_1 = abs32(values[i + 1]);
300
301
4.46M
    bits9_10 += EXPAND(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
302
303
4.46M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_0][temp_1]);
304
305
4.46M
    sc += (temp_0 > 0) + (temp_1 > 0);
306
4.46M
  }
307
308
559k
  bitcnt[1] = invalid_bitcnt;
309
559k
  bitcnt[2] = invalid_bitcnt;
310
559k
  bitcnt[3] = invalid_bitcnt;
311
559k
  bitcnt[4] = invalid_bitcnt;
312
559k
  bitcnt[5] = invalid_bitcnt;
313
559k
  bitcnt[6] = invalid_bitcnt;
314
559k
  bitcnt[7] = invalid_bitcnt;
315
559k
  bitcnt[8] = invalid_bitcnt;
316
317
559k
  bitcnt[9] = HI_EXPLTAB(bits9_10) + sc;
318
319
559k
  bitcnt[10] = LO_EXPLTAB(bits9_10) + sc;
320
321
559k
  bitcnt[11] = bit11 + sc;
322
559k
}
323
324
static VOID ia_enhaacplus_enc_count11(const WORD16 *values, const WORD32 width, WORD32 *bitcnt,
325
                                      ixheaace_huffman_tables *pstr_huffman_tbl,
326
199k
                                      WORD32 invalid_bitcnt) {
327
199k
  WORD32 i;
328
199k
  WORD32 bit11, sc;
329
199k
  WORD32 temp_0, temp_1;
330
331
199k
  bit11 = 0;
332
199k
  sc = 0;
333
334
1.55M
  for (i = 0; i < width; i += 2) {
335
1.35M
    temp_0 = abs32(values[i + 0]);
336
1.35M
    temp_1 = abs32(values[i + 1]);
337
338
1.35M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[temp_0][temp_1]);
339
340
1.35M
    sc += (temp_0 > 0) + (temp_1 > 0);
341
1.35M
  }
342
343
199k
  bitcnt[1] = invalid_bitcnt;
344
199k
  bitcnt[2] = invalid_bitcnt;
345
199k
  bitcnt[3] = invalid_bitcnt;
346
199k
  bitcnt[4] = invalid_bitcnt;
347
199k
  bitcnt[5] = invalid_bitcnt;
348
199k
  bitcnt[6] = invalid_bitcnt;
349
199k
  bitcnt[7] = invalid_bitcnt;
350
199k
  bitcnt[8] = invalid_bitcnt;
351
199k
  bitcnt[9] = invalid_bitcnt;
352
199k
  bitcnt[10] = invalid_bitcnt;
353
354
199k
  bitcnt[11] = bit11 + sc;
355
199k
}
356
357
static VOID ia_enhaacplus_enc_count_esc(const WORD16 *values, const WORD32 width, WORD32 *bitcnt,
358
                                        ixheaace_huffman_tables *pstr_huffman_tbl,
359
1.46M
                                        WORD32 invalid_bitcnt) {
360
1.46M
  WORD32 i;
361
1.46M
  WORD32 bit11, ec, sc;
362
1.46M
  WORD32 temp_0, temp_1, t00, t01;
363
364
1.46M
  bit11 = 0;
365
1.46M
  sc = 0;
366
1.46M
  ec = 0;
367
368
8.82M
  for (i = 0; i < width; i += 2) {
369
7.35M
    temp_0 = abs32(values[i + 0]);
370
7.35M
    temp_1 = abs32(values[i + 1]);
371
372
7.35M
    sc += (temp_0 > 0) + (temp_1 > 0);
373
7.35M
    t00 = MIN(temp_0, 16);
374
7.35M
    t01 = MIN(temp_1, 16);
375
376
7.35M
    bit11 += EXPAND(pstr_huffman_tbl->huff_ltab11[t00][t01]);
377
378
7.35M
    if (temp_0 >= 16) {
379
3.54M
      ec += 5;
380
381
7.81M
      while ((temp_0 >>= 1) >= 16) {
382
4.27M
        ec += 2;
383
4.27M
      }
384
3.54M
    }
385
386
7.35M
    if (temp_1 >= 16) {
387
3.10M
      ec += 5;
388
389
5.89M
      while ((temp_1 >>= 1) >= 16) {
390
2.79M
        ec += 2;
391
2.79M
      }
392
3.10M
    }
393
7.35M
  }
394
395
1.46M
  bitcnt[1] = invalid_bitcnt;
396
1.46M
  bitcnt[2] = invalid_bitcnt;
397
1.46M
  bitcnt[3] = invalid_bitcnt;
398
1.46M
  bitcnt[4] = invalid_bitcnt;
399
1.46M
  bitcnt[5] = invalid_bitcnt;
400
1.46M
  bitcnt[6] = invalid_bitcnt;
401
1.46M
  bitcnt[7] = invalid_bitcnt;
402
1.46M
  bitcnt[8] = invalid_bitcnt;
403
1.46M
  bitcnt[9] = invalid_bitcnt;
404
1.46M
  bitcnt[10] = invalid_bitcnt;
405
406
1.46M
  bitcnt[11] = bit11 + sc + ec;
407
1.46M
}
408
409
typedef VOID (*COUNT_FUNCTION)(const WORD16 *values, const WORD32 width, WORD32 *bitcnt,
410
                               ixheaace_huffman_tables *pstr_huffman_tbl, WORD32 invalid_bitcnt);
411
412
static COUNT_FUNCTION ia_enhaacplus_enc_count_func_tab[CODE_BCK_ESC_LAV + 1] = {
413
414
    ia_enhaacplus_enc_count1_2_3_4_5_6_7_8_9_10_11, /* 0  */
415
    ia_enhaacplus_enc_count1_2_3_4_5_6_7_8_9_10_11, /* 1  */
416
    ia_enhaacplus_enc_count3_4_5_6_7_8_9_10_11,     /* 2  */
417
    ia_enhaacplus_enc_count5_6_7_8_9_10_11,         /* 3  */
418
    ia_enhaacplus_enc_count5_6_7_8_9_10_11,         /* 4  */
419
    ia_enhaacplus_enc_count7_8_9_10_11,             /* 5  */
420
    ia_enhaacplus_enc_count7_8_9_10_11,             /* 6  */
421
    ia_enhaacplus_enc_count7_8_9_10_11,             /* 7  */
422
    ia_enhaacplus_enc_count9_10_11,                 /* 8  */
423
    ia_enhaacplus_enc_count9_10_11,                 /* 9  */
424
    ia_enhaacplus_enc_count9_10_11,                 /* 10 */
425
    ia_enhaacplus_enc_count9_10_11,                 /* 11 */
426
    ia_enhaacplus_enc_count9_10_11,                 /* 12 */
427
    ia_enhaacplus_enc_count11,                      /* 13 */
428
    ia_enhaacplus_enc_count11,                      /* 14 */
429
    ia_enhaacplus_enc_count11,                      /* 15 */
430
    ia_enhaacplus_enc_count_esc                     /* 16 */
431
};
432
433
VOID ia_enhaacplus_enc_bitcount(const WORD16 *ptr_values, const WORD32 width, WORD32 max_val,
434
                                WORD32 *bit_cnt, ixheaace_huffman_tables *pstr_huffman_tbl,
435
12.7M
                                WORD32 aot) {
436
12.7M
  WORD32 invalid_bitcnt;
437
438
12.7M
  if (max_val == 0) {
439
6.22M
    *bit_cnt = 0;
440
6.56M
  } else {
441
6.56M
    switch (aot) {
442
998k
      case AOT_AAC_LC:
443
4.18M
      case AOT_SBR:
444
4.84M
      case AOT_PS:
445
4.84M
        *bit_cnt = INVALID_BITCOUNT_LC;
446
4.84M
        break;
447
448
366k
      case AOT_AAC_LD:
449
1.72M
      case AOT_AAC_ELD:
450
1.72M
        *bit_cnt = INVALID_BITCOUNT_LD;
451
1.72M
        break;
452
6.56M
    }
453
6.56M
  }
454
12.7M
  invalid_bitcnt = *bit_cnt;
455
12.7M
  max_val = MIN(max_val, CODE_BCK_ESC_LAV);
456
457
12.7M
  ia_enhaacplus_enc_count_func_tab[max_val](ptr_values, width, bit_cnt, pstr_huffman_tbl,
458
12.7M
                                            invalid_bitcnt);
459
12.7M
}
460
461
VOID ia_enhaacplus_enc_code_values(WORD16 *ptr_values, WORD32 width, WORD32 code_book,
462
                                   ixheaace_bit_buf_handle pstr_bitstream,
463
11.9M
                                   ixheaace_huffman_tables *pstr_huffman_tbl) {
464
11.9M
  WORD32 i, temp_0, temp_1, temp_2, temp_3, t00, t01;
465
11.9M
  WORD32 code_word, code_length;
466
11.9M
  WORD32 sign, sign_length;
467
11.9M
  WORD16 *ptr_temp_values = ptr_values;
468
469
11.9M
  switch (code_book) {
470
5.39M
    case CODE_BCK_ZERO_NO:
471
5.39M
      break;
472
473
1.09M
    case CODE_BCK_1_NO:
474
1.09M
      width = width >> 2;
475
476
5.54M
      for (i = width - 1; i >= 0; i--) {
477
4.44M
        temp_0 = *ptr_temp_values++;
478
4.44M
        temp_1 = *ptr_temp_values++;
479
4.44M
        temp_2 = *ptr_temp_values++;
480
4.44M
        temp_3 = *ptr_temp_values++;
481
482
4.44M
        code_word = pstr_huffman_tbl->huff_ctab1[temp_0 + 1][temp_1 + 1][temp_2 + 1][temp_3 + 1];
483
484
4.44M
        code_length = HI_LTAB(
485
4.44M
            pstr_huffman_tbl->huff_ltab1_2[temp_0 + 1][temp_1 + 1][temp_2 + 1][temp_3 + 1]);
486
487
4.44M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
488
4.44M
      }
489
1.09M
      break;
490
491
544k
    case CODE_BCK_2_NO:
492
493
544k
      width = width >> 2;
494
495
2.30M
      for (i = width - 1; i >= 0; i--) {
496
1.75M
        temp_0 = *ptr_temp_values++;
497
1.75M
        temp_1 = *ptr_temp_values++;
498
1.75M
        temp_2 = *ptr_temp_values++;
499
1.75M
        temp_3 = *ptr_temp_values++;
500
501
1.75M
        code_word = pstr_huffman_tbl->huff_ctab2[temp_0 + 1][temp_1 + 1][temp_2 + 1][temp_3 + 1];
502
503
1.75M
        code_length = LO_LTAB(
504
1.75M
            pstr_huffman_tbl->huff_ltab1_2[temp_0 + 1][temp_1 + 1][temp_2 + 1][temp_3 + 1]);
505
506
1.75M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
507
1.75M
      }
508
544k
      break;
509
510
241k
    case CODE_BCK_3_NO:
511
512
1.10M
      for (i = 0; i < width; i += 4) {
513
867k
        sign = 0;
514
867k
        sign_length = 0;
515
867k
        temp_0 = ptr_values[i + 0];
516
517
867k
        if (temp_0 != 0) {
518
182k
          sign_length++;
519
520
182k
          sign <<= 1;
521
522
182k
          if (temp_0 < 0) {
523
91.0k
            sign |= 1;
524
525
91.0k
            temp_0 = abs32(temp_0);
526
91.0k
          }
527
182k
        }
528
529
867k
        temp_1 = ptr_values[i + 1];
530
531
867k
        if (temp_1 != 0) {
532
188k
          sign_length++;
533
534
188k
          sign <<= 1;
535
536
188k
          if (temp_1 < 0) {
537
88.0k
            sign |= 1;
538
539
88.0k
            temp_1 = abs32(temp_1);
540
88.0k
          }
541
188k
        }
542
543
867k
        temp_2 = ptr_values[i + 2];
544
545
867k
        if (temp_2 != 0) {
546
184k
          sign_length++;
547
548
184k
          sign <<= 1;
549
550
184k
          if (temp_2 < 0) {
551
94.4k
            sign |= 1;
552
553
94.4k
            temp_2 = abs32(temp_2);
554
94.4k
          }
555
184k
        }
556
557
867k
        temp_3 = ptr_values[i + 3];
558
559
867k
        if (temp_3 != 0) {
560
176k
          sign_length++;
561
562
176k
          sign <<= 1;
563
564
176k
          if (temp_3 < 0) {
565
95.1k
            sign |= 1;
566
567
95.1k
            temp_3 = abs32(temp_3);
568
95.1k
          }
569
176k
        }
570
571
867k
        code_word = pstr_huffman_tbl->huff_ctab3[temp_0][temp_1][temp_2][temp_3];
572
573
867k
        code_length = HI_LTAB(pstr_huffman_tbl->huff_ltab3_4[temp_0][temp_1][temp_2][temp_3]);
574
575
867k
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
576
577
867k
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
578
867k
      }
579
241k
      break;
580
581
645k
    case CODE_BCK_4_NO:
582
583
2.26M
      for (i = 0; i < width; i += 4) {
584
1.62M
        sign = 0;
585
1.62M
        sign_length = 0;
586
1.62M
        temp_0 = ptr_values[i + 0];
587
588
1.62M
        if (temp_0 != 0) {
589
1.12M
          sign_length++;
590
591
1.12M
          sign <<= 1;
592
593
1.12M
          if (temp_0 < 0) {
594
606k
            sign |= 1;
595
596
606k
            temp_0 = abs32(temp_0);
597
606k
          }
598
1.12M
        }
599
600
1.62M
        temp_1 = ptr_values[i + 1];
601
602
1.62M
        if (temp_1 != 0) {
603
1.05M
          sign_length++;
604
605
1.05M
          sign <<= 1;
606
607
1.05M
          if (temp_1 < 0) {
608
560k
            sign |= 1;
609
610
560k
            temp_1 = abs32(temp_1);
611
560k
          }
612
1.05M
        }
613
614
1.62M
        temp_2 = ptr_values[i + 2];
615
616
1.62M
        if (temp_2 != 0) {
617
1.09M
          sign_length++;
618
619
1.09M
          sign <<= 1;
620
621
1.09M
          if (temp_2 < 0) {
622
520k
            sign |= 1;
623
624
520k
            temp_2 = abs32(temp_2);
625
520k
          }
626
1.09M
        }
627
628
1.62M
        temp_3 = ptr_values[i + 3];
629
630
1.62M
        if (temp_3 != 0) {
631
1.07M
          sign_length++;
632
633
1.07M
          sign <<= 1;
634
635
1.07M
          if (temp_3 < 0) {
636
507k
            sign |= 1;
637
638
507k
            temp_3 = abs32(temp_3);
639
507k
          }
640
1.07M
        }
641
642
1.62M
        code_word = pstr_huffman_tbl->huff_ctab4[temp_0][temp_1][temp_2][temp_3];
643
644
1.62M
        code_length = LO_LTAB(pstr_huffman_tbl->huff_ltab3_4[temp_0][temp_1][temp_2][temp_3]);
645
646
1.62M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
647
648
1.62M
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
649
1.62M
      }
650
645k
      break;
651
652
170k
    case CODE_BCK_5_NO:
653
654
170k
      width = width >> 1;
655
656
1.60M
      for (i = width - 1; i >= 0; i--) {
657
1.43M
        temp_0 = *ptr_temp_values++;
658
1.43M
        temp_1 = *ptr_temp_values++;
659
660
1.43M
        code_word = pstr_huffman_tbl->huff_ctab5[temp_0 + 4][temp_1 + 4];
661
662
1.43M
        code_length = HI_LTAB(pstr_huffman_tbl->huff_ltab5_6[temp_0 + 4][temp_1 + 4]);
663
664
1.43M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
665
1.43M
      }
666
170k
      break;
667
668
565k
    case CODE_BCK_6_NO:
669
670
565k
      width = width >> 1;
671
672
4.05M
      for (i = width - 1; i >= 0; i--) {
673
3.48M
        temp_0 = *ptr_temp_values++;
674
3.48M
        temp_1 = *ptr_temp_values++;
675
676
3.48M
        code_word = pstr_huffman_tbl->huff_ctab6[temp_0 + 4][temp_1 + 4];
677
678
3.48M
        code_length = LO_LTAB(pstr_huffman_tbl->huff_ltab5_6[temp_0 + 4][temp_1 + 4]);
679
680
3.48M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
681
3.48M
      }
682
565k
      break;
683
684
77.0k
    case CODE_BCK_7_NO:
685
686
886k
      for (i = 0; i < width; i += 2) {
687
808k
        sign = 0;
688
808k
        sign_length = 0;
689
808k
        temp_0 = ptr_values[i + 0];
690
691
808k
        if (temp_0 != 0) {
692
315k
          sign_length++;
693
694
315k
          sign <<= 1;
695
696
315k
          if (temp_0 < 0) {
697
161k
            sign |= 1;
698
699
161k
            temp_0 = abs32(temp_0);
700
161k
          }
701
315k
        }
702
703
808k
        temp_1 = ptr_values[i + 1];
704
705
808k
        if (temp_1 != 0) {
706
277k
          sign_length++;
707
708
277k
          sign <<= 1;
709
710
277k
          if (temp_1 < 0) {
711
141k
            sign |= 1;
712
713
141k
            temp_1 = abs32(temp_1);
714
141k
          }
715
277k
        }
716
717
808k
        code_word = pstr_huffman_tbl->huff_ctab7[temp_0][temp_1];
718
719
808k
        code_length = HI_LTAB(pstr_huffman_tbl->huff_ltab7_8[temp_0][temp_1]);
720
721
808k
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
722
723
808k
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
724
808k
      }
725
77.0k
      break;
726
727
274k
    case CODE_BCK_8_NO:
728
729
2.20M
      for (i = 0; i < width; i += 2) {
730
1.92M
        sign = 0;
731
1.92M
        sign_length = 0;
732
1.92M
        temp_0 = ptr_values[i + 0];
733
734
1.92M
        if (temp_0 != 0) {
735
1.65M
          sign_length++;
736
737
1.65M
          sign <<= 1;
738
739
1.65M
          if (temp_0 < 0) {
740
817k
            sign |= 1;
741
742
817k
            temp_0 = abs32(temp_0);
743
817k
          }
744
1.65M
        }
745
746
1.92M
        temp_1 = ptr_values[i + 1];
747
748
1.92M
        if (temp_1 != 0) {
749
1.67M
          sign_length++;
750
751
1.67M
          sign <<= 1;
752
753
1.67M
          if (temp_1 < 0) {
754
848k
            sign |= 1;
755
756
848k
            temp_1 = abs32(temp_1);
757
848k
          }
758
1.67M
        }
759
760
1.92M
        code_word = pstr_huffman_tbl->huff_ctab8[temp_0][temp_1];
761
762
1.92M
        code_length = LO_LTAB(pstr_huffman_tbl->huff_ltab7_8[temp_0][temp_1]);
763
764
1.92M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
765
766
1.92M
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
767
1.92M
      }
768
274k
      break;
769
770
87.7k
    case CODE_BCK_9_NO:
771
772
946k
      for (i = 0; i < width; i += 2) {
773
858k
        sign = 0;
774
858k
        sign_length = 0;
775
858k
        temp_0 = ptr_values[i + 0];
776
777
858k
        if (temp_0 != 0) {
778
295k
          sign_length++;
779
780
295k
          sign <<= 1;
781
782
295k
          if (temp_0 < 0) {
783
148k
            sign |= 1;
784
785
148k
            temp_0 = abs32(temp_0);
786
148k
          }
787
295k
        }
788
789
858k
        temp_1 = ptr_values[i + 1];
790
791
858k
        if (temp_1 != 0) {
792
289k
          sign_length++;
793
794
289k
          sign <<= 1;
795
796
289k
          if (temp_1 < 0) {
797
144k
            sign |= 1;
798
799
144k
            temp_1 = abs32(temp_1);
800
144k
          }
801
289k
        }
802
803
858k
        code_word = pstr_huffman_tbl->huff_ctab9[temp_0][temp_1];
804
805
858k
        code_length = HI_LTAB(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
806
807
858k
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
808
809
858k
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
810
858k
      }
811
87.7k
      break;
812
813
822k
    case CODE_BCK_10_NO:
814
815
6.41M
      for (i = 0; i < width; i += 2) {
816
5.59M
        sign = 0;
817
5.59M
        sign_length = 0;
818
5.59M
        temp_0 = ptr_values[i + 0];
819
820
5.59M
        if (temp_0 != 0) {
821
5.29M
          sign_length++;
822
823
5.29M
          sign <<= 1;
824
825
5.29M
          if (temp_0 < 0) {
826
2.63M
            sign |= 1;
827
828
2.63M
            temp_0 = abs32(temp_0);
829
2.63M
          }
830
5.29M
        }
831
832
5.59M
        temp_1 = ptr_values[i + 1];
833
834
5.59M
        if (temp_1 != 0) {
835
5.26M
          sign_length++;
836
837
5.26M
          sign <<= 1;
838
839
5.26M
          if (temp_1 < 0) {
840
2.67M
            sign |= 1;
841
842
2.67M
            temp_1 = abs32(temp_1);
843
2.67M
          }
844
5.26M
        }
845
846
5.59M
        code_word = pstr_huffman_tbl->huff_ctab10[temp_0][temp_1];
847
848
5.59M
        code_length = LO_LTAB(pstr_huffman_tbl->huff_ltab9_10[temp_0][temp_1]);
849
850
5.59M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
851
852
5.59M
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
853
5.59M
      }
854
822k
      break;
855
856
2.03M
    case CODE_BCK_ESC_NO:
857
858
12.6M
      for (i = 0; i < width; i += 2) {
859
10.6M
        sign = 0;
860
10.6M
        sign_length = 0;
861
10.6M
        temp_0 = ptr_values[i + 0];
862
863
10.6M
        if (temp_0 != 0) {
864
9.23M
          sign_length++;
865
866
9.23M
          sign <<= 1;
867
868
9.23M
          if (temp_0 < 0) {
869
4.48M
            sign |= 1;
870
871
4.48M
            temp_0 = abs32(temp_0);
872
4.48M
          }
873
9.23M
        }
874
875
10.6M
        temp_1 = ptr_values[i + 1];
876
877
10.6M
        if (temp_1 != 0) {
878
9.04M
          sign_length++;
879
880
9.04M
          sign <<= 1;
881
882
9.04M
          if (temp_1 < 0) {
883
4.55M
            sign |= 1;
884
885
4.55M
            temp_1 = abs32(temp_1);
886
4.55M
          }
887
9.04M
        }
888
889
10.6M
        t00 = MIN(temp_0, 16);
890
10.6M
        t01 = MIN(temp_1, 16);
891
892
10.6M
        code_word = pstr_huffman_tbl->huff_ctab11[t00][t01];
893
10.6M
        code_length = pstr_huffman_tbl->huff_ltab11[t00][t01];
894
895
10.6M
        ixheaace_write_bits(pstr_bitstream, code_word, (UWORD8)code_length);
896
897
10.6M
        ixheaace_write_bits(pstr_bitstream, sign, (UWORD8)sign_length);
898
899
10.6M
        if (temp_0 >= 16) {
900
3.45M
          WORD32 n, p;
901
902
3.45M
          n = 0;
903
3.45M
          p = temp_0;
904
905
7.47M
          while ((p >>= 1) >= 16) {
906
4.02M
            ixheaace_write_bits(pstr_bitstream, 1, 1);
907
908
4.02M
            n++;
909
4.02M
          }
910
911
3.45M
          ixheaace_write_bits(pstr_bitstream, 0, 1);
912
913
3.45M
          ixheaace_write_bits(pstr_bitstream, temp_0 - (1 << (n + 4)), (UWORD8)(n + 4));
914
3.45M
        }
915
10.6M
        if (temp_1 >= 16) {
916
3.02M
          WORD32 n, p;
917
918
3.02M
          n = 0;
919
3.02M
          p = temp_1;
920
921
5.68M
          while ((p >>= 1) >= 16) {
922
2.65M
            ixheaace_write_bits(pstr_bitstream, 1, 1);
923
924
2.65M
            n++;
925
2.65M
          }
926
927
3.02M
          ixheaace_write_bits(pstr_bitstream, 0, 1);
928
929
3.02M
          ixheaace_write_bits(pstr_bitstream, temp_1 - (1 << (n + 4)), (UWORD8)(n + 4));
930
3.02M
        }
931
10.6M
      }
932
2.03M
      break;
933
934
0
    default:
935
0
      break;
936
11.9M
  }
937
11.9M
}
938
939
VOID ia_enhaacplus_enc_code_scale_factor_delta(WORD32 delta,
940
                                               ixheaace_bit_buf_handle h_bitstream,
941
0
                                               ixheaace_huffman_tables *pstr_huffman_tbl) {
942
0
  WORD32 code_word, code_length;
943
944
0
  code_word = pstr_huffman_tbl->huff_ctabscf[delta + CODE_BCK_SCF_LAV];
945
0
  code_length = pstr_huffman_tbl->huff_ltabscf[delta + CODE_BCK_SCF_LAV];
946
947
0
  ixheaace_write_bits(h_bitstream, code_word, (UWORD8)code_length);
948
0
}