Coverage Report

Created: 2026-01-10 06:29

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/proc/self/cwd/libfaad/huffman.c
Line
Count
Source
1
/*
2
** FAAD2 - Freeware Advanced Audio (AAC) Decoder including SBR decoding
3
** Copyright (C) 2003-2005 M. Bakker, Nero AG, http://www.nero.com
4
**
5
** This program is free software; you can redistribute it and/or modify
6
** it under the terms of the GNU General Public License as published by
7
** the Free Software Foundation; either version 2 of the License, or
8
** (at your option) any later version.
9
**
10
** This program is distributed in the hope that it will be useful,
11
** but WITHOUT ANY WARRANTY; without even the implied warranty of
12
** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13
** GNU General Public License for more details.
14
**
15
** You should have received a copy of the GNU General Public License
16
** along with this program; if not, write to the Free Software
17
** Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
18
**
19
** Any non-GPL usage of this software or parts of this software is strictly
20
** forbidden.
21
**
22
** The "appropriate copyright message" mentioned in section 2c of the GPLv2
23
** must read: "Code from FAAD2 is copyright (c) Nero AG, www.nero.com"
24
**
25
** Commercial non-GPL licensing of this software is possible.
26
** For more info contact Nero AG through Mpeg4AAClicense@nero.com.
27
**
28
** $Id: huffman.c,v 1.26 2007/11/01 12:33:30 menno Exp $
29
**/
30
31
#include "common.h"
32
#include "structs.h"
33
34
#include <stdlib.h>
35
#ifdef ANALYSIS
36
#include <stdio.h>
37
#endif
38
39
#include "bits.h"
40
#include "huffman.h"
41
#include "codebook/hcb.h"
42
43
44
/* static function declarations */
45
static INLINE void huffman_sign_bits(bitfile *ld, int16_t *sp, uint8_t len);
46
static INLINE uint8_t huffman_getescape(bitfile *ld, int16_t *sp);
47
static uint8_t huffman_2step_quad(uint8_t cb, bitfile *ld, int16_t *sp);
48
static uint8_t huffman_2step_quad_sign(uint8_t cb, bitfile *ld, int16_t *sp);
49
static uint8_t huffman_2step_pair(uint8_t cb, bitfile *ld, int16_t *sp);
50
static uint8_t huffman_2step_pair_sign(uint8_t cb, bitfile *ld, int16_t *sp);
51
static uint8_t huffman_binary_quad(uint8_t cb, bitfile *ld, int16_t *sp);
52
static uint8_t huffman_binary_quad_sign(uint8_t cb, bitfile *ld, int16_t *sp);
53
static uint8_t huffman_binary_pair(uint8_t cb, bitfile *ld, int16_t *sp);
54
static uint8_t huffman_binary_pair_sign(uint8_t cb, bitfile *ld, int16_t *sp);
55
#if 0
56
static int16_t huffman_codebook(uint8_t i);
57
#endif
58
static void vcb11_check_LAV(uint8_t cb, int16_t *sp);
59
60
int8_t huffman_scale_factor(bitfile *ld)
61
186k
{
62
186k
    uint16_t offset = 0;
63
64
557k
    while (hcb_sf[offset][1])
65
370k
    {
66
370k
        uint8_t b = faad_get1bit(ld
67
370k
            DEBUGVAR(1,255,"huffman_scale_factor()"));
68
370k
        offset += hcb_sf[offset][b];
69
370k
    }
70
71
186k
    return hcb_sf[offset][0];
72
186k
}
73
74
75
static const uint8_t hcbN[LAST_CB_IDX + 1] =
76
{   0,      5,      5,    0,      5,    0,      5,    0,      5,    0,       6,       5};
77
static const hcb* hcb_table[LAST_CB_IDX + 1] =
78
{NULL, hcb1_1, hcb2_1, NULL, hcb4_1, NULL, hcb6_1, NULL, hcb8_1, NULL, hcb10_1, hcb11_1};
79
static const hcb_2_quad* hcb_2_quad_table[LAST_CB_IDX + 1] =
80
{NULL, hcb1_2, hcb2_2, NULL, hcb4_2, NULL,   NULL, NULL,   NULL, NULL,    NULL,    NULL};
81
static const hcb_2_pair* hcb_2_pair_table[LAST_CB_IDX + 1] =
82
{NULL,   NULL,   NULL, NULL,   NULL, NULL, hcb6_2, NULL, hcb8_2, NULL, hcb10_2, hcb11_2};
83
static const hcb_bin_pair* hcb_bin_table[LAST_CB_IDX + 1] =
84
{NULL,   NULL,   NULL, NULL,   NULL, hcb5,   NULL, hcb7,   NULL, hcb9,    NULL,    NULL};
85
/*                     hcb3 is the unique case */
86
87
/* defines whether a huffman codebook is unsigned or not */
88
/* Table 4.6.2 */
89
static uint8_t unsigned_cb[32] = { 0, 0, 0, 1, 1, 0, 0, 1, 1, 1, 1, 1, 0, 0, 0, 0,
90
           /* codebook 16 to 31 */ 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1
91
};
92
93
static INLINE void huffman_sign_bits(bitfile *ld, int16_t *sp, uint8_t len)
94
634k
{
95
634k
    uint8_t i;
96
97
2.13M
    for (i = 0; i < len; i++)
98
1.50M
    {
99
1.50M
        if(sp[i])
100
722k
        {
101
722k
            if(faad_get1bit(ld
102
722k
                DEBUGVAR(1,5,"huffman_sign_bits(): sign bit")) & 1)
103
169k
            {
104
169k
                sp[i] = -sp[i];
105
169k
            }
106
722k
        }
107
1.50M
    }
108
634k
}
109
110
static INLINE uint8_t huffman_getescape(bitfile *ld, int16_t *sp)
111
452k
{
112
452k
    uint8_t neg, i;
113
452k
    int16_t j;
114
452k
  int16_t off;
115
452k
    int16_t x = *sp;
116
117
452k
    if (x < 0)
118
65.2k
    {
119
65.2k
        if (x != -16)
120
43.5k
            return 0;
121
21.6k
        neg = 1;
122
387k
    } else {
123
387k
        if (x != 16)
124
369k
            return 0;
125
18.0k
        neg = 0;
126
18.0k
    }
127
128
104k
    for (i = 4; i < 16; i++)
129
103k
    {
130
103k
        if (faad_get1bit(ld
131
103k
            DEBUGVAR(1,6,"huffman_getescape(): escape size")) == 0)
132
39.5k
        {
133
39.5k
            break;
134
39.5k
        }
135
103k
    }
136
39.7k
    if (i >= 16)
137
144
        return 10;
138
139
39.5k
    off = (int16_t)faad_getbits(ld, i
140
39.5k
        DEBUGVAR(1,9,"huffman_getescape(): escape"));
141
142
39.5k
    j = off | (1<<i);
143
39.5k
    if (neg)
144
21.5k
        j = -j;
145
146
39.5k
    *sp = j;
147
39.5k
    return 0;
148
39.7k
}
149
150
static uint8_t huffman_2step_quad(uint8_t cb, bitfile *ld, int16_t *sp)
151
149k
{
152
149k
    uint32_t cw;
153
149k
    uint16_t offset;
154
149k
    uint8_t extra_bits;
155
149k
    const hcb* root;
156
149k
    uint8_t root_bits;
157
149k
    const hcb_2_quad* table;
158
149k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
159
149k
    if (hcbN[cb] == 0) __builtin_trap();
160
149k
    if (hcb_table[cb] == NULL) __builtin_trap();
161
149k
    if (hcb_2_quad_table[cb] == NULL) __builtin_trap();
162
    // In other words, `cb` is one of [1, 2, 4].
163
149k
#endif
164
149k
    root = hcb_table[cb];
165
149k
    root_bits = hcbN[cb];
166
149k
    table = hcb_2_quad_table[cb];
167
168
149k
    cw = faad_showbits(ld, root_bits);
169
149k
    offset = root[cw].offset;
170
149k
    extra_bits = root[cw].extra_bits;
171
172
149k
    if (extra_bits)
173
18.6k
    {
174
        /* We know for sure it's more than `root_bits` bits long. */
175
18.6k
        faad_flushbits(ld, root_bits);
176
18.6k
        offset += (uint16_t)faad_showbits(ld, extra_bits);
177
18.6k
        faad_flushbits(ld, table[offset].bits - root_bits);
178
130k
    } else {
179
130k
        faad_flushbits(ld, table[offset].bits);
180
130k
    }
181
182
149k
    sp[0] = table[offset].x;
183
149k
    sp[1] = table[offset].y;
184
149k
    sp[2] = table[offset].v;
185
149k
    sp[3] = table[offset].w;
186
187
149k
    return 0;
188
149k
}
189
190
static uint8_t huffman_2step_quad_sign(uint8_t cb, bitfile *ld, int16_t *sp)
191
50.1k
{
192
50.1k
    uint8_t err = huffman_2step_quad(cb, ld, sp);
193
50.1k
    huffman_sign_bits(ld, sp, QUAD_LEN);
194
195
50.1k
    return err;
196
50.1k
}
197
198
static uint8_t huffman_2step_pair(uint8_t cb, bitfile *ld, int16_t *sp)
199
515k
{
200
515k
    uint32_t cw;
201
515k
    uint16_t offset;
202
515k
    uint8_t extra_bits;
203
515k
    const hcb* root;
204
515k
    uint8_t root_bits;
205
515k
    const hcb_2_pair* table;
206
515k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
207
515k
    if (hcbN[cb] == 0) __builtin_trap();
208
515k
    if (hcb_table[cb] == NULL) __builtin_trap();
209
515k
    if (hcb_2_pair_table[cb] == NULL) __builtin_trap();
210
    // In other words, `cb` is one of [6, 8, 10, 11].
211
515k
#endif
212
515k
    root = hcb_table[cb];
213
515k
    root_bits = hcbN[cb];
214
515k
    table = hcb_2_pair_table[cb];
215
216
515k
    cw = faad_showbits(ld, root_bits);
217
515k
    offset = root[cw].offset;
218
515k
    extra_bits = root[cw].extra_bits;
219
220
515k
    if (extra_bits)
221
62.3k
    {
222
        /* we know for sure it's more than hcbN[cb] bits long */
223
62.3k
        faad_flushbits(ld, root_bits);
224
62.3k
        offset += (uint16_t)faad_showbits(ld, extra_bits);
225
62.3k
        faad_flushbits(ld, table[offset].bits - root_bits);
226
452k
    } else {
227
452k
        faad_flushbits(ld, table[offset].bits);
228
452k
    }
229
230
515k
    sp[0] = table[offset].x;
231
515k
    sp[1] = table[offset].y;
232
233
515k
    return 0;
234
515k
}
235
236
static uint8_t huffman_2step_pair_sign(uint8_t cb, bitfile *ld, int16_t *sp)
237
428k
{
238
428k
    uint8_t err = huffman_2step_pair(cb, ld, sp);
239
428k
    huffman_sign_bits(ld, sp, PAIR_LEN);
240
241
428k
    return err;
242
428k
}
243
244
static uint8_t huffman_binary_quad(uint8_t cb, bitfile *ld, int16_t *sp)
245
65.8k
{
246
65.8k
    uint16_t offset = 0;
247
65.8k
    const hcb_bin_quad* table = hcb3;
248
249
65.8k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
250
65.8k
    if (cb != 3) __builtin_trap();
251
65.8k
#endif
252
253
184k
    while (!table[offset].is_leaf)
254
119k
    {
255
119k
        uint8_t b = faad_get1bit(ld
256
119k
            DEBUGVAR(1,255,"huffman_spectral_data():3"));
257
119k
        offset += table[offset].data[b];
258
119k
    }
259
260
65.8k
    sp[0] = table[offset].data[0];
261
65.8k
    sp[1] = table[offset].data[1];
262
65.8k
    sp[2] = table[offset].data[2];
263
65.8k
    sp[3] = table[offset].data[3];
264
265
65.8k
    return 0;
266
65.8k
}
267
268
static uint8_t huffman_binary_quad_sign(uint8_t cb, bitfile *ld, int16_t *sp)
269
65.8k
{
270
65.8k
    uint8_t err = huffman_binary_quad(cb, ld, sp);
271
65.8k
    huffman_sign_bits(ld, sp, QUAD_LEN);
272
273
65.8k
    return err;
274
65.8k
}
275
276
static uint8_t huffman_binary_pair(uint8_t cb, bitfile *ld, int16_t *sp)
277
140k
{
278
140k
    uint16_t offset = 0;
279
140k
    const hcb_bin_pair* table;
280
140k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
281
140k
    if (hcb_bin_table[cb] == NULL) __builtin_trap();
282
140k
    if (cb == 3) __builtin_trap();
283
    // In other words, `cb` is one of [5, 7, 9].
284
140k
#endif
285
140k
    table = hcb_bin_table[cb];
286
287
386k
    while (!table[offset].is_leaf)
288
245k
    {
289
245k
        uint8_t b = faad_get1bit(ld
290
245k
            DEBUGVAR(1,255,"huffman_spectral_data():9"));
291
245k
        offset += table[offset].data[b];
292
245k
    }
293
294
140k
    sp[0] = table[offset].data[0];
295
140k
    sp[1] = table[offset].data[1];
296
297
140k
    return 0;
298
140k
}
299
300
static uint8_t huffman_binary_pair_sign(uint8_t cb, bitfile *ld, int16_t *sp)
301
90.0k
{
302
90.0k
    uint8_t err = huffman_binary_pair(cb, ld, sp);
303
90.0k
    huffman_sign_bits(ld, sp, PAIR_LEN);
304
305
90.0k
    return err;
306
90.0k
}
307
308
#if 0
309
static int16_t huffman_codebook(uint8_t i)
310
{
311
    static const uint32_t data = 16428320;
312
    if (i == 0) return (int16_t)(data >> 16) & 0xFFFF;
313
    else        return (int16_t)data & 0xFFFF;
314
}
315
#endif
316
317
static void vcb11_check_LAV(uint8_t cb, int16_t *sp)
318
168k
{
319
168k
    static const uint16_t vcb11_LAV_tab[] = {
320
168k
        16, 31, 47, 63, 95, 127, 159, 191, 223,
321
168k
        255, 319, 383, 511, 767, 1023, 2047
322
168k
    };
323
168k
    uint16_t max = 0;
324
325
168k
    if (cb < 16 || cb > 31)
326
0
        return;
327
328
168k
    max = vcb11_LAV_tab[cb - 16];
329
330
168k
    if ((abs(sp[0]) > max) || (abs(sp[1]) > max))
331
5.70k
    {
332
5.70k
        sp[0] = 0;
333
5.70k
        sp[1] = 0;
334
5.70k
    }
335
168k
}
336
337
uint8_t huffman_spectral_data(uint8_t cb, bitfile *ld, int16_t *sp)
338
870k
{
339
870k
    switch (cb)
340
870k
    {
341
77.2k
    case 1: /* 2-step method for data quadruples */
342
98.9k
    case 2:
343
98.9k
        return huffman_2step_quad(cb, ld, sp);
344
65.8k
    case 3: /* binary search for data quadruples */
345
65.8k
        return huffman_binary_quad_sign(cb, ld, sp);
346
50.1k
    case 4: /* 2-step method for data quadruples */
347
50.1k
        return huffman_2step_quad_sign(cb, ld, sp);
348
50.4k
    case 5: /* binary search for data pairs */
349
50.4k
        return huffman_binary_pair(cb, ld, sp);
350
86.5k
    case 6: /* 2-step method for data pairs */
351
86.5k
        return huffman_2step_pair(cb, ld, sp);
352
34.3k
    case 7: /* binary search for data pairs */
353
90.0k
    case 9:
354
90.0k
        return huffman_binary_pair_sign(cb, ld, sp);
355
152k
    case 8: /* 2-step method for data pairs */
356
202k
    case 10:
357
202k
        return huffman_2step_pair_sign(cb, ld, sp);
358
    /* Codebook 12 is disallowed, see `section_data` */
359
#if 0
360
    case 12: {
361
        uint8_t err = huffman_2step_pair(11, ld, sp);
362
        sp[0] = huffman_codebook(0); sp[1] = huffman_codebook(1);
363
        return err; }
364
#endif
365
138k
    case 11:
366
138k
    {
367
138k
        uint8_t err = huffman_2step_pair_sign(11, ld, sp);
368
138k
        if (!err)
369
138k
            err = huffman_getescape(ld, &sp[0]);
370
138k
        if (!err)
371
138k
            err = huffman_getescape(ld, &sp[1]);
372
138k
        return err;
373
152k
    }
374
0
#ifdef ERROR_RESILIENCE
375
    /* VCB11 uses codebook 11 */
376
40.2k
    case 16: case 17: case 18: case 19: case 20: case 21: case 22: case 23:
377
87.5k
    case 24: case 25: case 26: case 27: case 28: case 29: case 30: case 31:
378
87.5k
    {
379
87.5k
        uint8_t err = huffman_2step_pair_sign(11, ld, sp);
380
87.5k
        if (!err)
381
87.5k
            err = huffman_getescape(ld, &sp[0]);
382
87.5k
        if (!err)
383
87.4k
            err = huffman_getescape(ld, &sp[1]);
384
385
        /* check LAV (Largest Absolute Value) */
386
        /* this finds errors in the ESCAPE signal */
387
87.5k
        vcb11_check_LAV(cb, sp);
388
389
87.5k
        return err;
390
68.4k
    }
391
0
#endif
392
0
    default:
393
        /* Non existent codebook number, something went wrong */
394
0
        return 11;
395
870k
    }
396
397
    /* return 0; */
398
870k
}
399
400
401
#ifdef ERROR_RESILIENCE
402
403
/* Special version of huffman_spectral_data
404
Will not read from a bitfile but a bits_t structure.
405
Will keep track of the bits decoded and return the number of bits remaining.
406
Do not read more than ld->len, return -1 if codeword would be longer */
407
408
int8_t huffman_spectral_data_2(uint8_t cb, bits_t *ld, int16_t *sp)
409
311k
{
410
311k
    uint32_t cw;
411
311k
    uint16_t offset = 0;
412
311k
    uint8_t extra_bits;
413
311k
    uint8_t vcb11 = 0;
414
415
416
311k
    switch (cb)
417
311k
    {
418
7.08k
    case 1: /* 2-step method for data quadruples */
419
46.1k
    case 2:
420
95.4k
    case 4: {
421
95.4k
        const hcb* root;
422
95.4k
        uint8_t root_bits;
423
95.4k
        const hcb_2_quad* table;
424
95.4k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
425
95.4k
        if (hcbN[cb] == 0) __builtin_trap();
426
95.4k
        if (hcb_table[cb] == NULL) __builtin_trap();
427
95.4k
        if (hcb_2_quad_table[cb] == NULL) __builtin_trap();
428
        // In other words, `cb` is one of [1, 2, 4].
429
95.4k
#endif
430
95.4k
        root = hcb_table[cb];
431
95.4k
        root_bits = hcbN[cb];
432
95.4k
        table = hcb_2_quad_table[cb];
433
434
95.4k
        cw = showbits_hcr(ld, root_bits);
435
95.4k
        offset = root[cw].offset;
436
95.4k
        extra_bits = root[cw].extra_bits;
437
438
95.4k
        if (extra_bits)
439
9.75k
        {
440
            /* We know for sure it's more than root_bits bits long. */
441
9.75k
            if (flushbits_hcr(ld, root_bits)) return -1;
442
6.09k
            offset += (uint16_t)showbits_hcr(ld, extra_bits);
443
6.09k
            if (flushbits_hcr(ld, table[offset].bits - root_bits)) return -1;
444
85.7k
        } else {
445
85.7k
            if (flushbits_hcr(ld, table[offset].bits)) return -1;
446
85.7k
        }
447
448
82.1k
        sp[0] = table[offset].x;
449
82.1k
        sp[1] = table[offset].y;
450
82.1k
        sp[2] = table[offset].v;
451
82.1k
        sp[3] = table[offset].w;
452
82.1k
        break;
453
95.4k
    }
454
11.4k
    case 6: /* 2-step method for data pairs */
455
23.0k
    case 8:
456
37.4k
    case 10:
457
77.1k
    case 11:
458
    /* VCB11 uses codebook 11 */
459
131k
    case 16: case 17: case 18: case 19: case 20: case 21: case 22: case 23:
460
184k
    case 24: case 25: case 26: case 27: case 28: case 29: case 30: case 31: {
461
184k
        const hcb* root;
462
184k
        uint8_t root_bits;
463
184k
        const hcb_2_pair* table;
464
465
184k
        if (cb >= 16)
466
107k
        {
467
            /* store the virtual codebook */
468
107k
            vcb11 = cb;
469
107k
            cb = 11;
470
107k
        }
471
184k
#ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
472
184k
        if (hcbN[cb] == 0) __builtin_trap();
473
184k
        if (hcb_table[cb] == NULL) __builtin_trap();
474
184k
        if (hcb_2_pair_table[cb] == NULL) __builtin_trap();
475
        // In other words, `cb` is one of [6, 8, 10, 11].
476
184k
#endif
477
184k
        root = hcb_table[cb];
478
184k
        root_bits = hcbN[cb];
479
184k
        table = hcb_2_pair_table[cb];
480
481
184k
        cw = showbits_hcr(ld, root_bits);
482
184k
        offset = root[cw].offset;
483
184k
        extra_bits = root[cw].extra_bits;
484
485
184k
        if (extra_bits)
486
27.8k
        {
487
            /* we know for sure it's more than hcbN[cb] bits long */
488
27.8k
            if (flushbits_hcr(ld, root_bits)) return -1;
489
24.1k
            offset += (uint16_t)showbits_hcr(ld, extra_bits);
490
24.1k
            if (flushbits_hcr(ld, table[offset].bits - root_bits)) return -1;
491
157k
        } else {
492
157k
            if ( flushbits_hcr(ld, table[offset].bits)) return -1;
493
157k
        }
494
163k
        sp[0] = table[offset].x;
495
163k
        sp[1] = table[offset].y;
496
163k
        break;
497
184k
    }
498
6.88k
    case 3: { /* binary search for data quadruples */
499
6.88k
        const hcb_bin_quad* table = hcb3;
500
14.0k
        while (!table[offset].is_leaf)
501
7.78k
        {
502
7.78k
            uint8_t b;
503
7.78k
            if (get1bit_hcr(ld, &b)) return -1;
504
7.19k
            offset += table[offset].data[b];
505
7.19k
        }
506
507
6.29k
        sp[0] = table[offset].data[0];
508
6.29k
        sp[1] = table[offset].data[1];
509
6.29k
        sp[2] = table[offset].data[2];
510
6.29k
        sp[3] = table[offset].data[3];
511
512
6.29k
        break;
513
6.88k
    }
514
515
8.11k
    case 5: /* binary search for data pairs */
516
12.7k
    case 7:
517
24.7k
    case 9: {
518
24.7k
        const hcb_bin_pair* table = hcb_bin_table[cb];
519
68.3k
        while (!table[offset].is_leaf)
520
45.4k
        {
521
45.4k
            uint8_t b;
522
523
45.4k
            if (get1bit_hcr(ld, &b) ) return -1;
524
43.6k
            offset += table[offset].data[b];
525
43.6k
        }
526
527
22.9k
        sp[0] = table[offset].data[0];
528
22.9k
        sp[1] = table[offset].data[1];
529
530
22.9k
        break;
531
24.7k
    }}
532
533
  /* decode sign bits */
534
274k
    if (unsigned_cb[cb])
535
217k
    {
536
217k
        uint8_t i;
537
699k
        for(i = 0; i < ((cb < FIRST_PAIR_HCB) ? QUAD_LEN : PAIR_LEN); i++)
538
501k
        {
539
501k
            if(sp[i])
540
229k
            {
541
229k
              uint8_t b;
542
229k
                if ( get1bit_hcr(ld, &b) ) return -1;
543
210k
                if (b != 0) {
544
56.6k
                    sp[i] = -sp[i];
545
56.6k
                }
546
210k
           }
547
501k
        }
548
217k
    }
549
550
    /* decode huffman escape bits */
551
255k
    if ((cb == ESC_HCB) || (cb >= 16))
552
125k
    {
553
125k
        uint8_t k;
554
362k
        for (k = 0; k < 2; k++)
555
246k
        {
556
246k
            if ((sp[k] == 16) || (sp[k] == -16))
557
22.3k
            {
558
22.3k
                uint8_t neg, i;
559
22.3k
                int32_t j;
560
22.3k
                uint32_t off;
561
562
22.3k
                neg = (sp[k] < 0) ? 1 : 0;
563
564
44.7k
                for (i = 4; ; i++)
565
67.1k
                {
566
67.1k
                    uint8_t b;
567
67.1k
                    if (get1bit_hcr(ld, &b))
568
3.13k
                        return -1;
569
64.0k
                    if (b == 0)
570
19.2k
                        break;
571
64.0k
                }
572
573
19.2k
                if (i > 32)
574
403
                    return -1;
575
576
18.8k
                if (getbits_hcr(ld, i, &off))
577
5.75k
                    return -1;
578
13.0k
                j = off + (1<<i);
579
13.0k
                sp[k] = (int16_t)((neg) ? -j : j);
580
13.0k
            }
581
246k
        }
582
583
116k
        if (vcb11 != 0)
584
80.6k
        {
585
            /* check LAV (Largest Absolute Value) */
586
            /* this finds errors in the ESCAPE signal */
587
80.6k
            vcb11_check_LAV(vcb11, sp);
588
80.6k
        }
589
116k
    }
590
246k
    return ld->len;
591
255k
}
592
593
#endif
594