Coverage Report

Created: 2026-02-14 06:17

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/lzma-fuzz/sdk/C/LzmaDec.c
Line
Count
Source
1
/* LzmaDec.c -- LZMA Decoder
2
2018-07-04 : Igor Pavlov : Public domain */
3
4
#include "Precomp.h"
5
6
#include <string.h>
7
8
/* #include "CpuArch.h" */
9
#include "LzmaDec.h"
10
11
4.02G
#define kNumTopBits 24
12
4.02G
#define kTopValue ((UInt32)1 << kNumTopBits)
13
14
15.8G
#define kNumBitModelTotalBits 11
15
11.9G
#define kBitModelTotal (1 << kNumBitModelTotalBits)
16
3.71G
#define kNumMoveBits 5
17
18
1.39M
#define RC_INIT_SIZE 5
19
20
3.79G
#define NORMALIZE if (range < kTopValue) { range <<= 8; code = (code << 8) | (*buf++); }
21
22
3.71G
#define IF_BIT_0(p) ttt = *(p); NORMALIZE; bound = (range >> kNumBitModelTotalBits) * (UInt32)ttt; if (code < bound)
23
2.96G
#define UPDATE_0(p) range = bound; *(p) = (CLzmaProb)(ttt + ((kBitModelTotal - ttt) >> kNumMoveBits));
24
755M
#define UPDATE_1(p) range -= bound; code -= bound; *(p) = (CLzmaProb)(ttt - (ttt >> kNumMoveBits));
25
3.15G
#define GET_BIT2(p, i, A0, A1) IF_BIT_0(p) \
26
3.15G
  { UPDATE_0(p); i = (i + i); A0; } else \
27
3.15G
  { UPDATE_1(p); i = (i + i) + 1; A1; }
28
29
3.02G
#define TREE_GET_BIT(probs, i) { GET_BIT2(probs + i, i, ;, ;); }
30
31
35.4M
#define REV_BIT(p, i, A0, A1) IF_BIT_0(p + i) \
32
35.4M
  { UPDATE_0(p + i); A0; } else \
33
35.4M
  { UPDATE_1(p + i); A1; }
34
7.89M
#define REV_BIT_VAR(  p, i, m) REV_BIT(p, i, i += m; m += m, m += m; i += m; )
35
20.7M
#define REV_BIT_CONST(p, i, m) REV_BIT(p, i, i += m;       , i += m * 2; )
36
6.90M
#define REV_BIT_LAST( p, i, m) REV_BIT(p, i, i -= m        , ; )
37
38
#define TREE_DECODE(probs, limit, i) \
39
61.0M
  { i = 1; do { TREE_GET_BIT(probs, i); } while (i < limit); i -= limit; }
40
41
/* #define _LZMA_SIZE_OPT */
42
43
#ifdef _LZMA_SIZE_OPT
44
#define TREE_6_DECODE(probs, i) TREE_DECODE(probs, (1 << 6), i)
45
#else
46
#define TREE_6_DECODE(probs, i) \
47
10.4M
  { i = 1; \
48
10.4M
  TREE_GET_BIT(probs, i); \
49
10.4M
  TREE_GET_BIT(probs, i); \
50
10.4M
  TREE_GET_BIT(probs, i); \
51
10.4M
  TREE_GET_BIT(probs, i); \
52
10.4M
  TREE_GET_BIT(probs, i); \
53
10.4M
  TREE_GET_BIT(probs, i); \
54
10.4M
  i -= 0x40; }
55
#endif
56
57
2.84G
#define NORMAL_LITER_DEC TREE_GET_BIT(prob, symbol)
58
#define MATCHED_LITER_DEC \
59
138M
  matchByte += matchByte; \
60
138M
  bit = offs; \
61
138M
  offs &= matchByte; \
62
138M
  probLit = prob + (offs + bit + symbol); \
63
138M
  GET_BIT2(probLit, symbol, offs ^= bit; , ;)
64
65
66
67
225M
#define NORMALIZE_CHECK if (range < kTopValue) { if (buf >= bufLimit) return DUMMY_ERROR; range <<= 8; code = (code << 8) | (*buf++); }
68
69
202M
#define IF_BIT_0_CHECK(p) ttt = *(p); NORMALIZE_CHECK; bound = (range >> kNumBitModelTotalBits) * (UInt32)ttt; if (code < bound)
70
195M
#define UPDATE_0_CHECK range = bound;
71
7.39M
#define UPDATE_1_CHECK range -= bound; code -= bound;
72
176M
#define GET_BIT2_CHECK(p, i, A0, A1) IF_BIT_0_CHECK(p) \
73
176M
  { UPDATE_0_CHECK; i = (i + i); A0; } else \
74
176M
  { UPDATE_1_CHECK; i = (i + i) + 1; A1; }
75
175M
#define GET_BIT_CHECK(p, i) GET_BIT2_CHECK(p, i, ; , ;)
76
#define TREE_DECODE_CHECK(probs, limit, i) \
77
3.80M
  { i = 1; do { GET_BIT_CHECK(probs + i, i) } while (i < limit); i -= limit; }
78
79
80
147k
#define REV_BIT_CHECK(p, i, m) IF_BIT_0_CHECK(p + i) \
81
146k
  { UPDATE_0_CHECK; i += m; m += m; } else \
82
146k
  { UPDATE_1_CHECK; m += m; i += m; }
83
84
85
3.26G
#define kNumPosBitsMax 4
86
1.84G
#define kNumPosStatesMax (1 << kNumPosBitsMax)
87
88
1.88G
#define kLenNumLowBits 3
89
34.6M
#define kLenNumLowSymbols (1 << kLenNumLowBits)
90
1.86G
#define kLenNumHighBits 8
91
1.85G
#define kLenNumHighSymbols (1 << kLenNumHighBits)
92
93
1.89G
#define LenLow 0
94
1.84G
#define LenHigh (LenLow + 2 * (kNumPosStatesMax << kLenNumLowBits))
95
1.83G
#define kNumLenProbs (LenHigh + kLenNumHighSymbols)
96
97
27.4M
#define LenChoice LenLow
98
8.93M
#define LenChoice2 (LenLow + (1 << kLenNumLowBits))
99
100
1.73G
#define kNumStates 12
101
1.42G
#define kNumStates2 16
102
435M
#define kNumLitStates 7
103
104
10.4M
#define kStartPosModelIndex 4
105
959M
#define kEndPosModelIndex 14
106
949M
#define kNumFullDistances (1 << (kEndPosModelIndex >> 1))
107
108
404M
#define kNumPosSlotBits 6
109
406M
#define kNumLenToPosStates 4
110
111
492M
#define kNumAlignBits 4
112
478M
#define kAlignTableSize (1 << kNumAlignBits)
113
114
53.4M
#define kMatchMinLen 2
115
26.6M
#define kMatchSpecLenStart (kMatchMinLen + kLenNumLowSymbols * 2 + kLenNumHighSymbols)
116
117
/* External ASM code needs same CLzmaProb array layout. So don't change it. */
118
119
/* (probs_1664) is faster and better for code size at some platforms */
120
/*
121
#ifdef MY_CPU_X86_OR_AMD64
122
*/
123
952M
#define kStartOffset 1664
124
46.0M
#define GET_PROBS p->probs_1664
125
/*
126
#define GET_PROBS p->probs + kStartOffset
127
#else
128
#define kStartOffset 0
129
#define GET_PROBS p->probs
130
#endif
131
*/
132
133
952M
#define SpecPos (-kStartOffset)
134
949M
#define IsRep0Long (SpecPos + kNumFullDistances)
135
938M
#define RepLenCoder (IsRep0Long + (kNumStates2 << kNumPosBitsMax))
136
921M
#define LenCoder (RepLenCoder + kNumLenProbs)
137
911M
#define IsMatch (LenCoder + kNumLenProbs)
138
485M
#define Align (IsMatch + (kNumStates2 << kNumPosBitsMax))
139
478M
#define IsRep (Align + kAlignTableSize)
140
445M
#define IsRepG0 (IsRep + kNumStates)
141
424M
#define IsRepG1 (IsRepG0 + kNumStates)
142
412M
#define IsRepG2 (IsRepG1 + kNumStates)
143
404M
#define PosSlot (IsRepG2 + kNumStates)
144
394M
#define Literal (PosSlot + (kNumLenToPosStates << kNumPosSlotBits))
145
264k
#define NUM_BASE_PROBS (Literal + kStartOffset)
146
147
#if Align != 0 && kStartOffset != 0
148
  #error Stop_Compiling_Bad_LZMA_kAlign
149
#endif
150
151
#if NUM_BASE_PROBS != 1984
152
  #error Stop_Compiling_Bad_LZMA_PROBS
153
#endif
154
155
156
21.7M
#define LZMA_LIT_SIZE 0x300
157
158
264k
#define LzmaProps_GetNumProbs(p) (NUM_BASE_PROBS + ((UInt32)LZMA_LIT_SIZE << ((p)->lc + (p)->lp)))
159
160
161
426M
#define CALC_POS_STATE(processedPos, pbMask) (((processedPos) & (pbMask)) << 4)
162
436M
#define COMBINED_PS_STATE (posState + state)
163
19.5M
#define GET_LEN_STATE (posState)
164
165
77.4k
#define LZMA_DIC_MIN (1 << 12)
166
167
/*
168
p->remainLen : shows status of LZMA decoder:
169
    < kMatchSpecLenStart : normal remain
170
    = kMatchSpecLenStart : finished
171
    = kMatchSpecLenStart + 1 : need init range coder
172
    = kMatchSpecLenStart + 2 : need init range coder and state
173
*/
174
175
/* ---------- LZMA_DECODE_REAL ---------- */
176
/*
177
LzmaDec_DecodeReal_3() can be implemented in external ASM file.
178
3 - is the code compatibility version of that function for check at link time.
179
*/
180
181
#define LZMA_DECODE_REAL LzmaDec_DecodeReal_3
182
183
/*
184
LZMA_DECODE_REAL()
185
In:
186
  RangeCoder is normalized
187
  if (p->dicPos == limit)
188
  {
189
    LzmaDec_TryDummy() was called before to exclude LITERAL and MATCH-REP cases.
190
    So first symbol can be only MATCH-NON-REP. And if that MATCH-NON-REP symbol
191
    is not END_OF_PAYALOAD_MARKER, then function returns error code.
192
  }
193
194
Processing:
195
  first LZMA symbol will be decoded in any case
196
  All checks for limits are at the end of main loop,
197
  It will decode new LZMA-symbols while (p->buf < bufLimit && dicPos < limit),
198
  RangeCoder is still without last normalization when (p->buf < bufLimit) is being checked.
199
200
Out:
201
  RangeCoder is normalized
202
  Result:
203
    SZ_OK - OK
204
    SZ_ERROR_DATA - Error
205
  p->remainLen:
206
    < kMatchSpecLenStart : normal remain
207
    = kMatchSpecLenStart : finished
208
*/
209
210
211
#ifdef _LZMA_DEC_OPT
212
213
int MY_FAST_CALL LZMA_DECODE_REAL(CLzmaDec *p, SizeT limit, const Byte *bufLimit);
214
215
#else
216
217
static
218
int MY_FAST_CALL LZMA_DECODE_REAL(CLzmaDec *p, SizeT limit, const Byte *bufLimit)
219
23.7M
{
220
23.7M
  CLzmaProb *probs = GET_PROBS;
221
23.7M
  unsigned state = (unsigned)p->state;
222
23.7M
  UInt32 rep0 = p->reps[0], rep1 = p->reps[1], rep2 = p->reps[2], rep3 = p->reps[3];
223
23.7M
  unsigned pbMask = ((unsigned)1 << (p->prop.pb)) - 1;
224
23.7M
  unsigned lc = p->prop.lc;
225
23.7M
  unsigned lpMask = ((unsigned)0x100 << p->prop.lp) - ((unsigned)0x100 >> lc);
226
227
23.7M
  Byte *dic = p->dic;
228
23.7M
  SizeT dicBufSize = p->dicBufSize;
229
23.7M
  SizeT dicPos = p->dicPos;
230
  
231
23.7M
  UInt32 processedPos = p->processedPos;
232
23.7M
  UInt32 checkDicSize = p->checkDicSize;
233
23.7M
  unsigned len = 0;
234
235
23.7M
  const Byte *buf = p->buf;
236
23.7M
  UInt32 range = p->range;
237
23.7M
  UInt32 code = p->code;
238
239
23.7M
  do
240
403M
  {
241
403M
    CLzmaProb *prob;
242
403M
    UInt32 bound;
243
403M
    unsigned ttt;
244
403M
    unsigned posState = CALC_POS_STATE(processedPos, pbMask);
245
246
403M
    prob = probs + IsMatch + COMBINED_PS_STATE;
247
403M
    IF_BIT_0(prob)
248
372M
    {
249
372M
      unsigned symbol;
250
372M
      UPDATE_0(prob);
251
372M
      prob = probs + Literal;
252
372M
      if (processedPos != 0 || checkDicSize != 0)
253
372M
        prob += (UInt32)3 * ((((processedPos << 8) + dic[(dicPos == 0 ? dicBufSize : dicPos) - 1]) & lpMask) << lc);
254
372M
      processedPos++;
255
256
372M
      if (state < kNumLitStates)
257
355M
      {
258
355M
        state -= (state < 4) ? state : 3;
259
355M
        symbol = 1;
260
        #ifdef _LZMA_SIZE_OPT
261
        do { NORMAL_LITER_DEC } while (symbol < 0x100);
262
        #else
263
355M
        NORMAL_LITER_DEC
264
355M
        NORMAL_LITER_DEC
265
355M
        NORMAL_LITER_DEC
266
355M
        NORMAL_LITER_DEC
267
355M
        NORMAL_LITER_DEC
268
355M
        NORMAL_LITER_DEC
269
355M
        NORMAL_LITER_DEC
270
355M
        NORMAL_LITER_DEC
271
355M
        #endif
272
355M
      }
273
17.2M
      else
274
17.2M
      {
275
17.2M
        unsigned matchByte = dic[dicPos - rep0 + (dicPos < rep0 ? dicBufSize : 0)];
276
17.2M
        unsigned offs = 0x100;
277
17.2M
        state -= (state < 10) ? 3 : 6;
278
17.2M
        symbol = 1;
279
        #ifdef _LZMA_SIZE_OPT
280
        do
281
        {
282
          unsigned bit;
283
          CLzmaProb *probLit;
284
          MATCHED_LITER_DEC
285
        }
286
        while (symbol < 0x100);
287
        #else
288
17.2M
        {
289
17.2M
          unsigned bit;
290
17.2M
          CLzmaProb *probLit;
291
17.2M
          MATCHED_LITER_DEC
292
17.2M
          MATCHED_LITER_DEC
293
17.2M
          MATCHED_LITER_DEC
294
17.2M
          MATCHED_LITER_DEC
295
17.2M
          MATCHED_LITER_DEC
296
17.2M
          MATCHED_LITER_DEC
297
17.2M
          MATCHED_LITER_DEC
298
17.2M
          MATCHED_LITER_DEC
299
17.2M
        }
300
17.2M
        #endif
301
17.2M
      }
302
303
372M
      dic[dicPos++] = (Byte)symbol;
304
372M
      continue;
305
372M
    }
306
    
307
31.5M
    {
308
31.5M
      UPDATE_1(prob);
309
31.5M
      prob = probs + IsRep + state;
310
31.5M
      IF_BIT_0(prob)
311
10.4M
      {
312
10.4M
        UPDATE_0(prob);
313
10.4M
        state += kNumStates;
314
10.4M
        prob = probs + LenCoder;
315
10.4M
      }
316
21.1M
      else
317
21.1M
      {
318
21.1M
        UPDATE_1(prob);
319
        /*
320
        // that case was checked before with kBadRepCode
321
        if (checkDicSize == 0 && processedPos == 0)
322
          return SZ_ERROR_DATA;
323
        */
324
21.1M
        prob = probs + IsRepG0 + state;
325
21.1M
        IF_BIT_0(prob)
326
10.4M
        {
327
10.4M
          UPDATE_0(prob);
328
10.4M
          prob = probs + IsRep0Long + COMBINED_PS_STATE;
329
10.4M
          IF_BIT_0(prob)
330
4.74M
          {
331
4.74M
            UPDATE_0(prob);
332
4.74M
            dic[dicPos] = dic[dicPos - rep0 + (dicPos < rep0 ? dicBufSize : 0)];
333
4.74M
            dicPos++;
334
4.74M
            processedPos++;
335
4.74M
            state = state < kNumLitStates ? 9 : 11;
336
4.74M
            continue;
337
4.74M
          }
338
5.71M
          UPDATE_1(prob);
339
5.71M
        }
340
10.6M
        else
341
10.6M
        {
342
10.6M
          UInt32 distance;
343
10.6M
          UPDATE_1(prob);
344
10.6M
          prob = probs + IsRepG1 + state;
345
10.6M
          IF_BIT_0(prob)
346
2.88M
          {
347
2.88M
            UPDATE_0(prob);
348
2.88M
            distance = rep1;
349
2.88M
          }
350
7.78M
          else
351
7.78M
          {
352
7.78M
            UPDATE_1(prob);
353
7.78M
            prob = probs + IsRepG2 + state;
354
7.78M
            IF_BIT_0(prob)
355
724k
            {
356
724k
              UPDATE_0(prob);
357
724k
              distance = rep2;
358
724k
            }
359
7.06M
            else
360
7.06M
            {
361
7.06M
              UPDATE_1(prob);
362
7.06M
              distance = rep3;
363
7.06M
              rep3 = rep2;
364
7.06M
            }
365
7.78M
            rep2 = rep1;
366
7.78M
          }
367
10.6M
          rep1 = rep0;
368
10.6M
          rep0 = distance;
369
10.6M
        }
370
16.3M
        state = state < kNumLitStates ? 8 : 11;
371
16.3M
        prob = probs + RepLenCoder;
372
16.3M
      }
373
      
374
      #ifdef _LZMA_SIZE_OPT
375
      {
376
        unsigned lim, offset;
377
        CLzmaProb *probLen = prob + LenChoice;
378
        IF_BIT_0(probLen)
379
        {
380
          UPDATE_0(probLen);
381
          probLen = prob + LenLow + GET_LEN_STATE;
382
          offset = 0;
383
          lim = (1 << kLenNumLowBits);
384
        }
385
        else
386
        {
387
          UPDATE_1(probLen);
388
          probLen = prob + LenChoice2;
389
          IF_BIT_0(probLen)
390
          {
391
            UPDATE_0(probLen);
392
            probLen = prob + LenLow + GET_LEN_STATE + (1 << kLenNumLowBits);
393
            offset = kLenNumLowSymbols;
394
            lim = (1 << kLenNumLowBits);
395
          }
396
          else
397
          {
398
            UPDATE_1(probLen);
399
            probLen = prob + LenHigh;
400
            offset = kLenNumLowSymbols * 2;
401
            lim = (1 << kLenNumHighBits);
402
          }
403
        }
404
        TREE_DECODE(probLen, lim, len);
405
        len += offset;
406
      }
407
      #else
408
26.8M
      {
409
26.8M
        CLzmaProb *probLen = prob + LenChoice;
410
26.8M
        IF_BIT_0(probLen)
411
18.2M
        {
412
18.2M
          UPDATE_0(probLen);
413
18.2M
          probLen = prob + LenLow + GET_LEN_STATE;
414
18.2M
          len = 1;
415
18.2M
          TREE_GET_BIT(probLen, len);
416
18.2M
          TREE_GET_BIT(probLen, len);
417
18.2M
          TREE_GET_BIT(probLen, len);
418
18.2M
          len -= 8;
419
18.2M
        }
420
8.51M
        else
421
8.51M
        {
422
8.51M
          UPDATE_1(probLen);
423
8.51M
          probLen = prob + LenChoice2;
424
8.51M
          IF_BIT_0(probLen)
425
879k
          {
426
879k
            UPDATE_0(probLen);
427
879k
            probLen = prob + LenLow + GET_LEN_STATE + (1 << kLenNumLowBits);
428
879k
            len = 1;
429
879k
            TREE_GET_BIT(probLen, len);
430
879k
            TREE_GET_BIT(probLen, len);
431
879k
            TREE_GET_BIT(probLen, len);
432
879k
          }
433
7.63M
          else
434
7.63M
          {
435
7.63M
            UPDATE_1(probLen);
436
7.63M
            probLen = prob + LenHigh;
437
7.63M
            TREE_DECODE(probLen, (1 << kLenNumHighBits), len);
438
7.63M
            len += kLenNumLowSymbols * 2;
439
7.63M
          }
440
8.51M
        }
441
26.8M
      }
442
26.8M
      #endif
443
444
26.8M
      if (state >= kNumStates)
445
10.4M
      {
446
10.4M
        UInt32 distance;
447
10.4M
        prob = probs + PosSlot +
448
10.4M
            ((len < kNumLenToPosStates ? len : kNumLenToPosStates - 1) << kNumPosSlotBits);
449
10.4M
        TREE_6_DECODE(prob, distance);
450
10.4M
        if (distance >= kStartPosModelIndex)
451
9.63M
        {
452
9.63M
          unsigned posSlot = (unsigned)distance;
453
9.63M
          unsigned numDirectBits = (unsigned)(((distance >> 1) - 1));
454
9.63M
          distance = (2 | (distance & 1));
455
9.63M
          if (posSlot < kEndPosModelIndex)
456
2.73M
          {
457
2.73M
            distance <<= numDirectBits;
458
2.73M
            prob = probs + SpecPos;
459
2.73M
            {
460
2.73M
              UInt32 m = 1;
461
2.73M
              distance++;
462
2.73M
              do
463
7.89M
              {
464
7.89M
                REV_BIT_VAR(prob, distance, m);
465
7.89M
              }
466
7.89M
              while (--numDirectBits);
467
2.73M
              distance -= m;
468
2.73M
            }
469
2.73M
          }
470
6.90M
          else
471
6.90M
          {
472
6.90M
            numDirectBits -= kNumAlignBits;
473
6.90M
            do
474
56.6M
            {
475
56.6M
              NORMALIZE
476
56.6M
              range >>= 1;
477
              
478
56.6M
              {
479
56.6M
                UInt32 t;
480
56.6M
                code -= range;
481
56.6M
                t = (0 - ((UInt32)code >> 31)); /* (UInt32)((Int32)code >> 31) */
482
56.6M
                distance = (distance << 1) + (t + 1);
483
56.6M
                code += range & t;
484
56.6M
              }
485
              /*
486
              distance <<= 1;
487
              if (code >= range)
488
              {
489
                code -= range;
490
                distance |= 1;
491
              }
492
              */
493
56.6M
            }
494
56.6M
            while (--numDirectBits);
495
6.90M
            prob = probs + Align;
496
6.90M
            distance <<= kNumAlignBits;
497
6.90M
            {
498
6.90M
              unsigned i = 1;
499
6.90M
              REV_BIT_CONST(prob, i, 1);
500
6.90M
              REV_BIT_CONST(prob, i, 2);
501
6.90M
              REV_BIT_CONST(prob, i, 4);
502
6.90M
              REV_BIT_LAST (prob, i, 8);
503
6.90M
              distance |= i;
504
6.90M
            }
505
6.90M
            if (distance == (UInt32)0xFFFFFFFF)
506
4.23k
            {
507
4.23k
              len = kMatchSpecLenStart;
508
4.23k
              state -= kNumStates;
509
4.23k
              break;
510
4.23k
            }
511
6.90M
          }
512
9.63M
        }
513
        
514
10.4M
        rep3 = rep2;
515
10.4M
        rep2 = rep1;
516
10.4M
        rep1 = rep0;
517
10.4M
        rep0 = distance + 1;
518
10.4M
        state = (state < kNumStates + kNumLitStates) ? kNumLitStates : kNumLitStates + 3;
519
10.4M
        if (distance >= (checkDicSize == 0 ? processedPos: checkDicSize))
520
2.50k
        {
521
2.50k
          p->dicPos = dicPos;
522
2.50k
          return SZ_ERROR_DATA;
523
2.50k
        }
524
10.4M
      }
525
526
26.7M
      len += kMatchMinLen;
527
528
26.7M
      {
529
26.7M
        SizeT rem;
530
26.7M
        unsigned curLen;
531
26.7M
        SizeT pos;
532
        
533
26.7M
        if ((rem = limit - dicPos) == 0)
534
20
        {
535
20
          p->dicPos = dicPos;
536
20
          return SZ_ERROR_DATA;
537
20
        }
538
        
539
26.7M
        curLen = ((rem < len) ? (unsigned)rem : len);
540
26.7M
        pos = dicPos - rep0 + (dicPos < rep0 ? dicBufSize : 0);
541
542
26.7M
        processedPos += (UInt32)curLen;
543
544
26.7M
        len -= curLen;
545
26.7M
        if (curLen <= dicBufSize - pos)
546
26.7M
        {
547
26.7M
          Byte *dest = dic + dicPos;
548
26.7M
          ptrdiff_t src = (ptrdiff_t)pos - (ptrdiff_t)dicPos;
549
26.7M
          const Byte *lim = dest + curLen;
550
26.7M
          dicPos += (SizeT)curLen;
551
26.7M
          do
552
1.93G
            *(dest) = (Byte)*(dest + src);
553
1.93G
          while (++dest != lim);
554
26.7M
        }
555
3.93k
        else
556
3.93k
        {
557
3.93k
          do
558
1.02M
          {
559
1.02M
            dic[dicPos++] = dic[pos];
560
1.02M
            if (++pos == dicBufSize)
561
3.93k
              pos = 0;
562
1.02M
          }
563
1.02M
          while (--curLen != 0);
564
3.93k
        }
565
26.7M
      }
566
26.7M
    }
567
26.7M
  }
568
403M
  while (dicPos < limit && buf < bufLimit);
569
570
23.7M
  NORMALIZE;
571
  
572
23.7M
  p->buf = buf;
573
23.7M
  p->range = range;
574
23.7M
  p->code = code;
575
23.7M
  p->remainLen = (UInt32)len;
576
23.7M
  p->dicPos = dicPos;
577
23.7M
  p->processedPos = processedPos;
578
23.7M
  p->reps[0] = rep0;
579
23.7M
  p->reps[1] = rep1;
580
23.7M
  p->reps[2] = rep2;
581
23.7M
  p->reps[3] = rep3;
582
23.7M
  p->state = (UInt32)state;
583
584
23.7M
  return SZ_OK;
585
23.7M
}
586
#endif
587
588
static void MY_FAST_CALL LzmaDec_WriteRem(CLzmaDec *p, SizeT limit)
589
24.3M
{
590
24.3M
  if (p->remainLen != 0 && p->remainLen < kMatchSpecLenStart)
591
503k
  {
592
503k
    Byte *dic = p->dic;
593
503k
    SizeT dicPos = p->dicPos;
594
503k
    SizeT dicBufSize = p->dicBufSize;
595
503k
    unsigned len = (unsigned)p->remainLen;
596
503k
    SizeT rep0 = p->reps[0]; /* we use SizeT to avoid the BUG of VC14 for AMD64 */
597
503k
    SizeT rem = limit - dicPos;
598
503k
    if (rem < len)
599
251k
      len = (unsigned)(rem);
600
601
503k
    if (p->checkDicSize == 0 && p->prop.dicSize - p->processedPos <= len)
602
95
      p->checkDicSize = p->prop.dicSize;
603
604
503k
    p->processedPos += (UInt32)len;
605
503k
    p->remainLen -= (UInt32)len;
606
35.7M
    while (len != 0)
607
35.2M
    {
608
35.2M
      len--;
609
35.2M
      dic[dicPos] = dic[dicPos - rep0 + (dicPos < rep0 ? dicBufSize : 0)];
610
35.2M
      dicPos++;
611
35.2M
    }
612
503k
    p->dicPos = dicPos;
613
503k
  }
614
24.3M
}
615
616
617
563k
#define kRange0 0xFFFFFFFF
618
375k
#define kBound0 ((kRange0 >> kNumBitModelTotalBits) << (kNumBitModelTotalBits - 1))
619
187k
#define kBadRepCode (kBound0 + (((kRange0 - kBound0) >> kNumBitModelTotalBits) << (kNumBitModelTotalBits - 1)))
620
#if kBadRepCode != (0xC0000000 - 0x400)
621
  #error Stop_Compiling_Bad_LZMA_Check
622
#endif
623
624
static int MY_FAST_CALL LzmaDec_DecodeReal2(CLzmaDec *p, SizeT limit, const Byte *bufLimit)
625
23.6M
{
626
23.6M
  do
627
23.7M
  {
628
23.7M
    SizeT limit2 = limit;
629
23.7M
    if (p->checkDicSize == 0)
630
3.03M
    {
631
3.03M
      UInt32 rem = p->prop.dicSize - p->processedPos;
632
3.03M
      if (limit - p->dicPos > rem)
633
60.8k
        limit2 = p->dicPos + rem;
634
635
3.03M
      if (p->processedPos == 0)
636
187k
        if (p->code >= kBadRepCode)
637
250
          return SZ_ERROR_DATA;
638
3.03M
    }
639
640
23.7M
    RINOK(LZMA_DECODE_REAL(p, limit2, bufLimit));
641
    
642
23.7M
    if (p->checkDicSize == 0 && p->processedPos >= p->prop.dicSize)
643
25.6k
      p->checkDicSize = p->prop.dicSize;
644
    
645
23.7M
    LzmaDec_WriteRem(p, limit);
646
23.7M
  }
647
23.7M
  while (p->dicPos < limit && p->buf < bufLimit && p->remainLen < kMatchSpecLenStart);
648
649
23.6M
  return 0;
650
23.6M
}
651
652
typedef enum
653
{
654
  DUMMY_ERROR, /* unexpected end of input stream */
655
  DUMMY_LIT,
656
  DUMMY_MATCH,
657
  DUMMY_REP
658
} ELzmaDummy;
659
660
static ELzmaDummy LzmaDec_TryDummy(const CLzmaDec *p, const Byte *buf, SizeT inSize)
661
22.3M
{
662
22.3M
  UInt32 range = p->range;
663
22.3M
  UInt32 code = p->code;
664
22.3M
  const Byte *bufLimit = buf + inSize;
665
22.3M
  const CLzmaProb *probs = GET_PROBS;
666
22.3M
  unsigned state = (unsigned)p->state;
667
22.3M
  ELzmaDummy res;
668
669
22.3M
  {
670
22.3M
    const CLzmaProb *prob;
671
22.3M
    UInt32 bound;
672
22.3M
    unsigned ttt;
673
22.3M
    unsigned posState = CALC_POS_STATE(p->processedPos, (1 << p->prop.pb) - 1);
674
675
22.3M
    prob = probs + IsMatch + COMBINED_PS_STATE;
676
22.3M
    IF_BIT_0_CHECK(prob)
677
21.6M
    {
678
21.6M
      UPDATE_0_CHECK
679
680
      /* if (bufLimit - buf >= 7) return DUMMY_LIT; */
681
682
21.6M
      prob = probs + Literal;
683
21.6M
      if (p->checkDicSize != 0 || p->processedPos != 0)
684
21.4M
        prob += ((UInt32)LZMA_LIT_SIZE *
685
21.4M
            ((((p->processedPos) & ((1 << (p->prop.lp)) - 1)) << p->prop.lc) +
686
21.4M
            (p->dic[(p->dicPos == 0 ? p->dicBufSize : p->dicPos) - 1] >> (8 - p->prop.lc))));
687
688
21.6M
      if (state < kNumLitStates)
689
21.4M
      {
690
21.4M
        unsigned symbol = 1;
691
171M
        do { GET_BIT_CHECK(prob + symbol, symbol) } while (symbol < 0x100);
692
21.4M
      }
693
212k
      else
694
212k
      {
695
212k
        unsigned matchByte = p->dic[p->dicPos - p->reps[0] +
696
212k
            (p->dicPos < p->reps[0] ? p->dicBufSize : 0)];
697
212k
        unsigned offs = 0x100;
698
212k
        unsigned symbol = 1;
699
212k
        do
700
1.67M
        {
701
1.67M
          unsigned bit;
702
1.67M
          const CLzmaProb *probLit;
703
1.67M
          matchByte += matchByte;
704
1.67M
          bit = offs;
705
1.67M
          offs &= matchByte;
706
1.67M
          probLit = prob + (offs + bit + symbol);
707
1.67M
          GET_BIT2_CHECK(probLit, symbol, offs ^= bit; , ; )
708
1.67M
        }
709
1.67M
        while (symbol < 0x100);
710
212k
      }
711
21.6M
      res = DUMMY_LIT;
712
21.6M
    }
713
723k
    else
714
723k
    {
715
723k
      unsigned len;
716
723k
      UPDATE_1_CHECK;
717
718
723k
      prob = probs + IsRep + state;
719
723k
      IF_BIT_0_CHECK(prob)
720
73.6k
      {
721
73.6k
        UPDATE_0_CHECK;
722
73.6k
        state = 0;
723
73.6k
        prob = probs + LenCoder;
724
73.6k
        res = DUMMY_MATCH;
725
73.6k
      }
726
648k
      else
727
648k
      {
728
648k
        UPDATE_1_CHECK;
729
648k
        res = DUMMY_REP;
730
648k
        prob = probs + IsRepG0 + state;
731
648k
        IF_BIT_0_CHECK(prob)
732
92.1k
        {
733
92.1k
          UPDATE_0_CHECK;
734
92.1k
          prob = probs + IsRep0Long + COMBINED_PS_STATE;
735
92.1k
          IF_BIT_0_CHECK(prob)
736
33.1k
          {
737
33.1k
            UPDATE_0_CHECK;
738
33.1k
            NORMALIZE_CHECK;
739
32.8k
            return DUMMY_REP;
740
33.1k
          }
741
58.3k
          else
742
58.3k
          {
743
58.3k
            UPDATE_1_CHECK;
744
58.3k
          }
745
91.5k
        }
746
555k
        else
747
555k
        {
748
555k
          UPDATE_1_CHECK;
749
555k
          prob = probs + IsRepG1 + state;
750
555k
          IF_BIT_0_CHECK(prob)
751
166k
          {
752
166k
            UPDATE_0_CHECK;
753
166k
          }
754
388k
          else
755
388k
          {
756
388k
            UPDATE_1_CHECK;
757
388k
            prob = probs + IsRepG2 + state;
758
388k
            IF_BIT_0_CHECK(prob)
759
23.2k
            {
760
23.2k
              UPDATE_0_CHECK;
761
23.2k
            }
762
364k
            else
763
364k
            {
764
364k
              UPDATE_1_CHECK;
765
364k
            }
766
387k
          }
767
554k
        }
768
612k
        state = kNumStates;
769
612k
        prob = probs + RepLenCoder;
770
612k
      }
771
686k
      {
772
686k
        unsigned limit, offset;
773
686k
        const CLzmaProb *probLen = prob + LenChoice;
774
686k
        IF_BIT_0_CHECK(probLen)
775
268k
        {
776
268k
          UPDATE_0_CHECK;
777
268k
          probLen = prob + LenLow + GET_LEN_STATE;
778
268k
          offset = 0;
779
268k
          limit = 1 << kLenNumLowBits;
780
268k
        }
781
416k
        else
782
416k
        {
783
416k
          UPDATE_1_CHECK;
784
416k
          probLen = prob + LenChoice2;
785
416k
          IF_BIT_0_CHECK(probLen)
786
147k
          {
787
147k
            UPDATE_0_CHECK;
788
147k
            probLen = prob + LenLow + GET_LEN_STATE + (1 << kLenNumLowBits);
789
147k
            offset = kLenNumLowSymbols;
790
147k
            limit = 1 << kLenNumLowBits;
791
147k
          }
792
268k
          else
793
268k
          {
794
268k
            UPDATE_1_CHECK;
795
268k
            probLen = prob + LenHigh;
796
268k
            offset = kLenNumLowSymbols * 2;
797
268k
            limit = 1 << kLenNumHighBits;
798
268k
          }
799
416k
        }
800
1.36M
        TREE_DECODE_CHECK(probLen, limit, len);
801
1.36M
        len += offset;
802
1.36M
      }
803
804
679k
      if (state < 4)
805
71.0k
      {
806
71.0k
        unsigned posSlot;
807
71.0k
        prob = probs + PosSlot +
808
71.0k
            ((len < kNumLenToPosStates - 1 ? len : kNumLenToPosStates - 1) <<
809
71.0k
            kNumPosSlotBits);
810
71.0k
        TREE_DECODE_CHECK(prob, 1 << kNumPosSlotBits, posSlot);
811
69.7k
        if (posSlot >= kStartPosModelIndex)
812
46.8k
        {
813
46.8k
          unsigned numDirectBits = ((posSlot >> 1) - 1);
814
815
          /* if (bufLimit - buf >= 8) return DUMMY_MATCH; */
816
817
46.8k
          if (posSlot < kEndPosModelIndex)
818
25.1k
          {
819
25.1k
            prob = probs + SpecPos + ((2 | (posSlot & 1)) << numDirectBits);
820
25.1k
          }
821
21.7k
          else
822
21.7k
          {
823
21.7k
            numDirectBits -= kNumAlignBits;
824
21.7k
            do
825
202k
            {
826
202k
              NORMALIZE_CHECK
827
201k
              range >>= 1;
828
201k
              code -= range & (((code - range) >> 31) - 1);
829
              /* if (code >= range) code -= range; */
830
201k
            }
831
201k
            while (--numDirectBits);
832
21.0k
            prob = probs + Align;
833
21.0k
            numDirectBits = kNumAlignBits;
834
21.0k
          }
835
46.1k
          {
836
46.1k
            unsigned i = 1;
837
46.1k
            unsigned m = 1;
838
46.1k
            do
839
147k
            {
840
147k
              REV_BIT_CHECK(prob, i, m);
841
146k
            }
842
146k
            while (--numDirectBits);
843
46.1k
          }
844
46.1k
        }
845
69.7k
      }
846
1.36M
    }
847
22.3M
  }
848
22.3M
  NORMALIZE_CHECK;
849
22.3M
  return res;
850
22.3M
}
851
852
853
void LzmaDec_InitDicAndState(CLzmaDec *p, BoolInt initDic, BoolInt initState)
854
356k
{
855
356k
  p->remainLen = kMatchSpecLenStart + 1;
856
356k
  p->tempBufSize = 0;
857
858
356k
  if (initDic)
859
253k
  {
860
253k
    p->processedPos = 0;
861
253k
    p->checkDicSize = 0;
862
253k
    p->remainLen = kMatchSpecLenStart + 2;
863
253k
  }
864
356k
  if (initState)
865
251k
    p->remainLen = kMatchSpecLenStart + 2;
866
356k
}
867
868
void LzmaDec_Init(CLzmaDec *p)
869
71.4k
{
870
71.4k
  p->dicPos = 0;
871
71.4k
  LzmaDec_InitDicAndState(p, True, True);
872
71.4k
}
873
874
875
SRes LzmaDec_DecodeToDic(CLzmaDec *p, SizeT dicLimit, const Byte *src, SizeT *srcLen,
876
    ELzmaFinishMode finishMode, ELzmaStatus *status)
877
672k
{
878
672k
  SizeT inSize = *srcLen;
879
672k
  (*srcLen) = 0;
880
  
881
672k
  *status = LZMA_STATUS_NOT_SPECIFIED;
882
883
672k
  if (p->remainLen > kMatchSpecLenStart)
884
198k
  {
885
1.19M
    for (; inSize > 0 && p->tempBufSize < RC_INIT_SIZE; (*srcLen)++, inSize--)
886
991k
      p->tempBuf[p->tempBufSize++] = *src++;
887
198k
    if (p->tempBufSize != 0 && p->tempBuf[0] != 0)
888
64
      return SZ_ERROR_DATA;
889
198k
    if (p->tempBufSize < RC_INIT_SIZE)
890
456
    {
891
456
      *status = LZMA_STATUS_NEEDS_MORE_INPUT;
892
456
      return SZ_OK;
893
456
    }
894
198k
    p->code =
895
198k
        ((UInt32)p->tempBuf[1] << 24)
896
198k
      | ((UInt32)p->tempBuf[2] << 16)
897
198k
      | ((UInt32)p->tempBuf[3] << 8)
898
198k
      | ((UInt32)p->tempBuf[4]);
899
198k
    p->range = 0xFFFFFFFF;
900
198k
    p->tempBufSize = 0;
901
902
198k
    if (p->remainLen > kMatchSpecLenStart + 1)
903
193k
    {
904
193k
      SizeT numProbs = LzmaProps_GetNumProbs(&p->prop);
905
193k
      SizeT i;
906
193k
      CLzmaProb *probs = p->probs;
907
8.95G
      for (i = 0; i < numProbs; i++)
908
8.95G
        probs[i] = kBitModelTotal >> 1;
909
193k
      p->reps[0] = p->reps[1] = p->reps[2] = p->reps[3] = 1;
910
193k
      p->state = 0;
911
193k
    }
912
913
198k
    p->remainLen = 0;
914
198k
  }
915
916
672k
  LzmaDec_WriteRem(p, dicLimit);
917
918
24.3M
  while (p->remainLen != kMatchSpecLenStart)
919
24.3M
  {
920
24.3M
      int checkEndMarkNow = 0;
921
922
24.3M
      if (p->dicPos >= dicLimit)
923
641k
      {
924
641k
        if (p->remainLen == 0 && p->code == 0)
925
382k
        {
926
382k
          *status = LZMA_STATUS_MAYBE_FINISHED_WITHOUT_MARK;
927
382k
          return SZ_OK;
928
382k
        }
929
259k
        if (finishMode == LZMA_FINISH_ANY)
930
254k
        {
931
254k
          *status = LZMA_STATUS_NOT_FINISHED;
932
254k
          return SZ_OK;
933
254k
        }
934
4.84k
        if (p->remainLen != 0)
935
211
        {
936
211
          *status = LZMA_STATUS_NOT_FINISHED;
937
211
          return SZ_ERROR_DATA;
938
211
        }
939
4.63k
        checkEndMarkNow = 1;
940
4.63k
      }
941
942
23.7M
      if (p->tempBufSize == 0)
943
23.7M
      {
944
23.7M
        SizeT processed;
945
23.7M
        const Byte *bufLimit;
946
23.7M
        if (inSize < LZMA_REQUIRED_INPUT_MAX || checkEndMarkNow)
947
22.3M
        {
948
22.3M
          int dummyRes = LzmaDec_TryDummy(p, src, inSize);
949
22.3M
          if (dummyRes == DUMMY_ERROR)
950
26.6k
          {
951
26.6k
            memcpy(p->tempBuf, src, inSize);
952
26.6k
            p->tempBufSize = (unsigned)inSize;
953
26.6k
            (*srcLen) += inSize;
954
26.6k
            *status = LZMA_STATUS_NEEDS_MORE_INPUT;
955
26.6k
            return SZ_OK;
956
26.6k
          }
957
22.3M
          if (checkEndMarkNow && dummyRes != DUMMY_MATCH)
958
27
          {
959
27
            *status = LZMA_STATUS_NOT_FINISHED;
960
27
            return SZ_ERROR_DATA;
961
27
          }
962
22.3M
          bufLimit = src;
963
22.3M
        }
964
1.36M
        else
965
1.36M
          bufLimit = src + inSize - LZMA_REQUIRED_INPUT_MAX;
966
23.6M
        p->buf = src;
967
23.6M
        if (LzmaDec_DecodeReal2(p, dicLimit, bufLimit) != 0)
968
2.77k
          return SZ_ERROR_DATA;
969
23.6M
        processed = (SizeT)(p->buf - src);
970
23.6M
        (*srcLen) += processed;
971
23.6M
        src += processed;
972
23.6M
        inSize -= processed;
973
23.6M
      }
974
1.53k
      else
975
1.53k
      {
976
1.53k
        unsigned rem = p->tempBufSize, lookAhead = 0;
977
3.61k
        while (rem < LZMA_REQUIRED_INPUT_MAX && lookAhead < inSize)
978
2.07k
          p->tempBuf[rem++] = src[lookAhead++];
979
1.53k
        p->tempBufSize = rem;
980
1.53k
        if (rem < LZMA_REQUIRED_INPUT_MAX || checkEndMarkNow)
981
1.43k
        {
982
1.43k
          int dummyRes = LzmaDec_TryDummy(p, p->tempBuf, (SizeT)rem);
983
1.43k
          if (dummyRes == DUMMY_ERROR)
984
1.39k
          {
985
1.39k
            (*srcLen) += (SizeT)lookAhead;
986
1.39k
            *status = LZMA_STATUS_NEEDS_MORE_INPUT;
987
1.39k
            return SZ_OK;
988
1.39k
          }
989
42
          if (checkEndMarkNow && dummyRes != DUMMY_MATCH)
990
0
          {
991
0
            *status = LZMA_STATUS_NOT_FINISHED;
992
0
            return SZ_ERROR_DATA;
993
0
          }
994
42
        }
995
141
        p->buf = p->tempBuf;
996
141
        if (LzmaDec_DecodeReal2(p, dicLimit, p->buf) != 0)
997
5
          return SZ_ERROR_DATA;
998
        
999
136
        {
1000
136
          unsigned kkk = (unsigned)(p->buf - p->tempBuf);
1001
136
          if (rem < kkk)
1002
0
            return SZ_ERROR_FAIL; /* some internal error */
1003
136
          rem -= kkk;
1004
136
          if (lookAhead < rem)
1005
0
            return SZ_ERROR_FAIL; /* some internal error */
1006
136
          lookAhead -= rem;
1007
136
        }
1008
0
        (*srcLen) += (SizeT)lookAhead;
1009
136
        src += lookAhead;
1010
136
        inSize -= (SizeT)lookAhead;
1011
136
        p->tempBufSize = 0;
1012
136
      }
1013
23.7M
  }
1014
  
1015
4.24k
  if (p->code != 0)
1016
75
    return SZ_ERROR_DATA;
1017
4.17k
  *status = LZMA_STATUS_FINISHED_WITH_MARK;
1018
4.17k
  return SZ_OK;
1019
4.24k
}
1020
1021
1022
SRes LzmaDec_DecodeToBuf(CLzmaDec *p, Byte *dest, SizeT *destLen, const Byte *src, SizeT *srcLen, ELzmaFinishMode finishMode, ELzmaStatus *status)
1023
175k
{
1024
175k
  SizeT outSize = *destLen;
1025
175k
  SizeT inSize = *srcLen;
1026
175k
  *srcLen = *destLen = 0;
1027
175k
  for (;;)
1028
230k
  {
1029
230k
    SizeT inSizeCur = inSize, outSizeCur, dicPos;
1030
230k
    ELzmaFinishMode curFinishMode;
1031
230k
    SRes res;
1032
230k
    if (p->dicPos == p->dicBufSize)
1033
103k
      p->dicPos = 0;
1034
230k
    dicPos = p->dicPos;
1035
230k
    if (outSize > p->dicBufSize - dicPos)
1036
52.7k
    {
1037
52.7k
      outSizeCur = p->dicBufSize;
1038
52.7k
      curFinishMode = LZMA_FINISH_ANY;
1039
52.7k
    }
1040
177k
    else
1041
177k
    {
1042
177k
      outSizeCur = dicPos + outSize;
1043
177k
      curFinishMode = finishMode;
1044
177k
    }
1045
1046
230k
    res = LzmaDec_DecodeToDic(p, outSizeCur, src, &inSizeCur, curFinishMode, status);
1047
230k
    src += inSizeCur;
1048
230k
    inSize -= inSizeCur;
1049
230k
    *srcLen += inSizeCur;
1050
230k
    outSizeCur = p->dicPos - dicPos;
1051
230k
    memcpy(dest, p->dic + dicPos, outSizeCur);
1052
230k
    dest += outSizeCur;
1053
230k
    outSize -= outSizeCur;
1054
230k
    *destLen += outSizeCur;
1055
230k
    if (res != 0)
1056
864
      return res;
1057
229k
    if (outSizeCur == 0 || outSize == 0)
1058
174k
      return SZ_OK;
1059
229k
  }
1060
175k
}
1061
1062
void LzmaDec_FreeProbs(CLzmaDec *p, ISzAllocPtr alloc)
1063
82.3k
{
1064
82.3k
  ISzAlloc_Free(alloc, p->probs);
1065
82.3k
  p->probs = NULL;
1066
82.3k
}
1067
1068
static void LzmaDec_FreeDict(CLzmaDec *p, ISzAllocPtr alloc)
1069
48.9k
{
1070
48.9k
  ISzAlloc_Free(alloc, p->dic);
1071
48.9k
  p->dic = NULL;
1072
48.9k
}
1073
1074
void LzmaDec_Free(CLzmaDec *p, ISzAllocPtr alloc)
1075
24.1k
{
1076
24.1k
  LzmaDec_FreeProbs(p, alloc);
1077
24.1k
  LzmaDec_FreeDict(p, alloc);
1078
24.1k
}
1079
1080
SRes LzmaProps_Decode(CLzmaProps *p, const Byte *data, unsigned size)
1081
75.8k
{
1082
75.8k
  UInt32 dicSize;
1083
75.8k
  Byte d;
1084
  
1085
75.8k
  if (size < LZMA_PROPS_SIZE)
1086
0
    return SZ_ERROR_UNSUPPORTED;
1087
75.8k
  else
1088
75.8k
    dicSize = data[1] | ((UInt32)data[2] << 8) | ((UInt32)data[3] << 16) | ((UInt32)data[4] << 24);
1089
 
1090
75.8k
  if (dicSize < LZMA_DIC_MIN)
1091
1.56k
    dicSize = LZMA_DIC_MIN;
1092
75.8k
  p->dicSize = dicSize;
1093
1094
75.8k
  d = data[0];
1095
75.8k
  if (d >= (9 * 5 * 5))
1096
4
    return SZ_ERROR_UNSUPPORTED;
1097
1098
75.8k
  p->lc = (Byte)(d % 9);
1099
75.8k
  d /= 9;
1100
75.8k
  p->pb = (Byte)(d / 5);
1101
75.8k
  p->lp = (Byte)(d % 5);
1102
1103
75.8k
  return SZ_OK;
1104
75.8k
}
1105
1106
static SRes LzmaDec_AllocateProbs2(CLzmaDec *p, const CLzmaProps *propNew, ISzAllocPtr alloc)
1107
71.4k
{
1108
71.4k
  UInt32 numProbs = LzmaProps_GetNumProbs(propNew);
1109
71.4k
  if (!p->probs || numProbs != p->numProbs)
1110
41.1k
  {
1111
41.1k
    LzmaDec_FreeProbs(p, alloc);
1112
41.1k
    p->probs = (CLzmaProb *)ISzAlloc_Alloc(alloc, numProbs * sizeof(CLzmaProb));
1113
41.1k
    if (!p->probs)
1114
0
      return SZ_ERROR_MEM;
1115
41.1k
    p->probs_1664 = p->probs + 1664;
1116
41.1k
    p->numProbs = numProbs;
1117
41.1k
  }
1118
71.4k
  return SZ_OK;
1119
71.4k
}
1120
1121
SRes LzmaDec_AllocateProbs(CLzmaDec *p, const Byte *props, unsigned propsSize, ISzAllocPtr alloc)
1122
16.9k
{
1123
16.9k
  CLzmaProps propNew;
1124
16.9k
  RINOK(LzmaProps_Decode(&propNew, props, propsSize));
1125
16.9k
  RINOK(LzmaDec_AllocateProbs2(p, &propNew, alloc));
1126
16.9k
  p->prop = propNew;
1127
16.9k
  return SZ_OK;
1128
16.9k
}
1129
1130
SRes LzmaDec_Allocate(CLzmaDec *p, const Byte *props, unsigned propsSize, ISzAllocPtr alloc)
1131
54.5k
{
1132
54.5k
  CLzmaProps propNew;
1133
54.5k
  SizeT dicBufSize;
1134
54.5k
  RINOK(LzmaProps_Decode(&propNew, props, propsSize));
1135
54.5k
  RINOK(LzmaDec_AllocateProbs2(p, &propNew, alloc));
1136
1137
54.5k
  {
1138
54.5k
    UInt32 dictSize = propNew.dicSize;
1139
54.5k
    SizeT mask = ((UInt32)1 << 12) - 1;
1140
54.5k
         if (dictSize >= ((UInt32)1 << 30)) mask = ((UInt32)1 << 22) - 1;
1141
54.1k
    else if (dictSize >= ((UInt32)1 << 22)) mask = ((UInt32)1 << 20) - 1;;
1142
54.5k
    dicBufSize = ((SizeT)dictSize + mask) & ~mask;
1143
54.5k
    if (dicBufSize < dictSize)
1144
0
      dicBufSize = dictSize;
1145
54.5k
  }
1146
1147
54.5k
  if (!p->dic || dicBufSize != p->dicBufSize)
1148
24.7k
  {
1149
24.7k
    LzmaDec_FreeDict(p, alloc);
1150
24.7k
    p->dic = (Byte *)ISzAlloc_Alloc(alloc, dicBufSize);
1151
24.7k
    if (!p->dic)
1152
5
    {
1153
5
      LzmaDec_FreeProbs(p, alloc);
1154
5
      return SZ_ERROR_MEM;
1155
5
    }
1156
24.7k
  }
1157
54.4k
  p->dicBufSize = dicBufSize;
1158
54.4k
  p->prop = propNew;
1159
54.4k
  return SZ_OK;
1160
54.5k
}
1161
1162
SRes LzmaDecode(Byte *dest, SizeT *destLen, const Byte *src, SizeT *srcLen,
1163
    const Byte *propData, unsigned propSize, ELzmaFinishMode finishMode,
1164
    ELzmaStatus *status, ISzAllocPtr alloc)
1165
6.14k
{
1166
6.14k
  CLzmaDec p;
1167
6.14k
  SRes res;
1168
6.14k
  SizeT outSize = *destLen, inSize = *srcLen;
1169
6.14k
  *destLen = *srcLen = 0;
1170
6.14k
  *status = LZMA_STATUS_NOT_SPECIFIED;
1171
6.14k
  if (inSize < RC_INIT_SIZE)
1172
0
    return SZ_ERROR_INPUT_EOF;
1173
6.14k
  LzmaDec_Construct(&p);
1174
6.14k
  RINOK(LzmaDec_AllocateProbs(&p, propData, propSize, alloc));
1175
6.14k
  p.dic = dest;
1176
6.14k
  p.dicBufSize = outSize;
1177
6.14k
  LzmaDec_Init(&p);
1178
6.14k
  *srcLen = inSize;
1179
6.14k
  res = LzmaDec_DecodeToDic(&p, outSize, src, srcLen, finishMode, status);
1180
6.14k
  *destLen = p.dicPos;
1181
6.14k
  if (res == SZ_OK && *status == LZMA_STATUS_NEEDS_MORE_INPUT)
1182
0
    res = SZ_ERROR_INPUT_EOF;
1183
6.14k
  LzmaDec_FreeProbs(&p, alloc);
1184
6.14k
  return res;
1185
6.14k
}