Coverage Report

Created: 2026-02-24 06:32

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/zstd/lib/legacy/zstd_v01.c
Line
Count
Source
1
/*
2
 * Copyright (c) Yann Collet, Meta Platforms, Inc. and affiliates.
3
 * All rights reserved.
4
 *
5
 * This source code is licensed under both the BSD-style license (found in the
6
 * LICENSE file in the root directory of this source tree) and the GPLv2 (found
7
 * in the COPYING file in the root directory of this source tree).
8
 * You may select, at your option, one of the above-listed licenses.
9
 */
10
11
12
/******************************************
13
*  Includes
14
******************************************/
15
#include <stddef.h>    /* size_t, ptrdiff_t */
16
#include "zstd_v01.h"
17
#include "../common/compiler.h"
18
#include "../common/error_private.h"
19
20
21
/******************************************
22
*  Static allocation
23
******************************************/
24
/* You can statically allocate FSE CTable/DTable as a table of unsigned using below macro */
25
#define FSE_DTABLE_SIZE_U32(maxTableLog)                   (1 + (1<<maxTableLog))
26
27
/* You can statically allocate Huff0 DTable as a table of unsigned short using below macro */
28
#define HUF_DTABLE_SIZE_U16(maxTableLog)   (1 + (1<<maxTableLog))
29
#define HUF_CREATE_STATIC_DTABLE(DTable, maxTableLog) \
30
344
        unsigned short DTable[HUF_DTABLE_SIZE_U16(maxTableLog)] = { maxTableLog }
31
32
33
/******************************************
34
*  Error Management
35
******************************************/
36
#define FSE_LIST_ERRORS(ITEM) \
37
        ITEM(FSE_OK_NoError) ITEM(FSE_ERROR_GENERIC) \
38
        ITEM(FSE_ERROR_tableLog_tooLarge) ITEM(FSE_ERROR_maxSymbolValue_tooLarge) ITEM(FSE_ERROR_maxSymbolValue_tooSmall) \
39
        ITEM(FSE_ERROR_dstSize_tooSmall) ITEM(FSE_ERROR_srcSize_wrong)\
40
        ITEM(FSE_ERROR_corruptionDetected) \
41
        ITEM(FSE_ERROR_maxCode)
42
43
#define FSE_GENERATE_ENUM(ENUM) ENUM,
44
typedef enum { FSE_LIST_ERRORS(FSE_GENERATE_ENUM) } FSE_errorCodes;  /* enum is exposed, to detect & handle specific errors; compare function result to -enum value */
45
46
47
/******************************************
48
*  FSE symbol compression API
49
******************************************/
50
/*
51
   This API consists of small unitary functions, which highly benefit from being inlined.
52
   You will want to enable link-time-optimization to ensure these functions are properly inlined in your binary.
53
   Visual seems to do it automatically.
54
   For gcc or clang, you'll need to add -flto flag at compilation and linking stages.
55
   If none of these solutions is applicable, include "fse.c" directly.
56
*/
57
58
typedef unsigned FSE_CTable;   /* don't allocate that. It's just a way to be more restrictive than void* */
59
typedef unsigned FSE_DTable;   /* don't allocate that. It's just a way to be more restrictive than void* */
60
61
typedef struct
62
{
63
    size_t bitContainer;
64
    int    bitPos;
65
    char*  startPtr;
66
    char*  ptr;
67
    char*  endPtr;
68
} FSE_CStream_t;
69
70
typedef struct
71
{
72
    ptrdiff_t   value;
73
    const void* stateTable;
74
    const void* symbolTT;
75
    unsigned    stateLog;
76
} FSE_CState_t;
77
78
typedef struct
79
{
80
    size_t   bitContainer;
81
    unsigned bitsConsumed;
82
    const char* ptr;
83
    const char* start;
84
} FSE_DStream_t;
85
86
typedef struct
87
{
88
    size_t      state;
89
    const void* table;   /* precise table may vary, depending on U16 */
90
} FSE_DState_t;
91
92
typedef enum { FSE_DStream_unfinished = 0,
93
               FSE_DStream_endOfBuffer = 1,
94
               FSE_DStream_completed = 2,
95
               FSE_DStream_tooFar = 3 } FSE_DStream_status;  /* result of FSE_reloadDStream() */
96
               /* 1,2,4,8 would be better for bitmap combinations, but slows down performance a bit ... ?! */
97
98
99
/****************************************************************
100
*  Tuning parameters
101
****************************************************************/
102
/* MEMORY_USAGE :
103
*  Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.)
104
*  Increasing memory usage improves compression ratio
105
*  Reduced memory usage can improve speed, due to cache effect
106
*  Recommended max value is 14, for 16KB, which nicely fits into Intel x86 L1 cache */
107
5.08k
#define FSE_MAX_MEMORY_USAGE 14
108
#define FSE_DEFAULT_MEMORY_USAGE 13
109
110
/* FSE_MAX_SYMBOL_VALUE :
111
*  Maximum symbol value authorized.
112
*  Required for proper stack allocation */
113
1.14k
#define FSE_MAX_SYMBOL_VALUE 255
114
115
116
/****************************************************************
117
*  template functions type & suffix
118
****************************************************************/
119
222k
#define FSE_FUNCTION_TYPE BYTE
120
#define FSE_FUNCTION_EXTENSION
121
122
123
/****************************************************************
124
*  Byte symbol type
125
****************************************************************/
126
typedef struct
127
{
128
    unsigned short newState;
129
    unsigned char  symbol;
130
    unsigned char  nbBits;
131
} FSE_decode_t;   /* size == U32 */
132
133
134
135
/****************************************************************
136
*  Compiler specifics
137
****************************************************************/
138
#ifdef _MSC_VER    /* Visual Studio */
139
#  define FORCE_INLINE static __forceinline
140
#  include <intrin.h>                    /* For Visual 2005 */
141
#  pragma warning(disable : 4127)        /* disable: C4127: conditional expression is constant */
142
#  pragma warning(disable : 4214)        /* disable: C4214: non-int bitfields */
143
#else
144
#  define GCC_VERSION (__GNUC__ * 100 + __GNUC_MINOR__)
145
#  if defined (__cplusplus) || defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L   /* C99 */
146
#    ifdef __GNUC__
147
#      define FORCE_INLINE static inline __attribute__((always_inline))
148
#    else
149
#      define FORCE_INLINE static inline
150
#    endif
151
#  else
152
#    define FORCE_INLINE static
153
#  endif /* __STDC_VERSION__ */
154
#endif
155
156
157
/****************************************************************
158
*  Includes
159
****************************************************************/
160
#include <stdlib.h>     /* malloc, free, qsort */
161
#include <string.h>     /* memcpy, memset */
162
#include <stdio.h>      /* printf (debug) */
163
164
165
#ifndef MEM_ACCESS_MODULE
166
#define MEM_ACCESS_MODULE
167
/****************************************************************
168
*  Basic Types
169
*****************************************************************/
170
#if defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L   /* C99 */
171
# include <stdint.h>
172
typedef  uint8_t BYTE;
173
typedef uint16_t U16;
174
typedef  int16_t S16;
175
typedef uint32_t U32;
176
typedef  int32_t S32;
177
typedef uint64_t U64;
178
typedef  int64_t S64;
179
#else
180
typedef unsigned char       BYTE;
181
typedef unsigned short      U16;
182
typedef   signed short      S16;
183
typedef unsigned int        U32;
184
typedef   signed int        S32;
185
typedef unsigned long long  U64;
186
typedef   signed long long  S64;
187
#endif
188
189
#endif   /* MEM_ACCESS_MODULE */
190
191
/****************************************************************
192
*  Memory I/O
193
*****************************************************************/
194
195
static unsigned FSE_32bits(void)
196
880k
{
197
880k
    return sizeof(void*)==4;
198
880k
}
199
200
static unsigned FSE_isLittleEndian(void)
201
328k
{
202
328k
    const union { U32 i; BYTE c[4]; } one = { 1 };   /* don't use static : performance detrimental  */
203
328k
    return one.c[0];
204
328k
}
205
206
static U16 FSE_read16(const void* memPtr)
207
468
{
208
468
    U16 val; memcpy(&val, memPtr, sizeof(val)); return val;
209
468
}
210
211
static U32 FSE_read32(const void* memPtr)
212
12.5k
{
213
12.5k
    U32 val; memcpy(&val, memPtr, sizeof(val)); return val;
214
12.5k
}
215
216
static U64 FSE_read64(const void* memPtr)
217
315k
{
218
315k
    U64 val; memcpy(&val, memPtr, sizeof(val)); return val;
219
315k
}
220
221
static U16 FSE_readLE16(const void* memPtr)
222
468
{
223
468
    if (FSE_isLittleEndian())
224
468
        return FSE_read16(memPtr);
225
0
    else
226
0
    {
227
0
        const BYTE* p = (const BYTE*)memPtr;
228
0
        return (U16)(p[0] + (p[1]<<8));
229
0
    }
230
468
}
231
232
static U32 FSE_readLE32(const void* memPtr)
233
12.5k
{
234
12.5k
    if (FSE_isLittleEndian())
235
12.5k
        return FSE_read32(memPtr);
236
0
    else
237
0
    {
238
0
        const BYTE* p = (const BYTE*)memPtr;
239
0
        return (U32)((U32)p[0] + ((U32)p[1]<<8) + ((U32)p[2]<<16) + ((U32)p[3]<<24));
240
0
    }
241
12.5k
}
242
243
244
static U64 FSE_readLE64(const void* memPtr)
245
315k
{
246
315k
    if (FSE_isLittleEndian())
247
315k
        return FSE_read64(memPtr);
248
0
    else
249
0
    {
250
0
        const BYTE* p = (const BYTE*)memPtr;
251
0
        return (U64)((U64)p[0] + ((U64)p[1]<<8) + ((U64)p[2]<<16) + ((U64)p[3]<<24)
252
0
                     + ((U64)p[4]<<32) + ((U64)p[5]<<40) + ((U64)p[6]<<48) + ((U64)p[7]<<56));
253
0
    }
254
315k
}
255
256
static size_t FSE_readLEST(const void* memPtr)
257
315k
{
258
315k
    if (FSE_32bits())
259
0
        return (size_t)FSE_readLE32(memPtr);
260
315k
    else
261
315k
        return (size_t)FSE_readLE64(memPtr);
262
315k
}
263
264
265
266
/****************************************************************
267
*  Constants
268
*****************************************************************/
269
5.08k
#define FSE_MAX_TABLELOG  (FSE_MAX_MEMORY_USAGE-2)
270
#define FSE_MAX_TABLESIZE (1U<<FSE_MAX_TABLELOG)
271
#define FSE_MAXTABLESIZE_MASK (FSE_MAX_TABLESIZE-1)
272
#define FSE_DEFAULT_TABLELOG (FSE_DEFAULT_MEMORY_USAGE-2)
273
1.06k
#define FSE_MIN_TABLELOG 5
274
275
1.06k
#define FSE_TABLELOG_ABSOLUTE_MAX 15
276
#if FSE_MAX_TABLELOG > FSE_TABLELOG_ABSOLUTE_MAX
277
#error "FSE_MAX_TABLELOG > FSE_TABLELOG_ABSOLUTE_MAX is not supported"
278
#endif
279
280
281
/****************************************************************
282
*  Error Management
283
****************************************************************/
284
344
#define FSE_STATIC_ASSERT(c) { enum { FSE_static_assert = 1/(int)(!!(c)) }; }   /* use only *after* variable declarations */
285
286
287
/****************************************************************
288
*  Complex types
289
****************************************************************/
290
typedef struct
291
{
292
    int deltaFindState;
293
    U32 deltaNbBits;
294
} FSE_symbolCompressionTransform; /* total 8 bytes */
295
296
typedef U32 DTable_max_t[FSE_DTABLE_SIZE_U32(FSE_MAX_TABLELOG)];
297
298
/****************************************************************
299
*  Internal functions
300
****************************************************************/
301
FORCE_INLINE unsigned FSE_highbit32 (U32 val)
302
225k
{
303
#   if defined(_MSC_VER)   /* Visual */
304
    unsigned long r;
305
    return _BitScanReverse(&r, val) ? (unsigned)r : 0;
306
#   elif defined(__GNUC__) && (GCC_VERSION >= 304)   /* GCC Intrinsic */
307
    return __builtin_clz (val) ^ 31;
308
#   else   /* Software version */
309
    static const unsigned DeBruijnClz[32] = { 0, 9, 1, 10, 13, 21, 2, 29, 11, 14, 16, 18, 22, 25, 3, 30, 8, 12, 20, 28, 15, 17, 24, 7, 19, 27, 23, 6, 26, 5, 4, 31 };
310
    U32 v = val;
311
    unsigned r;
312
    v |= v >> 1;
313
    v |= v >> 2;
314
    v |= v >> 4;
315
    v |= v >> 8;
316
    v |= v >> 16;
317
    r = DeBruijnClz[ (U32) (v * 0x07C4ACDDU) >> 27];
318
    return r;
319
#   endif
320
225k
}
321
322
323
/****************************************************************
324
*  Templates
325
****************************************************************/
326
/*
327
  designed to be included
328
  for type-specific functions (template emulation in C)
329
  Objective is to write these functions only once, for improved maintenance
330
*/
331
332
/* safety checks */
333
#ifndef FSE_FUNCTION_EXTENSION
334
#  error "FSE_FUNCTION_EXTENSION must be defined"
335
#endif
336
#ifndef FSE_FUNCTION_TYPE
337
#  error "FSE_FUNCTION_TYPE must be defined"
338
#endif
339
340
/* Function names */
341
#define FSE_CAT(X,Y) X##Y
342
#define FSE_FUNCTION_NAME(X,Y) FSE_CAT(X,Y)
343
#define FSE_TYPE_NAME(X,Y) FSE_CAT(X,Y)
344
345
346
347
995
static U32 FSE_tableStep(U32 tableSize) { return (tableSize>>1) + (tableSize>>3) + 3; }
348
349
995
#define FSE_DECODE_TYPE FSE_decode_t
350
351
352
typedef struct {
353
    U16 tableLog;
354
    U16 fastMode;
355
} FSE_DTableHeader;   /* sizeof U32 */
356
357
static size_t FSE_buildDTable
358
(FSE_DTable* dt, const short* normalizedCounter, unsigned maxSymbolValue, unsigned tableLog)
359
995
{
360
995
    void* ptr = dt;
361
995
    FSE_DTableHeader* const DTableH = (FSE_DTableHeader*)ptr;
362
995
    FSE_DECODE_TYPE* const tableDecode = (FSE_DECODE_TYPE*)(ptr) + 1;   /* because dt is unsigned, 32-bits aligned on 32-bits */
363
995
    const U32 tableSize = 1 << tableLog;
364
995
    const U32 tableMask = tableSize-1;
365
995
    const U32 step = FSE_tableStep(tableSize);
366
995
    U16 symbolNext[FSE_MAX_SYMBOL_VALUE+1];
367
995
    U32 position = 0;
368
995
    U32 highThreshold = tableSize-1;
369
995
    const S16 largeLimit= (S16)(1 << (tableLog-1));
370
995
    U32 noLarge = 1;
371
995
    U32 s;
372
373
    /* Sanity Checks */
374
995
    if (maxSymbolValue > FSE_MAX_SYMBOL_VALUE) return (size_t)-FSE_ERROR_maxSymbolValue_tooLarge;
375
995
    if (tableLog > FSE_MAX_TABLELOG) return (size_t)-FSE_ERROR_tableLog_tooLarge;
376
377
    /* Init, lay down lowprob symbols */
378
995
    DTableH[0].tableLog = (U16)tableLog;
379
11.0k
    for (s=0; s<=maxSymbolValue; s++)
380
10.0k
    {
381
10.0k
        if (normalizedCounter[s]==-1)
382
4.31k
        {
383
4.31k
            tableDecode[highThreshold--].symbol = (FSE_FUNCTION_TYPE)s;
384
4.31k
            symbolNext[s] = 1;
385
4.31k
        }
386
5.69k
        else
387
5.69k
        {
388
5.69k
            if (normalizedCounter[s] >= largeLimit) noLarge=0;
389
5.69k
            symbolNext[s] = normalizedCounter[s];
390
5.69k
        }
391
10.0k
    }
392
393
    /* Spread symbols */
394
11.0k
    for (s=0; s<=maxSymbolValue; s++)
395
10.0k
    {
396
10.0k
        int i;
397
228k
        for (i=0; i<normalizedCounter[s]; i++)
398
218k
        {
399
218k
            tableDecode[position].symbol = (FSE_FUNCTION_TYPE)s;
400
218k
            position = (position + step) & tableMask;
401
222k
            while (position > highThreshold) position = (position + step) & tableMask;   /* lowprob area */
402
218k
        }
403
10.0k
    }
404
405
995
    if (position!=0) return (size_t)-FSE_ERROR_GENERIC;   /* position must reach all cells once, otherwise normalizedCounter is incorrect */
406
407
    /* Build Decoding table */
408
995
    {
409
995
        U32 i;
410
223k
        for (i=0; i<tableSize; i++)
411
222k
        {
412
222k
            FSE_FUNCTION_TYPE symbol = (FSE_FUNCTION_TYPE)(tableDecode[i].symbol);
413
222k
            U16 nextState = symbolNext[symbol]++;
414
222k
            tableDecode[i].nbBits = (BYTE) (tableLog - FSE_highbit32 ((U32)nextState) );
415
222k
            tableDecode[i].newState = (U16) ( (nextState << tableDecode[i].nbBits) - tableSize);
416
222k
        }
417
995
    }
418
419
995
    DTableH->fastMode = (U16)noLarge;
420
995
    return 0;
421
995
}
422
423
424
/******************************************
425
*  FSE byte symbol
426
******************************************/
427
#ifndef FSE_COMMONDEFS_ONLY
428
429
4.17k
static unsigned FSE_isError(size_t code) { return (code > (size_t)(-FSE_ERROR_maxCode)); }
430
431
static short FSE_abs(short a)
432
10.6k
{
433
10.6k
    return a<0? (short)-a : a;
434
10.6k
}
435
436
437
/****************************************************************
438
*  Header bitstream management
439
****************************************************************/
440
static size_t FSE_readNCount (short* normalizedCounter, unsigned* maxSVPtr, unsigned* tableLogPtr,
441
                 const void* headerBuffer, size_t hbSize)
442
1.07k
{
443
1.07k
    const BYTE* const istart = (const BYTE*) headerBuffer;
444
1.07k
    const BYTE* const iend = istart + hbSize;
445
1.07k
    const BYTE* ip = istart;
446
1.07k
    int nbBits;
447
1.07k
    int remaining;
448
1.07k
    int threshold;
449
1.07k
    U32 bitStream;
450
1.07k
    int bitCount;
451
1.07k
    unsigned charnum = 0;
452
1.07k
    int previous0 = 0;
453
454
1.07k
    if (hbSize < 4) return (size_t)-FSE_ERROR_srcSize_wrong;
455
1.06k
    bitStream = FSE_readLE32(ip);
456
1.06k
    nbBits = (bitStream & 0xF) + FSE_MIN_TABLELOG;   /* extract tableLog */
457
1.06k
    if (nbBits > FSE_TABLELOG_ABSOLUTE_MAX) return (size_t)-FSE_ERROR_tableLog_tooLarge;
458
1.05k
    bitStream >>= 4;
459
1.05k
    bitCount = 4;
460
1.05k
    *tableLogPtr = nbBits;
461
1.05k
    remaining = (1<<nbBits)+1;
462
1.05k
    threshold = 1<<nbBits;
463
1.05k
    nbBits++;
464
465
11.6k
    while ((remaining>1) && (charnum<=*maxSVPtr))
466
10.6k
    {
467
10.6k
        if (previous0)
468
1.31k
        {
469
1.31k
            unsigned n0 = charnum;
470
1.58k
            while ((bitStream & 0xFFFF) == 0xFFFF)
471
273
            {
472
273
                n0+=24;
473
273
                if (ip < iend-5)
474
239
                {
475
239
                    ip+=2;
476
239
                    bitStream = FSE_readLE32(ip) >> bitCount;
477
239
                }
478
34
                else
479
34
                {
480
34
                    bitStream >>= 16;
481
34
                    bitCount+=16;
482
34
                }
483
273
            }
484
1.84k
            while ((bitStream & 3) == 3)
485
534
            {
486
534
                n0+=3;
487
534
                bitStream>>=2;
488
534
                bitCount+=2;
489
534
            }
490
1.31k
            n0 += bitStream & 3;
491
1.31k
            bitCount += 2;
492
1.31k
            if (n0 > *maxSVPtr) return (size_t)-FSE_ERROR_maxSymbolValue_tooSmall;
493
5.07k
            while (charnum < n0) normalizedCounter[charnum++] = 0;
494
1.30k
            if ((ip <= iend-7) || (ip + (bitCount>>3) <= iend-4))
495
592
            {
496
592
                ip += bitCount>>3;
497
592
                bitCount &= 7;
498
592
                bitStream = FSE_readLE32(ip) >> bitCount;
499
592
            }
500
713
            else
501
713
                bitStream >>= 2;
502
1.30k
        }
503
10.6k
        {
504
10.6k
            const short max = (short)((2*threshold-1)-remaining);
505
10.6k
            short count;
506
507
10.6k
            if ((bitStream & (threshold-1)) < (U32)max)
508
7.49k
            {
509
7.49k
                count = (short)(bitStream & (threshold-1));
510
7.49k
                bitCount   += nbBits-1;
511
7.49k
            }
512
3.12k
            else
513
3.12k
            {
514
3.12k
                count = (short)(bitStream & (2*threshold-1));
515
3.12k
                if (count >= threshold) count -= max;
516
3.12k
                bitCount   += nbBits;
517
3.12k
            }
518
519
10.6k
            count--;   /* extra accuracy */
520
10.6k
            remaining -= FSE_abs(count);
521
10.6k
            normalizedCounter[charnum++] = count;
522
10.6k
            previous0 = !count;
523
17.2k
            while (remaining < threshold)
524
6.60k
            {
525
6.60k
                nbBits--;
526
6.60k
                threshold >>= 1;
527
6.60k
            }
528
529
10.6k
            {
530
10.6k
                if ((ip <= iend-7) || (ip + (bitCount>>3) <= iend-4))
531
8.46k
                {
532
8.46k
                    ip += bitCount>>3;
533
8.46k
                    bitCount &= 7;
534
8.46k
                }
535
2.15k
                else
536
2.15k
                {
537
2.15k
                    bitCount -= (int)(8 * (iend - 4 - ip));
538
2.15k
                    ip = iend - 4;
539
2.15k
                }
540
10.6k
                bitStream = FSE_readLE32(ip) >> (bitCount & 31);
541
10.6k
            }
542
10.6k
        }
543
10.6k
    }
544
1.04k
    if (remaining != 1) return (size_t)-FSE_ERROR_GENERIC;
545
1.03k
    *maxSVPtr = charnum-1;
546
547
1.03k
    ip += (bitCount+7)>>3;
548
1.03k
    if ((size_t)(ip-istart) > hbSize) return (size_t)-FSE_ERROR_srcSize_wrong;
549
1.00k
    return ip-istart;
550
1.03k
}
551
552
553
/*********************************************************
554
*  Decompression (Byte symbols)
555
*********************************************************/
556
static size_t FSE_buildDTable_rle (FSE_DTable* dt, BYTE symbolValue)
557
1.55k
{
558
1.55k
    void* ptr = dt;
559
1.55k
    FSE_DTableHeader* const DTableH = (FSE_DTableHeader*)ptr;
560
1.55k
    FSE_decode_t* const cell = (FSE_decode_t*)(ptr) + 1;   /* because dt is unsigned */
561
562
1.55k
    DTableH->tableLog = 0;
563
1.55k
    DTableH->fastMode = 0;
564
565
1.55k
    cell->newState = 0;
566
1.55k
    cell->symbol = symbolValue;
567
1.55k
    cell->nbBits = 0;
568
569
1.55k
    return 0;
570
1.55k
}
571
572
573
static size_t FSE_buildDTable_raw (FSE_DTable* dt, unsigned nbBits)
574
2.21k
{
575
2.21k
    void* ptr = dt;
576
2.21k
    FSE_DTableHeader* const DTableH = (FSE_DTableHeader*)ptr;
577
2.21k
    FSE_decode_t* const dinfo = (FSE_decode_t*)(ptr) + 1;   /* because dt is unsigned */
578
2.21k
    const unsigned tableSize = 1 << nbBits;
579
2.21k
    const unsigned tableMask = tableSize - 1;
580
2.21k
    const unsigned maxSymbolValue = tableMask;
581
2.21k
    unsigned s;
582
583
    /* Sanity checks */
584
2.21k
    if (nbBits < 1) return (size_t)-FSE_ERROR_GENERIC;             /* min size */
585
586
    /* Build Decoding Table */
587
2.21k
    DTableH->tableLog = (U16)nbBits;
588
2.21k
    DTableH->fastMode = 1;
589
209k
    for (s=0; s<=maxSymbolValue; s++)
590
207k
    {
591
207k
        dinfo[s].newState = 0;
592
207k
        dinfo[s].symbol = (BYTE)s;
593
207k
        dinfo[s].nbBits = (BYTE)nbBits;
594
207k
    }
595
596
2.21k
    return 0;
597
2.21k
}
598
599
600
/* FSE_initDStream
601
 * Initialize a FSE_DStream_t.
602
 * srcBuffer must point at the beginning of an FSE block.
603
 * The function result is the size of the FSE_block (== srcSize).
604
 * If srcSize is too small, the function will return an errorCode;
605
 */
606
static size_t FSE_initDStream(FSE_DStream_t* bitD, const void* srcBuffer, size_t srcSize)
607
2.15k
{
608
2.15k
    if (srcSize < 1) return (size_t)-FSE_ERROR_srcSize_wrong;
609
610
2.14k
    if (srcSize >=  sizeof(size_t))
611
464
    {
612
464
        U32 contain32;
613
464
        bitD->start = (const char*)srcBuffer;
614
464
        bitD->ptr   = (const char*)srcBuffer + srcSize - sizeof(size_t);
615
464
        bitD->bitContainer = FSE_readLEST(bitD->ptr);
616
464
        contain32 = ((const BYTE*)srcBuffer)[srcSize-1];
617
464
        if (contain32 == 0) return (size_t)-FSE_ERROR_GENERIC;   /* stop bit not present */
618
449
        bitD->bitsConsumed = 8 - FSE_highbit32(contain32);
619
449
    }
620
1.68k
    else
621
1.68k
    {
622
1.68k
        U32 contain32;
623
1.68k
        bitD->start = (const char*)srcBuffer;
624
1.68k
        bitD->ptr   = bitD->start;
625
1.68k
        bitD->bitContainer = *(const BYTE*)(bitD->start);
626
1.68k
        switch(srcSize)
627
1.68k
        {
628
28
            case 7: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[6]) << (sizeof(size_t)*8 - 16);
629
                    /* fallthrough */
630
58
            case 6: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[5]) << (sizeof(size_t)*8 - 24);
631
                    /* fallthrough */
632
154
            case 5: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[4]) << (sizeof(size_t)*8 - 32);
633
                    /* fallthrough */
634
193
            case 4: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[3]) << 24;
635
                    /* fallthrough */
636
266
            case 3: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[2]) << 16;
637
                    /* fallthrough */
638
1.40k
            case 2: bitD->bitContainer += (size_t)(((const BYTE*)(bitD->start))[1]) <<  8;
639
                    /* fallthrough */
640
1.68k
            default:;
641
1.68k
        }
642
1.68k
        contain32 = ((const BYTE*)srcBuffer)[srcSize-1];
643
1.68k
        if (contain32 == 0) return (size_t)-FSE_ERROR_GENERIC;   /* stop bit not present */
644
1.66k
        bitD->bitsConsumed = 8 - FSE_highbit32(contain32);
645
1.66k
        bitD->bitsConsumed += (U32)(sizeof(size_t) - srcSize)*8;
646
1.66k
    }
647
648
2.11k
    return srcSize;
649
2.14k
}
650
651
652
/*!FSE_lookBits
653
 * Provides next n bits from the bitContainer.
654
 * bitContainer is not modified (bits are still present for next read/look)
655
 * On 32-bits, maxNbBits==25
656
 * On 64-bits, maxNbBits==57
657
 * return : value extracted.
658
 */
659
static size_t FSE_lookBits(FSE_DStream_t* bitD, U32 nbBits)
660
708k
{
661
708k
    const U32 bitMask = sizeof(bitD->bitContainer)*8 - 1;
662
708k
    return ((bitD->bitContainer << (bitD->bitsConsumed & bitMask)) >> 1) >> ((bitMask-nbBits) & bitMask);
663
708k
}
664
665
static size_t FSE_lookBitsFast(FSE_DStream_t* bitD, U32 nbBits)   /* only if nbBits >= 1 !! */
666
796k
{
667
796k
    const U32 bitMask = sizeof(bitD->bitContainer)*8 - 1;
668
796k
    return (bitD->bitContainer << (bitD->bitsConsumed & bitMask)) >> (((bitMask+1)-nbBits) & bitMask);
669
796k
}
670
671
static void FSE_skipBits(FSE_DStream_t* bitD, U32 nbBits)
672
1.50M
{
673
1.50M
    bitD->bitsConsumed += nbBits;
674
1.50M
}
675
676
677
/*!FSE_readBits
678
 * Read next n bits from the bitContainer.
679
 * On 32-bits, don't read more than maxNbBits==25
680
 * On 64-bits, don't read more than maxNbBits==57
681
 * Use the fast variant *only* if n >= 1.
682
 * return : value extracted.
683
 */
684
static size_t FSE_readBits(FSE_DStream_t* bitD, U32 nbBits)
685
708k
{
686
708k
    size_t value = FSE_lookBits(bitD, nbBits);
687
708k
    FSE_skipBits(bitD, nbBits);
688
708k
    return value;
689
708k
}
690
691
static size_t FSE_readBitsFast(FSE_DStream_t* bitD, U32 nbBits)   /* only if nbBits >= 1 !! */
692
2.98k
{
693
2.98k
    size_t value = FSE_lookBitsFast(bitD, nbBits);
694
2.98k
    FSE_skipBits(bitD, nbBits);
695
2.98k
    return value;
696
2.98k
}
697
698
static unsigned FSE_reloadDStream(FSE_DStream_t* bitD)
699
414k
{
700
414k
    if (bitD->bitsConsumed > (sizeof(bitD->bitContainer)*8))  /* should never happen */
701
12.9k
        return FSE_DStream_tooFar;
702
703
401k
    if (bitD->ptr >= bitD->start + sizeof(bitD->bitContainer))
704
312k
    {
705
312k
        bitD->ptr -= bitD->bitsConsumed >> 3;
706
312k
        bitD->bitsConsumed &= 7;
707
312k
        bitD->bitContainer = FSE_readLEST(bitD->ptr);
708
312k
        return FSE_DStream_unfinished;
709
312k
    }
710
88.6k
    if (bitD->ptr == bitD->start)
711
86.4k
    {
712
86.4k
        if (bitD->bitsConsumed < sizeof(bitD->bitContainer)*8) return FSE_DStream_endOfBuffer;
713
20.4k
        return FSE_DStream_completed;
714
86.4k
    }
715
2.23k
    {
716
2.23k
        U32 nbBytes = bitD->bitsConsumed >> 3;
717
2.23k
        U32 result = FSE_DStream_unfinished;
718
2.23k
        if (bitD->ptr - nbBytes < bitD->start)
719
151
        {
720
151
            nbBytes = (U32)(bitD->ptr - bitD->start);  /* ptr > start */
721
151
            result = FSE_DStream_endOfBuffer;
722
151
        }
723
2.23k
        bitD->ptr -= nbBytes;
724
2.23k
        bitD->bitsConsumed -= nbBytes*8;
725
2.23k
        bitD->bitContainer = FSE_readLEST(bitD->ptr);   /* reminder : srcSize > sizeof(bitD) */
726
2.23k
        return result;
727
88.6k
    }
728
88.6k
}
729
730
731
static void FSE_initDState(FSE_DState_t* DStatePtr, FSE_DStream_t* bitD, const FSE_DTable* dt)
732
4.77k
{
733
4.77k
    const void* ptr = dt;
734
4.77k
    const FSE_DTableHeader* const DTableH = (const FSE_DTableHeader*)ptr;
735
4.77k
    DStatePtr->state = FSE_readBits(bitD, DTableH->tableLog);
736
4.77k
    FSE_reloadDStream(bitD);
737
4.77k
    DStatePtr->table = dt + 1;
738
4.77k
}
739
740
static BYTE FSE_decodeSymbol(FSE_DState_t* DStatePtr, FSE_DStream_t* bitD)
741
529k
{
742
529k
    const FSE_decode_t DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state];
743
529k
    const U32  nbBits = DInfo.nbBits;
744
529k
    BYTE symbol = DInfo.symbol;
745
529k
    size_t lowBits = FSE_readBits(bitD, nbBits);
746
747
529k
    DStatePtr->state = DInfo.newState + lowBits;
748
529k
    return symbol;
749
529k
}
750
751
static BYTE FSE_decodeSymbolFast(FSE_DState_t* DStatePtr, FSE_DStream_t* bitD)
752
2.98k
{
753
2.98k
    const FSE_decode_t DInfo = ((const FSE_decode_t*)(DStatePtr->table))[DStatePtr->state];
754
2.98k
    const U32 nbBits = DInfo.nbBits;
755
2.98k
    BYTE symbol = DInfo.symbol;
756
2.98k
    size_t lowBits = FSE_readBitsFast(bitD, nbBits);
757
758
2.98k
    DStatePtr->state = DInfo.newState + lowBits;
759
2.98k
    return symbol;
760
2.98k
}
761
762
/* FSE_endOfDStream
763
   Tells if bitD has reached end of bitStream or not */
764
765
static unsigned FSE_endOfDStream(const FSE_DStream_t* bitD)
766
5.76k
{
767
5.76k
    return ((bitD->ptr == bitD->start) && (bitD->bitsConsumed == sizeof(bitD->bitContainer)*8));
768
5.76k
}
769
770
static unsigned FSE_endOfDState(const FSE_DState_t* DStatePtr)
771
772
{
772
772
    return DStatePtr->state == 0;
773
772
}
774
775
776
FORCE_INLINE size_t FSE_decompress_usingDTable_generic(
777
          void* dst, size_t maxDstSize,
778
    const void* cSrc, size_t cSrcSize,
779
    const FSE_DTable* dt, const unsigned fast)
780
114
{
781
114
    BYTE* const ostart = (BYTE*) dst;
782
114
    BYTE* op = ostart;
783
114
    BYTE* const omax = op + maxDstSize;
784
114
    BYTE* const olimit = omax-3;
785
786
114
    FSE_DStream_t bitD;
787
114
    FSE_DState_t state1;
788
114
    FSE_DState_t state2;
789
114
    size_t errorCode;
790
791
    /* Init */
792
114
    errorCode = FSE_initDStream(&bitD, cSrc, cSrcSize);   /* replaced last arg by maxCompressed Size */
793
114
    if (FSE_isError(errorCode)) return errorCode;
794
795
106
    FSE_initDState(&state1, &bitD, dt);
796
106
    FSE_initDState(&state2, &bitD, dt);
797
798
9.70k
#define FSE_GETSYMBOL(statePtr) fast ? FSE_decodeSymbolFast(statePtr, &bitD) : FSE_decodeSymbol(statePtr, &bitD)
799
800
    /* 4 symbols per loop */
801
1.47k
    for ( ; (FSE_reloadDStream(&bitD)==FSE_DStream_unfinished) && (op<olimit) ; op+=4)
802
1.36k
    {
803
1.36k
        op[0] = FSE_GETSYMBOL(&state1);
804
805
1.36k
        if (FSE_MAX_TABLELOG*2+7 > sizeof(bitD.bitContainer)*8)    /* This test must be static */
806
0
            FSE_reloadDStream(&bitD);
807
808
1.36k
        op[1] = FSE_GETSYMBOL(&state2);
809
810
1.36k
        if (FSE_MAX_TABLELOG*4+7 > sizeof(bitD.bitContainer)*8)    /* This test must be static */
811
0
            { if (FSE_reloadDStream(&bitD) > FSE_DStream_unfinished) { op+=2; break; } }
812
813
1.36k
        op[2] = FSE_GETSYMBOL(&state1);
814
815
1.36k
        if (FSE_MAX_TABLELOG*2+7 > sizeof(bitD.bitContainer)*8)    /* This test must be static */
816
0
            FSE_reloadDStream(&bitD);
817
818
1.36k
        op[3] = FSE_GETSYMBOL(&state2);
819
1.36k
    }
820
821
    /* tail */
822
    /* note : FSE_reloadDStream(&bitD) >= FSE_DStream_partiallyFilled; Ends at exactly FSE_DStream_completed */
823
2.20k
    while (1)
824
2.20k
    {
825
2.20k
        if ( (FSE_reloadDStream(&bitD)>FSE_DStream_completed) || (op==omax) || (FSE_endOfDStream(&bitD) && (fast || FSE_endOfDState(&state1))) )
826
52
            break;
827
828
2.15k
        *op++ = FSE_GETSYMBOL(&state1);
829
830
2.15k
        if ( (FSE_reloadDStream(&bitD)>FSE_DStream_completed) || (op==omax) || (FSE_endOfDStream(&bitD) && (fast || FSE_endOfDState(&state2))) )
831
54
            break;
832
833
2.09k
        *op++ = FSE_GETSYMBOL(&state2);
834
2.09k
    }
835
836
    /* end ? */
837
106
    if (FSE_endOfDStream(&bitD) && FSE_endOfDState(&state1) && FSE_endOfDState(&state2))
838
13
        return op-ostart;
839
840
93
    if (op==omax) return (size_t)-FSE_ERROR_dstSize_tooSmall;   /* dst buffer is full, but cSrc unfinished */
841
842
71
    return (size_t)-FSE_ERROR_corruptionDetected;
843
93
}
844
845
846
static size_t FSE_decompress_usingDTable(void* dst, size_t originalSize,
847
                            const void* cSrc, size_t cSrcSize,
848
                            const FSE_DTable* dt)
849
114
{
850
114
    FSE_DTableHeader DTableH;
851
114
    memcpy(&DTableH, dt, sizeof(DTableH));   /* memcpy() into local variable, to avoid strict aliasing warning */
852
853
    /* select fast mode (static) */
854
114
    if (DTableH.fastMode) return FSE_decompress_usingDTable_generic(dst, originalSize, cSrc, cSrcSize, dt, 1);
855
70
    return FSE_decompress_usingDTable_generic(dst, originalSize, cSrc, cSrcSize, dt, 0);
856
114
}
857
858
859
static size_t FSE_decompress(void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize)
860
153
{
861
153
    const BYTE* const istart = (const BYTE*)cSrc;
862
153
    const BYTE* ip = istart;
863
153
    short counting[FSE_MAX_SYMBOL_VALUE+1];
864
153
    DTable_max_t dt;   /* Static analyzer seems unable to understand this table will be properly initialized later */
865
153
    unsigned tableLog;
866
153
    unsigned maxSymbolValue = FSE_MAX_SYMBOL_VALUE;
867
153
    size_t errorCode;
868
869
153
    if (cSrcSize<2) return (size_t)-FSE_ERROR_srcSize_wrong;   /* too small input size */
870
871
    /* normal FSE decoding mode */
872
148
    errorCode = FSE_readNCount (counting, &maxSymbolValue, &tableLog, istart, cSrcSize);
873
148
    if (FSE_isError(errorCode)) return errorCode;
874
117
    if (errorCode >= cSrcSize) return (size_t)-FSE_ERROR_srcSize_wrong;   /* too small input size */
875
114
    ip += errorCode;
876
114
    cSrcSize -= errorCode;
877
878
114
    errorCode = FSE_buildDTable (dt, counting, maxSymbolValue, tableLog);
879
114
    if (FSE_isError(errorCode)) return errorCode;
880
881
    /* always return, even if it is an error code */
882
114
    return FSE_decompress_usingDTable (dst, maxDstSize, ip, cSrcSize, dt);
883
114
}
884
885
886
887
/* *******************************************************
888
*  Huff0 : Huffman block compression
889
*********************************************************/
890
153
#define HUF_MAX_SYMBOL_VALUE 255
891
#define HUF_DEFAULT_TABLELOG  12       /* used by default, when not specified */
892
0
#define HUF_MAX_TABLELOG  12           /* max possible tableLog; for allocation purpose; can be modified */
893
12.5k
#define HUF_ABSOLUTEMAX_TABLELOG  16   /* absolute limit of HUF_MAX_TABLELOG. Beyond that value, code does not work */
894
#if (HUF_MAX_TABLELOG > HUF_ABSOLUTEMAX_TABLELOG)
895
#  error "HUF_MAX_TABLELOG is too large !"
896
#endif
897
898
typedef struct HUF_CElt_s {
899
  U16  val;
900
  BYTE nbBits;
901
} HUF_CElt ;
902
903
typedef struct nodeElt_s {
904
    U32 count;
905
    U16 parent;
906
    BYTE byte;
907
    BYTE nbBits;
908
} nodeElt;
909
910
911
/* *******************************************************
912
*  Huff0 : Huffman block decompression
913
*********************************************************/
914
typedef struct {
915
    BYTE byte;
916
    BYTE nbBits;
917
} HUF_DElt;
918
919
static size_t HUF_readDTable (U16* DTable, const void* src, size_t srcSize)
920
344
{
921
344
    BYTE huffWeight[HUF_MAX_SYMBOL_VALUE + 1];
922
344
    U32 rankVal[HUF_ABSOLUTEMAX_TABLELOG + 1];  /* large enough for values from 0 to 16 */
923
344
    U32 weightTotal;
924
344
    U32 maxBits;
925
344
    const BYTE* ip = (const BYTE*) src;
926
344
    size_t iSize;
927
344
    size_t oSize;
928
344
    U32 n;
929
344
    U32 nextRankStart;
930
344
    void* ptr = DTable+1;
931
344
    HUF_DElt* const dt = (HUF_DElt*)ptr;
932
933
344
    if (!srcSize) return (size_t)-FSE_ERROR_srcSize_wrong;
934
344
    iSize = ip[0];
935
936
344
    FSE_STATIC_ASSERT(sizeof(HUF_DElt) == sizeof(U16));   /* if compilation fails here, assertion is false */
937
    //memset(huffWeight, 0, sizeof(huffWeight));   /* should not be necessary, but some analyzer complain ... */
938
344
    if (iSize >= 128)  /* special header */
939
190
    {
940
190
        if (iSize >= (242))   /* RLE */
941
161
        {
942
161
            static int l[14] = { 1, 2, 3, 4, 7, 8, 15, 16, 31, 32, 63, 64, 127, 128 };
943
161
            oSize = l[iSize-242];
944
161
            memset(huffWeight, 1, sizeof(huffWeight));
945
161
            iSize = 0;
946
161
        }
947
29
        else   /* Incompressible */
948
29
        {
949
29
            oSize = iSize - 127;
950
29
            iSize = ((oSize+1)/2);
951
29
            if (iSize+1 > srcSize) return (size_t)-FSE_ERROR_srcSize_wrong;
952
23
            ip += 1;
953
281
            for (n=0; n<oSize; n+=2)
954
258
            {
955
258
                huffWeight[n]   = ip[n/2] >> 4;
956
258
                huffWeight[n+1] = ip[n/2] & 15;
957
258
            }
958
23
        }
959
190
    }
960
154
    else  /* header compressed with FSE (normal case) */
961
154
    {
962
154
        if (iSize+1 > srcSize) return (size_t)-FSE_ERROR_srcSize_wrong;
963
153
        oSize = FSE_decompress(huffWeight, HUF_MAX_SYMBOL_VALUE, ip+1, iSize);   /* max 255 values decoded, last one is implied */
964
153
        if (FSE_isError(oSize)) return oSize;
965
153
    }
966
967
    /* collect weight stats */
968
197
    memset(rankVal, 0, sizeof(rankVal));
969
197
    weightTotal = 0;
970
12.7k
    for (n=0; n<oSize; n++)
971
12.5k
    {
972
12.5k
        if (huffWeight[n] >= HUF_ABSOLUTEMAX_TABLELOG) return (size_t)-FSE_ERROR_corruptionDetected;
973
12.5k
        rankVal[huffWeight[n]]++;
974
12.5k
        weightTotal += (1 << huffWeight[n]) >> 1;
975
12.5k
    }
976
196
    if (weightTotal == 0) return (size_t)-FSE_ERROR_corruptionDetected;
977
978
    /* get last non-null symbol weight (implied, total must be 2^n) */
979
195
    maxBits = FSE_highbit32(weightTotal) + 1;
980
195
    if (maxBits > DTable[0]) return (size_t)-FSE_ERROR_tableLog_tooLarge;   /* DTable is too small */
981
183
    DTable[0] = (U16)maxBits;
982
183
    {
983
183
        U32 total = 1 << maxBits;
984
183
        U32 rest = total - weightTotal;
985
183
        U32 verif = 1 << FSE_highbit32(rest);
986
183
        U32 lastWeight = FSE_highbit32(rest) + 1;
987
183
        if (verif != rest) return (size_t)-FSE_ERROR_corruptionDetected;    /* last value must be a clean power of 2 */
988
174
        huffWeight[oSize] = (BYTE)lastWeight;
989
174
        rankVal[lastWeight]++;
990
174
    }
991
992
    /* check tree construction validity */
993
174
    if ((rankVal[1] < 2) || (rankVal[1] & 1)) return (size_t)-FSE_ERROR_corruptionDetected;   /* by construction : at least 2 elts of rank 1, must be even */
994
995
    /* Prepare ranks */
996
172
    nextRankStart = 0;
997
1.18k
    for (n=1; n<=maxBits; n++)
998
1.01k
    {
999
1.01k
        U32 current = nextRankStart;
1000
1.01k
        nextRankStart += (rankVal[n] << (n-1));
1001
1.01k
        rankVal[n] = current;
1002
1.01k
    }
1003
1004
    /* fill DTable */
1005
11.3k
    for (n=0; n<=oSize; n++)
1006
11.1k
    {
1007
11.1k
        const U32 w = huffWeight[n];
1008
11.1k
        const U32 length = (1 << w) >> 1;
1009
11.1k
        U32 i;
1010
11.1k
        HUF_DElt D;
1011
11.1k
        D.byte = (BYTE)n; D.nbBits = (BYTE)(maxBits + 1 - w);
1012
36.1k
        for (i = rankVal[w]; i < rankVal[w] + length; i++)
1013
24.9k
            dt[i] = D;
1014
11.1k
        rankVal[w] += length;
1015
11.1k
    }
1016
1017
172
    return iSize+1;
1018
174
}
1019
1020
1021
static BYTE HUF_decodeSymbol(FSE_DStream_t* Dstream, const HUF_DElt* dt, const U32 dtLog)
1022
793k
{
1023
793k
        const size_t val = FSE_lookBitsFast(Dstream, dtLog); /* note : dtLog >= 1 */
1024
793k
        const BYTE c = dt[val].byte;
1025
793k
        FSE_skipBits(Dstream, dt[val].nbBits);
1026
793k
        return c;
1027
793k
}
1028
1029
static size_t HUF_decompress_usingDTable(   /* -3% slower when non static */
1030
          void* dst, size_t maxDstSize,
1031
    const void* cSrc, size_t cSrcSize,
1032
    const U16* DTable)
1033
165
{
1034
165
    if (cSrcSize < 6) return (size_t)-FSE_ERROR_srcSize_wrong;
1035
156
    {
1036
156
        BYTE* const ostart = (BYTE*) dst;
1037
156
        BYTE* op = ostart;
1038
156
        BYTE* const omax = op + maxDstSize;
1039
156
        BYTE* const olimit = maxDstSize < 15 ? op : omax-15;
1040
1041
156
        const void* ptr = DTable;
1042
156
        const HUF_DElt* const dt = (const HUF_DElt*)(ptr)+1;
1043
156
        const U32 dtLog = DTable[0];
1044
156
        size_t errorCode;
1045
156
        U32 reloadStatus;
1046
1047
        /* Init */
1048
1049
156
        const U16* jumpTable = (const U16*)cSrc;
1050
156
        const size_t length1 = FSE_readLE16(jumpTable);
1051
156
        const size_t length2 = FSE_readLE16(jumpTable+1);
1052
156
        const size_t length3 = FSE_readLE16(jumpTable+2);
1053
156
        const size_t length4 = cSrcSize - 6 - length1 - length2 - length3;   /* check coherency !! */
1054
156
        const char* const start1 = (const char*)(cSrc) + 6;
1055
156
        const char* const start2 = start1 + length1;
1056
156
        const char* const start3 = start2 + length2;
1057
156
        const char* const start4 = start3 + length3;
1058
156
        FSE_DStream_t bitD1, bitD2, bitD3, bitD4;
1059
1060
156
        if (length1+length2+length3+6 >= cSrcSize) return (size_t)-FSE_ERROR_srcSize_wrong;
1061
1062
132
        errorCode = FSE_initDStream(&bitD1, start1, length1);
1063
132
        if (FSE_isError(errorCode)) return errorCode;
1064
128
        errorCode = FSE_initDStream(&bitD2, start2, length2);
1065
128
        if (FSE_isError(errorCode)) return errorCode;
1066
124
        errorCode = FSE_initDStream(&bitD3, start3, length3);
1067
124
        if (FSE_isError(errorCode)) return errorCode;
1068
119
        errorCode = FSE_initDStream(&bitD4, start4, length4);
1069
119
        if (FSE_isError(errorCode)) return errorCode;
1070
1071
116
        reloadStatus=FSE_reloadDStream(&bitD2);
1072
1073
        /* 16 symbols per loop */
1074
47.2k
        for ( ; (reloadStatus<FSE_DStream_completed) && (op<olimit);  /* D2-3-4 are supposed to be synchronized and finish together */
1075
47.1k
            op+=16, reloadStatus = FSE_reloadDStream(&bitD2) | FSE_reloadDStream(&bitD3) | FSE_reloadDStream(&bitD4), FSE_reloadDStream(&bitD1))
1076
47.1k
        {
1077
47.1k
    #define HUF_DECODE_SYMBOL_0(n, Dstream) \
1078
228k
            op[n] = HUF_decodeSymbol(&Dstream, dt, dtLog);
1079
1080
47.1k
    #define HUF_DECODE_SYMBOL_1(n, Dstream) \
1081
376k
            op[n] = HUF_decodeSymbol(&Dstream, dt, dtLog); \
1082
376k
            if (FSE_32bits() && (HUF_MAX_TABLELOG>12)) FSE_reloadDStream(&Dstream)
1083
1084
47.1k
    #define HUF_DECODE_SYMBOL_2(n, Dstream) \
1085
188k
            op[n] = HUF_decodeSymbol(&Dstream, dt, dtLog); \
1086
188k
            if (FSE_32bits()) FSE_reloadDStream(&Dstream)
1087
1088
47.1k
            HUF_DECODE_SYMBOL_1( 0, bitD1);
1089
47.1k
            HUF_DECODE_SYMBOL_1( 1, bitD2);
1090
47.1k
            HUF_DECODE_SYMBOL_1( 2, bitD3);
1091
47.1k
            HUF_DECODE_SYMBOL_1( 3, bitD4);
1092
47.1k
            HUF_DECODE_SYMBOL_2( 4, bitD1);
1093
47.1k
            HUF_DECODE_SYMBOL_2( 5, bitD2);
1094
47.1k
            HUF_DECODE_SYMBOL_2( 6, bitD3);
1095
47.1k
            HUF_DECODE_SYMBOL_2( 7, bitD4);
1096
47.1k
            HUF_DECODE_SYMBOL_1( 8, bitD1);
1097
47.1k
            HUF_DECODE_SYMBOL_1( 9, bitD2);
1098
47.1k
            HUF_DECODE_SYMBOL_1(10, bitD3);
1099
47.1k
            HUF_DECODE_SYMBOL_1(11, bitD4);
1100
47.1k
            HUF_DECODE_SYMBOL_0(12, bitD1);
1101
47.1k
            HUF_DECODE_SYMBOL_0(13, bitD2);
1102
47.1k
            HUF_DECODE_SYMBOL_0(14, bitD3);
1103
47.1k
            HUF_DECODE_SYMBOL_0(15, bitD4);
1104
47.1k
        }
1105
1106
116
        if (reloadStatus!=FSE_DStream_completed)   /* not complete : some bitStream might be FSE_DStream_unfinished */
1107
87
            return (size_t)-FSE_ERROR_corruptionDetected;
1108
1109
        /* tail */
1110
29
        {
1111
            /* bitTail = bitD1; */   /* *much* slower : -20% !??! */
1112
29
            FSE_DStream_t bitTail;
1113
29
            bitTail.ptr = bitD1.ptr;
1114
29
            bitTail.bitsConsumed = bitD1.bitsConsumed;
1115
29
            bitTail.bitContainer = bitD1.bitContainer;   /* required in case of FSE_DStream_endOfBuffer */
1116
29
            bitTail.start = start1;
1117
39.7k
            for ( ; (FSE_reloadDStream(&bitTail) < FSE_DStream_completed) && (op<omax) ; op++)
1118
39.7k
            {
1119
39.7k
                HUF_DECODE_SYMBOL_0(0, bitTail);
1120
39.7k
            }
1121
1122
29
            if (FSE_endOfDStream(&bitTail))
1123
18
                return op-ostart;
1124
29
        }
1125
1126
11
        if (op==omax) return (size_t)-FSE_ERROR_dstSize_tooSmall;   /* dst buffer is full, but cSrc unfinished */
1127
1128
7
        return (size_t)-FSE_ERROR_corruptionDetected;
1129
11
    }
1130
11
}
1131
1132
1133
static size_t HUF_decompress (void* dst, size_t maxDstSize, const void* cSrc, size_t cSrcSize)
1134
344
{
1135
344
    HUF_CREATE_STATIC_DTABLE(DTable, HUF_MAX_TABLELOG);
1136
344
    const BYTE* ip = (const BYTE*) cSrc;
1137
344
    size_t errorCode;
1138
1139
344
    errorCode = HUF_readDTable (DTable, cSrc, cSrcSize);
1140
344
    if (FSE_isError(errorCode)) return errorCode;
1141
172
    if (errorCode >= cSrcSize) return (size_t)-FSE_ERROR_srcSize_wrong;
1142
165
    ip += errorCode;
1143
165
    cSrcSize -= errorCode;
1144
1145
165
    return HUF_decompress_usingDTable (dst, maxDstSize, ip, cSrcSize, DTable);
1146
172
}
1147
1148
1149
#endif   /* FSE_COMMONDEFS_ONLY */
1150
1151
/*
1152
    zstd - standard compression library
1153
    Copyright (C) 2014-2015, Yann Collet.
1154
1155
    BSD 2-Clause License (https://opensource.org/licenses/bsd-license.php)
1156
1157
    Redistribution and use in source and binary forms, with or without
1158
    modification, are permitted provided that the following conditions are
1159
    met:
1160
    * Redistributions of source code must retain the above copyright
1161
    notice, this list of conditions and the following disclaimer.
1162
    * Redistributions in binary form must reproduce the above
1163
    copyright notice, this list of conditions and the following disclaimer
1164
    in the documentation and/or other materials provided with the
1165
    distribution.
1166
    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
1167
    "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
1168
    LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
1169
    A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
1170
    OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
1171
    SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
1172
    LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
1173
    DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
1174
    THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
1175
    (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
1176
    OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
1177
1178
    You can contact the author at :
1179
    - zstd source repository : https://github.com/Cyan4973/zstd
1180
    - ztsd public forum : https://groups.google.com/forum/#!forum/lz4c
1181
*/
1182
1183
/****************************************************************
1184
*  Tuning parameters
1185
*****************************************************************/
1186
/* MEMORY_USAGE :
1187
*  Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.)
1188
*  Increasing memory usage improves compression ratio
1189
*  Reduced memory usage can improve speed, due to cache effect */
1190
#define ZSTD_MEMORY_USAGE 17
1191
1192
1193
/**************************************
1194
   CPU Feature Detection
1195
**************************************/
1196
/*
1197
 * Automated efficient unaligned memory access detection
1198
 * Based on known hardware architectures
1199
 * This list will be updated thanks to feedbacks
1200
 */
1201
#if defined(CPU_HAS_EFFICIENT_UNALIGNED_MEMORY_ACCESS) \
1202
    || defined(__ARM_FEATURE_UNALIGNED) \
1203
    || defined(__i386__) || defined(__x86_64__) \
1204
    || defined(_M_IX86) || defined(_M_X64) \
1205
    || defined(__ARM_ARCH_7__) || defined(__ARM_ARCH_8__) \
1206
    || (defined(_M_ARM) && (_M_ARM >= 7))
1207
#  define ZSTD_UNALIGNED_ACCESS 1
1208
#else
1209
#  define ZSTD_UNALIGNED_ACCESS 0
1210
#endif
1211
1212
1213
/********************************************************
1214
*  Includes
1215
*********************************************************/
1216
#include <stdlib.h>      /* calloc */
1217
#include <string.h>      /* memcpy, memmove */
1218
#include <stdio.h>       /* debug : printf */
1219
1220
1221
/********************************************************
1222
*  Compiler specifics
1223
*********************************************************/
1224
#ifdef __AVX2__
1225
#  include <immintrin.h>   /* AVX2 intrinsics */
1226
#endif
1227
1228
#ifdef _MSC_VER    /* Visual Studio */
1229
#  include <intrin.h>                    /* For Visual 2005 */
1230
#  pragma warning(disable : 4127)        /* disable: C4127: conditional expression is constant */
1231
#  pragma warning(disable : 4324)        /* disable: C4324: padded structure */
1232
#endif
1233
1234
1235
#ifndef MEM_ACCESS_MODULE
1236
#define MEM_ACCESS_MODULE
1237
/********************************************************
1238
*  Basic Types
1239
*********************************************************/
1240
#if defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L   /* C99 */
1241
# if defined(_AIX)
1242
#  include <inttypes.h>
1243
# else
1244
#  include <stdint.h> /* intptr_t */
1245
# endif
1246
typedef  uint8_t BYTE;
1247
typedef uint16_t U16;
1248
typedef  int16_t S16;
1249
typedef uint32_t U32;
1250
typedef  int32_t S32;
1251
typedef uint64_t U64;
1252
#else
1253
typedef unsigned char       BYTE;
1254
typedef unsigned short      U16;
1255
typedef   signed short      S16;
1256
typedef unsigned int        U32;
1257
typedef   signed int        S32;
1258
typedef unsigned long long  U64;
1259
#endif
1260
1261
#endif   /* MEM_ACCESS_MODULE */
1262
1263
1264
/********************************************************
1265
*  Constants
1266
*********************************************************/
1267
static const U32 ZSTD_magicNumber = 0xFD2FB51E;   /* 3rd version : seqNb header */
1268
1269
#define HASH_LOG (ZSTD_MEMORY_USAGE - 2)
1270
#define HASH_TABLESIZE (1 << HASH_LOG)
1271
#define HASH_MASK (HASH_TABLESIZE - 1)
1272
1273
#define KNUTH 2654435761
1274
1275
#define BIT7 128
1276
#define BIT6  64
1277
#define BIT5  32
1278
#define BIT4  16
1279
1280
1.58k
#define KB *(1 <<10)
1281
#define MB *(1 <<20)
1282
#define GB *(1U<<30)
1283
1284
1.58k
#define BLOCKSIZE (128 KB)                 /* define, for static allocation */
1285
1286
#define WORKPLACESIZE (BLOCKSIZE*3)
1287
348k
#define MINMATCH 4
1288
176k
#define MLbits   7
1289
176k
#define LLbits   6
1290
469
#define Offbits  5
1291
174k
#define MaxML  ((1<<MLbits )-1)
1292
174k
#define MaxLL  ((1<<LLbits )-1)
1293
297
#define MaxOff ((1<<Offbits)-1)
1294
#define LitFSELog  11
1295
286
#define MLFSELog   10
1296
320
#define LLFSELog   10
1297
285
#define OffFSELog   9
1298
#define MAX(a,b) ((a)<(b)?(b):(a))
1299
#define MaxSeq MAX(MaxLL, MaxML)
1300
1301
#define LITERAL_NOENTROPY 63
1302
#define COMMAND_NOENTROPY 7   /* to remove */
1303
1304
36
#define ZSTD_CONTENTSIZE_ERROR   (0ULL - 2)
1305
1306
static const size_t ZSTD_blockHeaderSize = 3;
1307
static const size_t ZSTD_frameHeaderSize = 4;
1308
1309
1310
/********************************************************
1311
*  Memory operations
1312
*********************************************************/
1313
348k
static unsigned ZSTD_32bits(void) { return sizeof(void*)==4; }
1314
1315
static unsigned ZSTD_isLittleEndian(void)
1316
1.70k
{
1317
1.70k
    const union { U32 i; BYTE c[4]; } one = { 1 };   /* don't use static : performance detrimental  */
1318
1.70k
    return one.c[0];
1319
1.70k
}
1320
1321
1.70k
static U16    ZSTD_read16(const void* p) { U16 r; memcpy(&r, p, sizeof(r)); return r; }
1322
1323
156k
static void   ZSTD_copy4(void* dst, const void* src) { memcpy(dst, src, 4); }
1324
1325
1.50M
static void   ZSTD_copy8(void* dst, const void* src) { memcpy(dst, src, 8); }
1326
1327
1.49M
#define COPY8(d,s)    { ZSTD_copy8(d,s); d+=8; s+=8; }
1328
1329
static void ZSTD_wildcopy(void* dst, const void* src, ptrdiff_t length)
1330
173k
{
1331
173k
    const BYTE* ip = (const BYTE*)src;
1332
173k
    BYTE* op = (BYTE*)dst;
1333
173k
    BYTE* const oend = op + length;
1334
1.66M
    while (op < oend) COPY8(op, ip);
1335
173k
}
1336
1337
static U16 ZSTD_readLE16(const void* memPtr)
1338
1.70k
{
1339
1.70k
    if (ZSTD_isLittleEndian()) return ZSTD_read16(memPtr);
1340
0
    else
1341
0
    {
1342
0
        const BYTE* p = (const BYTE*)memPtr;
1343
0
        return (U16)((U16)p[0] + ((U16)p[1]<<8));
1344
0
    }
1345
1.70k
}
1346
1347
static U32 ZSTD_readLE24(const void* memPtr)
1348
114
{
1349
114
    return ZSTD_readLE16(memPtr) + (((const BYTE*)memPtr)[2] << 16);
1350
114
}
1351
1352
static U32 ZSTD_readBE32(const void* memPtr)
1353
2.40k
{
1354
2.40k
    const BYTE* p = (const BYTE*)memPtr;
1355
2.40k
    return (U32)(((U32)p[0]<<24) + ((U32)p[1]<<16) + ((U32)p[2]<<8) + ((U32)p[3]<<0));
1356
2.40k
}
1357
1358
1359
/**************************************
1360
*  Local structures
1361
***************************************/
1362
typedef struct ZSTD_Cctx_s ZSTD_Cctx;
1363
1364
typedef enum { bt_compressed, bt_raw, bt_rle, bt_end } blockType_t;
1365
1366
typedef struct
1367
{
1368
    blockType_t blockType;
1369
    U32 origSize;
1370
} blockProperties_t;
1371
1372
typedef struct {
1373
    void* buffer;
1374
    U32*  offsetStart;
1375
    U32*  offset;
1376
    BYTE* offCodeStart;
1377
    BYTE* offCode;
1378
    BYTE* litStart;
1379
    BYTE* lit;
1380
    BYTE* litLengthStart;
1381
    BYTE* litLength;
1382
    BYTE* matchLengthStart;
1383
    BYTE* matchLength;
1384
    BYTE* dumpsStart;
1385
    BYTE* dumps;
1386
} SeqStore_t;
1387
1388
1389
typedef struct ZSTD_Cctx_s
1390
{
1391
    const BYTE* base;
1392
    U32 current;
1393
    U32 nextUpdate;
1394
    SeqStore_t seqStore;
1395
#ifdef __AVX2__
1396
    __m256i hashTable[HASH_TABLESIZE>>3];
1397
#else
1398
    U32 hashTable[HASH_TABLESIZE];
1399
#endif
1400
    BYTE buffer[WORKPLACESIZE];
1401
} cctxi_t;
1402
1403
1404
1405
1406
/**************************************
1407
*  Error Management
1408
**************************************/
1409
/* published entry point */
1410
193k
unsigned ZSTDv01_isError(size_t code) { return ERR_isError(code); }
1411
1412
1413
/**************************************
1414
*  Tool functions
1415
**************************************/
1416
#define ZSTD_VERSION_MAJOR    0    /* for breaking interface changes  */
1417
#define ZSTD_VERSION_MINOR    1    /* for new (non-breaking) interface capabilities */
1418
#define ZSTD_VERSION_RELEASE  3    /* for tweaks, bug-fixes, or development */
1419
#define ZSTD_VERSION_NUMBER  (ZSTD_VERSION_MAJOR *100*100 + ZSTD_VERSION_MINOR *100 + ZSTD_VERSION_RELEASE)
1420
1421
/**************************************************************
1422
*   Decompression code
1423
**************************************************************/
1424
1425
static size_t ZSTDv01_getcBlockSize(const void* src, size_t srcSize, blockProperties_t* bpPtr)
1426
13.1k
{
1427
13.1k
    const BYTE* const in = (const BYTE* const)src;
1428
13.1k
    BYTE headerFlags;
1429
13.1k
    U32 cSize;
1430
1431
13.1k
    if (srcSize < 3) return ERROR(srcSize_wrong);
1432
1433
13.1k
    headerFlags = *in;
1434
13.1k
    cSize = in[2] + (in[1]<<8) + ((in[0] & 7)<<16);
1435
1436
13.1k
    bpPtr->blockType = (blockType_t)(headerFlags >> 6);
1437
13.1k
    bpPtr->origSize = (bpPtr->blockType == bt_rle) ? cSize : 0;
1438
1439
13.1k
    if (bpPtr->blockType == bt_end) return 0;
1440
11.8k
    if (bpPtr->blockType == bt_rle) return 1;
1441
8.05k
    return cSize;
1442
11.8k
}
1443
1444
1445
static size_t ZSTD_copyUncompressedBlock(void* dst, size_t maxDstSize, const void* src, size_t srcSize)
1446
407
{
1447
407
    if (srcSize > maxDstSize) return ERROR(dstSize_tooSmall);
1448
396
    if (srcSize > 0) {
1449
379
        memcpy(dst, src, srcSize);
1450
379
    }
1451
396
    return srcSize;
1452
407
}
1453
1454
1455
static size_t ZSTD_decompressLiterals(void* ctx,
1456
                                      void* dst, size_t maxDstSize,
1457
                                const void* src, size_t srcSize)
1458
354
{
1459
354
    BYTE* op = (BYTE*)dst;
1460
354
    BYTE* const oend = op + maxDstSize;
1461
354
    const BYTE* ip = (const BYTE*)src;
1462
354
    size_t errorCode;
1463
354
    size_t litSize;
1464
1465
    /* check : minimum 2, for litSize, +1, for content */
1466
354
    if (srcSize <= 3) return ERROR(corruption_detected);
1467
1468
350
    litSize = ip[1] + (ip[0]<<8);
1469
350
    litSize += ((ip[-3] >> 3) & 7) << 16;   /* mmmmh.... */
1470
350
    op = oend - litSize;
1471
1472
350
    (void)ctx;
1473
350
    if (litSize > maxDstSize) return ERROR(dstSize_tooSmall);
1474
344
    errorCode = HUF_decompress(op, litSize, ip+2, srcSize-2);
1475
344
    if (FSE_isError(errorCode)) return ERROR(GENERIC);
1476
18
    return litSize;
1477
344
}
1478
1479
1480
static size_t ZSTDv01_decodeLiteralsBlock(void* ctx,
1481
                                void* dst, size_t maxDstSize,
1482
                          const BYTE** litStart, size_t* litSize,
1483
                          const void* src, size_t srcSize)
1484
2.00k
{
1485
2.00k
    const BYTE* const istart = (const BYTE* const)src;
1486
2.00k
    const BYTE* ip = istart;
1487
2.00k
    BYTE* const ostart = (BYTE* const)dst;
1488
2.00k
    BYTE* const oend = ostart + maxDstSize;
1489
2.00k
    blockProperties_t litbp;
1490
1491
2.00k
    size_t litcSize = ZSTDv01_getcBlockSize(src, srcSize, &litbp);
1492
2.00k
    if (ZSTDv01_isError(litcSize)) return litcSize;
1493
1.98k
    if (litcSize > srcSize - ZSTD_blockHeaderSize) return ERROR(srcSize_wrong);
1494
1.95k
    ip += ZSTD_blockHeaderSize;
1495
1496
1.95k
    switch(litbp.blockType)
1497
1.95k
    {
1498
97
    case bt_raw:
1499
97
        *litStart = ip;
1500
97
        ip += litcSize;
1501
97
        *litSize = litcSize;
1502
97
        break;
1503
1.49k
    case bt_rle:
1504
1.49k
        {
1505
1.49k
            size_t rleSize = litbp.origSize;
1506
1.49k
            if (rleSize>maxDstSize) return ERROR(dstSize_tooSmall);
1507
1.49k
            if (!srcSize) return ERROR(srcSize_wrong);
1508
1.49k
            if (rleSize > 0) {
1509
1.46k
                memset(oend - rleSize, *ip, rleSize);
1510
1.46k
            }
1511
1.49k
            *litStart = oend - rleSize;
1512
1.49k
            *litSize = rleSize;
1513
1.49k
            ip++;
1514
1.49k
            break;
1515
1.49k
        }
1516
354
    case bt_compressed:
1517
354
        {
1518
354
            size_t decodedLitSize = ZSTD_decompressLiterals(ctx, dst, maxDstSize, ip, litcSize);
1519
354
            if (ZSTDv01_isError(decodedLitSize)) return decodedLitSize;
1520
18
            *litStart = oend - decodedLitSize;
1521
18
            *litSize = decodedLitSize;
1522
18
            ip += litcSize;
1523
18
            break;
1524
354
        }
1525
6
    case bt_end:
1526
6
    default:
1527
6
        return ERROR(GENERIC);
1528
1.95k
    }
1529
1530
1.61k
    return ip-istart;
1531
1.95k
}
1532
1533
1534
static size_t ZSTDv01_decodeSeqHeaders(int* nbSeq, const BYTE** dumpsPtr, size_t* dumpsLengthPtr,
1535
                         FSE_DTable* DTableLL, FSE_DTable* DTableML, FSE_DTable* DTableOffb,
1536
                         const void* src, size_t srcSize)
1537
1.61k
{
1538
1.61k
    const BYTE* const istart = (const BYTE* const)src;
1539
1.61k
    const BYTE* ip = istart;
1540
1.61k
    const BYTE* const iend = istart + srcSize;
1541
1.61k
    U32 LLtype, Offtype, MLtype;
1542
1.61k
    U32 LLlog, Offlog, MLlog;
1543
1.61k
    size_t dumpsLength;
1544
1545
    /* check */
1546
1.61k
    if (srcSize < 5) return ERROR(srcSize_wrong);
1547
1548
    /* SeqHead */
1549
1.59k
    *nbSeq = ZSTD_readLE16(ip); ip+=2;
1550
1.59k
    LLtype  = *ip >> 6;
1551
1.59k
    Offtype = (*ip >> 4) & 3;
1552
1.59k
    MLtype  = (*ip >> 2) & 3;
1553
1.59k
    if (*ip & 2)
1554
1.11k
    {
1555
1.11k
        dumpsLength  = ip[2];
1556
1.11k
        dumpsLength += ip[1] << 8;
1557
1.11k
        ip += 3;
1558
1.11k
    }
1559
482
    else
1560
482
    {
1561
482
        dumpsLength  = ip[1];
1562
482
        dumpsLength += (ip[0] & 1) << 8;
1563
482
        ip += 2;
1564
482
    }
1565
1.59k
    *dumpsPtr = ip;
1566
1.59k
    ip += dumpsLength;
1567
1.59k
    *dumpsLengthPtr = dumpsLength;
1568
1569
    /* check */
1570
1.59k
    if (ip > iend-3) return ERROR(srcSize_wrong); /* min : all 3 are "raw", hence no header, but at least xxLog bits per type */
1571
1572
    /* sequences */
1573
1.58k
    {
1574
1.58k
        S16 norm[MaxML+1];    /* assumption : MaxML >= MaxLL and MaxOff */
1575
1.58k
        size_t headerSize;
1576
1577
        /* Build DTables */
1578
1.58k
        switch(LLtype)
1579
1.58k
        {
1580
185
        case bt_rle :
1581
185
            LLlog = 0;
1582
185
            FSE_buildDTable_rle(DTableLL, *ip++); break;
1583
1.06k
        case bt_raw :
1584
1.06k
            LLlog = LLbits;
1585
1.06k
            FSE_buildDTable_raw(DTableLL, LLbits); break;
1586
331
        default :
1587
331
            {   U32 max = MaxLL;
1588
331
                headerSize = FSE_readNCount(norm, &max, &LLlog, ip, iend-ip);
1589
331
                if (FSE_isError(headerSize)) return ERROR(GENERIC);
1590
320
                if (LLlog > LLFSELog) return ERROR(corruption_detected);
1591
317
                ip += headerSize;
1592
317
                FSE_buildDTable(DTableLL, norm, max, LLlog);
1593
317
        }   }
1594
1595
1.56k
        switch(Offtype)
1596
1.56k
        {
1597
1.18k
        case bt_rle :
1598
1.18k
            Offlog = 0;
1599
1.18k
            if (ip > iend-2) return ERROR(srcSize_wrong); /* min : "raw", hence no header, but at least xxLog bits */
1600
1.18k
            FSE_buildDTable_rle(DTableOffb, *ip++); break;
1601
86
        case bt_raw :
1602
86
            Offlog = Offbits;
1603
86
            FSE_buildDTable_raw(DTableOffb, Offbits); break;
1604
297
        default :
1605
297
            {   U32 max = MaxOff;
1606
297
                headerSize = FSE_readNCount(norm, &max, &Offlog, ip, iend-ip);
1607
297
                if (FSE_isError(headerSize)) return ERROR(GENERIC);
1608
285
                if (Offlog > OffFSELog) return ERROR(corruption_detected);
1609
283
                ip += headerSize;
1610
283
                FSE_buildDTable(DTableOffb, norm, max, Offlog);
1611
283
        }   }
1612
1613
1.55k
        switch(MLtype)
1614
1.55k
        {
1615
190
        case bt_rle :
1616
190
            MLlog = 0;
1617
190
            if (ip > iend-2) return ERROR(srcSize_wrong); /* min : "raw", hence no header, but at least xxLog bits */
1618
188
            FSE_buildDTable_rle(DTableML, *ip++); break;
1619
1.06k
        case bt_raw :
1620
1.06k
            MLlog = MLbits;
1621
1.06k
            FSE_buildDTable_raw(DTableML, MLbits); break;
1622
296
        default :
1623
296
            {   U32 max = MaxML;
1624
296
                headerSize = FSE_readNCount(norm, &max, &MLlog, ip, iend-ip);
1625
296
                if (FSE_isError(headerSize)) return ERROR(GENERIC);
1626
286
                if (MLlog > MLFSELog) return ERROR(corruption_detected);
1627
281
                ip += headerSize;
1628
281
                FSE_buildDTable(DTableML, norm, max, MLlog);
1629
281
    }   }   }
1630
1631
1.53k
    return ip-istart;
1632
1.55k
}
1633
1634
1635
typedef struct {
1636
    size_t litLength;
1637
    size_t offset;
1638
    size_t matchLength;
1639
} seq_t;
1640
1641
typedef struct {
1642
    FSE_DStream_t DStream;
1643
    FSE_DState_t stateLL;
1644
    FSE_DState_t stateOffb;
1645
    FSE_DState_t stateML;
1646
    size_t prevOffset;
1647
    const BYTE* dumps;
1648
    const BYTE* dumpsEnd;
1649
} seqState_t;
1650
1651
1652
static void ZSTD_decodeSequence(seq_t* seq, seqState_t* seqState)
1653
174k
{
1654
174k
    size_t litLength;
1655
174k
    size_t prevOffset;
1656
174k
    size_t offset;
1657
174k
    size_t matchLength;
1658
174k
    const BYTE* dumps = seqState->dumps;
1659
174k
    const BYTE* const de = seqState->dumpsEnd;
1660
1661
    /* Literal length */
1662
174k
    litLength = FSE_decodeSymbol(&(seqState->stateLL), &(seqState->DStream));
1663
174k
    prevOffset = litLength ? seq->offset : seqState->prevOffset;
1664
174k
    seqState->prevOffset = seq->offset;
1665
174k
    if (litLength == MaxLL)
1666
4.35k
    {
1667
4.35k
        const U32 add = dumps<de ? *dumps++ : 0;
1668
4.35k
        if (add < 255) litLength += add;
1669
61
        else
1670
61
        {
1671
61
            if (dumps<=(de-3))
1672
51
            {
1673
51
                litLength = ZSTD_readLE24(dumps);
1674
51
                dumps += 3;
1675
51
            }
1676
61
        }
1677
4.35k
    }
1678
1679
    /* Offset */
1680
174k
    {
1681
174k
        U32 offsetCode, nbBits;
1682
174k
        offsetCode = FSE_decodeSymbol(&(seqState->stateOffb), &(seqState->DStream));
1683
174k
        if (ZSTD_32bits()) FSE_reloadDStream(&(seqState->DStream));
1684
174k
        nbBits = offsetCode - 1;
1685
174k
        if (offsetCode==0) nbBits = 0;   /* cmove */
1686
174k
        offset = ((size_t)1 << (nbBits & ((sizeof(offset)*8)-1))) + FSE_readBits(&(seqState->DStream), nbBits);
1687
174k
        if (ZSTD_32bits()) FSE_reloadDStream(&(seqState->DStream));
1688
174k
        if (offsetCode==0) offset = prevOffset;
1689
174k
    }
1690
1691
    /* MatchLength */
1692
174k
    matchLength = FSE_decodeSymbol(&(seqState->stateML), &(seqState->DStream));
1693
174k
    if (matchLength == MaxML)
1694
10.6k
    {
1695
10.6k
        const U32 add = dumps<de ? *dumps++ : 0;
1696
10.6k
        if (add < 255) matchLength += add;
1697
73
        else
1698
73
        {
1699
73
            if (dumps<=(de-3))
1700
63
            {
1701
63
                matchLength = ZSTD_readLE24(dumps);
1702
63
                dumps += 3;
1703
63
            }
1704
73
        }
1705
10.6k
    }
1706
174k
    matchLength += MINMATCH;
1707
1708
    /* save result */
1709
174k
    seq->litLength = litLength;
1710
174k
    seq->offset = offset;
1711
174k
    seq->matchLength = matchLength;
1712
174k
    seqState->dumps = dumps;
1713
174k
}
1714
1715
1716
static size_t ZSTD_execSequence(BYTE* op,
1717
                                seq_t sequence,
1718
                                const BYTE** litPtr, const BYTE* const litLimit,
1719
                                BYTE* const base, BYTE* const oend)
1720
174k
{
1721
174k
    static const int dec32table[] = {0, 1, 2, 1, 4, 4, 4, 4};   /* added */
1722
174k
    static const int dec64table[] = {8, 8, 8, 7, 8, 9,10,11};   /* subtracted */
1723
174k
    const BYTE* const ostart = op;
1724
174k
    BYTE* const oLitEnd = op + sequence.litLength;
1725
174k
    const size_t litLength = sequence.litLength;
1726
174k
    BYTE* const endMatch = op + litLength + sequence.matchLength;    /* risk : address space overflow (32-bits) */
1727
174k
    const BYTE* const litEnd = *litPtr + litLength;
1728
1729
    /* checks */
1730
174k
    size_t const seqLength = sequence.litLength + sequence.matchLength;
1731
1732
174k
    if (seqLength > (size_t)(oend - op)) return ERROR(dstSize_tooSmall);
1733
174k
    if (sequence.litLength > (size_t)(litLimit - *litPtr)) return ERROR(corruption_detected);
1734
    /* Now we know there are no overflow in literal nor match lengths, can use pointer checks */
1735
174k
    if (sequence.offset > (U32)(oLitEnd - base)) return ERROR(corruption_detected);
1736
1737
174k
    if (endMatch > oend) return ERROR(dstSize_tooSmall);   /* overwrite beyond dst buffer */
1738
174k
    if (litEnd > litLimit) return ERROR(corruption_detected);   /* overRead beyond lit buffer */
1739
174k
    if (sequence.matchLength > (size_t)(*litPtr-op)) return ERROR(dstSize_tooSmall);  /* overwrite literal segment */
1740
1741
    /* copy Literals */
1742
174k
    ZSTD_memmove(op, *litPtr, sequence.litLength);   /* note : v0.1 seems to allow scenarios where output or input are close to end of buffer */
1743
1744
174k
    op += litLength;
1745
174k
    *litPtr = litEnd;   /* update for next sequence */
1746
1747
    /* check : last match must be at a minimum distance of 8 from end of dest buffer */
1748
174k
    if (oend-op < 8) return ERROR(dstSize_tooSmall);
1749
1750
    /* copy Match */
1751
174k
    {
1752
174k
        const U32 overlapRisk = (((size_t)(litEnd - endMatch)) < 12);
1753
174k
        const BYTE* match = op - sequence.offset;            /* possible underflow at op - offset ? */
1754
174k
        size_t qutt = 12;
1755
174k
        U64 saved[2];
1756
1757
        /* check */
1758
174k
        if (match < base) return ERROR(corruption_detected);
1759
174k
        if (sequence.offset > (size_t)base) return ERROR(corruption_detected);
1760
1761
        /* save beginning of literal sequence, in case of write overlap */
1762
174k
        if (overlapRisk)
1763
15
        {
1764
15
            if ((endMatch + qutt) > oend) qutt = oend-endMatch;
1765
15
            memcpy(saved, endMatch, qutt);
1766
15
        }
1767
1768
174k
        if (sequence.offset < 8)
1769
156k
        {
1770
156k
            const int dec64 = dec64table[sequence.offset];
1771
156k
            op[0] = match[0];
1772
156k
            op[1] = match[1];
1773
156k
            op[2] = match[2];
1774
156k
            op[3] = match[3];
1775
156k
            match += dec32table[sequence.offset];
1776
156k
            ZSTD_copy4(op+4, match);
1777
156k
            match -= dec64;
1778
156k
        } else { ZSTD_copy8(op, match); }
1779
174k
        op += 8; match += 8;
1780
1781
174k
        if (endMatch > oend-(16-MINMATCH))
1782
11
        {
1783
11
            if (op < oend-8)
1784
8
            {
1785
8
                ZSTD_wildcopy(op, match, (oend-8) - op);
1786
8
                match += (oend-8) - op;
1787
8
                op = oend-8;
1788
8
            }
1789
35
            while (op<endMatch) *op++ = *match++;
1790
11
        }
1791
173k
        else
1792
173k
            ZSTD_wildcopy(op, match, (ptrdiff_t)sequence.matchLength-8);   /* works even if matchLength < 8 */
1793
1794
        /* restore, in case of overlap */
1795
174k
        if (overlapRisk) memcpy(endMatch, saved, qutt);
1796
174k
    }
1797
1798
0
    return endMatch-ostart;
1799
174k
}
1800
1801
typedef struct ZSTDv01_Dctx_s
1802
{
1803
    U32 LLTable[FSE_DTABLE_SIZE_U32(LLFSELog)];
1804
    U32 OffTable[FSE_DTABLE_SIZE_U32(OffFSELog)];
1805
    U32 MLTable[FSE_DTABLE_SIZE_U32(MLFSELog)];
1806
    void* previousDstEnd;
1807
    void* base;
1808
    size_t expected;
1809
    blockType_t bType;
1810
    U32 phase;
1811
} dctx_t;
1812
1813
1814
static size_t ZSTD_decompressSequences(
1815
                               void* ctx,
1816
                               void* dst, size_t maxDstSize,
1817
                         const void* seqStart, size_t seqSize,
1818
                         const BYTE* litStart, size_t litSize)
1819
1.61k
{
1820
1.61k
    dctx_t* dctx = (dctx_t*)ctx;
1821
1.61k
    const BYTE* ip = (const BYTE*)seqStart;
1822
1.61k
    const BYTE* const iend = ip + seqSize;
1823
1.61k
    BYTE* const ostart = (BYTE* const)dst;
1824
1.61k
    BYTE* op = ostart;
1825
1.61k
    BYTE* const oend = ostart + maxDstSize;
1826
1.61k
    size_t errorCode = 0;
1827
1.61k
    size_t dumpsLength = 0;
1828
1.61k
    const BYTE* litPtr = litStart;
1829
1.61k
    const BYTE* const litEnd = litStart + litSize;
1830
1.61k
    int nbSeq = 0;
1831
1.61k
    const BYTE* dumps = NULL;
1832
1.61k
    U32* DTableLL = dctx->LLTable;
1833
1.61k
    U32* DTableML = dctx->MLTable;
1834
1.61k
    U32* DTableOffb = dctx->OffTable;
1835
1.61k
    BYTE* const base = (BYTE*) (dctx->base);
1836
1837
    /* Build Decoding Tables */
1838
1.61k
    errorCode = ZSTDv01_decodeSeqHeaders(&nbSeq, &dumps, &dumpsLength,
1839
1.61k
                                      DTableLL, DTableML, DTableOffb,
1840
1.61k
                                      ip, iend-ip);
1841
1.61k
    if (ZSTDv01_isError(errorCode)) return errorCode;
1842
1.53k
    ip += errorCode;
1843
1844
    /* Regen sequences */
1845
1.53k
    {
1846
1.53k
        seq_t sequence;
1847
1.53k
        seqState_t seqState;
1848
1849
1.53k
        memset(&sequence, 0, sizeof(sequence));
1850
1.53k
        seqState.dumps = dumps;
1851
1.53k
        seqState.dumpsEnd = dumps + dumpsLength;
1852
1.53k
        seqState.prevOffset = 1;
1853
1.53k
        errorCode = FSE_initDStream(&(seqState.DStream), ip, iend-ip);
1854
1.53k
        if (FSE_isError(errorCode)) return ERROR(corruption_detected);
1855
1.52k
        FSE_initDState(&(seqState.stateLL), &(seqState.DStream), DTableLL);
1856
1.52k
        FSE_initDState(&(seqState.stateOffb), &(seqState.DStream), DTableOffb);
1857
1.52k
        FSE_initDState(&(seqState.stateML), &(seqState.DStream), DTableML);
1858
1859
175k
        for ( ; (FSE_reloadDStream(&(seqState.DStream)) <= FSE_DStream_completed) && (nbSeq>0) ; )
1860
174k
        {
1861
174k
            size_t oneSeqSize;
1862
174k
            nbSeq--;
1863
174k
            ZSTD_decodeSequence(&sequence, &seqState);
1864
174k
            oneSeqSize = ZSTD_execSequence(op, sequence, &litPtr, litEnd, base, oend);
1865
174k
            if (ZSTDv01_isError(oneSeqSize)) return oneSeqSize;
1866
174k
            op += oneSeqSize;
1867
174k
        }
1868
1869
        /* check if reached exact end */
1870
1.35k
        if ( !FSE_endOfDStream(&(seqState.DStream)) ) return ERROR(corruption_detected);   /* requested too much : data is corrupted */
1871
1.27k
        if (nbSeq<0) return ERROR(corruption_detected);   /* requested too many sequences : data is corrupted */
1872
1873
        /* last literal segment */
1874
1.27k
        {
1875
1.27k
            size_t lastLLSize = litEnd - litPtr;
1876
1.27k
            if (op+lastLLSize > oend) return ERROR(dstSize_tooSmall);
1877
1.27k
            if (lastLLSize > 0) {
1878
1.23k
                if (op != litPtr) memmove(op, litPtr, lastLLSize);
1879
1.23k
                op += lastLLSize;
1880
1.23k
            }
1881
1.27k
        }
1882
1.27k
    }
1883
1884
0
    return op-ostart;
1885
1.27k
}
1886
1887
1888
static size_t ZSTD_decompressBlock(
1889
                            void* ctx,
1890
                            void* dst, size_t maxDstSize,
1891
                      const void* src, size_t srcSize)
1892
2.00k
{
1893
    /* blockType == blockCompressed, srcSize is trusted */
1894
2.00k
    const BYTE* ip = (const BYTE*)src;
1895
2.00k
    const BYTE* litPtr = NULL;
1896
2.00k
    size_t litSize = 0;
1897
2.00k
    size_t errorCode;
1898
1899
    /* Decode literals sub-block */
1900
2.00k
    errorCode = ZSTDv01_decodeLiteralsBlock(ctx, dst, maxDstSize, &litPtr, &litSize, src, srcSize);
1901
2.00k
    if (ZSTDv01_isError(errorCode)) return errorCode;
1902
1.61k
    ip += errorCode;
1903
1.61k
    srcSize -= errorCode;
1904
1905
1.61k
    return ZSTD_decompressSequences(ctx, dst, maxDstSize, ip, srcSize, litPtr, litSize);
1906
2.00k
}
1907
1908
1909
size_t ZSTDv01_decompressDCtx(void* ctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize)
1910
790
{
1911
790
    const BYTE* ip = (const BYTE*)src;
1912
790
    const BYTE* iend = ip + srcSize;
1913
790
    BYTE* const ostart = (BYTE* const)dst;
1914
790
    BYTE* op = ostart;
1915
790
    BYTE* const oend = ostart + maxDstSize;
1916
790
    size_t remainingSize = srcSize;
1917
790
    U32 magicNumber;
1918
790
    size_t errorCode=0;
1919
790
    blockProperties_t blockProperties = { 0 };
1920
1921
    /* Frame Header */
1922
790
    if (srcSize < ZSTD_frameHeaderSize+ZSTD_blockHeaderSize) return ERROR(srcSize_wrong);
1923
790
    magicNumber = ZSTD_readBE32(src);
1924
790
    if (magicNumber != ZSTD_magicNumber) return ERROR(prefix_unknown);
1925
790
    ip += ZSTD_frameHeaderSize; remainingSize -= ZSTD_frameHeaderSize;
1926
1927
    /* Loop on each block */
1928
2.44k
    while (1)
1929
2.44k
    {
1930
2.44k
        size_t blockSize = ZSTDv01_getcBlockSize(ip, iend-ip, &blockProperties);
1931
2.44k
        if (ZSTDv01_isError(blockSize)) return blockSize;
1932
1933
2.44k
        ip += ZSTD_blockHeaderSize;
1934
2.44k
        remainingSize -= ZSTD_blockHeaderSize;
1935
2.44k
        if (blockSize > remainingSize) return ERROR(srcSize_wrong);
1936
1937
2.44k
        switch(blockProperties.blockType)
1938
2.44k
        {
1939
2.00k
        case bt_compressed:
1940
2.00k
            errorCode = ZSTD_decompressBlock(ctx, op, oend-op, ip, blockSize);
1941
2.00k
            break;
1942
407
        case bt_raw :
1943
407
            errorCode = ZSTD_copyUncompressedBlock(op, oend-op, ip, blockSize);
1944
407
            break;
1945
7
        case bt_rle :
1946
7
            return ERROR(GENERIC);   /* not yet supported */
1947
0
            break;
1948
28
        case bt_end :
1949
            /* end of frame */
1950
28
            if (remainingSize) return ERROR(srcSize_wrong);
1951
28
            break;
1952
28
        default:
1953
0
            return ERROR(GENERIC);
1954
2.44k
        }
1955
2.44k
        if (blockSize == 0) break;   /* bt_end */
1956
1957
2.37k
        if (ZSTDv01_isError(errorCode)) return errorCode;
1958
1.65k
        op += errorCode;
1959
1.65k
        ip += blockSize;
1960
1.65k
        remainingSize -= blockSize;
1961
1.65k
    }
1962
1963
64
    return op-ostart;
1964
790
}
1965
1966
size_t ZSTDv01_decompress(void* dst, size_t maxDstSize, const void* src, size_t srcSize)
1967
790
{
1968
790
    dctx_t ctx;
1969
790
    ctx.base = dst;
1970
790
    return ZSTDv01_decompressDCtx(&ctx, dst, maxDstSize, src, srcSize);
1971
790
}
1972
1973
/* ZSTD_errorFrameSizeInfoLegacy() :
1974
   assumes `cSize` and `dBound` are _not_ NULL */
1975
static void ZSTD_errorFrameSizeInfoLegacy(size_t* cSize, unsigned long long* dBound, size_t ret)
1976
36
{
1977
36
    *cSize = ret;
1978
36
    *dBound = ZSTD_CONTENTSIZE_ERROR;
1979
36
}
1980
1981
void ZSTDv01_findFrameSizeInfoLegacy(const void *src, size_t srcSize, size_t* cSize, unsigned long long* dBound)
1982
1.61k
{
1983
1.61k
    const BYTE* ip = (const BYTE*)src;
1984
1.61k
    size_t remainingSize = srcSize;
1985
1.61k
    size_t nbBlocks = 0;
1986
1.61k
    U32 magicNumber;
1987
1.61k
    blockProperties_t blockProperties;
1988
1989
    /* Frame Header */
1990
1.61k
    if (srcSize < ZSTD_frameHeaderSize+ZSTD_blockHeaderSize) {
1991
5
        ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(srcSize_wrong));
1992
5
        return;
1993
5
    }
1994
1.61k
    magicNumber = ZSTD_readBE32(src);
1995
1.61k
    if (magicNumber != ZSTD_magicNumber) {
1996
0
        ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(prefix_unknown));
1997
0
        return;
1998
0
    }
1999
1.61k
    ip += ZSTD_frameHeaderSize; remainingSize -= ZSTD_frameHeaderSize;
2000
2001
    /* Loop on each block */
2002
8.73k
    while (1)
2003
8.73k
    {
2004
8.73k
        size_t blockSize = ZSTDv01_getcBlockSize(ip, remainingSize, &blockProperties);
2005
8.73k
        if (ZSTDv01_isError(blockSize)) {
2006
2
            ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, blockSize);
2007
2
            return;
2008
2
        }
2009
2010
8.73k
        ip += ZSTD_blockHeaderSize;
2011
8.73k
        remainingSize -= ZSTD_blockHeaderSize;
2012
8.73k
        if (blockSize > remainingSize) {
2013
29
            ZSTD_errorFrameSizeInfoLegacy(cSize, dBound, ERROR(srcSize_wrong));
2014
29
            return;
2015
29
        }
2016
2017
8.70k
        if (blockSize == 0) break;   /* bt_end */
2018
2019
7.12k
        ip += blockSize;
2020
7.12k
        remainingSize -= blockSize;
2021
7.12k
        nbBlocks++;
2022
7.12k
    }
2023
2024
1.58k
    *cSize = ip - (const BYTE*)src;
2025
1.58k
    *dBound = nbBlocks * BLOCKSIZE;
2026
1.58k
}
2027
2028
/*******************************
2029
*  Streaming Decompression API
2030
*******************************/
2031
2032
size_t ZSTDv01_resetDCtx(ZSTDv01_Dctx* dctx)
2033
0
{
2034
0
    dctx->expected = ZSTD_frameHeaderSize;
2035
0
    dctx->phase = 0;
2036
0
    dctx->previousDstEnd = NULL;
2037
0
    dctx->base = NULL;
2038
0
    return 0;
2039
0
}
2040
2041
ZSTDv01_Dctx* ZSTDv01_createDCtx(void)
2042
0
{
2043
0
    ZSTDv01_Dctx* dctx = (ZSTDv01_Dctx*)malloc(sizeof(ZSTDv01_Dctx));
2044
0
    if (dctx==NULL) return NULL;
2045
0
    ZSTDv01_resetDCtx(dctx);
2046
0
    return dctx;
2047
0
}
2048
2049
size_t ZSTDv01_freeDCtx(ZSTDv01_Dctx* dctx)
2050
0
{
2051
0
    free(dctx);
2052
0
    return 0;
2053
0
}
2054
2055
size_t ZSTDv01_nextSrcSizeToDecompress(ZSTDv01_Dctx* dctx)
2056
0
{
2057
0
    return ((dctx_t*)dctx)->expected;
2058
0
}
2059
2060
size_t ZSTDv01_decompressContinue(ZSTDv01_Dctx* dctx, void* dst, size_t maxDstSize, const void* src, size_t srcSize)
2061
0
{
2062
0
    dctx_t* ctx = (dctx_t*)dctx;
2063
2064
    /* Sanity check */
2065
0
    if (srcSize != ctx->expected) return ERROR(srcSize_wrong);
2066
0
    if (dst != ctx->previousDstEnd)  /* not contiguous */
2067
0
        ctx->base = dst;
2068
2069
    /* Decompress : frame header */
2070
0
    if (ctx->phase == 0)
2071
0
    {
2072
        /* Check frame magic header */
2073
0
        U32 magicNumber = ZSTD_readBE32(src);
2074
0
        if (magicNumber != ZSTD_magicNumber) return ERROR(prefix_unknown);
2075
0
        ctx->phase = 1;
2076
0
        ctx->expected = ZSTD_blockHeaderSize;
2077
0
        return 0;
2078
0
    }
2079
2080
    /* Decompress : block header */
2081
0
    if (ctx->phase == 1)
2082
0
    {
2083
0
        blockProperties_t bp;
2084
0
        size_t blockSize = ZSTDv01_getcBlockSize(src, ZSTD_blockHeaderSize, &bp);
2085
0
        if (ZSTDv01_isError(blockSize)) return blockSize;
2086
0
        if (bp.blockType == bt_end)
2087
0
        {
2088
0
            ctx->expected = 0;
2089
0
            ctx->phase = 0;
2090
0
        }
2091
0
        else
2092
0
        {
2093
0
            ctx->expected = blockSize;
2094
0
            ctx->bType = bp.blockType;
2095
0
            ctx->phase = 2;
2096
0
        }
2097
2098
0
        return 0;
2099
0
    }
2100
2101
    /* Decompress : block content */
2102
0
    {
2103
0
        size_t rSize;
2104
0
        switch(ctx->bType)
2105
0
        {
2106
0
        case bt_compressed:
2107
0
            rSize = ZSTD_decompressBlock(ctx, dst, maxDstSize, src, srcSize);
2108
0
            break;
2109
0
        case bt_raw :
2110
0
            rSize = ZSTD_copyUncompressedBlock(dst, maxDstSize, src, srcSize);
2111
0
            break;
2112
0
        case bt_rle :
2113
0
            return ERROR(GENERIC);   /* not yet handled */
2114
0
            break;
2115
0
        case bt_end :   /* should never happen (filtered at phase 1) */
2116
0
            rSize = 0;
2117
0
            break;
2118
0
        default:
2119
0
            return ERROR(GENERIC);
2120
0
        }
2121
0
        ctx->phase = 1;
2122
0
        ctx->expected = ZSTD_blockHeaderSize;
2123
0
        if (ZSTDv01_isError(rSize)) return rSize;
2124
0
        ctx->previousDstEnd = (void*)( ((char*)dst) + rSize);
2125
0
        return rSize;
2126
0
    }
2127
2128
0
}