Coverage Report

Created: 2026-03-19 06:59

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/lz4/lib/lz4.c
Line
Count
Source
1
/*
2
   LZ4 - Fast LZ compression algorithm
3
   Copyright (c) Yann Collet. All rights reserved.
4
5
   BSD 2-Clause License (http://www.opensource.org/licenses/bsd-license.php)
6
7
   Redistribution and use in source and binary forms, with or without
8
   modification, are permitted provided that the following conditions are
9
   met:
10
11
       * Redistributions of source code must retain the above copyright
12
   notice, this list of conditions and the following disclaimer.
13
       * Redistributions in binary form must reproduce the above
14
   copyright notice, this list of conditions and the following disclaimer
15
   in the documentation and/or other materials provided with the
16
   distribution.
17
18
   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19
   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
20
   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
21
   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
22
   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
23
   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
24
   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25
   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26
   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27
   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
28
   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29
30
   You can contact the author at :
31
    - LZ4 homepage : http://www.lz4.org
32
    - LZ4 source repository : https://github.com/lz4/lz4
33
*/
34
35
/*-************************************
36
*  Tuning parameters
37
**************************************/
38
/*
39
 * LZ4_HEAPMODE :
40
 * Select how stateless compression functions like `LZ4_compress_default()`
41
 * allocate memory for their hash table,
42
 * in memory stack (0:default, fastest), or in memory heap (1:requires malloc()).
43
 */
44
#ifndef LZ4_HEAPMODE
45
#  define LZ4_HEAPMODE 0
46
#endif
47
48
/*
49
 * LZ4_ACCELERATION_DEFAULT :
50
 * Select "acceleration" for LZ4_compress_fast() when parameter value <= 0
51
 */
52
0
#define LZ4_ACCELERATION_DEFAULT 1
53
/*
54
 * LZ4_ACCELERATION_MAX :
55
 * Any "acceleration" value higher than this threshold
56
 * get treated as LZ4_ACCELERATION_MAX instead (fix #876)
57
 */
58
0
#define LZ4_ACCELERATION_MAX 65537
59
60
61
/*-************************************
62
*  CPU Feature Detection
63
**************************************/
64
/* LZ4_FORCE_MEMORY_ACCESS
65
 * By default, access to unaligned memory is controlled by `memcpy()`, which is safe and portable.
66
 * Unfortunately, on some target/compiler combinations, the generated assembly is sub-optimal.
67
 * The below switch allow to select different access method for improved performance.
68
 * Method 0 (default) : use `memcpy()`. Safe and portable.
69
 * Method 1 : `__packed` statement. It depends on compiler extension (ie, not portable).
70
 *            This method is safe if your compiler supports it, and *generally* as fast or faster than `memcpy`.
71
 * Method 2 : direct access. This method is portable but violate C standard.
72
 *            It can generate buggy code on targets which assembly generation depends on alignment.
73
 *            But in some circumstances, it's the only known way to get the most performance (ie GCC + ARMv6)
74
 * See https://fastcompression.blogspot.fr/2015/08/accessing-unaligned-memory.html for details.
75
 * Prefer these methods in priority order (0 > 1 > 2)
76
 */
77
#ifndef LZ4_FORCE_MEMORY_ACCESS   /* can be defined externally */
78
#  if defined(__GNUC__) && \
79
  ( defined(__ARM_ARCH_6__) || defined(__ARM_ARCH_6J__) || defined(__ARM_ARCH_6K__) \
80
  || defined(__ARM_ARCH_6Z__) || defined(__ARM_ARCH_6ZK__) || defined(__ARM_ARCH_6T2__) \
81
  || (defined(__riscv) && defined(__riscv_zicclsm)) )
82
#    define LZ4_FORCE_MEMORY_ACCESS 2
83
#  elif (defined(__INTEL_COMPILER) && !defined(_WIN32)) || defined(__GNUC__) || defined(_MSC_VER)
84
#    define LZ4_FORCE_MEMORY_ACCESS 1
85
#  endif
86
#endif
87
88
/*
89
 * LZ4_FORCE_SW_BITCOUNT
90
 * Define this parameter if your target system or compiler does not support hardware bit count
91
 */
92
#if defined(_MSC_VER) && defined(_WIN32_WCE)   /* Visual Studio for WinCE doesn't support Hardware bit count */
93
#  undef  LZ4_FORCE_SW_BITCOUNT  /* avoid double def */
94
#  define LZ4_FORCE_SW_BITCOUNT
95
#endif
96
97
98
99
/*-************************************
100
*  Dependency
101
**************************************/
102
/*
103
 * LZ4_SRC_INCLUDED:
104
 * Amalgamation flag, whether lz4.c is included
105
 */
106
#ifndef LZ4_SRC_INCLUDED
107
#  define LZ4_SRC_INCLUDED 1
108
#endif
109
110
#ifndef LZ4_DISABLE_DEPRECATE_WARNINGS
111
#  define LZ4_DISABLE_DEPRECATE_WARNINGS /* due to LZ4_decompress_safe_withPrefix64k */
112
#endif
113
114
#ifndef LZ4_STATIC_LINKING_ONLY
115
#  define LZ4_STATIC_LINKING_ONLY
116
#endif
117
#include "lz4.h"
118
/* see also "memory routines" below */
119
120
121
/*-************************************
122
*  Compiler Options
123
**************************************/
124
#if defined(_MSC_VER) && (_MSC_VER >= 1400)  /* Visual Studio 2005+ */
125
#  include <intrin.h>               /* only present in VS2005+ */
126
#  pragma warning(disable : 4127)   /* disable: C4127: conditional expression is constant */
127
#  pragma warning(disable : 6237)   /* disable: C6237: conditional expression is always 0 */
128
#  pragma warning(disable : 6239)   /* disable: C6239: (<non-zero constant> && <expression>) always evaluates to the result of <expression> */
129
#  pragma warning(disable : 6240)   /* disable: C6240: (<expression> && <non-zero constant>) always evaluates to the result of <expression> */
130
#  pragma warning(disable : 6326)   /* disable: C6326: Potential comparison of a constant with another constant */
131
#endif  /* _MSC_VER */
132
133
#ifndef LZ4_FORCE_INLINE
134
#  if defined (_MSC_VER) && !defined (__clang__)    /* MSVC */
135
#    define LZ4_FORCE_INLINE static __forceinline
136
#  else
137
#    if defined (__cplusplus) || defined (__STDC_VERSION__) && __STDC_VERSION__ >= 199901L   /* C99 */
138
#      if defined (__GNUC__) || defined (__clang__)
139
#        define LZ4_FORCE_INLINE static inline __attribute__((always_inline))
140
#      else
141
#        define LZ4_FORCE_INLINE static inline
142
#      endif
143
#    else
144
#      define LZ4_FORCE_INLINE static
145
#    endif /* __STDC_VERSION__ */
146
#  endif  /* _MSC_VER */
147
#endif /* LZ4_FORCE_INLINE */
148
149
/* LZ4_FORCE_O2 and LZ4_FORCE_INLINE
150
 * gcc on ppc64le generates an unrolled SIMDized loop for LZ4_wildCopy8,
151
 * together with a simple 8-byte copy loop as a fall-back path.
152
 * However, this optimization hurts the decompression speed by >30%,
153
 * because the execution does not go to the optimized loop
154
 * for typical compressible data, and all of the preamble checks
155
 * before going to the fall-back path become useless overhead.
156
 * This optimization happens only with the -O3 flag, and -O2 generates
157
 * a simple 8-byte copy loop.
158
 * With gcc on ppc64le, all of the LZ4_decompress_* and LZ4_wildCopy8
159
 * functions are annotated with __attribute__((optimize("O2"))),
160
 * and also LZ4_wildCopy8 is forcibly inlined, so that the O2 attribute
161
 * of LZ4_wildCopy8 does not affect the compression speed.
162
 */
163
#if defined(__PPC64__) && defined(__LITTLE_ENDIAN__) && defined(__GNUC__) && !defined(__clang__)
164
#  define LZ4_FORCE_O2  __attribute__((optimize("O2")))
165
#  undef LZ4_FORCE_INLINE
166
#  define LZ4_FORCE_INLINE  static __inline __attribute__((optimize("O2"),always_inline))
167
#else
168
#  define LZ4_FORCE_O2
169
#endif
170
171
#if (defined(__GNUC__) && (__GNUC__ >= 3)) || (defined(__INTEL_COMPILER) && (__INTEL_COMPILER >= 800)) || defined(__clang__)
172
41.0M
#  define expect(expr,value)    (__builtin_expect ((expr),(value)) )
173
#else
174
#  define expect(expr,value)    (expr)
175
#endif
176
177
#ifndef likely
178
4.69M
#define likely(expr)     expect((expr) != 0, 1)
179
#endif
180
#ifndef unlikely
181
36.3M
#define unlikely(expr)   expect((expr) != 0, 0)
182
#endif
183
184
/* Should the alignment test prove unreliable, for some reason,
185
 * it can be disabled by setting LZ4_ALIGN_TEST to 0 */
186
#ifndef LZ4_ALIGN_TEST  /* can be externally provided */
187
# define LZ4_ALIGN_TEST 1
188
#endif
189
190
191
/*-************************************
192
*  Memory routines
193
**************************************/
194
195
/*! LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION :
196
 *  Disable relatively high-level LZ4/HC functions that use dynamic memory
197
 *  allocation functions (malloc(), calloc(), free()).
198
 *
199
 *  Note that this is a compile-time switch. And since it disables
200
 *  public/stable LZ4 v1 API functions, we don't recommend using this
201
 *  symbol to generate a library for distribution.
202
 *
203
 *  The following public functions are removed when this symbol is defined.
204
 *  - lz4   : LZ4_createStream, LZ4_freeStream,
205
 *            LZ4_createStreamDecode, LZ4_freeStreamDecode, LZ4_create (deprecated)
206
 *  - lz4hc : LZ4_createStreamHC, LZ4_freeStreamHC,
207
 *            LZ4_createHC (deprecated), LZ4_freeHC  (deprecated)
208
 *  - lz4frame, lz4file : All LZ4F_* functions
209
 */
210
#if defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
211
#  define ALLOC(s)          lz4_error_memory_allocation_is_disabled
212
#  define ALLOC_AND_ZERO(s) lz4_error_memory_allocation_is_disabled
213
#  define FREEMEM(p)        lz4_error_memory_allocation_is_disabled
214
#elif defined(LZ4_USER_MEMORY_FUNCTIONS)
215
/* memory management functions can be customized by user project.
216
 * Below functions must exist somewhere in the Project
217
 * and be available at link time */
218
void* LZ4_malloc(size_t s);
219
void* LZ4_calloc(size_t n, size_t s);
220
void  LZ4_free(void* p);
221
# define ALLOC(s)          LZ4_malloc(s)
222
# define ALLOC_AND_ZERO(s) LZ4_calloc(1,s)
223
# define FREEMEM(p)        LZ4_free(p)
224
#else
225
# include <stdlib.h>   /* malloc, calloc, free */
226
0
# define ALLOC(s)          malloc(s)
227
0
# define ALLOC_AND_ZERO(s) calloc(1,s)
228
0
# define FREEMEM(p)        free(p)
229
#endif
230
231
#if ! LZ4_FREESTANDING
232
#  include <string.h>   /* memset, memcpy */
233
#endif
234
#if !defined(LZ4_memset)
235
40.7k
#  define LZ4_memset(p,v,s) memset((p),(v),(s))
236
#endif
237
40.7k
#define MEM_INIT(p,v,s)   LZ4_memset((p),(v),(s))
238
239
240
/*-************************************
241
*  Common Constants
242
**************************************/
243
7.18M
#define MINMATCH 4
244
245
366
#define WILDCOPYLENGTH 8
246
4.45M
#define LASTLITERALS   5   /* see ../doc/lz4_Block_format.md#parsing-restrictions */
247
17.0k
#define MFLIMIT       12   /* see ../doc/lz4_Block_format.md#parsing-restrictions */
248
0
#define MATCH_SAFEGUARD_DISTANCE  ((2*WILDCOPYLENGTH) - MINMATCH)   /* ensure it's possible to write 2 x wildcopyLength without overflowing output buffer */
249
7.19M
#define FASTLOOP_SAFE_DISTANCE 64
250
static const int LZ4_minLength = (MFLIMIT+1);
251
252
15.1k
#define KB *(1 <<10)
253
#define MB *(1 <<20)
254
0
#define GB *(1U<<30)
255
256
0
#define LZ4_DISTANCE_ABSOLUTE_MAX 65535
257
#if (LZ4_DISTANCE_MAX > LZ4_DISTANCE_ABSOLUTE_MAX)   /* max supported by LZ4 format */
258
#  error "LZ4_DISTANCE_MAX is too big : must be <= 65535"
259
#endif
260
261
29.0M
#define ML_BITS  4
262
14.3M
#define ML_MASK  ((1U<<ML_BITS)-1)
263
7.44M
#define RUN_BITS (8-ML_BITS)
264
7.44M
#define RUN_MASK ((1U<<RUN_BITS)-1)
265
266
267
/*-************************************
268
*  Error detection
269
**************************************/
270
#if defined(LZ4_DEBUG) && (LZ4_DEBUG>=1)
271
#  include <assert.h>
272
#else
273
#  ifndef assert
274
#    define assert(condition) ((void)0)
275
#  endif
276
#endif
277
278
259k
#define LZ4_STATIC_ASSERT(c)   { enum { LZ4_static_assert = 1/(int)(!!(c)) }; }   /* use after variable declarations */
279
280
#if defined(LZ4_DEBUG) && (LZ4_DEBUG>=2)
281
#  include <stdio.h>
282
   static int g_debuglog_enable = 1;
283
#  define DEBUGLOG(l, ...) {                          \
284
        if ((g_debuglog_enable) && (l<=LZ4_DEBUG)) {  \
285
            fprintf(stderr, __FILE__  " %i: ", __LINE__); \
286
            fprintf(stderr, __VA_ARGS__);             \
287
            fprintf(stderr, " \n");                   \
288
    }   }
289
#else
290
32.9M
#  define DEBUGLOG(l, ...) {}    /* disabled */
291
#endif
292
293
static int LZ4_isAligned(const void* ptr, size_t alignment)
294
0
{
295
0
    return ((size_t)ptr & (alignment -1)) == 0;
296
0
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_isAligned
Unexecuted instantiation: lz4_helpers.c:LZ4_isAligned
Unexecuted instantiation: fuzz_data_producer.c:LZ4_isAligned
Unexecuted instantiation: lz4hc.c:LZ4_isAligned
Unexecuted instantiation: lz4.c:LZ4_isAligned
297
298
299
/*-************************************
300
*  Types
301
**************************************/
302
#include <limits.h>
303
#if defined(__cplusplus) || (defined (__STDC_VERSION__) && (__STDC_VERSION__ >= 199901L) /* C99 */)
304
# include <stdint.h>
305
  typedef unsigned char BYTE; /*uint8_t not necessarily blessed to alias arbitrary type*/
306
  typedef uint16_t      U16;
307
  typedef uint32_t      U32;
308
  typedef  int32_t      S32;
309
  typedef uint64_t      U64;
310
  typedef uintptr_t     uptrval;
311
#else
312
# if UINT_MAX != 4294967295UL
313
#   error "LZ4 code (when not C++ or C99) assumes that sizeof(int) == 4"
314
# endif
315
  typedef unsigned char       BYTE;
316
  typedef unsigned short      U16;
317
  typedef unsigned int        U32;
318
  typedef   signed int        S32;
319
  typedef unsigned long long  U64;
320
  typedef size_t              uptrval;   /* generally true, except OpenVMS-64 */
321
#endif
322
323
#if defined(__x86_64__)
324
  typedef U64    reg_t;   /* 64-bits in x32 mode */
325
#else
326
  typedef size_t reg_t;   /* 32-bits in x32 mode */
327
#endif
328
329
typedef enum {
330
    notLimited = 0,
331
    limitedOutput = 1,
332
    fillOutput = 2
333
} limitedOutput_directive;
334
335
336
/*-************************************
337
*  Reading and writing into memory
338
**************************************/
339
340
/**
341
 * LZ4 relies on memcpy with a constant size being inlined. In freestanding
342
 * environments, the compiler can't assume the implementation of memcpy() is
343
 * standard compliant, so it can't apply its specialized memcpy() inlining
344
 * logic. When possible, use __builtin_memcpy() to tell the compiler to analyze
345
 * memcpy() as if it were standard compliant, so it can inline it in freestanding
346
 * environments. This is needed when decompressing the Linux Kernel, for example.
347
 */
348
#if !defined(LZ4_memcpy)
349
#  if defined(__GNUC__) && (__GNUC__ >= 4)
350
86.3M
#    define LZ4_memcpy(dst, src, size) __builtin_memcpy(dst, src, size)
351
#  else
352
#    define LZ4_memcpy(dst, src, size) memcpy(dst, src, size)
353
#  endif
354
#endif
355
356
#if !defined(LZ4_memmove)
357
#  if defined(__GNUC__) && (__GNUC__ >= 4)
358
8.46k
#    define LZ4_memmove __builtin_memmove
359
#  else
360
#    define LZ4_memmove memmove
361
#  endif
362
#endif
363
364
static unsigned LZ4_isLittleEndian(void)
365
7.18M
{
366
7.18M
    const union { U32 u; BYTE c[4]; } one = { 1 };   /* don't use static : performance detrimental */
367
7.18M
    return one.c[0];
368
7.18M
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_isLittleEndian
Unexecuted instantiation: lz4_helpers.c:LZ4_isLittleEndian
Unexecuted instantiation: fuzz_data_producer.c:LZ4_isLittleEndian
Unexecuted instantiation: lz4hc.c:LZ4_isLittleEndian
lz4.c:LZ4_isLittleEndian
Line
Count
Source
365
7.18M
{
366
7.18M
    const union { U32 u; BYTE c[4]; } one = { 1 };   /* don't use static : performance detrimental */
367
7.18M
    return one.c[0];
368
7.18M
}
369
370
#if defined(__GNUC__) || defined(__INTEL_COMPILER)
371
#define LZ4_PACK( __Declaration__ ) __Declaration__ __attribute__((__packed__))
372
#elif defined(_MSC_VER)
373
#define LZ4_PACK( __Declaration__ ) __pragma( pack(push, 1) ) __Declaration__ __pragma( pack(pop))
374
#endif
375
376
#if defined(LZ4_FORCE_MEMORY_ACCESS) && (LZ4_FORCE_MEMORY_ACCESS==2)
377
/* lie to the compiler about data alignment; use with caution */
378
379
static U16 LZ4_read16(const void* memPtr) { return *(const U16*) memPtr; }
380
static U32 LZ4_read32(const void* memPtr) { return *(const U32*) memPtr; }
381
static reg_t LZ4_read_ARCH(const void* memPtr) { return *(const reg_t*) memPtr; }
382
383
static void LZ4_write16(void* memPtr, U16 value) { *(U16*)memPtr = value; }
384
static void LZ4_write32(void* memPtr, U32 value) { *(U32*)memPtr = value; }
385
386
#elif defined(LZ4_FORCE_MEMORY_ACCESS) && (LZ4_FORCE_MEMORY_ACCESS==1)
387
388
/* __pack instructions are safer, but compiler specific, hence potentially problematic for some compilers */
389
/* currently only defined for gcc and icc */
390
LZ4_PACK(typedef struct { U16 u16; }) LZ4_unalign16;
391
LZ4_PACK(typedef struct { U32 u32; }) LZ4_unalign32;
392
LZ4_PACK(typedef struct { reg_t uArch; }) LZ4_unalignST;
393
394
7.18M
static U16 LZ4_read16(const void* ptr) { return ((const LZ4_unalign16*)ptr)->u16; }
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_read16
Unexecuted instantiation: lz4_helpers.c:LZ4_read16
Unexecuted instantiation: fuzz_data_producer.c:LZ4_read16
Unexecuted instantiation: lz4hc.c:LZ4_read16
lz4.c:LZ4_read16
Line
Count
Source
394
7.18M
static U16 LZ4_read16(const void* ptr) { return ((const LZ4_unalign16*)ptr)->u16; }
395
0
static U32 LZ4_read32(const void* ptr) { return ((const LZ4_unalign32*)ptr)->u32; }
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_read32
Unexecuted instantiation: lz4_helpers.c:LZ4_read32
Unexecuted instantiation: fuzz_data_producer.c:LZ4_read32
Unexecuted instantiation: lz4hc.c:LZ4_read32
Unexecuted instantiation: lz4.c:LZ4_read32
396
0
static reg_t LZ4_read_ARCH(const void* ptr) { return ((const LZ4_unalignST*)ptr)->uArch; }
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_read_ARCH
Unexecuted instantiation: lz4_helpers.c:LZ4_read_ARCH
Unexecuted instantiation: fuzz_data_producer.c:LZ4_read_ARCH
Unexecuted instantiation: lz4hc.c:LZ4_read_ARCH
Unexecuted instantiation: lz4.c:LZ4_read_ARCH
397
398
0
static void LZ4_write16(void* memPtr, U16 value) { ((LZ4_unalign16*)memPtr)->u16 = value; }
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_write16
Unexecuted instantiation: lz4_helpers.c:LZ4_write16
Unexecuted instantiation: fuzz_data_producer.c:LZ4_write16
Unexecuted instantiation: lz4hc.c:LZ4_write16
Unexecuted instantiation: lz4.c:LZ4_write16
399
1.41M
static void LZ4_write32(void* memPtr, U32 value) { ((LZ4_unalign32*)memPtr)->u32 = value; }
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_write32
Unexecuted instantiation: lz4_helpers.c:LZ4_write32
Unexecuted instantiation: fuzz_data_producer.c:LZ4_write32
Unexecuted instantiation: lz4hc.c:LZ4_write32
lz4.c:LZ4_write32
Line
Count
Source
399
1.41M
static void LZ4_write32(void* memPtr, U32 value) { ((LZ4_unalign32*)memPtr)->u32 = value; }
400
401
#else  /* safe and portable access using memcpy() */
402
403
static U16 LZ4_read16(const void* memPtr)
404
{
405
    U16 val; LZ4_memcpy(&val, memPtr, sizeof(val)); return val;
406
}
407
408
static U32 LZ4_read32(const void* memPtr)
409
{
410
    U32 val; LZ4_memcpy(&val, memPtr, sizeof(val)); return val;
411
}
412
413
static reg_t LZ4_read_ARCH(const void* memPtr)
414
{
415
    reg_t val; LZ4_memcpy(&val, memPtr, sizeof(val)); return val;
416
}
417
418
static void LZ4_write16(void* memPtr, U16 value)
419
{
420
    LZ4_memcpy(memPtr, &value, sizeof(value));
421
}
422
423
static void LZ4_write32(void* memPtr, U32 value)
424
{
425
    LZ4_memcpy(memPtr, &value, sizeof(value));
426
}
427
428
#endif /* LZ4_FORCE_MEMORY_ACCESS */
429
430
431
static U16 LZ4_readLE16(const void* memPtr)
432
7.18M
{
433
7.18M
    if (LZ4_isLittleEndian()) {
434
7.18M
        return LZ4_read16(memPtr);
435
7.18M
    } else {
436
0
        const BYTE* p = (const BYTE*)memPtr;
437
0
        return (U16)((U16)p[0] | (p[1]<<8));
438
0
    }
439
7.18M
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_readLE16
Unexecuted instantiation: lz4_helpers.c:LZ4_readLE16
Unexecuted instantiation: fuzz_data_producer.c:LZ4_readLE16
Unexecuted instantiation: lz4hc.c:LZ4_readLE16
lz4.c:LZ4_readLE16
Line
Count
Source
432
7.18M
{
433
7.18M
    if (LZ4_isLittleEndian()) {
434
7.18M
        return LZ4_read16(memPtr);
435
7.18M
    } else {
436
0
        const BYTE* p = (const BYTE*)memPtr;
437
0
        return (U16)((U16)p[0] | (p[1]<<8));
438
0
    }
439
7.18M
}
440
441
#ifdef LZ4_STATIC_LINKING_ONLY_ENDIANNESS_INDEPENDENT_OUTPUT
442
static U32 LZ4_readLE32(const void* memPtr)
443
{
444
    if (LZ4_isLittleEndian()) {
445
        return LZ4_read32(memPtr);
446
    } else {
447
        const BYTE* p = (const BYTE*)memPtr;
448
        return (U32)p[0] | (p[1]<<8) | (p[2]<<16) | (p[3]<<24);
449
    }
450
}
451
#endif
452
453
static void LZ4_writeLE16(void* memPtr, U16 value)
454
0
{
455
0
    if (LZ4_isLittleEndian()) {
456
0
        LZ4_write16(memPtr, value);
457
0
    } else {
458
0
        BYTE* p = (BYTE*)memPtr;
459
0
        p[0] = (BYTE) value;
460
0
        p[1] = (BYTE)(value>>8);
461
0
    }
462
0
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_writeLE16
Unexecuted instantiation: lz4_helpers.c:LZ4_writeLE16
Unexecuted instantiation: fuzz_data_producer.c:LZ4_writeLE16
Unexecuted instantiation: lz4hc.c:LZ4_writeLE16
Unexecuted instantiation: lz4.c:LZ4_writeLE16
463
464
/* customized variant of memcpy, which can overwrite up to 8 bytes beyond dstEnd */
465
LZ4_FORCE_INLINE
466
void LZ4_wildCopy8(void* dstPtr, const void* srcPtr, void* dstEnd)
467
1.45M
{
468
1.45M
    BYTE* d = (BYTE*)dstPtr;
469
1.45M
    const BYTE* s = (const BYTE*)srcPtr;
470
1.45M
    BYTE* const e = (BYTE*)dstEnd;
471
472
26.3M
    do { LZ4_memcpy(d,s,8); d+=8; s+=8; } while (d<e);
473
1.45M
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_wildCopy8
Unexecuted instantiation: lz4_helpers.c:LZ4_wildCopy8
Unexecuted instantiation: fuzz_data_producer.c:LZ4_wildCopy8
Unexecuted instantiation: lz4hc.c:LZ4_wildCopy8
lz4.c:LZ4_wildCopy8
Line
Count
Source
467
1.45M
{
468
1.45M
    BYTE* d = (BYTE*)dstPtr;
469
1.45M
    const BYTE* s = (const BYTE*)srcPtr;
470
1.45M
    BYTE* const e = (BYTE*)dstEnd;
471
472
26.3M
    do { LZ4_memcpy(d,s,8); d+=8; s+=8; } while (d<e);
473
1.45M
}
474
475
static const unsigned inc32table[8] = {0, 1, 2,  1,  0,  4, 4, 4};
476
static const int      dec64table[8] = {0, 0, 0, -1, -4,  1, 2, 3};
477
478
479
#ifndef LZ4_FAST_DEC_LOOP
480
#  if defined __i386__ || defined _M_IX86 || defined __x86_64__ || defined _M_X64
481
#    define LZ4_FAST_DEC_LOOP 1
482
#  elif defined(__aarch64__)
483
#    define LZ4_FAST_DEC_LOOP 1
484
#  else
485
#    define LZ4_FAST_DEC_LOOP 0
486
#  endif
487
#endif
488
489
#if LZ4_FAST_DEC_LOOP
490
491
LZ4_FORCE_INLINE void
492
LZ4_memcpy_using_offset_base(BYTE* dstPtr, const BYTE* srcPtr, BYTE* dstEnd, const size_t offset)
493
1.44M
{
494
1.44M
    assert(srcPtr + offset == dstPtr);
495
1.44M
    if (offset < 8) {
496
1.41M
        LZ4_write32(dstPtr, 0);   /* silence an msan warning when offset==0 */
497
1.41M
        dstPtr[0] = srcPtr[0];
498
1.41M
        dstPtr[1] = srcPtr[1];
499
1.41M
        dstPtr[2] = srcPtr[2];
500
1.41M
        dstPtr[3] = srcPtr[3];
501
1.41M
        srcPtr += inc32table[offset];
502
1.41M
        LZ4_memcpy(dstPtr+4, srcPtr, 4);
503
1.41M
        srcPtr -= dec64table[offset];
504
1.41M
        dstPtr += 8;
505
1.41M
    } else {
506
28.8k
        LZ4_memcpy(dstPtr, srcPtr, 8);
507
28.8k
        dstPtr += 8;
508
28.8k
        srcPtr += 8;
509
28.8k
    }
510
511
1.44M
    LZ4_wildCopy8(dstPtr, srcPtr, dstEnd);
512
1.44M
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_memcpy_using_offset_base
Unexecuted instantiation: lz4_helpers.c:LZ4_memcpy_using_offset_base
Unexecuted instantiation: fuzz_data_producer.c:LZ4_memcpy_using_offset_base
Unexecuted instantiation: lz4hc.c:LZ4_memcpy_using_offset_base
lz4.c:LZ4_memcpy_using_offset_base
Line
Count
Source
493
1.44M
{
494
1.44M
    assert(srcPtr + offset == dstPtr);
495
1.44M
    if (offset < 8) {
496
1.41M
        LZ4_write32(dstPtr, 0);   /* silence an msan warning when offset==0 */
497
1.41M
        dstPtr[0] = srcPtr[0];
498
1.41M
        dstPtr[1] = srcPtr[1];
499
1.41M
        dstPtr[2] = srcPtr[2];
500
1.41M
        dstPtr[3] = srcPtr[3];
501
1.41M
        srcPtr += inc32table[offset];
502
1.41M
        LZ4_memcpy(dstPtr+4, srcPtr, 4);
503
1.41M
        srcPtr -= dec64table[offset];
504
1.41M
        dstPtr += 8;
505
1.41M
    } else {
506
28.8k
        LZ4_memcpy(dstPtr, srcPtr, 8);
507
28.8k
        dstPtr += 8;
508
28.8k
        srcPtr += 8;
509
28.8k
    }
510
511
1.44M
    LZ4_wildCopy8(dstPtr, srcPtr, dstEnd);
512
1.44M
}
513
514
/* customized variant of memcpy, which can overwrite up to 32 bytes beyond dstEnd
515
 * this version copies two times 16 bytes (instead of one time 32 bytes)
516
 * because it must be compatible with offsets >= 16. */
517
LZ4_FORCE_INLINE void
518
LZ4_wildCopy32(void* dstPtr, const void* srcPtr, void* dstEnd)
519
4.57M
{
520
4.57M
    BYTE* d = (BYTE*)dstPtr;
521
4.57M
    const BYTE* s = (const BYTE*)srcPtr;
522
4.57M
    BYTE* const e = (BYTE*)dstEnd;
523
524
18.3M
    do { LZ4_memcpy(d,s,16); LZ4_memcpy(d+16,s+16,16); d+=32; s+=32; } while (d<e);
525
4.57M
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_wildCopy32
Unexecuted instantiation: lz4_helpers.c:LZ4_wildCopy32
Unexecuted instantiation: fuzz_data_producer.c:LZ4_wildCopy32
Unexecuted instantiation: lz4hc.c:LZ4_wildCopy32
lz4.c:LZ4_wildCopy32
Line
Count
Source
519
4.57M
{
520
4.57M
    BYTE* d = (BYTE*)dstPtr;
521
4.57M
    const BYTE* s = (const BYTE*)srcPtr;
522
4.57M
    BYTE* const e = (BYTE*)dstEnd;
523
524
18.3M
    do { LZ4_memcpy(d,s,16); LZ4_memcpy(d+16,s+16,16); d+=32; s+=32; } while (d<e);
525
4.57M
}
526
527
/* LZ4_memcpy_using_offset()  presumes :
528
 * - dstEnd >= dstPtr + MINMATCH
529
 * - there is at least 12 bytes available to write after dstEnd */
530
LZ4_FORCE_INLINE void
531
LZ4_memcpy_using_offset(BYTE* dstPtr, const BYTE* srcPtr, BYTE* dstEnd, const size_t offset)
532
1.54M
{
533
1.54M
    BYTE v[8];
534
535
1.54M
    assert(dstEnd >= dstPtr + MINMATCH);
536
537
1.54M
    switch(offset) {
538
40.7k
    case 1:
539
40.7k
        MEM_INIT(v, *srcPtr, 8);
540
40.7k
        break;
541
43.0k
    case 2:
542
43.0k
        LZ4_memcpy(v, srcPtr, 2);
543
43.0k
        LZ4_memcpy(&v[2], srcPtr, 2);
544
#if defined(_MSC_VER) && (_MSC_VER <= 1937) /* MSVC 2022 ver 17.7 or earlier */
545
#  pragma warning(push)
546
#  pragma warning(disable : 6385) /* warning C6385: Reading invalid data from 'v'. */
547
#endif
548
43.0k
        LZ4_memcpy(&v[4], v, 4);
549
#if defined(_MSC_VER) && (_MSC_VER <= 1937) /* MSVC 2022 ver 17.7 or earlier */
550
#  pragma warning(pop)
551
#endif
552
43.0k
        break;
553
15.5k
    case 4:
554
15.5k
        LZ4_memcpy(v, srcPtr, 4);
555
15.5k
        LZ4_memcpy(&v[4], srcPtr, 4);
556
15.5k
        break;
557
1.44M
    default:
558
1.44M
        LZ4_memcpy_using_offset_base(dstPtr, srcPtr, dstEnd, offset);
559
1.44M
        return;
560
1.54M
    }
561
562
99.4k
    LZ4_memcpy(dstPtr, v, 8);
563
99.4k
    dstPtr += 8;
564
10.9M
    while (dstPtr < dstEnd) {
565
10.8M
        LZ4_memcpy(dstPtr, v, 8);
566
10.8M
        dstPtr += 8;
567
10.8M
    }
568
99.4k
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_memcpy_using_offset
Unexecuted instantiation: lz4_helpers.c:LZ4_memcpy_using_offset
Unexecuted instantiation: fuzz_data_producer.c:LZ4_memcpy_using_offset
Unexecuted instantiation: lz4hc.c:LZ4_memcpy_using_offset
lz4.c:LZ4_memcpy_using_offset
Line
Count
Source
532
1.54M
{
533
1.54M
    BYTE v[8];
534
535
1.54M
    assert(dstEnd >= dstPtr + MINMATCH);
536
537
1.54M
    switch(offset) {
538
40.7k
    case 1:
539
40.7k
        MEM_INIT(v, *srcPtr, 8);
540
40.7k
        break;
541
43.0k
    case 2:
542
43.0k
        LZ4_memcpy(v, srcPtr, 2);
543
43.0k
        LZ4_memcpy(&v[2], srcPtr, 2);
544
#if defined(_MSC_VER) && (_MSC_VER <= 1937) /* MSVC 2022 ver 17.7 or earlier */
545
#  pragma warning(push)
546
#  pragma warning(disable : 6385) /* warning C6385: Reading invalid data from 'v'. */
547
#endif
548
43.0k
        LZ4_memcpy(&v[4], v, 4);
549
#if defined(_MSC_VER) && (_MSC_VER <= 1937) /* MSVC 2022 ver 17.7 or earlier */
550
#  pragma warning(pop)
551
#endif
552
43.0k
        break;
553
15.5k
    case 4:
554
15.5k
        LZ4_memcpy(v, srcPtr, 4);
555
15.5k
        LZ4_memcpy(&v[4], srcPtr, 4);
556
15.5k
        break;
557
1.44M
    default:
558
1.44M
        LZ4_memcpy_using_offset_base(dstPtr, srcPtr, dstEnd, offset);
559
1.44M
        return;
560
1.54M
    }
561
562
99.4k
    LZ4_memcpy(dstPtr, v, 8);
563
99.4k
    dstPtr += 8;
564
10.9M
    while (dstPtr < dstEnd) {
565
10.8M
        LZ4_memcpy(dstPtr, v, 8);
566
10.8M
        dstPtr += 8;
567
10.8M
    }
568
99.4k
}
569
#endif
570
571
572
/*-************************************
573
*  Common functions
574
**************************************/
575
static unsigned LZ4_NbCommonBytes (reg_t val)
576
0
{
577
0
    assert(val != 0);
578
0
    if (LZ4_isLittleEndian()) {
579
0
        if (sizeof(val) == 8) {
580
#       if defined(_MSC_VER) && (_MSC_VER >= 1800) && (defined(_M_AMD64) && !defined(_M_ARM64EC)) && !defined(LZ4_FORCE_SW_BITCOUNT)
581
/*-*************************************************************************************************
582
* ARM64EC is a Microsoft-designed ARM64 ABI compatible with AMD64 applications on ARM64 Windows 11.
583
* The ARM64EC ABI does not support AVX/AVX2/AVX512 instructions, nor their relevant intrinsics
584
* including _tzcnt_u64. Therefore, we need to neuter the _tzcnt_u64 code path for ARM64EC.
585
****************************************************************************************************/
586
#         if defined(__clang__) && (__clang_major__ < 10)
587
            /* Avoid undefined clang-cl intrinsics issue.
588
             * See https://github.com/lz4/lz4/pull/1017 for details. */
589
            return (unsigned)__builtin_ia32_tzcnt_u64(val) >> 3;
590
#         else
591
            /* x64 CPUS without BMI support interpret `TZCNT` as `REP BSF` */
592
            return (unsigned)_tzcnt_u64(val) >> 3;
593
#         endif
594
#       elif defined(_MSC_VER) && defined(_WIN64) && !defined(LZ4_FORCE_SW_BITCOUNT)
595
            unsigned long r = 0;
596
            _BitScanForward64(&r, (U64)val);
597
            return (unsigned)r >> 3;
598
#       elif (defined(__clang__) || (defined(__GNUC__) && ((__GNUC__ > 3) || \
599
                            ((__GNUC__ == 3) && (__GNUC_MINOR__ >= 4))))) && \
600
                                        !defined(LZ4_FORCE_SW_BITCOUNT)
601
            return (unsigned)__builtin_ctzll((U64)val) >> 3;
602
#       else
603
            const U64 m = 0x0101010101010101ULL;
604
            val ^= val - 1;
605
            return (unsigned)(((U64)((val & (m - 1)) * m)) >> 56);
606
#       endif
607
0
        } else /* 32 bits */ {
608
#       if defined(_MSC_VER) && (_MSC_VER >= 1400) && !defined(LZ4_FORCE_SW_BITCOUNT)
609
            unsigned long r;
610
            _BitScanForward(&r, (U32)val);
611
            return (unsigned)r >> 3;
612
#       elif (defined(__clang__) || (defined(__GNUC__) && ((__GNUC__ > 3) || \
613
                            ((__GNUC__ == 3) && (__GNUC_MINOR__ >= 4))))) && \
614
                        !defined(__TINYC__) && !defined(LZ4_FORCE_SW_BITCOUNT)
615
            return (unsigned)__builtin_ctz((U32)val) >> 3;
616
#       else
617
            const U32 m = 0x01010101;
618
            return (unsigned)((((val - 1) ^ val) & (m - 1)) * m) >> 24;
619
#       endif
620
0
        }
621
0
    } else   /* Big Endian CPU */ {
622
0
        if (sizeof(val)==8) {
623
0
#       if (defined(__clang__) || (defined(__GNUC__) && ((__GNUC__ > 3) || \
624
0
                            ((__GNUC__ == 3) && (__GNUC_MINOR__ >= 4))))) && \
625
0
                        !defined(__TINYC__) && !defined(LZ4_FORCE_SW_BITCOUNT)
626
0
            return (unsigned)__builtin_clzll((U64)val) >> 3;
627
#       else
628
#if 1
629
            /* this method is probably faster,
630
             * but adds a 128 bytes lookup table */
631
            static const unsigned char ctz7_tab[128] = {
632
                7, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
633
                4, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
634
                5, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
635
                4, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
636
                6, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
637
                4, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
638
                5, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
639
                4, 0, 1, 0, 2, 0, 1, 0, 3, 0, 1, 0, 2, 0, 1, 0,
640
            };
641
            U64 const mask = 0x0101010101010101ULL;
642
            U64 const t = (((val >> 8) - mask) | val) & mask;
643
            return ctz7_tab[(t * 0x0080402010080402ULL) >> 57];
644
#else
645
            /* this method doesn't consume memory space like the previous one,
646
             * but it contains several branches,
647
             * that may end up slowing execution */
648
            static const U32 by32 = sizeof(val)*4;  /* 32 on 64 bits (goal), 16 on 32 bits.
649
            Just to avoid some static analyzer complaining about shift by 32 on 32-bits target.
650
            Note that this code path is never triggered in 32-bits mode. */
651
            unsigned r;
652
            if (!(val>>by32)) { r=4; } else { r=0; val>>=by32; }
653
            if (!(val>>16)) { r+=2; val>>=8; } else { val>>=24; }
654
            r += (!val);
655
            return r;
656
#endif
657
#       endif
658
0
        } else /* 32 bits */ {
659
0
#       if (defined(__clang__) || (defined(__GNUC__) && ((__GNUC__ > 3) || \
660
0
                            ((__GNUC__ == 3) && (__GNUC_MINOR__ >= 4))))) && \
661
0
                                        !defined(LZ4_FORCE_SW_BITCOUNT)
662
0
            return (unsigned)__builtin_clz((U32)val) >> 3;
663
#       else
664
            val >>= 8;
665
            val = ((((val + 0x00FFFF00) | 0x00FFFFFF) + val) |
666
              (val + 0x00FF0000)) >> 24;
667
            return (unsigned)val ^ 3;
668
#       endif
669
0
        }
670
0
    }
671
0
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_NbCommonBytes
Unexecuted instantiation: lz4_helpers.c:LZ4_NbCommonBytes
Unexecuted instantiation: fuzz_data_producer.c:LZ4_NbCommonBytes
Unexecuted instantiation: lz4hc.c:LZ4_NbCommonBytes
Unexecuted instantiation: lz4.c:LZ4_NbCommonBytes
672
673
674
0
#define STEPSIZE sizeof(reg_t)
675
LZ4_FORCE_INLINE
676
unsigned LZ4_count(const BYTE* pIn, const BYTE* pMatch, const BYTE* pInLimit)
677
0
{
678
0
    const BYTE* const pStart = pIn;
679
680
0
    if (likely(pIn < pInLimit-(STEPSIZE-1))) {
681
0
        reg_t const diff = LZ4_read_ARCH(pMatch) ^ LZ4_read_ARCH(pIn);
682
0
        if (!diff) {
683
0
            pIn+=STEPSIZE; pMatch+=STEPSIZE;
684
0
        } else {
685
0
            return LZ4_NbCommonBytes(diff);
686
0
    }   }
687
688
0
    while (likely(pIn < pInLimit-(STEPSIZE-1))) {
689
0
        reg_t const diff = LZ4_read_ARCH(pMatch) ^ LZ4_read_ARCH(pIn);
690
0
        if (!diff) { pIn+=STEPSIZE; pMatch+=STEPSIZE; continue; }
691
0
        pIn += LZ4_NbCommonBytes(diff);
692
0
        return (unsigned)(pIn - pStart);
693
0
    }
694
695
0
    if ((STEPSIZE==8) && (pIn<(pInLimit-3)) && (LZ4_read32(pMatch) == LZ4_read32(pIn))) { pIn+=4; pMatch+=4; }
696
0
    if ((pIn<(pInLimit-1)) && (LZ4_read16(pMatch) == LZ4_read16(pIn))) { pIn+=2; pMatch+=2; }
697
0
    if ((pIn<pInLimit) && (*pMatch == *pIn)) pIn++;
698
0
    return (unsigned)(pIn - pStart);
699
0
}
Unexecuted instantiation: decompress_frame_fuzzer.c:LZ4_count
Unexecuted instantiation: lz4_helpers.c:LZ4_count
Unexecuted instantiation: fuzz_data_producer.c:LZ4_count
Unexecuted instantiation: lz4hc.c:LZ4_count
Unexecuted instantiation: lz4.c:LZ4_count
700
701
702
#ifndef LZ4_COMMONDEFS_ONLY
703
/*-************************************
704
*  Local Constants
705
**************************************/
706
static const int LZ4_64Klimit = ((64 KB) + (MFLIMIT-1));
707
static const U32 LZ4_skipTrigger = 6;  /* Increase this value ==> compression run slower on incompressible data */
708
709
710
/*-************************************
711
*  Local Structures and types
712
**************************************/
713
typedef enum { clearedTable = 0, byPtr, byU32, byU16 } tableType_t;
714
715
/**
716
 * This enum distinguishes several different modes of accessing previous
717
 * content in the stream.
718
 *
719
 * - noDict        : There is no preceding content.
720
 * - withPrefix64k : Table entries up to ctx->dictSize before the current blob
721
 *                   blob being compressed are valid and refer to the preceding
722
 *                   content (of length ctx->dictSize), which is available
723
 *                   contiguously preceding in memory the content currently
724
 *                   being compressed.
725
 * - usingExtDict  : Like withPrefix64k, but the preceding content is somewhere
726
 *                   else in memory, starting at ctx->dictionary with length
727
 *                   ctx->dictSize.
728
 * - usingDictCtx  : Everything concerning the preceding content is
729
 *                   in a separate context, pointed to by ctx->dictCtx.
730
 *                   ctx->dictionary, ctx->dictSize, and table entries
731
 *                   in the current context that refer to positions
732
 *                   preceding the beginning of the current compression are
733
 *                   ignored. Instead, ctx->dictCtx->dictionary and ctx->dictCtx
734
 *                   ->dictSize describe the location and size of the preceding
735
 *                   content, and matches are found by looking in the ctx
736
 *                   ->dictCtx->hashTable.
737
 */
738
typedef enum { noDict = 0, withPrefix64k, usingExtDict, usingDictCtx } dict_directive;
739
typedef enum { noDictIssue = 0, dictSmall } dictIssue_directive;
740
741
742
/*-************************************
743
*  Local Utils
744
**************************************/
745
0
int LZ4_versionNumber (void) { return LZ4_VERSION_NUMBER; }
746
0
const char* LZ4_versionString(void) { return LZ4_VERSION_STRING; }
747
0
int LZ4_compressBound(int isize)  { return LZ4_COMPRESSBOUND(isize); }
748
0
int LZ4_sizeofState(void) { return sizeof(LZ4_stream_t); }
749
750
751
/*-****************************************
752
*  Internal Definitions, used only in Tests
753
*******************************************/
754
#if defined (__cplusplus)
755
extern "C" {
756
#endif
757
758
int LZ4_compress_forceExtDict (LZ4_stream_t* LZ4_dict, const char* source, char* dest, int srcSize);
759
760
int LZ4_decompress_safe_forceExtDict(const char* source, char* dest,
761
                                     int compressedSize, int maxOutputSize,
762
                                     const void* dictStart, size_t dictSize);
763
int LZ4_decompress_safe_partial_forceExtDict(const char* source, char* dest,
764
                                     int compressedSize, int targetOutputSize, int dstCapacity,
765
                                     const void* dictStart, size_t dictSize);
766
#if defined (__cplusplus)
767
}
768
#endif
769
770
/*-******************************
771
*  Compression functions
772
********************************/
773
LZ4_FORCE_INLINE U32 LZ4_hash4(U32 sequence, tableType_t const tableType)
774
0
{
775
0
    if (tableType == byU16)
776
0
        return ((sequence * 2654435761U) >> ((MINMATCH*8)-(LZ4_HASHLOG+1)));
777
0
    else
778
0
        return ((sequence * 2654435761U) >> ((MINMATCH*8)-LZ4_HASHLOG));
779
0
}
780
781
LZ4_FORCE_INLINE U32 LZ4_hash5(U64 sequence, tableType_t const tableType)
782
0
{
783
0
    const U32 hashLog = (tableType == byU16) ? LZ4_HASHLOG+1 : LZ4_HASHLOG;
784
0
    if (LZ4_isLittleEndian()) {
785
0
        const U64 prime5bytes = 889523592379ULL;
786
0
        return (U32)(((sequence << 24) * prime5bytes) >> (64 - hashLog));
787
0
    } else {
788
0
        const U64 prime8bytes = 11400714785074694791ULL;
789
0
        return (U32)(((sequence >> 24) * prime8bytes) >> (64 - hashLog));
790
0
    }
791
0
}
792
793
LZ4_FORCE_INLINE U32 LZ4_hashPosition(const void* const p, tableType_t const tableType)
794
0
{
795
0
    if ((sizeof(reg_t)==8) && (tableType != byU16)) return LZ4_hash5(LZ4_read_ARCH(p), tableType);
796
797
#ifdef LZ4_STATIC_LINKING_ONLY_ENDIANNESS_INDEPENDENT_OUTPUT
798
    return LZ4_hash4(LZ4_readLE32(p), tableType);
799
#else
800
0
    return LZ4_hash4(LZ4_read32(p), tableType);
801
0
#endif
802
0
}
803
804
LZ4_FORCE_INLINE void LZ4_clearHash(U32 h, void* tableBase, tableType_t const tableType)
805
0
{
806
0
    switch (tableType)
807
0
    {
808
0
    default: /* fallthrough */
809
0
    case clearedTable: { /* illegal! */ assert(0); return; }
810
0
    case byPtr: { const BYTE** hashTable = (const BYTE**)tableBase; hashTable[h] = NULL; return; }
811
0
    case byU32: { U32* hashTable = (U32*) tableBase; hashTable[h] = 0; return; }
812
0
    case byU16: { U16* hashTable = (U16*) tableBase; hashTable[h] = 0; return; }
813
0
    }
814
0
}
815
816
LZ4_FORCE_INLINE void LZ4_putIndexOnHash(U32 idx, U32 h, void* tableBase, tableType_t const tableType)
817
0
{
818
0
    switch (tableType)
819
0
    {
820
0
    default: /* fallthrough */
821
0
    case clearedTable: /* fallthrough */
822
0
    case byPtr: { /* illegal! */ assert(0); return; }
823
0
    case byU32: { U32* hashTable = (U32*) tableBase; hashTable[h] = idx; return; }
824
0
    case byU16: { U16* hashTable = (U16*) tableBase; assert(idx < 65536); hashTable[h] = (U16)idx; return; }
825
0
    }
826
0
}
827
828
/* LZ4_putPosition*() : only used in byPtr mode */
829
LZ4_FORCE_INLINE void LZ4_putPositionOnHash(const BYTE* p, U32 h,
830
                                  void* tableBase, tableType_t const tableType)
831
0
{
832
0
    const BYTE** const hashTable = (const BYTE**)tableBase;
833
0
    assert(tableType == byPtr); (void)tableType;
834
0
    hashTable[h] = p;
835
0
}
836
837
LZ4_FORCE_INLINE void LZ4_putPosition(const BYTE* p, void* tableBase, tableType_t tableType)
838
0
{
839
0
    U32 const h = LZ4_hashPosition(p, tableType);
840
0
    LZ4_putPositionOnHash(p, h, tableBase, tableType);
841
0
}
842
843
/* LZ4_getIndexOnHash() :
844
 * Index of match position registered in hash table.
845
 * hash position must be calculated by using base+index, or dictBase+index.
846
 * Assumption 1 : only valid if tableType == byU32 or byU16.
847
 * Assumption 2 : h is presumed valid (within limits of hash table)
848
 */
849
LZ4_FORCE_INLINE U32 LZ4_getIndexOnHash(U32 h, const void* tableBase, tableType_t tableType)
850
0
{
851
0
    LZ4_STATIC_ASSERT(LZ4_MEMORY_USAGE > 2);
852
0
    if (tableType == byU32) {
853
0
        const U32* const hashTable = (const U32*) tableBase;
854
0
        assert(h < (1U << (LZ4_MEMORY_USAGE-2)));
855
0
        return hashTable[h];
856
0
    }
857
0
    if (tableType == byU16) {
858
0
        const U16* const hashTable = (const U16*) tableBase;
859
0
        assert(h < (1U << (LZ4_MEMORY_USAGE-1)));
860
0
        return hashTable[h];
861
0
    }
862
0
    assert(0); return 0;  /* forbidden case */
863
0
}
864
865
static const BYTE* LZ4_getPositionOnHash(U32 h, const void* tableBase, tableType_t tableType)
866
0
{
867
0
    assert(tableType == byPtr); (void)tableType;
868
0
    { const BYTE* const* hashTable = (const BYTE* const*) tableBase; return hashTable[h]; }
869
0
}
870
871
LZ4_FORCE_INLINE const BYTE*
872
LZ4_getPosition(const BYTE* p,
873
                const void* tableBase, tableType_t tableType)
874
0
{
875
0
    U32 const h = LZ4_hashPosition(p, tableType);
876
0
    return LZ4_getPositionOnHash(h, tableBase, tableType);
877
0
}
878
879
LZ4_FORCE_INLINE void
880
LZ4_prepareTable(LZ4_stream_t_internal* const cctx,
881
           const int inputSize,
882
0
           const tableType_t tableType) {
883
    /* If the table hasn't been used, it's guaranteed to be zeroed out, and is
884
     * therefore safe to use no matter what mode we're in. Otherwise, we figure
885
     * out if it's safe to leave as is or whether it needs to be reset.
886
     */
887
0
    if ((tableType_t)cctx->tableType != clearedTable) {
888
0
        assert(inputSize >= 0);
889
0
        if ((tableType_t)cctx->tableType != tableType
890
0
          || ((tableType == byU16) && cctx->currentOffset + (unsigned)inputSize >= 0xFFFFU)
891
0
          || ((tableType == byU32) && cctx->currentOffset > 1 GB)
892
0
          || tableType == byPtr
893
0
          || inputSize >= 4 KB)
894
0
        {
895
0
            DEBUGLOG(4, "LZ4_prepareTable: Resetting table in %p", (void*)cctx);
896
0
            MEM_INIT(cctx->hashTable, 0, LZ4_HASHTABLESIZE);
897
0
            cctx->currentOffset = 0;
898
0
            cctx->tableType = (U32)clearedTable;
899
0
        } else {
900
0
            DEBUGLOG(4, "LZ4_prepareTable: Re-use hash table (no reset)");
901
0
        }
902
0
    }
903
904
    /* Adding a gap, so all previous entries are > LZ4_DISTANCE_MAX back,
905
     * is faster than compressing without a gap.
906
     * However, compressing with currentOffset == 0 is faster still,
907
     * so we preserve that case.
908
     */
909
0
    if (cctx->currentOffset != 0 && tableType == byU32) {
910
0
        DEBUGLOG(5, "LZ4_prepareTable: adding 64KB to currentOffset");
911
0
        cctx->currentOffset += 64 KB;
912
0
    }
913
914
    /* Finally, clear history */
915
0
    cctx->dictCtx = NULL;
916
0
    cctx->dictionary = NULL;
917
0
    cctx->dictSize = 0;
918
0
}
919
920
/** LZ4_compress_generic_validated() :
921
 *  inlined, to ensure branches are decided at compilation time.
922
 *  The following conditions are presumed already validated:
923
 *  - source != NULL
924
 *  - inputSize > 0
925
 */
926
LZ4_FORCE_INLINE int LZ4_compress_generic_validated(
927
                 LZ4_stream_t_internal* const cctx,
928
                 const char* const source,
929
                 char* const dest,
930
                 const int inputSize,
931
                 int*  inputConsumed, /* only written when outputDirective == fillOutput */
932
                 const int maxOutputSize,
933
                 const limitedOutput_directive outputDirective,
934
                 const tableType_t tableType,
935
                 const dict_directive dictDirective,
936
                 const dictIssue_directive dictIssue,
937
                 const int acceleration)
938
0
{
939
0
    int result;
940
0
    const BYTE* ip = (const BYTE*)source;
941
942
0
    U32 const startIndex = cctx->currentOffset;
943
0
    const BYTE* base = (const BYTE*)source - startIndex;
944
0
    const BYTE* lowLimit;
945
946
0
    const LZ4_stream_t_internal* dictCtx = (const LZ4_stream_t_internal*) cctx->dictCtx;
947
0
    const BYTE* const dictionary =
948
0
        dictDirective == usingDictCtx ? dictCtx->dictionary : cctx->dictionary;
949
0
    const U32 dictSize =
950
0
        dictDirective == usingDictCtx ? dictCtx->dictSize : cctx->dictSize;
951
0
    const U32 dictDelta =
952
0
        (dictDirective == usingDictCtx) ? startIndex - dictCtx->currentOffset : 0;   /* make indexes in dictCtx comparable with indexes in current context */
953
954
0
    int const maybe_extMem = (dictDirective == usingExtDict) || (dictDirective == usingDictCtx);
955
0
    U32 const prefixIdxLimit = startIndex - dictSize;   /* used when dictDirective == dictSmall */
956
0
    const BYTE* const dictEnd = dictionary ? dictionary + dictSize : dictionary;
957
0
    const BYTE* anchor = (const BYTE*) source;
958
0
    const BYTE* const iend = ip + inputSize;
959
0
    const BYTE* const mflimitPlusOne = iend - MFLIMIT + 1;
960
0
    const BYTE* const matchlimit = iend - LASTLITERALS;
961
962
    /* the dictCtx currentOffset is indexed on the start of the dictionary,
963
     * while a dictionary in the current context precedes the currentOffset */
964
0
    const BYTE* dictBase = (dictionary == NULL) ? NULL :
965
0
                           (dictDirective == usingDictCtx) ?
966
0
                            dictionary + dictSize - dictCtx->currentOffset :
967
0
                            dictionary + dictSize - startIndex;
968
969
0
    BYTE* op = (BYTE*) dest;
970
0
    BYTE* const olimit = op + maxOutputSize;
971
972
0
    U32 offset = 0;
973
0
    U32 forwardH;
974
975
0
    DEBUGLOG(5, "LZ4_compress_generic_validated: srcSize=%i, tableType=%u", inputSize, tableType);
976
0
    assert(ip != NULL);
977
0
    if (tableType == byU16) assert(inputSize<LZ4_64Klimit);  /* Size too large (not within 64K limit) */
978
0
    if (tableType == byPtr) assert(dictDirective==noDict);   /* only supported use case with byPtr */
979
    /* If init conditions are not met, we don't have to mark stream
980
     * as having dirty context, since no action was taken yet */
981
0
    if (outputDirective == fillOutput && maxOutputSize < 1) { return 0; } /* Impossible to store anything */
982
0
    assert(acceleration >= 1);
983
984
0
    lowLimit = (const BYTE*)source - (dictDirective == withPrefix64k ? dictSize : 0);
985
986
    /* Update context state */
987
0
    if (dictDirective == usingDictCtx) {
988
        /* Subsequent linked blocks can't use the dictionary. */
989
        /* Instead, they use the block we just compressed. */
990
0
        cctx->dictCtx = NULL;
991
0
        cctx->dictSize = (U32)inputSize;
992
0
    } else {
993
0
        cctx->dictSize += (U32)inputSize;
994
0
    }
995
0
    cctx->currentOffset += (U32)inputSize;
996
0
    cctx->tableType = (U32)tableType;
997
998
0
    if (inputSize<LZ4_minLength) goto _last_literals;        /* Input too small, no compression (all literals) */
999
1000
    /* First Byte */
1001
0
    {   U32 const h = LZ4_hashPosition(ip, tableType);
1002
0
        if (tableType == byPtr) {
1003
0
            LZ4_putPositionOnHash(ip, h, cctx->hashTable, byPtr);
1004
0
        } else {
1005
0
            LZ4_putIndexOnHash(startIndex, h, cctx->hashTable, tableType);
1006
0
    }   }
1007
0
    ip++; forwardH = LZ4_hashPosition(ip, tableType);
1008
1009
    /* Main Loop */
1010
0
    for ( ; ; ) {
1011
0
        const BYTE* match;
1012
0
        BYTE* token;
1013
0
        const BYTE* filledIp;
1014
1015
        /* Find a match */
1016
0
        if (tableType == byPtr) {
1017
0
            const BYTE* forwardIp = ip;
1018
0
            int step = 1;
1019
0
            int searchMatchNb = acceleration << LZ4_skipTrigger;
1020
0
            do {
1021
0
                U32 const h = forwardH;
1022
0
                ip = forwardIp;
1023
0
                forwardIp += step;
1024
0
                step = (searchMatchNb++ >> LZ4_skipTrigger);
1025
1026
0
                if (unlikely(forwardIp > mflimitPlusOne)) goto _last_literals;
1027
0
                assert(ip < mflimitPlusOne);
1028
1029
0
                match = LZ4_getPositionOnHash(h, cctx->hashTable, tableType);
1030
0
                forwardH = LZ4_hashPosition(forwardIp, tableType);
1031
0
                LZ4_putPositionOnHash(ip, h, cctx->hashTable, tableType);
1032
1033
0
            } while ( (match+LZ4_DISTANCE_MAX < ip)
1034
0
                   || (LZ4_read32(match) != LZ4_read32(ip)) );
1035
1036
0
        } else {   /* byU32, byU16 */
1037
1038
0
            const BYTE* forwardIp = ip;
1039
0
            int step = 1;
1040
0
            int searchMatchNb = acceleration << LZ4_skipTrigger;
1041
0
            do {
1042
0
                U32 const h = forwardH;
1043
0
                U32 const current = (U32)(forwardIp - base);
1044
0
                U32 matchIndex = LZ4_getIndexOnHash(h, cctx->hashTable, tableType);
1045
0
                assert(matchIndex <= current);
1046
0
                assert(forwardIp - base < (ptrdiff_t)(2 GB - 1));
1047
0
                ip = forwardIp;
1048
0
                forwardIp += step;
1049
0
                step = (searchMatchNb++ >> LZ4_skipTrigger);
1050
1051
0
                if (unlikely(forwardIp > mflimitPlusOne)) goto _last_literals;
1052
0
                assert(ip < mflimitPlusOne);
1053
1054
0
                if (dictDirective == usingDictCtx) {
1055
0
                    if (matchIndex < startIndex) {
1056
                        /* there was no match, try the dictionary */
1057
0
                        assert(tableType == byU32);
1058
0
                        matchIndex = LZ4_getIndexOnHash(h, dictCtx->hashTable, byU32);
1059
0
                        match = dictBase + matchIndex;
1060
0
                        matchIndex += dictDelta;   /* make dictCtx index comparable with current context */
1061
0
                        lowLimit = dictionary;
1062
0
                    } else {
1063
0
                        match = base + matchIndex;
1064
0
                        lowLimit = (const BYTE*)source;
1065
0
                    }
1066
0
                } else if (dictDirective == usingExtDict) {
1067
0
                    if (matchIndex < startIndex) {
1068
0
                        DEBUGLOG(7, "extDict candidate: matchIndex=%5u  <  startIndex=%5u", matchIndex, startIndex);
1069
0
                        assert(startIndex - matchIndex >= MINMATCH);
1070
0
                        assert(dictBase);
1071
0
                        match = dictBase + matchIndex;
1072
0
                        lowLimit = dictionary;
1073
0
                    } else {
1074
0
                        match = base + matchIndex;
1075
0
                        lowLimit = (const BYTE*)source;
1076
0
                    }
1077
0
                } else {   /* single continuous memory segment */
1078
0
                    match = base + matchIndex;
1079
0
                }
1080
0
                forwardH = LZ4_hashPosition(forwardIp, tableType);
1081
0
                LZ4_putIndexOnHash(current, h, cctx->hashTable, tableType);
1082
1083
0
                DEBUGLOG(7, "candidate at pos=%u  (offset=%u \n", matchIndex, current - matchIndex);
1084
0
                if ((dictIssue == dictSmall) && (matchIndex < prefixIdxLimit)) { continue; }    /* match outside of valid area */
1085
0
                assert(matchIndex < current);
1086
0
                if ( ((tableType != byU16) || (LZ4_DISTANCE_MAX < LZ4_DISTANCE_ABSOLUTE_MAX))
1087
0
                  && (matchIndex+LZ4_DISTANCE_MAX < current)) {
1088
0
                    continue;
1089
0
                } /* too far */
1090
0
                assert((current - matchIndex) <= LZ4_DISTANCE_MAX);  /* match now expected within distance */
1091
1092
0
                if (LZ4_read32(match) == LZ4_read32(ip)) {
1093
0
                    if (maybe_extMem) offset = current - matchIndex;
1094
0
                    break;   /* match found */
1095
0
                }
1096
1097
0
            } while(1);
1098
0
        }
1099
1100
        /* Catch up */
1101
0
        filledIp = ip;
1102
0
        assert(ip > anchor); /* this is always true as ip has been advanced before entering the main loop */
1103
0
        if ((match > lowLimit) && unlikely(ip[-1] == match[-1])) {
1104
0
            do { ip--; match--; } while (((ip > anchor) & (match > lowLimit)) && (unlikely(ip[-1] == match[-1])));
1105
0
        }
1106
1107
        /* Encode Literals */
1108
0
        {   unsigned const litLength = (unsigned)(ip - anchor);
1109
0
            token = op++;
1110
0
            if ((outputDirective == limitedOutput) &&  /* Check output buffer overflow */
1111
0
                (unlikely(op + litLength + (2 + 1 + LASTLITERALS) + (litLength/255) > olimit)) ) {
1112
0
                return 0;   /* cannot compress within `dst` budget. Stored indexes in hash table are nonetheless fine */
1113
0
            }
1114
0
            if ((outputDirective == fillOutput) &&
1115
0
                (unlikely(op + (litLength+240)/255 /* litlen */ + litLength /* literals */ + 2 /* offset */ + 1 /* token */ + MFLIMIT - MINMATCH /* min last literals so last match is <= end - MFLIMIT */ > olimit))) {
1116
0
                op--;
1117
0
                goto _last_literals;
1118
0
            }
1119
0
            if (litLength >= RUN_MASK) {
1120
0
                unsigned len = litLength - RUN_MASK;
1121
0
                *token = (RUN_MASK<<ML_BITS);
1122
0
                for(; len >= 255 ; len-=255) *op++ = 255;
1123
0
                *op++ = (BYTE)len;
1124
0
            }
1125
0
            else *token = (BYTE)(litLength<<ML_BITS);
1126
1127
            /* Copy Literals */
1128
0
            LZ4_wildCopy8(op, anchor, op+litLength);
1129
0
            op+=litLength;
1130
0
            DEBUGLOG(6, "seq.start:%i, literals=%u, match.start:%i",
1131
0
                        (int)(anchor-(const BYTE*)source), litLength, (int)(ip-(const BYTE*)source));
1132
0
        }
1133
1134
0
_next_match:
1135
        /* at this stage, the following variables must be correctly set :
1136
         * - ip : at start of LZ operation
1137
         * - match : at start of previous pattern occurrence; can be within current prefix, or within extDict
1138
         * - offset : if maybe_ext_memSegment==1 (constant)
1139
         * - lowLimit : must be == dictionary to mean "match is within extDict"; must be == source otherwise
1140
         * - token and *token : position to write 4-bits for match length; higher 4-bits for literal length supposed already written
1141
         */
1142
1143
0
        if ((outputDirective == fillOutput) &&
1144
0
            (op + 2 /* offset */ + 1 /* token */ + MFLIMIT - MINMATCH /* min last literals so last match is <= end - MFLIMIT */ > olimit)) {
1145
            /* the match was too close to the end, rewind and go to last literals */
1146
0
            op = token;
1147
0
            goto _last_literals;
1148
0
        }
1149
1150
        /* Encode Offset */
1151
0
        if (maybe_extMem) {   /* static test */
1152
0
            DEBUGLOG(6, "             with offset=%u  (ext if > %i)", offset, (int)(ip - (const BYTE*)source));
1153
0
            assert(offset <= LZ4_DISTANCE_MAX && offset > 0);
1154
0
            LZ4_writeLE16(op, (U16)offset); op+=2;
1155
0
        } else  {
1156
0
            DEBUGLOG(6, "             with offset=%u  (same segment)", (U32)(ip - match));
1157
0
            assert(ip-match <= LZ4_DISTANCE_MAX);
1158
0
            LZ4_writeLE16(op, (U16)(ip - match)); op+=2;
1159
0
        }
1160
1161
        /* Encode MatchLength */
1162
0
        {   unsigned matchCode;
1163
1164
0
            if ( (dictDirective==usingExtDict || dictDirective==usingDictCtx)
1165
0
              && (lowLimit==dictionary) /* match within extDict */ ) {
1166
0
                const BYTE* limit = ip + (dictEnd-match);
1167
0
                assert(dictEnd > match);
1168
0
                if (limit > matchlimit) limit = matchlimit;
1169
0
                matchCode = LZ4_count(ip+MINMATCH, match+MINMATCH, limit);
1170
0
                ip += (size_t)matchCode + MINMATCH;
1171
0
                if (ip==limit) {
1172
0
                    unsigned const more = LZ4_count(limit, (const BYTE*)source, matchlimit);
1173
0
                    matchCode += more;
1174
0
                    ip += more;
1175
0
                }
1176
0
                DEBUGLOG(6, "             with matchLength=%u starting in extDict", matchCode+MINMATCH);
1177
0
            } else {
1178
0
                matchCode = LZ4_count(ip+MINMATCH, match+MINMATCH, matchlimit);
1179
0
                ip += (size_t)matchCode + MINMATCH;
1180
0
                DEBUGLOG(6, "             with matchLength=%u", matchCode+MINMATCH);
1181
0
            }
1182
1183
0
            if ((outputDirective) &&    /* Check output buffer overflow */
1184
0
                (unlikely(op + (1 + LASTLITERALS) + (matchCode+240)/255 > olimit)) ) {
1185
0
                if (outputDirective == fillOutput) {
1186
                    /* Match description too long : reduce it */
1187
0
                    U32 newMatchCode = 15 /* in token */ - 1 /* to avoid needing a zero byte */ + ((U32)(olimit - op) - 1 - LASTLITERALS) * 255;
1188
0
                    ip -= matchCode - newMatchCode;
1189
0
                    assert(newMatchCode < matchCode);
1190
0
                    matchCode = newMatchCode;
1191
0
                    if (unlikely(ip <= filledIp)) {
1192
                        /* We have already filled up to filledIp so if ip ends up less than filledIp
1193
                         * we have positions in the hash table beyond the current position. This is
1194
                         * a problem if we reuse the hash table. So we have to remove these positions
1195
                         * from the hash table.
1196
                         */
1197
0
                        const BYTE* ptr;
1198
0
                        DEBUGLOG(5, "Clearing %u positions", (U32)(filledIp - ip));
1199
0
                        for (ptr = ip; ptr <= filledIp; ++ptr) {
1200
0
                            U32 const h = LZ4_hashPosition(ptr, tableType);
1201
0
                            LZ4_clearHash(h, cctx->hashTable, tableType);
1202
0
                        }
1203
0
                    }
1204
0
                } else {
1205
0
                    assert(outputDirective == limitedOutput);
1206
0
                    return 0;   /* cannot compress within `dst` budget. Stored indexes in hash table are nonetheless fine */
1207
0
                }
1208
0
            }
1209
0
            if (matchCode >= ML_MASK) {
1210
0
                *token += ML_MASK;
1211
0
                matchCode -= ML_MASK;
1212
0
                LZ4_write32(op, 0xFFFFFFFF);
1213
0
                while (matchCode >= 4*255) {
1214
0
                    op+=4;
1215
0
                    LZ4_write32(op, 0xFFFFFFFF);
1216
0
                    matchCode -= 4*255;
1217
0
                }
1218
0
                op += matchCode / 255;
1219
0
                *op++ = (BYTE)(matchCode % 255);
1220
0
            } else
1221
0
                *token += (BYTE)(matchCode);
1222
0
        }
1223
        /* Ensure we have enough space for the last literals. */
1224
0
        assert(!(outputDirective == fillOutput && op + 1 + LASTLITERALS > olimit));
1225
1226
0
        anchor = ip;
1227
1228
        /* Test end of chunk */
1229
0
        if (ip >= mflimitPlusOne) break;
1230
1231
        /* Fill table */
1232
0
        {   U32 const h = LZ4_hashPosition(ip-2, tableType);
1233
0
            if (tableType == byPtr) {
1234
0
                LZ4_putPositionOnHash(ip-2, h, cctx->hashTable, byPtr);
1235
0
            } else {
1236
0
                U32 const idx = (U32)((ip-2) - base);
1237
0
                LZ4_putIndexOnHash(idx, h, cctx->hashTable, tableType);
1238
0
        }   }
1239
1240
        /* Test next position */
1241
0
        if (tableType == byPtr) {
1242
1243
0
            match = LZ4_getPosition(ip, cctx->hashTable, tableType);
1244
0
            LZ4_putPosition(ip, cctx->hashTable, tableType);
1245
0
            if ( (match+LZ4_DISTANCE_MAX >= ip)
1246
0
              && (LZ4_read32(match) == LZ4_read32(ip)) )
1247
0
            { token=op++; *token=0; goto _next_match; }
1248
1249
0
        } else {   /* byU32, byU16 */
1250
1251
0
            U32 const h = LZ4_hashPosition(ip, tableType);
1252
0
            U32 const current = (U32)(ip-base);
1253
0
            U32 matchIndex = LZ4_getIndexOnHash(h, cctx->hashTable, tableType);
1254
0
            assert(matchIndex < current);
1255
0
            if (dictDirective == usingDictCtx) {
1256
0
                if (matchIndex < startIndex) {
1257
                    /* there was no match, try the dictionary */
1258
0
                    assert(tableType == byU32);
1259
0
                    matchIndex = LZ4_getIndexOnHash(h, dictCtx->hashTable, byU32);
1260
0
                    match = dictBase + matchIndex;
1261
0
                    lowLimit = dictionary;   /* required for match length counter */
1262
0
                    matchIndex += dictDelta;
1263
0
                } else {
1264
0
                    match = base + matchIndex;
1265
0
                    lowLimit = (const BYTE*)source;  /* required for match length counter */
1266
0
                }
1267
0
            } else if (dictDirective==usingExtDict) {
1268
0
                if (matchIndex < startIndex) {
1269
0
                    assert(dictBase);
1270
0
                    match = dictBase + matchIndex;
1271
0
                    lowLimit = dictionary;   /* required for match length counter */
1272
0
                } else {
1273
0
                    match = base + matchIndex;
1274
0
                    lowLimit = (const BYTE*)source;   /* required for match length counter */
1275
0
                }
1276
0
            } else {   /* single memory segment */
1277
0
                match = base + matchIndex;
1278
0
            }
1279
0
            LZ4_putIndexOnHash(current, h, cctx->hashTable, tableType);
1280
0
            assert(matchIndex < current);
1281
0
            if ( ((dictIssue==dictSmall) ? (matchIndex >= prefixIdxLimit) : 1)
1282
0
              && (((tableType==byU16) && (LZ4_DISTANCE_MAX == LZ4_DISTANCE_ABSOLUTE_MAX)) ? 1 : (matchIndex+LZ4_DISTANCE_MAX >= current))
1283
0
              && (LZ4_read32(match) == LZ4_read32(ip)) ) {
1284
0
                token=op++;
1285
0
                *token=0;
1286
0
                if (maybe_extMem) offset = current - matchIndex;
1287
0
                DEBUGLOG(6, "seq.start:%i, literals=%u, match.start:%i",
1288
0
                            (int)(anchor-(const BYTE*)source), 0, (int)(ip-(const BYTE*)source));
1289
0
                goto _next_match;
1290
0
            }
1291
0
        }
1292
1293
        /* Prepare next loop */
1294
0
        forwardH = LZ4_hashPosition(++ip, tableType);
1295
1296
0
    }
1297
1298
0
_last_literals:
1299
    /* Encode Last Literals */
1300
0
    {   size_t lastRun = (size_t)(iend - anchor);
1301
0
        if ( (outputDirective) &&  /* Check output buffer overflow */
1302
0
            (op + lastRun + 1 + ((lastRun+255-RUN_MASK)/255) > olimit)) {
1303
0
            if (outputDirective == fillOutput) {
1304
                /* adapt lastRun to fill 'dst' */
1305
0
                assert(olimit >= op);
1306
0
                lastRun  = (size_t)(olimit-op) - 1/*token*/;
1307
0
                lastRun -= (lastRun + 256 - RUN_MASK) / 256;  /*additional length tokens*/
1308
0
            } else {
1309
0
                assert(outputDirective == limitedOutput);
1310
0
                return 0;   /* cannot compress within `dst` budget. Stored indexes in hash table are nonetheless fine */
1311
0
            }
1312
0
        }
1313
0
        DEBUGLOG(6, "Final literal run : %i literals", (int)lastRun);
1314
0
        if (lastRun >= RUN_MASK) {
1315
0
            size_t accumulator = lastRun - RUN_MASK;
1316
0
            *op++ = RUN_MASK << ML_BITS;
1317
0
            for(; accumulator >= 255 ; accumulator-=255) *op++ = 255;
1318
0
            *op++ = (BYTE) accumulator;
1319
0
        } else {
1320
0
            *op++ = (BYTE)(lastRun<<ML_BITS);
1321
0
        }
1322
0
        LZ4_memcpy(op, anchor, lastRun);
1323
0
        ip = anchor + lastRun;
1324
0
        op += lastRun;
1325
0
    }
1326
1327
0
    if (outputDirective == fillOutput) {
1328
0
        *inputConsumed = (int) (((const char*)ip)-source);
1329
0
    }
1330
0
    result = (int)(((char*)op) - dest);
1331
0
    assert(result > 0);
1332
0
    DEBUGLOG(5, "LZ4_compress_generic: compressed %i bytes into %i bytes", inputSize, result);
1333
0
    return result;
1334
0
}
1335
1336
/** LZ4_compress_generic() :
1337
 *  inlined, to ensure branches are decided at compilation time;
1338
 *  takes care of src == (NULL, 0)
1339
 *  and forward the rest to LZ4_compress_generic_validated */
1340
LZ4_FORCE_INLINE int LZ4_compress_generic(
1341
                 LZ4_stream_t_internal* const cctx,
1342
                 const char* const src,
1343
                 char* const dst,
1344
                 const int srcSize,
1345
                 int *inputConsumed, /* only written when outputDirective == fillOutput */
1346
                 const int dstCapacity,
1347
                 const limitedOutput_directive outputDirective,
1348
                 const tableType_t tableType,
1349
                 const dict_directive dictDirective,
1350
                 const dictIssue_directive dictIssue,
1351
                 const int acceleration)
1352
0
{
1353
0
    DEBUGLOG(5, "LZ4_compress_generic: srcSize=%i, dstCapacity=%i",
1354
0
                srcSize, dstCapacity);
1355
1356
0
    if ((U32)srcSize > (U32)LZ4_MAX_INPUT_SIZE) { return 0; }  /* Unsupported srcSize, too large (or negative) */
1357
0
    if (srcSize == 0) {   /* src == NULL supported if srcSize == 0 */
1358
0
        if (outputDirective != notLimited && dstCapacity <= 0) return 0;  /* no output, can't write anything */
1359
0
        DEBUGLOG(5, "Generating an empty block");
1360
0
        assert(outputDirective == notLimited || dstCapacity >= 1);
1361
0
        assert(dst != NULL);
1362
0
        dst[0] = 0;
1363
0
        if (outputDirective == fillOutput) {
1364
0
            assert (inputConsumed != NULL);
1365
0
            *inputConsumed = 0;
1366
0
        }
1367
0
        return 1;
1368
0
    }
1369
0
    assert(src != NULL);
1370
1371
0
    return LZ4_compress_generic_validated(cctx, src, dst, srcSize,
1372
0
                inputConsumed, /* only written into if outputDirective == fillOutput */
1373
0
                dstCapacity, outputDirective,
1374
0
                tableType, dictDirective, dictIssue, acceleration);
1375
0
}
1376
1377
1378
int LZ4_compress_fast_extState(void* state, const char* source, char* dest, int inputSize, int maxOutputSize, int acceleration)
1379
0
{
1380
0
    LZ4_stream_t_internal* const ctx = & LZ4_initStream(state, sizeof(LZ4_stream_t)) -> internal_donotuse;
1381
0
    assert(ctx != NULL);
1382
0
    if (acceleration < 1) acceleration = LZ4_ACCELERATION_DEFAULT;
1383
0
    if (acceleration > LZ4_ACCELERATION_MAX) acceleration = LZ4_ACCELERATION_MAX;
1384
0
    if (maxOutputSize >= LZ4_compressBound(inputSize)) {
1385
0
        if (inputSize < LZ4_64Klimit) {
1386
0
            return LZ4_compress_generic(ctx, source, dest, inputSize, NULL, 0, notLimited, byU16, noDict, noDictIssue, acceleration);
1387
0
        } else {
1388
0
            const tableType_t tableType = ((sizeof(void*)==4) && ((uptrval)source > LZ4_DISTANCE_MAX)) ? byPtr : byU32;
1389
0
            return LZ4_compress_generic(ctx, source, dest, inputSize, NULL, 0, notLimited, tableType, noDict, noDictIssue, acceleration);
1390
0
        }
1391
0
    } else {
1392
0
        if (inputSize < LZ4_64Klimit) {
1393
0
            return LZ4_compress_generic(ctx, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, byU16, noDict, noDictIssue, acceleration);
1394
0
        } else {
1395
0
            const tableType_t tableType = ((sizeof(void*)==4) && ((uptrval)source > LZ4_DISTANCE_MAX)) ? byPtr : byU32;
1396
0
            return LZ4_compress_generic(ctx, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, noDict, noDictIssue, acceleration);
1397
0
        }
1398
0
    }
1399
0
}
1400
1401
/**
1402
 * LZ4_compress_fast_extState_fastReset() :
1403
 * A variant of LZ4_compress_fast_extState().
1404
 *
1405
 * Using this variant avoids an expensive initialization step. It is only safe
1406
 * to call if the state buffer is known to be correctly initialized already
1407
 * (see comment in lz4.h on LZ4_resetStream_fast() for a definition of
1408
 * "correctly initialized").
1409
 */
1410
int LZ4_compress_fast_extState_fastReset(void* state, const char* src, char* dst, int srcSize, int dstCapacity, int acceleration)
1411
0
{
1412
0
    LZ4_stream_t_internal* const ctx = &((LZ4_stream_t*)state)->internal_donotuse;
1413
0
    if (acceleration < 1) acceleration = LZ4_ACCELERATION_DEFAULT;
1414
0
    if (acceleration > LZ4_ACCELERATION_MAX) acceleration = LZ4_ACCELERATION_MAX;
1415
0
    assert(ctx != NULL);
1416
1417
0
    if (dstCapacity >= LZ4_compressBound(srcSize)) {
1418
0
        if (srcSize < LZ4_64Klimit) {
1419
0
            const tableType_t tableType = byU16;
1420
0
            LZ4_prepareTable(ctx, srcSize, tableType);
1421
0
            if (ctx->currentOffset) {
1422
0
                return LZ4_compress_generic(ctx, src, dst, srcSize, NULL, 0, notLimited, tableType, noDict, dictSmall, acceleration);
1423
0
            } else {
1424
0
                return LZ4_compress_generic(ctx, src, dst, srcSize, NULL, 0, notLimited, tableType, noDict, noDictIssue, acceleration);
1425
0
            }
1426
0
        } else {
1427
0
            const tableType_t tableType = ((sizeof(void*)==4) && ((uptrval)src > LZ4_DISTANCE_MAX)) ? byPtr : byU32;
1428
0
            LZ4_prepareTable(ctx, srcSize, tableType);
1429
0
            return LZ4_compress_generic(ctx, src, dst, srcSize, NULL, 0, notLimited, tableType, noDict, noDictIssue, acceleration);
1430
0
        }
1431
0
    } else {
1432
0
        if (srcSize < LZ4_64Klimit) {
1433
0
            const tableType_t tableType = byU16;
1434
0
            LZ4_prepareTable(ctx, srcSize, tableType);
1435
0
            if (ctx->currentOffset) {
1436
0
                return LZ4_compress_generic(ctx, src, dst, srcSize, NULL, dstCapacity, limitedOutput, tableType, noDict, dictSmall, acceleration);
1437
0
            } else {
1438
0
                return LZ4_compress_generic(ctx, src, dst, srcSize, NULL, dstCapacity, limitedOutput, tableType, noDict, noDictIssue, acceleration);
1439
0
            }
1440
0
        } else {
1441
0
            const tableType_t tableType = ((sizeof(void*)==4) && ((uptrval)src > LZ4_DISTANCE_MAX)) ? byPtr : byU32;
1442
0
            LZ4_prepareTable(ctx, srcSize, tableType);
1443
0
            return LZ4_compress_generic(ctx, src, dst, srcSize, NULL, dstCapacity, limitedOutput, tableType, noDict, noDictIssue, acceleration);
1444
0
        }
1445
0
    }
1446
0
}
1447
1448
1449
int LZ4_compress_fast(const char* src, char* dest, int srcSize, int dstCapacity, int acceleration)
1450
0
{
1451
0
    int result;
1452
#if (LZ4_HEAPMODE)
1453
    LZ4_stream_t* const ctxPtr = (LZ4_stream_t*)ALLOC(sizeof(LZ4_stream_t));   /* malloc-calloc always properly aligned */
1454
    if (ctxPtr == NULL) return 0;
1455
#else
1456
0
    LZ4_stream_t ctx;
1457
0
    LZ4_stream_t* const ctxPtr = &ctx;
1458
0
#endif
1459
0
    result = LZ4_compress_fast_extState(ctxPtr, src, dest, srcSize, dstCapacity, acceleration);
1460
1461
#if (LZ4_HEAPMODE)
1462
    FREEMEM(ctxPtr);
1463
#endif
1464
0
    return result;
1465
0
}
1466
1467
1468
int LZ4_compress_default(const char* src, char* dst, int srcSize, int dstCapacity)
1469
0
{
1470
0
    return LZ4_compress_fast(src, dst, srcSize, dstCapacity, 1);
1471
0
}
1472
1473
1474
/* Note!: This function leaves the stream in an unclean/broken state!
1475
 * It is not safe to subsequently use the same state with a _fastReset() or
1476
 * _continue() call without resetting it. */
1477
static int LZ4_compress_destSize_extState_internal(LZ4_stream_t* state, const char* src, char* dst, int* srcSizePtr, int targetDstSize, int acceleration)
1478
0
{
1479
0
    void* const s = LZ4_initStream(state, sizeof (*state));
1480
0
    assert(s != NULL); (void)s;
1481
1482
0
    if (targetDstSize >= LZ4_compressBound(*srcSizePtr)) {  /* compression success is guaranteed */
1483
0
        return LZ4_compress_fast_extState(state, src, dst, *srcSizePtr, targetDstSize, acceleration);
1484
0
    } else {
1485
0
        if (*srcSizePtr < LZ4_64Klimit) {
1486
0
            return LZ4_compress_generic(&state->internal_donotuse, src, dst, *srcSizePtr, srcSizePtr, targetDstSize, fillOutput, byU16, noDict, noDictIssue, acceleration);
1487
0
        } else {
1488
0
            tableType_t const addrMode = ((sizeof(void*)==4) && ((uptrval)src > LZ4_DISTANCE_MAX)) ? byPtr : byU32;
1489
0
            return LZ4_compress_generic(&state->internal_donotuse, src, dst, *srcSizePtr, srcSizePtr, targetDstSize, fillOutput, addrMode, noDict, noDictIssue, acceleration);
1490
0
    }   }
1491
0
}
1492
1493
int LZ4_compress_destSize_extState(void* state, const char* src, char* dst, int* srcSizePtr, int targetDstSize, int acceleration)
1494
0
{
1495
0
    int const r = LZ4_compress_destSize_extState_internal((LZ4_stream_t*)state, src, dst, srcSizePtr, targetDstSize, acceleration);
1496
    /* clean the state on exit */
1497
0
    LZ4_initStream(state, sizeof (LZ4_stream_t));
1498
0
    return r;
1499
0
}
1500
1501
1502
int LZ4_compress_destSize(const char* src, char* dst, int* srcSizePtr, int targetDstSize)
1503
0
{
1504
#if (LZ4_HEAPMODE)
1505
    LZ4_stream_t* const ctx = (LZ4_stream_t*)ALLOC(sizeof(LZ4_stream_t));   /* malloc-calloc always properly aligned */
1506
    if (ctx == NULL) return 0;
1507
#else
1508
0
    LZ4_stream_t ctxBody;
1509
0
    LZ4_stream_t* const ctx = &ctxBody;
1510
0
#endif
1511
1512
0
    int result = LZ4_compress_destSize_extState_internal(ctx, src, dst, srcSizePtr, targetDstSize, 1);
1513
1514
#if (LZ4_HEAPMODE)
1515
    FREEMEM(ctx);
1516
#endif
1517
0
    return result;
1518
0
}
1519
1520
1521
1522
/*-******************************
1523
*  Streaming functions
1524
********************************/
1525
1526
#if !defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
1527
LZ4_stream_t* LZ4_createStream(void)
1528
0
{
1529
0
    LZ4_stream_t* const lz4s = (LZ4_stream_t*)ALLOC(sizeof(LZ4_stream_t));
1530
0
    LZ4_STATIC_ASSERT(sizeof(LZ4_stream_t) >= sizeof(LZ4_stream_t_internal));
1531
0
    DEBUGLOG(4, "LZ4_createStream %p", (void*)lz4s);
1532
0
    if (lz4s == NULL) return NULL;
1533
0
    LZ4_initStream(lz4s, sizeof(*lz4s));
1534
0
    return lz4s;
1535
0
}
1536
#endif
1537
1538
static size_t LZ4_stream_t_alignment(void)
1539
0
{
1540
0
#if LZ4_ALIGN_TEST
1541
0
    typedef struct { char c; LZ4_stream_t t; } t_a;
1542
0
    return sizeof(t_a) - sizeof(LZ4_stream_t);
1543
#else
1544
    return 1;  /* effectively disabled */
1545
#endif
1546
0
}
1547
1548
LZ4_stream_t* LZ4_initStream (void* buffer, size_t size)
1549
0
{
1550
0
    DEBUGLOG(5, "LZ4_initStream");
1551
0
    if (buffer == NULL) { return NULL; }
1552
0
    if (size < sizeof(LZ4_stream_t)) { return NULL; }
1553
0
    if (!LZ4_isAligned(buffer, LZ4_stream_t_alignment())) return NULL;
1554
0
    MEM_INIT(buffer, 0, sizeof(LZ4_stream_t_internal));
1555
0
    return (LZ4_stream_t*)buffer;
1556
0
}
1557
1558
/* resetStream is now deprecated,
1559
 * prefer initStream() which is more general */
1560
void LZ4_resetStream (LZ4_stream_t* LZ4_stream)
1561
0
{
1562
0
    DEBUGLOG(5, "LZ4_resetStream (ctx:%p)", (void*)LZ4_stream);
1563
0
    MEM_INIT(LZ4_stream, 0, sizeof(LZ4_stream_t_internal));
1564
0
}
1565
1566
0
void LZ4_resetStream_fast(LZ4_stream_t* ctx) {
1567
0
    LZ4_prepareTable(&(ctx->internal_donotuse), 0, byU32);
1568
0
}
1569
1570
#if !defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
1571
int LZ4_freeStream (LZ4_stream_t* LZ4_stream)
1572
0
{
1573
0
    if (!LZ4_stream) return 0;   /* support free on NULL */
1574
0
    DEBUGLOG(5, "LZ4_freeStream %p", (void*)LZ4_stream);
1575
0
    FREEMEM(LZ4_stream);
1576
0
    return (0);
1577
0
}
1578
#endif
1579
1580
1581
typedef enum { _ld_fast, _ld_slow } LoadDict_mode_e;
1582
0
#define HASH_UNIT sizeof(reg_t)
1583
static int LZ4_loadDict_internal(LZ4_stream_t* LZ4_dict,
1584
                    const char* dictionary, int dictSize,
1585
                    LoadDict_mode_e _ld)
1586
0
{
1587
0
    LZ4_stream_t_internal* const dict = &LZ4_dict->internal_donotuse;
1588
0
    const tableType_t tableType = byU32;
1589
0
    const BYTE* p = (const BYTE*)dictionary;
1590
0
    const BYTE* const dictEnd = p + dictSize;
1591
0
    U32 idx32;
1592
1593
0
    DEBUGLOG(4, "LZ4_loadDict (%i bytes from %p into %p)", dictSize, (void*)dictionary, (void*)LZ4_dict);
1594
1595
    /* It's necessary to reset the context,
1596
     * and not just continue it with prepareTable()
1597
     * to avoid any risk of generating overflowing matchIndex
1598
     * when compressing using this dictionary */
1599
0
    LZ4_resetStream(LZ4_dict);
1600
1601
    /* We always increment the offset by 64 KB, since, if the dict is longer,
1602
     * we truncate it to the last 64k, and if it's shorter, we still want to
1603
     * advance by a whole window length so we can provide the guarantee that
1604
     * there are only valid offsets in the window, which allows an optimization
1605
     * in LZ4_compress_fast_continue() where it uses noDictIssue even when the
1606
     * dictionary isn't a full 64k. */
1607
0
    dict->currentOffset += 64 KB;
1608
1609
0
    if (dictSize < (int)HASH_UNIT) {
1610
0
        return 0;
1611
0
    }
1612
1613
0
    if ((dictEnd - p) > 64 KB) p = dictEnd - 64 KB;
1614
0
    dict->dictionary = p;
1615
0
    dict->dictSize = (U32)(dictEnd - p);
1616
0
    dict->tableType = (U32)tableType;
1617
0
    idx32 = dict->currentOffset - dict->dictSize;
1618
1619
0
    while (p <= dictEnd-HASH_UNIT) {
1620
0
        U32 const h = LZ4_hashPosition(p, tableType);
1621
        /* Note: overwriting => favors positions end of dictionary */
1622
0
        LZ4_putIndexOnHash(idx32, h, dict->hashTable, tableType);
1623
0
        p+=3; idx32+=3;
1624
0
    }
1625
1626
0
    if (_ld == _ld_slow) {
1627
        /* Fill hash table with additional references, to improve compression capability */
1628
0
        p = dict->dictionary;
1629
0
        idx32 = dict->currentOffset - dict->dictSize;
1630
0
        while (p <= dictEnd-HASH_UNIT) {
1631
0
            U32 const h = LZ4_hashPosition(p, tableType);
1632
0
            U32 const limit = dict->currentOffset - 64 KB;
1633
0
            if (LZ4_getIndexOnHash(h, dict->hashTable, tableType) <= limit) {
1634
                /* Note: not overwriting => favors positions beginning of dictionary */
1635
0
                LZ4_putIndexOnHash(idx32, h, dict->hashTable, tableType);
1636
0
            }
1637
0
            p++; idx32++;
1638
0
        }
1639
0
    }
1640
1641
0
    return (int)dict->dictSize;
1642
0
}
1643
1644
int LZ4_loadDict(LZ4_stream_t* LZ4_dict, const char* dictionary, int dictSize)
1645
0
{
1646
0
    return LZ4_loadDict_internal(LZ4_dict, dictionary, dictSize, _ld_fast);
1647
0
}
1648
1649
int LZ4_loadDictSlow(LZ4_stream_t* LZ4_dict, const char* dictionary, int dictSize)
1650
0
{
1651
0
    return LZ4_loadDict_internal(LZ4_dict, dictionary, dictSize, _ld_slow);
1652
0
}
1653
1654
void LZ4_attach_dictionary(LZ4_stream_t* workingStream, const LZ4_stream_t* dictionaryStream)
1655
0
{
1656
0
    const LZ4_stream_t_internal* dictCtx = (dictionaryStream == NULL) ? NULL :
1657
0
        &(dictionaryStream->internal_donotuse);
1658
1659
0
    DEBUGLOG(4, "LZ4_attach_dictionary (%p, %p, size %u)",
1660
0
             (void*)workingStream, (void*)dictionaryStream,
1661
0
             dictCtx != NULL ? dictCtx->dictSize : 0);
1662
1663
0
    if (dictCtx != NULL) {
1664
        /* If the current offset is zero, we will never look in the
1665
         * external dictionary context, since there is no value a table
1666
         * entry can take that indicate a miss. In that case, we need
1667
         * to bump the offset to something non-zero.
1668
         */
1669
0
        if (workingStream->internal_donotuse.currentOffset == 0) {
1670
0
            workingStream->internal_donotuse.currentOffset = 64 KB;
1671
0
        }
1672
1673
        /* Don't actually attach an empty dictionary.
1674
         */
1675
0
        if (dictCtx->dictSize == 0) {
1676
0
            dictCtx = NULL;
1677
0
        }
1678
0
    }
1679
0
    workingStream->internal_donotuse.dictCtx = dictCtx;
1680
0
}
1681
1682
1683
static void LZ4_renormDictT(LZ4_stream_t_internal* LZ4_dict, int nextSize)
1684
0
{
1685
0
    assert(nextSize >= 0);
1686
0
    if (LZ4_dict->currentOffset + (unsigned)nextSize > 0x80000000) {   /* potential ptrdiff_t overflow (32-bits mode) */
1687
        /* rescale hash table */
1688
0
        U32 const delta = LZ4_dict->currentOffset - 64 KB;
1689
0
        const BYTE* dictEnd = LZ4_dict->dictionary + LZ4_dict->dictSize;
1690
0
        int i;
1691
0
        DEBUGLOG(4, "LZ4_renormDictT");
1692
0
        for (i=0; i<LZ4_HASH_SIZE_U32; i++) {
1693
0
            if (LZ4_dict->hashTable[i] < delta) LZ4_dict->hashTable[i]=0;
1694
0
            else LZ4_dict->hashTable[i] -= delta;
1695
0
        }
1696
0
        LZ4_dict->currentOffset = 64 KB;
1697
0
        if (LZ4_dict->dictSize > 64 KB) LZ4_dict->dictSize = 64 KB;
1698
0
        LZ4_dict->dictionary = dictEnd - LZ4_dict->dictSize;
1699
0
    }
1700
0
}
1701
1702
1703
int LZ4_compress_fast_continue (LZ4_stream_t* LZ4_stream,
1704
                                const char* source, char* dest,
1705
                                int inputSize, int maxOutputSize,
1706
                                int acceleration)
1707
0
{
1708
0
    const tableType_t tableType = byU32;
1709
0
    LZ4_stream_t_internal* const streamPtr = &LZ4_stream->internal_donotuse;
1710
0
    const char* dictEnd = streamPtr->dictSize ? (const char*)streamPtr->dictionary + streamPtr->dictSize : NULL;
1711
1712
0
    DEBUGLOG(5, "LZ4_compress_fast_continue (inputSize=%i, dictSize=%u)", inputSize, streamPtr->dictSize);
1713
1714
0
    LZ4_renormDictT(streamPtr, inputSize);   /* fix index overflow */
1715
0
    if (acceleration < 1) acceleration = LZ4_ACCELERATION_DEFAULT;
1716
0
    if (acceleration > LZ4_ACCELERATION_MAX) acceleration = LZ4_ACCELERATION_MAX;
1717
1718
    /* invalidate tiny dictionaries */
1719
0
    if ( (streamPtr->dictSize < 4)     /* tiny dictionary : not enough for a hash */
1720
0
      && (dictEnd != source)           /* prefix mode */
1721
0
      && (inputSize > 0)               /* tolerance : don't lose history, in case next invocation would use prefix mode */
1722
0
      && (streamPtr->dictCtx == NULL)  /* usingDictCtx */
1723
0
      ) {
1724
0
        DEBUGLOG(5, "LZ4_compress_fast_continue: dictSize(%u) at addr:%p is too small", streamPtr->dictSize, (void*)streamPtr->dictionary);
1725
        /* remove dictionary existence from history, to employ faster prefix mode */
1726
0
        streamPtr->dictSize = 0;
1727
0
        streamPtr->dictionary = (const BYTE*)source;
1728
0
        dictEnd = source;
1729
0
    }
1730
1731
    /* Check overlapping input/dictionary space */
1732
0
    {   const char* const sourceEnd = source + inputSize;
1733
0
        if ((sourceEnd > (const char*)streamPtr->dictionary) && (sourceEnd < dictEnd)) {
1734
0
            streamPtr->dictSize = (U32)(dictEnd - sourceEnd);
1735
0
            if (streamPtr->dictSize > 64 KB) streamPtr->dictSize = 64 KB;
1736
0
            if (streamPtr->dictSize < 4) streamPtr->dictSize = 0;
1737
0
            streamPtr->dictionary = (const BYTE*)dictEnd - streamPtr->dictSize;
1738
0
        }
1739
0
    }
1740
1741
    /* prefix mode : source data follows dictionary */
1742
0
    if (dictEnd == source) {
1743
0
        if ((streamPtr->dictSize < 64 KB) && (streamPtr->dictSize < streamPtr->currentOffset))
1744
0
            return LZ4_compress_generic(streamPtr, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, withPrefix64k, dictSmall, acceleration);
1745
0
        else
1746
0
            return LZ4_compress_generic(streamPtr, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, withPrefix64k, noDictIssue, acceleration);
1747
0
    }
1748
1749
    /* external dictionary mode */
1750
0
    {   int result;
1751
0
        if (streamPtr->dictCtx) {
1752
            /* We depend here on the fact that dictCtx'es (produced by
1753
             * LZ4_loadDict) guarantee that their tables contain no references
1754
             * to offsets between dictCtx->currentOffset - 64 KB and
1755
             * dictCtx->currentOffset - dictCtx->dictSize. This makes it safe
1756
             * to use noDictIssue even when the dict isn't a full 64 KB.
1757
             */
1758
0
            if (inputSize > 4 KB) {
1759
                /* For compressing large blobs, it is faster to pay the setup
1760
                 * cost to copy the dictionary's tables into the active context,
1761
                 * so that the compression loop is only looking into one table.
1762
                 */
1763
0
                LZ4_memcpy(streamPtr, streamPtr->dictCtx, sizeof(*streamPtr));
1764
0
                result = LZ4_compress_generic(streamPtr, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, usingExtDict, noDictIssue, acceleration);
1765
0
            } else {
1766
0
                result = LZ4_compress_generic(streamPtr, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, usingDictCtx, noDictIssue, acceleration);
1767
0
            }
1768
0
        } else {  /* small data <= 4 KB */
1769
0
            if ((streamPtr->dictSize < 64 KB) && (streamPtr->dictSize < streamPtr->currentOffset)) {
1770
0
                result = LZ4_compress_generic(streamPtr, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, usingExtDict, dictSmall, acceleration);
1771
0
            } else {
1772
0
                result = LZ4_compress_generic(streamPtr, source, dest, inputSize, NULL, maxOutputSize, limitedOutput, tableType, usingExtDict, noDictIssue, acceleration);
1773
0
            }
1774
0
        }
1775
0
        streamPtr->dictionary = (const BYTE*)source;
1776
0
        streamPtr->dictSize = (U32)inputSize;
1777
0
        return result;
1778
0
    }
1779
0
}
1780
1781
1782
/* Hidden debug function, to force-test external dictionary mode */
1783
int LZ4_compress_forceExtDict (LZ4_stream_t* LZ4_dict, const char* source, char* dest, int srcSize)
1784
0
{
1785
0
    LZ4_stream_t_internal* const streamPtr = &LZ4_dict->internal_donotuse;
1786
0
    int result;
1787
1788
0
    LZ4_renormDictT(streamPtr, srcSize);
1789
1790
0
    if ((streamPtr->dictSize < 64 KB) && (streamPtr->dictSize < streamPtr->currentOffset)) {
1791
0
        result = LZ4_compress_generic(streamPtr, source, dest, srcSize, NULL, 0, notLimited, byU32, usingExtDict, dictSmall, 1);
1792
0
    } else {
1793
0
        result = LZ4_compress_generic(streamPtr, source, dest, srcSize, NULL, 0, notLimited, byU32, usingExtDict, noDictIssue, 1);
1794
0
    }
1795
1796
0
    streamPtr->dictionary = (const BYTE*)source;
1797
0
    streamPtr->dictSize = (U32)srcSize;
1798
1799
0
    return result;
1800
0
}
1801
1802
1803
/*! LZ4_saveDict() :
1804
 *  If previously compressed data block is not guaranteed to remain available at its memory location,
1805
 *  save it into a safer place (char* safeBuffer).
1806
 *  Note : no need to call LZ4_loadDict() afterwards, dictionary is immediately usable,
1807
 *         one can therefore call LZ4_compress_fast_continue() right after.
1808
 * @return : saved dictionary size in bytes (necessarily <= dictSize), or 0 if error.
1809
 */
1810
int LZ4_saveDict (LZ4_stream_t* LZ4_dict, char* safeBuffer, int dictSize)
1811
0
{
1812
0
    LZ4_stream_t_internal* const dict = &LZ4_dict->internal_donotuse;
1813
1814
0
    DEBUGLOG(5, "LZ4_saveDict : dictSize=%i, safeBuffer=%p", dictSize, (void*)safeBuffer);
1815
1816
0
    if ((U32)dictSize > 64 KB) { dictSize = 64 KB; } /* useless to define a dictionary > 64 KB */
1817
0
    if ((U32)dictSize > dict->dictSize) { dictSize = (int)dict->dictSize; }
1818
1819
0
    if (safeBuffer == NULL) assert(dictSize == 0);
1820
0
    if (dictSize > 0) {
1821
0
        const BYTE* const previousDictEnd = dict->dictionary + dict->dictSize;
1822
0
        assert(dict->dictionary);
1823
0
        LZ4_memmove(safeBuffer, previousDictEnd - dictSize, (size_t)dictSize);
1824
0
    }
1825
1826
0
    dict->dictionary = (const BYTE*)safeBuffer;
1827
0
    dict->dictSize = (U32)dictSize;
1828
1829
0
    return dictSize;
1830
0
}
1831
1832
1833
1834
/*-*******************************
1835
 *  Decompression functions
1836
 ********************************/
1837
1838
typedef enum { decode_full_block = 0, partial_decode = 1 } earlyEnd_directive;
1839
1840
#undef MIN
1841
0
#define MIN(a,b)    ( (a) < (b) ? (a) : (b) )
1842
1843
1844
/* variant for decompress_unsafe()
1845
 * does not know end of input
1846
 * presumes input is well formed
1847
 * note : will consume at least one byte */
1848
static size_t read_long_length_no_check(const BYTE** pp)
1849
0
{
1850
0
    size_t b, l = 0;
1851
0
    do { b = **pp; (*pp)++; l += b; } while (b==255);
1852
0
    DEBUGLOG(6, "read_long_length_no_check: +length=%zu using %zu input bytes", l, l/255 + 1)
1853
0
    return l;
1854
0
}
1855
1856
/* core decoder variant for LZ4_decompress_fast*()
1857
 * for legacy support only : these entry points are deprecated.
1858
 * - Presumes input is correctly formed (no defense vs malformed inputs)
1859
 * - Does not know input size (presume input buffer is "large enough")
1860
 * - Decompress a full block (only)
1861
 * @return : nb of bytes read from input.
1862
 * Note : this variant is not optimized for speed, just for maintenance.
1863
 *        the goal is to remove support of decompress_fast*() variants by v2.0
1864
**/
1865
LZ4_FORCE_INLINE int
1866
LZ4_decompress_unsafe_generic(
1867
                 const BYTE* const istart,
1868
                 BYTE* const ostart,
1869
                 int decompressedSize,
1870
1871
                 size_t prefixSize,
1872
                 const BYTE* const dictStart,  /* only if dict==usingExtDict */
1873
                 const size_t dictSize         /* note: =0 if dictStart==NULL */
1874
                 )
1875
0
{
1876
0
    const BYTE* ip = istart;
1877
0
    BYTE* op = (BYTE*)ostart;
1878
0
    BYTE* const oend = ostart + decompressedSize;
1879
0
    const BYTE* const prefixStart = ostart - prefixSize;
1880
1881
0
    DEBUGLOG(5, "LZ4_decompress_unsafe_generic");
1882
0
    if (dictStart == NULL) assert(dictSize == 0);
1883
1884
0
    while (1) {
1885
        /* start new sequence */
1886
0
        unsigned token = *ip++;
1887
1888
        /* literals */
1889
0
        {   size_t ll = token >> ML_BITS;
1890
0
            if (ll==15) {
1891
                /* long literal length */
1892
0
                ll += read_long_length_no_check(&ip);
1893
0
            }
1894
0
            if ((size_t)(oend-op) < ll) return -1; /* output buffer overflow */
1895
0
            LZ4_memmove(op, ip, ll); /* support in-place decompression */
1896
0
            op += ll;
1897
0
            ip += ll;
1898
0
            if ((size_t)(oend-op) < MFLIMIT) {
1899
0
                if (op==oend) break;  /* end of block */
1900
0
                DEBUGLOG(5, "invalid: literals end at distance %zi from end of block", oend-op);
1901
                /* incorrect end of block :
1902
                 * last match must start at least MFLIMIT==12 bytes before end of output block */
1903
0
                return -1;
1904
0
        }   }
1905
1906
        /* match */
1907
0
        {   size_t ml = token & 15;
1908
0
            size_t const offset = LZ4_readLE16(ip);
1909
0
            ip+=2;
1910
1911
0
            if (ml==15) {
1912
                /* long literal length */
1913
0
                ml += read_long_length_no_check(&ip);
1914
0
            }
1915
0
            ml += MINMATCH;
1916
1917
0
            if ((size_t)(oend-op) < ml) return -1; /* output buffer overflow */
1918
1919
0
            {   const BYTE* match = op - offset;
1920
1921
                /* out of range */
1922
0
                if (offset > (size_t)(op - prefixStart) + dictSize) {
1923
0
                    DEBUGLOG(6, "offset out of range");
1924
0
                    return -1;
1925
0
                }
1926
1927
                /* check special case : extDict */
1928
0
                if (offset > (size_t)(op - prefixStart)) {
1929
                    /* extDict scenario */
1930
0
                    const BYTE* const dictEnd = dictStart + dictSize;
1931
0
                    const BYTE* extMatch = dictEnd - (offset - (size_t)(op-prefixStart));
1932
0
                    size_t const extml = (size_t)(dictEnd - extMatch);
1933
0
                    if (extml > ml) {
1934
                        /* match entirely within extDict */
1935
0
                        LZ4_memmove(op, extMatch, ml);
1936
0
                        op += ml;
1937
0
                        ml = 0;
1938
0
                    } else {
1939
                        /* match split between extDict & prefix */
1940
0
                        LZ4_memmove(op, extMatch, extml);
1941
0
                        op += extml;
1942
0
                        ml -= extml;
1943
0
                    }
1944
0
                    match = prefixStart;
1945
0
                }
1946
1947
                /* match copy - slow variant, supporting overlap copy */
1948
0
                {   size_t u;
1949
0
                    for (u=0; u<ml; u++) {
1950
0
                        op[u] = match[u];
1951
0
            }   }   }
1952
0
            op += ml;
1953
0
            if ((size_t)(oend-op) < LASTLITERALS) {
1954
0
                DEBUGLOG(5, "invalid: match ends at distance %zi from end of block", oend-op);
1955
                /* incorrect end of block :
1956
                 * last match must stop at least LASTLITERALS==5 bytes before end of output block */
1957
0
                return -1;
1958
0
            }
1959
0
        } /* match */
1960
0
    } /* main loop */
1961
0
    return (int)(ip - istart);
1962
0
}
1963
1964
1965
/* Read the variable-length literal or match length.
1966
 *
1967
 * @ip : input pointer
1968
 * @ilimit : position after which if length is not decoded, the input is necessarily corrupted.
1969
 * @initial_check - check ip >= ipmax before start of loop.  Returns initial_error if so.
1970
 * @error (output) - error code.  Must be set to 0 before call.
1971
**/
1972
typedef size_t Rvl_t;
1973
static const Rvl_t rvl_error = (Rvl_t)(-1);
1974
LZ4_FORCE_INLINE Rvl_t
1975
read_variable_length(const BYTE** ip, const BYTE* ilimit,
1976
                     int initial_check)
1977
4.68M
{
1978
4.68M
    Rvl_t s, length = 0;
1979
4.68M
    assert(ip != NULL);
1980
4.68M
    assert(*ip !=  NULL);
1981
4.68M
    assert(ilimit != NULL);
1982
4.68M
    if (initial_check && unlikely((*ip) >= ilimit)) {    /* read limit reached */
1983
502
        return rvl_error;
1984
502
    }
1985
4.68M
    s = **ip;
1986
4.68M
    (*ip)++;
1987
4.68M
    length += s;
1988
4.68M
    if (unlikely((*ip) > ilimit)) {    /* read limit reached */
1989
52
        return rvl_error;
1990
52
    }
1991
    /* accumulator overflow detection (32-bit mode only) */
1992
4.68M
    if ((sizeof(length) < 8) && unlikely(length > ((Rvl_t)(-1)/2)) ) {
1993
0
        return rvl_error;
1994
0
    }
1995
4.68M
    if (likely(s != 255)) return length;
1996
14.7M
    do {
1997
14.7M
        s = **ip;
1998
14.7M
        (*ip)++;
1999
14.7M
        length += s;
2000
14.7M
        if (unlikely((*ip) > ilimit)) {    /* read limit reached */
2001
342
            return rvl_error;
2002
342
        }
2003
        /* accumulator overflow detection (32-bit mode only) */
2004
14.7M
        if ((sizeof(length) < 8) && unlikely(length > ((Rvl_t)(-1)/2)) ) {
2005
0
            return rvl_error;
2006
0
        }
2007
14.7M
    } while (s == 255);
2008
2009
43.6k
    return length;
2010
43.9k
}
2011
2012
/*! LZ4_decompress_generic() :
2013
 *  This generic decompression function covers all use cases.
2014
 *  It shall be instantiated several times, using different sets of directives.
2015
 *  Note that it is important for performance that this function really get inlined,
2016
 *  in order to remove useless branches during compilation optimization.
2017
 */
2018
LZ4_FORCE_INLINE int
2019
LZ4_decompress_generic(
2020
                 const char* const src,
2021
                 char* const dst,
2022
                 int srcSize,
2023
                 int outputSize,         /* If endOnInput==endOnInputSize, this value is `dstCapacity` */
2024
2025
                 earlyEnd_directive partialDecoding,  /* full, partial */
2026
                 dict_directive dict,                 /* noDict, withPrefix64k, usingExtDict */
2027
                 const BYTE* const lowPrefix,  /* always <= dst, == dst when no prefix */
2028
                 const BYTE* const dictStart,  /* only if dict==usingExtDict */
2029
                 const size_t dictSize         /* note : = 0 if noDict */
2030
                 )
2031
13.3k
{
2032
13.3k
    if ((src == NULL) || (outputSize < 0)) { return -1; }
2033
2034
13.3k
    {   const BYTE* ip = (const BYTE*) src;
2035
13.3k
        const BYTE* const iend = ip + srcSize;
2036
2037
13.3k
        BYTE* op = (BYTE*) dst;
2038
13.3k
        BYTE* const oend = op + outputSize;
2039
13.3k
        BYTE* cpy;
2040
2041
13.3k
        const BYTE* const dictEnd = (dictStart == NULL) ? NULL : dictStart + dictSize;
2042
2043
13.3k
        const int checkOffset = (dictSize < (int)(64 KB));
2044
2045
2046
        /* Set up the "end" pointers for the shortcut. */
2047
13.3k
        const BYTE* const shortiend = iend - 14 /*maxLL*/ - 2 /*offset*/;
2048
13.3k
        const BYTE* const shortoend = oend - 14 /*maxLL*/ - 18 /*maxML*/;
2049
2050
13.3k
        const BYTE* match;
2051
13.3k
        size_t offset;
2052
13.3k
        unsigned token;
2053
13.3k
        size_t length;
2054
2055
2056
13.3k
        DEBUGLOG(5, "LZ4_decompress_generic (srcSize:%i, dstSize:%i)", srcSize, outputSize);
2057
2058
        /* Special cases */
2059
13.3k
        assert(lowPrefix <= op);
2060
13.3k
        if (unlikely(outputSize==0)) {
2061
            /* Empty output buffer */
2062
0
            if (partialDecoding) return 0;
2063
0
            return ((srcSize==1) && (*ip==0)) ? 0 : -1;
2064
0
        }
2065
13.3k
        if (unlikely(srcSize==0)) { return -1; }
2066
2067
    /* LZ4_FAST_DEC_LOOP:
2068
     * designed for modern OoO performance cpus,
2069
     * where copying reliably 32-bytes is preferable to an unpredictable branch.
2070
     * note : fast loop may show a regression for some client arm chips. */
2071
13.3k
#if LZ4_FAST_DEC_LOOP
2072
13.3k
        if ((oend - op) < FASTLOOP_SAFE_DISTANCE) {
2073
0
            DEBUGLOG(6, "move to safe decode loop");
2074
0
            goto safe_decode;
2075
0
        }
2076
2077
        /* Fast loop : decode sequences as long as output < oend-FASTLOOP_SAFE_DISTANCE */
2078
13.3k
        DEBUGLOG(6, "using fast decode loop");
2079
7.19M
        while (1) {
2080
            /* Main fastloop assertion: We can always wildcopy FASTLOOP_SAFE_DISTANCE */
2081
7.19M
            assert(oend - op >= FASTLOOP_SAFE_DISTANCE);
2082
7.19M
            assert(ip < iend);
2083
7.19M
            token = *ip++;
2084
7.19M
            length = token >> ML_BITS;  /* literal length */
2085
7.19M
            DEBUGLOG(7, "blockPos%6u: litLength token = %u", (unsigned)(op-(BYTE*)dst), (unsigned)length);
2086
2087
            /* decode literal length */
2088
7.19M
            if (length == RUN_MASK) {
2089
242k
                size_t const addl = read_variable_length(&ip, iend-RUN_MASK, 1);
2090
242k
                if (addl == rvl_error) {
2091
298
                    DEBUGLOG(6, "error reading long literal length");
2092
298
                    goto _output_error;
2093
298
                }
2094
242k
                length += addl;
2095
242k
                if (unlikely((uptrval)(op)+length<(uptrval)(op))) { goto _output_error; } /* overflow detection */
2096
242k
                if (unlikely((uptrval)(ip)+length<(uptrval)(ip))) { goto _output_error; } /* overflow detection */
2097
2098
                /* copy literals */
2099
242k
                LZ4_STATIC_ASSERT(MFLIMIT >= WILDCOPYLENGTH);
2100
242k
                if ((op+length>oend-32) || (ip+length>iend-32)) { goto safe_literal_copy; }
2101
239k
                LZ4_wildCopy32(op, ip, op+length);
2102
239k
                ip += length; op += length;
2103
6.94M
            } else if (ip <= iend-(16 + 1/*max lit + offset + nextToken*/)) {
2104
                /* We don't need to check oend, since we check it once for each loop below */
2105
6.94M
                DEBUGLOG(7, "copy %u bytes in a 16-bytes stripe", (unsigned)length);
2106
                /* Literals can only be <= 14, but hope compilers optimize better when copy by a register size */
2107
6.94M
                LZ4_memcpy(op, ip, 16);
2108
6.94M
                ip += length; op += length;
2109
6.94M
            } else {
2110
8.59k
                goto safe_literal_copy;
2111
8.59k
            }
2112
2113
            /* get offset */
2114
7.17M
            offset = LZ4_readLE16(ip); ip+=2;
2115
7.17M
            DEBUGLOG(6, "blockPos%6u: offset = %u", (unsigned)(op-(BYTE*)dst), (unsigned)offset);
2116
7.17M
            match = op - offset;
2117
7.17M
            assert(match <= op);  /* overflow check */
2118
2119
            /* get matchlength */
2120
7.17M
            length = token & ML_MASK;
2121
7.17M
            DEBUGLOG(7, "  match length token = %u (len==%u)", (unsigned)length, (unsigned)length+MINMATCH);
2122
2123
7.17M
            if (length == ML_MASK) {
2124
4.43M
                size_t const addl = read_variable_length(&ip, iend - LASTLITERALS + 1, 0);
2125
4.43M
                if (addl == rvl_error) {
2126
80
                    DEBUGLOG(5, "error reading long match length");
2127
80
                    goto _output_error;
2128
80
                }
2129
4.43M
                length += addl;
2130
4.43M
                length += MINMATCH;
2131
4.43M
                DEBUGLOG(7, "  long match length == %u", (unsigned)length);
2132
4.43M
                if (unlikely((uptrval)(op)+length<(uptrval)op)) { goto _output_error; } /* overflow detection */
2133
4.43M
                if (op + length >= oend - FASTLOOP_SAFE_DISTANCE) {
2134
508
                    goto safe_match_copy;
2135
508
                }
2136
4.43M
            } else {
2137
2.74M
                length += MINMATCH;
2138
2.74M
                if (op + length >= oend - FASTLOOP_SAFE_DISTANCE) {
2139
180
                    DEBUGLOG(7, "moving to safe_match_copy (ml==%u)", (unsigned)length);
2140
180
                    goto safe_match_copy;
2141
180
                }
2142
2143
                /* Fastpath check: skip LZ4_wildCopy32 when true */
2144
2.74M
                if ((dict == withPrefix64k) || (match >= lowPrefix)) {
2145
2.73M
                    if (offset >= 8) {
2146
1.29M
                        assert(match >= lowPrefix);
2147
1.29M
                        assert(match <= op);
2148
1.29M
                        assert(op + 18 <= oend);
2149
2150
1.29M
                        LZ4_memcpy(op, match, 8);
2151
1.29M
                        LZ4_memcpy(op+8, match+8, 8);
2152
1.29M
                        LZ4_memcpy(op+16, match+16, 2);
2153
1.29M
                        op += length;
2154
1.29M
                        continue;
2155
1.29M
            }   }   }
2156
2157
5.87M
            if ( checkOffset && (unlikely(match + dictSize < lowPrefix)) ) {
2158
782
                DEBUGLOG(5, "Error : pos=%zi, offset=%zi => outside buffers", op-lowPrefix, op-match);
2159
782
                goto _output_error;
2160
782
            }
2161
            /* match starting within external dictionary */
2162
5.87M
            if ((dict==usingExtDict) && (match < lowPrefix)) {
2163
890
                assert(dictEnd != NULL);
2164
890
                if (unlikely(op+length > oend-LASTLITERALS)) {
2165
0
                    if (partialDecoding) {
2166
0
                        DEBUGLOG(7, "partialDecoding: dictionary match, close to dstEnd");
2167
0
                        length = MIN(length, (size_t)(oend-op));
2168
0
                    } else {
2169
0
                        DEBUGLOG(6, "end-of-block condition violated")
2170
0
                        goto _output_error;
2171
0
                }   }
2172
2173
890
                if (length <= (size_t)(lowPrefix-match)) {
2174
                    /* match fits entirely within external dictionary : just copy */
2175
308
                    LZ4_memmove(op, dictEnd - (lowPrefix-match), length);
2176
308
                    op += length;
2177
582
                } else {
2178
                    /* match stretches into both external dictionary and current block */
2179
582
                    size_t const copySize = (size_t)(lowPrefix - match);
2180
582
                    size_t const restSize = length - copySize;
2181
582
                    LZ4_memcpy(op, dictEnd - copySize, copySize);
2182
582
                    op += copySize;
2183
582
                    if (restSize > (size_t)(op - lowPrefix)) {  /* overlap copy */
2184
356
                        BYTE* const endOfMatch = op + restSize;
2185
356
                        const BYTE* copyFrom = lowPrefix;
2186
110M
                        while (op < endOfMatch) { *op++ = *copyFrom++; }
2187
356
                    } else {
2188
226
                        LZ4_memcpy(op, lowPrefix, restSize);
2189
226
                        op += restSize;
2190
226
                }   }
2191
890
                continue;
2192
890
            }
2193
2194
            /* copy match within block */
2195
5.87M
            cpy = op + length;
2196
2197
5.87M
            assert((op <= oend) && (oend-op >= 32));
2198
5.87M
            if (unlikely(offset<16)) {
2199
1.54M
                LZ4_memcpy_using_offset(op, match, cpy, offset);
2200
4.33M
            } else {
2201
4.33M
                LZ4_wildCopy32(op, match, cpy);
2202
4.33M
            }
2203
2204
5.87M
            op = cpy;   /* wildcopy correction */
2205
5.87M
        }
2206
0
    safe_decode:
2207
0
#endif
2208
2209
        /* Main Loop : decode remaining sequences where output < FASTLOOP_SAFE_DISTANCE */
2210
0
        DEBUGLOG(6, "using safe decode loop");
2211
7.77k
        while (1) {
2212
7.77k
            assert(ip < iend);
2213
7.77k
            token = *ip++;
2214
7.77k
            length = token >> ML_BITS;  /* literal length */
2215
7.77k
            DEBUGLOG(7, "blockPos%6u: litLength token = %u", (unsigned)(op-(BYTE*)dst), (unsigned)length);
2216
2217
            /* A two-stage shortcut for the most common case:
2218
             * 1) If the literal length is 0..14, and there is enough space,
2219
             * enter the shortcut and copy 16 bytes on behalf of the literals
2220
             * (in the fast mode, only 8 bytes can be safely copied this way).
2221
             * 2) Further if the match length is 4..18, copy 18 bytes in a similar
2222
             * manner; but we ensure that there's enough space in the output for
2223
             * those 18 bytes earlier, upon entering the shortcut (in other words,
2224
             * there is a combined check for both stages).
2225
             */
2226
7.77k
            if ( (length != RUN_MASK)
2227
                /* strictly "less than" on input, to re-enter the loop with at least one byte */
2228
6.31k
              && likely((ip < shortiend) & (op <= shortoend)) ) {
2229
                /* Copy the literals */
2230
1.87k
                LZ4_memcpy(op, ip, 16);
2231
1.87k
                op += length; ip += length;
2232
2233
                /* The second stage: prepare for match copying, decode full info.
2234
                 * If it doesn't work out, the info won't be wasted. */
2235
1.87k
                length = token & ML_MASK; /* match length */
2236
1.87k
                DEBUGLOG(7, "blockPos%6u: matchLength token = %u (len=%u)", (unsigned)(op-(BYTE*)dst), (unsigned)length, (unsigned)length + 4);
2237
1.87k
                offset = LZ4_readLE16(ip); ip += 2;
2238
1.87k
                match = op - offset;
2239
1.87k
                assert(match <= op); /* check overflow */
2240
2241
                /* Do not deal with overlapping matches. */
2242
1.87k
                if ( (length != ML_MASK)
2243
1.53k
                  && (offset >= 8)
2244
642
                  && (dict==withPrefix64k || match >= lowPrefix) ) {
2245
                    /* Copy the match. */
2246
438
                    LZ4_memcpy(op + 0, match + 0, 8);
2247
438
                    LZ4_memcpy(op + 8, match + 8, 8);
2248
438
                    LZ4_memcpy(op +16, match +16, 2);
2249
438
                    op += length + MINMATCH;
2250
                    /* Both stages worked, load the next token. */
2251
438
                    continue;
2252
438
                }
2253
2254
                /* The second stage didn't work out, but the info is ready.
2255
                 * Propel it right to the point of match copying. */
2256
1.44k
                goto _copy_match;
2257
1.87k
            }
2258
2259
            /* decode literal length */
2260
5.89k
            if (length == RUN_MASK) {
2261
1.45k
                size_t const addl = read_variable_length(&ip, iend-RUN_MASK, 1);
2262
1.45k
                if (addl == rvl_error) { goto _output_error; }
2263
1.07k
                length += addl;
2264
1.07k
                if (unlikely((uptrval)(op)+length<(uptrval)(op))) { goto _output_error; } /* overflow detection */
2265
1.07k
                if (unlikely((uptrval)(ip)+length<(uptrval)(ip))) { goto _output_error; } /* overflow detection */
2266
1.07k
            }
2267
2268
5.51k
#if LZ4_FAST_DEC_LOOP
2269
17.0k
        safe_literal_copy:
2270
17.0k
#endif
2271
            /* copy literals */
2272
17.0k
            cpy = op+length;
2273
2274
17.0k
            LZ4_STATIC_ASSERT(MFLIMIT >= WILDCOPYLENGTH);
2275
17.0k
            if ((cpy>oend-MFLIMIT) || (ip+length>iend-(2+1+LASTLITERALS))) {
2276
                /* We've either hit the input parsing restriction or the output parsing restriction.
2277
                 * In the normal scenario, decoding a full block, it must be the last sequence,
2278
                 * otherwise it's an error (invalid input or dimensions).
2279
                 * In partialDecoding scenario, it's necessary to ensure there is no buffer overflow.
2280
                 */
2281
10.2k
                if (partialDecoding) {
2282
                    /* Since we are partial decoding we may be in this block because of the output parsing
2283
                     * restriction, which is not valid since the output buffer is allowed to be undersized.
2284
                     */
2285
0
                    DEBUGLOG(7, "partialDecoding: copying literals, close to input or output end")
2286
0
                    DEBUGLOG(7, "partialDecoding: literal length = %u", (unsigned)length);
2287
0
                    DEBUGLOG(7, "partialDecoding: remaining space in dstBuffer : %i", (int)(oend - op));
2288
0
                    DEBUGLOG(7, "partialDecoding: remaining space in srcBuffer : %i", (int)(iend - ip));
2289
                    /* Finishing in the middle of a literals segment,
2290
                     * due to lack of input.
2291
                     */
2292
0
                    if (ip+length > iend) {
2293
0
                        length = (size_t)(iend-ip);
2294
0
                        cpy = op + length;
2295
0
                    }
2296
                    /* Finishing in the middle of a literals segment,
2297
                     * due to lack of output space.
2298
                     */
2299
0
                    if (cpy > oend) {
2300
0
                        cpy = oend;
2301
0
                        assert(op<=oend);
2302
0
                        length = (size_t)(oend-op);
2303
0
                    }
2304
10.2k
                } else {
2305
                     /* We must be on the last sequence (or invalid) because of the parsing limitations
2306
                      * so check that we exactly consume the input and don't overrun the output buffer.
2307
                      */
2308
10.2k
                    if ((ip+length != iend) || (cpy > oend)) {
2309
2.51k
                        DEBUGLOG(5, "should have been last run of literals")
2310
2.51k
                        DEBUGLOG(5, "ip(%p) + length(%i) = %p != iend (%p)", (void*)ip, (int)length, (void*)(ip+length), (void*)iend);
2311
2.51k
                        DEBUGLOG(5, "or cpy(%p) > (oend-MFLIMIT)(%p)", (void*)cpy, (void*)(oend-MFLIMIT));
2312
2.51k
                        DEBUGLOG(5, "after writing %u bytes / %i bytes available", (unsigned)(op-(BYTE*)dst), outputSize);
2313
2.51k
                        goto _output_error;
2314
2.51k
                    }
2315
10.2k
                }
2316
7.77k
                LZ4_memmove(op, ip, length);  /* supports overlapping memory regions, for in-place decompression scenarios */
2317
7.77k
                ip += length;
2318
7.77k
                op += length;
2319
                /* Necessarily EOF when !partialDecoding.
2320
                 * When partialDecoding, it is EOF if we've either
2321
                 * filled the output buffer or
2322
                 * can't proceed with reading an offset for following match.
2323
                 */
2324
7.77k
                if (!partialDecoding || (cpy == oend) || (ip >= (iend-2))) {
2325
7.77k
                    break;
2326
7.77k
                }
2327
7.77k
            } else {
2328
6.72k
                LZ4_wildCopy8(op, ip, cpy);   /* can overwrite up to 8 bytes beyond cpy */
2329
6.72k
                ip += length; op = cpy;
2330
6.72k
            }
2331
2332
            /* get offset */
2333
6.72k
            offset = LZ4_readLE16(ip); ip+=2;
2334
6.72k
            match = op - offset;
2335
2336
            /* get matchlength */
2337
6.72k
            length = token & ML_MASK;
2338
6.72k
            DEBUGLOG(7, "blockPos%6u: matchLength token = %u", (unsigned)(op-(BYTE*)dst), (unsigned)length);
2339
2340
8.16k
    _copy_match:
2341
8.16k
            if (length == ML_MASK) {
2342
2.25k
                size_t const addl = read_variable_length(&ip, iend - LASTLITERALS + 1, 0);
2343
2.25k
                if (addl == rvl_error) { goto _output_error; }
2344
2.11k
                length += addl;
2345
2.11k
                if (unlikely((uptrval)(op)+length<(uptrval)op)) goto _output_error;   /* overflow detection */
2346
2.11k
            }
2347
8.02k
            length += MINMATCH;
2348
2349
8.02k
#if LZ4_FAST_DEC_LOOP
2350
8.71k
        safe_match_copy:
2351
8.71k
#endif
2352
8.71k
            if ((checkOffset) && (unlikely(match + dictSize < lowPrefix))) goto _output_error;   /* Error : offset outside buffers */
2353
            /* match starting within external dictionary */
2354
7.52k
            if ((dict==usingExtDict) && (match < lowPrefix)) {
2355
1.04k
                assert(dictEnd != NULL);
2356
1.04k
                if (unlikely(op+length > oend-LASTLITERALS)) {
2357
16
                    if (partialDecoding) length = MIN(length, (size_t)(oend-op));
2358
16
                    else goto _output_error;   /* doesn't respect parsing restriction */
2359
16
                }
2360
2361
1.03k
                if (length <= (size_t)(lowPrefix-match)) {
2362
                    /* match fits entirely within external dictionary : just copy */
2363
390
                    LZ4_memmove(op, dictEnd - (lowPrefix-match), length);
2364
390
                    op += length;
2365
642
                } else {
2366
                    /* match stretches into both external dictionary and current block */
2367
642
                    size_t const copySize = (size_t)(lowPrefix - match);
2368
642
                    size_t const restSize = length - copySize;
2369
642
                    LZ4_memcpy(op, dictEnd - copySize, copySize);
2370
642
                    op += copySize;
2371
642
                    if (restSize > (size_t)(op - lowPrefix)) {  /* overlap copy */
2372
332
                        BYTE* const endOfMatch = op + restSize;
2373
332
                        const BYTE* copyFrom = lowPrefix;
2374
42.6M
                        while (op < endOfMatch) *op++ = *copyFrom++;
2375
332
                    } else {
2376
310
                        LZ4_memcpy(op, lowPrefix, restSize);
2377
310
                        op += restSize;
2378
310
                }   }
2379
1.03k
                continue;
2380
1.04k
            }
2381
7.52k
            assert(match >= lowPrefix);
2382
2383
            /* copy match within block */
2384
6.48k
            cpy = op + length;
2385
2386
            /* partialDecoding : may end anywhere within the block */
2387
6.48k
            assert(op<=oend);
2388
6.48k
            if (partialDecoding && (cpy > oend-MATCH_SAFEGUARD_DISTANCE)) {
2389
0
                size_t const mlen = MIN(length, (size_t)(oend-op));
2390
0
                const BYTE* const matchEnd = match + mlen;
2391
0
                BYTE* const copyEnd = op + mlen;
2392
0
                if (matchEnd > op) {   /* overlap copy */
2393
0
                    while (op < copyEnd) { *op++ = *match++; }
2394
0
                } else {
2395
0
                    LZ4_memcpy(op, match, mlen);
2396
0
                }
2397
0
                op = copyEnd;
2398
0
                if (op == oend) { break; }
2399
0
                continue;
2400
0
            }
2401
2402
6.48k
            if (unlikely(offset<8)) {
2403
4.59k
                LZ4_write32(op, 0);   /* silence msan warning when offset==0 */
2404
4.59k
                op[0] = match[0];
2405
4.59k
                op[1] = match[1];
2406
4.59k
                op[2] = match[2];
2407
4.59k
                op[3] = match[3];
2408
4.59k
                match += inc32table[offset];
2409
4.59k
                LZ4_memcpy(op+4, match, 4);
2410
4.59k
                match -= dec64table[offset];
2411
4.59k
            } else {
2412
1.89k
                LZ4_memcpy(op, match, 8);
2413
1.89k
                match += 8;
2414
1.89k
            }
2415
6.48k
            op += 8;
2416
2417
6.48k
            if (unlikely(cpy > oend-MATCH_SAFEGUARD_DISTANCE)) {
2418
366
                BYTE* const oCopyLimit = oend - (WILDCOPYLENGTH-1);
2419
366
                if (cpy > oend-LASTLITERALS) { goto _output_error; } /* Error : last LASTLITERALS bytes must be literals (uncompressed) */
2420
188
                if (op < oCopyLimit) {
2421
148
                    LZ4_wildCopy8(op, match, oCopyLimit);
2422
148
                    match += oCopyLimit - op;
2423
148
                    op = oCopyLimit;
2424
148
                }
2425
356
                while (op < cpy) { *op++ = *match++; }
2426
6.11k
            } else {
2427
6.11k
                LZ4_memcpy(op, match, 8);
2428
6.11k
                if (length > 16) { LZ4_wildCopy8(op+8, match+8, cpy); }
2429
6.11k
            }
2430
6.30k
            op = cpy;   /* wildcopy correction */
2431
6.30k
        }
2432
2433
        /* end of decoding */
2434
7.77k
        DEBUGLOG(5, "decoded %i bytes", (int) (((char*)op)-dst));
2435
7.77k
        return (int) (((char*)op)-dst);     /* Nb of output bytes decoded */
2436
2437
        /* Overflow error detected */
2438
5.57k
    _output_error:
2439
5.57k
        return (int) (-(((const char*)ip)-src))-1;
2440
0
    }
2441
0
}
2442
2443
2444
/*===== Instantiate the API decoding functions. =====*/
2445
2446
LZ4_FORCE_O2
2447
int LZ4_decompress_safe(const char* source, char* dest, int compressedSize, int maxDecompressedSize)
2448
6.15k
{
2449
6.15k
    return LZ4_decompress_generic(source, dest, compressedSize, maxDecompressedSize,
2450
6.15k
                                  decode_full_block, noDict,
2451
6.15k
                                  (BYTE*)dest, NULL, 0);
2452
6.15k
}
2453
2454
LZ4_FORCE_O2
2455
int LZ4_decompress_safe_partial(const char* src, char* dst, int compressedSize, int targetOutputSize, int dstCapacity)
2456
0
{
2457
0
    dstCapacity = MIN(targetOutputSize, dstCapacity);
2458
0
    return LZ4_decompress_generic(src, dst, compressedSize, dstCapacity,
2459
0
                                  partial_decode,
2460
0
                                  noDict, (BYTE*)dst, NULL, 0);
2461
0
}
2462
2463
LZ4_FORCE_O2
2464
int LZ4_decompress_fast(const char* source, char* dest, int originalSize)
2465
0
{
2466
0
    DEBUGLOG(5, "LZ4_decompress_fast");
2467
0
    return LZ4_decompress_unsafe_generic(
2468
0
                (const BYTE*)source, (BYTE*)dest, originalSize,
2469
0
                0, NULL, 0);
2470
0
}
2471
2472
/*===== Instantiate a few more decoding cases, used more than once. =====*/
2473
2474
LZ4_FORCE_O2 /* Exported, an obsolete API function. */
2475
int LZ4_decompress_safe_withPrefix64k(const char* source, char* dest, int compressedSize, int maxOutputSize)
2476
0
{
2477
0
    return LZ4_decompress_generic(source, dest, compressedSize, maxOutputSize,
2478
0
                                  decode_full_block, withPrefix64k,
2479
0
                                  (BYTE*)dest - 64 KB, NULL, 0);
2480
0
}
2481
2482
LZ4_FORCE_O2
2483
static int LZ4_decompress_safe_partial_withPrefix64k(const char* source, char* dest, int compressedSize, int targetOutputSize, int dstCapacity)
2484
0
{
2485
0
    dstCapacity = MIN(targetOutputSize, dstCapacity);
2486
0
    return LZ4_decompress_generic(source, dest, compressedSize, dstCapacity,
2487
0
                                  partial_decode, withPrefix64k,
2488
0
                                  (BYTE*)dest - 64 KB, NULL, 0);
2489
0
}
2490
2491
/* Another obsolete API function, paired with the previous one. */
2492
int LZ4_decompress_fast_withPrefix64k(const char* source, char* dest, int originalSize)
2493
0
{
2494
0
    return LZ4_decompress_unsafe_generic(
2495
0
                (const BYTE*)source, (BYTE*)dest, originalSize,
2496
0
                64 KB, NULL, 0);
2497
0
}
2498
2499
LZ4_FORCE_O2
2500
static int LZ4_decompress_safe_withSmallPrefix(const char* source, char* dest, int compressedSize, int maxOutputSize,
2501
                                               size_t prefixSize)
2502
1.80k
{
2503
1.80k
    return LZ4_decompress_generic(source, dest, compressedSize, maxOutputSize,
2504
1.80k
                                  decode_full_block, noDict,
2505
1.80k
                                  (BYTE*)dest-prefixSize, NULL, 0);
2506
1.80k
}
2507
2508
LZ4_FORCE_O2
2509
static int LZ4_decompress_safe_partial_withSmallPrefix(const char* source, char* dest, int compressedSize, int targetOutputSize, int dstCapacity,
2510
                                               size_t prefixSize)
2511
0
{
2512
0
    dstCapacity = MIN(targetOutputSize, dstCapacity);
2513
0
    return LZ4_decompress_generic(source, dest, compressedSize, dstCapacity,
2514
0
                                  partial_decode, noDict,
2515
0
                                  (BYTE*)dest-prefixSize, NULL, 0);
2516
0
}
2517
2518
LZ4_FORCE_O2
2519
int LZ4_decompress_safe_forceExtDict(const char* source, char* dest,
2520
                                     int compressedSize, int maxOutputSize,
2521
                                     const void* dictStart, size_t dictSize)
2522
5.37k
{
2523
5.37k
    DEBUGLOG(5, "LZ4_decompress_safe_forceExtDict");
2524
5.37k
    return LZ4_decompress_generic(source, dest, compressedSize, maxOutputSize,
2525
5.37k
                                  decode_full_block, usingExtDict,
2526
5.37k
                                  (BYTE*)dest, (const BYTE*)dictStart, dictSize);
2527
5.37k
}
2528
2529
LZ4_FORCE_O2
2530
int LZ4_decompress_safe_partial_forceExtDict(const char* source, char* dest,
2531
                                     int compressedSize, int targetOutputSize, int dstCapacity,
2532
                                     const void* dictStart, size_t dictSize)
2533
0
{
2534
0
    dstCapacity = MIN(targetOutputSize, dstCapacity);
2535
0
    return LZ4_decompress_generic(source, dest, compressedSize, dstCapacity,
2536
0
                                  partial_decode, usingExtDict,
2537
0
                                  (BYTE*)dest, (const BYTE*)dictStart, dictSize);
2538
0
}
2539
2540
LZ4_FORCE_O2
2541
static int LZ4_decompress_fast_extDict(const char* source, char* dest, int originalSize,
2542
                                       const void* dictStart, size_t dictSize)
2543
0
{
2544
0
    return LZ4_decompress_unsafe_generic(
2545
0
                (const BYTE*)source, (BYTE*)dest, originalSize,
2546
0
                0, (const BYTE*)dictStart, dictSize);
2547
0
}
2548
2549
/* The "double dictionary" mode, for use with e.g. ring buffers: the first part
2550
 * of the dictionary is passed as prefix, and the second via dictStart + dictSize.
2551
 * These routines are used only once, in LZ4_decompress_*_continue().
2552
 */
2553
LZ4_FORCE_INLINE
2554
int LZ4_decompress_safe_doubleDict(const char* source, char* dest, int compressedSize, int maxOutputSize,
2555
                                   size_t prefixSize, const void* dictStart, size_t dictSize)
2556
0
{
2557
0
    return LZ4_decompress_generic(source, dest, compressedSize, maxOutputSize,
2558
0
                                  decode_full_block, usingExtDict,
2559
0
                                  (BYTE*)dest-prefixSize, (const BYTE*)dictStart, dictSize);
2560
0
}
2561
2562
/*===== streaming decompression functions =====*/
2563
2564
#if !defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
2565
LZ4_streamDecode_t* LZ4_createStreamDecode(void)
2566
0
{
2567
0
    LZ4_STATIC_ASSERT(sizeof(LZ4_streamDecode_t) >= sizeof(LZ4_streamDecode_t_internal));
2568
0
    return (LZ4_streamDecode_t*) ALLOC_AND_ZERO(sizeof(LZ4_streamDecode_t));
2569
0
}
2570
2571
int LZ4_freeStreamDecode (LZ4_streamDecode_t* LZ4_stream)
2572
0
{
2573
0
    if (LZ4_stream == NULL) { return 0; }  /* support free on NULL */
2574
0
    FREEMEM(LZ4_stream);
2575
0
    return 0;
2576
0
}
2577
#endif
2578
2579
/*! LZ4_setStreamDecode() :
2580
 *  Use this function to instruct where to find the dictionary.
2581
 *  This function is not necessary if previous data is still available where it was decoded.
2582
 *  Loading a size of 0 is allowed (same effect as no dictionary).
2583
 * @return : 1 if OK, 0 if error
2584
 */
2585
int LZ4_setStreamDecode (LZ4_streamDecode_t* LZ4_streamDecode, const char* dictionary, int dictSize)
2586
0
{
2587
0
    LZ4_streamDecode_t_internal* lz4sd = &LZ4_streamDecode->internal_donotuse;
2588
0
    lz4sd->prefixSize = (size_t)dictSize;
2589
0
    if (dictSize) {
2590
0
        assert(dictionary != NULL);
2591
0
        lz4sd->prefixEnd = (const BYTE*) dictionary + dictSize;
2592
0
    } else {
2593
0
        lz4sd->prefixEnd = (const BYTE*) dictionary;
2594
0
    }
2595
0
    lz4sd->externalDict = NULL;
2596
0
    lz4sd->extDictSize  = 0;
2597
0
    return 1;
2598
0
}
2599
2600
/*! LZ4_decoderRingBufferSize() :
2601
 *  when setting a ring buffer for streaming decompression (optional scenario),
2602
 *  provides the minimum size of this ring buffer
2603
 *  to be compatible with any source respecting maxBlockSize condition.
2604
 *  Note : in a ring buffer scenario,
2605
 *  blocks are presumed decompressed next to each other.
2606
 *  When not enough space remains for next block (remainingSize < maxBlockSize),
2607
 *  decoding resumes from beginning of ring buffer.
2608
 * @return : minimum ring buffer size,
2609
 *           or 0 if there is an error (invalid maxBlockSize).
2610
 */
2611
int LZ4_decoderRingBufferSize(int maxBlockSize)
2612
0
{
2613
0
    if (maxBlockSize < 0) return 0;
2614
0
    if (maxBlockSize > LZ4_MAX_INPUT_SIZE) return 0;
2615
0
    if (maxBlockSize < 16) maxBlockSize = 16;
2616
0
    return LZ4_DECODER_RING_BUFFER_SIZE(maxBlockSize);
2617
0
}
2618
2619
/*
2620
*_continue() :
2621
    These decoding functions allow decompression of multiple blocks in "streaming" mode.
2622
    Previously decoded blocks must still be available at the memory position where they were decoded.
2623
    If it's not possible, save the relevant part of decoded data into a safe buffer,
2624
    and indicate where it stands using LZ4_setStreamDecode()
2625
*/
2626
LZ4_FORCE_O2
2627
int LZ4_decompress_safe_continue (LZ4_streamDecode_t* LZ4_streamDecode, const char* source, char* dest, int compressedSize, int maxOutputSize)
2628
0
{
2629
0
    LZ4_streamDecode_t_internal* lz4sd = &LZ4_streamDecode->internal_donotuse;
2630
0
    int result;
2631
2632
0
    if (lz4sd->prefixSize == 0) {
2633
        /* The first call, no dictionary yet. */
2634
0
        assert(lz4sd->extDictSize == 0);
2635
0
        result = LZ4_decompress_safe(source, dest, compressedSize, maxOutputSize);
2636
0
        if (result <= 0) return result;
2637
0
        lz4sd->prefixSize = (size_t)result;
2638
0
        lz4sd->prefixEnd = (BYTE*)dest + result;
2639
0
    } else if (lz4sd->prefixEnd == (BYTE*)dest) {
2640
        /* They're rolling the current segment. */
2641
0
        if (lz4sd->prefixSize >= 64 KB - 1)
2642
0
            result = LZ4_decompress_safe_withPrefix64k(source, dest, compressedSize, maxOutputSize);
2643
0
        else if (lz4sd->extDictSize == 0)
2644
0
            result = LZ4_decompress_safe_withSmallPrefix(source, dest, compressedSize, maxOutputSize,
2645
0
                                                         lz4sd->prefixSize);
2646
0
        else
2647
0
            result = LZ4_decompress_safe_doubleDict(source, dest, compressedSize, maxOutputSize,
2648
0
                                                    lz4sd->prefixSize, lz4sd->externalDict, lz4sd->extDictSize);
2649
0
        if (result <= 0) return result;
2650
0
        lz4sd->prefixSize += (size_t)result;
2651
0
        lz4sd->prefixEnd  += result;
2652
0
    } else {
2653
        /* The buffer wraps around, or they're switching to another buffer. */
2654
0
        lz4sd->extDictSize = lz4sd->prefixSize;
2655
0
        lz4sd->externalDict = lz4sd->prefixEnd - lz4sd->extDictSize;
2656
0
        result = LZ4_decompress_safe_forceExtDict(source, dest, compressedSize, maxOutputSize,
2657
0
                                                  lz4sd->externalDict, lz4sd->extDictSize);
2658
0
        if (result <= 0) return result;
2659
0
        lz4sd->prefixSize = (size_t)result;
2660
0
        lz4sd->prefixEnd  = (BYTE*)dest + result;
2661
0
    }
2662
2663
0
    return result;
2664
0
}
2665
2666
LZ4_FORCE_O2 int
2667
LZ4_decompress_fast_continue (LZ4_streamDecode_t* LZ4_streamDecode,
2668
                        const char* source, char* dest, int originalSize)
2669
0
{
2670
0
    LZ4_streamDecode_t_internal* const lz4sd =
2671
0
        (assert(LZ4_streamDecode!=NULL), &LZ4_streamDecode->internal_donotuse);
2672
0
    int result;
2673
2674
0
    DEBUGLOG(5, "LZ4_decompress_fast_continue (toDecodeSize=%i)", originalSize);
2675
0
    assert(originalSize >= 0);
2676
2677
0
    if (lz4sd->prefixSize == 0) {
2678
0
        DEBUGLOG(5, "first invocation : no prefix nor extDict");
2679
0
        assert(lz4sd->extDictSize == 0);
2680
0
        result = LZ4_decompress_fast(source, dest, originalSize);
2681
0
        if (result <= 0) return result;
2682
0
        lz4sd->prefixSize = (size_t)originalSize;
2683
0
        lz4sd->prefixEnd = (BYTE*)dest + originalSize;
2684
0
    } else if (lz4sd->prefixEnd == (BYTE*)dest) {
2685
0
        DEBUGLOG(5, "continue using existing prefix");
2686
0
        result = LZ4_decompress_unsafe_generic(
2687
0
                        (const BYTE*)source, (BYTE*)dest, originalSize,
2688
0
                        lz4sd->prefixSize,
2689
0
                        lz4sd->externalDict, lz4sd->extDictSize);
2690
0
        if (result <= 0) return result;
2691
0
        lz4sd->prefixSize += (size_t)originalSize;
2692
0
        lz4sd->prefixEnd  += originalSize;
2693
0
    } else {
2694
0
        DEBUGLOG(5, "prefix becomes extDict");
2695
0
        lz4sd->extDictSize = lz4sd->prefixSize;
2696
0
        lz4sd->externalDict = lz4sd->prefixEnd - lz4sd->extDictSize;
2697
0
        result = LZ4_decompress_fast_extDict(source, dest, originalSize,
2698
0
                                             lz4sd->externalDict, lz4sd->extDictSize);
2699
0
        if (result <= 0) return result;
2700
0
        lz4sd->prefixSize = (size_t)originalSize;
2701
0
        lz4sd->prefixEnd  = (BYTE*)dest + originalSize;
2702
0
    }
2703
2704
0
    return result;
2705
0
}
2706
2707
2708
/*
2709
Advanced decoding functions :
2710
*_usingDict() :
2711
    These decoding functions work the same as "_continue" ones,
2712
    the dictionary must be explicitly provided within parameters
2713
*/
2714
2715
int LZ4_decompress_safe_usingDict(const char* source, char* dest, int compressedSize, int maxOutputSize, const char* dictStart, int dictSize)
2716
13.3k
{
2717
13.3k
    if (dictSize==0)
2718
6.15k
        return LZ4_decompress_safe(source, dest, compressedSize, maxOutputSize);
2719
7.18k
    if (dictStart+dictSize == dest) {
2720
1.80k
        if (dictSize >= 64 KB - 1) {
2721
0
            return LZ4_decompress_safe_withPrefix64k(source, dest, compressedSize, maxOutputSize);
2722
0
        }
2723
1.80k
        assert(dictSize >= 0);
2724
1.80k
        return LZ4_decompress_safe_withSmallPrefix(source, dest, compressedSize, maxOutputSize, (size_t)dictSize);
2725
1.80k
    }
2726
7.18k
    assert(dictSize >= 0);
2727
5.37k
    return LZ4_decompress_safe_forceExtDict(source, dest, compressedSize, maxOutputSize, dictStart, (size_t)dictSize);
2728
5.37k
}
2729
2730
int LZ4_decompress_safe_partial_usingDict(const char* source, char* dest, int compressedSize, int targetOutputSize, int dstCapacity, const char* dictStart, int dictSize)
2731
0
{
2732
0
    if (dictSize==0)
2733
0
        return LZ4_decompress_safe_partial(source, dest, compressedSize, targetOutputSize, dstCapacity);
2734
0
    if (dictStart+dictSize == dest) {
2735
0
        if (dictSize >= 64 KB - 1) {
2736
0
            return LZ4_decompress_safe_partial_withPrefix64k(source, dest, compressedSize, targetOutputSize, dstCapacity);
2737
0
        }
2738
0
        assert(dictSize >= 0);
2739
0
        return LZ4_decompress_safe_partial_withSmallPrefix(source, dest, compressedSize, targetOutputSize, dstCapacity, (size_t)dictSize);
2740
0
    }
2741
0
    assert(dictSize >= 0);
2742
0
    return LZ4_decompress_safe_partial_forceExtDict(source, dest, compressedSize, targetOutputSize, dstCapacity, dictStart, (size_t)dictSize);
2743
0
}
2744
2745
int LZ4_decompress_fast_usingDict(const char* source, char* dest, int originalSize, const char* dictStart, int dictSize)
2746
0
{
2747
0
    if (dictSize==0 || dictStart+dictSize == dest)
2748
0
        return LZ4_decompress_unsafe_generic(
2749
0
                        (const BYTE*)source, (BYTE*)dest, originalSize,
2750
0
                        (size_t)dictSize, NULL, 0);
2751
0
    assert(dictSize >= 0);
2752
0
    return LZ4_decompress_fast_extDict(source, dest, originalSize, dictStart, (size_t)dictSize);
2753
0
}
2754
2755
2756
/*=*************************************************
2757
*  Obsolete Functions
2758
***************************************************/
2759
/* obsolete compression functions */
2760
int LZ4_compress_limitedOutput(const char* source, char* dest, int inputSize, int maxOutputSize)
2761
0
{
2762
0
    return LZ4_compress_default(source, dest, inputSize, maxOutputSize);
2763
0
}
2764
int LZ4_compress(const char* src, char* dest, int srcSize)
2765
0
{
2766
0
    return LZ4_compress_default(src, dest, srcSize, LZ4_compressBound(srcSize));
2767
0
}
2768
int LZ4_compress_limitedOutput_withState (void* state, const char* src, char* dst, int srcSize, int dstSize)
2769
0
{
2770
0
    return LZ4_compress_fast_extState(state, src, dst, srcSize, dstSize, 1);
2771
0
}
2772
int LZ4_compress_withState (void* state, const char* src, char* dst, int srcSize)
2773
0
{
2774
0
    return LZ4_compress_fast_extState(state, src, dst, srcSize, LZ4_compressBound(srcSize), 1);
2775
0
}
2776
int LZ4_compress_limitedOutput_continue (LZ4_stream_t* LZ4_stream, const char* src, char* dst, int srcSize, int dstCapacity)
2777
0
{
2778
0
    return LZ4_compress_fast_continue(LZ4_stream, src, dst, srcSize, dstCapacity, 1);
2779
0
}
2780
int LZ4_compress_continue (LZ4_stream_t* LZ4_stream, const char* source, char* dest, int inputSize)
2781
0
{
2782
0
    return LZ4_compress_fast_continue(LZ4_stream, source, dest, inputSize, LZ4_compressBound(inputSize), 1);
2783
0
}
2784
2785
/*
2786
These decompression functions are deprecated and should no longer be used.
2787
They are only provided here for compatibility with older user programs.
2788
- LZ4_uncompress is totally equivalent to LZ4_decompress_fast
2789
- LZ4_uncompress_unknownOutputSize is totally equivalent to LZ4_decompress_safe
2790
*/
2791
int LZ4_uncompress (const char* source, char* dest, int outputSize)
2792
0
{
2793
0
    return LZ4_decompress_fast(source, dest, outputSize);
2794
0
}
2795
int LZ4_uncompress_unknownOutputSize (const char* source, char* dest, int isize, int maxOutputSize)
2796
0
{
2797
0
    return LZ4_decompress_safe(source, dest, isize, maxOutputSize);
2798
0
}
2799
2800
/* Obsolete Streaming functions */
2801
2802
0
int LZ4_sizeofStreamState(void) { return sizeof(LZ4_stream_t); }
2803
2804
int LZ4_resetStreamState(void* state, char* inputBuffer)
2805
0
{
2806
0
    (void)inputBuffer;
2807
0
    LZ4_resetStream((LZ4_stream_t*)state);
2808
0
    return 0;
2809
0
}
2810
2811
#if !defined(LZ4_STATIC_LINKING_ONLY_DISABLE_MEMORY_ALLOCATION)
2812
void* LZ4_create (char* inputBuffer)
2813
0
{
2814
0
    (void)inputBuffer;
2815
0
    return LZ4_createStream();
2816
0
}
2817
#endif
2818
2819
char* LZ4_slideInputBuffer (void* state)
2820
0
{
2821
    /* avoid const char * -> char * conversion warning */
2822
0
    return (char *)(uptrval)((LZ4_stream_t*)state)->internal_donotuse.dictionary;
2823
0
}
2824
2825
#endif   /* LZ4_COMMONDEFS_ONLY */