+13
-11
@@ -26,18 +26,18 @@ PYTHON ?= python3
|
||||
TESTARTEFACT := versionsTest namespaceTest
|
||||
|
||||
|
||||
DEBUGFLAGS=-g -DZSTD_DEBUG=1
|
||||
CPPFLAGS+= -I$(ZSTDDIR) -I$(ZSTDDIR)/common -I$(ZSTDDIR)/compress \
|
||||
-I$(ZSTDDIR)/dictBuilder -I$(ZSTDDIR)/deprecated -I$(PRGDIR) \
|
||||
$(DEBUGFLAG)
|
||||
CFLAGS ?= -O3
|
||||
CFLAGS += -Wall -Wextra -Wcast-qual -Wcast-align -Wshadow \
|
||||
DEBUGFLAGS= -g -DZSTD_DEBUG=1
|
||||
CPPFLAGS += -I$(ZSTDDIR) -I$(ZSTDDIR)/common -I$(ZSTDDIR)/compress \
|
||||
-I$(ZSTDDIR)/dictBuilder -I$(ZSTDDIR)/deprecated -I$(PRGDIR)
|
||||
CFLAGS ?= -O3
|
||||
CFLAGS += -Wall -Wextra -Wcast-qual -Wcast-align -Wshadow \
|
||||
-Wstrict-aliasing=1 -Wswitch-enum -Wdeclaration-after-statement \
|
||||
-Wstrict-prototypes -Wundef -Wformat-security \
|
||||
-Wvla -Wformat=2 -Winit-self -Wfloat-equal -Wwrite-strings \
|
||||
-Wstrict-prototypes -Wundef -Wformat-security \
|
||||
-Wvla -Wformat=2 -Winit-self -Wfloat-equal -Wwrite-strings \
|
||||
-Wredundant-decls
|
||||
CFLAGS += $(MOREFLAGS)
|
||||
FLAGS = $(CPPFLAGS) $(CFLAGS) $(LDFLAGS)
|
||||
CFLAGS += $(DEBUGFLAGS)
|
||||
CFLAGS += $(MOREFLAGS)
|
||||
FLAGS = $(CPPFLAGS) $(CFLAGS) $(LDFLAGS)
|
||||
|
||||
|
||||
ZSTDCOMMON_FILES := $(ZSTDDIR)/common/*.c
|
||||
@@ -159,7 +159,7 @@ zstreamtest-dll : $(ZSTDDIR)/common/xxhash.c $(PRGDIR)/datagen.c zstreamtest.c
|
||||
$(MAKE) -C $(ZSTDDIR) libzstd
|
||||
$(CC) $(CPPFLAGS) $(CFLAGS) $^ $(LDFLAGS) -o $@$(EXT)
|
||||
|
||||
paramgrill : DEBUGFLAG =
|
||||
paramgrill : DEBUGFLAGS =
|
||||
paramgrill : $(ZSTD_FILES) $(PRGDIR)/datagen.c paramgrill.c
|
||||
$(CC) $(FLAGS) $^ -lm -o $@$(EXT)
|
||||
|
||||
@@ -321,6 +321,8 @@ test-zbuff32: zbufftest32
|
||||
|
||||
test-zstream: zstreamtest
|
||||
$(QEMU_SYS) ./zstreamtest $(ZSTREAM_TESTTIME) $(FUZZER_FLAGS)
|
||||
$(QEMU_SYS) ./zstreamtest --mt $(ZSTREAM_TESTTIME) $(FUZZER_FLAGS)
|
||||
$(QEMU_SYS) ./zstreamtest --newapi $(ZSTREAM_TESTTIME) $(FUZZER_FLAGS)
|
||||
|
||||
test-zstream32: zstreamtest32
|
||||
$(QEMU_SYS) ./zstreamtest32 $(ZSTREAM_TESTTIME) $(FUZZER_FLAGS)
|
||||
|
||||
@@ -73,8 +73,6 @@ static clock_t clockSpan(clock_t cStart)
|
||||
/*-*******************************************************
|
||||
* Random function
|
||||
*********************************************************/
|
||||
#define CLAMP(x, a, b) ((x) < (a) ? (a) : ((x) > (b) ? (b) : (x)))
|
||||
|
||||
static unsigned RAND(unsigned* src)
|
||||
{
|
||||
#define RAND_rotl32(x,r) ((x << r) | (x >> (32 - r)))
|
||||
|
||||
+174
-28
@@ -12,9 +12,9 @@
|
||||
* Compiler specific
|
||||
**************************************/
|
||||
#ifdef _MSC_VER /* Visual Studio */
|
||||
# define _CRT_SECURE_NO_WARNINGS /* fgets */
|
||||
# pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */
|
||||
# pragma warning(disable : 4204) /* disable: C4204: non-constant aggregate initializer */
|
||||
# define _CRT_SECURE_NO_WARNINGS /* fgets */
|
||||
# pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */
|
||||
# pragma warning(disable : 4204) /* disable: C4204: non-constant aggregate initializer */
|
||||
#endif
|
||||
|
||||
|
||||
@@ -25,7 +25,7 @@
|
||||
#include <stdio.h> /* fgets, sscanf */
|
||||
#include <string.h> /* strcmp */
|
||||
#include <time.h> /* clock_t */
|
||||
#define ZSTD_STATIC_LINKING_ONLY /* ZSTD_compressContinue, ZSTD_compressBlock */
|
||||
#define ZSTD_STATIC_LINKING_ONLY /* ZSTD_compressContinue, ZSTD_compressBlock */
|
||||
#include "zstd.h" /* ZSTD_VERSION_STRING */
|
||||
#include "zstd_errors.h" /* ZSTD_getErrorCode */
|
||||
#include "zstdmt_compress.h"
|
||||
@@ -74,7 +74,6 @@ static clock_t FUZ_clockSpan(clock_t cStart)
|
||||
return clock() - cStart; /* works even when overflow; max span ~ 30mn */
|
||||
}
|
||||
|
||||
|
||||
#define FUZ_rotl32(x,r) ((x << r) | (x >> (32 - r)))
|
||||
static unsigned FUZ_rand(unsigned* src)
|
||||
{
|
||||
@@ -104,6 +103,7 @@ static unsigned FUZ_highbit32(U32 v32)
|
||||
#define CHECK_V(var, fn) size_t const var = fn; if (ZSTD_isError(var)) goto _output_error
|
||||
#define CHECK(fn) { CHECK_V(err, fn); }
|
||||
#define CHECKPLUS(var, fn, more) { CHECK_V(var, fn); more; }
|
||||
|
||||
static int basicUnitTests(U32 seed, double compressibility)
|
||||
{
|
||||
size_t const CNBuffSize = 5 MB;
|
||||
@@ -190,6 +190,90 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
|
||||
/* Static CCtx tests */
|
||||
#define STATIC_CCTX_LEVEL 3
|
||||
DISPLAYLEVEL(4, "test%3i : create static CCtx for level %u :", testNb++, STATIC_CCTX_LEVEL);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(STATIC_CCTX_LEVEL, 0, 0);
|
||||
size_t const staticCCtxSize = ZSTD_estimateCStreamSize(cParams);
|
||||
void* const staticCCtxBuffer = malloc(staticCCtxSize);
|
||||
size_t const staticDCtxSize = ZSTD_estimateDCtxSize();
|
||||
void* const staticDCtxBuffer = malloc(staticDCtxSize);
|
||||
if (staticCCtxBuffer==NULL || staticDCtxBuffer==NULL) {
|
||||
free(staticCCtxBuffer);
|
||||
free(staticDCtxBuffer);
|
||||
DISPLAY("Not enough memory, aborting\n");
|
||||
testResult = 1;
|
||||
goto _end;
|
||||
}
|
||||
{ ZSTD_CCtx* staticCCtx = ZSTD_initStaticCCtx(staticCCtxBuffer, staticCCtxSize);
|
||||
ZSTD_DCtx* staticDCtx = ZSTD_initStaticDCtx(staticDCtxBuffer, staticDCtxSize);
|
||||
if ((staticCCtx==NULL) || (staticDCtx==NULL)) goto _output_error;
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : init CCtx for level %u : ", testNb++, STATIC_CCTX_LEVEL);
|
||||
{ size_t const r = ZSTD_compressBegin(staticCCtx, STATIC_CCTX_LEVEL);
|
||||
if (ZSTD_isError(r)) goto _output_error; }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : simple compression test with static CCtx : ", testNb++);
|
||||
CHECKPLUS(r, ZSTD_compressCCtx(staticCCtx,
|
||||
compressedBuffer, ZSTD_compressBound(CNBuffSize),
|
||||
CNBuffer, CNBuffSize, STATIC_CCTX_LEVEL),
|
||||
cSize=r );
|
||||
DISPLAYLEVEL(4, "OK (%u bytes : %.2f%%)\n",
|
||||
(U32)cSize, (double)cSize/CNBuffSize*100);
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : simple decompression test with static DCtx : ", testNb++);
|
||||
{ size_t const r = ZSTD_decompressDCtx(staticDCtx,
|
||||
decodedBuffer, CNBuffSize,
|
||||
compressedBuffer, cSize);
|
||||
if (r != CNBuffSize) goto _output_error; }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : check decompressed result : ", testNb++);
|
||||
{ size_t u;
|
||||
for (u=0; u<CNBuffSize; u++) {
|
||||
if (((BYTE*)decodedBuffer)[u] != ((BYTE*)CNBuffer)[u])
|
||||
goto _output_error;;
|
||||
} }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : init CCtx for too large level (must fail) : ", testNb++);
|
||||
{ size_t const r = ZSTD_compressBegin(staticCCtx, ZSTD_maxCLevel());
|
||||
if (!ZSTD_isError(r)) goto _output_error; }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : init CCtx for small level %u (should work again) : ", testNb++, 1);
|
||||
{ size_t const r = ZSTD_compressBegin(staticCCtx, 1);
|
||||
if (ZSTD_isError(r)) goto _output_error; }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : init CStream for small level %u : ", testNb++, 1);
|
||||
{ size_t const r = ZSTD_initCStream(staticCCtx, 1);
|
||||
if (ZSTD_isError(r)) goto _output_error; }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : init CStream with dictionary (should fail) : ", testNb++);
|
||||
{ size_t const r = ZSTD_initCStream_usingDict(staticCCtx, CNBuffer, 64 KB, 1);
|
||||
if (!ZSTD_isError(r)) goto _output_error; }
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : init DStream (should fail) : ", testNb++);
|
||||
{ size_t const r = ZSTD_initDStream(staticDCtx);
|
||||
if (ZSTD_isError(r)) goto _output_error; }
|
||||
{ ZSTD_outBuffer output = { decodedBuffer, CNBuffSize, 0 };
|
||||
ZSTD_inBuffer input = { compressedBuffer, ZSTD_FRAMEHEADERSIZE_MAX+1, 0 };
|
||||
size_t const r = ZSTD_decompressStream(staticDCtx, &output, &input);
|
||||
if (!ZSTD_isError(r)) goto _output_error;
|
||||
}
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
}
|
||||
free(staticCCtxBuffer);
|
||||
free(staticDCtxBuffer);
|
||||
}
|
||||
|
||||
|
||||
|
||||
/* ZSTDMT simple MT compression test */
|
||||
DISPLAYLEVEL(4, "test%3i : create ZSTDMT CCtx : ", testNb++);
|
||||
{ ZSTDMT_CCtx* mtctx = ZSTDMT_createCCtx(2);
|
||||
@@ -321,13 +405,25 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : decompress with DDict : ", testNb++);
|
||||
{ ZSTD_DDict* const ddict = ZSTD_createDDict_byReference(CNBuffer, dictSize);
|
||||
{ ZSTD_DDict* const ddict = ZSTD_createDDict(CNBuffer, dictSize);
|
||||
size_t const r = ZSTD_decompress_usingDDict(dctx, decodedBuffer, CNBuffSize, compressedBuffer, cSize, ddict);
|
||||
if (r != CNBuffSize - dictSize) goto _output_error;
|
||||
DISPLAYLEVEL(4, "OK (size of DDict : %u) \n", (U32)ZSTD_sizeof_DDict(ddict));
|
||||
ZSTD_freeDDict(ddict);
|
||||
}
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : decompress with static DDict : ", testNb++);
|
||||
{ size_t const ddictBufferSize = ZSTD_estimateDDictSize(dictSize, 0);
|
||||
void* ddictBuffer = malloc(ddictBufferSize);
|
||||
if (ddictBuffer == NULL) goto _output_error;
|
||||
{ ZSTD_DDict* const ddict = ZSTD_initStaticDDict(ddictBuffer, ddictBufferSize, CNBuffer, dictSize, 0);
|
||||
size_t const r = ZSTD_decompress_usingDDict(dctx, decodedBuffer, CNBuffSize, compressedBuffer, cSize, ddict);
|
||||
if (r != CNBuffSize - dictSize) goto _output_error;
|
||||
}
|
||||
free(ddictBuffer);
|
||||
DISPLAYLEVEL(4, "OK (size of static DDict : %u) \n", (U32)ddictBufferSize);
|
||||
}
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : check content size on duplicated context : ", testNb++);
|
||||
{ size_t const testSize = CNBuffSize / 3;
|
||||
{ ZSTD_parameters p = ZSTD_getParams(2, testSize, dictSize);
|
||||
@@ -406,14 +502,16 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : estimate CDict size : ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBuffSize, dictSize);
|
||||
size_t const estimatedSize = ZSTD_estimateCDictSize(cParams, dictSize);
|
||||
size_t const estimatedSize = ZSTD_estimateCDictSize(cParams, dictSize, 1 /*byReference*/);
|
||||
DISPLAYLEVEL(4, "OK : %u \n", (U32)estimatedSize);
|
||||
}
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : compress with preprocessed dictionary : ", testNb++);
|
||||
DISPLAYLEVEL(4, "test%3i : compress with CDict ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBuffSize, dictSize);
|
||||
ZSTD_customMem customMem = { NULL, NULL, NULL };
|
||||
ZSTD_CDict* cdict = ZSTD_createCDict_advanced(dictBuffer, dictSize, 1, cParams, customMem);
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced(dictBuffer, dictSize,
|
||||
1 /* byReference */, ZSTD_dm_auto,
|
||||
cParams, ZSTD_defaultCMem);
|
||||
DISPLAYLEVEL(4, "(size : %u) : ", (U32)ZSTD_sizeof_CDict(cdict));
|
||||
cSize = ZSTD_compress_usingCDict(cctx, compressedBuffer, ZSTD_compressBound(CNBuffSize),
|
||||
CNBuffer, CNBuffSize, cdict);
|
||||
ZSTD_freeCDict(cdict);
|
||||
@@ -435,11 +533,34 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
if (r != CNBuffSize) goto _output_error);
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : compress with static CDict : ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBuffSize, dictSize);
|
||||
size_t const cdictSize = ZSTD_estimateCDictSize(cParams, dictSize, 0);
|
||||
void* const cdictBuffer = malloc(cdictSize);
|
||||
if (cdictBuffer==NULL) goto _output_error;
|
||||
{ ZSTD_CDict* const cdict = ZSTD_initStaticCDict(cdictBuffer, cdictSize,
|
||||
dictBuffer, dictSize,
|
||||
0 /* by Reference */, ZSTD_dm_auto,
|
||||
cParams);
|
||||
if (cdict == NULL) {
|
||||
DISPLAY("ZSTD_initStaticCDict failed ");
|
||||
goto _output_error;
|
||||
}
|
||||
cSize = ZSTD_compress_usingCDict(cctx,
|
||||
compressedBuffer, ZSTD_compressBound(CNBuffSize),
|
||||
CNBuffer, CNBuffSize, cdict);
|
||||
if (ZSTD_isError(cSize)) {
|
||||
DISPLAY("ZSTD_compress_usingCDict failed ");
|
||||
goto _output_error;
|
||||
} }
|
||||
free(cdictBuffer);
|
||||
}
|
||||
DISPLAYLEVEL(4, "OK (%u bytes : %.2f%%)\n", (U32)cSize, (double)cSize/CNBuffSize*100);
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : ZSTD_compress_usingCDict_advanced, no contentSize, no dictID : ", testNb++);
|
||||
{ ZSTD_frameParameters const fParams = { 0 /* frameSize */, 1 /* checksum */, 1 /* noDictID*/ };
|
||||
ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBuffSize, dictSize);
|
||||
ZSTD_customMem const customMem = { NULL, NULL, NULL };
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced(dictBuffer, dictSize, 1, cParams, customMem);
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced(dictBuffer, dictSize, 1 /*byRef*/, ZSTD_dm_auto, cParams, ZSTD_defaultCMem);
|
||||
cSize = ZSTD_compress_usingCDict_advanced(cctx, compressedBuffer, ZSTD_compressBound(CNBuffSize),
|
||||
CNBuffer, CNBuffSize, cdict, fParams);
|
||||
ZSTD_freeCDict(cdict);
|
||||
@@ -488,6 +609,22 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
}
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : Building cdict w/ ZSTD_dm_fullDict on a good dictionary : ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBuffSize, dictSize);
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced(dictBuffer, dictSize, 1 /*byRef*/, ZSTD_dm_fullDict, cParams, ZSTD_defaultCMem);
|
||||
if (cdict==NULL) goto _output_error;
|
||||
ZSTD_freeCDict(cdict);
|
||||
}
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
DISPLAYLEVEL(4, "test%3i : Building cdict w/ ZSTD_dm_fullDict on a rawContent (must fail) : ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBuffSize, dictSize);
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced((const char*)dictBuffer+1, dictSize-1, 1 /*byRef*/, ZSTD_dm_fullDict, cParams, ZSTD_defaultCMem);
|
||||
if (cdict!=NULL) goto _output_error;
|
||||
ZSTD_freeCDict(cdict);
|
||||
}
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
|
||||
ZSTD_freeCCtx(cctx);
|
||||
free(dictBuffer);
|
||||
free(samplesSizes);
|
||||
@@ -566,9 +703,7 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
size_t const wrongSrcSize = (srcSize + 1000);
|
||||
ZSTD_parameters params = ZSTD_getParams(1, wrongSrcSize, 0);
|
||||
params.fParams.contentSizeFlag = 1;
|
||||
{ size_t const result = ZSTD_compressBegin_advanced(cctx, NULL, 0, params, wrongSrcSize);
|
||||
if (ZSTD_isError(result)) goto _output_error;
|
||||
}
|
||||
CHECK( ZSTD_compressBegin_advanced(cctx, NULL, 0, params, wrongSrcSize) );
|
||||
{ size_t const result = ZSTD_compressEnd(cctx, decodedBuffer, CNBuffSize, CNBuffer, srcSize);
|
||||
if (!ZSTD_isError(result)) goto _output_error;
|
||||
if (ZSTD_getErrorCode(result) != ZSTD_error_srcSize_wrong) goto _output_error;
|
||||
@@ -586,6 +721,7 @@ static int basicUnitTests(U32 seed, double compressibility)
|
||||
/* basic block compression */
|
||||
DISPLAYLEVEL(4, "test%3i : Block compression test : ", testNb++);
|
||||
CHECK( ZSTD_compressBegin(cctx, 5) );
|
||||
CHECK( ZSTD_getBlockSize(cctx) >= blockSize);
|
||||
cSize = ZSTD_compressBlock(cctx, compressedBuffer, ZSTD_compressBound(blockSize), CNBuffer, blockSize);
|
||||
if (ZSTD_isError(cSize)) goto _output_error;
|
||||
DISPLAYLEVEL(4, "OK \n");
|
||||
@@ -749,8 +885,23 @@ static size_t FUZ_randomLength(U32* seed, U32 maxLog)
|
||||
}
|
||||
|
||||
#undef CHECK
|
||||
#define CHECK(cond, ...) if (cond) { DISPLAY("Error => "); DISPLAY(__VA_ARGS__); \
|
||||
DISPLAY(" (seed %u, test nb %u) \n", seed, testNb); goto _output_error; }
|
||||
#define CHECK(cond, ...) { \
|
||||
if (cond) { \
|
||||
DISPLAY("Error => "); \
|
||||
DISPLAY(__VA_ARGS__); \
|
||||
DISPLAY(" (seed %u, test nb %u) \n", seed, testNb); \
|
||||
goto _output_error; \
|
||||
} }
|
||||
|
||||
#define CHECK_Z(f) { \
|
||||
size_t const err = f; \
|
||||
if (ZSTD_isError(err)) { \
|
||||
DISPLAY("Error => %s : %s ", \
|
||||
#f, ZSTD_getErrorName(err)); \
|
||||
DISPLAY(" (seed %u, test nb %u) \n", seed, testNb); \
|
||||
goto _output_error; \
|
||||
} }
|
||||
|
||||
|
||||
static int fuzzerTests(U32 seed, U32 nbTests, unsigned startTest, U32 const maxDurationS, double compressibility, int bigTests)
|
||||
{
|
||||
@@ -863,8 +1014,7 @@ static int fuzzerTests(U32 seed, U32 nbTests, unsigned startTest, U32 const maxD
|
||||
|
||||
/* frame header decompression test */
|
||||
{ ZSTD_frameHeader dParams;
|
||||
size_t const check = ZSTD_getFrameHeader(&dParams, cBuffer, cSize);
|
||||
CHECK(ZSTD_isError(check), "Frame Parameters extraction failed");
|
||||
CHECK_Z( ZSTD_getFrameHeader(&dParams, cBuffer, cSize) );
|
||||
CHECK(dParams.frameContentSize != sampleSize, "Frame content size incorrect");
|
||||
}
|
||||
|
||||
@@ -951,20 +1101,17 @@ static int fuzzerTests(U32 seed, U32 nbTests, unsigned startTest, U32 const maxD
|
||||
dict = srcBuffer + (FUZ_rand(&lseed) % (srcBufferSize - dictSize));
|
||||
|
||||
if (FUZ_rand(&lseed) & 0xF) {
|
||||
size_t const errorCode = ZSTD_compressBegin_usingDict(refCtx, dict, dictSize, cLevel);
|
||||
CHECK (ZSTD_isError(errorCode), "ZSTD_compressBegin_usingDict error : %s", ZSTD_getErrorName(errorCode));
|
||||
CHECK_Z ( ZSTD_compressBegin_usingDict(refCtx, dict, dictSize, cLevel) );
|
||||
} else {
|
||||
ZSTD_compressionParameters const cPar = ZSTD_getCParams(cLevel, 0, dictSize);
|
||||
ZSTD_frameParameters const fPar = { FUZ_rand(&lseed)&1 /* contentSizeFlag */,
|
||||
!(FUZ_rand(&lseed)&3) /* contentChecksumFlag*/,
|
||||
0 /*NodictID*/ }; /* note : since dictionary is fake, dictIDflag has no impact */
|
||||
ZSTD_parameters const p = FUZ_makeParams(cPar, fPar);
|
||||
size_t const errorCode = ZSTD_compressBegin_advanced(refCtx, dict, dictSize, p, 0);
|
||||
CHECK (ZSTD_isError(errorCode), "ZSTD_compressBegin_advanced error : %s", ZSTD_getErrorName(errorCode));
|
||||
CHECK_Z ( ZSTD_compressBegin_advanced(refCtx, dict, dictSize, p, 0) );
|
||||
}
|
||||
{ size_t const errorCode = ZSTD_copyCCtx(ctx, refCtx, 0);
|
||||
CHECK (ZSTD_isError(errorCode), "ZSTD_copyCCtx error : %s", ZSTD_getErrorName(errorCode));
|
||||
} }
|
||||
CHECK_Z( ZSTD_copyCCtx(ctx, refCtx, 0) );
|
||||
}
|
||||
ZSTD_setCCtxParameter(ctx, ZSTD_p_forceWindow, FUZ_rand(&lseed) & 1);
|
||||
|
||||
{ U32 const nbChunks = (FUZ_rand(&lseed) & 127) + 2;
|
||||
@@ -996,8 +1143,7 @@ static int fuzzerTests(U32 seed, U32 nbTests, unsigned startTest, U32 const maxD
|
||||
|
||||
/* streaming decompression test */
|
||||
if (dictSize<8) dictSize=0, dict=NULL; /* disable dictionary */
|
||||
{ size_t const errorCode = ZSTD_decompressBegin_usingDict(dctx, dict, dictSize);
|
||||
CHECK (ZSTD_isError(errorCode), "ZSTD_decompressBegin_usingDict error : %s", ZSTD_getErrorName(errorCode)); }
|
||||
CHECK_Z( ZSTD_decompressBegin_usingDict(dctx, dict, dictSize) );
|
||||
totalCSize = 0;
|
||||
totalGenSize = 0;
|
||||
while (totalCSize < cSize) {
|
||||
|
||||
+1
-1
@@ -95,7 +95,7 @@ static const void *symbols[] = {
|
||||
&ZSTD_nextSrcSizeToDecompress,
|
||||
&ZSTD_decompressContinue,
|
||||
&ZSTD_nextInputType,
|
||||
&ZSTD_getBlockSizeMax,
|
||||
&ZSTD_getBlockSize,
|
||||
&ZSTD_compressBlock,
|
||||
&ZSTD_decompressBlock,
|
||||
&ZSTD_insertBlock,
|
||||
|
||||
+614
-286
@@ -12,9 +12,9 @@
|
||||
* Compiler specific
|
||||
**************************************/
|
||||
#ifdef _MSC_VER /* Visual Studio */
|
||||
# define _CRT_SECURE_NO_WARNINGS /* fgets */
|
||||
# pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */
|
||||
# pragma warning(disable : 4146) /* disable: C4146: minus unsigned expression */
|
||||
# define _CRT_SECURE_NO_WARNINGS /* fgets */
|
||||
# pragma warning(disable : 4127) /* disable: C4127: conditional expression is constant */
|
||||
# pragma warning(disable : 4146) /* disable: C4146: minus unsigned expression */
|
||||
#endif
|
||||
|
||||
|
||||
@@ -25,8 +25,9 @@
|
||||
#include <stdio.h> /* fgets, sscanf */
|
||||
#include <time.h> /* clock_t, clock() */
|
||||
#include <string.h> /* strcmp */
|
||||
#include <assert.h> /* assert */
|
||||
#include "mem.h"
|
||||
#define ZSTD_STATIC_LINKING_ONLY /* ZSTD_maxCLevel, ZSTD_customMem, ZSTD_getDictID_fromFrame */
|
||||
#define ZSTD_STATIC_LINKING_ONLY /* ZSTD_maxCLevel, ZSTD_customMem, ZSTD_getDictID_fromFrame */
|
||||
#include "zstd.h" /* ZSTD_compressBound */
|
||||
#include "zstd_errors.h" /* ZSTD_error_srcSize_wrong */
|
||||
#include "zstdmt_compress.h"
|
||||
@@ -44,6 +45,7 @@
|
||||
#define GB *(1U<<30)
|
||||
|
||||
static const U32 nbTestsDefault = 10000;
|
||||
static const U32 g_cLevelMax_smallTests = 10;
|
||||
#define COMPRESSIBLE_NOISE_LENGTH (10 MB)
|
||||
#define FUZ_COMPRESSIBILITY_DEFAULT 50
|
||||
static const U32 prime32 = 2654435761U;
|
||||
@@ -189,7 +191,8 @@ static int basicUnitTests(U32 seed, double compressibility, ZSTD_customMem custo
|
||||
|
||||
/* Basic compression test */
|
||||
DISPLAYLEVEL(3, "test%3i : compress %u bytes : ", testNb++, COMPRESSIBLE_NOISE_LENGTH);
|
||||
ZSTD_initCStream_usingDict(zc, CNBuffer, dictSize, 1);
|
||||
{ size_t const r = ZSTD_initCStream_usingDict(zc, CNBuffer, dictSize, 1);
|
||||
if (ZSTD_isError(r)) goto _output_error; }
|
||||
outBuff.dst = (char*)(compressedBuffer)+cSize;
|
||||
outBuff.size = compressedBufferSize;
|
||||
outBuff.pos = 0;
|
||||
@@ -208,15 +211,16 @@ static int basicUnitTests(U32 seed, double compressibility, ZSTD_customMem custo
|
||||
DISPLAYLEVEL(3, "test%3i : estimate CStream size : ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBufferSize, dictSize);
|
||||
size_t const s = ZSTD_estimateCStreamSize(cParams)
|
||||
+ ZSTD_estimateCDictSize(cParams, dictSize); /* uses ZSTD_initCStream_usingDict() */
|
||||
/* uses ZSTD_initCStream_usingDict() */
|
||||
+ ZSTD_estimateCDictSize(cParams, dictSize, 0);
|
||||
if (ZSTD_isError(s)) goto _output_error;
|
||||
DISPLAYLEVEL(3, "OK (%u bytes) \n", (U32)s);
|
||||
}
|
||||
|
||||
DISPLAYLEVEL(3, "test%3i : check actual CStream size : ", testNb++);
|
||||
{ size_t const s = ZSTD_sizeof_CStream(zc);
|
||||
if (ZSTD_isError(s)) goto _output_error;
|
||||
DISPLAYLEVEL(3, "OK (%u bytes) \n", (U32)s);
|
||||
{ size_t const s = ZSTD_sizeof_CStream(zc);
|
||||
if (ZSTD_isError(s)) goto _output_error;
|
||||
DISPLAYLEVEL(3, "OK (%u bytes) \n", (U32)s);
|
||||
}
|
||||
|
||||
/* Attempt bad compression parameters */
|
||||
@@ -231,15 +235,18 @@ static int basicUnitTests(U32 seed, double compressibility, ZSTD_customMem custo
|
||||
|
||||
/* skippable frame test */
|
||||
DISPLAYLEVEL(3, "test%3i : decompress skippable frame : ", testNb++);
|
||||
ZSTD_initDStream_usingDict(zd, CNBuffer, dictSize);
|
||||
if (ZSTD_isError( ZSTD_initDStream_usingDict(zd, CNBuffer, dictSize) ))
|
||||
goto _output_error;
|
||||
inBuff.src = compressedBuffer;
|
||||
inBuff.size = cSize;
|
||||
inBuff.pos = 0;
|
||||
outBuff.dst = decodedBuffer;
|
||||
outBuff.size = CNBufferSize;
|
||||
outBuff.pos = 0;
|
||||
{ size_t const r = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
if (r != 0) goto _output_error; }
|
||||
{ size_t const r = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
DISPLAYLEVEL(5, " ( ZSTD_decompressStream => %u ) ", (U32)r);
|
||||
if (r != 0) goto _output_error;
|
||||
}
|
||||
if (outBuff.pos != 0) goto _output_error; /* skippable frame output len is 0 */
|
||||
DISPLAYLEVEL(3, "OK \n");
|
||||
|
||||
@@ -280,7 +287,8 @@ static int basicUnitTests(U32 seed, double compressibility, ZSTD_customMem custo
|
||||
if (gfhError!=0) goto _output_error;
|
||||
DISPLAYLEVEL(5, " (windowSize : %u) ", fhi.windowSize);
|
||||
{ size_t const s = ZSTD_estimateDStreamSize(fhi)
|
||||
+ ZSTD_estimateDDictSize(dictSize); /* uses ZSTD_initDStream_usingDict() */
|
||||
/* uses ZSTD_initDStream_usingDict() */
|
||||
+ ZSTD_estimateDDictSize(dictSize, 0);
|
||||
if (ZSTD_isError(s)) goto _output_error;
|
||||
DISPLAYLEVEL(3, "OK (%u bytes) \n", (U32)s);
|
||||
} }
|
||||
@@ -482,8 +490,8 @@ static int basicUnitTests(U32 seed, double compressibility, ZSTD_customMem custo
|
||||
DISPLAYLEVEL(3, "test%3i : ZSTD_initCStream_usingCDict_advanced with masked dictID : ", testNb++);
|
||||
{ ZSTD_compressionParameters const cParams = ZSTD_getCParams(1, CNBufferSize, dictionary.filled);
|
||||
ZSTD_frameParameters const fParams = { 1 /* contentSize */, 1 /* checksum */, 1 /* noDictID */};
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced(dictionary.start, dictionary.filled, 1 /* byReference */, cParams, customMem);
|
||||
size_t const initError = ZSTD_initCStream_usingCDict_advanced(zc, cdict, CNBufferSize, fParams);
|
||||
ZSTD_CDict* const cdict = ZSTD_createCDict_advanced(dictionary.start, dictionary.filled, 1 /* byReference */, ZSTD_dm_auto, cParams, customMem);
|
||||
size_t const initError = ZSTD_initCStream_usingCDict_advanced(zc, cdict, fParams, CNBufferSize);
|
||||
if (ZSTD_isError(initError)) goto _output_error;
|
||||
cSize = 0;
|
||||
outBuff.dst = compressedBuffer;
|
||||
@@ -494,7 +502,7 @@ static int basicUnitTests(U32 seed, double compressibility, ZSTD_customMem custo
|
||||
inBuff.pos = 0;
|
||||
{ size_t const r = ZSTD_compressStream(zc, &outBuff, &inBuff);
|
||||
if (ZSTD_isError(r)) goto _output_error; }
|
||||
if (inBuff.pos != inBuff.size) goto _output_error; /* entire input should be consumed */
|
||||
if (inBuff.pos != inBuff.size) goto _output_error; /* entire input should be consumed */
|
||||
{ size_t const r = ZSTD_endStream(zc, &outBuff);
|
||||
if (r != 0) goto _output_error; } /* error, or some data not flushed */
|
||||
cSize = outBuff.pos;
|
||||
@@ -643,12 +651,26 @@ static size_t FUZ_randomLength(U32* seed, U32 maxLog)
|
||||
|
||||
#define MIN(a,b) ( (a) < (b) ? (a) : (b) )
|
||||
|
||||
#define CHECK(cond, ...) if (cond) { DISPLAY("Error => "); DISPLAY(__VA_ARGS__); \
|
||||
DISPLAY(" (seed %u, test nb %u) \n", seed, testNb); goto _output_error; }
|
||||
#define CHECK(cond, ...) { \
|
||||
if (cond) { \
|
||||
DISPLAY("Error => "); \
|
||||
DISPLAY(__VA_ARGS__); \
|
||||
DISPLAY(" (seed %u, test nb %u) \n", seed, testNb); \
|
||||
goto _output_error; \
|
||||
} }
|
||||
|
||||
#define CHECK_Z(f) { \
|
||||
size_t const err = f; \
|
||||
if (ZSTD_isError(err)) { \
|
||||
DISPLAY("Error => %s : %s ", \
|
||||
#f, ZSTD_getErrorName(err)); \
|
||||
DISPLAY(" (seed %u, test nb %u) \n", seed, testNb); \
|
||||
goto _output_error; \
|
||||
} }
|
||||
|
||||
static int fuzzerTests(U32 seed, U32 nbTests, unsigned startTest, double compressibility, int bigTests)
|
||||
{
|
||||
static const U32 maxSrcLog = 24;
|
||||
U32 const maxSrcLog = bigTests ? 24 : 22;
|
||||
static const U32 maxSampleLog = 19;
|
||||
size_t const srcBufferSize = (size_t)1<<maxSrcLog;
|
||||
BYTE* cNoiseBuffer[5];
|
||||
@@ -668,247 +690,7 @@ static int fuzzerTests(U32 seed, U32 nbTests, unsigned startTest, double compres
|
||||
const BYTE* dict=NULL; /* can keep same dict on 2 consecutive tests */
|
||||
size_t dictSize = 0;
|
||||
U32 oldTestLog = 0;
|
||||
int const cLevelLimiter = bigTests ? 3 : 2;
|
||||
|
||||
/* allocations */
|
||||
cNoiseBuffer[0] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[1] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[2] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[3] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[4] = (BYTE*)malloc (srcBufferSize);
|
||||
CHECK (!cNoiseBuffer[0] || !cNoiseBuffer[1] || !cNoiseBuffer[2] || !cNoiseBuffer[3] || !cNoiseBuffer[4] ||
|
||||
!copyBuffer || !dstBuffer || !cBuffer || !zc || !zd || !zd_noise ,
|
||||
"Not enough memory, fuzzer tests cancelled");
|
||||
|
||||
/* Create initial samples */
|
||||
RDG_genBuffer(cNoiseBuffer[0], srcBufferSize, 0.00, 0., coreSeed); /* pure noise */
|
||||
RDG_genBuffer(cNoiseBuffer[1], srcBufferSize, 0.05, 0., coreSeed); /* barely compressible */
|
||||
RDG_genBuffer(cNoiseBuffer[2], srcBufferSize, compressibility, 0., coreSeed);
|
||||
RDG_genBuffer(cNoiseBuffer[3], srcBufferSize, 0.95, 0., coreSeed); /* highly compressible */
|
||||
RDG_genBuffer(cNoiseBuffer[4], srcBufferSize, 1.00, 0., coreSeed); /* sparse content */
|
||||
memset(copyBuffer, 0x65, copyBufferSize); /* make copyBuffer considered initialized */
|
||||
ZSTD_initDStream_usingDict(zd, NULL, 0); /* ensure at least one init */
|
||||
|
||||
/* catch up testNb */
|
||||
for (testNb=1; testNb < startTest; testNb++)
|
||||
FUZ_rand(&coreSeed);
|
||||
|
||||
/* test loop */
|
||||
for ( ; (testNb <= nbTests) || (FUZ_GetClockSpan(startClock) < g_clockTime) ; testNb++ ) {
|
||||
U32 lseed;
|
||||
const BYTE* srcBuffer;
|
||||
size_t totalTestSize, totalGenSize, cSize;
|
||||
XXH64_state_t xxhState;
|
||||
U64 crcOrig;
|
||||
U32 resetAllowed = 1;
|
||||
size_t maxTestSize;
|
||||
|
||||
/* init */
|
||||
if (nbTests >= testNb) { DISPLAYUPDATE(2, "\r%6u/%6u ", testNb, nbTests); }
|
||||
else { DISPLAYUPDATE(2, "\r%6u ", testNb); }
|
||||
FUZ_rand(&coreSeed);
|
||||
lseed = coreSeed ^ prime32;
|
||||
|
||||
/* states full reset (deliberately not synchronized) */
|
||||
/* some issues can only happen when reusing states */
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 131) { ZSTD_freeCStream(zc); zc = ZSTD_createCStream(); resetAllowed=0; }
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 132) { ZSTD_freeDStream(zd); zd = ZSTD_createDStream(); ZSTD_initDStream_usingDict(zd, NULL, 0); /* ensure at least one init */ }
|
||||
|
||||
/* srcBuffer selection [0-4] */
|
||||
{ U32 buffNb = FUZ_rand(&lseed) & 0x7F;
|
||||
if (buffNb & 7) buffNb=2; /* most common : compressible (P) */
|
||||
else {
|
||||
buffNb >>= 3;
|
||||
if (buffNb & 7) {
|
||||
const U32 tnb[2] = { 1, 3 }; /* barely/highly compressible */
|
||||
buffNb = tnb[buffNb >> 3];
|
||||
} else {
|
||||
const U32 tnb[2] = { 0, 4 }; /* not compressible / sparse */
|
||||
buffNb = tnb[buffNb >> 3];
|
||||
} }
|
||||
srcBuffer = cNoiseBuffer[buffNb];
|
||||
}
|
||||
|
||||
/* compression init */
|
||||
if ((FUZ_rand(&lseed)&1) /* at beginning, to keep same nb of rand */
|
||||
&& oldTestLog /* at least one test happened */ && resetAllowed) {
|
||||
maxTestSize = FUZ_randomLength(&lseed, oldTestLog+2);
|
||||
if (maxTestSize >= srcBufferSize)
|
||||
maxTestSize = srcBufferSize-1;
|
||||
{ U64 const pledgedSrcSize = (FUZ_rand(&lseed) & 3) ? 0 : maxTestSize;
|
||||
size_t const resetError = ZSTD_resetCStream(zc, pledgedSrcSize);
|
||||
CHECK(ZSTD_isError(resetError), "ZSTD_resetCStream error : %s", ZSTD_getErrorName(resetError));
|
||||
}
|
||||
} else {
|
||||
U32 const testLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const dictLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const cLevel = ( FUZ_rand(&lseed) %
|
||||
(ZSTD_maxCLevel() -
|
||||
(MAX(testLog, dictLog) / cLevelLimiter)))
|
||||
+ 1;
|
||||
maxTestSize = FUZ_rLogLength(&lseed, testLog);
|
||||
oldTestLog = testLog;
|
||||
/* random dictionary selection */
|
||||
dictSize = ((FUZ_rand(&lseed)&1)==1) ? FUZ_rLogLength(&lseed, dictLog) : 0;
|
||||
{ size_t const dictStart = FUZ_rand(&lseed) % (srcBufferSize - dictSize);
|
||||
dict = srcBuffer + dictStart;
|
||||
}
|
||||
{ U64 const pledgedSrcSize = (FUZ_rand(&lseed) & 3) ? 0 : maxTestSize;
|
||||
ZSTD_parameters params = ZSTD_getParams(cLevel, pledgedSrcSize, dictSize);
|
||||
params.fParams.checksumFlag = FUZ_rand(&lseed) & 1;
|
||||
params.fParams.noDictIDFlag = FUZ_rand(&lseed) & 1;
|
||||
{ size_t const initError = ZSTD_initCStream_advanced(zc, dict, dictSize, params, pledgedSrcSize);
|
||||
CHECK (ZSTD_isError(initError),"ZSTD_initCStream_advanced error : %s", ZSTD_getErrorName(initError));
|
||||
} } }
|
||||
|
||||
/* multi-segments compression test */
|
||||
XXH64_reset(&xxhState, 0);
|
||||
{ ZSTD_outBuffer outBuff = { cBuffer, cBufferSize, 0 } ;
|
||||
U32 n;
|
||||
for (n=0, cSize=0, totalTestSize=0 ; totalTestSize < maxTestSize ; n++) {
|
||||
/* compress random chunks into randomly sized dst buffers */
|
||||
{ size_t const randomSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const srcSize = MIN (maxTestSize-totalTestSize, randomSrcSize);
|
||||
size_t const srcStart = FUZ_rand(&lseed) % (srcBufferSize - srcSize);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const dstBuffSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
ZSTD_inBuffer inBuff = { srcBuffer+srcStart, srcSize, 0 };
|
||||
outBuff.size = outBuff.pos + dstBuffSize;
|
||||
|
||||
{ size_t const compressionError = ZSTD_compressStream(zc, &outBuff, &inBuff);
|
||||
CHECK (ZSTD_isError(compressionError), "compression error : %s", ZSTD_getErrorName(compressionError)); }
|
||||
|
||||
XXH64_update(&xxhState, srcBuffer+srcStart, inBuff.pos);
|
||||
memcpy(copyBuffer+totalTestSize, srcBuffer+srcStart, inBuff.pos);
|
||||
totalTestSize += inBuff.pos;
|
||||
}
|
||||
|
||||
/* random flush operation, to mess around */
|
||||
if ((FUZ_rand(&lseed) & 15) == 0) {
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
{ size_t const flushError = ZSTD_flushStream(zc, &outBuff);
|
||||
CHECK (ZSTD_isError(flushError), "flush error : %s", ZSTD_getErrorName(flushError));
|
||||
} } }
|
||||
|
||||
/* final frame epilogue */
|
||||
{ size_t remainingToFlush = (size_t)(-1);
|
||||
while (remainingToFlush) {
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
U32 const enoughDstSize = (adjustedDstSize >= remainingToFlush);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
remainingToFlush = ZSTD_endStream(zc, &outBuff);
|
||||
CHECK (ZSTD_isError(remainingToFlush), "flush error : %s", ZSTD_getErrorName(remainingToFlush));
|
||||
CHECK (enoughDstSize && remainingToFlush,
|
||||
"ZSTD_endStream() not fully flushed (%u remaining), but enough space available (%u)",
|
||||
(U32)remainingToFlush, (U32)adjustedDstSize);
|
||||
} }
|
||||
crcOrig = XXH64_digest(&xxhState);
|
||||
cSize = outBuff.pos;
|
||||
}
|
||||
|
||||
/* multi - fragments decompression test */
|
||||
if (!dictSize /* don't reset if dictionary : could be different */ && (FUZ_rand(&lseed) & 1)) {
|
||||
CHECK (ZSTD_isError(ZSTD_resetDStream(zd)), "ZSTD_resetDStream failed");
|
||||
} else {
|
||||
ZSTD_initDStream_usingDict(zd, dict, dictSize);
|
||||
}
|
||||
{ size_t decompressionResult = 1;
|
||||
ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
for (totalGenSize = 0 ; decompressionResult ; ) {
|
||||
size_t const readCSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const dstBuffSize = MIN(dstBufferSize - totalGenSize, randomDstSize);
|
||||
inBuff.size = inBuff.pos + readCSrcSize;
|
||||
outBuff.size = inBuff.pos + dstBuffSize;
|
||||
decompressionResult = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
CHECK (ZSTD_isError(decompressionResult), "decompression error : %s", ZSTD_getErrorName(decompressionResult));
|
||||
}
|
||||
CHECK (decompressionResult != 0, "frame not fully decoded");
|
||||
CHECK (outBuff.pos != totalTestSize, "decompressed data : wrong size")
|
||||
CHECK (inBuff.pos != cSize, "compressed data should be fully read")
|
||||
{ U64 const crcDest = XXH64(dstBuffer, totalTestSize, 0);
|
||||
if (crcDest!=crcOrig) findDiff(copyBuffer, dstBuffer, totalTestSize);
|
||||
CHECK (crcDest!=crcOrig, "decompressed data corrupted");
|
||||
} }
|
||||
|
||||
/*===== noisy/erroneous src decompression test =====*/
|
||||
|
||||
/* add some noise */
|
||||
{ U32 const nbNoiseChunks = (FUZ_rand(&lseed) & 7) + 2;
|
||||
U32 nn; for (nn=0; nn<nbNoiseChunks; nn++) {
|
||||
size_t const randomNoiseSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const noiseSize = MIN((cSize/3) , randomNoiseSize);
|
||||
size_t const noiseStart = FUZ_rand(&lseed) % (srcBufferSize - noiseSize);
|
||||
size_t const cStart = FUZ_rand(&lseed) % (cSize - noiseSize);
|
||||
memcpy(cBuffer+cStart, srcBuffer+noiseStart, noiseSize);
|
||||
} }
|
||||
|
||||
/* try decompression on noisy data */
|
||||
ZSTD_initDStream(zd_noise); /* note : no dictionary */
|
||||
{ ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
while (outBuff.pos < dstBufferSize) {
|
||||
size_t const randomCSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(dstBufferSize - outBuff.pos, randomDstSize);
|
||||
size_t const adjustedCSrcSize = MIN(cSize - inBuff.pos, randomCSrcSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
inBuff.size = inBuff.pos + adjustedCSrcSize;
|
||||
{ size_t const decompressError = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
if (ZSTD_isError(decompressError)) break; /* error correctly detected */
|
||||
/* No forward progress possible */
|
||||
if (outBuff.pos < outBuff.size && inBuff.pos == cSize) break;
|
||||
} } } }
|
||||
DISPLAY("\r%u fuzzer tests completed \n", testNb);
|
||||
|
||||
_cleanup:
|
||||
ZSTD_freeCStream(zc);
|
||||
ZSTD_freeDStream(zd);
|
||||
ZSTD_freeDStream(zd_noise);
|
||||
free(cNoiseBuffer[0]);
|
||||
free(cNoiseBuffer[1]);
|
||||
free(cNoiseBuffer[2]);
|
||||
free(cNoiseBuffer[3]);
|
||||
free(cNoiseBuffer[4]);
|
||||
free(copyBuffer);
|
||||
free(cBuffer);
|
||||
free(dstBuffer);
|
||||
return result;
|
||||
|
||||
_output_error:
|
||||
result = 1;
|
||||
goto _cleanup;
|
||||
}
|
||||
|
||||
|
||||
/* Multi-threading version of fuzzer Tests */
|
||||
static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double compressibility, int bigTests)
|
||||
{
|
||||
static const U32 maxSrcLog = 24;
|
||||
static const U32 maxSampleLog = 19;
|
||||
size_t const srcBufferSize = (size_t)1<<maxSrcLog;
|
||||
BYTE* cNoiseBuffer[5];
|
||||
size_t const copyBufferSize= srcBufferSize + (1<<maxSampleLog);
|
||||
BYTE* const copyBuffer = (BYTE*)malloc (copyBufferSize);
|
||||
size_t const cBufferSize = ZSTD_compressBound(srcBufferSize);
|
||||
BYTE* const cBuffer = (BYTE*)malloc (cBufferSize);
|
||||
size_t const dstBufferSize = srcBufferSize;
|
||||
BYTE* const dstBuffer = (BYTE*)malloc (dstBufferSize);
|
||||
U32 result = 0;
|
||||
U32 testNb = 0;
|
||||
U32 coreSeed = seed;
|
||||
ZSTDMT_CCtx* zc = ZSTDMT_createCCtx(2); /* will be reset sometimes */
|
||||
ZSTD_DStream* zd = ZSTD_createDStream(); /* will be reset sometimes */
|
||||
ZSTD_DStream* const zd_noise = ZSTD_createDStream();
|
||||
clock_t const startClock = clock();
|
||||
const BYTE* dict=NULL; /* can keep same dict on 2 consecutive tests */
|
||||
size_t dictSize = 0;
|
||||
U32 oldTestLog = 0;
|
||||
int const cLevelLimiter = bigTests ? 3 : 2;
|
||||
U32 const cLevelMax = bigTests ? (U32)ZSTD_maxCLevel() : g_cLevelMax_smallTests;
|
||||
|
||||
/* allocations */
|
||||
cNoiseBuffer[0] = (BYTE*)malloc (srcBufferSize);
|
||||
@@ -952,15 +734,262 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
/* states full reset (deliberately not synchronized) */
|
||||
/* some issues can only happen when reusing states */
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 131) {
|
||||
U32 const nbThreads = (FUZ_rand(&lseed) % 6) + 1;
|
||||
DISPLAYLEVEL(5, "Creating new context with %u threads \n", nbThreads);
|
||||
ZSTDMT_freeCCtx(zc);
|
||||
zc = ZSTDMT_createCCtx(nbThreads);
|
||||
ZSTD_freeCStream(zc);
|
||||
zc = ZSTD_createCStream();
|
||||
CHECK(zc==NULL, "ZSTD_createCStream : allocation error");
|
||||
resetAllowed=0;
|
||||
}
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 132) {
|
||||
ZSTD_freeDStream(zd);
|
||||
zd = ZSTD_createDStream();
|
||||
CHECK(zd==NULL, "ZSTD_createDStream : allocation error");
|
||||
CHECK_Z( ZSTD_initDStream_usingDict(zd, NULL, 0) ); /* ensure at least one init */
|
||||
}
|
||||
|
||||
/* srcBuffer selection [0-4] */
|
||||
{ U32 buffNb = FUZ_rand(&lseed) & 0x7F;
|
||||
if (buffNb & 7) buffNb=2; /* most common : compressible (P) */
|
||||
else {
|
||||
buffNb >>= 3;
|
||||
if (buffNb & 7) {
|
||||
const U32 tnb[2] = { 1, 3 }; /* barely/highly compressible */
|
||||
buffNb = tnb[buffNb >> 3];
|
||||
} else {
|
||||
const U32 tnb[2] = { 0, 4 }; /* not compressible / sparse */
|
||||
buffNb = tnb[buffNb >> 3];
|
||||
} }
|
||||
srcBuffer = cNoiseBuffer[buffNb];
|
||||
}
|
||||
|
||||
/* compression init */
|
||||
if ((FUZ_rand(&lseed)&1) /* at beginning, to keep same nb of rand */
|
||||
&& oldTestLog /* at least one test happened */ && resetAllowed) {
|
||||
maxTestSize = FUZ_randomLength(&lseed, oldTestLog+2);
|
||||
if (maxTestSize >= srcBufferSize)
|
||||
maxTestSize = srcBufferSize-1;
|
||||
{ U64 const pledgedSrcSize = (FUZ_rand(&lseed) & 3) ? 0 : maxTestSize;
|
||||
CHECK_Z( ZSTD_resetCStream(zc, pledgedSrcSize) );
|
||||
}
|
||||
} else {
|
||||
U32 const testLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const dictLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const cLevelCandidate = ( FUZ_rand(&lseed) %
|
||||
(ZSTD_maxCLevel() -
|
||||
(MAX(testLog, dictLog) / 3)))
|
||||
+ 1;
|
||||
U32 const cLevel = MIN(cLevelCandidate, cLevelMax);
|
||||
maxTestSize = FUZ_rLogLength(&lseed, testLog);
|
||||
oldTestLog = testLog;
|
||||
/* random dictionary selection */
|
||||
dictSize = ((FUZ_rand(&lseed)&7)==1) ? FUZ_rLogLength(&lseed, dictLog) : 0;
|
||||
{ size_t const dictStart = FUZ_rand(&lseed) % (srcBufferSize - dictSize);
|
||||
dict = srcBuffer + dictStart;
|
||||
}
|
||||
{ U64 const pledgedSrcSize = (FUZ_rand(&lseed) & 3) ? 0 : maxTestSize;
|
||||
ZSTD_parameters params = ZSTD_getParams(cLevel, pledgedSrcSize, dictSize);
|
||||
params.fParams.checksumFlag = FUZ_rand(&lseed) & 1;
|
||||
params.fParams.noDictIDFlag = FUZ_rand(&lseed) & 1;
|
||||
CHECK_Z ( ZSTD_initCStream_advanced(zc, dict, dictSize, params, pledgedSrcSize) );
|
||||
} }
|
||||
|
||||
/* multi-segments compression test */
|
||||
XXH64_reset(&xxhState, 0);
|
||||
{ ZSTD_outBuffer outBuff = { cBuffer, cBufferSize, 0 } ;
|
||||
U32 n;
|
||||
for (n=0, cSize=0, totalTestSize=0 ; totalTestSize < maxTestSize ; n++) {
|
||||
/* compress random chunks into randomly sized dst buffers */
|
||||
{ size_t const randomSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const srcSize = MIN (maxTestSize-totalTestSize, randomSrcSize);
|
||||
size_t const srcStart = FUZ_rand(&lseed) % (srcBufferSize - srcSize);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const dstBuffSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
ZSTD_inBuffer inBuff = { srcBuffer+srcStart, srcSize, 0 };
|
||||
outBuff.size = outBuff.pos + dstBuffSize;
|
||||
|
||||
CHECK_Z( ZSTD_compressStream(zc, &outBuff, &inBuff) );
|
||||
|
||||
XXH64_update(&xxhState, srcBuffer+srcStart, inBuff.pos);
|
||||
memcpy(copyBuffer+totalTestSize, srcBuffer+srcStart, inBuff.pos);
|
||||
totalTestSize += inBuff.pos;
|
||||
}
|
||||
|
||||
/* random flush operation, to mess around */
|
||||
if ((FUZ_rand(&lseed) & 15) == 0) {
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
CHECK_Z( ZSTD_flushStream(zc, &outBuff) );
|
||||
} }
|
||||
|
||||
/* final frame epilogue */
|
||||
{ size_t remainingToFlush = (size_t)(-1);
|
||||
while (remainingToFlush) {
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
remainingToFlush = ZSTD_endStream(zc, &outBuff);
|
||||
CHECK (ZSTD_isError(remainingToFlush), "end error : %s", ZSTD_getErrorName(remainingToFlush));
|
||||
} }
|
||||
crcOrig = XXH64_digest(&xxhState);
|
||||
cSize = outBuff.pos;
|
||||
}
|
||||
|
||||
/* multi - fragments decompression test */
|
||||
if (!dictSize /* don't reset if dictionary : could be different */ && (FUZ_rand(&lseed) & 1)) {
|
||||
CHECK_Z ( ZSTD_resetDStream(zd) );
|
||||
} else {
|
||||
CHECK_Z ( ZSTD_initDStream_usingDict(zd, dict, dictSize) );
|
||||
}
|
||||
{ size_t decompressionResult = 1;
|
||||
ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
for (totalGenSize = 0 ; decompressionResult ; ) {
|
||||
size_t const readCSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const dstBuffSize = MIN(dstBufferSize - totalGenSize, randomDstSize);
|
||||
inBuff.size = inBuff.pos + readCSrcSize;
|
||||
outBuff.size = inBuff.pos + dstBuffSize;
|
||||
decompressionResult = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
CHECK (ZSTD_isError(decompressionResult), "decompression error : %s", ZSTD_getErrorName(decompressionResult));
|
||||
}
|
||||
CHECK (decompressionResult != 0, "frame not fully decoded");
|
||||
CHECK (outBuff.pos != totalTestSize, "decompressed data : wrong size")
|
||||
CHECK (inBuff.pos != cSize, "compressed data should be fully read")
|
||||
{ U64 const crcDest = XXH64(dstBuffer, totalTestSize, 0);
|
||||
if (crcDest!=crcOrig) findDiff(copyBuffer, dstBuffer, totalTestSize);
|
||||
CHECK (crcDest!=crcOrig, "decompressed data corrupted");
|
||||
} }
|
||||
|
||||
/*===== noisy/erroneous src decompression test =====*/
|
||||
|
||||
/* add some noise */
|
||||
{ U32 const nbNoiseChunks = (FUZ_rand(&lseed) & 7) + 2;
|
||||
U32 nn; for (nn=0; nn<nbNoiseChunks; nn++) {
|
||||
size_t const randomNoiseSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const noiseSize = MIN((cSize/3) , randomNoiseSize);
|
||||
size_t const noiseStart = FUZ_rand(&lseed) % (srcBufferSize - noiseSize);
|
||||
size_t const cStart = FUZ_rand(&lseed) % (cSize - noiseSize);
|
||||
memcpy(cBuffer+cStart, srcBuffer+noiseStart, noiseSize);
|
||||
} }
|
||||
|
||||
/* try decompression on noisy data */
|
||||
CHECK_Z( ZSTD_initDStream(zd_noise) ); /* note : no dictionary */
|
||||
{ ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
while (outBuff.pos < dstBufferSize) {
|
||||
size_t const randomCSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(dstBufferSize - outBuff.pos, randomDstSize);
|
||||
size_t const adjustedCSrcSize = MIN(cSize - inBuff.pos, randomCSrcSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
inBuff.size = inBuff.pos + adjustedCSrcSize;
|
||||
{ size_t const decompressError = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
if (ZSTD_isError(decompressError)) break; /* error correctly detected */
|
||||
/* No forward progress possible */
|
||||
if (outBuff.pos < outBuff.size && inBuff.pos == cSize) break;
|
||||
} } } }
|
||||
DISPLAY("\r%u fuzzer tests completed \n", testNb);
|
||||
|
||||
_cleanup:
|
||||
ZSTD_freeCStream(zc);
|
||||
ZSTD_freeDStream(zd);
|
||||
ZSTD_freeDStream(zd_noise);
|
||||
free(cNoiseBuffer[0]);
|
||||
free(cNoiseBuffer[1]);
|
||||
free(cNoiseBuffer[2]);
|
||||
free(cNoiseBuffer[3]);
|
||||
free(cNoiseBuffer[4]);
|
||||
free(copyBuffer);
|
||||
free(cBuffer);
|
||||
free(dstBuffer);
|
||||
return result;
|
||||
|
||||
_output_error:
|
||||
result = 1;
|
||||
goto _cleanup;
|
||||
}
|
||||
|
||||
|
||||
/* Multi-threading version of fuzzer Tests */
|
||||
static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double compressibility, int bigTests)
|
||||
{
|
||||
const U32 maxSrcLog = bigTests ? 24 : 22;
|
||||
static const U32 maxSampleLog = 19;
|
||||
size_t const srcBufferSize = (size_t)1<<maxSrcLog;
|
||||
BYTE* cNoiseBuffer[5];
|
||||
size_t const copyBufferSize= srcBufferSize + (1<<maxSampleLog);
|
||||
BYTE* const copyBuffer = (BYTE*)malloc (copyBufferSize);
|
||||
size_t const cBufferSize = ZSTD_compressBound(srcBufferSize);
|
||||
BYTE* const cBuffer = (BYTE*)malloc (cBufferSize);
|
||||
size_t const dstBufferSize = srcBufferSize;
|
||||
BYTE* const dstBuffer = (BYTE*)malloc (dstBufferSize);
|
||||
U32 result = 0;
|
||||
U32 testNb = 0;
|
||||
U32 coreSeed = seed;
|
||||
ZSTDMT_CCtx* zc = ZSTDMT_createCCtx(2); /* will be reset sometimes */
|
||||
ZSTD_DStream* zd = ZSTD_createDStream(); /* will be reset sometimes */
|
||||
ZSTD_DStream* const zd_noise = ZSTD_createDStream();
|
||||
clock_t const startClock = clock();
|
||||
const BYTE* dict=NULL; /* can keep same dict on 2 consecutive tests */
|
||||
size_t dictSize = 0;
|
||||
U32 oldTestLog = 0;
|
||||
U32 const cLevelMax = bigTests ? (U32)ZSTD_maxCLevel() : g_cLevelMax_smallTests;
|
||||
U32 const nbThreadsMax = bigTests ? 5 : 2;
|
||||
|
||||
/* allocations */
|
||||
cNoiseBuffer[0] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[1] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[2] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[3] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[4] = (BYTE*)malloc (srcBufferSize);
|
||||
CHECK (!cNoiseBuffer[0] || !cNoiseBuffer[1] || !cNoiseBuffer[2] || !cNoiseBuffer[3] || !cNoiseBuffer[4] ||
|
||||
!copyBuffer || !dstBuffer || !cBuffer || !zc || !zd || !zd_noise ,
|
||||
"Not enough memory, fuzzer tests cancelled");
|
||||
|
||||
/* Create initial samples */
|
||||
RDG_genBuffer(cNoiseBuffer[0], srcBufferSize, 0.00, 0., coreSeed); /* pure noise */
|
||||
RDG_genBuffer(cNoiseBuffer[1], srcBufferSize, 0.05, 0., coreSeed); /* barely compressible */
|
||||
RDG_genBuffer(cNoiseBuffer[2], srcBufferSize, compressibility, 0., coreSeed);
|
||||
RDG_genBuffer(cNoiseBuffer[3], srcBufferSize, 0.95, 0., coreSeed); /* highly compressible */
|
||||
RDG_genBuffer(cNoiseBuffer[4], srcBufferSize, 1.00, 0., coreSeed); /* sparse content */
|
||||
memset(copyBuffer, 0x65, copyBufferSize); /* make copyBuffer considered initialized */
|
||||
ZSTD_initDStream_usingDict(zd, NULL, 0); /* ensure at least one init */
|
||||
|
||||
/* catch up testNb */
|
||||
for (testNb=1; testNb < startTest; testNb++)
|
||||
FUZ_rand(&coreSeed);
|
||||
|
||||
/* test loop */
|
||||
for ( ; (testNb <= nbTests) || (FUZ_GetClockSpan(startClock) < g_clockTime) ; testNb++ ) {
|
||||
U32 lseed;
|
||||
const BYTE* srcBuffer;
|
||||
size_t totalTestSize, totalGenSize, cSize;
|
||||
XXH64_state_t xxhState;
|
||||
U64 crcOrig;
|
||||
U32 resetAllowed = 1;
|
||||
size_t maxTestSize;
|
||||
|
||||
/* init */
|
||||
if (nbTests >= testNb) { DISPLAYUPDATE(2, "\r%6u/%6u ", testNb, nbTests); }
|
||||
else { DISPLAYUPDATE(2, "\r%6u ", testNb); }
|
||||
FUZ_rand(&coreSeed);
|
||||
lseed = coreSeed ^ prime32;
|
||||
|
||||
/* states full reset (deliberately not synchronized) */
|
||||
/* some issues can only happen when reusing states */
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 131) {
|
||||
U32 const nbThreadsCandidate = (FUZ_rand(&lseed) % 6) + 1;
|
||||
U32 const nbThreads = MIN(nbThreadsCandidate, nbThreadsMax);
|
||||
DISPLAYLEVEL(5, "Creating new context with %u threads \n", nbThreads);
|
||||
ZSTDMT_freeCCtx(zc);
|
||||
zc = ZSTDMT_createCCtx(nbThreads);
|
||||
CHECK(zc==NULL, "ZSTDMT_createCCtx allocation error")
|
||||
resetAllowed=0;
|
||||
}
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 132) {
|
||||
ZSTD_freeDStream(zd);
|
||||
zd = ZSTD_createDStream();
|
||||
CHECK(zd==NULL, "ZSTDMT_createCCtx allocation error")
|
||||
ZSTD_initDStream_usingDict(zd, NULL, 0); /* ensure at least one init */
|
||||
}
|
||||
|
||||
@@ -985,16 +1014,16 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
maxTestSize = FUZ_randomLength(&lseed, oldTestLog+2);
|
||||
if (maxTestSize >= srcBufferSize) maxTestSize = srcBufferSize-1;
|
||||
{ int const compressionLevel = (FUZ_rand(&lseed) % 5) + 1;
|
||||
size_t const resetError = ZSTDMT_initCStream(zc, compressionLevel);
|
||||
CHECK(ZSTD_isError(resetError), "ZSTDMT_initCStream error : %s", ZSTD_getErrorName(resetError));
|
||||
CHECK_Z( ZSTDMT_initCStream(zc, compressionLevel) );
|
||||
}
|
||||
} else {
|
||||
U32 const testLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const dictLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const cLevel = (FUZ_rand(&lseed) %
|
||||
(ZSTD_maxCLevel() -
|
||||
(MAX(testLog, dictLog) / cLevelLimiter))) +
|
||||
U32 const cLevelCandidate = (FUZ_rand(&lseed) %
|
||||
(ZSTD_maxCLevel() -
|
||||
(MAX(testLog, dictLog) / 3))) +
|
||||
1;
|
||||
U32 const cLevel = MIN(cLevelCandidate, cLevelMax);
|
||||
maxTestSize = FUZ_rLogLength(&lseed, testLog);
|
||||
oldTestLog = testLog;
|
||||
/* random dictionary selection */
|
||||
@@ -1010,10 +1039,9 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
params.fParams.noDictIDFlag = FUZ_rand(&lseed) & 1;
|
||||
params.fParams.contentSizeFlag = pledgedSrcSize>0;
|
||||
DISPLAYLEVEL(5, "checksumFlag : %u \n", params.fParams.checksumFlag);
|
||||
{ size_t const initError = ZSTDMT_initCStream_advanced(zc, dict, dictSize, params, pledgedSrcSize);
|
||||
CHECK (ZSTD_isError(initError),"ZSTDMT_initCStream_advanced error : %s", ZSTD_getErrorName(initError)); }
|
||||
ZSTDMT_setMTCtxParameter(zc, ZSTDMT_p_overlapSectionLog, FUZ_rand(&lseed) % 12);
|
||||
ZSTDMT_setMTCtxParameter(zc, ZSTDMT_p_sectionSize, FUZ_rand(&lseed) % (2*maxTestSize+1));
|
||||
CHECK_Z( ZSTDMT_initCStream_advanced(zc, dict, dictSize, params, pledgedSrcSize) );
|
||||
CHECK_Z( ZSTDMT_setMTCtxParameter(zc, ZSTDMT_p_overlapSectionLog, FUZ_rand(&lseed) % 12) );
|
||||
CHECK_Z( ZSTDMT_setMTCtxParameter(zc, ZSTDMT_p_sectionSize, FUZ_rand(&lseed) % (2*maxTestSize+1)) );
|
||||
} }
|
||||
|
||||
/* multi-segments compression test */
|
||||
@@ -1031,8 +1059,7 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
outBuff.size = outBuff.pos + dstBuffSize;
|
||||
|
||||
DISPLAYLEVEL(5, "Sending %u bytes to compress \n", (U32)srcSize);
|
||||
{ size_t const compressionError = ZSTDMT_compressStream(zc, &outBuff, &inBuff);
|
||||
CHECK (ZSTD_isError(compressionError), "compression error : %s", ZSTD_getErrorName(compressionError)); }
|
||||
CHECK_Z( ZSTDMT_compressStream(zc, &outBuff, &inBuff) );
|
||||
DISPLAYLEVEL(5, "%u bytes read by ZSTDMT_compressStream \n", (U32)inBuff.pos);
|
||||
|
||||
XXH64_update(&xxhState, srcBuffer+srcStart, inBuff.pos);
|
||||
@@ -1046,9 +1073,8 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
size_t const adjustedDstSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
DISPLAYLEVEL(5, "Flushing into dst buffer of size %u \n", (U32)adjustedDstSize);
|
||||
{ size_t const flushError = ZSTDMT_flushStream(zc, &outBuff);
|
||||
CHECK (ZSTD_isError(flushError), "ZSTDMT_flushStream error : %s", ZSTD_getErrorName(flushError));
|
||||
} } }
|
||||
CHECK_Z( ZSTDMT_flushStream(zc, &outBuff) );
|
||||
} }
|
||||
|
||||
/* final frame epilogue */
|
||||
{ size_t remainingToFlush = (size_t)(-1);
|
||||
@@ -1068,9 +1094,9 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
|
||||
/* multi - fragments decompression test */
|
||||
if (!dictSize /* don't reset if dictionary : could be different */ && (FUZ_rand(&lseed) & 1)) {
|
||||
CHECK (ZSTD_isError(ZSTD_resetDStream(zd)), "ZSTD_resetDStream failed");
|
||||
CHECK_Z( ZSTD_resetDStream(zd) );
|
||||
} else {
|
||||
ZSTD_initDStream_usingDict(zd, dict, dictSize);
|
||||
CHECK_Z( ZSTD_initDStream_usingDict(zd, dict, dictSize) );
|
||||
}
|
||||
{ size_t decompressionResult = 1;
|
||||
ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
@@ -1106,7 +1132,7 @@ static int fuzzerTests_MT(U32 seed, U32 nbTests, unsigned startTest, double comp
|
||||
} }
|
||||
|
||||
/* try decompression on noisy data */
|
||||
ZSTD_initDStream(zd_noise); /* note : no dictionary */
|
||||
CHECK_Z( ZSTD_initDStream(zd_noise) ); /* note : no dictionary */
|
||||
{ ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
while (outBuff.pos < dstBufferSize) {
|
||||
@@ -1143,6 +1169,292 @@ _output_error:
|
||||
}
|
||||
|
||||
|
||||
/* Tests for ZSTD_compress_generic() API */
|
||||
static int fuzzerTests_newAPI(U32 seed, U32 nbTests, unsigned startTest, double compressibility, int bigTests)
|
||||
{
|
||||
U32 const maxSrcLog = bigTests ? 24 : 22;
|
||||
static const U32 maxSampleLog = 19;
|
||||
size_t const srcBufferSize = (size_t)1<<maxSrcLog;
|
||||
BYTE* cNoiseBuffer[5];
|
||||
size_t const copyBufferSize= srcBufferSize + (1<<maxSampleLog);
|
||||
BYTE* const copyBuffer = (BYTE*)malloc (copyBufferSize);
|
||||
size_t const cBufferSize = ZSTD_compressBound(srcBufferSize);
|
||||
BYTE* const cBuffer = (BYTE*)malloc (cBufferSize);
|
||||
size_t const dstBufferSize = srcBufferSize;
|
||||
BYTE* const dstBuffer = (BYTE*)malloc (dstBufferSize);
|
||||
U32 result = 0;
|
||||
U32 testNb = 0;
|
||||
U32 coreSeed = seed;
|
||||
ZSTD_CCtx* zc = ZSTD_createCCtx(); /* will be reset sometimes */
|
||||
ZSTD_DStream* zd = ZSTD_createDStream(); /* will be reset sometimes */
|
||||
ZSTD_DStream* const zd_noise = ZSTD_createDStream();
|
||||
clock_t const startClock = clock();
|
||||
const BYTE* dict = NULL; /* can keep same dict on 2 consecutive tests */
|
||||
size_t dictSize = 0;
|
||||
U32 oldTestLog = 0;
|
||||
U32 const cLevelMax = bigTests ? (U32)ZSTD_maxCLevel() : g_cLevelMax_smallTests;
|
||||
U32 const nbThreadsMax = bigTests ? 5 : 1;
|
||||
|
||||
/* allocations */
|
||||
cNoiseBuffer[0] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[1] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[2] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[3] = (BYTE*)malloc (srcBufferSize);
|
||||
cNoiseBuffer[4] = (BYTE*)malloc (srcBufferSize);
|
||||
CHECK (!cNoiseBuffer[0] || !cNoiseBuffer[1] || !cNoiseBuffer[2] || !cNoiseBuffer[3] || !cNoiseBuffer[4] ||
|
||||
!copyBuffer || !dstBuffer || !cBuffer || !zc || !zd || !zd_noise ,
|
||||
"Not enough memory, fuzzer tests cancelled");
|
||||
|
||||
/* Create initial samples */
|
||||
RDG_genBuffer(cNoiseBuffer[0], srcBufferSize, 0.00, 0., coreSeed); /* pure noise */
|
||||
RDG_genBuffer(cNoiseBuffer[1], srcBufferSize, 0.05, 0., coreSeed); /* barely compressible */
|
||||
RDG_genBuffer(cNoiseBuffer[2], srcBufferSize, compressibility, 0., coreSeed);
|
||||
RDG_genBuffer(cNoiseBuffer[3], srcBufferSize, 0.95, 0., coreSeed); /* highly compressible */
|
||||
RDG_genBuffer(cNoiseBuffer[4], srcBufferSize, 1.00, 0., coreSeed); /* sparse content */
|
||||
memset(copyBuffer, 0x65, copyBufferSize); /* make copyBuffer considered initialized */
|
||||
CHECK_Z( ZSTD_initDStream_usingDict(zd, NULL, 0) ); /* ensure at least one init */
|
||||
|
||||
/* catch up testNb */
|
||||
for (testNb=1; testNb < startTest; testNb++)
|
||||
FUZ_rand(&coreSeed);
|
||||
|
||||
/* test loop */
|
||||
for ( ; (testNb <= nbTests) || (FUZ_GetClockSpan(startClock) < g_clockTime) ; testNb++ ) {
|
||||
U32 lseed;
|
||||
const BYTE* srcBuffer;
|
||||
size_t totalTestSize, totalGenSize, cSize;
|
||||
XXH64_state_t xxhState;
|
||||
U64 crcOrig;
|
||||
U32 resetAllowed = 1;
|
||||
size_t maxTestSize;
|
||||
|
||||
/* init */
|
||||
if (nbTests >= testNb) { DISPLAYUPDATE(2, "\r%6u/%6u ", testNb, nbTests); }
|
||||
else { DISPLAYUPDATE(2, "\r%6u ", testNb); }
|
||||
FUZ_rand(&coreSeed);
|
||||
lseed = coreSeed ^ prime32;
|
||||
|
||||
/* states full reset (deliberately not synchronized) */
|
||||
/* some issues can only happen when reusing states */
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 131) {
|
||||
DISPLAYLEVEL(5, "Creating new context \n");
|
||||
ZSTD_freeCCtx(zc);
|
||||
zc = ZSTD_createCCtx();
|
||||
CHECK(zc==NULL, "ZSTD_createCCtx allocation error");
|
||||
resetAllowed=0;
|
||||
}
|
||||
if ((FUZ_rand(&lseed) & 0xFF) == 132) {
|
||||
ZSTD_freeDStream(zd);
|
||||
zd = ZSTD_createDStream();
|
||||
CHECK(zd==NULL, "ZSTD_createDStream allocation error");
|
||||
ZSTD_initDStream_usingDict(zd, NULL, 0); /* ensure at least one init */
|
||||
}
|
||||
|
||||
/* srcBuffer selection [0-4] */
|
||||
{ U32 buffNb = FUZ_rand(&lseed) & 0x7F;
|
||||
if (buffNb & 7) buffNb=2; /* most common : compressible (P) */
|
||||
else {
|
||||
buffNb >>= 3;
|
||||
if (buffNb & 7) {
|
||||
const U32 tnb[2] = { 1, 3 }; /* barely/highly compressible */
|
||||
buffNb = tnb[buffNb >> 3];
|
||||
} else {
|
||||
const U32 tnb[2] = { 0, 4 }; /* not compressible / sparse */
|
||||
buffNb = tnb[buffNb >> 3];
|
||||
} }
|
||||
srcBuffer = cNoiseBuffer[buffNb];
|
||||
}
|
||||
|
||||
/* compression init */
|
||||
if ((FUZ_rand(&lseed)&1) /* at beginning, to keep same nb of rand */
|
||||
&& oldTestLog /* at least one test happened */ && resetAllowed) {
|
||||
maxTestSize = FUZ_randomLength(&lseed, oldTestLog+2);
|
||||
if (maxTestSize >= srcBufferSize) maxTestSize = srcBufferSize-1;
|
||||
CHECK_Z( ZSTD_CCtx_loadDictionary(zc, NULL, 0) );
|
||||
{ int const compressionLevel = (FUZ_rand(&lseed) % 5) + 1;
|
||||
CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_compressionLevel, compressionLevel) );
|
||||
}
|
||||
} else {
|
||||
U32 const testLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const dictLog = FUZ_rand(&lseed) % maxSrcLog;
|
||||
U32 const cLevelCandidate = (FUZ_rand(&lseed) %
|
||||
(ZSTD_maxCLevel() -
|
||||
(MAX(testLog, dictLog) / 3))) +
|
||||
1;
|
||||
U32 const cLevel = MIN(cLevelCandidate, cLevelMax);
|
||||
maxTestSize = FUZ_rLogLength(&lseed, testLog);
|
||||
oldTestLog = testLog;
|
||||
/* random dictionary selection */
|
||||
dictSize = ((FUZ_rand(&lseed)&63)==1) ? FUZ_rLogLength(&lseed, dictLog) : 0;
|
||||
{ size_t const dictStart = FUZ_rand(&lseed) % (srcBufferSize - dictSize);
|
||||
dict = srcBuffer + dictStart;
|
||||
if (!dictSize) dict=NULL;
|
||||
}
|
||||
{ U64 const pledgedSrcSize = (FUZ_rand(&lseed) & 3) ? ZSTD_CONTENTSIZE_UNKNOWN : maxTestSize;
|
||||
ZSTD_compressionParameters cParams = ZSTD_getCParams(cLevel, pledgedSrcSize, dictSize);
|
||||
|
||||
/* mess with compression parameters */
|
||||
CHECK_Z( ZSTD_CCtx_loadDictionary(zc, NULL, 0) ); /* always cancel previous dict, to make user it's possible to pass compression parameters */
|
||||
cParams.windowLog += (FUZ_rand(&lseed) & 3) - 1;
|
||||
cParams.hashLog += (FUZ_rand(&lseed) & 3) - 1;
|
||||
cParams.chainLog += (FUZ_rand(&lseed) & 3) - 1;
|
||||
cParams.searchLog += (FUZ_rand(&lseed) & 3) - 1;
|
||||
cParams.searchLength += (FUZ_rand(&lseed) & 3) - 1;
|
||||
cParams.targetLength = (U32)(cParams.targetLength * (0.5 + ((double)(FUZ_rand(&lseed) & 127) / 128)));
|
||||
cParams = ZSTD_adjustCParams(cParams, 0, 0);
|
||||
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_windowLog, cParams.windowLog) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_hashLog, cParams.hashLog) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_chainLog, cParams.chainLog) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_searchLog, cParams.searchLog) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_minMatch, cParams.searchLength) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_targetLength, cParams.targetLength) );
|
||||
|
||||
/* unconditionally set, to be sync with decoder */
|
||||
CHECK_Z( ZSTD_CCtx_loadDictionary(zc, dict, dictSize) );
|
||||
|
||||
if (dict && dictSize) {
|
||||
/* test that compression parameters are correctly rejected after setting a dictionary */
|
||||
size_t const setError = ZSTD_CCtx_setParameter(zc, ZSTD_p_windowLog, cParams.windowLog-1) ;
|
||||
CHECK(!ZSTD_isError(setError), "ZSTD_CCtx_setParameter should have failed");
|
||||
}
|
||||
|
||||
/* mess with frame parameters */
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_checksumFlag, FUZ_rand(&lseed) & 1) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_dictIDFlag, FUZ_rand(&lseed) & 1) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_contentSizeFlag, FUZ_rand(&lseed) & 1) );
|
||||
if (FUZ_rand(&lseed) & 1) CHECK_Z( ZSTD_CCtx_setPledgedSrcSize(zc, pledgedSrcSize) );
|
||||
DISPLAYLEVEL(5, "pledgedSrcSize : %u \n", (U32)pledgedSrcSize);
|
||||
|
||||
/* multi-threading parameters */
|
||||
{ U32 const nbThreadsCandidate = (FUZ_rand(&lseed) & 4) + 1;
|
||||
U32 const nbThreads = MIN(nbThreadsCandidate, nbThreadsMax);
|
||||
CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_nbThreads, nbThreads) );
|
||||
if (nbThreads > 1) {
|
||||
U32 const jobLog = FUZ_rand(&lseed) % (testLog+1);
|
||||
CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_overlapSizeLog, FUZ_rand(&lseed) % 10) );
|
||||
CHECK_Z( ZSTD_CCtx_setParameter(zc, ZSTD_p_jobSize, (U32)FUZ_rLogLength(&lseed, jobLog)) );
|
||||
} } } }
|
||||
|
||||
/* multi-segments compression test */
|
||||
XXH64_reset(&xxhState, 0);
|
||||
{ ZSTD_outBuffer outBuff = { cBuffer, cBufferSize, 0 } ;
|
||||
U32 n;
|
||||
for (n=0, cSize=0, totalTestSize=0 ; totalTestSize < maxTestSize ; n++) {
|
||||
/* compress random chunks into randomly sized dst buffers */
|
||||
size_t const randomSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const srcSize = MIN(maxTestSize-totalTestSize, randomSrcSize);
|
||||
size_t const srcStart = FUZ_rand(&lseed) % (srcBufferSize - srcSize);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const dstBuffSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
ZSTD_EndDirective const flush = (FUZ_rand(&lseed) & 15) ? ZSTD_e_continue : ZSTD_e_flush;
|
||||
ZSTD_inBuffer inBuff = { srcBuffer+srcStart, srcSize, 0 };
|
||||
outBuff.size = outBuff.pos + dstBuffSize;
|
||||
|
||||
CHECK_Z( ZSTD_compress_generic(zc, &outBuff, &inBuff, flush) );
|
||||
DISPLAYLEVEL(5, "compress consumed %u bytes (total : %u) \n",
|
||||
(U32)inBuff.pos, (U32)(totalTestSize + inBuff.pos));
|
||||
|
||||
XXH64_update(&xxhState, srcBuffer+srcStart, inBuff.pos);
|
||||
memcpy(copyBuffer+totalTestSize, srcBuffer+srcStart, inBuff.pos);
|
||||
totalTestSize += inBuff.pos;
|
||||
}
|
||||
|
||||
/* final frame epilogue */
|
||||
{ size_t remainingToFlush = (size_t)(-1);
|
||||
while (remainingToFlush) {
|
||||
ZSTD_inBuffer inBuff = { NULL, 0, 0 };
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(cBufferSize - cSize, randomDstSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
DISPLAYLEVEL(5, "End-flush into dst buffer of size %u \n", (U32)adjustedDstSize);
|
||||
remainingToFlush = ZSTD_compress_generic(zc, &outBuff, &inBuff, ZSTD_e_end);
|
||||
CHECK(ZSTD_isError(remainingToFlush),
|
||||
"ZSTD_compress_generic w/ ZSTD_e_end error : %s",
|
||||
ZSTD_getErrorName(remainingToFlush) );
|
||||
} }
|
||||
crcOrig = XXH64_digest(&xxhState);
|
||||
cSize = outBuff.pos;
|
||||
DISPLAYLEVEL(5, "Frame completed : %u bytes \n", (U32)cSize);
|
||||
}
|
||||
|
||||
/* multi - fragments decompression test */
|
||||
if (!dictSize /* don't reset if dictionary : could be different */ && (FUZ_rand(&lseed) & 1)) {
|
||||
CHECK_Z( ZSTD_resetDStream(zd) );
|
||||
} else {
|
||||
CHECK_Z( ZSTD_initDStream_usingDict(zd, dict, dictSize) );
|
||||
}
|
||||
{ size_t decompressionResult = 1;
|
||||
ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
for (totalGenSize = 0 ; decompressionResult ; ) {
|
||||
size_t const readCSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const dstBuffSize = MIN(dstBufferSize - totalGenSize, randomDstSize);
|
||||
inBuff.size = inBuff.pos + readCSrcSize;
|
||||
outBuff.size = inBuff.pos + dstBuffSize;
|
||||
DISPLAYLEVEL(5, "ZSTD_decompressStream input %u bytes \n", (U32)readCSrcSize);
|
||||
decompressionResult = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
CHECK (ZSTD_isError(decompressionResult), "decompression error : %s", ZSTD_getErrorName(decompressionResult));
|
||||
DISPLAYLEVEL(5, "inBuff.pos = %u \n", (U32)readCSrcSize);
|
||||
}
|
||||
CHECK (outBuff.pos != totalTestSize, "decompressed data : wrong size (%u != %u)", (U32)outBuff.pos, (U32)totalTestSize);
|
||||
CHECK (inBuff.pos != cSize, "compressed data should be fully read (%u != %u)", (U32)inBuff.pos, (U32)cSize);
|
||||
{ U64 const crcDest = XXH64(dstBuffer, totalTestSize, 0);
|
||||
if (crcDest!=crcOrig) findDiff(copyBuffer, dstBuffer, totalTestSize);
|
||||
CHECK (crcDest!=crcOrig, "decompressed data corrupted");
|
||||
} }
|
||||
|
||||
/*===== noisy/erroneous src decompression test =====*/
|
||||
|
||||
/* add some noise */
|
||||
{ U32 const nbNoiseChunks = (FUZ_rand(&lseed) & 7) + 2;
|
||||
U32 nn; for (nn=0; nn<nbNoiseChunks; nn++) {
|
||||
size_t const randomNoiseSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const noiseSize = MIN((cSize/3) , randomNoiseSize);
|
||||
size_t const noiseStart = FUZ_rand(&lseed) % (srcBufferSize - noiseSize);
|
||||
size_t const cStart = FUZ_rand(&lseed) % (cSize - noiseSize);
|
||||
memcpy(cBuffer+cStart, srcBuffer+noiseStart, noiseSize);
|
||||
} }
|
||||
|
||||
/* try decompression on noisy data */
|
||||
CHECK_Z( ZSTD_initDStream(zd_noise) ); /* note : no dictionary */
|
||||
{ ZSTD_inBuffer inBuff = { cBuffer, cSize, 0 };
|
||||
ZSTD_outBuffer outBuff= { dstBuffer, dstBufferSize, 0 };
|
||||
while (outBuff.pos < dstBufferSize) {
|
||||
size_t const randomCSrcSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const randomDstSize = FUZ_randomLength(&lseed, maxSampleLog);
|
||||
size_t const adjustedDstSize = MIN(dstBufferSize - outBuff.pos, randomDstSize);
|
||||
size_t const adjustedCSrcSize = MIN(cSize - inBuff.pos, randomCSrcSize);
|
||||
outBuff.size = outBuff.pos + adjustedDstSize;
|
||||
inBuff.size = inBuff.pos + adjustedCSrcSize;
|
||||
{ size_t const decompressError = ZSTD_decompressStream(zd, &outBuff, &inBuff);
|
||||
if (ZSTD_isError(decompressError)) break; /* error correctly detected */
|
||||
/* Good so far, but no more progress possible */
|
||||
if (outBuff.pos < outBuff.size && inBuff.pos == cSize) break;
|
||||
} } } }
|
||||
DISPLAY("\r%u fuzzer tests completed \n", testNb-1);
|
||||
|
||||
_cleanup:
|
||||
ZSTD_freeCCtx(zc);
|
||||
ZSTD_freeDStream(zd);
|
||||
ZSTD_freeDStream(zd_noise);
|
||||
free(cNoiseBuffer[0]);
|
||||
free(cNoiseBuffer[1]);
|
||||
free(cNoiseBuffer[2]);
|
||||
free(cNoiseBuffer[3]);
|
||||
free(cNoiseBuffer[4]);
|
||||
free(copyBuffer);
|
||||
free(cBuffer);
|
||||
free(dstBuffer);
|
||||
return result;
|
||||
|
||||
_output_error:
|
||||
result = 1;
|
||||
goto _cleanup;
|
||||
}
|
||||
|
||||
|
||||
/*-*******************************************************
|
||||
* Command line
|
||||
*********************************************************/
|
||||
@@ -1162,6 +1474,7 @@ int FUZ_usage(const char* programName)
|
||||
return 0;
|
||||
}
|
||||
|
||||
typedef enum { simple_api, mt_api, advanced_api } e_api;
|
||||
|
||||
int main(int argc, const char** argv)
|
||||
{
|
||||
@@ -1173,11 +1486,11 @@ int main(int argc, const char** argv)
|
||||
int proba = FUZ_COMPRESSIBILITY_DEFAULT;
|
||||
int result=0;
|
||||
int mainPause = 0;
|
||||
int mtOnly = 0;
|
||||
int bigTests = 1;
|
||||
e_api selected_api = simple_api;
|
||||
const char* const programName = argv[0];
|
||||
ZSTD_customMem const customMem = { allocFunction, freeFunction, NULL };
|
||||
ZSTD_customMem const customNULL = { NULL, NULL, NULL };
|
||||
ZSTD_customMem const customNULL = ZSTD_defaultCMem;
|
||||
|
||||
/* Check command line */
|
||||
for(argNb=1; argNb<argc; argNb++) {
|
||||
@@ -1187,7 +1500,8 @@ int main(int argc, const char** argv)
|
||||
/* Parsing commands. Aggregated commands are allowed */
|
||||
if (argument[0]=='-') {
|
||||
|
||||
if (!strcmp(argument, "--mt")) { mtOnly=1; continue; }
|
||||
if (!strcmp(argument, "--mt")) { selected_api=mt_api; continue; }
|
||||
if (!strcmp(argument, "--newapi")) { selected_api=advanced_api; continue; }
|
||||
if (!strcmp(argument, "--no-big-tests")) { bigTests=0; continue; }
|
||||
|
||||
argument++;
|
||||
@@ -1294,8 +1608,22 @@ int main(int argc, const char** argv)
|
||||
result = basicUnitTests(0, ((double)proba) / 100, customMem); /* use custom memory allocation functions */
|
||||
} }
|
||||
|
||||
if (!result && !mtOnly) result = fuzzerTests(seed, nbTests, testNb, ((double)proba) / 100, bigTests);
|
||||
if (!result) result = fuzzerTests_MT(seed, nbTests, testNb, ((double)proba) / 100, bigTests);
|
||||
if (!result) {
|
||||
switch(selected_api)
|
||||
{
|
||||
case simple_api :
|
||||
result = fuzzerTests(seed, nbTests, testNb, ((double)proba) / 100, bigTests);
|
||||
break;
|
||||
case mt_api :
|
||||
result = fuzzerTests_MT(seed, nbTests, testNb, ((double)proba) / 100, bigTests);
|
||||
break;
|
||||
case advanced_api :
|
||||
result = fuzzerTests_newAPI(seed, nbTests, testNb, ((double)proba) / 100, bigTests);
|
||||
break;
|
||||
default :
|
||||
assert(0); /* impossible */
|
||||
}
|
||||
}
|
||||
|
||||
if (mainPause) {
|
||||
int unused;
|
||||
|
||||
Reference in New Issue
Block a user