Add (Possibly Empty) Info Strings to All Variadic Error Handling Macro Invocations
This commit is contained in:
@@ -107,7 +107,7 @@ ZSTD_loadEntropy_intoDDict(ZSTD_DDict* ddict,
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/* load entropy tables */
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RETURN_ERROR_IF(ZSTD_isError(ZSTD_loadDEntropy(
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&ddict->entropy, ddict->dictContent, ddict->dictSize)),
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dictionary_corrupted);
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dictionary_corrupted, "");
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ddict->entropyPresent = 1;
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return 0;
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}
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@@ -133,7 +133,7 @@ static size_t ZSTD_initDDict_internal(ZSTD_DDict* ddict,
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ddict->entropy.hufTable[0] = (HUF_DTable)((HufLog)*0x1000001); /* cover both little and big endian */
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/* parse dictionary content */
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FORWARD_IF_ERROR( ZSTD_loadEntropy_intoDDict(ddict, dictContentType) );
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FORWARD_IF_ERROR( ZSTD_loadEntropy_intoDDict(ddict, dictContentType) , "");
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return 0;
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}
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@@ -210,7 +210,7 @@ unsigned ZSTD_isFrame(const void* buffer, size_t size)
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static size_t ZSTD_frameHeaderSize_internal(const void* src, size_t srcSize, ZSTD_format_e format)
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{
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size_t const minInputSize = ZSTD_startingInputLength(format);
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RETURN_ERROR_IF(srcSize < minInputSize, srcSize_wrong);
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RETURN_ERROR_IF(srcSize < minInputSize, srcSize_wrong, "");
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{ BYTE const fhd = ((const BYTE*)src)[minInputSize-1];
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U32 const dictID= fhd & 3;
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@@ -258,7 +258,7 @@ size_t ZSTD_getFrameHeader_advanced(ZSTD_frameHeader* zfhPtr, const void* src, s
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zfhPtr->frameType = ZSTD_skippableFrame;
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return 0;
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}
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RETURN_ERROR(prefix_unknown);
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RETURN_ERROR(prefix_unknown, "");
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}
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/* ensure there is enough `srcSize` to fully read/decode frame header */
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@@ -282,7 +282,7 @@ size_t ZSTD_getFrameHeader_advanced(ZSTD_frameHeader* zfhPtr, const void* src, s
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if (!singleSegment) {
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BYTE const wlByte = ip[pos++];
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U32 const windowLog = (wlByte >> 3) + ZSTD_WINDOWLOG_ABSOLUTEMIN;
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RETURN_ERROR_IF(windowLog > ZSTD_WINDOWLOG_MAX, frameParameter_windowTooLarge);
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RETURN_ERROR_IF(windowLog > ZSTD_WINDOWLOG_MAX, frameParameter_windowTooLarge, "");
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windowSize = (1ULL << windowLog);
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windowSize += (windowSize >> 3) * (wlByte&7);
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}
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@@ -354,14 +354,14 @@ static size_t readSkippableFrameSize(void const* src, size_t srcSize)
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size_t const skippableHeaderSize = ZSTD_SKIPPABLEHEADERSIZE;
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U32 sizeU32;
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RETURN_ERROR_IF(srcSize < ZSTD_SKIPPABLEHEADERSIZE, srcSize_wrong);
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RETURN_ERROR_IF(srcSize < ZSTD_SKIPPABLEHEADERSIZE, srcSize_wrong, "");
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sizeU32 = MEM_readLE32((BYTE const*)src + ZSTD_FRAMEIDSIZE);
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RETURN_ERROR_IF((U32)(sizeU32 + ZSTD_SKIPPABLEHEADERSIZE) < sizeU32,
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frameParameter_unsupported);
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frameParameter_unsupported, "");
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{
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size_t const skippableSize = skippableHeaderSize + sizeU32;
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RETURN_ERROR_IF(skippableSize > srcSize, srcSize_wrong);
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RETURN_ERROR_IF(skippableSize > srcSize, srcSize_wrong, "");
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return skippableSize;
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}
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}
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@@ -441,7 +441,7 @@ static size_t ZSTD_decodeFrameHeader(ZSTD_DCtx* dctx, const void* src, size_t he
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* harder.
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*/
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RETURN_ERROR_IF(dctx->fParams.dictID && (dctx->dictID != dctx->fParams.dictID),
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dictionary_wrong);
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dictionary_wrong, "");
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#endif
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if (dctx->fParams.checksumFlag) XXH64_reset(&dctx->xxhState, 0);
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return 0;
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@@ -578,9 +578,9 @@ static size_t ZSTD_copyRawBlock(void* dst, size_t dstCapacity,
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DEBUGLOG(5, "ZSTD_copyRawBlock");
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if (dst == NULL) {
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if (srcSize == 0) return 0;
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RETURN_ERROR(dstBuffer_null);
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RETURN_ERROR(dstBuffer_null, "");
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}
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RETURN_ERROR_IF(srcSize > dstCapacity, dstSize_tooSmall);
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RETURN_ERROR_IF(srcSize > dstCapacity, dstSize_tooSmall, "");
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memcpy(dst, src, srcSize);
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return srcSize;
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}
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@@ -591,9 +591,9 @@ static size_t ZSTD_setRleBlock(void* dst, size_t dstCapacity,
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{
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if (dst == NULL) {
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if (regenSize == 0) return 0;
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RETURN_ERROR(dstBuffer_null);
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RETURN_ERROR(dstBuffer_null, "");
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}
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RETURN_ERROR_IF(regenSize > dstCapacity, dstSize_tooSmall);
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RETURN_ERROR_IF(regenSize > dstCapacity, dstSize_tooSmall, "");
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memset(dst, b, regenSize);
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return regenSize;
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}
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@@ -618,15 +618,15 @@ static size_t ZSTD_decompressFrame(ZSTD_DCtx* dctx,
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/* check */
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RETURN_ERROR_IF(
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remainingSrcSize < ZSTD_FRAMEHEADERSIZE_MIN(dctx->format)+ZSTD_blockHeaderSize,
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srcSize_wrong);
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srcSize_wrong, "");
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/* Frame Header */
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{ size_t const frameHeaderSize = ZSTD_frameHeaderSize_internal(
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ip, ZSTD_FRAMEHEADERSIZE_PREFIX(dctx->format), dctx->format);
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if (ZSTD_isError(frameHeaderSize)) return frameHeaderSize;
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RETURN_ERROR_IF(remainingSrcSize < frameHeaderSize+ZSTD_blockHeaderSize,
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srcSize_wrong);
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FORWARD_IF_ERROR( ZSTD_decodeFrameHeader(dctx, ip, frameHeaderSize) );
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srcSize_wrong, "");
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FORWARD_IF_ERROR( ZSTD_decodeFrameHeader(dctx, ip, frameHeaderSize) , "");
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ip += frameHeaderSize; remainingSrcSize -= frameHeaderSize;
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}
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@@ -639,7 +639,7 @@ static size_t ZSTD_decompressFrame(ZSTD_DCtx* dctx,
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ip += ZSTD_blockHeaderSize;
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remainingSrcSize -= ZSTD_blockHeaderSize;
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RETURN_ERROR_IF(cBlockSize > remainingSrcSize, srcSize_wrong);
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RETURN_ERROR_IF(cBlockSize > remainingSrcSize, srcSize_wrong, "");
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switch(blockProperties.blockType)
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{
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@@ -654,7 +654,7 @@ static size_t ZSTD_decompressFrame(ZSTD_DCtx* dctx,
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break;
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case bt_reserved :
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default:
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RETURN_ERROR(corruption_detected);
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RETURN_ERROR(corruption_detected, "invalid block type");
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}
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if (ZSTD_isError(decodedSize)) return decodedSize;
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@@ -670,14 +670,14 @@ static size_t ZSTD_decompressFrame(ZSTD_DCtx* dctx,
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if (dctx->fParams.frameContentSize != ZSTD_CONTENTSIZE_UNKNOWN) {
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RETURN_ERROR_IF((U64)(op-ostart) != dctx->fParams.frameContentSize,
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corruption_detected);
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corruption_detected, "");
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}
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if (dctx->fParams.checksumFlag) { /* Frame content checksum verification */
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U32 const checkCalc = (U32)XXH64_digest(&dctx->xxhState);
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U32 checkRead;
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RETURN_ERROR_IF(remainingSrcSize<4, checksum_wrong);
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RETURN_ERROR_IF(remainingSrcSize<4, checksum_wrong, "");
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checkRead = MEM_readLE32(ip);
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RETURN_ERROR_IF(checkRead != checkCalc, checksum_wrong);
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RETURN_ERROR_IF(checkRead != checkCalc, checksum_wrong, "");
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ip += 4;
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remainingSrcSize -= 4;
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}
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@@ -734,7 +734,7 @@ static size_t ZSTD_decompressMultiFrame(ZSTD_DCtx* dctx,
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(unsigned)magicNumber, ZSTD_MAGICNUMBER);
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if ((magicNumber & ZSTD_MAGIC_SKIPPABLE_MASK) == ZSTD_MAGIC_SKIPPABLE_START) {
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size_t const skippableSize = readSkippableFrameSize(src, srcSize);
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FORWARD_IF_ERROR(skippableSize);
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FORWARD_IF_ERROR(skippableSize, "readSkippableFrameSize failed");
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assert(skippableSize <= srcSize);
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src = (const BYTE *)src + skippableSize;
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@@ -744,11 +744,11 @@ static size_t ZSTD_decompressMultiFrame(ZSTD_DCtx* dctx,
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if (ddict) {
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/* we were called from ZSTD_decompress_usingDDict */
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FORWARD_IF_ERROR(ZSTD_decompressBegin_usingDDict(dctx, ddict));
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FORWARD_IF_ERROR(ZSTD_decompressBegin_usingDDict(dctx, ddict), "");
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} else {
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/* this will initialize correctly with no dict if dict == NULL, so
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* use this in all cases but ddict */
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FORWARD_IF_ERROR(ZSTD_decompressBegin_usingDict(dctx, dict, dictSize));
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FORWARD_IF_ERROR(ZSTD_decompressBegin_usingDict(dctx, dict, dictSize), "");
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}
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ZSTD_checkContinuity(dctx, dst);
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@@ -818,7 +818,7 @@ size_t ZSTD_decompress(void* dst, size_t dstCapacity, const void* src, size_t sr
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#if defined(ZSTD_HEAPMODE) && (ZSTD_HEAPMODE>=1)
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size_t regenSize;
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ZSTD_DCtx* const dctx = ZSTD_createDCtx();
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RETURN_ERROR_IF(dctx==NULL, memory_allocation);
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RETURN_ERROR_IF(dctx==NULL, memory_allocation, "NULL pointer!");
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regenSize = ZSTD_decompressDCtx(dctx, dst, dstCapacity, src, srcSize);
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ZSTD_freeDCtx(dctx);
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return regenSize;
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@@ -911,7 +911,7 @@ size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, c
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case ZSTDds_decodeFrameHeader:
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assert(src != NULL);
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memcpy(dctx->headerBuffer + (dctx->headerSize - srcSize), src, srcSize);
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FORWARD_IF_ERROR(ZSTD_decodeFrameHeader(dctx, dctx->headerBuffer, dctx->headerSize));
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FORWARD_IF_ERROR(ZSTD_decodeFrameHeader(dctx, dctx->headerBuffer, dctx->headerSize), "");
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dctx->expected = ZSTD_blockHeaderSize;
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dctx->stage = ZSTDds_decodeBlockHeader;
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return 0;
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@@ -958,7 +958,7 @@ size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, c
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case bt_raw :
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assert(srcSize <= dctx->expected);
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rSize = ZSTD_copyRawBlock(dst, dstCapacity, src, srcSize);
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FORWARD_IF_ERROR(rSize);
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FORWARD_IF_ERROR(rSize, "ZSTD_copyRawBlock failed");
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assert(rSize == srcSize);
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dctx->expected -= rSize;
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break;
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@@ -968,9 +968,9 @@ size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, c
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break;
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case bt_reserved : /* should never happen */
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default:
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RETURN_ERROR(corruption_detected);
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RETURN_ERROR(corruption_detected, "invalid block type");
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}
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FORWARD_IF_ERROR(rSize);
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FORWARD_IF_ERROR(rSize, "");
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RETURN_ERROR_IF(rSize > dctx->fParams.blockSizeMax, corruption_detected, "Decompressed Block Size Exceeds Maximum");
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DEBUGLOG(5, "ZSTD_decompressContinue: decoded size from block : %u", (unsigned)rSize);
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dctx->decodedSize += rSize;
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@@ -987,7 +987,7 @@ size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, c
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RETURN_ERROR_IF(
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dctx->fParams.frameContentSize != ZSTD_CONTENTSIZE_UNKNOWN
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&& dctx->decodedSize != dctx->fParams.frameContentSize,
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corruption_detected);
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corruption_detected, "");
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if (dctx->fParams.checksumFlag) { /* another round for frame checksum */
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dctx->expected = 4;
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dctx->stage = ZSTDds_checkChecksum;
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@@ -1007,7 +1007,7 @@ size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, c
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{ U32 const h32 = (U32)XXH64_digest(&dctx->xxhState);
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U32 const check32 = MEM_readLE32(src);
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DEBUGLOG(4, "ZSTD_decompressContinue: checksum : calculated %08X :: %08X read", (unsigned)h32, (unsigned)check32);
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RETURN_ERROR_IF(check32 != h32, checksum_wrong);
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RETURN_ERROR_IF(check32 != h32, checksum_wrong, "");
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dctx->expected = 0;
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dctx->stage = ZSTDds_getFrameHeaderSize;
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return 0;
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@@ -1028,7 +1028,7 @@ size_t ZSTD_decompressContinue(ZSTD_DCtx* dctx, void* dst, size_t dstCapacity, c
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default:
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assert(0); /* impossible */
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RETURN_ERROR(GENERIC); /* some compiler require default to do something */
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RETURN_ERROR(GENERIC, "impossible to reach"); /* some compiler require default to do something */
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}
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}
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@@ -1052,7 +1052,7 @@ ZSTD_loadDEntropy(ZSTD_entropyDTables_t* entropy,
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const BYTE* dictPtr = (const BYTE*)dict;
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const BYTE* const dictEnd = dictPtr + dictSize;
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RETURN_ERROR_IF(dictSize <= 8, dictionary_corrupted);
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RETURN_ERROR_IF(dictSize <= 8, dictionary_corrupted, "dict is too small");
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assert(MEM_readLE32(dict) == ZSTD_MAGIC_DICTIONARY); /* dict must be valid */
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dictPtr += 8; /* skip header = magic + dictID */
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@@ -1071,16 +1071,16 @@ ZSTD_loadDEntropy(ZSTD_entropyDTables_t* entropy,
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dictPtr, dictEnd - dictPtr,
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workspace, workspaceSize);
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#endif
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RETURN_ERROR_IF(HUF_isError(hSize), dictionary_corrupted);
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RETURN_ERROR_IF(HUF_isError(hSize), dictionary_corrupted, "");
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dictPtr += hSize;
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}
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{ short offcodeNCount[MaxOff+1];
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unsigned offcodeMaxValue = MaxOff, offcodeLog;
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size_t const offcodeHeaderSize = FSE_readNCount(offcodeNCount, &offcodeMaxValue, &offcodeLog, dictPtr, dictEnd-dictPtr);
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RETURN_ERROR_IF(FSE_isError(offcodeHeaderSize), dictionary_corrupted);
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RETURN_ERROR_IF(offcodeMaxValue > MaxOff, dictionary_corrupted);
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RETURN_ERROR_IF(offcodeLog > OffFSELog, dictionary_corrupted);
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RETURN_ERROR_IF(FSE_isError(offcodeHeaderSize), dictionary_corrupted, "");
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RETURN_ERROR_IF(offcodeMaxValue > MaxOff, dictionary_corrupted, "");
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RETURN_ERROR_IF(offcodeLog > OffFSELog, dictionary_corrupted, "");
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ZSTD_buildFSETable( entropy->OFTable,
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offcodeNCount, offcodeMaxValue,
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OF_base, OF_bits,
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@@ -1091,9 +1091,9 @@ ZSTD_loadDEntropy(ZSTD_entropyDTables_t* entropy,
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{ short matchlengthNCount[MaxML+1];
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unsigned matchlengthMaxValue = MaxML, matchlengthLog;
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size_t const matchlengthHeaderSize = FSE_readNCount(matchlengthNCount, &matchlengthMaxValue, &matchlengthLog, dictPtr, dictEnd-dictPtr);
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RETURN_ERROR_IF(FSE_isError(matchlengthHeaderSize), dictionary_corrupted);
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RETURN_ERROR_IF(matchlengthMaxValue > MaxML, dictionary_corrupted);
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RETURN_ERROR_IF(matchlengthLog > MLFSELog, dictionary_corrupted);
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RETURN_ERROR_IF(FSE_isError(matchlengthHeaderSize), dictionary_corrupted, "");
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RETURN_ERROR_IF(matchlengthMaxValue > MaxML, dictionary_corrupted, "");
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RETURN_ERROR_IF(matchlengthLog > MLFSELog, dictionary_corrupted, "");
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ZSTD_buildFSETable( entropy->MLTable,
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matchlengthNCount, matchlengthMaxValue,
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ML_base, ML_bits,
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@@ -1104,9 +1104,9 @@ ZSTD_loadDEntropy(ZSTD_entropyDTables_t* entropy,
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{ short litlengthNCount[MaxLL+1];
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unsigned litlengthMaxValue = MaxLL, litlengthLog;
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size_t const litlengthHeaderSize = FSE_readNCount(litlengthNCount, &litlengthMaxValue, &litlengthLog, dictPtr, dictEnd-dictPtr);
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RETURN_ERROR_IF(FSE_isError(litlengthHeaderSize), dictionary_corrupted);
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RETURN_ERROR_IF(litlengthMaxValue > MaxLL, dictionary_corrupted);
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RETURN_ERROR_IF(litlengthLog > LLFSELog, dictionary_corrupted);
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RETURN_ERROR_IF(FSE_isError(litlengthHeaderSize), dictionary_corrupted, "");
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RETURN_ERROR_IF(litlengthMaxValue > MaxLL, dictionary_corrupted, "");
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RETURN_ERROR_IF(litlengthLog > LLFSELog, dictionary_corrupted, "");
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ZSTD_buildFSETable( entropy->LLTable,
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litlengthNCount, litlengthMaxValue,
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LL_base, LL_bits,
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@@ -1114,13 +1114,13 @@ ZSTD_loadDEntropy(ZSTD_entropyDTables_t* entropy,
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dictPtr += litlengthHeaderSize;
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}
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RETURN_ERROR_IF(dictPtr+12 > dictEnd, dictionary_corrupted);
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RETURN_ERROR_IF(dictPtr+12 > dictEnd, dictionary_corrupted, "");
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{ int i;
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size_t const dictContentSize = (size_t)(dictEnd - (dictPtr+12));
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for (i=0; i<3; i++) {
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U32 const rep = MEM_readLE32(dictPtr); dictPtr += 4;
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RETURN_ERROR_IF(rep==0 || rep > dictContentSize,
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dictionary_corrupted);
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dictionary_corrupted, "");
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entropy->rep[i] = rep;
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} }
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@@ -1138,7 +1138,7 @@ static size_t ZSTD_decompress_insertDictionary(ZSTD_DCtx* dctx, const void* dict
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/* load entropy tables */
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{ size_t const eSize = ZSTD_loadDEntropy(&dctx->entropy, dict, dictSize);
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RETURN_ERROR_IF(ZSTD_isError(eSize), dictionary_corrupted);
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RETURN_ERROR_IF(ZSTD_isError(eSize), dictionary_corrupted, "");
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dict = (const char*)dict + eSize;
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dictSize -= eSize;
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}
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@@ -1173,11 +1173,11 @@ size_t ZSTD_decompressBegin(ZSTD_DCtx* dctx)
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size_t ZSTD_decompressBegin_usingDict(ZSTD_DCtx* dctx, const void* dict, size_t dictSize)
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{
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FORWARD_IF_ERROR( ZSTD_decompressBegin(dctx) );
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FORWARD_IF_ERROR( ZSTD_decompressBegin(dctx) , "");
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if (dict && dictSize)
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RETURN_ERROR_IF(
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ZSTD_isError(ZSTD_decompress_insertDictionary(dctx, dict, dictSize)),
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dictionary_corrupted);
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dictionary_corrupted, "");
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return 0;
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}
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@@ -1196,7 +1196,7 @@ size_t ZSTD_decompressBegin_usingDDict(ZSTD_DCtx* dctx, const ZSTD_DDict* ddict)
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DEBUGLOG(4, "DDict is %s",
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dctx->ddictIsCold ? "~cold~" : "hot!");
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}
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FORWARD_IF_ERROR( ZSTD_decompressBegin(dctx) );
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FORWARD_IF_ERROR( ZSTD_decompressBegin(dctx) , "");
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if (ddict) { /* NULL ddict is equivalent to no dictionary */
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ZSTD_copyDDictParameters(dctx, ddict);
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}
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@@ -1287,11 +1287,11 @@ size_t ZSTD_DCtx_loadDictionary_advanced(ZSTD_DCtx* dctx,
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ZSTD_dictLoadMethod_e dictLoadMethod,
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ZSTD_dictContentType_e dictContentType)
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{
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RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong);
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RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong, "");
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||||
ZSTD_clearDict(dctx);
|
||||
if (dict && dictSize != 0) {
|
||||
dctx->ddictLocal = ZSTD_createDDict_advanced(dict, dictSize, dictLoadMethod, dictContentType, dctx->customMem);
|
||||
RETURN_ERROR_IF(dctx->ddictLocal == NULL, memory_allocation);
|
||||
RETURN_ERROR_IF(dctx->ddictLocal == NULL, memory_allocation, "NULL pointer!");
|
||||
dctx->ddict = dctx->ddictLocal;
|
||||
dctx->dictUses = ZSTD_use_indefinitely;
|
||||
}
|
||||
@@ -1310,7 +1310,7 @@ size_t ZSTD_DCtx_loadDictionary(ZSTD_DCtx* dctx, const void* dict, size_t dictSi
|
||||
|
||||
size_t ZSTD_DCtx_refPrefix_advanced(ZSTD_DCtx* dctx, const void* prefix, size_t prefixSize, ZSTD_dictContentType_e dictContentType)
|
||||
{
|
||||
FORWARD_IF_ERROR(ZSTD_DCtx_loadDictionary_advanced(dctx, prefix, prefixSize, ZSTD_dlm_byRef, dictContentType));
|
||||
FORWARD_IF_ERROR(ZSTD_DCtx_loadDictionary_advanced(dctx, prefix, prefixSize, ZSTD_dlm_byRef, dictContentType), "");
|
||||
dctx->dictUses = ZSTD_use_once;
|
||||
return 0;
|
||||
}
|
||||
@@ -1327,8 +1327,8 @@ size_t ZSTD_DCtx_refPrefix(ZSTD_DCtx* dctx, const void* prefix, size_t prefixSiz
|
||||
size_t ZSTD_initDStream_usingDict(ZSTD_DStream* zds, const void* dict, size_t dictSize)
|
||||
{
|
||||
DEBUGLOG(4, "ZSTD_initDStream_usingDict");
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_reset(zds, ZSTD_reset_session_only) );
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_loadDictionary(zds, dict, dictSize) );
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_reset(zds, ZSTD_reset_session_only) , "");
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_loadDictionary(zds, dict, dictSize) , "");
|
||||
return ZSTD_startingInputLength(zds->format);
|
||||
}
|
||||
|
||||
@@ -1344,8 +1344,8 @@ size_t ZSTD_initDStream(ZSTD_DStream* zds)
|
||||
* this function cannot fail */
|
||||
size_t ZSTD_initDStream_usingDDict(ZSTD_DStream* dctx, const ZSTD_DDict* ddict)
|
||||
{
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_reset(dctx, ZSTD_reset_session_only) );
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_refDDict(dctx, ddict) );
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_reset(dctx, ZSTD_reset_session_only) , "");
|
||||
FORWARD_IF_ERROR( ZSTD_DCtx_refDDict(dctx, ddict) , "");
|
||||
return ZSTD_startingInputLength(dctx->format);
|
||||
}
|
||||
|
||||
@@ -1354,14 +1354,14 @@ size_t ZSTD_initDStream_usingDDict(ZSTD_DStream* dctx, const ZSTD_DDict* ddict)
|
||||
* this function cannot fail */
|
||||
size_t ZSTD_resetDStream(ZSTD_DStream* dctx)
|
||||
{
|
||||
FORWARD_IF_ERROR(ZSTD_DCtx_reset(dctx, ZSTD_reset_session_only));
|
||||
FORWARD_IF_ERROR(ZSTD_DCtx_reset(dctx, ZSTD_reset_session_only), "");
|
||||
return ZSTD_startingInputLength(dctx->format);
|
||||
}
|
||||
|
||||
|
||||
size_t ZSTD_DCtx_refDDict(ZSTD_DCtx* dctx, const ZSTD_DDict* ddict)
|
||||
{
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong);
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong, "");
|
||||
ZSTD_clearDict(dctx);
|
||||
if (ddict) {
|
||||
dctx->ddict = ddict;
|
||||
@@ -1378,9 +1378,9 @@ size_t ZSTD_DCtx_setMaxWindowSize(ZSTD_DCtx* dctx, size_t maxWindowSize)
|
||||
ZSTD_bounds const bounds = ZSTD_dParam_getBounds(ZSTD_d_windowLogMax);
|
||||
size_t const min = (size_t)1 << bounds.lowerBound;
|
||||
size_t const max = (size_t)1 << bounds.upperBound;
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong);
|
||||
RETURN_ERROR_IF(maxWindowSize < min, parameter_outOfBound);
|
||||
RETURN_ERROR_IF(maxWindowSize > max, parameter_outOfBound);
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong, "");
|
||||
RETURN_ERROR_IF(maxWindowSize < min, parameter_outOfBound, "");
|
||||
RETURN_ERROR_IF(maxWindowSize > max, parameter_outOfBound, "");
|
||||
dctx->maxWindowSize = maxWindowSize;
|
||||
return 0;
|
||||
}
|
||||
@@ -1426,12 +1426,12 @@ static int ZSTD_dParam_withinBounds(ZSTD_dParameter dParam, int value)
|
||||
}
|
||||
|
||||
#define CHECK_DBOUNDS(p,v) { \
|
||||
RETURN_ERROR_IF(!ZSTD_dParam_withinBounds(p, v), parameter_outOfBound); \
|
||||
RETURN_ERROR_IF(!ZSTD_dParam_withinBounds(p, v), parameter_outOfBound, ""); \
|
||||
}
|
||||
|
||||
size_t ZSTD_DCtx_setParameter(ZSTD_DCtx* dctx, ZSTD_dParameter dParam, int value)
|
||||
{
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong);
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong, "");
|
||||
switch(dParam) {
|
||||
case ZSTD_d_windowLogMax:
|
||||
if (value == 0) value = ZSTD_WINDOWLOG_LIMIT_DEFAULT;
|
||||
@@ -1448,7 +1448,7 @@ size_t ZSTD_DCtx_setParameter(ZSTD_DCtx* dctx, ZSTD_dParameter dParam, int value
|
||||
return 0;
|
||||
default:;
|
||||
}
|
||||
RETURN_ERROR(parameter_unsupported);
|
||||
RETURN_ERROR(parameter_unsupported, "");
|
||||
}
|
||||
|
||||
size_t ZSTD_DCtx_reset(ZSTD_DCtx* dctx, ZSTD_ResetDirective reset)
|
||||
@@ -1460,7 +1460,7 @@ size_t ZSTD_DCtx_reset(ZSTD_DCtx* dctx, ZSTD_ResetDirective reset)
|
||||
}
|
||||
if ( (reset == ZSTD_reset_parameters)
|
||||
|| (reset == ZSTD_reset_session_and_parameters) ) {
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong);
|
||||
RETURN_ERROR_IF(dctx->streamStage != zdss_init, stage_wrong, "");
|
||||
ZSTD_clearDict(dctx);
|
||||
dctx->format = ZSTD_f_zstd1;
|
||||
dctx->maxWindowSize = ZSTD_MAXWINDOWSIZE_DEFAULT;
|
||||
@@ -1481,7 +1481,7 @@ size_t ZSTD_decodingBufferSize_min(unsigned long long windowSize, unsigned long
|
||||
unsigned long long const neededSize = MIN(frameContentSize, neededRBSize);
|
||||
size_t const minRBSize = (size_t) neededSize;
|
||||
RETURN_ERROR_IF((unsigned long long)minRBSize != neededSize,
|
||||
frameParameter_windowTooLarge);
|
||||
frameParameter_windowTooLarge, "");
|
||||
return minRBSize;
|
||||
}
|
||||
|
||||
@@ -1499,9 +1499,9 @@ size_t ZSTD_estimateDStreamSize_fromFrame(const void* src, size_t srcSize)
|
||||
ZSTD_frameHeader zfh;
|
||||
size_t const err = ZSTD_getFrameHeader(&zfh, src, srcSize);
|
||||
if (ZSTD_isError(err)) return err;
|
||||
RETURN_ERROR_IF(err>0, srcSize_wrong);
|
||||
RETURN_ERROR_IF(err>0, srcSize_wrong, "");
|
||||
RETURN_ERROR_IF(zfh.windowSize > windowSizeMax,
|
||||
frameParameter_windowTooLarge);
|
||||
frameParameter_windowTooLarge, "");
|
||||
return ZSTD_estimateDStreamSize((size_t)zfh.windowSize);
|
||||
}
|
||||
|
||||
@@ -1557,7 +1557,7 @@ static size_t ZSTD_decompressContinueStream(
|
||||
size_t const dstSize = isSkipFrame ? 0 : zds->outBuffSize - zds->outStart;
|
||||
size_t const decodedSize = ZSTD_decompressContinue(zds,
|
||||
zds->outBuff + zds->outStart, dstSize, src, srcSize);
|
||||
FORWARD_IF_ERROR(decodedSize);
|
||||
FORWARD_IF_ERROR(decodedSize, "");
|
||||
if (!decodedSize && !isSkipFrame) {
|
||||
zds->streamStage = zdss_read;
|
||||
} else {
|
||||
@@ -1568,7 +1568,7 @@ static size_t ZSTD_decompressContinueStream(
|
||||
/* Write directly into the output buffer */
|
||||
size_t const dstSize = isSkipFrame ? 0 : oend - *op;
|
||||
size_t const decodedSize = ZSTD_decompressContinue(zds, *op, dstSize, src, srcSize);
|
||||
FORWARD_IF_ERROR(decodedSize);
|
||||
FORWARD_IF_ERROR(decodedSize, "");
|
||||
*op += decodedSize;
|
||||
/* Flushing is not needed. */
|
||||
zds->streamStage = zdss_read;
|
||||
@@ -1602,7 +1602,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
"forbidden. out: pos: %u vs size: %u",
|
||||
(U32)output->pos, (U32)output->size);
|
||||
DEBUGLOG(5, "input size : %u", (U32)(input->size - input->pos));
|
||||
FORWARD_IF_ERROR(ZSTD_checkOutBuffer(zds, output));
|
||||
FORWARD_IF_ERROR(ZSTD_checkOutBuffer(zds, output), "");
|
||||
|
||||
while (someMoreWork) {
|
||||
switch(zds->streamStage)
|
||||
@@ -1641,7 +1641,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
"legacy support is incompatible with static dctx");
|
||||
FORWARD_IF_ERROR(ZSTD_initLegacyStream(&zds->legacyContext,
|
||||
zds->previousLegacyVersion, legacyVersion,
|
||||
dict, dictSize));
|
||||
dict, dictSize), "");
|
||||
zds->legacyVersion = zds->previousLegacyVersion = legacyVersion;
|
||||
{ size_t const hint = ZSTD_decompressLegacyStream(zds->legacyContext, legacyVersion, output, input);
|
||||
if (hint==0) zds->streamStage = zdss_init; /* or stay in stage zdss_loadHeader */
|
||||
@@ -1695,13 +1695,13 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
|
||||
/* Consume header (see ZSTDds_decodeFrameHeader) */
|
||||
DEBUGLOG(4, "Consume header");
|
||||
FORWARD_IF_ERROR(ZSTD_decompressBegin_usingDDict(zds, ZSTD_getDDict(zds)));
|
||||
FORWARD_IF_ERROR(ZSTD_decompressBegin_usingDDict(zds, ZSTD_getDDict(zds)), "");
|
||||
|
||||
if ((MEM_readLE32(zds->headerBuffer) & ZSTD_MAGIC_SKIPPABLE_MASK) == ZSTD_MAGIC_SKIPPABLE_START) { /* skippable frame */
|
||||
zds->expected = MEM_readLE32(zds->headerBuffer + ZSTD_FRAMEIDSIZE);
|
||||
zds->stage = ZSTDds_skipFrame;
|
||||
} else {
|
||||
FORWARD_IF_ERROR(ZSTD_decodeFrameHeader(zds, zds->headerBuffer, zds->lhSize));
|
||||
FORWARD_IF_ERROR(ZSTD_decodeFrameHeader(zds, zds->headerBuffer, zds->lhSize), "");
|
||||
zds->expected = ZSTD_blockHeaderSize;
|
||||
zds->stage = ZSTDds_decodeBlockHeader;
|
||||
}
|
||||
@@ -1712,7 +1712,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
(U32)(zds->maxWindowSize >> 10) );
|
||||
zds->fParams.windowSize = MAX(zds->fParams.windowSize, 1U << ZSTD_WINDOWLOG_ABSOLUTEMIN);
|
||||
RETURN_ERROR_IF(zds->fParams.windowSize > zds->maxWindowSize,
|
||||
frameParameter_windowTooLarge);
|
||||
frameParameter_windowTooLarge, "");
|
||||
|
||||
/* Adapt buffer sizes to frame header instructions */
|
||||
{ size_t const neededInBuffSize = MAX(zds->fParams.blockSizeMax, 4 /* frame checksum */);
|
||||
@@ -1736,13 +1736,13 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
assert(zds->staticSize >= sizeof(ZSTD_DCtx)); /* controlled at init */
|
||||
RETURN_ERROR_IF(
|
||||
bufferSize > zds->staticSize - sizeof(ZSTD_DCtx),
|
||||
memory_allocation);
|
||||
memory_allocation, "");
|
||||
} else {
|
||||
ZSTD_free(zds->inBuff, zds->customMem);
|
||||
zds->inBuffSize = 0;
|
||||
zds->outBuffSize = 0;
|
||||
zds->inBuff = (char*)ZSTD_malloc(bufferSize, zds->customMem);
|
||||
RETURN_ERROR_IF(zds->inBuff == NULL, memory_allocation);
|
||||
RETURN_ERROR_IF(zds->inBuff == NULL, memory_allocation, "");
|
||||
}
|
||||
zds->inBuffSize = neededInBuffSize;
|
||||
zds->outBuff = zds->inBuff + zds->inBuffSize;
|
||||
@@ -1761,7 +1761,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
break;
|
||||
}
|
||||
if ((size_t)(iend-ip) >= neededInSize) { /* decode directly from src */
|
||||
FORWARD_IF_ERROR(ZSTD_decompressContinueStream(zds, &op, oend, ip, neededInSize));
|
||||
FORWARD_IF_ERROR(ZSTD_decompressContinueStream(zds, &op, oend, ip, neededInSize), "");
|
||||
ip += neededInSize;
|
||||
/* Function modifies the stage so we must break */
|
||||
break;
|
||||
@@ -1791,7 +1791,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
|
||||
/* decode loaded input */
|
||||
zds->inPos = 0; /* input is consumed */
|
||||
FORWARD_IF_ERROR(ZSTD_decompressContinueStream(zds, &op, oend, zds->inBuff, neededInSize));
|
||||
FORWARD_IF_ERROR(ZSTD_decompressContinueStream(zds, &op, oend, zds->inBuff, neededInSize), "");
|
||||
/* Function modifies the stage so we must break */
|
||||
break;
|
||||
}
|
||||
@@ -1817,7 +1817,7 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
|
||||
default:
|
||||
assert(0); /* impossible */
|
||||
RETURN_ERROR(GENERIC); /* some compiler require default to do something */
|
||||
RETURN_ERROR(GENERIC, "impossible to reach"); /* some compiler require default to do something */
|
||||
} }
|
||||
|
||||
/* result */
|
||||
@@ -1830,8 +1830,8 @@ size_t ZSTD_decompressStream(ZSTD_DStream* zds, ZSTD_outBuffer* output, ZSTD_inB
|
||||
if ((ip==istart) && (op==ostart)) { /* no forward progress */
|
||||
zds->noForwardProgress ++;
|
||||
if (zds->noForwardProgress >= ZSTD_NO_FORWARD_PROGRESS_MAX) {
|
||||
RETURN_ERROR_IF(op==oend, dstSize_tooSmall);
|
||||
RETURN_ERROR_IF(ip==iend, srcSize_wrong);
|
||||
RETURN_ERROR_IF(op==oend, dstSize_tooSmall, "");
|
||||
RETURN_ERROR_IF(ip==iend, srcSize_wrong, "");
|
||||
assert(0);
|
||||
}
|
||||
} else {
|
||||
|
||||
@@ -56,7 +56,7 @@ static void ZSTD_copy4(void* dst, const void* src) { memcpy(dst, src, 4); }
|
||||
size_t ZSTD_getcBlockSize(const void* src, size_t srcSize,
|
||||
blockProperties_t* bpPtr)
|
||||
{
|
||||
RETURN_ERROR_IF(srcSize < ZSTD_blockHeaderSize, srcSize_wrong);
|
||||
RETURN_ERROR_IF(srcSize < ZSTD_blockHeaderSize, srcSize_wrong, "");
|
||||
|
||||
{ U32 const cBlockHeader = MEM_readLE24(src);
|
||||
U32 const cSize = cBlockHeader >> 3;
|
||||
@@ -64,7 +64,7 @@ size_t ZSTD_getcBlockSize(const void* src, size_t srcSize,
|
||||
bpPtr->blockType = (blockType_e)((cBlockHeader >> 1) & 3);
|
||||
bpPtr->origSize = cSize; /* only useful for RLE */
|
||||
if (bpPtr->blockType == bt_rle) return 1;
|
||||
RETURN_ERROR_IF(bpPtr->blockType == bt_reserved, corruption_detected);
|
||||
RETURN_ERROR_IF(bpPtr->blockType == bt_reserved, corruption_detected, "");
|
||||
return cSize;
|
||||
}
|
||||
}
|
||||
@@ -80,7 +80,7 @@ size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx,
|
||||
const void* src, size_t srcSize) /* note : srcSize < BLOCKSIZE */
|
||||
{
|
||||
DEBUGLOG(5, "ZSTD_decodeLiteralsBlock");
|
||||
RETURN_ERROR_IF(srcSize < MIN_CBLOCK_SIZE, corruption_detected);
|
||||
RETURN_ERROR_IF(srcSize < MIN_CBLOCK_SIZE, corruption_detected, "");
|
||||
|
||||
{ const BYTE* const istart = (const BYTE*) src;
|
||||
symbolEncodingType_e const litEncType = (symbolEncodingType_e)(istart[0] & 3);
|
||||
@@ -89,7 +89,7 @@ size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx,
|
||||
{
|
||||
case set_repeat:
|
||||
DEBUGLOG(5, "set_repeat flag : re-using stats from previous compressed literals block");
|
||||
RETURN_ERROR_IF(dctx->litEntropy==0, dictionary_corrupted);
|
||||
RETURN_ERROR_IF(dctx->litEntropy==0, dictionary_corrupted, "");
|
||||
/* fall-through */
|
||||
|
||||
case set_compressed:
|
||||
@@ -121,8 +121,8 @@ size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx,
|
||||
litCSize = (lhc >> 22) + ((size_t)istart[4] << 10);
|
||||
break;
|
||||
}
|
||||
RETURN_ERROR_IF(litSize > ZSTD_BLOCKSIZE_MAX, corruption_detected);
|
||||
RETURN_ERROR_IF(litCSize + lhSize > srcSize, corruption_detected);
|
||||
RETURN_ERROR_IF(litSize > ZSTD_BLOCKSIZE_MAX, corruption_detected, "");
|
||||
RETURN_ERROR_IF(litCSize + lhSize > srcSize, corruption_detected, "");
|
||||
|
||||
/* prefetch huffman table if cold */
|
||||
if (dctx->ddictIsCold && (litSize > 768 /* heuristic */)) {
|
||||
@@ -160,7 +160,7 @@ size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx,
|
||||
}
|
||||
}
|
||||
|
||||
RETURN_ERROR_IF(HUF_isError(hufSuccess), corruption_detected);
|
||||
RETURN_ERROR_IF(HUF_isError(hufSuccess), corruption_detected, "");
|
||||
|
||||
dctx->litPtr = dctx->litBuffer;
|
||||
dctx->litSize = litSize;
|
||||
@@ -190,7 +190,7 @@ size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx,
|
||||
}
|
||||
|
||||
if (lhSize+litSize+WILDCOPY_OVERLENGTH > srcSize) { /* risk reading beyond src buffer with wildcopy */
|
||||
RETURN_ERROR_IF(litSize+lhSize > srcSize, corruption_detected);
|
||||
RETURN_ERROR_IF(litSize+lhSize > srcSize, corruption_detected, "");
|
||||
memcpy(dctx->litBuffer, istart+lhSize, litSize);
|
||||
dctx->litPtr = dctx->litBuffer;
|
||||
dctx->litSize = litSize;
|
||||
@@ -222,7 +222,7 @@ size_t ZSTD_decodeLiteralsBlock(ZSTD_DCtx* dctx,
|
||||
RETURN_ERROR_IF(srcSize<4, corruption_detected, "srcSize >= MIN_CBLOCK_SIZE == 3; here we need lhSize+1 = 4");
|
||||
break;
|
||||
}
|
||||
RETURN_ERROR_IF(litSize > ZSTD_BLOCKSIZE_MAX, corruption_detected);
|
||||
RETURN_ERROR_IF(litSize > ZSTD_BLOCKSIZE_MAX, corruption_detected, "");
|
||||
memset(dctx->litBuffer, istart[lhSize], litSize + WILDCOPY_OVERLENGTH);
|
||||
dctx->litPtr = dctx->litBuffer;
|
||||
dctx->litSize = litSize;
|
||||
@@ -440,8 +440,8 @@ static size_t ZSTD_buildSeqTable(ZSTD_seqSymbol* DTableSpace, const ZSTD_seqSymb
|
||||
switch(type)
|
||||
{
|
||||
case set_rle :
|
||||
RETURN_ERROR_IF(!srcSize, srcSize_wrong);
|
||||
RETURN_ERROR_IF((*(const BYTE*)src) > max, corruption_detected);
|
||||
RETURN_ERROR_IF(!srcSize, srcSize_wrong, "");
|
||||
RETURN_ERROR_IF((*(const BYTE*)src) > max, corruption_detected, "");
|
||||
{ U32 const symbol = *(const BYTE*)src;
|
||||
U32 const baseline = baseValue[symbol];
|
||||
U32 const nbBits = nbAdditionalBits[symbol];
|
||||
@@ -453,7 +453,7 @@ static size_t ZSTD_buildSeqTable(ZSTD_seqSymbol* DTableSpace, const ZSTD_seqSymb
|
||||
*DTablePtr = defaultTable;
|
||||
return 0;
|
||||
case set_repeat:
|
||||
RETURN_ERROR_IF(!flagRepeatTable, corruption_detected);
|
||||
RETURN_ERROR_IF(!flagRepeatTable, corruption_detected, "");
|
||||
/* prefetch FSE table if used */
|
||||
if (ddictIsCold && (nbSeq > 24 /* heuristic */)) {
|
||||
const void* const pStart = *DTablePtr;
|
||||
@@ -465,8 +465,8 @@ static size_t ZSTD_buildSeqTable(ZSTD_seqSymbol* DTableSpace, const ZSTD_seqSymb
|
||||
{ unsigned tableLog;
|
||||
S16 norm[MaxSeq+1];
|
||||
size_t const headerSize = FSE_readNCount(norm, &max, &tableLog, src, srcSize);
|
||||
RETURN_ERROR_IF(FSE_isError(headerSize), corruption_detected);
|
||||
RETURN_ERROR_IF(tableLog > maxLog, corruption_detected);
|
||||
RETURN_ERROR_IF(FSE_isError(headerSize), corruption_detected, "");
|
||||
RETURN_ERROR_IF(tableLog > maxLog, corruption_detected, "");
|
||||
ZSTD_buildFSETable(DTableSpace, norm, max, baseValue, nbAdditionalBits, tableLog);
|
||||
*DTablePtr = DTableSpace;
|
||||
return headerSize;
|
||||
@@ -487,28 +487,28 @@ size_t ZSTD_decodeSeqHeaders(ZSTD_DCtx* dctx, int* nbSeqPtr,
|
||||
DEBUGLOG(5, "ZSTD_decodeSeqHeaders");
|
||||
|
||||
/* check */
|
||||
RETURN_ERROR_IF(srcSize < MIN_SEQUENCES_SIZE, srcSize_wrong);
|
||||
RETURN_ERROR_IF(srcSize < MIN_SEQUENCES_SIZE, srcSize_wrong, "");
|
||||
|
||||
/* SeqHead */
|
||||
nbSeq = *ip++;
|
||||
if (!nbSeq) {
|
||||
*nbSeqPtr=0;
|
||||
RETURN_ERROR_IF(srcSize != 1, srcSize_wrong);
|
||||
RETURN_ERROR_IF(srcSize != 1, srcSize_wrong, "");
|
||||
return 1;
|
||||
}
|
||||
if (nbSeq > 0x7F) {
|
||||
if (nbSeq == 0xFF) {
|
||||
RETURN_ERROR_IF(ip+2 > iend, srcSize_wrong);
|
||||
RETURN_ERROR_IF(ip+2 > iend, srcSize_wrong, "");
|
||||
nbSeq = MEM_readLE16(ip) + LONGNBSEQ, ip+=2;
|
||||
} else {
|
||||
RETURN_ERROR_IF(ip >= iend, srcSize_wrong);
|
||||
RETURN_ERROR_IF(ip >= iend, srcSize_wrong, "");
|
||||
nbSeq = ((nbSeq-0x80)<<8) + *ip++;
|
||||
}
|
||||
}
|
||||
*nbSeqPtr = nbSeq;
|
||||
|
||||
/* FSE table descriptors */
|
||||
RETURN_ERROR_IF(ip+1 > iend, srcSize_wrong); /* minimum possible size: 1 byte for symbol encoding types */
|
||||
RETURN_ERROR_IF(ip+1 > iend, srcSize_wrong, ""); /* minimum possible size: 1 byte for symbol encoding types */
|
||||
{ symbolEncodingType_e const LLtype = (symbolEncodingType_e)(*ip >> 6);
|
||||
symbolEncodingType_e const OFtype = (symbolEncodingType_e)((*ip >> 4) & 3);
|
||||
symbolEncodingType_e const MLtype = (symbolEncodingType_e)((*ip >> 2) & 3);
|
||||
@@ -521,7 +521,7 @@ size_t ZSTD_decodeSeqHeaders(ZSTD_DCtx* dctx, int* nbSeqPtr,
|
||||
LL_base, LL_bits,
|
||||
LL_defaultDTable, dctx->fseEntropy,
|
||||
dctx->ddictIsCold, nbSeq);
|
||||
RETURN_ERROR_IF(ZSTD_isError(llhSize), corruption_detected);
|
||||
RETURN_ERROR_IF(ZSTD_isError(llhSize), corruption_detected, "ZSTD_buildSeqTable failed");
|
||||
ip += llhSize;
|
||||
}
|
||||
|
||||
@@ -531,7 +531,7 @@ size_t ZSTD_decodeSeqHeaders(ZSTD_DCtx* dctx, int* nbSeqPtr,
|
||||
OF_base, OF_bits,
|
||||
OF_defaultDTable, dctx->fseEntropy,
|
||||
dctx->ddictIsCold, nbSeq);
|
||||
RETURN_ERROR_IF(ZSTD_isError(ofhSize), corruption_detected);
|
||||
RETURN_ERROR_IF(ZSTD_isError(ofhSize), corruption_detected, "ZSTD_buildSeqTable failed");
|
||||
ip += ofhSize;
|
||||
}
|
||||
|
||||
@@ -541,7 +541,7 @@ size_t ZSTD_decodeSeqHeaders(ZSTD_DCtx* dctx, int* nbSeqPtr,
|
||||
ML_base, ML_bits,
|
||||
ML_defaultDTable, dctx->fseEntropy,
|
||||
dctx->ddictIsCold, nbSeq);
|
||||
RETURN_ERROR_IF(ZSTD_isError(mlhSize), corruption_detected);
|
||||
RETURN_ERROR_IF(ZSTD_isError(mlhSize), corruption_detected, "ZSTD_buildSeqTable failed");
|
||||
ip += mlhSize;
|
||||
}
|
||||
}
|
||||
@@ -683,7 +683,7 @@ size_t ZSTD_execSequenceEnd(BYTE* op,
|
||||
/* copy Match */
|
||||
if (sequence.offset > (size_t)(oLitEnd - prefixStart)) {
|
||||
/* offset beyond prefix */
|
||||
RETURN_ERROR_IF(sequence.offset > (size_t)(oLitEnd - virtualStart), corruption_detected);
|
||||
RETURN_ERROR_IF(sequence.offset > (size_t)(oLitEnd - virtualStart), corruption_detected, "");
|
||||
match = dictEnd - (prefixStart-match);
|
||||
if (match + sequence.matchLength <= dictEnd) {
|
||||
memmove(oLitEnd, match, sequence.matchLength);
|
||||
@@ -738,7 +738,7 @@ size_t ZSTD_execSequence(BYTE* op,
|
||||
/* Copy Match */
|
||||
if (sequence.offset > (size_t)(oLitEnd - prefixStart)) {
|
||||
/* offset beyond prefix -> go into extDict */
|
||||
RETURN_ERROR_IF(UNLIKELY(sequence.offset > (size_t)(oLitEnd - virtualStart)), corruption_detected);
|
||||
RETURN_ERROR_IF(UNLIKELY(sequence.offset > (size_t)(oLitEnd - virtualStart)), corruption_detected, "");
|
||||
match = dictEnd + (match - prefixStart);
|
||||
if (match + sequence.matchLength <= dictEnd) {
|
||||
memmove(oLitEnd, match, sequence.matchLength);
|
||||
@@ -964,7 +964,7 @@ ZSTD_decompressSequences_body( ZSTD_DCtx* dctx,
|
||||
{ U32 i; for (i=0; i<ZSTD_REP_NUM; i++) seqState.prevOffset[i] = dctx->entropy.rep[i]; }
|
||||
RETURN_ERROR_IF(
|
||||
ERR_isError(BIT_initDStream(&seqState.DStream, ip, iend-ip)),
|
||||
corruption_detected);
|
||||
corruption_detected, "");
|
||||
ZSTD_initFseState(&seqState.stateLL, &seqState.DStream, dctx->LLTptr);
|
||||
ZSTD_initFseState(&seqState.stateOffb, &seqState.DStream, dctx->OFTptr);
|
||||
ZSTD_initFseState(&seqState.stateML, &seqState.DStream, dctx->MLTptr);
|
||||
@@ -1034,15 +1034,15 @@ ZSTD_decompressSequences_body( ZSTD_DCtx* dctx,
|
||||
/* check if reached exact end */
|
||||
DEBUGLOG(5, "ZSTD_decompressSequences_body: after decode loop, remaining nbSeq : %i", nbSeq);
|
||||
if (ZSTD_isError(error)) return error;
|
||||
RETURN_ERROR_IF(nbSeq, corruption_detected);
|
||||
RETURN_ERROR_IF(BIT_reloadDStream(&seqState.DStream) < BIT_DStream_completed, corruption_detected);
|
||||
RETURN_ERROR_IF(nbSeq, corruption_detected, "");
|
||||
RETURN_ERROR_IF(BIT_reloadDStream(&seqState.DStream) < BIT_DStream_completed, corruption_detected, "");
|
||||
/* save reps for next block */
|
||||
{ U32 i; for (i=0; i<ZSTD_REP_NUM; i++) dctx->entropy.rep[i] = (U32)(seqState.prevOffset[i]); }
|
||||
}
|
||||
|
||||
/* last literal segment */
|
||||
{ size_t const lastLLSize = litEnd - litPtr;
|
||||
RETURN_ERROR_IF(lastLLSize > (size_t)(oend-op), dstSize_tooSmall);
|
||||
RETURN_ERROR_IF(lastLLSize > (size_t)(oend-op), dstSize_tooSmall, "");
|
||||
memcpy(op, litPtr, lastLLSize);
|
||||
op += lastLLSize;
|
||||
}
|
||||
@@ -1096,7 +1096,7 @@ ZSTD_decompressSequencesLong_body(
|
||||
assert(iend >= ip);
|
||||
RETURN_ERROR_IF(
|
||||
ERR_isError(BIT_initDStream(&seqState.DStream, ip, iend-ip)),
|
||||
corruption_detected);
|
||||
corruption_detected, "");
|
||||
ZSTD_initFseState(&seqState.stateLL, &seqState.DStream, dctx->LLTptr);
|
||||
ZSTD_initFseState(&seqState.stateOffb, &seqState.DStream, dctx->OFTptr);
|
||||
ZSTD_initFseState(&seqState.stateML, &seqState.DStream, dctx->MLTptr);
|
||||
@@ -1106,7 +1106,7 @@ ZSTD_decompressSequencesLong_body(
|
||||
sequences[seqNb] = ZSTD_decodeSequence(&seqState, isLongOffset, ZSTD_p_prefetch);
|
||||
PREFETCH_L1(sequences[seqNb].match); PREFETCH_L1(sequences[seqNb].match + sequences[seqNb].matchLength - 1); /* note : it's safe to invoke PREFETCH() on any memory address, including invalid ones */
|
||||
}
|
||||
RETURN_ERROR_IF(seqNb<seqAdvance, corruption_detected);
|
||||
RETURN_ERROR_IF(seqNb<seqAdvance, corruption_detected, "");
|
||||
|
||||
/* decode and decompress */
|
||||
for ( ; (BIT_reloadDStream(&(seqState.DStream)) <= BIT_DStream_completed) && (seqNb<nbSeq) ; seqNb++) {
|
||||
@@ -1117,7 +1117,7 @@ ZSTD_decompressSequencesLong_body(
|
||||
sequences[seqNb & STORED_SEQS_MASK] = sequence;
|
||||
op += oneSeqSize;
|
||||
}
|
||||
RETURN_ERROR_IF(seqNb<nbSeq, corruption_detected);
|
||||
RETURN_ERROR_IF(seqNb<nbSeq, corruption_detected, "");
|
||||
|
||||
/* finish queue */
|
||||
seqNb -= seqAdvance;
|
||||
@@ -1133,7 +1133,7 @@ ZSTD_decompressSequencesLong_body(
|
||||
|
||||
/* last literal segment */
|
||||
{ size_t const lastLLSize = litEnd - litPtr;
|
||||
RETURN_ERROR_IF(lastLLSize > (size_t)(oend-op), dstSize_tooSmall);
|
||||
RETURN_ERROR_IF(lastLLSize > (size_t)(oend-op), dstSize_tooSmall, "");
|
||||
memcpy(op, litPtr, lastLLSize);
|
||||
op += lastLLSize;
|
||||
}
|
||||
@@ -1271,7 +1271,7 @@ ZSTD_decompressBlock_internal(ZSTD_DCtx* dctx,
|
||||
ZSTD_longOffset_e const isLongOffset = (ZSTD_longOffset_e)(MEM_32bits() && (!frame || (dctx->fParams.windowSize > (1ULL << STREAM_ACCUMULATOR_MIN))));
|
||||
DEBUGLOG(5, "ZSTD_decompressBlock_internal (size : %u)", (U32)srcSize);
|
||||
|
||||
RETURN_ERROR_IF(srcSize >= ZSTD_BLOCKSIZE_MAX, srcSize_wrong);
|
||||
RETURN_ERROR_IF(srcSize >= ZSTD_BLOCKSIZE_MAX, srcSize_wrong, "");
|
||||
|
||||
/* Decode literals section */
|
||||
{ size_t const litCSize = ZSTD_decodeLiteralsBlock(dctx, src, srcSize);
|
||||
|
||||
Reference in New Issue
Block a user