fix confusion between unsigned <-> U32
as suggested in #1441. generally U32 and unsigned are the same thing, except when they are not ... case : 32-bit compilation for MIPS (uint32_t == unsigned long) A vast majority of transformation consists in transforming U32 into unsigned. In rare cases, it's the other way around (typically for internal code, such as seeds). Among a few issues this patches solves : - some parameters were declared with type `unsigned` in *.h, but with type `U32` in their implementation *.c . - some parameters have type unsigned*, but the caller user a pointer to U32 instead. These fixes are useful. However, the bulk of changes is about %u formating, which requires unsigned type, but generally receives U32 values instead, often just for brevity (U32 is shorter than unsigned). These changes are generally minor, or even annoying. As a consequence, the amount of code changed is larger than I would expect for such a patch. Testing is also a pain : it requires manually modifying `mem.h`, in order to lie about `U32` and force it to be an `unsigned long` typically. On a 64-bit system, this will break the equivalence unsigned == U32. Unfortunately, it will also break a few static_assert(), controlling structure sizes. So it also requires modifying `debug.h` to make `static_assert()` a noop. And then reverting these changes. So it's inconvenient, and as a consequence, this property is currently not checked during CI tests. Therefore, these problems can emerge again in the future. I wonder if it is worth ensuring proper distinction of U32 != unsigned in CI tests. It's another restriction for coding, adding more frustration during merge tests, since most platforms don't need this distinction (hence contributor will not see it), and while this can matter in theory, the number of platforms impacted seems minimal. Thoughts ?
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@@ -658,7 +658,7 @@ size_t FSE_compress_wksp (void* dst, size_t dstSize, const void* src, size_t src
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BYTE* op = ostart;
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BYTE* const oend = ostart + dstSize;
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U32 count[FSE_MAX_SYMBOL_VALUE+1];
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unsigned count[FSE_MAX_SYMBOL_VALUE+1];
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S16 norm[FSE_MAX_SYMBOL_VALUE+1];
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FSE_CTable* CTable = (FSE_CTable*)workSpace;
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size_t const CTableSize = FSE_CTABLE_SIZE_U32(tableLog, maxSymbolValue);
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+12
-11
@@ -88,13 +88,13 @@ static size_t HUF_compressWeights (void* dst, size_t dstSize, const void* weight
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BYTE* op = ostart;
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BYTE* const oend = ostart + dstSize;
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U32 maxSymbolValue = HUF_TABLELOG_MAX;
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unsigned maxSymbolValue = HUF_TABLELOG_MAX;
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U32 tableLog = MAX_FSE_TABLELOG_FOR_HUFF_HEADER;
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FSE_CTable CTable[FSE_CTABLE_SIZE_U32(MAX_FSE_TABLELOG_FOR_HUFF_HEADER, HUF_TABLELOG_MAX)];
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BYTE scratchBuffer[1<<MAX_FSE_TABLELOG_FOR_HUFF_HEADER];
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U32 count[HUF_TABLELOG_MAX+1];
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unsigned count[HUF_TABLELOG_MAX+1];
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S16 norm[HUF_TABLELOG_MAX+1];
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/* init conditions */
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@@ -134,7 +134,7 @@ struct HUF_CElt_s {
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`CTable` : Huffman tree to save, using huf representation.
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@return : size of saved CTable */
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size_t HUF_writeCTable (void* dst, size_t maxDstSize,
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const HUF_CElt* CTable, U32 maxSymbolValue, U32 huffLog)
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const HUF_CElt* CTable, unsigned maxSymbolValue, unsigned huffLog)
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{
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BYTE bitsToWeight[HUF_TABLELOG_MAX + 1]; /* precomputed conversion table */
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BYTE huffWeight[HUF_SYMBOLVALUE_MAX];
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@@ -169,7 +169,7 @@ size_t HUF_writeCTable (void* dst, size_t maxDstSize,
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}
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size_t HUF_readCTable (HUF_CElt* CTable, U32* maxSymbolValuePtr, const void* src, size_t srcSize)
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size_t HUF_readCTable (HUF_CElt* CTable, unsigned* maxSymbolValuePtr, const void* src, size_t srcSize)
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{
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BYTE huffWeight[HUF_SYMBOLVALUE_MAX + 1]; /* init not required, even though some static analyzer may complain */
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U32 rankVal[HUF_TABLELOG_ABSOLUTEMAX + 1]; /* large enough for values from 0 to 16 */
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@@ -315,7 +315,7 @@ typedef struct {
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U32 current;
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} rankPos;
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static void HUF_sort(nodeElt* huffNode, const U32* count, U32 maxSymbolValue)
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static void HUF_sort(nodeElt* huffNode, const unsigned* count, U32 maxSymbolValue)
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{
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rankPos rank[32];
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U32 n;
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@@ -347,7 +347,7 @@ static void HUF_sort(nodeElt* huffNode, const U32* count, U32 maxSymbolValue)
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*/
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#define STARTNODE (HUF_SYMBOLVALUE_MAX+1)
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typedef nodeElt huffNodeTable[HUF_CTABLE_WORKSPACE_SIZE_U32];
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size_t HUF_buildCTable_wksp (HUF_CElt* tree, const U32* count, U32 maxSymbolValue, U32 maxNbBits, void* workSpace, size_t wkspSize)
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size_t HUF_buildCTable_wksp (HUF_CElt* tree, const unsigned* count, U32 maxSymbolValue, U32 maxNbBits, void* workSpace, size_t wkspSize)
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{
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nodeElt* const huffNode0 = (nodeElt*)workSpace;
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nodeElt* const huffNode = huffNode0+1;
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@@ -421,7 +421,7 @@ size_t HUF_buildCTable_wksp (HUF_CElt* tree, const U32* count, U32 maxSymbolValu
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* @return : maxNbBits
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* Note : count is used before tree is written, so they can safely overlap
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*/
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size_t HUF_buildCTable (HUF_CElt* tree, const U32* count, U32 maxSymbolValue, U32 maxNbBits)
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size_t HUF_buildCTable (HUF_CElt* tree, const unsigned* count, unsigned maxSymbolValue, unsigned maxNbBits)
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{
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huffNodeTable nodeTable;
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return HUF_buildCTable_wksp(tree, count, maxSymbolValue, maxNbBits, nodeTable, sizeof(nodeTable));
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@@ -629,7 +629,7 @@ static size_t HUF_compressCTable_internal(
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}
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typedef struct {
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U32 count[HUF_SYMBOLVALUE_MAX + 1];
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unsigned count[HUF_SYMBOLVALUE_MAX + 1];
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HUF_CElt CTable[HUF_SYMBOLVALUE_MAX + 1];
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huffNodeTable nodeTable;
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} HUF_compress_tables_t;
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@@ -689,9 +689,10 @@ HUF_compress_internal (void* dst, size_t dstSize,
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/* Build Huffman Tree */
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huffLog = HUF_optimalTableLog(huffLog, srcSize, maxSymbolValue);
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{ CHECK_V_F(maxBits, HUF_buildCTable_wksp(table->CTable, table->count,
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maxSymbolValue, huffLog,
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table->nodeTable, sizeof(table->nodeTable)) );
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{ size_t const maxBits = HUF_buildCTable_wksp(table->CTable, table->count,
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maxSymbolValue, huffLog,
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table->nodeTable, sizeof(table->nodeTable));
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CHECK_F(maxBits);
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huffLog = (U32)maxBits;
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/* Zero unused symbols in CTable, so we can check it for validity */
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memset(table->CTable + (maxSymbolValue + 1), 0,
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@@ -1266,7 +1266,7 @@ ZSTD_reset_matchState(ZSTD_matchState_t* ms,
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/* opt parser space */
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if (forCCtx && (cParams->strategy >= ZSTD_btopt)) {
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DEBUGLOG(4, "reserving optimal parser space");
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ms->opt.litFreq = (U32*)ptr;
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ms->opt.litFreq = (unsigned*)ptr;
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ms->opt.litLengthFreq = ms->opt.litFreq + (1<<Litbits);
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ms->opt.matchLengthFreq = ms->opt.litLengthFreq + (MaxLL+1);
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ms->opt.offCodeFreq = ms->opt.matchLengthFreq + (MaxML+1);
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@@ -1397,7 +1397,7 @@ static size_t ZSTD_resetCCtx_internal(ZSTD_CCtx* zc,
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if (pledgedSrcSize == ZSTD_CONTENTSIZE_UNKNOWN)
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zc->appliedParams.fParams.contentSizeFlag = 0;
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DEBUGLOG(4, "pledged content size : %u ; flag : %u",
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(U32)pledgedSrcSize, zc->appliedParams.fParams.contentSizeFlag);
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(unsigned)pledgedSrcSize, zc->appliedParams.fParams.contentSizeFlag);
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zc->blockSize = blockSize;
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XXH64_reset(&zc->xxhState, 0);
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@@ -1618,7 +1618,8 @@ static size_t ZSTD_resetCCtx_usingCDict(ZSTD_CCtx* cctx,
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ZSTD_buffered_policy_e zbuff)
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{
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DEBUGLOG(4, "ZSTD_resetCCtx_usingCDict (pledgedSrcSize=%u)", (U32)pledgedSrcSize);
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DEBUGLOG(4, "ZSTD_resetCCtx_usingCDict (pledgedSrcSize=%u)",
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(unsigned)pledgedSrcSize);
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if (ZSTD_shouldAttachDict(cdict, params, pledgedSrcSize)) {
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return ZSTD_resetCCtx_byAttachingCDict(
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@@ -2151,7 +2152,7 @@ ZSTD_selectEncodingType(
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assert(!ZSTD_isError(NCountCost));
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assert(compressedCost < ERROR(maxCode));
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DEBUGLOG(5, "Estimated bit costs: basic=%u\trepeat=%u\tcompressed=%u",
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(U32)basicCost, (U32)repeatCost, (U32)compressedCost);
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(unsigned)basicCost, (unsigned)repeatCost, (unsigned)compressedCost);
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if (basicCost <= repeatCost && basicCost <= compressedCost) {
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DEBUGLOG(5, "Selected set_basic");
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assert(isDefaultAllowed);
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@@ -2173,7 +2174,7 @@ ZSTD_selectEncodingType(
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MEM_STATIC size_t
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ZSTD_buildCTable(void* dst, size_t dstCapacity,
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FSE_CTable* nextCTable, U32 FSELog, symbolEncodingType_e type,
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U32* count, U32 max,
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unsigned* count, U32 max,
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const BYTE* codeTable, size_t nbSeq,
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const S16* defaultNorm, U32 defaultNormLog, U32 defaultMax,
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const FSE_CTable* prevCTable, size_t prevCTableSize,
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@@ -2264,9 +2265,9 @@ ZSTD_encodeSequences_body(
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U32 const ofBits = ofCode;
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U32 const mlBits = ML_bits[mlCode];
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DEBUGLOG(6, "encoding: litlen:%2u - matchlen:%2u - offCode:%7u",
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sequences[n].litLength,
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sequences[n].matchLength + MINMATCH,
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sequences[n].offset);
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(unsigned)sequences[n].litLength,
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(unsigned)sequences[n].matchLength + MINMATCH,
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(unsigned)sequences[n].offset);
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/* 32b*/ /* 64b*/
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/* (7)*/ /* (7)*/
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FSE_encodeSymbol(&blockStream, &stateOffsetBits, ofCode); /* 15 */ /* 15 */
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@@ -2380,7 +2381,7 @@ ZSTD_compressSequences_internal(seqStore_t* seqStorePtr,
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{
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const int longOffsets = cctxParams->cParams.windowLog > STREAM_ACCUMULATOR_MIN;
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ZSTD_strategy const strategy = cctxParams->cParams.strategy;
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U32 count[MaxSeq+1];
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unsigned count[MaxSeq+1];
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FSE_CTable* CTable_LitLength = nextEntropy->fse.litlengthCTable;
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FSE_CTable* CTable_OffsetBits = nextEntropy->fse.offcodeCTable;
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FSE_CTable* CTable_MatchLength = nextEntropy->fse.matchlengthCTable;
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@@ -2436,7 +2437,7 @@ ZSTD_compressSequences_internal(seqStore_t* seqStorePtr,
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/* convert length/distances into codes */
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ZSTD_seqToCodes(seqStorePtr);
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/* build CTable for Literal Lengths */
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{ U32 max = MaxLL;
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{ unsigned max = MaxLL;
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size_t const mostFrequent = HIST_countFast_wksp(count, &max, llCodeTable, nbSeq, workspace, wkspSize); /* can't fail */
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DEBUGLOG(5, "Building LL table");
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nextEntropy->fse.litlength_repeatMode = prevEntropy->fse.litlength_repeatMode;
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@@ -2457,7 +2458,7 @@ ZSTD_compressSequences_internal(seqStore_t* seqStorePtr,
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op += countSize;
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} }
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/* build CTable for Offsets */
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{ U32 max = MaxOff;
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{ unsigned max = MaxOff;
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size_t const mostFrequent = HIST_countFast_wksp(count, &max, ofCodeTable, nbSeq, workspace, wkspSize); /* can't fail */
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/* We can only use the basic table if max <= DefaultMaxOff, otherwise the offsets are too large */
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ZSTD_defaultPolicy_e const defaultPolicy = (max <= DefaultMaxOff) ? ZSTD_defaultAllowed : ZSTD_defaultDisallowed;
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@@ -2479,7 +2480,7 @@ ZSTD_compressSequences_internal(seqStore_t* seqStorePtr,
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op += countSize;
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} }
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/* build CTable for MatchLengths */
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{ U32 max = MaxML;
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{ unsigned max = MaxML;
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size_t const mostFrequent = HIST_countFast_wksp(count, &max, mlCodeTable, nbSeq, workspace, wkspSize); /* can't fail */
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DEBUGLOG(5, "Building ML table (remaining space : %i)", (int)(oend-op));
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nextEntropy->fse.matchlength_repeatMode = prevEntropy->fse.matchlength_repeatMode;
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@@ -2628,7 +2629,7 @@ static size_t ZSTD_compressBlock_internal(ZSTD_CCtx* zc,
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ZSTD_matchState_t* const ms = &zc->blockState.matchState;
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size_t cSize;
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DEBUGLOG(5, "ZSTD_compressBlock_internal (dstCapacity=%u, dictLimit=%u, nextToUpdate=%u)",
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(U32)dstCapacity, ms->window.dictLimit, ms->nextToUpdate);
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(unsigned)dstCapacity, (unsigned)ms->window.dictLimit, (unsigned)ms->nextToUpdate);
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assert(srcSize <= ZSTD_BLOCKSIZE_MAX);
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/* Assert that we have correctly flushed the ctx params into the ms's copy */
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@@ -2743,7 +2744,7 @@ static size_t ZSTD_compress_frameChunk (ZSTD_CCtx* cctx,
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U32 const maxDist = (U32)1 << cctx->appliedParams.cParams.windowLog;
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assert(cctx->appliedParams.cParams.windowLog <= 31);
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DEBUGLOG(5, "ZSTD_compress_frameChunk (blockSize=%u)", (U32)blockSize);
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DEBUGLOG(5, "ZSTD_compress_frameChunk (blockSize=%u)", (unsigned)blockSize);
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if (cctx->appliedParams.fParams.checksumFlag && srcSize)
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XXH64_update(&cctx->xxhState, src, srcSize);
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@@ -2791,7 +2792,7 @@ static size_t ZSTD_compress_frameChunk (ZSTD_CCtx* cctx,
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assert(dstCapacity >= cSize);
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dstCapacity -= cSize;
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DEBUGLOG(5, "ZSTD_compress_frameChunk: adding a block of size %u",
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(U32)cSize);
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(unsigned)cSize);
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} }
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if (lastFrameChunk && (op>ostart)) cctx->stage = ZSTDcs_ending;
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@@ -2816,7 +2817,7 @@ static size_t ZSTD_writeFrameHeader(void* dst, size_t dstCapacity,
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assert(!(params.fParams.contentSizeFlag && pledgedSrcSize == ZSTD_CONTENTSIZE_UNKNOWN));
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if (dstCapacity < ZSTD_FRAMEHEADERSIZE_MAX) return ERROR(dstSize_tooSmall);
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DEBUGLOG(4, "ZSTD_writeFrameHeader : dictIDFlag : %u ; dictID : %u ; dictIDSizeCode : %u",
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!params.fParams.noDictIDFlag, dictID, dictIDSizeCode);
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!params.fParams.noDictIDFlag, (unsigned)dictID, (unsigned)dictIDSizeCode);
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if (params.format == ZSTD_f_zstd1) {
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MEM_writeLE32(dst, ZSTD_MAGICNUMBER);
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@@ -2880,7 +2881,7 @@ static size_t ZSTD_compressContinue_internal (ZSTD_CCtx* cctx,
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size_t fhSize = 0;
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DEBUGLOG(5, "ZSTD_compressContinue_internal, stage: %u, srcSize: %u",
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cctx->stage, (U32)srcSize);
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cctx->stage, (unsigned)srcSize);
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if (cctx->stage==ZSTDcs_created) return ERROR(stage_wrong); /* missing init (ZSTD_compressBegin) */
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if (frame && (cctx->stage==ZSTDcs_init)) {
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@@ -2917,7 +2918,7 @@ static size_t ZSTD_compressContinue_internal (ZSTD_CCtx* cctx,
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}
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}
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DEBUGLOG(5, "ZSTD_compressContinue_internal (blockSize=%u)", (U32)cctx->blockSize);
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DEBUGLOG(5, "ZSTD_compressContinue_internal (blockSize=%u)", (unsigned)cctx->blockSize);
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{ size_t const cSize = frame ?
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ZSTD_compress_frameChunk (cctx, dst, dstCapacity, src, srcSize, lastFrameChunk) :
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ZSTD_compressBlock_internal (cctx, dst, dstCapacity, src, srcSize);
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@@ -2929,7 +2930,7 @@ static size_t ZSTD_compressContinue_internal (ZSTD_CCtx* cctx,
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ZSTD_STATIC_ASSERT(ZSTD_CONTENTSIZE_UNKNOWN == (unsigned long long)-1);
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if (cctx->consumedSrcSize+1 > cctx->pledgedSrcSizePlusOne) {
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DEBUGLOG(4, "error : pledgedSrcSize = %u, while realSrcSize >= %u",
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(U32)cctx->pledgedSrcSizePlusOne-1, (U32)cctx->consumedSrcSize);
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(unsigned)cctx->pledgedSrcSizePlusOne-1, (unsigned)cctx->consumedSrcSize);
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return ERROR(srcSize_wrong);
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}
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}
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@@ -2941,7 +2942,7 @@ size_t ZSTD_compressContinue (ZSTD_CCtx* cctx,
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void* dst, size_t dstCapacity,
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const void* src, size_t srcSize)
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{
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DEBUGLOG(5, "ZSTD_compressContinue (srcSize=%u)", (U32)srcSize);
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DEBUGLOG(5, "ZSTD_compressContinue (srcSize=%u)", (unsigned)srcSize);
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return ZSTD_compressContinue_internal(cctx, dst, dstCapacity, src, srcSize, 1 /* frame mode */, 0 /* last chunk */);
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}
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@@ -3238,7 +3239,7 @@ size_t ZSTD_compressBegin_usingDict(ZSTD_CCtx* cctx, const void* dict, size_t di
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ZSTD_parameters const params = ZSTD_getParams(compressionLevel, ZSTD_CONTENTSIZE_UNKNOWN, dictSize);
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ZSTD_CCtx_params const cctxParams =
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ZSTD_assignParamsToCCtxParams(cctx->requestedParams, params);
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DEBUGLOG(4, "ZSTD_compressBegin_usingDict (dictSize=%u)", (U32)dictSize);
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DEBUGLOG(4, "ZSTD_compressBegin_usingDict (dictSize=%u)", (unsigned)dictSize);
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return ZSTD_compressBegin_internal(cctx, dict, dictSize, ZSTD_dct_auto, ZSTD_dtlm_fast, NULL,
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cctxParams, ZSTD_CONTENTSIZE_UNKNOWN, ZSTDb_not_buffered);
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}
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@@ -3282,7 +3283,7 @@ static size_t ZSTD_writeEpilogue(ZSTD_CCtx* cctx, void* dst, size_t dstCapacity)
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if (cctx->appliedParams.fParams.checksumFlag) {
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U32 const checksum = (U32) XXH64_digest(&cctx->xxhState);
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if (dstCapacity<4) return ERROR(dstSize_tooSmall);
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DEBUGLOG(4, "ZSTD_writeEpilogue: write checksum : %08X", checksum);
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DEBUGLOG(4, "ZSTD_writeEpilogue: write checksum : %08X", (unsigned)checksum);
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MEM_writeLE32(op, checksum);
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op += 4;
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}
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@@ -3308,7 +3309,7 @@ size_t ZSTD_compressEnd (ZSTD_CCtx* cctx,
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DEBUGLOG(4, "end of frame : controlling src size");
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if (cctx->pledgedSrcSizePlusOne != cctx->consumedSrcSize+1) {
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DEBUGLOG(4, "error : pledgedSrcSize = %u, while realSrcSize = %u",
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(U32)cctx->pledgedSrcSizePlusOne-1, (U32)cctx->consumedSrcSize);
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(unsigned)cctx->pledgedSrcSizePlusOne-1, (unsigned)cctx->consumedSrcSize);
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return ERROR(srcSize_wrong);
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} }
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return cSize + endResult;
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@@ -3354,7 +3355,7 @@ size_t ZSTD_compress_advanced_internal(
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const void* dict,size_t dictSize,
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ZSTD_CCtx_params params)
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{
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DEBUGLOG(4, "ZSTD_compress_advanced_internal (srcSize:%u)", (U32)srcSize);
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DEBUGLOG(4, "ZSTD_compress_advanced_internal (srcSize:%u)", (unsigned)srcSize);
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CHECK_F( ZSTD_compressBegin_internal(cctx,
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dict, dictSize, ZSTD_dct_auto, ZSTD_dtlm_fast, NULL,
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params, srcSize, ZSTDb_not_buffered) );
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@@ -3378,7 +3379,7 @@ size_t ZSTD_compressCCtx(ZSTD_CCtx* cctx,
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const void* src, size_t srcSize,
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int compressionLevel)
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{
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DEBUGLOG(4, "ZSTD_compressCCtx (srcSize=%u)", (U32)srcSize);
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DEBUGLOG(4, "ZSTD_compressCCtx (srcSize=%u)", (unsigned)srcSize);
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assert(cctx != NULL);
|
||||
return ZSTD_compress_usingDict(cctx, dst, dstCapacity, src, srcSize, NULL, 0, compressionLevel);
|
||||
}
|
||||
@@ -3404,7 +3405,7 @@ size_t ZSTD_estimateCDictSize_advanced(
|
||||
size_t dictSize, ZSTD_compressionParameters cParams,
|
||||
ZSTD_dictLoadMethod_e dictLoadMethod)
|
||||
{
|
||||
DEBUGLOG(5, "sizeof(ZSTD_CDict) : %u", (U32)sizeof(ZSTD_CDict));
|
||||
DEBUGLOG(5, "sizeof(ZSTD_CDict) : %u", (unsigned)sizeof(ZSTD_CDict));
|
||||
return sizeof(ZSTD_CDict) + HUF_WORKSPACE_SIZE + ZSTD_sizeof_matchState(&cParams, /* forCCtx */ 0)
|
||||
+ (dictLoadMethod == ZSTD_dlm_byRef ? 0 : dictSize);
|
||||
}
|
||||
@@ -3418,7 +3419,7 @@ size_t ZSTD_estimateCDictSize(size_t dictSize, int compressionLevel)
|
||||
size_t ZSTD_sizeof_CDict(const ZSTD_CDict* cdict)
|
||||
{
|
||||
if (cdict==NULL) return 0; /* support sizeof on NULL */
|
||||
DEBUGLOG(5, "sizeof(*cdict) : %u", (U32)sizeof(*cdict));
|
||||
DEBUGLOG(5, "sizeof(*cdict) : %u", (unsigned)sizeof(*cdict));
|
||||
return cdict->workspaceSize + (cdict->dictBuffer ? cdict->dictContentSize : 0) + sizeof(*cdict);
|
||||
}
|
||||
|
||||
@@ -3429,7 +3430,7 @@ static size_t ZSTD_initCDict_internal(
|
||||
ZSTD_dictContentType_e dictContentType,
|
||||
ZSTD_compressionParameters cParams)
|
||||
{
|
||||
DEBUGLOG(3, "ZSTD_initCDict_internal (dictContentType:%u)", (U32)dictContentType);
|
||||
DEBUGLOG(3, "ZSTD_initCDict_internal (dictContentType:%u)", (unsigned)dictContentType);
|
||||
assert(!ZSTD_checkCParams(cParams));
|
||||
cdict->matchState.cParams = cParams;
|
||||
if ((dictLoadMethod == ZSTD_dlm_byRef) || (!dictBuffer) || (!dictSize)) {
|
||||
@@ -3479,7 +3480,7 @@ ZSTD_CDict* ZSTD_createCDict_advanced(const void* dictBuffer, size_t dictSize,
|
||||
ZSTD_dictContentType_e dictContentType,
|
||||
ZSTD_compressionParameters cParams, ZSTD_customMem customMem)
|
||||
{
|
||||
DEBUGLOG(3, "ZSTD_createCDict_advanced, mode %u", (U32)dictContentType);
|
||||
DEBUGLOG(3, "ZSTD_createCDict_advanced, mode %u", (unsigned)dictContentType);
|
||||
if (!customMem.customAlloc ^ !customMem.customFree) return NULL;
|
||||
|
||||
{ ZSTD_CDict* const cdict = (ZSTD_CDict*)ZSTD_malloc(sizeof(ZSTD_CDict), customMem);
|
||||
@@ -3560,7 +3561,7 @@ const ZSTD_CDict* ZSTD_initStaticCDict(
|
||||
void* ptr;
|
||||
if ((size_t)workspace & 7) return NULL; /* 8-aligned */
|
||||
DEBUGLOG(4, "(workspaceSize < neededSize) : (%u < %u) => %u",
|
||||
(U32)workspaceSize, (U32)neededSize, (U32)(workspaceSize < neededSize));
|
||||
(unsigned)workspaceSize, (unsigned)neededSize, (unsigned)(workspaceSize < neededSize));
|
||||
if (workspaceSize < neededSize) return NULL;
|
||||
|
||||
if (dictLoadMethod == ZSTD_dlm_byCopy) {
|
||||
@@ -3720,7 +3721,7 @@ static size_t ZSTD_resetCStream_internal(ZSTD_CStream* cctx,
|
||||
size_t ZSTD_resetCStream(ZSTD_CStream* zcs, unsigned long long pledgedSrcSize)
|
||||
{
|
||||
ZSTD_CCtx_params params = zcs->requestedParams;
|
||||
DEBUGLOG(4, "ZSTD_resetCStream: pledgedSrcSize = %u", (U32)pledgedSrcSize);
|
||||
DEBUGLOG(4, "ZSTD_resetCStream: pledgedSrcSize = %u", (unsigned)pledgedSrcSize);
|
||||
if (pledgedSrcSize==0) pledgedSrcSize = ZSTD_CONTENTSIZE_UNKNOWN;
|
||||
params.fParams.contentSizeFlag = 1;
|
||||
return ZSTD_resetCStream_internal(zcs, NULL, 0, ZSTD_dct_auto, zcs->cdict, params, pledgedSrcSize);
|
||||
@@ -3740,7 +3741,7 @@ size_t ZSTD_initCStream_internal(ZSTD_CStream* zcs,
|
||||
assert(!((dict) && (cdict))); /* either dict or cdict, not both */
|
||||
|
||||
if (dict && dictSize >= 8) {
|
||||
DEBUGLOG(4, "loading dictionary of size %u", (U32)dictSize);
|
||||
DEBUGLOG(4, "loading dictionary of size %u", (unsigned)dictSize);
|
||||
if (zcs->staticSize) { /* static CCtx : never uses malloc */
|
||||
/* incompatible with internal cdict creation */
|
||||
return ERROR(memory_allocation);
|
||||
@@ -3799,7 +3800,7 @@ size_t ZSTD_initCStream_advanced(ZSTD_CStream* zcs,
|
||||
ZSTD_parameters params, unsigned long long pledgedSrcSize)
|
||||
{
|
||||
DEBUGLOG(4, "ZSTD_initCStream_advanced: pledgedSrcSize=%u, flag=%u",
|
||||
(U32)pledgedSrcSize, params.fParams.contentSizeFlag);
|
||||
(unsigned)pledgedSrcSize, params.fParams.contentSizeFlag);
|
||||
CHECK_F( ZSTD_checkCParams(params.cParams) );
|
||||
if ((pledgedSrcSize==0) && (params.fParams.contentSizeFlag==0)) pledgedSrcSize = ZSTD_CONTENTSIZE_UNKNOWN; /* for compatibility with older programs relying on this behavior. Users should now specify ZSTD_CONTENTSIZE_UNKNOWN. This line will be removed in the future. */
|
||||
zcs->requestedParams = ZSTD_assignParamsToCCtxParams(zcs->requestedParams, params);
|
||||
@@ -3860,7 +3861,7 @@ size_t ZSTD_compressStream_generic(ZSTD_CStream* zcs,
|
||||
U32 someMoreWork = 1;
|
||||
|
||||
/* check expectations */
|
||||
DEBUGLOG(5, "ZSTD_compressStream_generic, flush=%u", (U32)flushMode);
|
||||
DEBUGLOG(5, "ZSTD_compressStream_generic, flush=%u", (unsigned)flushMode);
|
||||
assert(zcs->inBuff != NULL);
|
||||
assert(zcs->inBuffSize > 0);
|
||||
assert(zcs->outBuff != NULL);
|
||||
@@ -3882,7 +3883,7 @@ size_t ZSTD_compressStream_generic(ZSTD_CStream* zcs,
|
||||
/* shortcut to compression pass directly into output buffer */
|
||||
size_t const cSize = ZSTD_compressEnd(zcs,
|
||||
op, oend-op, ip, iend-ip);
|
||||
DEBUGLOG(4, "ZSTD_compressEnd : cSize=%u", (U32)cSize);
|
||||
DEBUGLOG(4, "ZSTD_compressEnd : cSize=%u", (unsigned)cSize);
|
||||
if (ZSTD_isError(cSize)) return cSize;
|
||||
ip = iend;
|
||||
op += cSize;
|
||||
@@ -3931,7 +3932,7 @@ size_t ZSTD_compressStream_generic(ZSTD_CStream* zcs,
|
||||
if (zcs->inBuffTarget > zcs->inBuffSize)
|
||||
zcs->inBuffPos = 0, zcs->inBuffTarget = zcs->blockSize;
|
||||
DEBUGLOG(5, "inBuffTarget:%u / inBuffSize:%u",
|
||||
(U32)zcs->inBuffTarget, (U32)zcs->inBuffSize);
|
||||
(unsigned)zcs->inBuffTarget, (unsigned)zcs->inBuffSize);
|
||||
if (!lastBlock)
|
||||
assert(zcs->inBuffTarget <= zcs->inBuffSize);
|
||||
zcs->inToCompress = zcs->inBuffPos;
|
||||
@@ -3955,7 +3956,7 @@ size_t ZSTD_compressStream_generic(ZSTD_CStream* zcs,
|
||||
size_t const flushed = ZSTD_limitCopy(op, oend-op,
|
||||
zcs->outBuff + zcs->outBuffFlushedSize, toFlush);
|
||||
DEBUGLOG(5, "toFlush: %u into %u ==> flushed: %u",
|
||||
(U32)toFlush, (U32)(oend-op), (U32)flushed);
|
||||
(unsigned)toFlush, (unsigned)(oend-op), (unsigned)flushed);
|
||||
op += flushed;
|
||||
zcs->outBuffFlushedSize += flushed;
|
||||
if (toFlush!=flushed) {
|
||||
@@ -4010,7 +4011,7 @@ size_t ZSTD_compressStream2( ZSTD_CCtx* cctx,
|
||||
ZSTD_inBuffer* input,
|
||||
ZSTD_EndDirective endOp)
|
||||
{
|
||||
DEBUGLOG(5, "ZSTD_compressStream2, endOp=%u ", (U32)endOp);
|
||||
DEBUGLOG(5, "ZSTD_compressStream2, endOp=%u ", (unsigned)endOp);
|
||||
/* check conditions */
|
||||
if (output->pos > output->size) return ERROR(GENERIC);
|
||||
if (input->pos > input->size) return ERROR(GENERIC);
|
||||
@@ -4137,7 +4138,7 @@ size_t ZSTD_endStream(ZSTD_CStream* zcs, ZSTD_outBuffer* output)
|
||||
{ size_t const lastBlockSize = zcs->frameEnded ? 0 : ZSTD_BLOCKHEADERSIZE;
|
||||
size_t const checksumSize = zcs->frameEnded ? 0 : zcs->appliedParams.fParams.checksumFlag * 4;
|
||||
size_t const toFlush = remainingToFlush + lastBlockSize + checksumSize;
|
||||
DEBUGLOG(4, "ZSTD_endStream : remaining to flush : %u", (U32)toFlush);
|
||||
DEBUGLOG(4, "ZSTD_endStream : remaining to flush : %u", (unsigned)toFlush);
|
||||
return toFlush;
|
||||
}
|
||||
}
|
||||
|
||||
@@ -90,10 +90,10 @@ typedef enum { zop_dynamic=0, zop_predef } ZSTD_OptPrice_e;
|
||||
|
||||
typedef struct {
|
||||
/* All tables are allocated inside cctx->workspace by ZSTD_resetCCtx_internal() */
|
||||
U32* litFreq; /* table of literals statistics, of size 256 */
|
||||
U32* litLengthFreq; /* table of litLength statistics, of size (MaxLL+1) */
|
||||
U32* matchLengthFreq; /* table of matchLength statistics, of size (MaxML+1) */
|
||||
U32* offCodeFreq; /* table of offCode statistics, of size (MaxOff+1) */
|
||||
unsigned* litFreq; /* table of literals statistics, of size 256 */
|
||||
unsigned* litLengthFreq; /* table of litLength statistics, of size (MaxLL+1) */
|
||||
unsigned* matchLengthFreq; /* table of matchLength statistics, of size (MaxML+1) */
|
||||
unsigned* offCodeFreq; /* table of offCode statistics, of size (MaxOff+1) */
|
||||
ZSTD_match_t* matchTable; /* list of found matches, of size ZSTD_OPT_NUM+1 */
|
||||
ZSTD_optimal_t* priceTable; /* All positions tracked by optimal parser, of size ZSTD_OPT_NUM+1 */
|
||||
|
||||
@@ -689,13 +689,13 @@ ZSTD_window_enforceMaxDist(ZSTD_window_t* window,
|
||||
U32 const blockEndIdx = (U32)((BYTE const*)srcEnd - window->base);
|
||||
U32 loadedDictEnd = (loadedDictEndPtr != NULL) ? *loadedDictEndPtr : 0;
|
||||
DEBUGLOG(5, "ZSTD_window_enforceMaxDist: blockEndIdx=%u, maxDist=%u",
|
||||
blockEndIdx, maxDist);
|
||||
(unsigned)blockEndIdx, (unsigned)maxDist);
|
||||
if (blockEndIdx > maxDist + loadedDictEnd) {
|
||||
U32 const newLowLimit = blockEndIdx - maxDist;
|
||||
if (window->lowLimit < newLowLimit) window->lowLimit = newLowLimit;
|
||||
if (window->dictLimit < window->lowLimit) {
|
||||
DEBUGLOG(5, "Update dictLimit to match lowLimit, from %u to %u",
|
||||
window->dictLimit, window->lowLimit);
|
||||
(unsigned)window->dictLimit, (unsigned)window->lowLimit);
|
||||
window->dictLimit = window->lowLimit;
|
||||
}
|
||||
if (loadedDictEndPtr)
|
||||
|
||||
@@ -72,10 +72,10 @@ static void ZSTD_setBasePrices(optState_t* optPtr, int optLevel)
|
||||
/* ZSTD_downscaleStat() :
|
||||
* reduce all elements in table by a factor 2^(ZSTD_FREQ_DIV+malus)
|
||||
* return the resulting sum of elements */
|
||||
static U32 ZSTD_downscaleStat(U32* table, U32 lastEltIndex, int malus)
|
||||
static U32 ZSTD_downscaleStat(unsigned* table, U32 lastEltIndex, int malus)
|
||||
{
|
||||
U32 s, sum=0;
|
||||
DEBUGLOG(5, "ZSTD_downscaleStat (nbElts=%u)", lastEltIndex+1);
|
||||
DEBUGLOG(5, "ZSTD_downscaleStat (nbElts=%u)", (unsigned)lastEltIndex+1);
|
||||
assert(ZSTD_FREQ_DIV+malus > 0 && ZSTD_FREQ_DIV+malus < 31);
|
||||
for (s=0; s<lastEltIndex+1; s++) {
|
||||
table[s] = 1 + (table[s] >> (ZSTD_FREQ_DIV+malus));
|
||||
@@ -1041,7 +1041,7 @@ _shortestPath: /* cur, last_pos, best_mlen, best_off have to be set */
|
||||
U32 const offCode = opt[storePos].off;
|
||||
U32 const advance = llen + mlen;
|
||||
DEBUGLOG(6, "considering seq starting at %zi, llen=%u, mlen=%u",
|
||||
anchor - istart, llen, mlen);
|
||||
anchor - istart, (unsigned)llen, (unsigned)mlen);
|
||||
|
||||
if (mlen==0) { /* only literals => must be last "sequence", actually starting a new stream of sequences */
|
||||
assert(storePos == storeEnd); /* must be last sequence */
|
||||
@@ -1089,7 +1089,7 @@ size_t ZSTD_compressBlock_btopt(
|
||||
|
||||
|
||||
/* used in 2-pass strategy */
|
||||
static U32 ZSTD_upscaleStat(U32* table, U32 lastEltIndex, int bonus)
|
||||
static U32 ZSTD_upscaleStat(unsigned* table, U32 lastEltIndex, int bonus)
|
||||
{
|
||||
U32 s, sum=0;
|
||||
assert(ZSTD_FREQ_DIV+bonus >= 0);
|
||||
|
||||
Reference in New Issue
Block a user