Merge pull request #4165 from facebook/cspeed_cmov
Improve compression speed on small blocks
This commit is contained in:
@@ -557,6 +557,25 @@ MEM_STATIC int ZSTD_cParam_withinBounds(ZSTD_cParameter cParam, int value)
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return 1;
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}
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/* ZSTD_selectAddr:
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* @return index >= lowLimit ? candidate : backup,
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* tries to force branchless codegen. */
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MEM_STATIC const BYTE*
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ZSTD_selectAddr(U32 index, U32 lowLimit, const BYTE* candidate, const BYTE* backup)
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{
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#if defined(__GNUC__) && defined(__x86_64__)
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__asm__ (
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"cmp %1, %2\n"
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"cmova %3, %0\n"
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: "+r"(candidate)
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: "r"(index), "r"(lowLimit), "r"(backup)
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);
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return candidate;
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#else
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return index >= lowLimit ? candidate : backup;
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#endif
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}
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/* ZSTD_noCompressBlock() :
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* Writes uncompressed block to dst buffer from given src.
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* Returns the size of the block */
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@@ -140,11 +140,17 @@ size_t ZSTD_compressBlock_doubleFast_noDict_generic(
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U32 idxl1; /* the long match index for ip1 */
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const BYTE* matchl0; /* the long match for ip */
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const BYTE* matchl0_safe; /* matchl0 or safe address */
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const BYTE* matchs0; /* the short match for ip */
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const BYTE* matchl1; /* the long match for ip1 */
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const BYTE* matchs0_safe; /* matchs0 or safe address */
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const BYTE* ip = istart; /* the current position */
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const BYTE* ip1; /* the next position */
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/* Array of ~random data, should have low probability of matching data
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* we load from here instead of from tables, if matchl0/matchl1 are
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* invalid indices. Used to avoid unpredictable branches. */
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const BYTE dummy[] = {0x12,0x34,0x56,0x78,0x9a,0xbc,0xde,0xf0,0xe2,0xb4};
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DEBUGLOG(5, "ZSTD_compressBlock_doubleFast_noDict_generic");
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@@ -191,24 +197,29 @@ size_t ZSTD_compressBlock_doubleFast_noDict_generic(
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hl1 = ZSTD_hashPtr(ip1, hBitsL, 8);
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if (idxl0 > prefixLowestIndex) {
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/* check prefix long match */
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if (MEM_read64(matchl0) == MEM_read64(ip)) {
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mLength = ZSTD_count(ip+8, matchl0+8, iend) + 8;
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offset = (U32)(ip-matchl0);
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while (((ip>anchor) & (matchl0>prefixLowest)) && (ip[-1] == matchl0[-1])) { ip--; matchl0--; mLength++; } /* catch up */
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goto _match_found;
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}
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/* idxl0 > prefixLowestIndex is a (somewhat) unpredictable branch.
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* However expression below complies into conditional move. Since
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* match is unlikely and we only *branch* on idxl0 > prefixLowestIndex
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* if there is a match, all branches become predictable. */
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matchl0_safe = ZSTD_selectAddr(idxl0, prefixLowestIndex, matchl0, &dummy[0]);
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/* check prefix long match */
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if (MEM_read64(matchl0_safe) == MEM_read64(ip) && matchl0_safe == matchl0) {
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mLength = ZSTD_count(ip+8, matchl0+8, iend) + 8;
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offset = (U32)(ip-matchl0);
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while (((ip>anchor) & (matchl0>prefixLowest)) && (ip[-1] == matchl0[-1])) { ip--; matchl0--; mLength++; } /* catch up */
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goto _match_found;
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}
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idxl1 = hashLong[hl1];
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matchl1 = base + idxl1;
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if (idxs0 > prefixLowestIndex) {
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/* check prefix short match */
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if (MEM_read32(matchs0) == MEM_read32(ip)) {
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goto _search_next_long;
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}
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/* Same optimization as matchl0 above */
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matchs0_safe = ZSTD_selectAddr(idxs0, prefixLowestIndex, matchs0, &dummy[0]);
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/* check prefix short match */
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if(MEM_read32(matchs0_safe) == MEM_read32(ip) && matchs0_safe == matchs0) {
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goto _search_next_long;
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}
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if (ip1 >= nextStep) {
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@@ -651,7 +662,7 @@ size_t ZSTD_compressBlock_doubleFast_extDict_generic(
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size_t mLength;
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hashSmall[hSmall] = hashLong[hLong] = curr; /* update hash table */
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if (((ZSTD_index_overlap_check(prefixStartIndex, repIndex))
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if (((ZSTD_index_overlap_check(prefixStartIndex, repIndex))
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& (offset_1 <= curr+1 - dictStartIndex)) /* note: we are searching at curr+1 */
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&& (MEM_read32(repMatch) == MEM_read32(ip+1)) ) {
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const BYTE* repMatchEnd = repIndex < prefixStartIndex ? dictEnd : iend;
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+76
-58
@@ -45,7 +45,7 @@ void ZSTD_fillHashTableForCDict(ZSTD_matchState_t* ms,
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size_t const hashAndTag = ZSTD_hashPtr(ip + p, hBits, mls);
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if (hashTable[hashAndTag >> ZSTD_SHORT_CACHE_TAG_BITS] == 0) { /* not yet filled */
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ZSTD_writeTaggedIndex(hashTable, hashAndTag, curr + p);
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} } } }
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} } } }
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}
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static
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@@ -97,6 +97,50 @@ void ZSTD_fillHashTable(ZSTD_matchState_t* ms,
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}
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typedef int (*ZSTD_match4Found) (const BYTE* currentPtr, const BYTE* matchAddress, U32 matchIdx, U32 idxLowLimit);
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static int
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ZSTD_match4Found_cmov(const BYTE* currentPtr, const BYTE* matchAddress, U32 matchIdx, U32 idxLowLimit)
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{
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/* Array of ~random data, should have low probability of matching data.
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* Load from here if the index is invalid.
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* Used to avoid unpredictable branches. */
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static const BYTE dummy[] = {0x12,0x34,0x56,0x78};
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/* currentIdx >= lowLimit is a (somewhat) unpredictable branch.
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* However expression below compiles into conditional move.
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*/
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const BYTE* mvalAddr = ZSTD_selectAddr(matchIdx, idxLowLimit, matchAddress, dummy);
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/* Note: this used to be written as : return test1 && test2;
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* Unfortunately, once inlined, these tests become branches,
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* in which case it becomes critical that they are executed in the right order (test1 then test2).
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* So we have to write these tests in a specific manner to ensure their ordering.
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*/
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if (MEM_read32(currentPtr) != MEM_read32(mvalAddr)) return 0;
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/* force ordering of these tests, which matters once the function is inlined, as they become branches */
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#if defined(__GNUC__)
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__asm__("");
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#endif
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return matchIdx >= idxLowLimit;
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}
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static int
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ZSTD_match4Found_branch(const BYTE* currentPtr, const BYTE* matchAddress, U32 matchIdx, U32 idxLowLimit)
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{
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/* using a branch instead of a cmov,
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* because it's faster in scenarios where matchIdx >= idxLowLimit is generally true,
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* aka almost all candidates are within range */
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U32 mval;
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if (matchIdx >= idxLowLimit) {
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mval = MEM_read32(matchAddress);
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} else {
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mval = MEM_read32(currentPtr) ^ 1; /* guaranteed to not match. */
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}
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return (MEM_read32(currentPtr) == mval);
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}
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/**
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* If you squint hard enough (and ignore repcodes), the search operation at any
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* given position is broken into 4 stages:
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@@ -148,13 +192,12 @@ ZSTD_ALLOW_POINTER_OVERFLOW_ATTR
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size_t ZSTD_compressBlock_fast_noDict_generic(
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ZSTD_matchState_t* ms, seqStore_t* seqStore, U32 rep[ZSTD_REP_NUM],
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void const* src, size_t srcSize,
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U32 const mls, U32 const hasStep)
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U32 const mls, int useCmov)
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{
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const ZSTD_compressionParameters* const cParams = &ms->cParams;
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U32* const hashTable = ms->hashTable;
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U32 const hlog = cParams->hashLog;
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/* support stepSize of 0 */
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size_t const stepSize = hasStep ? (cParams->targetLength + !(cParams->targetLength) + 1) : 2;
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size_t const stepSize = cParams->targetLength + !(cParams->targetLength) + 1; /* min 2 */
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const BYTE* const base = ms->window.base;
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const BYTE* const istart = (const BYTE*)src;
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const U32 endIndex = (U32)((size_t)(istart - base) + srcSize);
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@@ -176,8 +219,7 @@ size_t ZSTD_compressBlock_fast_noDict_generic(
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size_t hash0; /* hash for ip0 */
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size_t hash1; /* hash for ip1 */
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U32 idx; /* match idx for ip0 */
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U32 mval; /* src value at match idx */
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U32 matchIdx; /* match idx for ip0 */
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U32 offcode;
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const BYTE* match0;
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@@ -190,6 +232,7 @@ size_t ZSTD_compressBlock_fast_noDict_generic(
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size_t step;
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const BYTE* nextStep;
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const size_t kStepIncr = (1 << (kSearchStrength - 1));
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const ZSTD_match4Found matchFound = useCmov ? ZSTD_match4Found_cmov : ZSTD_match4Found_branch;
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DEBUGLOG(5, "ZSTD_compressBlock_fast_generic");
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ip0 += (ip0 == prefixStart);
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@@ -218,7 +261,7 @@ _start: /* Requires: ip0 */
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hash0 = ZSTD_hashPtr(ip0, hlog, mls);
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hash1 = ZSTD_hashPtr(ip1, hlog, mls);
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idx = hashTable[hash0];
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matchIdx = hashTable[hash0];
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do {
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/* load repcode match for ip[2]*/
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@@ -238,35 +281,25 @@ _start: /* Requires: ip0 */
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offcode = REPCODE1_TO_OFFBASE;
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mLength += 4;
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/* First write next hash table entry; we've already calculated it.
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* This write is known to be safe because the ip1 is before the
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/* Write next hash table entry: it's already calculated.
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* This write is known to be safe because ip1 is before the
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* repcode (ip2). */
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hashTable[hash1] = (U32)(ip1 - base);
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goto _match;
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}
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/* load match for ip[0] */
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if (idx >= prefixStartIndex) {
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mval = MEM_read32(base + idx);
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} else {
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mval = MEM_read32(ip0) ^ 1; /* guaranteed to not match. */
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}
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/* check match at ip[0] */
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if (MEM_read32(ip0) == mval) {
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/* found a match! */
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/* First write next hash table entry; we've already calculated it.
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* This write is known to be safe because the ip1 == ip0 + 1, so
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* we know we will resume searching after ip1 */
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if (matchFound(ip0, base + matchIdx, matchIdx, prefixStartIndex)) {
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/* Write next hash table entry (it's already calculated).
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* This write is known to be safe because the ip1 == ip0 + 1,
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* so searching will resume after ip1 */
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hashTable[hash1] = (U32)(ip1 - base);
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goto _offset;
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}
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/* lookup ip[1] */
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idx = hashTable[hash1];
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matchIdx = hashTable[hash1];
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/* hash ip[2] */
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hash0 = hash1;
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@@ -281,36 +314,19 @@ _start: /* Requires: ip0 */
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current0 = (U32)(ip0 - base);
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hashTable[hash0] = current0;
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/* load match for ip[0] */
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if (idx >= prefixStartIndex) {
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mval = MEM_read32(base + idx);
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} else {
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mval = MEM_read32(ip0) ^ 1; /* guaranteed to not match. */
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}
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/* check match at ip[0] */
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if (MEM_read32(ip0) == mval) {
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/* found a match! */
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/* first write next hash table entry; we've already calculated it */
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if (matchFound(ip0, base + matchIdx, matchIdx, prefixStartIndex)) {
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/* Write next hash table entry, since it's already calculated */
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if (step <= 4) {
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/* We need to avoid writing an index into the hash table >= the
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* position at which we will pick up our searching after we've
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* taken this match.
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*
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* The minimum possible match has length 4, so the earliest ip0
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* can be after we take this match will be the current ip0 + 4.
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* ip1 is ip0 + step - 1. If ip1 is >= ip0 + 4, we can't safely
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* write this position.
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*/
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/* Avoid writing an index if it's >= position where search will resume.
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* The minimum possible match has length 4, so search can resume at ip0 + 4.
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*/
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hashTable[hash1] = (U32)(ip1 - base);
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}
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goto _offset;
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}
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/* lookup ip[1] */
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idx = hashTable[hash1];
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matchIdx = hashTable[hash1];
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/* hash ip[2] */
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hash0 = hash1;
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@@ -332,7 +348,7 @@ _start: /* Requires: ip0 */
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} while (ip3 < ilimit);
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_cleanup:
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/* Note that there are probably still a couple positions we could search.
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/* Note that there are probably still a couple positions one could search.
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* However, it seems to be a meaningful performance hit to try to search
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* them. So let's not. */
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@@ -361,7 +377,7 @@ _cleanup:
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_offset: /* Requires: ip0, idx */
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/* Compute the offset code. */
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match0 = base + idx;
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match0 = base + matchIdx;
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rep_offset2 = rep_offset1;
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rep_offset1 = (U32)(ip0-match0);
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offcode = OFFSET_TO_OFFBASE(rep_offset1);
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@@ -406,12 +422,12 @@ _match: /* Requires: ip0, match0, offcode */
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goto _start;
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}
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#define ZSTD_GEN_FAST_FN(dictMode, mls, step) \
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static size_t ZSTD_compressBlock_fast_##dictMode##_##mls##_##step( \
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#define ZSTD_GEN_FAST_FN(dictMode, mml, cmov) \
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static size_t ZSTD_compressBlock_fast_##dictMode##_##mml##_##cmov( \
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ZSTD_matchState_t* ms, seqStore_t* seqStore, U32 rep[ZSTD_REP_NUM], \
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void const* src, size_t srcSize) \
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{ \
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return ZSTD_compressBlock_fast_##dictMode##_generic(ms, seqStore, rep, src, srcSize, mls, step); \
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return ZSTD_compressBlock_fast_##dictMode##_generic(ms, seqStore, rep, src, srcSize, mml, cmov); \
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}
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ZSTD_GEN_FAST_FN(noDict, 4, 1)
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@@ -428,10 +444,12 @@ size_t ZSTD_compressBlock_fast(
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ZSTD_matchState_t* ms, seqStore_t* seqStore, U32 rep[ZSTD_REP_NUM],
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void const* src, size_t srcSize)
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{
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U32 const mls = ms->cParams.minMatch;
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U32 const mml = ms->cParams.minMatch;
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/* use cmov when "candidate in range" branch is likely unpredictable */
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int const useCmov = ms->cParams.windowLog < 19;
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assert(ms->dictMatchState == NULL);
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if (ms->cParams.targetLength > 1) {
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switch(mls)
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if (useCmov) {
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switch(mml)
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{
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default: /* includes case 3 */
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case 4 :
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@@ -444,7 +462,8 @@ size_t ZSTD_compressBlock_fast(
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return ZSTD_compressBlock_fast_noDict_7_1(ms, seqStore, rep, src, srcSize);
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}
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} else {
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switch(mls)
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/* use a branch instead */
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switch(mml)
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{
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default: /* includes case 3 */
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case 4 :
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@@ -456,7 +475,6 @@ size_t ZSTD_compressBlock_fast(
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case 7 :
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return ZSTD_compressBlock_fast_noDict_7_0(ms, seqStore, rep, src, srcSize);
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}
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}
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}
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@@ -546,7 +564,7 @@ size_t ZSTD_compressBlock_fast_dictMatchState_generic(
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size_t const dictHashAndTag1 = ZSTD_hashPtr(ip1, dictHBits, mls);
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hashTable[hash0] = curr; /* update hash table */
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if ((ZSTD_index_overlap_check(prefixStartIndex, repIndex))
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if ((ZSTD_index_overlap_check(prefixStartIndex, repIndex))
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&& (MEM_read32(repMatch) == MEM_read32(ip0 + 1))) {
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const BYTE* const repMatchEnd = repIndex < prefixStartIndex ? dictEnd : iend;
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mLength = ZSTD_count_2segments(ip0 + 1 + 4, repMatch + 4, iend, repMatchEnd, prefixStart) + 4;
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