Rewrite Table Fill to Retain Cache Entries Beyond Chain Window
This commit is contained in:
+43
-28
@@ -478,7 +478,8 @@ U32 ZSTD_insertAndFindFirstIndex(ZSTD_matchState_t* ms, const BYTE* ip) {
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void ZSTD_dedicatedDictSearch_lazy_loadDictionary(ZSTD_matchState_t* ms, const BYTE* const ip)
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void ZSTD_dedicatedDictSearch_lazy_loadDictionary(ZSTD_matchState_t* ms, const BYTE* const ip)
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{
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{
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U32 const target = (U32)(ip - ms->window.base);
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const BYTE* const base = ms->window.base;
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U32 const target = (U32)(ip - base);
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U32* const hashTable = ms->hashTable;
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U32* const hashTable = ms->hashTable;
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U32* const chainTable = ms->chainTable;
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U32* const chainTable = ms->chainTable;
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U32 const chainSize = 1 << ms->cParams.chainLog;
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U32 const chainSize = 1 << ms->cParams.chainLog;
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@@ -486,8 +487,9 @@ void ZSTD_dedicatedDictSearch_lazy_loadDictionary(ZSTD_matchState_t* ms, const B
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U32 idx = ms->nextToUpdate;
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U32 idx = ms->nextToUpdate;
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U32 const minChain = chainSize < target ? target - chainSize : idx;
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U32 const minChain = chainSize < target ? target - chainSize : idx;
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U32 const bucketSize = 1 << ZSTD_LAZY_DDSS_BUCKET_LOG;
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U32 const bucketSize = 1 << ZSTD_LAZY_DDSS_BUCKET_LOG;
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U32 const nbAttempts = 1 << ms->cParams.searchLog;
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U32 const cacheSize = bucketSize - 1;
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U32 const chainLimit = nbAttempts > 255 ? 255 : nbAttempts;
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U32 const chainAttempts = (1 << ms->cParams.searchLog) - cacheSize;
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U32 const chainLimit = chainAttempts > 255 ? 255 : chainAttempts;
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/* We know the hashtable is oversized by a factor of `bucketSize`.
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/* We know the hashtable is oversized by a factor of `bucketSize`.
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* We are going to temporarily pretend `bucketSize == 1`, keeping only a
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* We are going to temporarily pretend `bucketSize == 1`, keeping only a
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@@ -501,13 +503,12 @@ void ZSTD_dedicatedDictSearch_lazy_loadDictionary(ZSTD_matchState_t* ms, const B
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U32 hashIdx;
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U32 hashIdx;
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assert(ms->cParams.chainLog <= 24);
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assert(ms->cParams.chainLog <= 24);
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assert(ms->cParams.hashLog >= ms->cParams.chainLog + 2);
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assert(ms->cParams.hashLog >= ms->cParams.chainLog);
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assert(idx != 0);
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assert(idx != 0);
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/* fill tmp hash and tmp chain */
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/* fill conventional hash table and conventional chain table */
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for ( ; idx < target; idx++) {
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for ( ; idx < target; idx++) {
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U32 const h = ZSTD_hashPtr(
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U32 const h = ZSTD_hashPtr(base + idx, hashLog, ms->cParams.minMatch);
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ms->window.base + idx, hashLog, ms->cParams.minMatch);
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if (idx >= minChain) {
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if (idx >= minChain) {
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tmpChainTable[idx & chainMask] = hashTable[h];
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tmpChainTable[idx & chainMask] = hashTable[h];
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}
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}
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@@ -518,41 +519,55 @@ void ZSTD_dedicatedDictSearch_lazy_loadDictionary(ZSTD_matchState_t* ms, const B
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{
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{
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U32 chainPos = 0;
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U32 chainPos = 0;
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for (hashIdx = 0; hashIdx < (1U << hashLog); hashIdx++) {
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for (hashIdx = 0; hashIdx < (1U << hashLog); hashIdx++) {
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U32 count = 0;
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U32 count;
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U32 i = tmpHashTable[hashIdx];
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U32 i = tmpHashTable[hashIdx];
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while (i >= minChain && count < chainLimit) {
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for (count = 0; i >= minChain && count < cacheSize; count++) {
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chainTable[chainPos++] = i;
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/* skip through the chain to the first position that won't be
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count++;
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* in the hash bucket */
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i = tmpChainTable[i & chainMask];
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i = tmpChainTable[i & chainMask];
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}
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}
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tmpHashTable[hashIdx] = ((chainPos - count) << 8) + count;
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if (count == cacheSize) {
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for (count = 0; count < chainLimit;) {
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chainTable[chainPos++] = i;
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count++;
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if (i < minChain) {
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break;
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}
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i = tmpChainTable[i & chainMask];
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}
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} else {
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count = 0;
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}
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if (count) {
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tmpHashTable[hashIdx] = ((chainPos - count) << 8) + count;
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} else {
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tmpHashTable[hashIdx] = 0;
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}
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}
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}
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assert(chainPos <= chainSize); /* I believe this is guaranteed... */
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}
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}
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/* inflate hash table */
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/* move chain pointers into the last entry of each hash bucket */
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for (hashIdx = (1 << hashLog); hashIdx; ) {
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for (hashIdx = (1 << hashLog); hashIdx; ) {
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U32 const bucketIdx = --hashIdx << ZSTD_LAZY_DDSS_BUCKET_LOG;
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U32 const bucketIdx = --hashIdx << ZSTD_LAZY_DDSS_BUCKET_LOG;
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U32 const chainPackedPointer = tmpHashTable[hashIdx];
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U32 const chainPackedPointer = tmpHashTable[hashIdx];
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U32 const chainIdx = chainPackedPointer >> 8;
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U32 const chainLength = chainPackedPointer & 0xFF;
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U32 const cacheLength = chainLength < bucketSize - 1 ? chainLength : bucketSize - 1;
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U32 i;
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U32 i;
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for (i = 0; i < cacheLength; i++) {
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for (i = 0; i < cacheSize; i++) {
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hashTable[bucketIdx + i] = chainTable[chainIdx + i];
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}
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for (; i < bucketSize - 1; i++) {
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hashTable[bucketIdx + i] = 0;
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hashTable[bucketIdx + i] = 0;
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}
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}
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if (chainLength < bucketSize) {
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hashTable[bucketIdx + bucketSize - 1] = chainPackedPointer;
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hashTable[bucketIdx + bucketSize - 1] = 0;
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} else {
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U32 const newChainPointer = ((chainIdx + bucketSize - 1) << 8) + (chainLength - bucketSize + 1);
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hashTable[bucketIdx + bucketSize - 1] = newChainPointer;
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}
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}
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}
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/* densify chain table */
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/* fill the buckets of the hash table */
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/* TODO */
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for (idx = ms->nextToUpdate; idx < target; idx++) {
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U32 const h = ZSTD_hashPtr(base + idx, hashLog, ms->cParams.minMatch)
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<< ZSTD_LAZY_DDSS_BUCKET_LOG;
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U32 i;
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/* Shift hash cache down 1. */
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for (i = cacheSize - 1; i; i--)
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hashTable[h + i] = hashTable[h + i - 1];
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hashTable[h] = idx;
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}
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ms->nextToUpdate = target;
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ms->nextToUpdate = target;
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}
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}
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