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https://github.com/facebook/zstd.git
synced 2025-03-06 16:56:49 +02:00
adapted long decoder to new decodeSequences
removed older decodeSequences
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@ -1214,128 +1214,6 @@ ZSTD_updateFseStateWithDInfo(ZSTD_fseState* DStatePtr, BIT_DStream_t* bitD, U16
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typedef enum { ZSTD_lo_isRegularOffset, ZSTD_lo_isLongOffset=1 } ZSTD_longOffset_e;
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/**
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* ZSTD_decodeSequence_old():
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* @p longOffsets : tells the decoder to reload more bit while decoding large offsets
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* only used in 32-bit mode
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* @return : Sequence (litL + matchL + offset)
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*/
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FORCE_INLINE_TEMPLATE seq_t
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ZSTD_decodeSequence_old(seqState_t* seqState, const ZSTD_longOffset_e longOffsets)
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{
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seq_t seq;
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/*
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* ZSTD_seqSymbol is a 64 bits wide structure.
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* It can be loaded in one operation
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* and its fields extracted by simply shifting or bit-extracting on aarch64.
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* GCC doesn't recognize this and generates more unnecessary ldr/ldrb/ldrh
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* operations that cause performance drop. This can be avoided by using this
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* ZSTD_memcpy hack.
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*/
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#if defined(__aarch64__) && (defined(__GNUC__) && !defined(__clang__))
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ZSTD_seqSymbol llDInfoS, mlDInfoS, ofDInfoS;
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ZSTD_seqSymbol* const llDInfo = &llDInfoS;
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ZSTD_seqSymbol* const mlDInfo = &mlDInfoS;
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ZSTD_seqSymbol* const ofDInfo = &ofDInfoS;
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ZSTD_memcpy(llDInfo, seqState->stateLL.table + seqState->stateLL.state, sizeof(ZSTD_seqSymbol));
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ZSTD_memcpy(mlDInfo, seqState->stateML.table + seqState->stateML.state, sizeof(ZSTD_seqSymbol));
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ZSTD_memcpy(ofDInfo, seqState->stateOffb.table + seqState->stateOffb.state, sizeof(ZSTD_seqSymbol));
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#else
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const ZSTD_seqSymbol* const llDInfo = seqState->stateLL.table + seqState->stateLL.state;
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const ZSTD_seqSymbol* const mlDInfo = seqState->stateML.table + seqState->stateML.state;
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const ZSTD_seqSymbol* const ofDInfo = seqState->stateOffb.table + seqState->stateOffb.state;
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#endif
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seq.matchLength = mlDInfo->baseValue;
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seq.litLength = llDInfo->baseValue;
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{ U32 const ofBase = ofDInfo->baseValue;
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BYTE const llBits = llDInfo->nbAdditionalBits;
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BYTE const mlBits = mlDInfo->nbAdditionalBits;
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BYTE const ofBits = ofDInfo->nbAdditionalBits;
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BYTE const totalBits = llBits+mlBits+ofBits;
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U16 const llNext = llDInfo->nextState;
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U16 const mlNext = mlDInfo->nextState;
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U16 const ofNext = ofDInfo->nextState;
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U32 const llnbBits = llDInfo->nbBits;
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U32 const mlnbBits = mlDInfo->nbBits;
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U32 const ofnbBits = ofDInfo->nbBits;
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assert(llBits <= MaxLLBits);
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assert(mlBits <= MaxMLBits);
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assert(ofBits <= MaxOff);
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/*
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* As gcc has better branch and block analyzers, sometimes it is only
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* valuable to mark likeliness for clang, it gives around 3-4% of
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* performance.
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*/
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/* sequence */
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{ size_t offset;
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if (ofBits > 1) {
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ZSTD_STATIC_ASSERT(ZSTD_lo_isLongOffset == 1);
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ZSTD_STATIC_ASSERT(LONG_OFFSETS_MAX_EXTRA_BITS_32 == 5);
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ZSTD_STATIC_ASSERT(STREAM_ACCUMULATOR_MIN_32 > LONG_OFFSETS_MAX_EXTRA_BITS_32);
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ZSTD_STATIC_ASSERT(STREAM_ACCUMULATOR_MIN_32 - LONG_OFFSETS_MAX_EXTRA_BITS_32 >= MaxMLBits);
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if (MEM_32bits() && longOffsets && (ofBits >= STREAM_ACCUMULATOR_MIN_32)) {
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/* Always read extra bits, this keeps the logic simple,
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* avoids branches, and avoids accidentally reading 0 bits.
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*/
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U32 const extraBits = LONG_OFFSETS_MAX_EXTRA_BITS_32;
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offset = ofBase + (BIT_readBitsFast(&seqState->DStream, ofBits - extraBits) << extraBits);
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BIT_reloadDStream(&seqState->DStream);
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offset += BIT_readBitsFast(&seqState->DStream, extraBits);
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} else {
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offset = ofBase + BIT_readBitsFast(&seqState->DStream, ofBits/*>0*/); /* <= (ZSTD_WINDOWLOG_MAX-1) bits */
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if (MEM_32bits()) BIT_reloadDStream(&seqState->DStream);
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}
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seqState->prevOffset[2] = seqState->prevOffset[1];
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seqState->prevOffset[1] = seqState->prevOffset[0];
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seqState->prevOffset[0] = offset;
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} else {
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U32 const ll0 = (llDInfo->baseValue == 0);
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if (LIKELY((ofBits == 0))) {
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offset = seqState->prevOffset[ll0];
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seqState->prevOffset[1] = seqState->prevOffset[!ll0];
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seqState->prevOffset[0] = offset;
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} else {
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offset = ofBase + ll0 + BIT_readBitsFast(&seqState->DStream, 1);
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{ size_t temp = (offset==3) ? seqState->prevOffset[0] - 1 : seqState->prevOffset[offset];
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temp += !temp; /* 0 is not valid; input is corrupted; force offset to 1 */
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if (offset != 1) seqState->prevOffset[2] = seqState->prevOffset[1];
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seqState->prevOffset[1] = seqState->prevOffset[0];
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seqState->prevOffset[0] = offset = temp;
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} } }
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seq.offset = offset;
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}
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if (mlBits > 0)
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seq.matchLength += BIT_readBitsFast(&seqState->DStream, mlBits/*>0*/);
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if (MEM_32bits() && (mlBits+llBits >= STREAM_ACCUMULATOR_MIN_32-LONG_OFFSETS_MAX_EXTRA_BITS_32))
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BIT_reloadDStream(&seqState->DStream);
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if (MEM_64bits() && UNLIKELY(totalBits >= STREAM_ACCUMULATOR_MIN_64-(LLFSELog+MLFSELog+OffFSELog)))
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BIT_reloadDStream(&seqState->DStream);
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/* Ensure there are enough bits to read the rest of data in 64-bit mode. */
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ZSTD_STATIC_ASSERT(16+LLFSELog+MLFSELog+OffFSELog < STREAM_ACCUMULATOR_MIN_64);
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if (llBits > 0)
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seq.litLength += BIT_readBitsFast(&seqState->DStream, llBits/*>0*/);
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if (MEM_32bits())
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BIT_reloadDStream(&seqState->DStream);
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DEBUGLOG(6, "seq: litL=%u, matchL=%u, offset=%u",
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(U32)seq.litLength, (U32)seq.matchLength, (U32)seq.offset);
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ZSTD_updateFseStateWithDInfo(&seqState->stateLL, &seqState->DStream, llNext, llnbBits); /* <= 9 bits */
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ZSTD_updateFseStateWithDInfo(&seqState->stateML, &seqState->DStream, mlNext, mlnbBits); /* <= 9 bits */
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if (MEM_32bits()) BIT_reloadDStream(&seqState->DStream); /* <= 18 bits */
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ZSTD_updateFseStateWithDInfo(&seqState->stateOffb, &seqState->DStream, ofNext, ofnbBits); /* <= 8 bits */
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}
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return seq;
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}
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/**
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* ZSTD_decodeSequence():
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* @p longOffsets : tells the decoder to reload more bit while decoding large offsets
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@ -1754,11 +1632,6 @@ ZSTD_decompressSequences_body(ZSTD_DCtx* dctx,
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ZSTD_initFseState(&seqState.stateML, &seqState.DStream, dctx->MLTptr);
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assert(dst != NULL);
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ZSTD_STATIC_ASSERT(
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BIT_DStream_unfinished < BIT_DStream_completed &&
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BIT_DStream_endOfBuffer < BIT_DStream_completed &&
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BIT_DStream_completed < BIT_DStream_overflow);
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#if defined(__GNUC__) && defined(__x86_64__)
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__asm__(".p2align 6");
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__asm__("nop");
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@ -1787,9 +1660,7 @@ ZSTD_decompressSequences_body(ZSTD_DCtx* dctx,
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}
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/* check if reached exact end */
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DEBUGLOG(5, "ZSTD_decompressSequences_body: after decode loop, remaining nbSeq : %i", nbSeq);
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RETURN_ERROR_IF(nbSeq, corruption_detected, "");
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DEBUGLOG(5, "bitStream : start=%p, ptr=%p, bitsConsumed=%u", seqState.DStream.start, seqState.DStream.ptr, seqState.DStream.bitsConsumed);
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assert(nbSeq == 0);
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RETURN_ERROR_IF(!BIT_endOfDStream(&seqState.DStream), corruption_detected, "");
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/* save reps for next block */
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{ U32 i; for (i=0; i<ZSTD_REP_NUM; i++) dctx->entropy.rep[i] = (U32)(seqState.prevOffset[i]); }
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@ -1801,8 +1672,7 @@ ZSTD_decompressSequences_body(ZSTD_DCtx* dctx,
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if (op != NULL) {
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ZSTD_memcpy(op, litPtr, lastLLSize);
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op += lastLLSize;
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}
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}
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} }
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return op-ostart;
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}
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@ -1886,20 +1756,17 @@ ZSTD_decompressSequencesLong_body(
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ZSTD_initFseState(&seqState.stateML, &seqState.DStream, dctx->MLTptr);
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/* prepare in advance */
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for (seqNb=0; (BIT_reloadDStream(&seqState.DStream) <= BIT_DStream_completed) && (seqNb<seqAdvance); seqNb++) {
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seq_t const sequence = ZSTD_decodeSequence_old(&seqState, isLongOffset);
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for (seqNb=0; seqNb<seqAdvance; seqNb++) {
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seq_t const sequence = ZSTD_decodeSequence(&seqState, isLongOffset, seqNb == nbSeq-1);
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prefetchPos = ZSTD_prefetchMatch(prefetchPos, sequence, prefixStart, dictEnd);
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sequences[seqNb] = sequence;
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}
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RETURN_ERROR_IF(seqNb<seqAdvance, corruption_detected, "");
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/* decompress without stomping litBuffer */
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for (; (BIT_reloadDStream(&(seqState.DStream)) <= BIT_DStream_completed) && (seqNb < nbSeq); seqNb++) {
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seq_t sequence = ZSTD_decodeSequence_old(&seqState, isLongOffset);
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size_t oneSeqSize;
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for (; seqNb < nbSeq; seqNb++) {
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seq_t sequence = ZSTD_decodeSequence(&seqState, isLongOffset, seqNb == nbSeq-1);
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if (dctx->litBufferLocation == ZSTD_split && litPtr + sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK].litLength > dctx->litBufferEnd)
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{
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if (dctx->litBufferLocation == ZSTD_split && litPtr + sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK].litLength > dctx->litBufferEnd) {
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/* lit buffer is reaching split point, empty out the first buffer and transition to litExtraBuffer */
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const size_t leftoverLit = dctx->litBufferEnd - litPtr;
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if (leftoverLit)
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@ -1912,21 +1779,21 @@ ZSTD_decompressSequencesLong_body(
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litPtr = dctx->litExtraBuffer;
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litBufferEnd = dctx->litExtraBuffer + ZSTD_LITBUFFEREXTRASIZE;
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dctx->litBufferLocation = ZSTD_not_in_dst;
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oneSeqSize = ZSTD_execSequence(op, oend, sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK], &litPtr, litBufferEnd, prefixStart, dictStart, dictEnd);
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{ size_t const oneSeqSize = ZSTD_execSequence(op, oend, sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK], &litPtr, litBufferEnd, prefixStart, dictStart, dictEnd);
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#if defined(FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION) && defined(FUZZING_ASSERT_VALID_SEQUENCE)
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assert(!ZSTD_isError(oneSeqSize));
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ZSTD_assertValidSequence(dctx, op, oend, sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK], prefixStart, dictStart);
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assert(!ZSTD_isError(oneSeqSize));
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ZSTD_assertValidSequence(dctx, op, oend, sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK], prefixStart, dictStart);
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#endif
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if (ZSTD_isError(oneSeqSize)) return oneSeqSize;
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if (ZSTD_isError(oneSeqSize)) return oneSeqSize;
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prefetchPos = ZSTD_prefetchMatch(prefetchPos, sequence, prefixStart, dictEnd);
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sequences[seqNb & STORED_SEQS_MASK] = sequence;
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op += oneSeqSize;
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}
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prefetchPos = ZSTD_prefetchMatch(prefetchPos, sequence, prefixStart, dictEnd);
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sequences[seqNb & STORED_SEQS_MASK] = sequence;
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op += oneSeqSize;
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} }
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else
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{
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/* lit buffer is either wholly contained in first or second split, or not split at all*/
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oneSeqSize = dctx->litBufferLocation == ZSTD_split ?
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size_t const oneSeqSize = dctx->litBufferLocation == ZSTD_split ?
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ZSTD_execSequenceSplitLitBuffer(op, oend, litPtr + sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK].litLength - WILDCOPY_OVERLENGTH, sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK], &litPtr, litBufferEnd, prefixStart, dictStart, dictEnd) :
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ZSTD_execSequence(op, oend, sequences[(seqNb - ADVANCED_SEQS) & STORED_SEQS_MASK], &litPtr, litBufferEnd, prefixStart, dictStart, dictEnd);
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#if defined(FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION) && defined(FUZZING_ASSERT_VALID_SEQUENCE)
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@ -1940,17 +1807,15 @@ ZSTD_decompressSequencesLong_body(
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op += oneSeqSize;
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}
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}
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RETURN_ERROR_IF(seqNb<nbSeq, corruption_detected, "");
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RETURN_ERROR_IF(!BIT_endOfDStream(&seqState.DStream), corruption_detected, "");
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/* finish queue */
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seqNb -= seqAdvance;
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for ( ; seqNb<nbSeq ; seqNb++) {
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seq_t *sequence = &(sequences[seqNb&STORED_SEQS_MASK]);
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if (dctx->litBufferLocation == ZSTD_split && litPtr + sequence->litLength > dctx->litBufferEnd)
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{
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if (dctx->litBufferLocation == ZSTD_split && litPtr + sequence->litLength > dctx->litBufferEnd) {
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const size_t leftoverLit = dctx->litBufferEnd - litPtr;
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if (leftoverLit)
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{
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if (leftoverLit) {
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RETURN_ERROR_IF(leftoverLit > (size_t)(oend - op), dstSize_tooSmall, "remaining lit must fit within dstBuffer");
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ZSTD_safecopyDstBeforeSrc(op, litPtr, leftoverLit);
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sequence->litLength -= leftoverLit;
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@ -1959,8 +1824,7 @@ ZSTD_decompressSequencesLong_body(
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litPtr = dctx->litExtraBuffer;
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litBufferEnd = dctx->litExtraBuffer + ZSTD_LITBUFFEREXTRASIZE;
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dctx->litBufferLocation = ZSTD_not_in_dst;
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{
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size_t const oneSeqSize = ZSTD_execSequence(op, oend, *sequence, &litPtr, litBufferEnd, prefixStart, dictStart, dictEnd);
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{ size_t const oneSeqSize = ZSTD_execSequence(op, oend, *sequence, &litPtr, litBufferEnd, prefixStart, dictStart, dictEnd);
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#if defined(FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION) && defined(FUZZING_ASSERT_VALID_SEQUENCE)
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assert(!ZSTD_isError(oneSeqSize));
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ZSTD_assertValidSequence(dctx, op, oend, sequences[seqNb&STORED_SEQS_MASK], prefixStart, dictStart);
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@ -1988,8 +1852,7 @@ ZSTD_decompressSequencesLong_body(
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}
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/* last literal segment */
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if (dctx->litBufferLocation == ZSTD_split) /* first deplete literal buffer in dst, then copy litExtraBuffer */
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{
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if (dctx->litBufferLocation == ZSTD_split) { /* first deplete literal buffer in dst, then copy litExtraBuffer */
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size_t const lastLLSize = litBufferEnd - litPtr;
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RETURN_ERROR_IF(lastLLSize > (size_t)(oend - op), dstSize_tooSmall, "");
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if (op != NULL) {
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