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403 lines
11 KiB
403 lines
11 KiB
4 years ago
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// Copyright 2019+ Klaus Post. All rights reserved.
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// License information can be found in the LICENSE file.
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// Based on work by Yann Collet, released under BSD License.
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package zstd
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import (
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"errors"
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"fmt"
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"io"
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)
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type seq struct {
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litLen uint32
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matchLen uint32
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offset uint32
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// Codes are stored here for the encoder
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// so they only have to be looked up once.
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llCode, mlCode, ofCode uint8
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}
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func (s seq) String() string {
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if s.offset <= 3 {
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if s.offset == 0 {
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return fmt.Sprint("litLen:", s.litLen, ", matchLen:", s.matchLen+zstdMinMatch, ", offset: INVALID (0)")
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}
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return fmt.Sprint("litLen:", s.litLen, ", matchLen:", s.matchLen+zstdMinMatch, ", offset:", s.offset, " (repeat)")
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}
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return fmt.Sprint("litLen:", s.litLen, ", matchLen:", s.matchLen+zstdMinMatch, ", offset:", s.offset-3, " (new)")
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}
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type seqCompMode uint8
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const (
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compModePredefined seqCompMode = iota
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compModeRLE
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compModeFSE
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compModeRepeat
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)
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type sequenceDec struct {
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// decoder keeps track of the current state and updates it from the bitstream.
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fse *fseDecoder
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state fseState
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repeat bool
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}
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// init the state of the decoder with input from stream.
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func (s *sequenceDec) init(br *bitReader) error {
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if s.fse == nil {
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return errors.New("sequence decoder not defined")
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}
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s.state.init(br, s.fse.actualTableLog, s.fse.dt[:1<<s.fse.actualTableLog])
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return nil
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}
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// sequenceDecs contains all 3 sequence decoders and their state.
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type sequenceDecs struct {
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litLengths sequenceDec
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offsets sequenceDec
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matchLengths sequenceDec
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prevOffset [3]int
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hist []byte
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literals []byte
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out []byte
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maxBits uint8
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}
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// initialize all 3 decoders from the stream input.
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func (s *sequenceDecs) initialize(br *bitReader, hist *history, literals, out []byte) error {
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if err := s.litLengths.init(br); err != nil {
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return errors.New("litLengths:" + err.Error())
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}
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if err := s.offsets.init(br); err != nil {
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return errors.New("offsets:" + err.Error())
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}
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if err := s.matchLengths.init(br); err != nil {
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return errors.New("matchLengths:" + err.Error())
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}
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s.literals = literals
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s.hist = hist.b
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s.prevOffset = hist.recentOffsets
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s.maxBits = s.litLengths.fse.maxBits + s.offsets.fse.maxBits + s.matchLengths.fse.maxBits
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s.out = out
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return nil
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}
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// decode sequences from the stream with the provided history.
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func (s *sequenceDecs) decode(seqs int, br *bitReader, hist []byte) error {
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startSize := len(s.out)
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// Grab full sizes tables, to avoid bounds checks.
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llTable, mlTable, ofTable := s.litLengths.fse.dt[:maxTablesize], s.matchLengths.fse.dt[:maxTablesize], s.offsets.fse.dt[:maxTablesize]
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llState, mlState, ofState := s.litLengths.state.state, s.matchLengths.state.state, s.offsets.state.state
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for i := seqs - 1; i >= 0; i-- {
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if br.overread() {
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printf("reading sequence %d, exceeded available data\n", seqs-i)
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return io.ErrUnexpectedEOF
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}
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var litLen, matchOff, matchLen int
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if br.off > 4+((maxOffsetBits+16+16)>>3) {
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litLen, matchOff, matchLen = s.nextFast(br, llState, mlState, ofState)
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br.fillFast()
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} else {
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litLen, matchOff, matchLen = s.next(br, llState, mlState, ofState)
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br.fill()
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}
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if debugSequences {
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println("Seq", seqs-i-1, "Litlen:", litLen, "matchOff:", matchOff, "(abs) matchLen:", matchLen)
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}
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if litLen > len(s.literals) {
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return fmt.Errorf("unexpected literal count, want %d bytes, but only %d is available", litLen, len(s.literals))
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}
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size := litLen + matchLen + len(s.out)
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if size-startSize > maxBlockSize {
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return fmt.Errorf("output (%d) bigger than max block size", size)
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}
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if size > cap(s.out) {
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// Not enough size, will be extremely rarely triggered,
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// but could be if destination slice is too small for sync operations.
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// We add maxBlockSize to the capacity.
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s.out = append(s.out, make([]byte, maxBlockSize)...)
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s.out = s.out[:len(s.out)-maxBlockSize]
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}
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if matchLen > maxMatchLen {
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return fmt.Errorf("match len (%d) bigger than max allowed length", matchLen)
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}
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if matchOff > len(s.out)+len(hist)+litLen {
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return fmt.Errorf("match offset (%d) bigger than current history (%d)", matchOff, len(s.out)+len(hist)+litLen)
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}
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if matchOff == 0 && matchLen > 0 {
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return fmt.Errorf("zero matchoff and matchlen > 0")
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}
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s.out = append(s.out, s.literals[:litLen]...)
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s.literals = s.literals[litLen:]
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out := s.out
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// Copy from history.
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// TODO: Blocks without history could be made to ignore this completely.
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if v := matchOff - len(s.out); v > 0 {
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// v is the start position in history from end.
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start := len(s.hist) - v
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if matchLen > v {
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// Some goes into current block.
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// Copy remainder of history
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out = append(out, s.hist[start:]...)
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matchOff -= v
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matchLen -= v
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} else {
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out = append(out, s.hist[start:start+matchLen]...)
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matchLen = 0
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}
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}
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// We must be in current buffer now
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if matchLen > 0 {
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start := len(s.out) - matchOff
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if matchLen <= len(s.out)-start {
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// No overlap
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out = append(out, s.out[start:start+matchLen]...)
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} else {
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// Overlapping copy
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// Extend destination slice and copy one byte at the time.
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out = out[:len(out)+matchLen]
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src := out[start : start+matchLen]
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// Destination is the space we just added.
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dst := out[len(out)-matchLen:]
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dst = dst[:len(src)]
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for i := range src {
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dst[i] = src[i]
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}
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}
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}
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s.out = out
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if i == 0 {
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// This is the last sequence, so we shouldn't update state.
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break
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}
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// Manually inlined, ~ 5-20% faster
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// Update all 3 states at once. Approx 20% faster.
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nBits := llState.nbBits() + mlState.nbBits() + ofState.nbBits()
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if nBits == 0 {
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llState = llTable[llState.newState()&maxTableMask]
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mlState = mlTable[mlState.newState()&maxTableMask]
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ofState = ofTable[ofState.newState()&maxTableMask]
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} else {
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bits := br.getBitsFast(nBits)
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lowBits := uint16(bits >> ((ofState.nbBits() + mlState.nbBits()) & 31))
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llState = llTable[(llState.newState()+lowBits)&maxTableMask]
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lowBits = uint16(bits >> (ofState.nbBits() & 31))
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lowBits &= bitMask[mlState.nbBits()&15]
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mlState = mlTable[(mlState.newState()+lowBits)&maxTableMask]
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lowBits = uint16(bits) & bitMask[ofState.nbBits()&15]
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ofState = ofTable[(ofState.newState()+lowBits)&maxTableMask]
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}
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}
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// Add final literals
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s.out = append(s.out, s.literals...)
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return nil
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}
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// update states, at least 27 bits must be available.
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func (s *sequenceDecs) update(br *bitReader) {
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// Max 8 bits
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s.litLengths.state.next(br)
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// Max 9 bits
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s.matchLengths.state.next(br)
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// Max 8 bits
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s.offsets.state.next(br)
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}
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var bitMask [16]uint16
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func init() {
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for i := range bitMask[:] {
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bitMask[i] = uint16((1 << uint(i)) - 1)
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}
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}
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// update states, at least 27 bits must be available.
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func (s *sequenceDecs) updateAlt(br *bitReader) {
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// Update all 3 states at once. Approx 20% faster.
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a, b, c := s.litLengths.state.state, s.matchLengths.state.state, s.offsets.state.state
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nBits := a.nbBits() + b.nbBits() + c.nbBits()
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if nBits == 0 {
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s.litLengths.state.state = s.litLengths.state.dt[a.newState()]
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s.matchLengths.state.state = s.matchLengths.state.dt[b.newState()]
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s.offsets.state.state = s.offsets.state.dt[c.newState()]
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return
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}
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bits := br.getBitsFast(nBits)
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lowBits := uint16(bits >> ((c.nbBits() + b.nbBits()) & 31))
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s.litLengths.state.state = s.litLengths.state.dt[a.newState()+lowBits]
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lowBits = uint16(bits >> (c.nbBits() & 31))
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lowBits &= bitMask[b.nbBits()&15]
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s.matchLengths.state.state = s.matchLengths.state.dt[b.newState()+lowBits]
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lowBits = uint16(bits) & bitMask[c.nbBits()&15]
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s.offsets.state.state = s.offsets.state.dt[c.newState()+lowBits]
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}
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// nextFast will return new states when there are at least 4 unused bytes left on the stream when done.
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func (s *sequenceDecs) nextFast(br *bitReader, llState, mlState, ofState decSymbol) (ll, mo, ml int) {
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// Final will not read from stream.
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ll, llB := llState.final()
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ml, mlB := mlState.final()
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mo, moB := ofState.final()
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// extra bits are stored in reverse order.
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br.fillFast()
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mo += br.getBits(moB)
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if s.maxBits > 32 {
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br.fillFast()
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}
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ml += br.getBits(mlB)
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ll += br.getBits(llB)
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if moB > 1 {
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s.prevOffset[2] = s.prevOffset[1]
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s.prevOffset[1] = s.prevOffset[0]
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s.prevOffset[0] = mo
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return
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}
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// mo = s.adjustOffset(mo, ll, moB)
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// Inlined for rather big speedup
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if ll == 0 {
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// There is an exception though, when current sequence's literals_length = 0.
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// In this case, repeated offsets are shifted by one, so an offset_value of 1 means Repeated_Offset2,
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// an offset_value of 2 means Repeated_Offset3, and an offset_value of 3 means Repeated_Offset1 - 1_byte.
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mo++
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}
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if mo == 0 {
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mo = s.prevOffset[0]
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return
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}
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var temp int
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if mo == 3 {
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temp = s.prevOffset[0] - 1
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} else {
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temp = s.prevOffset[mo]
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}
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if temp == 0 {
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// 0 is not valid; input is corrupted; force offset to 1
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println("temp was 0")
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temp = 1
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}
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if mo != 1 {
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s.prevOffset[2] = s.prevOffset[1]
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}
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s.prevOffset[1] = s.prevOffset[0]
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s.prevOffset[0] = temp
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mo = temp
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return
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}
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func (s *sequenceDecs) next(br *bitReader, llState, mlState, ofState decSymbol) (ll, mo, ml int) {
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// Final will not read from stream.
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ll, llB := llState.final()
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ml, mlB := mlState.final()
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mo, moB := ofState.final()
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// extra bits are stored in reverse order.
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br.fill()
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if s.maxBits <= 32 {
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mo += br.getBits(moB)
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ml += br.getBits(mlB)
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ll += br.getBits(llB)
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} else {
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mo += br.getBits(moB)
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br.fill()
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// matchlength+literal length, max 32 bits
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ml += br.getBits(mlB)
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ll += br.getBits(llB)
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}
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mo = s.adjustOffset(mo, ll, moB)
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return
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}
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func (s *sequenceDecs) adjustOffset(offset, litLen int, offsetB uint8) int {
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if offsetB > 1 {
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s.prevOffset[2] = s.prevOffset[1]
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s.prevOffset[1] = s.prevOffset[0]
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s.prevOffset[0] = offset
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return offset
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}
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if litLen == 0 {
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// There is an exception though, when current sequence's literals_length = 0.
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// In this case, repeated offsets are shifted by one, so an offset_value of 1 means Repeated_Offset2,
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// an offset_value of 2 means Repeated_Offset3, and an offset_value of 3 means Repeated_Offset1 - 1_byte.
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offset++
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}
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if offset == 0 {
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return s.prevOffset[0]
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}
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var temp int
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if offset == 3 {
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temp = s.prevOffset[0] - 1
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} else {
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temp = s.prevOffset[offset]
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}
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if temp == 0 {
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// 0 is not valid; input is corrupted; force offset to 1
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println("temp was 0")
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temp = 1
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}
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if offset != 1 {
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s.prevOffset[2] = s.prevOffset[1]
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}
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s.prevOffset[1] = s.prevOffset[0]
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s.prevOffset[0] = temp
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return temp
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}
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// mergeHistory will merge history.
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func (s *sequenceDecs) mergeHistory(hist *sequenceDecs) (*sequenceDecs, error) {
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for i := uint(0); i < 3; i++ {
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var sNew, sHist *sequenceDec
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switch i {
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default:
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// same as "case 0":
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sNew = &s.litLengths
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sHist = &hist.litLengths
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case 1:
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sNew = &s.offsets
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sHist = &hist.offsets
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case 2:
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sNew = &s.matchLengths
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sHist = &hist.matchLengths
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}
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if sNew.repeat {
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if sHist.fse == nil {
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return nil, fmt.Errorf("sequence stream %d, repeat requested, but no history", i)
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}
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continue
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}
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if sNew.fse == nil {
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return nil, fmt.Errorf("sequence stream %d, no fse found", i)
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}
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if sHist.fse != nil && !sHist.fse.preDefined {
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fseDecoderPool.Put(sHist.fse)
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}
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sHist.fse = sNew.fse
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}
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return hist, nil
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}
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