mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
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136 lines
4.2 KiB
Go
136 lines
4.2 KiB
Go
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// Package zstd provides decompression of zstandard files.
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//
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// For advanced usage and examples, go to the README: https://github.com/klauspost/compress/tree/master/zstd#zstd
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package zstd
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import (
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"errors"
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"log"
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"math/bits"
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)
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const debug = false
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const debugSequences = false
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// force encoder to use predefined tables.
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const forcePreDef = false
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// zstdMinMatch is the minimum zstd match length.
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const zstdMinMatch = 3
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var (
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// ErrReservedBlockType is returned when a reserved block type is found.
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// Typically this indicates wrong or corrupted input.
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ErrReservedBlockType = errors.New("invalid input: reserved block type encountered")
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// ErrCompressedSizeTooBig is returned when a block is bigger than allowed.
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// Typically this indicates wrong or corrupted input.
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ErrCompressedSizeTooBig = errors.New("invalid input: compressed size too big")
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// ErrBlockTooSmall is returned when a block is too small to be decoded.
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// Typically returned on invalid input.
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ErrBlockTooSmall = errors.New("block too small")
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// ErrMagicMismatch is returned when a "magic" number isn't what is expected.
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// Typically this indicates wrong or corrupted input.
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ErrMagicMismatch = errors.New("invalid input: magic number mismatch")
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// ErrWindowSizeExceeded is returned when a reference exceeds the valid window size.
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// Typically this indicates wrong or corrupted input.
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ErrWindowSizeExceeded = errors.New("window size exceeded")
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// ErrWindowSizeTooSmall is returned when no window size is specified.
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// Typically this indicates wrong or corrupted input.
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ErrWindowSizeTooSmall = errors.New("invalid input: window size was too small")
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// ErrDecoderSizeExceeded is returned if decompressed size exceeds the configured limit.
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ErrDecoderSizeExceeded = errors.New("decompressed size exceeds configured limit")
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// ErrUnknownDictionary is returned if the dictionary ID is unknown.
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// For the time being dictionaries are not supported.
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ErrUnknownDictionary = errors.New("unknown dictionary")
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// ErrFrameSizeExceeded is returned if the stated frame size is exceeded.
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// This is only returned if SingleSegment is specified on the frame.
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ErrFrameSizeExceeded = errors.New("frame size exceeded")
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// ErrCRCMismatch is returned if CRC mismatches.
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ErrCRCMismatch = errors.New("CRC check failed")
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// ErrDecoderClosed will be returned if the Decoder was used after
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// Close has been called.
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ErrDecoderClosed = errors.New("decoder used after Close")
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)
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func println(a ...interface{}) {
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if debug {
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log.Println(a...)
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}
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}
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func printf(format string, a ...interface{}) {
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if debug {
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log.Printf(format, a...)
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}
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}
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// matchLen returns the maximum length.
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// a must be the shortest of the two.
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// The function also returns whether all bytes matched.
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func matchLen(a, b []byte) int {
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b = b[:len(a)]
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for i := 0; i < len(a)-7; i += 8 {
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if diff := load64(a, i) ^ load64(b, i); diff != 0 {
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return i + (bits.TrailingZeros64(diff) >> 3)
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}
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}
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checked := (len(a) >> 3) << 3
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a = a[checked:]
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b = b[checked:]
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// TODO: We could do a 4 check.
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for i := range a {
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if a[i] != b[i] {
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return int(i) + checked
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}
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}
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return len(a) + checked
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}
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// matchLen returns a match length in src between index s and t
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func matchLenIn(src []byte, s, t int32) int32 {
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s1 := len(src)
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b := src[t:]
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a := src[s:s1]
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b = b[:len(a)]
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// Extend the match to be as long as possible.
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for i := range a {
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if a[i] != b[i] {
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return int32(i)
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}
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}
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return int32(len(a))
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}
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func load3232(b []byte, i int32) uint32 {
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// Help the compiler eliminate bounds checks on the read so it can be done in a single read.
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b = b[i:]
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b = b[:4]
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return uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24
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}
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func load6432(b []byte, i int32) uint64 {
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// Help the compiler eliminate bounds checks on the read so it can be done in a single read.
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b = b[i:]
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b = b[:8]
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return uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 |
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uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56
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}
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func load64(b []byte, i int) uint64 {
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// Help the compiler eliminate bounds checks on the read so it can be done in a single read.
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b = b[i:]
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b = b[:8]
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return uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 |
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uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56
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}
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