forked from forgejo/forgejo
Vendor Update Go Libs (#13166)
* update github.com/alecthomas/chroma v0.8.0 -> v0.8.1 * github.com/blevesearch/bleve v1.0.10 -> v1.0.12 * editorconfig-core-go v2.1.1 -> v2.3.7 * github.com/gliderlabs/ssh v0.2.2 -> v0.3.1 * migrate editorconfig.ParseBytes to Parse * github.com/shurcooL/vfsgen to 0d455de96546 * github.com/go-git/go-git/v5 v5.1.0 -> v5.2.0 * github.com/google/uuid v1.1.1 -> v1.1.2 * github.com/huandu/xstrings v1.3.0 -> v1.3.2 * github.com/klauspost/compress v1.10.11 -> v1.11.1 * github.com/markbates/goth v1.61.2 -> v1.65.0 * github.com/mattn/go-sqlite3 v1.14.0 -> v1.14.4 * github.com/mholt/archiver v3.3.0 -> v3.3.2 * github.com/microcosm-cc/bluemonday 4f7140c49acb -> v1.0.4 * github.com/minio/minio-go v7.0.4 -> v7.0.5 * github.com/olivere/elastic v7.0.9 -> v7.0.20 * github.com/urfave/cli v1.20.0 -> v1.22.4 * github.com/prometheus/client_golang v1.1.0 -> v1.8.0 * github.com/xanzy/go-gitlab v0.37.0 -> v0.38.1 * mvdan.cc/xurls v2.1.0 -> v2.2.0 Co-authored-by: Lauris BH <lauris@nix.lv>
This commit is contained in:
parent
91f2afdb54
commit
12a1f914f4
656 changed files with 52967 additions and 25229 deletions
8
vendor/github.com/cespare/xxhash/v2/.travis.yml
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vendor/github.com/cespare/xxhash/v2/.travis.yml
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language: go
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go:
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- "1.x"
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- master
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env:
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- TAGS=""
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- TAGS="-tags purego"
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script: go test $TAGS -v ./...
|
22
vendor/github.com/cespare/xxhash/v2/LICENSE.txt
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vendor/github.com/cespare/xxhash/v2/LICENSE.txt
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@ -0,0 +1,22 @@
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Copyright (c) 2016 Caleb Spare
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MIT License
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||||
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||||
Permission is hereby granted, free of charge, to any person obtaining
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a copy of this software and associated documentation files (the
|
||||
"Software"), to deal in the Software without restriction, including
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without limitation the rights to use, copy, modify, merge, publish,
|
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distribute, sublicense, and/or sell copies of the Software, and to
|
||||
permit persons to whom the Software is furnished to do so, subject to
|
||||
the following conditions:
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||||
|
||||
The above copyright notice and this permission notice shall be
|
||||
included in all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
|
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EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
|
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MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
|
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LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
|
67
vendor/github.com/cespare/xxhash/v2/README.md
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vendor/github.com/cespare/xxhash/v2/README.md
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# xxhash
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[](https://godoc.org/github.com/cespare/xxhash)
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[](https://travis-ci.org/cespare/xxhash)
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xxhash is a Go implementation of the 64-bit
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[xxHash](http://cyan4973.github.io/xxHash/) algorithm, XXH64. This is a
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high-quality hashing algorithm that is much faster than anything in the Go
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standard library.
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This package provides a straightforward API:
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```
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func Sum64(b []byte) uint64
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func Sum64String(s string) uint64
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type Digest struct{ ... }
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func New() *Digest
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```
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The `Digest` type implements hash.Hash64. Its key methods are:
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```
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func (*Digest) Write([]byte) (int, error)
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func (*Digest) WriteString(string) (int, error)
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func (*Digest) Sum64() uint64
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```
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This implementation provides a fast pure-Go implementation and an even faster
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assembly implementation for amd64.
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## Compatibility
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This package is in a module and the latest code is in version 2 of the module.
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You need a version of Go with at least "minimal module compatibility" to use
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github.com/cespare/xxhash/v2:
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* 1.9.7+ for Go 1.9
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* 1.10.3+ for Go 1.10
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* Go 1.11 or later
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I recommend using the latest release of Go.
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## Benchmarks
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Here are some quick benchmarks comparing the pure-Go and assembly
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implementations of Sum64.
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| input size | purego | asm |
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| --- | --- | --- |
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| 5 B | 979.66 MB/s | 1291.17 MB/s |
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| 100 B | 7475.26 MB/s | 7973.40 MB/s |
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| 4 KB | 17573.46 MB/s | 17602.65 MB/s |
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| 10 MB | 17131.46 MB/s | 17142.16 MB/s |
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These numbers were generated on Ubuntu 18.04 with an Intel i7-8700K CPU using
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the following commands under Go 1.11.2:
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```
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$ go test -tags purego -benchtime 10s -bench '/xxhash,direct,bytes'
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$ go test -benchtime 10s -bench '/xxhash,direct,bytes'
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```
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## Projects using this package
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- [InfluxDB](https://github.com/influxdata/influxdb)
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- [Prometheus](https://github.com/prometheus/prometheus)
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- [FreeCache](https://github.com/coocood/freecache)
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3
vendor/github.com/cespare/xxhash/v2/go.mod
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vendor/github.com/cespare/xxhash/v2/go.mod
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module github.com/cespare/xxhash/v2
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go 1.11
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0
vendor/github.com/cespare/xxhash/v2/go.sum
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vendor/github.com/cespare/xxhash/v2/go.sum
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236
vendor/github.com/cespare/xxhash/v2/xxhash.go
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vendor/github.com/cespare/xxhash/v2/xxhash.go
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// Package xxhash implements the 64-bit variant of xxHash (XXH64) as described
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// at http://cyan4973.github.io/xxHash/.
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package xxhash
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import (
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"encoding/binary"
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"errors"
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"math/bits"
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)
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const (
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prime1 uint64 = 11400714785074694791
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prime2 uint64 = 14029467366897019727
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prime3 uint64 = 1609587929392839161
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prime4 uint64 = 9650029242287828579
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prime5 uint64 = 2870177450012600261
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)
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// NOTE(caleb): I'm using both consts and vars of the primes. Using consts where
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// possible in the Go code is worth a small (but measurable) performance boost
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// by avoiding some MOVQs. Vars are needed for the asm and also are useful for
|
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// convenience in the Go code in a few places where we need to intentionally
|
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// avoid constant arithmetic (e.g., v1 := prime1 + prime2 fails because the
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// result overflows a uint64).
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var (
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prime1v = prime1
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prime2v = prime2
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prime3v = prime3
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prime4v = prime4
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prime5v = prime5
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)
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// Digest implements hash.Hash64.
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type Digest struct {
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v1 uint64
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v2 uint64
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v3 uint64
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v4 uint64
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total uint64
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mem [32]byte
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n int // how much of mem is used
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}
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// New creates a new Digest that computes the 64-bit xxHash algorithm.
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func New() *Digest {
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var d Digest
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d.Reset()
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return &d
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}
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// Reset clears the Digest's state so that it can be reused.
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func (d *Digest) Reset() {
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d.v1 = prime1v + prime2
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d.v2 = prime2
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d.v3 = 0
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d.v4 = -prime1v
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d.total = 0
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d.n = 0
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}
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// Size always returns 8 bytes.
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func (d *Digest) Size() int { return 8 }
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// BlockSize always returns 32 bytes.
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func (d *Digest) BlockSize() int { return 32 }
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// Write adds more data to d. It always returns len(b), nil.
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func (d *Digest) Write(b []byte) (n int, err error) {
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n = len(b)
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d.total += uint64(n)
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if d.n+n < 32 {
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// This new data doesn't even fill the current block.
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copy(d.mem[d.n:], b)
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d.n += n
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return
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}
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if d.n > 0 {
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// Finish off the partial block.
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copy(d.mem[d.n:], b)
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d.v1 = round(d.v1, u64(d.mem[0:8]))
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d.v2 = round(d.v2, u64(d.mem[8:16]))
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d.v3 = round(d.v3, u64(d.mem[16:24]))
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d.v4 = round(d.v4, u64(d.mem[24:32]))
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b = b[32-d.n:]
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d.n = 0
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}
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if len(b) >= 32 {
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// One or more full blocks left.
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nw := writeBlocks(d, b)
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b = b[nw:]
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}
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// Store any remaining partial block.
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copy(d.mem[:], b)
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d.n = len(b)
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return
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}
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// Sum appends the current hash to b and returns the resulting slice.
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func (d *Digest) Sum(b []byte) []byte {
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s := d.Sum64()
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return append(
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b,
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byte(s>>56),
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byte(s>>48),
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byte(s>>40),
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byte(s>>32),
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byte(s>>24),
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byte(s>>16),
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byte(s>>8),
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byte(s),
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)
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}
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|
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// Sum64 returns the current hash.
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func (d *Digest) Sum64() uint64 {
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var h uint64
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if d.total >= 32 {
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v1, v2, v3, v4 := d.v1, d.v2, d.v3, d.v4
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h = rol1(v1) + rol7(v2) + rol12(v3) + rol18(v4)
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h = mergeRound(h, v1)
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h = mergeRound(h, v2)
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h = mergeRound(h, v3)
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h = mergeRound(h, v4)
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} else {
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h = d.v3 + prime5
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}
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h += d.total
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i, end := 0, d.n
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for ; i+8 <= end; i += 8 {
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k1 := round(0, u64(d.mem[i:i+8]))
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h ^= k1
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h = rol27(h)*prime1 + prime4
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}
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if i+4 <= end {
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h ^= uint64(u32(d.mem[i:i+4])) * prime1
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h = rol23(h)*prime2 + prime3
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i += 4
|
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}
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for i < end {
|
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h ^= uint64(d.mem[i]) * prime5
|
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h = rol11(h) * prime1
|
||||
i++
|
||||
}
|
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|
||||
h ^= h >> 33
|
||||
h *= prime2
|
||||
h ^= h >> 29
|
||||
h *= prime3
|
||||
h ^= h >> 32
|
||||
|
||||
return h
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||||
}
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||||
|
||||
const (
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||||
magic = "xxh\x06"
|
||||
marshaledSize = len(magic) + 8*5 + 32
|
||||
)
|
||||
|
||||
// MarshalBinary implements the encoding.BinaryMarshaler interface.
|
||||
func (d *Digest) MarshalBinary() ([]byte, error) {
|
||||
b := make([]byte, 0, marshaledSize)
|
||||
b = append(b, magic...)
|
||||
b = appendUint64(b, d.v1)
|
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b = appendUint64(b, d.v2)
|
||||
b = appendUint64(b, d.v3)
|
||||
b = appendUint64(b, d.v4)
|
||||
b = appendUint64(b, d.total)
|
||||
b = append(b, d.mem[:d.n]...)
|
||||
b = b[:len(b)+len(d.mem)-d.n]
|
||||
return b, nil
|
||||
}
|
||||
|
||||
// UnmarshalBinary implements the encoding.BinaryUnmarshaler interface.
|
||||
func (d *Digest) UnmarshalBinary(b []byte) error {
|
||||
if len(b) < len(magic) || string(b[:len(magic)]) != magic {
|
||||
return errors.New("xxhash: invalid hash state identifier")
|
||||
}
|
||||
if len(b) != marshaledSize {
|
||||
return errors.New("xxhash: invalid hash state size")
|
||||
}
|
||||
b = b[len(magic):]
|
||||
b, d.v1 = consumeUint64(b)
|
||||
b, d.v2 = consumeUint64(b)
|
||||
b, d.v3 = consumeUint64(b)
|
||||
b, d.v4 = consumeUint64(b)
|
||||
b, d.total = consumeUint64(b)
|
||||
copy(d.mem[:], b)
|
||||
b = b[len(d.mem):]
|
||||
d.n = int(d.total % uint64(len(d.mem)))
|
||||
return nil
|
||||
}
|
||||
|
||||
func appendUint64(b []byte, x uint64) []byte {
|
||||
var a [8]byte
|
||||
binary.LittleEndian.PutUint64(a[:], x)
|
||||
return append(b, a[:]...)
|
||||
}
|
||||
|
||||
func consumeUint64(b []byte) ([]byte, uint64) {
|
||||
x := u64(b)
|
||||
return b[8:], x
|
||||
}
|
||||
|
||||
func u64(b []byte) uint64 { return binary.LittleEndian.Uint64(b) }
|
||||
func u32(b []byte) uint32 { return binary.LittleEndian.Uint32(b) }
|
||||
|
||||
func round(acc, input uint64) uint64 {
|
||||
acc += input * prime2
|
||||
acc = rol31(acc)
|
||||
acc *= prime1
|
||||
return acc
|
||||
}
|
||||
|
||||
func mergeRound(acc, val uint64) uint64 {
|
||||
val = round(0, val)
|
||||
acc ^= val
|
||||
acc = acc*prime1 + prime4
|
||||
return acc
|
||||
}
|
||||
|
||||
func rol1(x uint64) uint64 { return bits.RotateLeft64(x, 1) }
|
||||
func rol7(x uint64) uint64 { return bits.RotateLeft64(x, 7) }
|
||||
func rol11(x uint64) uint64 { return bits.RotateLeft64(x, 11) }
|
||||
func rol12(x uint64) uint64 { return bits.RotateLeft64(x, 12) }
|
||||
func rol18(x uint64) uint64 { return bits.RotateLeft64(x, 18) }
|
||||
func rol23(x uint64) uint64 { return bits.RotateLeft64(x, 23) }
|
||||
func rol27(x uint64) uint64 { return bits.RotateLeft64(x, 27) }
|
||||
func rol31(x uint64) uint64 { return bits.RotateLeft64(x, 31) }
|
13
vendor/github.com/cespare/xxhash/v2/xxhash_amd64.go
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13
vendor/github.com/cespare/xxhash/v2/xxhash_amd64.go
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|||
// +build !appengine
|
||||
// +build gc
|
||||
// +build !purego
|
||||
|
||||
package xxhash
|
||||
|
||||
// Sum64 computes the 64-bit xxHash digest of b.
|
||||
//
|
||||
//go:noescape
|
||||
func Sum64(b []byte) uint64
|
||||
|
||||
//go:noescape
|
||||
func writeBlocks(d *Digest, b []byte) int
|
215
vendor/github.com/cespare/xxhash/v2/xxhash_amd64.s
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215
vendor/github.com/cespare/xxhash/v2/xxhash_amd64.s
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|
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|
|||
// +build !appengine
|
||||
// +build gc
|
||||
// +build !purego
|
||||
|
||||
#include "textflag.h"
|
||||
|
||||
// Register allocation:
|
||||
// AX h
|
||||
// CX pointer to advance through b
|
||||
// DX n
|
||||
// BX loop end
|
||||
// R8 v1, k1
|
||||
// R9 v2
|
||||
// R10 v3
|
||||
// R11 v4
|
||||
// R12 tmp
|
||||
// R13 prime1v
|
||||
// R14 prime2v
|
||||
// R15 prime4v
|
||||
|
||||
// round reads from and advances the buffer pointer in CX.
|
||||
// It assumes that R13 has prime1v and R14 has prime2v.
|
||||
#define round(r) \
|
||||
MOVQ (CX), R12 \
|
||||
ADDQ $8, CX \
|
||||
IMULQ R14, R12 \
|
||||
ADDQ R12, r \
|
||||
ROLQ $31, r \
|
||||
IMULQ R13, r
|
||||
|
||||
// mergeRound applies a merge round on the two registers acc and val.
|
||||
// It assumes that R13 has prime1v, R14 has prime2v, and R15 has prime4v.
|
||||
#define mergeRound(acc, val) \
|
||||
IMULQ R14, val \
|
||||
ROLQ $31, val \
|
||||
IMULQ R13, val \
|
||||
XORQ val, acc \
|
||||
IMULQ R13, acc \
|
||||
ADDQ R15, acc
|
||||
|
||||
// func Sum64(b []byte) uint64
|
||||
TEXT ·Sum64(SB), NOSPLIT, $0-32
|
||||
// Load fixed primes.
|
||||
MOVQ ·prime1v(SB), R13
|
||||
MOVQ ·prime2v(SB), R14
|
||||
MOVQ ·prime4v(SB), R15
|
||||
|
||||
// Load slice.
|
||||
MOVQ b_base+0(FP), CX
|
||||
MOVQ b_len+8(FP), DX
|
||||
LEAQ (CX)(DX*1), BX
|
||||
|
||||
// The first loop limit will be len(b)-32.
|
||||
SUBQ $32, BX
|
||||
|
||||
// Check whether we have at least one block.
|
||||
CMPQ DX, $32
|
||||
JLT noBlocks
|
||||
|
||||
// Set up initial state (v1, v2, v3, v4).
|
||||
MOVQ R13, R8
|
||||
ADDQ R14, R8
|
||||
MOVQ R14, R9
|
||||
XORQ R10, R10
|
||||
XORQ R11, R11
|
||||
SUBQ R13, R11
|
||||
|
||||
// Loop until CX > BX.
|
||||
blockLoop:
|
||||
round(R8)
|
||||
round(R9)
|
||||
round(R10)
|
||||
round(R11)
|
||||
|
||||
CMPQ CX, BX
|
||||
JLE blockLoop
|
||||
|
||||
MOVQ R8, AX
|
||||
ROLQ $1, AX
|
||||
MOVQ R9, R12
|
||||
ROLQ $7, R12
|
||||
ADDQ R12, AX
|
||||
MOVQ R10, R12
|
||||
ROLQ $12, R12
|
||||
ADDQ R12, AX
|
||||
MOVQ R11, R12
|
||||
ROLQ $18, R12
|
||||
ADDQ R12, AX
|
||||
|
||||
mergeRound(AX, R8)
|
||||
mergeRound(AX, R9)
|
||||
mergeRound(AX, R10)
|
||||
mergeRound(AX, R11)
|
||||
|
||||
JMP afterBlocks
|
||||
|
||||
noBlocks:
|
||||
MOVQ ·prime5v(SB), AX
|
||||
|
||||
afterBlocks:
|
||||
ADDQ DX, AX
|
||||
|
||||
// Right now BX has len(b)-32, and we want to loop until CX > len(b)-8.
|
||||
ADDQ $24, BX
|
||||
|
||||
CMPQ CX, BX
|
||||
JG fourByte
|
||||
|
||||
wordLoop:
|
||||
// Calculate k1.
|
||||
MOVQ (CX), R8
|
||||
ADDQ $8, CX
|
||||
IMULQ R14, R8
|
||||
ROLQ $31, R8
|
||||
IMULQ R13, R8
|
||||
|
||||
XORQ R8, AX
|
||||
ROLQ $27, AX
|
||||
IMULQ R13, AX
|
||||
ADDQ R15, AX
|
||||
|
||||
CMPQ CX, BX
|
||||
JLE wordLoop
|
||||
|
||||
fourByte:
|
||||
ADDQ $4, BX
|
||||
CMPQ CX, BX
|
||||
JG singles
|
||||
|
||||
MOVL (CX), R8
|
||||
ADDQ $4, CX
|
||||
IMULQ R13, R8
|
||||
XORQ R8, AX
|
||||
|
||||
ROLQ $23, AX
|
||||
IMULQ R14, AX
|
||||
ADDQ ·prime3v(SB), AX
|
||||
|
||||
singles:
|
||||
ADDQ $4, BX
|
||||
CMPQ CX, BX
|
||||
JGE finalize
|
||||
|
||||
singlesLoop:
|
||||
MOVBQZX (CX), R12
|
||||
ADDQ $1, CX
|
||||
IMULQ ·prime5v(SB), R12
|
||||
XORQ R12, AX
|
||||
|
||||
ROLQ $11, AX
|
||||
IMULQ R13, AX
|
||||
|
||||
CMPQ CX, BX
|
||||
JL singlesLoop
|
||||
|
||||
finalize:
|
||||
MOVQ AX, R12
|
||||
SHRQ $33, R12
|
||||
XORQ R12, AX
|
||||
IMULQ R14, AX
|
||||
MOVQ AX, R12
|
||||
SHRQ $29, R12
|
||||
XORQ R12, AX
|
||||
IMULQ ·prime3v(SB), AX
|
||||
MOVQ AX, R12
|
||||
SHRQ $32, R12
|
||||
XORQ R12, AX
|
||||
|
||||
MOVQ AX, ret+24(FP)
|
||||
RET
|
||||
|
||||
// writeBlocks uses the same registers as above except that it uses AX to store
|
||||
// the d pointer.
|
||||
|
||||
// func writeBlocks(d *Digest, b []byte) int
|
||||
TEXT ·writeBlocks(SB), NOSPLIT, $0-40
|
||||
// Load fixed primes needed for round.
|
||||
MOVQ ·prime1v(SB), R13
|
||||
MOVQ ·prime2v(SB), R14
|
||||
|
||||
// Load slice.
|
||||
MOVQ b_base+8(FP), CX
|
||||
MOVQ b_len+16(FP), DX
|
||||
LEAQ (CX)(DX*1), BX
|
||||
SUBQ $32, BX
|
||||
|
||||
// Load vN from d.
|
||||
MOVQ d+0(FP), AX
|
||||
MOVQ 0(AX), R8 // v1
|
||||
MOVQ 8(AX), R9 // v2
|
||||
MOVQ 16(AX), R10 // v3
|
||||
MOVQ 24(AX), R11 // v4
|
||||
|
||||
// We don't need to check the loop condition here; this function is
|
||||
// always called with at least one block of data to process.
|
||||
blockLoop:
|
||||
round(R8)
|
||||
round(R9)
|
||||
round(R10)
|
||||
round(R11)
|
||||
|
||||
CMPQ CX, BX
|
||||
JLE blockLoop
|
||||
|
||||
// Copy vN back to d.
|
||||
MOVQ R8, 0(AX)
|
||||
MOVQ R9, 8(AX)
|
||||
MOVQ R10, 16(AX)
|
||||
MOVQ R11, 24(AX)
|
||||
|
||||
// The number of bytes written is CX minus the old base pointer.
|
||||
SUBQ b_base+8(FP), CX
|
||||
MOVQ CX, ret+32(FP)
|
||||
|
||||
RET
|
76
vendor/github.com/cespare/xxhash/v2/xxhash_other.go
generated
vendored
Normal file
76
vendor/github.com/cespare/xxhash/v2/xxhash_other.go
generated
vendored
Normal file
|
@ -0,0 +1,76 @@
|
|||
// +build !amd64 appengine !gc purego
|
||||
|
||||
package xxhash
|
||||
|
||||
// Sum64 computes the 64-bit xxHash digest of b.
|
||||
func Sum64(b []byte) uint64 {
|
||||
// A simpler version would be
|
||||
// d := New()
|
||||
// d.Write(b)
|
||||
// return d.Sum64()
|
||||
// but this is faster, particularly for small inputs.
|
||||
|
||||
n := len(b)
|
||||
var h uint64
|
||||
|
||||
if n >= 32 {
|
||||
v1 := prime1v + prime2
|
||||
v2 := prime2
|
||||
v3 := uint64(0)
|
||||
v4 := -prime1v
|
||||
for len(b) >= 32 {
|
||||
v1 = round(v1, u64(b[0:8:len(b)]))
|
||||
v2 = round(v2, u64(b[8:16:len(b)]))
|
||||
v3 = round(v3, u64(b[16:24:len(b)]))
|
||||
v4 = round(v4, u64(b[24:32:len(b)]))
|
||||
b = b[32:len(b):len(b)]
|
||||
}
|
||||
h = rol1(v1) + rol7(v2) + rol12(v3) + rol18(v4)
|
||||
h = mergeRound(h, v1)
|
||||
h = mergeRound(h, v2)
|
||||
h = mergeRound(h, v3)
|
||||
h = mergeRound(h, v4)
|
||||
} else {
|
||||
h = prime5
|
||||
}
|
||||
|
||||
h += uint64(n)
|
||||
|
||||
i, end := 0, len(b)
|
||||
for ; i+8 <= end; i += 8 {
|
||||
k1 := round(0, u64(b[i:i+8:len(b)]))
|
||||
h ^= k1
|
||||
h = rol27(h)*prime1 + prime4
|
||||
}
|
||||
if i+4 <= end {
|
||||
h ^= uint64(u32(b[i:i+4:len(b)])) * prime1
|
||||
h = rol23(h)*prime2 + prime3
|
||||
i += 4
|
||||
}
|
||||
for ; i < end; i++ {
|
||||
h ^= uint64(b[i]) * prime5
|
||||
h = rol11(h) * prime1
|
||||
}
|
||||
|
||||
h ^= h >> 33
|
||||
h *= prime2
|
||||
h ^= h >> 29
|
||||
h *= prime3
|
||||
h ^= h >> 32
|
||||
|
||||
return h
|
||||
}
|
||||
|
||||
func writeBlocks(d *Digest, b []byte) int {
|
||||
v1, v2, v3, v4 := d.v1, d.v2, d.v3, d.v4
|
||||
n := len(b)
|
||||
for len(b) >= 32 {
|
||||
v1 = round(v1, u64(b[0:8:len(b)]))
|
||||
v2 = round(v2, u64(b[8:16:len(b)]))
|
||||
v3 = round(v3, u64(b[16:24:len(b)]))
|
||||
v4 = round(v4, u64(b[24:32:len(b)]))
|
||||
b = b[32:len(b):len(b)]
|
||||
}
|
||||
d.v1, d.v2, d.v3, d.v4 = v1, v2, v3, v4
|
||||
return n - len(b)
|
||||
}
|
15
vendor/github.com/cespare/xxhash/v2/xxhash_safe.go
generated
vendored
Normal file
15
vendor/github.com/cespare/xxhash/v2/xxhash_safe.go
generated
vendored
Normal file
|
@ -0,0 +1,15 @@
|
|||
// +build appengine
|
||||
|
||||
// This file contains the safe implementations of otherwise unsafe-using code.
|
||||
|
||||
package xxhash
|
||||
|
||||
// Sum64String computes the 64-bit xxHash digest of s.
|
||||
func Sum64String(s string) uint64 {
|
||||
return Sum64([]byte(s))
|
||||
}
|
||||
|
||||
// WriteString adds more data to d. It always returns len(s), nil.
|
||||
func (d *Digest) WriteString(s string) (n int, err error) {
|
||||
return d.Write([]byte(s))
|
||||
}
|
46
vendor/github.com/cespare/xxhash/v2/xxhash_unsafe.go
generated
vendored
Normal file
46
vendor/github.com/cespare/xxhash/v2/xxhash_unsafe.go
generated
vendored
Normal file
|
@ -0,0 +1,46 @@
|
|||
// +build !appengine
|
||||
|
||||
// This file encapsulates usage of unsafe.
|
||||
// xxhash_safe.go contains the safe implementations.
|
||||
|
||||
package xxhash
|
||||
|
||||
import (
|
||||
"reflect"
|
||||
"unsafe"
|
||||
)
|
||||
|
||||
// Notes:
|
||||
//
|
||||
// See https://groups.google.com/d/msg/golang-nuts/dcjzJy-bSpw/tcZYBzQqAQAJ
|
||||
// for some discussion about these unsafe conversions.
|
||||
//
|
||||
// In the future it's possible that compiler optimizations will make these
|
||||
// unsafe operations unnecessary: https://golang.org/issue/2205.
|
||||
//
|
||||
// Both of these wrapper functions still incur function call overhead since they
|
||||
// will not be inlined. We could write Go/asm copies of Sum64 and Digest.Write
|
||||
// for strings to squeeze out a bit more speed. Mid-stack inlining should
|
||||
// eventually fix this.
|
||||
|
||||
// Sum64String computes the 64-bit xxHash digest of s.
|
||||
// It may be faster than Sum64([]byte(s)) by avoiding a copy.
|
||||
func Sum64String(s string) uint64 {
|
||||
var b []byte
|
||||
bh := (*reflect.SliceHeader)(unsafe.Pointer(&b))
|
||||
bh.Data = (*reflect.StringHeader)(unsafe.Pointer(&s)).Data
|
||||
bh.Len = len(s)
|
||||
bh.Cap = len(s)
|
||||
return Sum64(b)
|
||||
}
|
||||
|
||||
// WriteString adds more data to d. It always returns len(s), nil.
|
||||
// It may be faster than Write([]byte(s)) by avoiding a copy.
|
||||
func (d *Digest) WriteString(s string) (n int, err error) {
|
||||
var b []byte
|
||||
bh := (*reflect.SliceHeader)(unsafe.Pointer(&b))
|
||||
bh.Data = (*reflect.StringHeader)(unsafe.Pointer(&s)).Data
|
||||
bh.Len = len(s)
|
||||
bh.Cap = len(s)
|
||||
return d.Write(b)
|
||||
}
|
Loading…
Add table
Add a link
Reference in a new issue