kubernetes/vendor/google.golang.org/protobuf/internal/detrand/rand.go
RainbowMango 283d9f7483 Pin transitive dependencies:
pin dependency github.com/beorn7/perks from v1.0.0 to v1.0.1
pin dependency github.com/golang/protobuf from v1.3.3 to v1.4.2
pin denpendency github.com/json-iterator/go from v1.1.8 to v1.1.9
pin dependency github.com/prometheus/common from v0.4.1 to v0.9.1
pin dependency github.com/prometheus/procfs from v0.0.5 to v0.0.11
pin dependency github.com/alecthomas/template from v0.0.0-20160405071501-a0175ee3bccc to v0.0.0-20190718012654-fb15b899a751
pin dependency github.com/alecthomas/units from v0.0.0-20151022065526-2efee857e7cf to v0.0.0-20190717042225-c3de453c63f4
pin dependency github.com/go-kit/kit from v0.8.0 to v0.9.0
pin dependency github.com/go-logfmt/logfmt from v0.3.0 to v0.4.0

Co-Authored-By: Jordan Liggitt <jordan@liggitt.net>
2020-05-19 09:38:29 +08:00

62 lines
1.5 KiB
Go

// Copyright 2018 The Go Authors. All rights reserved.
// Use of this source code is governed by a BSD-style
// license that can be found in the LICENSE file.
// Package detrand provides deterministically random functionality.
//
// The pseudo-randomness of these functions is seeded by the program binary
// itself and guarantees that the output does not change within a program,
// while ensuring that the output is unstable across different builds.
package detrand
import (
"encoding/binary"
"hash/fnv"
"os"
)
// Disable disables detrand such that all functions returns the zero value.
// This function is not concurrent-safe and must be called during program init.
func Disable() {
randSeed = 0
}
// Bool returns a deterministically random boolean.
func Bool() bool {
return randSeed%2 == 1
}
// randSeed is a best-effort at an approximate hash of the Go binary.
var randSeed = binaryHash()
func binaryHash() uint64 {
// Open the Go binary.
s, err := os.Executable()
if err != nil {
return 0
}
f, err := os.Open(s)
if err != nil {
return 0
}
defer f.Close()
// Hash the size and several samples of the Go binary.
const numSamples = 8
var buf [64]byte
h := fnv.New64()
fi, err := f.Stat()
if err != nil {
return 0
}
binary.LittleEndian.PutUint64(buf[:8], uint64(fi.Size()))
h.Write(buf[:8])
for i := int64(0); i < numSamples; i++ {
if _, err := f.ReadAt(buf[:], i*fi.Size()/numSamples); err != nil {
return 0
}
h.Write(buf[:])
}
return h.Sum64()
}