github.com/AESNooper/go/src@v0.0.0-20220218095104-b56a4ab1bbbb/crypto/rand/rand_unix.go (about) 1 // Copyright 2010 The Go Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style 3 // license that can be found in the LICENSE file. 4 5 //go:build aix || darwin || dragonfly || freebsd || linux || netbsd || openbsd || plan9 || solaris 6 7 // Unix cryptographically secure pseudorandom number 8 // generator. 9 10 package rand 11 12 import ( 13 "bufio" 14 "crypto/aes" 15 "crypto/cipher" 16 "encoding/binary" 17 "io" 18 "os" 19 "runtime" 20 "sync" 21 "sync/atomic" 22 "time" 23 ) 24 25 const urandomDevice = "/dev/urandom" 26 27 // Easy implementation: read from /dev/urandom. 28 // This is sufficient on Linux, OS X, and FreeBSD. 29 30 func init() { 31 if runtime.GOOS == "plan9" { 32 Reader = newReader(nil) 33 } else { 34 Reader = &devReader{name: urandomDevice} 35 } 36 } 37 38 // A devReader satisfies reads by reading the file named name. 39 type devReader struct { 40 name string 41 f io.Reader 42 mu sync.Mutex 43 used int32 // atomic; whether this devReader has been used 44 } 45 46 // altGetRandom if non-nil specifies an OS-specific function to get 47 // urandom-style randomness. 48 var altGetRandom func([]byte) (ok bool) 49 50 func warnBlocked() { 51 println("crypto/rand: blocked for 60 seconds waiting to read random data from the kernel") 52 } 53 54 func (r *devReader) Read(b []byte) (n int, err error) { 55 if atomic.CompareAndSwapInt32(&r.used, 0, 1) { 56 // First use of randomness. Start timer to warn about 57 // being blocked on entropy not being available. 58 t := time.AfterFunc(60*time.Second, warnBlocked) 59 defer t.Stop() 60 } 61 if altGetRandom != nil && r.name == urandomDevice && altGetRandom(b) { 62 return len(b), nil 63 } 64 r.mu.Lock() 65 defer r.mu.Unlock() 66 if r.f == nil { 67 f, err := os.Open(r.name) 68 if f == nil { 69 return 0, err 70 } 71 if runtime.GOOS == "plan9" { 72 r.f = f 73 } else { 74 r.f = bufio.NewReader(hideAgainReader{f}) 75 } 76 } 77 return r.f.Read(b) 78 } 79 80 var isEAGAIN func(error) bool // set by eagain.go on unix systems 81 82 // hideAgainReader masks EAGAIN reads from /dev/urandom. 83 // See golang.org/issue/9205 84 type hideAgainReader struct { 85 r io.Reader 86 } 87 88 func (hr hideAgainReader) Read(p []byte) (n int, err error) { 89 n, err = hr.r.Read(p) 90 if err != nil && isEAGAIN != nil && isEAGAIN(err) { 91 err = nil 92 } 93 return 94 } 95 96 // Alternate pseudo-random implementation for use on 97 // systems without a reliable /dev/urandom. 98 99 // newReader returns a new pseudorandom generator that 100 // seeds itself by reading from entropy. If entropy == nil, 101 // the generator seeds itself by reading from the system's 102 // random number generator, typically /dev/random. 103 // The Read method on the returned reader always returns 104 // the full amount asked for, or else it returns an error. 105 // 106 // The generator uses the X9.31 algorithm with AES-128, 107 // reseeding after every 1 MB of generated data. 108 func newReader(entropy io.Reader) io.Reader { 109 if entropy == nil { 110 entropy = &devReader{name: "/dev/random"} 111 } 112 return &reader{entropy: entropy} 113 } 114 115 type reader struct { 116 mu sync.Mutex 117 budget int // number of bytes that can be generated 118 cipher cipher.Block 119 entropy io.Reader 120 time, seed, dst, key [aes.BlockSize]byte 121 } 122 123 func (r *reader) Read(b []byte) (n int, err error) { 124 r.mu.Lock() 125 defer r.mu.Unlock() 126 n = len(b) 127 128 for len(b) > 0 { 129 if r.budget == 0 { 130 _, err := io.ReadFull(r.entropy, r.seed[0:]) 131 if err != nil { 132 return n - len(b), err 133 } 134 _, err = io.ReadFull(r.entropy, r.key[0:]) 135 if err != nil { 136 return n - len(b), err 137 } 138 r.cipher, err = aes.NewCipher(r.key[0:]) 139 if err != nil { 140 return n - len(b), err 141 } 142 r.budget = 1 << 20 // reseed after generating 1MB 143 } 144 r.budget -= aes.BlockSize 145 146 // ANSI X9.31 (== X9.17) algorithm, but using AES in place of 3DES. 147 // 148 // single block: 149 // t = encrypt(time) 150 // dst = encrypt(t^seed) 151 // seed = encrypt(t^dst) 152 ns := time.Now().UnixNano() 153 binary.BigEndian.PutUint64(r.time[:], uint64(ns)) 154 r.cipher.Encrypt(r.time[0:], r.time[0:]) 155 for i := 0; i < aes.BlockSize; i++ { 156 r.dst[i] = r.time[i] ^ r.seed[i] 157 } 158 r.cipher.Encrypt(r.dst[0:], r.dst[0:]) 159 for i := 0; i < aes.BlockSize; i++ { 160 r.seed[i] = r.time[i] ^ r.dst[i] 161 } 162 r.cipher.Encrypt(r.seed[0:], r.seed[0:]) 163 164 m := copy(b, r.dst[0:]) 165 b = b[m:] 166 } 167 168 return n, nil 169 }