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@@ -9,10 +9,7 @@
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package rand
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import (
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- "crypto/md5"
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cryptoRand "crypto/rand"
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- "encoding/binary"
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- "io"
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mathRand "math/rand"
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"reflect"
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)
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@@ -20,16 +17,16 @@ import (
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// Reader is the standard crypto/rand.Reader, re-exported for convenience
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var Reader = cryptoRand.Reader
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-// randomCharset contains the characters that can make up a randomString().
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+// randomCharset contains the characters that can make up a rand.String().
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const randomCharset = "2345679abcdefghijkmnopqrstuvwxyzACDEFGHJKLMNPQRSTUVWXYZ"
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var (
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// defaultSecureSource is a concurrency safe math/rand.Source with a
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// cryptographically sound base.
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- defaltSecureSource = newSecureSource()
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+ defaultSecureSource = newSecureSource()
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// defaultSecureRand is a math/rand.Rand based on the secure source.
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- defaultSecureRand = mathRand.New(defaltSecureSource)
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+ defaultSecureRand = mathRand.New(defaultSecureSource)
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)
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// String returns a strongly random string of characters (taken from
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@@ -43,19 +40,14 @@ func String(l int) string {
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return string(bs)
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}
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-// Int63 returns a strongly random int63
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+// Int63 returns a strongly random int63.
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func Int63() int64 {
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- return defaltSecureSource.Int63()
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+ return defaultSecureSource.Int63()
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}
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-// Int64 returns a strongly random int64
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+// Int64 returns a strongly random int64.
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func Int64() int64 {
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- var bs [8]byte
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- _, err := io.ReadFull(cryptoRand.Reader, bs[:])
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- if err != nil {
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- panic("randomness failure: " + err.Error())
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- }
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- return int64(binary.BigEndian.Uint64(bs[:]))
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+ return int64(defaultSecureSource.Uint64())
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}
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// Intn returns, as an int, a non-negative strongly random number in [0,n).
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@@ -64,18 +56,7 @@ func Intn(n int) int {
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return defaultSecureRand.Intn(n)
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}
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-// SeedFromBytes calculates a weak 64 bit hash from the given byte slice,
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-// suitable for use a predictable random seed.
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-func SeedFromBytes(bs []byte) int64 {
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- h := md5.New()
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- h.Write(bs)
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- s := h.Sum(nil)
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- // The MD5 hash of the byte slice is 16 bytes long. We interpret it as two
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- // uint64s and XOR them together.
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- return int64(binary.BigEndian.Uint64(s[0:]) ^ binary.BigEndian.Uint64(s[8:]))
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-}
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-
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-// Shuffle the order of elements
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+// Shuffle the order of elements in slice.
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func Shuffle(slice interface{}) {
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rv := reflect.ValueOf(slice)
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swap := reflect.Swapper(slice)
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