2017-02-09 00:07:33 +00:00
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package seed
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import (
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crand "crypto/rand"
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"fmt"
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"math"
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"math/big"
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"math/rand"
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"sync"
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"sync/atomic"
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"time"
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)
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var (
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m sync.Mutex
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secure int32
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seeded int32
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)
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func cryptoSeed() error {
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defer atomic.StoreInt32(&seeded, 1)
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var err error
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var n *big.Int
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n, err = crand.Int(crand.Reader, big.NewInt(math.MaxInt64))
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if err != nil {
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rand.Seed(time.Now().UTC().UnixNano())
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return err
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}
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rand.Seed(n.Int64())
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atomic.StoreInt32(&secure, 1)
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return nil
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}
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// Init provides best-effort seeding (which is better than running with Go's
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// default seed of 1). If `/dev/urandom` is available, Init() will seed Go's
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// runtime with entropy from `/dev/urandom` and return true because the runtime
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// was securely seeded. If Init() has already initialized the random number or
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// it had failed to securely initialize the random number generation, Init()
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// will return false. See MustInit().
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func Init() (seededSecurely bool, err error) {
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if atomic.LoadInt32(&seeded) == 1 {
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return false, nil
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}
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// Slow-path
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m.Lock()
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defer m.Unlock()
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if err := cryptoSeed(); err != nil {
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return false, err
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}
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return true, nil
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}
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// MustInit provides guaranteed secure seeding. If `/dev/urandom` is not
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// available, MustInit will panic() with an error indicating why reading from
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// `/dev/urandom` failed. MustInit() will upgrade the seed if for some reason a
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// call to Init() failed in the past.
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func MustInit() {
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if atomic.LoadInt32(&secure) == 1 {
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return
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}
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// Slow-path
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m.Lock()
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2017-03-13 16:50:24 +00:00
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defer m.Unlock()
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2017-02-09 00:07:33 +00:00
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if err := cryptoSeed(); err != nil {
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panic(fmt.Sprintf("Unable to seed the random number generator: %v", err))
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}
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}
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// Secure returns true if a cryptographically secure seed was used to
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// initialize rand.
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func Secure() bool {
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return atomic.LoadInt32(&secure) == 1
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}
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// Seeded returns true if Init has seeded the random number generator.
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func Seeded() bool {
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return atomic.LoadInt32(&seeded) == 1
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}
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