mirror of https://github.com/ethereum/go-ethereum
* Move random entropy functions to new package randentropy * Add function to get n bytes entropy where up to first 32 bytes are mixed with OS entropy sourcespull/299/head
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package randentropy |
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import ( |
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crand "crypto/rand" |
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"encoding/binary" |
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"github.com/ethereum/go-ethereum/crypto/sha3" |
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"io" |
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"os" |
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"strings" |
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"time" |
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) |
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type RandEntropy struct { |
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} |
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func (*RandEntropy) Read(bytes []byte) (n int, err error) { |
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readBytes := GetEntropyMixed(len(bytes)) |
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copy(bytes, readBytes) |
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return len(bytes), nil |
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} |
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// TODO: copied from crypto.go , move to sha3 package?
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func Sha3(data []byte) []byte { |
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d := sha3.NewKeccak256() |
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d.Write(data) |
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return d.Sum(nil) |
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} |
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// TODO: verify. this needs to be audited
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// we start with crypt/rand, then XOR in additional entropy from OS
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func GetEntropyMixed(n int) []byte { |
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startTime := time.Now().UnixNano() |
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// for each source, we take SHA3 of the source and use it as seed to math/rand
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// then read bytes from it and XOR them onto the bytes read from crypto/rand
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mainBuff := GetEntropyCSPRNG(n) |
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// 1. OS entropy sources
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startTimeBytes := make([]byte, 32) |
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binary.PutVarint(startTimeBytes, startTime) |
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startTimeHash := Sha3(startTimeBytes) |
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mixBytes(mainBuff, startTimeHash) |
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pid := os.Getpid() |
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pidBytes := make([]byte, 32) |
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binary.PutUvarint(pidBytes, uint64(pid)) |
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pidHash := Sha3(pidBytes) |
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mixBytes(mainBuff, pidHash) |
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osEnv := os.Environ() |
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osEnvBytes := []byte(strings.Join(osEnv, "")) |
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osEnvHash := Sha3(osEnvBytes) |
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mixBytes(mainBuff, osEnvHash) |
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// not all OS have hostname in env variables
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osHostName, err := os.Hostname() |
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if err != nil { |
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osHostNameBytes := []byte(osHostName) |
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osHostNameHash := Sha3(osHostNameBytes) |
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mixBytes(mainBuff, osHostNameHash) |
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} |
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return mainBuff |
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} |
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func GetEntropyCSPRNG(n int) []byte { |
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mainBuff := make([]byte, n) |
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_, err := io.ReadFull(crand.Reader, mainBuff) |
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if err != nil { |
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panic("reading from crypto/rand failed: " + err.Error()) |
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} |
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return mainBuff |
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} |
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func mixBytes(buff []byte, mixBuff []byte) []byte { |
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bytesToMix := len(buff) |
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if bytesToMix > 32 { |
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bytesToMix = 32 |
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} |
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for i := 0; i < bytesToMix; i++ { |
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buff[i] ^= mixBuff[i] |
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} |
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return buff |
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} |
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