mirror of
https://github.com/emmansun/gmsm.git
synced 2025-04-21 17:56:19 +08:00
225 lines
6.3 KiB
Go
225 lines
6.3 KiB
Go
package drbg
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import (
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"encoding/binary"
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"errors"
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"hash"
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"time"
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"github.com/emmansun/gmsm/sm3"
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)
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const HASH_DRBG_SEED_SIZE = 55
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const HASH_DRBG_MAX_SEED_SIZE = 111
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// HashDrbg hash DRBG structure, its instance is NOT goroutine safe!!!
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type HashDrbg struct {
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BaseDrbg
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newHash func() hash.Hash
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c []byte
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hashSize int
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}
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// NewHashDrbg create one hash DRBG instance
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func NewHashDrbg(newHash func() hash.Hash, securityLevel SecurityLevel, gm bool, entropy, nonce, personalization []byte) (*HashDrbg, error) {
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hd := &HashDrbg{}
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hd.gm = gm
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hd.newHash = newHash
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hd.setSecurityLevel(securityLevel)
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md := newHash()
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hd.hashSize = md.Size()
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// here for the min length, we just check <=0 now
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if len(entropy) == 0 || (hd.gm && len(entropy) < hd.hashSize) || len(entropy) >= MAX_BYTES {
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return nil, errors.New("invalid entropy length")
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}
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// here for the min length, we just check <=0 now
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if len(nonce) == 0 || (hd.gm && len(nonce) < hd.hashSize/2) || len(nonce) >= MAX_BYTES>>1 {
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return nil, errors.New("invalid nonce length")
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}
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if len(personalization) >= MAX_BYTES {
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return nil, errors.New("personalization is too long")
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}
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if hd.hashSize <= sm3.Size {
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hd.v = make([]byte, HASH_DRBG_SEED_SIZE)
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hd.c = make([]byte, HASH_DRBG_SEED_SIZE)
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hd.seedLength = HASH_DRBG_SEED_SIZE
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} else {
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hd.v = make([]byte, HASH_DRBG_MAX_SEED_SIZE)
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hd.c = make([]byte, HASH_DRBG_MAX_SEED_SIZE)
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hd.seedLength = HASH_DRBG_MAX_SEED_SIZE
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}
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// seed_material = entropy_input || instantiation_nonce || personalization_string
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seedMaterial := make([]byte, len(entropy)+len(nonce)+len(personalization))
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copy(seedMaterial, entropy)
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copy(seedMaterial[len(entropy):], nonce)
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copy(seedMaterial[len(entropy)+len(nonce):], personalization)
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// seed = Hash_df(seed_material, seed_length)
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seed := hd.derive(seedMaterial, hd.seedLength)
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// V = seed
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copy(hd.v, seed)
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// C = Hash_df(0x00 || V, seed_length)
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temp := make([]byte, hd.seedLength+1)
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temp[0] = 0
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copy(temp[1:], seed)
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seed = hd.derive(temp, hd.seedLength)
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copy(hd.c, seed)
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hd.reseedCounter = 1
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hd.reseedTime = time.Now()
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return hd, nil
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}
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// NewNISTHashDrbg return hash DRBG implementation which follows NIST standard
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func NewNISTHashDrbg(newHash func() hash.Hash, securityLevel SecurityLevel, entropy, nonce, personalization []byte) (*HashDrbg, error) {
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return NewHashDrbg(newHash, securityLevel, false, entropy, nonce, personalization)
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}
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// NewGMHashDrbg return hash DRBG implementation which follows GM/T 0105-2021 standard
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func NewGMHashDrbg(securityLevel SecurityLevel, entropy, nonce, personalization []byte) (*HashDrbg, error) {
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return NewHashDrbg(sm3.New, securityLevel, true, entropy, nonce, personalization)
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}
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// Reseed hash DRBG reseed process. GM/T 0105-2021 has a little different with NIST.
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func (hd *HashDrbg) Reseed(entropy, additional []byte) error {
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// here for the min length, we just check <=0 now
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if len(entropy) == 0 || (hd.gm && len(entropy) < hd.hashSize) || len(entropy) >= MAX_BYTES {
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return errors.New("invalid entropy length")
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}
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if len(additional) >= MAX_BYTES {
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return errors.New("additional input too long")
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}
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seedMaterial := make([]byte, len(entropy)+hd.seedLength+len(additional)+1)
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seedMaterial[0] = 1
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if hd.gm { // seed_material = 0x01 || entropy_input || V || additional_input
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copy(seedMaterial[1:], entropy)
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copy(seedMaterial[len(entropy)+1:], hd.v)
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} else { // seed_material = 0x01 || V || entropy_input || additional_input
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copy(seedMaterial[1:], hd.v)
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copy(seedMaterial[hd.seedLength+1:], entropy)
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}
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copy(seedMaterial[len(entropy)+hd.seedLength+1:], additional)
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// seed = Hash_df(seed_material, seed_length)
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seed := hd.derive(seedMaterial, hd.seedLength)
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// V = seed
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copy(hd.v, seed)
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temp := make([]byte, hd.seedLength+1)
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// C = Hash_df(0x01 || V, seed_length)
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temp[0] = 0
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copy(temp[1:], seed)
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seed = hd.derive(temp, hd.seedLength)
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copy(hd.c, seed)
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hd.reseedCounter = 1
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hd.reseedTime = time.Now()
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return nil
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}
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func (hd *HashDrbg) addW(w []byte) {
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t := make([]byte, hd.seedLength)
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copy(t[hd.seedLength-len(w):], w)
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add(t, hd.v, hd.seedLength)
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}
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func (hd *HashDrbg) addC() {
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add(hd.c, hd.v, hd.seedLength)
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}
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func (hd *HashDrbg) addH() {
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md := hd.newHash()
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md.Write([]byte{0x03})
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md.Write(hd.v)
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hd.addW(md.Sum(nil))
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}
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func (hd *HashDrbg) addReseedCounter() {
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t := make([]byte, hd.seedLength)
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binary.BigEndian.PutUint64(t[hd.seedLength-8:], hd.reseedCounter)
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add(t, hd.v, hd.seedLength)
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}
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func (hd *HashDrbg) MaxBytesPerRequest() int {
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if hd.gm {
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return hd.hashSize
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}
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return MAX_BYTES_PER_GENERATE
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}
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// Generate hash DRBG pseudorandom bits process. GM/T 0105-2021 has a little different with NIST.
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// GM/T 0105-2021 can only generate no more than hash.Size bytes once.
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func (hd *HashDrbg) Generate(b, additional []byte) error {
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if hd.NeedReseed() {
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return ErrReseedRequired
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}
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if (hd.gm && len(b) > hd.hashSize) || (!hd.gm && len(b) > MAX_BYTES_PER_GENERATE) {
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return errors.New("too many bytes requested")
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}
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md := hd.newHash()
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m := len(b)
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// if len(additional_input) > 0, then
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// w = Hash(0x02 || V || additional_input)
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if len(additional) > 0 {
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md.Write([]byte{0x02})
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md.Write(hd.v)
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md.Write(additional)
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w := md.Sum(nil)
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md.Reset()
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hd.addW(w)
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}
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if hd.gm { // leftmost(Hash(V))
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md.Write(hd.v)
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copy(b, md.Sum(nil))
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md.Reset()
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} else {
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limit := uint64(m+md.Size()-1) / uint64(md.Size())
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data := make([]byte, hd.seedLength)
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copy(data, hd.v)
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for i := 0; i < int(limit); i++ {
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md.Write(data)
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copy(b[i*md.Size():], md.Sum(nil))
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addOne(data, hd.seedLength)
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md.Reset()
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}
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}
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// V = (V + H + C + reseed_counter) mode 2^seed_length
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hd.addH()
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hd.addC()
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hd.addReseedCounter()
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hd.reseedCounter++
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return nil
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}
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// derive Hash_df
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func (hd *HashDrbg) derive(seedMaterial []byte, len int) []byte {
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md := hd.newHash()
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limit := uint64(len+hd.hashSize-1) / uint64(hd.hashSize)
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var requireBytes [4]byte
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binary.BigEndian.PutUint32(requireBytes[:], uint32(len<<3))
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var ct byte = 1
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k := make([]byte, len)
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for i := 0; i < int(limit); i++ {
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// Hash( counter_byte || return_bits || seed_material )
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md.Write([]byte{ct})
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md.Write(requireBytes[:])
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md.Write(seedMaterial)
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copy(k[i*md.Size():], md.Sum(nil))
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ct++
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md.Reset()
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}
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return k
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}
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