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https://github.com/arnaucube/go-iden3-crypto.git
synced 2026-02-07 03:26:39 +01:00
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5 Commits
feature/po
...
v0.0.3
| Author | SHA1 | Date | |
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ee467c6215 | ||
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4750e9c83c | ||
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16a8a18a6d | ||
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e8be761ec7 | ||
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5d88f7c4cd |
152
field/field.go
152
field/field.go
@@ -1,152 +0,0 @@
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// code originally taken from https://github.com/arnaucube/go-snark (https://github.com/arnaucube/go-snark/blob/master/fields/fq.go), pasted here to ensure compatibility among future changes
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package field
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import (
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"bytes"
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"crypto/rand"
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"math/big"
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)
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// Fq is the Z field over modulus Q
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type Fq struct {
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Q *big.Int // Q
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}
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// NewFq generates a new Fq
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func NewFq(q *big.Int) Fq {
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return Fq{
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q,
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}
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}
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// Zero returns a Zero value on the Fq
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func (fq Fq) Zero() *big.Int {
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return big.NewInt(int64(0))
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}
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// One returns a One value on the Fq
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func (fq Fq) One() *big.Int {
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return big.NewInt(int64(1))
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}
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// Add performs an addition on the Fq
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func (fq Fq) Add(a, b *big.Int) *big.Int {
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r := new(big.Int).Add(a, b)
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return new(big.Int).Mod(r, fq.Q)
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}
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// Double performs a doubling on the Fq
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func (fq Fq) Double(a *big.Int) *big.Int {
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r := new(big.Int).Add(a, a)
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return new(big.Int).Mod(r, fq.Q)
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}
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// Sub performs a subtraction on the Fq
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func (fq Fq) Sub(a, b *big.Int) *big.Int {
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r := new(big.Int).Sub(a, b)
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return new(big.Int).Mod(r, fq.Q)
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}
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// Neg performs a negation on the Fq
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func (fq Fq) Neg(a *big.Int) *big.Int {
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m := new(big.Int).Neg(a)
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return new(big.Int).Mod(m, fq.Q)
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}
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// Mul performs a multiplication on the Fq
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func (fq Fq) Mul(a, b *big.Int) *big.Int {
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m := new(big.Int).Mul(a, b)
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return new(big.Int).Mod(m, fq.Q)
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}
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func (fq Fq) MulScalar(base, e *big.Int) *big.Int {
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return fq.Mul(base, e)
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}
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// Inverse returns the inverse on the Fq
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func (fq Fq) Inverse(a *big.Int) *big.Int {
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return new(big.Int).ModInverse(a, fq.Q)
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}
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// Div performs the division over the finite field
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func (fq Fq) Div(a, b *big.Int) *big.Int {
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d := fq.Mul(a, fq.Inverse(b))
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return new(big.Int).Mod(d, fq.Q)
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}
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// Square performs a square operation on the Fq
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func (fq Fq) Square(a *big.Int) *big.Int {
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m := new(big.Int).Mul(a, a)
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return new(big.Int).Mod(m, fq.Q)
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}
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// Exp performs the exponential over Fq
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func (fq Fq) Exp(base *big.Int, e *big.Int) *big.Int {
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res := fq.One()
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rem := fq.Copy(e)
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exp := base
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for !bytes.Equal(rem.Bytes(), big.NewInt(int64(0)).Bytes()) {
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if BigIsOdd(rem) {
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res = fq.Mul(res, exp)
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}
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exp = fq.Square(exp)
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rem = new(big.Int).Rsh(rem, 1)
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}
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return res
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}
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func (fq Fq) Rand() (*big.Int, error) {
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maxbits := fq.Q.BitLen()
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b := make([]byte, (maxbits/8)-1)
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_, err := rand.Read(b)
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if err != nil {
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return nil, err
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}
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r := new(big.Int).SetBytes(b)
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rq := new(big.Int).Mod(r, fq.Q)
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// r over q, nil
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return rq, nil
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}
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func (fq Fq) IsZero(a *big.Int) bool {
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return bytes.Equal(a.Bytes(), fq.Zero().Bytes())
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}
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func (fq Fq) Copy(a *big.Int) *big.Int {
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return new(big.Int).SetBytes(a.Bytes())
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}
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func (fq Fq) Affine(a *big.Int) *big.Int {
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nq := fq.Neg(fq.Q)
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aux := a
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if aux.Cmp(big.NewInt(int64(0))) == -1 { // negative value
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if aux.Cmp(nq) != 1 { // aux less or equal nq
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aux = new(big.Int).Mod(aux, fq.Q)
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}
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if aux.Cmp(big.NewInt(int64(0))) == -1 { // negative value
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aux = new(big.Int).Add(aux, fq.Q)
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}
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} else {
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if aux.Cmp(fq.Q) != -1 { // aux greater or equal nq
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aux = new(big.Int).Mod(aux, fq.Q)
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}
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}
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return aux
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}
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func (fq Fq) Equal(a, b *big.Int) bool {
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aAff := fq.Affine(a)
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bAff := fq.Affine(b)
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return bytes.Equal(aAff.Bytes(), bAff.Bytes())
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}
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func BigIsOdd(n *big.Int) bool {
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one := big.NewInt(int64(1))
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and := new(big.Int).And(n, one)
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return bytes.Equal(and.Bytes(), big.NewInt(int64(1)).Bytes())
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}
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@@ -1,39 +0,0 @@
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// code originally taken from https://github.com/arnaucube/go-snark (https://github.com/arnaucube/go-snark/blob/master/fields/fq.go), pasted here to ensure compatibility among future changes
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package field
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import (
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"math/big"
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"testing"
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"github.com/stretchr/testify/assert"
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)
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func iToBig(a int) *big.Int {
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return big.NewInt(int64(a))
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}
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func TestFq1(t *testing.T) {
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fq1 := NewFq(iToBig(7))
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res := fq1.Add(iToBig(4), iToBig(4))
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assert.Equal(t, iToBig(1), fq1.Affine(res))
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res = fq1.Double(iToBig(5))
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assert.Equal(t, iToBig(3), fq1.Affine(res))
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res = fq1.Sub(iToBig(5), iToBig(7))
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assert.Equal(t, iToBig(5), fq1.Affine(res))
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res = fq1.Neg(iToBig(5))
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assert.Equal(t, iToBig(2), fq1.Affine(res))
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res = fq1.Mul(iToBig(5), iToBig(11))
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assert.Equal(t, iToBig(6), fq1.Affine(res))
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res = fq1.Inverse(iToBig(4))
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assert.Equal(t, iToBig(2), res)
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res = fq1.Square(iToBig(5))
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assert.Equal(t, iToBig(4), res)
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}
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@@ -6,7 +6,7 @@ import (
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"github.com/ethereum/go-ethereum/crypto"
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_constants "github.com/iden3/go-iden3-crypto/constants"
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"github.com/iden3/go-iden3-crypto/field"
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"github.com/iden3/go-iden3-crypto/ff"
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"github.com/iden3/go-iden3-crypto/utils"
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)
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@@ -15,73 +15,72 @@ const SEED = "mimc"
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var constants = generateConstantsData()
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type constantsData struct {
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maxFieldVal *big.Int
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seedHash *big.Int
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iv *big.Int
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fqR field.Fq
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nRounds int
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cts []*big.Int
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seedHash *big.Int
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iv *big.Int
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nRounds int
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cts []*ff.Element
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}
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func generateConstantsData() constantsData {
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var constants constantsData
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fqR := field.NewFq(_constants.Q)
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constants.fqR = fqR
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// maxFieldVal is the R value of the Finite Field
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constants.maxFieldVal = constants.fqR.Q
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constants.seedHash = new(big.Int).SetBytes(crypto.Keccak256([]byte(SEED)))
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c := new(big.Int).SetBytes(crypto.Keccak256([]byte(SEED + "_iv")))
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constants.iv = new(big.Int).Mod(c, constants.maxFieldVal)
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constants.iv = new(big.Int).Mod(c, _constants.Q)
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constants.nRounds = 91
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cts := getConstants(constants.fqR, SEED, constants.nRounds)
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cts := getConstants(SEED, constants.nRounds)
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constants.cts = cts
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return constants
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}
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func getConstants(fqR field.Fq, seed string, nRounds int) []*big.Int {
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cts := make([]*big.Int, nRounds)
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cts[0] = big.NewInt(int64(0))
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func getConstants(seed string, nRounds int) []*ff.Element {
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cts := make([]*ff.Element, nRounds)
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cts[0] = ff.NewElement()
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c := new(big.Int).SetBytes(crypto.Keccak256([]byte(SEED)))
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for i := 1; i < nRounds; i++ {
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c = new(big.Int).SetBytes(crypto.Keccak256(c.Bytes()))
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n := fqR.Affine(c)
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cts[i] = n
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n := new(big.Int).Mod(c, _constants.Q)
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cts[i] = ff.NewElement().SetBigInt(n)
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}
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return cts
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}
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// MIMC7HashGeneric performs the MIMC7 hash over a *big.Int, in a generic way, where it can be specified the Finite Field over R, and the number of rounds
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func MIMC7HashGeneric(fqR field.Fq, xIn, k *big.Int, nRounds int) *big.Int {
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cts := getConstants(fqR, SEED, nRounds)
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var r *big.Int
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func MIMC7HashGeneric(xInBI, kBI *big.Int, nRounds int) *big.Int {
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xIn := ff.NewElement().SetBigInt(xInBI)
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k := ff.NewElement().SetBigInt(kBI)
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cts := getConstants(SEED, nRounds)
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var r *ff.Element
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for i := 0; i < nRounds; i++ {
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var t *big.Int
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var t *ff.Element
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if i == 0 {
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t = fqR.Add(xIn, k)
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t = ff.NewElement().Add(xIn, k)
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} else {
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t = fqR.Add(fqR.Add(r, k), cts[i])
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t = ff.NewElement().Add(ff.NewElement().Add(r, k), cts[i])
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}
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t2 := fqR.Square(t)
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t4 := fqR.Square(t2)
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r = fqR.Mul(fqR.Mul(t4, t2), t)
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t2 := ff.NewElement().Square(t)
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t4 := ff.NewElement().Square(t2)
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r = ff.NewElement().Mul(ff.NewElement().Mul(t4, t2), t)
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}
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return fqR.Affine(fqR.Add(r, k))
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rE := ff.NewElement().Add(r, k)
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|
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res := big.NewInt(0)
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rE.ToBigIntRegular(res)
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return res
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}
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|
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// HashGeneric performs the MIMC7 hash over a *big.Int array, in a generic way, where it can be specified the Finite Field over R, and the number of rounds
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func HashGeneric(iv *big.Int, arr []*big.Int, fqR field.Fq, nRounds int) (*big.Int, error) {
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func HashGeneric(iv *big.Int, arr []*big.Int, nRounds int) (*big.Int, error) {
|
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if !utils.CheckBigIntArrayInField(arr) {
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return nil, errors.New("inputs values not inside Finite Field")
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}
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r := iv
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var err error
|
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for i := 0; i < len(arr); i++ {
|
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r = MIMC7HashGeneric(fqR, r, arr[i], nRounds)
|
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r = MIMC7HashGeneric(r, arr[i], nRounds)
|
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if err != nil {
|
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return r, err
|
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}
|
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@@ -90,20 +89,27 @@ func HashGeneric(iv *big.Int, arr []*big.Int, fqR field.Fq, nRounds int) (*big.I
|
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}
|
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|
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// MIMC7Hash performs the MIMC7 hash over a *big.Int, using the Finite Field over R and the number of rounds setted in the `constants` variable
|
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func MIMC7Hash(xIn, k *big.Int) *big.Int {
|
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var r *big.Int
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func MIMC7Hash(xInBI, kBI *big.Int) *big.Int {
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xIn := ff.NewElement().SetBigInt(xInBI)
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k := ff.NewElement().SetBigInt(kBI)
|
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|
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var r *ff.Element
|
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for i := 0; i < constants.nRounds; i++ {
|
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var t *big.Int
|
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var t *ff.Element
|
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if i == 0 {
|
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t = constants.fqR.Add(xIn, k)
|
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t = ff.NewElement().Add(xIn, k)
|
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} else {
|
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t = constants.fqR.Add(constants.fqR.Add(r, k), constants.cts[i])
|
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t = ff.NewElement().Add(ff.NewElement().Add(r, k), constants.cts[i])
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}
|
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t2 := constants.fqR.Square(t)
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t4 := constants.fqR.Square(t2)
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r = constants.fqR.Mul(constants.fqR.Mul(t4, t2), t)
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t2 := ff.NewElement().Square(t)
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t4 := ff.NewElement().Square(t2)
|
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r = ff.NewElement().Mul(ff.NewElement().Mul(t4, t2), t)
|
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}
|
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return constants.fqR.Affine(constants.fqR.Add(r, k))
|
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rE := ff.NewElement().Add(r, k)
|
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|
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res := big.NewInt(0)
|
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rE.ToBigIntRegular(res)
|
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return res
|
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}
|
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|
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// Hash performs the MIMC7 hash over a *big.Int array
|
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@@ -113,17 +119,18 @@ func Hash(arr []*big.Int, key *big.Int) (*big.Int, error) {
|
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}
|
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var r *big.Int
|
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if key == nil {
|
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r = constants.fqR.Zero()
|
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r = big.NewInt(0)
|
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} else {
|
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r = key
|
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}
|
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for i := 0; i < len(arr); i++ {
|
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r = constants.fqR.Add(
|
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constants.fqR.Add(
|
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r = new(big.Int).Add(
|
||||
new(big.Int).Add(
|
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r,
|
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arr[i],
|
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),
|
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MIMC7Hash(arr[i], r))
|
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r = new(big.Int).Mod(r, _constants.Q)
|
||||
}
|
||||
return r, nil
|
||||
}
|
||||
|
||||
@@ -6,7 +6,6 @@ import (
|
||||
"testing"
|
||||
|
||||
"github.com/ethereum/go-ethereum/crypto"
|
||||
"github.com/iden3/go-iden3-crypto/field"
|
||||
"github.com/stretchr/testify/assert"
|
||||
)
|
||||
|
||||
@@ -22,16 +21,12 @@ func TestMIMC7Generic(t *testing.T) {
|
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b2 := big.NewInt(int64(2))
|
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b3 := big.NewInt(int64(3))
|
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|
||||
r, ok := new(big.Int).SetString("21888242871839275222246405745257275088548364400416034343698204186575808495617", 10)
|
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assert.True(t, ok)
|
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fqR := field.NewFq(r)
|
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|
||||
bigArray := []*big.Int{b1, b2, b3}
|
||||
|
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// Generic Hash
|
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mhg := MIMC7HashGeneric(fqR, b1, b2, 91)
|
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mhg := MIMC7HashGeneric(b1, b2, 91)
|
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assert.Equal(t, "10594780656576967754230020536574539122676596303354946869887184401991294982664", mhg.String())
|
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hg, err := HashGeneric(fqR.Zero(), bigArray, fqR, 91)
|
||||
hg, err := HashGeneric(big.NewInt(0), bigArray, 91)
|
||||
assert.Nil(t, err)
|
||||
assert.Equal(t, "6464402164086696096195815557694604139393321133243036833927490113253119343397", (*big.Int)(hg).String())
|
||||
}
|
||||
|
||||
@@ -20,7 +20,7 @@ var constC []*ff.Element
|
||||
var constM [T][T]*ff.Element
|
||||
|
||||
func Zero() *ff.Element {
|
||||
return ff.NewElement().SetZero()
|
||||
return ff.NewElement()
|
||||
}
|
||||
|
||||
func modQ(v *big.Int) {
|
||||
@@ -71,7 +71,7 @@ func getMDS() [T][T]*ff.Element {
|
||||
|
||||
func checkAllDifferent(v []*ff.Element) bool {
|
||||
for i := 0; i < len(v); i++ {
|
||||
if v[i].Equal(ff.NewElement().SetZero()) {
|
||||
if v[i].Equal(ff.NewElement()) {
|
||||
return false
|
||||
}
|
||||
for j := i + 1; j < len(v); j++ {
|
||||
@@ -92,7 +92,6 @@ func ark(state [T]*ff.Element, c *ff.Element) {
|
||||
|
||||
// cubic performs x^5 mod p
|
||||
// https://eprint.iacr.org/2019/458.pdf page 8
|
||||
// var five = big.NewInt(5)
|
||||
|
||||
func cubic(a *ff.Element) {
|
||||
a.Exp(*a, 5)
|
||||
|
||||
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Block a user