forked from TrueCloudLab/frostfs-crypto
Merge pull request #1 from nspcc-dev/use_stdlib_formula_for_decompress_point
Refactor decompress Y point
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commit
40d65daa2e
1 changed files with 8 additions and 12 deletions
20
ecdsa.go
20
ecdsa.go
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@ -70,26 +70,22 @@ func unmarshalXY(data []byte) (x *big.Int, y *big.Int) {
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return
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return
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}
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}
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// decompressPoints using formula y^2 = x^3 + ax + b mod p
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// decompressPoints using formula y² = x³ - 3x + b
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// crypto/elliptic/elliptic.go:55
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func decompressPoints(x *big.Int, yBit uint) (*big.Int, *big.Int) {
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func decompressPoints(x *big.Int, yBit uint) (*big.Int, *big.Int) {
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params := curve.Params()
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params := curve.Params()
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// x^3 mod P
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x3 := new(big.Int).Mul(x, x)
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x3 := new(big.Int).Exp(x, new(big.Int).SetInt64(3), params.P)
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x3.Mul(x3, x)
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// a * x mod P
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threeX := new(big.Int).Lsh(x, 1)
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ax := new(big.Int).Mul(x, new(big.Int).SetInt64(-3))
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threeX.Add(threeX, x)
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ax.Mod(ax, params.P)
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// x^3 + a * x mod P
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x3.Sub(x3, threeX)
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x3.Add(x3, ax)
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x3.Mod(x3, params.P)
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// x^3 + a * x + b mod P
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x3.Add(x3, params.B)
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x3.Add(x3, params.B)
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x3.Mod(x3, params.P)
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x3.Mod(x3, params.P)
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// y = sqrt(x^3 + ax + b mod p) mod P
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// y = √(x³ - 3x + b) mod p
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y := new(big.Int).ModSqrt(x3, params.P)
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y := new(big.Int).ModSqrt(x3, params.P)
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// big.Int.Jacobi(a, b) can return nil
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// big.Int.Jacobi(a, b) can return nil
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