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@ -180,12 +180,12 @@ func GeneratePublicKey(prv *PrivateKey) (*PublicKey, error) {
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}
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}
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// Computes a shared secret. Function requires that pub has different KeyVariant than
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// prv.
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// Computes a shared secret which is a j-invariant. Function requires that pub has
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// different KeyVariant than prv. Length of returned output is 2*ceil(log_2 P)/8),
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// where P is a prime defining finite field.
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//
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// Function returns shared secret that can be used as a symmetric key. It's important
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// to notice that each keypair must not be used more than once to calculate
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// shared secret.
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// It's important to notice that each keypair must not be used more than once
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// to calculate shared secret.
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//
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// Function may return error. This happens only in case provided input is invalid.
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// Constant time for properly initialized private and public key.
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@ -294,7 +294,7 @@ func (x3P *ProjectivePoint) Pow3k(params *CurveCoefficientsEquiv, xP *Projective
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t1.Sub(&t1, &t2) // t1 = t1 - t2
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t5.Mul(&t3, ¶ms.A) // t5 = t3 * A24+
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t3.Mul(&t3, &t5) // t3 = t5 * t3
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t6.Mul(¶ms.C, &t2) // t6 = t2 * A24-
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t6.Mul(&t2, ¶ms.C) // t6 = t2 * A24-
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t2.Mul(&t2, &t6) // t2 = t2 * t6
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t3.Sub(&t2, &t3) // t3 = t2 - t3
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t2.Sub(&t5, &t6) // t2 = t5 - t6
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@ -88,7 +88,7 @@ func (phi *isogeny3) EvaluatePoint(p *ProjectivePoint) ProjectivePoint {
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t2.Square(&t2) // t2 = t2 ^ 2
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t0.Square(&t0) // t0 = t0 ^ 2
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q.X.Mul(px, &t2) // XQ'= XQ * t2
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q.Z.Mul(pz, &t0) // XZ'= ZQ * t0
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q.Z.Mul(pz, &t0) // ZQ'= ZQ * t0
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return q
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}
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