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283 lines
8.5 KiB
283 lines
8.5 KiB
using System;
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namespace Org.BouncyCastle.Math.EC.Custom.Sec
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{
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internal class SecT163R1Point
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: AbstractF2mPoint
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{
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/**
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* @deprecated Use ECCurve.createPoint to construct points
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*/
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public SecT163R1Point(ECCurve curve, ECFieldElement x, ECFieldElement y)
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: this(curve, x, y, false)
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{
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}
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/**
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* @deprecated per-point compression property will be removed, refer {@link #getEncoded(bool)}
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*/
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public SecT163R1Point(ECCurve curve, ECFieldElement x, ECFieldElement y, bool withCompression)
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: base(curve, x, y, withCompression)
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{
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if ((x == null) != (y == null))
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throw new ArgumentException("Exactly one of the field elements is null");
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}
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internal SecT163R1Point(ECCurve curve, ECFieldElement x, ECFieldElement y, ECFieldElement[] zs, bool withCompression)
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: base(curve, x, y, zs, withCompression)
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{
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}
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protected override ECPoint Detach()
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{
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return new SecT163R1Point(null, AffineXCoord, AffineYCoord);
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}
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public override ECFieldElement YCoord
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{
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get
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{
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ECFieldElement X = RawXCoord, L = RawYCoord;
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if (this.IsInfinity || X.IsZero)
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return L;
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// Y is actually Lambda (X + Y/X) here; convert to affine value on the fly
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ECFieldElement Y = L.Add(X).Multiply(X);
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ECFieldElement Z = RawZCoords[0];
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if (!Z.IsOne)
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{
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Y = Y.Divide(Z);
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}
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return Y;
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}
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}
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protected internal override bool CompressionYTilde
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{
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get
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{
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ECFieldElement X = this.RawXCoord;
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if (X.IsZero)
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return false;
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ECFieldElement Y = this.RawYCoord;
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// Y is actually Lambda (X + Y/X) here
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return Y.TestBitZero() != X.TestBitZero();
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}
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}
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public override ECPoint Add(ECPoint b)
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{
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if (this.IsInfinity)
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return b;
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if (b.IsInfinity)
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return this;
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ECCurve curve = this.Curve;
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ECFieldElement X1 = this.RawXCoord;
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ECFieldElement X2 = b.RawXCoord;
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if (X1.IsZero)
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{
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if (X2.IsZero)
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return curve.Infinity;
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return b.Add(this);
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}
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ECFieldElement L1 = this.RawYCoord, Z1 = this.RawZCoords[0];
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ECFieldElement L2 = b.RawYCoord, Z2 = b.RawZCoords[0];
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bool Z1IsOne = Z1.IsOne;
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ECFieldElement U2 = X2, S2 = L2;
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if (!Z1IsOne)
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{
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U2 = U2.Multiply(Z1);
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S2 = S2.Multiply(Z1);
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}
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bool Z2IsOne = Z2.IsOne;
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ECFieldElement U1 = X1, S1 = L1;
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if (!Z2IsOne)
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{
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U1 = U1.Multiply(Z2);
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S1 = S1.Multiply(Z2);
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}
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ECFieldElement A = S1.Add(S2);
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ECFieldElement B = U1.Add(U2);
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if (B.IsZero)
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{
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if (A.IsZero)
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return Twice();
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return curve.Infinity;
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}
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ECFieldElement X3, L3, Z3;
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if (X2.IsZero)
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{
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// TODO This can probably be optimized quite a bit
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ECPoint p = this.Normalize();
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X1 = p.XCoord;
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ECFieldElement Y1 = p.YCoord;
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ECFieldElement Y2 = L2;
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ECFieldElement L = Y1.Add(Y2).Divide(X1);
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X3 = L.Square().Add(L).Add(X1).Add(curve.A);
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if (X3.IsZero)
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{
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return new SecT163R1Point(curve, X3, curve.B.Sqrt(), IsCompressed);
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}
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ECFieldElement Y3 = L.Multiply(X1.Add(X3)).Add(X3).Add(Y1);
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L3 = Y3.Divide(X3).Add(X3);
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Z3 = curve.FromBigInteger(BigInteger.One);
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}
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else
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{
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B = B.Square();
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ECFieldElement AU1 = A.Multiply(U1);
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ECFieldElement AU2 = A.Multiply(U2);
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X3 = AU1.Multiply(AU2);
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if (X3.IsZero)
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{
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return new SecT163R1Point(curve, X3, curve.B.Sqrt(), IsCompressed);
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}
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ECFieldElement ABZ2 = A.Multiply(B);
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if (!Z2IsOne)
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{
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ABZ2 = ABZ2.Multiply(Z2);
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}
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L3 = AU2.Add(B).SquarePlusProduct(ABZ2, L1.Add(Z1));
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Z3 = ABZ2;
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if (!Z1IsOne)
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{
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Z3 = Z3.Multiply(Z1);
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}
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}
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return new SecT163R1Point(curve, X3, L3, new ECFieldElement[] { Z3 }, IsCompressed);
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}
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public override ECPoint Twice()
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{
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if (this.IsInfinity)
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{
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return this;
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}
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ECCurve curve = this.Curve;
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ECFieldElement X1 = this.RawXCoord;
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if (X1.IsZero)
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{
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// A point with X == 0 is its own additive inverse
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return curve.Infinity;
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}
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ECFieldElement L1 = this.RawYCoord, Z1 = this.RawZCoords[0];
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bool Z1IsOne = Z1.IsOne;
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ECFieldElement L1Z1 = Z1IsOne ? L1 : L1.Multiply(Z1);
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ECFieldElement Z1Sq = Z1IsOne ? Z1 : Z1.Square();
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ECFieldElement a = curve.A;
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ECFieldElement aZ1Sq = Z1IsOne ? a : a.Multiply(Z1Sq);
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ECFieldElement T = L1.Square().Add(L1Z1).Add(aZ1Sq);
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if (T.IsZero)
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{
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return new SecT163R1Point(curve, T, curve.B.Sqrt(), IsCompressed);
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}
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ECFieldElement X3 = T.Square();
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ECFieldElement Z3 = Z1IsOne ? T : T.Multiply(Z1Sq);
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ECFieldElement X1Z1 = Z1IsOne ? X1 : X1.Multiply(Z1);
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ECFieldElement L3 = X1Z1.SquarePlusProduct(T, L1Z1).Add(X3).Add(Z3);
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return new SecT163R1Point(curve, X3, L3, new ECFieldElement[] { Z3 }, IsCompressed);
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}
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public override ECPoint TwicePlus(ECPoint b)
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{
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if (this.IsInfinity)
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return b;
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if (b.IsInfinity)
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return Twice();
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ECCurve curve = this.Curve;
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ECFieldElement X1 = this.RawXCoord;
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if (X1.IsZero)
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{
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// A point with X == 0 is its own additive inverse
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return b;
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}
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ECFieldElement X2 = b.RawXCoord, Z2 = b.RawZCoords[0];
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if (X2.IsZero || !Z2.IsOne)
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{
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return Twice().Add(b);
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}
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ECFieldElement L1 = this.RawYCoord, Z1 = this.RawZCoords[0];
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ECFieldElement L2 = b.RawYCoord;
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ECFieldElement X1Sq = X1.Square();
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ECFieldElement L1Sq = L1.Square();
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ECFieldElement Z1Sq = Z1.Square();
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ECFieldElement L1Z1 = L1.Multiply(Z1);
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ECFieldElement T = curve.A.Multiply(Z1Sq).Add(L1Sq).Add(L1Z1);
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ECFieldElement L2plus1 = L2.AddOne();
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ECFieldElement A = curve.A.Add(L2plus1).Multiply(Z1Sq).Add(L1Sq).MultiplyPlusProduct(T, X1Sq, Z1Sq);
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ECFieldElement X2Z1Sq = X2.Multiply(Z1Sq);
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ECFieldElement B = X2Z1Sq.Add(T).Square();
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if (B.IsZero)
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{
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if (A.IsZero)
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return b.Twice();
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return curve.Infinity;
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}
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if (A.IsZero)
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{
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return new SecT163R1Point(curve, A, curve.B.Sqrt(), IsCompressed);
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}
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ECFieldElement X3 = A.Square().Multiply(X2Z1Sq);
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ECFieldElement Z3 = A.Multiply(B).Multiply(Z1Sq);
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ECFieldElement L3 = A.Add(B).Square().MultiplyPlusProduct(T, L2plus1, Z3);
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return new SecT163R1Point(curve, X3, L3, new ECFieldElement[] { Z3 }, IsCompressed);
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}
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public override ECPoint Negate()
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{
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if (this.IsInfinity)
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return this;
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ECFieldElement X = this.RawXCoord;
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if (X.IsZero)
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return this;
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// L is actually Lambda (X + Y/X) here
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ECFieldElement L = this.RawYCoord, Z = this.RawZCoords[0];
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return new SecT163R1Point(Curve, X, L.Add(Z), new ECFieldElement[] { Z }, IsCompressed);
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}
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}
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}
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