using System; using Org.BouncyCastle.Utilities.Encoders; namespace Org.BouncyCastle.Math.EC.Custom.Sec { internal class SecT131R2Curve : AbstractF2mCurve { private const int SecT131R2_DEFAULT_COORDS = COORD_LAMBDA_PROJECTIVE; protected readonly SecT131R2Point m_infinity; public SecT131R2Curve() : base(131, 2, 3, 8) { this.m_infinity = new SecT131R2Point(this, null, null); this.m_a = FromBigInteger(new BigInteger(1, Hex.Decode("03E5A88919D7CAFCBF415F07C2176573B2"))); this.m_b = FromBigInteger(new BigInteger(1, Hex.Decode("04B8266A46C55657AC734CE38F018F2192"))); this.m_order = new BigInteger(1, Hex.Decode("0400000000000000016954A233049BA98F")); this.m_cofactor = BigInteger.Two; this.m_coord = SecT131R2_DEFAULT_COORDS; } protected override ECCurve CloneCurve() { return new SecT131R2Curve(); } public override bool SupportsCoordinateSystem(int coord) { switch (coord) { case COORD_LAMBDA_PROJECTIVE: return true; default: return false; } } public override int FieldSize { get { return 131; } } public override ECFieldElement FromBigInteger(BigInteger x) { return new SecT131FieldElement(x); } protected internal override ECPoint CreateRawPoint(ECFieldElement x, ECFieldElement y, bool withCompression) { return new SecT131R2Point(this, x, y, withCompression); } protected internal override ECPoint CreateRawPoint(ECFieldElement x, ECFieldElement y, ECFieldElement[] zs, bool withCompression) { return new SecT131R2Point(this, x, y, zs, withCompression); } public override ECPoint Infinity { get { return m_infinity; } } public override bool IsKoblitz { get { return false; } } public virtual int M { get { return 131; } } public virtual bool IsTrinomial { get { return false; } } public virtual int K1 { get { return 2; } } public virtual int K2 { get { return 3; } } public virtual int K3 { get { return 8; } } } }