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using System;
using Org.BouncyCastle.Math.EC.Multiplier;
using Org.BouncyCastle.Utilities.Encoders;
namespace Org.BouncyCastle.Math.EC.Custom.Sec
{
internal class SecT233K1Curve
: AbstractF2mCurve
{
private const int SecT233K1_DEFAULT_COORDS = COORD_LAMBDA_PROJECTIVE;
protected readonly SecT233K1Point m_infinity;
public SecT233K1Curve()
: base(233, 74, 0, 0)
{
this.m_infinity = new SecT233K1Point(this, null, null);
this.m_a = FromBigInteger(BigInteger.Zero);
this.m_b = FromBigInteger(BigInteger.One);
this.m_order = new BigInteger(1, Hex.Decode("8000000000000000000000000000069D5BB915BCD46EFB1AD5F173ABDF"));
this.m_cofactor = BigInteger.ValueOf(4);
this.m_coord = SecT233K1_DEFAULT_COORDS;
}
protected override ECCurve CloneCurve()
{
return new SecT233K1Curve();
}
public override bool SupportsCoordinateSystem(int coord)
{
switch (coord)
{
case COORD_LAMBDA_PROJECTIVE:
return true;
default:
return false;
}
}
protected override ECMultiplier CreateDefaultMultiplier()
{
return new WTauNafMultiplier();
}
public override int FieldSize
{
get { return 233; }
}
public override ECFieldElement FromBigInteger(BigInteger x)
{
return new SecT233FieldElement(x);
}
protected internal override ECPoint CreateRawPoint(ECFieldElement x, ECFieldElement y, bool withCompression)
{
return new SecT233K1Point(this, x, y, withCompression);
}
protected internal override ECPoint CreateRawPoint(ECFieldElement x, ECFieldElement y, ECFieldElement[] zs, bool withCompression)
{
return new SecT233K1Point(this, x, y, zs, withCompression);
}
public override ECPoint Infinity
{
get { return m_infinity; }
}
public override bool IsKoblitz
{
get { return true; }
}
public virtual int M
{
get { return 233; }
}
public virtual bool IsTrinomial
{
get { return true; }
}
public virtual int K1
{
get { return 74; }
}
public virtual int K2
{
get { return 0; }
}
public virtual int K3
{
get { return 0; }
}
}
}
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