package org.bouncycastle.math.ec.custom.sec; import java.math.BigInteger; import org.bouncycastle.math.ec.ECCurve; import org.bouncycastle.math.ec.ECCurve.AbstractF2m; import org.bouncycastle.math.ec.ECFieldElement; import org.bouncycastle.math.ec.ECPoint; import org.bouncycastle.util.encoders.Hex; public class SecT131R1Curve extends AbstractF2m { private static final int SecT131R1_DEFAULT_COORDS = COORD_LAMBDA_PROJECTIVE; protected SecT131R1Point infinity; public SecT131R1Curve() { super(131, 2, 3, 8); this.infinity = new SecT131R1Point(this, null, null); this.a = fromBigInteger(new BigInteger(1, Hex.decode("07A11B09A76B562144418FF3FF8C2570B8"))); this.b = fromBigInteger(new BigInteger(1, Hex.decode("0217C05610884B63B9C6C7291678F9D341"))); this.order = new BigInteger(1, Hex.decode("0400000000000000023123953A9464B54D")); this.cofactor = BigInteger.valueOf(2); this.coord = SecT131R1_DEFAULT_COORDS; } protected ECCurve cloneCurve() { return new SecT131R1Curve(); } public boolean supportsCoordinateSystem(int coord) { switch (coord) { case COORD_LAMBDA_PROJECTIVE: return true; default: return false; } } public int getFieldSize() { return 131; } public ECFieldElement fromBigInteger(BigInteger x) { return new SecT131FieldElement(x); } protected ECPoint createRawPoint(ECFieldElement x, ECFieldElement y, boolean withCompression) { return new SecT131R1Point(this, x, y, withCompression); } protected ECPoint createRawPoint(ECFieldElement x, ECFieldElement y, ECFieldElement[] zs, boolean withCompression) { return new SecT131R1Point(this, x, y, zs, withCompression); } public ECPoint getInfinity() { return infinity; } public boolean isKoblitz() { return false; } public int getM() { return 131; } public boolean isTrinomial() { return false; } public int getK1() { return 2; } public int getK2() { return 3; } public int getK3() { return 8; } }