<PackageReference Include="BouncyCastle.Cryptography" Version="2.5.0" />

SecT283R1Curve

using Org.BouncyCastle.Math.Raw; using Org.BouncyCastle.Utilities.Encoders; namespace Org.BouncyCastle.Math.EC.Custom.Sec { internal class SecT283R1Curve : AbstractF2mCurve { private class SecT283R1LookupTable : AbstractECLookupTable { private readonly SecT283R1Curve m_outer; private readonly ulong[] m_table; private readonly int m_size; public override int Size => m_size; internal SecT283R1LookupTable(SecT283R1Curve outer, ulong[] table, int size) { m_outer = outer; m_table = table; m_size = size; } public override ECPoint Lookup(int index) { ulong[] array = Nat320.Create64(); ulong[] array2 = Nat320.Create64(); int num = 0; for (int i = 0; i < m_size; i++) { ulong num2 = (ulong)((i ^ index) - 1 >> 31); for (int j = 0; j < 5; j++) { array[j] ^= (m_table[num + j] & num2); array2[j] ^= (m_table[num + 5 + j] & num2); } num += 10; } return CreatePoint(array, array2); } public override ECPoint LookupVar(int index) { ulong[] array = Nat320.Create64(); ulong[] array2 = Nat320.Create64(); int num = index * 5 * 2; for (int i = 0; i < 5; i++) { array[i] = m_table[num + i]; array2[i] = m_table[num + 5 + i]; } return CreatePoint(array, array2); } private ECPoint CreatePoint(ulong[] x, ulong[] y) { return m_outer.CreateRawPoint(new SecT283FieldElement(x), new SecT283FieldElement(y), SECT283R1_AFFINE_ZS); } } private const int SECT283R1_DEFAULT_COORDS = 6; private const int SECT283R1_FE_LONGS = 5; private static readonly ECFieldElement[] SECT283R1_AFFINE_ZS = new ECFieldElement[1] { new SecT283FieldElement(BigInteger.One) }; protected readonly SecT283R1Point m_infinity; public override ECPoint Infinity => m_infinity; public override int FieldSize => 283; public override bool IsKoblitz => false; public virtual int M => 283; public virtual bool IsTrinomial => false; public virtual int K1 => 5; public virtual int K2 => 7; public virtual int K3 => 12; public SecT283R1Curve() : base(283, 5, 7, 12) { m_infinity = new SecT283R1Point(this, null, null); m_a = FromBigInteger(BigInteger.One); m_b = FromBigInteger(new BigInteger(1, Hex.DecodeStrict("027B680AC8B8596DA5A4AF8A19A0303FCA97FD7645309FA2A581485AF6263E313B79A2F5"))); m_order = new BigInteger(1, Hex.DecodeStrict("03FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEF90399660FC938A90165B042A7CEFADB307")); m_cofactor = BigInteger.Two; m_coord = 6; } protected override ECCurve CloneCurve() { return new SecT283R1Curve(); } public override bool SupportsCoordinateSystem(int coord) { if (coord == 6) return true; return false; } public override ECFieldElement FromBigInteger(BigInteger x) { return new SecT283FieldElement(x); } protected internal override ECPoint CreateRawPoint(ECFieldElement x, ECFieldElement y) { return new SecT283R1Point(this, x, y); } protected internal override ECPoint CreateRawPoint(ECFieldElement x, ECFieldElement y, ECFieldElement[] zs) { return new SecT283R1Point(this, x, y, zs); } public override ECLookupTable CreateCacheSafeLookupTable(ECPoint[] points, int off, int len) { ulong[] array = new ulong[len * 5 * 2]; int num = 0; for (int i = 0; i < len; i++) { ECPoint obj = points[off + i]; Nat320.Copy64(((SecT283FieldElement)obj.RawXCoord).x, 0, array, num); num += 5; Nat320.Copy64(((SecT283FieldElement)obj.RawYCoord).x, 0, array, num); num += 5; } return new SecT283R1LookupTable(this, array, len); } } }