public static class ECCurve.F2m extends ECCurve.AbstractF2m
y2 + xy = x3 + ax2 + b
.ECCurve.AbstractF2m, ECCurve.AbstractFp, ECCurve.Config, ECCurve.F2m, ECCurve.Fp
a, b, cofactor, coord, COORD_AFFINE, COORD_HOMOGENEOUS, COORD_JACOBIAN, COORD_JACOBIAN_CHUDNOVSKY, COORD_JACOBIAN_MODIFIED, COORD_LAMBDA_AFFINE, COORD_LAMBDA_PROJECTIVE, COORD_SKEWED, endomorphism, field, multiplier, order
Modifier | Constructor and Description |
---|---|
|
F2m(int m,
int k,
java.math.BigInteger a,
java.math.BigInteger b)
Deprecated.
use constructor taking order/cofactor
|
|
F2m(int m,
int k,
java.math.BigInteger a,
java.math.BigInteger b,
java.math.BigInteger order,
java.math.BigInteger cofactor)
Constructor for Trinomial Polynomial Basis (TPB).
|
|
F2m(int m,
int k1,
int k2,
int k3,
java.math.BigInteger a,
java.math.BigInteger b)
Deprecated.
use constructor taking order/cofactor
|
|
F2m(int m,
int k1,
int k2,
int k3,
java.math.BigInteger a,
java.math.BigInteger b,
java.math.BigInteger order,
java.math.BigInteger cofactor)
Constructor for Pentanomial Polynomial Basis (PPB).
|
protected |
F2m(int m,
int k1,
int k2,
int k3,
ECFieldElement a,
ECFieldElement b,
java.math.BigInteger order,
java.math.BigInteger cofactor) |
Modifier and Type | Method and Description |
---|---|
protected ECCurve |
cloneCurve() |
ECLookupTable |
createCacheSafeLookupTable(ECPoint[] points,
int off,
int len)
Create a cache-safe lookup table for the specified sequence of points.
|
protected ECMultiplier |
createDefaultMultiplier() |
protected ECPoint |
createRawPoint(ECFieldElement x,
ECFieldElement y) |
protected ECPoint |
createRawPoint(ECFieldElement x,
ECFieldElement y,
ECFieldElement[] zs) |
ECFieldElement |
fromBigInteger(java.math.BigInteger x) |
int |
getFieldSize() |
ECPoint |
getInfinity() |
int |
getK1() |
int |
getK2() |
int |
getK3() |
int |
getM() |
boolean |
isTrinomial()
Return true if curve uses a Trinomial basis.
|
boolean |
supportsCoordinateSystem(int coord) |
createPoint, decompressPoint, inverse, isKoblitz, isValidFieldElement, randomFieldElement, randomFieldElementMult, solveQuadraticEquation
checkPoint, checkPoints, checkPoints, configure, decodePoint, equals, equals, getA, getAffinePointEncodingLength, getAllCoordinateSystems, getB, getCofactor, getCoordinateSystem, getEndomorphism, getField, getFieldElementEncodingLength, getMultiplier, getOrder, getPreCompInfo, hashCode, importPoint, normalizeAll, normalizeAll, precompute, validatePoint
public F2m(int m, int k, java.math.BigInteger a, java.math.BigInteger b)
m
- The exponent m
of
F2m
.k
- The integer k
where xm +
xk + 1
represents the reduction
polynomial f(z)
.a
- The coefficient a
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.b
- The coefficient b
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.public F2m(int m, int k, java.math.BigInteger a, java.math.BigInteger b, java.math.BigInteger order, java.math.BigInteger cofactor)
m
- The exponent m
of
F2m
.k
- The integer k
where xm +
xk + 1
represents the reduction
polynomial f(z)
.a
- The coefficient a
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.b
- The coefficient b
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.order
- The order of the main subgroup of the elliptic curve.cofactor
- The cofactor of the elliptic curve, i.e.
#Ea(F2m) = h * n
.public F2m(int m, int k1, int k2, int k3, java.math.BigInteger a, java.math.BigInteger b)
m
- The exponent m
of
F2m
.k1
- The integer k1
where xm +
xk3 + xk2 + xk1 + 1
represents the reduction polynomial f(z)
.k2
- The integer k2
where xm +
xk3 + xk2 + xk1 + 1
represents the reduction polynomial f(z)
.k3
- The integer k3
where xm +
xk3 + xk2 + xk1 + 1
represents the reduction polynomial f(z)
.a
- The coefficient a
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.b
- The coefficient b
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.public F2m(int m, int k1, int k2, int k3, java.math.BigInteger a, java.math.BigInteger b, java.math.BigInteger order, java.math.BigInteger cofactor)
m
- The exponent m
of
F2m
.k1
- The integer k1
where xm +
xk3 + xk2 + xk1 + 1
represents the reduction polynomial f(z)
.k2
- The integer k2
where xm +
xk3 + xk2 + xk1 + 1
represents the reduction polynomial f(z)
.k3
- The integer k3
where xm +
xk3 + xk2 + xk1 + 1
represents the reduction polynomial f(z)
.a
- The coefficient a
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.b
- The coefficient b
in the Weierstrass equation
for non-supersingular elliptic curves over
F2m
.order
- The order of the main subgroup of the elliptic curve.cofactor
- The cofactor of the elliptic curve, i.e.
#Ea(F2m) = h * n
.protected F2m(int m, int k1, int k2, int k3, ECFieldElement a, ECFieldElement b, java.math.BigInteger order, java.math.BigInteger cofactor)
protected ECCurve cloneCurve()
cloneCurve
in class ECCurve
public boolean supportsCoordinateSystem(int coord)
supportsCoordinateSystem
in class ECCurve
protected ECMultiplier createDefaultMultiplier()
createDefaultMultiplier
in class ECCurve
public int getFieldSize()
getFieldSize
in class ECCurve
public ECFieldElement fromBigInteger(java.math.BigInteger x)
fromBigInteger
in class ECCurve
protected ECPoint createRawPoint(ECFieldElement x, ECFieldElement y)
createRawPoint
in class ECCurve
protected ECPoint createRawPoint(ECFieldElement x, ECFieldElement y, ECFieldElement[] zs)
createRawPoint
in class ECCurve
public ECPoint getInfinity()
getInfinity
in class ECCurve
public int getM()
public boolean isTrinomial()
public int getK1()
public int getK2()
public int getK3()
public ECLookupTable createCacheSafeLookupTable(ECPoint[] points, int off, int len)
ECCurve
ECCurve
instance, and MUST already be normalized.createCacheSafeLookupTable
in class ECCurve