Initial Ristretto255 API refactoring
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@ -84,6 +84,8 @@ object Ed25519 {
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fun invert(scalar: Scalar): Scalar = Scalar(Ed25519LowLevel.invertScalar(scalar.encoded))
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fun negate(scalar: Scalar): Scalar = Scalar(Ed25519LowLevel.negateScalar(scalar.encoded))
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fun reduce(scalar: Scalar): Scalar = Scalar(Ed25519LowLevel.reduceScalar(scalar.encoded))
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fun complement(scalar: Scalar) : Scalar = Scalar(Ed25519LowLevel.complementScalar(scalar.encoded))
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@ -137,7 +139,7 @@ object Ed25519 {
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operator fun div(y: UInt): Scalar = this / fromUInt(y)
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operator fun div(y: ULong): Scalar = this / fromULong(y)
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operator fun unaryMinus(): Scalar = Scalar(Ed25519LowLevel.negateScalar(this.encoded))
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operator fun unaryMinus(): Scalar = negate(this)
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operator fun times(p: Point): Point = p.times(this)
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fun times(p: Point, clamp: Boolean): Point =
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@ -16,7 +16,7 @@ const val crypto_core_ristretto255_NONREDUCEDSCALARBYTES = 64
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const val crypto_scalarmult_ristretto255_BYTES = 32U
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const val crypto_scalarmult_ristretto255_SCALARBYTES = 32U
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expect abstract class Ristretto255LowLevel() {
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expect object Ristretto255LowLevel {
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fun isValidPoint(encoded: UByteArray): Boolean
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fun addPoints(p: UByteArray, q: UByteArray): UByteArray
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fun subtractPoints(p: UByteArray, q: UByteArray): UByteArray
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@ -34,97 +34,102 @@ expect abstract class Ristretto255LowLevel() {
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fun scalarMultiplicationBase(n: UByteArray): UByteArray
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}
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object Ristretto255 : Ristretto255LowLevel() {
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fun add(p: Point, q: Point): Point =
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Point(addPoints(p.encoded, q.encoded))
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fun subtract(p: Point, q: Point): Point =
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Point(subtractPoints(p.encoded, q.encoded))
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fun pointFromHash(hash: UByteArray): Point = Point(encodedPointFromHash(hash))
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fun randomPoint(): Point = Point(randomEncodedPoint())
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fun randomScalar(): Scalar = Scalar(randomEncodedScalar())
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fun invert(scalar: Scalar): Scalar =
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Scalar(invertScalar(scalar.encoded))
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fun negate(scalar: Scalar): Scalar =
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Scalar(negateScalar(scalar.encoded))
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fun complement(scalar: Scalar): Scalar =
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Scalar(complementScalar(scalar.encoded))
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fun add(x: Scalar, y: Scalar): Scalar =
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Scalar(addScalars(x.encoded, y.encoded))
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fun subtract(x: Scalar, y: Scalar): Scalar =
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Scalar(subtractScalars(x.encoded, y.encoded))
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fun multiply(x: Scalar, y: Scalar): Scalar =
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Scalar(multiplyScalars(x.encoded, y.encoded))
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fun reduce(scalar: Scalar): Scalar =
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Scalar(reduceScalar(scalar.encoded))
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fun scalarMultiplication(p: Point, n: Scalar): Point =
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Point(scalarMultiplication(n.encoded, p.encoded))
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fun scalarMultiplicationBase(n: Scalar): Point =
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Point(scalarMultiplicationBase(n.encoded))
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object Ristretto255 {
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// fun add(p: Point, q: Point): Point =
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// Point(addPoints(p.encoded, q.encoded))
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//
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// fun subtract(p: Point, q: Point): Point =
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// Point(subtractPoints(p.encoded, q.encoded))
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//
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// fun pointFromHash(hash: UByteArray): Point = Point(encodedPointFromHash(hash))
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//
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// fun randomPoint(): Point = Point(randomEncodedPoint())
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//
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// fun randomScalar(): Scalar = Scalar(randomEncodedScalar())
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//
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// fun invert(scalar: Scalar): Scalar =
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// Scalar(invertScalar(scalar.encoded))
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//
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// fun negate(scalar: Scalar): Scalar =
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// Scalar(negateScalar(scalar.encoded))
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//
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// fun complement(scalar: Scalar): Scalar =
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// Scalar(complementScalar(scalar.encoded))
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//
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// fun add(x: Scalar, y: Scalar): Scalar =
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// Scalar(addScalars(x.encoded, y.encoded))
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//
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// fun subtract(x: Scalar, y: Scalar): Scalar =
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// Scalar(subtractScalars(x.encoded, y.encoded))
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//
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// fun multiply(x: Scalar, y: Scalar): Scalar =
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// Scalar(multiplyScalars(x.encoded, y.encoded))
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//
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// fun reduce(scalar: Scalar): Scalar =
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// Scalar(reduceScalar(scalar.encoded))
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//
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// fun scalarMultiplication(p: Point, n: Scalar): Point =
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// Point(scalarMultiplication(n.encoded, p.encoded))
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//
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// fun scalarMultiplicationBase(n: Scalar): Point =
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// Point(scalarMultiplicationBase(n.encoded))
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data class Point(val encoded: UByteArray) {
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operator fun plus(q: Point): Point = add(this, q)
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operator fun minus(q: Point): Point = subtract(this, q)
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operator fun times(n: Scalar): Point = scalarMultiplication(this, n)
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companion object {
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val IDENTITY: Point = Point(UByteArray(crypto_core_ristretto255_BYTES))
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val BASE: Point = multiplyBase(Scalar.ONE)
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fun fromHash(hash: UByteArray): Point = Point(Ristretto255LowLevel.encodedPointFromHash(hash))
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fun random(): Point = Point(Ristretto255LowLevel.randomEncodedPoint())
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fun multiplyBase(n: Scalar): Point = Point(Ristretto255LowLevel.scalarMultiplicationBase(n.encoded))
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fun fromHex(hex: String): Point = Point(LibsodiumUtil.fromHex(hex))
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fun isValid(point: Point) : Boolean = Ristretto255LowLevel.isValidPoint(point.encoded)
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}
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operator fun plus(q: Point): Point = Point(Ristretto255LowLevel.addPoints(this.encoded, q.encoded))
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operator fun minus(q: Point): Point = Point(Ristretto255LowLevel.subtractPoints(this.encoded, q.encoded))
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operator fun times(n: Scalar): Point = Point(Ristretto255LowLevel.scalarMultiplication(n.encoded, this.encoded))
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fun toHex(): String = LibsodiumUtil.toHex(encoded)
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override fun equals(other: Any?): Boolean = (other as? Point)?.encoded?.contentEquals(encoded) == true
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override fun hashCode(): Int = encoded.contentHashCode()
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companion object {
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val IDENTITY: Point = Point(UByteArray(crypto_core_ristretto255_BYTES))
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val BASE: Point = scalarMultiplicationBase(Scalar.ONE)
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fun fromHash(hash: UByteArray): Point = pointFromHash(hash)
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fun random(): Point = randomPoint()
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fun multiplyBase(n: Scalar): Point = scalarMultiplicationBase(n)
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fun fromHex(hex: String): Point = Point(LibsodiumUtil.fromHex(hex))
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}
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}
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data class Scalar(val encoded: UByteArray) {
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operator fun plus(y: Scalar): Scalar = add(this, y)
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operator fun plus(y: Scalar): Scalar = Scalar(Ristretto255LowLevel.addScalars(this.encoded, y.encoded))
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operator fun plus(y: UInt): Scalar = this + fromUInt(y)
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operator fun plus(y: ULong): Scalar = this + fromULong(y)
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operator fun minus(y: Scalar): Scalar = subtract(this, y)
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operator fun minus(y: Scalar): Scalar = Scalar(Ristretto255LowLevel.subtractScalars(this.encoded, y.encoded))
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operator fun minus(y: UInt): Scalar = this - fromUInt(y)
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operator fun minus(y: ULong): Scalar = this - fromULong(y)
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operator fun times(y: Scalar): Scalar = multiply(this, y)
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operator fun times(y: Scalar): Scalar = Scalar(Ristretto255LowLevel.multiplyScalars(this.encoded, y.encoded))
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operator fun times(y: UInt): Scalar = this * fromUInt(y)
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operator fun times(y: ULong): Scalar = this * fromULong(y)
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operator fun div(y: Scalar): Scalar = multiply(this, invert(y))
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operator fun div(y: Scalar): Scalar = Scalar(Ristretto255LowLevel.multiplyScalars(this.encoded, y.invert().encoded))
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operator fun div(y: UInt): Scalar = this / fromUInt(y)
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operator fun div(y: ULong): Scalar = this / fromULong(y)
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operator fun unaryMinus(): Scalar = negate(this)
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operator fun times(p: Point): Point = scalarMultiplication(p, this)
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operator fun times(p: Point): Point = p.times(this)
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fun reduce(): Scalar = reduce(this)
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fun invert(): Scalar = invert(this)
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fun complement(): Scalar = complement(this)
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fun multiplyWithBase(): Point = scalarMultiplicationBase(this)
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fun multiplyWithBase(): Point = Point.multiplyBase(this)
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fun toHex(): String = LibsodiumUtil.toHex(encoded)
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@ -136,8 +141,20 @@ object Ristretto255 : Ristretto255LowLevel() {
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val ONE = fromUInt(1U)
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val TWO = fromUInt(2U)
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fun random(): Scalar = randomScalar()
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fun random(): Scalar = Scalar(Ristretto255LowLevel.randomEncodedScalar())
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fun invert(scalar: Scalar): Scalar =
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Scalar(Ristretto255LowLevel.invertScalar(scalar.encoded))
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fun negate(scalar: Scalar): Scalar =
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Scalar(Ristretto255LowLevel.negateScalar(scalar.encoded))
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fun reduce(scalar: Scalar): Scalar =
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Scalar(Ristretto255LowLevel.reduceScalar(scalar.encoded))
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fun complement(scalar: Scalar): Scalar =
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Scalar(Ristretto255LowLevel.complementScalar(scalar.encoded))
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fun fromUInt(i: UInt): Scalar = fromULong(i.toULong())
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fun fromULong(l: ULong): Scalar {
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@ -162,7 +179,7 @@ object Ristretto255 : Ristretto255LowLevel() {
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LibsodiumUtil.fromHex(hex.padEnd(2 * crypto_core_ristretto255_NONREDUCEDSCALARBYTES, '0'))
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// Scalars are encoded in little-endian order, so the end can be padded with zeroes up to the size of a
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// non-reduced scalar. After decoding, it is reduced, to obtain a scalar in the canonical range
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return Scalar(reduceScalar(encoded))
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return Scalar(Ristretto255LowLevel.reduceScalar(encoded))
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} else {
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val encoded = LibsodiumUtil.fromHex(hex.padEnd(2 * crypto_core_ristretto255_SCALARBYTES, '0'))
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// Scalars are encoded in little-endian order, so the end can be padded with zeroes up to the size of a
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@ -96,9 +96,9 @@ class Ristretto255Test {
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assertTrue { Ristretto255.isValidPoint(p.encoded) }
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assertTrue { Ristretto255.isValidPoint(q.encoded) }
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assertTrue { Ristretto255.isValidPoint(r.encoded) }
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assertTrue { Ristretto255.Point.isValid(p) }
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assertTrue { Ristretto255.Point.isValid(q) }
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assertTrue { Ristretto255.Point.isValid(r) }
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}
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}
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@ -117,11 +117,11 @@ class Ristretto255Test {
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fun testIsValidPoint() = runTest {
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LibsodiumInitializer.initializeWithCallback {
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for (hexEncoded in badEncodings) {
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assertFalse { Ristretto255.isValidPoint(LibsodiumUtil.fromHex(hexEncoded)) }
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assertFalse { Ristretto255.Point.isValid(Ristretto255.Point.fromHex(hexEncoded)) }
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}
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for (hexEncoded in basePointSmallMultiples) {
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assertTrue { Ristretto255.isValidPoint(LibsodiumUtil.fromHex(hexEncoded)) }
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assertTrue { Ristretto255.Point.isValid(Ristretto255.Point.fromHex(hexEncoded)) }
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}
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}
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}
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@ -134,8 +134,8 @@ class Ristretto255Test {
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val b = Ristretto255.Point.BASE
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val n = Ristretto255.Scalar.fromUInt(i.toUInt() + 1U)
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assertEquals(p, Ristretto255.scalarMultiplicationBase(n))
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assertEquals(p, Ristretto255.scalarMultiplication(b, n))
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assertEquals(p, Ristretto255.Point.multiplyBase(n))
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assertEquals(p, b.times(n))
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assertEquals(p, n.multiplyWithBase())
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for (j in 0..<i) {
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@ -4,7 +4,7 @@ import com.ionspin.kotlin.crypto.getSodium
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import ext.libsodium.com.ionspin.kotlin.crypto.toUByteArray
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import ext.libsodium.com.ionspin.kotlin.crypto.toUInt8Array
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actual abstract class Ristretto255LowLevel actual constructor() {
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actual object Ristretto255LowLevel {
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actual fun isValidPoint(encoded: UByteArray): Boolean =
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getSodium().crypto_core_ristretto255_is_valid_point(encoded.toUInt8Array())
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@ -3,7 +3,7 @@ package com.ionspin.kotlin.crypto.ristretto255
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import com.ionspin.kotlin.crypto.GeneralLibsodiumException.Companion.ensureLibsodiumSuccess
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import com.ionspin.kotlin.crypto.LibsodiumInitializer.sodiumJna
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actual abstract class Ristretto255LowLevel actual constructor() {
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actual object Ristretto255LowLevel {
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actual fun isValidPoint(encoded: UByteArray): Boolean =
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sodiumJna.crypto_core_ristretto255_is_valid_point(encoded.asByteArray()) == 1
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@ -20,7 +20,7 @@ import libsodium.crypto_scalarmult_ristretto255
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import libsodium.crypto_scalarmult_ristretto255_base
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actual abstract class Ristretto255LowLevel actual constructor() {
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actual object Ristretto255LowLevel {
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actual fun isValidPoint(encoded: UByteArray): Boolean {
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return encoded.usePinned { crypto_core_ristretto255_is_valid_point(it.toPtr()) == 1 }
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}
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