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BigIntRing.scala
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BigIntRing.scala
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import stainless.lang._
import stainless.proof._
import stainless.collection._
import stainless.annotation._
object BigIntRing {
abstract class Additive[A] {
def zero: A
def plus(a: A, b: A): A
def negate(a: A): A
@law def law_add_associative(x: A, y: A, z: A) = plus(plus(x, y), z) == plus(x, plus(y, z))
@law def law_add_commutative(x: A, y: A) = plus(x, y) == plus(y, x)
@law def law_add_identity(x: A) = plus(x, zero) == x
@law def law_add_inverse(x: A) = plus(x, negate(x)) == zero
}
abstract class Ring[A] extends Additive[A] {
def times(a: A, b: A): A
def fromInteger(n: BigInt): A
def one: A = fromInteger(1)
@law def law_times_associative(x: A, y: A, z: A) = times(times(x, y), z) == times(x, times(y, z))
@law def law_times_identity(x: A) = times(x, one) == x
@law def law_left_distributivity(x: A, y: A, z: A) = times(x, plus(y, z)) == plus(times(x, y), times(x, z))
@law def law_right_distributivity(x: A, y: A, z: A) = times(plus(y, z), x) == plus(times(y, x), times(z, x))
}
implicit case object BigIntRing extends Ring[BigInt] {
override def zero: BigInt = 0
override def plus(a: BigInt, b: BigInt): BigInt = a + b
override def negate(a: BigInt): BigInt = -a
override def times(a: BigInt, b: BigInt): BigInt = a * b
override def fromInteger(n: BigInt): BigInt = n
override def one: BigInt = 1
}
}