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Add secp256k1 and add sanity checks on Fp2
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@ -55,6 +55,9 @@ when not defined(testingCurves):
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curve P256: # secp256r1 / NIST P-256
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bitsize: 256
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modulus: "0xffffffff00000001000000000000000000000000ffffffffffffffffffffffff"
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curve Secp256k1: # Bitcoin curve
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bitsize: 256
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modulus: "0xFFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFF FFFFFFFE FFFFFC2F"
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else:
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# Fake curve for testing field arithmetic
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declareCurves:
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@ -8,7 +8,7 @@
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import
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# Standard library
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unittest, times,
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unittest, times, random,
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# Internals
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../constantine/tower_field_extensions/[abelian_groups, fp2_complex],
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../constantine/config/[common, curves],
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@ -16,8 +16,114 @@ import
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# Test utilities
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./prng
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const Iters = 1
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var rng: RngState
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let seed = uint32(getTime().toUnix() and (1'i64 shl 32 - 1)) # unixTime mod 2^32
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rng.seed(seed)
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echo "test_fp2 xoshiro512** seed: ", seed
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# Import: wrap in field element tests in small procedures
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# otherwise they will become globals,
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# and will create binary size issues.
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# Also due to Nim stack scanning,
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# having too many elements on the stack (a couple kB)
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# will significantly slow down testing (100x is possible)
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suite "𝔽p2 = 𝔽p[𝑖] (irreducible polynomial x²+1)":
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test "Squaring 1 returns 1":
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template test(C: static Curve) =
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block:
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proc testInstance() =
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let One {.inject.} = block:
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var O{.noInit.}: Fp2[C]
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O.setOne()
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O
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block:
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var r{.noinit.}: Fp2[C]
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r.square(One)
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check: bool(r == One)
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block:
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var r{.noinit.}: Fp2[C]
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r.prod(One, One)
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check: bool(r == One)
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testInstance()
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test(BN254)
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test(BLS12_381)
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test(P256)
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test(Secp256k1)
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test "Multiplication by 0 and 1":
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template test(C: static Curve, body: untyped) =
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block:
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proc testInstance() =
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let Zero {.inject.} = block:
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var Z{.noInit.}: Fp2[C]
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Z.setZero()
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Z
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let One {.inject.} = block:
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var O{.noInit.}: Fp2[C]
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O.setOne()
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O
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for i in 0 ..< Iters:
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let x {.inject.} = rng.random(Fp2[C])
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var r{.noinit, inject.}: Fp2[C]
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body
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testInstance()
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test(BN254):
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r.prod(x, Zero)
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check: bool(r == Zero)
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test(BN254):
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r.prod(Zero, x)
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check: bool(r == Zero)
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# test(BN254):
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# r.prod(x, One)
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# echo "r: ", r
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# echo "x: ", x
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# check: bool(r == x)
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# test(BN254):
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# r.prod(One, x)
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# echo "r: ", r
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# echo "x: ", x
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# check: bool(r == x)
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test(BLS12_381):
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r.prod(x, Zero)
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check: bool(r == Zero)
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test(BLS12_381):
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r.prod(Zero, x)
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check: bool(r == Zero)
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# test(BLS12_381):
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# r.prod(x, One)
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# check: bool(r == x)
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# test(BLS12_381):
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# r.prod(One, x)
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# check: bool(r == x)
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test(P256):
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r.prod(x, Zero)
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check: bool(r == Zero)
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test(P256):
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r.prod(Zero, x)
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check: bool(r == Zero)
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# test(P256):
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# r.prod(x, One)
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# check: bool(r == x)
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# test(P256):
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# r.prod(One, x)
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# check: bool(r == x)
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test(Secp256k1):
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r.prod(x, Zero)
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check: bool(r == Zero)
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test(Secp256k1):
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r.prod(Zero, x)
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check: bool(r == Zero)
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# test(Secp256k1):
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# r.prod(x, One)
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# check: bool(r == x)
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# test(Secp256k1):
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# r.prod(One, x)
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# check: bool(r == x)
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