2020-02-08 10:42:35 +00:00
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# Constantine
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# Copyright (c) 2018-2019 Status Research & Development GmbH
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# Copyright (c) 2020-Present Mamy André-Ratsimbazafy
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2018-12-02 19:57:32 +00:00
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# Licensed and distributed under either of
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# * MIT license (license terms in the root directory or at http://opensource.org/licenses/MIT).
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# * Apache v2 license (license terms in the root directory or at http://www.apache.org/licenses/LICENSE-2.0).
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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2018-12-03 18:56:14 +00:00
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import unittest, random,
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2020-02-10 17:16:34 +00:00
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../constantine/[io, bigints_raw]
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2018-12-02 19:57:32 +00:00
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2018-12-03 18:56:14 +00:00
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randomize(0xDEADBEEF) # Random seed for reproducibility
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type T = BaseType
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2018-12-02 19:57:32 +00:00
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suite "IO":
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test "Parsing raw integers":
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block: # Sanity check
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let x = 0'u64
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let x_bytes = cast[array[8, byte]](x)
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2020-02-09 14:38:30 +00:00
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let big = BigInt[64].fromRawUint(x_bytes, cpuEndian)
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2018-12-02 19:57:32 +00:00
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check:
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T(big.limbs[0]) == 0
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T(big.limbs[1]) == 0
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2018-12-02 19:57:32 +00:00
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2018-12-03 20:01:29 +00:00
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test "Parsing and dumping round-trip on uint64":
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block:
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# "Little-endian" - 2^63
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2018-12-03 18:56:14 +00:00
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let x = 1'u64 shl 63
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let x_bytes = cast[array[8, byte]](x)
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2020-02-09 14:38:30 +00:00
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let big = BigInt[64].fromRawUint(x_bytes, littleEndian) # It's fine even on big-endian platform. We only want the byte-pattern
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2018-12-03 18:56:14 +00:00
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var r_bytes: array[8, byte]
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dumpRawUint(r_bytes, big, littleEndian)
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check: x_bytes == r_bytes
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2018-12-03 20:01:29 +00:00
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block: # "Little-endian" - single random
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let x = uint64 rand(0..high(int))
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let x_bytes = cast[array[8, byte]](x)
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2020-02-09 14:38:30 +00:00
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let big = BigInt[64].fromRawUint(x_bytes, littleEndian) # It's fine even on big-endian platform. We only want the byte-pattern
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2018-12-03 20:01:29 +00:00
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var r_bytes: array[8, byte]
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dumpRawUint(r_bytes, big, littleEndian)
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check: x_bytes == r_bytes
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block: # "Little-endian" - 10 random cases
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for _ in 0 ..< 10:
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let x = uint64 rand(0..high(int))
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let x_bytes = cast[array[8, byte]](x)
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2020-02-09 14:38:30 +00:00
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let big = BigInt[64].fromRawUint(x_bytes, littleEndian) # It's fine even on big-endian platform. We only want the byte-pattern
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2018-12-03 18:56:14 +00:00
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2018-12-03 20:01:29 +00:00
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var r_bytes: array[8, byte]
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dumpRawUint(r_bytes, big, littleEndian)
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check: x_bytes == r_bytes
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2019-04-28 15:42:30 +00:00
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test "Round trip on elliptic curve constants":
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block: # Secp256k1 - https://en.bitcoin.it/wiki/Secp256k1
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2020-02-08 16:03:30 +00:00
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const p = "0xfffffffffffffffffffffffffffffffffffffffffffffffffffffffefffffc2f"
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let x = BigInt[256].fromHex(p)
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let hex = x.dumpHex(bigEndian)
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check: p == hex
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2020-02-08 16:03:30 +00:00
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block: # BN254 - https://github.com/ethereum/py_ecc/blob/master/py_ecc/fields/field_properties.py
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const p = "0x30644e72e131a029b85045b68181585d97816a916871ca8d3c208c16d87cfd47"
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let x = BigInt[254].fromHex(p)
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let hex = x.dumpHex(bigEndian)
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check: p == hex
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block: # BLS12-381 - https://github.com/ethereum/py_ecc/blob/master/py_ecc/fields/field_properties.py
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const p = "0x1a0111ea397fe69a4b1ba7b6434bacd764774b84f38512bf6730d2a0f6b0f6241eabfffeb153ffffb9feffffffffaaab"
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let x = BigInt[381].fromHex(p)
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let hex = x.dumpHex(bigEndian)
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check: p == hex
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