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https://github.com/GaloisInc/cryptol.git
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a04a2444a5
says 0<=t<=80, but the formula says 0<=t<=79. Later, they refer to 80 elements, so we're going with the formula's specification
90 lines
3.0 KiB
Plaintext
90 lines
3.0 KiB
Plaintext
/*
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* Copyright (c) 2004, 2013-2014 Galois, Inc.
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* Distributed under the terms of the BSD3 license (see LICENSE file)
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*/
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// Description of SHA1 at http://www.itl.nist.gov/fipspubs/fip180-4.htm
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sha1 msg = sha1' pmsg
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where
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pmsg = pad(join(msg))
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sha1' : {chunks} (fin chunks) => [chunks][512] -> [160]
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sha1' pmsg = join (Hs!0)
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where
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Hs = [[0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0]] #
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[ block(H, split(M))
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| H <- Hs
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| M <- pmsg
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]
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/*
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As a summary, a "1" followed by m "0"s followed by a 64-
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bit integer are appended to the end of the message to produce a
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padded message of length 512 * n. The 64-bit integer is the length
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of the original message. The padded message is then processed by the
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SHA-1 as n 512-bit blocks.
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*/
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pad : {msgLen,contentLen,chunks,padding}
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( fin msgLen
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, 64 >= width msgLen // message width fits in a word
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, contentLen == msgLen + 65 // message + header
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, chunks == (contentLen+511) / 512
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, padding == (512 - contentLen % 512) % 512 // prettier if type #'s could be < 0
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, msgLen == 512 * chunks - (65 + padding) // redundant, but Cryptol can't yet do the math
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)
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=> [msgLen] -> [chunks][512]
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pad msg = split (msg # [True] # (zero:[padding]) # (`msgLen:[64]))
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f : ([8], [32], [32], [32]) -> [32]
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f (t, x, y, z) =
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if (0 <= t) && (t <= 19) then (x && y) ^ (~x && z)
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| (20 <= t) && (t <= 39) then x ^ y ^ z
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| (40 <= t) && (t <= 59) then (x && y) ^ (x && z) ^ (y && z)
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| (60 <= t) && (t <= 79) then x ^ y ^ z
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else error "f: t out of range"
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Ks : [80][32]
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Ks = [ 0x5a827999 | t <- [0..19] ]
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# [ 0x6ed9eba1 | t <- [20..39] ]
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# [ 0x8f1bbcdc | t <- [40..59] ]
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# [ 0xca62c1d6 | t <- [60..79] ]
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block : ([5][32], [16][32]) -> [5][32]
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block ([H0, H1, H2, H3, H4], M) =
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[(H0+As@80), (H1+Bs@80), (H2+Cs@80), (H3+Ds@80), (H4+Es@80)]
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where
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Ws : [80][32]
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Ws = M # [ (W3 ^ W8 ^ W14 ^ W16) <<< 1
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| W16 <- drop`{16 - 16} Ws
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| W14 <- drop`{16 - 14} Ws
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| W8 <- drop`{16 - 8} Ws
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| W3 <- drop`{16 - 3} Ws
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| t <- [16..79]
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]
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As = [H0] # TEMP
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Bs = [H1] # As
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Cs = [H2] # [ B <<< 30 | B <- Bs ]
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Ds = [H3] # Cs
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Es = [H4] # Ds
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TEMP : [80][32]
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TEMP = [ (A <<< 5) + f(t, B, C, D) + E + W + K
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| A <- As | B <- Bs | C <- Cs | D <- Ds | E <- Es
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| W <- Ws | K <- Ks
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| t <- [0..79]
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]
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t0 = sha1 "" == 0xda39a3ee5e6b4b0d3255bfef95601890afd80709
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// Sample messages and their digests from FIPS180-1 appendix.
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t1 = sha1 "abc" == 0xA9993E364706816ABA3E25717850C26C9CD0D89D
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t2 = sha1 "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq" ==
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0x84983E441C3BD26EBAAE4AA1F95129E5E54670F1
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t3 = sha1 [ 'a' | i <- [1..1000000] ] ==
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0x34AA973CD4C4DAA4F61EEB2BDBAD27316534016F
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property testsPass = [t0, t1, t2, t3] == ~zero
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