160 lines
		
	
	
		
			2.8 KiB
		
	
	
	
		
			V
		
	
	
			
		
		
	
	
			160 lines
		
	
	
		
			2.8 KiB
		
	
	
	
		
			V
		
	
	
// Copyright (c) 2019-2020 Alexander Medvednikov. All rights reserved.
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// Use of this source code is governed by an MIT license
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// that can be found in the LICENSE file.
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// SHA256 block step.
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// This is the generic version with no architecture optimizations.
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// In its own file so that an architecture
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// optimized verision can be substituted
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module sha256
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import math.bits
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const (
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	_k = [
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		0x428a2f98,
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		0x71374491,
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		0xb5c0fbcf,
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		0xe9b5dba5,
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		0x3956c25b,
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		0x59f111f1,
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		0x923f82a4,
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		0xab1c5ed5,
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		0xd807aa98,
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		0x12835b01,
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		0x243185be,
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		0x550c7dc3,
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		0x72be5d74,
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		0x80deb1fe,
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		0x9bdc06a7,
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		0xc19bf174,
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		0xe49b69c1,
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		0xefbe4786,
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		0x0fc19dc6,
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		0x240ca1cc,
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		0x2de92c6f,
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		0x4a7484aa,
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		0x5cb0a9dc,
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		0x76f988da,
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		0x983e5152,
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		0xa831c66d,
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		0xb00327c8,
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		0xbf597fc7,
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		0xc6e00bf3,
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		0xd5a79147,
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		0x06ca6351,
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		0x14292967,
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		0x27b70a85,
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		0x2e1b2138,
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		0x4d2c6dfc,
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		0x53380d13,
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		0x650a7354,
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		0x766a0abb,
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		0x81c2c92e,
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		0x92722c85,
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		0xa2bfe8a1,
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		0xa81a664b,
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		0xc24b8b70,
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		0xc76c51a3,
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		0xd192e819,
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		0xd6990624,
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		0xf40e3585,
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		0x106aa070,
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		0x19a4c116,
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		0x1e376c08,
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		0x2748774c,
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		0x34b0bcb5,
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		0x391c0cb3,
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		0x4ed8aa4a,
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		0x5b9cca4f,
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		0x682e6ff3,
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		0x748f82ee,
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		0x78a5636f,
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		0x84c87814,
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		0x8cc70208,
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		0x90befffa,
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		0xa4506ceb,
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		0xbef9a3f7,
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		0xc67178f2,
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	]
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)
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fn block_generic(dig mut Digest, p_ []byte) {
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	mut p := p_
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	mut w := [u32(0)].repeat(64)
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	mut h0 := dig.h[0]
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	mut h1 := dig.h[1]
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	mut h2 := dig.h[2]
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	mut h3 := dig.h[3]
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	mut h4 := dig.h[4]
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	mut h5 := dig.h[5]
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	mut h6 := dig.h[6]
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	mut h7 := dig.h[7]
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	for p.len >= chunk {
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		// Can interlace the computation of w with the
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		// rounds below if needed for speed.
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		for i in 0..16 {
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			j := i * 4
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			w[i] = u32(p[j]<<24) | u32(p[j+1]<<16) | u32(p[j+2]<<8) | u32(p[j+3])
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		}
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		for i := 16; i < 64; i++ {
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			v1 := w[i-2]
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			t1 := (bits.rotate_left_32(v1, -17)) ^ (bits.rotate_left_32(v1, -19)) ^ (v1 >> 10)
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			v2 := w[i-15]
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			t2 := (bits.rotate_left_32(v2, -7)) ^ (bits.rotate_left_32(v2, -18)) ^ (v2 >> 3)
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			w[i] = t1 + w[i-7] + t2 + w[i-16]
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		}
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		mut a := h0
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		mut b := h1
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		mut c := h2
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		mut d := h3
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		mut e := h4
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		mut f := h5
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		mut g := h6
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		mut h := h7
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		for i in 0..64 {
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			t1 := h + ((bits.rotate_left_32(e, -6)) ^ (bits.rotate_left_32(e, -11)) ^ (bits.rotate_left_32(e, -25))) + ((e & f) ^ (~e & g)) + u32(_k[i]) + w[i]
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			t2 := ((bits.rotate_left_32(a, -2)) ^ (bits.rotate_left_32(a, -13)) ^ (bits.rotate_left_32(a, -22))) + ((a & b) ^ (a & c) ^ (b & c))
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			h = g
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			g = f
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			f = e
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			e = d + t1
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			d = c
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			c = b
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			b = a
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			a = t1 + t2
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		}
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		h0 += a
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		h1 += b
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		h2 += c
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		h3 += d
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		h4 += e
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		h5 += f
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		h6 += g
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		h7 += h
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		if chunk >= p.len {
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			p = []
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		} else {
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			p = p[chunk..]
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		}
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	}
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	dig.h[0] = h0
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	dig.h[1] = h1
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	dig.h[2] = h2
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	dig.h[3] = h3
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	dig.h[4] = h4
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	dig.h[5] = h5
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	dig.h[6] = h6
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	dig.h[7] = h7
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}
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