mirror of
https://github.com/lightningdevkit/rust-lightning.git
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340 lines
9.8 KiB
Rust
340 lines
9.8 KiB
Rust
// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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// This is a port of Andrew Moons poly1305-donna
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// https://github.com/floodyberry/poly1305-donna
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use std::cmp::min;
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use util::byte_utils::{slice_to_le32, le32_to_array};
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#[derive(Clone, Copy)]
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pub struct Poly1305 {
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r : [u32; 5],
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h : [u32; 5],
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pad : [u32; 4],
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leftover : usize,
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buffer : [u8; 16],
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finalized : bool,
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}
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impl Poly1305 {
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pub fn new(key: &[u8]) -> Poly1305 {
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assert!(key.len() == 32);
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let mut poly = Poly1305{ r: [0u32; 5], h: [0u32; 5], pad: [0u32; 4], leftover: 0, buffer: [0u8; 16], finalized: false };
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// r &= 0xffffffc0ffffffc0ffffffc0fffffff
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poly.r[0] = (slice_to_le32(&key[0..4]) ) & 0x3ffffff;
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poly.r[1] = (slice_to_le32(&key[3..7]) >> 2) & 0x3ffff03;
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poly.r[2] = (slice_to_le32(&key[6..10]) >> 4) & 0x3ffc0ff;
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poly.r[3] = (slice_to_le32(&key[9..13]) >> 6) & 0x3f03fff;
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poly.r[4] = (slice_to_le32(&key[12..16]) >> 8) & 0x00fffff;
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poly.pad[0] = slice_to_le32(&key[16..20]);
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poly.pad[1] = slice_to_le32(&key[20..24]);
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poly.pad[2] = slice_to_le32(&key[24..28]);
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poly.pad[3] = slice_to_le32(&key[28..32]);
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poly
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}
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fn block(&mut self, m: &[u8]) {
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let hibit : u32 = if self.finalized { 0 } else { 1 << 24 };
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let r0 = self.r[0];
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let r1 = self.r[1];
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let r2 = self.r[2];
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let r3 = self.r[3];
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let r4 = self.r[4];
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let s1 = r1 * 5;
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let s2 = r2 * 5;
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let s3 = r3 * 5;
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let s4 = r4 * 5;
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let mut h0 = self.h[0];
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let mut h1 = self.h[1];
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let mut h2 = self.h[2];
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let mut h3 = self.h[3];
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let mut h4 = self.h[4];
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// h += m
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h0 += (slice_to_le32(&m[0..4]) ) & 0x3ffffff;
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h1 += (slice_to_le32(&m[3..7]) >> 2) & 0x3ffffff;
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h2 += (slice_to_le32(&m[6..10]) >> 4) & 0x3ffffff;
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h3 += (slice_to_le32(&m[9..13]) >> 6) & 0x3ffffff;
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h4 += (slice_to_le32(&m[12..16]) >> 8) | hibit;
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// h *= r
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let d0 = (h0 as u64 * r0 as u64) + (h1 as u64 * s4 as u64) + (h2 as u64 * s3 as u64) + (h3 as u64 * s2 as u64) + (h4 as u64 * s1 as u64);
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let mut d1 = (h0 as u64 * r1 as u64) + (h1 as u64 * r0 as u64) + (h2 as u64 * s4 as u64) + (h3 as u64 * s3 as u64) + (h4 as u64 * s2 as u64);
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let mut d2 = (h0 as u64 * r2 as u64) + (h1 as u64 * r1 as u64) + (h2 as u64 * r0 as u64) + (h3 as u64 * s4 as u64) + (h4 as u64 * s3 as u64);
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let mut d3 = (h0 as u64 * r3 as u64) + (h1 as u64 * r2 as u64) + (h2 as u64 * r1 as u64) + (h3 as u64 * r0 as u64) + (h4 as u64 * s4 as u64);
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let mut d4 = (h0 as u64 * r4 as u64) + (h1 as u64 * r3 as u64) + (h2 as u64 * r2 as u64) + (h3 as u64 * r1 as u64) + (h4 as u64 * r0 as u64);
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// (partial) h %= p
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let mut c : u32;
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c = (d0 >> 26) as u32; h0 = d0 as u32 & 0x3ffffff;
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d1 += c as u64; c = (d1 >> 26) as u32; h1 = d1 as u32 & 0x3ffffff;
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d2 += c as u64; c = (d2 >> 26) as u32; h2 = d2 as u32 & 0x3ffffff;
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d3 += c as u64; c = (d3 >> 26) as u32; h3 = d3 as u32 & 0x3ffffff;
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d4 += c as u64; c = (d4 >> 26) as u32; h4 = d4 as u32 & 0x3ffffff;
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h0 += c * 5; c = h0 >> 26; h0 = h0 & 0x3ffffff;
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h1 += c;
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self.h[0] = h0;
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self.h[1] = h1;
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self.h[2] = h2;
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self.h[3] = h3;
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self.h[4] = h4;
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}
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pub fn finish(&mut self) {
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if self.leftover > 0 {
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self.buffer[self.leftover] = 1;
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for i in self.leftover+1..16 {
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self.buffer[i] = 0;
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}
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self.finalized = true;
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let tmp = self.buffer;
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self.block(&tmp);
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}
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// fully carry h
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let mut h0 = self.h[0];
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let mut h1 = self.h[1];
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let mut h2 = self.h[2];
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let mut h3 = self.h[3];
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let mut h4 = self.h[4];
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let mut c : u32;
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c = h1 >> 26; h1 = h1 & 0x3ffffff;
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h2 += c; c = h2 >> 26; h2 = h2 & 0x3ffffff;
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h3 += c; c = h3 >> 26; h3 = h3 & 0x3ffffff;
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h4 += c; c = h4 >> 26; h4 = h4 & 0x3ffffff;
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h0 += c * 5; c = h0 >> 26; h0 = h0 & 0x3ffffff;
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h1 += c;
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// compute h + -p
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let mut g0 = h0.wrapping_add(5); c = g0 >> 26; g0 &= 0x3ffffff;
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let mut g1 = h1.wrapping_add(c); c = g1 >> 26; g1 &= 0x3ffffff;
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let mut g2 = h2.wrapping_add(c); c = g2 >> 26; g2 &= 0x3ffffff;
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let mut g3 = h3.wrapping_add(c); c = g3 >> 26; g3 &= 0x3ffffff;
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let mut g4 = h4.wrapping_add(c).wrapping_sub(1 << 26);
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// select h if h < p, or h + -p if h >= p
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let mut mask = (g4 >> (32 - 1)).wrapping_sub(1);
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g0 &= mask;
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g1 &= mask;
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g2 &= mask;
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g3 &= mask;
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g4 &= mask;
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mask = !mask;
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h0 = (h0 & mask) | g0;
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h1 = (h1 & mask) | g1;
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h2 = (h2 & mask) | g2;
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h3 = (h3 & mask) | g3;
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h4 = (h4 & mask) | g4;
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// h = h % (2^128)
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h0 = ((h0 ) | (h1 << 26)) & 0xffffffff;
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h1 = ((h1 >> 6) | (h2 << 20)) & 0xffffffff;
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h2 = ((h2 >> 12) | (h3 << 14)) & 0xffffffff;
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h3 = ((h3 >> 18) | (h4 << 8)) & 0xffffffff;
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// h = mac = (h + pad) % (2^128)
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let mut f : u64;
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f = h0 as u64 + self.pad[0] as u64 ; h0 = f as u32;
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f = h1 as u64 + self.pad[1] as u64 + (f >> 32); h1 = f as u32;
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f = h2 as u64 + self.pad[2] as u64 + (f >> 32); h2 = f as u32;
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f = h3 as u64 + self.pad[3] as u64 + (f >> 32); h3 = f as u32;
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self.h[0] = h0;
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self.h[1] = h1;
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self.h[2] = h2;
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self.h[3] = h3;
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}
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pub fn input(&mut self, data: &[u8]) {
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assert!(!self.finalized);
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let mut m = data;
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if self.leftover > 0 {
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let want = min(16 - self.leftover, m.len());
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for i in 0..want {
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self.buffer[self.leftover+i] = m[i];
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}
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m = &m[want..];
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self.leftover += want;
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if self.leftover < 16 {
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return;
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}
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// self.block(self.buffer[..]);
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let tmp = self.buffer;
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self.block(&tmp);
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self.leftover = 0;
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}
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while m.len() >= 16 {
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self.block(&m[0..16]);
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m = &m[16..];
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}
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for i in 0..m.len() {
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self.buffer[i] = m[i];
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}
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self.leftover = m.len();
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}
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pub fn raw_result(&mut self, output: &mut [u8]) {
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assert!(output.len() >= 16);
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if !self.finalized{
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self.finish();
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}
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output[0..4].copy_from_slice(&le32_to_array(self.h[0]));
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output[4..8].copy_from_slice(&le32_to_array(self.h[1]));
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output[8..12].copy_from_slice(&le32_to_array(self.h[2]));
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output[12..16].copy_from_slice(&le32_to_array(self.h[3]));
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}
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}
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#[cfg(test)]
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mod test {
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use std::iter::repeat;
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use util::poly1305::Poly1305;
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fn poly1305(key: &[u8], msg: &[u8], mac: &mut [u8]) {
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let mut poly = Poly1305::new(key);
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poly.input(msg);
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poly.raw_result(mac);
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}
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#[test]
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fn test_nacl_vector() {
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let key = [
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0xee,0xa6,0xa7,0x25,0x1c,0x1e,0x72,0x91,
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0x6d,0x11,0xc2,0xcb,0x21,0x4d,0x3c,0x25,
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0x25,0x39,0x12,0x1d,0x8e,0x23,0x4e,0x65,
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0x2d,0x65,0x1f,0xa4,0xc8,0xcf,0xf8,0x80,
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];
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let msg = [
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0x8e,0x99,0x3b,0x9f,0x48,0x68,0x12,0x73,
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0xc2,0x96,0x50,0xba,0x32,0xfc,0x76,0xce,
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0x48,0x33,0x2e,0xa7,0x16,0x4d,0x96,0xa4,
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0x47,0x6f,0xb8,0xc5,0x31,0xa1,0x18,0x6a,
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0xc0,0xdf,0xc1,0x7c,0x98,0xdc,0xe8,0x7b,
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0x4d,0xa7,0xf0,0x11,0xec,0x48,0xc9,0x72,
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0x71,0xd2,0xc2,0x0f,0x9b,0x92,0x8f,0xe2,
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0x27,0x0d,0x6f,0xb8,0x63,0xd5,0x17,0x38,
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0xb4,0x8e,0xee,0xe3,0x14,0xa7,0xcc,0x8a,
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0xb9,0x32,0x16,0x45,0x48,0xe5,0x26,0xae,
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0x90,0x22,0x43,0x68,0x51,0x7a,0xcf,0xea,
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0xbd,0x6b,0xb3,0x73,0x2b,0xc0,0xe9,0xda,
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0x99,0x83,0x2b,0x61,0xca,0x01,0xb6,0xde,
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0x56,0x24,0x4a,0x9e,0x88,0xd5,0xf9,0xb3,
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0x79,0x73,0xf6,0x22,0xa4,0x3d,0x14,0xa6,
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0x59,0x9b,0x1f,0x65,0x4c,0xb4,0x5a,0x74,
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0xe3,0x55,0xa5,
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];
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let expected = [
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0xf3,0xff,0xc7,0x70,0x3f,0x94,0x00,0xe5,
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0x2a,0x7d,0xfb,0x4b,0x3d,0x33,0x05,0xd9,
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];
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let mut mac = [0u8; 16];
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poly1305(&key, &msg, &mut mac);
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assert_eq!(&mac[..], &expected[..]);
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let mut poly = Poly1305::new(&key);
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poly.input(&msg[0..32]);
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poly.input(&msg[32..96]);
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poly.input(&msg[96..112]);
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poly.input(&msg[112..120]);
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poly.input(&msg[120..124]);
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poly.input(&msg[124..126]);
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poly.input(&msg[126..127]);
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poly.input(&msg[127..128]);
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poly.input(&msg[128..129]);
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poly.input(&msg[129..130]);
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poly.input(&msg[130..131]);
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poly.raw_result(&mut mac);
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assert_eq!(&mac[..], &expected[..]);
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}
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#[test]
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fn donna_self_test() {
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let wrap_key = [
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0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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];
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let wrap_msg = [
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0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
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0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
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];
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let wrap_mac = [
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0x03, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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];
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let mut mac = [0u8; 16];
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poly1305(&wrap_key, &wrap_msg, &mut mac);
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assert_eq!(&mac[..], &wrap_mac[..]);
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let total_key = [
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0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0xff,
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0xfe, 0xfd, 0xfc, 0xfb, 0xfa, 0xf9, 0xff, 0xff,
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0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
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0xff, 0xff, 0xff, 0xff, 0x00, 0x00, 0x00, 0x00,
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];
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let total_mac = [
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0x64, 0xaf, 0xe2, 0xe8, 0xd6, 0xad, 0x7b, 0xbd,
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0xd2, 0x87, 0xf9, 0x7c, 0x44, 0x62, 0x3d, 0x39,
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];
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let mut tpoly = Poly1305::new(&total_key);
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for i in 0..256 {
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let key: Vec<u8> = repeat(i as u8).take(32).collect();
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let msg: Vec<u8> = repeat(i as u8).take(256).collect();
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let mut mac = [0u8; 16];
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poly1305(&key[..], &msg[0..i], &mut mac);
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tpoly.input(&mac);
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}
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tpoly.raw_result(&mut mac);
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assert_eq!(&mac[..], &total_mac[..]);
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}
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#[test]
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fn test_tls_vectors() {
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// from http://tools.ietf.org/html/draft-agl-tls-chacha20poly1305-04
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let key = b"this is 32-byte key for Poly1305";
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let msg = [0u8; 32];
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let expected = [
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0x49, 0xec, 0x78, 0x09, 0x0e, 0x48, 0x1e, 0xc6,
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0xc2, 0x6b, 0x33, 0xb9, 0x1c, 0xcc, 0x03, 0x07,
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];
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let mut mac = [0u8; 16];
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poly1305(key, &msg, &mut mac);
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assert_eq!(&mac[..], &expected[..]);
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let msg = b"Hello world!";
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let expected= [
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0xa6, 0xf7, 0x45, 0x00, 0x8f, 0x81, 0xc9, 0x16,
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0xa2, 0x0d, 0xcc, 0x74, 0xee, 0xf2, 0xb2, 0xf0,
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];
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poly1305(key, msg, &mut mac);
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assert_eq!(&mac[..], &expected[..]);
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}
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}
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