180 lines
5.2 KiB
C
180 lines
5.2 KiB
C
//
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// The MIT License (MIT)
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//
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// Copyright (c) 2023 Ihar Katkavets
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// Permission is hereby granted, free of charge, to any person obtaining
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// a copy of this software and associated documentation files (the
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// "Software"), to deal in the Software without restriction, including
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// without limitation the rights to use, copy, modify, merge, publish,
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// distribute, sublicense, and/or sell copies of the Software, and to
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// permit persons to whom the Software is furnished to do so, subject to
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// the following conditions:
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//
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// The above copyright notice and this permission notice shall be
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// included in all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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// EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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// NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
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// LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
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// OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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// WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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//
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/**
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* Salsa 20 implementation adopted from the reference
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* implementation by D. J. Bernstein https://cr.yp.to/chacha.html
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* Taken from https://cr.yp.to/streamciphers/timings/estreambench/submissions/salsa20/chacha8/regs/chacha.c
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*/
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#include "chacha20.h"
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#include "encrypt-portable.h"
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#include <stdint.h>
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#include <stdio.h>
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#define ROTATE(v,c) (ROTL32(v,c))
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#define XOR(v,w) ((v) ^ (w))
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#define PLUS(v,w) ((v) + (w))
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#define PLUSONE(v) (PLUS((v),1))
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#define QUARTERROUND(a,b,c,d) \
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a = PLUS(a,b); d = ROTATE(XOR(d,a),16); \
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c = PLUS(c,d); b = ROTATE(XOR(b,c),12); \
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a = PLUS(a,b); d = ROTATE(XOR(d,a), 8); \
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c = PLUS(c,d); b = ROTATE(XOR(b,c), 7);
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static void chacha20_wordtobyte(u8 output[64],const u32 input[16])
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{
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u32 x0, x1, x2, x3, x4, x5, x6, x7, x8, x9, x10, x11, x12, x13, x14, x15;
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int i;
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x0 = input[0];
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x1 = input[1];
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x2 = input[2];
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x3 = input[3];
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x4 = input[4];
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x5 = input[5];
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x6 = input[6];
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x7 = input[7];
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x8 = input[8];
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x9 = input[9];
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x10 = input[10];
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x11 = input[11];
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x12 = input[12];
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x13 = input[13];
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x14 = input[14];
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x15 = input[15];
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for (i = 20;i > 0;i -= 2) {
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QUARTERROUND( x0, x4, x8,x12)
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QUARTERROUND( x1, x5, x9,x13)
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QUARTERROUND( x2, x6,x10,x14)
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QUARTERROUND( x3, x7,x11,x15)
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QUARTERROUND( x0, x5,x10,x15)
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QUARTERROUND( x1, x6,x11,x12)
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QUARTERROUND( x2, x7, x8,x13)
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QUARTERROUND( x3, x4, x9,x14)
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}
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x0 = PLUS(x0,input[0]);
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x1 = PLUS(x1,input[1]);
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x2 = PLUS(x2,input[2]);
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x3 = PLUS(x3,input[3]);
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x4 = PLUS(x4,input[4]);
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x5 = PLUS(x5,input[5]);
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x6 = PLUS(x6,input[6]);
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x7 = PLUS(x7,input[7]);
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x8 = PLUS(x8,input[8]);
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x9 = PLUS(x9,input[9]);
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x10 = PLUS(x10,input[10]);
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x11 = PLUS(x11,input[11]);
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x12 = PLUS(x12,input[12]);
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x13 = PLUS(x13,input[13]);
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x14 = PLUS(x14,input[14]);
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x15 = PLUS(x15,input[15]);
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U32TO8_LITTLE(output + 0,x0);
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U32TO8_LITTLE(output + 4,x1);
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U32TO8_LITTLE(output + 8,x2);
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U32TO8_LITTLE(output + 12,x3);
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U32TO8_LITTLE(output + 16,x4);
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U32TO8_LITTLE(output + 20,x5);
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U32TO8_LITTLE(output + 24,x6);
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U32TO8_LITTLE(output + 28,x7);
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U32TO8_LITTLE(output + 32,x8);
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U32TO8_LITTLE(output + 36,x9);
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U32TO8_LITTLE(output + 40,x10);
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U32TO8_LITTLE(output + 44,x11);
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U32TO8_LITTLE(output + 48,x12);
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U32TO8_LITTLE(output + 52,x13);
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U32TO8_LITTLE(output + 56,x14);
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U32TO8_LITTLE(output + 60,x15);
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}
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void CHACHA20_init(void)
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{
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return;
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}
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static const char sigma[16] = "expand 32-byte k";
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void CHACHA20_keysetup(CHACHA20_ctx *x,const u8 *k,u32 kbits,u32 ivbits)
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{
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const char *constants;
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x->input[0] = U8TO32_LITTLE(sigma + 0);
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x->input[1] = U8TO32_LITTLE(sigma + 4);
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x->input[2] = U8TO32_LITTLE(sigma + 8);
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x->input[3] = U8TO32_LITTLE(sigma + 12);
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x->input[4] = U8TO32_LITTLE(k + 0);
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x->input[5] = U8TO32_LITTLE(k + 4);
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x->input[6] = U8TO32_LITTLE(k + 8);
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x->input[7] = U8TO32_LITTLE(k + 12);
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x->input[8] = U8TO32_LITTLE(k + 16);
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x->input[9] = U8TO32_LITTLE(k + 20);
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x->input[10] = U8TO32_LITTLE(k + 24);
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x->input[11] = U8TO32_LITTLE(k + 28);
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}
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void CHACHA20_ivsetup(CHACHA20_ctx *x,const u8 *iv)
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{
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x->input[12] = 0;
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x->input[13] = U8TO32_LITTLE(iv + 0);
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x->input[14] = U8TO32_LITTLE(iv + 4);
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x->input[15] = U8TO32_LITTLE(iv + 8);
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}
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void CHACHA20_encrypt_bytes(CHACHA20_ctx *x,const u8 *m,u8 *c,u32 bytes)
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{
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u8 output[64];
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int i;
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if (!bytes) return;
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for (;;) {
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chacha20_wordtobyte(output,x->input);
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x->input[12] = PLUSONE(x->input[12]);
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if (bytes <= 64) {
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for (i = 0;i < bytes;++i) c[i] = m[i] ^ output[i];
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return;
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}
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for (i = 0;i < 64;++i) c[i] = m[i] ^ output[i];
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bytes -= 64;
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c += 64;
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m += 64;
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}
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}
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void CHACHA20_decrypt_bytes(CHACHA20_ctx *x,const u8 *c,u8 *m,u32 bytes)
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{
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CHACHA20_encrypt_bytes(x,c,m,bytes);
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}
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void CHACHA20_encrypt_blocks(CHACHA20_ctx* ctx, const u8* plaintext, u8* ciphertext, u32 blocks)
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{
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CHACHA20_encrypt_bytes(ctx, plaintext, ciphertext, (blocks) * CHACHA20_BLOCKLENGTH);
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}
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void CHACHA20_decrypt_blocks(CHACHA20_ctx* ctx, const u8* ciphertext, u8* plaintext, u32 blocks)
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{
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CHACHA20_decrypt_bytes(ctx, ciphertext, plaintext, (blocks) * CHACHA20_BLOCKLENGTH);
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}
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