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1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 | /*- * Copyright (c) 2013 Andre Oppermann <andre@FreeBSD.org> * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * 3. The name of the author may not be used to endorse or promote * products derived from this software without specific prior written * permission. * * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. */ /* * SipHash is a family of PRFs SipHash-c-d where the integer parameters c and d * are the number of compression rounds and the number of finalization rounds. * A compression round is identical to a finalization round and this round * function is called SipRound. Given a 128-bit key k and a (possibly empty) * byte string m, SipHash-c-d returns a 64-bit value SipHash-c-d(k; m). * * Implemented from the paper "SipHash: a fast short-input PRF", 2012.09.18, * by Jean-Philippe Aumasson and Daniel J. Bernstein, * Permanent Document ID b9a943a805fbfc6fde808af9fc0ecdfa * https://131002.net/siphash/siphash.pdf * https://131002.net/siphash/ */ #include <libkern/libkern.h> #include <net/siphash.h> #include <sys/endian.h> #include <sys/mcache.h> #include <sys/param.h> #include <sys/types.h> #include <sys/systm.h> static void SipRounds(SIPHASH_CTX *ctx, int final); void SipHash_InitX(SIPHASH_CTX *ctx, uint8_t rc, uint8_t rf) { ctx->v[0] = 0x736f6d6570736575ull; ctx->v[1] = 0x646f72616e646f6dull; ctx->v[2] = 0x6c7967656e657261ull; ctx->v[3] = 0x7465646279746573ull; ctx->buf.b64 = 0; ctx->bytes = 0; ctx->buflen = 0; ctx->rounds_compr = rc; ctx->rounds_final = rf; ctx->initialized = 1; } void SipHash_SetKey(SIPHASH_CTX *ctx, const uint8_t key[SIPHASH_KEY_LENGTH]) { uint64_t k[2]; ASSERT(ctx->v[0] == 0x736f6d6570736575ull && ctx->initialized == 1); k[0] = le64dec(&key[0]); k[1] = le64dec(&key[8]); ctx->v[0] ^= k[0]; ctx->v[1] ^= k[1]; ctx->v[2] ^= k[0]; ctx->v[3] ^= k[1]; ctx->initialized = 2; } static const uint8_t *__indexable SipBuf(SIPHASH_CTX *ctx, const uint8_t * __sized_by_or_null(len)src, size_t len, size_t *delta, int final) { size_t x = 0; const uint8_t *buf = src; /* handle hashing 0 length buffer - needed for test vectors */ if (len == 0 && final == 0) { return 0; } if (final) { ASSERT(len == 0); ctx->buf.b8[7] = (uint8_t)ctx->bytes; } else { ASSERT((len > 0) && src); x = MIN(len, sizeof(ctx->buf.b64) - ctx->buflen); bcopy(buf, &ctx->buf.b8[ctx->buflen], x); ctx->buflen += x; buf += x; } if (ctx->buflen == 8 || final) { ctx->v[3] ^= le64toh(ctx->buf.b64); SipRounds(ctx, 0); ctx->v[0] ^= le64toh(ctx->buf.b64); ctx->buf.b64 = 0; ctx->buflen = 0; } if (delta != NULL) { *delta = x; } return buf; } void SipHash_Update(SIPHASH_CTX *ctx, const void *src __sized_by(len0), size_t len0) { uint64_t m; const uint64_t *p; const uint8_t *s; size_t rem; size_t len = len0; size_t len_in_bytes = 0; ASSERT(ctx->initialized == 2); s = src; ctx->bytes += len; /* * Push length smaller than block size into buffer or * fill up the buffer if there is already something * in it. */ if (ctx->buflen > 0 || len < 8) { size_t delta = 0; s = SipBuf(ctx, s, len, &delta, 0); len -= delta; } if (len == 0) { return; } rem = len & 0x7; len_in_bytes = len; len >>= 3; /* Optimze for 64bit aligned/unaligned access. */ if (((uintptr_t)s & 0x7) == 0) { p = __unsafe_forge_bidi_indexable(const uint64_t *, __builtin_assume_aligned((const uint8_t *__unsafe_indexable)s, sizeof(uint64_t)), len_in_bytes); for (; len > 0; len--, p++) { m = le64toh(*p); ctx->v[3] ^= m; SipRounds(ctx, 0); ctx->v[0] ^= m; } s = (const uint8_t *)p; } else { for (; len > 0; len--, s += 8) { m = le64dec(s); ctx->v[3] ^= m; SipRounds(ctx, 0); ctx->v[0] ^= m; } } /* Push remainder into buffer. */ if (rem > 0) { s = SipBuf(ctx, s, rem, NULL, 0); } } void SipHash_Final(uint8_t dst[SIPHASH_DIGEST_LENGTH], SIPHASH_CTX *ctx) { uint64_t r; ASSERT(ctx->initialized == 2); r = SipHash_End(ctx); le64enc(dst, r); } uint64_t SipHash_End(SIPHASH_CTX *ctx) { uint64_t r; ASSERT(ctx->initialized == 2); SipBuf(ctx, NULL, 0, NULL, 1); ctx->v[2] ^= 0xff; SipRounds(ctx, 1); r = (ctx->v[0] ^ ctx->v[1]) ^ (ctx->v[2] ^ ctx->v[3]); bzero(ctx, sizeof(*ctx)); return r; } uint64_t SipHashX(SIPHASH_CTX *ctx, uint8_t rc, uint8_t rf, const uint8_t key[SIPHASH_KEY_LENGTH], const void *src __sized_by(len), size_t len) { SipHash_InitX(ctx, rc, rf); SipHash_SetKey(ctx, key); SipHash_Update(ctx, src, len); return SipHash_End(ctx); } #define SIP_ROTL(x, b) (uint64_t)(((x) << (b)) | ( (x) >> (64 - (b)))) static void SipRounds(SIPHASH_CTX *ctx, int final) { int rounds; if (!final) { rounds = ctx->rounds_compr; } else { rounds = ctx->rounds_final; } while (rounds--) { ctx->v[0] += ctx->v[1]; ctx->v[2] += ctx->v[3]; ctx->v[1] = SIP_ROTL(ctx->v[1], 13); ctx->v[3] = SIP_ROTL(ctx->v[3], 16); ctx->v[1] ^= ctx->v[0]; ctx->v[3] ^= ctx->v[2]; ctx->v[0] = SIP_ROTL(ctx->v[0], 32); ctx->v[2] += ctx->v[1]; ctx->v[0] += ctx->v[3]; ctx->v[1] = SIP_ROTL(ctx->v[1], 17); ctx->v[3] = SIP_ROTL(ctx->v[3], 21); ctx->v[1] ^= ctx->v[2]; ctx->v[3] ^= ctx->v[0]; ctx->v[2] = SIP_ROTL(ctx->v[2], 32); } } |