/src/openssl111/crypto/modes/ccm128.c
| Line | Count | Source (jump to first uncovered line) | 
| 1 |  | /* | 
| 2 |  |  * Copyright 2011-2020 The OpenSSL Project Authors. All Rights Reserved. | 
| 3 |  |  * | 
| 4 |  |  * Licensed under the OpenSSL license (the "License").  You may not use | 
| 5 |  |  * this file except in compliance with the License.  You can obtain a copy | 
| 6 |  |  * in the file LICENSE in the source distribution or at | 
| 7 |  |  * https://www.openssl.org/source/license.html | 
| 8 |  |  */ | 
| 9 |  |  | 
| 10 |  | #include <openssl/crypto.h> | 
| 11 |  | #include "modes_local.h" | 
| 12 |  | #include <string.h> | 
| 13 |  |  | 
| 14 |  | #ifndef STRICT_ALIGNMENT | 
| 15 |  | # ifdef __GNUC__ | 
| 16 |  | typedef u64 u64_a1 __attribute((__aligned__(1))); | 
| 17 |  | # else | 
| 18 |  | typedef u64 u64_a1; | 
| 19 |  | # endif | 
| 20 |  | #endif | 
| 21 |  |  | 
| 22 |  | /* | 
| 23 |  |  * First you setup M and L parameters and pass the key schedule. This is | 
| 24 |  |  * called once per session setup... | 
| 25 |  |  */ | 
| 26 |  | void CRYPTO_ccm128_init(CCM128_CONTEXT *ctx, | 
| 27 |  |                         unsigned int M, unsigned int L, void *key, | 
| 28 |  |                         block128_f block) | 
| 29 | 0 | { | 
| 30 | 0 |     memset(ctx->nonce.c, 0, sizeof(ctx->nonce.c)); | 
| 31 | 0 |     ctx->nonce.c[0] = ((u8)(L - 1) & 7) | (u8)(((M - 2) / 2) & 7) << 3; | 
| 32 | 0 |     ctx->blocks = 0; | 
| 33 | 0 |     ctx->block = block; | 
| 34 | 0 |     ctx->key = key; | 
| 35 | 0 | } | 
| 36 |  |  | 
| 37 |  | /* !!! Following interfaces are to be called *once* per packet !!! */ | 
| 38 |  |  | 
| 39 |  | /* Then you setup per-message nonce and pass the length of the message */ | 
| 40 |  | int CRYPTO_ccm128_setiv(CCM128_CONTEXT *ctx, | 
| 41 |  |                         const unsigned char *nonce, size_t nlen, size_t mlen) | 
| 42 | 0 | { | 
| 43 | 0 |     unsigned int L = ctx->nonce.c[0] & 7; /* the L parameter */ | 
| 44 |  | 
 | 
| 45 | 0 |     if (nlen < (14 - L)) | 
| 46 | 0 |         return -1;              /* nonce is too short */ | 
| 47 |  |  | 
| 48 | 0 |     if (sizeof(mlen) == 8 && L >= 3) { | 
| 49 | 0 |         ctx->nonce.c[8] = (u8)(mlen >> (56 % (sizeof(mlen) * 8))); | 
| 50 | 0 |         ctx->nonce.c[9] = (u8)(mlen >> (48 % (sizeof(mlen) * 8))); | 
| 51 | 0 |         ctx->nonce.c[10] = (u8)(mlen >> (40 % (sizeof(mlen) * 8))); | 
| 52 | 0 |         ctx->nonce.c[11] = (u8)(mlen >> (32 % (sizeof(mlen) * 8))); | 
| 53 | 0 |     } else | 
| 54 | 0 |         ctx->nonce.u[1] = 0; | 
| 55 |  | 
 | 
| 56 | 0 |     ctx->nonce.c[12] = (u8)(mlen >> 24); | 
| 57 | 0 |     ctx->nonce.c[13] = (u8)(mlen >> 16); | 
| 58 | 0 |     ctx->nonce.c[14] = (u8)(mlen >> 8); | 
| 59 | 0 |     ctx->nonce.c[15] = (u8)mlen; | 
| 60 |  | 
 | 
| 61 | 0 |     ctx->nonce.c[0] &= ~0x40;   /* clear Adata flag */ | 
| 62 | 0 |     memcpy(&ctx->nonce.c[1], nonce, 14 - L); | 
| 63 |  | 
 | 
| 64 | 0 |     return 0; | 
| 65 | 0 | } | 
| 66 |  |  | 
| 67 |  | /* Then you pass additional authentication data, this is optional */ | 
| 68 |  | void CRYPTO_ccm128_aad(CCM128_CONTEXT *ctx, | 
| 69 |  |                        const unsigned char *aad, size_t alen) | 
| 70 | 0 | { | 
| 71 | 0 |     unsigned int i; | 
| 72 | 0 |     block128_f block = ctx->block; | 
| 73 |  | 
 | 
| 74 | 0 |     if (alen == 0) | 
| 75 | 0 |         return; | 
| 76 |  |  | 
| 77 | 0 |     ctx->nonce.c[0] |= 0x40;    /* set Adata flag */ | 
| 78 | 0 |     (*block) (ctx->nonce.c, ctx->cmac.c, ctx->key), ctx->blocks++; | 
| 79 |  | 
 | 
| 80 | 0 |     if (alen < (0x10000 - 0x100)) { | 
| 81 | 0 |         ctx->cmac.c[0] ^= (u8)(alen >> 8); | 
| 82 | 0 |         ctx->cmac.c[1] ^= (u8)alen; | 
| 83 | 0 |         i = 2; | 
| 84 | 0 |     } else if (sizeof(alen) == 8 | 
| 85 | 0 |                && alen >= (size_t)1 << (32 % (sizeof(alen) * 8))) { | 
| 86 | 0 |         ctx->cmac.c[0] ^= 0xFF; | 
| 87 | 0 |         ctx->cmac.c[1] ^= 0xFF; | 
| 88 | 0 |         ctx->cmac.c[2] ^= (u8)(alen >> (56 % (sizeof(alen) * 8))); | 
| 89 | 0 |         ctx->cmac.c[3] ^= (u8)(alen >> (48 % (sizeof(alen) * 8))); | 
| 90 | 0 |         ctx->cmac.c[4] ^= (u8)(alen >> (40 % (sizeof(alen) * 8))); | 
| 91 | 0 |         ctx->cmac.c[5] ^= (u8)(alen >> (32 % (sizeof(alen) * 8))); | 
| 92 | 0 |         ctx->cmac.c[6] ^= (u8)(alen >> 24); | 
| 93 | 0 |         ctx->cmac.c[7] ^= (u8)(alen >> 16); | 
| 94 | 0 |         ctx->cmac.c[8] ^= (u8)(alen >> 8); | 
| 95 | 0 |         ctx->cmac.c[9] ^= (u8)alen; | 
| 96 | 0 |         i = 10; | 
| 97 | 0 |     } else { | 
| 98 | 0 |         ctx->cmac.c[0] ^= 0xFF; | 
| 99 | 0 |         ctx->cmac.c[1] ^= 0xFE; | 
| 100 | 0 |         ctx->cmac.c[2] ^= (u8)(alen >> 24); | 
| 101 | 0 |         ctx->cmac.c[3] ^= (u8)(alen >> 16); | 
| 102 | 0 |         ctx->cmac.c[4] ^= (u8)(alen >> 8); | 
| 103 | 0 |         ctx->cmac.c[5] ^= (u8)alen; | 
| 104 | 0 |         i = 6; | 
| 105 | 0 |     } | 
| 106 |  | 
 | 
| 107 | 0 |     do { | 
| 108 | 0 |         for (; i < 16 && alen; ++i, ++aad, --alen) | 
| 109 | 0 |             ctx->cmac.c[i] ^= *aad; | 
| 110 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, ctx->key), ctx->blocks++; | 
| 111 | 0 |         i = 0; | 
| 112 | 0 |     } while (alen); | 
| 113 | 0 | } | 
| 114 |  |  | 
| 115 |  | /* Finally you encrypt or decrypt the message */ | 
| 116 |  |  | 
| 117 |  | /* | 
| 118 |  |  * counter part of nonce may not be larger than L*8 bits, L is not larger | 
| 119 |  |  * than 8, therefore 64-bit counter... | 
| 120 |  |  */ | 
| 121 |  | static void ctr64_inc(unsigned char *counter) | 
| 122 | 0 | { | 
| 123 | 0 |     unsigned int n = 8; | 
| 124 | 0 |     u8 c; | 
| 125 |  | 
 | 
| 126 | 0 |     counter += 8; | 
| 127 | 0 |     do { | 
| 128 | 0 |         --n; | 
| 129 | 0 |         c = counter[n]; | 
| 130 | 0 |         ++c; | 
| 131 | 0 |         counter[n] = c; | 
| 132 | 0 |         if (c) | 
| 133 | 0 |             return; | 
| 134 | 0 |     } while (n); | 
| 135 | 0 | } | 
| 136 |  |  | 
| 137 |  | int CRYPTO_ccm128_encrypt(CCM128_CONTEXT *ctx, | 
| 138 |  |                           const unsigned char *inp, unsigned char *out, | 
| 139 |  |                           size_t len) | 
| 140 | 0 | { | 
| 141 | 0 |     size_t n; | 
| 142 | 0 |     unsigned int i, L; | 
| 143 | 0 |     unsigned char flags0 = ctx->nonce.c[0]; | 
| 144 | 0 |     block128_f block = ctx->block; | 
| 145 | 0 |     void *key = ctx->key; | 
| 146 | 0 |     union { | 
| 147 | 0 |         u64 u[2]; | 
| 148 | 0 |         u8 c[16]; | 
| 149 | 0 |     } scratch; | 
| 150 |  | 
 | 
| 151 | 0 |     if (!(flags0 & 0x40)) | 
| 152 | 0 |         (*block) (ctx->nonce.c, ctx->cmac.c, key), ctx->blocks++; | 
| 153 |  | 
 | 
| 154 | 0 |     ctx->nonce.c[0] = L = flags0 & 7; | 
| 155 | 0 |     for (n = 0, i = 15 - L; i < 15; ++i) { | 
| 156 | 0 |         n |= ctx->nonce.c[i]; | 
| 157 | 0 |         ctx->nonce.c[i] = 0; | 
| 158 | 0 |         n <<= 8; | 
| 159 | 0 |     } | 
| 160 | 0 |     n |= ctx->nonce.c[15];      /* reconstructed length */ | 
| 161 | 0 |     ctx->nonce.c[15] = 1; | 
| 162 |  | 
 | 
| 163 | 0 |     if (n != len) | 
| 164 | 0 |         return -1;              /* length mismatch */ | 
| 165 |  |  | 
| 166 | 0 |     ctx->blocks += ((len + 15) >> 3) | 1; | 
| 167 | 0 |     if (ctx->blocks > (U64(1) << 61)) | 
| 168 | 0 |         return -2;              /* too much data */ | 
| 169 |  |  | 
| 170 | 0 |     while (len >= 16) { | 
| 171 | 0 | #if defined(STRICT_ALIGNMENT) | 
| 172 | 0 |         union { | 
| 173 | 0 |             u64 u[2]; | 
| 174 | 0 |             u8 c[16]; | 
| 175 | 0 |         } temp; | 
| 176 |  | 
 | 
| 177 | 0 |         memcpy(temp.c, inp, 16); | 
| 178 | 0 |         ctx->cmac.u[0] ^= temp.u[0]; | 
| 179 | 0 |         ctx->cmac.u[1] ^= temp.u[1]; | 
| 180 |  | #else | 
| 181 |  |         ctx->cmac.u[0] ^= ((u64_a1 *)inp)[0]; | 
| 182 |  |         ctx->cmac.u[1] ^= ((u64_a1 *)inp)[1]; | 
| 183 |  | #endif | 
| 184 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, key); | 
| 185 | 0 |         (*block) (ctx->nonce.c, scratch.c, key); | 
| 186 | 0 |         ctr64_inc(ctx->nonce.c); | 
| 187 | 0 | #if defined(STRICT_ALIGNMENT) | 
| 188 | 0 |         temp.u[0] ^= scratch.u[0]; | 
| 189 | 0 |         temp.u[1] ^= scratch.u[1]; | 
| 190 | 0 |         memcpy(out, temp.c, 16); | 
| 191 |  | #else | 
| 192 |  |         ((u64_a1 *)out)[0] = scratch.u[0] ^ ((u64_a1 *)inp)[0]; | 
| 193 |  |         ((u64_a1 *)out)[1] = scratch.u[1] ^ ((u64_a1 *)inp)[1]; | 
| 194 |  | #endif | 
| 195 | 0 |         inp += 16; | 
| 196 | 0 |         out += 16; | 
| 197 | 0 |         len -= 16; | 
| 198 | 0 |     } | 
| 199 |  | 
 | 
| 200 | 0 |     if (len) { | 
| 201 | 0 |         for (i = 0; i < len; ++i) | 
| 202 | 0 |             ctx->cmac.c[i] ^= inp[i]; | 
| 203 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, key); | 
| 204 | 0 |         (*block) (ctx->nonce.c, scratch.c, key); | 
| 205 | 0 |         for (i = 0; i < len; ++i) | 
| 206 | 0 |             out[i] = scratch.c[i] ^ inp[i]; | 
| 207 | 0 |     } | 
| 208 |  | 
 | 
| 209 | 0 |     for (i = 15 - L; i < 16; ++i) | 
| 210 | 0 |         ctx->nonce.c[i] = 0; | 
| 211 |  | 
 | 
| 212 | 0 |     (*block) (ctx->nonce.c, scratch.c, key); | 
| 213 | 0 |     ctx->cmac.u[0] ^= scratch.u[0]; | 
| 214 | 0 |     ctx->cmac.u[1] ^= scratch.u[1]; | 
| 215 |  | 
 | 
| 216 | 0 |     ctx->nonce.c[0] = flags0; | 
| 217 |  | 
 | 
| 218 | 0 |     return 0; | 
| 219 | 0 | } | 
| 220 |  |  | 
| 221 |  | int CRYPTO_ccm128_decrypt(CCM128_CONTEXT *ctx, | 
| 222 |  |                           const unsigned char *inp, unsigned char *out, | 
| 223 |  |                           size_t len) | 
| 224 | 0 | { | 
| 225 | 0 |     size_t n; | 
| 226 | 0 |     unsigned int i, L; | 
| 227 | 0 |     unsigned char flags0 = ctx->nonce.c[0]; | 
| 228 | 0 |     block128_f block = ctx->block; | 
| 229 | 0 |     void *key = ctx->key; | 
| 230 | 0 |     union { | 
| 231 | 0 |         u64 u[2]; | 
| 232 | 0 |         u8 c[16]; | 
| 233 | 0 |     } scratch; | 
| 234 |  | 
 | 
| 235 | 0 |     if (!(flags0 & 0x40)) | 
| 236 | 0 |         (*block) (ctx->nonce.c, ctx->cmac.c, key); | 
| 237 |  | 
 | 
| 238 | 0 |     ctx->nonce.c[0] = L = flags0 & 7; | 
| 239 | 0 |     for (n = 0, i = 15 - L; i < 15; ++i) { | 
| 240 | 0 |         n |= ctx->nonce.c[i]; | 
| 241 | 0 |         ctx->nonce.c[i] = 0; | 
| 242 | 0 |         n <<= 8; | 
| 243 | 0 |     } | 
| 244 | 0 |     n |= ctx->nonce.c[15];      /* reconstructed length */ | 
| 245 | 0 |     ctx->nonce.c[15] = 1; | 
| 246 |  | 
 | 
| 247 | 0 |     if (n != len) | 
| 248 | 0 |         return -1; | 
| 249 |  |  | 
| 250 | 0 |     while (len >= 16) { | 
| 251 | 0 | #if defined(STRICT_ALIGNMENT) | 
| 252 | 0 |         union { | 
| 253 | 0 |             u64 u[2]; | 
| 254 | 0 |             u8 c[16]; | 
| 255 | 0 |         } temp; | 
| 256 | 0 | #endif | 
| 257 | 0 |         (*block) (ctx->nonce.c, scratch.c, key); | 
| 258 | 0 |         ctr64_inc(ctx->nonce.c); | 
| 259 | 0 | #if defined(STRICT_ALIGNMENT) | 
| 260 | 0 |         memcpy(temp.c, inp, 16); | 
| 261 | 0 |         ctx->cmac.u[0] ^= (scratch.u[0] ^= temp.u[0]); | 
| 262 | 0 |         ctx->cmac.u[1] ^= (scratch.u[1] ^= temp.u[1]); | 
| 263 | 0 |         memcpy(out, scratch.c, 16); | 
| 264 |  | #else | 
| 265 |  |         ctx->cmac.u[0] ^= (((u64_a1 *)out)[0] | 
| 266 |  |                             = scratch.u[0] ^ ((u64_a1 *)inp)[0]); | 
| 267 |  |         ctx->cmac.u[1] ^= (((u64_a1 *)out)[1] | 
| 268 |  |                             = scratch.u[1] ^ ((u64_a1 *)inp)[1]); | 
| 269 |  | #endif | 
| 270 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, key); | 
| 271 |  | 
 | 
| 272 | 0 |         inp += 16; | 
| 273 | 0 |         out += 16; | 
| 274 | 0 |         len -= 16; | 
| 275 | 0 |     } | 
| 276 |  | 
 | 
| 277 | 0 |     if (len) { | 
| 278 | 0 |         (*block) (ctx->nonce.c, scratch.c, key); | 
| 279 | 0 |         for (i = 0; i < len; ++i) | 
| 280 | 0 |             ctx->cmac.c[i] ^= (out[i] = scratch.c[i] ^ inp[i]); | 
| 281 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, key); | 
| 282 | 0 |     } | 
| 283 |  | 
 | 
| 284 | 0 |     for (i = 15 - L; i < 16; ++i) | 
| 285 | 0 |         ctx->nonce.c[i] = 0; | 
| 286 |  | 
 | 
| 287 | 0 |     (*block) (ctx->nonce.c, scratch.c, key); | 
| 288 | 0 |     ctx->cmac.u[0] ^= scratch.u[0]; | 
| 289 | 0 |     ctx->cmac.u[1] ^= scratch.u[1]; | 
| 290 |  | 
 | 
| 291 | 0 |     ctx->nonce.c[0] = flags0; | 
| 292 |  | 
 | 
| 293 | 0 |     return 0; | 
| 294 | 0 | } | 
| 295 |  |  | 
| 296 |  | static void ctr64_add(unsigned char *counter, size_t inc) | 
| 297 | 0 | { | 
| 298 | 0 |     size_t n = 8, val = 0; | 
| 299 |  | 
 | 
| 300 | 0 |     counter += 8; | 
| 301 | 0 |     do { | 
| 302 | 0 |         --n; | 
| 303 | 0 |         val += counter[n] + (inc & 0xff); | 
| 304 | 0 |         counter[n] = (unsigned char)val; | 
| 305 | 0 |         val >>= 8;              /* carry bit */ | 
| 306 | 0 |         inc >>= 8; | 
| 307 | 0 |     } while (n && (inc || val)); | 
| 308 | 0 | } | 
| 309 |  |  | 
| 310 |  | int CRYPTO_ccm128_encrypt_ccm64(CCM128_CONTEXT *ctx, | 
| 311 |  |                                 const unsigned char *inp, unsigned char *out, | 
| 312 |  |                                 size_t len, ccm128_f stream) | 
| 313 | 0 | { | 
| 314 | 0 |     size_t n; | 
| 315 | 0 |     unsigned int i, L; | 
| 316 | 0 |     unsigned char flags0 = ctx->nonce.c[0]; | 
| 317 | 0 |     block128_f block = ctx->block; | 
| 318 | 0 |     void *key = ctx->key; | 
| 319 | 0 |     union { | 
| 320 | 0 |         u64 u[2]; | 
| 321 | 0 |         u8 c[16]; | 
| 322 | 0 |     } scratch; | 
| 323 |  | 
 | 
| 324 | 0 |     if (!(flags0 & 0x40)) | 
| 325 | 0 |         (*block) (ctx->nonce.c, ctx->cmac.c, key), ctx->blocks++; | 
| 326 |  | 
 | 
| 327 | 0 |     ctx->nonce.c[0] = L = flags0 & 7; | 
| 328 | 0 |     for (n = 0, i = 15 - L; i < 15; ++i) { | 
| 329 | 0 |         n |= ctx->nonce.c[i]; | 
| 330 | 0 |         ctx->nonce.c[i] = 0; | 
| 331 | 0 |         n <<= 8; | 
| 332 | 0 |     } | 
| 333 | 0 |     n |= ctx->nonce.c[15];      /* reconstructed length */ | 
| 334 | 0 |     ctx->nonce.c[15] = 1; | 
| 335 |  | 
 | 
| 336 | 0 |     if (n != len) | 
| 337 | 0 |         return -1;              /* length mismatch */ | 
| 338 |  |  | 
| 339 | 0 |     ctx->blocks += ((len + 15) >> 3) | 1; | 
| 340 | 0 |     if (ctx->blocks > (U64(1) << 61)) | 
| 341 | 0 |         return -2;              /* too much data */ | 
| 342 |  |  | 
| 343 | 0 |     if ((n = len / 16)) { | 
| 344 | 0 |         (*stream) (inp, out, n, key, ctx->nonce.c, ctx->cmac.c); | 
| 345 | 0 |         n *= 16; | 
| 346 | 0 |         inp += n; | 
| 347 | 0 |         out += n; | 
| 348 | 0 |         len -= n; | 
| 349 | 0 |         if (len) | 
| 350 | 0 |             ctr64_add(ctx->nonce.c, n / 16); | 
| 351 | 0 |     } | 
| 352 |  | 
 | 
| 353 | 0 |     if (len) { | 
| 354 | 0 |         for (i = 0; i < len; ++i) | 
| 355 | 0 |             ctx->cmac.c[i] ^= inp[i]; | 
| 356 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, key); | 
| 357 | 0 |         (*block) (ctx->nonce.c, scratch.c, key); | 
| 358 | 0 |         for (i = 0; i < len; ++i) | 
| 359 | 0 |             out[i] = scratch.c[i] ^ inp[i]; | 
| 360 | 0 |     } | 
| 361 |  | 
 | 
| 362 | 0 |     for (i = 15 - L; i < 16; ++i) | 
| 363 | 0 |         ctx->nonce.c[i] = 0; | 
| 364 |  | 
 | 
| 365 | 0 |     (*block) (ctx->nonce.c, scratch.c, key); | 
| 366 | 0 |     ctx->cmac.u[0] ^= scratch.u[0]; | 
| 367 | 0 |     ctx->cmac.u[1] ^= scratch.u[1]; | 
| 368 |  | 
 | 
| 369 | 0 |     ctx->nonce.c[0] = flags0; | 
| 370 |  | 
 | 
| 371 | 0 |     return 0; | 
| 372 | 0 | } | 
| 373 |  |  | 
| 374 |  | int CRYPTO_ccm128_decrypt_ccm64(CCM128_CONTEXT *ctx, | 
| 375 |  |                                 const unsigned char *inp, unsigned char *out, | 
| 376 |  |                                 size_t len, ccm128_f stream) | 
| 377 | 0 | { | 
| 378 | 0 |     size_t n; | 
| 379 | 0 |     unsigned int i, L; | 
| 380 | 0 |     unsigned char flags0 = ctx->nonce.c[0]; | 
| 381 | 0 |     block128_f block = ctx->block; | 
| 382 | 0 |     void *key = ctx->key; | 
| 383 | 0 |     union { | 
| 384 | 0 |         u64 u[2]; | 
| 385 | 0 |         u8 c[16]; | 
| 386 | 0 |     } scratch; | 
| 387 |  | 
 | 
| 388 | 0 |     if (!(flags0 & 0x40)) | 
| 389 | 0 |         (*block) (ctx->nonce.c, ctx->cmac.c, key); | 
| 390 |  | 
 | 
| 391 | 0 |     ctx->nonce.c[0] = L = flags0 & 7; | 
| 392 | 0 |     for (n = 0, i = 15 - L; i < 15; ++i) { | 
| 393 | 0 |         n |= ctx->nonce.c[i]; | 
| 394 | 0 |         ctx->nonce.c[i] = 0; | 
| 395 | 0 |         n <<= 8; | 
| 396 | 0 |     } | 
| 397 | 0 |     n |= ctx->nonce.c[15];      /* reconstructed length */ | 
| 398 | 0 |     ctx->nonce.c[15] = 1; | 
| 399 |  | 
 | 
| 400 | 0 |     if (n != len) | 
| 401 | 0 |         return -1; | 
| 402 |  |  | 
| 403 | 0 |     if ((n = len / 16)) { | 
| 404 | 0 |         (*stream) (inp, out, n, key, ctx->nonce.c, ctx->cmac.c); | 
| 405 | 0 |         n *= 16; | 
| 406 | 0 |         inp += n; | 
| 407 | 0 |         out += n; | 
| 408 | 0 |         len -= n; | 
| 409 | 0 |         if (len) | 
| 410 | 0 |             ctr64_add(ctx->nonce.c, n / 16); | 
| 411 | 0 |     } | 
| 412 |  | 
 | 
| 413 | 0 |     if (len) { | 
| 414 | 0 |         (*block) (ctx->nonce.c, scratch.c, key); | 
| 415 | 0 |         for (i = 0; i < len; ++i) | 
| 416 | 0 |             ctx->cmac.c[i] ^= (out[i] = scratch.c[i] ^ inp[i]); | 
| 417 | 0 |         (*block) (ctx->cmac.c, ctx->cmac.c, key); | 
| 418 | 0 |     } | 
| 419 |  | 
 | 
| 420 | 0 |     for (i = 15 - L; i < 16; ++i) | 
| 421 | 0 |         ctx->nonce.c[i] = 0; | 
| 422 |  | 
 | 
| 423 | 0 |     (*block) (ctx->nonce.c, scratch.c, key); | 
| 424 | 0 |     ctx->cmac.u[0] ^= scratch.u[0]; | 
| 425 | 0 |     ctx->cmac.u[1] ^= scratch.u[1]; | 
| 426 |  | 
 | 
| 427 | 0 |     ctx->nonce.c[0] = flags0; | 
| 428 |  | 
 | 
| 429 | 0 |     return 0; | 
| 430 | 0 | } | 
| 431 |  |  | 
| 432 |  | size_t CRYPTO_ccm128_tag(CCM128_CONTEXT *ctx, unsigned char *tag, size_t len) | 
| 433 | 0 | { | 
| 434 | 0 |     unsigned int M = (ctx->nonce.c[0] >> 3) & 7; /* the M parameter */ | 
| 435 |  | 
 | 
| 436 | 0 |     M *= 2; | 
| 437 | 0 |     M += 2; | 
| 438 | 0 |     if (len != M) | 
| 439 | 0 |         return 0; | 
| 440 | 0 |     memcpy(tag, ctx->cmac.c, M); | 
| 441 | 0 |     return M; | 
| 442 | 0 | } |