1*37a7bc39SJason Zhu /* 2*37a7bc39SJason Zhu * Copyright (C) 2016 The Android Open Source Project 3*37a7bc39SJason Zhu * 4*37a7bc39SJason Zhu * Permission is hereby granted, free of charge, to any person 5*37a7bc39SJason Zhu * obtaining a copy of this software and associated documentation 6*37a7bc39SJason Zhu * files (the "Software"), to deal in the Software without 7*37a7bc39SJason Zhu * restriction, including without limitation the rights to use, copy, 8*37a7bc39SJason Zhu * modify, merge, publish, distribute, sublicense, and/or sell copies 9*37a7bc39SJason Zhu * of the Software, and to permit persons to whom the Software is 10*37a7bc39SJason Zhu * furnished to do so, subject to the following conditions: 11*37a7bc39SJason Zhu * 12*37a7bc39SJason Zhu * The above copyright notice and this permission notice shall be 13*37a7bc39SJason Zhu * included in all copies or substantial portions of the Software. 14*37a7bc39SJason Zhu * 15*37a7bc39SJason Zhu * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, 16*37a7bc39SJason Zhu * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF 17*37a7bc39SJason Zhu * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND 18*37a7bc39SJason Zhu * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS 19*37a7bc39SJason Zhu * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN 20*37a7bc39SJason Zhu * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 21*37a7bc39SJason Zhu * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE 22*37a7bc39SJason Zhu * SOFTWARE. 23*37a7bc39SJason Zhu */ 24*37a7bc39SJason Zhu 25*37a7bc39SJason Zhu /* Copyright (c) 2011 The Chromium OS Authors. All rights reserved. 26*37a7bc39SJason Zhu * Use of this source code is governed by a BSD-style license that can be 27*37a7bc39SJason Zhu * found in the LICENSE file. 28*37a7bc39SJason Zhu */ 29*37a7bc39SJason Zhu 30*37a7bc39SJason Zhu /* Implementation of RSA signature verification which uses a pre-processed 31*37a7bc39SJason Zhu * key for computation. The code extends libmincrypt RSA verification code to 32*37a7bc39SJason Zhu * support multiple RSA key lengths and hash digest algorithms. 33*37a7bc39SJason Zhu */ 34*37a7bc39SJason Zhu 35*37a7bc39SJason Zhu #include <android_avb/avb_rsa.h> 36*37a7bc39SJason Zhu #include <android_avb/avb_sha.h> 37*37a7bc39SJason Zhu #include <android_avb/avb_util.h> 38*37a7bc39SJason Zhu #include <android_avb/avb_vbmeta_image.h> 39*37a7bc39SJason Zhu 40*37a7bc39SJason Zhu typedef struct IAvbKey { 41*37a7bc39SJason Zhu unsigned int len; /* Length of n[] in number of uint32_t */ 42*37a7bc39SJason Zhu uint32_t n0inv; /* -1 / n[0] mod 2^32 */ 43*37a7bc39SJason Zhu uint32_t* n; /* modulus as array (host-byte order) */ 44*37a7bc39SJason Zhu uint32_t* rr; /* R^2 as array (host-byte order) */ 45*37a7bc39SJason Zhu } IAvbKey; 46*37a7bc39SJason Zhu 47*37a7bc39SJason Zhu static IAvbKey* iavb_parse_key_data(const uint8_t* data, size_t length) { 48*37a7bc39SJason Zhu AvbRSAPublicKeyHeader h; 49*37a7bc39SJason Zhu IAvbKey* key = NULL; 50*37a7bc39SJason Zhu size_t expected_length; 51*37a7bc39SJason Zhu unsigned int i; 52*37a7bc39SJason Zhu const uint8_t* n; 53*37a7bc39SJason Zhu const uint8_t* rr; 54*37a7bc39SJason Zhu 55*37a7bc39SJason Zhu if (!avb_rsa_public_key_header_validate_and_byteswap( 56*37a7bc39SJason Zhu (const AvbRSAPublicKeyHeader*)data, &h)) { 57*37a7bc39SJason Zhu avb_error("Invalid key.\n"); 58*37a7bc39SJason Zhu goto fail; 59*37a7bc39SJason Zhu } 60*37a7bc39SJason Zhu 61*37a7bc39SJason Zhu if (!(h.key_num_bits == 2048 || h.key_num_bits == 4096 || 62*37a7bc39SJason Zhu h.key_num_bits == 8192)) { 63*37a7bc39SJason Zhu avb_error("Unexpected key length.\n"); 64*37a7bc39SJason Zhu goto fail; 65*37a7bc39SJason Zhu } 66*37a7bc39SJason Zhu 67*37a7bc39SJason Zhu expected_length = sizeof(AvbRSAPublicKeyHeader) + 2 * h.key_num_bits / 8; 68*37a7bc39SJason Zhu if (length != expected_length) { 69*37a7bc39SJason Zhu avb_error("Key does not match expected length.\n"); 70*37a7bc39SJason Zhu goto fail; 71*37a7bc39SJason Zhu } 72*37a7bc39SJason Zhu 73*37a7bc39SJason Zhu n = data + sizeof(AvbRSAPublicKeyHeader); 74*37a7bc39SJason Zhu rr = data + sizeof(AvbRSAPublicKeyHeader) + h.key_num_bits / 8; 75*37a7bc39SJason Zhu 76*37a7bc39SJason Zhu /* Store n and rr following the key header so we only have to do one 77*37a7bc39SJason Zhu * allocation. 78*37a7bc39SJason Zhu */ 79*37a7bc39SJason Zhu key = (IAvbKey*)(avb_malloc(sizeof(IAvbKey) + 2 * h.key_num_bits / 8)); 80*37a7bc39SJason Zhu if (key == NULL) { 81*37a7bc39SJason Zhu goto fail; 82*37a7bc39SJason Zhu } 83*37a7bc39SJason Zhu 84*37a7bc39SJason Zhu key->len = h.key_num_bits / 32; 85*37a7bc39SJason Zhu key->n0inv = h.n0inv; 86*37a7bc39SJason Zhu key->n = (uint32_t*)(key + 1); /* Skip ahead sizeof(IAvbKey) bytes. */ 87*37a7bc39SJason Zhu key->rr = key->n + key->len; 88*37a7bc39SJason Zhu 89*37a7bc39SJason Zhu /* Crypto-code below (modpowF4() and friends) expects the key in 90*37a7bc39SJason Zhu * little-endian format (rather than the format we're storing the 91*37a7bc39SJason Zhu * key in), so convert it. 92*37a7bc39SJason Zhu */ 93*37a7bc39SJason Zhu for (i = 0; i < key->len; i++) { 94*37a7bc39SJason Zhu key->n[i] = avb_be32toh(((uint32_t*)n)[key->len - i - 1]); 95*37a7bc39SJason Zhu key->rr[i] = avb_be32toh(((uint32_t*)rr)[key->len - i - 1]); 96*37a7bc39SJason Zhu } 97*37a7bc39SJason Zhu return key; 98*37a7bc39SJason Zhu 99*37a7bc39SJason Zhu fail: 100*37a7bc39SJason Zhu if (key != NULL) { 101*37a7bc39SJason Zhu avb_free(key); 102*37a7bc39SJason Zhu } 103*37a7bc39SJason Zhu return NULL; 104*37a7bc39SJason Zhu } 105*37a7bc39SJason Zhu 106*37a7bc39SJason Zhu static void iavb_free_parsed_key(IAvbKey* key) { 107*37a7bc39SJason Zhu avb_free(key); 108*37a7bc39SJason Zhu } 109*37a7bc39SJason Zhu 110*37a7bc39SJason Zhu /* a[] -= mod */ 111*37a7bc39SJason Zhu static void subM(const IAvbKey* key, uint32_t* a) { 112*37a7bc39SJason Zhu int64_t A = 0; 113*37a7bc39SJason Zhu uint32_t i; 114*37a7bc39SJason Zhu for (i = 0; i < key->len; ++i) { 115*37a7bc39SJason Zhu A += (uint64_t)a[i] - key->n[i]; 116*37a7bc39SJason Zhu a[i] = (uint32_t)A; 117*37a7bc39SJason Zhu A >>= 32; 118*37a7bc39SJason Zhu } 119*37a7bc39SJason Zhu } 120*37a7bc39SJason Zhu 121*37a7bc39SJason Zhu /* return a[] >= mod */ 122*37a7bc39SJason Zhu static int geM(const IAvbKey* key, uint32_t* a) { 123*37a7bc39SJason Zhu uint32_t i; 124*37a7bc39SJason Zhu for (i = key->len; i;) { 125*37a7bc39SJason Zhu --i; 126*37a7bc39SJason Zhu if (a[i] < key->n[i]) { 127*37a7bc39SJason Zhu return 0; 128*37a7bc39SJason Zhu } 129*37a7bc39SJason Zhu if (a[i] > key->n[i]) { 130*37a7bc39SJason Zhu return 1; 131*37a7bc39SJason Zhu } 132*37a7bc39SJason Zhu } 133*37a7bc39SJason Zhu return 1; /* equal */ 134*37a7bc39SJason Zhu } 135*37a7bc39SJason Zhu 136*37a7bc39SJason Zhu /* montgomery c[] += a * b[] / R % mod */ 137*37a7bc39SJason Zhu static void montMulAdd(const IAvbKey* key, 138*37a7bc39SJason Zhu uint32_t* c, 139*37a7bc39SJason Zhu const uint32_t a, 140*37a7bc39SJason Zhu const uint32_t* b) { 141*37a7bc39SJason Zhu uint64_t A = (uint64_t)a * b[0] + c[0]; 142*37a7bc39SJason Zhu uint32_t d0 = (uint32_t)A * key->n0inv; 143*37a7bc39SJason Zhu uint64_t B = (uint64_t)d0 * key->n[0] + (uint32_t)A; 144*37a7bc39SJason Zhu uint32_t i; 145*37a7bc39SJason Zhu 146*37a7bc39SJason Zhu for (i = 1; i < key->len; ++i) { 147*37a7bc39SJason Zhu A = (A >> 32) + (uint64_t)a * b[i] + c[i]; 148*37a7bc39SJason Zhu B = (B >> 32) + (uint64_t)d0 * key->n[i] + (uint32_t)A; 149*37a7bc39SJason Zhu c[i - 1] = (uint32_t)B; 150*37a7bc39SJason Zhu } 151*37a7bc39SJason Zhu 152*37a7bc39SJason Zhu A = (A >> 32) + (B >> 32); 153*37a7bc39SJason Zhu 154*37a7bc39SJason Zhu c[i - 1] = (uint32_t)A; 155*37a7bc39SJason Zhu 156*37a7bc39SJason Zhu if (A >> 32) { 157*37a7bc39SJason Zhu subM(key, c); 158*37a7bc39SJason Zhu } 159*37a7bc39SJason Zhu } 160*37a7bc39SJason Zhu 161*37a7bc39SJason Zhu /* montgomery c[] = a[] * b[] / R % mod */ 162*37a7bc39SJason Zhu static void montMul(const IAvbKey* key, uint32_t* c, uint32_t* a, uint32_t* b) { 163*37a7bc39SJason Zhu uint32_t i; 164*37a7bc39SJason Zhu for (i = 0; i < key->len; ++i) { 165*37a7bc39SJason Zhu c[i] = 0; 166*37a7bc39SJason Zhu } 167*37a7bc39SJason Zhu for (i = 0; i < key->len; ++i) { 168*37a7bc39SJason Zhu montMulAdd(key, c, a[i], b); 169*37a7bc39SJason Zhu } 170*37a7bc39SJason Zhu } 171*37a7bc39SJason Zhu 172*37a7bc39SJason Zhu /* In-place public exponentiation. (65537} 173*37a7bc39SJason Zhu * Input and output big-endian byte array in inout. 174*37a7bc39SJason Zhu */ 175*37a7bc39SJason Zhu static void modpowF4(const IAvbKey* key, uint8_t* inout) { 176*37a7bc39SJason Zhu uint32_t* a = (uint32_t*)avb_malloc(key->len * sizeof(uint32_t)); 177*37a7bc39SJason Zhu uint32_t* aR = (uint32_t*)avb_malloc(key->len * sizeof(uint32_t)); 178*37a7bc39SJason Zhu uint32_t* aaR = (uint32_t*)avb_malloc(key->len * sizeof(uint32_t)); 179*37a7bc39SJason Zhu if (a == NULL || aR == NULL || aaR == NULL) { 180*37a7bc39SJason Zhu goto out; 181*37a7bc39SJason Zhu } 182*37a7bc39SJason Zhu 183*37a7bc39SJason Zhu uint32_t* aaa = aaR; /* Re-use location. */ 184*37a7bc39SJason Zhu int i; 185*37a7bc39SJason Zhu 186*37a7bc39SJason Zhu /* Convert from big endian byte array to little endian word array. */ 187*37a7bc39SJason Zhu for (i = 0; i < (int)key->len; ++i) { 188*37a7bc39SJason Zhu uint32_t tmp = (inout[((key->len - 1 - i) * 4) + 0] << 24) | 189*37a7bc39SJason Zhu (inout[((key->len - 1 - i) * 4) + 1] << 16) | 190*37a7bc39SJason Zhu (inout[((key->len - 1 - i) * 4) + 2] << 8) | 191*37a7bc39SJason Zhu (inout[((key->len - 1 - i) * 4) + 3] << 0); 192*37a7bc39SJason Zhu a[i] = tmp; 193*37a7bc39SJason Zhu } 194*37a7bc39SJason Zhu 195*37a7bc39SJason Zhu montMul(key, aR, a, key->rr); /* aR = a * RR / R mod M */ 196*37a7bc39SJason Zhu for (i = 0; i < 16; i += 2) { 197*37a7bc39SJason Zhu montMul(key, aaR, aR, aR); /* aaR = aR * aR / R mod M */ 198*37a7bc39SJason Zhu montMul(key, aR, aaR, aaR); /* aR = aaR * aaR / R mod M */ 199*37a7bc39SJason Zhu } 200*37a7bc39SJason Zhu montMul(key, aaa, aR, a); /* aaa = aR * a / R mod M */ 201*37a7bc39SJason Zhu 202*37a7bc39SJason Zhu /* Make sure aaa < mod; aaa is at most 1x mod too large. */ 203*37a7bc39SJason Zhu if (geM(key, aaa)) { 204*37a7bc39SJason Zhu subM(key, aaa); 205*37a7bc39SJason Zhu } 206*37a7bc39SJason Zhu 207*37a7bc39SJason Zhu /* Convert to bigendian byte array */ 208*37a7bc39SJason Zhu for (i = (int)key->len - 1; i >= 0; --i) { 209*37a7bc39SJason Zhu uint32_t tmp = aaa[i]; 210*37a7bc39SJason Zhu *inout++ = (uint8_t)(tmp >> 24); 211*37a7bc39SJason Zhu *inout++ = (uint8_t)(tmp >> 16); 212*37a7bc39SJason Zhu *inout++ = (uint8_t)(tmp >> 8); 213*37a7bc39SJason Zhu *inout++ = (uint8_t)(tmp >> 0); 214*37a7bc39SJason Zhu } 215*37a7bc39SJason Zhu 216*37a7bc39SJason Zhu out: 217*37a7bc39SJason Zhu if (a != NULL) { 218*37a7bc39SJason Zhu avb_free(a); 219*37a7bc39SJason Zhu } 220*37a7bc39SJason Zhu if (aR != NULL) { 221*37a7bc39SJason Zhu avb_free(aR); 222*37a7bc39SJason Zhu } 223*37a7bc39SJason Zhu if (aaR != NULL) { 224*37a7bc39SJason Zhu avb_free(aaR); 225*37a7bc39SJason Zhu } 226*37a7bc39SJason Zhu } 227*37a7bc39SJason Zhu 228*37a7bc39SJason Zhu /* Verify a RSA PKCS1.5 signature against an expected hash. 229*37a7bc39SJason Zhu * Returns false on failure, true on success. 230*37a7bc39SJason Zhu */ 231*37a7bc39SJason Zhu bool avb_rsa_verify(const uint8_t* key, 232*37a7bc39SJason Zhu size_t key_num_bytes, 233*37a7bc39SJason Zhu const uint8_t* sig, 234*37a7bc39SJason Zhu size_t sig_num_bytes, 235*37a7bc39SJason Zhu const uint8_t* hash, 236*37a7bc39SJason Zhu size_t hash_num_bytes, 237*37a7bc39SJason Zhu const uint8_t* padding, 238*37a7bc39SJason Zhu size_t padding_num_bytes) { 239*37a7bc39SJason Zhu uint8_t* buf = NULL; 240*37a7bc39SJason Zhu IAvbKey* parsed_key = NULL; 241*37a7bc39SJason Zhu bool success = false; 242*37a7bc39SJason Zhu 243*37a7bc39SJason Zhu if (key == NULL || sig == NULL || hash == NULL || padding == NULL) { 244*37a7bc39SJason Zhu avb_error("Invalid input.\n"); 245*37a7bc39SJason Zhu goto out; 246*37a7bc39SJason Zhu } 247*37a7bc39SJason Zhu 248*37a7bc39SJason Zhu parsed_key = iavb_parse_key_data(key, key_num_bytes); 249*37a7bc39SJason Zhu if (parsed_key == NULL) { 250*37a7bc39SJason Zhu avb_error("Error parsing key.\n"); 251*37a7bc39SJason Zhu goto out; 252*37a7bc39SJason Zhu } 253*37a7bc39SJason Zhu 254*37a7bc39SJason Zhu if (sig_num_bytes != (parsed_key->len * sizeof(uint32_t))) { 255*37a7bc39SJason Zhu avb_error("Signature length does not match key length.\n"); 256*37a7bc39SJason Zhu goto out; 257*37a7bc39SJason Zhu } 258*37a7bc39SJason Zhu 259*37a7bc39SJason Zhu if (padding_num_bytes != sig_num_bytes - hash_num_bytes) { 260*37a7bc39SJason Zhu avb_error("Padding length does not match hash and signature lengths.\n"); 261*37a7bc39SJason Zhu goto out; 262*37a7bc39SJason Zhu } 263*37a7bc39SJason Zhu 264*37a7bc39SJason Zhu buf = (uint8_t*)avb_malloc(sig_num_bytes); 265*37a7bc39SJason Zhu if (buf == NULL) { 266*37a7bc39SJason Zhu avb_error("Error allocating memory.\n"); 267*37a7bc39SJason Zhu goto out; 268*37a7bc39SJason Zhu } 269*37a7bc39SJason Zhu avb_memcpy(buf, sig, sig_num_bytes); 270*37a7bc39SJason Zhu 271*37a7bc39SJason Zhu modpowF4(parsed_key, buf); 272*37a7bc39SJason Zhu 273*37a7bc39SJason Zhu /* Check padding bytes. 274*37a7bc39SJason Zhu * 275*37a7bc39SJason Zhu * Even though there are probably no timing issues here, we use 276*37a7bc39SJason Zhu * avb_safe_memcmp() just to be on the safe side. 277*37a7bc39SJason Zhu */ 278*37a7bc39SJason Zhu if (avb_safe_memcmp(buf, padding, padding_num_bytes)) { 279*37a7bc39SJason Zhu avb_error("Padding check failed.\n"); 280*37a7bc39SJason Zhu goto out; 281*37a7bc39SJason Zhu } 282*37a7bc39SJason Zhu 283*37a7bc39SJason Zhu /* Check hash. */ 284*37a7bc39SJason Zhu if (avb_safe_memcmp(buf + padding_num_bytes, hash, hash_num_bytes)) { 285*37a7bc39SJason Zhu avb_error("Hash check failed.\n"); 286*37a7bc39SJason Zhu goto out; 287*37a7bc39SJason Zhu } 288*37a7bc39SJason Zhu 289*37a7bc39SJason Zhu success = true; 290*37a7bc39SJason Zhu 291*37a7bc39SJason Zhu out: 292*37a7bc39SJason Zhu if (parsed_key != NULL) { 293*37a7bc39SJason Zhu iavb_free_parsed_key(parsed_key); 294*37a7bc39SJason Zhu } 295*37a7bc39SJason Zhu if (buf != NULL) { 296*37a7bc39SJason Zhu avb_free(buf); 297*37a7bc39SJason Zhu } 298*37a7bc39SJason Zhu return success; 299*37a7bc39SJason Zhu } 300