1d1a1f6a4SMatthias Ringwald /* 2d1a1f6a4SMatthias Ringwald * Copyright (C) 2017 BlueKitchen GmbH 3d1a1f6a4SMatthias Ringwald * 4d1a1f6a4SMatthias Ringwald * Redistribution and use in source and binary forms, with or without 5d1a1f6a4SMatthias Ringwald * modification, are permitted provided that the following conditions 6d1a1f6a4SMatthias Ringwald * are met: 7d1a1f6a4SMatthias Ringwald * 8d1a1f6a4SMatthias Ringwald * 1. Redistributions of source code must retain the above copyright 9d1a1f6a4SMatthias Ringwald * notice, this list of conditions and the following disclaimer. 10d1a1f6a4SMatthias Ringwald * 2. Redistributions in binary form must reproduce the above copyright 11d1a1f6a4SMatthias Ringwald * notice, this list of conditions and the following disclaimer in the 12d1a1f6a4SMatthias Ringwald * documentation and/or other materials provided with the distribution. 13d1a1f6a4SMatthias Ringwald * 3. Neither the name of the copyright holders nor the names of 14d1a1f6a4SMatthias Ringwald * contributors may be used to endorse or promote products derived 15d1a1f6a4SMatthias Ringwald * from this software without specific prior written permission. 16d1a1f6a4SMatthias Ringwald * 17d1a1f6a4SMatthias Ringwald * THIS SOFTWARE IS PROVIDED BY MATTHIAS RINGWALD AND CONTRIBUTORS 18d1a1f6a4SMatthias Ringwald * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 19d1a1f6a4SMatthias Ringwald * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 20d1a1f6a4SMatthias Ringwald * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL MATTHIAS 21d1a1f6a4SMatthias Ringwald * RINGWALD OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 22d1a1f6a4SMatthias Ringwald * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 23d1a1f6a4SMatthias Ringwald * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS 24d1a1f6a4SMatthias Ringwald * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 25d1a1f6a4SMatthias Ringwald * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 26d1a1f6a4SMatthias Ringwald * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF 27d1a1f6a4SMatthias Ringwald * THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 28d1a1f6a4SMatthias Ringwald * SUCH DAMAGE. 29d1a1f6a4SMatthias Ringwald * 30d1a1f6a4SMatthias Ringwald */ 31d1a1f6a4SMatthias Ringwald 32e501bae0SMatthias Ringwald #define BTSTACK_FILE__ "btstack_crypto.c" 33d1a1f6a4SMatthias Ringwald 34d1a1f6a4SMatthias Ringwald /* 35d1a1f6a4SMatthias Ringwald * btstack_crypto.h 36d1a1f6a4SMatthias Ringwald * 37d1a1f6a4SMatthias Ringwald * Central place for all crypto-related functions with completion callbacks to allow 38d1a1f6a4SMatthias Ringwald * using of MCU crypto peripherals or the Bluetooth controller 39d1a1f6a4SMatthias Ringwald */ 40d1a1f6a4SMatthias Ringwald 41d1a1f6a4SMatthias Ringwald #include "btstack_crypto.h" 42d1a1f6a4SMatthias Ringwald 43d1a1f6a4SMatthias Ringwald #include "btstack_debug.h" 44d1a1f6a4SMatthias Ringwald #include "btstack_event.h" 45d1a1f6a4SMatthias Ringwald #include "btstack_linked_list.h" 46d1a1f6a4SMatthias Ringwald #include "btstack_util.h" 47d1a1f6a4SMatthias Ringwald #include "hci.h" 48d1a1f6a4SMatthias Ringwald 49*cfbd0db4SMatthias Ringwald // 50*cfbd0db4SMatthias Ringwald // AES128 Configuration 51*cfbd0db4SMatthias Ringwald // 52*cfbd0db4SMatthias Ringwald 53*cfbd0db4SMatthias Ringwald // By default, AES128 is computed by Bluetooth Controller using HCI Command/Event asynchronously 54*cfbd0db4SMatthias Ringwald // as fallback/alternative, a software implementation can be used 55*cfbd0db4SMatthias Ringwald // configure ECC implementations 56*cfbd0db4SMatthias Ringwald #if defined(HAVE_AES128) && defined(ENABLE_SOFTWARE_AES128) 57*cfbd0db4SMatthias Ringwald #error "If you have custom AES128 implementation (HAVE_AES128), please disable software AES128 (ENABLE_SOFTWARE_AES128) in bstack_config.h" 58*cfbd0db4SMatthias Ringwald #endif 59*cfbd0db4SMatthias Ringwald 60*cfbd0db4SMatthias Ringwald #ifdef ENABLE_SOFTWARE_AES128 61*cfbd0db4SMatthias Ringwald #define HAVE_AES128 62*cfbd0db4SMatthias Ringwald #include "rijndael.h" 63*cfbd0db4SMatthias Ringwald #endif 64*cfbd0db4SMatthias Ringwald 65*cfbd0db4SMatthias Ringwald #ifdef HAVE_AES128 66*cfbd0db4SMatthias Ringwald #define USE_BTSTACK_AES128 67*cfbd0db4SMatthias Ringwald #endif 68*cfbd0db4SMatthias Ringwald 69*cfbd0db4SMatthias Ringwald // 70*cfbd0db4SMatthias Ringwald // ECC Configuration 71*cfbd0db4SMatthias Ringwald // 72*cfbd0db4SMatthias Ringwald 73d1a1f6a4SMatthias Ringwald // backwards-compatitility ENABLE_MICRO_ECC_FOR_LE_SECURE_CONNECTIONS -> ENABLE_MICRO_ECC_P256 74d1a1f6a4SMatthias Ringwald #if defined(ENABLE_MICRO_ECC_FOR_LE_SECURE_CONNECTIONS) && !defined(ENABLE_MICRO_ECC_P256) 75d1a1f6a4SMatthias Ringwald #define ENABLE_MICRO_ECC_P256 76d1a1f6a4SMatthias Ringwald #endif 77d1a1f6a4SMatthias Ringwald 78d1a1f6a4SMatthias Ringwald // configure ECC implementations 79d1a1f6a4SMatthias Ringwald #if defined(ENABLE_MICRO_ECC_P256) && defined(HAVE_MBEDTLS_ECC_P256) 80d1a1f6a4SMatthias Ringwald #error "If you have mbedTLS (HAVE_MBEDTLS_ECC_P256), please disable uECC (ENABLE_MICRO_ECC_P256) in bstack_config.h" 81d1a1f6a4SMatthias Ringwald #endif 82d1a1f6a4SMatthias Ringwald 83d1a1f6a4SMatthias Ringwald // Software ECC-P256 implementation provided by micro-ecc 84d1a1f6a4SMatthias Ringwald #ifdef ENABLE_MICRO_ECC_P256 85d1a1f6a4SMatthias Ringwald #define ENABLE_ECC_P256 86d1a1f6a4SMatthias Ringwald #define USE_MICRO_ECC_P256 87d1a1f6a4SMatthias Ringwald #define USE_SOFTWARE_ECC_P256_IMPLEMENTATION 88d1a1f6a4SMatthias Ringwald #include "uECC.h" 89d1a1f6a4SMatthias Ringwald #endif 90d1a1f6a4SMatthias Ringwald 91d1a1f6a4SMatthias Ringwald // Software ECC-P256 implementation provided by mbedTLS 92d1a1f6a4SMatthias Ringwald #ifdef HAVE_MBEDTLS_ECC_P256 93d1a1f6a4SMatthias Ringwald #define ENABLE_ECC_P256 94d1a1f6a4SMatthias Ringwald #define USE_MBEDTLS_ECC_P256 95d1a1f6a4SMatthias Ringwald #define USE_SOFTWARE_ECC_P256_IMPLEMENTATION 96d1a1f6a4SMatthias Ringwald #include "mbedtls/config.h" 97d1a1f6a4SMatthias Ringwald #include "mbedtls/platform.h" 98d1a1f6a4SMatthias Ringwald #include "mbedtls/ecp.h" 99d1a1f6a4SMatthias Ringwald #endif 100d1a1f6a4SMatthias Ringwald 101d1a1f6a4SMatthias Ringwald #if defined(ENABLE_LE_SECURE_CONNECTIONS) && !defined(ENABLE_ECC_P256) 102d1a1f6a4SMatthias Ringwald #define ENABLE_ECC_P256 103d1a1f6a4SMatthias Ringwald #endif 104d1a1f6a4SMatthias Ringwald 105577fe4dfSMatthias Ringwald // degbugging 106577fe4dfSMatthias Ringwald // #define DEBUG_CCM 107577fe4dfSMatthias Ringwald 108d1a1f6a4SMatthias Ringwald typedef enum { 109d1a1f6a4SMatthias Ringwald CMAC_IDLE, 110d1a1f6a4SMatthias Ringwald CMAC_CALC_SUBKEYS, 111d1a1f6a4SMatthias Ringwald CMAC_W4_SUBKEYS, 112d1a1f6a4SMatthias Ringwald CMAC_CALC_MI, 113d1a1f6a4SMatthias Ringwald CMAC_W4_MI, 114d1a1f6a4SMatthias Ringwald CMAC_CALC_MLAST, 115d1a1f6a4SMatthias Ringwald CMAC_W4_MLAST 116d1a1f6a4SMatthias Ringwald } btstack_crypto_cmac_state_t; 117d1a1f6a4SMatthias Ringwald 118d1a1f6a4SMatthias Ringwald typedef enum { 119d1a1f6a4SMatthias Ringwald ECC_P256_KEY_GENERATION_IDLE, 120d1a1f6a4SMatthias Ringwald ECC_P256_KEY_GENERATION_GENERATING_RANDOM, 121d1a1f6a4SMatthias Ringwald ECC_P256_KEY_GENERATION_ACTIVE, 122d1a1f6a4SMatthias Ringwald ECC_P256_KEY_GENERATION_W4_KEY, 123d1a1f6a4SMatthias Ringwald ECC_P256_KEY_GENERATION_DONE, 124d1a1f6a4SMatthias Ringwald } btstack_crypto_ecc_p256_key_generation_state_t; 125d1a1f6a4SMatthias Ringwald 126d1a1f6a4SMatthias Ringwald static void btstack_crypto_run(void); 127d1a1f6a4SMatthias Ringwald 128cebe3e9eSMatthias Ringwald static const uint8_t zero[16] = { 0 }; 129d1a1f6a4SMatthias Ringwald 130d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_initialized; 131d1a1f6a4SMatthias Ringwald static btstack_linked_list_t btstack_crypto_operations; 132d1a1f6a4SMatthias Ringwald static btstack_packet_callback_registration_t hci_event_callback_registration; 133d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_wait_for_hci_result; 134d1a1f6a4SMatthias Ringwald 135d1a1f6a4SMatthias Ringwald // state for AES-CMAC 136d1a1f6a4SMatthias Ringwald static btstack_crypto_cmac_state_t btstack_crypto_cmac_state; 137d1a1f6a4SMatthias Ringwald static sm_key_t btstack_crypto_cmac_k; 138d1a1f6a4SMatthias Ringwald static sm_key_t btstack_crypto_cmac_x; 139d1a1f6a4SMatthias Ringwald static sm_key_t btstack_crypto_cmac_m_last; 140d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_cmac_block_current; 141d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_cmac_block_count; 142d1a1f6a4SMatthias Ringwald 143d1a1f6a4SMatthias Ringwald // state for AES-CCM 144ea478a83SMatthias Ringwald #ifndef USE_BTSTACK_AES128 145d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_ccm_s[16]; 146ea478a83SMatthias Ringwald #endif 147d1a1f6a4SMatthias Ringwald 148d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 149d1a1f6a4SMatthias Ringwald 150d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_ecc_p256_public_key[64]; 151d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_ecc_p256_random[64]; 152d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_ecc_p256_random_len; 153d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_ecc_p256_random_offset; 154d1a1f6a4SMatthias Ringwald static btstack_crypto_ecc_p256_key_generation_state_t btstack_crypto_ecc_p256_key_generation_state; 155d1a1f6a4SMatthias Ringwald 156d1a1f6a4SMatthias Ringwald #ifdef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 157d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_ecc_p256_d[32]; 158d1a1f6a4SMatthias Ringwald #endif 159d1a1f6a4SMatthias Ringwald 1600b672f43SMatthias Ringwald // Software ECDH implementation provided by mbedtls 1610b672f43SMatthias Ringwald #ifdef USE_MBEDTLS_ECC_P256 1620b672f43SMatthias Ringwald static mbedtls_ecp_group mbedtls_ec_group; 1630b672f43SMatthias Ringwald #endif 1640b672f43SMatthias Ringwald 165d1a1f6a4SMatthias Ringwald #endif /* ENABLE_ECC_P256 */ 166d1a1f6a4SMatthias Ringwald 167*cfbd0db4SMatthias Ringwald #ifdef ENABLE_SOFTWARE_AES128 168*cfbd0db4SMatthias Ringwald // AES128 using public domain rijndael implementation 169*cfbd0db4SMatthias Ringwald void btstack_aes128_calc(const uint8_t * key, const uint8_t * plaintext, uint8_t * ciphertext){ 170*cfbd0db4SMatthias Ringwald uint32_t rk[RKLENGTH(KEYBITS)]; 171*cfbd0db4SMatthias Ringwald int nrounds = rijndaelSetupEncrypt(rk, &key[0], KEYBITS); 172*cfbd0db4SMatthias Ringwald rijndaelEncrypt(rk, nrounds, plaintext, ciphertext); 173*cfbd0db4SMatthias Ringwald } 174*cfbd0db4SMatthias Ringwald #endif 175*cfbd0db4SMatthias Ringwald 176d1a1f6a4SMatthias Ringwald static void btstack_crypto_done(btstack_crypto_t * btstack_crypto){ 177d1a1f6a4SMatthias Ringwald btstack_linked_list_pop(&btstack_crypto_operations); 178d1a1f6a4SMatthias Ringwald (*btstack_crypto->context_callback.callback)(btstack_crypto->context_callback.context); 179d1a1f6a4SMatthias Ringwald } 180d1a1f6a4SMatthias Ringwald 181d1a1f6a4SMatthias Ringwald static inline void btstack_crypto_cmac_next_state(void){ 182d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_state = (btstack_crypto_cmac_state_t) (((int)btstack_crypto_cmac_state) + 1); 183d1a1f6a4SMatthias Ringwald } 184d1a1f6a4SMatthias Ringwald 185d1a1f6a4SMatthias Ringwald static int btstack_crypto_cmac_last_block_complete(btstack_crypto_aes128_cmac_t * btstack_crypto_cmac){ 186d1a1f6a4SMatthias Ringwald uint16_t len = btstack_crypto_cmac->size; 187d1a1f6a4SMatthias Ringwald if (len == 0) return 0; 188d1a1f6a4SMatthias Ringwald return (len & 0x0f) == 0; 189d1a1f6a4SMatthias Ringwald } 190d1a1f6a4SMatthias Ringwald 191d1a1f6a4SMatthias Ringwald static void btstack_crypto_aes128_start(const sm_key_t key, const sm_key_t plaintext){ 192d1a1f6a4SMatthias Ringwald uint8_t key_flipped[16]; 193d1a1f6a4SMatthias Ringwald uint8_t plaintext_flipped[16]; 194d1a1f6a4SMatthias Ringwald reverse_128(key, key_flipped); 195d1a1f6a4SMatthias Ringwald reverse_128(plaintext, plaintext_flipped); 196d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 197d1a1f6a4SMatthias Ringwald hci_send_cmd(&hci_le_encrypt, key_flipped, plaintext_flipped); 198d1a1f6a4SMatthias Ringwald } 199d1a1f6a4SMatthias Ringwald 200d1a1f6a4SMatthias Ringwald static uint8_t btstack_crypto_cmac_get_byte(btstack_crypto_aes128_cmac_t * btstack_crypto_cmac, uint16_t pos){ 201d1a1f6a4SMatthias Ringwald if (btstack_crypto_cmac->btstack_crypto.operation == BTSTACK_CRYPTO_CMAC_GENERATOR){ 20259ab1655SMatthias Ringwald return (*btstack_crypto_cmac->data.get_byte_callback)(pos); 203d1a1f6a4SMatthias Ringwald } else { 20459ab1655SMatthias Ringwald return btstack_crypto_cmac->data.message[pos]; 205d1a1f6a4SMatthias Ringwald } 206d1a1f6a4SMatthias Ringwald } 207d1a1f6a4SMatthias Ringwald 208d1a1f6a4SMatthias Ringwald static void btstack_crypto_cmac_handle_aes_engine_ready(btstack_crypto_aes128_cmac_t * btstack_crypto_cmac){ 209d1a1f6a4SMatthias Ringwald switch (btstack_crypto_cmac_state){ 210d1a1f6a4SMatthias Ringwald case CMAC_CALC_SUBKEYS: { 211d1a1f6a4SMatthias Ringwald sm_key_t const_zero; 212d1a1f6a4SMatthias Ringwald memset(const_zero, 0, 16); 213d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_next_state(); 214d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_cmac_k, const_zero); 215d1a1f6a4SMatthias Ringwald break; 216d1a1f6a4SMatthias Ringwald } 217d1a1f6a4SMatthias Ringwald case CMAC_CALC_MI: { 218d1a1f6a4SMatthias Ringwald int j; 219d1a1f6a4SMatthias Ringwald sm_key_t y; 220d1a1f6a4SMatthias Ringwald for (j=0;j<16;j++){ 221c1ab6cc1SMatthias Ringwald y[j] = btstack_crypto_cmac_x[j] ^ btstack_crypto_cmac_get_byte(btstack_crypto_cmac, (btstack_crypto_cmac_block_current*16) + j); 222d1a1f6a4SMatthias Ringwald } 223d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_block_current++; 224d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_next_state(); 225d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_cmac_k, y); 226d1a1f6a4SMatthias Ringwald break; 227d1a1f6a4SMatthias Ringwald } 228d1a1f6a4SMatthias Ringwald case CMAC_CALC_MLAST: { 229d1a1f6a4SMatthias Ringwald int i; 230d1a1f6a4SMatthias Ringwald sm_key_t y; 231d1a1f6a4SMatthias Ringwald for (i=0;i<16;i++){ 232d1a1f6a4SMatthias Ringwald y[i] = btstack_crypto_cmac_x[i] ^ btstack_crypto_cmac_m_last[i]; 233d1a1f6a4SMatthias Ringwald } 234d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_block_current++; 235d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_next_state(); 236d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_cmac_k, y); 237d1a1f6a4SMatthias Ringwald break; 238d1a1f6a4SMatthias Ringwald } 239d1a1f6a4SMatthias Ringwald default: 240d1a1f6a4SMatthias Ringwald log_info("btstack_crypto_cmac_handle_aes_engine_ready called in state %u", btstack_crypto_cmac_state); 241d1a1f6a4SMatthias Ringwald break; 242d1a1f6a4SMatthias Ringwald } 243d1a1f6a4SMatthias Ringwald } 244d1a1f6a4SMatthias Ringwald 245d1a1f6a4SMatthias Ringwald static void btstack_crypto_cmac_shift_left_by_one_bit_inplace(int len, uint8_t * data){ 246d1a1f6a4SMatthias Ringwald int i; 247d1a1f6a4SMatthias Ringwald int carry = 0; 248d1a1f6a4SMatthias Ringwald for (i=len-1; i >= 0 ; i--){ 249d1a1f6a4SMatthias Ringwald int new_carry = data[i] >> 7; 250c1ab6cc1SMatthias Ringwald data[i] = (data[i] << 1) | carry; 251d1a1f6a4SMatthias Ringwald carry = new_carry; 252d1a1f6a4SMatthias Ringwald } 253d1a1f6a4SMatthias Ringwald } 254d1a1f6a4SMatthias Ringwald 255d1a1f6a4SMatthias Ringwald static void btstack_crypto_cmac_handle_encryption_result(btstack_crypto_aes128_cmac_t * btstack_crypto_cmac, sm_key_t data){ 256d1a1f6a4SMatthias Ringwald switch (btstack_crypto_cmac_state){ 257d1a1f6a4SMatthias Ringwald case CMAC_W4_SUBKEYS: { 258d1a1f6a4SMatthias Ringwald sm_key_t k1; 2596535961aSMatthias Ringwald (void)memcpy(k1, data, 16); 260d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_shift_left_by_one_bit_inplace(16, k1); 261d1a1f6a4SMatthias Ringwald if (data[0] & 0x80){ 262d1a1f6a4SMatthias Ringwald k1[15] ^= 0x87; 263d1a1f6a4SMatthias Ringwald } 264d1a1f6a4SMatthias Ringwald sm_key_t k2; 2656535961aSMatthias Ringwald (void)memcpy(k2, k1, 16); 266d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_shift_left_by_one_bit_inplace(16, k2); 267d1a1f6a4SMatthias Ringwald if (k1[0] & 0x80){ 268d1a1f6a4SMatthias Ringwald k2[15] ^= 0x87; 269d1a1f6a4SMatthias Ringwald } 270d1a1f6a4SMatthias Ringwald 271d1a1f6a4SMatthias Ringwald log_info_key("k", btstack_crypto_cmac_k); 272d1a1f6a4SMatthias Ringwald log_info_key("k1", k1); 273d1a1f6a4SMatthias Ringwald log_info_key("k2", k2); 274d1a1f6a4SMatthias Ringwald 275d1a1f6a4SMatthias Ringwald // step 4: set m_last 276d1a1f6a4SMatthias Ringwald int i; 277d1a1f6a4SMatthias Ringwald if (btstack_crypto_cmac_last_block_complete(btstack_crypto_cmac)){ 278d1a1f6a4SMatthias Ringwald for (i=0;i<16;i++){ 279d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_m_last[i] = btstack_crypto_cmac_get_byte(btstack_crypto_cmac, btstack_crypto_cmac->size - 16 + i) ^ k1[i]; 280d1a1f6a4SMatthias Ringwald } 281d1a1f6a4SMatthias Ringwald } else { 282d1a1f6a4SMatthias Ringwald int valid_octets_in_last_block = btstack_crypto_cmac->size & 0x0f; 283d1a1f6a4SMatthias Ringwald for (i=0;i<16;i++){ 284d1a1f6a4SMatthias Ringwald if (i < valid_octets_in_last_block){ 285d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_m_last[i] = btstack_crypto_cmac_get_byte(btstack_crypto_cmac, (btstack_crypto_cmac->size & 0xfff0) + i) ^ k2[i]; 286d1a1f6a4SMatthias Ringwald continue; 287d1a1f6a4SMatthias Ringwald } 288d1a1f6a4SMatthias Ringwald if (i == valid_octets_in_last_block){ 289d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_m_last[i] = 0x80 ^ k2[i]; 290d1a1f6a4SMatthias Ringwald continue; 291d1a1f6a4SMatthias Ringwald } 292d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_m_last[i] = k2[i]; 293d1a1f6a4SMatthias Ringwald } 294d1a1f6a4SMatthias Ringwald } 295d1a1f6a4SMatthias Ringwald 296d1a1f6a4SMatthias Ringwald // next 297c1ab6cc1SMatthias Ringwald btstack_crypto_cmac_state = (btstack_crypto_cmac_block_current < (btstack_crypto_cmac_block_count - 1)) ? CMAC_CALC_MI : CMAC_CALC_MLAST; 298d1a1f6a4SMatthias Ringwald break; 299d1a1f6a4SMatthias Ringwald } 300d1a1f6a4SMatthias Ringwald case CMAC_W4_MI: 3016535961aSMatthias Ringwald (void)memcpy(btstack_crypto_cmac_x, data, 16); 302c1ab6cc1SMatthias Ringwald btstack_crypto_cmac_state = (btstack_crypto_cmac_block_current < (btstack_crypto_cmac_block_count - 1)) ? CMAC_CALC_MI : CMAC_CALC_MLAST; 303d1a1f6a4SMatthias Ringwald break; 304d1a1f6a4SMatthias Ringwald case CMAC_W4_MLAST: 305d1a1f6a4SMatthias Ringwald // done 306d1a1f6a4SMatthias Ringwald log_info("Setting CMAC Engine to IDLE"); 307d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_state = CMAC_IDLE; 308d1a1f6a4SMatthias Ringwald log_info_key("CMAC", data); 3096535961aSMatthias Ringwald (void)memcpy(btstack_crypto_cmac->hash, data, 16); 310d1a1f6a4SMatthias Ringwald btstack_linked_list_pop(&btstack_crypto_operations); 311d1a1f6a4SMatthias Ringwald (*btstack_crypto_cmac->btstack_crypto.context_callback.callback)(btstack_crypto_cmac->btstack_crypto.context_callback.context); 312d1a1f6a4SMatthias Ringwald break; 313d1a1f6a4SMatthias Ringwald default: 314d1a1f6a4SMatthias Ringwald log_info("btstack_crypto_cmac_handle_encryption_result called in state %u", btstack_crypto_cmac_state); 315d1a1f6a4SMatthias Ringwald break; 316d1a1f6a4SMatthias Ringwald } 317d1a1f6a4SMatthias Ringwald } 318d1a1f6a4SMatthias Ringwald 319d1a1f6a4SMatthias Ringwald static void btstack_crypto_cmac_start(btstack_crypto_aes128_cmac_t * btstack_crypto_cmac){ 320d1a1f6a4SMatthias Ringwald 3216535961aSMatthias Ringwald (void)memcpy(btstack_crypto_cmac_k, btstack_crypto_cmac->key, 16); 322d1a1f6a4SMatthias Ringwald memset(btstack_crypto_cmac_x, 0, 16); 323d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_block_current = 0; 324d1a1f6a4SMatthias Ringwald 325d1a1f6a4SMatthias Ringwald // step 2: n := ceil(len/const_Bsize); 326d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_block_count = (btstack_crypto_cmac->size + 15) / 16; 327d1a1f6a4SMatthias Ringwald 328d1a1f6a4SMatthias Ringwald // step 3: .. 329d1a1f6a4SMatthias Ringwald if (btstack_crypto_cmac_block_count==0){ 330d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_block_count = 1; 331d1a1f6a4SMatthias Ringwald } 332d1a1f6a4SMatthias Ringwald log_info("btstack_crypto_cmac_start: len %u, block count %u", btstack_crypto_cmac->size, btstack_crypto_cmac_block_count); 333d1a1f6a4SMatthias Ringwald 334d1a1f6a4SMatthias Ringwald // first, we need to compute l for k1, k2, and m_last 335d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_state = CMAC_CALC_SUBKEYS; 336d1a1f6a4SMatthias Ringwald 337d1a1f6a4SMatthias Ringwald // let's go 338d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_handle_aes_engine_ready(btstack_crypto_cmac); 339d1a1f6a4SMatthias Ringwald } 340d1a1f6a4SMatthias Ringwald 341ea478a83SMatthias Ringwald #ifndef USE_BTSTACK_AES128 342ea478a83SMatthias Ringwald 343d1a1f6a4SMatthias Ringwald /* 344d1a1f6a4SMatthias Ringwald To encrypt the message data we use Counter (CTR) mode. We first 345d1a1f6a4SMatthias Ringwald define the key stream blocks by: 346d1a1f6a4SMatthias Ringwald 347d1a1f6a4SMatthias Ringwald S_i := E( K, A_i ) for i=0, 1, 2, ... 348d1a1f6a4SMatthias Ringwald 349d1a1f6a4SMatthias Ringwald The values A_i are formatted as follows, where the Counter field i is 350d1a1f6a4SMatthias Ringwald encoded in most-significant-byte first order: 351d1a1f6a4SMatthias Ringwald 352d1a1f6a4SMatthias Ringwald Octet Number Contents 353d1a1f6a4SMatthias Ringwald ------------ --------- 354d1a1f6a4SMatthias Ringwald 0 Flags 355d1a1f6a4SMatthias Ringwald 1 ... 15-L Nonce N 356d1a1f6a4SMatthias Ringwald 16-L ... 15 Counter i 357d1a1f6a4SMatthias Ringwald 358d1a1f6a4SMatthias Ringwald Bit Number Contents 359d1a1f6a4SMatthias Ringwald ---------- ---------------------- 360d1a1f6a4SMatthias Ringwald 7 Reserved (always zero) 361d1a1f6a4SMatthias Ringwald 6 Reserved (always zero) 362d1a1f6a4SMatthias Ringwald 5 ... 3 Zero 363d1a1f6a4SMatthias Ringwald 2 ... 0 L' 364d1a1f6a4SMatthias Ringwald */ 365d1a1f6a4SMatthias Ringwald 366d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_setup_a_i(btstack_crypto_ccm_t * btstack_crypto_ccm, uint16_t counter){ 367d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_s[0] = 1; // L' = L - 1 3686535961aSMatthias Ringwald (void)memcpy(&btstack_crypto_ccm_s[1], btstack_crypto_ccm->nonce, 13); 369d1a1f6a4SMatthias Ringwald big_endian_store_16(btstack_crypto_ccm_s, 14, counter); 370577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 371f88ad41fSMatthias Ringwald printf("ststack_crypto_ccm_setup_a_%u\n", counter); 372577fe4dfSMatthias Ringwald printf("%16s: ", "ai"); 373577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm_s, 16); 374577fe4dfSMatthias Ringwald #endif 375d1a1f6a4SMatthias Ringwald } 376d1a1f6a4SMatthias Ringwald 377d1a1f6a4SMatthias Ringwald /* 378d1a1f6a4SMatthias Ringwald The first step is to compute the authentication field T. This is 379d1a1f6a4SMatthias Ringwald done using CBC-MAC [MAC]. We first define a sequence of blocks B_0, 380d1a1f6a4SMatthias Ringwald B_1, ..., B_n and then apply CBC-MAC to these blocks. 381d1a1f6a4SMatthias Ringwald 382d1a1f6a4SMatthias Ringwald The first block B_0 is formatted as follows, where l(m) is encoded in 383d1a1f6a4SMatthias Ringwald most-significant-byte first order: 384d1a1f6a4SMatthias Ringwald 385d1a1f6a4SMatthias Ringwald Octet Number Contents 386d1a1f6a4SMatthias Ringwald ------------ --------- 387d1a1f6a4SMatthias Ringwald 0 Flags 388d1a1f6a4SMatthias Ringwald 1 ... 15-L Nonce N 389d1a1f6a4SMatthias Ringwald 16-L ... 15 l(m) 390d1a1f6a4SMatthias Ringwald 391d1a1f6a4SMatthias Ringwald Within the first block B_0, the Flags field is formatted as follows: 392d1a1f6a4SMatthias Ringwald 393d1a1f6a4SMatthias Ringwald Bit Number Contents 394d1a1f6a4SMatthias Ringwald ---------- ---------------------- 395d1a1f6a4SMatthias Ringwald 7 Reserved (always zero) 396d1a1f6a4SMatthias Ringwald 6 Adata 397d1a1f6a4SMatthias Ringwald 5 ... 3 M' 398d1a1f6a4SMatthias Ringwald 2 ... 0 L' 399d1a1f6a4SMatthias Ringwald */ 400d1a1f6a4SMatthias Ringwald 401d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_setup_b_0(btstack_crypto_ccm_t * btstack_crypto_ccm, uint8_t * b0){ 4026015e1edSMatthias Ringwald uint8_t m_prime = (btstack_crypto_ccm->auth_len - 2) / 2; 403f88ad41fSMatthias Ringwald uint8_t Adata = btstack_crypto_ccm->aad_len ? 1 : 0; 404f88ad41fSMatthias Ringwald b0[0] = (Adata << 6) | (m_prime << 3) | 1 ; // Adata, M', L' = L - 1 4056535961aSMatthias Ringwald (void)memcpy(&b0[1], btstack_crypto_ccm->nonce, 13); 406d1a1f6a4SMatthias Ringwald big_endian_store_16(b0, 14, btstack_crypto_ccm->message_len); 407577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 408577fe4dfSMatthias Ringwald printf("%16s: ", "B0"); 409577fe4dfSMatthias Ringwald printf_hexdump(b0, 16); 410577fe4dfSMatthias Ringwald #endif 411d1a1f6a4SMatthias Ringwald } 412ea478a83SMatthias Ringwald #endif 413d1a1f6a4SMatthias Ringwald 414d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 415d1a1f6a4SMatthias Ringwald 416d1a1f6a4SMatthias Ringwald static void btstack_crypto_log_ec_publickey(const uint8_t * ec_q){ 417d1a1f6a4SMatthias Ringwald log_info("Elliptic curve: X"); 418d1a1f6a4SMatthias Ringwald log_info_hexdump(&ec_q[0],32); 419d1a1f6a4SMatthias Ringwald log_info("Elliptic curve: Y"); 420d1a1f6a4SMatthias Ringwald log_info_hexdump(&ec_q[32],32); 421d1a1f6a4SMatthias Ringwald } 422d1a1f6a4SMatthias Ringwald 423d1a1f6a4SMatthias Ringwald #if (defined(USE_MICRO_ECC_P256) && !defined(WICED_VERSION)) || defined(USE_MBEDTLS_ECC_P256) 424d1a1f6a4SMatthias Ringwald // @return OK 425d1a1f6a4SMatthias Ringwald static int sm_generate_f_rng(unsigned char * buffer, unsigned size){ 426d1a1f6a4SMatthias Ringwald if (btstack_crypto_ecc_p256_key_generation_state != ECC_P256_KEY_GENERATION_ACTIVE) return 0; 427d1a1f6a4SMatthias Ringwald log_info("sm_generate_f_rng: size %u - offset %u", (int) size, btstack_crypto_ecc_p256_random_offset); 428d1a1f6a4SMatthias Ringwald while (size) { 429d1a1f6a4SMatthias Ringwald *buffer++ = btstack_crypto_ecc_p256_random[btstack_crypto_ecc_p256_random_offset++]; 430d1a1f6a4SMatthias Ringwald size--; 431d1a1f6a4SMatthias Ringwald } 432d1a1f6a4SMatthias Ringwald return 1; 433d1a1f6a4SMatthias Ringwald } 434d1a1f6a4SMatthias Ringwald #endif 435d1a1f6a4SMatthias Ringwald #ifdef USE_MBEDTLS_ECC_P256 436d1a1f6a4SMatthias Ringwald // @return error - just wrap sm_generate_f_rng 437d1a1f6a4SMatthias Ringwald static int sm_generate_f_rng_mbedtls(void * context, unsigned char * buffer, size_t size){ 438d1a1f6a4SMatthias Ringwald UNUSED(context); 439d1a1f6a4SMatthias Ringwald return sm_generate_f_rng(buffer, size) == 0; 440d1a1f6a4SMatthias Ringwald } 441d1a1f6a4SMatthias Ringwald #endif /* USE_MBEDTLS_ECC_P256 */ 442d1a1f6a4SMatthias Ringwald 443d1a1f6a4SMatthias Ringwald static void btstack_crypto_ecc_p256_generate_key_software(void){ 444d1a1f6a4SMatthias Ringwald 445d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_random_offset = 0; 446d1a1f6a4SMatthias Ringwald 447d1a1f6a4SMatthias Ringwald // generate EC key 448d1a1f6a4SMatthias Ringwald #ifdef USE_MICRO_ECC_P256 449d1a1f6a4SMatthias Ringwald 450d1a1f6a4SMatthias Ringwald #ifndef WICED_VERSION 451d1a1f6a4SMatthias Ringwald log_info("set uECC RNG for initial key generation with 64 random bytes"); 452d1a1f6a4SMatthias Ringwald // micro-ecc from WICED SDK uses its wiced_crypto_get_random by default - no need to set it 453d1a1f6a4SMatthias Ringwald uECC_set_rng(&sm_generate_f_rng); 454d1a1f6a4SMatthias Ringwald #endif /* WICED_VERSION */ 455d1a1f6a4SMatthias Ringwald 456d1a1f6a4SMatthias Ringwald #if uECC_SUPPORTS_secp256r1 457d1a1f6a4SMatthias Ringwald // standard version 458d1a1f6a4SMatthias Ringwald uECC_make_key(btstack_crypto_ecc_p256_public_key, btstack_crypto_ecc_p256_d, uECC_secp256r1()); 459d1a1f6a4SMatthias Ringwald 460d1a1f6a4SMatthias Ringwald // disable RNG again, as returning no randmon data lets shared key generation fail 461d1a1f6a4SMatthias Ringwald log_info("disable uECC RNG in standard version after key generation"); 462d1a1f6a4SMatthias Ringwald uECC_set_rng(NULL); 463d1a1f6a4SMatthias Ringwald #else 464d1a1f6a4SMatthias Ringwald // static version 465d1a1f6a4SMatthias Ringwald uECC_make_key(btstack_crypto_ecc_p256_public_key, btstack_crypto_ecc_p256_d); 466d1a1f6a4SMatthias Ringwald #endif 467d1a1f6a4SMatthias Ringwald #endif /* USE_MICRO_ECC_P256 */ 468d1a1f6a4SMatthias Ringwald 469d1a1f6a4SMatthias Ringwald #ifdef USE_MBEDTLS_ECC_P256 470d1a1f6a4SMatthias Ringwald mbedtls_mpi d; 471d1a1f6a4SMatthias Ringwald mbedtls_ecp_point P; 472d1a1f6a4SMatthias Ringwald mbedtls_mpi_init(&d); 473d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_init(&P); 474d1a1f6a4SMatthias Ringwald int res = mbedtls_ecp_gen_keypair(&mbedtls_ec_group, &d, &P, &sm_generate_f_rng_mbedtls, NULL); 475d1a1f6a4SMatthias Ringwald log_info("gen keypair %x", res); 476d1a1f6a4SMatthias Ringwald mbedtls_mpi_write_binary(&P.X, &btstack_crypto_ecc_p256_public_key[0], 32); 477d1a1f6a4SMatthias Ringwald mbedtls_mpi_write_binary(&P.Y, &btstack_crypto_ecc_p256_public_key[32], 32); 478d1a1f6a4SMatthias Ringwald mbedtls_mpi_write_binary(&d, btstack_crypto_ecc_p256_d, 32); 479d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_free(&P); 480d1a1f6a4SMatthias Ringwald mbedtls_mpi_free(&d); 481d1a1f6a4SMatthias Ringwald #endif /* USE_MBEDTLS_ECC_P256 */ 482d1a1f6a4SMatthias Ringwald } 483d1a1f6a4SMatthias Ringwald 484d1a1f6a4SMatthias Ringwald #ifdef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 485d1a1f6a4SMatthias Ringwald static void btstack_crypto_ecc_p256_calculate_dhkey_software(btstack_crypto_ecc_p256_t * btstack_crypto_ec_p192){ 486d1a1f6a4SMatthias Ringwald memset(btstack_crypto_ec_p192->dhkey, 0, 32); 487d1a1f6a4SMatthias Ringwald 488d1a1f6a4SMatthias Ringwald #ifdef USE_MICRO_ECC_P256 489d1a1f6a4SMatthias Ringwald #if uECC_SUPPORTS_secp256r1 490d1a1f6a4SMatthias Ringwald // standard version 491d1a1f6a4SMatthias Ringwald uECC_shared_secret(btstack_crypto_ec_p192->public_key, btstack_crypto_ecc_p256_d, btstack_crypto_ec_p192->dhkey, uECC_secp256r1()); 492d1a1f6a4SMatthias Ringwald #else 493d1a1f6a4SMatthias Ringwald // static version 494d1a1f6a4SMatthias Ringwald uECC_shared_secret(btstack_crypto_ec_p192->public_key, btstack_crypto_ecc_p256_d, btstack_crypto_ec_p192->dhkey); 495d1a1f6a4SMatthias Ringwald #endif 496d1a1f6a4SMatthias Ringwald #endif 497d1a1f6a4SMatthias Ringwald 498d1a1f6a4SMatthias Ringwald #ifdef USE_MBEDTLS_ECC_P256 499d1a1f6a4SMatthias Ringwald // da * Pb 500d1a1f6a4SMatthias Ringwald mbedtls_mpi d; 501d1a1f6a4SMatthias Ringwald mbedtls_ecp_point Q; 502d1a1f6a4SMatthias Ringwald mbedtls_ecp_point DH; 503d1a1f6a4SMatthias Ringwald mbedtls_mpi_init(&d); 504d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_init(&Q); 505d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_init(&DH); 506d1a1f6a4SMatthias Ringwald mbedtls_mpi_read_binary(&d, btstack_crypto_ecc_p256_d, 32); 507d1a1f6a4SMatthias Ringwald mbedtls_mpi_read_binary(&Q.X, &btstack_crypto_ec_p192->public_key[0] , 32); 508d1a1f6a4SMatthias Ringwald mbedtls_mpi_read_binary(&Q.Y, &btstack_crypto_ec_p192->public_key[32], 32); 509d1a1f6a4SMatthias Ringwald mbedtls_mpi_lset(&Q.Z, 1); 510d1a1f6a4SMatthias Ringwald mbedtls_ecp_mul(&mbedtls_ec_group, &DH, &d, &Q, NULL, NULL); 511d1a1f6a4SMatthias Ringwald mbedtls_mpi_write_binary(&DH.X, btstack_crypto_ec_p192->dhkey, 32); 512d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_free(&DH); 513d1a1f6a4SMatthias Ringwald mbedtls_mpi_free(&d); 514d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_free(&Q); 515d1a1f6a4SMatthias Ringwald #endif 516d1a1f6a4SMatthias Ringwald 517d1a1f6a4SMatthias Ringwald log_info("dhkey"); 518d1a1f6a4SMatthias Ringwald log_info_hexdump(btstack_crypto_ec_p192->dhkey, 32); 519d1a1f6a4SMatthias Ringwald } 520d1a1f6a4SMatthias Ringwald #endif 521d1a1f6a4SMatthias Ringwald 522d1a1f6a4SMatthias Ringwald #endif 523d1a1f6a4SMatthias Ringwald 524ea478a83SMatthias Ringwald #ifdef USE_BTSTACK_AES128 525ea478a83SMatthias Ringwald // CCM not implemented using software AES128 yet 526ea478a83SMatthias Ringwald #else 527d1a1f6a4SMatthias Ringwald 528d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_calc_s0(btstack_crypto_ccm_t * btstack_crypto_ccm){ 529577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 530577fe4dfSMatthias Ringwald printf("btstack_crypto_ccm_calc_s0\n"); 531577fe4dfSMatthias Ringwald #endif 532d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_W4_S0; 533d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_setup_a_i(btstack_crypto_ccm, 0); 534d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_ccm->key, btstack_crypto_ccm_s); 535d1a1f6a4SMatthias Ringwald } 536d1a1f6a4SMatthias Ringwald 537d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_calc_sn(btstack_crypto_ccm_t * btstack_crypto_ccm){ 538577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 539577fe4dfSMatthias Ringwald printf("btstack_crypto_ccm_calc_s%u\n", btstack_crypto_ccm->counter); 540577fe4dfSMatthias Ringwald #endif 541d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_W4_SN; 542d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_setup_a_i(btstack_crypto_ccm, btstack_crypto_ccm->counter); 543d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_ccm->key, btstack_crypto_ccm_s); 544d1a1f6a4SMatthias Ringwald } 545d1a1f6a4SMatthias Ringwald 546d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_calc_x1(btstack_crypto_ccm_t * btstack_crypto_ccm){ 547d1a1f6a4SMatthias Ringwald uint8_t btstack_crypto_ccm_buffer[16]; 548d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_W4_X1; 549d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_setup_b_0(btstack_crypto_ccm, btstack_crypto_ccm_buffer); 550d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_ccm->key, btstack_crypto_ccm_buffer); 551d1a1f6a4SMatthias Ringwald } 552d1a1f6a4SMatthias Ringwald 553d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_calc_xn(btstack_crypto_ccm_t * btstack_crypto_ccm, const uint8_t * plaintext){ 554d1a1f6a4SMatthias Ringwald uint8_t btstack_crypto_ccm_buffer[16]; 555d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_W4_XN; 556577fe4dfSMatthias Ringwald 557577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 558577fe4dfSMatthias Ringwald printf("%16s: ", "bn"); 559577fe4dfSMatthias Ringwald printf_hexdump(plaintext, 16); 560577fe4dfSMatthias Ringwald #endif 561a512579cSMatthias Ringwald uint8_t i; 562a512579cSMatthias Ringwald uint8_t bytes_to_decrypt = btstack_crypto_ccm->block_len; 563a512579cSMatthias Ringwald // use explicit min implementation as c-stat worried about out-of-bounds-reads 564a512579cSMatthias Ringwald if (bytes_to_decrypt > 16) { 565a512579cSMatthias Ringwald bytes_to_decrypt = 16; 566a512579cSMatthias Ringwald } 567a512579cSMatthias Ringwald for (i = 0; i < bytes_to_decrypt ; i++){ 568d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_buffer[i] = btstack_crypto_ccm->x_i[i] ^ plaintext[i]; 569d1a1f6a4SMatthias Ringwald } 5706535961aSMatthias Ringwald (void)memcpy(&btstack_crypto_ccm_buffer[i], &btstack_crypto_ccm->x_i[i], 5716535961aSMatthias Ringwald 16 - bytes_to_decrypt); 572577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 573577fe4dfSMatthias Ringwald printf("%16s: ", "Xn XOR bn"); 574577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm_buffer, 16); 575577fe4dfSMatthias Ringwald #endif 576577fe4dfSMatthias Ringwald 577d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_ccm->key, btstack_crypto_ccm_buffer); 578d1a1f6a4SMatthias Ringwald } 579ea478a83SMatthias Ringwald #endif 580d1a1f6a4SMatthias Ringwald 581f88ad41fSMatthias Ringwald static void btstack_crypto_ccm_calc_aad_xn(btstack_crypto_ccm_t * btstack_crypto_ccm){ 582f88ad41fSMatthias Ringwald // store length 583f88ad41fSMatthias Ringwald if (btstack_crypto_ccm->aad_offset == 0){ 584f88ad41fSMatthias Ringwald uint8_t len_buffer[2]; 585f88ad41fSMatthias Ringwald big_endian_store_16(len_buffer, 0, btstack_crypto_ccm->aad_len); 586f88ad41fSMatthias Ringwald btstack_crypto_ccm->x_i[0] ^= len_buffer[0]; 587f88ad41fSMatthias Ringwald btstack_crypto_ccm->x_i[1] ^= len_buffer[1]; 588f88ad41fSMatthias Ringwald btstack_crypto_ccm->aad_remainder_len += 2; 589f88ad41fSMatthias Ringwald btstack_crypto_ccm->aad_offset += 2; 590f88ad41fSMatthias Ringwald } 591f88ad41fSMatthias Ringwald 592f88ad41fSMatthias Ringwald // fill from input 593f88ad41fSMatthias Ringwald uint16_t bytes_free = 16 - btstack_crypto_ccm->aad_remainder_len; 594f88ad41fSMatthias Ringwald uint16_t bytes_to_copy = btstack_min(bytes_free, btstack_crypto_ccm->block_len); 595f88ad41fSMatthias Ringwald while (bytes_to_copy){ 596f88ad41fSMatthias Ringwald btstack_crypto_ccm->x_i[btstack_crypto_ccm->aad_remainder_len++] ^= *btstack_crypto_ccm->input++; 597f88ad41fSMatthias Ringwald btstack_crypto_ccm->aad_offset++; 598f88ad41fSMatthias Ringwald btstack_crypto_ccm->block_len--; 599f88ad41fSMatthias Ringwald bytes_to_copy--; 600f88ad41fSMatthias Ringwald bytes_free--; 601f88ad41fSMatthias Ringwald } 602f88ad41fSMatthias Ringwald 603f88ad41fSMatthias Ringwald // if last block, fill with zeros 604f88ad41fSMatthias Ringwald if (btstack_crypto_ccm->aad_offset == (btstack_crypto_ccm->aad_len + 2)){ 605f88ad41fSMatthias Ringwald btstack_crypto_ccm->aad_remainder_len = 16; 606f88ad41fSMatthias Ringwald } 607f88ad41fSMatthias Ringwald // if not full, notify done 608f88ad41fSMatthias Ringwald if (btstack_crypto_ccm->aad_remainder_len < 16){ 609f88ad41fSMatthias Ringwald btstack_crypto_done(&btstack_crypto_ccm->btstack_crypto); 610f88ad41fSMatthias Ringwald return; 611f88ad41fSMatthias Ringwald } 612f88ad41fSMatthias Ringwald 613f88ad41fSMatthias Ringwald // encrypt block 614f88ad41fSMatthias Ringwald #ifdef DEBUG_CCM 615f88ad41fSMatthias Ringwald printf("%16s: ", "Xn XOR Bn (aad)"); 616f88ad41fSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 617f88ad41fSMatthias Ringwald #endif 618f88ad41fSMatthias Ringwald 619f88ad41fSMatthias Ringwald btstack_crypto_ccm->aad_remainder_len = 0; 620f88ad41fSMatthias Ringwald btstack_crypto_ccm->state = CCM_W4_AAD_XN; 621f88ad41fSMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_ccm->key, btstack_crypto_ccm->x_i); 622f88ad41fSMatthias Ringwald } 623f88ad41fSMatthias Ringwald 624d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_handle_s0(btstack_crypto_ccm_t * btstack_crypto_ccm, const uint8_t * data){ 625d1a1f6a4SMatthias Ringwald // data is little-endian, flip on the fly 626d1a1f6a4SMatthias Ringwald int i; 627d1a1f6a4SMatthias Ringwald for (i=0;i<16;i++){ 628d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->x_i[i] = btstack_crypto_ccm->x_i[i] ^ data[15-i]; 629d1a1f6a4SMatthias Ringwald } 630d1a1f6a4SMatthias Ringwald btstack_crypto_done(&btstack_crypto_ccm->btstack_crypto); 631d1a1f6a4SMatthias Ringwald } 632d1a1f6a4SMatthias Ringwald 633d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_handle_sn(btstack_crypto_ccm_t * btstack_crypto_ccm, const uint8_t * data){ 634d1a1f6a4SMatthias Ringwald // data is little-endian, flip on the fly 635d1a1f6a4SMatthias Ringwald int i; 636d1a1f6a4SMatthias Ringwald uint16_t bytes_to_process = btstack_min(btstack_crypto_ccm->block_len, 16); 637d1a1f6a4SMatthias Ringwald for (i=0;i<bytes_to_process;i++){ 638d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->output[i] = btstack_crypto_ccm->input[i] ^ data[15-i]; 639d1a1f6a4SMatthias Ringwald } 640d1a1f6a4SMatthias Ringwald } 641d1a1f6a4SMatthias Ringwald 642d1a1f6a4SMatthias Ringwald static void btstack_crypto_ccm_next_block(btstack_crypto_ccm_t * btstack_crypto_ccm, btstack_crypto_ccm_state_t state_when_done){ 643d1a1f6a4SMatthias Ringwald uint16_t bytes_to_process = btstack_min(btstack_crypto_ccm->block_len, 16); 644d1a1f6a4SMatthias Ringwald // next block 645d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->counter++; 646d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->input += bytes_to_process; 647d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->output += bytes_to_process; 648d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->block_len -= bytes_to_process; 649577fe4dfSMatthias Ringwald btstack_crypto_ccm->message_len -= bytes_to_process; 65089be578cSMatthias Ringwald #ifdef DEBUG_CCM 65123b7e05eSMatthias Ringwald printf("btstack_crypto_ccm_next_block (message len %u, block_len %u)\n", btstack_crypto_ccm->message_len, btstack_crypto_ccm->block_len); 65289be578cSMatthias Ringwald #endif 653577fe4dfSMatthias Ringwald if (btstack_crypto_ccm->message_len == 0){ 654d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_S0; 655577fe4dfSMatthias Ringwald } else { 656d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = state_when_done; 65789be578cSMatthias Ringwald if (btstack_crypto_ccm->block_len == 0){ 658577fe4dfSMatthias Ringwald btstack_crypto_done(&btstack_crypto_ccm->btstack_crypto); 659d1a1f6a4SMatthias Ringwald } 660d1a1f6a4SMatthias Ringwald } 66189be578cSMatthias Ringwald } 662d1a1f6a4SMatthias Ringwald 663d1a1f6a4SMatthias Ringwald static void btstack_crypto_run(void){ 664d1a1f6a4SMatthias Ringwald 665d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_t * btstack_crypto_aes128; 666d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_t * btstack_crypto_ccm; 667d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_cmac_t * btstack_crypto_cmac; 668d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 669d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_t * btstack_crypto_ec_p192; 670d1a1f6a4SMatthias Ringwald #endif 671d1a1f6a4SMatthias Ringwald 672d1a1f6a4SMatthias Ringwald // stack up and running? 673d1a1f6a4SMatthias Ringwald if (hci_get_state() != HCI_STATE_WORKING) return; 674d1a1f6a4SMatthias Ringwald 6755db50aaaSMatthias Ringwald // try to do as much as possible 676ff3cc4a5SMatthias Ringwald while (true){ 677d1a1f6a4SMatthias Ringwald 678d1a1f6a4SMatthias Ringwald // anything to do? 679d1a1f6a4SMatthias Ringwald if (btstack_linked_list_empty(&btstack_crypto_operations)) return; 680d1a1f6a4SMatthias Ringwald 6815db50aaaSMatthias Ringwald // already active? 6825db50aaaSMatthias Ringwald if (btstack_crypto_wait_for_hci_result) return; 6835db50aaaSMatthias Ringwald 684d1a1f6a4SMatthias Ringwald // can send a command? 685d1a1f6a4SMatthias Ringwald if (!hci_can_send_command_packet_now()) return; 686d1a1f6a4SMatthias Ringwald 6875db50aaaSMatthias Ringwald // ok, find next task 688d1a1f6a4SMatthias Ringwald btstack_crypto_t * btstack_crypto = (btstack_crypto_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 689d1a1f6a4SMatthias Ringwald switch (btstack_crypto->operation){ 690d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_RANDOM: 691d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 692d1a1f6a4SMatthias Ringwald hci_send_cmd(&hci_le_rand); 693d1a1f6a4SMatthias Ringwald break; 694d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_AES128: 695d1a1f6a4SMatthias Ringwald btstack_crypto_aes128 = (btstack_crypto_aes128_t *) btstack_crypto; 696d1a1f6a4SMatthias Ringwald #ifdef USE_BTSTACK_AES128 697d1a1f6a4SMatthias Ringwald btstack_aes128_calc(btstack_crypto_aes128->key, btstack_crypto_aes128->plaintext, btstack_crypto_aes128->ciphertext); 6987909a414SMatthias Ringwald btstack_crypto_done(btstack_crypto); 699d1a1f6a4SMatthias Ringwald #else 700d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_start(btstack_crypto_aes128->key, btstack_crypto_aes128->plaintext); 701d1a1f6a4SMatthias Ringwald #endif 702d1a1f6a4SMatthias Ringwald break; 703d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CMAC_MESSAGE: 704d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CMAC_GENERATOR: 705d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 706d1a1f6a4SMatthias Ringwald btstack_crypto_cmac = (btstack_crypto_aes128_cmac_t *) btstack_crypto; 707d1a1f6a4SMatthias Ringwald if (btstack_crypto_cmac_state == CMAC_IDLE){ 708d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_start(btstack_crypto_cmac); 709d1a1f6a4SMatthias Ringwald } else { 710d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_handle_aes_engine_ready(btstack_crypto_cmac); 711d1a1f6a4SMatthias Ringwald } 712d1a1f6a4SMatthias Ringwald break; 713d1a1f6a4SMatthias Ringwald 714f88ad41fSMatthias Ringwald case BTSTACK_CRYPTO_CCM_DIGEST_BLOCK: 715d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CCM_ENCRYPT_BLOCK: 716d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CCM_DECRYPT_BLOCK: 717d1a1f6a4SMatthias Ringwald #ifdef USE_BTSTACK_AES128 718ea478a83SMatthias Ringwald UNUSED(btstack_crypto_ccm); 7195db50aaaSMatthias Ringwald // NOTE: infinite output of this message 720d1a1f6a4SMatthias Ringwald log_error("ccm not implemented for software aes128 yet"); 721d1a1f6a4SMatthias Ringwald #else 722d1a1f6a4SMatthias Ringwald btstack_crypto_ccm = (btstack_crypto_ccm_t *) btstack_crypto; 723d1a1f6a4SMatthias Ringwald switch (btstack_crypto_ccm->state){ 724f88ad41fSMatthias Ringwald case CCM_CALCULATE_AAD_XN: 725f88ad41fSMatthias Ringwald btstack_crypto_ccm_calc_aad_xn(btstack_crypto_ccm); 726f88ad41fSMatthias Ringwald break; 727d1a1f6a4SMatthias Ringwald case CCM_CALCULATE_X1: 728d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_calc_x1(btstack_crypto_ccm); 729d1a1f6a4SMatthias Ringwald break; 730d1a1f6a4SMatthias Ringwald case CCM_CALCULATE_S0: 731d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_calc_s0(btstack_crypto_ccm); 732d1a1f6a4SMatthias Ringwald break; 733d1a1f6a4SMatthias Ringwald case CCM_CALCULATE_SN: 734d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_calc_sn(btstack_crypto_ccm); 735d1a1f6a4SMatthias Ringwald break; 736d1a1f6a4SMatthias Ringwald case CCM_CALCULATE_XN: 7370e588213SMatthias Ringwald btstack_crypto_ccm_calc_xn(btstack_crypto_ccm, (btstack_crypto->operation == BTSTACK_CRYPTO_CCM_ENCRYPT_BLOCK) ? btstack_crypto_ccm->input : btstack_crypto_ccm->output); 738d1a1f6a4SMatthias Ringwald break; 739d1a1f6a4SMatthias Ringwald default: 740d1a1f6a4SMatthias Ringwald break; 741d1a1f6a4SMatthias Ringwald } 742d1a1f6a4SMatthias Ringwald #endif 743d1a1f6a4SMatthias Ringwald break; 744d1a1f6a4SMatthias Ringwald 745d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 746d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_ECC_P256_GENERATE_KEY: 747d1a1f6a4SMatthias Ringwald btstack_crypto_ec_p192 = (btstack_crypto_ecc_p256_t *) btstack_crypto; 748d1a1f6a4SMatthias Ringwald switch (btstack_crypto_ecc_p256_key_generation_state){ 749d1a1f6a4SMatthias Ringwald case ECC_P256_KEY_GENERATION_DONE: 750d1a1f6a4SMatthias Ringwald // done 751d1a1f6a4SMatthias Ringwald btstack_crypto_log_ec_publickey(btstack_crypto_ecc_p256_public_key); 7526535961aSMatthias Ringwald (void)memcpy(btstack_crypto_ec_p192->public_key, 7536535961aSMatthias Ringwald btstack_crypto_ecc_p256_public_key, 64); 754d1a1f6a4SMatthias Ringwald btstack_linked_list_pop(&btstack_crypto_operations); 755d1a1f6a4SMatthias Ringwald (*btstack_crypto_ec_p192->btstack_crypto.context_callback.callback)(btstack_crypto_ec_p192->btstack_crypto.context_callback.context); 756d1a1f6a4SMatthias Ringwald break; 757d1a1f6a4SMatthias Ringwald case ECC_P256_KEY_GENERATION_IDLE: 758d1a1f6a4SMatthias Ringwald #ifdef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 759d1a1f6a4SMatthias Ringwald log_info("start ecc random"); 760d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_GENERATING_RANDOM; 761d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_random_offset = 0; 762d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 763d1a1f6a4SMatthias Ringwald hci_send_cmd(&hci_le_rand); 764d1a1f6a4SMatthias Ringwald #else 765d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_W4_KEY; 766d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 767d1a1f6a4SMatthias Ringwald hci_send_cmd(&hci_le_read_local_p256_public_key); 768d1a1f6a4SMatthias Ringwald #endif 769d1a1f6a4SMatthias Ringwald break; 770d1a1f6a4SMatthias Ringwald #ifdef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 771d1a1f6a4SMatthias Ringwald case ECC_P256_KEY_GENERATION_GENERATING_RANDOM: 772d1a1f6a4SMatthias Ringwald log_info("more ecc random"); 773d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 774d1a1f6a4SMatthias Ringwald hci_send_cmd(&hci_le_rand); 775d1a1f6a4SMatthias Ringwald break; 776d1a1f6a4SMatthias Ringwald #endif 777d1a1f6a4SMatthias Ringwald default: 778d1a1f6a4SMatthias Ringwald break; 779d1a1f6a4SMatthias Ringwald } 780d1a1f6a4SMatthias Ringwald break; 781d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_ECC_P256_CALCULATE_DHKEY: 782d1a1f6a4SMatthias Ringwald btstack_crypto_ec_p192 = (btstack_crypto_ecc_p256_t *) btstack_crypto; 783d1a1f6a4SMatthias Ringwald #ifdef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 784d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_calculate_dhkey_software(btstack_crypto_ec_p192); 785d1a1f6a4SMatthias Ringwald // done 786d1a1f6a4SMatthias Ringwald btstack_linked_list_pop(&btstack_crypto_operations); 787d1a1f6a4SMatthias Ringwald (*btstack_crypto_ec_p192->btstack_crypto.context_callback.callback)(btstack_crypto_ec_p192->btstack_crypto.context_callback.context); 788d1a1f6a4SMatthias Ringwald #else 789d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 1; 790d1a1f6a4SMatthias Ringwald hci_send_cmd(&hci_le_generate_dhkey, &btstack_crypto_ec_p192->public_key[0], &btstack_crypto_ec_p192->public_key[32]); 791d1a1f6a4SMatthias Ringwald #endif 792d1a1f6a4SMatthias Ringwald break; 7934395a000SMatthias Ringwald 7944395a000SMatthias Ringwald #endif /* ENABLE_ECC_P256 */ 7954395a000SMatthias Ringwald 796d1a1f6a4SMatthias Ringwald default: 797d1a1f6a4SMatthias Ringwald break; 798d1a1f6a4SMatthias Ringwald } 799d1a1f6a4SMatthias Ringwald } 8005db50aaaSMatthias Ringwald } 801d1a1f6a4SMatthias Ringwald 802d1a1f6a4SMatthias Ringwald static void btstack_crypto_handle_random_data(const uint8_t * data, uint16_t len){ 803d1a1f6a4SMatthias Ringwald btstack_crypto_random_t * btstack_crypto_random; 804d1a1f6a4SMatthias Ringwald btstack_crypto_t * btstack_crypto = (btstack_crypto_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 805d1a1f6a4SMatthias Ringwald uint16_t bytes_to_copy; 806d1a1f6a4SMatthias Ringwald if (!btstack_crypto) return; 807d1a1f6a4SMatthias Ringwald switch (btstack_crypto->operation){ 808d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_RANDOM: 809d1a1f6a4SMatthias Ringwald btstack_crypto_random = (btstack_crypto_random_t*) btstack_crypto; 810d1a1f6a4SMatthias Ringwald bytes_to_copy = btstack_min(btstack_crypto_random->size, len); 8116535961aSMatthias Ringwald (void)memcpy(btstack_crypto_random->buffer, data, bytes_to_copy); 812d1a1f6a4SMatthias Ringwald btstack_crypto_random->buffer += bytes_to_copy; 813d1a1f6a4SMatthias Ringwald btstack_crypto_random->size -= bytes_to_copy; 814d1a1f6a4SMatthias Ringwald // data processed, more? 815d1a1f6a4SMatthias Ringwald if (!btstack_crypto_random->size) { 816d1a1f6a4SMatthias Ringwald // done 817d1a1f6a4SMatthias Ringwald btstack_linked_list_pop(&btstack_crypto_operations); 818d1a1f6a4SMatthias Ringwald (*btstack_crypto_random->btstack_crypto.context_callback.callback)(btstack_crypto_random->btstack_crypto.context_callback.context); 819d1a1f6a4SMatthias Ringwald } 820d1a1f6a4SMatthias Ringwald break; 821d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 822d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_ECC_P256_GENERATE_KEY: 8236535961aSMatthias Ringwald (void)memcpy(&btstack_crypto_ecc_p256_random[btstack_crypto_ecc_p256_random_len], 8246535961aSMatthias Ringwald data, 8); 825d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_random_len += 8; 826d1a1f6a4SMatthias Ringwald if (btstack_crypto_ecc_p256_random_len >= 64) { 827d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_ACTIVE; 828d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_generate_key_software(); 829d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_DONE; 830d1a1f6a4SMatthias Ringwald } 831d1a1f6a4SMatthias Ringwald break; 832d1a1f6a4SMatthias Ringwald #endif 833d1a1f6a4SMatthias Ringwald default: 834d1a1f6a4SMatthias Ringwald break; 835d1a1f6a4SMatthias Ringwald } 836d1a1f6a4SMatthias Ringwald // more work? 837d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 838d1a1f6a4SMatthias Ringwald } 839d1a1f6a4SMatthias Ringwald 840d1a1f6a4SMatthias Ringwald static void btstack_crypto_handle_encryption_result(const uint8_t * data){ 841d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_t * btstack_crypto_aes128; 842d1a1f6a4SMatthias Ringwald btstack_crypto_aes128_cmac_t * btstack_crypto_cmac; 843d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_t * btstack_crypto_ccm; 844d1a1f6a4SMatthias Ringwald uint8_t result[16]; 845d1a1f6a4SMatthias Ringwald 846d1a1f6a4SMatthias Ringwald btstack_crypto_t * btstack_crypto = (btstack_crypto_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 847d1a1f6a4SMatthias Ringwald if (!btstack_crypto) return; 848d1a1f6a4SMatthias Ringwald switch (btstack_crypto->operation){ 849d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_AES128: 850d1a1f6a4SMatthias Ringwald btstack_crypto_aes128 = (btstack_crypto_aes128_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 851d1a1f6a4SMatthias Ringwald reverse_128(data, btstack_crypto_aes128->ciphertext); 852d1a1f6a4SMatthias Ringwald btstack_crypto_done(btstack_crypto); 853d1a1f6a4SMatthias Ringwald break; 854d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CMAC_GENERATOR: 855d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CMAC_MESSAGE: 856d1a1f6a4SMatthias Ringwald btstack_crypto_cmac = (btstack_crypto_aes128_cmac_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 857d1a1f6a4SMatthias Ringwald reverse_128(data, result); 858d1a1f6a4SMatthias Ringwald btstack_crypto_cmac_handle_encryption_result(btstack_crypto_cmac, result); 859d1a1f6a4SMatthias Ringwald break; 860f88ad41fSMatthias Ringwald case BTSTACK_CRYPTO_CCM_DIGEST_BLOCK: 861f88ad41fSMatthias Ringwald btstack_crypto_ccm = (btstack_crypto_ccm_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 862f88ad41fSMatthias Ringwald switch (btstack_crypto_ccm->state){ 863f88ad41fSMatthias Ringwald case CCM_W4_X1: 864f88ad41fSMatthias Ringwald reverse_128(data, btstack_crypto_ccm->x_i); 865f88ad41fSMatthias Ringwald #ifdef DEBUG_CCM 866f88ad41fSMatthias Ringwald printf("%16s: ", "X1"); 867f88ad41fSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 868f88ad41fSMatthias Ringwald #endif 869f88ad41fSMatthias Ringwald btstack_crypto_ccm->aad_remainder_len = 0; 870f88ad41fSMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_AAD_XN; 871f88ad41fSMatthias Ringwald break; 872f88ad41fSMatthias Ringwald case CCM_W4_AAD_XN: 873f88ad41fSMatthias Ringwald reverse_128(data, btstack_crypto_ccm->x_i); 874f88ad41fSMatthias Ringwald #ifdef DEBUG_CCM 875f88ad41fSMatthias Ringwald printf("%16s: ", "Xn+1 AAD"); 876f88ad41fSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 877f88ad41fSMatthias Ringwald #endif 878f88ad41fSMatthias Ringwald // more aad? 879f88ad41fSMatthias Ringwald if (btstack_crypto_ccm->aad_offset < (btstack_crypto_ccm->aad_len + 2)){ 880f88ad41fSMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_AAD_XN; 881f88ad41fSMatthias Ringwald } else { 882f88ad41fSMatthias Ringwald // done 883f88ad41fSMatthias Ringwald btstack_crypto_done(btstack_crypto); 884f88ad41fSMatthias Ringwald } 885f88ad41fSMatthias Ringwald break; 886f88ad41fSMatthias Ringwald default: 887f88ad41fSMatthias Ringwald break; 888f88ad41fSMatthias Ringwald } 889f88ad41fSMatthias Ringwald break; 890d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CCM_ENCRYPT_BLOCK: 891d1a1f6a4SMatthias Ringwald btstack_crypto_ccm = (btstack_crypto_ccm_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 892d1a1f6a4SMatthias Ringwald switch (btstack_crypto_ccm->state){ 893d1a1f6a4SMatthias Ringwald case CCM_W4_X1: 894d1a1f6a4SMatthias Ringwald reverse_128(data, btstack_crypto_ccm->x_i); 895577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 896577fe4dfSMatthias Ringwald printf("%16s: ", "X1"); 897577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 898577fe4dfSMatthias Ringwald #endif 899d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_XN; 900d1a1f6a4SMatthias Ringwald break; 901d1a1f6a4SMatthias Ringwald case CCM_W4_XN: 902d1a1f6a4SMatthias Ringwald reverse_128(data, btstack_crypto_ccm->x_i); 903577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 904577fe4dfSMatthias Ringwald printf("%16s: ", "Xn+1"); 905577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 906577fe4dfSMatthias Ringwald #endif 907d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_SN; 908d1a1f6a4SMatthias Ringwald break; 909d1a1f6a4SMatthias Ringwald case CCM_W4_S0: 910577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 911577fe4dfSMatthias Ringwald reverse_128(data, result); 912577fe4dfSMatthias Ringwald printf("%16s: ", "X0"); 913577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 914577fe4dfSMatthias Ringwald #endif 915d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_handle_s0(btstack_crypto_ccm, data); 916d1a1f6a4SMatthias Ringwald break; 917d1a1f6a4SMatthias Ringwald case CCM_W4_SN: 918577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 919577fe4dfSMatthias Ringwald reverse_128(data, result); 920577fe4dfSMatthias Ringwald printf("%16s: ", "Sn"); 921577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 922577fe4dfSMatthias Ringwald #endif 923d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_handle_sn(btstack_crypto_ccm, data); 924d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_next_block(btstack_crypto_ccm, CCM_CALCULATE_XN); 925d1a1f6a4SMatthias Ringwald break; 926d1a1f6a4SMatthias Ringwald default: 927d1a1f6a4SMatthias Ringwald break; 928d1a1f6a4SMatthias Ringwald } 929d1a1f6a4SMatthias Ringwald break; 930d1a1f6a4SMatthias Ringwald case BTSTACK_CRYPTO_CCM_DECRYPT_BLOCK: 931d1a1f6a4SMatthias Ringwald btstack_crypto_ccm = (btstack_crypto_ccm_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 932d1a1f6a4SMatthias Ringwald switch (btstack_crypto_ccm->state){ 933d1a1f6a4SMatthias Ringwald case CCM_W4_X1: 934d1a1f6a4SMatthias Ringwald reverse_128(data, btstack_crypto_ccm->x_i); 935577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 936577fe4dfSMatthias Ringwald printf("%16s: ", "X1"); 937577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 938577fe4dfSMatthias Ringwald #endif 939d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_SN; 940d1a1f6a4SMatthias Ringwald break; 941d1a1f6a4SMatthias Ringwald case CCM_W4_XN: 942d1a1f6a4SMatthias Ringwald reverse_128(data, btstack_crypto_ccm->x_i); 943577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 944577fe4dfSMatthias Ringwald printf("%16s: ", "Xn+1"); 945577fe4dfSMatthias Ringwald printf_hexdump(btstack_crypto_ccm->x_i, 16); 946577fe4dfSMatthias Ringwald #endif 947d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_next_block(btstack_crypto_ccm, CCM_CALCULATE_SN); 948d1a1f6a4SMatthias Ringwald break; 949d1a1f6a4SMatthias Ringwald case CCM_W4_S0: 950d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_handle_s0(btstack_crypto_ccm, data); 951d1a1f6a4SMatthias Ringwald break; 952d1a1f6a4SMatthias Ringwald case CCM_W4_SN: 953d1a1f6a4SMatthias Ringwald btstack_crypto_ccm_handle_sn(btstack_crypto_ccm, data); 954d1a1f6a4SMatthias Ringwald btstack_crypto_ccm->state = CCM_CALCULATE_XN; 955d1a1f6a4SMatthias Ringwald break; 956d1a1f6a4SMatthias Ringwald default: 957d1a1f6a4SMatthias Ringwald break; 958d1a1f6a4SMatthias Ringwald } 959d1a1f6a4SMatthias Ringwald break; 960d1a1f6a4SMatthias Ringwald default: 961d1a1f6a4SMatthias Ringwald break; 962d1a1f6a4SMatthias Ringwald } 963d1a1f6a4SMatthias Ringwald } 964d1a1f6a4SMatthias Ringwald 965d1a1f6a4SMatthias Ringwald static void btstack_crypto_event_handler(uint8_t packet_type, uint16_t cid, uint8_t *packet, uint16_t size){ 966d1a1f6a4SMatthias Ringwald UNUSED(cid); // ok: there is no channel 967d1a1f6a4SMatthias Ringwald UNUSED(size); // ok: fixed format events read from HCI buffer 968d1a1f6a4SMatthias Ringwald 969d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 970d1a1f6a4SMatthias Ringwald #ifndef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 971d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_t * btstack_crypto_ec_p192; 972d1a1f6a4SMatthias Ringwald #endif 973d1a1f6a4SMatthias Ringwald #endif 974d1a1f6a4SMatthias Ringwald 975d1a1f6a4SMatthias Ringwald if (packet_type != HCI_EVENT_PACKET) return; 976d1a1f6a4SMatthias Ringwald 977d1a1f6a4SMatthias Ringwald switch (hci_event_packet_get_type(packet)){ 9780c23bea1SMatthias Ringwald case BTSTACK_EVENT_STATE: 9790c23bea1SMatthias Ringwald log_info("BTSTACK_EVENT_STATE"); 9800c23bea1SMatthias Ringwald if (btstack_event_state_get_state(packet) != HCI_STATE_HALTING) break; 9810c23bea1SMatthias Ringwald if (!btstack_crypto_wait_for_hci_result) break; 9820c23bea1SMatthias Ringwald // request stack to defer shutdown a bit 9830c23bea1SMatthias Ringwald hci_halting_defer(); 9840c23bea1SMatthias Ringwald break; 9850c23bea1SMatthias Ringwald 986d1a1f6a4SMatthias Ringwald case HCI_EVENT_COMMAND_COMPLETE: 987d1a1f6a4SMatthias Ringwald if (HCI_EVENT_IS_COMMAND_COMPLETE(packet, hci_le_encrypt)){ 988d1a1f6a4SMatthias Ringwald if (!btstack_crypto_wait_for_hci_result) return; 989d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 0; 990d1a1f6a4SMatthias Ringwald btstack_crypto_handle_encryption_result(&packet[6]); 991d1a1f6a4SMatthias Ringwald } 992d1a1f6a4SMatthias Ringwald if (HCI_EVENT_IS_COMMAND_COMPLETE(packet, hci_le_rand)){ 993d1a1f6a4SMatthias Ringwald if (!btstack_crypto_wait_for_hci_result) return; 994d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 0; 995d1a1f6a4SMatthias Ringwald btstack_crypto_handle_random_data(&packet[6], 8); 996d1a1f6a4SMatthias Ringwald } 997d1a1f6a4SMatthias Ringwald if (HCI_EVENT_IS_COMMAND_COMPLETE(packet, hci_read_local_supported_commands)){ 998d1a1f6a4SMatthias Ringwald int ecdh_operations_supported = (packet[OFFSET_OF_DATA_IN_COMMAND_COMPLETE+1+34] & 0x06) == 0x06; 999d1a1f6a4SMatthias Ringwald log_info("controller supports ECDH operation: %u", ecdh_operations_supported); 1000d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 1001d1a1f6a4SMatthias Ringwald #ifndef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 1002d1a1f6a4SMatthias Ringwald if (!ecdh_operations_supported){ 1003d1a1f6a4SMatthias Ringwald // mbedTLS can also be used if already available (and malloc is supported) 1004ddd7eb8cSMatthias Ringwald log_error("ECC-P256 support enabled, but HCI Controller doesn't support it. Please add ENABLE_MICRO_ECC_FOR_LE_SECURE_CONNECTIONS to btstack_config.h"); 1005d1a1f6a4SMatthias Ringwald } 1006d1a1f6a4SMatthias Ringwald #endif 1007d1a1f6a4SMatthias Ringwald #endif 1008d1a1f6a4SMatthias Ringwald } 1009d1a1f6a4SMatthias Ringwald break; 1010d1a1f6a4SMatthias Ringwald 1011d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 1012d1a1f6a4SMatthias Ringwald #ifndef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 1013d1a1f6a4SMatthias Ringwald case HCI_EVENT_LE_META: 1014d1a1f6a4SMatthias Ringwald btstack_crypto_ec_p192 = (btstack_crypto_ecc_p256_t*) btstack_linked_list_get_first_item(&btstack_crypto_operations); 1015d1a1f6a4SMatthias Ringwald if (!btstack_crypto_ec_p192) break; 1016d1a1f6a4SMatthias Ringwald switch (hci_event_le_meta_get_subevent_code(packet)){ 1017d1a1f6a4SMatthias Ringwald case HCI_SUBEVENT_LE_READ_LOCAL_P256_PUBLIC_KEY_COMPLETE: 1018d1a1f6a4SMatthias Ringwald if (btstack_crypto_ec_p192->btstack_crypto.operation != BTSTACK_CRYPTO_ECC_P256_GENERATE_KEY) break; 1019d1a1f6a4SMatthias Ringwald if (!btstack_crypto_wait_for_hci_result) return; 1020d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 0; 1021d1a1f6a4SMatthias Ringwald if (hci_subevent_le_read_local_p256_public_key_complete_get_status(packet)){ 1022d1a1f6a4SMatthias Ringwald log_error("Read Local P256 Public Key failed"); 1023d1a1f6a4SMatthias Ringwald } 1024d1a1f6a4SMatthias Ringwald hci_subevent_le_read_local_p256_public_key_complete_get_dhkey_x(packet, &btstack_crypto_ecc_p256_public_key[0]); 1025d1a1f6a4SMatthias Ringwald hci_subevent_le_read_local_p256_public_key_complete_get_dhkey_y(packet, &btstack_crypto_ecc_p256_public_key[32]); 1026d1a1f6a4SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_DONE; 1027d1a1f6a4SMatthias Ringwald break; 1028d1a1f6a4SMatthias Ringwald case HCI_SUBEVENT_LE_GENERATE_DHKEY_COMPLETE: 1029d1a1f6a4SMatthias Ringwald if (btstack_crypto_ec_p192->btstack_crypto.operation != BTSTACK_CRYPTO_ECC_P256_CALCULATE_DHKEY) break; 1030d1a1f6a4SMatthias Ringwald if (!btstack_crypto_wait_for_hci_result) return; 1031d1a1f6a4SMatthias Ringwald btstack_crypto_wait_for_hci_result = 0; 1032d1a1f6a4SMatthias Ringwald if (hci_subevent_le_generate_dhkey_complete_get_status(packet)){ 1033d1a1f6a4SMatthias Ringwald log_error("Generate DHKEY failed -> abort"); 1034d1a1f6a4SMatthias Ringwald } 1035d1a1f6a4SMatthias Ringwald hci_subevent_le_generate_dhkey_complete_get_dhkey(packet, btstack_crypto_ec_p192->dhkey); 1036d1a1f6a4SMatthias Ringwald // done 1037d1a1f6a4SMatthias Ringwald btstack_linked_list_pop(&btstack_crypto_operations); 1038d1a1f6a4SMatthias Ringwald (*btstack_crypto_ec_p192->btstack_crypto.context_callback.callback)(btstack_crypto_ec_p192->btstack_crypto.context_callback.context); 1039d1a1f6a4SMatthias Ringwald break; 1040d1a1f6a4SMatthias Ringwald default: 1041d1a1f6a4SMatthias Ringwald break; 1042d1a1f6a4SMatthias Ringwald } 1043d1a1f6a4SMatthias Ringwald break; 1044d1a1f6a4SMatthias Ringwald #endif 1045d1a1f6a4SMatthias Ringwald #endif 1046d1a1f6a4SMatthias Ringwald default: 1047d1a1f6a4SMatthias Ringwald break; 1048d1a1f6a4SMatthias Ringwald } 1049d1a1f6a4SMatthias Ringwald 1050d1a1f6a4SMatthias Ringwald // try processing 1051d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1052d1a1f6a4SMatthias Ringwald } 1053d1a1f6a4SMatthias Ringwald 1054d1a1f6a4SMatthias Ringwald void btstack_crypto_init(void){ 1055d1a1f6a4SMatthias Ringwald if (btstack_crypto_initialized) return; 1056d1a1f6a4SMatthias Ringwald btstack_crypto_initialized = 1; 10570b672f43SMatthias Ringwald 1058d1a1f6a4SMatthias Ringwald // register with HCI 1059d1a1f6a4SMatthias Ringwald hci_event_callback_registration.callback = &btstack_crypto_event_handler; 1060d1a1f6a4SMatthias Ringwald hci_add_event_handler(&hci_event_callback_registration); 10610b672f43SMatthias Ringwald 10620b672f43SMatthias Ringwald #ifdef USE_MBEDTLS_ECC_P256 10630b672f43SMatthias Ringwald mbedtls_ecp_group_init(&mbedtls_ec_group); 10640b672f43SMatthias Ringwald mbedtls_ecp_group_load(&mbedtls_ec_group, MBEDTLS_ECP_DP_SECP256R1); 10650b672f43SMatthias Ringwald #endif 1066d1a1f6a4SMatthias Ringwald } 1067d1a1f6a4SMatthias Ringwald 1068d1a1f6a4SMatthias Ringwald void btstack_crypto_random_generate(btstack_crypto_random_t * request, uint8_t * buffer, uint16_t size, void (* callback)(void * arg), void * callback_arg){ 1069d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1070d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1071d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_RANDOM; 1072d1a1f6a4SMatthias Ringwald request->buffer = buffer; 1073d1a1f6a4SMatthias Ringwald request->size = size; 1074d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1075d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1076d1a1f6a4SMatthias Ringwald } 1077d1a1f6a4SMatthias Ringwald 1078d1a1f6a4SMatthias Ringwald void btstack_crypto_aes128_encrypt(btstack_crypto_aes128_t * request, const uint8_t * key, const uint8_t * plaintext, uint8_t * ciphertext, void (* callback)(void * arg), void * callback_arg){ 1079d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1080d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1081d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_AES128; 1082d1a1f6a4SMatthias Ringwald request->key = key; 1083d1a1f6a4SMatthias Ringwald request->plaintext = plaintext; 1084d1a1f6a4SMatthias Ringwald request->ciphertext = ciphertext; 1085d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1086d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1087d1a1f6a4SMatthias Ringwald } 1088d1a1f6a4SMatthias Ringwald 1089d1a1f6a4SMatthias Ringwald void btstack_crypto_aes128_cmac_generator(btstack_crypto_aes128_cmac_t * request, const uint8_t * key, uint16_t size, uint8_t (*get_byte_callback)(uint16_t pos), uint8_t * hash, void (* callback)(void * arg), void * callback_arg){ 1090d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1091d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1092d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_CMAC_GENERATOR; 1093d1a1f6a4SMatthias Ringwald request->key = key; 1094d1a1f6a4SMatthias Ringwald request->size = size; 109559ab1655SMatthias Ringwald request->data.get_byte_callback = get_byte_callback; 1096d1a1f6a4SMatthias Ringwald request->hash = hash; 1097d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1098d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1099d1a1f6a4SMatthias Ringwald } 1100d1a1f6a4SMatthias Ringwald 1101d1a1f6a4SMatthias Ringwald void btstack_crypto_aes128_cmac_message(btstack_crypto_aes128_cmac_t * request, const uint8_t * key, uint16_t size, const uint8_t * message, uint8_t * hash, void (* callback)(void * arg), void * callback_arg){ 1102d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1103d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1104d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_CMAC_MESSAGE; 1105d1a1f6a4SMatthias Ringwald request->key = key; 1106d1a1f6a4SMatthias Ringwald request->size = size; 110759ab1655SMatthias Ringwald request->data.message = message; 1108d1a1f6a4SMatthias Ringwald request->hash = hash; 1109d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1110d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1111d1a1f6a4SMatthias Ringwald } 1112d1a1f6a4SMatthias Ringwald 1113d1a1f6a4SMatthias Ringwald void btstack_crypto_aes128_cmac_zero(btstack_crypto_aes128_cmac_t * request, uint16_t len, const uint8_t * message, uint8_t * hash, void (* callback)(void * arg), void * callback_arg){ 1114d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1115d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1116d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_CMAC_MESSAGE; 1117d1a1f6a4SMatthias Ringwald request->key = zero; 1118d1a1f6a4SMatthias Ringwald request->size = len; 111959ab1655SMatthias Ringwald request->data.message = message; 1120d1a1f6a4SMatthias Ringwald request->hash = hash; 1121d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1122d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1123d1a1f6a4SMatthias Ringwald } 1124d1a1f6a4SMatthias Ringwald 1125d1a1f6a4SMatthias Ringwald #ifdef ENABLE_ECC_P256 1126d1a1f6a4SMatthias Ringwald void btstack_crypto_ecc_p256_generate_key(btstack_crypto_ecc_p256_t * request, uint8_t * public_key, void (* callback)(void * arg), void * callback_arg){ 1127e0449ce9SMatthias Ringwald // reset key generation 1128e0449ce9SMatthias Ringwald if (btstack_crypto_ecc_p256_key_generation_state == ECC_P256_KEY_GENERATION_DONE){ 1129e0449ce9SMatthias Ringwald btstack_crypto_ecc_p256_random_len = 0; 1130e0449ce9SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_IDLE; 1131e0449ce9SMatthias Ringwald } 1132d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1133d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1134d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_ECC_P256_GENERATE_KEY; 1135d1a1f6a4SMatthias Ringwald request->public_key = public_key; 1136d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1137d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1138d1a1f6a4SMatthias Ringwald } 1139d1a1f6a4SMatthias Ringwald 1140d1a1f6a4SMatthias Ringwald void btstack_crypto_ecc_p256_calculate_dhkey(btstack_crypto_ecc_p256_t * request, const uint8_t * public_key, uint8_t * dhkey, void (* callback)(void * arg), void * callback_arg){ 1141d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1142d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1143d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_ECC_P256_CALCULATE_DHKEY; 1144d1a1f6a4SMatthias Ringwald request->public_key = (uint8_t *) public_key; 1145d1a1f6a4SMatthias Ringwald request->dhkey = dhkey; 1146d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1147d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1148d1a1f6a4SMatthias Ringwald } 1149d1a1f6a4SMatthias Ringwald 1150d1a1f6a4SMatthias Ringwald int btstack_crypto_ecc_p256_validate_public_key(const uint8_t * public_key){ 1151d1a1f6a4SMatthias Ringwald 1152d1a1f6a4SMatthias Ringwald // validate public key using micro-ecc 1153d1a1f6a4SMatthias Ringwald int err = 0; 1154d1a1f6a4SMatthias Ringwald 1155d1a1f6a4SMatthias Ringwald #ifdef USE_MICRO_ECC_P256 1156d1a1f6a4SMatthias Ringwald #if uECC_SUPPORTS_secp256r1 1157d1a1f6a4SMatthias Ringwald // standard version 1158d1a1f6a4SMatthias Ringwald err = uECC_valid_public_key(public_key, uECC_secp256r1()) == 0; 1159d1a1f6a4SMatthias Ringwald #else 1160d1a1f6a4SMatthias Ringwald // static version 1161d1a1f6a4SMatthias Ringwald err = uECC_valid_public_key(public_key) == 0; 1162d1a1f6a4SMatthias Ringwald #endif 1163d1a1f6a4SMatthias Ringwald #endif 1164d1a1f6a4SMatthias Ringwald 1165d1a1f6a4SMatthias Ringwald #ifdef USE_MBEDTLS_ECC_P256 1166d1a1f6a4SMatthias Ringwald mbedtls_ecp_point Q; 1167d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_init( &Q ); 1168d1a1f6a4SMatthias Ringwald mbedtls_mpi_read_binary(&Q.X, &public_key[0], 32); 1169d1a1f6a4SMatthias Ringwald mbedtls_mpi_read_binary(&Q.Y, &public_key[32], 32); 1170d1a1f6a4SMatthias Ringwald mbedtls_mpi_lset(&Q.Z, 1); 1171d1a1f6a4SMatthias Ringwald err = mbedtls_ecp_check_pubkey(&mbedtls_ec_group, &Q); 1172d1a1f6a4SMatthias Ringwald mbedtls_ecp_point_free( & Q); 1173d1a1f6a4SMatthias Ringwald #endif 1174d1a1f6a4SMatthias Ringwald 1175d1a1f6a4SMatthias Ringwald if (err){ 1176d1a1f6a4SMatthias Ringwald log_error("public key invalid %x", err); 1177d1a1f6a4SMatthias Ringwald } 1178d1a1f6a4SMatthias Ringwald return err; 1179d1a1f6a4SMatthias Ringwald } 1180d1a1f6a4SMatthias Ringwald #endif 1181d1a1f6a4SMatthias Ringwald 118203843d74SMatthias Ringwald void btstack_crypto_ccm_init(btstack_crypto_ccm_t * request, const uint8_t * key, const uint8_t * nonce, uint16_t message_len, uint16_t additional_authenticated_data_len, uint8_t auth_len){ 1183d1a1f6a4SMatthias Ringwald request->key = key; 1184d1a1f6a4SMatthias Ringwald request->nonce = nonce; 1185d1a1f6a4SMatthias Ringwald request->message_len = message_len; 1186f88ad41fSMatthias Ringwald request->aad_len = additional_authenticated_data_len; 1187f88ad41fSMatthias Ringwald request->aad_offset = 0; 11886015e1edSMatthias Ringwald request->auth_len = auth_len; 1189d1a1f6a4SMatthias Ringwald request->counter = 1; 1190577fe4dfSMatthias Ringwald request->state = CCM_CALCULATE_X1; 1191d1a1f6a4SMatthias Ringwald } 1192d1a1f6a4SMatthias Ringwald 119303843d74SMatthias Ringwald void btstack_crypto_ccm_digest(btstack_crypto_ccm_t * request, uint8_t * additional_authenticated_data, uint16_t additional_authenticated_data_len, void (* callback)(void * arg), void * callback_arg){ 1194f88ad41fSMatthias Ringwald // not implemented yet 1195f88ad41fSMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1196f88ad41fSMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1197f88ad41fSMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_CCM_DIGEST_BLOCK; 1198f88ad41fSMatthias Ringwald request->block_len = additional_authenticated_data_len; 1199f88ad41fSMatthias Ringwald request->input = additional_authenticated_data; 1200f88ad41fSMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1201f88ad41fSMatthias Ringwald btstack_crypto_run(); 1202f88ad41fSMatthias Ringwald } 1203f88ad41fSMatthias Ringwald 120403843d74SMatthias Ringwald void btstack_crypto_ccm_get_authentication_value(btstack_crypto_ccm_t * request, uint8_t * authentication_value){ 12056535961aSMatthias Ringwald (void)memcpy(authentication_value, request->x_i, request->auth_len); 1206d1a1f6a4SMatthias Ringwald } 1207d1a1f6a4SMatthias Ringwald 1208d1a1f6a4SMatthias Ringwald void btstack_crypto_ccm_encrypt_block(btstack_crypto_ccm_t * request, uint16_t block_len, const uint8_t * plaintext, uint8_t * ciphertext, void (* callback)(void * arg), void * callback_arg){ 1209577fe4dfSMatthias Ringwald #ifdef DEBUG_CCM 1210577fe4dfSMatthias Ringwald printf("\nbtstack_crypto_ccm_encrypt_block, len %u\n", block_len); 1211577fe4dfSMatthias Ringwald #endif 1212d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1213d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1214d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_CCM_ENCRYPT_BLOCK; 1215d1a1f6a4SMatthias Ringwald request->block_len = block_len; 1216d1a1f6a4SMatthias Ringwald request->input = plaintext; 1217d1a1f6a4SMatthias Ringwald request->output = ciphertext; 1218f88ad41fSMatthias Ringwald if (request->state != CCM_CALCULATE_X1){ 1219f88ad41fSMatthias Ringwald request->state = CCM_CALCULATE_XN; 1220f88ad41fSMatthias Ringwald } 1221d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1222d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1223d1a1f6a4SMatthias Ringwald } 1224d1a1f6a4SMatthias Ringwald 1225d1a1f6a4SMatthias Ringwald void btstack_crypto_ccm_decrypt_block(btstack_crypto_ccm_t * request, uint16_t block_len, const uint8_t * ciphertext, uint8_t * plaintext, void (* callback)(void * arg), void * callback_arg){ 1226d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.callback = callback; 1227d1a1f6a4SMatthias Ringwald request->btstack_crypto.context_callback.context = callback_arg; 1228d1a1f6a4SMatthias Ringwald request->btstack_crypto.operation = BTSTACK_CRYPTO_CCM_DECRYPT_BLOCK; 1229d1a1f6a4SMatthias Ringwald request->block_len = block_len; 1230d1a1f6a4SMatthias Ringwald request->input = ciphertext; 1231d1a1f6a4SMatthias Ringwald request->output = plaintext; 1232f88ad41fSMatthias Ringwald if (request->state != CCM_CALCULATE_X1){ 1233f88ad41fSMatthias Ringwald request->state = CCM_CALCULATE_SN; 1234f88ad41fSMatthias Ringwald } 1235d1a1f6a4SMatthias Ringwald btstack_linked_list_add_tail(&btstack_crypto_operations, (btstack_linked_item_t*) request); 1236d1a1f6a4SMatthias Ringwald btstack_crypto_run(); 1237d1a1f6a4SMatthias Ringwald } 1238d1a1f6a4SMatthias Ringwald 12391fbe4564SMatthias Ringwald // PTS only 12401fbe4564SMatthias Ringwald void btstack_crypto_ecc_p256_set_key(const uint8_t * public_key, const uint8_t * private_key){ 12411fbe4564SMatthias Ringwald #ifdef USE_SOFTWARE_ECC_P256_IMPLEMENTATION 12426535961aSMatthias Ringwald (void)memcpy(btstack_crypto_ecc_p256_d, private_key, 32); 12436535961aSMatthias Ringwald (void)memcpy(btstack_crypto_ecc_p256_public_key, public_key, 64); 12441fbe4564SMatthias Ringwald btstack_crypto_ecc_p256_key_generation_state = ECC_P256_KEY_GENERATION_DONE; 1245e2424d40SMatthias Ringwald #else 1246e2424d40SMatthias Ringwald UNUSED(public_key); 1247e2424d40SMatthias Ringwald UNUSED(private_key); 12481fbe4564SMatthias Ringwald #endif 12491fbe4564SMatthias Ringwald } 125080665fb7SMatthias Ringwald // Unit testing 125180665fb7SMatthias Ringwald int btstack_crypto_idle(void){ 125280665fb7SMatthias Ringwald return btstack_linked_list_empty(&btstack_crypto_operations); 125380665fb7SMatthias Ringwald } 1254fde19096SMatthias Ringwald void btstack_crypto_reset(void){ 1255fde19096SMatthias Ringwald btstack_crypto_operations = NULL; 1256fde19096SMatthias Ringwald btstack_crypto_wait_for_hci_result = 0; 1257fde19096SMatthias Ringwald } 1258