1*3deb3ec6SMatthias Ringwald /* 2*3deb3ec6SMatthias Ringwald * Copyright (C) 2014 BlueKitchen GmbH 3*3deb3ec6SMatthias Ringwald * 4*3deb3ec6SMatthias Ringwald * Redistribution and use in source and binary forms, with or without 5*3deb3ec6SMatthias Ringwald * modification, are permitted provided that the following conditions 6*3deb3ec6SMatthias Ringwald * are met: 7*3deb3ec6SMatthias Ringwald * 8*3deb3ec6SMatthias Ringwald * 1. Redistributions of source code must retain the above copyright 9*3deb3ec6SMatthias Ringwald * notice, this list of conditions and the following disclaimer. 10*3deb3ec6SMatthias Ringwald * 2. Redistributions in binary form must reproduce the above copyright 11*3deb3ec6SMatthias Ringwald * notice, this list of conditions and the following disclaimer in the 12*3deb3ec6SMatthias Ringwald * documentation and/or other materials provided with the distribution. 13*3deb3ec6SMatthias Ringwald * 3. Neither the name of the copyright holders nor the names of 14*3deb3ec6SMatthias Ringwald * contributors may be used to endorse or promote products derived 15*3deb3ec6SMatthias Ringwald * from this software without specific prior written permission. 16*3deb3ec6SMatthias Ringwald * 4. Any redistribution, use, or modification is done solely for 17*3deb3ec6SMatthias Ringwald * personal benefit and not for any commercial purpose or for 18*3deb3ec6SMatthias Ringwald * monetary gain. 19*3deb3ec6SMatthias Ringwald * 20*3deb3ec6SMatthias Ringwald * THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS 21*3deb3ec6SMatthias Ringwald * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 22*3deb3ec6SMatthias Ringwald * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 23*3deb3ec6SMatthias Ringwald * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL MATTHIAS 24*3deb3ec6SMatthias Ringwald * RINGWALD OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 25*3deb3ec6SMatthias Ringwald * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 26*3deb3ec6SMatthias Ringwald * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS 27*3deb3ec6SMatthias Ringwald * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 28*3deb3ec6SMatthias Ringwald * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 29*3deb3ec6SMatthias Ringwald * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF 30*3deb3ec6SMatthias Ringwald * THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 31*3deb3ec6SMatthias Ringwald * SUCH DAMAGE. 32*3deb3ec6SMatthias Ringwald * 33*3deb3ec6SMatthias Ringwald * Please inquire about commercial licensing options at 34*3deb3ec6SMatthias Ringwald * [email protected] 35*3deb3ec6SMatthias Ringwald * 36*3deb3ec6SMatthias Ringwald */ 37*3deb3ec6SMatthias Ringwald 38*3deb3ec6SMatthias Ringwald #include <stdio.h> 39*3deb3ec6SMatthias Ringwald #include <string.h> 40*3deb3ec6SMatthias Ringwald #include <inttypes.h> 41*3deb3ec6SMatthias Ringwald 42*3deb3ec6SMatthias Ringwald #include "linked_list.h" 43*3deb3ec6SMatthias Ringwald 44*3deb3ec6SMatthias Ringwald #include "btstack_memory.h" 45*3deb3ec6SMatthias Ringwald #include "debug.h" 46*3deb3ec6SMatthias Ringwald #include "hci.h" 47*3deb3ec6SMatthias Ringwald #include "l2cap.h" 48*3deb3ec6SMatthias Ringwald #include "le_device_db.h" 49*3deb3ec6SMatthias Ringwald #include "sm.h" 50*3deb3ec6SMatthias Ringwald #include "gap_le.h" 51*3deb3ec6SMatthias Ringwald 52*3deb3ec6SMatthias Ringwald // 53*3deb3ec6SMatthias Ringwald // SM internal types and globals 54*3deb3ec6SMatthias Ringwald // 55*3deb3ec6SMatthias Ringwald 56*3deb3ec6SMatthias Ringwald typedef enum { 57*3deb3ec6SMatthias Ringwald DKG_W4_WORKING, 58*3deb3ec6SMatthias Ringwald DKG_CALC_IRK, 59*3deb3ec6SMatthias Ringwald DKG_W4_IRK, 60*3deb3ec6SMatthias Ringwald DKG_CALC_DHK, 61*3deb3ec6SMatthias Ringwald DKG_W4_DHK, 62*3deb3ec6SMatthias Ringwald DKG_READY 63*3deb3ec6SMatthias Ringwald } derived_key_generation_t; 64*3deb3ec6SMatthias Ringwald 65*3deb3ec6SMatthias Ringwald typedef enum { 66*3deb3ec6SMatthias Ringwald RAU_W4_WORKING, 67*3deb3ec6SMatthias Ringwald RAU_IDLE, 68*3deb3ec6SMatthias Ringwald RAU_GET_RANDOM, 69*3deb3ec6SMatthias Ringwald RAU_W4_RANDOM, 70*3deb3ec6SMatthias Ringwald RAU_GET_ENC, 71*3deb3ec6SMatthias Ringwald RAU_W4_ENC, 72*3deb3ec6SMatthias Ringwald RAU_SET_ADDRESS, 73*3deb3ec6SMatthias Ringwald } random_address_update_t; 74*3deb3ec6SMatthias Ringwald 75*3deb3ec6SMatthias Ringwald typedef enum { 76*3deb3ec6SMatthias Ringwald CMAC_IDLE, 77*3deb3ec6SMatthias Ringwald CMAC_CALC_SUBKEYS, 78*3deb3ec6SMatthias Ringwald CMAC_W4_SUBKEYS, 79*3deb3ec6SMatthias Ringwald CMAC_CALC_MI, 80*3deb3ec6SMatthias Ringwald CMAC_W4_MI, 81*3deb3ec6SMatthias Ringwald CMAC_CALC_MLAST, 82*3deb3ec6SMatthias Ringwald CMAC_W4_MLAST 83*3deb3ec6SMatthias Ringwald } cmac_state_t; 84*3deb3ec6SMatthias Ringwald 85*3deb3ec6SMatthias Ringwald typedef enum { 86*3deb3ec6SMatthias Ringwald JUST_WORKS, 87*3deb3ec6SMatthias Ringwald PK_RESP_INPUT, // Initiator displays PK, initiator inputs PK 88*3deb3ec6SMatthias Ringwald PK_INIT_INPUT, // Responder displays PK, responder inputs PK 89*3deb3ec6SMatthias Ringwald OK_BOTH_INPUT, // Only input on both, both input PK 90*3deb3ec6SMatthias Ringwald OOB // OOB available on both sides 91*3deb3ec6SMatthias Ringwald } stk_generation_method_t; 92*3deb3ec6SMatthias Ringwald 93*3deb3ec6SMatthias Ringwald typedef enum { 94*3deb3ec6SMatthias Ringwald SM_USER_RESPONSE_IDLE, 95*3deb3ec6SMatthias Ringwald SM_USER_RESPONSE_PENDING, 96*3deb3ec6SMatthias Ringwald SM_USER_RESPONSE_CONFIRM, 97*3deb3ec6SMatthias Ringwald SM_USER_RESPONSE_PASSKEY, 98*3deb3ec6SMatthias Ringwald SM_USER_RESPONSE_DECLINE 99*3deb3ec6SMatthias Ringwald } sm_user_response_t; 100*3deb3ec6SMatthias Ringwald 101*3deb3ec6SMatthias Ringwald typedef enum { 102*3deb3ec6SMatthias Ringwald SM_AES128_IDLE, 103*3deb3ec6SMatthias Ringwald SM_AES128_ACTIVE 104*3deb3ec6SMatthias Ringwald } sm_aes128_state_t; 105*3deb3ec6SMatthias Ringwald 106*3deb3ec6SMatthias Ringwald typedef enum { 107*3deb3ec6SMatthias Ringwald ADDRESS_RESOLUTION_IDLE, 108*3deb3ec6SMatthias Ringwald ADDRESS_RESOLUTION_GENERAL, 109*3deb3ec6SMatthias Ringwald ADDRESS_RESOLUTION_FOR_CONNECTION, 110*3deb3ec6SMatthias Ringwald } address_resolution_mode_t; 111*3deb3ec6SMatthias Ringwald 112*3deb3ec6SMatthias Ringwald typedef enum { 113*3deb3ec6SMatthias Ringwald ADDRESS_RESOLUTION_SUCEEDED, 114*3deb3ec6SMatthias Ringwald ADDRESS_RESOLUTION_FAILED, 115*3deb3ec6SMatthias Ringwald } address_resolution_event_t; 116*3deb3ec6SMatthias Ringwald // 117*3deb3ec6SMatthias Ringwald // GLOBAL DATA 118*3deb3ec6SMatthias Ringwald // 119*3deb3ec6SMatthias Ringwald 120*3deb3ec6SMatthias Ringwald static uint8_t test_use_fixed_local_csrk; 121*3deb3ec6SMatthias Ringwald 122*3deb3ec6SMatthias Ringwald // configuration 123*3deb3ec6SMatthias Ringwald static uint8_t sm_accepted_stk_generation_methods; 124*3deb3ec6SMatthias Ringwald static uint8_t sm_max_encryption_key_size; 125*3deb3ec6SMatthias Ringwald static uint8_t sm_min_encryption_key_size; 126*3deb3ec6SMatthias Ringwald static uint8_t sm_auth_req = 0; 127*3deb3ec6SMatthias Ringwald static uint8_t sm_io_capabilities = IO_CAPABILITY_NO_INPUT_NO_OUTPUT; 128*3deb3ec6SMatthias Ringwald static uint8_t sm_slave_request_security; 129*3deb3ec6SMatthias Ringwald 130*3deb3ec6SMatthias Ringwald // Security Manager Master Keys, please use sm_set_er(er) and sm_set_ir(ir) with your own 128 bit random values 131*3deb3ec6SMatthias Ringwald static sm_key_t sm_persistent_er; 132*3deb3ec6SMatthias Ringwald static sm_key_t sm_persistent_ir; 133*3deb3ec6SMatthias Ringwald 134*3deb3ec6SMatthias Ringwald // derived from sm_persistent_ir 135*3deb3ec6SMatthias Ringwald static sm_key_t sm_persistent_dhk; 136*3deb3ec6SMatthias Ringwald static sm_key_t sm_persistent_irk; 137*3deb3ec6SMatthias Ringwald static uint8_t sm_persistent_irk_ready = 0; // used for testing 138*3deb3ec6SMatthias Ringwald static derived_key_generation_t dkg_state; 139*3deb3ec6SMatthias Ringwald 140*3deb3ec6SMatthias Ringwald // derived from sm_persistent_er 141*3deb3ec6SMatthias Ringwald // .. 142*3deb3ec6SMatthias Ringwald 143*3deb3ec6SMatthias Ringwald // random address update 144*3deb3ec6SMatthias Ringwald static random_address_update_t rau_state; 145*3deb3ec6SMatthias Ringwald static bd_addr_t sm_random_address; 146*3deb3ec6SMatthias Ringwald 147*3deb3ec6SMatthias Ringwald // CMAC calculation 148*3deb3ec6SMatthias Ringwald static cmac_state_t sm_cmac_state; 149*3deb3ec6SMatthias Ringwald static sm_key_t sm_cmac_k; 150*3deb3ec6SMatthias Ringwald static uint8_t sm_cmac_header[3]; 151*3deb3ec6SMatthias Ringwald static uint16_t sm_cmac_message_len; 152*3deb3ec6SMatthias Ringwald static uint8_t * sm_cmac_message; 153*3deb3ec6SMatthias Ringwald static uint8_t sm_cmac_sign_counter[4]; 154*3deb3ec6SMatthias Ringwald static sm_key_t sm_cmac_m_last; 155*3deb3ec6SMatthias Ringwald static sm_key_t sm_cmac_x; 156*3deb3ec6SMatthias Ringwald static uint8_t sm_cmac_block_current; 157*3deb3ec6SMatthias Ringwald static uint8_t sm_cmac_block_count; 158*3deb3ec6SMatthias Ringwald static void (*sm_cmac_done_handler)(uint8_t hash[8]); 159*3deb3ec6SMatthias Ringwald 160*3deb3ec6SMatthias Ringwald // resolvable private address lookup / CSRK calculation 161*3deb3ec6SMatthias Ringwald static int sm_address_resolution_test; 162*3deb3ec6SMatthias Ringwald static int sm_address_resolution_ah_calculation_active; 163*3deb3ec6SMatthias Ringwald static uint8_t sm_address_resolution_addr_type; 164*3deb3ec6SMatthias Ringwald static bd_addr_t sm_address_resolution_address; 165*3deb3ec6SMatthias Ringwald static void * sm_address_resolution_context; 166*3deb3ec6SMatthias Ringwald static address_resolution_mode_t sm_address_resolution_mode; 167*3deb3ec6SMatthias Ringwald static linked_list_t sm_address_resolution_general_queue; 168*3deb3ec6SMatthias Ringwald 169*3deb3ec6SMatthias Ringwald // aes128 crypto engine. store current sm_connection_t in sm_aes128_context 170*3deb3ec6SMatthias Ringwald static sm_aes128_state_t sm_aes128_state; 171*3deb3ec6SMatthias Ringwald static void * sm_aes128_context; 172*3deb3ec6SMatthias Ringwald 173*3deb3ec6SMatthias Ringwald // random engine. store context (ususally sm_connection_t) 174*3deb3ec6SMatthias Ringwald static void * sm_random_context; 175*3deb3ec6SMatthias Ringwald 176*3deb3ec6SMatthias Ringwald // 177*3deb3ec6SMatthias Ringwald // Volume 3, Part H, Chapter 24 178*3deb3ec6SMatthias Ringwald // "Security shall be initiated by the Security Manager in the device in the master role. 179*3deb3ec6SMatthias Ringwald // The device in the slave role shall be the responding device." 180*3deb3ec6SMatthias Ringwald // -> master := initiator, slave := responder 181*3deb3ec6SMatthias Ringwald // 182*3deb3ec6SMatthias Ringwald 183*3deb3ec6SMatthias Ringwald // data needed for security setup 184*3deb3ec6SMatthias Ringwald typedef struct sm_setup_context { 185*3deb3ec6SMatthias Ringwald 186*3deb3ec6SMatthias Ringwald timer_source_t sm_timeout; 187*3deb3ec6SMatthias Ringwald 188*3deb3ec6SMatthias Ringwald // used in all phases 189*3deb3ec6SMatthias Ringwald uint8_t sm_pairing_failed_reason; 190*3deb3ec6SMatthias Ringwald 191*3deb3ec6SMatthias Ringwald // user response, (Phase 1 and/or 2) 192*3deb3ec6SMatthias Ringwald uint8_t sm_user_response; 193*3deb3ec6SMatthias Ringwald 194*3deb3ec6SMatthias Ringwald // defines which keys will be send after connection is encrypted - calculated during Phase 1, used Phase 3 195*3deb3ec6SMatthias Ringwald int sm_key_distribution_send_set; 196*3deb3ec6SMatthias Ringwald int sm_key_distribution_received_set; 197*3deb3ec6SMatthias Ringwald 198*3deb3ec6SMatthias Ringwald // Phase 2 (Pairing over SMP) 199*3deb3ec6SMatthias Ringwald stk_generation_method_t sm_stk_generation_method; 200*3deb3ec6SMatthias Ringwald sm_key_t sm_tk; 201*3deb3ec6SMatthias Ringwald 202*3deb3ec6SMatthias Ringwald sm_key_t sm_c1_t3_value; // c1 calculation 203*3deb3ec6SMatthias Ringwald sm_pairing_packet_t sm_m_preq; // pairing request - needed only for c1 204*3deb3ec6SMatthias Ringwald sm_pairing_packet_t sm_s_pres; // pairing response - needed only for c1 205*3deb3ec6SMatthias Ringwald sm_key_t sm_local_random; 206*3deb3ec6SMatthias Ringwald sm_key_t sm_local_confirm; 207*3deb3ec6SMatthias Ringwald sm_key_t sm_peer_random; 208*3deb3ec6SMatthias Ringwald sm_key_t sm_peer_confirm; 209*3deb3ec6SMatthias Ringwald uint8_t sm_m_addr_type; // address and type can be removed 210*3deb3ec6SMatthias Ringwald uint8_t sm_s_addr_type; // '' 211*3deb3ec6SMatthias Ringwald bd_addr_t sm_m_address; // '' 212*3deb3ec6SMatthias Ringwald bd_addr_t sm_s_address; // '' 213*3deb3ec6SMatthias Ringwald sm_key_t sm_ltk; 214*3deb3ec6SMatthias Ringwald 215*3deb3ec6SMatthias Ringwald // Phase 3 216*3deb3ec6SMatthias Ringwald 217*3deb3ec6SMatthias Ringwald // key distribution, we generate 218*3deb3ec6SMatthias Ringwald uint16_t sm_local_y; 219*3deb3ec6SMatthias Ringwald uint16_t sm_local_div; 220*3deb3ec6SMatthias Ringwald uint16_t sm_local_ediv; 221*3deb3ec6SMatthias Ringwald uint8_t sm_local_rand[8]; 222*3deb3ec6SMatthias Ringwald sm_key_t sm_local_ltk; 223*3deb3ec6SMatthias Ringwald sm_key_t sm_local_csrk; 224*3deb3ec6SMatthias Ringwald sm_key_t sm_local_irk; 225*3deb3ec6SMatthias Ringwald // sm_local_address/addr_type not needed 226*3deb3ec6SMatthias Ringwald 227*3deb3ec6SMatthias Ringwald // key distribution, received from peer 228*3deb3ec6SMatthias Ringwald uint16_t sm_peer_y; 229*3deb3ec6SMatthias Ringwald uint16_t sm_peer_div; 230*3deb3ec6SMatthias Ringwald uint16_t sm_peer_ediv; 231*3deb3ec6SMatthias Ringwald uint8_t sm_peer_rand[8]; 232*3deb3ec6SMatthias Ringwald sm_key_t sm_peer_ltk; 233*3deb3ec6SMatthias Ringwald sm_key_t sm_peer_irk; 234*3deb3ec6SMatthias Ringwald sm_key_t sm_peer_csrk; 235*3deb3ec6SMatthias Ringwald uint8_t sm_peer_addr_type; 236*3deb3ec6SMatthias Ringwald bd_addr_t sm_peer_address; 237*3deb3ec6SMatthias Ringwald 238*3deb3ec6SMatthias Ringwald } sm_setup_context_t; 239*3deb3ec6SMatthias Ringwald 240*3deb3ec6SMatthias Ringwald // 241*3deb3ec6SMatthias Ringwald static sm_setup_context_t the_setup; 242*3deb3ec6SMatthias Ringwald static sm_setup_context_t * setup = &the_setup; 243*3deb3ec6SMatthias Ringwald 244*3deb3ec6SMatthias Ringwald // active connection - the one for which the_setup is used for 245*3deb3ec6SMatthias Ringwald static uint16_t sm_active_connection = 0; 246*3deb3ec6SMatthias Ringwald 247*3deb3ec6SMatthias Ringwald // @returns 1 if oob data is available 248*3deb3ec6SMatthias Ringwald // stores oob data in provided 16 byte buffer if not null 249*3deb3ec6SMatthias Ringwald static int (*sm_get_oob_data)(uint8_t addres_type, bd_addr_t addr, uint8_t * oob_data) = NULL; 250*3deb3ec6SMatthias Ringwald 251*3deb3ec6SMatthias Ringwald // used to notify applicationss that user interaction is neccessary, see sm_notify_t below 252*3deb3ec6SMatthias Ringwald static btstack_packet_handler_t sm_client_packet_handler = NULL; 253*3deb3ec6SMatthias Ringwald 254*3deb3ec6SMatthias Ringwald // horizontal: initiator capabilities 255*3deb3ec6SMatthias Ringwald // vertial: responder capabilities 256*3deb3ec6SMatthias Ringwald static const stk_generation_method_t stk_generation_method[5][5] = { 257*3deb3ec6SMatthias Ringwald { JUST_WORKS, JUST_WORKS, PK_INIT_INPUT, JUST_WORKS, PK_INIT_INPUT }, 258*3deb3ec6SMatthias Ringwald { JUST_WORKS, JUST_WORKS, PK_INIT_INPUT, JUST_WORKS, PK_INIT_INPUT }, 259*3deb3ec6SMatthias Ringwald { PK_RESP_INPUT, PK_RESP_INPUT, OK_BOTH_INPUT, JUST_WORKS, PK_RESP_INPUT }, 260*3deb3ec6SMatthias Ringwald { JUST_WORKS, JUST_WORKS, JUST_WORKS, JUST_WORKS, JUST_WORKS }, 261*3deb3ec6SMatthias Ringwald { PK_RESP_INPUT, PK_RESP_INPUT, PK_INIT_INPUT, JUST_WORKS, PK_RESP_INPUT }, 262*3deb3ec6SMatthias Ringwald }; 263*3deb3ec6SMatthias Ringwald 264*3deb3ec6SMatthias Ringwald static void sm_run(void); 265*3deb3ec6SMatthias Ringwald static void sm_done_for_handle(uint16_t handle); 266*3deb3ec6SMatthias Ringwald static sm_connection_t * sm_get_connection_for_handle(uint16_t handle); 267*3deb3ec6SMatthias Ringwald static inline int sm_calc_actual_encryption_key_size(int other); 268*3deb3ec6SMatthias Ringwald static int sm_validate_stk_generation_method(void); 269*3deb3ec6SMatthias Ringwald 270*3deb3ec6SMatthias Ringwald static void log_info_hex16(const char * name, uint16_t value){ 271*3deb3ec6SMatthias Ringwald log_info("%-6s 0x%04x", name, value); 272*3deb3ec6SMatthias Ringwald } 273*3deb3ec6SMatthias Ringwald 274*3deb3ec6SMatthias Ringwald // @returns 1 if all bytes are 0 275*3deb3ec6SMatthias Ringwald static int sm_is_null_random(uint8_t random[8]){ 276*3deb3ec6SMatthias Ringwald int i; 277*3deb3ec6SMatthias Ringwald for (i=0; i < 8 ; i++){ 278*3deb3ec6SMatthias Ringwald if (random[i]) return 0; 279*3deb3ec6SMatthias Ringwald } 280*3deb3ec6SMatthias Ringwald return 1; 281*3deb3ec6SMatthias Ringwald } 282*3deb3ec6SMatthias Ringwald 283*3deb3ec6SMatthias Ringwald // Key utils 284*3deb3ec6SMatthias Ringwald static void sm_reset_tk(void){ 285*3deb3ec6SMatthias Ringwald int i; 286*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 287*3deb3ec6SMatthias Ringwald setup->sm_tk[i] = 0; 288*3deb3ec6SMatthias Ringwald } 289*3deb3ec6SMatthias Ringwald } 290*3deb3ec6SMatthias Ringwald 291*3deb3ec6SMatthias Ringwald // "For example, if a 128-bit encryption key is 0x123456789ABCDEF0123456789ABCDEF0 292*3deb3ec6SMatthias Ringwald // and it is reduced to 7 octets (56 bits), then the resulting key is 0x0000000000000000003456789ABCDEF0."" 293*3deb3ec6SMatthias Ringwald static void sm_truncate_key(sm_key_t key, int max_encryption_size){ 294*3deb3ec6SMatthias Ringwald int i; 295*3deb3ec6SMatthias Ringwald for (i = max_encryption_size ; i < 16 ; i++){ 296*3deb3ec6SMatthias Ringwald key[15-i] = 0; 297*3deb3ec6SMatthias Ringwald } 298*3deb3ec6SMatthias Ringwald } 299*3deb3ec6SMatthias Ringwald 300*3deb3ec6SMatthias Ringwald // SMP Timeout implementation 301*3deb3ec6SMatthias Ringwald 302*3deb3ec6SMatthias Ringwald // Upon transmission of the Pairing Request command or reception of the Pairing Request command, 303*3deb3ec6SMatthias Ringwald // the Security Manager Timer shall be reset and started. 304*3deb3ec6SMatthias Ringwald // 305*3deb3ec6SMatthias Ringwald // The Security Manager Timer shall be reset when an L2CAP SMP command is queued for transmission. 306*3deb3ec6SMatthias Ringwald // 307*3deb3ec6SMatthias Ringwald // If the Security Manager Timer reaches 30 seconds, the procedure shall be considered to have failed, 308*3deb3ec6SMatthias Ringwald // and the local higher layer shall be notified. No further SMP commands shall be sent over the L2CAP 309*3deb3ec6SMatthias Ringwald // Security Manager Channel. A new SM procedure shall only be performed when a new physical link has been 310*3deb3ec6SMatthias Ringwald // established. 311*3deb3ec6SMatthias Ringwald 312*3deb3ec6SMatthias Ringwald static void sm_timeout_handler(timer_source_t * timer){ 313*3deb3ec6SMatthias Ringwald log_info("SM timeout"); 314*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = (sm_connection_t *) linked_item_get_user((linked_item_t*) timer); 315*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_GENERAL_TIMEOUT; 316*3deb3ec6SMatthias Ringwald sm_done_for_handle(sm_conn->sm_handle); 317*3deb3ec6SMatthias Ringwald 318*3deb3ec6SMatthias Ringwald // trigger handling of next ready connection 319*3deb3ec6SMatthias Ringwald sm_run(); 320*3deb3ec6SMatthias Ringwald } 321*3deb3ec6SMatthias Ringwald static void sm_timeout_start(sm_connection_t * sm_conn){ 322*3deb3ec6SMatthias Ringwald run_loop_remove_timer(&setup->sm_timeout); 323*3deb3ec6SMatthias Ringwald run_loop_set_timer_handler(&setup->sm_timeout, sm_timeout_handler); 324*3deb3ec6SMatthias Ringwald run_loop_set_timer(&setup->sm_timeout, 30000); // 30 seconds sm timeout 325*3deb3ec6SMatthias Ringwald linked_item_set_user((linked_item_t*) &setup->sm_timeout, sm_conn); 326*3deb3ec6SMatthias Ringwald run_loop_add_timer(&setup->sm_timeout); 327*3deb3ec6SMatthias Ringwald } 328*3deb3ec6SMatthias Ringwald static void sm_timeout_stop(void){ 329*3deb3ec6SMatthias Ringwald run_loop_remove_timer(&setup->sm_timeout); 330*3deb3ec6SMatthias Ringwald } 331*3deb3ec6SMatthias Ringwald static void sm_timeout_reset(sm_connection_t * sm_conn){ 332*3deb3ec6SMatthias Ringwald sm_timeout_stop(); 333*3deb3ec6SMatthias Ringwald sm_timeout_start(sm_conn); 334*3deb3ec6SMatthias Ringwald } 335*3deb3ec6SMatthias Ringwald 336*3deb3ec6SMatthias Ringwald // end of sm timeout 337*3deb3ec6SMatthias Ringwald 338*3deb3ec6SMatthias Ringwald // GAP Random Address updates 339*3deb3ec6SMatthias Ringwald static gap_random_address_type_t gap_random_adress_type; 340*3deb3ec6SMatthias Ringwald static timer_source_t gap_random_address_update_timer; 341*3deb3ec6SMatthias Ringwald static uint32_t gap_random_adress_update_period; 342*3deb3ec6SMatthias Ringwald 343*3deb3ec6SMatthias Ringwald static void gap_random_address_trigger(void){ 344*3deb3ec6SMatthias Ringwald if (rau_state != RAU_IDLE) return; 345*3deb3ec6SMatthias Ringwald log_info("gap_random_address_trigger"); 346*3deb3ec6SMatthias Ringwald rau_state = RAU_GET_RANDOM; 347*3deb3ec6SMatthias Ringwald sm_run(); 348*3deb3ec6SMatthias Ringwald } 349*3deb3ec6SMatthias Ringwald 350*3deb3ec6SMatthias Ringwald static void gap_random_address_update_handler(timer_source_t * timer){ 351*3deb3ec6SMatthias Ringwald log_info("GAP Random Address Update due"); 352*3deb3ec6SMatthias Ringwald run_loop_set_timer(&gap_random_address_update_timer, gap_random_adress_update_period); 353*3deb3ec6SMatthias Ringwald run_loop_add_timer(&gap_random_address_update_timer); 354*3deb3ec6SMatthias Ringwald gap_random_address_trigger(); 355*3deb3ec6SMatthias Ringwald } 356*3deb3ec6SMatthias Ringwald 357*3deb3ec6SMatthias Ringwald static void gap_random_address_update_start(void){ 358*3deb3ec6SMatthias Ringwald run_loop_set_timer_handler(&gap_random_address_update_timer, gap_random_address_update_handler); 359*3deb3ec6SMatthias Ringwald run_loop_set_timer(&gap_random_address_update_timer, gap_random_adress_update_period); 360*3deb3ec6SMatthias Ringwald run_loop_add_timer(&gap_random_address_update_timer); 361*3deb3ec6SMatthias Ringwald } 362*3deb3ec6SMatthias Ringwald 363*3deb3ec6SMatthias Ringwald static void gap_random_address_update_stop(void){ 364*3deb3ec6SMatthias Ringwald run_loop_remove_timer(&gap_random_address_update_timer); 365*3deb3ec6SMatthias Ringwald } 366*3deb3ec6SMatthias Ringwald 367*3deb3ec6SMatthias Ringwald 368*3deb3ec6SMatthias Ringwald static void sm_random_start(void * context){ 369*3deb3ec6SMatthias Ringwald sm_random_context = context; 370*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_rand); 371*3deb3ec6SMatthias Ringwald } 372*3deb3ec6SMatthias Ringwald 373*3deb3ec6SMatthias Ringwald // pre: sm_aes128_state != SM_AES128_ACTIVE, hci_can_send_command == 1 374*3deb3ec6SMatthias Ringwald // context is made availabe to aes128 result handler by this 375*3deb3ec6SMatthias Ringwald static void sm_aes128_start(sm_key_t key, sm_key_t plaintext, void * context){ 376*3deb3ec6SMatthias Ringwald sm_aes128_state = SM_AES128_ACTIVE; 377*3deb3ec6SMatthias Ringwald sm_key_t key_flipped, plaintext_flipped; 378*3deb3ec6SMatthias Ringwald swap128(key, key_flipped); 379*3deb3ec6SMatthias Ringwald swap128(plaintext, plaintext_flipped); 380*3deb3ec6SMatthias Ringwald sm_aes128_context = context; 381*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_encrypt, key_flipped, plaintext_flipped); 382*3deb3ec6SMatthias Ringwald } 383*3deb3ec6SMatthias Ringwald 384*3deb3ec6SMatthias Ringwald // ah(k,r) helper 385*3deb3ec6SMatthias Ringwald // r = padding || r 386*3deb3ec6SMatthias Ringwald // r - 24 bit value 387*3deb3ec6SMatthias Ringwald static void sm_ah_r_prime(uint8_t r[3], sm_key_t r_prime){ 388*3deb3ec6SMatthias Ringwald // r'= padding || r 389*3deb3ec6SMatthias Ringwald memset(r_prime, 0, 16); 390*3deb3ec6SMatthias Ringwald memcpy(&r_prime[13], r, 3); 391*3deb3ec6SMatthias Ringwald } 392*3deb3ec6SMatthias Ringwald 393*3deb3ec6SMatthias Ringwald // d1 helper 394*3deb3ec6SMatthias Ringwald // d' = padding || r || d 395*3deb3ec6SMatthias Ringwald // d,r - 16 bit values 396*3deb3ec6SMatthias Ringwald static void sm_d1_d_prime(uint16_t d, uint16_t r, sm_key_t d1_prime){ 397*3deb3ec6SMatthias Ringwald // d'= padding || r || d 398*3deb3ec6SMatthias Ringwald memset(d1_prime, 0, 16); 399*3deb3ec6SMatthias Ringwald net_store_16(d1_prime, 12, r); 400*3deb3ec6SMatthias Ringwald net_store_16(d1_prime, 14, d); 401*3deb3ec6SMatthias Ringwald } 402*3deb3ec6SMatthias Ringwald 403*3deb3ec6SMatthias Ringwald // dm helper 404*3deb3ec6SMatthias Ringwald // r’ = padding || r 405*3deb3ec6SMatthias Ringwald // r - 64 bit value 406*3deb3ec6SMatthias Ringwald static void sm_dm_r_prime(uint8_t r[8], sm_key_t r_prime){ 407*3deb3ec6SMatthias Ringwald memset(r_prime, 0, 16); 408*3deb3ec6SMatthias Ringwald memcpy(&r_prime[8], r, 8); 409*3deb3ec6SMatthias Ringwald } 410*3deb3ec6SMatthias Ringwald 411*3deb3ec6SMatthias Ringwald // calculate arguments for first AES128 operation in C1 function 412*3deb3ec6SMatthias Ringwald static void sm_c1_t1(sm_key_t r, uint8_t preq[7], uint8_t pres[7], uint8_t iat, uint8_t rat, sm_key_t t1){ 413*3deb3ec6SMatthias Ringwald 414*3deb3ec6SMatthias Ringwald // p1 = pres || preq || rat’ || iat’ 415*3deb3ec6SMatthias Ringwald // "The octet of iat’ becomes the least significant octet of p1 and the most signifi- 416*3deb3ec6SMatthias Ringwald // cant octet of pres becomes the most significant octet of p1. 417*3deb3ec6SMatthias Ringwald // For example, if the 8-bit iat’ is 0x01, the 8-bit rat’ is 0x00, the 56-bit preq 418*3deb3ec6SMatthias Ringwald // is 0x07071000000101 and the 56 bit pres is 0x05000800000302 then 419*3deb3ec6SMatthias Ringwald // p1 is 0x05000800000302070710000001010001." 420*3deb3ec6SMatthias Ringwald 421*3deb3ec6SMatthias Ringwald sm_key_t p1; 422*3deb3ec6SMatthias Ringwald swap56(pres, &p1[0]); 423*3deb3ec6SMatthias Ringwald swap56(preq, &p1[7]); 424*3deb3ec6SMatthias Ringwald p1[14] = rat; 425*3deb3ec6SMatthias Ringwald p1[15] = iat; 426*3deb3ec6SMatthias Ringwald log_key("p1", p1); 427*3deb3ec6SMatthias Ringwald log_key("r", r); 428*3deb3ec6SMatthias Ringwald 429*3deb3ec6SMatthias Ringwald // t1 = r xor p1 430*3deb3ec6SMatthias Ringwald int i; 431*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 432*3deb3ec6SMatthias Ringwald t1[i] = r[i] ^ p1[i]; 433*3deb3ec6SMatthias Ringwald } 434*3deb3ec6SMatthias Ringwald log_key("t1", t1); 435*3deb3ec6SMatthias Ringwald } 436*3deb3ec6SMatthias Ringwald 437*3deb3ec6SMatthias Ringwald // calculate arguments for second AES128 operation in C1 function 438*3deb3ec6SMatthias Ringwald static void sm_c1_t3(sm_key_t t2, bd_addr_t ia, bd_addr_t ra, sm_key_t t3){ 439*3deb3ec6SMatthias Ringwald // p2 = padding || ia || ra 440*3deb3ec6SMatthias Ringwald // "The least significant octet of ra becomes the least significant octet of p2 and 441*3deb3ec6SMatthias Ringwald // the most significant octet of padding becomes the most significant octet of p2. 442*3deb3ec6SMatthias Ringwald // For example, if 48-bit ia is 0xA1A2A3A4A5A6 and the 48-bit ra is 443*3deb3ec6SMatthias Ringwald // 0xB1B2B3B4B5B6 then p2 is 0x00000000A1A2A3A4A5A6B1B2B3B4B5B6. 444*3deb3ec6SMatthias Ringwald 445*3deb3ec6SMatthias Ringwald sm_key_t p2; 446*3deb3ec6SMatthias Ringwald memset(p2, 0, 16); 447*3deb3ec6SMatthias Ringwald memcpy(&p2[4], ia, 6); 448*3deb3ec6SMatthias Ringwald memcpy(&p2[10], ra, 6); 449*3deb3ec6SMatthias Ringwald log_key("p2", p2); 450*3deb3ec6SMatthias Ringwald 451*3deb3ec6SMatthias Ringwald // c1 = e(k, t2_xor_p2) 452*3deb3ec6SMatthias Ringwald int i; 453*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 454*3deb3ec6SMatthias Ringwald t3[i] = t2[i] ^ p2[i]; 455*3deb3ec6SMatthias Ringwald } 456*3deb3ec6SMatthias Ringwald log_key("t3", t3); 457*3deb3ec6SMatthias Ringwald } 458*3deb3ec6SMatthias Ringwald 459*3deb3ec6SMatthias Ringwald static void sm_s1_r_prime(sm_key_t r1, sm_key_t r2, sm_key_t r_prime){ 460*3deb3ec6SMatthias Ringwald log_key("r1", r1); 461*3deb3ec6SMatthias Ringwald log_key("r2", r2); 462*3deb3ec6SMatthias Ringwald memcpy(&r_prime[8], &r2[8], 8); 463*3deb3ec6SMatthias Ringwald memcpy(&r_prime[0], &r1[8], 8); 464*3deb3ec6SMatthias Ringwald } 465*3deb3ec6SMatthias Ringwald 466*3deb3ec6SMatthias Ringwald static void sm_setup_event_base(uint8_t * event, int event_size, uint8_t type, uint16_t handle, uint8_t addr_type, bd_addr_t address){ 467*3deb3ec6SMatthias Ringwald event[0] = type; 468*3deb3ec6SMatthias Ringwald event[1] = event_size - 2; 469*3deb3ec6SMatthias Ringwald bt_store_16(event, 2, handle); 470*3deb3ec6SMatthias Ringwald event[4] = addr_type; 471*3deb3ec6SMatthias Ringwald bt_flip_addr(&event[5], address); 472*3deb3ec6SMatthias Ringwald } 473*3deb3ec6SMatthias Ringwald 474*3deb3ec6SMatthias Ringwald static void sm_notify_client_base(uint8_t type, uint16_t handle, uint8_t addr_type, bd_addr_t address){ 475*3deb3ec6SMatthias Ringwald uint8_t event[11]; 476*3deb3ec6SMatthias Ringwald sm_setup_event_base(event, sizeof(event), type, handle, addr_type, address); 477*3deb3ec6SMatthias Ringwald 478*3deb3ec6SMatthias Ringwald if (!sm_client_packet_handler) return; 479*3deb3ec6SMatthias Ringwald sm_client_packet_handler(HCI_EVENT_PACKET, 0, event, sizeof(event)); 480*3deb3ec6SMatthias Ringwald } 481*3deb3ec6SMatthias Ringwald 482*3deb3ec6SMatthias Ringwald static void sm_notify_client_passkey(uint8_t type, uint16_t handle, uint8_t addr_type, bd_addr_t address, uint32_t passkey){ 483*3deb3ec6SMatthias Ringwald uint8_t event[15]; 484*3deb3ec6SMatthias Ringwald sm_setup_event_base(event, sizeof(event), type, handle, addr_type, address); 485*3deb3ec6SMatthias Ringwald bt_store_32(event, 11, passkey); 486*3deb3ec6SMatthias Ringwald 487*3deb3ec6SMatthias Ringwald if (!sm_client_packet_handler) return; 488*3deb3ec6SMatthias Ringwald sm_client_packet_handler(HCI_EVENT_PACKET, 0, event, sizeof(event)); 489*3deb3ec6SMatthias Ringwald } 490*3deb3ec6SMatthias Ringwald 491*3deb3ec6SMatthias Ringwald static void sm_notify_client_index(uint8_t type, uint16_t handle, uint8_t addr_type, bd_addr_t address, uint16_t index){ 492*3deb3ec6SMatthias Ringwald uint8_t event[13]; 493*3deb3ec6SMatthias Ringwald sm_setup_event_base(event, sizeof(event), type, handle, addr_type, address); 494*3deb3ec6SMatthias Ringwald bt_store_16(event, 11, index); 495*3deb3ec6SMatthias Ringwald 496*3deb3ec6SMatthias Ringwald if (!sm_client_packet_handler) return; 497*3deb3ec6SMatthias Ringwald sm_client_packet_handler(HCI_EVENT_PACKET, 0, event, sizeof(event)); 498*3deb3ec6SMatthias Ringwald } 499*3deb3ec6SMatthias Ringwald 500*3deb3ec6SMatthias Ringwald static void sm_notify_client_authorization(uint8_t type, uint16_t handle, uint8_t addr_type, bd_addr_t address, uint8_t result){ 501*3deb3ec6SMatthias Ringwald 502*3deb3ec6SMatthias Ringwald uint8_t event[18]; 503*3deb3ec6SMatthias Ringwald sm_setup_event_base(event, sizeof(event), type, handle, addr_type, address); 504*3deb3ec6SMatthias Ringwald event[11] = result; 505*3deb3ec6SMatthias Ringwald 506*3deb3ec6SMatthias Ringwald if (!sm_client_packet_handler) return; 507*3deb3ec6SMatthias Ringwald sm_client_packet_handler(HCI_EVENT_PACKET, 0, (uint8_t*) &event, sizeof(event)); 508*3deb3ec6SMatthias Ringwald } 509*3deb3ec6SMatthias Ringwald 510*3deb3ec6SMatthias Ringwald // decide on stk generation based on 511*3deb3ec6SMatthias Ringwald // - pairing request 512*3deb3ec6SMatthias Ringwald // - io capabilities 513*3deb3ec6SMatthias Ringwald // - OOB data availability 514*3deb3ec6SMatthias Ringwald static void sm_setup_tk(void){ 515*3deb3ec6SMatthias Ringwald 516*3deb3ec6SMatthias Ringwald // default: just works 517*3deb3ec6SMatthias Ringwald setup->sm_stk_generation_method = JUST_WORKS; 518*3deb3ec6SMatthias Ringwald 519*3deb3ec6SMatthias Ringwald // If both devices have out of band authentication data, then the Authentication 520*3deb3ec6SMatthias Ringwald // Requirements Flags shall be ignored when selecting the pairing method and the 521*3deb3ec6SMatthias Ringwald // Out of Band pairing method shall be used. 522*3deb3ec6SMatthias Ringwald if (setup->sm_m_preq.oob_data_flag && setup->sm_s_pres.oob_data_flag){ 523*3deb3ec6SMatthias Ringwald log_info("SM: have OOB data"); 524*3deb3ec6SMatthias Ringwald log_key("OOB", setup->sm_tk); 525*3deb3ec6SMatthias Ringwald setup->sm_stk_generation_method = OOB; 526*3deb3ec6SMatthias Ringwald return; 527*3deb3ec6SMatthias Ringwald } 528*3deb3ec6SMatthias Ringwald 529*3deb3ec6SMatthias Ringwald // Reset TK as it has been setup in sm_init_setup 530*3deb3ec6SMatthias Ringwald sm_reset_tk(); 531*3deb3ec6SMatthias Ringwald 532*3deb3ec6SMatthias Ringwald // If both devices have not set the MITM option in the Authentication Requirements 533*3deb3ec6SMatthias Ringwald // Flags, then the IO capabilities shall be ignored and the Just Works association 534*3deb3ec6SMatthias Ringwald // model shall be used. 535*3deb3ec6SMatthias Ringwald if ( ((setup->sm_m_preq.auth_req & SM_AUTHREQ_MITM_PROTECTION) == 0x00) && ((setup->sm_s_pres.auth_req & SM_AUTHREQ_MITM_PROTECTION) == 0)){ 536*3deb3ec6SMatthias Ringwald return; 537*3deb3ec6SMatthias Ringwald } 538*3deb3ec6SMatthias Ringwald 539*3deb3ec6SMatthias Ringwald // Also use just works if unknown io capabilites 540*3deb3ec6SMatthias Ringwald if ((setup->sm_m_preq.io_capability > IO_CAPABILITY_KEYBOARD_DISPLAY) || (setup->sm_m_preq.io_capability > IO_CAPABILITY_KEYBOARD_DISPLAY)){ 541*3deb3ec6SMatthias Ringwald return; 542*3deb3ec6SMatthias Ringwald } 543*3deb3ec6SMatthias Ringwald 544*3deb3ec6SMatthias Ringwald // Otherwise the IO capabilities of the devices shall be used to determine the 545*3deb3ec6SMatthias Ringwald // pairing method as defined in Table 2.4. 546*3deb3ec6SMatthias Ringwald setup->sm_stk_generation_method = stk_generation_method[setup->sm_s_pres.io_capability][setup->sm_m_preq.io_capability]; 547*3deb3ec6SMatthias Ringwald log_info("sm_setup_tk: master io cap: %u, slave io cap: %u -> method %u", 548*3deb3ec6SMatthias Ringwald setup->sm_m_preq.io_capability, setup->sm_s_pres.io_capability, setup->sm_stk_generation_method); 549*3deb3ec6SMatthias Ringwald } 550*3deb3ec6SMatthias Ringwald 551*3deb3ec6SMatthias Ringwald static int sm_key_distribution_flags_for_set(uint8_t key_set){ 552*3deb3ec6SMatthias Ringwald int flags = 0; 553*3deb3ec6SMatthias Ringwald if (key_set & SM_KEYDIST_ENC_KEY){ 554*3deb3ec6SMatthias Ringwald flags |= SM_KEYDIST_FLAG_ENCRYPTION_INFORMATION; 555*3deb3ec6SMatthias Ringwald flags |= SM_KEYDIST_FLAG_MASTER_IDENTIFICATION; 556*3deb3ec6SMatthias Ringwald } 557*3deb3ec6SMatthias Ringwald if (key_set & SM_KEYDIST_ID_KEY){ 558*3deb3ec6SMatthias Ringwald flags |= SM_KEYDIST_FLAG_IDENTITY_INFORMATION; 559*3deb3ec6SMatthias Ringwald flags |= SM_KEYDIST_FLAG_IDENTITY_ADDRESS_INFORMATION; 560*3deb3ec6SMatthias Ringwald } 561*3deb3ec6SMatthias Ringwald if (key_set & SM_KEYDIST_SIGN){ 562*3deb3ec6SMatthias Ringwald flags |= SM_KEYDIST_FLAG_SIGNING_IDENTIFICATION; 563*3deb3ec6SMatthias Ringwald } 564*3deb3ec6SMatthias Ringwald return flags; 565*3deb3ec6SMatthias Ringwald } 566*3deb3ec6SMatthias Ringwald 567*3deb3ec6SMatthias Ringwald static void sm_setup_key_distribution(uint8_t key_set){ 568*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_received_set = 0; 569*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_send_set = sm_key_distribution_flags_for_set(key_set); 570*3deb3ec6SMatthias Ringwald } 571*3deb3ec6SMatthias Ringwald 572*3deb3ec6SMatthias Ringwald // CSRK Key Lookup 573*3deb3ec6SMatthias Ringwald 574*3deb3ec6SMatthias Ringwald 575*3deb3ec6SMatthias Ringwald static int sm_address_resolution_idle(void){ 576*3deb3ec6SMatthias Ringwald return sm_address_resolution_mode == ADDRESS_RESOLUTION_IDLE; 577*3deb3ec6SMatthias Ringwald } 578*3deb3ec6SMatthias Ringwald 579*3deb3ec6SMatthias Ringwald static void sm_address_resolution_start_lookup(uint8_t addr_type, uint16_t handle, bd_addr_t addr, address_resolution_mode_t mode, void * context){ 580*3deb3ec6SMatthias Ringwald memcpy(sm_address_resolution_address, addr, 6); 581*3deb3ec6SMatthias Ringwald sm_address_resolution_addr_type = addr_type; 582*3deb3ec6SMatthias Ringwald sm_address_resolution_test = 0; 583*3deb3ec6SMatthias Ringwald sm_address_resolution_mode = mode; 584*3deb3ec6SMatthias Ringwald sm_address_resolution_context = context; 585*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_IDENTITY_RESOLVING_STARTED, handle, addr_type, addr); 586*3deb3ec6SMatthias Ringwald } 587*3deb3ec6SMatthias Ringwald 588*3deb3ec6SMatthias Ringwald int sm_address_resolution_lookup(uint8_t address_type, bd_addr_t address){ 589*3deb3ec6SMatthias Ringwald // check if already in list 590*3deb3ec6SMatthias Ringwald linked_list_iterator_t it; 591*3deb3ec6SMatthias Ringwald sm_lookup_entry_t * entry; 592*3deb3ec6SMatthias Ringwald linked_list_iterator_init(&it, &sm_address_resolution_general_queue); 593*3deb3ec6SMatthias Ringwald while(linked_list_iterator_has_next(&it)){ 594*3deb3ec6SMatthias Ringwald entry = (sm_lookup_entry_t *) linked_list_iterator_next(&it); 595*3deb3ec6SMatthias Ringwald if (entry->address_type != address_type) continue; 596*3deb3ec6SMatthias Ringwald if (memcmp(entry->address, address, 6)) continue; 597*3deb3ec6SMatthias Ringwald // already in list 598*3deb3ec6SMatthias Ringwald return BTSTACK_BUSY; 599*3deb3ec6SMatthias Ringwald } 600*3deb3ec6SMatthias Ringwald entry = btstack_memory_sm_lookup_entry_get(); 601*3deb3ec6SMatthias Ringwald if (!entry) return BTSTACK_MEMORY_ALLOC_FAILED; 602*3deb3ec6SMatthias Ringwald entry->address_type = (bd_addr_type_t) address_type; 603*3deb3ec6SMatthias Ringwald memcpy(entry->address, address, 6); 604*3deb3ec6SMatthias Ringwald linked_list_add(&sm_address_resolution_general_queue, (linked_item_t *) entry); 605*3deb3ec6SMatthias Ringwald sm_run(); 606*3deb3ec6SMatthias Ringwald return 0; 607*3deb3ec6SMatthias Ringwald } 608*3deb3ec6SMatthias Ringwald 609*3deb3ec6SMatthias Ringwald // CMAC Implementation using AES128 engine 610*3deb3ec6SMatthias Ringwald static void sm_shift_left_by_one_bit_inplace(int len, uint8_t * data){ 611*3deb3ec6SMatthias Ringwald int i; 612*3deb3ec6SMatthias Ringwald int carry = 0; 613*3deb3ec6SMatthias Ringwald for (i=len-1; i >= 0 ; i--){ 614*3deb3ec6SMatthias Ringwald int new_carry = data[i] >> 7; 615*3deb3ec6SMatthias Ringwald data[i] = data[i] << 1 | carry; 616*3deb3ec6SMatthias Ringwald carry = new_carry; 617*3deb3ec6SMatthias Ringwald } 618*3deb3ec6SMatthias Ringwald } 619*3deb3ec6SMatthias Ringwald 620*3deb3ec6SMatthias Ringwald // while x_state++ for an enum is possible in C, it isn't in C++. we use this helpers to avoid compile errors for now 621*3deb3ec6SMatthias Ringwald static inline void sm_next_responding_state(sm_connection_t * sm_conn){ 622*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = (security_manager_state_t) (((int)sm_conn->sm_engine_state) + 1); 623*3deb3ec6SMatthias Ringwald } 624*3deb3ec6SMatthias Ringwald static inline void dkg_next_state(void){ 625*3deb3ec6SMatthias Ringwald dkg_state = (derived_key_generation_t) (((int)dkg_state) + 1); 626*3deb3ec6SMatthias Ringwald } 627*3deb3ec6SMatthias Ringwald static inline void rau_next_state(void){ 628*3deb3ec6SMatthias Ringwald rau_state = (random_address_update_t) (((int)rau_state) + 1); 629*3deb3ec6SMatthias Ringwald } 630*3deb3ec6SMatthias Ringwald static inline void sm_cmac_next_state(void){ 631*3deb3ec6SMatthias Ringwald sm_cmac_state = (cmac_state_t) (((int)sm_cmac_state) + 1); 632*3deb3ec6SMatthias Ringwald } 633*3deb3ec6SMatthias Ringwald static int sm_cmac_last_block_complete(void){ 634*3deb3ec6SMatthias Ringwald if (sm_cmac_message_len == 0) return 0; 635*3deb3ec6SMatthias Ringwald return (sm_cmac_message_len & 0x0f) == 0; 636*3deb3ec6SMatthias Ringwald } 637*3deb3ec6SMatthias Ringwald static inline uint8_t sm_cmac_message_get_byte(int offset){ 638*3deb3ec6SMatthias Ringwald if (offset >= sm_cmac_message_len) { 639*3deb3ec6SMatthias Ringwald log_error("sm_cmac_message_get_byte. out of bounds, access %u, len %u", offset, sm_cmac_message_len); 640*3deb3ec6SMatthias Ringwald return 0; 641*3deb3ec6SMatthias Ringwald } 642*3deb3ec6SMatthias Ringwald 643*3deb3ec6SMatthias Ringwald offset = sm_cmac_message_len - 1 - offset; 644*3deb3ec6SMatthias Ringwald 645*3deb3ec6SMatthias Ringwald // sm_cmac_header[3] | message[] | sm_cmac_sign_counter[4] 646*3deb3ec6SMatthias Ringwald if (offset < 3){ 647*3deb3ec6SMatthias Ringwald return sm_cmac_header[offset]; 648*3deb3ec6SMatthias Ringwald } 649*3deb3ec6SMatthias Ringwald int actual_message_len_incl_header = sm_cmac_message_len - 4; 650*3deb3ec6SMatthias Ringwald if (offset < actual_message_len_incl_header){ 651*3deb3ec6SMatthias Ringwald return sm_cmac_message[offset - 3]; 652*3deb3ec6SMatthias Ringwald } 653*3deb3ec6SMatthias Ringwald return sm_cmac_sign_counter[offset - actual_message_len_incl_header]; 654*3deb3ec6SMatthias Ringwald } 655*3deb3ec6SMatthias Ringwald 656*3deb3ec6SMatthias Ringwald void sm_cmac_start(sm_key_t k, uint8_t opcode, uint16_t handle, uint16_t message_len, uint8_t * message, uint32_t sign_counter, void (*done_handler)(uint8_t hash[8])){ 657*3deb3ec6SMatthias Ringwald memcpy(sm_cmac_k, k, 16); 658*3deb3ec6SMatthias Ringwald sm_cmac_header[0] = opcode; 659*3deb3ec6SMatthias Ringwald bt_store_16(sm_cmac_header, 1, handle); 660*3deb3ec6SMatthias Ringwald bt_store_32(sm_cmac_sign_counter, 0, sign_counter); 661*3deb3ec6SMatthias Ringwald sm_cmac_message_len = 3 + message_len + 4; // incl. virtually prepended att opcode, handle and appended sign_counter in LE 662*3deb3ec6SMatthias Ringwald sm_cmac_message = message; 663*3deb3ec6SMatthias Ringwald sm_cmac_done_handler = done_handler; 664*3deb3ec6SMatthias Ringwald sm_cmac_block_current = 0; 665*3deb3ec6SMatthias Ringwald memset(sm_cmac_x, 0, 16); 666*3deb3ec6SMatthias Ringwald 667*3deb3ec6SMatthias Ringwald // step 2: n := ceil(len/const_Bsize); 668*3deb3ec6SMatthias Ringwald sm_cmac_block_count = (sm_cmac_message_len + 15) / 16; 669*3deb3ec6SMatthias Ringwald 670*3deb3ec6SMatthias Ringwald // step 3: .. 671*3deb3ec6SMatthias Ringwald if (sm_cmac_block_count==0){ 672*3deb3ec6SMatthias Ringwald sm_cmac_block_count = 1; 673*3deb3ec6SMatthias Ringwald } 674*3deb3ec6SMatthias Ringwald 675*3deb3ec6SMatthias Ringwald log_info("sm_cmac_start: len %u, block count %u", sm_cmac_message_len, sm_cmac_block_count); 676*3deb3ec6SMatthias Ringwald 677*3deb3ec6SMatthias Ringwald // first, we need to compute l for k1, k2, and m_last 678*3deb3ec6SMatthias Ringwald sm_cmac_state = CMAC_CALC_SUBKEYS; 679*3deb3ec6SMatthias Ringwald 680*3deb3ec6SMatthias Ringwald // let's go 681*3deb3ec6SMatthias Ringwald sm_run(); 682*3deb3ec6SMatthias Ringwald } 683*3deb3ec6SMatthias Ringwald 684*3deb3ec6SMatthias Ringwald int sm_cmac_ready(void){ 685*3deb3ec6SMatthias Ringwald return sm_cmac_state == CMAC_IDLE; 686*3deb3ec6SMatthias Ringwald } 687*3deb3ec6SMatthias Ringwald 688*3deb3ec6SMatthias Ringwald static void sm_cmac_handle_aes_engine_ready(void){ 689*3deb3ec6SMatthias Ringwald switch (sm_cmac_state){ 690*3deb3ec6SMatthias Ringwald case CMAC_CALC_SUBKEYS: { 691*3deb3ec6SMatthias Ringwald sm_key_t const_zero; 692*3deb3ec6SMatthias Ringwald memset(const_zero, 0, 16); 693*3deb3ec6SMatthias Ringwald sm_cmac_next_state(); 694*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_cmac_k, const_zero, NULL); 695*3deb3ec6SMatthias Ringwald break; 696*3deb3ec6SMatthias Ringwald } 697*3deb3ec6SMatthias Ringwald case CMAC_CALC_MI: { 698*3deb3ec6SMatthias Ringwald int j; 699*3deb3ec6SMatthias Ringwald sm_key_t y; 700*3deb3ec6SMatthias Ringwald for (j=0;j<16;j++){ 701*3deb3ec6SMatthias Ringwald y[j] = sm_cmac_x[j] ^ sm_cmac_message_get_byte(sm_cmac_block_current*16 + j); 702*3deb3ec6SMatthias Ringwald } 703*3deb3ec6SMatthias Ringwald sm_cmac_block_current++; 704*3deb3ec6SMatthias Ringwald sm_cmac_next_state(); 705*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_cmac_k, y, NULL); 706*3deb3ec6SMatthias Ringwald break; 707*3deb3ec6SMatthias Ringwald } 708*3deb3ec6SMatthias Ringwald case CMAC_CALC_MLAST: { 709*3deb3ec6SMatthias Ringwald int i; 710*3deb3ec6SMatthias Ringwald sm_key_t y; 711*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 712*3deb3ec6SMatthias Ringwald y[i] = sm_cmac_x[i] ^ sm_cmac_m_last[i]; 713*3deb3ec6SMatthias Ringwald } 714*3deb3ec6SMatthias Ringwald log_key("Y", y); 715*3deb3ec6SMatthias Ringwald sm_cmac_block_current++; 716*3deb3ec6SMatthias Ringwald sm_cmac_next_state(); 717*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_cmac_k, y, NULL); 718*3deb3ec6SMatthias Ringwald break; 719*3deb3ec6SMatthias Ringwald } 720*3deb3ec6SMatthias Ringwald default: 721*3deb3ec6SMatthias Ringwald log_info("sm_cmac_handle_aes_engine_ready called in state %u", sm_cmac_state); 722*3deb3ec6SMatthias Ringwald break; 723*3deb3ec6SMatthias Ringwald } 724*3deb3ec6SMatthias Ringwald } 725*3deb3ec6SMatthias Ringwald 726*3deb3ec6SMatthias Ringwald static void sm_cmac_handle_encryption_result(sm_key_t data){ 727*3deb3ec6SMatthias Ringwald switch (sm_cmac_state){ 728*3deb3ec6SMatthias Ringwald case CMAC_W4_SUBKEYS: { 729*3deb3ec6SMatthias Ringwald sm_key_t k1; 730*3deb3ec6SMatthias Ringwald memcpy(k1, data, 16); 731*3deb3ec6SMatthias Ringwald sm_shift_left_by_one_bit_inplace(16, k1); 732*3deb3ec6SMatthias Ringwald if (data[0] & 0x80){ 733*3deb3ec6SMatthias Ringwald k1[15] ^= 0x87; 734*3deb3ec6SMatthias Ringwald } 735*3deb3ec6SMatthias Ringwald sm_key_t k2; 736*3deb3ec6SMatthias Ringwald memcpy(k2, k1, 16); 737*3deb3ec6SMatthias Ringwald sm_shift_left_by_one_bit_inplace(16, k2); 738*3deb3ec6SMatthias Ringwald if (k1[0] & 0x80){ 739*3deb3ec6SMatthias Ringwald k2[15] ^= 0x87; 740*3deb3ec6SMatthias Ringwald } 741*3deb3ec6SMatthias Ringwald 742*3deb3ec6SMatthias Ringwald log_key("k", sm_cmac_k); 743*3deb3ec6SMatthias Ringwald log_key("k1", k1); 744*3deb3ec6SMatthias Ringwald log_key("k2", k2); 745*3deb3ec6SMatthias Ringwald 746*3deb3ec6SMatthias Ringwald // step 4: set m_last 747*3deb3ec6SMatthias Ringwald int i; 748*3deb3ec6SMatthias Ringwald if (sm_cmac_last_block_complete()){ 749*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 750*3deb3ec6SMatthias Ringwald sm_cmac_m_last[i] = sm_cmac_message_get_byte(sm_cmac_message_len - 16 + i) ^ k1[i]; 751*3deb3ec6SMatthias Ringwald } 752*3deb3ec6SMatthias Ringwald } else { 753*3deb3ec6SMatthias Ringwald int valid_octets_in_last_block = sm_cmac_message_len & 0x0f; 754*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 755*3deb3ec6SMatthias Ringwald if (i < valid_octets_in_last_block){ 756*3deb3ec6SMatthias Ringwald sm_cmac_m_last[i] = sm_cmac_message_get_byte((sm_cmac_message_len & 0xfff0) + i) ^ k2[i]; 757*3deb3ec6SMatthias Ringwald continue; 758*3deb3ec6SMatthias Ringwald } 759*3deb3ec6SMatthias Ringwald if (i == valid_octets_in_last_block){ 760*3deb3ec6SMatthias Ringwald sm_cmac_m_last[i] = 0x80 ^ k2[i]; 761*3deb3ec6SMatthias Ringwald continue; 762*3deb3ec6SMatthias Ringwald } 763*3deb3ec6SMatthias Ringwald sm_cmac_m_last[i] = k2[i]; 764*3deb3ec6SMatthias Ringwald } 765*3deb3ec6SMatthias Ringwald } 766*3deb3ec6SMatthias Ringwald 767*3deb3ec6SMatthias Ringwald // next 768*3deb3ec6SMatthias Ringwald sm_cmac_state = sm_cmac_block_current < sm_cmac_block_count - 1 ? CMAC_CALC_MI : CMAC_CALC_MLAST; 769*3deb3ec6SMatthias Ringwald break; 770*3deb3ec6SMatthias Ringwald } 771*3deb3ec6SMatthias Ringwald case CMAC_W4_MI: 772*3deb3ec6SMatthias Ringwald memcpy(sm_cmac_x, data, 16); 773*3deb3ec6SMatthias Ringwald sm_cmac_state = sm_cmac_block_current < sm_cmac_block_count - 1 ? CMAC_CALC_MI : CMAC_CALC_MLAST; 774*3deb3ec6SMatthias Ringwald break; 775*3deb3ec6SMatthias Ringwald case CMAC_W4_MLAST: 776*3deb3ec6SMatthias Ringwald // done 777*3deb3ec6SMatthias Ringwald log_key("CMAC", data); 778*3deb3ec6SMatthias Ringwald sm_cmac_done_handler(data); 779*3deb3ec6SMatthias Ringwald sm_cmac_state = CMAC_IDLE; 780*3deb3ec6SMatthias Ringwald break; 781*3deb3ec6SMatthias Ringwald default: 782*3deb3ec6SMatthias Ringwald log_info("sm_cmac_handle_encryption_result called in state %u", sm_cmac_state); 783*3deb3ec6SMatthias Ringwald break; 784*3deb3ec6SMatthias Ringwald } 785*3deb3ec6SMatthias Ringwald } 786*3deb3ec6SMatthias Ringwald 787*3deb3ec6SMatthias Ringwald static void sm_trigger_user_response(sm_connection_t * sm_conn){ 788*3deb3ec6SMatthias Ringwald // notify client for: JUST WORKS confirm, PASSKEY display or input 789*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_IDLE; 790*3deb3ec6SMatthias Ringwald switch (setup->sm_stk_generation_method){ 791*3deb3ec6SMatthias Ringwald case PK_RESP_INPUT: 792*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 793*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_PENDING; 794*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_PASSKEY_INPUT_NUMBER, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address); 795*3deb3ec6SMatthias Ringwald } else { 796*3deb3ec6SMatthias Ringwald sm_notify_client_passkey(SM_PASSKEY_DISPLAY_NUMBER, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address, READ_NET_32(setup->sm_tk, 12)); 797*3deb3ec6SMatthias Ringwald } 798*3deb3ec6SMatthias Ringwald break; 799*3deb3ec6SMatthias Ringwald case PK_INIT_INPUT: 800*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 801*3deb3ec6SMatthias Ringwald sm_notify_client_passkey(SM_PASSKEY_DISPLAY_NUMBER, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address, READ_NET_32(setup->sm_tk, 12)); 802*3deb3ec6SMatthias Ringwald } else { 803*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_PENDING; 804*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_PASSKEY_INPUT_NUMBER, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address); 805*3deb3ec6SMatthias Ringwald } 806*3deb3ec6SMatthias Ringwald break; 807*3deb3ec6SMatthias Ringwald case OK_BOTH_INPUT: 808*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_PENDING; 809*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_PASSKEY_INPUT_NUMBER, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address); 810*3deb3ec6SMatthias Ringwald break; 811*3deb3ec6SMatthias Ringwald case JUST_WORKS: 812*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_PENDING; 813*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_JUST_WORKS_REQUEST, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address); 814*3deb3ec6SMatthias Ringwald break; 815*3deb3ec6SMatthias Ringwald case OOB: 816*3deb3ec6SMatthias Ringwald // client already provided OOB data, let's skip notification. 817*3deb3ec6SMatthias Ringwald break; 818*3deb3ec6SMatthias Ringwald } 819*3deb3ec6SMatthias Ringwald } 820*3deb3ec6SMatthias Ringwald 821*3deb3ec6SMatthias Ringwald static int sm_key_distribution_all_received(sm_connection_t * sm_conn){ 822*3deb3ec6SMatthias Ringwald int recv_flags; 823*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 824*3deb3ec6SMatthias Ringwald // slave / responser 825*3deb3ec6SMatthias Ringwald recv_flags = sm_key_distribution_flags_for_set(setup->sm_s_pres.initiator_key_distribution); 826*3deb3ec6SMatthias Ringwald } else { 827*3deb3ec6SMatthias Ringwald // master / initiator 828*3deb3ec6SMatthias Ringwald recv_flags = sm_key_distribution_flags_for_set(setup->sm_s_pres.responder_key_distribution); 829*3deb3ec6SMatthias Ringwald } 830*3deb3ec6SMatthias Ringwald log_debug("sm_key_distribution_all_received: received 0x%02x, expecting 0x%02x", setup->sm_key_distribution_received_set, recv_flags); 831*3deb3ec6SMatthias Ringwald return recv_flags == setup->sm_key_distribution_received_set; 832*3deb3ec6SMatthias Ringwald } 833*3deb3ec6SMatthias Ringwald 834*3deb3ec6SMatthias Ringwald static void sm_done_for_handle(uint16_t handle){ 835*3deb3ec6SMatthias Ringwald if (sm_active_connection == handle){ 836*3deb3ec6SMatthias Ringwald sm_timeout_stop(); 837*3deb3ec6SMatthias Ringwald sm_active_connection = 0; 838*3deb3ec6SMatthias Ringwald log_info("sm: connection 0x%x released setup context", handle); 839*3deb3ec6SMatthias Ringwald } 840*3deb3ec6SMatthias Ringwald } 841*3deb3ec6SMatthias Ringwald 842*3deb3ec6SMatthias Ringwald static int sm_key_distribution_flags_for_auth_req(void){ 843*3deb3ec6SMatthias Ringwald int flags = SM_KEYDIST_ID_KEY | SM_KEYDIST_SIGN; 844*3deb3ec6SMatthias Ringwald if (sm_auth_req & SM_AUTHREQ_BONDING){ 845*3deb3ec6SMatthias Ringwald // encryption information only if bonding requested 846*3deb3ec6SMatthias Ringwald flags |= SM_KEYDIST_ENC_KEY; 847*3deb3ec6SMatthias Ringwald } 848*3deb3ec6SMatthias Ringwald return flags; 849*3deb3ec6SMatthias Ringwald } 850*3deb3ec6SMatthias Ringwald 851*3deb3ec6SMatthias Ringwald static void sm_init_setup(sm_connection_t * sm_conn){ 852*3deb3ec6SMatthias Ringwald 853*3deb3ec6SMatthias Ringwald // fill in sm setup 854*3deb3ec6SMatthias Ringwald sm_reset_tk(); 855*3deb3ec6SMatthias Ringwald setup->sm_peer_addr_type = sm_conn->sm_peer_addr_type; 856*3deb3ec6SMatthias Ringwald memcpy(setup->sm_peer_address, sm_conn->sm_peer_address, 6); 857*3deb3ec6SMatthias Ringwald 858*3deb3ec6SMatthias Ringwald // query client for OOB data 859*3deb3ec6SMatthias Ringwald int have_oob_data = 0; 860*3deb3ec6SMatthias Ringwald if (sm_get_oob_data) { 861*3deb3ec6SMatthias Ringwald have_oob_data = (*sm_get_oob_data)(sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address, setup->sm_tk); 862*3deb3ec6SMatthias Ringwald } 863*3deb3ec6SMatthias Ringwald 864*3deb3ec6SMatthias Ringwald sm_pairing_packet_t * local_packet; 865*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 866*3deb3ec6SMatthias Ringwald // slave 867*3deb3ec6SMatthias Ringwald local_packet = &setup->sm_s_pres; 868*3deb3ec6SMatthias Ringwald hci_le_advertisement_address(&setup->sm_s_addr_type, setup->sm_s_address); 869*3deb3ec6SMatthias Ringwald setup->sm_m_addr_type = sm_conn->sm_peer_addr_type; 870*3deb3ec6SMatthias Ringwald memcpy(setup->sm_m_address, sm_conn->sm_peer_address, 6); 871*3deb3ec6SMatthias Ringwald } else { 872*3deb3ec6SMatthias Ringwald // master 873*3deb3ec6SMatthias Ringwald local_packet = &setup->sm_m_preq; 874*3deb3ec6SMatthias Ringwald hci_le_advertisement_address(&setup->sm_m_addr_type, setup->sm_m_address); 875*3deb3ec6SMatthias Ringwald setup->sm_s_addr_type = sm_conn->sm_peer_addr_type; 876*3deb3ec6SMatthias Ringwald memcpy(setup->sm_s_address, sm_conn->sm_peer_address, 6); 877*3deb3ec6SMatthias Ringwald 878*3deb3ec6SMatthias Ringwald int key_distribution_flags = sm_key_distribution_flags_for_auth_req(); 879*3deb3ec6SMatthias Ringwald setup->sm_m_preq.initiator_key_distribution = key_distribution_flags; 880*3deb3ec6SMatthias Ringwald setup->sm_m_preq.responder_key_distribution = key_distribution_flags; 881*3deb3ec6SMatthias Ringwald } 882*3deb3ec6SMatthias Ringwald 883*3deb3ec6SMatthias Ringwald local_packet->io_capability = sm_io_capabilities; 884*3deb3ec6SMatthias Ringwald local_packet->oob_data_flag = have_oob_data; 885*3deb3ec6SMatthias Ringwald local_packet->auth_req = sm_auth_req; 886*3deb3ec6SMatthias Ringwald local_packet->max_encryption_key_size = sm_max_encryption_key_size; 887*3deb3ec6SMatthias Ringwald } 888*3deb3ec6SMatthias Ringwald 889*3deb3ec6SMatthias Ringwald static int sm_stk_generation_init(sm_connection_t * sm_conn){ 890*3deb3ec6SMatthias Ringwald 891*3deb3ec6SMatthias Ringwald sm_pairing_packet_t * remote_packet; 892*3deb3ec6SMatthias Ringwald int remote_key_request; 893*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 894*3deb3ec6SMatthias Ringwald // slave / responser 895*3deb3ec6SMatthias Ringwald remote_packet = &setup->sm_m_preq; 896*3deb3ec6SMatthias Ringwald remote_key_request = setup->sm_m_preq.responder_key_distribution; 897*3deb3ec6SMatthias Ringwald } else { 898*3deb3ec6SMatthias Ringwald // master / initiator 899*3deb3ec6SMatthias Ringwald remote_packet = &setup->sm_s_pres; 900*3deb3ec6SMatthias Ringwald remote_key_request = setup->sm_s_pres.initiator_key_distribution; 901*3deb3ec6SMatthias Ringwald } 902*3deb3ec6SMatthias Ringwald 903*3deb3ec6SMatthias Ringwald // check key size 904*3deb3ec6SMatthias Ringwald sm_conn->sm_actual_encryption_key_size = sm_calc_actual_encryption_key_size(remote_packet->max_encryption_key_size); 905*3deb3ec6SMatthias Ringwald if (sm_conn->sm_actual_encryption_key_size == 0) return SM_REASON_ENCRYPTION_KEY_SIZE; 906*3deb3ec6SMatthias Ringwald 907*3deb3ec6SMatthias Ringwald // setup key distribution 908*3deb3ec6SMatthias Ringwald sm_setup_key_distribution(remote_key_request); 909*3deb3ec6SMatthias Ringwald 910*3deb3ec6SMatthias Ringwald // identical to responder 911*3deb3ec6SMatthias Ringwald 912*3deb3ec6SMatthias Ringwald // decide on STK generation method 913*3deb3ec6SMatthias Ringwald sm_setup_tk(); 914*3deb3ec6SMatthias Ringwald log_info("SMP: generation method %u", setup->sm_stk_generation_method); 915*3deb3ec6SMatthias Ringwald 916*3deb3ec6SMatthias Ringwald // check if STK generation method is acceptable by client 917*3deb3ec6SMatthias Ringwald if (!sm_validate_stk_generation_method()) return SM_REASON_AUTHENTHICATION_REQUIREMENTS; 918*3deb3ec6SMatthias Ringwald 919*3deb3ec6SMatthias Ringwald // JUST WORKS doens't provide authentication 920*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_authenticated = setup->sm_stk_generation_method == JUST_WORKS ? 0 : 1; 921*3deb3ec6SMatthias Ringwald 922*3deb3ec6SMatthias Ringwald return 0; 923*3deb3ec6SMatthias Ringwald } 924*3deb3ec6SMatthias Ringwald 925*3deb3ec6SMatthias Ringwald static void sm_address_resolution_handle_event(address_resolution_event_t event){ 926*3deb3ec6SMatthias Ringwald 927*3deb3ec6SMatthias Ringwald // cache and reset context 928*3deb3ec6SMatthias Ringwald int matched_device_id = sm_address_resolution_test; 929*3deb3ec6SMatthias Ringwald address_resolution_mode_t mode = sm_address_resolution_mode; 930*3deb3ec6SMatthias Ringwald void * context = sm_address_resolution_context; 931*3deb3ec6SMatthias Ringwald 932*3deb3ec6SMatthias Ringwald // reset context 933*3deb3ec6SMatthias Ringwald sm_address_resolution_mode = ADDRESS_RESOLUTION_IDLE; 934*3deb3ec6SMatthias Ringwald sm_address_resolution_context = NULL; 935*3deb3ec6SMatthias Ringwald sm_address_resolution_test = -1; 936*3deb3ec6SMatthias Ringwald uint16_t handle = 0; 937*3deb3ec6SMatthias Ringwald 938*3deb3ec6SMatthias Ringwald sm_connection_t * sm_connection; 939*3deb3ec6SMatthias Ringwald uint16_t ediv; 940*3deb3ec6SMatthias Ringwald switch (mode){ 941*3deb3ec6SMatthias Ringwald case ADDRESS_RESOLUTION_GENERAL: 942*3deb3ec6SMatthias Ringwald break; 943*3deb3ec6SMatthias Ringwald case ADDRESS_RESOLUTION_FOR_CONNECTION: 944*3deb3ec6SMatthias Ringwald sm_connection = (sm_connection_t *) context; 945*3deb3ec6SMatthias Ringwald handle = sm_connection->sm_handle; 946*3deb3ec6SMatthias Ringwald switch (event){ 947*3deb3ec6SMatthias Ringwald case ADDRESS_RESOLUTION_SUCEEDED: 948*3deb3ec6SMatthias Ringwald sm_connection->sm_irk_lookup_state = IRK_LOOKUP_SUCCEEDED; 949*3deb3ec6SMatthias Ringwald sm_connection->sm_le_db_index = matched_device_id; 950*3deb3ec6SMatthias Ringwald log_info("ADDRESS_RESOLUTION_SUCEEDED, index %d", sm_connection->sm_le_db_index); 951*3deb3ec6SMatthias Ringwald if (sm_connection->sm_role) break; 952*3deb3ec6SMatthias Ringwald if (!sm_connection->sm_bonding_requested && !sm_connection->sm_security_request_received) break; 953*3deb3ec6SMatthias Ringwald sm_connection->sm_security_request_received = 0; 954*3deb3ec6SMatthias Ringwald sm_connection->sm_bonding_requested = 0; 955*3deb3ec6SMatthias Ringwald le_device_db_encryption_get(sm_connection->sm_le_db_index, &ediv, NULL, NULL, NULL, NULL, NULL); 956*3deb3ec6SMatthias Ringwald if (ediv){ 957*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_INITIATOR_PH0_HAS_LTK; 958*3deb3ec6SMatthias Ringwald } else { 959*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST; 960*3deb3ec6SMatthias Ringwald } 961*3deb3ec6SMatthias Ringwald break; 962*3deb3ec6SMatthias Ringwald case ADDRESS_RESOLUTION_FAILED: 963*3deb3ec6SMatthias Ringwald sm_connection->sm_irk_lookup_state = IRK_LOOKUP_FAILED; 964*3deb3ec6SMatthias Ringwald if (sm_connection->sm_role) break; 965*3deb3ec6SMatthias Ringwald if (!sm_connection->sm_bonding_requested && !sm_connection->sm_security_request_received) break; 966*3deb3ec6SMatthias Ringwald sm_connection->sm_security_request_received = 0; 967*3deb3ec6SMatthias Ringwald sm_connection->sm_bonding_requested = 0; 968*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST; 969*3deb3ec6SMatthias Ringwald break; 970*3deb3ec6SMatthias Ringwald } 971*3deb3ec6SMatthias Ringwald break; 972*3deb3ec6SMatthias Ringwald default: 973*3deb3ec6SMatthias Ringwald break; 974*3deb3ec6SMatthias Ringwald } 975*3deb3ec6SMatthias Ringwald 976*3deb3ec6SMatthias Ringwald switch (event){ 977*3deb3ec6SMatthias Ringwald case ADDRESS_RESOLUTION_SUCEEDED: 978*3deb3ec6SMatthias Ringwald sm_notify_client_index(SM_IDENTITY_RESOLVING_SUCCEEDED, handle, sm_address_resolution_addr_type, sm_address_resolution_address, matched_device_id); 979*3deb3ec6SMatthias Ringwald break; 980*3deb3ec6SMatthias Ringwald case ADDRESS_RESOLUTION_FAILED: 981*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_IDENTITY_RESOLVING_FAILED, handle, sm_address_resolution_addr_type, sm_address_resolution_address); 982*3deb3ec6SMatthias Ringwald break; 983*3deb3ec6SMatthias Ringwald } 984*3deb3ec6SMatthias Ringwald } 985*3deb3ec6SMatthias Ringwald 986*3deb3ec6SMatthias Ringwald static void sm_key_distribution_handle_all_received(sm_connection_t * sm_conn){ 987*3deb3ec6SMatthias Ringwald 988*3deb3ec6SMatthias Ringwald int le_db_index = -1; 989*3deb3ec6SMatthias Ringwald 990*3deb3ec6SMatthias Ringwald // lookup device based on IRK 991*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_received_set & SM_KEYDIST_FLAG_IDENTITY_INFORMATION){ 992*3deb3ec6SMatthias Ringwald int i; 993*3deb3ec6SMatthias Ringwald for (i=0; i < le_device_db_count(); i++){ 994*3deb3ec6SMatthias Ringwald sm_key_t irk; 995*3deb3ec6SMatthias Ringwald bd_addr_t address; 996*3deb3ec6SMatthias Ringwald int address_type; 997*3deb3ec6SMatthias Ringwald le_device_db_info(i, &address_type, address, irk); 998*3deb3ec6SMatthias Ringwald if (memcmp(irk, setup->sm_peer_irk, 16) == 0){ 999*3deb3ec6SMatthias Ringwald log_info("sm: device found for IRK, updating"); 1000*3deb3ec6SMatthias Ringwald le_db_index = i; 1001*3deb3ec6SMatthias Ringwald break; 1002*3deb3ec6SMatthias Ringwald } 1003*3deb3ec6SMatthias Ringwald } 1004*3deb3ec6SMatthias Ringwald } 1005*3deb3ec6SMatthias Ringwald 1006*3deb3ec6SMatthias Ringwald // if not found, lookup via public address if possible 1007*3deb3ec6SMatthias Ringwald log_info("sm peer addr type %u, peer addres %s", setup->sm_peer_addr_type, bd_addr_to_str(setup->sm_peer_address)); 1008*3deb3ec6SMatthias Ringwald if (le_db_index < 0 && setup->sm_peer_addr_type == BD_ADDR_TYPE_LE_PUBLIC){ 1009*3deb3ec6SMatthias Ringwald int i; 1010*3deb3ec6SMatthias Ringwald for (i=0; i < le_device_db_count(); i++){ 1011*3deb3ec6SMatthias Ringwald bd_addr_t address; 1012*3deb3ec6SMatthias Ringwald int address_type; 1013*3deb3ec6SMatthias Ringwald le_device_db_info(i, &address_type, address, NULL); 1014*3deb3ec6SMatthias Ringwald log_info("device %u, sm peer addr type %u, peer addres %s", i, address_type, bd_addr_to_str(address)); 1015*3deb3ec6SMatthias Ringwald if (address_type == BD_ADDR_TYPE_LE_PUBLIC && memcmp(address, setup->sm_peer_address, 6) == 0){ 1016*3deb3ec6SMatthias Ringwald log_info("sm: device found for public address, updating"); 1017*3deb3ec6SMatthias Ringwald le_db_index = i; 1018*3deb3ec6SMatthias Ringwald break; 1019*3deb3ec6SMatthias Ringwald } 1020*3deb3ec6SMatthias Ringwald } 1021*3deb3ec6SMatthias Ringwald } 1022*3deb3ec6SMatthias Ringwald 1023*3deb3ec6SMatthias Ringwald // if not found, add to db 1024*3deb3ec6SMatthias Ringwald if (le_db_index < 0) { 1025*3deb3ec6SMatthias Ringwald le_db_index = le_device_db_add(setup->sm_peer_addr_type, setup->sm_peer_address, setup->sm_peer_irk); 1026*3deb3ec6SMatthias Ringwald } 1027*3deb3ec6SMatthias Ringwald 1028*3deb3ec6SMatthias Ringwald if (le_db_index >= 0){ 1029*3deb3ec6SMatthias Ringwald le_device_db_local_counter_set(le_db_index, 0); 1030*3deb3ec6SMatthias Ringwald 1031*3deb3ec6SMatthias Ringwald // store local CSRK 1032*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set & SM_KEYDIST_FLAG_SIGNING_IDENTIFICATION){ 1033*3deb3ec6SMatthias Ringwald log_info("sm: store local CSRK"); 1034*3deb3ec6SMatthias Ringwald le_device_db_local_csrk_set(le_db_index, setup->sm_local_csrk); 1035*3deb3ec6SMatthias Ringwald le_device_db_local_counter_set(le_db_index, 0); 1036*3deb3ec6SMatthias Ringwald } 1037*3deb3ec6SMatthias Ringwald 1038*3deb3ec6SMatthias Ringwald // store remote CSRK 1039*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_received_set & SM_KEYDIST_FLAG_SIGNING_IDENTIFICATION){ 1040*3deb3ec6SMatthias Ringwald log_info("sm: store remote CSRK"); 1041*3deb3ec6SMatthias Ringwald le_device_db_remote_csrk_set(le_db_index, setup->sm_peer_csrk); 1042*3deb3ec6SMatthias Ringwald le_device_db_remote_counter_set(le_db_index, 0); 1043*3deb3ec6SMatthias Ringwald } 1044*3deb3ec6SMatthias Ringwald 1045*3deb3ec6SMatthias Ringwald // store encryption information 1046*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_received_set & SM_KEYDIST_FLAG_ENCRYPTION_INFORMATION 1047*3deb3ec6SMatthias Ringwald && setup->sm_key_distribution_received_set & SM_KEYDIST_FLAG_MASTER_IDENTIFICATION){ 1048*3deb3ec6SMatthias Ringwald log_info("sm: set encryption information (key size %u, authenticatd %u)", sm_conn->sm_actual_encryption_key_size, sm_conn->sm_connection_authenticated); 1049*3deb3ec6SMatthias Ringwald le_device_db_encryption_set(le_db_index, setup->sm_peer_ediv, setup->sm_peer_rand, setup->sm_peer_ltk, 1050*3deb3ec6SMatthias Ringwald sm_conn->sm_actual_encryption_key_size, sm_conn->sm_connection_authenticated, sm_conn->sm_connection_authorization_state == AUTHORIZATION_GRANTED); 1051*3deb3ec6SMatthias Ringwald } 1052*3deb3ec6SMatthias Ringwald } 1053*3deb3ec6SMatthias Ringwald 1054*3deb3ec6SMatthias Ringwald // keep le_db_index 1055*3deb3ec6SMatthias Ringwald sm_conn->sm_le_db_index = le_db_index; 1056*3deb3ec6SMatthias Ringwald } 1057*3deb3ec6SMatthias Ringwald 1058*3deb3ec6SMatthias Ringwald static void sm_run(void){ 1059*3deb3ec6SMatthias Ringwald 1060*3deb3ec6SMatthias Ringwald linked_list_iterator_t it; 1061*3deb3ec6SMatthias Ringwald 1062*3deb3ec6SMatthias Ringwald // assert that we can send at least commands 1063*3deb3ec6SMatthias Ringwald if (!hci_can_send_command_packet_now()) return; 1064*3deb3ec6SMatthias Ringwald 1065*3deb3ec6SMatthias Ringwald // 1066*3deb3ec6SMatthias Ringwald // non-connection related behaviour 1067*3deb3ec6SMatthias Ringwald // 1068*3deb3ec6SMatthias Ringwald 1069*3deb3ec6SMatthias Ringwald // distributed key generation 1070*3deb3ec6SMatthias Ringwald switch (dkg_state){ 1071*3deb3ec6SMatthias Ringwald case DKG_CALC_IRK: 1072*3deb3ec6SMatthias Ringwald // already busy? 1073*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_IDLE) { 1074*3deb3ec6SMatthias Ringwald // IRK = d1(IR, 1, 0) 1075*3deb3ec6SMatthias Ringwald sm_key_t d1_prime; 1076*3deb3ec6SMatthias Ringwald sm_d1_d_prime(1, 0, d1_prime); // plaintext 1077*3deb3ec6SMatthias Ringwald dkg_next_state(); 1078*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_ir, d1_prime, NULL); 1079*3deb3ec6SMatthias Ringwald return; 1080*3deb3ec6SMatthias Ringwald } 1081*3deb3ec6SMatthias Ringwald break; 1082*3deb3ec6SMatthias Ringwald case DKG_CALC_DHK: 1083*3deb3ec6SMatthias Ringwald // already busy? 1084*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_IDLE) { 1085*3deb3ec6SMatthias Ringwald // DHK = d1(IR, 3, 0) 1086*3deb3ec6SMatthias Ringwald sm_key_t d1_prime; 1087*3deb3ec6SMatthias Ringwald sm_d1_d_prime(3, 0, d1_prime); // plaintext 1088*3deb3ec6SMatthias Ringwald dkg_next_state(); 1089*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_ir, d1_prime, NULL); 1090*3deb3ec6SMatthias Ringwald return; 1091*3deb3ec6SMatthias Ringwald } 1092*3deb3ec6SMatthias Ringwald break; 1093*3deb3ec6SMatthias Ringwald default: 1094*3deb3ec6SMatthias Ringwald break; 1095*3deb3ec6SMatthias Ringwald } 1096*3deb3ec6SMatthias Ringwald 1097*3deb3ec6SMatthias Ringwald // random address updates 1098*3deb3ec6SMatthias Ringwald switch (rau_state){ 1099*3deb3ec6SMatthias Ringwald case RAU_GET_RANDOM: 1100*3deb3ec6SMatthias Ringwald rau_next_state(); 1101*3deb3ec6SMatthias Ringwald sm_random_start(NULL); 1102*3deb3ec6SMatthias Ringwald return; 1103*3deb3ec6SMatthias Ringwald case RAU_GET_ENC: 1104*3deb3ec6SMatthias Ringwald // already busy? 1105*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_IDLE) { 1106*3deb3ec6SMatthias Ringwald sm_key_t r_prime; 1107*3deb3ec6SMatthias Ringwald sm_ah_r_prime(sm_random_address, r_prime); 1108*3deb3ec6SMatthias Ringwald rau_next_state(); 1109*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_irk, r_prime, NULL); 1110*3deb3ec6SMatthias Ringwald return; 1111*3deb3ec6SMatthias Ringwald } 1112*3deb3ec6SMatthias Ringwald break; 1113*3deb3ec6SMatthias Ringwald case RAU_SET_ADDRESS: 1114*3deb3ec6SMatthias Ringwald log_info("New random address: %s", bd_addr_to_str(sm_random_address)); 1115*3deb3ec6SMatthias Ringwald rau_state = RAU_IDLE; 1116*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_set_random_address, sm_random_address); 1117*3deb3ec6SMatthias Ringwald return; 1118*3deb3ec6SMatthias Ringwald default: 1119*3deb3ec6SMatthias Ringwald break; 1120*3deb3ec6SMatthias Ringwald } 1121*3deb3ec6SMatthias Ringwald 1122*3deb3ec6SMatthias Ringwald // CMAC 1123*3deb3ec6SMatthias Ringwald switch (sm_cmac_state){ 1124*3deb3ec6SMatthias Ringwald case CMAC_CALC_SUBKEYS: 1125*3deb3ec6SMatthias Ringwald case CMAC_CALC_MI: 1126*3deb3ec6SMatthias Ringwald case CMAC_CALC_MLAST: 1127*3deb3ec6SMatthias Ringwald // already busy? 1128*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1129*3deb3ec6SMatthias Ringwald sm_cmac_handle_aes_engine_ready(); 1130*3deb3ec6SMatthias Ringwald return; 1131*3deb3ec6SMatthias Ringwald default: 1132*3deb3ec6SMatthias Ringwald break; 1133*3deb3ec6SMatthias Ringwald } 1134*3deb3ec6SMatthias Ringwald 1135*3deb3ec6SMatthias Ringwald // CSRK Lookup 1136*3deb3ec6SMatthias Ringwald // -- if csrk lookup ready, find connection that require csrk lookup 1137*3deb3ec6SMatthias Ringwald if (sm_address_resolution_idle()){ 1138*3deb3ec6SMatthias Ringwald hci_connections_get_iterator(&it); 1139*3deb3ec6SMatthias Ringwald while(linked_list_iterator_has_next(&it)){ 1140*3deb3ec6SMatthias Ringwald hci_connection_t * hci_connection = (hci_connection_t *) linked_list_iterator_next(&it); 1141*3deb3ec6SMatthias Ringwald sm_connection_t * sm_connection = &hci_connection->sm_connection; 1142*3deb3ec6SMatthias Ringwald if (sm_connection->sm_irk_lookup_state == IRK_LOOKUP_W4_READY){ 1143*3deb3ec6SMatthias Ringwald // and start lookup 1144*3deb3ec6SMatthias Ringwald sm_address_resolution_start_lookup(sm_connection->sm_peer_addr_type, sm_connection->sm_handle, sm_connection->sm_peer_address, ADDRESS_RESOLUTION_FOR_CONNECTION, sm_connection); 1145*3deb3ec6SMatthias Ringwald sm_connection->sm_irk_lookup_state = IRK_LOOKUP_STARTED; 1146*3deb3ec6SMatthias Ringwald break; 1147*3deb3ec6SMatthias Ringwald } 1148*3deb3ec6SMatthias Ringwald } 1149*3deb3ec6SMatthias Ringwald } 1150*3deb3ec6SMatthias Ringwald 1151*3deb3ec6SMatthias Ringwald // -- if csrk lookup ready, resolved addresses for received addresses 1152*3deb3ec6SMatthias Ringwald if (sm_address_resolution_idle()) { 1153*3deb3ec6SMatthias Ringwald if (!linked_list_empty(&sm_address_resolution_general_queue)){ 1154*3deb3ec6SMatthias Ringwald sm_lookup_entry_t * entry = (sm_lookup_entry_t *) sm_address_resolution_general_queue; 1155*3deb3ec6SMatthias Ringwald linked_list_remove(&sm_address_resolution_general_queue, (linked_item_t *) entry); 1156*3deb3ec6SMatthias Ringwald sm_address_resolution_start_lookup(entry->address_type, 0, entry->address, ADDRESS_RESOLUTION_GENERAL, NULL); 1157*3deb3ec6SMatthias Ringwald btstack_memory_sm_lookup_entry_free(entry); 1158*3deb3ec6SMatthias Ringwald } 1159*3deb3ec6SMatthias Ringwald } 1160*3deb3ec6SMatthias Ringwald 1161*3deb3ec6SMatthias Ringwald // -- Continue with CSRK device lookup by public or resolvable private address 1162*3deb3ec6SMatthias Ringwald if (!sm_address_resolution_idle()){ 1163*3deb3ec6SMatthias Ringwald log_info("LE Device Lookup: device %u/%u", sm_address_resolution_test, le_device_db_count()); 1164*3deb3ec6SMatthias Ringwald while (sm_address_resolution_test < le_device_db_count()){ 1165*3deb3ec6SMatthias Ringwald int addr_type; 1166*3deb3ec6SMatthias Ringwald bd_addr_t addr; 1167*3deb3ec6SMatthias Ringwald sm_key_t irk; 1168*3deb3ec6SMatthias Ringwald le_device_db_info(sm_address_resolution_test, &addr_type, addr, irk); 1169*3deb3ec6SMatthias Ringwald log_info("device type %u, addr: %s", addr_type, bd_addr_to_str(addr)); 1170*3deb3ec6SMatthias Ringwald 1171*3deb3ec6SMatthias Ringwald if (sm_address_resolution_addr_type == addr_type && memcmp(addr, sm_address_resolution_address, 6) == 0){ 1172*3deb3ec6SMatthias Ringwald log_info("LE Device Lookup: found CSRK by { addr_type, address} "); 1173*3deb3ec6SMatthias Ringwald sm_address_resolution_handle_event(ADDRESS_RESOLUTION_SUCEEDED); 1174*3deb3ec6SMatthias Ringwald break; 1175*3deb3ec6SMatthias Ringwald } 1176*3deb3ec6SMatthias Ringwald 1177*3deb3ec6SMatthias Ringwald if (sm_address_resolution_addr_type == 0){ 1178*3deb3ec6SMatthias Ringwald sm_address_resolution_test++; 1179*3deb3ec6SMatthias Ringwald continue; 1180*3deb3ec6SMatthias Ringwald } 1181*3deb3ec6SMatthias Ringwald 1182*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1183*3deb3ec6SMatthias Ringwald 1184*3deb3ec6SMatthias Ringwald log_info("LE Device Lookup: calculate AH"); 1185*3deb3ec6SMatthias Ringwald log_key("IRK", irk); 1186*3deb3ec6SMatthias Ringwald 1187*3deb3ec6SMatthias Ringwald sm_key_t r_prime; 1188*3deb3ec6SMatthias Ringwald sm_ah_r_prime(sm_address_resolution_address, r_prime); 1189*3deb3ec6SMatthias Ringwald sm_address_resolution_ah_calculation_active = 1; 1190*3deb3ec6SMatthias Ringwald sm_aes128_start(irk, r_prime, sm_address_resolution_context); // keep context 1191*3deb3ec6SMatthias Ringwald return; 1192*3deb3ec6SMatthias Ringwald } 1193*3deb3ec6SMatthias Ringwald 1194*3deb3ec6SMatthias Ringwald if (sm_address_resolution_test >= le_device_db_count()){ 1195*3deb3ec6SMatthias Ringwald log_info("LE Device Lookup: not found"); 1196*3deb3ec6SMatthias Ringwald sm_address_resolution_handle_event(ADDRESS_RESOLUTION_FAILED); 1197*3deb3ec6SMatthias Ringwald } 1198*3deb3ec6SMatthias Ringwald } 1199*3deb3ec6SMatthias Ringwald 1200*3deb3ec6SMatthias Ringwald 1201*3deb3ec6SMatthias Ringwald // 1202*3deb3ec6SMatthias Ringwald // active connection handling 1203*3deb3ec6SMatthias Ringwald // -- use loop to handle next connection if lock on setup context is released 1204*3deb3ec6SMatthias Ringwald 1205*3deb3ec6SMatthias Ringwald while (1) { 1206*3deb3ec6SMatthias Ringwald 1207*3deb3ec6SMatthias Ringwald // Find connections that requires setup context and make active if no other is locked 1208*3deb3ec6SMatthias Ringwald hci_connections_get_iterator(&it); 1209*3deb3ec6SMatthias Ringwald while(!sm_active_connection && linked_list_iterator_has_next(&it)){ 1210*3deb3ec6SMatthias Ringwald hci_connection_t * hci_connection = (hci_connection_t *) linked_list_iterator_next(&it); 1211*3deb3ec6SMatthias Ringwald sm_connection_t * sm_connection = &hci_connection->sm_connection; 1212*3deb3ec6SMatthias Ringwald // - if no connection locked and we're ready/waiting for setup context, fetch it and start 1213*3deb3ec6SMatthias Ringwald int done = 1; 1214*3deb3ec6SMatthias Ringwald int err; 1215*3deb3ec6SMatthias Ringwald int encryption_key_size; 1216*3deb3ec6SMatthias Ringwald int authenticated; 1217*3deb3ec6SMatthias Ringwald int authorized; 1218*3deb3ec6SMatthias Ringwald switch (sm_connection->sm_engine_state) { 1219*3deb3ec6SMatthias Ringwald case SM_RESPONDER_SEND_SECURITY_REQUEST: 1220*3deb3ec6SMatthias Ringwald // send packet if possible, 1221*3deb3ec6SMatthias Ringwald if (l2cap_can_send_fixed_channel_packet_now(sm_connection->sm_handle)){ 1222*3deb3ec6SMatthias Ringwald uint8_t buffer[2]; 1223*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_SECURITY_REQUEST; 1224*3deb3ec6SMatthias Ringwald buffer[1] = SM_AUTHREQ_BONDING; 1225*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_RESPONDER_PH1_W4_PAIRING_REQUEST; 1226*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(sm_connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1227*3deb3ec6SMatthias Ringwald } 1228*3deb3ec6SMatthias Ringwald // don't lock setup context yet 1229*3deb3ec6SMatthias Ringwald done = 0; 1230*3deb3ec6SMatthias Ringwald break; 1231*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH1_PAIRING_REQUEST_RECEIVED: 1232*3deb3ec6SMatthias Ringwald sm_init_setup(sm_connection); 1233*3deb3ec6SMatthias Ringwald // recover pairing request 1234*3deb3ec6SMatthias Ringwald memcpy(&setup->sm_m_preq, &sm_connection->sm_m_preq, sizeof(sm_pairing_packet_t)); 1235*3deb3ec6SMatthias Ringwald err = sm_stk_generation_init(sm_connection); 1236*3deb3ec6SMatthias Ringwald if (err){ 1237*3deb3ec6SMatthias Ringwald setup->sm_pairing_failed_reason = err; 1238*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_GENERAL_SEND_PAIRING_FAILED; 1239*3deb3ec6SMatthias Ringwald break; 1240*3deb3ec6SMatthias Ringwald } 1241*3deb3ec6SMatthias Ringwald sm_timeout_start(sm_connection); 1242*3deb3ec6SMatthias Ringwald // generate random number first, if we need to show passkey 1243*3deb3ec6SMatthias Ringwald if (setup->sm_stk_generation_method == PK_INIT_INPUT){ 1244*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_PH2_GET_RANDOM_TK; 1245*3deb3ec6SMatthias Ringwald break; 1246*3deb3ec6SMatthias Ringwald } 1247*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_RESPONDER_PH1_SEND_PAIRING_RESPONSE; 1248*3deb3ec6SMatthias Ringwald break; 1249*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH0_HAS_LTK: 1250*3deb3ec6SMatthias Ringwald // fetch data from device db - incl. authenticated/authorized/key size. Note all sm_connection_X require encryption enabled 1251*3deb3ec6SMatthias Ringwald le_device_db_encryption_get(sm_connection->sm_le_db_index, &setup->sm_peer_ediv, setup->sm_peer_rand, setup->sm_peer_ltk, 1252*3deb3ec6SMatthias Ringwald &encryption_key_size, &authenticated, &authorized); 1253*3deb3ec6SMatthias Ringwald log_info("db index %u, key size %u, authenticated %u, authorized %u", sm_connection->sm_le_db_index, encryption_key_size, authenticated, authorized); 1254*3deb3ec6SMatthias Ringwald sm_connection->sm_actual_encryption_key_size = encryption_key_size; 1255*3deb3ec6SMatthias Ringwald sm_connection->sm_connection_authenticated = authenticated; 1256*3deb3ec6SMatthias Ringwald sm_connection->sm_connection_authorization_state = authorized ? AUTHORIZATION_GRANTED : AUTHORIZATION_UNKNOWN; 1257*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_INITIATOR_PH0_SEND_START_ENCRYPTION; 1258*3deb3ec6SMatthias Ringwald break; 1259*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH0_RECEIVED_LTK: 1260*3deb3ec6SMatthias Ringwald // re-establish previously used LTK using Rand and EDIV 1261*3deb3ec6SMatthias Ringwald memcpy(setup->sm_local_rand, sm_connection->sm_local_rand, 8); 1262*3deb3ec6SMatthias Ringwald setup->sm_local_ediv = sm_connection->sm_local_ediv; 1263*3deb3ec6SMatthias Ringwald // re-establish used key encryption size 1264*3deb3ec6SMatthias Ringwald // no db for encryption size hack: encryption size is stored in lowest nibble of setup->sm_local_rand 1265*3deb3ec6SMatthias Ringwald sm_connection->sm_actual_encryption_key_size = (setup->sm_local_rand[7] & 0x0f) + 1; 1266*3deb3ec6SMatthias Ringwald // no db for authenticated flag hack: flag is stored in bit 4 of LSB 1267*3deb3ec6SMatthias Ringwald sm_connection->sm_connection_authenticated = (setup->sm_local_rand[7] & 0x10) >> 4; 1268*3deb3ec6SMatthias Ringwald log_info("sm: received ltk request with key size %u, authenticated %u", 1269*3deb3ec6SMatthias Ringwald sm_connection->sm_actual_encryption_key_size, sm_connection->sm_connection_authenticated); 1270*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_RESPONDER_PH4_Y_GET_ENC; 1271*3deb3ec6SMatthias Ringwald break; 1272*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST: 1273*3deb3ec6SMatthias Ringwald sm_init_setup(sm_connection); 1274*3deb3ec6SMatthias Ringwald sm_timeout_start(sm_connection); 1275*3deb3ec6SMatthias Ringwald sm_connection->sm_engine_state = SM_INITIATOR_PH1_SEND_PAIRING_REQUEST; 1276*3deb3ec6SMatthias Ringwald break; 1277*3deb3ec6SMatthias Ringwald default: 1278*3deb3ec6SMatthias Ringwald done = 0; 1279*3deb3ec6SMatthias Ringwald break; 1280*3deb3ec6SMatthias Ringwald } 1281*3deb3ec6SMatthias Ringwald if (done){ 1282*3deb3ec6SMatthias Ringwald sm_active_connection = sm_connection->sm_handle; 1283*3deb3ec6SMatthias Ringwald log_info("sm: connection 0x%04x locked setup context as %s", sm_active_connection, sm_connection->sm_role ? "responder" : "initiator"); 1284*3deb3ec6SMatthias Ringwald } 1285*3deb3ec6SMatthias Ringwald } 1286*3deb3ec6SMatthias Ringwald 1287*3deb3ec6SMatthias Ringwald // 1288*3deb3ec6SMatthias Ringwald // active connection handling 1289*3deb3ec6SMatthias Ringwald // 1290*3deb3ec6SMatthias Ringwald 1291*3deb3ec6SMatthias Ringwald if (sm_active_connection == 0) return; 1292*3deb3ec6SMatthias Ringwald 1293*3deb3ec6SMatthias Ringwald // assert that we could send a SM PDU - not needed for all of the following 1294*3deb3ec6SMatthias Ringwald if (!l2cap_can_send_fixed_channel_packet_now(sm_active_connection)) return; 1295*3deb3ec6SMatthias Ringwald 1296*3deb3ec6SMatthias Ringwald sm_connection_t * connection = sm_get_connection_for_handle(sm_active_connection); 1297*3deb3ec6SMatthias Ringwald if (!connection) return; 1298*3deb3ec6SMatthias Ringwald 1299*3deb3ec6SMatthias Ringwald sm_key_t plaintext; 1300*3deb3ec6SMatthias Ringwald int key_distribution_flags; 1301*3deb3ec6SMatthias Ringwald 1302*3deb3ec6SMatthias Ringwald log_info("sm_run: state %u", connection->sm_engine_state); 1303*3deb3ec6SMatthias Ringwald 1304*3deb3ec6SMatthias Ringwald // responding state 1305*3deb3ec6SMatthias Ringwald switch (connection->sm_engine_state){ 1306*3deb3ec6SMatthias Ringwald 1307*3deb3ec6SMatthias Ringwald // general 1308*3deb3ec6SMatthias Ringwald case SM_GENERAL_SEND_PAIRING_FAILED: { 1309*3deb3ec6SMatthias Ringwald uint8_t buffer[2]; 1310*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_PAIRING_FAILED; 1311*3deb3ec6SMatthias Ringwald buffer[1] = setup->sm_pairing_failed_reason; 1312*3deb3ec6SMatthias Ringwald connection->sm_engine_state = connection->sm_role ? SM_RESPONDER_IDLE : SM_INITIATOR_CONNECTED; 1313*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1314*3deb3ec6SMatthias Ringwald sm_done_for_handle(connection->sm_handle); 1315*3deb3ec6SMatthias Ringwald break; 1316*3deb3ec6SMatthias Ringwald } 1317*3deb3ec6SMatthias Ringwald 1318*3deb3ec6SMatthias Ringwald // initiator side 1319*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH0_SEND_START_ENCRYPTION: { 1320*3deb3ec6SMatthias Ringwald sm_key_t peer_ltk_flipped; 1321*3deb3ec6SMatthias Ringwald swap128(setup->sm_peer_ltk, peer_ltk_flipped); 1322*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_PH0_W4_CONNECTION_ENCRYPTED; 1323*3deb3ec6SMatthias Ringwald log_info("sm: hci_le_start_encryption ediv 0x%04x", setup->sm_peer_ediv); 1324*3deb3ec6SMatthias Ringwald uint32_t rand_high = READ_NET_32(setup->sm_peer_rand, 0); 1325*3deb3ec6SMatthias Ringwald uint32_t rand_low = READ_NET_32(setup->sm_peer_rand, 4); 1326*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_start_encryption, connection->sm_handle,rand_low, rand_high, setup->sm_peer_ediv, peer_ltk_flipped); 1327*3deb3ec6SMatthias Ringwald return; 1328*3deb3ec6SMatthias Ringwald } 1329*3deb3ec6SMatthias Ringwald 1330*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH1_SEND_PAIRING_REQUEST: 1331*3deb3ec6SMatthias Ringwald setup->sm_m_preq.code = SM_CODE_PAIRING_REQUEST; 1332*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_PH1_W4_PAIRING_RESPONSE; 1333*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) &setup->sm_m_preq, sizeof(sm_pairing_packet_t)); 1334*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1335*3deb3ec6SMatthias Ringwald break; 1336*3deb3ec6SMatthias Ringwald 1337*3deb3ec6SMatthias Ringwald // responder side 1338*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH0_SEND_LTK_REQUESTED_NEGATIVE_REPLY: 1339*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_IDLE; 1340*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_long_term_key_negative_reply, connection->sm_handle); 1341*3deb3ec6SMatthias Ringwald return; 1342*3deb3ec6SMatthias Ringwald 1343*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH1_SEND_PAIRING_RESPONSE: 1344*3deb3ec6SMatthias Ringwald // echo initiator for now 1345*3deb3ec6SMatthias Ringwald setup->sm_s_pres.code = SM_CODE_PAIRING_RESPONSE; 1346*3deb3ec6SMatthias Ringwald key_distribution_flags = sm_key_distribution_flags_for_auth_req(); 1347*3deb3ec6SMatthias Ringwald setup->sm_s_pres.initiator_key_distribution = setup->sm_m_preq.initiator_key_distribution & key_distribution_flags; 1348*3deb3ec6SMatthias Ringwald setup->sm_s_pres.responder_key_distribution = setup->sm_m_preq.responder_key_distribution & key_distribution_flags; 1349*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH1_W4_PAIRING_CONFIRM; 1350*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) &setup->sm_s_pres, sizeof(sm_pairing_packet_t)); 1351*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1352*3deb3ec6SMatthias Ringwald sm_trigger_user_response(connection); 1353*3deb3ec6SMatthias Ringwald return; 1354*3deb3ec6SMatthias Ringwald 1355*3deb3ec6SMatthias Ringwald case SM_PH2_SEND_PAIRING_RANDOM: { 1356*3deb3ec6SMatthias Ringwald uint8_t buffer[17]; 1357*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_PAIRING_RANDOM; 1358*3deb3ec6SMatthias Ringwald swap128(setup->sm_local_random, &buffer[1]); 1359*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1360*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH2_W4_LTK_REQUEST; 1361*3deb3ec6SMatthias Ringwald } else { 1362*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_PH2_W4_PAIRING_RANDOM; 1363*3deb3ec6SMatthias Ringwald } 1364*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1365*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1366*3deb3ec6SMatthias Ringwald break; 1367*3deb3ec6SMatthias Ringwald } 1368*3deb3ec6SMatthias Ringwald 1369*3deb3ec6SMatthias Ringwald case SM_PH2_GET_RANDOM_TK: 1370*3deb3ec6SMatthias Ringwald case SM_PH2_C1_GET_RANDOM_A: 1371*3deb3ec6SMatthias Ringwald case SM_PH2_C1_GET_RANDOM_B: 1372*3deb3ec6SMatthias Ringwald case SM_PH3_GET_RANDOM: 1373*3deb3ec6SMatthias Ringwald case SM_PH3_GET_DIV: 1374*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1375*3deb3ec6SMatthias Ringwald sm_random_start(connection); 1376*3deb3ec6SMatthias Ringwald return; 1377*3deb3ec6SMatthias Ringwald 1378*3deb3ec6SMatthias Ringwald case SM_PH2_C1_GET_ENC_B: 1379*3deb3ec6SMatthias Ringwald case SM_PH2_C1_GET_ENC_D: 1380*3deb3ec6SMatthias Ringwald // already busy? 1381*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1382*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1383*3deb3ec6SMatthias Ringwald sm_aes128_start(setup->sm_tk, setup->sm_c1_t3_value, connection); 1384*3deb3ec6SMatthias Ringwald return; 1385*3deb3ec6SMatthias Ringwald 1386*3deb3ec6SMatthias Ringwald case SM_PH3_LTK_GET_ENC: 1387*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH4_LTK_GET_ENC: 1388*3deb3ec6SMatthias Ringwald // already busy? 1389*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_IDLE) { 1390*3deb3ec6SMatthias Ringwald sm_key_t d_prime; 1391*3deb3ec6SMatthias Ringwald sm_d1_d_prime(setup->sm_local_div, 0, d_prime); 1392*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1393*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_er, d_prime, connection); 1394*3deb3ec6SMatthias Ringwald return; 1395*3deb3ec6SMatthias Ringwald } 1396*3deb3ec6SMatthias Ringwald break; 1397*3deb3ec6SMatthias Ringwald 1398*3deb3ec6SMatthias Ringwald case SM_PH3_CSRK_GET_ENC: 1399*3deb3ec6SMatthias Ringwald // already busy? 1400*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_IDLE) { 1401*3deb3ec6SMatthias Ringwald sm_key_t d_prime; 1402*3deb3ec6SMatthias Ringwald sm_d1_d_prime(setup->sm_local_div, 1, d_prime); 1403*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1404*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_er, d_prime, connection); 1405*3deb3ec6SMatthias Ringwald return; 1406*3deb3ec6SMatthias Ringwald } 1407*3deb3ec6SMatthias Ringwald break; 1408*3deb3ec6SMatthias Ringwald 1409*3deb3ec6SMatthias Ringwald case SM_PH2_C1_GET_ENC_C: 1410*3deb3ec6SMatthias Ringwald // already busy? 1411*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1412*3deb3ec6SMatthias Ringwald // calculate m_confirm using aes128 engine - step 1 1413*3deb3ec6SMatthias Ringwald sm_c1_t1(setup->sm_peer_random, (uint8_t*) &setup->sm_m_preq, (uint8_t*) &setup->sm_s_pres, setup->sm_m_addr_type, setup->sm_s_addr_type, plaintext); 1414*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1415*3deb3ec6SMatthias Ringwald sm_aes128_start(setup->sm_tk, plaintext, connection); 1416*3deb3ec6SMatthias Ringwald break; 1417*3deb3ec6SMatthias Ringwald case SM_PH2_C1_GET_ENC_A: 1418*3deb3ec6SMatthias Ringwald // already busy? 1419*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1420*3deb3ec6SMatthias Ringwald // calculate confirm using aes128 engine - step 1 1421*3deb3ec6SMatthias Ringwald sm_c1_t1(setup->sm_local_random, (uint8_t*) &setup->sm_m_preq, (uint8_t*) &setup->sm_s_pres, setup->sm_m_addr_type, setup->sm_s_addr_type, plaintext); 1422*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1423*3deb3ec6SMatthias Ringwald sm_aes128_start(setup->sm_tk, plaintext, connection); 1424*3deb3ec6SMatthias Ringwald break; 1425*3deb3ec6SMatthias Ringwald case SM_PH2_CALC_STK: 1426*3deb3ec6SMatthias Ringwald // already busy? 1427*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1428*3deb3ec6SMatthias Ringwald // calculate STK 1429*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1430*3deb3ec6SMatthias Ringwald sm_s1_r_prime(setup->sm_local_random, setup->sm_peer_random, plaintext); 1431*3deb3ec6SMatthias Ringwald } else { 1432*3deb3ec6SMatthias Ringwald sm_s1_r_prime(setup->sm_peer_random, setup->sm_local_random, plaintext); 1433*3deb3ec6SMatthias Ringwald } 1434*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1435*3deb3ec6SMatthias Ringwald sm_aes128_start(setup->sm_tk, plaintext, connection); 1436*3deb3ec6SMatthias Ringwald break; 1437*3deb3ec6SMatthias Ringwald case SM_PH3_Y_GET_ENC: 1438*3deb3ec6SMatthias Ringwald // already busy? 1439*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1440*3deb3ec6SMatthias Ringwald // PH3B2 - calculate Y from - enc 1441*3deb3ec6SMatthias Ringwald // Y = dm(DHK, Rand) 1442*3deb3ec6SMatthias Ringwald sm_dm_r_prime(setup->sm_local_rand, plaintext); 1443*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1444*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_dhk, plaintext, connection); 1445*3deb3ec6SMatthias Ringwald return; 1446*3deb3ec6SMatthias Ringwald case SM_PH2_C1_SEND_PAIRING_CONFIRM: { 1447*3deb3ec6SMatthias Ringwald uint8_t buffer[17]; 1448*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_PAIRING_CONFIRM; 1449*3deb3ec6SMatthias Ringwald swap128(setup->sm_local_confirm, &buffer[1]); 1450*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1451*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH2_W4_PAIRING_RANDOM; 1452*3deb3ec6SMatthias Ringwald } else { 1453*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_PH2_W4_PAIRING_CONFIRM; 1454*3deb3ec6SMatthias Ringwald } 1455*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1456*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1457*3deb3ec6SMatthias Ringwald return; 1458*3deb3ec6SMatthias Ringwald } 1459*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH2_SEND_LTK_REPLY: { 1460*3deb3ec6SMatthias Ringwald sm_key_t stk_flipped; 1461*3deb3ec6SMatthias Ringwald swap128(setup->sm_ltk, stk_flipped); 1462*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_W4_CONNECTION_ENCRYPTED; 1463*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_long_term_key_request_reply, connection->sm_handle, stk_flipped); 1464*3deb3ec6SMatthias Ringwald return; 1465*3deb3ec6SMatthias Ringwald } 1466*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH3_SEND_START_ENCRYPTION: { 1467*3deb3ec6SMatthias Ringwald sm_key_t stk_flipped; 1468*3deb3ec6SMatthias Ringwald swap128(setup->sm_ltk, stk_flipped); 1469*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_W4_CONNECTION_ENCRYPTED; 1470*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_start_encryption, connection->sm_handle, 0, 0, 0, stk_flipped); 1471*3deb3ec6SMatthias Ringwald return; 1472*3deb3ec6SMatthias Ringwald } 1473*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH4_SEND_LTK: { 1474*3deb3ec6SMatthias Ringwald sm_key_t ltk_flipped; 1475*3deb3ec6SMatthias Ringwald swap128(setup->sm_ltk, ltk_flipped); 1476*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_IDLE; 1477*3deb3ec6SMatthias Ringwald hci_send_cmd(&hci_le_long_term_key_request_reply, connection->sm_handle, ltk_flipped); 1478*3deb3ec6SMatthias Ringwald return; 1479*3deb3ec6SMatthias Ringwald } 1480*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH4_Y_GET_ENC: 1481*3deb3ec6SMatthias Ringwald // already busy? 1482*3deb3ec6SMatthias Ringwald if (sm_aes128_state == SM_AES128_ACTIVE) break; 1483*3deb3ec6SMatthias Ringwald log_info("LTK Request: recalculating with ediv 0x%04x", setup->sm_local_ediv); 1484*3deb3ec6SMatthias Ringwald // Y = dm(DHK, Rand) 1485*3deb3ec6SMatthias Ringwald sm_dm_r_prime(setup->sm_local_rand, plaintext); 1486*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1487*3deb3ec6SMatthias Ringwald sm_aes128_start(sm_persistent_dhk, plaintext, connection); 1488*3deb3ec6SMatthias Ringwald return; 1489*3deb3ec6SMatthias Ringwald 1490*3deb3ec6SMatthias Ringwald case SM_PH3_DISTRIBUTE_KEYS: 1491*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set & SM_KEYDIST_FLAG_ENCRYPTION_INFORMATION){ 1492*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_send_set &= ~SM_KEYDIST_FLAG_ENCRYPTION_INFORMATION; 1493*3deb3ec6SMatthias Ringwald uint8_t buffer[17]; 1494*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_ENCRYPTION_INFORMATION; 1495*3deb3ec6SMatthias Ringwald swap128(setup->sm_ltk, &buffer[1]); 1496*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1497*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1498*3deb3ec6SMatthias Ringwald return; 1499*3deb3ec6SMatthias Ringwald } 1500*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set & SM_KEYDIST_FLAG_MASTER_IDENTIFICATION){ 1501*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_send_set &= ~SM_KEYDIST_FLAG_MASTER_IDENTIFICATION; 1502*3deb3ec6SMatthias Ringwald uint8_t buffer[11]; 1503*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_MASTER_IDENTIFICATION; 1504*3deb3ec6SMatthias Ringwald bt_store_16(buffer, 1, setup->sm_local_ediv); 1505*3deb3ec6SMatthias Ringwald swap64(setup->sm_local_rand, &buffer[3]); 1506*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1507*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1508*3deb3ec6SMatthias Ringwald return; 1509*3deb3ec6SMatthias Ringwald } 1510*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set & SM_KEYDIST_FLAG_IDENTITY_INFORMATION){ 1511*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_send_set &= ~SM_KEYDIST_FLAG_IDENTITY_INFORMATION; 1512*3deb3ec6SMatthias Ringwald uint8_t buffer[17]; 1513*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_IDENTITY_INFORMATION; 1514*3deb3ec6SMatthias Ringwald swap128(sm_persistent_irk, &buffer[1]); 1515*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1516*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1517*3deb3ec6SMatthias Ringwald return; 1518*3deb3ec6SMatthias Ringwald } 1519*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set & SM_KEYDIST_FLAG_IDENTITY_ADDRESS_INFORMATION){ 1520*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_send_set &= ~SM_KEYDIST_FLAG_IDENTITY_ADDRESS_INFORMATION; 1521*3deb3ec6SMatthias Ringwald bd_addr_t local_address; 1522*3deb3ec6SMatthias Ringwald uint8_t buffer[8]; 1523*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_IDENTITY_ADDRESS_INFORMATION; 1524*3deb3ec6SMatthias Ringwald hci_le_advertisement_address(&buffer[1], local_address); 1525*3deb3ec6SMatthias Ringwald bt_flip_addr(&buffer[2], local_address); 1526*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1527*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1528*3deb3ec6SMatthias Ringwald return; 1529*3deb3ec6SMatthias Ringwald } 1530*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set & SM_KEYDIST_FLAG_SIGNING_IDENTIFICATION){ 1531*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_send_set &= ~SM_KEYDIST_FLAG_SIGNING_IDENTIFICATION; 1532*3deb3ec6SMatthias Ringwald 1533*3deb3ec6SMatthias Ringwald // hack to reproduce test runs 1534*3deb3ec6SMatthias Ringwald if (test_use_fixed_local_csrk){ 1535*3deb3ec6SMatthias Ringwald memset(setup->sm_local_csrk, 0xcc, 16); 1536*3deb3ec6SMatthias Ringwald } 1537*3deb3ec6SMatthias Ringwald 1538*3deb3ec6SMatthias Ringwald uint8_t buffer[17]; 1539*3deb3ec6SMatthias Ringwald buffer[0] = SM_CODE_SIGNING_INFORMATION; 1540*3deb3ec6SMatthias Ringwald swap128(setup->sm_local_csrk, &buffer[1]); 1541*3deb3ec6SMatthias Ringwald l2cap_send_connectionless(connection->sm_handle, L2CAP_CID_SECURITY_MANAGER_PROTOCOL, (uint8_t*) buffer, sizeof(buffer)); 1542*3deb3ec6SMatthias Ringwald sm_timeout_reset(connection); 1543*3deb3ec6SMatthias Ringwald return; 1544*3deb3ec6SMatthias Ringwald } 1545*3deb3ec6SMatthias Ringwald 1546*3deb3ec6SMatthias Ringwald // keys are sent 1547*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1548*3deb3ec6SMatthias Ringwald // slave -> receive master keys if any 1549*3deb3ec6SMatthias Ringwald if (sm_key_distribution_all_received(connection)){ 1550*3deb3ec6SMatthias Ringwald sm_key_distribution_handle_all_received(connection); 1551*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_IDLE; 1552*3deb3ec6SMatthias Ringwald sm_done_for_handle(connection->sm_handle); 1553*3deb3ec6SMatthias Ringwald } else { 1554*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_RECEIVE_KEYS; 1555*3deb3ec6SMatthias Ringwald } 1556*3deb3ec6SMatthias Ringwald } else { 1557*3deb3ec6SMatthias Ringwald // master -> all done 1558*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_CONNECTED; 1559*3deb3ec6SMatthias Ringwald sm_done_for_handle(connection->sm_handle); 1560*3deb3ec6SMatthias Ringwald } 1561*3deb3ec6SMatthias Ringwald break; 1562*3deb3ec6SMatthias Ringwald 1563*3deb3ec6SMatthias Ringwald default: 1564*3deb3ec6SMatthias Ringwald break; 1565*3deb3ec6SMatthias Ringwald } 1566*3deb3ec6SMatthias Ringwald 1567*3deb3ec6SMatthias Ringwald // check again if active connection was released 1568*3deb3ec6SMatthias Ringwald if (sm_active_connection) break; 1569*3deb3ec6SMatthias Ringwald } 1570*3deb3ec6SMatthias Ringwald } 1571*3deb3ec6SMatthias Ringwald 1572*3deb3ec6SMatthias Ringwald // note: aes engine is ready as we just got the aes result 1573*3deb3ec6SMatthias Ringwald static void sm_handle_encryption_result(uint8_t * data){ 1574*3deb3ec6SMatthias Ringwald 1575*3deb3ec6SMatthias Ringwald sm_aes128_state = SM_AES128_IDLE; 1576*3deb3ec6SMatthias Ringwald 1577*3deb3ec6SMatthias Ringwald if (sm_address_resolution_ah_calculation_active){ 1578*3deb3ec6SMatthias Ringwald sm_address_resolution_ah_calculation_active = 0; 1579*3deb3ec6SMatthias Ringwald // compare calulated address against connecting device 1580*3deb3ec6SMatthias Ringwald uint8_t hash[3]; 1581*3deb3ec6SMatthias Ringwald swap24(data, hash); 1582*3deb3ec6SMatthias Ringwald if (memcmp(&sm_address_resolution_address[3], hash, 3) == 0){ 1583*3deb3ec6SMatthias Ringwald log_info("LE Device Lookup: matched resolvable private address"); 1584*3deb3ec6SMatthias Ringwald sm_address_resolution_handle_event(ADDRESS_RESOLUTION_SUCEEDED); 1585*3deb3ec6SMatthias Ringwald return; 1586*3deb3ec6SMatthias Ringwald } 1587*3deb3ec6SMatthias Ringwald // no match, try next 1588*3deb3ec6SMatthias Ringwald sm_address_resolution_test++; 1589*3deb3ec6SMatthias Ringwald return; 1590*3deb3ec6SMatthias Ringwald } 1591*3deb3ec6SMatthias Ringwald 1592*3deb3ec6SMatthias Ringwald switch (dkg_state){ 1593*3deb3ec6SMatthias Ringwald case DKG_W4_IRK: 1594*3deb3ec6SMatthias Ringwald swap128(data, sm_persistent_irk); 1595*3deb3ec6SMatthias Ringwald log_key("irk", sm_persistent_irk); 1596*3deb3ec6SMatthias Ringwald dkg_next_state(); 1597*3deb3ec6SMatthias Ringwald return; 1598*3deb3ec6SMatthias Ringwald case DKG_W4_DHK: 1599*3deb3ec6SMatthias Ringwald swap128(data, sm_persistent_dhk); 1600*3deb3ec6SMatthias Ringwald log_key("dhk", sm_persistent_dhk); 1601*3deb3ec6SMatthias Ringwald dkg_next_state(); 1602*3deb3ec6SMatthias Ringwald 1603*3deb3ec6SMatthias Ringwald // SM INIT FINISHED, start application code - TODO untangle that 1604*3deb3ec6SMatthias Ringwald if (sm_client_packet_handler) 1605*3deb3ec6SMatthias Ringwald { 1606*3deb3ec6SMatthias Ringwald uint8_t event[] = { BTSTACK_EVENT_STATE, 1, HCI_STATE_WORKING }; 1607*3deb3ec6SMatthias Ringwald sm_client_packet_handler(HCI_EVENT_PACKET, 0, (uint8_t*) event, sizeof(event)); 1608*3deb3ec6SMatthias Ringwald } 1609*3deb3ec6SMatthias Ringwald return; 1610*3deb3ec6SMatthias Ringwald default: 1611*3deb3ec6SMatthias Ringwald break; 1612*3deb3ec6SMatthias Ringwald } 1613*3deb3ec6SMatthias Ringwald 1614*3deb3ec6SMatthias Ringwald switch (rau_state){ 1615*3deb3ec6SMatthias Ringwald case RAU_W4_ENC: 1616*3deb3ec6SMatthias Ringwald swap24(data, &sm_random_address[3]); 1617*3deb3ec6SMatthias Ringwald rau_next_state(); 1618*3deb3ec6SMatthias Ringwald return; 1619*3deb3ec6SMatthias Ringwald default: 1620*3deb3ec6SMatthias Ringwald break; 1621*3deb3ec6SMatthias Ringwald } 1622*3deb3ec6SMatthias Ringwald 1623*3deb3ec6SMatthias Ringwald switch (sm_cmac_state){ 1624*3deb3ec6SMatthias Ringwald case CMAC_W4_SUBKEYS: 1625*3deb3ec6SMatthias Ringwald case CMAC_W4_MI: 1626*3deb3ec6SMatthias Ringwald case CMAC_W4_MLAST: 1627*3deb3ec6SMatthias Ringwald { 1628*3deb3ec6SMatthias Ringwald sm_key_t t; 1629*3deb3ec6SMatthias Ringwald swap128(data, t); 1630*3deb3ec6SMatthias Ringwald sm_cmac_handle_encryption_result(t); 1631*3deb3ec6SMatthias Ringwald } 1632*3deb3ec6SMatthias Ringwald return; 1633*3deb3ec6SMatthias Ringwald default: 1634*3deb3ec6SMatthias Ringwald break; 1635*3deb3ec6SMatthias Ringwald } 1636*3deb3ec6SMatthias Ringwald 1637*3deb3ec6SMatthias Ringwald // retrieve sm_connection provided to sm_aes128_start_encryption 1638*3deb3ec6SMatthias Ringwald sm_connection_t * connection = (sm_connection_t*) sm_aes128_context; 1639*3deb3ec6SMatthias Ringwald if (!connection) return; 1640*3deb3ec6SMatthias Ringwald switch (connection->sm_engine_state){ 1641*3deb3ec6SMatthias Ringwald case SM_PH2_C1_W4_ENC_A: 1642*3deb3ec6SMatthias Ringwald case SM_PH2_C1_W4_ENC_C: 1643*3deb3ec6SMatthias Ringwald { 1644*3deb3ec6SMatthias Ringwald sm_key_t t2; 1645*3deb3ec6SMatthias Ringwald swap128(data, t2); 1646*3deb3ec6SMatthias Ringwald sm_c1_t3(t2, setup->sm_m_address, setup->sm_s_address, setup->sm_c1_t3_value); 1647*3deb3ec6SMatthias Ringwald } 1648*3deb3ec6SMatthias Ringwald sm_next_responding_state(connection); 1649*3deb3ec6SMatthias Ringwald return; 1650*3deb3ec6SMatthias Ringwald case SM_PH2_C1_W4_ENC_B: 1651*3deb3ec6SMatthias Ringwald swap128(data, setup->sm_local_confirm); 1652*3deb3ec6SMatthias Ringwald log_key("c1!", setup->sm_local_confirm); 1653*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_C1_SEND_PAIRING_CONFIRM; 1654*3deb3ec6SMatthias Ringwald return; 1655*3deb3ec6SMatthias Ringwald case SM_PH2_C1_W4_ENC_D: 1656*3deb3ec6SMatthias Ringwald { 1657*3deb3ec6SMatthias Ringwald sm_key_t peer_confirm_test; 1658*3deb3ec6SMatthias Ringwald swap128(data, peer_confirm_test); 1659*3deb3ec6SMatthias Ringwald log_key("c1!", peer_confirm_test); 1660*3deb3ec6SMatthias Ringwald if (memcmp(setup->sm_peer_confirm, peer_confirm_test, 16) != 0){ 1661*3deb3ec6SMatthias Ringwald setup->sm_pairing_failed_reason = SM_REASON_CONFIRM_VALUE_FAILED; 1662*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_GENERAL_SEND_PAIRING_FAILED; 1663*3deb3ec6SMatthias Ringwald return; 1664*3deb3ec6SMatthias Ringwald } 1665*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1666*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_SEND_PAIRING_RANDOM; 1667*3deb3ec6SMatthias Ringwald } else { 1668*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_CALC_STK; 1669*3deb3ec6SMatthias Ringwald } 1670*3deb3ec6SMatthias Ringwald } 1671*3deb3ec6SMatthias Ringwald return; 1672*3deb3ec6SMatthias Ringwald case SM_PH2_W4_STK: 1673*3deb3ec6SMatthias Ringwald swap128(data, setup->sm_ltk); 1674*3deb3ec6SMatthias Ringwald sm_truncate_key(setup->sm_ltk, connection->sm_actual_encryption_key_size); 1675*3deb3ec6SMatthias Ringwald log_key("stk", setup->sm_ltk); 1676*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1677*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH2_SEND_LTK_REPLY; 1678*3deb3ec6SMatthias Ringwald } else { 1679*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_PH3_SEND_START_ENCRYPTION; 1680*3deb3ec6SMatthias Ringwald } 1681*3deb3ec6SMatthias Ringwald return; 1682*3deb3ec6SMatthias Ringwald case SM_PH3_Y_W4_ENC:{ 1683*3deb3ec6SMatthias Ringwald sm_key_t y128; 1684*3deb3ec6SMatthias Ringwald swap128(data, y128); 1685*3deb3ec6SMatthias Ringwald setup->sm_local_y = READ_NET_16(y128, 14); 1686*3deb3ec6SMatthias Ringwald log_info_hex16("y", setup->sm_local_y); 1687*3deb3ec6SMatthias Ringwald // PH3B3 - calculate EDIV 1688*3deb3ec6SMatthias Ringwald setup->sm_local_ediv = setup->sm_local_y ^ setup->sm_local_div; 1689*3deb3ec6SMatthias Ringwald log_info_hex16("ediv", setup->sm_local_ediv); 1690*3deb3ec6SMatthias Ringwald // PH3B4 - calculate LTK - enc 1691*3deb3ec6SMatthias Ringwald // LTK = d1(ER, DIV, 0)) 1692*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_LTK_GET_ENC; 1693*3deb3ec6SMatthias Ringwald return; 1694*3deb3ec6SMatthias Ringwald } 1695*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH4_Y_W4_ENC:{ 1696*3deb3ec6SMatthias Ringwald sm_key_t y128; 1697*3deb3ec6SMatthias Ringwald swap128(data, y128); 1698*3deb3ec6SMatthias Ringwald setup->sm_local_y = READ_NET_16(y128, 14); 1699*3deb3ec6SMatthias Ringwald log_info_hex16("y", setup->sm_local_y); 1700*3deb3ec6SMatthias Ringwald 1701*3deb3ec6SMatthias Ringwald // PH3B3 - calculate DIV 1702*3deb3ec6SMatthias Ringwald setup->sm_local_div = setup->sm_local_y ^ setup->sm_local_ediv; 1703*3deb3ec6SMatthias Ringwald log_info_hex16("ediv", setup->sm_local_ediv); 1704*3deb3ec6SMatthias Ringwald // PH3B4 - calculate LTK - enc 1705*3deb3ec6SMatthias Ringwald // LTK = d1(ER, DIV, 0)) 1706*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH4_LTK_GET_ENC; 1707*3deb3ec6SMatthias Ringwald return; 1708*3deb3ec6SMatthias Ringwald } 1709*3deb3ec6SMatthias Ringwald case SM_PH3_LTK_W4_ENC: 1710*3deb3ec6SMatthias Ringwald swap128(data, setup->sm_ltk); 1711*3deb3ec6SMatthias Ringwald log_key("ltk", setup->sm_ltk); 1712*3deb3ec6SMatthias Ringwald // calc CSRK next 1713*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_CSRK_GET_ENC; 1714*3deb3ec6SMatthias Ringwald return; 1715*3deb3ec6SMatthias Ringwald case SM_PH3_CSRK_W4_ENC: 1716*3deb3ec6SMatthias Ringwald swap128(data, setup->sm_local_csrk); 1717*3deb3ec6SMatthias Ringwald log_key("csrk", setup->sm_local_csrk); 1718*3deb3ec6SMatthias Ringwald if (setup->sm_key_distribution_send_set){ 1719*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_DISTRIBUTE_KEYS; 1720*3deb3ec6SMatthias Ringwald } else { 1721*3deb3ec6SMatthias Ringwald // no keys to send, just continue 1722*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1723*3deb3ec6SMatthias Ringwald // slave -> receive master keys 1724*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_RECEIVE_KEYS; 1725*3deb3ec6SMatthias Ringwald } else { 1726*3deb3ec6SMatthias Ringwald // master -> all done 1727*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_INITIATOR_CONNECTED; 1728*3deb3ec6SMatthias Ringwald sm_done_for_handle(connection->sm_handle); 1729*3deb3ec6SMatthias Ringwald } 1730*3deb3ec6SMatthias Ringwald } 1731*3deb3ec6SMatthias Ringwald return; 1732*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH4_LTK_W4_ENC: 1733*3deb3ec6SMatthias Ringwald swap128(data, setup->sm_ltk); 1734*3deb3ec6SMatthias Ringwald sm_truncate_key(setup->sm_ltk, connection->sm_actual_encryption_key_size); 1735*3deb3ec6SMatthias Ringwald log_key("ltk", setup->sm_ltk); 1736*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH4_SEND_LTK; 1737*3deb3ec6SMatthias Ringwald return; 1738*3deb3ec6SMatthias Ringwald default: 1739*3deb3ec6SMatthias Ringwald break; 1740*3deb3ec6SMatthias Ringwald } 1741*3deb3ec6SMatthias Ringwald } 1742*3deb3ec6SMatthias Ringwald 1743*3deb3ec6SMatthias Ringwald // note: random generator is ready. this doesn NOT imply that aes engine is unused! 1744*3deb3ec6SMatthias Ringwald static void sm_handle_random_result(uint8_t * data){ 1745*3deb3ec6SMatthias Ringwald 1746*3deb3ec6SMatthias Ringwald switch (rau_state){ 1747*3deb3ec6SMatthias Ringwald case RAU_W4_RANDOM: 1748*3deb3ec6SMatthias Ringwald // non-resolvable vs. resolvable 1749*3deb3ec6SMatthias Ringwald switch (gap_random_adress_type){ 1750*3deb3ec6SMatthias Ringwald case GAP_RANDOM_ADDRESS_RESOLVABLE: 1751*3deb3ec6SMatthias Ringwald // resolvable: use random as prand and calc address hash 1752*3deb3ec6SMatthias Ringwald // "The two most significant bits of prand shall be equal to ‘0’ and ‘1" 1753*3deb3ec6SMatthias Ringwald memcpy(sm_random_address, data, 3); 1754*3deb3ec6SMatthias Ringwald sm_random_address[0] &= 0x3f; 1755*3deb3ec6SMatthias Ringwald sm_random_address[0] |= 0x40; 1756*3deb3ec6SMatthias Ringwald rau_state = RAU_GET_ENC; 1757*3deb3ec6SMatthias Ringwald break; 1758*3deb3ec6SMatthias Ringwald case GAP_RANDOM_ADDRESS_NON_RESOLVABLE: 1759*3deb3ec6SMatthias Ringwald default: 1760*3deb3ec6SMatthias Ringwald // "The two most significant bits of the address shall be equal to ‘0’"" 1761*3deb3ec6SMatthias Ringwald memcpy(sm_random_address, data, 6); 1762*3deb3ec6SMatthias Ringwald sm_random_address[0] &= 0x3f; 1763*3deb3ec6SMatthias Ringwald rau_state = RAU_SET_ADDRESS; 1764*3deb3ec6SMatthias Ringwald break; 1765*3deb3ec6SMatthias Ringwald } 1766*3deb3ec6SMatthias Ringwald return; 1767*3deb3ec6SMatthias Ringwald default: 1768*3deb3ec6SMatthias Ringwald break; 1769*3deb3ec6SMatthias Ringwald } 1770*3deb3ec6SMatthias Ringwald 1771*3deb3ec6SMatthias Ringwald // retrieve sm_connection provided to sm_random_start 1772*3deb3ec6SMatthias Ringwald sm_connection_t * connection = (sm_connection_t *) sm_random_context; 1773*3deb3ec6SMatthias Ringwald if (!connection) return; 1774*3deb3ec6SMatthias Ringwald switch (connection->sm_engine_state){ 1775*3deb3ec6SMatthias Ringwald case SM_PH2_W4_RANDOM_TK: 1776*3deb3ec6SMatthias Ringwald { 1777*3deb3ec6SMatthias Ringwald // map random to 0-999999 without speding much cycles on a modulus operation 1778*3deb3ec6SMatthias Ringwald uint32_t tk = READ_BT_32(data,0); 1779*3deb3ec6SMatthias Ringwald tk = tk & 0xfffff; // 1048575 1780*3deb3ec6SMatthias Ringwald if (tk >= 999999){ 1781*3deb3ec6SMatthias Ringwald tk = tk - 999999; 1782*3deb3ec6SMatthias Ringwald } 1783*3deb3ec6SMatthias Ringwald sm_reset_tk(); 1784*3deb3ec6SMatthias Ringwald net_store_32(setup->sm_tk, 12, tk); 1785*3deb3ec6SMatthias Ringwald if (connection->sm_role){ 1786*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_RESPONDER_PH1_SEND_PAIRING_RESPONSE; 1787*3deb3ec6SMatthias Ringwald } else { 1788*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH1_W4_USER_RESPONSE; 1789*3deb3ec6SMatthias Ringwald sm_trigger_user_response(connection); 1790*3deb3ec6SMatthias Ringwald // response_idle == nothing <--> sm_trigger_user_response() did not require response 1791*3deb3ec6SMatthias Ringwald if (setup->sm_user_response == SM_USER_RESPONSE_IDLE){ 1792*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_C1_GET_RANDOM_A; 1793*3deb3ec6SMatthias Ringwald } 1794*3deb3ec6SMatthias Ringwald } 1795*3deb3ec6SMatthias Ringwald return; 1796*3deb3ec6SMatthias Ringwald } 1797*3deb3ec6SMatthias Ringwald case SM_PH2_C1_W4_RANDOM_A: 1798*3deb3ec6SMatthias Ringwald memcpy(&setup->sm_local_random[0], data, 8); // random endinaness 1799*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_C1_GET_RANDOM_B; 1800*3deb3ec6SMatthias Ringwald return; 1801*3deb3ec6SMatthias Ringwald case SM_PH2_C1_W4_RANDOM_B: 1802*3deb3ec6SMatthias Ringwald memcpy(&setup->sm_local_random[8], data, 8); // random endinaness 1803*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH2_C1_GET_ENC_A; 1804*3deb3ec6SMatthias Ringwald return; 1805*3deb3ec6SMatthias Ringwald case SM_PH3_W4_RANDOM: 1806*3deb3ec6SMatthias Ringwald swap64(data, setup->sm_local_rand); 1807*3deb3ec6SMatthias Ringwald // no db for encryption size hack: encryption size is stored in lowest nibble of setup->sm_local_rand 1808*3deb3ec6SMatthias Ringwald setup->sm_local_rand[7] = (setup->sm_local_rand[7] & 0xf0) + (connection->sm_actual_encryption_key_size - 1); 1809*3deb3ec6SMatthias Ringwald // no db for authenticated flag hack: store flag in bit 4 of LSB 1810*3deb3ec6SMatthias Ringwald setup->sm_local_rand[7] = (setup->sm_local_rand[7] & 0xef) + (connection->sm_connection_authenticated << 4); 1811*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_GET_DIV; 1812*3deb3ec6SMatthias Ringwald return; 1813*3deb3ec6SMatthias Ringwald case SM_PH3_W4_DIV: 1814*3deb3ec6SMatthias Ringwald // use 16 bit from random value as div 1815*3deb3ec6SMatthias Ringwald setup->sm_local_div = READ_NET_16(data, 0); 1816*3deb3ec6SMatthias Ringwald log_info_hex16("div", setup->sm_local_div); 1817*3deb3ec6SMatthias Ringwald connection->sm_engine_state = SM_PH3_Y_GET_ENC; 1818*3deb3ec6SMatthias Ringwald return; 1819*3deb3ec6SMatthias Ringwald default: 1820*3deb3ec6SMatthias Ringwald break; 1821*3deb3ec6SMatthias Ringwald } 1822*3deb3ec6SMatthias Ringwald } 1823*3deb3ec6SMatthias Ringwald 1824*3deb3ec6SMatthias Ringwald static void sm_event_packet_handler (uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size){ 1825*3deb3ec6SMatthias Ringwald 1826*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn; 1827*3deb3ec6SMatthias Ringwald uint16_t handle; 1828*3deb3ec6SMatthias Ringwald 1829*3deb3ec6SMatthias Ringwald switch (packet_type) { 1830*3deb3ec6SMatthias Ringwald 1831*3deb3ec6SMatthias Ringwald case HCI_EVENT_PACKET: 1832*3deb3ec6SMatthias Ringwald switch (packet[0]) { 1833*3deb3ec6SMatthias Ringwald 1834*3deb3ec6SMatthias Ringwald case BTSTACK_EVENT_STATE: 1835*3deb3ec6SMatthias Ringwald // bt stack activated, get started 1836*3deb3ec6SMatthias Ringwald if (packet[2] == HCI_STATE_WORKING) { 1837*3deb3ec6SMatthias Ringwald log_info("HCI Working!"); 1838*3deb3ec6SMatthias Ringwald dkg_state = sm_persistent_irk_ready ? DKG_CALC_DHK : DKG_CALC_IRK; 1839*3deb3ec6SMatthias Ringwald rau_state = RAU_IDLE; 1840*3deb3ec6SMatthias Ringwald 1841*3deb3ec6SMatthias Ringwald sm_run(); 1842*3deb3ec6SMatthias Ringwald return; // don't notify app packet handler just yet 1843*3deb3ec6SMatthias Ringwald } 1844*3deb3ec6SMatthias Ringwald break; 1845*3deb3ec6SMatthias Ringwald 1846*3deb3ec6SMatthias Ringwald case HCI_EVENT_LE_META: 1847*3deb3ec6SMatthias Ringwald switch (packet[2]) { 1848*3deb3ec6SMatthias Ringwald case HCI_SUBEVENT_LE_CONNECTION_COMPLETE: 1849*3deb3ec6SMatthias Ringwald 1850*3deb3ec6SMatthias Ringwald log_info("sm: connected"); 1851*3deb3ec6SMatthias Ringwald 1852*3deb3ec6SMatthias Ringwald if (packet[3]) return; // connection failed 1853*3deb3ec6SMatthias Ringwald 1854*3deb3ec6SMatthias Ringwald handle = READ_BT_16(packet, 4); 1855*3deb3ec6SMatthias Ringwald sm_conn = sm_get_connection_for_handle(handle); 1856*3deb3ec6SMatthias Ringwald if (!sm_conn) break; 1857*3deb3ec6SMatthias Ringwald 1858*3deb3ec6SMatthias Ringwald sm_conn->sm_handle = handle; 1859*3deb3ec6SMatthias Ringwald sm_conn->sm_role = packet[6]; 1860*3deb3ec6SMatthias Ringwald sm_conn->sm_peer_addr_type = packet[7]; 1861*3deb3ec6SMatthias Ringwald bt_flip_addr(sm_conn->sm_peer_address, &packet[8]); 1862*3deb3ec6SMatthias Ringwald 1863*3deb3ec6SMatthias Ringwald log_info("New sm_conn, role %s", sm_conn->sm_role ? "slave" : "master"); 1864*3deb3ec6SMatthias Ringwald 1865*3deb3ec6SMatthias Ringwald // reset security properties 1866*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_encrypted = 0; 1867*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_authenticated = 0; 1868*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_authorization_state = AUTHORIZATION_UNKNOWN; 1869*3deb3ec6SMatthias Ringwald sm_conn->sm_le_db_index = -1; 1870*3deb3ec6SMatthias Ringwald 1871*3deb3ec6SMatthias Ringwald // prepare CSRK lookup (does not involve setup) 1872*3deb3ec6SMatthias Ringwald sm_conn->sm_irk_lookup_state = IRK_LOOKUP_W4_READY; 1873*3deb3ec6SMatthias Ringwald 1874*3deb3ec6SMatthias Ringwald // just connected -> everything else happens in sm_run() 1875*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 1876*3deb3ec6SMatthias Ringwald // slave - state already could be SM_RESPONDER_SEND_SECURITY_REQUEST instead 1877*3deb3ec6SMatthias Ringwald if (sm_conn->sm_engine_state == SM_GENERAL_IDLE){ 1878*3deb3ec6SMatthias Ringwald if (sm_slave_request_security) { 1879*3deb3ec6SMatthias Ringwald // request security if requested by app 1880*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_SEND_SECURITY_REQUEST; 1881*3deb3ec6SMatthias Ringwald } else { 1882*3deb3ec6SMatthias Ringwald // otherwise, wait for pairing request 1883*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_IDLE; 1884*3deb3ec6SMatthias Ringwald } 1885*3deb3ec6SMatthias Ringwald } 1886*3deb3ec6SMatthias Ringwald break; 1887*3deb3ec6SMatthias Ringwald } else { 1888*3deb3ec6SMatthias Ringwald // master 1889*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_CONNECTED; 1890*3deb3ec6SMatthias Ringwald } 1891*3deb3ec6SMatthias Ringwald break; 1892*3deb3ec6SMatthias Ringwald 1893*3deb3ec6SMatthias Ringwald case HCI_SUBEVENT_LE_LONG_TERM_KEY_REQUEST: 1894*3deb3ec6SMatthias Ringwald handle = READ_BT_16(packet, 3); 1895*3deb3ec6SMatthias Ringwald sm_conn = sm_get_connection_for_handle(handle); 1896*3deb3ec6SMatthias Ringwald if (!sm_conn) break; 1897*3deb3ec6SMatthias Ringwald 1898*3deb3ec6SMatthias Ringwald log_info("LTK Request: state %u", sm_conn->sm_engine_state); 1899*3deb3ec6SMatthias Ringwald if (sm_conn->sm_engine_state == SM_RESPONDER_PH2_W4_LTK_REQUEST){ 1900*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_CALC_STK; 1901*3deb3ec6SMatthias Ringwald break; 1902*3deb3ec6SMatthias Ringwald } 1903*3deb3ec6SMatthias Ringwald 1904*3deb3ec6SMatthias Ringwald // assume that we don't have a LTK for ediv == 0 and random == null 1905*3deb3ec6SMatthias Ringwald if (READ_BT_16(packet, 13) == 0 && sm_is_null_random(&packet[5])){ 1906*3deb3ec6SMatthias Ringwald log_info("LTK Request: ediv & random are empty"); 1907*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_PH0_SEND_LTK_REQUESTED_NEGATIVE_REPLY; 1908*3deb3ec6SMatthias Ringwald break; 1909*3deb3ec6SMatthias Ringwald } 1910*3deb3ec6SMatthias Ringwald 1911*3deb3ec6SMatthias Ringwald // store rand and ediv 1912*3deb3ec6SMatthias Ringwald swap64(&packet[5], sm_conn->sm_local_rand); 1913*3deb3ec6SMatthias Ringwald sm_conn->sm_local_ediv = READ_BT_16(packet, 13); 1914*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_PH0_RECEIVED_LTK; 1915*3deb3ec6SMatthias Ringwald break; 1916*3deb3ec6SMatthias Ringwald 1917*3deb3ec6SMatthias Ringwald default: 1918*3deb3ec6SMatthias Ringwald break; 1919*3deb3ec6SMatthias Ringwald } 1920*3deb3ec6SMatthias Ringwald break; 1921*3deb3ec6SMatthias Ringwald 1922*3deb3ec6SMatthias Ringwald case HCI_EVENT_ENCRYPTION_CHANGE: 1923*3deb3ec6SMatthias Ringwald handle = READ_BT_16(packet, 3); 1924*3deb3ec6SMatthias Ringwald sm_conn = sm_get_connection_for_handle(handle); 1925*3deb3ec6SMatthias Ringwald if (!sm_conn) break; 1926*3deb3ec6SMatthias Ringwald 1927*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_encrypted = packet[5]; 1928*3deb3ec6SMatthias Ringwald log_info("Encryption state change: %u, key size %u", sm_conn->sm_connection_encrypted, 1929*3deb3ec6SMatthias Ringwald sm_conn->sm_actual_encryption_key_size); 1930*3deb3ec6SMatthias Ringwald log_info("event handler, state %u", sm_conn->sm_engine_state); 1931*3deb3ec6SMatthias Ringwald if (!sm_conn->sm_connection_encrypted) break; 1932*3deb3ec6SMatthias Ringwald // continue if part of initial pairing 1933*3deb3ec6SMatthias Ringwald switch (sm_conn->sm_engine_state){ 1934*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH0_W4_CONNECTION_ENCRYPTED: 1935*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_CONNECTED; 1936*3deb3ec6SMatthias Ringwald sm_done_for_handle(sm_conn->sm_handle); 1937*3deb3ec6SMatthias Ringwald break; 1938*3deb3ec6SMatthias Ringwald case SM_PH2_W4_CONNECTION_ENCRYPTED: 1939*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 1940*3deb3ec6SMatthias Ringwald // slave 1941*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH3_GET_RANDOM; 1942*3deb3ec6SMatthias Ringwald } else { 1943*3deb3ec6SMatthias Ringwald // master 1944*3deb3ec6SMatthias Ringwald if (sm_key_distribution_all_received(sm_conn)){ 1945*3deb3ec6SMatthias Ringwald // skip receiving keys as there are none 1946*3deb3ec6SMatthias Ringwald sm_key_distribution_handle_all_received(sm_conn); 1947*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH3_GET_RANDOM; 1948*3deb3ec6SMatthias Ringwald } else { 1949*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH3_RECEIVE_KEYS; 1950*3deb3ec6SMatthias Ringwald } 1951*3deb3ec6SMatthias Ringwald } 1952*3deb3ec6SMatthias Ringwald break; 1953*3deb3ec6SMatthias Ringwald default: 1954*3deb3ec6SMatthias Ringwald break; 1955*3deb3ec6SMatthias Ringwald } 1956*3deb3ec6SMatthias Ringwald break; 1957*3deb3ec6SMatthias Ringwald 1958*3deb3ec6SMatthias Ringwald case HCI_EVENT_ENCRYPTION_KEY_REFRESH_COMPLETE: 1959*3deb3ec6SMatthias Ringwald handle = READ_BT_16(packet, 3); 1960*3deb3ec6SMatthias Ringwald sm_conn = sm_get_connection_for_handle(handle); 1961*3deb3ec6SMatthias Ringwald if (!sm_conn) break; 1962*3deb3ec6SMatthias Ringwald 1963*3deb3ec6SMatthias Ringwald log_info("Encryption key refresh complete, key size %u", sm_conn->sm_actual_encryption_key_size); 1964*3deb3ec6SMatthias Ringwald log_info("event handler, state %u", sm_conn->sm_engine_state); 1965*3deb3ec6SMatthias Ringwald // continue if part of initial pairing 1966*3deb3ec6SMatthias Ringwald switch (sm_conn->sm_engine_state){ 1967*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH0_W4_CONNECTION_ENCRYPTED: 1968*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_CONNECTED; 1969*3deb3ec6SMatthias Ringwald sm_done_for_handle(sm_conn->sm_handle); 1970*3deb3ec6SMatthias Ringwald break; 1971*3deb3ec6SMatthias Ringwald case SM_PH2_W4_CONNECTION_ENCRYPTED: 1972*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 1973*3deb3ec6SMatthias Ringwald // slave 1974*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH3_GET_RANDOM; 1975*3deb3ec6SMatthias Ringwald } else { 1976*3deb3ec6SMatthias Ringwald // master 1977*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH3_RECEIVE_KEYS; 1978*3deb3ec6SMatthias Ringwald } 1979*3deb3ec6SMatthias Ringwald break; 1980*3deb3ec6SMatthias Ringwald default: 1981*3deb3ec6SMatthias Ringwald break; 1982*3deb3ec6SMatthias Ringwald } 1983*3deb3ec6SMatthias Ringwald break; 1984*3deb3ec6SMatthias Ringwald 1985*3deb3ec6SMatthias Ringwald 1986*3deb3ec6SMatthias Ringwald case HCI_EVENT_DISCONNECTION_COMPLETE: 1987*3deb3ec6SMatthias Ringwald handle = READ_BT_16(packet, 3); 1988*3deb3ec6SMatthias Ringwald sm_done_for_handle(handle); 1989*3deb3ec6SMatthias Ringwald sm_conn = sm_get_connection_for_handle(handle); 1990*3deb3ec6SMatthias Ringwald if (!sm_conn) break; 1991*3deb3ec6SMatthias Ringwald 1992*3deb3ec6SMatthias Ringwald // delete stored bonding on disconnect with authentication failure in ph0 1993*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role == 0 1994*3deb3ec6SMatthias Ringwald && sm_conn->sm_engine_state == SM_INITIATOR_PH0_W4_CONNECTION_ENCRYPTED 1995*3deb3ec6SMatthias Ringwald && packet[2] == ERROR_CODE_AUTHENTICATION_FAILURE){ 1996*3deb3ec6SMatthias Ringwald le_device_db_remove(sm_conn->sm_le_db_index); 1997*3deb3ec6SMatthias Ringwald } 1998*3deb3ec6SMatthias Ringwald 1999*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_GENERAL_IDLE; 2000*3deb3ec6SMatthias Ringwald sm_conn->sm_handle = 0; 2001*3deb3ec6SMatthias Ringwald break; 2002*3deb3ec6SMatthias Ringwald 2003*3deb3ec6SMatthias Ringwald case HCI_EVENT_COMMAND_COMPLETE: 2004*3deb3ec6SMatthias Ringwald if (COMMAND_COMPLETE_EVENT(packet, hci_le_encrypt)){ 2005*3deb3ec6SMatthias Ringwald sm_handle_encryption_result(&packet[6]); 2006*3deb3ec6SMatthias Ringwald break; 2007*3deb3ec6SMatthias Ringwald } 2008*3deb3ec6SMatthias Ringwald if (COMMAND_COMPLETE_EVENT(packet, hci_le_rand)){ 2009*3deb3ec6SMatthias Ringwald sm_handle_random_result(&packet[6]); 2010*3deb3ec6SMatthias Ringwald break; 2011*3deb3ec6SMatthias Ringwald } 2012*3deb3ec6SMatthias Ringwald } 2013*3deb3ec6SMatthias Ringwald 2014*3deb3ec6SMatthias Ringwald // forward packet to higher layer 2015*3deb3ec6SMatthias Ringwald if (sm_client_packet_handler){ 2016*3deb3ec6SMatthias Ringwald sm_client_packet_handler(packet_type, 0, packet, size); 2017*3deb3ec6SMatthias Ringwald } 2018*3deb3ec6SMatthias Ringwald } 2019*3deb3ec6SMatthias Ringwald 2020*3deb3ec6SMatthias Ringwald sm_run(); 2021*3deb3ec6SMatthias Ringwald } 2022*3deb3ec6SMatthias Ringwald 2023*3deb3ec6SMatthias Ringwald static inline int sm_calc_actual_encryption_key_size(int other){ 2024*3deb3ec6SMatthias Ringwald if (other < sm_min_encryption_key_size) return 0; 2025*3deb3ec6SMatthias Ringwald if (other < sm_max_encryption_key_size) return other; 2026*3deb3ec6SMatthias Ringwald return sm_max_encryption_key_size; 2027*3deb3ec6SMatthias Ringwald } 2028*3deb3ec6SMatthias Ringwald 2029*3deb3ec6SMatthias Ringwald /** 2030*3deb3ec6SMatthias Ringwald * @return ok 2031*3deb3ec6SMatthias Ringwald */ 2032*3deb3ec6SMatthias Ringwald static int sm_validate_stk_generation_method(void){ 2033*3deb3ec6SMatthias Ringwald // check if STK generation method is acceptable by client 2034*3deb3ec6SMatthias Ringwald switch (setup->sm_stk_generation_method){ 2035*3deb3ec6SMatthias Ringwald case JUST_WORKS: 2036*3deb3ec6SMatthias Ringwald return (sm_accepted_stk_generation_methods & SM_STK_GENERATION_METHOD_JUST_WORKS) != 0; 2037*3deb3ec6SMatthias Ringwald case PK_RESP_INPUT: 2038*3deb3ec6SMatthias Ringwald case PK_INIT_INPUT: 2039*3deb3ec6SMatthias Ringwald case OK_BOTH_INPUT: 2040*3deb3ec6SMatthias Ringwald return (sm_accepted_stk_generation_methods & SM_STK_GENERATION_METHOD_PASSKEY) != 0; 2041*3deb3ec6SMatthias Ringwald case OOB: 2042*3deb3ec6SMatthias Ringwald return (sm_accepted_stk_generation_methods & SM_STK_GENERATION_METHOD_OOB) != 0; 2043*3deb3ec6SMatthias Ringwald default: 2044*3deb3ec6SMatthias Ringwald return 0; 2045*3deb3ec6SMatthias Ringwald } 2046*3deb3ec6SMatthias Ringwald } 2047*3deb3ec6SMatthias Ringwald 2048*3deb3ec6SMatthias Ringwald // helper for sm_packet_handler, calls sm_run on exit 2049*3deb3ec6SMatthias Ringwald static void sm_pdu_received_in_wrong_state(sm_connection_t * sm_conn){ 2050*3deb3ec6SMatthias Ringwald setup->sm_pairing_failed_reason = SM_REASON_UNSPECIFIED_REASON; 2051*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = sm_conn->sm_role ? SM_RESPONDER_IDLE : SM_INITIATOR_CONNECTED; 2052*3deb3ec6SMatthias Ringwald sm_done_for_handle(sm_conn->sm_handle); 2053*3deb3ec6SMatthias Ringwald } 2054*3deb3ec6SMatthias Ringwald 2055*3deb3ec6SMatthias Ringwald static void sm_packet_handler(uint8_t packet_type, uint16_t handle, uint8_t *packet, uint16_t size){ 2056*3deb3ec6SMatthias Ringwald 2057*3deb3ec6SMatthias Ringwald if (packet_type == HCI_EVENT_PACKET) { 2058*3deb3ec6SMatthias Ringwald sm_event_packet_handler(packet_type, handle, packet, size); 2059*3deb3ec6SMatthias Ringwald return; 2060*3deb3ec6SMatthias Ringwald } 2061*3deb3ec6SMatthias Ringwald 2062*3deb3ec6SMatthias Ringwald if (packet_type != SM_DATA_PACKET) return; 2063*3deb3ec6SMatthias Ringwald 2064*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2065*3deb3ec6SMatthias Ringwald if (!sm_conn) return; 2066*3deb3ec6SMatthias Ringwald 2067*3deb3ec6SMatthias Ringwald if (packet[0] == SM_CODE_PAIRING_FAILED){ 2068*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = sm_conn->sm_role ? SM_RESPONDER_IDLE : SM_INITIATOR_CONNECTED; 2069*3deb3ec6SMatthias Ringwald return; 2070*3deb3ec6SMatthias Ringwald } 2071*3deb3ec6SMatthias Ringwald 2072*3deb3ec6SMatthias Ringwald log_debug("sm_packet_handler: state %u, pdu 0x%02x", sm_conn->sm_engine_state, packet[0]); 2073*3deb3ec6SMatthias Ringwald 2074*3deb3ec6SMatthias Ringwald int err; 2075*3deb3ec6SMatthias Ringwald 2076*3deb3ec6SMatthias Ringwald switch (sm_conn->sm_engine_state){ 2077*3deb3ec6SMatthias Ringwald 2078*3deb3ec6SMatthias Ringwald // a sm timeout requries a new physical connection 2079*3deb3ec6SMatthias Ringwald case SM_GENERAL_TIMEOUT: 2080*3deb3ec6SMatthias Ringwald return; 2081*3deb3ec6SMatthias Ringwald 2082*3deb3ec6SMatthias Ringwald // Initiator 2083*3deb3ec6SMatthias Ringwald case SM_INITIATOR_CONNECTED: 2084*3deb3ec6SMatthias Ringwald if ((packet[0] != SM_CODE_SECURITY_REQUEST) || (sm_conn->sm_role)){ 2085*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2086*3deb3ec6SMatthias Ringwald break; 2087*3deb3ec6SMatthias Ringwald } 2088*3deb3ec6SMatthias Ringwald if (sm_conn->sm_irk_lookup_state == IRK_LOOKUP_FAILED){ 2089*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST; 2090*3deb3ec6SMatthias Ringwald break; 2091*3deb3ec6SMatthias Ringwald } 2092*3deb3ec6SMatthias Ringwald if (sm_conn->sm_irk_lookup_state == IRK_LOOKUP_SUCCEEDED){ 2093*3deb3ec6SMatthias Ringwald uint16_t ediv; 2094*3deb3ec6SMatthias Ringwald le_device_db_encryption_get(sm_conn->sm_le_db_index, &ediv, NULL, NULL, NULL, NULL, NULL); 2095*3deb3ec6SMatthias Ringwald if (ediv){ 2096*3deb3ec6SMatthias Ringwald log_info("sm: Setting up previous ltk/ediv/rand for device index %u", sm_conn->sm_le_db_index); 2097*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_PH0_HAS_LTK; 2098*3deb3ec6SMatthias Ringwald } else { 2099*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST; 2100*3deb3ec6SMatthias Ringwald } 2101*3deb3ec6SMatthias Ringwald break; 2102*3deb3ec6SMatthias Ringwald } 2103*3deb3ec6SMatthias Ringwald // otherwise, store security request 2104*3deb3ec6SMatthias Ringwald sm_conn->sm_security_request_received = 1; 2105*3deb3ec6SMatthias Ringwald break; 2106*3deb3ec6SMatthias Ringwald 2107*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH1_W4_PAIRING_RESPONSE: 2108*3deb3ec6SMatthias Ringwald if (packet[0] != SM_CODE_PAIRING_RESPONSE){ 2109*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2110*3deb3ec6SMatthias Ringwald break; 2111*3deb3ec6SMatthias Ringwald } 2112*3deb3ec6SMatthias Ringwald // store pairing request 2113*3deb3ec6SMatthias Ringwald memcpy(&setup->sm_s_pres, packet, sizeof(sm_pairing_packet_t)); 2114*3deb3ec6SMatthias Ringwald err = sm_stk_generation_init(sm_conn); 2115*3deb3ec6SMatthias Ringwald if (err){ 2116*3deb3ec6SMatthias Ringwald setup->sm_pairing_failed_reason = err; 2117*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_GENERAL_SEND_PAIRING_FAILED; 2118*3deb3ec6SMatthias Ringwald break; 2119*3deb3ec6SMatthias Ringwald } 2120*3deb3ec6SMatthias Ringwald // generate random number first, if we need to show passkey 2121*3deb3ec6SMatthias Ringwald if (setup->sm_stk_generation_method == PK_RESP_INPUT){ 2122*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_GET_RANDOM_TK; 2123*3deb3ec6SMatthias Ringwald break; 2124*3deb3ec6SMatthias Ringwald } 2125*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH1_W4_USER_RESPONSE; 2126*3deb3ec6SMatthias Ringwald sm_trigger_user_response(sm_conn); 2127*3deb3ec6SMatthias Ringwald // response_idle == nothing <--> sm_trigger_user_response() did not require response 2128*3deb3ec6SMatthias Ringwald if (setup->sm_user_response == SM_USER_RESPONSE_IDLE){ 2129*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_C1_GET_RANDOM_A; 2130*3deb3ec6SMatthias Ringwald } 2131*3deb3ec6SMatthias Ringwald break; 2132*3deb3ec6SMatthias Ringwald 2133*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH2_W4_PAIRING_CONFIRM: 2134*3deb3ec6SMatthias Ringwald if (packet[0] != SM_CODE_PAIRING_CONFIRM){ 2135*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2136*3deb3ec6SMatthias Ringwald break; 2137*3deb3ec6SMatthias Ringwald } 2138*3deb3ec6SMatthias Ringwald 2139*3deb3ec6SMatthias Ringwald // store s_confirm 2140*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_confirm); 2141*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_SEND_PAIRING_RANDOM; 2142*3deb3ec6SMatthias Ringwald break; 2143*3deb3ec6SMatthias Ringwald 2144*3deb3ec6SMatthias Ringwald case SM_INITIATOR_PH2_W4_PAIRING_RANDOM: 2145*3deb3ec6SMatthias Ringwald if (packet[0] != SM_CODE_PAIRING_RANDOM){ 2146*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2147*3deb3ec6SMatthias Ringwald break;; 2148*3deb3ec6SMatthias Ringwald } 2149*3deb3ec6SMatthias Ringwald 2150*3deb3ec6SMatthias Ringwald // received random value 2151*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_random); 2152*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_C1_GET_ENC_C; 2153*3deb3ec6SMatthias Ringwald break; 2154*3deb3ec6SMatthias Ringwald 2155*3deb3ec6SMatthias Ringwald // Responder 2156*3deb3ec6SMatthias Ringwald case SM_RESPONDER_IDLE: 2157*3deb3ec6SMatthias Ringwald case SM_RESPONDER_SEND_SECURITY_REQUEST: 2158*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH1_W4_PAIRING_REQUEST: 2159*3deb3ec6SMatthias Ringwald if (packet[0] != SM_CODE_PAIRING_REQUEST){ 2160*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2161*3deb3ec6SMatthias Ringwald break;; 2162*3deb3ec6SMatthias Ringwald } 2163*3deb3ec6SMatthias Ringwald 2164*3deb3ec6SMatthias Ringwald // store pairing request 2165*3deb3ec6SMatthias Ringwald memcpy(&sm_conn->sm_m_preq, packet, sizeof(sm_pairing_packet_t)); 2166*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_PH1_PAIRING_REQUEST_RECEIVED; 2167*3deb3ec6SMatthias Ringwald break; 2168*3deb3ec6SMatthias Ringwald 2169*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH1_W4_PAIRING_CONFIRM: 2170*3deb3ec6SMatthias Ringwald if (packet[0] != SM_CODE_PAIRING_CONFIRM){ 2171*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2172*3deb3ec6SMatthias Ringwald break;; 2173*3deb3ec6SMatthias Ringwald } 2174*3deb3ec6SMatthias Ringwald 2175*3deb3ec6SMatthias Ringwald // received confirm value 2176*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_confirm); 2177*3deb3ec6SMatthias Ringwald 2178*3deb3ec6SMatthias Ringwald // notify client to hide shown passkey 2179*3deb3ec6SMatthias Ringwald if (setup->sm_stk_generation_method == PK_INIT_INPUT){ 2180*3deb3ec6SMatthias Ringwald sm_notify_client_base(SM_PASSKEY_DISPLAY_CANCEL, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address); 2181*3deb3ec6SMatthias Ringwald } 2182*3deb3ec6SMatthias Ringwald 2183*3deb3ec6SMatthias Ringwald // handle user cancel pairing? 2184*3deb3ec6SMatthias Ringwald if (setup->sm_user_response == SM_USER_RESPONSE_DECLINE){ 2185*3deb3ec6SMatthias Ringwald setup->sm_pairing_failed_reason = SM_REASON_PASSKEYT_ENTRY_FAILED; 2186*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_GENERAL_SEND_PAIRING_FAILED; 2187*3deb3ec6SMatthias Ringwald break; 2188*3deb3ec6SMatthias Ringwald } 2189*3deb3ec6SMatthias Ringwald 2190*3deb3ec6SMatthias Ringwald // wait for user action? 2191*3deb3ec6SMatthias Ringwald if (setup->sm_user_response == SM_USER_RESPONSE_PENDING){ 2192*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH1_W4_USER_RESPONSE; 2193*3deb3ec6SMatthias Ringwald break; 2194*3deb3ec6SMatthias Ringwald } 2195*3deb3ec6SMatthias Ringwald 2196*3deb3ec6SMatthias Ringwald // calculate and send local_confirm 2197*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_C1_GET_RANDOM_A; 2198*3deb3ec6SMatthias Ringwald break; 2199*3deb3ec6SMatthias Ringwald 2200*3deb3ec6SMatthias Ringwald case SM_RESPONDER_PH2_W4_PAIRING_RANDOM: 2201*3deb3ec6SMatthias Ringwald if (packet[0] != SM_CODE_PAIRING_RANDOM){ 2202*3deb3ec6SMatthias Ringwald sm_pdu_received_in_wrong_state(sm_conn); 2203*3deb3ec6SMatthias Ringwald break;; 2204*3deb3ec6SMatthias Ringwald } 2205*3deb3ec6SMatthias Ringwald 2206*3deb3ec6SMatthias Ringwald // received random value 2207*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_random); 2208*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_C1_GET_ENC_C; 2209*3deb3ec6SMatthias Ringwald break; 2210*3deb3ec6SMatthias Ringwald 2211*3deb3ec6SMatthias Ringwald case SM_PH3_RECEIVE_KEYS: 2212*3deb3ec6SMatthias Ringwald switch(packet[0]){ 2213*3deb3ec6SMatthias Ringwald case SM_CODE_ENCRYPTION_INFORMATION: 2214*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_received_set |= SM_KEYDIST_FLAG_ENCRYPTION_INFORMATION; 2215*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_ltk); 2216*3deb3ec6SMatthias Ringwald break; 2217*3deb3ec6SMatthias Ringwald 2218*3deb3ec6SMatthias Ringwald case SM_CODE_MASTER_IDENTIFICATION: 2219*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_received_set |= SM_KEYDIST_FLAG_MASTER_IDENTIFICATION; 2220*3deb3ec6SMatthias Ringwald setup->sm_peer_ediv = READ_BT_16(packet, 1); 2221*3deb3ec6SMatthias Ringwald swap64(&packet[3], setup->sm_peer_rand); 2222*3deb3ec6SMatthias Ringwald break; 2223*3deb3ec6SMatthias Ringwald 2224*3deb3ec6SMatthias Ringwald case SM_CODE_IDENTITY_INFORMATION: 2225*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_received_set |= SM_KEYDIST_FLAG_IDENTITY_INFORMATION; 2226*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_irk); 2227*3deb3ec6SMatthias Ringwald break; 2228*3deb3ec6SMatthias Ringwald 2229*3deb3ec6SMatthias Ringwald case SM_CODE_IDENTITY_ADDRESS_INFORMATION: 2230*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_received_set |= SM_KEYDIST_FLAG_IDENTITY_ADDRESS_INFORMATION; 2231*3deb3ec6SMatthias Ringwald setup->sm_peer_addr_type = packet[1]; 2232*3deb3ec6SMatthias Ringwald bt_flip_addr(setup->sm_peer_address, &packet[2]); 2233*3deb3ec6SMatthias Ringwald break; 2234*3deb3ec6SMatthias Ringwald 2235*3deb3ec6SMatthias Ringwald case SM_CODE_SIGNING_INFORMATION: 2236*3deb3ec6SMatthias Ringwald setup->sm_key_distribution_received_set |= SM_KEYDIST_FLAG_SIGNING_IDENTIFICATION; 2237*3deb3ec6SMatthias Ringwald swap128(&packet[1], setup->sm_peer_csrk); 2238*3deb3ec6SMatthias Ringwald break; 2239*3deb3ec6SMatthias Ringwald default: 2240*3deb3ec6SMatthias Ringwald // Unexpected PDU 2241*3deb3ec6SMatthias Ringwald log_info("Unexpected PDU %u in SM_PH3_RECEIVE_KEYS", packet[0]); 2242*3deb3ec6SMatthias Ringwald break; 2243*3deb3ec6SMatthias Ringwald } 2244*3deb3ec6SMatthias Ringwald // done with key distribution? 2245*3deb3ec6SMatthias Ringwald if (sm_key_distribution_all_received(sm_conn)){ 2246*3deb3ec6SMatthias Ringwald 2247*3deb3ec6SMatthias Ringwald sm_key_distribution_handle_all_received(sm_conn); 2248*3deb3ec6SMatthias Ringwald 2249*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 2250*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_IDLE; 2251*3deb3ec6SMatthias Ringwald sm_done_for_handle(sm_conn->sm_handle); 2252*3deb3ec6SMatthias Ringwald } else { 2253*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH3_GET_RANDOM; 2254*3deb3ec6SMatthias Ringwald } 2255*3deb3ec6SMatthias Ringwald } 2256*3deb3ec6SMatthias Ringwald break; 2257*3deb3ec6SMatthias Ringwald default: 2258*3deb3ec6SMatthias Ringwald // Unexpected PDU 2259*3deb3ec6SMatthias Ringwald log_info("Unexpected PDU %u in state %u", packet[0], sm_conn->sm_engine_state); 2260*3deb3ec6SMatthias Ringwald break; 2261*3deb3ec6SMatthias Ringwald } 2262*3deb3ec6SMatthias Ringwald 2263*3deb3ec6SMatthias Ringwald // try to send preparared packet 2264*3deb3ec6SMatthias Ringwald sm_run(); 2265*3deb3ec6SMatthias Ringwald } 2266*3deb3ec6SMatthias Ringwald 2267*3deb3ec6SMatthias Ringwald // Security Manager Client API 2268*3deb3ec6SMatthias Ringwald void sm_register_oob_data_callback( int (*get_oob_data_callback)(uint8_t addres_type, bd_addr_t addr, uint8_t * oob_data)){ 2269*3deb3ec6SMatthias Ringwald sm_get_oob_data = get_oob_data_callback; 2270*3deb3ec6SMatthias Ringwald } 2271*3deb3ec6SMatthias Ringwald 2272*3deb3ec6SMatthias Ringwald void sm_register_packet_handler(btstack_packet_handler_t handler){ 2273*3deb3ec6SMatthias Ringwald sm_client_packet_handler = handler; 2274*3deb3ec6SMatthias Ringwald } 2275*3deb3ec6SMatthias Ringwald 2276*3deb3ec6SMatthias Ringwald void sm_set_accepted_stk_generation_methods(uint8_t accepted_stk_generation_methods){ 2277*3deb3ec6SMatthias Ringwald sm_accepted_stk_generation_methods = accepted_stk_generation_methods; 2278*3deb3ec6SMatthias Ringwald } 2279*3deb3ec6SMatthias Ringwald 2280*3deb3ec6SMatthias Ringwald void sm_set_encryption_key_size_range(uint8_t min_size, uint8_t max_size){ 2281*3deb3ec6SMatthias Ringwald sm_min_encryption_key_size = min_size; 2282*3deb3ec6SMatthias Ringwald sm_max_encryption_key_size = max_size; 2283*3deb3ec6SMatthias Ringwald } 2284*3deb3ec6SMatthias Ringwald 2285*3deb3ec6SMatthias Ringwald void sm_set_authentication_requirements(uint8_t auth_req){ 2286*3deb3ec6SMatthias Ringwald sm_auth_req = auth_req; 2287*3deb3ec6SMatthias Ringwald } 2288*3deb3ec6SMatthias Ringwald 2289*3deb3ec6SMatthias Ringwald void sm_set_io_capabilities(io_capability_t io_capability){ 2290*3deb3ec6SMatthias Ringwald sm_io_capabilities = io_capability; 2291*3deb3ec6SMatthias Ringwald } 2292*3deb3ec6SMatthias Ringwald 2293*3deb3ec6SMatthias Ringwald void sm_set_request_security(int enable){ 2294*3deb3ec6SMatthias Ringwald sm_slave_request_security = enable; 2295*3deb3ec6SMatthias Ringwald } 2296*3deb3ec6SMatthias Ringwald 2297*3deb3ec6SMatthias Ringwald void sm_set_er(sm_key_t er){ 2298*3deb3ec6SMatthias Ringwald memcpy(sm_persistent_er, er, 16); 2299*3deb3ec6SMatthias Ringwald } 2300*3deb3ec6SMatthias Ringwald 2301*3deb3ec6SMatthias Ringwald void sm_set_ir(sm_key_t ir){ 2302*3deb3ec6SMatthias Ringwald memcpy(sm_persistent_ir, ir, 16); 2303*3deb3ec6SMatthias Ringwald } 2304*3deb3ec6SMatthias Ringwald 2305*3deb3ec6SMatthias Ringwald // Testing support only 2306*3deb3ec6SMatthias Ringwald void sm_test_set_irk(sm_key_t irk){ 2307*3deb3ec6SMatthias Ringwald memcpy(sm_persistent_irk, irk, 16); 2308*3deb3ec6SMatthias Ringwald sm_persistent_irk_ready = 1; 2309*3deb3ec6SMatthias Ringwald } 2310*3deb3ec6SMatthias Ringwald 2311*3deb3ec6SMatthias Ringwald void sm_test_use_fixed_local_csrk(void){ 2312*3deb3ec6SMatthias Ringwald test_use_fixed_local_csrk = 1; 2313*3deb3ec6SMatthias Ringwald } 2314*3deb3ec6SMatthias Ringwald 2315*3deb3ec6SMatthias Ringwald void sm_init(void){ 2316*3deb3ec6SMatthias Ringwald // set some (BTstack default) ER and IR 2317*3deb3ec6SMatthias Ringwald int i; 2318*3deb3ec6SMatthias Ringwald sm_key_t er; 2319*3deb3ec6SMatthias Ringwald sm_key_t ir; 2320*3deb3ec6SMatthias Ringwald for (i=0;i<16;i++){ 2321*3deb3ec6SMatthias Ringwald er[i] = 0x30 + i; 2322*3deb3ec6SMatthias Ringwald ir[i] = 0x90 + i; 2323*3deb3ec6SMatthias Ringwald } 2324*3deb3ec6SMatthias Ringwald sm_set_er(er); 2325*3deb3ec6SMatthias Ringwald sm_set_ir(ir); 2326*3deb3ec6SMatthias Ringwald // defaults 2327*3deb3ec6SMatthias Ringwald sm_accepted_stk_generation_methods = SM_STK_GENERATION_METHOD_JUST_WORKS 2328*3deb3ec6SMatthias Ringwald | SM_STK_GENERATION_METHOD_OOB 2329*3deb3ec6SMatthias Ringwald | SM_STK_GENERATION_METHOD_PASSKEY; 2330*3deb3ec6SMatthias Ringwald sm_max_encryption_key_size = 16; 2331*3deb3ec6SMatthias Ringwald sm_min_encryption_key_size = 7; 2332*3deb3ec6SMatthias Ringwald 2333*3deb3ec6SMatthias Ringwald sm_cmac_state = CMAC_IDLE; 2334*3deb3ec6SMatthias Ringwald dkg_state = DKG_W4_WORKING; 2335*3deb3ec6SMatthias Ringwald rau_state = RAU_W4_WORKING; 2336*3deb3ec6SMatthias Ringwald sm_aes128_state = SM_AES128_IDLE; 2337*3deb3ec6SMatthias Ringwald sm_address_resolution_test = -1; // no private address to resolve yet 2338*3deb3ec6SMatthias Ringwald sm_address_resolution_ah_calculation_active = 0; 2339*3deb3ec6SMatthias Ringwald sm_address_resolution_mode = ADDRESS_RESOLUTION_IDLE; 2340*3deb3ec6SMatthias Ringwald sm_address_resolution_general_queue = NULL; 2341*3deb3ec6SMatthias Ringwald 2342*3deb3ec6SMatthias Ringwald gap_random_adress_update_period = 15 * 60 * 1000L; 2343*3deb3ec6SMatthias Ringwald 2344*3deb3ec6SMatthias Ringwald sm_active_connection = 0; 2345*3deb3ec6SMatthias Ringwald 2346*3deb3ec6SMatthias Ringwald test_use_fixed_local_csrk = 0; 2347*3deb3ec6SMatthias Ringwald 2348*3deb3ec6SMatthias Ringwald // attach to lower layers 2349*3deb3ec6SMatthias Ringwald l2cap_register_fixed_channel(sm_packet_handler, L2CAP_CID_SECURITY_MANAGER_PROTOCOL); 2350*3deb3ec6SMatthias Ringwald } 2351*3deb3ec6SMatthias Ringwald 2352*3deb3ec6SMatthias Ringwald static sm_connection_t * sm_get_connection_for_handle(uint16_t con_handle){ 2353*3deb3ec6SMatthias Ringwald hci_connection_t * hci_con = hci_connection_for_handle((hci_con_handle_t) con_handle); 2354*3deb3ec6SMatthias Ringwald if (!hci_con) return NULL; 2355*3deb3ec6SMatthias Ringwald return &hci_con->sm_connection; 2356*3deb3ec6SMatthias Ringwald } 2357*3deb3ec6SMatthias Ringwald 2358*3deb3ec6SMatthias Ringwald // @returns 0 if not encrypted, 7-16 otherwise 2359*3deb3ec6SMatthias Ringwald int sm_encryption_key_size(uint16_t handle){ 2360*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2361*3deb3ec6SMatthias Ringwald if (!sm_conn) return 0; // wrong connection 2362*3deb3ec6SMatthias Ringwald if (!sm_conn->sm_connection_encrypted) return 0; 2363*3deb3ec6SMatthias Ringwald return sm_conn->sm_actual_encryption_key_size; 2364*3deb3ec6SMatthias Ringwald } 2365*3deb3ec6SMatthias Ringwald 2366*3deb3ec6SMatthias Ringwald int sm_authenticated(uint16_t handle){ 2367*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2368*3deb3ec6SMatthias Ringwald if (!sm_conn) return 0; // wrong connection 2369*3deb3ec6SMatthias Ringwald if (!sm_conn->sm_connection_encrypted) return 0; // unencrypted connection cannot be authenticated 2370*3deb3ec6SMatthias Ringwald return sm_conn->sm_connection_authenticated; 2371*3deb3ec6SMatthias Ringwald } 2372*3deb3ec6SMatthias Ringwald 2373*3deb3ec6SMatthias Ringwald authorization_state_t sm_authorization_state(uint16_t handle){ 2374*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2375*3deb3ec6SMatthias Ringwald if (!sm_conn) return AUTHORIZATION_UNKNOWN; // wrong connection 2376*3deb3ec6SMatthias Ringwald if (!sm_conn->sm_connection_encrypted) return AUTHORIZATION_UNKNOWN; // unencrypted connection cannot be authorized 2377*3deb3ec6SMatthias Ringwald if (!sm_conn->sm_connection_authenticated) return AUTHORIZATION_UNKNOWN; // unauthenticatd connection cannot be authorized 2378*3deb3ec6SMatthias Ringwald return sm_conn->sm_connection_authorization_state; 2379*3deb3ec6SMatthias Ringwald } 2380*3deb3ec6SMatthias Ringwald 2381*3deb3ec6SMatthias Ringwald static void sm_send_security_request_for_connection(sm_connection_t * sm_conn){ 2382*3deb3ec6SMatthias Ringwald switch (sm_conn->sm_engine_state){ 2383*3deb3ec6SMatthias Ringwald case SM_GENERAL_IDLE: 2384*3deb3ec6SMatthias Ringwald case SM_RESPONDER_IDLE: 2385*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_RESPONDER_SEND_SECURITY_REQUEST; 2386*3deb3ec6SMatthias Ringwald sm_run(); 2387*3deb3ec6SMatthias Ringwald break; 2388*3deb3ec6SMatthias Ringwald default: 2389*3deb3ec6SMatthias Ringwald break; 2390*3deb3ec6SMatthias Ringwald } 2391*3deb3ec6SMatthias Ringwald } 2392*3deb3ec6SMatthias Ringwald 2393*3deb3ec6SMatthias Ringwald /** 2394*3deb3ec6SMatthias Ringwald * @brief Trigger Security Request 2395*3deb3ec6SMatthias Ringwald */ 2396*3deb3ec6SMatthias Ringwald void sm_send_security_request(uint16_t handle){ 2397*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2398*3deb3ec6SMatthias Ringwald if (!sm_conn) return; 2399*3deb3ec6SMatthias Ringwald sm_send_security_request_for_connection(sm_conn); 2400*3deb3ec6SMatthias Ringwald } 2401*3deb3ec6SMatthias Ringwald 2402*3deb3ec6SMatthias Ringwald // request pairing 2403*3deb3ec6SMatthias Ringwald void sm_request_pairing(uint16_t handle){ 2404*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2405*3deb3ec6SMatthias Ringwald if (!sm_conn) return; // wrong connection 2406*3deb3ec6SMatthias Ringwald 2407*3deb3ec6SMatthias Ringwald log_info("sm_request_pairing in role %u, state %u", sm_conn->sm_role, sm_conn->sm_engine_state); 2408*3deb3ec6SMatthias Ringwald if (sm_conn->sm_role){ 2409*3deb3ec6SMatthias Ringwald sm_send_security_request_for_connection(sm_conn); 2410*3deb3ec6SMatthias Ringwald } else { 2411*3deb3ec6SMatthias Ringwald // used as a trigger to start central/master/initiator security procedures 2412*3deb3ec6SMatthias Ringwald uint16_t ediv; 2413*3deb3ec6SMatthias Ringwald if (sm_conn->sm_engine_state == SM_INITIATOR_CONNECTED){ 2414*3deb3ec6SMatthias Ringwald switch (sm_conn->sm_irk_lookup_state){ 2415*3deb3ec6SMatthias Ringwald case IRK_LOOKUP_FAILED: 2416*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST; 2417*3deb3ec6SMatthias Ringwald break; 2418*3deb3ec6SMatthias Ringwald case IRK_LOOKUP_SUCCEEDED: 2419*3deb3ec6SMatthias Ringwald le_device_db_encryption_get(sm_conn->sm_le_db_index, &ediv, NULL, NULL, NULL, NULL, NULL); 2420*3deb3ec6SMatthias Ringwald if (ediv){ 2421*3deb3ec6SMatthias Ringwald log_info("sm: Setting up previous ltk/ediv/rand for device index %u", sm_conn->sm_le_db_index); 2422*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_PH0_HAS_LTK; 2423*3deb3ec6SMatthias Ringwald } else { 2424*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST; 2425*3deb3ec6SMatthias Ringwald } 2426*3deb3ec6SMatthias Ringwald break; 2427*3deb3ec6SMatthias Ringwald default: 2428*3deb3ec6SMatthias Ringwald sm_conn->sm_bonding_requested = 1; 2429*3deb3ec6SMatthias Ringwald break; 2430*3deb3ec6SMatthias Ringwald } 2431*3deb3ec6SMatthias Ringwald } 2432*3deb3ec6SMatthias Ringwald } 2433*3deb3ec6SMatthias Ringwald sm_run(); 2434*3deb3ec6SMatthias Ringwald } 2435*3deb3ec6SMatthias Ringwald 2436*3deb3ec6SMatthias Ringwald // called by client app on authorization request 2437*3deb3ec6SMatthias Ringwald void sm_authorization_decline(uint16_t handle){ 2438*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2439*3deb3ec6SMatthias Ringwald if (!sm_conn) return; // wrong connection 2440*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_authorization_state = AUTHORIZATION_DECLINED; 2441*3deb3ec6SMatthias Ringwald sm_notify_client_authorization(SM_AUTHORIZATION_RESULT, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address, 0); 2442*3deb3ec6SMatthias Ringwald } 2443*3deb3ec6SMatthias Ringwald 2444*3deb3ec6SMatthias Ringwald void sm_authorization_grant(uint16_t handle){ 2445*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2446*3deb3ec6SMatthias Ringwald if (!sm_conn) return; // wrong connection 2447*3deb3ec6SMatthias Ringwald sm_conn->sm_connection_authorization_state = AUTHORIZATION_GRANTED; 2448*3deb3ec6SMatthias Ringwald sm_notify_client_authorization(SM_AUTHORIZATION_RESULT, sm_conn->sm_handle, sm_conn->sm_peer_addr_type, sm_conn->sm_peer_address, 1); 2449*3deb3ec6SMatthias Ringwald } 2450*3deb3ec6SMatthias Ringwald 2451*3deb3ec6SMatthias Ringwald // GAP Bonding API 2452*3deb3ec6SMatthias Ringwald 2453*3deb3ec6SMatthias Ringwald void sm_bonding_decline(uint16_t handle){ 2454*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2455*3deb3ec6SMatthias Ringwald if (!sm_conn) return; // wrong connection 2456*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_DECLINE; 2457*3deb3ec6SMatthias Ringwald 2458*3deb3ec6SMatthias Ringwald if (sm_conn->sm_engine_state == SM_PH1_W4_USER_RESPONSE){ 2459*3deb3ec6SMatthias Ringwald sm_done_for_handle(sm_conn->sm_handle); 2460*3deb3ec6SMatthias Ringwald setup->sm_pairing_failed_reason = SM_REASON_PASSKEYT_ENTRY_FAILED; 2461*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_GENERAL_SEND_PAIRING_FAILED; 2462*3deb3ec6SMatthias Ringwald } 2463*3deb3ec6SMatthias Ringwald sm_run(); 2464*3deb3ec6SMatthias Ringwald } 2465*3deb3ec6SMatthias Ringwald 2466*3deb3ec6SMatthias Ringwald void sm_just_works_confirm(uint16_t handle){ 2467*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2468*3deb3ec6SMatthias Ringwald if (!sm_conn) return; // wrong connection 2469*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_CONFIRM; 2470*3deb3ec6SMatthias Ringwald if (sm_conn->sm_engine_state == SM_PH1_W4_USER_RESPONSE){ 2471*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_C1_GET_RANDOM_A; 2472*3deb3ec6SMatthias Ringwald } 2473*3deb3ec6SMatthias Ringwald sm_run(); 2474*3deb3ec6SMatthias Ringwald } 2475*3deb3ec6SMatthias Ringwald 2476*3deb3ec6SMatthias Ringwald void sm_passkey_input(uint16_t handle, uint32_t passkey){ 2477*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2478*3deb3ec6SMatthias Ringwald if (!sm_conn) return; // wrong connection 2479*3deb3ec6SMatthias Ringwald sm_reset_tk(); 2480*3deb3ec6SMatthias Ringwald net_store_32(setup->sm_tk, 12, passkey); 2481*3deb3ec6SMatthias Ringwald setup->sm_user_response = SM_USER_RESPONSE_PASSKEY; 2482*3deb3ec6SMatthias Ringwald if (sm_conn->sm_engine_state == SM_PH1_W4_USER_RESPONSE){ 2483*3deb3ec6SMatthias Ringwald sm_conn->sm_engine_state = SM_PH2_C1_GET_RANDOM_A; 2484*3deb3ec6SMatthias Ringwald } 2485*3deb3ec6SMatthias Ringwald sm_run(); 2486*3deb3ec6SMatthias Ringwald } 2487*3deb3ec6SMatthias Ringwald 2488*3deb3ec6SMatthias Ringwald /** 2489*3deb3ec6SMatthias Ringwald * @brief Identify device in LE Device DB 2490*3deb3ec6SMatthias Ringwald * @param handle 2491*3deb3ec6SMatthias Ringwald * @returns index from le_device_db or -1 if not found/identified 2492*3deb3ec6SMatthias Ringwald */ 2493*3deb3ec6SMatthias Ringwald int sm_le_device_index(uint16_t handle ){ 2494*3deb3ec6SMatthias Ringwald sm_connection_t * sm_conn = sm_get_connection_for_handle(handle); 2495*3deb3ec6SMatthias Ringwald if (!sm_conn) return -1; 2496*3deb3ec6SMatthias Ringwald return sm_conn->sm_le_db_index; 2497*3deb3ec6SMatthias Ringwald } 2498*3deb3ec6SMatthias Ringwald 2499*3deb3ec6SMatthias Ringwald // GAP LE API 2500*3deb3ec6SMatthias Ringwald void gap_random_address_set_mode(gap_random_address_type_t random_address_type){ 2501*3deb3ec6SMatthias Ringwald gap_random_address_update_stop(); 2502*3deb3ec6SMatthias Ringwald gap_random_adress_type = random_address_type; 2503*3deb3ec6SMatthias Ringwald if (random_address_type == GAP_RANDOM_ADDRESS_TYPE_OFF) return; 2504*3deb3ec6SMatthias Ringwald gap_random_address_update_start(); 2505*3deb3ec6SMatthias Ringwald gap_random_address_trigger(); 2506*3deb3ec6SMatthias Ringwald } 2507*3deb3ec6SMatthias Ringwald 2508*3deb3ec6SMatthias Ringwald gap_random_address_type_t gap_random_address_get_mode(void){ 2509*3deb3ec6SMatthias Ringwald return gap_random_adress_type; 2510*3deb3ec6SMatthias Ringwald } 2511*3deb3ec6SMatthias Ringwald 2512*3deb3ec6SMatthias Ringwald void gap_random_address_set_update_period(int period_ms){ 2513*3deb3ec6SMatthias Ringwald gap_random_adress_update_period = period_ms; 2514*3deb3ec6SMatthias Ringwald if (gap_random_adress_type == GAP_RANDOM_ADDRESS_TYPE_OFF) return; 2515*3deb3ec6SMatthias Ringwald gap_random_address_update_stop(); 2516*3deb3ec6SMatthias Ringwald gap_random_address_update_start(); 2517*3deb3ec6SMatthias Ringwald } 2518*3deb3ec6SMatthias Ringwald 2519*3deb3ec6SMatthias Ringwald /* 2520*3deb3ec6SMatthias Ringwald * @brief Set Advertisement Paramters 2521*3deb3ec6SMatthias Ringwald * @param adv_int_min 2522*3deb3ec6SMatthias Ringwald * @param adv_int_max 2523*3deb3ec6SMatthias Ringwald * @param adv_type 2524*3deb3ec6SMatthias Ringwald * @param direct_address_type 2525*3deb3ec6SMatthias Ringwald * @param direct_address 2526*3deb3ec6SMatthias Ringwald * @param channel_map 2527*3deb3ec6SMatthias Ringwald * @param filter_policy 2528*3deb3ec6SMatthias Ringwald * 2529*3deb3ec6SMatthias Ringwald * @note own_address_type is used from gap_random_address_set_mode 2530*3deb3ec6SMatthias Ringwald */ 2531*3deb3ec6SMatthias Ringwald void gap_advertisements_set_params(uint16_t adv_int_min, uint16_t adv_int_max, uint8_t adv_type, 2532*3deb3ec6SMatthias Ringwald uint8_t direct_address_typ, bd_addr_t direct_address, uint8_t channel_map, uint8_t filter_policy){ 2533*3deb3ec6SMatthias Ringwald hci_le_advertisements_set_params(adv_int_min, adv_int_max, adv_type, gap_random_adress_type, 2534*3deb3ec6SMatthias Ringwald direct_address_typ, direct_address, channel_map, filter_policy); 2535*3deb3ec6SMatthias Ringwald } 2536*3deb3ec6SMatthias Ringwald 2537