1 /* 2 * Copyright (C) 2017 BlueKitchen GmbH 3 * 4 * Redistribution and use in source and binary forms, with or without 5 * modification, are permitted provided that the following conditions 6 * are met: 7 * 8 * 1. Redistributions of source code must retain the above copyright 9 * notice, this list of conditions and the following disclaimer. 10 * 2. Redistributions in binary form must reproduce the above copyright 11 * notice, this list of conditions and the following disclaimer in the 12 * documentation and/or other materials provided with the distribution. 13 * 3. Neither the name of the copyright holders nor the names of 14 * contributors may be used to endorse or promote products derived 15 * from this software without specific prior written permission. 16 * 4. Any redistribution, use, or modification is done solely for 17 * personal benefit and not for any commercial purpose or for 18 * monetary gain. 19 * 20 * THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS 21 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 22 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 23 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL MATTHIAS 24 * RINGWALD OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 25 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 26 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS 27 * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 28 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 29 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF 30 * THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 31 * SUCH DAMAGE. 32 * 33 * Please inquire about commercial licensing options at 34 * [email protected] 35 * 36 */ 37 38 #define __BTSTACK_FILE__ "le_device_db_tlv.c" 39 40 #include "ble/le_device_db.h" 41 #include "ble/le_device_db_tlv.h" 42 43 #include "ble/core.h" 44 45 #include <stdio.h> 46 #include <string.h> 47 #include "btstack_debug.h" 48 49 // LE Device DB Implementation storing entries in btstack_tlv 50 51 // Local cache is used to keep track of deleted entries in TLV 52 53 #define INVALID_ENTRY_ADDR_TYPE 0xff 54 55 // Single stored entry 56 typedef struct le_device_db_entry_t { 57 58 uint32_t seq_nr; // used for "least recently stored" eviction strategy 59 60 // Identification 61 int addr_type; 62 bd_addr_t addr; 63 sm_key_t irk; 64 65 // Stored pairing information allows to re-establish an enncrypted connection 66 // with a peripheral that doesn't have any persistent memory 67 sm_key_t ltk; 68 uint16_t ediv; 69 uint8_t rand[8]; 70 uint8_t key_size; 71 uint8_t authenticated; 72 uint8_t authorized; 73 74 #ifdef ENABLE_LE_SIGNED_WRITE 75 // Signed Writes by remote 76 sm_key_t remote_csrk; 77 uint32_t remote_counter; 78 79 // Signed Writes by us 80 sm_key_t local_csrk; 81 uint32_t local_counter; 82 #endif 83 84 } le_device_db_entry_t; 85 86 87 #ifndef NVM_NUM_DEVICE_DB_ENTRIES 88 #error "NVM_NUM_DEVICE_DB_ENTRIES not defined, please define in btstack_config.h" 89 #endif 90 91 #if NVM_NUM_DEVICE_DB_ENTRIES == 0 92 #error "NVM_NUM_DEVICE_DB_ENTRIES must not be 0, please update in btstack_config.h" 93 #endif 94 95 // only stores if entry present 96 static uint8_t entry_map[NVM_NUM_DEVICE_DB_ENTRIES]; 97 static uint32_t num_valid_entries; 98 99 static const btstack_tlv_t * le_device_db_tlv_btstack_tlv_impl; 100 static void * le_device_db_tlv_btstack_tlv_context; 101 102 static const char tag_0 = 'B'; 103 static const char tag_1 = 'T'; 104 static const char tag_2 = 'D'; 105 106 static uint32_t le_device_db_tlv_tag_for_index(uint8_t index){ 107 return (tag_0 << 24) | (tag_1 << 16) | (tag_2 << 8) | index; 108 } 109 110 // @returns success 111 // @param index = entry_pos 112 static int le_device_db_tlv_fetch(int index, le_device_db_entry_t * entry){ 113 if (index < 0 || index >= NVM_NUM_DEVICE_DB_ENTRIES){ 114 log_error("le_device_db_tlv_fetch called with invalid index %d", index); 115 return 0; 116 } 117 uint32_t tag = le_device_db_tlv_tag_for_index(index); 118 int size = le_device_db_tlv_btstack_tlv_impl->get_tag(le_device_db_tlv_btstack_tlv_context, tag, (uint8_t*) entry, sizeof(le_device_db_entry_t)); 119 return size == sizeof(le_device_db_entry_t); 120 } 121 122 // @returns success 123 // @param index = entry_pos 124 static int le_device_db_tlv_store(int index, le_device_db_entry_t * entry){ 125 if (index < 0 || index >= NVM_NUM_DEVICE_DB_ENTRIES){ 126 log_error("le_device_db_tlv_store called with invalid index %d", index); 127 return 0; 128 } 129 uint32_t tag = le_device_db_tlv_tag_for_index(index); 130 le_device_db_tlv_btstack_tlv_impl->store_tag(le_device_db_tlv_btstack_tlv_context, tag, (uint8_t*) entry, sizeof(le_device_db_entry_t)); 131 return 1; 132 } 133 134 // @param index = entry_pos 135 static int le_device_db_tlv_delete(int index){ 136 if (index < 0 || index >= NVM_NUM_DEVICE_DB_ENTRIES){ 137 log_error("le_device_db_tlv_delete called with invalid index %d", index); 138 return 0; 139 } 140 uint32_t tag = le_device_db_tlv_tag_for_index(index); 141 le_device_db_tlv_btstack_tlv_impl->delete_tag(le_device_db_tlv_btstack_tlv_context, tag); 142 return 1; 143 } 144 145 static void le_device_db_tlv_scan(void){ 146 int i; 147 num_valid_entries = 0; 148 memset(entry_map, 0, sizeof(entry_map)); 149 for (i=0;i<NVM_NUM_DEVICE_DB_ENTRIES;i++){ 150 // lookup entry 151 le_device_db_entry_t entry; 152 if (!le_device_db_tlv_fetch(i, &entry)) continue; 153 154 entry_map[i] = 1; 155 num_valid_entries++; 156 } 157 log_info("num valid le device entries %u", num_valid_entries); 158 } 159 160 void le_device_db_init(void){ 161 } 162 163 // not used 164 void le_device_db_set_local_bd_addr(bd_addr_t bd_addr){ 165 (void)bd_addr; 166 } 167 168 // @returns number of device in db 169 int le_device_db_count(void){ 170 return num_valid_entries; 171 } 172 173 int le_device_db_max_count(void){ 174 return NVM_NUM_DEVICE_DB_ENTRIES; 175 } 176 177 void le_device_db_remove(int index){ 178 // delete entry in TLV 179 le_device_db_tlv_delete(index); 180 181 // mark as unused 182 entry_map[index] = 0; 183 184 // keep track 185 num_valid_entries--; 186 } 187 188 int le_device_db_add(int addr_type, bd_addr_t addr, sm_key_t irk){ 189 190 uint32_t highest_seq_nr = 0; 191 uint32_t lowest_seq_nr = 0; 192 int index_for_lowest_seq_nr = -1; 193 int index_for_addr = -1; 194 int index_for_empty = -1; 195 196 // find unused entry in the used list 197 int i; 198 for (i=0;i<NVM_NUM_DEVICE_DB_ENTRIES;i++){ 199 if (entry_map[i]) { 200 le_device_db_entry_t entry; 201 le_device_db_tlv_fetch(i, &entry); 202 // found addr? 203 if ((memcmp(addr, entry.addr, 6) == 0) && addr_type == entry.addr_type){ 204 index_for_addr = i; 205 } 206 // update highest seq nr 207 if (entry.seq_nr > highest_seq_nr){ 208 highest_seq_nr = entry.seq_nr; 209 } 210 // find entry with lowest seq nr 211 if ((index_for_lowest_seq_nr == 0) || (entry.seq_nr < lowest_seq_nr)){ 212 index_for_lowest_seq_nr = i; 213 lowest_seq_nr = entry.seq_nr; 214 } 215 } else { 216 index_for_empty = i; 217 } 218 } 219 220 log_info("index_for_addr %x, index_for_empy %x, index_for_lowest_seq_nr %x", index_for_addr, index_for_empty, index_for_lowest_seq_nr); 221 222 uint32_t index_to_use = 0; 223 if (index_for_addr >= 0){ 224 index_to_use = index_for_addr; 225 } else if (index_for_empty >= 0){ 226 index_to_use = index_for_empty; 227 } else if (index_for_lowest_seq_nr >= 0){ 228 index_to_use = index_for_lowest_seq_nr; 229 } else { 230 // should not happen 231 return -1; 232 } 233 234 log_info("new entry for index %u", index_to_use); 235 236 // store entry at index 237 le_device_db_entry_t entry; 238 log_info("LE Device DB adding type %u - %s", addr_type, bd_addr_to_str(addr)); 239 log_info_key("irk", irk); 240 241 memset(&entry, 0, sizeof(le_device_db_entry_t)); 242 243 entry.addr_type = addr_type; 244 memcpy(entry.addr, addr, 6); 245 memcpy(entry.irk, irk, 16); 246 #ifdef ENABLE_LE_SIGNED_WRITE 247 entry.remote_counter = 0; 248 #endif 249 250 // store 251 le_device_db_tlv_store(index_to_use, &entry); 252 253 // set in entry_mape 254 entry_map[index_to_use] = 1; 255 256 // keep track - don't increase if old entry found 257 if (index_for_addr < 0){ 258 num_valid_entries++; 259 } 260 261 return index_to_use; 262 } 263 264 265 // get device information: addr type and address 266 void le_device_db_info(int index, int * addr_type, bd_addr_t addr, sm_key_t irk){ 267 268 // fetch entry 269 le_device_db_entry_t entry; 270 int ok = le_device_db_tlv_fetch(index, &entry); 271 if (!ok) return; 272 273 if (addr_type) *addr_type = entry.addr_type; 274 if (addr) memcpy(addr, entry.addr, 6); 275 if (irk) memcpy(irk, entry.irk, 16); 276 } 277 278 void le_device_db_encryption_set(int index, uint16_t ediv, uint8_t rand[8], sm_key_t ltk, int key_size, int authenticated, int authorized){ 279 280 // fetch entry 281 le_device_db_entry_t entry; 282 int ok = le_device_db_tlv_fetch(index, &entry); 283 if (!ok) return; 284 285 // update 286 log_info("LE Device DB set encryption for %u, ediv x%04x, key size %u, authenticated %u, authorized %u", 287 index, ediv, key_size, authenticated, authorized); 288 entry.ediv = ediv; 289 if (rand) memcpy(entry.rand, rand, 8); 290 if (ltk) memcpy(entry.ltk, ltk, 16); 291 entry.key_size = key_size; 292 entry.authenticated = authenticated; 293 entry.authorized = authorized; 294 295 // store 296 le_device_db_tlv_store(index, &entry); 297 } 298 299 void le_device_db_encryption_get(int index, uint16_t * ediv, uint8_t rand[8], sm_key_t ltk, int * key_size, int * authenticated, int * authorized){ 300 301 // fetch entry 302 le_device_db_entry_t entry; 303 int ok = le_device_db_tlv_fetch(index, &entry); 304 if (!ok) return; 305 306 // update user fields 307 log_info("LE Device DB encryption for %u, ediv x%04x, keysize %u, authenticated %u, authorized %u", 308 index, entry.ediv, entry.key_size, entry.authenticated, entry.authorized); 309 if (ediv) *ediv = entry.ediv; 310 if (rand) memcpy(rand, entry.rand, 8); 311 if (ltk) memcpy(ltk, entry.ltk, 16); 312 if (key_size) *key_size = entry.key_size; 313 if (authenticated) *authenticated = entry.authenticated; 314 if (authorized) *authorized = entry.authorized; 315 } 316 317 #ifdef ENABLE_LE_SIGNED_WRITE 318 319 // get signature key 320 void le_device_db_remote_csrk_get(int index, sm_key_t csrk){ 321 322 // fetch entry 323 le_device_db_entry_t entry; 324 int ok = le_device_db_tlv_fetch(index, &entry); 325 if (!ok) return; 326 327 if (csrk) memcpy(csrk, entry.remote_csrk, 16); 328 } 329 330 void le_device_db_remote_csrk_set(int index, sm_key_t csrk){ 331 332 // fetch entry 333 le_device_db_entry_t entry; 334 int ok = le_device_db_tlv_fetch(index, &entry); 335 if (!ok) return; 336 337 if (!csrk) return; 338 339 // update 340 memcpy(entry.remote_csrk, csrk, 16); 341 342 // store 343 le_device_db_tlv_store(index, &entry); 344 } 345 346 void le_device_db_local_csrk_get(int index, sm_key_t csrk){ 347 348 // fetch entry 349 le_device_db_entry_t entry; 350 int ok = le_device_db_tlv_fetch(index, &entry); 351 if (!ok) return; 352 353 if (!csrk) return; 354 355 // fill 356 memcpy(csrk, entry.local_csrk, 16); 357 } 358 359 void le_device_db_local_csrk_set(int index, sm_key_t csrk){ 360 361 // fetch entry 362 le_device_db_entry_t entry; 363 int ok = le_device_db_tlv_fetch(index, &entry); 364 if (!ok) return; 365 366 if (!csrk) return; 367 368 // update 369 memcpy(entry.local_csrk, csrk, 16); 370 371 // store 372 le_device_db_tlv_store(index, &entry); 373 } 374 375 // query last used/seen signing counter 376 uint32_t le_device_db_remote_counter_get(int index){ 377 378 // fetch entry 379 le_device_db_entry_t entry; 380 int ok = le_device_db_tlv_fetch(index, &entry); 381 if (!ok) return 0; 382 383 return entry.remote_counter; 384 } 385 386 // update signing counter 387 void le_device_db_remote_counter_set(int index, uint32_t counter){ 388 389 // fetch entry 390 le_device_db_entry_t entry; 391 int ok = le_device_db_tlv_fetch(index, &entry); 392 if (!ok) return; 393 394 entry.remote_counter = counter; 395 396 // store 397 le_device_db_tlv_store(index, &entry); 398 } 399 400 // query last used/seen signing counter 401 uint32_t le_device_db_local_counter_get(int index){ 402 403 // fetch entry 404 le_device_db_entry_t entry; 405 int ok = le_device_db_tlv_fetch(index, &entry); 406 if (!ok) return 0; 407 408 return entry.local_counter; 409 } 410 411 // update signing counter 412 void le_device_db_local_counter_set(int index, uint32_t counter){ 413 414 // fetch entry 415 le_device_db_entry_t entry; 416 int ok = le_device_db_tlv_fetch(index, &entry); 417 if (!ok) return; 418 419 // update 420 entry.local_counter = counter; 421 422 // store 423 le_device_db_tlv_store(index, &entry); 424 } 425 426 #endif 427 428 void le_device_db_dump(void){ 429 log_info("LE Device DB dump, devices: %d", le_device_db_count()); 430 uint32_t i; 431 432 for (i=0;i<NVM_NUM_DEVICE_DB_ENTRIES;i++){ 433 if (!entry_map[i]) continue; 434 // fetch entry 435 le_device_db_entry_t entry; 436 le_device_db_tlv_fetch(i, &entry); 437 log_info("%u: %u %s", i, entry.addr_type, bd_addr_to_str(entry.addr)); 438 log_info_key("irk", entry.irk); 439 #ifdef ENABLE_LE_SIGNED_WRITE 440 log_info_key("local csrk", entry.local_csrk); 441 log_info_key("remote csrk", entry.remote_csrk); 442 #endif 443 } 444 } 445 446 void le_device_db_tlv_configure(const btstack_tlv_t * btstack_tlv_impl, void * btstack_tlv_context){ 447 le_device_db_tlv_btstack_tlv_impl = btstack_tlv_impl; 448 le_device_db_tlv_btstack_tlv_context = btstack_tlv_context; 449 le_device_db_tlv_scan(); 450 } 451