xref: /btstack/src/ble/le_device_db_tlv.c (revision 1b464e99afd70ddaf6b75be1ba7cc563a5f5dfd8)
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 <string.h>
46 #include "btstack_debug.h"
47 
48 // LE Device DB Implementation storing entries in btstack_tlv
49 
50 // Local cache is used to keep track of deleted entries in TLV
51 
52 #define INVALID_ENTRY_ADDR_TYPE 0xff
53 
54 // Single stored entry
55 typedef struct le_device_db_entry_t {
56 
57     uint32_t seq_nr;    // used for "least recently stored" eviction strategy
58 
59     // Identification
60     int addr_type;
61     bd_addr_t addr;
62     sm_key_t irk;
63 
64     // Stored pairing information allows to re-establish an enncrypted connection
65     // with a peripheral that doesn't have any persistent memory
66     sm_key_t ltk;
67     uint16_t ediv;
68     uint8_t  rand[8];
69 
70     uint8_t  key_size;
71     uint8_t  authenticated;
72     uint8_t  authorized;
73     uint8_t  secure_connection;
74 
75 #ifdef ENABLE_LE_SIGNED_WRITE
76     // Signed Writes by remote
77     sm_key_t remote_csrk;
78     uint32_t remote_counter;
79 
80     // Signed Writes by us
81     sm_key_t local_csrk;
82     uint32_t local_counter;
83 #endif
84 
85 } le_device_db_entry_t;
86 
87 
88 #ifndef NVM_NUM_DEVICE_DB_ENTRIES
89 #error "NVM_NUM_DEVICE_DB_ENTRIES not defined, please define in btstack_config.h"
90 #endif
91 
92 #if NVM_NUM_DEVICE_DB_ENTRIES == 0
93 #error "NVM_NUM_DEVICE_DB_ENTRIES must not be 0, please update in btstack_config.h"
94 #endif
95 
96 // only stores if entry present
97 static uint8_t  entry_map[NVM_NUM_DEVICE_DB_ENTRIES];
98 static uint32_t num_valid_entries;
99 
100 static const btstack_tlv_t * le_device_db_tlv_btstack_tlv_impl;
101 static       void *          le_device_db_tlv_btstack_tlv_context;
102 
103 
104 static uint32_t le_device_db_tlv_tag_for_index(uint8_t index){
105     static const char tag_0 = 'B';
106     static const char tag_1 = 'T';
107     static const char tag_2 = 'D';
108 
109     return (tag_0 << 24) | (tag_1 << 16) | (tag_2 << 8) | index;
110 }
111 
112 // @returns success
113 // @param index = entry_pos
114 static bool le_device_db_tlv_fetch(int index, le_device_db_entry_t * entry){
115     btstack_assert(le_device_db_tlv_btstack_tlv_impl != NULL);
116     btstack_assert(index >= 0);
117     btstack_assert(index < NVM_NUM_DEVICE_DB_ENTRIES);
118 
119     uint32_t tag = le_device_db_tlv_tag_for_index(index);
120     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));
121 	return size == sizeof(le_device_db_entry_t);
122 }
123 
124 // @returns success
125 // @param index = entry_pos
126 static bool le_device_db_tlv_store(int index, le_device_db_entry_t * entry){
127     btstack_assert(le_device_db_tlv_btstack_tlv_impl != NULL);
128     btstack_assert(index >= 0);
129     btstack_assert(index < NVM_NUM_DEVICE_DB_ENTRIES);
130 
131     uint32_t tag = le_device_db_tlv_tag_for_index(index);
132     int result = 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));
133     return result == 0;
134 }
135 
136 // @param index = entry_pos
137 static bool le_device_db_tlv_delete(int index){
138     btstack_assert(le_device_db_tlv_btstack_tlv_impl != NULL);
139     btstack_assert(index >= 0);
140     btstack_assert(index < NVM_NUM_DEVICE_DB_ENTRIES);
141 
142     uint32_t tag = le_device_db_tlv_tag_for_index(index);
143     le_device_db_tlv_btstack_tlv_impl->delete_tag(le_device_db_tlv_btstack_tlv_context, tag);
144 	return true;
145 }
146 
147 static void le_device_db_tlv_scan(void){
148     int i;
149     num_valid_entries = 0;
150     memset(entry_map, 0, sizeof(entry_map));
151     for (i=0;i<NVM_NUM_DEVICE_DB_ENTRIES;i++){
152         // lookup entry
153         le_device_db_entry_t entry;
154         if (!le_device_db_tlv_fetch(i, &entry)) continue;
155 
156         entry_map[i] = 1;
157         num_valid_entries++;
158     }
159     log_info("num valid le device entries %u", num_valid_entries);
160 }
161 
162 void le_device_db_init(void){
163     if (!le_device_db_tlv_btstack_tlv_impl) {
164         log_error("btstack_tlv not initialized");
165     }
166 }
167 
168 // not used
169 void le_device_db_set_local_bd_addr(bd_addr_t bd_addr){
170     (void)bd_addr;
171 }
172 
173 // @returns number of device in db
174 int le_device_db_count(void){
175 	return num_valid_entries;
176 }
177 
178 int le_device_db_max_count(void){
179     return NVM_NUM_DEVICE_DB_ENTRIES;
180 }
181 
182 void le_device_db_remove(int index){
183     // check if entry exists
184     if (entry_map[index] == 0) return;
185 
186 	// delete entry in TLV
187 	le_device_db_tlv_delete(index);
188 
189 	// mark as unused
190     entry_map[index] = 0;
191 
192     // keep track
193     num_valid_entries--;
194 }
195 
196 int le_device_db_add(int addr_type, bd_addr_t addr, sm_key_t irk){
197 
198     uint32_t highest_seq_nr = 0;
199     uint32_t lowest_seq_nr  = 0xFFFFFFFF;
200     int index_for_lowest_seq_nr = -1;
201     int index_for_addr  = -1;
202     int index_for_empty = -1;
203 
204 	// find unused entry in the used list
205     int i;
206     for (i=0;i<NVM_NUM_DEVICE_DB_ENTRIES;i++){
207          if (entry_map[i]) {
208             le_device_db_entry_t entry;
209             le_device_db_tlv_fetch(i, &entry);
210             // found addr?
211             if ((memcmp(addr, entry.addr, 6) == 0) && (addr_type == entry.addr_type)){
212                 index_for_addr = i;
213             }
214             // update highest seq nr
215             if (entry.seq_nr > highest_seq_nr){
216                 highest_seq_nr = entry.seq_nr;
217             }
218             // find entry with lowest seq nr
219             if ((index_for_lowest_seq_nr == -1) || (entry.seq_nr < lowest_seq_nr)){
220                 index_for_lowest_seq_nr = i;
221                 lowest_seq_nr = entry.seq_nr;
222             }
223         } else {
224             index_for_empty = i;
225         }
226     }
227 
228     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);
229 
230     uint32_t index_to_use = 0;
231     if (index_for_addr >= 0){
232         index_to_use = index_for_addr;
233     } else if (index_for_empty >= 0){
234         index_to_use = index_for_empty;
235     } else if (index_for_lowest_seq_nr >= 0){
236         index_to_use = index_for_lowest_seq_nr;
237     } else {
238         // should not happen
239         return -1;
240     }
241 
242     log_info("new entry for index %u", index_to_use);
243 
244     // store entry at index
245 	le_device_db_entry_t entry;
246     log_info("LE Device DB adding type %u - %s", addr_type, bd_addr_to_str(addr));
247     log_info_key("irk", irk);
248 
249     memset(&entry, 0, sizeof(le_device_db_entry_t));
250 
251     entry.addr_type = addr_type;
252     (void)memcpy(entry.addr, addr, 6);
253     (void)memcpy(entry.irk, irk, 16);
254     entry.seq_nr = highest_seq_nr + 1;
255  #ifdef ENABLE_LE_SIGNED_WRITE
256     entry.remote_counter = 0;
257 #endif
258 
259     // store
260     bool ok = le_device_db_tlv_store(index_to_use, &entry);
261     if (!ok){
262         log_error("tag store failed");
263         return -1;
264     }
265     // set in entry_mape
266     entry_map[index_to_use] = 1;
267 
268     // keep track - don't increase if old entry found
269     if (index_for_addr < 0){
270         num_valid_entries++;
271     }
272 
273     return index_to_use;
274 }
275 
276 
277 // get device information: addr type and address
278 void le_device_db_info(int index, int * addr_type, bd_addr_t addr, sm_key_t irk){
279 
280 	// fetch entry
281     le_device_db_entry_t entry;
282     int ok = le_device_db_tlv_fetch(index, &entry);
283 
284     // set defaults if not found
285     if (!ok) {
286         memset(&entry, 0, sizeof(le_device_db_entry_t));
287         entry.addr_type = BD_ADDR_TYPE_UNKNOWN;
288     }
289 
290     // setup return values
291     if (addr_type) *addr_type = entry.addr_type;
292     if (addr) (void)memcpy(addr, entry.addr, 6);
293     if (irk) (void)memcpy(irk, entry.irk, 16);
294 }
295 
296 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, int secure_connection){
297 
298 	// fetch entry
299 	le_device_db_entry_t entry;
300 	int ok = le_device_db_tlv_fetch(index, &entry);
301 	if (!ok) return;
302 
303 	// update
304     log_info("LE Device DB set encryption for %u, ediv x%04x, key size %u, authenticated %u, authorized %u, secure connection %u",
305         index, ediv, key_size, authenticated, authorized, secure_connection);
306     entry.ediv = ediv;
307     if (rand) (void)memcpy(entry.rand, rand, 8);
308     if (ltk) (void)memcpy(entry.ltk, ltk, 16);
309     entry.key_size = key_size;
310     entry.authenticated = authenticated;
311     entry.authorized = authorized;
312     entry.secure_connection = secure_connection;
313 
314     // store
315     ok = le_device_db_tlv_store(index, &entry);
316     if (!ok){
317         log_error("Set encryption data failed");
318     }
319 }
320 
321 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, int * secure_connection){
322 
323 	// fetch entry
324 	le_device_db_entry_t entry;
325 	int ok = le_device_db_tlv_fetch(index, &entry);
326 	if (!ok) return;
327 
328 	// update user fields
329     log_info("LE Device DB encryption for %u, ediv x%04x, keysize %u, authenticated %u, authorized %u, secure connection %u",
330         index, entry.ediv, entry.key_size, entry.authenticated, entry.authorized, entry.secure_connection);
331     if (ediv) *ediv = entry.ediv;
332     if (rand) (void)memcpy(rand, entry.rand, 8);
333     if (ltk)  (void)memcpy(ltk, entry.ltk, 16);
334     if (key_size) *key_size = entry.key_size;
335     if (authenticated) *authenticated = entry.authenticated;
336     if (authorized) *authorized = entry.authorized;
337     if (secure_connection) *secure_connection = entry.secure_connection;
338 }
339 
340 #ifdef ENABLE_LE_SIGNED_WRITE
341 
342 // get signature key
343 void le_device_db_remote_csrk_get(int index, sm_key_t csrk){
344 
345 	// fetch entry
346 	le_device_db_entry_t entry;
347 	int ok = le_device_db_tlv_fetch(index, &entry);
348 	if (!ok) return;
349 
350     if (csrk) (void)memcpy(csrk, entry.remote_csrk, 16);
351 }
352 
353 void le_device_db_remote_csrk_set(int index, sm_key_t csrk){
354 
355 	// fetch entry
356 	le_device_db_entry_t entry;
357 	int ok = le_device_db_tlv_fetch(index, &entry);
358 	if (!ok) return;
359 
360     if (!csrk) return;
361 
362     // update
363     (void)memcpy(entry.remote_csrk, csrk, 16);
364 
365     // store
366     le_device_db_tlv_store(index, &entry);
367 }
368 
369 void le_device_db_local_csrk_get(int index, sm_key_t csrk){
370 
371 	// fetch entry
372 	le_device_db_entry_t entry;
373 	int ok = le_device_db_tlv_fetch(index, &entry);
374 	if (!ok) return;
375 
376     if (!csrk) return;
377 
378     // fill
379     (void)memcpy(csrk, entry.local_csrk, 16);
380 }
381 
382 void le_device_db_local_csrk_set(int index, sm_key_t csrk){
383 
384 	// fetch entry
385 	le_device_db_entry_t entry;
386 	int ok = le_device_db_tlv_fetch(index, &entry);
387 	if (!ok) return;
388 
389     if (!csrk) return;
390 
391     // update
392     (void)memcpy(entry.local_csrk, csrk, 16);
393 
394     // store
395     le_device_db_tlv_store(index, &entry);
396 }
397 
398 // query last used/seen signing counter
399 uint32_t le_device_db_remote_counter_get(int index){
400 
401 	// fetch entry
402 	le_device_db_entry_t entry;
403 	int ok = le_device_db_tlv_fetch(index, &entry);
404 	if (!ok) return 0;
405 
406     return entry.remote_counter;
407 }
408 
409 // update signing counter
410 void le_device_db_remote_counter_set(int index, uint32_t counter){
411 
412 	// fetch entry
413 	le_device_db_entry_t entry;
414 	int ok = le_device_db_tlv_fetch(index, &entry);
415 	if (!ok) return;
416 
417     entry.remote_counter = counter;
418 
419     // store
420     le_device_db_tlv_store(index, &entry);
421 }
422 
423 // query last used/seen signing counter
424 uint32_t le_device_db_local_counter_get(int index){
425 
426 	// fetch entry
427 	le_device_db_entry_t entry;
428 	int ok = le_device_db_tlv_fetch(index, &entry);
429 	if (!ok) return 0;
430 
431     return entry.local_counter;
432 }
433 
434 // update signing counter
435 void le_device_db_local_counter_set(int index, uint32_t counter){
436 
437 	// fetch entry
438 	le_device_db_entry_t entry;
439 	int ok = le_device_db_tlv_fetch(index, &entry);
440 	if (!ok) return;
441 
442 	// update
443     entry.local_counter = counter;
444 
445     // store
446     le_device_db_tlv_store(index, &entry);
447 }
448 
449 #endif
450 
451 void le_device_db_dump(void){
452     log_info("LE Device DB dump, devices: %d", le_device_db_count());
453     uint32_t i;
454 
455     for (i=0;i<NVM_NUM_DEVICE_DB_ENTRIES;i++){
456         if (!entry_map[i]) continue;
457 		// fetch entry
458 		le_device_db_entry_t entry;
459 		le_device_db_tlv_fetch(i, &entry);
460         log_info("%u: %u %s", i, entry.addr_type, bd_addr_to_str(entry.addr));
461         log_info_key("irk", entry.irk);
462 #ifdef ENABLE_LE_SIGNED_WRITE
463         log_info_key("local csrk", entry.local_csrk);
464         log_info_key("remote csrk", entry.remote_csrk);
465 #endif
466     }
467 }
468 
469 void le_device_db_tlv_configure(const btstack_tlv_t * btstack_tlv_impl, void * btstack_tlv_context){
470 	le_device_db_tlv_btstack_tlv_impl = btstack_tlv_impl;
471 	le_device_db_tlv_btstack_tlv_context = btstack_tlv_context;
472     le_device_db_tlv_scan();
473 }
474