1 /* 2 * Copyright (C) 2019 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__ "mesh_access.c" 39 40 #include <string.h> 41 #include <stdio.h> 42 #include <stdarg.h> 43 44 #include "mesh/mesh_access.h" 45 46 #include "btstack_debug.h" 47 #include "btstack_memory.h" 48 #include "btstack_tlv.h" 49 50 #include "mesh/beacon.h" 51 #include "mesh/mesh_foundation.h" 52 #include "mesh/mesh_iv_index_seq_number.h" 53 #include "mesh/mesh_node.h" 54 #include "mesh/mesh_proxy.h" 55 #include "mesh/mesh_upper_transport.h" 56 #include "mesh/mesh.h" 57 58 #define MEST_TRANSACTION_TIMEOUT_MS 6000 59 60 static void mesh_access_message_process_handler(mesh_pdu_t * pdu); 61 static void mesh_access_upper_transport_handler(mesh_transport_callback_type_t callback_type, mesh_transport_status_t status, mesh_pdu_t * pdu); 62 static const mesh_operation_t * mesh_model_lookup_operation_by_opcode(mesh_model_t * model, uint32_t opcode); 63 64 // receive 65 static uint16_t mesh_access_received_pdu_refcount; 66 67 // acknowledged messages 68 static btstack_linked_list_t mesh_access_acknowledged_messages; 69 static btstack_timer_source_t mesh_access_acknowledged_timer; 70 static int mesh_access_acknowledged_timer_active; 71 72 // Transitions 73 static uint8_t mesh_transaction_id_counter = 0; 74 75 void mesh_access_init(void){ 76 // register with upper transport 77 mesh_upper_transport_register_access_message_handler(&mesh_access_upper_transport_handler); 78 } 79 80 void mesh_access_emit_state_update_bool(btstack_packet_handler_t event_handler, uint8_t element_index, uint32_t model_identifier, 81 model_state_id_t state_identifier, model_state_update_reason_t reason, uint8_t value){ 82 if (event_handler == NULL) return; 83 uint8_t event[14] = {HCI_EVENT_MESH_META, 12, MESH_SUBEVENT_STATE_UPDATE_BOOL}; 84 int pos = 3; 85 event[pos++] = element_index; 86 little_endian_store_32(event, pos, model_identifier); 87 pos += 4; 88 little_endian_store_32(event, pos, (uint32_t)state_identifier); 89 pos += 4; 90 event[pos++] = (uint8_t)reason; 91 event[pos++] = value; 92 (*event_handler)(HCI_EVENT_PACKET, 0, event, sizeof(event)); 93 } 94 95 void mesh_access_emit_state_update_int16(btstack_packet_handler_t event_handler, uint8_t element_index, uint32_t model_identifier, 96 model_state_id_t state_identifier, model_state_update_reason_t reason, int16_t value){ 97 if (event_handler == NULL) return; 98 uint8_t event[15] = {HCI_EVENT_MESH_META, 13, MESH_SUBEVENT_STATE_UPDATE_BOOL}; 99 int pos = 3; 100 event[pos++] = element_index; 101 little_endian_store_32(event, pos, model_identifier); 102 pos += 4; 103 little_endian_store_32(event, pos, (uint32_t)state_identifier); 104 pos += 4; 105 event[pos++] = (uint8_t)reason; 106 little_endian_store_16(event, pos, (uint16_t) value); 107 pos += 2; 108 (*event_handler)(HCI_EVENT_PACKET, 0, event, sizeof(event)); 109 } 110 111 uint8_t mesh_access_acknowledged_message_retransmissions(void){ 112 return 3; 113 } 114 115 uint32_t mesh_access_acknowledged_message_timeout_ms(void){ 116 return 30000; 117 } 118 119 #define MESH_ACCESS_OPCODE_INVALID 0xFFFFFFFFu 120 #define MESH_ACCESS_OPCODE_NOT_SET 0xFFFFFFFEu 121 122 void mesh_access_send_unacknowledged_pdu(mesh_pdu_t * pdu){ 123 ((mesh_upper_transport_pdu_t *) pdu)->ack_opcode = MESH_ACCESS_OPCODE_INVALID; 124 mesh_upper_transport_send_access_pdu(pdu); 125 } 126 127 void mesh_access_send_acknowledged_pdu(mesh_pdu_t * pdu, uint8_t retransmissions, uint32_t ack_opcode){ 128 ((mesh_upper_transport_pdu_t *) pdu)->retransmit_count = retransmissions; 129 ((mesh_upper_transport_pdu_t *) pdu)->ack_opcode = ack_opcode; 130 131 mesh_upper_transport_send_access_pdu(pdu); 132 } 133 134 #define MESH_SUBEVENT_MESSAGE_NOT_ACKNOWLEDGED 0x30 135 136 static void mesh_access_acknowledged_run(btstack_timer_source_t * ts){ 137 UNUSED(ts); 138 139 uint32_t now = btstack_run_loop_get_time_ms(); 140 141 // handle timeouts 142 btstack_linked_list_iterator_t ack_it; 143 btstack_linked_list_iterator_init(&ack_it, &mesh_access_acknowledged_messages); 144 while (btstack_linked_list_iterator_has_next(&ack_it)){ 145 mesh_pdu_t * pdu = (mesh_pdu_t *) btstack_linked_list_iterator_next(&ack_it); 146 uint32_t retransmit_timeout_ms = ((mesh_upper_transport_pdu_t *) pdu)->retransmit_timeout_ms; 147 if (btstack_time_delta(now, retransmit_timeout_ms) >= 0) { 148 // remove from list 149 btstack_linked_list_remove(&mesh_access_acknowledged_messages, (btstack_linked_item_t*) pdu); 150 // retransmit or report failure 151 uint8_t retransmit_count = ((mesh_upper_transport_pdu_t *) pdu)->retransmit_count; 152 if (retransmit_count){ 153 ((mesh_upper_transport_pdu_t *) pdu)->retransmit_count = retransmit_count - 1; 154 mesh_upper_transport_send_access_pdu(pdu); 155 } else { 156 // find correct model and emit error 157 uint16_t src = mesh_pdu_src(pdu); 158 uint16_t dst = mesh_pdu_dst(pdu); 159 mesh_element_t * element = mesh_node_element_for_unicast_address(src); 160 if (element){ 161 // find 162 mesh_model_iterator_t model_it; 163 mesh_model_iterator_init(&model_it, element); 164 while (mesh_model_iterator_has_next(&model_it)){ 165 mesh_model_t * model = mesh_model_iterator_next(&model_it); 166 // find opcode in table 167 uint32_t ack_opcode = ((mesh_upper_transport_pdu_t *) pdu)->ack_opcode; 168 const mesh_operation_t * operation = mesh_model_lookup_operation_by_opcode(model, ack_opcode); 169 if (operation == NULL) continue; 170 if (model->model_packet_handler == NULL) continue; 171 // emit event 172 uint8_t event[13]; 173 event[0] = HCI_EVENT_MESH_META; 174 event[1] = sizeof(event) - 2; 175 event[2] = element->element_index; 176 little_endian_store_32(event, 3, model->model_identifier); 177 little_endian_store_32(event, 7, ack_opcode); 178 little_endian_store_16(event, 11, dst); 179 (*model->model_packet_handler)(HCI_EVENT_PACKET, 0, event, sizeof(event)); 180 } 181 } 182 183 // free 184 mesh_upper_transport_pdu_free(pdu); 185 } 186 } 187 } 188 189 if (mesh_access_acknowledged_timer_active) return; 190 191 // find earliest timeout and set timer 192 btstack_linked_list_iterator_init(&ack_it, &mesh_access_acknowledged_messages); 193 int32_t next_timeout_ms = 0; 194 while (btstack_linked_list_iterator_has_next(&ack_it)){ 195 mesh_pdu_t * pdu = (mesh_pdu_t *) btstack_linked_list_iterator_next(&ack_it); 196 uint32_t retransmit_timeout_ms = ((mesh_upper_transport_pdu_t *) pdu)->retransmit_timeout_ms; 197 int32_t timeout_delta_ms = btstack_time_delta(retransmit_timeout_ms, now); 198 if (next_timeout_ms == 0 || timeout_delta_ms < next_timeout_ms){ 199 next_timeout_ms = timeout_delta_ms; 200 } 201 } 202 203 // set timer 204 if (next_timeout_ms == 0) return; 205 206 btstack_run_loop_set_timer(&mesh_access_acknowledged_timer, next_timeout_ms); 207 btstack_run_loop_set_timer_handler(&mesh_access_acknowledged_timer, mesh_access_acknowledged_run); 208 btstack_run_loop_add_timer(&mesh_access_acknowledged_timer); 209 mesh_access_acknowledged_timer_active = 1; 210 } 211 212 static void mesh_access_acknowledged_received(uint16_t rx_src, uint32_t opcode){ 213 // check if received src matches our dest 214 // free acknowledged messages if we were waiting for this message 215 216 btstack_linked_list_iterator_t ack_it; 217 btstack_linked_list_iterator_init(&ack_it, &mesh_access_acknowledged_messages); 218 while (btstack_linked_list_iterator_has_next(&ack_it)){ 219 mesh_pdu_t * tx_pdu = (mesh_pdu_t *) btstack_linked_list_iterator_next(&ack_it); 220 uint16_t tx_dest = mesh_pdu_dst(tx_pdu); 221 if (tx_dest != rx_src) continue; 222 if (((mesh_upper_transport_pdu_t *) tx_pdu)->ack_opcode != opcode) continue; 223 // got expected response from dest, remove from outgoing messages 224 mesh_upper_transport_pdu_free(tx_pdu); 225 return; 226 } 227 } 228 229 static void mesh_access_upper_transport_handler(mesh_transport_callback_type_t callback_type, mesh_transport_status_t status, mesh_pdu_t * pdu){ 230 UNUSED(status); 231 switch (callback_type){ 232 case MESH_TRANSPORT_PDU_RECEIVED: 233 mesh_access_message_process_handler(pdu); 234 break; 235 case MESH_TRANSPORT_PDU_SENT: 236 // unacknowledged -> free 237 { 238 if (((mesh_upper_transport_pdu_t *) pdu)->ack_opcode == MESH_ACCESS_OPCODE_INVALID){ 239 mesh_upper_transport_pdu_free(pdu); 240 break; 241 } 242 } 243 // setup timeout 244 uint32_t retransmitTimeoutMs = 245 btstack_run_loop_get_time_ms() + mesh_access_acknowledged_message_timeout_ms(); 246 ((mesh_upper_transport_pdu_t *) pdu)->retransmit_timeout_ms = retransmitTimeoutMs; 247 // add to mesh_access_acknowledged_messages 248 btstack_linked_list_add(&mesh_access_acknowledged_messages, (btstack_linked_item_t *) pdu); 249 // update timer 250 mesh_access_acknowledged_run(NULL); 251 break; 252 default: 253 break; 254 } 255 } 256 257 // Mesh Model Transitions 258 259 uint32_t mesh_access_time_gdtt2ms(uint8_t time_gdtt){ 260 uint8_t num_steps = mesh_access_transitions_num_steps_from_gdtt(time_gdtt); 261 if (num_steps > 0x3E) return 0; 262 263 return mesh_access_transitions_step_ms_from_gdtt(time_gdtt) * num_steps; 264 } 265 266 uint8_t mesh_access_transitions_num_steps_from_gdtt(uint8_t time_gdtt){ 267 return time_gdtt & 0x3fu; 268 } 269 270 uint32_t mesh_access_transitions_step_ms_from_gdtt(uint8_t time_gdtt){ 271 mesh_default_transition_step_resolution_t step_resolution = (mesh_default_transition_step_resolution_t) (time_gdtt >> 6); 272 switch (step_resolution){ 273 case MESH_DEFAULT_TRANSITION_STEP_RESOLUTION_100ms: 274 return 100; 275 case MESH_DEFAULT_TRANSITION_STEP_RESOLUTION_1s: 276 return 1000; 277 case MESH_DEFAULT_TRANSITION_STEP_RESOLUTION_10s: 278 return 10000; 279 case MESH_DEFAULT_TRANSITION_STEP_RESOLUTION_10min: 280 return 600000; 281 default: 282 return 0; 283 } 284 } 285 286 uint8_t mesh_access_transactions_get_next_transaction_id(void){ 287 mesh_transaction_id_counter++; 288 if (mesh_transaction_id_counter == 0){ 289 mesh_transaction_id_counter = 1; 290 } 291 return mesh_transaction_id_counter; 292 } 293 294 static int mesh_access_transitions_transaction_is_expired(mesh_transition_t * transition){ 295 return (btstack_run_loop_get_time_ms() - transition->transaction_timestamp_ms) > MEST_TRANSACTION_TIMEOUT_MS; 296 } 297 298 mesh_transaction_status_t mesh_access_transitions_transaction_status(mesh_transition_t * transition, uint8_t transaction_identifier, uint16_t src_address, uint16_t dst_address){ 299 if (transition->src_address != src_address || transition->dst_address != dst_address) return MESH_TRANSACTION_STATUS_DIFFERENT_DST_OR_SRC; 300 301 if (transition->transaction_identifier == transaction_identifier && !mesh_access_transitions_transaction_is_expired(transition)){ 302 return MESH_TRANSACTION_STATUS_RETRANSMISSION; 303 } 304 return MESH_TRANSACTION_STATUS_NEW; 305 } 306 307 void mesh_access_transitions_init_transaction(mesh_transition_t * transition, uint8_t transaction_identifier, uint16_t src_address, uint16_t dst_address){ 308 transition->transaction_timestamp_ms = btstack_run_loop_get_time_ms(); 309 transition->transaction_identifier = transaction_identifier; 310 transition->src_address = src_address; 311 transition->dst_address = dst_address; 312 } 313 314 static void mesh_server_transition_timeout(btstack_timer_source_t * ts){ 315 mesh_transition_t * base_transition = (mesh_transition_t*) btstack_run_loop_get_timer_context(ts); 316 switch (base_transition->state){ 317 case MESH_TRANSITION_STATE_DELAYED: 318 base_transition->state = MESH_TRANSITION_STATE_ACTIVE; 319 (*base_transition->transition_callback)(base_transition, MODEL_STATE_UPDATE_REASON_TRANSITION_START); 320 if (base_transition->num_steps > 0){ 321 btstack_run_loop_set_timer(&base_transition->timer, base_transition->step_duration_ms); 322 btstack_run_loop_add_timer(&base_transition->timer); 323 return; 324 } 325 base_transition->state = MESH_TRANSITION_STATE_IDLE; 326 (*base_transition->transition_callback)(base_transition, MODEL_STATE_UPDATE_REASON_TRANSITION_END); 327 break; 328 case MESH_TRANSITION_STATE_ACTIVE: 329 if (base_transition->num_steps < MESH_TRANSITION_NUM_STEPS_INFINITE){ 330 base_transition->num_steps--; 331 } 332 (*base_transition->transition_callback)(base_transition, MODEL_STATE_UPDATE_REASON_TRANSITION_ACTIVE); 333 if (base_transition->num_steps > 0){ 334 btstack_run_loop_set_timer(&base_transition->timer, base_transition->step_duration_ms); 335 btstack_run_loop_add_timer(&base_transition->timer); 336 return; 337 } 338 base_transition->state = MESH_TRANSITION_STATE_IDLE; 339 (*base_transition->transition_callback)(base_transition, MODEL_STATE_UPDATE_REASON_TRANSITION_END); 340 break; 341 default: 342 break; 343 } 344 } 345 346 void mesh_access_transition_setup(mesh_model_t *mesh_model, mesh_transition_t * base_transition, uint8_t transition_time_gdtt, uint8_t delay_time_gdtt, void (*transition_callback)(mesh_transition_t * base_transition, model_state_update_reason_t event)){ 347 348 base_transition->mesh_model = mesh_model; 349 base_transition->num_steps = mesh_access_transitions_num_steps_from_gdtt(transition_time_gdtt); 350 base_transition->step_resolution = (mesh_default_transition_step_resolution_t) (transition_time_gdtt >> 6); 351 base_transition->step_duration_ms = mesh_access_transitions_step_ms_from_gdtt(transition_time_gdtt); 352 base_transition->transition_callback = transition_callback; 353 354 btstack_run_loop_set_timer_context(&base_transition->timer, base_transition); 355 btstack_run_loop_set_timer_handler(&base_transition->timer, &mesh_server_transition_timeout); 356 357 // delayed 358 if (delay_time_gdtt > 0){ 359 base_transition->state = MESH_TRANSITION_STATE_DELAYED; 360 btstack_run_loop_set_timer(&base_transition->timer, delay_time_gdtt * 5); 361 btstack_run_loop_add_timer(&base_transition->timer); 362 return; 363 } 364 365 // started 366 if (base_transition->num_steps > 0){ 367 base_transition->state = MESH_TRANSITION_STATE_ACTIVE; 368 btstack_run_loop_set_timer(&base_transition->timer, base_transition->step_duration_ms); 369 btstack_run_loop_add_timer(&base_transition->timer); 370 return; 371 } 372 373 // instanteneous update 374 base_transition->state = MESH_TRANSITION_STATE_IDLE; 375 (*transition_callback)(base_transition, MODEL_STATE_UPDATE_REASON_SET); 376 return; 377 } 378 379 void mesh_access_transitions_abort_transaction(mesh_transition_t * base_transition){ 380 btstack_run_loop_add_timer(&base_transition->timer); 381 } 382 383 static uint16_t mesh_access_src(mesh_access_pdu_t * access_pdu){ 384 return access_pdu->src; 385 } 386 387 uint16_t mesh_pdu_ctl(mesh_pdu_t * pdu){ 388 switch (pdu->pdu_type){ 389 case MESH_PDU_TYPE_NETWORK: 390 return mesh_network_control((mesh_network_pdu_t *) pdu); 391 default: 392 btstack_assert(false); 393 return 0; 394 } 395 } 396 397 uint16_t mesh_pdu_ttl(mesh_pdu_t * pdu){ 398 switch (pdu->pdu_type){ 399 case MESH_PDU_TYPE_NETWORK: 400 return mesh_network_ttl((mesh_network_pdu_t *) pdu); 401 default: 402 btstack_assert(false); 403 return 0; 404 } 405 } 406 407 uint16_t mesh_pdu_src(mesh_pdu_t * pdu){ 408 switch (pdu->pdu_type){ 409 case MESH_PDU_TYPE_ACCESS: 410 return mesh_access_src((mesh_access_pdu_t *) pdu); 411 case MESH_PDU_TYPE_NETWORK: 412 return mesh_network_src((mesh_network_pdu_t *) pdu); 413 default: 414 btstack_assert(false); 415 return MESH_ADDRESS_UNSASSIGNED; 416 } 417 } 418 419 uint16_t mesh_pdu_dst(mesh_pdu_t * pdu){ 420 switch (pdu->pdu_type){ 421 case MESH_PDU_TYPE_ACCESS: { 422 return ((mesh_access_pdu_t *) pdu)->dst; 423 } 424 case MESH_PDU_TYPE_NETWORK: 425 return mesh_network_dst((mesh_network_pdu_t *) pdu); 426 default: 427 btstack_assert(false); 428 return MESH_ADDRESS_UNSASSIGNED; 429 } 430 } 431 432 uint16_t mesh_pdu_netkey_index(mesh_pdu_t * pdu){ 433 switch (pdu->pdu_type){ 434 case MESH_PDU_TYPE_ACCESS: 435 return ((mesh_access_pdu_t*) pdu)->netkey_index; 436 case MESH_PDU_TYPE_NETWORK: 437 return ((mesh_network_pdu_t *) pdu)->netkey_index; 438 default: 439 btstack_assert(false); 440 return 0; 441 } 442 } 443 444 uint16_t mesh_pdu_appkey_index(mesh_pdu_t * pdu){ 445 switch (pdu->pdu_type){ 446 case MESH_PDU_TYPE_ACCESS: 447 return ((mesh_access_pdu_t*) pdu)->appkey_index; 448 default: 449 btstack_assert(false); 450 return 0; 451 } 452 } 453 454 uint16_t mesh_pdu_len(mesh_pdu_t * pdu){ 455 switch (pdu->pdu_type){ 456 case MESH_PDU_TYPE_ACCESS: 457 return ((mesh_access_pdu_t*) pdu)->len; 458 case MESH_PDU_TYPE_NETWORK: 459 return ((mesh_network_pdu_t *) pdu)->len - 10; 460 default: 461 btstack_assert(false); 462 return 0; 463 } 464 } 465 466 uint8_t * mesh_pdu_data(mesh_pdu_t * pdu){ 467 switch (pdu->pdu_type){ 468 case MESH_PDU_TYPE_ACCESS: 469 return ((mesh_access_pdu_t*) pdu)->data; 470 case MESH_PDU_TYPE_NETWORK: 471 return &((mesh_network_pdu_t *) pdu)->data[10]; 472 default: 473 btstack_assert(false); 474 return NULL; 475 } 476 } 477 478 uint8_t mesh_pdu_control_opcode(mesh_pdu_t * pdu){ 479 switch (pdu->pdu_type){ 480 case MESH_PDU_TYPE_NETWORK: 481 return mesh_network_control_opcode((mesh_network_pdu_t *) pdu); 482 default: 483 btstack_assert(false); 484 return 0xff; 485 } 486 } 487 488 // message parser 489 490 static int mesh_access_get_opcode(uint8_t * buffer, uint16_t buffer_size, uint32_t * opcode, uint16_t * opcode_size){ 491 switch (buffer[0] >> 6){ 492 case 0: 493 case 1: 494 if (buffer[0] == 0x7f) return 0; 495 *opcode = buffer[0]; 496 *opcode_size = 1; 497 return 1; 498 case 2: 499 if (buffer_size < 2) return 0; 500 *opcode = big_endian_read_16(buffer, 0); 501 *opcode_size = 2; 502 return 1; 503 case 3: 504 if (buffer_size < 3) return 0; 505 *opcode = (buffer[0] << 16) | little_endian_read_16(buffer, 1); 506 *opcode_size = 3; 507 return 1; 508 default: 509 return 0; 510 } 511 } 512 513 int mesh_access_pdu_get_opcode(mesh_pdu_t * pdu, uint32_t * opcode, uint16_t * opcode_size){ 514 btstack_assert(pdu->pdu_type == MESH_PDU_TYPE_ACCESS); 515 return mesh_access_get_opcode(((mesh_access_pdu_t *) pdu)->data, ((mesh_access_pdu_t *) pdu)->len, opcode, 516 opcode_size); 517 } 518 519 void mesh_access_parser_skip(mesh_access_parser_state_t * state, uint16_t bytes_to_skip){ 520 state->data += bytes_to_skip; 521 state->len -= bytes_to_skip; 522 } 523 524 int mesh_access_parser_init(mesh_access_parser_state_t * state, mesh_pdu_t * pdu){ 525 btstack_assert(pdu->pdu_type == MESH_PDU_TYPE_ACCESS); 526 state->data = mesh_pdu_data(pdu); 527 state->len = mesh_pdu_len(pdu); 528 529 uint16_t opcode_size = 0; 530 int ok = mesh_access_get_opcode(state->data, state->len, &state->opcode, &opcode_size); 531 if (ok){ 532 mesh_access_parser_skip(state, opcode_size); 533 } 534 return ok; 535 } 536 537 uint16_t mesh_access_parser_available(mesh_access_parser_state_t * state){ 538 return state->len; 539 } 540 541 uint8_t mesh_access_parser_get_u8(mesh_access_parser_state_t * state){ 542 uint8_t value = *state->data; 543 mesh_access_parser_skip(state, 1); 544 return value; 545 } 546 547 uint16_t mesh_access_parser_get_u16(mesh_access_parser_state_t * state){ 548 uint16_t value = little_endian_read_16(state->data, 0); 549 mesh_access_parser_skip(state, 2); 550 return value; 551 } 552 553 uint32_t mesh_access_parser_get_u24(mesh_access_parser_state_t * state){ 554 uint32_t value = little_endian_read_24(state->data, 0); 555 mesh_access_parser_skip(state, 3); 556 return value; 557 } 558 559 uint32_t mesh_access_parser_get_u32(mesh_access_parser_state_t * state){ 560 uint32_t value = little_endian_read_32(state->data, 0); 561 mesh_access_parser_skip(state, 4); 562 return value; 563 } 564 565 void mesh_access_parser_get_u128(mesh_access_parser_state_t * state, uint8_t * dest){ 566 reverse_128( state->data, dest); 567 mesh_access_parser_skip(state, 16); 568 } 569 570 void mesh_access_parser_get_label_uuid(mesh_access_parser_state_t * state, uint8_t * dest){ 571 (void)memcpy(dest, state->data, 16); 572 mesh_access_parser_skip(state, 16); 573 } 574 575 void mesh_access_parser_get_key(mesh_access_parser_state_t * state, uint8_t * dest){ 576 (void)memcpy(dest, state->data, 16); 577 mesh_access_parser_skip(state, 16); 578 } 579 580 uint32_t mesh_access_parser_get_model_identifier(mesh_access_parser_state_t * parser){ 581 uint16_t vendor_id = BLUETOOTH_COMPANY_ID_BLUETOOTH_SIG_INC; 582 if (mesh_access_parser_available(parser) == 4){ 583 vendor_id = mesh_access_parser_get_u16(parser); 584 } 585 uint16_t model_id = mesh_access_parser_get_u16(parser); 586 return mesh_model_get_model_identifier(vendor_id, model_id); 587 } 588 589 uint32_t mesh_access_parser_get_sig_model_identifier(mesh_access_parser_state_t * parser){ 590 uint16_t model_id = mesh_access_parser_get_u16(parser); 591 return mesh_model_get_model_identifier(BLUETOOTH_COMPANY_ID_BLUETOOTH_SIG_INC, model_id); 592 } 593 594 uint32_t mesh_access_parser_get_vendor_model_identifier(mesh_access_parser_state_t * parser){ 595 uint16_t vendor_id = mesh_access_parser_get_u16(parser); 596 uint16_t model_id = mesh_access_parser_get_u16(parser); 597 return mesh_model_get_model_identifier(vendor_id, model_id); 598 } 599 600 // Mesh Access Message Builder 601 602 // message builder 603 604 static int mesh_access_setup_opcode(uint8_t * buffer, uint32_t opcode){ 605 if (opcode < 0x100){ 606 buffer[0] = opcode; 607 return 1; 608 } 609 if (opcode < 0x10000){ 610 big_endian_store_16(buffer, 0, opcode); 611 return 2; 612 } 613 buffer[0] = opcode >> 16; 614 little_endian_store_16(buffer, 1, opcode & 0xffff); 615 return 3; 616 } 617 618 mesh_upper_transport_pdu_t * mesh_access_transport_init(uint32_t opcode){ 619 mesh_upper_transport_pdu_t * pdu = btstack_memory_mesh_upper_transport_pdu_get(); 620 if (!pdu) return NULL; 621 622 btstack_assert(false); 623 624 // TODO: new types 625 // pdu->len = mesh_access_setup_opcode(pdu->data, opcode); 626 // pdu->ack_opcode = MESH_ACCESS_OPCODE_NOT_SET; 627 return pdu; 628 } 629 630 void mesh_access_transport_add_uint8(mesh_upper_transport_pdu_t * pdu, uint8_t value){ 631 btstack_assert(false); 632 // pdu->data[pdu->len++] = value; 633 } 634 635 void mesh_access_transport_add_uint16(mesh_upper_transport_pdu_t * pdu, uint16_t value){ 636 btstack_assert(false); 637 // little_endian_store_16(pdu->data, pdu->len, value); 638 // pdu->len += 2; 639 } 640 641 void mesh_access_transport_add_uint24(mesh_upper_transport_pdu_t * pdu, uint32_t value){ 642 btstack_assert(false); 643 // little_endian_store_24(pdu->data, pdu->len, value); 644 // pdu->len += 3; 645 } 646 647 void mesh_access_transport_add_uint32(mesh_upper_transport_pdu_t * pdu, uint32_t value){ 648 btstack_assert(false); 649 // little_endian_store_32(pdu->data, pdu->len, value); 650 // pdu->len += 4; 651 } 652 653 void mesh_access_transport_add_label_uuid(mesh_upper_transport_pdu_t * pdu, uint8_t * value){ 654 btstack_assert(false); 655 // (void)memcpy(value, pdu->data, 16); 656 // pdu->len += 16; 657 } 658 659 void mesh_access_transport_add_model_identifier(mesh_upper_transport_pdu_t * pdu, uint32_t model_identifier){ 660 if (!mesh_model_is_bluetooth_sig(model_identifier)){ 661 mesh_access_transport_add_uint16( pdu, mesh_model_get_vendor_id(model_identifier) ); 662 } 663 mesh_access_transport_add_uint16( pdu, mesh_model_get_model_id(model_identifier) ); 664 } 665 666 // mesh_message_t builder 667 mesh_upper_transport_pdu_t * mesh_access_message_init(uint32_t opcode, bool segmented, uint8_t num_segments){ 668 btstack_assert(num_segments > 0); 669 btstack_assert(segmented || (num_segments == 1)); 670 671 mesh_upper_transport_pdu_t * pdu = btstack_memory_mesh_upper_transport_pdu_get(); 672 if (!pdu) return NULL; 673 674 btstack_assert(false); 675 676 pdu->pdu_header.pdu_type = MESH_PDU_TYPE_UNSEGMENTED; 677 // TODO: handle segmented messages 678 btstack_assert(segmented == false); 679 680 // use mesh_network_t as before 681 mesh_network_pdu_t * segment = mesh_network_pdu_get(); 682 if (segment == NULL){ 683 btstack_memory_mesh_upper_transport_pdu_free(pdu); 684 return NULL; 685 } 686 btstack_linked_list_add(&pdu->segments, (btstack_linked_item_t *) segment); 687 688 // TODO: new types 689 pdu->len = mesh_access_setup_opcode(&segment->data[10], opcode) + 10; 690 // pdu->ack_opcode = MESH_ACCESS_OPCODE_NOT_SET; 691 return pdu; 692 } 693 694 void mesh_access_message_add_uint8(mesh_upper_transport_pdu_t * pdu, uint8_t value){ 695 // TODO: handle segmented messages 696 mesh_network_pdu_t * segment = (mesh_network_pdu_t *) btstack_linked_list_get_first_item(&pdu->segments); 697 segment->data[pdu->len++] = value; 698 } 699 700 void mesh_access_message_add_uint16(mesh_upper_transport_pdu_t * pdu, uint16_t value){ 701 // TODO: handle segmented messages 702 mesh_network_pdu_t * segment = (mesh_network_pdu_t *) btstack_linked_list_get_first_item(&pdu->segments); 703 little_endian_store_16(segment->data, pdu->len, value); 704 pdu->len += 2; 705 } 706 707 void mesh_access_message_add_uint24(mesh_upper_transport_pdu_t * pdu, uint16_t value){ 708 // TODO: handle segmented messages 709 mesh_network_pdu_t * segment = (mesh_network_pdu_t *) btstack_linked_list_get_first_item(&pdu->segments); 710 little_endian_store_24(segment->data, pdu->len, value); 711 pdu->len += 3; 712 } 713 714 void mesh_access_message_add_uint32(mesh_upper_transport_pdu_t * pdu, uint16_t value){ 715 // TODO: handle segmented messages 716 mesh_network_pdu_t * segment = (mesh_network_pdu_t *) btstack_linked_list_get_first_item(&pdu->segments); 717 little_endian_store_32(segment->data, pdu->len, value); 718 pdu->len += 4; 719 } 720 721 void mesh_access_message_add_model_identifier(mesh_upper_transport_pdu_t * pdu, uint32_t model_identifier){ 722 if (mesh_model_is_bluetooth_sig(model_identifier)){ 723 mesh_access_message_add_uint16( pdu, mesh_model_get_model_id(model_identifier) ); 724 } else { 725 mesh_access_message_add_uint32( pdu, model_identifier ); 726 } 727 } 728 729 // access message template 730 mesh_upper_transport_pdu_t * mesh_access_setup_message(bool segmented, const mesh_access_message_t *message_template, ...){ 731 btstack_assert(segmented == false); 732 733 // TODO: handle segmented messages 734 mesh_upper_transport_pdu_t * message_pdu = mesh_access_message_init(message_template->opcode, segmented, 1); 735 if (!message_pdu) return NULL; 736 737 va_list argptr; 738 va_start(argptr, message_template); 739 740 // add params 741 const char * format = message_template->format; 742 uint16_t word; 743 uint32_t longword; 744 while (*format){ 745 switch (*format){ 746 case '1': 747 word = va_arg(argptr, int); // minimal va_arg is int: 2 bytes on 8+16 bit CPUs 748 mesh_access_message_add_uint8( message_pdu, word); 749 break; 750 case '2': 751 word = va_arg(argptr, int); // minimal va_arg is int: 2 bytes on 8+16 bit CPUs 752 mesh_access_message_add_uint16( message_pdu, word); 753 break; 754 case '3': 755 longword = va_arg(argptr, uint32_t); 756 mesh_access_message_add_uint24( message_pdu, longword); 757 break; 758 case '4': 759 longword = va_arg(argptr, uint32_t); 760 mesh_access_message_add_uint32( message_pdu, longword); 761 mesh_access_message_add_uint32( message_pdu, longword); 762 break; 763 case 'm': 764 longword = va_arg(argptr, uint32_t); 765 mesh_access_message_add_model_identifier( message_pdu, longword); 766 break; 767 default: 768 log_error("Unsupported mesh message format specifier '%c", *format); 769 break; 770 } 771 format++; 772 } 773 774 va_end(argptr); 775 776 return message_pdu; 777 } 778 779 mesh_upper_transport_pdu_t * mesh_access_setup_segmented_message(const mesh_access_message_t *message_template, ...){ 780 mesh_upper_transport_pdu_t * transport_pdu = mesh_access_transport_init(message_template->opcode); 781 if (!transport_pdu) return NULL; 782 783 va_list argptr; 784 va_start(argptr, message_template); 785 786 // add params 787 const char * format = message_template->format; 788 uint16_t word; 789 uint32_t longword; 790 uint8_t * ptr; 791 while (*format){ 792 switch (*format++){ 793 case '1': 794 word = va_arg(argptr, int); // minimal va_arg is int: 2 bytes on 8+16 bit CPUs 795 mesh_access_transport_add_uint8( transport_pdu, word); 796 break; 797 case '2': 798 word = va_arg(argptr, int); // minimal va_arg is int: 2 bytes on 8+16 bit CPUs 799 mesh_access_transport_add_uint16( transport_pdu, word); 800 break; 801 case '3': 802 longword = va_arg(argptr, uint32_t); 803 mesh_access_transport_add_uint24( transport_pdu, longword); 804 break; 805 case '4': 806 longword = va_arg(argptr, uint32_t); 807 mesh_access_transport_add_uint32( transport_pdu, longword); 808 break; 809 case 'P': // 16 byte, eg LabelUUID, in network endianess 810 ptr = va_arg(argptr, uint8_t *); 811 mesh_access_transport_add_label_uuid( transport_pdu, ptr); 812 break; 813 case 'm': 814 longword = va_arg(argptr, uint32_t); 815 mesh_access_transport_add_model_identifier( transport_pdu, longword); 816 break; 817 default: 818 break; 819 } 820 } 821 822 va_end(argptr); 823 824 return transport_pdu; 825 } 826 827 828 static const mesh_operation_t * mesh_model_lookup_operation_by_opcode(mesh_model_t * model, uint32_t opcode){ 829 // find opcode in table 830 const mesh_operation_t * operation = model->operations; 831 if (operation == NULL) return NULL; 832 for ( ; operation->handler != NULL ; operation++){ 833 if (operation->opcode != opcode) continue; 834 return operation; 835 } 836 return NULL; 837 } 838 839 static const mesh_operation_t * mesh_model_lookup_operation(mesh_model_t * model, mesh_pdu_t * pdu){ 840 841 uint32_t opcode = 0; 842 uint16_t opcode_size = 0; 843 int ok = mesh_access_pdu_get_opcode( pdu, &opcode, &opcode_size); 844 if (!ok) return NULL; 845 846 uint16_t len = mesh_pdu_len(pdu); 847 848 // find opcode in table 849 const mesh_operation_t * operation = model->operations; 850 if (operation == NULL) return NULL; 851 for ( ; operation->handler != NULL ; operation++){ 852 if (operation->opcode != opcode) continue; 853 if ((opcode_size + operation->minimum_length) > len) continue; 854 return operation; 855 } 856 return NULL; 857 } 858 859 static int mesh_access_validate_appkey_index(mesh_model_t * model, uint16_t appkey_index){ 860 // DeviceKey is valid for all models 861 if (appkey_index == MESH_DEVICE_KEY_INDEX) return 1; 862 // check if AppKey that is bound to this particular model 863 return mesh_model_contains_appkey(model, appkey_index); 864 } 865 866 // decrease use count and report as free if done 867 void mesh_access_message_processed(mesh_pdu_t * pdu){ 868 if (mesh_access_received_pdu_refcount > 0){ 869 mesh_access_received_pdu_refcount--; 870 } 871 if (mesh_access_received_pdu_refcount == 0){ 872 mesh_upper_transport_message_processed_by_higher_layer(pdu); 873 } 874 } 875 876 static void mesh_access_message_process_handler(mesh_pdu_t * pdu){ 877 878 // init use count 879 mesh_access_received_pdu_refcount = 1; 880 881 // get opcode and size 882 uint32_t opcode = 0; 883 uint16_t opcode_size = 0; 884 885 int ok = mesh_access_pdu_get_opcode( pdu, &opcode, &opcode_size); 886 if (!ok) { 887 mesh_access_message_processed(pdu); 888 return; 889 } 890 891 uint16_t len = mesh_pdu_len(pdu); 892 printf("MESH Access Message, Opcode = %x: ", opcode); 893 printf_hexdump(mesh_pdu_data(pdu), len); 894 895 uint16_t src = mesh_pdu_src(pdu); 896 uint16_t dst = mesh_pdu_dst(pdu); 897 uint16_t appkey_index = mesh_pdu_appkey_index(pdu); 898 if (mesh_network_address_unicast(dst)){ 899 // loookup element by unicast address 900 mesh_element_t * element = mesh_node_element_for_unicast_address(dst); 901 if (element != NULL){ 902 // iterate over models, look for operation 903 mesh_model_iterator_t model_it; 904 mesh_model_iterator_init(&model_it, element); 905 while (mesh_model_iterator_has_next(&model_it)){ 906 mesh_model_t * model = mesh_model_iterator_next(&model_it); 907 // find opcode in table 908 const mesh_operation_t * operation = mesh_model_lookup_operation(model, pdu); 909 if (operation == NULL) continue; 910 if (mesh_access_validate_appkey_index(model, appkey_index) == 0) continue; 911 mesh_access_acknowledged_received(src, opcode); 912 mesh_access_received_pdu_refcount++; 913 operation->handler(model, pdu); 914 } 915 } 916 } 917 else if (mesh_network_address_group(dst)){ 918 919 // handle fixed group address 920 if (dst >= 0xff00){ 921 int deliver_to_primary_element = 1; 922 switch (dst){ 923 case MESH_ADDRESS_ALL_PROXIES: 924 if (mesh_foundation_gatt_proxy_get() == 1){ 925 deliver_to_primary_element = 1; 926 } 927 break; 928 case MESH_ADDRESS_ALL_FRIENDS: 929 // TODO: not implemented 930 break; 931 case MESH_ADDRESS_ALL_RELAYS: 932 if (mesh_foundation_relay_get() == 1){ 933 deliver_to_primary_element = 1; 934 } 935 break; 936 case MESH_ADDRESS_ALL_NODES: 937 deliver_to_primary_element = 1; 938 break; 939 default: 940 break; 941 } 942 if (deliver_to_primary_element){ 943 mesh_model_iterator_t model_it; 944 mesh_model_iterator_init(&model_it, mesh_node_get_primary_element()); 945 while (mesh_model_iterator_has_next(&model_it)){ 946 mesh_model_t * model = mesh_model_iterator_next(&model_it); 947 // find opcode in table 948 const mesh_operation_t * operation = mesh_model_lookup_operation(model, pdu); 949 if (operation == NULL) continue; 950 if (mesh_access_validate_appkey_index(model, appkey_index) == 0) continue; 951 mesh_access_acknowledged_received(src, opcode); 952 mesh_access_received_pdu_refcount++; 953 operation->handler(model, pdu); 954 } 955 } 956 } 957 else { 958 // iterate over all elements / models, check subscription list 959 mesh_element_iterator_t it; 960 mesh_element_iterator_init(&it); 961 while (mesh_element_iterator_has_next(&it)){ 962 mesh_element_t * element = (mesh_element_t *) mesh_element_iterator_next(&it); 963 mesh_model_iterator_t model_it; 964 mesh_model_iterator_init(&model_it, element); 965 while (mesh_model_iterator_has_next(&model_it)){ 966 mesh_model_t * model = mesh_model_iterator_next(&model_it); 967 if (mesh_model_contains_subscription(model, dst)){ 968 // find opcode in table 969 const mesh_operation_t * operation = mesh_model_lookup_operation(model, pdu); 970 if (operation == NULL) continue; 971 if (mesh_access_validate_appkey_index(model, appkey_index) == 0) continue; 972 mesh_access_acknowledged_received(src, opcode); 973 mesh_access_received_pdu_refcount++; 974 operation->handler(model, pdu); 975 } 976 } 977 } 978 } 979 } 980 981 // we're done 982 mesh_access_message_processed(pdu); 983 } 984 985 // Mesh Model Publication 986 static btstack_timer_source_t mesh_access_publication_timer; 987 988 static uint32_t mesh_model_publication_retransmit_count(uint8_t retransmit){ 989 return retransmit & 0x07u; 990 } 991 992 static uint32_t mesh_model_publication_retransmission_period_ms(uint8_t retransmit){ 993 return ((uint32_t)((retransmit >> 3) + 1)) * 50; 994 } 995 996 static void mesh_model_publication_setup_publication(mesh_publication_model_t * publication_model, uint32_t now){ 997 998 // set retransmit counter 999 publication_model->retransmit_count = mesh_model_publication_retransmit_count(publication_model->retransmit); 1000 1001 // schedule next publication or retransmission 1002 uint32_t publication_period_ms = mesh_access_time_gdtt2ms(publication_model->period) >> publication_model->period_divisor; 1003 1004 // set next publication 1005 if (publication_period_ms != 0){ 1006 publication_model->next_publication_ms = now + publication_period_ms; 1007 publication_model->state = MESH_MODEL_PUBLICATION_STATE_W4_PUBLICATION_MS; 1008 } else { 1009 publication_model->state = MESH_MODEL_PUBLICATION_STATE_IDLE; 1010 } 1011 } 1012 1013 // assumes retransmit_count is valid 1014 static void mesh_model_publication_setup_retransmission(mesh_publication_model_t * publication_model, uint32_t now){ 1015 uint32_t publication_period_ms = mesh_access_time_gdtt2ms(publication_model->period) >> publication_model->period_divisor; 1016 1017 // retransmission done 1018 if (publication_model->retransmit_count == 0) { 1019 // wait for next main event if periodic and retransmission complete 1020 if (publication_period_ms != 0){ 1021 publication_model->state = MESH_MODEL_PUBLICATION_STATE_W4_PUBLICATION_MS; 1022 } else { 1023 publication_model->state = MESH_MODEL_PUBLICATION_STATE_IDLE; 1024 } 1025 return; 1026 } 1027 1028 // calc next retransmit time 1029 uint32_t retransmission_period_ms = mesh_model_publication_retransmission_period_ms(publication_model->retransmit) >> publication_model->period_divisor; 1030 uint32_t retransmission_ms = now + retransmission_period_ms; 1031 1032 // check next publication timeout is before next retransmission 1033 if (publication_period_ms != 0){ 1034 if (btstack_time_delta(retransmission_ms, publication_model->next_publication_ms) > 0) return; 1035 } 1036 1037 // schedule next retransmission 1038 publication_model->next_retransmit_ms = retransmission_ms; 1039 publication_model->state = MESH_MODEL_PUBLICATION_STATE_W4_RETRANSMIT_MS; 1040 } 1041 1042 static void mesh_model_publication_publish_now_model(mesh_model_t * mesh_model){ 1043 mesh_publication_model_t * publication_model = mesh_model->publication_model; 1044 if (publication_model == NULL) return; 1045 if (publication_model->publish_state_fn == NULL) return; 1046 uint16_t dest = publication_model->address; 1047 if (dest == MESH_ADDRESS_UNSASSIGNED) return; 1048 uint16_t appkey_index = publication_model->appkey_index; 1049 mesh_transport_key_t * app_key = mesh_transport_key_get(appkey_index); 1050 if (app_key == NULL) return; 1051 1052 // compose message 1053 mesh_pdu_t * pdu = (*publication_model->publish_state_fn)(mesh_model); 1054 if (pdu == NULL) return; 1055 1056 // handle ttl = default 1057 uint8_t ttl = publication_model->ttl; 1058 if (ttl == 0xff){ 1059 ttl = mesh_foundation_default_ttl_get(); 1060 } 1061 1062 mesh_upper_transport_setup_access_pdu_header(pdu, app_key->netkey_index, appkey_index, ttl, mesh_access_get_element_address(mesh_model), dest, 0); 1063 mesh_access_send_unacknowledged_pdu(pdu); 1064 } 1065 1066 static void mesh_model_publication_run(btstack_timer_source_t * ts){ 1067 1068 uint32_t now = btstack_run_loop_get_time_ms(); 1069 1070 // iterate over elements and models and handle time-based transitions 1071 mesh_element_iterator_t element_it; 1072 mesh_element_iterator_init(&element_it); 1073 while (mesh_element_iterator_has_next(&element_it)){ 1074 mesh_element_t * element = mesh_element_iterator_next(&element_it); 1075 mesh_model_iterator_t model_it; 1076 mesh_model_iterator_init(&model_it, element); 1077 while (mesh_model_iterator_has_next(&model_it)){ 1078 mesh_model_t * mesh_model = mesh_model_iterator_next(&model_it); 1079 mesh_publication_model_t * publication_model = mesh_model->publication_model; 1080 if (publication_model == NULL) continue; 1081 1082 // check if either timer fired 1083 switch (publication_model->state){ 1084 case MESH_MODEL_PUBLICATION_STATE_W4_PUBLICATION_MS: 1085 if (btstack_time_delta(publication_model->next_publication_ms, now) > 0) break; 1086 publication_model->state = MESH_MODEL_PUBLICATION_STATE_PUBLICATION_READY; 1087 break; 1088 case MESH_MODEL_PUBLICATION_STATE_W4_RETRANSMIT_MS: 1089 if (btstack_time_delta(publication_model->next_retransmit_ms, now) > 0) break; 1090 publication_model->state = MESH_MODEL_PUBLICATION_STATE_RETRANSMIT_READY; 1091 break; 1092 default: 1093 break; 1094 } 1095 1096 switch (publication_model->state){ 1097 case MESH_MODEL_PUBLICATION_STATE_PUBLICATION_READY: 1098 // schedule next publication and retransmission 1099 mesh_model_publication_setup_publication(publication_model, now); 1100 mesh_model_publication_setup_retransmission(publication_model, now); 1101 mesh_model_publication_publish_now_model(mesh_model); 1102 break; 1103 case MESH_MODEL_PUBLICATION_STATE_RETRANSMIT_READY: 1104 // schedule next retransmission 1105 publication_model->retransmit_count--; 1106 mesh_model_publication_setup_retransmission(publication_model, now); 1107 mesh_model_publication_publish_now_model(mesh_model); 1108 break; 1109 default: 1110 break; 1111 } 1112 } 1113 } 1114 1115 int32_t next_timeout_ms = 0; 1116 mesh_element_iterator_init(&element_it); 1117 while (mesh_element_iterator_has_next(&element_it)){ 1118 mesh_element_t * element = mesh_element_iterator_next(&element_it); 1119 mesh_model_iterator_t model_it; 1120 mesh_model_iterator_init(&model_it, element); 1121 while (mesh_model_iterator_has_next(&model_it)){ 1122 mesh_model_t * mesh_model = mesh_model_iterator_next(&model_it); 1123 mesh_publication_model_t * publication_model = mesh_model->publication_model; 1124 if (publication_model == NULL) continue; 1125 1126 // schedule next 1127 int32_t timeout_delta_ms; 1128 switch (publication_model->state){ 1129 case MESH_MODEL_PUBLICATION_STATE_W4_PUBLICATION_MS: 1130 timeout_delta_ms = btstack_time_delta(publication_model->next_publication_ms, now); 1131 if (next_timeout_ms == 0 || timeout_delta_ms < next_timeout_ms){ 1132 next_timeout_ms = timeout_delta_ms; 1133 } 1134 break; 1135 case MESH_MODEL_PUBLICATION_STATE_W4_RETRANSMIT_MS: 1136 timeout_delta_ms = btstack_time_delta(publication_model->next_retransmit_ms, now); 1137 if (next_timeout_ms == 0 || timeout_delta_ms < next_timeout_ms){ 1138 next_timeout_ms = timeout_delta_ms; 1139 } 1140 break; 1141 default: 1142 break; 1143 } 1144 } 1145 } 1146 1147 // remove current timer if active 1148 if (ts == NULL){ 1149 btstack_run_loop_remove_timer(&mesh_access_publication_timer); 1150 1151 } 1152 1153 // new timeout? 1154 if (next_timeout_ms == 0) return; 1155 1156 // set timer 1157 btstack_run_loop_set_timer(&mesh_access_publication_timer, next_timeout_ms); 1158 btstack_run_loop_set_timer_handler(&mesh_access_publication_timer, mesh_model_publication_run); 1159 btstack_run_loop_add_timer(&mesh_access_publication_timer); 1160 } 1161 1162 void mesh_model_publication_start(mesh_model_t * mesh_model){ 1163 mesh_publication_model_t * publication_model = mesh_model->publication_model; 1164 if (publication_model == NULL) return; 1165 1166 // publish right away 1167 publication_model->state = MESH_MODEL_PUBLICATION_STATE_PUBLICATION_READY; 1168 mesh_model_publication_run(NULL); 1169 } 1170 1171 void mesh_model_publication_stop(mesh_model_t * mesh_model){ 1172 mesh_publication_model_t * publication_model = mesh_model->publication_model; 1173 if (publication_model == NULL) return; 1174 1175 // reset state 1176 publication_model->state = MESH_MODEL_PUBLICATION_STATE_IDLE; 1177 } 1178 1179 void mesh_access_state_changed(mesh_model_t * mesh_model){ 1180 mesh_publication_model_t * publication_model = mesh_model->publication_model; 1181 if (publication_model == NULL) return; 1182 publication_model->state = MESH_MODEL_PUBLICATION_STATE_PUBLICATION_READY; 1183 mesh_model_publication_run(NULL); 1184 } 1185 1186