1 /* 2 * Copyright (C) 2014 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 BLUEKITCHEN 24 * GMBH 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 /** 39 * @title Host Controler Interface (HCI) 40 * 41 */ 42 43 #ifndef HCI_H 44 #define HCI_H 45 46 #include "btstack_config.h" 47 48 #include "btstack_chipset.h" 49 #include "btstack_control.h" 50 #include "btstack_linked_list.h" 51 #include "btstack_util.h" 52 #include "hci_cmd.h" 53 #include "gap.h" 54 #include "hci_transport.h" 55 #include "btstack_run_loop.h" 56 57 #ifdef ENABLE_CLASSIC 58 #include "classic/btstack_link_key_db.h" 59 #endif 60 61 #ifdef ENABLE_BLE 62 #include "ble/att_db.h" 63 #endif 64 65 #ifdef HAVE_SCO_TRANSPORT 66 #include "btstack_sco_transport.h" 67 #endif 68 69 #include <stdint.h> 70 #include <stdlib.h> 71 #include <stdarg.h> 72 73 #if defined __cplusplus 74 extern "C" { 75 #endif 76 77 // packet buffer sizes 78 #define HCI_CMD_HEADER_SIZE 3 79 #define HCI_ACL_HEADER_SIZE 4 80 #define HCI_SCO_HEADER_SIZE 3 81 #define HCI_EVENT_HEADER_SIZE 2 82 #define HCI_ISO_HEADER_SIZE 4 83 84 #define HCI_EVENT_PAYLOAD_SIZE 255 85 #define HCI_CMD_PAYLOAD_SIZE 255 86 87 // default for ISO streams: 48_6_2 : 2 x 155 88 #ifndef HCI_ISO_PAYLOAD_SIZE 89 #define HCI_ISO_PAYLOAD_SIZE 310 90 #endif 91 92 // Max HCI Command LE payload size: 93 // 64 from LE Generate DHKey command 94 // 32 from LE Encrypt command 95 #if defined(ENABLE_LE_SECURE_CONNECTIONS) && !defined(ENABLE_MICRO_ECC_FOR_LE_SECURE_CONNECTIONS) 96 #define HCI_CMD_PAYLOAD_SIZE_LE 64 97 #else 98 #define HCI_CMD_PAYLOAD_SIZE_LE 32 99 #endif 100 101 // HCI_ACL_PAYLOAD_SIZE is configurable and defined in config.h 102 // addition byte in even to terminate remote name request with '\0' 103 #define HCI_EVENT_BUFFER_SIZE (HCI_EVENT_HEADER_SIZE + HCI_EVENT_PAYLOAD_SIZE + 1) 104 105 #ifdef ENABLE_CLASSIC 106 #define HCI_CMD_BUFFER_SIZE (HCI_CMD_HEADER_SIZE + HCI_CMD_PAYLOAD_SIZE) 107 #else 108 #define HCI_CMD_BUFFER_SIZE (HCI_CMD_HEADER_SIZE + HCI_CMD_PAYLOAD_SIZE_LE) 109 #endif 110 111 #define HCI_ACL_BUFFER_SIZE (HCI_ACL_HEADER_SIZE + HCI_ACL_PAYLOAD_SIZE) 112 113 // size of hci incoming buffer, big enough for event or acl packet without H4 packet type 114 #ifdef HCI_INCOMING_PACKET_BUFFER_SIZE 115 #if HCI_INCOMING_PACKET_BUFFER_SIZE < HCI_ACL_BUFFER_SIZE 116 #error HCI_INCOMING_PACKET_BUFFER_SIZE must be equal or larger than HCI_ACL_BUFFER_SIZE 117 #endif 118 #if HCI_INCOMING_PACKET_BUFFER_SIZE < HCI_EVENT_BUFFER_SIZE 119 #error HCI_INCOMING_PACKET_BUFFER_SIZE must be equal or larger than HCI_EVENT_BUFFER_SIZE 120 #endif 121 #else 122 #if HCI_ACL_BUFFER_SIZE > HCI_EVENT_BUFFER_SIZE 123 #define HCI_INCOMING_PACKET_BUFFER_SIZE HCI_ACL_BUFFER_SIZE 124 #else 125 #define HCI_INCOMING_PACKET_BUFFER_SIZE HCI_EVENT_BUFFER_SIZE 126 #endif 127 #endif 128 129 // size of hci outgoing buffer, big enough for command or acl packet without H4 packet type 130 #ifdef HCI_OUTGOING_PACKET_BUFFER_SIZE 131 #if HCI_OUTGOING_PACKET_BUFFER_SIZE < HCI_ACL_BUFFER_SIZE 132 #error HCI_OUTGOING_PACKET_BUFFER_SIZE must be equal or larger than HCI_ACL_BUFFER_SIZE 133 #endif 134 #if HCI_OUTGOING_PACKET_BUFFER_SIZE < HCI_CMD_BUFFER_SIZE 135 #error HCI_OUTGOING_PACKET_BUFFER_SIZE must be equal or larger than HCI_CMD_BUFFER_SIZE 136 #endif 137 #else 138 #if HCI_ACL_BUFFER_SIZE > HCI_CMD_BUFFER_SIZE 139 #define HCI_OUTGOING_PACKET_BUFFER_SIZE HCI_ACL_BUFFER_SIZE 140 #else 141 #define HCI_OUTGOING_PACKET_BUFFER_SIZE HCI_CMD_BUFFER_SIZE 142 #endif 143 #endif 144 145 // additional pre-buffer space for packets to Bluetooth module 146 // - H4 requires 1 byte for the packet type 147 // - h5 requires 4 bytes for H5 header 148 #ifndef HCI_OUTGOING_PRE_BUFFER_SIZE 149 #ifdef HAVE_HOST_CONTROLLER_API 150 #define HCI_OUTGOING_PRE_BUFFER_SIZE 0 151 #else 152 #ifdef ENABLE_H5 153 #define HCI_OUTGOING_PRE_BUFFER_SIZE 4 154 #else 155 #define HCI_OUTGOING_PRE_BUFFER_SIZE 1 156 #endif 157 #endif 158 #endif 159 160 // BNEP may uncompress the IP Header by 16 bytes, GATT Client requires two additional bytes for long characteristic reads 161 #ifndef HCI_INCOMING_PRE_BUFFER_SIZE 162 #ifdef ENABLE_CLASSIC 163 #define HCI_INCOMING_PRE_BUFFER_SIZE (16 - HCI_ACL_HEADER_SIZE - 4) 164 #else 165 #define HCI_INCOMING_PRE_BUFFER_SIZE 2 166 #endif 167 #endif 168 169 // 170 #define IS_COMMAND(packet, command) ( little_endian_read_16(packet,0) == command.opcode ) 171 172 // check if command complete event for given command 173 #define HCI_EVENT_IS_COMMAND_COMPLETE(event,cmd) ( (event[0] == HCI_EVENT_COMMAND_COMPLETE) && (little_endian_read_16(event,3) == cmd.opcode) ) 174 #define HCI_EVENT_IS_COMMAND_STATUS(event,cmd) ( (event[0] == HCI_EVENT_COMMAND_STATUS) && (little_endian_read_16(event,4) == cmd.opcode) ) 175 176 // Code+Len=2, Pkts+Opcode=3; total=5 177 #define OFFSET_OF_DATA_IN_COMMAND_COMPLETE 5 178 179 // ACL Packet 180 #define READ_ACL_CONNECTION_HANDLE( buffer ) ( little_endian_read_16(buffer,0) & 0x0fff) 181 #define READ_SCO_CONNECTION_HANDLE( buffer ) ( little_endian_read_16(buffer,0) & 0x0fff) 182 #define READ_ISO_CONNECTION_HANDLE( buffer ) ( little_endian_read_16(buffer,0) & 0x0fff) 183 #define READ_ACL_FLAGS( buffer ) ( buffer[1] >> 4 ) 184 #define READ_ACL_LENGTH( buffer ) (little_endian_read_16(buffer, 2)) 185 186 // Sneak peak into L2CAP Packet 187 #define READ_L2CAP_LENGTH(buffer) ( little_endian_read_16(buffer, 4)) 188 #define READ_L2CAP_CHANNEL_ID(buffer) ( little_endian_read_16(buffer, 6)) 189 190 /** 191 * LE connection parameter update state 192 */ 193 194 typedef enum { 195 CON_PARAMETER_UPDATE_NONE, 196 // L2CAP 197 CON_PARAMETER_UPDATE_SEND_REQUEST, 198 CON_PARAMETER_UPDATE_SEND_RESPONSE, 199 CON_PARAMETER_UPDATE_CHANGE_HCI_CON_PARAMETERS, 200 CON_PARAMETER_UPDATE_DENY, 201 // HCI - in respnose to HCI_SUBEVENT_LE_REMOTE_CONNECTION_PARAMETER_REQUEST 202 CON_PARAMETER_UPDATE_REPLY, 203 CON_PARAMETER_UPDATE_NEGATIVE_REPLY, 204 } le_con_parameter_update_state_t; 205 206 // Authentication flags 207 typedef enum { 208 AUTH_FLAG_NONE = 0x0000, 209 AUTH_FLAG_HANDLE_LINK_KEY_REQUEST = 0x0001, 210 AUTH_FLAG_DENY_PIN_CODE_REQUEST = 0x0002, 211 AUTH_FLAG_RECV_IO_CAPABILITIES_REQUEST = 0x0004, 212 AUTH_FLAG_RECV_IO_CAPABILITIES_RESPONSE = 0x0008, 213 AUTH_FLAG_SEND_IO_CAPABILITIES_REPLY = 0x0010, 214 AUTH_FLAG_SEND_IO_CAPABILITIES_NEGATIVE_REPLY = 0x0020, 215 AUTH_FLAG_SEND_USER_CONFIRM_REPLY = 0x0040, 216 AUTH_FLAG_SEND_USER_CONFIRM_NEGATIVE_REPLY = 0x0080, 217 AUTH_FLAG_SEND_USER_PASSKEY_REPLY = 0x0100, 218 219 // Classic OOB 220 AUTH_FLAG_SEND_REMOTE_OOB_DATA_REPLY = 0x0200, 221 222 // pairing status 223 AUTH_FLAG_LEGACY_PAIRING_ACTIVE = 0x0400, 224 AUTH_FLAG_SSP_PAIRING_ACTIVE = 0x0800, 225 AUTH_FLAG_PAIRING_ACTIVE_MASK = (AUTH_FLAG_LEGACY_PAIRING_ACTIVE | AUTH_FLAG_SSP_PAIRING_ACTIVE), 226 227 // connection status 228 AUTH_FLAG_CONNECTION_AUTHENTICATED = 0x1000, 229 AUTH_FLAG_CONNECTION_ENCRYPTED = 0x2000, 230 231 } hci_authentication_flags_t; 232 233 // GAP Connection Tasks 234 #define GAP_CONNECTION_TASK_WRITE_AUTOMATIC_FLUSH_TIMEOUT 0x0001u 235 #define GAP_CONNECTION_TASK_WRITE_SUPERVISION_TIMEOUT 0x0002u 236 #define GAP_CONNECTION_TASK_READ_RSSI 0x0004u 237 238 /** 239 * Connection State 240 */ 241 typedef enum { 242 SEND_CREATE_CONNECTION = 0, 243 SENT_CREATE_CONNECTION, 244 RECEIVED_CONNECTION_REQUEST, 245 ACCEPTED_CONNECTION_REQUEST, 246 OPEN, 247 SEND_DISCONNECT, 248 SENT_DISCONNECT, 249 RECEIVED_DISCONNECTION_COMPLETE 250 } CONNECTION_STATE; 251 252 // bonding flags 253 enum { 254 // remote features 255 BONDING_REMOTE_FEATURES_QUERY_ACTIVE = 0x0001, 256 BONDING_REQUEST_REMOTE_FEATURES_PAGE_0 = 0x0002, 257 BONDING_REQUEST_REMOTE_FEATURES_PAGE_1 = 0x0004, 258 BONDING_REQUEST_REMOTE_FEATURES_PAGE_2 = 0x0008, 259 BONDING_RECEIVED_REMOTE_FEATURES = 0x0010, 260 BONDING_REMOTE_SUPPORTS_SSP_CONTROLLER = 0x0020, 261 BONDING_REMOTE_SUPPORTS_SSP_HOST = 0x0040, 262 BONDING_REMOTE_SUPPORTS_SC_CONTROLLER = 0x0080, 263 BONDING_REMOTE_SUPPORTS_SC_HOST = 0x0100, 264 // other 265 BONDING_DISCONNECT_SECURITY_BLOCK = 0x0200, 266 BONDING_DISCONNECT_DEDICATED_DONE = 0x0400, 267 BONDING_SEND_AUTHENTICATE_REQUEST = 0x0800, 268 BONDING_SENT_AUTHENTICATE_REQUEST = 0x1000, 269 BONDING_SEND_ENCRYPTION_REQUEST = 0x2000, 270 BONDING_SEND_READ_ENCRYPTION_KEY_SIZE = 0x4000, 271 BONDING_DEDICATED = 0x8000, 272 BONDING_EMIT_COMPLETE_ON_DISCONNECT = 0x10000, 273 }; 274 275 typedef enum { 276 BLUETOOTH_OFF = 1, 277 BLUETOOTH_ON, 278 BLUETOOTH_ACTIVE 279 } BLUETOOTH_STATE; 280 281 typedef enum { 282 LE_CONNECTING_IDLE, 283 LE_CONNECTING_CANCEL, 284 LE_CONNECTING_DIRECT, 285 LE_CONNECTING_WHITELIST, 286 } le_connecting_state_t; 287 288 #ifdef ENABLE_BLE 289 290 // 291 // SM internal types and globals 292 // 293 294 typedef enum { 295 296 // general states 297 SM_GENERAL_IDLE, 298 SM_GENERAL_SEND_PAIRING_FAILED, 299 SM_GENERAL_TIMEOUT, // no other security messages are exchanged 300 SM_GENERAL_REENCRYPTION_FAILED, 301 302 // Phase 1: Pairing Feature Exchange 303 SM_PH1_W4_USER_RESPONSE, 304 305 // Phase 2: Authenticating and Encrypting 306 307 // get random number for use as TK Passkey if we show it 308 SM_PH2_GET_RANDOM_TK, 309 SM_PH2_W4_RANDOM_TK, 310 311 // get local random number for confirm c1 312 SM_PH2_C1_GET_RANDOM_A, 313 SM_PH2_C1_W4_RANDOM_A, 314 SM_PH2_C1_GET_RANDOM_B, 315 SM_PH2_C1_W4_RANDOM_B, 316 317 // calculate confirm value for local side 318 SM_PH2_C1_GET_ENC_A, 319 SM_PH2_C1_W4_ENC_A, 320 321 // calculate confirm value for remote side 322 SM_PH2_C1_GET_ENC_C, 323 SM_PH2_C1_W4_ENC_C, 324 325 SM_PH2_C1_SEND_PAIRING_CONFIRM, 326 SM_PH2_SEND_PAIRING_RANDOM, 327 328 // calc STK 329 SM_PH2_CALC_STK, 330 SM_PH2_W4_STK, 331 332 SM_PH2_W4_CONNECTION_ENCRYPTED, 333 334 // Phase 3: Transport Specific Key Distribution 335 // calculate DHK, Y, EDIV, and LTK 336 SM_PH3_Y_GET_ENC, 337 SM_PH3_Y_W4_ENC, 338 SM_PH3_LTK_GET_ENC, 339 340 // exchange keys 341 SM_PH3_DISTRIBUTE_KEYS, 342 SM_PH3_RECEIVE_KEYS, 343 344 // Phase 4: re-establish previously distributed LTK 345 SM_PH4_W4_CONNECTION_ENCRYPTED, 346 347 // RESPONDER ROLE 348 SM_RESPONDER_IDLE, 349 SM_RESPONDER_SEND_SECURITY_REQUEST, 350 SM_RESPONDER_PH0_RECEIVED_LTK_REQUEST, 351 SM_RESPONDER_PH0_RECEIVED_LTK_W4_IRK, 352 SM_RESPONDER_PH0_SEND_LTK_REQUESTED_NEGATIVE_REPLY, 353 SM_RESPONDER_PH1_W4_PAIRING_REQUEST, 354 SM_RESPONDER_PH1_PAIRING_REQUEST_RECEIVED, 355 SM_RESPONDER_PH1_PAIRING_REQUEST_RECEIVED_W4_IRK, 356 SM_RESPONDER_PH1_SEND_PAIRING_RESPONSE, 357 SM_RESPONDER_PH1_W4_PAIRING_CONFIRM, 358 SM_RESPONDER_PH2_W4_PAIRING_RANDOM, 359 SM_RESPONDER_PH2_W4_LTK_REQUEST, 360 SM_RESPONDER_PH2_SEND_LTK_REPLY, 361 SM_RESPONDER_PH4_Y_W4_ENC, 362 SM_RESPONDER_PH4_SEND_LTK_REPLY, 363 364 // INITIATOR ROLE 365 SM_INITIATOR_CONNECTED, 366 SM_INITIATOR_PH1_W2_SEND_PAIRING_REQUEST, 367 SM_INITIATOR_PH1_W4_PAIRING_RESPONSE, 368 SM_INITIATOR_PH2_W4_PAIRING_CONFIRM, 369 SM_INITIATOR_PH2_W4_PAIRING_RANDOM, 370 SM_INITIATOR_PH3_SEND_START_ENCRYPTION, 371 SM_INITIATOR_PH4_HAS_LTK, 372 373 // LE Secure Connections 374 SM_SC_RECEIVED_LTK_REQUEST, 375 SM_SC_SEND_PUBLIC_KEY_COMMAND, 376 SM_SC_W4_PUBLIC_KEY_COMMAND, 377 SM_SC_W4_LOCAL_NONCE, 378 SM_SC_W2_CMAC_FOR_CONFIRMATION, 379 SM_SC_W4_CMAC_FOR_CONFIRMATION, 380 SM_SC_SEND_CONFIRMATION, 381 SM_SC_W2_CMAC_FOR_CHECK_CONFIRMATION, 382 SM_SC_W4_CMAC_FOR_CHECK_CONFIRMATION, 383 SM_SC_W4_CONFIRMATION, 384 SM_SC_SEND_PAIRING_RANDOM, 385 SM_SC_W4_PAIRING_RANDOM, 386 SM_SC_W2_CALCULATE_G2, 387 SM_SC_W4_CALCULATE_G2, 388 SM_SC_W4_CALCULATE_DHKEY, 389 SM_SC_W2_CALCULATE_F5_SALT, 390 SM_SC_W4_CALCULATE_F5_SALT, 391 SM_SC_W2_CALCULATE_F5_MACKEY, 392 SM_SC_W4_CALCULATE_F5_MACKEY, 393 SM_SC_W2_CALCULATE_F5_LTK, 394 SM_SC_W4_CALCULATE_F5_LTK, 395 SM_SC_W2_CALCULATE_F6_FOR_DHKEY_CHECK, 396 SM_SC_W4_CALCULATE_F6_FOR_DHKEY_CHECK, 397 SM_SC_W2_CALCULATE_F6_TO_VERIFY_DHKEY_CHECK, 398 SM_SC_W4_CALCULATE_F6_TO_VERIFY_DHKEY_CHECK, 399 SM_SC_W4_USER_RESPONSE, 400 SM_SC_SEND_DHKEY_CHECK_COMMAND, 401 SM_SC_W4_DHKEY_CHECK_COMMAND, 402 SM_SC_W4_LTK_REQUEST_SC, 403 SM_SC_W2_CALCULATE_ILK_USING_H6, 404 SM_SC_W2_CALCULATE_ILK_USING_H7, 405 SM_SC_W4_CALCULATE_ILK, 406 SM_SC_W2_CALCULATE_BR_EDR_LINK_KEY, 407 SM_SC_W4_CALCULATE_BR_EDR_LINK_KEY, 408 409 // Classic 410 SM_BR_EDR_W4_ENCRYPTION_COMPLETE, 411 SM_BR_EDR_INITIATOR_SEND_PAIRING_REQUEST, 412 SM_BR_EDR_INITIATOR_W4_PAIRING_RESPONSE, 413 SM_BR_EDR_RESPONDER_W4_PAIRING_REQUEST, 414 SM_BR_EDR_RESPONDER_PAIRING_REQUEST_RECEIVED, 415 SM_BR_EDR_DISTRIBUTE_KEYS, 416 SM_BR_EDR_RECEIVE_KEYS, 417 SM_BR_EDR_W2_CALCULATE_ILK_USING_H6, 418 SM_BR_EDR_W2_CALCULATE_ILK_USING_H7, 419 SM_BR_EDR_W4_CALCULATE_ILK, 420 SM_BR_EDR_W2_CALCULATE_LE_LTK, 421 SM_BR_EDR_W4_CALCULATE_LE_LTK, 422 } security_manager_state_t; 423 424 typedef enum { 425 IRK_LOOKUP_IDLE, 426 IRK_LOOKUP_W4_READY, 427 IRK_LOOKUP_STARTED, 428 IRK_LOOKUP_SUCCEEDED, 429 IRK_LOOKUP_FAILED 430 } irk_lookup_state_t; 431 432 typedef uint8_t sm_pairing_packet_t[7]; 433 434 // connection info available as long as connection exists 435 typedef struct sm_connection { 436 hci_con_handle_t sm_handle; 437 uint16_t sm_cid; 438 uint8_t sm_role; // 0 - IamMaster, 1 = IamSlave 439 uint8_t sm_security_request_received; 440 uint8_t sm_pairing_requested; 441 uint8_t sm_peer_addr_type; 442 bd_addr_t sm_peer_address; 443 uint8_t sm_own_addr_type; 444 bd_addr_t sm_own_address; 445 security_manager_state_t sm_engine_state; 446 irk_lookup_state_t sm_irk_lookup_state; 447 uint8_t sm_pairing_failed_reason; 448 uint8_t sm_connection_encrypted; 449 uint8_t sm_connection_authenticated; // [0..1] 450 uint8_t sm_connection_sc; 451 uint8_t sm_actual_encryption_key_size; 452 sm_pairing_packet_t sm_m_preq; // only used during c1 453 authorization_state_t sm_connection_authorization_state; 454 uint16_t sm_local_ediv; 455 uint8_t sm_local_rand[8]; 456 int sm_le_db_index; 457 bool sm_pairing_active; 458 bool sm_reencryption_active; 459 } sm_connection_t; 460 461 // 462 // ATT Server 463 // 464 465 // max ATT request matches L2CAP PDU -- allow to use smaller buffer 466 #ifndef ATT_REQUEST_BUFFER_SIZE 467 #define ATT_REQUEST_BUFFER_SIZE HCI_ACL_PAYLOAD_SIZE 468 #endif 469 470 typedef enum { 471 ATT_SERVER_IDLE, 472 ATT_SERVER_REQUEST_RECEIVED, 473 ATT_SERVER_W4_SIGNED_WRITE_VALIDATION, 474 ATT_SERVER_REQUEST_RECEIVED_AND_VALIDATED, 475 ATT_SERVER_RESPONSE_PENDING, 476 } att_server_state_t; 477 478 typedef struct { 479 att_server_state_t state; 480 481 uint8_t peer_addr_type; 482 bd_addr_t peer_address; 483 484 int ir_le_device_db_index; 485 uint8_t ir_lookup_active; 486 uint8_t pairing_active; 487 488 uint16_t value_indication_handle; 489 btstack_timer_source_t value_indication_timer; 490 491 btstack_linked_list_t notification_requests; 492 btstack_linked_list_t indication_requests; 493 494 #ifdef ENABLE_GATT_OVER_CLASSIC 495 uint16_t l2cap_cid; 496 #endif 497 498 uint16_t request_size; 499 uint8_t request_buffer[ATT_REQUEST_BUFFER_SIZE]; 500 501 } att_server_t; 502 503 #endif 504 505 typedef enum { 506 L2CAP_INFORMATION_STATE_IDLE = 0, 507 L2CAP_INFORMATION_STATE_W2_SEND_EXTENDED_FEATURE_REQUEST, 508 L2CAP_INFORMATION_STATE_W4_EXTENDED_FEATURE_RESPONSE, 509 L2CAP_INFORMATION_STATE_W2_SEND_FIXED_CHANNELS_REQUEST, 510 L2CAP_INFORMATION_STATE_W4_FIXED_CHANNELS_RESPONSE, 511 L2CAP_INFORMATION_STATE_DONE 512 } l2cap_information_state_t; 513 514 typedef struct { 515 l2cap_information_state_t information_state; 516 uint16_t extended_feature_mask; 517 uint16_t fixed_channels_supported; // Core V5.3 - only first octet used 518 } l2cap_state_t; 519 520 // 521 typedef struct { 522 // linked list - assert: first field 523 btstack_linked_item_t item; 524 525 // remote side 526 bd_addr_t address; 527 528 // module handle 529 hci_con_handle_t con_handle; 530 531 // le public, le random, classic 532 bd_addr_type_t address_type; 533 534 // role: 0 - master, 1 - slave 535 uint8_t role; 536 537 // connection state 538 CONNECTION_STATE state; 539 540 // bonding 541 uint32_t bonding_flags; 542 uint8_t bonding_status; 543 544 // encryption key size (in octets) 545 uint8_t encryption_key_size; 546 547 // requested security level 548 gap_security_level_t requested_security_level; 549 550 // link key and its type 551 link_key_t link_key; 552 link_key_type_t link_key_type; 553 554 // remote supported features 555 /* bit 0 - eSCO */ 556 /* bit 1 - extended features */ 557 uint8_t remote_supported_features[1]; 558 559 #ifdef ENABLE_CLASSIC 560 // IO Capabilities Response 561 uint8_t io_cap_response_auth_req; 562 uint8_t io_cap_response_io; 563 #ifdef ENABLE_CLASSIC_PAIRING_OOB 564 uint8_t io_cap_response_oob_data; 565 #endif 566 567 // connection mode, default ACL_CONNECTION_MODE_ACTIVE 568 uint8_t connection_mode; 569 570 // enter/exit sniff mode requests 571 uint16_t sniff_min_interval; // 0: idle, 0xffff exit sniff, else enter sniff 572 uint16_t sniff_max_interval; 573 uint16_t sniff_attempt; 574 uint16_t sniff_timeout; 575 576 // sniff subrating 577 uint16_t sniff_subrating_max_latency; // 0xffff = not set 578 uint16_t sniff_subrating_min_remote_timeout; 579 uint16_t sniff_subrating_min_local_timeout; 580 581 // QoS 582 hci_service_type_t qos_service_type; 583 uint32_t qos_token_rate; 584 uint32_t qos_peak_bandwidth; 585 uint32_t qos_latency; 586 uint32_t qos_delay_variation; 587 588 #ifdef ENABLE_SCO_OVER_HCI 589 // track SCO rx event 590 uint32_t sco_rx_ms; 591 uint8_t sco_rx_count; 592 uint8_t sco_rx_valid; 593 #endif 594 // generate sco can send now based on received packets, using timeout below 595 uint8_t sco_tx_ready; 596 597 // request role switch 598 hci_role_t request_role; 599 600 btstack_timer_source_t timeout_sco; 601 #endif /* ENABLE_CLASSIC */ 602 603 // authentication and other errands 604 uint16_t authentication_flags; 605 606 // gap connection tasks, see GAP_CONNECTION_TASK_x 607 uint16_t gap_connection_tasks; 608 609 btstack_timer_source_t timeout; 610 611 // timeout in system ticks (HAVE_EMBEDDED_TICK) or milliseconds (HAVE_EMBEDDED_TIME_MS) 612 uint32_t timestamp; 613 614 // ACL packet recombination - PRE_BUFFER + ACL Header + ACL payload 615 uint8_t acl_recombination_buffer[HCI_INCOMING_PRE_BUFFER_SIZE + 4 + HCI_ACL_BUFFER_SIZE]; 616 uint16_t acl_recombination_pos; 617 uint16_t acl_recombination_length; 618 619 620 // number packets sent to controller 621 uint8_t num_packets_sent; 622 623 #ifdef ENABLE_HCI_CONTROLLER_TO_HOST_FLOW_CONTROL 624 uint8_t num_packets_completed; 625 #endif 626 627 // LE Connection parameter update 628 le_con_parameter_update_state_t le_con_parameter_update_state; 629 uint8_t le_con_param_update_identifier; 630 uint16_t le_conn_interval_min; 631 uint16_t le_conn_interval_max; 632 uint16_t le_conn_latency; 633 uint16_t le_supervision_timeout; 634 635 #ifdef ENABLE_BLE 636 uint16_t le_connection_interval; 637 638 // LE PHY Update via set phy command 639 uint8_t le_phy_update_all_phys; // 0xff for idle 640 uint8_t le_phy_update_tx_phys; 641 uint8_t le_phy_update_rx_phys; 642 int8_t le_phy_update_phy_options; 643 644 // LE Security Manager 645 sm_connection_t sm_connection; 646 647 #ifdef ENABLE_LE_LIMIT_ACL_FRAGMENT_BY_MAX_OCTETS 648 uint16_t le_max_tx_octets; 649 #endif 650 651 // ATT Connection 652 att_connection_t att_connection; 653 654 // ATT Server 655 att_server_t att_server; 656 657 #endif 658 659 l2cap_state_t l2cap_state; 660 661 #ifdef ENABLE_CLASSIC_PAIRING_OOB 662 const uint8_t * classic_oob_c_192; 663 const uint8_t * classic_oob_r_192; 664 const uint8_t * classic_oob_c_256; 665 const uint8_t * classic_oob_r_256; 666 #endif 667 668 } hci_connection_t; 669 670 #ifdef ENABLE_LE_ISOCHRONOUS_STREAMS 671 672 673 typedef enum { 674 HCI_ISO_TYPE_BIS = 0, 675 HCI_ISO_TYPE_CIS 676 } hci_iso_type_t; 677 678 typedef enum{ 679 HCI_ISO_STREAM_STATE_REQUESTED, 680 HCI_ISO_STREAM_STATE_W4_ESTABLISHED, 681 HCI_ISO_STREAM_STATE_ESTABLISHED, 682 } hci_iso_stream_state_t; 683 684 typedef struct { 685 // linked list - assert: first field 686 btstack_linked_item_t item; 687 688 // iso type: bis or cis 689 hci_iso_type_t iso_type; 690 691 // group_id: big_handle or cis_id 692 uint8_t group_id; 693 694 // state 695 hci_iso_stream_state_t state; 696 697 // peer info 698 hci_con_handle_t con_handle; 699 700 // re-assembly buffer 701 uint16_t reassembly_pos; 702 uint8_t reassembly_buffer[HCI_ISO_PAYLOAD_SIZE]; 703 704 // number packets sent to controller 705 uint8_t num_packets_sent; 706 707 // packets to skip due to queuing them to late before 708 uint8_t num_packets_to_skip; 709 710 // ready to send 711 bool emit_ready_to_send; 712 713 } hci_iso_stream_t; 714 #endif 715 716 /** 717 * HCI Inititizlization State Machine 718 */ 719 typedef enum hci_init_state{ 720 HCI_INIT_SEND_RESET = 0, 721 HCI_INIT_W4_SEND_RESET, 722 HCI_INIT_SEND_READ_LOCAL_VERSION_INFORMATION, 723 HCI_INIT_W4_SEND_READ_LOCAL_VERSION_INFORMATION, 724 725 #ifndef HAVE_HOST_CONTROLLER_API 726 HCI_INIT_SEND_READ_LOCAL_NAME, 727 HCI_INIT_W4_SEND_READ_LOCAL_NAME, 728 HCI_INIT_SEND_BAUD_CHANGE, 729 HCI_INIT_W4_SEND_BAUD_CHANGE, 730 HCI_INIT_CUSTOM_INIT, 731 HCI_INIT_W4_CUSTOM_INIT, 732 HCI_INIT_SEND_RESET_CSR_WARM_BOOT, 733 HCI_INIT_W4_CUSTOM_INIT_CSR_WARM_BOOT, 734 HCI_INIT_W4_CUSTOM_INIT_CSR_WARM_BOOT_LINK_RESET, 735 HCI_INIT_W4_CUSTOM_INIT_BCM_DELAY, 736 #endif 737 738 HCI_INIT_READ_LOCAL_SUPPORTED_COMMANDS, 739 HCI_INIT_W4_READ_LOCAL_SUPPORTED_COMMANDS, 740 741 HCI_INIT_SEND_BAUD_CHANGE_BCM, 742 HCI_INIT_W4_SEND_BAUD_CHANGE_BCM, 743 744 HCI_INIT_SET_BD_ADDR, 745 HCI_INIT_W4_SET_BD_ADDR, 746 747 HCI_INIT_SEND_RESET_ST_WARM_BOOT, 748 HCI_INIT_W4_SEND_RESET_ST_WARM_BOOT, 749 750 HCI_INIT_READ_BD_ADDR, 751 HCI_INIT_W4_READ_BD_ADDR, 752 753 HCI_INIT_READ_BUFFER_SIZE, 754 HCI_INIT_W4_READ_BUFFER_SIZE, 755 HCI_INIT_READ_LOCAL_SUPPORTED_FEATURES, 756 HCI_INIT_W4_READ_LOCAL_SUPPORTED_FEATURES, 757 758 #ifdef ENABLE_HCI_CONTROLLER_TO_HOST_FLOW_CONTROL 759 HCI_INIT_HOST_BUFFER_SIZE, 760 HCI_INIT_W4_HOST_BUFFER_SIZE, 761 HCI_INIT_SET_CONTROLLER_TO_HOST_FLOW_CONTROL, 762 HCI_INIT_W4_SET_CONTROLLER_TO_HOST_FLOW_CONTROL, 763 #endif 764 765 HCI_INIT_SET_EVENT_MASK, 766 HCI_INIT_W4_SET_EVENT_MASK, 767 HCI_INIT_SET_EVENT_MASK_2, 768 HCI_INIT_W4_SET_EVENT_MASK_2, 769 770 #ifdef ENABLE_CLASSIC 771 HCI_INIT_WRITE_SIMPLE_PAIRING_MODE, 772 HCI_INIT_W4_WRITE_SIMPLE_PAIRING_MODE, 773 HCI_INIT_WRITE_INQUIRY_MODE, 774 HCI_INIT_W4_WRITE_INQUIRY_MODE, 775 HCI_INIT_WRITE_SECURE_CONNECTIONS_HOST_ENABLE, 776 HCI_INIT_W4_WRITE_SECURE_CONNECTIONS_HOST_ENABLE, 777 HCI_INIT_SET_MIN_ENCRYPTION_KEY_SIZE, 778 HCI_INIT_W4_SET_MIN_ENCRYPTION_KEY_SIZE, 779 780 #ifdef ENABLE_SCO_OVER_HCI 781 // SCO over HCI 782 HCI_INIT_WRITE_SYNCHRONOUS_FLOW_CONTROL_ENABLE, 783 HCI_INIT_W4_WRITE_SYNCHRONOUS_FLOW_CONTROL_ENABLE, 784 HCI_INIT_WRITE_DEFAULT_ERRONEOUS_DATA_REPORTING, 785 HCI_INIT_W4_WRITE_DEFAULT_ERRONEOUS_DATA_REPORTING, 786 #endif 787 788 #if defined(ENABLE_SCO_OVER_HCI) || defined(ENABLE_SCO_OVER_PCM) 789 // Broadcom SCO Routing and Configuration 790 HCI_INIT_BCM_WRITE_SCO_PCM_INT, 791 HCI_INIT_W4_BCM_WRITE_SCO_PCM_INT, 792 #endif 793 #ifdef ENABLE_SCO_OVER_PCM 794 HCI_INIT_BCM_WRITE_I2SPCM_INTERFACE_PARAM, 795 HCI_INIT_W4_BCM_WRITE_I2SPCM_INTERFACE_PARAM, 796 #endif 797 #endif 798 799 #ifdef ENABLE_BLE 800 HCI_INIT_LE_READ_BUFFER_SIZE, 801 HCI_INIT_W4_LE_READ_BUFFER_SIZE, 802 HCI_INIT_WRITE_LE_HOST_SUPPORTED, 803 HCI_INIT_W4_WRITE_LE_HOST_SUPPORTED, 804 HCI_INIT_LE_SET_EVENT_MASK, 805 HCI_INIT_W4_LE_SET_EVENT_MASK, 806 #endif 807 808 #ifdef ENABLE_LE_DATA_LENGTH_EXTENSION 809 HCI_INIT_LE_READ_MAX_DATA_LENGTH, 810 HCI_INIT_W4_LE_READ_MAX_DATA_LENGTH, 811 HCI_INIT_LE_WRITE_SUGGESTED_DATA_LENGTH, 812 HCI_INIT_W4_LE_WRITE_SUGGESTED_DATA_LENGTH, 813 #endif 814 815 #ifdef ENABLE_LE_CENTRAL 816 HCI_INIT_READ_WHITE_LIST_SIZE, 817 HCI_INIT_W4_READ_WHITE_LIST_SIZE, 818 #endif 819 820 #ifdef ENABLE_LE_PERIPHERAL 821 #ifdef ENABLE_LE_EXTENDED_ADVERTISING 822 HCI_INIT_LE_READ_MAX_ADV_DATA_LEN, 823 HCI_INIT_W4_LE_READ_MAX_ADV_DATA_LEN, 824 #endif 825 #endif 826 #ifdef ENABLE_LE_ISOCHRONOUS_STREAMS 827 HCI_INIT_LE_SET_HOST_FEATURE_CONNECTED_ISO_STREAMS, 828 HCI_INIT_W4_LE_SET_HOST_FEATURE_CONNECTED_ISO_STREAMS, 829 #endif 830 831 HCI_INIT_DONE, 832 833 HCI_FALLING_ASLEEP_DISCONNECT, 834 HCI_FALLING_ASLEEP_W4_WRITE_SCAN_ENABLE, 835 HCI_FALLING_ASLEEP_COMPLETE, 836 837 HCI_INIT_AFTER_SLEEP, 838 839 HCI_HALTING_CLASSIC_STOP, 840 HCI_HALTING_LE_ADV_STOP, 841 HCI_HALTING_LE_SCAN_STOP, 842 HCI_HALTING_DISCONNECT_ALL, 843 HCI_HALTING_W4_CLOSE_TIMER, 844 HCI_HALTING_CLOSE, 845 846 } hci_substate_t; 847 848 #define GAP_TASK_SET_LOCAL_NAME 0x01 849 #define GAP_TASK_SET_EIR_DATA 0x02 850 #define GAP_TASK_SET_CLASS_OF_DEVICE 0x04 851 #define GAP_TASK_SET_DEFAULT_LINK_POLICY 0x08 852 #define GAP_TASK_WRITE_SCAN_ENABLE 0x10 853 #define GAP_TASK_WRITE_PAGE_SCAN_ACTIVITY 0x20 854 #define GAP_TASK_WRITE_PAGE_SCAN_TYPE 0x40 855 #define GAP_TASK_WRITE_PAGE_TIMEOUT 0x80 856 #define GAP_TASK_WRITE_INQUIRY_SCAN_ACTIVITY 0x100 857 858 enum { 859 // Tasks 860 LE_ADVERTISEMENT_TASKS_SET_ADV_DATA = 1 << 0, 861 LE_ADVERTISEMENT_TASKS_SET_SCAN_DATA = 1 << 1, 862 LE_ADVERTISEMENT_TASKS_SET_PARAMS = 1 << 2, 863 LE_ADVERTISEMENT_TASKS_SET_ADDRESS = 1 << 3, 864 LE_ADVERTISEMENT_TASKS_SET_PERIODIC_PARAMS = 1 << 4, 865 LE_ADVERTISEMENT_TASKS_SET_PERIODIC_DATA = 1 << 5, 866 LE_ADVERTISEMENT_TASKS_REMOVE_SET = 1 << 6, 867 }; 868 869 enum { 870 // State 871 LE_ADVERTISEMENT_STATE_PARAMS_SET = 1 << 0, 872 LE_ADVERTISEMENT_STATE_ACTIVE = 1 << 1, 873 LE_ADVERTISEMENT_STATE_ENABLED = 1 << 2, 874 LE_ADVERTISEMENT_STATE_PERIODIC_ACTIVE = 1 << 3, 875 LE_ADVERTISEMENT_STATE_PERIODIC_ENABLED = 1 << 4, 876 }; 877 878 enum { 879 LE_WHITELIST_ON_CONTROLLER = 1 << 0, 880 LE_WHITELIST_ADD_TO_CONTROLLER = 1 << 1, 881 LE_WHITELIST_REMOVE_FROM_CONTROLLER = 1 << 2, 882 }; 883 884 enum { 885 LE_PERIODIC_ADVERTISER_LIST_ENTRY_ON_CONTROLLER = 1 << 0, 886 LE_PERIODIC_ADVERTISER_LIST_ENTRY_ADD_TO_CONTROLLER = 1 << 1, 887 LE_PERIODIC_ADVERTISER_LIST_ENTRY_REMOVE_FROM_CONTROLLER = 1 << 2, 888 }; 889 890 typedef struct { 891 btstack_linked_item_t item; 892 bd_addr_t address; 893 bd_addr_type_t address_type; 894 uint8_t state; 895 } whitelist_entry_t; 896 897 typedef struct { 898 btstack_linked_item_t item; 899 bd_addr_t address; 900 bd_addr_type_t address_type; 901 uint8_t sid; 902 uint8_t state; 903 } periodic_advertiser_list_entry_t; 904 905 #define MAX_NUM_RESOLVING_LIST_ENTRIES 64 906 typedef enum { 907 LE_RESOLVING_LIST_SEND_ENABLE_ADDRESS_RESOLUTION, 908 LE_RESOLVING_LIST_READ_SIZE, 909 LE_RESOLVING_LIST_SEND_CLEAR, 910 LE_RESOLVING_LIST_REMOVE_ENTRIES, 911 LE_RESOLVING_LIST_ADD_ENTRIES, 912 LE_RESOLVING_LIST_DONE 913 } le_resolving_list_state_t; 914 915 /** 916 * main data structure 917 */ 918 typedef struct { 919 // transport component with configuration 920 const hci_transport_t * hci_transport; 921 const void * config; 922 923 // chipset driver 924 const btstack_chipset_t * chipset; 925 926 // hardware power controller 927 const btstack_control_t * control; 928 929 #ifdef ENABLE_CLASSIC 930 /* link key db */ 931 const btstack_link_key_db_t * link_key_db; 932 #endif 933 934 // list of existing baseband connections 935 btstack_linked_list_t connections; 936 937 /* callback to L2CAP layer */ 938 btstack_packet_handler_t acl_packet_handler; 939 940 /* callback for SCO data */ 941 btstack_packet_handler_t sco_packet_handler; 942 943 /* callbacks for events */ 944 btstack_linked_list_t event_handlers; 945 946 #ifdef ENABLE_CLASSIC 947 /* callback for reject classic connection */ 948 int (*gap_classic_accept_callback)(bd_addr_t addr, hci_link_type_t link_type); 949 #endif 950 951 // hardware error callback 952 void (*hardware_error_callback)(uint8_t error); 953 954 #ifdef ENABLE_LE_ISOCHRONOUS_STREAMS 955 /* callback for ISO data */ 956 btstack_packet_handler_t iso_packet_handler; 957 958 /* fragmentation for ISO data */ 959 uint16_t iso_fragmentation_pos; 960 uint16_t iso_fragmentation_total_size; 961 bool iso_fragmentation_tx_active; 962 963 uint8_t iso_packets_to_queue; 964 965 // list of iso streams 966 btstack_linked_list_t iso_streams; 967 968 // list of BIGs and BIG Syncs 969 btstack_linked_list_t le_audio_bigs; 970 btstack_linked_list_t le_audio_big_syncs; 971 #endif 972 973 // basic configuration 974 const char * local_name; 975 const uint8_t * eir_data; 976 uint32_t class_of_device; 977 bd_addr_t local_bd_addr; 978 uint16_t default_link_policy_settings; 979 uint8_t allow_role_switch; 980 uint8_t ssp_enable; 981 uint8_t ssp_io_capability; 982 uint8_t ssp_authentication_requirement; 983 uint8_t ssp_auto_accept; 984 bool secure_connections_enable; 985 bool secure_connections_active; 986 inquiry_mode_t inquiry_mode; 987 988 #ifdef ENABLE_CLASSIC 989 /* GAP tasks, see GAP_TASK_* */ 990 uint16_t gap_tasks_classic; 991 992 /* write page scan activity */ 993 uint16_t new_page_scan_interval; 994 uint16_t new_page_scan_window; 995 996 /* write page scan type */ 997 uint8_t new_page_scan_type; 998 999 /* write page timeout */ 1000 uint16_t page_timeout; 1001 1002 // Errata-11838 mandates 7 bytes for GAP Security Level 1-3, we use 16 as default 1003 uint8_t gap_required_encyrption_key_size; 1004 1005 uint16_t link_supervision_timeout; 1006 uint16_t automatic_flush_timeout; 1007 1008 gap_security_level_t gap_security_level; 1009 gap_security_level_t gap_minimal_service_security_level; 1010 gap_security_mode_t gap_security_mode; 1011 1012 uint32_t inquiry_lap; // GAP_IAC_GENERAL_INQUIRY or GAP_IAC_LIMITED_INQUIRY 1013 uint16_t inquiry_scan_interval; 1014 uint16_t inquiry_scan_window; 1015 1016 bool gap_secure_connections_only_mode; 1017 #endif 1018 1019 // single buffer for HCI packet assembly + additional prebuffer for H4 drivers 1020 uint8_t * hci_packet_buffer; 1021 uint8_t hci_packet_buffer_data[HCI_OUTGOING_PRE_BUFFER_SIZE + HCI_OUTGOING_PACKET_BUFFER_SIZE]; 1022 bool hci_packet_buffer_reserved; 1023 uint16_t acl_fragmentation_pos; 1024 uint16_t acl_fragmentation_total_size; 1025 uint8_t acl_fragmentation_tx_active; 1026 1027 /* host to controller flow control */ 1028 uint8_t num_cmd_packets; 1029 uint8_t acl_packets_total_num; 1030 uint16_t acl_data_packet_length; 1031 uint8_t sco_packets_total_num; 1032 uint8_t sco_data_packet_length; 1033 uint8_t synchronous_flow_control_enabled; 1034 uint8_t le_acl_packets_total_num; 1035 uint16_t le_data_packets_length; 1036 uint8_t le_iso_packets_total_num; 1037 uint16_t le_iso_packets_length; 1038 uint8_t sco_waiting_for_can_send_now; 1039 bool sco_can_send_now; 1040 1041 /* local supported features */ 1042 uint8_t local_supported_features[8]; 1043 1044 /* local supported commands summary - complete info is 64 bytes */ 1045 uint32_t local_supported_commands; 1046 1047 /* bluetooth device information from hci read local version information */ 1048 // uint16_t hci_version; 1049 // uint16_t hci_revision; 1050 // uint16_t lmp_version; 1051 uint16_t manufacturer; 1052 // uint16_t lmp_subversion; 1053 1054 // usable packet types given acl_data_packet_length and HCI_ACL_BUFFER_SIZE 1055 uint16_t packet_types; 1056 1057 1058 /* hci state machine */ 1059 HCI_STATE state; 1060 hci_substate_t substate; 1061 btstack_timer_source_t timeout; 1062 btstack_chipset_result_t chipset_result; 1063 1064 uint16_t last_cmd_opcode; 1065 1066 uint8_t cmds_ready; 1067 1068 /* buffer for scan enable cmd - 0xff no change */ 1069 uint8_t new_scan_enable_value; 1070 1071 uint8_t discoverable; 1072 uint8_t connectable; 1073 uint8_t bondable; 1074 1075 uint8_t inquiry_state; // see hci.c for state defines 1076 uint16_t inquiry_max_period_length; 1077 uint16_t inquiry_min_period_length; 1078 1079 bd_addr_t remote_name_addr; 1080 uint16_t remote_name_clock_offset; 1081 uint8_t remote_name_page_scan_repetition_mode; 1082 uint8_t remote_name_state; // see hci.c for state defines 1083 1084 bd_addr_t gap_pairing_addr; 1085 uint8_t gap_pairing_state; // see hci.c for state defines 1086 uint8_t gap_pairing_pin_len; 1087 union { 1088 const uint8_t * gap_pairing_pin; 1089 uint32_t gap_pairing_passkey; 1090 } gap_pairing_input; 1091 1092 uint16_t sco_voice_setting; 1093 uint16_t sco_voice_setting_active; 1094 1095 uint8_t loopback_mode; 1096 1097 // buffer for single connection decline 1098 uint8_t decline_reason; 1099 bd_addr_t decline_addr; 1100 1101 #ifdef ENABLE_HCI_CONTROLLER_TO_HOST_FLOW_CONTROL 1102 uint8_t host_completed_packets; 1103 #endif 1104 1105 #ifdef ENABLE_BLE 1106 uint8_t le_own_addr_type; 1107 bd_addr_t le_random_address; 1108 uint8_t le_random_address_set; 1109 1110 // LE Whitelist Management 1111 uint8_t le_whitelist_capacity; 1112 btstack_linked_list_t le_whitelist; 1113 #endif 1114 1115 #ifdef ENABLE_LE_CENTRAL 1116 bool le_scanning_enabled; 1117 bool le_scanning_active; 1118 1119 le_connecting_state_t le_connecting_state; 1120 le_connecting_state_t le_connecting_request; 1121 1122 bool le_scanning_param_update; 1123 uint8_t le_scan_type; 1124 uint8_t le_scan_filter_policy; 1125 uint16_t le_scan_interval; 1126 uint16_t le_scan_window; 1127 1128 // Connection parameters 1129 uint16_t le_connection_interval_min; 1130 uint16_t le_connection_interval_max; 1131 uint16_t le_connection_latency; 1132 uint16_t le_supervision_timeout; 1133 uint16_t le_minimum_ce_length; 1134 uint16_t le_maximum_ce_length; 1135 uint16_t le_connection_scan_interval; 1136 uint16_t le_connection_scan_window; 1137 uint8_t le_connection_own_addr_type; 1138 bd_addr_t le_connection_own_address; 1139 1140 #ifdef ENABLE_LE_EXTENDED_ADVERTISING 1141 btstack_linked_list_t le_periodic_advertiser_list; 1142 uint16_t le_periodic_terminate_sync_handle; 1143 // Periodic Advertising Sync parameters 1144 uint8_t le_periodic_sync_options; 1145 uint8_t le_periodic_sync_advertising_sid; 1146 bd_addr_type_t le_periodic_sync_advertiser_address_type; 1147 bd_addr_t le_periodic_sync_advertiser_address; 1148 uint16_t le_periodic_sync_skip; 1149 uint16_t le_periodic_sync_timeout; 1150 uint8_t le_periodic_sync_cte_type; 1151 le_connecting_state_t le_periodic_sync_state; 1152 le_connecting_state_t le_periodic_sync_request; 1153 #endif 1154 #endif 1155 1156 le_connection_parameter_range_t le_connection_parameter_range; 1157 1158 // TODO: move LE_ADVERTISEMENT_TASKS_SET_ADDRESS flag which is used for both roles into 1159 // some generic gap_le variable 1160 uint8_t le_advertisements_todo; 1161 1162 #ifdef ENABLE_LE_PERIPHERAL 1163 uint8_t * le_advertisements_data; 1164 uint8_t le_advertisements_data_len; 1165 1166 uint8_t * le_scan_response_data; 1167 uint8_t le_scan_response_data_len; 1168 1169 uint16_t le_advertisements_interval_min; 1170 uint16_t le_advertisements_interval_max; 1171 uint8_t le_advertisements_type; 1172 uint8_t le_advertisements_direct_address_type; 1173 uint8_t le_advertisements_channel_map; 1174 uint8_t le_advertisements_filter_policy; 1175 bd_addr_t le_advertisements_direct_address; 1176 uint8_t le_advertisements_own_addr_type; 1177 bd_addr_t le_advertisements_own_address; 1178 1179 uint8_t le_advertisements_state; 1180 1181 bool le_advertisements_enabled_for_current_roles; 1182 uint8_t le_max_number_peripheral_connections; 1183 1184 #ifdef ENABLE_LE_EXTENDED_ADVERTISING 1185 btstack_linked_list_t le_advertising_sets; 1186 uint16_t le_maximum_advertising_data_length; 1187 uint8_t le_advertising_set_in_current_command; 1188 #endif 1189 #endif 1190 1191 #ifdef ENABLE_LE_DATA_LENGTH_EXTENSION 1192 // LE Data Length 1193 uint16_t le_supported_max_tx_octets; 1194 uint16_t le_supported_max_tx_time; 1195 #endif 1196 1197 // custom BD ADDR 1198 bd_addr_t custom_bd_addr; 1199 uint8_t custom_bd_addr_set; 1200 1201 #ifdef ENABLE_CLASSIC 1202 uint8_t master_slave_policy; 1203 #endif 1204 1205 // address and address_type of active create connection command (ACL, SCO, LE) 1206 bd_addr_t outgoing_addr; 1207 bd_addr_type_t outgoing_addr_type; 1208 1209 // LE Resolving List 1210 #ifdef ENABLE_LE_PRIVACY_ADDRESS_RESOLUTION 1211 le_resolving_list_state_t le_resolving_list_state; 1212 uint16_t le_resolving_list_size; 1213 uint8_t le_resolving_list_add_entries[(MAX_NUM_RESOLVING_LIST_ENTRIES + 7) / 8]; 1214 uint8_t le_resolving_list_remove_entries[(MAX_NUM_RESOLVING_LIST_ENTRIES + 7) / 8]; 1215 #endif 1216 1217 #ifdef ENABLE_CLASSIC_PAIRING_OOB 1218 bool classic_read_local_oob_data; 1219 hci_con_handle_t classic_oob_con_handle; 1220 #endif 1221 1222 #ifdef HAVE_SCO_TRANSPORT 1223 const btstack_sco_transport_t * sco_transport; 1224 #endif 1225 } hci_stack_t; 1226 1227 1228 /* API_START */ 1229 1230 1231 // HCI init and configuration 1232 1233 1234 /** 1235 * @brief Set up HCI. Needs to be called before any other function. 1236 */ 1237 void hci_init(const hci_transport_t *transport, const void *config); 1238 1239 /** 1240 * @brief Configure Bluetooth chipset driver. Has to be called before power on, or right after receiving the local version information. 1241 */ 1242 void hci_set_chipset(const btstack_chipset_t *chipset_driver); 1243 1244 /** 1245 * @brief Configure Bluetooth hardware control. Has to be called before power on. 1246 * @[aram hardware_control implementation 1247 */ 1248 void hci_set_control(const btstack_control_t *hardware_control); 1249 1250 #ifdef HAVE_SCO_TRANSPORT 1251 /** 1252 * @brief Set SCO Transport implementation for SCO over PCM mode 1253 * @param sco_transport that sends SCO over I2S or PCM interface 1254 */ 1255 void hci_set_sco_transport(const btstack_sco_transport_t *sco_transport); 1256 #endif 1257 1258 #ifdef ENABLE_CLASSIC 1259 /** 1260 * @brief Configure Bluetooth hardware control. Has to be called before power on. 1261 */ 1262 void hci_set_link_key_db(btstack_link_key_db_t const * link_key_db); 1263 #endif 1264 1265 /** 1266 * @brief Set callback for Bluetooth Hardware Error 1267 */ 1268 void hci_set_hardware_error_callback(void (*fn)(uint8_t error)); 1269 1270 /** 1271 * @brief Set Public BD ADDR - passed on to Bluetooth chipset during init if supported in bt_control_h 1272 */ 1273 void hci_set_bd_addr(bd_addr_t addr); 1274 1275 /** 1276 * @brief Configure Voice Setting for use with SCO data in HSP/HFP 1277 */ 1278 void hci_set_sco_voice_setting(uint16_t voice_setting); 1279 1280 /** 1281 * @brief Get SCO Voice Setting 1282 * @return current voice setting 1283 */ 1284 uint16_t hci_get_sco_voice_setting(void); 1285 1286 /** 1287 * @brief Set number of ISO packets to buffer for BIS/CIS 1288 * @param num_packets (default = 1) 1289 */ 1290 void hci_set_num_iso_packets_to_queue(uint8_t num_packets); 1291 1292 /** 1293 * @brief Set inquiry mode: standard, with RSSI, with RSSI + Extended Inquiry Results. Has to be called before power on. 1294 * @param inquriy_mode see bluetooth_defines.h 1295 */ 1296 void hci_set_inquiry_mode(inquiry_mode_t inquriy_mode); 1297 1298 /** 1299 * @brief Requests the change of BTstack power mode. 1300 * @param power_mode 1301 * @return 0 if success, otherwise error 1302 */ 1303 int hci_power_control(HCI_POWER_MODE power_mode); 1304 1305 /** 1306 * @brief Shutdown HCI 1307 */ 1308 void hci_close(void); 1309 1310 1311 // Callback registration 1312 1313 1314 /** 1315 * @brief Add event packet handler. 1316 */ 1317 void hci_add_event_handler(btstack_packet_callback_registration_t * callback_handler); 1318 1319 /** 1320 * @brief Remove event packet handler. 1321 */ 1322 void hci_remove_event_handler(btstack_packet_callback_registration_t * callback_handler); 1323 1324 /** 1325 * @brief Registers a packet handler for ACL data. Used by L2CAP 1326 */ 1327 void hci_register_acl_packet_handler(btstack_packet_handler_t handler); 1328 1329 /** 1330 * @brief Registers a packet handler for SCO data. Used for HSP and HFP profiles. 1331 */ 1332 void hci_register_sco_packet_handler(btstack_packet_handler_t handler); 1333 1334 /** 1335 * @brief Registers a packet handler for ISO data. Used for LE Audio profiles 1336 */ 1337 void hci_register_iso_packet_handler(btstack_packet_handler_t handler); 1338 1339 // Sending HCI Commands 1340 1341 /** 1342 * @brief Check if CMD packet can be sent to controller 1343 * @return true if command can be sent 1344 */ 1345 bool hci_can_send_command_packet_now(void); 1346 1347 /** 1348 * @brief Creates and sends HCI command packets based on a template and a list of parameters. Will return error if outgoing data buffer is occupied. 1349 * @return status 1350 */ 1351 uint8_t hci_send_cmd(const hci_cmd_t * cmd, ...); 1352 1353 1354 // Sending SCO Packets 1355 1356 /** @brief Get SCO packet length for current SCO Voice setting 1357 * @note Using SCO packets of the exact length is required for USB transfer 1358 * @return Length of SCO packets in bytes (not audio frames) incl. 3 byte header 1359 */ 1360 uint16_t hci_get_sco_packet_length(void); 1361 1362 /** 1363 * @brief Request emission of HCI_EVENT_SCO_CAN_SEND_NOW as soon as possible 1364 * @note HCI_EVENT_SCO_CAN_SEND_NOW might be emitted during call to this function 1365 * so packet handler should be ready to handle it 1366 */ 1367 void hci_request_sco_can_send_now_event(void); 1368 1369 /** 1370 * @brief Check HCI packet buffer and if SCO packet can be sent to controller 1371 * @return true if sco packet can be sent 1372 */ 1373 bool hci_can_send_sco_packet_now(void); 1374 1375 /** 1376 * @brief Check if SCO packet can be sent to controller 1377 * @return true if sco packet can be sent 1378 */ 1379 bool hci_can_send_prepared_sco_packet_now(void); 1380 1381 /** 1382 * @brief Send SCO packet prepared in HCI packet buffer 1383 */ 1384 uint8_t hci_send_sco_packet_buffer(int size); 1385 1386 /** 1387 * @brief Request emission of HCI_EVENT_BIS_CAN_SEND_NOW for all BIS as soon as possible 1388 * @param big_handle 1389 * @note HCI_EVENT_ISO_CAN_SEND_NOW might be emitted during call to this function 1390 * so packet handler should be ready to handle it 1391 */ 1392 uint8_t hci_request_bis_can_send_now_events(uint8_t big_handle); 1393 1394 /** 1395 * @brief Send ISO packet prepared in HCI packet buffer 1396 */ 1397 uint8_t hci_send_iso_packet_buffer(uint16_t size); 1398 1399 /** 1400 * Reserves outgoing packet buffer. 1401 * @return true on success 1402 */ 1403 bool hci_reserve_packet_buffer(void); 1404 1405 /** 1406 * Get pointer for outgoing packet buffer 1407 */ 1408 uint8_t* hci_get_outgoing_packet_buffer(void); 1409 1410 /** 1411 * Release outgoing packet buffer\ 1412 * @note only called instead of hci_send_preparared 1413 */ 1414 void hci_release_packet_buffer(void); 1415 1416 /** 1417 * @brief Sets the master/slave policy 1418 * @param policy (0: attempt to become master, 1: let connecting device decide) 1419 */ 1420 void hci_set_master_slave_policy(uint8_t policy); 1421 1422 /* API_END */ 1423 1424 1425 /** 1426 * va_list version of hci_send_cmd, call hci_send_cmd_packet 1427 * @return status 1428 */ 1429 uint8_t hci_send_cmd_va_arg(const hci_cmd_t * cmd, va_list argptr); 1430 1431 /** 1432 * Get connection iterator. Only used by l2cap.c and sm.c 1433 */ 1434 void hci_connections_get_iterator(btstack_linked_list_iterator_t *it); 1435 1436 /** 1437 * Get internal hci_connection_t for given handle. Used by L2CAP, SM, daemon 1438 */ 1439 hci_connection_t * hci_connection_for_handle(hci_con_handle_t con_handle); 1440 1441 /** 1442 * Get internal hci_connection_t for given Bluetooth addres. Called by L2CAP 1443 */ 1444 hci_connection_t * hci_connection_for_bd_addr_and_type(const bd_addr_t addr, bd_addr_type_t addr_type); 1445 1446 /** 1447 * Check if outgoing packet buffer is reserved. Used for internal checks in l2cap.c 1448 * @return true if packet buffer is reserved 1449 */ 1450 bool hci_is_packet_buffer_reserved(void); 1451 1452 /** 1453 * Check hci packet buffer is free and a classic acl packet can be sent to controller 1454 * @return true if ACL Classic packet can be sent now 1455 */ 1456 bool hci_can_send_acl_classic_packet_now(void); 1457 1458 /** 1459 * Check hci packet buffer is free and an LE acl packet can be sent to controller 1460 * @return true if ACL LE packet can be sent now 1461 */ 1462 bool hci_can_send_acl_le_packet_now(void); 1463 1464 /** 1465 * Check hci packet buffer is free and an acl packet for the given handle can be sent to controller 1466 * @return true if ACL packet for con_handle can be sent now 1467 */ 1468 bool hci_can_send_acl_packet_now(hci_con_handle_t con_handle); 1469 1470 /** 1471 * Check if acl packet for the given handle can be sent to controller 1472 * @return true if ACL packet for con_handle can be sent now 1473 */ 1474 bool hci_can_send_prepared_acl_packet_now(hci_con_handle_t con_handle); 1475 1476 /** 1477 * Send acl packet prepared in hci packet buffer 1478 * @return status 1479 */ 1480 uint8_t hci_send_acl_packet_buffer(int size); 1481 1482 /** 1483 * Check if authentication is active. It delays automatic disconnect while no L2CAP connection 1484 * Called by l2cap. 1485 */ 1486 bool hci_authentication_active_for_handle(hci_con_handle_t handle); 1487 1488 /** 1489 * Get maximal ACL Classic data packet length based on used buffer size. Called by L2CAP 1490 */ 1491 uint16_t hci_max_acl_data_packet_length(void); 1492 1493 /** 1494 * Get supported packet types. Called by L2CAP 1495 */ 1496 uint16_t hci_usable_acl_packet_types(void); 1497 1498 /** 1499 * Check if ACL packets marked as non flushable can be sent. Called by L2CAP 1500 */ 1501 bool hci_non_flushable_packet_boundary_flag_supported(void); 1502 1503 /** 1504 * Return current automatic flush timeout setting 1505 */ 1506 uint16_t hci_automatic_flush_timeout(void); 1507 1508 /** 1509 * Check if remote supported features query has completed 1510 */ 1511 bool hci_remote_features_available(hci_con_handle_t con_handle); 1512 1513 /** 1514 * Trigger remote supported features query 1515 */ 1516 void hci_remote_features_query(hci_con_handle_t con_handle); 1517 1518 /** 1519 * Check if extended SCO Link is supported 1520 */ 1521 bool hci_extended_sco_link_supported(void); 1522 1523 /** 1524 * Check if SSP is supported on both sides. Called by L2CAP 1525 */ 1526 bool gap_ssp_supported_on_both_sides(hci_con_handle_t handle); 1527 1528 /** 1529 * Disconn because of security block. Called by L2CAP 1530 */ 1531 void hci_disconnect_security_block(hci_con_handle_t con_handle); 1532 1533 /** 1534 * Query if remote side supports eSCO 1535 */ 1536 bool hci_remote_esco_supported(hci_con_handle_t con_handle); 1537 1538 /** 1539 * Emit current HCI state. Called by daemon 1540 */ 1541 void hci_emit_state(void); 1542 1543 /** 1544 * Send complete CMD packet. Called by daemon and hci_send_cmd_va_arg 1545 * @return status 1546 */ 1547 uint8_t hci_send_cmd_packet(uint8_t *packet, int size); 1548 1549 /** 1550 * Disconnect all HCI connections. Called by daemon 1551 */ 1552 void hci_disconnect_all(void); 1553 1554 /** 1555 * Get number of free acl slots for packets of given handle. Called by daemon 1556 */ 1557 int hci_number_free_acl_slots_for_handle(hci_con_handle_t con_handle); 1558 1559 /** 1560 * @brief Set Advertisement Parameters 1561 * @param adv_int_min 1562 * @param adv_int_max 1563 * @param adv_type 1564 * @param direct_address_type 1565 * @param direct_address 1566 * @param channel_map 1567 * @param filter_policy 1568 * 1569 * @note internal use. use gap_advertisements_set_params from gap.h instead. 1570 */ 1571 void hci_le_advertisements_set_params(uint16_t adv_int_min, uint16_t adv_int_max, uint8_t adv_type, 1572 uint8_t direct_address_typ, bd_addr_t direct_address, uint8_t channel_map, uint8_t filter_policy); 1573 1574 /** 1575 * 1576 * @note internal use. use gap_random_address_set_mode from gap.h instead. 1577 */ 1578 void hci_le_set_own_address_type(uint8_t own_address_type); 1579 1580 /** 1581 * @naote internal use. use gap_random_address_set from gap.h instead 1582 */ 1583 void hci_le_random_address_set(const bd_addr_t random_address); 1584 1585 /** 1586 * @note internal use by sm 1587 */ 1588 void hci_load_le_device_db_entry_into_resolving_list(uint16_t le_device_db_index); 1589 1590 /** 1591 * @note internal use by sm 1592 */ 1593 void hci_remove_le_device_db_entry_from_resolving_list(uint16_t le_device_db_index); 1594 1595 /** 1596 * @note internal use 1597 */ 1598 uint16_t hci_number_free_acl_slots_for_connection_type(bd_addr_type_t address_type); 1599 1600 /** 1601 * @brief Clear Periodic Advertiser List 1602 * @return status 1603 */ 1604 uint8_t gap_periodic_advertiser_list_clear(void); 1605 1606 /** 1607 * @brief Add entry to Periodic Advertiser List 1608 * @param address_type 1609 * @param address 1610 * @param advertising_sid 1611 * @return 1612 */ 1613 uint8_t gap_periodic_advertiser_list_add(bd_addr_type_t address_type, const bd_addr_t address, uint8_t advertising_sid); 1614 1615 /** 1616 * Remove entry from Periodic Advertising List 1617 * @param address_type 1618 * @param address 1619 * @param advertising_sid 1620 * @return 1621 */ 1622 uint8_t gap_periodic_advertiser_list_remove(bd_addr_type_t address_type, const bd_addr_t address, uint8_t advertising_sid); 1623 1624 /** 1625 * @brief Synchronize with a periodic advertising train from an advertiser and begin receiving periodic advertising packets. 1626 * @param options 1627 * @param advertising_sid 1628 * @param advertiser_address_type 1629 * @param advertiser_address 1630 * @param skip 1631 * @param sync_timeout 1632 * @param sync_cte_type 1633 * @return 1634 */ 1635 uint8_t gap_periodic_advertising_create_sync(uint8_t options, uint8_t advertising_sid, bd_addr_type_t advertiser_address_type, 1636 bd_addr_t advertiser_address, uint16_t skip, uint16_t sync_timeout, uint8_t sync_cte_type); 1637 1638 /** 1639 * @brief Cancel sync periodic advertising train while it is pending. 1640 * @return status 1641 */ 1642 uint8_t gap_periodic_advertising_create_sync_cancel(void); 1643 1644 /** 1645 * @biref Stop reception of the periodic advertising train 1646 * @param sync_handle 1647 * @return status 1648 */ 1649 uint8_t gap_periodic_advertising_terminate_sync(uint16_t sync_handle); 1650 1651 /** 1652 * @brief Get Manufactured 1653 * @return manufacturer id 1654 */ 1655 uint16_t hci_get_manufacturer(void); 1656 1657 // Only for PTS testing 1658 1659 /** 1660 * Disable automatic L2CAP disconnect if no L2CAP connection is established 1661 */ 1662 void hci_disable_l2cap_timeout_check(void); 1663 1664 /** 1665 * Get Classic Allow Role Switch param 1666 */ 1667 uint8_t hci_get_allow_role_switch(void); 1668 1669 /** 1670 * Get state 1671 */ 1672 HCI_STATE hci_get_state(void); 1673 1674 /** 1675 * @brief De-Init HCI 1676 */ 1677 void hci_deinit(void); 1678 1679 // setup test connections, used for fuzzing 1680 void hci_setup_test_connections_fuzz(void); 1681 1682 // free all connections, used for fuzzing 1683 void hci_free_connections_fuzz(void); 1684 1685 // simulate stack bootup 1686 void hci_simulate_working_fuzz(void); 1687 1688 1689 #if defined __cplusplus 1690 } 1691 #endif 1692 1693 #endif // HCI_H 1694