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 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__ "hci_transport_h2_winusb.c" 39 40 /* 41 * hci_transport_usb.c 42 * 43 * HCI Transport API implementation for USB 44 * 45 * Created by Matthias Ringwald on 7/5/09. 46 */ 47 48 // Interface Number - Alternate Setting - suggested Endpoint Address - Endpoint Type - Suggested Max Packet Size 49 // HCI Commands 0 0 0x00 Control 8/16/32/64 50 // HCI Events 0 0 0x81 Interrupt (IN) 16 51 // ACL Data 0 0 0x82 Bulk (IN) 32/64 52 // ACL Data 0 0 0x02 Bulk (OUT) 32/64 53 // SCO Data 0 0 0x83 Isochronous (IN) 54 // SCO Data 0 0 0x03 Isochronous (Out) 55 56 #include <stdio.h> 57 #include <strings.h> 58 #include <string.h> 59 #include <unistd.h> /* UNIX standard function definitions */ 60 #include <sys/types.h> 61 #include <inttypes.h> // to print long long int (aka 64 bit ints) 62 63 #include "btstack_config.h" 64 65 #include "btstack_debug.h" 66 #include "hci.h" 67 #include "hci_transport.h" 68 69 #include <Windows.h> 70 #include <SetupAPI.h> 71 #include <Winusb.h> 72 73 #ifdef ENABLE_SCO_OVER_HCI 74 75 // Isochronous Add-On 76 77 // Function signatures frome https://abi-laboratory.pro/compatibility/Windows_7.0_to_Windows_8.1/x86_64/info/winusb.dll/symbols.html 78 // MSDN documentation has multiple errors (Jan 2017), annotated below 79 80 // As Isochochronous functions are provided by newer versions of ming64, we use a BTstack/BTSTACK prefix to prevent name collisions 81 82 typedef PVOID BTSTACK_WINUSB_ISOCH_BUFFER_HANDLE, *BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE; 83 84 typedef struct _BTSTACK_WINUSB_PIPE_INFORMATION_EX { 85 USBD_PIPE_TYPE PipeType; 86 UCHAR PipeId; 87 USHORT MaximumPacketSize; 88 UCHAR Interval; 89 ULONG MaximumBytesPerInterval; 90 } BTSTACK_WINUSB_PIPE_INFORMATION_EX, *BTSTACK_PWINUSB_PIPE_INFORMATION_EX; 91 92 typedef WINBOOL (WINAPI * BTstack_WinUsb_QueryPipeEx_t) ( 93 WINUSB_INTERFACE_HANDLE InterfaceHandle, 94 UCHAR AlternateInterfaceNumber, 95 UCHAR PipeIndex, 96 BTSTACK_PWINUSB_PIPE_INFORMATION_EX PipeInformationEx 97 ); 98 typedef WINBOOL (WINAPI * BTstack_WinUsb_RegisterIsochBuffer_t)( 99 WINUSB_INTERFACE_HANDLE InterfaceHandle, 100 UCHAR PipeID, 101 PVOID Buffer, 102 ULONG BufferLength, 103 BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE BufferHandle 104 ); 105 typedef WINBOOL (WINAPI * BTstack_WinUsb_ReadIsochPipe_t)( 106 BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE BufferHandle, 107 ULONG Offset, 108 ULONG Length, 109 PULONG FrameNumber, 110 ULONG NumberOfPackets, // MSDN lists PULONG 111 PUSBD_ISO_PACKET_DESCRIPTOR IsoPacketDescriptors, // MSDN lists PULONG 112 LPOVERLAPPED Overlapped 113 ); 114 typedef WINBOOL (WINAPI * BTstack_WinUsb_ReadIsochPipeAsap_t)( 115 BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE BufferHandle, 116 ULONG Offset, 117 ULONG Length, 118 BOOL ContinueStream, 119 ULONG NumberOfPackets, // MSDN lists PULONG 120 PUSBD_ISO_PACKET_DESCRIPTOR IsoPacketDescriptors, 121 LPOVERLAPPED Overlapped 122 ); 123 typedef WINBOOL (WINAPI * BTstack_WinUsb_WriteIsochPipe_t)( 124 BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE BufferHandle, 125 ULONG Offset, 126 ULONG Length, 127 PULONG FrameNumber, 128 LPOVERLAPPED Overlapped 129 ); 130 typedef WINBOOL (WINAPI * BTstack_WinUsb_WriteIsochPipeAsap_t)( 131 BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE BufferHandle, 132 ULONG Offset, 133 ULONG Length, 134 BOOL ContinueStream, 135 LPOVERLAPPED Overlapped 136 ); 137 typedef WINBOOL (WINAPI * BTstack_WinUsb_UnregisterIsochBuffer_t)( 138 BTSTACK_PWINUSB_ISOCH_BUFFER_HANDLE BufferHandle 139 ); 140 typedef WINBOOL (WINAPI * BTstack_WinUsb_GetCurrentFrameNumber_t)( 141 WINUSB_INTERFACE_HANDLE InterfaceHandle, // MSDN lists 'Device handle returned from CreateFile' 142 PULONG CurrentFrameNumber, 143 LARGE_INTEGER *TimeStamp 144 ); 145 146 static BTstack_WinUsb_QueryPipeEx_t BTstack_WinUsb_QueryPipeEx; 147 static BTstack_WinUsb_RegisterIsochBuffer_t BTstack_WinUsb_RegisterIsochBuffer; 148 static BTstack_WinUsb_ReadIsochPipe_t BTstack_WinUsb_ReadIsochPipe; 149 static BTstack_WinUsb_ReadIsochPipeAsap_t BTstack_WinUsb_ReadIsochPipeAsap; 150 static BTstack_WinUsb_WriteIsochPipe_t BTstack_WinUsb_WriteIsochPipe; 151 static BTstack_WinUsb_WriteIsochPipeAsap_t BTstack_WinUsb_WriteIsochPipeAsap; 152 static BTstack_WinUsb_UnregisterIsochBuffer_t BTstack_WinUsb_UnregisterIsochBuffer; 153 static BTstack_WinUsb_GetCurrentFrameNumber_t BTstack_WinUsb_GetCurrentFrameNumber; 154 #endif 155 156 // Doesn't work as expected 157 // #define SCHEDULE_SCO_IN_TRANSFERS_MANUALLY 158 159 // Not tested yet 160 // #define SCHEDULE_SCO_OUT_TRANSFERS_MANUALLY 161 162 // 163 // Bluetooth USB Transport Alternate Settings: 164 // 165 // 0: No active voice channels (for USB compliance) 166 // 1: One 8 kHz voice channel with 8-bit encoding 167 // 2: Two 8 kHz voice channels with 8-bit encoding or one 8 kHz voice channel with 16-bit encoding 168 // 3: Three 8 kHz voice channels with 8-bit encoding 169 // 4: Two 8 kHz voice channels with 16-bit encoding or one 16 kHz voice channel with 16-bit encoding 170 // 5: Three 8 kHz voice channels with 16-bit encoding or one 8 kHz voice channel with 16-bit encoding and one 16 kHz voice channel with 16-bit encoding 171 // --> support only a single SCO connection 172 #define ALT_SETTING (1) 173 174 // alt setting for 1-3 connections and 8/16 bit 175 const int alt_setting_8_bit[] = {1,2,3}; 176 const int alt_setting_16_bit[] = {2,4,5}; 177 178 // for ALT_SETTING >= 1 and 8-bit channel, we need the following isochronous packets 179 // One complete SCO packet with 24 frames every 3 frames (== 3 ms) 180 #define NUM_ISO_PACKETS (3) 181 182 const uint16_t iso_packet_size_for_alt_setting[] = { 183 0, 184 9, 185 17, 186 25, 187 33, 188 49, 189 63, 190 }; 191 192 // 49 bytes is the max usb packet size for alternate setting 5 (Three 8 kHz 16-bit channels or one 8 kHz 16-bit channel and one 16 kHz 16-bit channel) 193 // note: alt setting 6 has max packet size of 63 every 7.5 ms = 472.5 bytes / HCI packet, while max SCO packet has 255 byte payload 194 #define SCO_PACKET_SIZE (49 * NUM_ISO_PACKETS) 195 196 #define ISOC_BUFFERS 8 197 198 // Outgoing SCO packet queue 199 // simplified ring buffer implementation 200 #define SCO_RING_BUFFER_COUNT (20) 201 #define SCO_RING_BUFFER_SIZE (SCO_RING_BUFFER_COUNT * SCO_PACKET_SIZE) 202 203 /** Request type bits of the "bmRequestType" field in control transfers. */ 204 enum usb_request_type { 205 USB_REQUEST_TYPE_STANDARD = (0x00 << 5), 206 USB_REQUEST_TYPE_CLASS = (0x01 << 5), 207 USB_REQUEST_TYPE_VENDOR = (0x02 << 5), 208 }; 209 210 /** Recipient bits of the "bmRequestType" field in control transfers. Values 4 through 31 are reserved. */ 211 enum usb_request_recipient { 212 USB_RECIPIENT_DEVICE = 0x00, 213 USB_RECIPIENT_INTERFACE = 0x01, 214 USB_RECIPIENT_ENDPOINT = 0x02, 215 USB_RECIPIENT_OTHER = 0x03, 216 }; 217 218 // This is the GUID for the USB device class 219 static GUID GUID_DEVINTERFACE_USB_DEVICE = 220 { 0xA5DCBF10L, 0x6530, 0x11D2, { 0x90, 0x1F, 0x00, 0xC0, 0x4F, 0xB9, 0x51, 0xED } }; 221 222 static void usb_dummy_handler(uint8_t packet_type, uint8_t *packet, uint16_t size); 223 224 static void (*packet_handler)(uint8_t packet_type, uint8_t *packet, uint16_t size) = &usb_dummy_handler; 225 226 // endpoint addresses 227 static int event_in_addr; 228 static int acl_in_addr; 229 static int acl_out_addr; 230 static int sco_in_addr; 231 static int sco_out_addr; 232 233 // 234 static HANDLE usb_device_handle; 235 static WINUSB_INTERFACE_HANDLE usb_interface_0_handle; 236 static WINUSB_INTERFACE_HANDLE usb_interface_1_handle; 237 static OVERLAPPED usb_overlapped_event_in; 238 static OVERLAPPED usb_overlapped_command_out; 239 static OVERLAPPED usb_overlapped_acl_in; 240 static OVERLAPPED usb_overlapped_acl_out; 241 static btstack_data_source_t usb_data_source_event_in; 242 static btstack_data_source_t usb_data_source_command_out; 243 static btstack_data_source_t usb_data_source_acl_in; 244 static btstack_data_source_t usb_data_source_acl_out; 245 246 // 247 static int usb_command_out_active; 248 static int usb_acl_out_active; 249 250 // buffer for HCI Events and ACL Packets 251 static uint8_t hci_event_in_buffer[2 + 255]; 252 static uint8_t hci_acl_in_buffer[HCI_INCOMING_PRE_BUFFER_SIZE + HCI_ACL_BUFFER_SIZE]; 253 254 255 #ifdef ENABLE_SCO_OVER_HCI 256 257 typedef enum { 258 H2_W4_SCO_HEADER = 1, 259 H2_W4_PAYLOAD, 260 } H2_SCO_STATE; 261 262 // SCO Incoming Windows 263 static uint8_t hci_sco_in_buffer[ISOC_BUFFERS * SCO_PACKET_SIZE]; 264 static BTSTACK_WINUSB_ISOCH_BUFFER_HANDLE hci_sco_in_buffer_handle; 265 static USBD_ISO_PACKET_DESCRIPTOR hci_sco_packet_descriptors[ISOC_BUFFERS * NUM_ISO_PACKETS]; 266 static OVERLAPPED usb_overlapped_sco_in[ISOC_BUFFERS]; 267 static int usb_sco_in_expected_transfer; 268 269 // SCO Incoming Run Loop 270 static btstack_data_source_t usb_data_source_sco_in[ISOC_BUFFERS]; 271 272 // SCO Incoming HCI 273 static H2_SCO_STATE sco_state; 274 static uint8_t sco_buffer[SCO_PACKET_SIZE]; 275 static uint16_t sco_read_pos; 276 static uint16_t sco_bytes_to_read; 277 278 // SCO Outgoing Windows 279 static BTSTACK_WINUSB_ISOCH_BUFFER_HANDLE hci_sco_out_buffer_handle; 280 static OVERLAPPED usb_overlapped_sco_out[SCO_RING_BUFFER_COUNT]; 281 static int sco_ring_transfers_active; 282 static int usb_sco_out_expected_transfer; 283 284 #ifdef SCHEDULE_SCO_IN_TRANSFERS_MANUALLY 285 // next tranfer 286 static ULONG sco_next_transfer_at_frame; 287 #endif 288 289 // SCO Outgoing Run Loop 290 static btstack_data_source_t usb_data_source_sco_out[SCO_RING_BUFFER_COUNT]; 291 292 // SCO Outgoing HCI 293 static uint8_t sco_ring_buffer[SCO_RING_BUFFER_SIZE]; 294 static int sco_ring_write; // packet idx 295 296 // SCO Reconfiguration - pause/resume 297 static uint16_t sco_voice_setting; 298 static int sco_num_connections; 299 static int sco_shutdown; 300 301 static uint16_t iso_packet_size; 302 #endif 303 304 // list of known devices, using VendorID/ProductID tuples 305 static const uint16_t known_bluetooth_devices[] = { 306 // DeLOCK Bluetooth 4.0 307 0x0a5c, 0x21e8, 308 // Asus BT400 309 0x0b05, 0x17cb, 310 // BCM20702B0 (Generic USB Detuned Class 1 @ 20 MHz) 311 0x0a5c, 0x22be, 312 }; 313 314 static int num_known_devices = sizeof(known_bluetooth_devices) / sizeof(uint16_t) / 2; 315 316 static int usb_is_known_bluetooth_device(const char * device_path){ 317 int i; 318 for (i=0; i<num_known_devices; i++){ 319 // construct pid/vid substring 320 char substring[20]; 321 sprintf(substring, "vid_%04x&pid_%04x", known_bluetooth_devices[i*2], known_bluetooth_devices[i*2+1]); 322 const char * pos = strstr(device_path, substring); 323 log_info("check %s in %s -> %p", substring, device_path, pos); 324 if (pos){ 325 return 1; 326 } 327 } 328 return 0; 329 } 330 331 static int usb_is_vmware_bluetooth_adapter(const char * device_path){ 332 // VMware Vendor ID 0e0f 333 const char * pos = strstr(device_path, "\\usb#vid_0e0f&pid"); 334 return pos ? 1 : 0; 335 } 336 337 #ifdef ENABLE_SCO_OVER_HCI 338 static void sco_ring_init(void){ 339 sco_ring_write = 0; 340 sco_ring_transfers_active = 0; 341 } 342 static int sco_ring_have_space(void){ 343 return sco_ring_transfers_active < SCO_RING_BUFFER_COUNT; 344 } 345 static void usb_sco_register_buffers(void){ 346 BOOL result; 347 result = BTstack_WinUsb_RegisterIsochBuffer(usb_interface_1_handle, sco_in_addr, hci_sco_in_buffer, sizeof(hci_sco_in_buffer), &hci_sco_in_buffer_handle); 348 if (!result) { 349 log_error("usb_sco_register_buffers: register in buffer failed, error %lu", GetLastError()); 350 } 351 log_info("hci_sco_in_buffer_handle %p", hci_sco_in_buffer_handle); 352 353 result = BTstack_WinUsb_RegisterIsochBuffer(usb_interface_1_handle, sco_out_addr, sco_ring_buffer, sizeof(sco_ring_buffer), &hci_sco_out_buffer_handle); 354 if (!result) { 355 log_error("usb_sco_unregister_buffers: register out buffer failed, error %lu", GetLastError()); 356 } 357 log_info("hci_sco_out_buffer_handle %p", hci_sco_out_buffer_handle); 358 } 359 static void usb_sco_unregister_buffers(void){ 360 if (hci_sco_in_buffer_handle){ 361 BTstack_WinUsb_UnregisterIsochBuffer(hci_sco_in_buffer_handle); 362 hci_sco_in_buffer_handle = NULL; 363 } 364 if (hci_sco_out_buffer_handle){ 365 BTstack_WinUsb_UnregisterIsochBuffer(hci_sco_out_buffer_handle); 366 hci_sco_out_buffer_handle = NULL; 367 } 368 } 369 #endif 370 371 static void usb_register_packet_handler(void (*handler)(uint8_t packet_type, uint8_t *packet, uint16_t size)){ 372 log_info("registering packet handler"); 373 packet_handler = handler; 374 } 375 376 static void usb_dummy_handler(uint8_t packet_type, uint8_t *packet, uint16_t size){ 377 } 378 379 static void usb_init(const void *transport_config){ 380 } 381 382 static void usb_free_resources(void){ 383 if (usb_interface_1_handle){ 384 WinUsb_Free(usb_interface_1_handle); 385 usb_interface_1_handle = NULL; 386 } 387 388 if (usb_interface_0_handle){ 389 WinUsb_Free(usb_interface_0_handle); 390 usb_interface_0_handle = NULL; 391 } 392 393 if (usb_device_handle) { 394 CloseHandle(usb_device_handle); 395 usb_device_handle = NULL; 396 } 397 398 #ifdef ENABLE_SCO_OVER_HCI 399 usb_sco_unregister_buffers(); 400 #endif 401 } 402 403 static void usb_submit_event_in_transfer(void){ 404 // submit transfer 405 BOOL result = WinUsb_ReadPipe(usb_interface_0_handle, event_in_addr, hci_event_in_buffer, sizeof(hci_event_in_buffer), NULL, &usb_overlapped_event_in); 406 if (!result) { 407 if (GetLastError() != ERROR_IO_PENDING) goto exit_on_error; 408 } 409 410 // IO_PENDING -> wait for completed 411 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_event_in, DATA_SOURCE_CALLBACK_READ); 412 return; 413 414 exit_on_error: 415 log_error("usb_submit_event_in_transfer: winusb last error %lu", GetLastError()); 416 } 417 418 static void usb_submit_acl_in_transfer(void){ 419 // submit transfer 420 BOOL result = WinUsb_ReadPipe(usb_interface_0_handle, acl_in_addr, hci_acl_in_buffer, sizeof(hci_acl_in_buffer), NULL, &usb_overlapped_acl_in); 421 if (!result) { 422 if (GetLastError() != ERROR_IO_PENDING) goto exit_on_error; 423 } 424 425 // IO_PENDING -> wait for completed 426 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_acl_in, DATA_SOURCE_CALLBACK_READ); 427 return; 428 429 exit_on_error: 430 log_error("usb_submit_acl_in_transfer: winusb last error %lu", GetLastError()); 431 } 432 433 #ifdef ENABLE_SCO_OVER_HCI 434 #ifdef SCHEDULE_SCO_IN_TRANSFERS_MANUALLY 435 436 // frame number gets updated 437 static void usb_submit_sco_in_transfer_at_frame(int i, ULONG * frame_number){ 438 439 if (sco_shutdown){ 440 log_info("USB SCO Shutdown:: usb_submit_sco_in_transfer_at_frame called"); 441 return; 442 } 443 444 LARGE_INTEGER timestamp; 445 ULONG current_frame_number; 446 WinUsb_GetCurrentFrameNumber(usb_interface_0_handle, ¤t_frame_number, ×tamp); 447 448 ULONG frame_before = *frame_number; 449 450 BOOL result = BTstack_WinUsb_ReadIsochPipe(hci_sco_in_buffer_handle, i * SCO_PACKET_SIZE, iso_packet_size * NUM_ISO_PACKETS, 451 frame_number, NUM_ISO_PACKETS, &hci_sco_packet_descriptors[i * NUM_ISO_PACKETS], &usb_overlapped_sco_in[i]); 452 453 // log_info("BTstack_WinUsb_ReadIsochPipe #%02u: current %lu, planned %lu - buffer %lu", i, current_frame_number, frame_before, frame_before - current_frame_number); 454 455 if (!result) { 456 if (GetLastError() == ERROR_IO_PENDING) { 457 } else { 458 goto exit_on_error; 459 } 460 } 461 462 return; 463 464 exit_on_error: 465 log_error("usb_submit_sco_in_transfer: winusb last error %lu", GetLastError()); 466 } 467 468 #else 469 470 static void usb_submit_sco_in_transfer_asap(int i, int continue_stream){ 471 472 if (sco_shutdown){ 473 log_info("USB SCO Shutdown:: usb_submit_sco_in_transfer_at_frame called"); 474 return; 475 } 476 477 LARGE_INTEGER timestamp; 478 ULONG current_frame_number; 479 BTstack_WinUsb_GetCurrentFrameNumber(usb_interface_0_handle, ¤t_frame_number, ×tamp); 480 481 // log_info("usb_submit_sco_in_transfer[%02u]: current frame %lu", i, current_frame_number); 482 483 BOOL result = BTstack_WinUsb_ReadIsochPipeAsap(hci_sco_in_buffer_handle, i * SCO_PACKET_SIZE, iso_packet_size * NUM_ISO_PACKETS, 484 continue_stream, NUM_ISO_PACKETS, &hci_sco_packet_descriptors[i * NUM_ISO_PACKETS], &usb_overlapped_sco_in[i]); 485 486 if (!result) { 487 if (GetLastError() != ERROR_IO_PENDING) goto exit_on_error; 488 } 489 490 return; 491 492 exit_on_error: 493 log_error("usb_submit_sco_in_transfer: winusb last error %lu", GetLastError()); 494 } 495 #endif 496 #endif 497 498 static void usb_process_event_in(btstack_data_source_t *ds, btstack_data_source_callback_type_t callback_type) { 499 500 btstack_run_loop_disable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_READ); 501 502 DWORD bytes_read; 503 BOOL ok = WinUsb_GetOverlappedResult(usb_interface_0_handle, &usb_overlapped_event_in, &bytes_read, FALSE); 504 if(!ok){ 505 DWORD err = GetLastError(); 506 if (err == ERROR_IO_INCOMPLETE){ 507 // IO_INCOMPLETE -> wait for completed 508 btstack_run_loop_enable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_READ); 509 } else { 510 log_error("usb_process_event_in: error reading"); 511 } 512 return; 513 } 514 515 // notify uppper 516 packet_handler(HCI_EVENT_PACKET, hci_event_in_buffer, bytes_read); 517 518 // re-submit transfer 519 usb_submit_event_in_transfer(); 520 } 521 522 static void usb_process_acl_in(btstack_data_source_t *ds, btstack_data_source_callback_type_t callback_type) { 523 524 btstack_run_loop_disable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_READ); 525 526 DWORD bytes_read; 527 BOOL ok = WinUsb_GetOverlappedResult(usb_interface_0_handle, &usb_overlapped_acl_in, &bytes_read, FALSE); 528 if(!ok){ 529 DWORD err = GetLastError(); 530 if (err == ERROR_IO_INCOMPLETE){ 531 // IO_INCOMPLETE -> wait for completed 532 btstack_run_loop_enable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_READ); 533 } else { 534 log_error("usb_process_acl_in: error writing"); 535 } 536 return; 537 } 538 539 // notify uppper 540 packet_handler(HCI_ACL_DATA_PACKET, hci_acl_in_buffer, bytes_read); 541 542 // re-submit transfer 543 usb_submit_acl_in_transfer(); 544 } 545 546 #ifdef ENABLE_SCO_OVER_HCI 547 static void sco_state_machine_init(void){ 548 sco_state = H2_W4_SCO_HEADER; 549 sco_read_pos = 0; 550 sco_bytes_to_read = 3; 551 } 552 553 static void sco_handle_data(uint8_t * buffer, uint16_t size){ 554 // printf("sco_handle_data: state %u, pos %u, to read %u, size %u", sco_state, sco_read_pos, sco_bytes_to_read, size); 555 while (size){ 556 if (size < sco_bytes_to_read){ 557 // just store incomplete data 558 memcpy(&sco_buffer[sco_read_pos], buffer, size); 559 sco_read_pos += size; 560 sco_bytes_to_read -= size; 561 return; 562 } 563 // copy requested data 564 memcpy(&sco_buffer[sco_read_pos], buffer, sco_bytes_to_read); 565 sco_read_pos += sco_bytes_to_read; 566 buffer += sco_bytes_to_read; 567 size -= sco_bytes_to_read; 568 569 // chunk read successfully, next action 570 switch (sco_state){ 571 case H2_W4_SCO_HEADER: 572 sco_state = H2_W4_PAYLOAD; 573 sco_bytes_to_read = sco_buffer[2]; 574 if (sco_bytes_to_read > (sizeof(sco_buffer)-3)){ 575 log_error("sco_handle_data: sco packet len > packet size"); 576 sco_state_machine_init(); 577 } 578 break; 579 case H2_W4_PAYLOAD: 580 // packet complete 581 packet_handler(HCI_SCO_DATA_PACKET, sco_buffer, sco_read_pos); 582 sco_state_machine_init(); 583 break; 584 } 585 } 586 } 587 588 static void usb_process_sco_out(btstack_data_source_t *ds, btstack_data_source_callback_type_t callback_type){ 589 590 btstack_run_loop_disable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_WRITE); 591 592 if (sco_shutdown){ 593 log_info("USB SCO Shutdown:: usb_process_sco_out called"); 594 return; 595 } 596 597 // get current frame number 598 ULONG current_frame_number; 599 LARGE_INTEGER timestamp; 600 BTstack_WinUsb_GetCurrentFrameNumber(usb_interface_0_handle, ¤t_frame_number, ×tamp); 601 602 // find index 603 int transfer_index; 604 for (transfer_index=0;transfer_index<SCO_RING_BUFFER_COUNT;transfer_index++){ 605 if (ds == &usb_data_source_sco_out[transfer_index]) break; 606 } 607 608 // log_info("usb_process_sco_out[%02u] -- current frame %lu", transfer_index, current_frame_number); 609 610 DWORD bytes_transferred; 611 BOOL ok = WinUsb_GetOverlappedResult(usb_interface_0_handle, &usb_overlapped_sco_out[transfer_index], &bytes_transferred, FALSE); 612 // log_info("usb_process_sco_out_done: #%u result %u, bytes %u, state %u", transfer_index, ok, (int) bytes_transferred, sco_state); 613 if(!ok){ 614 DWORD err = GetLastError(); 615 if (err == ERROR_IO_INCOMPLETE){ 616 // IO_INCOMPLETE -> wait for completed 617 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_sco_out[transfer_index], DATA_SOURCE_CALLBACK_WRITE); 618 return; 619 } 620 log_error("usb_process_sco_out_done[%02u]: error writing %u, Internal %x", transfer_index, (int) err, (int) usb_overlapped_sco_out[transfer_index].Internal); 621 } 622 623 // decrease tab 624 sco_ring_transfers_active--; 625 626 // enable next data source callback 627 if (sco_ring_transfers_active){ 628 // update expected and wait for completion 629 usb_sco_out_expected_transfer = (transfer_index+ 1) % SCO_RING_BUFFER_COUNT; 630 // log_info("usb_process_sco_out_done[%02u]: wait for transfer %02u", transfer_index, usb_sco_out_expected_transfer); 631 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_sco_out[usb_sco_out_expected_transfer], DATA_SOURCE_CALLBACK_WRITE); 632 } 633 634 // log_info("usb_process_sco_out_done: transfers active %u", sco_ring_transfers_active); 635 636 // mark free 637 if (sco_ring_have_space()) { 638 uint8_t event[] = { HCI_EVENT_SCO_CAN_SEND_NOW, 0}; 639 packet_handler(HCI_EVENT_PACKET, &event[0], sizeof(event)); 640 } 641 } 642 643 static void usb_process_sco_in(btstack_data_source_t *ds, btstack_data_source_callback_type_t callback_type){ 644 645 btstack_run_loop_disable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_READ); 646 647 if (sco_shutdown){ 648 log_info("USB SCO Shutdown: usb_process_sco_out called"); 649 return; 650 } 651 652 // find index 653 int i; 654 for (i=0;i<ISOC_BUFFERS;i++){ 655 if (ds == &usb_data_source_sco_in[i]) break; 656 } 657 int transfer_index = i; 658 659 // ULONG current_frame_number; 660 // LARGE_INTEGER timestamp; 661 // BTstack_WinUsb_GetCurrentFrameNumber(usb_interface_0_handle, ¤t_frame_number, ×tamp); 662 663 // log_info("usb_process_sco_in[%02u] -- current frame %lu", transfer_index, current_frame_number); 664 665 DWORD bytes_transferred; 666 BOOL ok = WinUsb_GetOverlappedResult(usb_interface_0_handle, &usb_overlapped_sco_in[transfer_index], &bytes_transferred, FALSE); 667 668 if(!ok) { 669 DWORD err = GetLastError(); 670 if (err == ERROR_IO_INCOMPLETE) { 671 // IO_INCOMPLETE -> wait for completed 672 btstack_run_loop_enable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_READ); 673 return; 674 } 675 log_error("usb_process_sco_in[%02u]: error reading %u, Internal %x", transfer_index, (int) err, (int) usb_overlapped_sco_out[i].Internal); 676 } 677 678 if (ok){ 679 for (i=0;i<NUM_ISO_PACKETS;i++){ 680 USBD_ISO_PACKET_DESCRIPTOR * packet_descriptor = &hci_sco_packet_descriptors[transfer_index * NUM_ISO_PACKETS + i]; 681 if (packet_descriptor->Length){ 682 uint8_t * iso_data = &hci_sco_in_buffer[transfer_index * SCO_PACKET_SIZE + packet_descriptor->Offset]; 683 uint16_t iso_len = packet_descriptor->Length; 684 sco_handle_data(iso_data, iso_len); 685 } 686 } 687 } 688 689 #ifdef SCHEDULE_SCO_IN_TRANSFERS_MANUALLY 690 usb_submit_sco_in_transfer_at_frame(i, &sco_next_transfer_at_frame); 691 #else 692 usb_submit_sco_in_transfer_asap(transfer_index, 1); 693 #endif 694 // update expected and wait for completion 695 usb_sco_in_expected_transfer = (transfer_index+ 1) % ISOC_BUFFERS; 696 697 // log_info("usb_process_sco_in[%02u]: enable data source %02u", transfer_index, usb_sco_in_expected_transfer); 698 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_sco_in[usb_sco_in_expected_transfer], DATA_SOURCE_CALLBACK_READ); 699 } 700 #endif 701 702 static void usb_process_command_out(btstack_data_source_t *ds, btstack_data_source_callback_type_t callback_type){ 703 704 btstack_run_loop_disable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_WRITE); 705 706 // update stata before submitting transfer 707 usb_command_out_active = 0; 708 709 // notify upper stack that provided buffer can be used again 710 uint8_t event[] = { HCI_EVENT_TRANSPORT_PACKET_SENT, 0}; 711 packet_handler(HCI_EVENT_PACKET, &event[0], sizeof(event)); 712 } 713 714 static void usb_process_acl_out(btstack_data_source_t *ds, btstack_data_source_callback_type_t callback_type){ 715 716 btstack_run_loop_disable_data_source_callbacks(ds, DATA_SOURCE_CALLBACK_WRITE); 717 718 // update stata before submitting transfer 719 usb_acl_out_active = 0; 720 721 // notify upper stack that provided buffer can be used again 722 uint8_t event[] = { HCI_EVENT_TRANSPORT_PACKET_SENT, 0}; 723 packet_handler(HCI_EVENT_PACKET, &event[0], sizeof(event)); 724 } 725 726 static BOOL usb_scan_for_bluetooth_endpoints(void) { 727 int i; 728 USB_INTERFACE_DESCRIPTOR usb_interface_descriptor; 729 730 // reset 731 event_in_addr = 0; 732 acl_in_addr = 0; 733 acl_out_addr = 0; 734 735 log_info("Scanning USB Entpoints:"); 736 737 // look for Event and ACL pipes on Interface #0 738 BOOL result = WinUsb_QueryInterfaceSettings(usb_interface_0_handle, 0, &usb_interface_descriptor); 739 if (!result) goto exit_on_error; 740 for (i=0;i<usb_interface_descriptor.bNumEndpoints;i++){ 741 WINUSB_PIPE_INFORMATION pipe; 742 result = WinUsb_QueryPipe( 743 usb_interface_0_handle, 744 0, 745 (UCHAR) i, 746 &pipe); 747 if (!result) goto exit_on_error; 748 log_info("Interface #0, Alt #0, Pipe idx #%u: type %u, id 0x%02x, max packet size %u,", 749 i, pipe.PipeType, pipe.PipeId, pipe.MaximumPacketSize); 750 switch (pipe.PipeType){ 751 case USB_ENDPOINT_TYPE_INTERRUPT: 752 if (event_in_addr) continue; 753 event_in_addr = pipe.PipeId; 754 log_info("-> using 0x%2.2X for HCI Events", event_in_addr); 755 break; 756 case USB_ENDPOINT_TYPE_BULK: 757 if (pipe.PipeId & 0x80) { 758 if (acl_in_addr) continue; 759 acl_in_addr = pipe.PipeId; 760 log_info("-> using 0x%2.2X for ACL Data In", acl_in_addr); 761 } else { 762 if (acl_out_addr) continue; 763 acl_out_addr = pipe.PipeId; 764 log_info("-> using 0x%2.2X for ACL Data Out", acl_out_addr); 765 } 766 break; 767 default: 768 break; 769 } 770 } 771 772 #ifdef ENABLE_SCO_OVER_HCI 773 sco_out_addr = 0; 774 sco_in_addr = 0; 775 776 // look for SCO pipes on Interface #1, Alt Setting 1 777 int alt_setting = 1; 778 result = WinUsb_QueryInterfaceSettings(usb_interface_1_handle, alt_setting, &usb_interface_descriptor); 779 if (!result) goto exit_on_error; 780 for (i=0;i<usb_interface_descriptor.bNumEndpoints;i++){ 781 BTSTACK_WINUSB_PIPE_INFORMATION_EX pipe; 782 result = BTstack_WinUsb_QueryPipeEx( 783 usb_interface_1_handle, 784 alt_setting, 785 (UCHAR) i, 786 &pipe); 787 if (!result) goto exit_on_error; 788 log_info("Interface #1, Alt #%u, Pipe idx #%u: type %u, id 0x%02x, max packet size %u, interval %u, max bytes per interval %u", 789 alt_setting, i, pipe.PipeType, pipe.PipeId, pipe.MaximumPacketSize, pipe.Interval, (int) pipe.MaximumBytesPerInterval); 790 switch (pipe.PipeType){ 791 case USB_ENDPOINT_TYPE_ISOCHRONOUS: 792 if (pipe.PipeId & 0x80) { 793 if (sco_in_addr) continue; 794 sco_in_addr = pipe.PipeId; 795 log_info("-> using 0x%2.2X for SCO Data In", sco_in_addr); 796 } else { 797 if (sco_out_addr) continue; 798 sco_out_addr = pipe.PipeId; 799 log_info("-> using 0x%2.2X for SCO Data Out", sco_out_addr); 800 } 801 break; 802 default: 803 break; 804 } 805 } 806 if (!sco_in_addr){ 807 log_error("Couldn't find pipe for SCO IN!"); 808 return FALSE; 809 } 810 if (!sco_out_addr){ 811 log_error("Couldn't find pipe for SCO IN!"); 812 return FALSE; 813 } 814 #endif 815 816 // check if all found 817 if (!event_in_addr){ 818 log_error("Couldn't find pipe for Event IN!"); 819 return FALSE; 820 } 821 if (!acl_in_addr){ 822 log_error("Couldn't find pipe for ACL IN!"); 823 return FALSE; 824 } 825 if (!acl_out_addr){ 826 log_error("Couldn't find pipe for ACL OUT!"); 827 return FALSE; 828 } 829 830 // all clear 831 return TRUE; 832 833 exit_on_error: 834 log_error("usb_scan_for_bluetooth_endpoints: last error %lu", GetLastError()); 835 return FALSE; 836 } 837 838 #ifdef ENABLE_SCO_OVER_HCI 839 840 static int usb_sco_start(void){ 841 printf("usb_sco_start\n"); 842 log_info("usb_sco_start"); 843 844 sco_shutdown = 0; 845 846 sco_state_machine_init(); 847 sco_ring_init(); 848 849 // calc alt setting 850 int alt_setting; 851 if (sco_voice_setting & 0x0020){ 852 // 16-bit PCM 853 alt_setting = alt_setting_16_bit[sco_num_connections-1]; 854 } else { 855 // 8-bit PCM or mSBC 856 alt_setting = alt_setting_8_bit[sco_num_connections-1]; 857 } 858 859 log_info("Switching to setting %u on interface 1..", alt_setting); 860 // WinUsb_SetCurrentAlternateSetting returns TRUE if the operation succeeds. 861 BOOL result = WinUsb_SetCurrentAlternateSetting(usb_interface_1_handle, alt_setting); 862 if (!result) goto exit_on_error; 863 864 // derive iso packet size from alt setting 865 iso_packet_size = iso_packet_size_for_alt_setting[alt_setting]; 866 867 // register isochronous buffer after setting alternate setting 868 usb_sco_register_buffers(); 869 870 #ifdef SCHEDULE_SCO_IN_TRANSFERS_MANUALLY 871 // get current frame number 872 ULONG current_frame_number; 873 LARGE_INTEGER timestamp; 874 BTstack_WinUsb_GetCurrentFrameNumber(usb_interface_0_handle, ¤t_frame_number, ×tamp); 875 // plan for next tranfer 876 sco_next_transfer_at_frame = current_frame_number + ISOC_BUFFERS * NUM_ISO_PACKETS; 877 #endif 878 879 int i; 880 for (i=0;i<ISOC_BUFFERS;i++){ 881 #ifdef SCHEDULE_SCO_IN_TRANSFERS_MANUALLY 882 usb_submit_sco_in_transfer_at_frame(i, &sco_next_transfer_at_frame); 883 #else 884 usb_submit_sco_in_transfer_asap(i, 0); 885 #endif 886 } 887 888 usb_sco_in_expected_transfer = 0; 889 890 // only await first transfer to return 891 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_sco_in[usb_sco_in_expected_transfer], DATA_SOURCE_CALLBACK_READ); 892 return 1; 893 894 exit_on_error: 895 log_error("usb_sco_start: last error %lu", GetLastError()); 896 usb_free_resources(); 897 return 0; 898 } 899 900 static void usb_sco_stop(void){ 901 printf("usb_sco_stop\n"); 902 log_info("usb_sco_stop"); 903 904 sco_shutdown = 1; 905 906 // abort SCO transfers 907 WinUsb_AbortPipe(usb_interface_0_handle, sco_in_addr); 908 WinUsb_AbortPipe(usb_interface_0_handle, sco_out_addr); 909 910 // unlock/free SCO buffers 911 usb_sco_unregister_buffers(); 912 913 int alt_setting = 0; 914 log_info("Switching to setting %u on interface 1..", alt_setting); 915 // WinUsb_SetCurrentAlternateSetting returns TRUE if the operation succeeds. 916 WinUsb_SetCurrentAlternateSetting(usb_interface_1_handle, alt_setting); 917 } 918 #endif 919 920 // returns 0 if successful, -1 otherwise 921 static int usb_try_open_device(const char * device_path){ 922 923 // open file 924 usb_device_handle = CreateFile(device_path, 925 GENERIC_WRITE | GENERIC_READ, 926 FILE_SHARE_WRITE | FILE_SHARE_READ, 927 NULL, 928 OPEN_EXISTING, 929 FILE_ATTRIBUTE_NORMAL | FILE_FLAG_OVERLAPPED, 930 NULL); 931 log_info("Opening USB device: %p", usb_device_handle); 932 if (!usb_device_handle) goto exit_on_error; 933 934 // WinUsb_Initialize returns TRUE if the operation succeed 935 BOOL result = WinUsb_Initialize(usb_device_handle, &usb_interface_0_handle); 936 if (!result) goto exit_on_error; 937 938 // Detect USB Dongle based Class, Subclass, and Protocol 939 // The class code (bDeviceClass) is 0xE0 – Wireless Controller. 940 // The SubClass code (bDeviceSubClass) is 0x01 – RF Controller. 941 // The Protocol code (bDeviceProtocol) is 0x01 – Bluetooth programming. 942 USB_INTERFACE_DESCRIPTOR usb_interface_descriptor; 943 result = WinUsb_QueryInterfaceSettings(usb_interface_0_handle, 0, &usb_interface_descriptor); 944 if (!result) goto exit_on_error; 945 946 // ignore virtual Bluetooth adapter of VMware 947 if (usb_is_vmware_bluetooth_adapter(device_path)) { 948 log_info("Ignoring simulated VMware Bluetooth adapter"); 949 usb_free_resources(); 950 return -1; 951 } 952 953 // 954 if (usb_interface_descriptor.bInterfaceClass != 0xe0 || 955 usb_interface_descriptor.bInterfaceSubClass != 0x01 || 956 usb_interface_descriptor.bInterfaceProtocol != 0x01){ 957 958 // check whitelist 959 if (!usb_is_known_bluetooth_device(device_path)){ 960 log_info("Class, Subclass, Protocol does not match Bluetooth device"); 961 usb_free_resources(); 962 return 0; 963 } 964 } 965 966 #ifdef ENABLE_SCO_OVER_HCI 967 log_info("Claiming interface 1..."); 968 // WinUsb_GetAssociatedInterface returns TRUE if the operation succeeds. 969 // We use index 1 - assuming it refers to interface #1 with libusb 970 // A value of 0 indicates the first associated interface, a value of 1 indicates the second associated interface, and so on. 971 result = WinUsb_GetAssociatedInterface(usb_interface_0_handle, 0, &usb_interface_1_handle); 972 if (!result) goto exit_on_error; 973 log_info("Claiming interface 1: success"); 974 #endif 975 976 result = usb_scan_for_bluetooth_endpoints(); 977 if (!result) { 978 log_error("Could not find all Bluetooth Endpoints!"); 979 usb_free_resources(); 980 return 0; 981 } 982 983 #ifdef ENABLE_SCO_OVER_HCI 984 int i; 985 986 memset(hci_sco_packet_descriptors, 0, sizeof(hci_sco_packet_descriptors)); 987 log_info("Size of packet descriptors for SCO IN%u", (int) sizeof(hci_sco_packet_descriptors)); 988 989 // setup async io && btstack handler 990 memset(&usb_overlapped_sco_in, 0, sizeof(usb_overlapped_sco_in)); 991 for (i=0;i<ISOC_BUFFERS;i++){ 992 usb_overlapped_sco_in[i].hEvent = CreateEvent(NULL, TRUE, FALSE, NULL); 993 // log_info_hexdump(&usb_overlapped_sco_in[i], sizeof(OVERLAPPED)); 994 // log_info("data source SCO in %u, handle %p", i, usb_overlapped_sco_in[i].hEvent); 995 usb_data_source_sco_in[i].source.handle = usb_overlapped_sco_in[i].hEvent; 996 btstack_run_loop_set_data_source_handler(&usb_data_source_sco_in[i], &usb_process_sco_in); 997 btstack_run_loop_add_data_source(&usb_data_source_sco_in[i]); 998 } 999 1000 memset(&usb_overlapped_sco_out, 0, sizeof(usb_overlapped_sco_out)); 1001 for (i=0;i<SCO_RING_BUFFER_COUNT;i++){ 1002 usb_overlapped_sco_out[i].hEvent = CreateEvent(NULL, TRUE, FALSE, NULL); 1003 // log_info("data source SCO out %u, handle %p", i, usb_overlapped_sco_out[i].hEvent); 1004 usb_data_source_sco_out[i].source.handle = usb_overlapped_sco_out[i].hEvent; 1005 btstack_run_loop_set_data_source_handler(&usb_data_source_sco_out[i], &usb_process_sco_out); 1006 btstack_run_loop_add_data_source(&usb_data_source_sco_out[i]); 1007 } 1008 #endif 1009 1010 // setup async io 1011 memset(&usb_overlapped_event_in, 0, sizeof(usb_overlapped_event_in)); 1012 memset(&usb_overlapped_command_out, 0, sizeof(usb_overlapped_command_out)); 1013 memset(&usb_overlapped_acl_out, 0, sizeof(usb_overlapped_acl_out)); 1014 memset(&usb_overlapped_acl_in, 0, sizeof(usb_overlapped_acl_in)); 1015 usb_overlapped_event_in.hEvent = CreateEvent(NULL, TRUE, FALSE, NULL); 1016 usb_overlapped_command_out.hEvent = CreateEvent(NULL, TRUE, FALSE, NULL); 1017 usb_overlapped_acl_in.hEvent = CreateEvent(NULL, TRUE, FALSE, NULL); 1018 usb_overlapped_acl_out.hEvent = CreateEvent(NULL, TRUE, FALSE, NULL); 1019 1020 // setup btstack data soures 1021 usb_data_source_event_in.source.handle = usb_overlapped_event_in.hEvent; 1022 btstack_run_loop_set_data_source_handler(&usb_data_source_event_in, &usb_process_event_in); 1023 btstack_run_loop_add_data_source(&usb_data_source_event_in); 1024 1025 usb_data_source_command_out.source.handle = usb_overlapped_command_out.hEvent; 1026 btstack_run_loop_set_data_source_handler(&usb_data_source_command_out, &usb_process_command_out); 1027 btstack_run_loop_add_data_source(&usb_data_source_command_out); 1028 1029 usb_data_source_acl_in.source.handle = usb_overlapped_acl_in.hEvent; 1030 btstack_run_loop_set_data_source_handler(&usb_data_source_acl_in, &usb_process_acl_in); 1031 btstack_run_loop_add_data_source(&usb_data_source_acl_in); 1032 1033 usb_data_source_acl_out.source.handle = usb_overlapped_acl_out.hEvent; 1034 btstack_run_loop_set_data_source_handler(&usb_data_source_acl_out, &usb_process_acl_out); 1035 btstack_run_loop_add_data_source(&usb_data_source_acl_out); 1036 1037 // submit all incoming transfers 1038 usb_submit_event_in_transfer(); 1039 usb_submit_acl_in_transfer(); 1040 return 1; 1041 1042 exit_on_error: 1043 log_error("usb_try_open_device: last error %lu", GetLastError()); 1044 usb_free_resources(); 1045 return 0; 1046 } 1047 1048 #ifdef ENABLE_SCO_OVER_HCI 1049 1050 #define WinUSB_Lookup(fn) do { BTstack_##fn = (BTstack_##fn##_t) GetProcAddress(h, #fn); log_info("%-30s %p", #fn, BTstack_##fn); if (!BTstack_##fn) return FALSE; } while(0) 1051 1052 static BOOL usb_lookup_symbols(void){ 1053 // lookup runtime symbols missing in current mingw64 distribution 1054 HMODULE h = GetModuleHandleA("WinUSB"); 1055 log_info("%-30s %p", "WinUSB", h); 1056 WinUSB_Lookup(WinUsb_QueryPipeEx); 1057 WinUSB_Lookup(WinUsb_RegisterIsochBuffer); 1058 WinUSB_Lookup(WinUsb_ReadIsochPipe); 1059 WinUSB_Lookup(WinUsb_ReadIsochPipeAsap); 1060 WinUSB_Lookup(WinUsb_WriteIsochPipe); 1061 WinUSB_Lookup(WinUsb_WriteIsochPipeAsap); 1062 WinUSB_Lookup(WinUsb_UnregisterIsochBuffer); 1063 WinUSB_Lookup(WinUsb_GetCurrentFrameNumber); 1064 return TRUE; 1065 } 1066 #endif 1067 1068 // returns 0 on success, -1 otherwise 1069 static int usb_open(void){ 1070 1071 int r = -1; 1072 1073 #ifdef ENABLE_SCO_OVER_HCI 1074 BOOL ok = usb_lookup_symbols(); 1075 if (!ok){ 1076 log_error("usb_open: Failed to lookup WinSUB ISOCHRONOUS functions. Please disable ENABLE_SCO_OVER_HCI or use Windows 8.1 or higher"); 1077 return r; 1078 } 1079 sco_state_machine_init(); 1080 sco_ring_init(); 1081 #endif 1082 1083 HDEVINFO hDevInfo; 1084 SP_DEVICE_INTERFACE_DATA DevIntfData; 1085 PSP_DEVICE_INTERFACE_DETAIL_DATA DevIntfDetailData; 1086 SP_DEVINFO_DATA DevData; 1087 1088 DWORD dwSize; 1089 DWORD dwMemberIdx; 1090 1091 // default endpoint addresses 1092 event_in_addr = 0x81; // EP1, IN interrupt 1093 acl_in_addr = 0x82; // EP2, IN bulk 1094 acl_out_addr = 0x02; // EP2, OUT bulk 1095 sco_in_addr = 0x83; // EP3, IN isochronous 1096 sco_out_addr = 0x03; // EP3, OUT isochronous 1097 1098 // We will try to get device information set for all USB devices that have a 1099 // device interface and are currently present on the system (plugged in). 1100 hDevInfo = SetupDiGetClassDevs(&GUID_DEVINTERFACE_USB_DEVICE, NULL, 0, DIGCF_DEVICEINTERFACE | DIGCF_PRESENT); 1101 1102 log_info("usb_open: SetupDiGetClassDevs -> %p", hDevInfo); 1103 if (hDevInfo == INVALID_HANDLE_VALUE) return -1; 1104 1105 // Prepare to enumerate all device interfaces for the device information 1106 // set that we retrieved with SetupDiGetClassDevs(..) 1107 DevIntfData.cbSize = sizeof(SP_DEVICE_INTERFACE_DATA); 1108 dwMemberIdx = 0; 1109 1110 // Next, we will keep calling this SetupDiEnumDeviceInterfaces(..) until this 1111 // function causes GetLastError() to return ERROR_NO_MORE_ITEMS. With each 1112 // call the dwMemberIdx value needs to be incremented to retrieve the next 1113 // device interface information. 1114 1115 SetupDiEnumDeviceInterfaces(hDevInfo, NULL, (LPGUID) &GUID_DEVINTERFACE_USB_DEVICE, 1116 dwMemberIdx, &DevIntfData); 1117 1118 while(GetLastError() != ERROR_NO_MORE_ITEMS){ 1119 1120 // As a last step we will need to get some more details for each 1121 // of device interface information we are able to retrieve. This 1122 // device interface detail gives us the information we need to identify 1123 // the device (VID/PID), and decide if it's useful to us. It will also 1124 // provide a DEVINFO_DATA structure which we can use to know the serial 1125 // port name for a virtual com port. 1126 1127 DevData.cbSize = sizeof(DevData); 1128 1129 // Get the required buffer size. Call SetupDiGetDeviceInterfaceDetail with 1130 // a NULL DevIntfDetailData pointer, a DevIntfDetailDataSize 1131 // of zero, and a valid RequiredSize variable. In response to such a call, 1132 // this function returns the required buffer size at dwSize. 1133 1134 SetupDiGetDeviceInterfaceDetail( 1135 hDevInfo, &DevIntfData, NULL, 0, &dwSize, NULL); 1136 1137 // Allocate memory for the DeviceInterfaceDetail struct. Don't forget to 1138 // deallocate it later! 1139 DevIntfDetailData = HeapAlloc(GetProcessHeap(), HEAP_ZERO_MEMORY, dwSize); 1140 DevIntfDetailData->cbSize = sizeof(SP_DEVICE_INTERFACE_DETAIL_DATA); 1141 1142 if (SetupDiGetDeviceInterfaceDetail(hDevInfo, &DevIntfData, 1143 DevIntfDetailData, dwSize, &dwSize, &DevData)) 1144 { 1145 // Finally we can start checking if we've found a useable device, 1146 // by inspecting the DevIntfDetailData->DevicePath variable. 1147 // The DevicePath looks something like this: 1148 // 1149 // \\?\usb#vid_04d8&pid_0033#5&19f2438f&0&2#{a5dcbf10-6530-11d2-901f-00c04fb951ed} 1150 // 1151 1152 log_info("usb_open: Device Path: %s", DevIntfDetailData->DevicePath); 1153 1154 #if 0 1155 // check for hard-coded vendor/product ids 1156 char vid_pid_match[30]; 1157 uint16_t vid = 0x0a12; 1158 uint16_t pid = 0x0001; 1159 sprintf(vid_pid_match, "\\\\?\\usb#vid_%04x&pid_%04x", vid, pid); 1160 if (strncmp(DevIntfDetailData->DevicePath, &vid_pid_match[0], strlen(vid_pid_match)) == 0 ){ 1161 log_info("Matched search string %s", vid_pid_match); 1162 1163 BOOL result = usb_try_open_device(DevIntfDetailData->DevicePath); 1164 if (result){ 1165 log_info("usb_open: Device opened, stop scanning"); 1166 r = 0; 1167 } else { 1168 log_error("usb_open: Device open failed"); 1169 } 1170 } 1171 #endif 1172 1173 // try all devices 1174 BOOL result = usb_try_open_device(DevIntfDetailData->DevicePath); 1175 if (result){ 1176 log_info("usb_open: Device opened, stop scanning"); 1177 r = 0; 1178 } else { 1179 log_error("usb_open: Device open failed"); 1180 } 1181 } 1182 HeapFree(GetProcessHeap(), 0, DevIntfDetailData); 1183 1184 if (r == 0) break; 1185 1186 // Continue looping 1187 SetupDiEnumDeviceInterfaces( 1188 hDevInfo, NULL, &GUID_DEVINTERFACE_USB_DEVICE, ++dwMemberIdx, &DevIntfData); 1189 } 1190 1191 SetupDiDestroyDeviceInfoList(hDevInfo); 1192 1193 log_info("usb_open: done"); 1194 1195 return r; 1196 } 1197 1198 static int usb_close(void){ 1199 1200 // remove data sources 1201 btstack_run_loop_remove_data_source(&usb_data_source_command_out); 1202 btstack_run_loop_remove_data_source(&usb_data_source_event_in); 1203 btstack_run_loop_remove_data_source(&usb_data_source_acl_in); 1204 btstack_run_loop_remove_data_source(&usb_data_source_acl_out); 1205 1206 #ifdef ENABLE_SCO_OVER_HCI 1207 int i; 1208 for (i=0;i<ISOC_BUFFERS;i++){ 1209 btstack_run_loop_remove_data_source(&usb_data_source_sco_in[i]); 1210 } 1211 for (i=0;i<SCO_RING_BUFFER_COUNT;i++){ 1212 btstack_run_loop_remove_data_source(&usb_data_source_sco_out[i]); 1213 } 1214 #endif 1215 1216 // stop transfers 1217 WinUsb_AbortPipe(usb_interface_0_handle, event_in_addr); 1218 WinUsb_AbortPipe(usb_interface_0_handle, acl_in_addr); 1219 WinUsb_AbortPipe(usb_interface_0_handle, acl_out_addr); 1220 #ifdef ENABLE_SCO_OVER_HCI 1221 usb_sco_stop(); 1222 #endif 1223 usb_acl_out_active = 0; 1224 1225 // control transfer cannot be stopped, just wait for completion 1226 if (usb_command_out_active){ 1227 DWORD bytes_transferred; 1228 WinUsb_GetOverlappedResult(usb_interface_0_handle, &usb_overlapped_command_out, &bytes_transferred, TRUE); 1229 usb_command_out_active = 0; 1230 } 1231 1232 // free everything 1233 usb_free_resources(); 1234 return 0; 1235 } 1236 1237 static int usb_can_send_packet_now(uint8_t packet_type){ 1238 // return 0; 1239 switch (packet_type){ 1240 case HCI_COMMAND_DATA_PACKET: 1241 return !usb_command_out_active; 1242 case HCI_ACL_DATA_PACKET: 1243 return !usb_acl_out_active; 1244 #ifdef ENABLE_SCO_OVER_HCI 1245 case HCI_SCO_DATA_PACKET: 1246 // return 0; 1247 return sco_ring_have_space(); 1248 #endif 1249 default: 1250 return 0; 1251 } 1252 } 1253 1254 static int usb_send_cmd_packet(uint8_t *packet, int size){ 1255 1256 // update stata before submitting transfer 1257 usb_command_out_active = 1; 1258 1259 // Start trasnsfer 1260 WINUSB_SETUP_PACKET setup_packet; 1261 memset(&setup_packet, 0, sizeof(setup_packet)); 1262 setup_packet.RequestType = USB_REQUEST_TYPE_CLASS | USB_RECIPIENT_INTERFACE; 1263 setup_packet.Length = sizeof(size); 1264 BOOL result = WinUsb_ControlTransfer(usb_interface_0_handle, setup_packet, packet, size, NULL, &usb_overlapped_command_out); 1265 if (!result) { 1266 if (GetLastError() != ERROR_IO_PENDING) goto exit_on_error; 1267 } 1268 1269 // IO_PENDING -> wait for completed 1270 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_command_out, DATA_SOURCE_CALLBACK_WRITE); 1271 1272 return 0; 1273 1274 exit_on_error: 1275 log_error("winusb: last error %lu", GetLastError()); 1276 return -1; 1277 } 1278 1279 static int usb_send_acl_packet(uint8_t *packet, int size){ 1280 1281 // update stata before submitting transfer 1282 usb_acl_out_active = 1; 1283 1284 // Start trasnsfer 1285 BOOL ok = WinUsb_WritePipe(usb_interface_0_handle, acl_out_addr, packet, size, NULL, &usb_overlapped_acl_out); 1286 if (!ok) { 1287 if (GetLastError() != ERROR_IO_PENDING) goto exit_on_error; 1288 } 1289 1290 // IO_PENDING -> wait for completed 1291 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_acl_out, DATA_SOURCE_CALLBACK_WRITE); 1292 return 0; 1293 1294 exit_on_error: 1295 log_error("winusb: last error %lu", GetLastError()); 1296 return -1; 1297 } 1298 1299 #ifdef ENABLE_SCO_OVER_HCI 1300 static int usb_send_sco_packet(uint8_t *packet, int size){ 1301 1302 if (size > SCO_PACKET_SIZE){ 1303 log_error("usb_send_sco_packet: size %u > SCO_PACKET_SIZE %u", size, SCO_PACKET_SIZE); 1304 return -1; 1305 } 1306 1307 // get current frame number 1308 ULONG current_frame_number; 1309 LARGE_INTEGER timestamp; 1310 BTstack_WinUsb_GetCurrentFrameNumber(usb_interface_0_handle, ¤t_frame_number, ×tamp); 1311 1312 // store packet in free slot 1313 int transfer_index = sco_ring_write; 1314 uint8_t * data = &sco_ring_buffer[transfer_index * SCO_PACKET_SIZE]; 1315 memcpy(data, packet, size); 1316 1317 1318 // setup transfer 1319 int continue_stream = sco_ring_transfers_active > 0; 1320 BOOL ok = BTstack_WinUsb_WriteIsochPipeAsap(hci_sco_out_buffer_handle, transfer_index * SCO_PACKET_SIZE, size, continue_stream, &usb_overlapped_sco_out[transfer_index]); 1321 // log_info("usb_send_sco_packet: using slot #%02u, current frame %lu, continue stream %u, ok %u", transfer_index, current_frame_number, continue_stream, ok); 1322 if (!ok) { 1323 if (GetLastError() != ERROR_IO_PENDING) goto exit_on_error; 1324 } 1325 1326 // successful started transfer, enable data source callback if first active transfer 1327 if (sco_ring_transfers_active == 0){ 1328 usb_sco_out_expected_transfer = transfer_index; 1329 btstack_run_loop_enable_data_source_callbacks(&usb_data_source_sco_out[transfer_index], DATA_SOURCE_CALLBACK_WRITE); 1330 } 1331 1332 // mark slot as full 1333 sco_ring_write = (sco_ring_write + 1) % SCO_RING_BUFFER_COUNT; 1334 sco_ring_transfers_active++; 1335 1336 // notify upper stack that provided buffer can be used again 1337 uint8_t event[] = { HCI_EVENT_TRANSPORT_PACKET_SENT, 0}; 1338 packet_handler(HCI_EVENT_PACKET, &event[0], sizeof(event)); 1339 1340 // log_info("usb_send_sco_packet: transfers active %u", sco_ring_transfers_active); 1341 1342 // and if we have more space for SCO packets 1343 if (sco_ring_have_space()) { 1344 uint8_t event_sco[] = { HCI_EVENT_SCO_CAN_SEND_NOW, 0}; 1345 packet_handler(HCI_EVENT_PACKET, &event_sco[0], sizeof(event_sco)); 1346 } 1347 return 0; 1348 1349 exit_on_error: 1350 log_error("usb_send_sco_packet: last error %lu", GetLastError()); 1351 return -1; 1352 } 1353 #endif 1354 1355 static int usb_send_packet(uint8_t packet_type, uint8_t * packet, int size){ 1356 switch (packet_type){ 1357 case HCI_COMMAND_DATA_PACKET: 1358 return usb_send_cmd_packet(packet, size); 1359 case HCI_ACL_DATA_PACKET: 1360 return usb_send_acl_packet(packet, size); 1361 #ifdef ENABLE_SCO_OVER_HCI 1362 case HCI_SCO_DATA_PACKET: 1363 return usb_send_sco_packet(packet, size); 1364 #endif 1365 default: 1366 return -1; 1367 } 1368 } 1369 1370 #ifdef ENABLE_SCO_OVER_HCI 1371 static void usb_set_sco_config(uint16_t voice_setting, int num_connections){ 1372 log_info("usb_set_sco_config: voice settings 0x%04x, num connections %u", voice_setting, num_connections); 1373 1374 if (num_connections != sco_num_connections){ 1375 sco_voice_setting = voice_setting; 1376 if (sco_num_connections){ 1377 usb_sco_stop(); 1378 } 1379 sco_num_connections = num_connections; 1380 if (num_connections){ 1381 usb_sco_start(); 1382 } 1383 } 1384 } 1385 #endif 1386 1387 // get usb singleton 1388 static const hci_transport_t hci_transport_usb = { 1389 /* const char * name; */ "H2_WINUSB", 1390 /* void (*init) (const void *transport_config); */ &usb_init, 1391 /* int (*open)(void); */ &usb_open, 1392 /* int (*close)(void); */ &usb_close, 1393 /* void (*register_packet_handler)(void (*handler)(...); */ &usb_register_packet_handler, 1394 /* int (*can_send_packet_now)(uint8_t packet_type); */ &usb_can_send_packet_now, 1395 /* int (*send_packet)(...); */ &usb_send_packet, 1396 /* int (*set_baudrate)(uint32_t baudrate); */ NULL, 1397 /* void (*reset_link)(void); */ NULL, 1398 #ifdef ENABLE_SCO_OVER_HCI 1399 /* void (*set_sco_config)(uint16_t voice_setting, int num_connections); */ usb_set_sco_config, 1400 #else 1401 /* void (*set_sco_config)(uint16_t voice_setting, int num_connections); */ NULL, 1402 #endif 1403 }; 1404 1405 const hci_transport_t * hci_transport_usb_instance(void) { 1406 return &hci_transport_usb; 1407 } 1408