1 /* 2 * EFI application boot time services 3 * 4 * Copyright (c) 2016 Alexander Graf 5 * 6 * SPDX-License-Identifier: GPL-2.0+ 7 */ 8 9 #include <common.h> 10 #include <efi_loader.h> 11 #include <malloc.h> 12 #include <asm/global_data.h> 13 #include <libfdt_env.h> 14 #include <u-boot/crc.h> 15 #include <bootm.h> 16 #include <inttypes.h> 17 #include <watchdog.h> 18 19 DECLARE_GLOBAL_DATA_PTR; 20 21 /* This list contains all the EFI objects our payload has access to */ 22 LIST_HEAD(efi_obj_list); 23 24 /* 25 * If we're running on nasty systems (32bit ARM booting into non-EFI Linux) 26 * we need to do trickery with caches. Since we don't want to break the EFI 27 * aware boot path, only apply hacks when loading exiting directly (breaking 28 * direct Linux EFI booting along the way - oh well). 29 */ 30 static bool efi_is_direct_boot = true; 31 32 /* 33 * EFI can pass arbitrary additional "tables" containing vendor specific 34 * information to the payload. One such table is the FDT table which contains 35 * a pointer to a flattened device tree blob. 36 * 37 * In most cases we want to pass an FDT to the payload, so reserve one slot of 38 * config table space for it. The pointer gets populated by do_bootefi_exec(). 39 */ 40 static struct efi_configuration_table __efi_runtime_data efi_conf_table[2]; 41 42 #ifdef CONFIG_ARM 43 /* 44 * The "gd" pointer lives in a register on ARM and AArch64 that we declare 45 * fixed when compiling U-Boot. However, the payload does not know about that 46 * restriction so we need to manually swap its and our view of that register on 47 * EFI callback entry/exit. 48 */ 49 static volatile void *efi_gd, *app_gd; 50 #endif 51 52 /* Called from do_bootefi_exec() */ 53 void efi_save_gd(void) 54 { 55 #ifdef CONFIG_ARM 56 efi_gd = gd; 57 #endif 58 } 59 60 /* Called on every callback entry */ 61 void efi_restore_gd(void) 62 { 63 #ifdef CONFIG_ARM 64 /* Only restore if we're already in EFI context */ 65 if (!efi_gd) 66 return; 67 68 if (gd != efi_gd) 69 app_gd = gd; 70 gd = efi_gd; 71 #endif 72 } 73 74 /* Called on every callback exit */ 75 efi_status_t efi_exit_func(efi_status_t ret) 76 { 77 #ifdef CONFIG_ARM 78 gd = app_gd; 79 #endif 80 81 return ret; 82 } 83 84 static efi_status_t efi_unsupported(const char *funcname) 85 { 86 debug("EFI: App called into unimplemented function %s\n", funcname); 87 return EFI_EXIT(EFI_UNSUPPORTED); 88 } 89 90 static int guidcmp(const efi_guid_t *g1, const efi_guid_t *g2) 91 { 92 return memcmp(g1, g2, sizeof(efi_guid_t)); 93 } 94 95 static unsigned long EFIAPI efi_raise_tpl(unsigned long new_tpl) 96 { 97 EFI_ENTRY("0x%lx", new_tpl); 98 return EFI_EXIT(0); 99 } 100 101 static void EFIAPI efi_restore_tpl(unsigned long old_tpl) 102 { 103 EFI_ENTRY("0x%lx", old_tpl); 104 EFI_EXIT(efi_unsupported(__func__)); 105 } 106 107 static efi_status_t EFIAPI efi_allocate_pages_ext(int type, int memory_type, 108 unsigned long pages, 109 uint64_t *memory) 110 { 111 efi_status_t r; 112 113 EFI_ENTRY("%d, %d, 0x%lx, %p", type, memory_type, pages, memory); 114 r = efi_allocate_pages(type, memory_type, pages, memory); 115 return EFI_EXIT(r); 116 } 117 118 static efi_status_t EFIAPI efi_free_pages_ext(uint64_t memory, 119 unsigned long pages) 120 { 121 efi_status_t r; 122 123 EFI_ENTRY("%"PRIx64", 0x%lx", memory, pages); 124 r = efi_free_pages(memory, pages); 125 return EFI_EXIT(r); 126 } 127 128 static efi_status_t EFIAPI efi_get_memory_map_ext( 129 unsigned long *memory_map_size, 130 struct efi_mem_desc *memory_map, 131 unsigned long *map_key, 132 unsigned long *descriptor_size, 133 uint32_t *descriptor_version) 134 { 135 efi_status_t r; 136 137 EFI_ENTRY("%p, %p, %p, %p, %p", memory_map_size, memory_map, 138 map_key, descriptor_size, descriptor_version); 139 r = efi_get_memory_map(memory_map_size, memory_map, map_key, 140 descriptor_size, descriptor_version); 141 return EFI_EXIT(r); 142 } 143 144 static efi_status_t EFIAPI efi_allocate_pool_ext(int pool_type, 145 unsigned long size, 146 void **buffer) 147 { 148 efi_status_t r; 149 150 EFI_ENTRY("%d, %ld, %p", pool_type, size, buffer); 151 r = efi_allocate_pool(pool_type, size, buffer); 152 return EFI_EXIT(r); 153 } 154 155 static efi_status_t EFIAPI efi_free_pool_ext(void *buffer) 156 { 157 efi_status_t r; 158 159 EFI_ENTRY("%p", buffer); 160 r = efi_free_pool(buffer); 161 return EFI_EXIT(r); 162 } 163 164 /* 165 * Our event capabilities are very limited. Only support a single 166 * event to exist, so we don't need to maintain lists. 167 */ 168 static struct { 169 enum efi_event_type type; 170 u32 trigger_type; 171 u32 trigger_time; 172 u64 trigger_next; 173 unsigned long notify_tpl; 174 void (EFIAPI *notify_function) (void *event, void *context); 175 void *notify_context; 176 } efi_event = { 177 /* Disable timers on bootup */ 178 .trigger_next = -1ULL, 179 }; 180 181 static efi_status_t EFIAPI efi_create_event( 182 enum efi_event_type type, ulong notify_tpl, 183 void (EFIAPI *notify_function) (void *event, 184 void *context), 185 void *notify_context, void **event) 186 { 187 EFI_ENTRY("%d, 0x%lx, %p, %p", type, notify_tpl, notify_function, 188 notify_context); 189 if (efi_event.notify_function) { 190 /* We only support one event at a time */ 191 return EFI_EXIT(EFI_OUT_OF_RESOURCES); 192 } 193 194 if (event == NULL) 195 return EFI_EXIT(EFI_INVALID_PARAMETER); 196 197 if ((type & EVT_NOTIFY_SIGNAL) && (type & EVT_NOTIFY_WAIT)) 198 return EFI_EXIT(EFI_INVALID_PARAMETER); 199 200 if ((type & (EVT_NOTIFY_SIGNAL|EVT_NOTIFY_WAIT)) && 201 notify_function == NULL) 202 return EFI_EXIT(EFI_INVALID_PARAMETER); 203 204 efi_event.type = type; 205 efi_event.notify_tpl = notify_tpl; 206 efi_event.notify_function = notify_function; 207 efi_event.notify_context = notify_context; 208 *event = &efi_event; 209 210 return EFI_EXIT(EFI_SUCCESS); 211 } 212 213 /* 214 * Our timers have to work without interrupts, so we check whenever keyboard 215 * input or disk accesses happen if enough time elapsed for it to fire. 216 */ 217 void efi_timer_check(void) 218 { 219 u64 now = timer_get_us(); 220 221 if (now >= efi_event.trigger_next) { 222 /* Triggering! */ 223 if (efi_event.trigger_type == EFI_TIMER_PERIODIC) 224 efi_event.trigger_next += efi_event.trigger_time / 10; 225 if (efi_event.type & (EVT_NOTIFY_WAIT | EVT_NOTIFY_SIGNAL)) 226 efi_event.notify_function(&efi_event, 227 efi_event.notify_context); 228 } 229 230 WATCHDOG_RESET(); 231 } 232 233 static efi_status_t EFIAPI efi_set_timer(void *event, int type, 234 uint64_t trigger_time) 235 { 236 /* We don't have 64bit division available everywhere, so limit timer 237 * distances to 32bit bits. */ 238 u32 trigger32 = trigger_time; 239 240 EFI_ENTRY("%p, %d, %"PRIx64, event, type, trigger_time); 241 242 if (trigger32 < trigger_time) { 243 printf("WARNING: Truncating timer from %"PRIx64" to %x\n", 244 trigger_time, trigger32); 245 } 246 247 if (event != &efi_event) { 248 /* We only support one event at a time */ 249 return EFI_EXIT(EFI_INVALID_PARAMETER); 250 } 251 252 switch (type) { 253 case EFI_TIMER_STOP: 254 efi_event.trigger_next = -1ULL; 255 break; 256 case EFI_TIMER_PERIODIC: 257 case EFI_TIMER_RELATIVE: 258 efi_event.trigger_next = timer_get_us() + (trigger32 / 10); 259 break; 260 default: 261 return EFI_EXIT(EFI_INVALID_PARAMETER); 262 } 263 efi_event.trigger_type = type; 264 efi_event.trigger_time = trigger_time; 265 266 return EFI_EXIT(EFI_SUCCESS); 267 } 268 269 static efi_status_t EFIAPI efi_wait_for_event(unsigned long num_events, 270 void *event, unsigned long *index) 271 { 272 u64 now; 273 274 EFI_ENTRY("%ld, %p, %p", num_events, event, index); 275 276 now = timer_get_us(); 277 while (now < efi_event.trigger_next) { } 278 efi_timer_check(); 279 280 return EFI_EXIT(EFI_SUCCESS); 281 } 282 283 static efi_status_t EFIAPI efi_signal_event(void *event) 284 { 285 EFI_ENTRY("%p", event); 286 return EFI_EXIT(EFI_SUCCESS); 287 } 288 289 static efi_status_t EFIAPI efi_close_event(void *event) 290 { 291 EFI_ENTRY("%p", event); 292 efi_event.trigger_next = -1ULL; 293 return EFI_EXIT(EFI_SUCCESS); 294 } 295 296 static efi_status_t EFIAPI efi_check_event(void *event) 297 { 298 EFI_ENTRY("%p", event); 299 return EFI_EXIT(EFI_NOT_READY); 300 } 301 302 static efi_status_t EFIAPI efi_install_protocol_interface(void **handle, 303 efi_guid_t *protocol, int protocol_interface_type, 304 void *protocol_interface) 305 { 306 EFI_ENTRY("%p, %p, %d, %p", handle, protocol, protocol_interface_type, 307 protocol_interface); 308 return EFI_EXIT(EFI_OUT_OF_RESOURCES); 309 } 310 static efi_status_t EFIAPI efi_reinstall_protocol_interface(void *handle, 311 efi_guid_t *protocol, void *old_interface, 312 void *new_interface) 313 { 314 EFI_ENTRY("%p, %p, %p, %p", handle, protocol, old_interface, 315 new_interface); 316 return EFI_EXIT(EFI_ACCESS_DENIED); 317 } 318 319 static efi_status_t EFIAPI efi_uninstall_protocol_interface(void *handle, 320 efi_guid_t *protocol, void *protocol_interface) 321 { 322 EFI_ENTRY("%p, %p, %p", handle, protocol, protocol_interface); 323 return EFI_EXIT(EFI_NOT_FOUND); 324 } 325 326 static efi_status_t EFIAPI efi_register_protocol_notify(efi_guid_t *protocol, 327 void *event, 328 void **registration) 329 { 330 EFI_ENTRY("%p, %p, %p", protocol, event, registration); 331 return EFI_EXIT(EFI_OUT_OF_RESOURCES); 332 } 333 334 static int efi_search(enum efi_locate_search_type search_type, 335 efi_guid_t *protocol, void *search_key, 336 struct efi_object *efiobj) 337 { 338 int i; 339 340 switch (search_type) { 341 case all_handles: 342 return 0; 343 case by_register_notify: 344 return -1; 345 case by_protocol: 346 for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) { 347 const efi_guid_t *guid = efiobj->protocols[i].guid; 348 if (guid && !guidcmp(guid, protocol)) 349 return 0; 350 } 351 return -1; 352 } 353 354 return -1; 355 } 356 357 static efi_status_t EFIAPI efi_locate_handle( 358 enum efi_locate_search_type search_type, 359 efi_guid_t *protocol, void *search_key, 360 unsigned long *buffer_size, efi_handle_t *buffer) 361 { 362 struct list_head *lhandle; 363 unsigned long size = 0; 364 365 EFI_ENTRY("%d, %p, %p, %p, %p", search_type, protocol, search_key, 366 buffer_size, buffer); 367 368 /* Count how much space we need */ 369 list_for_each(lhandle, &efi_obj_list) { 370 struct efi_object *efiobj; 371 efiobj = list_entry(lhandle, struct efi_object, link); 372 if (!efi_search(search_type, protocol, search_key, efiobj)) { 373 size += sizeof(void*); 374 } 375 } 376 377 if (*buffer_size < size) { 378 *buffer_size = size; 379 return EFI_EXIT(EFI_BUFFER_TOO_SMALL); 380 } 381 382 /* Then fill the array */ 383 list_for_each(lhandle, &efi_obj_list) { 384 struct efi_object *efiobj; 385 efiobj = list_entry(lhandle, struct efi_object, link); 386 if (!efi_search(search_type, protocol, search_key, efiobj)) { 387 *(buffer++) = efiobj->handle; 388 } 389 } 390 391 *buffer_size = size; 392 return EFI_EXIT(EFI_SUCCESS); 393 } 394 395 static efi_status_t EFIAPI efi_locate_device_path(efi_guid_t *protocol, 396 struct efi_device_path **device_path, 397 efi_handle_t *device) 398 { 399 EFI_ENTRY("%p, %p, %p", protocol, device_path, device); 400 return EFI_EXIT(EFI_NOT_FOUND); 401 } 402 403 efi_status_t efi_install_configuration_table(const efi_guid_t *guid, void *table) 404 { 405 int i; 406 407 /* Check for guid override */ 408 for (i = 0; i < systab.nr_tables; i++) { 409 if (!guidcmp(guid, &efi_conf_table[i].guid)) { 410 efi_conf_table[i].table = table; 411 return EFI_SUCCESS; 412 } 413 } 414 415 /* No override, check for overflow */ 416 if (i >= ARRAY_SIZE(efi_conf_table)) 417 return EFI_OUT_OF_RESOURCES; 418 419 /* Add a new entry */ 420 memcpy(&efi_conf_table[i].guid, guid, sizeof(*guid)); 421 efi_conf_table[i].table = table; 422 systab.nr_tables = i + 1; 423 424 return EFI_SUCCESS; 425 } 426 427 static efi_status_t EFIAPI efi_install_configuration_table_ext(efi_guid_t *guid, 428 void *table) 429 { 430 EFI_ENTRY("%p, %p", guid, table); 431 return EFI_EXIT(efi_install_configuration_table(guid, table)); 432 } 433 434 static efi_status_t EFIAPI efi_load_image(bool boot_policy, 435 efi_handle_t parent_image, 436 struct efi_device_path *file_path, 437 void *source_buffer, 438 unsigned long source_size, 439 efi_handle_t *image_handle) 440 { 441 static struct efi_object loaded_image_info_obj = { 442 .protocols = { 443 { 444 .guid = &efi_guid_loaded_image, 445 .open = &efi_return_handle, 446 }, 447 }, 448 }; 449 struct efi_loaded_image *info; 450 struct efi_object *obj; 451 452 EFI_ENTRY("%d, %p, %p, %p, %ld, %p", boot_policy, parent_image, 453 file_path, source_buffer, source_size, image_handle); 454 info = malloc(sizeof(*info)); 455 obj = malloc(sizeof(loaded_image_info_obj)); 456 memset(info, 0, sizeof(*info)); 457 memcpy(obj, &loaded_image_info_obj, sizeof(loaded_image_info_obj)); 458 obj->handle = info; 459 info->file_path = file_path; 460 info->reserved = efi_load_pe(source_buffer, info); 461 if (!info->reserved) { 462 free(info); 463 free(obj); 464 return EFI_EXIT(EFI_UNSUPPORTED); 465 } 466 467 *image_handle = info; 468 list_add_tail(&obj->link, &efi_obj_list); 469 470 return EFI_EXIT(EFI_SUCCESS); 471 } 472 473 static efi_status_t EFIAPI efi_start_image(efi_handle_t image_handle, 474 unsigned long *exit_data_size, 475 s16 **exit_data) 476 { 477 ulong (*entry)(void *image_handle, struct efi_system_table *st); 478 struct efi_loaded_image *info = image_handle; 479 480 EFI_ENTRY("%p, %p, %p", image_handle, exit_data_size, exit_data); 481 entry = info->reserved; 482 483 efi_is_direct_boot = false; 484 485 /* call the image! */ 486 if (setjmp(&info->exit_jmp)) { 487 /* We returned from the child image */ 488 return EFI_EXIT(info->exit_status); 489 } 490 491 entry(image_handle, &systab); 492 493 /* Should usually never get here */ 494 return EFI_EXIT(EFI_SUCCESS); 495 } 496 497 static efi_status_t EFIAPI efi_exit(efi_handle_t image_handle, 498 efi_status_t exit_status, unsigned long exit_data_size, 499 int16_t *exit_data) 500 { 501 struct efi_loaded_image *loaded_image_info = (void*)image_handle; 502 503 EFI_ENTRY("%p, %ld, %ld, %p", image_handle, exit_status, 504 exit_data_size, exit_data); 505 506 loaded_image_info->exit_status = exit_status; 507 longjmp(&loaded_image_info->exit_jmp, 1); 508 509 panic("EFI application exited"); 510 } 511 512 static struct efi_object *efi_search_obj(void *handle) 513 { 514 struct list_head *lhandle; 515 516 list_for_each(lhandle, &efi_obj_list) { 517 struct efi_object *efiobj; 518 efiobj = list_entry(lhandle, struct efi_object, link); 519 if (efiobj->handle == handle) 520 return efiobj; 521 } 522 523 return NULL; 524 } 525 526 static efi_status_t EFIAPI efi_unload_image(void *image_handle) 527 { 528 struct efi_object *efiobj; 529 530 EFI_ENTRY("%p", image_handle); 531 efiobj = efi_search_obj(image_handle); 532 if (efiobj) 533 list_del(&efiobj->link); 534 535 return EFI_EXIT(EFI_SUCCESS); 536 } 537 538 static void efi_exit_caches(void) 539 { 540 #if defined(CONFIG_ARM) && !defined(CONFIG_ARM64) 541 /* 542 * Grub on 32bit ARM needs to have caches disabled before jumping into 543 * a zImage, but does not know of all cache layers. Give it a hand. 544 */ 545 if (efi_is_direct_boot) 546 cleanup_before_linux(); 547 #endif 548 } 549 550 static efi_status_t EFIAPI efi_exit_boot_services(void *image_handle, 551 unsigned long map_key) 552 { 553 EFI_ENTRY("%p, %ld", image_handle, map_key); 554 555 board_quiesce_devices(); 556 557 /* Fix up caches for EFI payloads if necessary */ 558 efi_exit_caches(); 559 560 /* This stops all lingering devices */ 561 bootm_disable_interrupts(); 562 563 /* Give the payload some time to boot */ 564 WATCHDOG_RESET(); 565 566 return EFI_EXIT(EFI_SUCCESS); 567 } 568 569 static efi_status_t EFIAPI efi_get_next_monotonic_count(uint64_t *count) 570 { 571 static uint64_t mono = 0; 572 EFI_ENTRY("%p", count); 573 *count = mono++; 574 return EFI_EXIT(EFI_SUCCESS); 575 } 576 577 static efi_status_t EFIAPI efi_stall(unsigned long microseconds) 578 { 579 EFI_ENTRY("%ld", microseconds); 580 udelay(microseconds); 581 return EFI_EXIT(EFI_SUCCESS); 582 } 583 584 static efi_status_t EFIAPI efi_set_watchdog_timer(unsigned long timeout, 585 uint64_t watchdog_code, 586 unsigned long data_size, 587 uint16_t *watchdog_data) 588 { 589 EFI_ENTRY("%ld, 0x%"PRIx64", %ld, %p", timeout, watchdog_code, 590 data_size, watchdog_data); 591 return EFI_EXIT(efi_unsupported(__func__)); 592 } 593 594 static efi_status_t EFIAPI efi_connect_controller( 595 efi_handle_t controller_handle, 596 efi_handle_t *driver_image_handle, 597 struct efi_device_path *remain_device_path, 598 bool recursive) 599 { 600 EFI_ENTRY("%p, %p, %p, %d", controller_handle, driver_image_handle, 601 remain_device_path, recursive); 602 return EFI_EXIT(EFI_NOT_FOUND); 603 } 604 605 static efi_status_t EFIAPI efi_disconnect_controller(void *controller_handle, 606 void *driver_image_handle, 607 void *child_handle) 608 { 609 EFI_ENTRY("%p, %p, %p", controller_handle, driver_image_handle, 610 child_handle); 611 return EFI_EXIT(EFI_INVALID_PARAMETER); 612 } 613 614 static efi_status_t EFIAPI efi_close_protocol(void *handle, 615 efi_guid_t *protocol, 616 void *agent_handle, 617 void *controller_handle) 618 { 619 EFI_ENTRY("%p, %p, %p, %p", handle, protocol, agent_handle, 620 controller_handle); 621 return EFI_EXIT(EFI_NOT_FOUND); 622 } 623 624 static efi_status_t EFIAPI efi_open_protocol_information(efi_handle_t handle, 625 efi_guid_t *protocol, 626 struct efi_open_protocol_info_entry **entry_buffer, 627 unsigned long *entry_count) 628 { 629 EFI_ENTRY("%p, %p, %p, %p", handle, protocol, entry_buffer, 630 entry_count); 631 return EFI_EXIT(EFI_NOT_FOUND); 632 } 633 634 static efi_status_t EFIAPI efi_protocols_per_handle(void *handle, 635 efi_guid_t ***protocol_buffer, 636 unsigned long *protocol_buffer_count) 637 { 638 EFI_ENTRY("%p, %p, %p", handle, protocol_buffer, 639 protocol_buffer_count); 640 return EFI_EXIT(EFI_OUT_OF_RESOURCES); 641 } 642 643 static efi_status_t EFIAPI efi_locate_handle_buffer( 644 enum efi_locate_search_type search_type, 645 efi_guid_t *protocol, void *search_key, 646 unsigned long *no_handles, efi_handle_t **buffer) 647 { 648 EFI_ENTRY("%d, %p, %p, %p, %p", search_type, protocol, search_key, 649 no_handles, buffer); 650 return EFI_EXIT(EFI_NOT_FOUND); 651 } 652 653 static struct efi_class_map efi_class_maps[] = { 654 { 655 .guid = &efi_guid_console_control, 656 .interface = &efi_console_control 657 }, 658 }; 659 660 static efi_status_t EFIAPI efi_locate_protocol(efi_guid_t *protocol, 661 void *registration, 662 void **protocol_interface) 663 { 664 int i; 665 666 EFI_ENTRY("%p, %p, %p", protocol, registration, protocol_interface); 667 for (i = 0; i < ARRAY_SIZE(efi_class_maps); i++) { 668 struct efi_class_map *curmap = &efi_class_maps[i]; 669 if (!guidcmp(protocol, curmap->guid)) { 670 *protocol_interface = (void*)curmap->interface; 671 return EFI_EXIT(EFI_SUCCESS); 672 } 673 } 674 675 return EFI_EXIT(EFI_NOT_FOUND); 676 } 677 678 static efi_status_t EFIAPI efi_install_multiple_protocol_interfaces( 679 void **handle, ...) 680 { 681 EFI_ENTRY("%p", handle); 682 return EFI_EXIT(EFI_OUT_OF_RESOURCES); 683 } 684 685 static efi_status_t EFIAPI efi_uninstall_multiple_protocol_interfaces( 686 void *handle, ...) 687 { 688 EFI_ENTRY("%p", handle); 689 return EFI_EXIT(EFI_INVALID_PARAMETER); 690 } 691 692 static efi_status_t EFIAPI efi_calculate_crc32(void *data, 693 unsigned long data_size, 694 uint32_t *crc32_p) 695 { 696 EFI_ENTRY("%p, %ld", data, data_size); 697 *crc32_p = crc32(0, data, data_size); 698 return EFI_EXIT(EFI_SUCCESS); 699 } 700 701 static void EFIAPI efi_copy_mem(void *destination, void *source, 702 unsigned long length) 703 { 704 EFI_ENTRY("%p, %p, %ld", destination, source, length); 705 memcpy(destination, source, length); 706 } 707 708 static void EFIAPI efi_set_mem(void *buffer, unsigned long size, uint8_t value) 709 { 710 EFI_ENTRY("%p, %ld, 0x%x", buffer, size, value); 711 memset(buffer, value, size); 712 } 713 714 static efi_status_t EFIAPI efi_open_protocol( 715 void *handle, efi_guid_t *protocol, 716 void **protocol_interface, void *agent_handle, 717 void *controller_handle, uint32_t attributes) 718 { 719 struct list_head *lhandle; 720 int i; 721 efi_status_t r = EFI_UNSUPPORTED; 722 723 EFI_ENTRY("%p, %p, %p, %p, %p, 0x%x", handle, protocol, 724 protocol_interface, agent_handle, controller_handle, 725 attributes); 726 list_for_each(lhandle, &efi_obj_list) { 727 struct efi_object *efiobj; 728 efiobj = list_entry(lhandle, struct efi_object, link); 729 730 if (efiobj->handle != handle) 731 continue; 732 733 for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) { 734 struct efi_handler *handler = &efiobj->protocols[i]; 735 const efi_guid_t *hprotocol = handler->guid; 736 if (!hprotocol) 737 break; 738 if (!guidcmp(hprotocol, protocol)) { 739 r = handler->open(handle, protocol, 740 protocol_interface, agent_handle, 741 controller_handle, attributes); 742 goto out; 743 } 744 } 745 } 746 747 out: 748 return EFI_EXIT(r); 749 } 750 751 static efi_status_t EFIAPI efi_handle_protocol(void *handle, 752 efi_guid_t *protocol, 753 void **protocol_interface) 754 { 755 return efi_open_protocol(handle, protocol, protocol_interface, NULL, 756 NULL, EFI_OPEN_PROTOCOL_BY_HANDLE_PROTOCOL); 757 } 758 759 static const struct efi_boot_services efi_boot_services = { 760 .hdr = { 761 .headersize = sizeof(struct efi_table_hdr), 762 }, 763 .raise_tpl = efi_raise_tpl, 764 .restore_tpl = efi_restore_tpl, 765 .allocate_pages = efi_allocate_pages_ext, 766 .free_pages = efi_free_pages_ext, 767 .get_memory_map = efi_get_memory_map_ext, 768 .allocate_pool = efi_allocate_pool_ext, 769 .free_pool = efi_free_pool_ext, 770 .create_event = efi_create_event, 771 .set_timer = efi_set_timer, 772 .wait_for_event = efi_wait_for_event, 773 .signal_event = efi_signal_event, 774 .close_event = efi_close_event, 775 .check_event = efi_check_event, 776 .install_protocol_interface = efi_install_protocol_interface, 777 .reinstall_protocol_interface = efi_reinstall_protocol_interface, 778 .uninstall_protocol_interface = efi_uninstall_protocol_interface, 779 .handle_protocol = efi_handle_protocol, 780 .reserved = NULL, 781 .register_protocol_notify = efi_register_protocol_notify, 782 .locate_handle = efi_locate_handle, 783 .locate_device_path = efi_locate_device_path, 784 .install_configuration_table = efi_install_configuration_table_ext, 785 .load_image = efi_load_image, 786 .start_image = efi_start_image, 787 .exit = efi_exit, 788 .unload_image = efi_unload_image, 789 .exit_boot_services = efi_exit_boot_services, 790 .get_next_monotonic_count = efi_get_next_monotonic_count, 791 .stall = efi_stall, 792 .set_watchdog_timer = efi_set_watchdog_timer, 793 .connect_controller = efi_connect_controller, 794 .disconnect_controller = efi_disconnect_controller, 795 .open_protocol = efi_open_protocol, 796 .close_protocol = efi_close_protocol, 797 .open_protocol_information = efi_open_protocol_information, 798 .protocols_per_handle = efi_protocols_per_handle, 799 .locate_handle_buffer = efi_locate_handle_buffer, 800 .locate_protocol = efi_locate_protocol, 801 .install_multiple_protocol_interfaces = efi_install_multiple_protocol_interfaces, 802 .uninstall_multiple_protocol_interfaces = efi_uninstall_multiple_protocol_interfaces, 803 .calculate_crc32 = efi_calculate_crc32, 804 .copy_mem = efi_copy_mem, 805 .set_mem = efi_set_mem, 806 }; 807 808 809 static uint16_t __efi_runtime_data firmware_vendor[] = 810 { 'D','a','s',' ','U','-','b','o','o','t',0 }; 811 812 struct efi_system_table __efi_runtime_data systab = { 813 .hdr = { 814 .signature = EFI_SYSTEM_TABLE_SIGNATURE, 815 .revision = 0x20005, /* 2.5 */ 816 .headersize = sizeof(struct efi_table_hdr), 817 }, 818 .fw_vendor = (long)firmware_vendor, 819 .con_in = (void*)&efi_con_in, 820 .con_out = (void*)&efi_con_out, 821 .std_err = (void*)&efi_con_out, 822 .runtime = (void*)&efi_runtime_services, 823 .boottime = (void*)&efi_boot_services, 824 .nr_tables = 0, 825 .tables = (void*)efi_conf_table, 826 }; 827