xref: /rk3399_rockchip-uboot/lib/efi_loader/efi_boottime.c (revision 58b83586065f9b22b80b5a6ff2c1270715b4128b)
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 	struct list_head *lhandle;
307 	int i;
308 	efi_status_t r;
309 
310 	if (!handle || !protocol ||
311 	    protocol_interface_type != EFI_NATIVE_INTERFACE) {
312 		r = EFI_INVALID_PARAMETER;
313 		goto out;
314 	}
315 
316 	/* Create new handle if requested. */
317 	if (!*handle) {
318 		r = EFI_OUT_OF_RESOURCES;
319 		goto out;
320 	}
321 	/* Find object. */
322 	list_for_each(lhandle, &efi_obj_list) {
323 		struct efi_object *efiobj;
324 		efiobj = list_entry(lhandle, struct efi_object, link);
325 
326 		if (efiobj->handle != *handle)
327 			continue;
328 		/* Check if protocol is already installed on the handle. */
329 		for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) {
330 			struct efi_handler *handler = &efiobj->protocols[i];
331 
332 			if (!handler->guid)
333 				continue;
334 			if (!guidcmp(handler->guid, protocol)) {
335 				r = EFI_INVALID_PARAMETER;
336 				goto out;
337 			}
338 		}
339 		/* Install protocol in first empty slot. */
340 		for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) {
341 			struct efi_handler *handler = &efiobj->protocols[i];
342 
343 			if (handler->guid)
344 				continue;
345 
346 			handler->guid = protocol;
347 			handler->protocol_interface = protocol_interface;
348 			r = EFI_SUCCESS;
349 			goto out;
350 		}
351 		r = EFI_OUT_OF_RESOURCES;
352 		goto out;
353 	}
354 	r = EFI_INVALID_PARAMETER;
355 out:
356 	return r;
357 }
358 
359 static efi_status_t EFIAPI efi_install_protocol_interface_ext(void **handle,
360 			efi_guid_t *protocol, int protocol_interface_type,
361 			void *protocol_interface)
362 {
363 	EFI_ENTRY("%p, %p, %d, %p", handle, protocol, protocol_interface_type,
364 		  protocol_interface);
365 
366 	return EFI_EXIT(efi_install_protocol_interface(handle, protocol,
367 						       protocol_interface_type,
368 						       protocol_interface));
369 }
370 
371 static efi_status_t EFIAPI efi_reinstall_protocol_interface(void *handle,
372 			efi_guid_t *protocol, void *old_interface,
373 			void *new_interface)
374 {
375 	EFI_ENTRY("%p, %p, %p, %p", handle, protocol, old_interface,
376 		  new_interface);
377 	return EFI_EXIT(EFI_ACCESS_DENIED);
378 }
379 
380 static efi_status_t EFIAPI efi_uninstall_protocol_interface(void *handle,
381 			efi_guid_t *protocol, void *protocol_interface)
382 {
383 	struct list_head *lhandle;
384 	int i;
385 	efi_status_t r = EFI_NOT_FOUND;
386 
387 	if (!handle || !protocol) {
388 		r = EFI_INVALID_PARAMETER;
389 		goto out;
390 	}
391 
392 	list_for_each(lhandle, &efi_obj_list) {
393 		struct efi_object *efiobj;
394 		efiobj = list_entry(lhandle, struct efi_object, link);
395 
396 		if (efiobj->handle != handle)
397 			continue;
398 
399 		for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) {
400 			struct efi_handler *handler = &efiobj->protocols[i];
401 			const efi_guid_t *hprotocol = handler->guid;
402 
403 			if (!hprotocol)
404 				continue;
405 			if (!guidcmp(hprotocol, protocol)) {
406 				if (handler->protocol_interface) {
407 					r = EFI_ACCESS_DENIED;
408 				} else {
409 					handler->guid = 0;
410 					r = EFI_SUCCESS;
411 				}
412 				goto out;
413 			}
414 		}
415 	}
416 
417 out:
418 	return r;
419 }
420 
421 static efi_status_t EFIAPI efi_uninstall_protocol_interface_ext(void *handle,
422 			efi_guid_t *protocol, void *protocol_interface)
423 {
424 	EFI_ENTRY("%p, %p, %p", handle, protocol, protocol_interface);
425 
426 	return EFI_EXIT(efi_uninstall_protocol_interface(handle, protocol,
427 							 protocol_interface));
428 }
429 
430 static efi_status_t EFIAPI efi_register_protocol_notify(efi_guid_t *protocol,
431 							void *event,
432 							void **registration)
433 {
434 	EFI_ENTRY("%p, %p, %p", protocol, event, registration);
435 	return EFI_EXIT(EFI_OUT_OF_RESOURCES);
436 }
437 
438 static int efi_search(enum efi_locate_search_type search_type,
439 		      efi_guid_t *protocol, void *search_key,
440 		      struct efi_object *efiobj)
441 {
442 	int i;
443 
444 	switch (search_type) {
445 	case all_handles:
446 		return 0;
447 	case by_register_notify:
448 		return -1;
449 	case by_protocol:
450 		for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) {
451 			const efi_guid_t *guid = efiobj->protocols[i].guid;
452 			if (guid && !guidcmp(guid, protocol))
453 				return 0;
454 		}
455 		return -1;
456 	}
457 
458 	return -1;
459 }
460 
461 static efi_status_t EFIAPI efi_locate_handle(
462 			enum efi_locate_search_type search_type,
463 			efi_guid_t *protocol, void *search_key,
464 			unsigned long *buffer_size, efi_handle_t *buffer)
465 {
466 	struct list_head *lhandle;
467 	unsigned long size = 0;
468 
469 	EFI_ENTRY("%d, %p, %p, %p, %p", search_type, protocol, search_key,
470 		  buffer_size, buffer);
471 
472 	/* Count how much space we need */
473 	list_for_each(lhandle, &efi_obj_list) {
474 		struct efi_object *efiobj;
475 		efiobj = list_entry(lhandle, struct efi_object, link);
476 		if (!efi_search(search_type, protocol, search_key, efiobj)) {
477 			size += sizeof(void*);
478 		}
479 	}
480 
481 	if (*buffer_size < size) {
482 		*buffer_size = size;
483 		return EFI_EXIT(EFI_BUFFER_TOO_SMALL);
484 	}
485 
486 	/* Then fill the array */
487 	list_for_each(lhandle, &efi_obj_list) {
488 		struct efi_object *efiobj;
489 		efiobj = list_entry(lhandle, struct efi_object, link);
490 		if (!efi_search(search_type, protocol, search_key, efiobj)) {
491 			*(buffer++) = efiobj->handle;
492 		}
493 	}
494 
495 	*buffer_size = size;
496 	return EFI_EXIT(EFI_SUCCESS);
497 }
498 
499 static efi_status_t EFIAPI efi_locate_device_path(efi_guid_t *protocol,
500 			struct efi_device_path **device_path,
501 			efi_handle_t *device)
502 {
503 	EFI_ENTRY("%p, %p, %p", protocol, device_path, device);
504 	return EFI_EXIT(EFI_NOT_FOUND);
505 }
506 
507 efi_status_t efi_install_configuration_table(const efi_guid_t *guid, void *table)
508 {
509 	int i;
510 
511 	/* Check for guid override */
512 	for (i = 0; i < systab.nr_tables; i++) {
513 		if (!guidcmp(guid, &efi_conf_table[i].guid)) {
514 			efi_conf_table[i].table = table;
515 			return EFI_SUCCESS;
516 		}
517 	}
518 
519 	/* No override, check for overflow */
520 	if (i >= ARRAY_SIZE(efi_conf_table))
521 		return EFI_OUT_OF_RESOURCES;
522 
523 	/* Add a new entry */
524 	memcpy(&efi_conf_table[i].guid, guid, sizeof(*guid));
525 	efi_conf_table[i].table = table;
526 	systab.nr_tables = i + 1;
527 
528 	return EFI_SUCCESS;
529 }
530 
531 static efi_status_t EFIAPI efi_install_configuration_table_ext(efi_guid_t *guid,
532 							       void *table)
533 {
534 	EFI_ENTRY("%p, %p", guid, table);
535 	return EFI_EXIT(efi_install_configuration_table(guid, table));
536 }
537 
538 static efi_status_t EFIAPI efi_load_image(bool boot_policy,
539 					  efi_handle_t parent_image,
540 					  struct efi_device_path *file_path,
541 					  void *source_buffer,
542 					  unsigned long source_size,
543 					  efi_handle_t *image_handle)
544 {
545 	static struct efi_object loaded_image_info_obj = {
546 		.protocols = {
547 			{
548 				.guid = &efi_guid_loaded_image,
549 			},
550 		},
551 	};
552 	struct efi_loaded_image *info;
553 	struct efi_object *obj;
554 
555 	EFI_ENTRY("%d, %p, %p, %p, %ld, %p", boot_policy, parent_image,
556 		  file_path, source_buffer, source_size, image_handle);
557 	info = malloc(sizeof(*info));
558 	loaded_image_info_obj.protocols[0].protocol_interface = info;
559 	obj = malloc(sizeof(loaded_image_info_obj));
560 	memset(info, 0, sizeof(*info));
561 	memcpy(obj, &loaded_image_info_obj, sizeof(loaded_image_info_obj));
562 	obj->handle = info;
563 	info->file_path = file_path;
564 	info->reserved = efi_load_pe(source_buffer, info);
565 	if (!info->reserved) {
566 		free(info);
567 		free(obj);
568 		return EFI_EXIT(EFI_UNSUPPORTED);
569 	}
570 
571 	*image_handle = info;
572 	list_add_tail(&obj->link, &efi_obj_list);
573 
574 	return EFI_EXIT(EFI_SUCCESS);
575 }
576 
577 static efi_status_t EFIAPI efi_start_image(efi_handle_t image_handle,
578 					   unsigned long *exit_data_size,
579 					   s16 **exit_data)
580 {
581 	ulong (*entry)(void *image_handle, struct efi_system_table *st);
582 	struct efi_loaded_image *info = image_handle;
583 
584 	EFI_ENTRY("%p, %p, %p", image_handle, exit_data_size, exit_data);
585 	entry = info->reserved;
586 
587 	efi_is_direct_boot = false;
588 
589 	/* call the image! */
590 	if (setjmp(&info->exit_jmp)) {
591 		/* We returned from the child image */
592 		return EFI_EXIT(info->exit_status);
593 	}
594 
595 	entry(image_handle, &systab);
596 
597 	/* Should usually never get here */
598 	return EFI_EXIT(EFI_SUCCESS);
599 }
600 
601 static efi_status_t EFIAPI efi_exit(efi_handle_t image_handle,
602 			efi_status_t exit_status, unsigned long exit_data_size,
603 			int16_t *exit_data)
604 {
605 	struct efi_loaded_image *loaded_image_info = (void*)image_handle;
606 
607 	EFI_ENTRY("%p, %ld, %ld, %p", image_handle, exit_status,
608 		  exit_data_size, exit_data);
609 
610 	loaded_image_info->exit_status = exit_status;
611 	longjmp(&loaded_image_info->exit_jmp, 1);
612 
613 	panic("EFI application exited");
614 }
615 
616 static struct efi_object *efi_search_obj(void *handle)
617 {
618 	struct list_head *lhandle;
619 
620 	list_for_each(lhandle, &efi_obj_list) {
621 		struct efi_object *efiobj;
622 		efiobj = list_entry(lhandle, struct efi_object, link);
623 		if (efiobj->handle == handle)
624 			return efiobj;
625 	}
626 
627 	return NULL;
628 }
629 
630 static efi_status_t EFIAPI efi_unload_image(void *image_handle)
631 {
632 	struct efi_object *efiobj;
633 
634 	EFI_ENTRY("%p", image_handle);
635 	efiobj = efi_search_obj(image_handle);
636 	if (efiobj)
637 		list_del(&efiobj->link);
638 
639 	return EFI_EXIT(EFI_SUCCESS);
640 }
641 
642 static void efi_exit_caches(void)
643 {
644 #if defined(CONFIG_ARM) && !defined(CONFIG_ARM64)
645 	/*
646 	 * Grub on 32bit ARM needs to have caches disabled before jumping into
647 	 * a zImage, but does not know of all cache layers. Give it a hand.
648 	 */
649 	if (efi_is_direct_boot)
650 		cleanup_before_linux();
651 #endif
652 }
653 
654 static efi_status_t EFIAPI efi_exit_boot_services(void *image_handle,
655 						  unsigned long map_key)
656 {
657 	EFI_ENTRY("%p, %ld", image_handle, map_key);
658 
659 	board_quiesce_devices();
660 
661 	/* Fix up caches for EFI payloads if necessary */
662 	efi_exit_caches();
663 
664 	/* This stops all lingering devices */
665 	bootm_disable_interrupts();
666 
667 	/* Give the payload some time to boot */
668 	WATCHDOG_RESET();
669 
670 	return EFI_EXIT(EFI_SUCCESS);
671 }
672 
673 static efi_status_t EFIAPI efi_get_next_monotonic_count(uint64_t *count)
674 {
675 	static uint64_t mono = 0;
676 	EFI_ENTRY("%p", count);
677 	*count = mono++;
678 	return EFI_EXIT(EFI_SUCCESS);
679 }
680 
681 static efi_status_t EFIAPI efi_stall(unsigned long microseconds)
682 {
683 	EFI_ENTRY("%ld", microseconds);
684 	udelay(microseconds);
685 	return EFI_EXIT(EFI_SUCCESS);
686 }
687 
688 static efi_status_t EFIAPI efi_set_watchdog_timer(unsigned long timeout,
689 						  uint64_t watchdog_code,
690 						  unsigned long data_size,
691 						  uint16_t *watchdog_data)
692 {
693 	EFI_ENTRY("%ld, 0x%"PRIx64", %ld, %p", timeout, watchdog_code,
694 		  data_size, watchdog_data);
695 	return EFI_EXIT(efi_unsupported(__func__));
696 }
697 
698 static efi_status_t EFIAPI efi_connect_controller(
699 			efi_handle_t controller_handle,
700 			efi_handle_t *driver_image_handle,
701 			struct efi_device_path *remain_device_path,
702 			bool recursive)
703 {
704 	EFI_ENTRY("%p, %p, %p, %d", controller_handle, driver_image_handle,
705 		  remain_device_path, recursive);
706 	return EFI_EXIT(EFI_NOT_FOUND);
707 }
708 
709 static efi_status_t EFIAPI efi_disconnect_controller(void *controller_handle,
710 						     void *driver_image_handle,
711 						     void *child_handle)
712 {
713 	EFI_ENTRY("%p, %p, %p", controller_handle, driver_image_handle,
714 		  child_handle);
715 	return EFI_EXIT(EFI_INVALID_PARAMETER);
716 }
717 
718 static efi_status_t EFIAPI efi_close_protocol(void *handle,
719 					      efi_guid_t *protocol,
720 					      void *agent_handle,
721 					      void *controller_handle)
722 {
723 	EFI_ENTRY("%p, %p, %p, %p", handle, protocol, agent_handle,
724 		  controller_handle);
725 	return EFI_EXIT(EFI_NOT_FOUND);
726 }
727 
728 static efi_status_t EFIAPI efi_open_protocol_information(efi_handle_t handle,
729 			efi_guid_t *protocol,
730 			struct efi_open_protocol_info_entry **entry_buffer,
731 			unsigned long *entry_count)
732 {
733 	EFI_ENTRY("%p, %p, %p, %p", handle, protocol, entry_buffer,
734 		  entry_count);
735 	return EFI_EXIT(EFI_NOT_FOUND);
736 }
737 
738 static efi_status_t EFIAPI efi_protocols_per_handle(void *handle,
739 			efi_guid_t ***protocol_buffer,
740 			unsigned long *protocol_buffer_count)
741 {
742 	EFI_ENTRY("%p, %p, %p", handle, protocol_buffer,
743 		  protocol_buffer_count);
744 	return EFI_EXIT(EFI_OUT_OF_RESOURCES);
745 }
746 
747 static efi_status_t EFIAPI efi_locate_handle_buffer(
748 			enum efi_locate_search_type search_type,
749 			efi_guid_t *protocol, void *search_key,
750 			unsigned long *no_handles, efi_handle_t **buffer)
751 {
752 	EFI_ENTRY("%d, %p, %p, %p, %p", search_type, protocol, search_key,
753 		  no_handles, buffer);
754 	return EFI_EXIT(EFI_NOT_FOUND);
755 }
756 
757 static struct efi_class_map efi_class_maps[] = {
758 	{
759 		.guid = &efi_guid_console_control,
760 		.interface = &efi_console_control
761 	},
762 };
763 
764 static efi_status_t EFIAPI efi_locate_protocol(efi_guid_t *protocol,
765 					       void *registration,
766 					       void **protocol_interface)
767 {
768 	int i;
769 
770 	EFI_ENTRY("%p, %p, %p", protocol, registration, protocol_interface);
771 	for (i = 0; i < ARRAY_SIZE(efi_class_maps); i++) {
772 		struct efi_class_map *curmap = &efi_class_maps[i];
773 		if (!guidcmp(protocol, curmap->guid)) {
774 			*protocol_interface = (void*)curmap->interface;
775 			return EFI_EXIT(EFI_SUCCESS);
776 		}
777 	}
778 
779 	return EFI_EXIT(EFI_NOT_FOUND);
780 }
781 
782 static efi_status_t EFIAPI efi_install_multiple_protocol_interfaces(
783 			void **handle, ...)
784 {
785 	EFI_ENTRY("%p", handle);
786 
787 	va_list argptr;
788 	efi_guid_t *protocol;
789 	void *protocol_interface;
790 	efi_status_t r = EFI_SUCCESS;
791 	int i = 0;
792 
793 	if (!handle)
794 		return EFI_EXIT(EFI_INVALID_PARAMETER);
795 
796 	va_start(argptr, handle);
797 	for (;;) {
798 		protocol = va_arg(argptr, efi_guid_t*);
799 		if (!protocol)
800 			break;
801 		protocol_interface = va_arg(argptr, void*);
802 		r = efi_install_protocol_interface(handle, protocol,
803 						   EFI_NATIVE_INTERFACE,
804 						   protocol_interface);
805 		if (r != EFI_SUCCESS)
806 			break;
807 		i++;
808 	}
809 	va_end(argptr);
810 	if (r == EFI_SUCCESS)
811 		return EFI_EXIT(r);
812 
813 	/* If an error occured undo all changes. */
814 	va_start(argptr, handle);
815 	for (; i; --i) {
816 		protocol = va_arg(argptr, efi_guid_t*);
817 		protocol_interface = va_arg(argptr, void*);
818 		efi_uninstall_protocol_interface(handle, protocol,
819 						 protocol_interface);
820 	}
821 	va_end(argptr);
822 
823 	return EFI_EXIT(r);
824 }
825 
826 static efi_status_t EFIAPI efi_uninstall_multiple_protocol_interfaces(
827 			void *handle, ...)
828 {
829 	EFI_ENTRY("%p", handle);
830 	return EFI_EXIT(EFI_INVALID_PARAMETER);
831 }
832 
833 static efi_status_t EFIAPI efi_calculate_crc32(void *data,
834 					       unsigned long data_size,
835 					       uint32_t *crc32_p)
836 {
837 	EFI_ENTRY("%p, %ld", data, data_size);
838 	*crc32_p = crc32(0, data, data_size);
839 	return EFI_EXIT(EFI_SUCCESS);
840 }
841 
842 static void EFIAPI efi_copy_mem(void *destination, void *source,
843 				unsigned long length)
844 {
845 	EFI_ENTRY("%p, %p, %ld", destination, source, length);
846 	memcpy(destination, source, length);
847 }
848 
849 static void EFIAPI efi_set_mem(void *buffer, unsigned long size, uint8_t value)
850 {
851 	EFI_ENTRY("%p, %ld, 0x%x", buffer, size, value);
852 	memset(buffer, value, size);
853 }
854 
855 static efi_status_t EFIAPI efi_open_protocol(
856 			void *handle, efi_guid_t *protocol,
857 			void **protocol_interface, void *agent_handle,
858 			void *controller_handle, uint32_t attributes)
859 {
860 	struct list_head *lhandle;
861 	int i;
862 	efi_status_t r = EFI_INVALID_PARAMETER;
863 
864 	EFI_ENTRY("%p, %p, %p, %p, %p, 0x%x", handle, protocol,
865 		  protocol_interface, agent_handle, controller_handle,
866 		  attributes);
867 
868 	if (!handle || !protocol ||
869 	    (!protocol_interface && attributes !=
870 	     EFI_OPEN_PROTOCOL_TEST_PROTOCOL)) {
871 		goto out;
872 	}
873 
874 	switch (attributes) {
875 	case EFI_OPEN_PROTOCOL_BY_HANDLE_PROTOCOL:
876 	case EFI_OPEN_PROTOCOL_GET_PROTOCOL:
877 	case EFI_OPEN_PROTOCOL_TEST_PROTOCOL:
878 		break;
879 	case EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER:
880 		if (controller_handle == handle)
881 			goto out;
882 	case EFI_OPEN_PROTOCOL_BY_DRIVER:
883 	case EFI_OPEN_PROTOCOL_BY_DRIVER | EFI_OPEN_PROTOCOL_EXCLUSIVE:
884 		if (controller_handle == NULL)
885 			goto out;
886 	case EFI_OPEN_PROTOCOL_EXCLUSIVE:
887 		if (agent_handle == NULL)
888 			goto out;
889 		break;
890 	default:
891 		goto out;
892 	}
893 
894 	list_for_each(lhandle, &efi_obj_list) {
895 		struct efi_object *efiobj;
896 		efiobj = list_entry(lhandle, struct efi_object, link);
897 
898 		if (efiobj->handle != handle)
899 			continue;
900 
901 		for (i = 0; i < ARRAY_SIZE(efiobj->protocols); i++) {
902 			struct efi_handler *handler = &efiobj->protocols[i];
903 			const efi_guid_t *hprotocol = handler->guid;
904 			if (!hprotocol)
905 				continue;
906 			if (!guidcmp(hprotocol, protocol)) {
907 				if (attributes !=
908 				    EFI_OPEN_PROTOCOL_TEST_PROTOCOL) {
909 					*protocol_interface =
910 						handler->protocol_interface;
911 				}
912 				r = EFI_SUCCESS;
913 				goto out;
914 			}
915 		}
916 		goto unsupported;
917 	}
918 
919 unsupported:
920 	r = EFI_UNSUPPORTED;
921 out:
922 	return EFI_EXIT(r);
923 }
924 
925 static efi_status_t EFIAPI efi_handle_protocol(void *handle,
926 					       efi_guid_t *protocol,
927 					       void **protocol_interface)
928 {
929 	return efi_open_protocol(handle, protocol, protocol_interface, NULL,
930 				 NULL, EFI_OPEN_PROTOCOL_BY_HANDLE_PROTOCOL);
931 }
932 
933 static const struct efi_boot_services efi_boot_services = {
934 	.hdr = {
935 		.headersize = sizeof(struct efi_table_hdr),
936 	},
937 	.raise_tpl = efi_raise_tpl,
938 	.restore_tpl = efi_restore_tpl,
939 	.allocate_pages = efi_allocate_pages_ext,
940 	.free_pages = efi_free_pages_ext,
941 	.get_memory_map = efi_get_memory_map_ext,
942 	.allocate_pool = efi_allocate_pool_ext,
943 	.free_pool = efi_free_pool_ext,
944 	.create_event = efi_create_event,
945 	.set_timer = efi_set_timer,
946 	.wait_for_event = efi_wait_for_event,
947 	.signal_event = efi_signal_event,
948 	.close_event = efi_close_event,
949 	.check_event = efi_check_event,
950 	.install_protocol_interface = efi_install_protocol_interface_ext,
951 	.reinstall_protocol_interface = efi_reinstall_protocol_interface,
952 	.uninstall_protocol_interface = efi_uninstall_protocol_interface_ext,
953 	.handle_protocol = efi_handle_protocol,
954 	.reserved = NULL,
955 	.register_protocol_notify = efi_register_protocol_notify,
956 	.locate_handle = efi_locate_handle,
957 	.locate_device_path = efi_locate_device_path,
958 	.install_configuration_table = efi_install_configuration_table_ext,
959 	.load_image = efi_load_image,
960 	.start_image = efi_start_image,
961 	.exit = efi_exit,
962 	.unload_image = efi_unload_image,
963 	.exit_boot_services = efi_exit_boot_services,
964 	.get_next_monotonic_count = efi_get_next_monotonic_count,
965 	.stall = efi_stall,
966 	.set_watchdog_timer = efi_set_watchdog_timer,
967 	.connect_controller = efi_connect_controller,
968 	.disconnect_controller = efi_disconnect_controller,
969 	.open_protocol = efi_open_protocol,
970 	.close_protocol = efi_close_protocol,
971 	.open_protocol_information = efi_open_protocol_information,
972 	.protocols_per_handle = efi_protocols_per_handle,
973 	.locate_handle_buffer = efi_locate_handle_buffer,
974 	.locate_protocol = efi_locate_protocol,
975 	.install_multiple_protocol_interfaces = efi_install_multiple_protocol_interfaces,
976 	.uninstall_multiple_protocol_interfaces = efi_uninstall_multiple_protocol_interfaces,
977 	.calculate_crc32 = efi_calculate_crc32,
978 	.copy_mem = efi_copy_mem,
979 	.set_mem = efi_set_mem,
980 };
981 
982 
983 static uint16_t __efi_runtime_data firmware_vendor[] =
984 	{ 'D','a','s',' ','U','-','b','o','o','t',0 };
985 
986 struct efi_system_table __efi_runtime_data systab = {
987 	.hdr = {
988 		.signature = EFI_SYSTEM_TABLE_SIGNATURE,
989 		.revision = 0x20005, /* 2.5 */
990 		.headersize = sizeof(struct efi_table_hdr),
991 	},
992 	.fw_vendor = (long)firmware_vendor,
993 	.con_in = (void*)&efi_con_in,
994 	.con_out = (void*)&efi_con_out,
995 	.std_err = (void*)&efi_con_out,
996 	.runtime = (void*)&efi_runtime_services,
997 	.boottime = (void*)&efi_boot_services,
998 	.nr_tables = 0,
999 	.tables = (void*)efi_conf_table,
1000 };
1001