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1 /** @file
2 Include file that supports UEFI.
3
4 This include file must only contain things defined in the UEFI 2.1 specification.
5 If a code construct is defined in the UEFI 2.1 specification it must be included
6 by this include file.
7
8 Copyright (c) 2006 - 2009, Intel Corporation<BR>
9 Portions copyright (c) 2008-2009 Apple Inc. All rights reserved.<BR>
10 All rights reserved. This program and the accompanying materials
11 are licensed and made available under the terms and conditions of the BSD License
12 which accompanies this distribution. The full text of the license may be found at
13 http://opensource.org/licenses/bsd-license.php
14
15 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
16 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
17
18 **/
19
20 #ifndef __UEFI_SPEC_H__
21 #define __UEFI_SPEC_H__
22
23 #include <Uefi/UefiMultiPhase.h>
24
25 #include <Protocol/DevicePath.h>
26 #include <Protocol/SimpleTextIn.h>
27 #include <Protocol/SimpleTextOut.h>
28
29 ///
30 /// Enumeration of EFI memory allocation types.
31 ///
32 typedef enum {
33 ///
34 /// Allocate any available range of pages that satisfies the request
35 ///
36 AllocateAnyPages,
37 ///
38 /// Allocate any available range of pages whose uppermost address is less than
39 /// or equal to a specified maximum address
40 ///
41 AllocateMaxAddress,
42 ///
43 /// Allocate pages at a specified address
44 ///
45 AllocateAddress,
46 ///
47 /// Maximum enumeration value that may be used for bounds checking
48 ///
49 MaxAllocateType
50 } EFI_ALLOCATE_TYPE;
51
52 //
53 // Bit definitions for EFI_TIME.Daylight
54 //
55 #define EFI_TIME_ADJUST_DAYLIGHT 0x01
56 #define EFI_TIME_IN_DAYLIGHT 0x02
57
58 ///
59 /// Value definition for EFI_TIME.TimeZone
60 ///
61 #define EFI_UNSPECIFIED_TIMEZONE 0x07FF
62
63 //
64 // Memory cacheability attributes
65 //
66 #define EFI_MEMORY_UC 0x0000000000000001ULL
67 #define EFI_MEMORY_WC 0x0000000000000002ULL
68 #define EFI_MEMORY_WT 0x0000000000000004ULL
69 #define EFI_MEMORY_WB 0x0000000000000008ULL
70 #define EFI_MEMORY_UCE 0x0000000000000010ULL
71 //
72 // Physical memory protection attributes
73 //
74 #define EFI_MEMORY_WP 0x0000000000001000ULL
75 #define EFI_MEMORY_RP 0x0000000000002000ULL
76 #define EFI_MEMORY_XP 0x0000000000004000ULL
77 //
78 // Runtime memory attribute
79 //
80 #define EFI_MEMORY_RUNTIME 0x8000000000000000ULL
81
82 ///
83 /// Memory descriptor version number
84 ///
85 #define EFI_MEMORY_DESCRIPTOR_VERSION 1
86
87 ///
88 /// Definition of an EFI memory descriptor
89 ///
90 typedef struct {
91 ///
92 /// Type of the memory region. See EFI_MEMORY_TYPE
93 ///
94 UINT32 Type;
95 ///
96 /// Physical address of the first byte of the memory region. Must aligned
97 /// on a 4 KB boundary.
98 ///
99 EFI_PHYSICAL_ADDRESS PhysicalStart;
100 ///
101 /// Virtual address of the first byte of the memory region. Must aligned
102 /// on a 4 KB boundary.
103 ///
104 EFI_VIRTUAL_ADDRESS VirtualStart;
105 ///
106 /// Number of 4KB pages in the memory region.
107 ///
108 UINT64 NumberOfPages;
109 ///
110 /// Attributes of the memory region that describe the bit mask of capabilities
111 /// for that memory region, and not necessarily the current settings for that
112 /// memory region.
113 ///
114 UINT64 Attribute;
115 } EFI_MEMORY_DESCRIPTOR;
116
117 /**
118 Allocates memory pages from the system.
119
120 @param Type The type of allocation to perform.
121 @param MemoryType The type of memory to allocate.
122 @param Pages The number of contiguous 4 KB pages to allocate.
123 @param Memory Pointer to a physical address. On input, the way in which the address is
124 used depends on the value of Type.
125
126 @retval EFI_SUCCESS The requested pages were allocated.
127 @retval EFI_INVALID_PARAMETER 1) Type is not AllocateAnyPages or
128 AllocateMaxAddress or AllocateAddress.
129 2) MemoryType is in the range
130 EfiMaxMemoryType..0x7FFFFFFF.
131 @retval EFI_OUT_OF_RESOURCES The pages could not be allocated.
132 @retval EFI_NOT_FOUND The requested pages could not be found.
133
134 **/
135 typedef
136 EFI_STATUS
137 (EFIAPI *EFI_ALLOCATE_PAGES)(
138 IN EFI_ALLOCATE_TYPE Type,
139 IN EFI_MEMORY_TYPE MemoryType,
140 IN UINTN Pages,
141 IN OUT EFI_PHYSICAL_ADDRESS *Memory
142 );
143
144 /**
145 Frees memory pages.
146
147 @param Memory The base physical address of the pages to be freed.
148 @param Pages The number of contiguous 4 KB pages to free.
149
150 @retval EFI_SUCCESS The requested pages were freed.
151 @retval EFI_INVALID_PARAMETER Memory is not a page-aligned address or Pages is invalid.
152 @retval EFI_NOT_FOUND The requested memory pages were not allocated with
153 AllocatePages().
154
155 **/
156 typedef
157 EFI_STATUS
158 (EFIAPI *EFI_FREE_PAGES)(
159 IN EFI_PHYSICAL_ADDRESS Memory,
160 IN UINTN Pages
161 );
162
163 /**
164 Returns the current memory map.
165
166 @param MemoryMapSize A pointer to the size, in bytes, of the MemoryMap buffer.
167 On input, this is the size of the buffer allocated by the caller.
168 On output, it is the size of the buffer returned by the firmware if
169 the buffer was large enough, or the size of the buffer needed to contain
170 the map if the buffer was too small.
171 @param MemoryMap A pointer to the buffer in which firmware places the current memory
172 map.
173 @param MapKey A pointer to the location in which firmware returns the key for the
174 current memory map.
175 @param DescriptorSize A pointer to the location in which firmware returns the size, in bytes, of
176 an individual EFI_MEMORY_DESCRIPTOR.
177 @param DescriptorVersion A pointer to the location in which firmware returns the version number
178 associated with the EFI_MEMORY_DESCRIPTOR.
179
180 @retval EFI_SUCCESS The memory map was returned in the MemoryMap buffer.
181 @retval EFI_BUFFER_TOO_SMALL The MemoryMap buffer was too small. The current buffer size
182 needed to hold the memory map is returned in MemoryMapSize.
183 @retval EFI_INVALID_PARAMETER 1) MemoryMapSize is NULL.
184 2) The MemoryMap buffer is not too small and MemoryMap is
185 NULL.
186
187 **/
188 typedef
189 EFI_STATUS
190 (EFIAPI *EFI_GET_MEMORY_MAP)(
191 IN OUT UINTN *MemoryMapSize,
192 IN OUT EFI_MEMORY_DESCRIPTOR *MemoryMap,
193 OUT UINTN *MapKey,
194 OUT UINTN *DescriptorSize,
195 OUT UINT32 *DescriptorVersion
196 );
197
198 /**
199 Allocates pool memory.
200
201 @param PoolType The type of pool to allocate.
202 @param Size The number of bytes to allocate from the pool.
203 @param Buffer A pointer to a pointer to the allocated buffer if the call succeeds;
204 undefined otherwise.
205
206 @retval EFI_SUCCESS The requested number of bytes was allocated.
207 @retval EFI_OUT_OF_RESOURCES The pool requested could not be allocated.
208 @retval EFI_INVALID_PARAMETER PoolType was invalid.
209
210 **/
211 typedef
212 EFI_STATUS
213 (EFIAPI *EFI_ALLOCATE_POOL)(
214 IN EFI_MEMORY_TYPE PoolType,
215 IN UINTN Size,
216 OUT VOID **Buffer
217 );
218
219 /**
220 Returns pool memory to the system.
221
222 @param Buffer Pointer to the buffer to free.
223
224 @retval EFI_SUCCESS The memory was returned to the system.
225 @retval EFI_INVALID_PARAMETER Buffer was invalid.
226
227 **/
228 typedef
229 EFI_STATUS
230 (EFIAPI *EFI_FREE_POOL)(
231 IN VOID *Buffer
232 );
233
234 /**
235 Changes the runtime addressing mode of EFI firmware from physical to virtual.
236
237 @param MemoryMapSize The size in bytes of VirtualMap.
238 @param DescriptorSize The size in bytes of an entry in the VirtualMap.
239 @param DescriptorVersion The version of the structure entries in VirtualMap.
240 @param VirtualMap An array of memory descriptors which contain new virtual
241 address mapping information for all runtime ranges.
242
243 @retval EFI_SUCCESS The virtual address map has been applied.
244 @retval EFI_UNSUPPORTED EFI firmware is not at runtime, or the EFI firmware is already in
245 virtual address mapped mode.
246 @retval EFI_INVALID_PARAMETER DescriptorSize or DescriptorVersion is invalid.
247 @retval EFI_NO_MAPPING A virtual address was not supplied for a range in the memory
248 map that requires a mapping.
249 @retval EFI_NOT_FOUND A virtual address was supplied for an address that is not found
250 in the memory map.
251
252 **/
253 typedef
254 EFI_STATUS
255 (EFIAPI *EFI_SET_VIRTUAL_ADDRESS_MAP)(
256 IN UINTN MemoryMapSize,
257 IN UINTN DescriptorSize,
258 IN UINT32 DescriptorVersion,
259 IN EFI_MEMORY_DESCRIPTOR *VirtualMap
260 );
261
262 /**
263 Connects one or more drivers to a controller.
264
265 @param ControllerHandle The handle of the controller to which driver(s) are to be connected.
266 @param DriverImageHandle A pointer to an ordered list handles that support the
267 EFI_DRIVER_BINDING_PROTOCOL.
268 @param RemainingDevicePath A pointer to the device path that specifies a child of the
269 controller specified by ControllerHandle.
270 @param Recursive If TRUE, then ConnectController() is called recursively
271 until the entire tree of controllers below the controller specified
272 by ControllerHandle have been created. If FALSE, then
273 the tree of controllers is only expanded one level.
274
275 @retval EFI_SUCCESS 1) One or more drivers were connected to ControllerHandle.
276 2) No drivers were connected to ControllerHandle, but
277 RemainingDevicePath is not NULL, and it is an End Device
278 Path Node.
279 @retval EFI_INVALID_PARAMETER ControllerHandle is not a valid EFI_HANDLE.
280 @retval EFI_NOT_FOUND 1) There are no EFI_DRIVER_BINDING_PROTOCOL instances
281 present in the system.
282 2) No drivers were connected to ControllerHandle.
283
284 **/
285 typedef
286 EFI_STATUS
287 (EFIAPI *EFI_CONNECT_CONTROLLER)(
288 IN EFI_HANDLE ControllerHandle,
289 IN EFI_HANDLE *DriverImageHandle, OPTIONAL
290 IN EFI_DEVICE_PATH_PROTOCOL *RemainingDevicePath, OPTIONAL
291 IN BOOLEAN Recursive
292 );
293
294 /**
295 Disconnects one or more drivers from a controller.
296
297 @param ControllerHandle The handle of the controller from which driver(s) are to be disconnected.
298 @param DriverImageHandle The driver to disconnect from ControllerHandle.
299 If DriverImageHandle is NULL, then all the drivers currently managing
300 ControllerHandle are disconnected from ControllerHandle.
301 @param ChildHandle The handle of the child to destroy.
302 If ChildHandle is NULL, then all the children of ControllerHandle are
303 destroyed before the drivers are disconnected from ControllerHandle.
304
305 @retval EFI_SUCCESS 1) One or more drivers were disconnected from the controller.
306 2) On entry, no drivers are managing ControllerHandle.
307 3) DriverImageHandle is not NULL, and on entry
308 DriverImageHandle is not managing ControllerHandle.
309 @retval EFI_INVALID_PARAMETER 1) ControllerHandle is not a valid EFI_HANDLE.
310 2) DriverImageHandle is not NULL, and it is not a valid EFI_HANDLE.
311 3) ChildHandle is not NULL, and it is not a valid EFI_HANDLE.
312 4) DriverImageHandle does not support the EFI_DRIVER_BINDING_PROTOCOL.
313 @retval EFI_OUT_OF_RESOURCES There are not enough resources available to disconnect any drivers from
314 ControllerHandle.
315 @retval EFI_DEVICE_ERROR The controller could not be disconnected because of a device error.
316
317 **/
318 typedef
319 EFI_STATUS
320 (EFIAPI *EFI_DISCONNECT_CONTROLLER)(
321 IN EFI_HANDLE ControllerHandle,
322 IN EFI_HANDLE DriverImageHandle, OPTIONAL
323 IN EFI_HANDLE ChildHandle OPTIONAL
324 );
325
326
327
328 //
329 // ConvertPointer DebugDisposition type.
330 //
331 #define EFI_OPTIONAL_PTR 0x00000001
332
333 /**
334 Determines the new virtual address that is to be used on subsequent memory accesses.
335
336 @param DebugDisposition Supplies type information for the pointer being converted.
337 @param Address A pointer to a pointer that is to be fixed to be the value needed
338 for the new virtual address mappings being applied.
339
340 @retval EFI_SUCCESS The pointer pointed to by Address was modified.
341 @retval EFI_INVALID_PARAMETER 1) Address is NULL.
342 2) *Address is NULL and DebugDisposition does
343 not have the EFI_OPTIONAL_PTR bit set.
344 @retval EFI_NOT_FOUND The pointer pointed to by Address was not found to be part
345 of the current memory map. This is normally fatal.
346
347 **/
348 typedef
349 EFI_STATUS
350 (EFIAPI *EFI_CONVERT_POINTER)(
351 IN UINTN DebugDisposition,
352 IN OUT VOID **Address
353 );
354
355
356 //
357 // These types can be ORed together as needed - for example,
358 // EVT_TIMER might be Ored with EVT_NOTIFY_WAIT or
359 // EVT_NOTIFY_SIGNAL.
360 //
361 #define EVT_TIMER 0x80000000
362 #define EVT_RUNTIME 0x40000000
363 #define EVT_NOTIFY_WAIT 0x00000100
364 #define EVT_NOTIFY_SIGNAL 0x00000200
365
366 #define EVT_SIGNAL_EXIT_BOOT_SERVICES 0x00000201
367 #define EVT_SIGNAL_VIRTUAL_ADDRESS_CHANGE 0x60000202
368
369 //
370 // The event's NotifyContext pointer points to a runtime memory
371 // address.
372 // The event is deprecated in UEFI2.0 and later specifications.
373 //
374 #define EVT_RUNTIME_CONTEXT 0x20000000
375
376
377 /**
378 Invoke a notification event
379
380 @param Event Event whose notification function is being invoked.
381 @param Context Pointer to the notification function's context,
382 which is implementation-dependent.
383
384 **/
385 typedef
386 VOID
387 (EFIAPI *EFI_EVENT_NOTIFY)(
388 IN EFI_EVENT Event,
389 IN VOID *Context
390 );
391
392 /**
393 Creates an event.
394
395 @param Type The type of event to create and its mode and attributes.
396 @param NotifyTpl The task priority level of event notifications, if needed.
397 @param NotifyFunction Pointer to the event's notification function, if any.
398 @param NotifyContext Pointer to the notification function's context; corresponds to parameter
399 Context in the notification function.
400 @param Event Pointer to the newly created event if the call succeeds; undefined
401 otherwise.
402
403 @retval EFI_SUCCESS The event structure was created.
404 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.
405 @retval EFI_OUT_OF_RESOURCES The event could not be allocated.
406
407 **/
408 typedef
409 EFI_STATUS
410 (EFIAPI *EFI_CREATE_EVENT)(
411 IN UINT32 Type,
412 IN EFI_TPL NotifyTpl,
413 IN EFI_EVENT_NOTIFY NotifyFunction,
414 IN VOID *NotifyContext,
415 OUT EFI_EVENT *Event
416 );
417
418 /**
419 Creates an event in a group.
420
421 @param Type The type of event to create and its mode and attributes.
422 @param NotifyTpl The task priority level of event notifications,if needed.
423 @param NotifyFunction Pointer to the event's notification function, if any.
424 @param NotifyContext Pointer to the notification function's context; corresponds to parameter
425 Context in the notification function.
426 @param EventGroup Pointer to the unique identifier of the group to which this event belongs.
427 If this is NULL, then the function behaves as if the parameters were passed
428 to CreateEvent.
429 @param Event Pointer to the newly created event if the call succeeds; undefined
430 otherwise.
431
432 @retval EFI_SUCCESS The event structure was created.
433 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.
434 @retval EFI_OUT_OF_RESOURCES The event could not be allocated.
435
436 **/
437 typedef
438 EFI_STATUS
439 (EFIAPI *EFI_CREATE_EVENT_EX)(
440 IN UINT32 Type,
441 IN EFI_TPL NotifyTpl,
442 IN EFI_EVENT_NOTIFY NotifyFunction OPTIONAL,
443 IN CONST VOID *NotifyContext OPTIONAL,
444 IN CONST EFI_GUID *EventGroup OPTIONAL,
445 OUT EFI_EVENT *Event
446 );
447
448 ///
449 /// Timer delay types
450 ///
451 typedef enum {
452 ///
453 /// An event's timer settings is to be cancelled and not trigger time is to be set
454 ///
455 TimerCancel,
456 ///
457 /// An event is to be signalled periodically at a specified interval from the current time.
458 ///
459 TimerPeriodic,
460 ///
461 /// An event is to be signalled once at a specified interval from the current time.
462 ///
463 TimerRelative
464 } EFI_TIMER_DELAY;
465
466 /**
467 Sets the type of timer and the trigger time for a timer event.
468
469 @param Event The timer event that is to be signaled at the specified time.
470 @param Type The type of time that is specified in TriggerTime.
471 @param TriggerTime The number of 100ns units until the timer expires.
472 A TriggerTime of 0 is legal.
473 If Type is TimerRelative and TriggerTime is 0, then the timer
474 event will be signaled on the next timer tick.
475 If Type is TimerPeriodic and TriggerTime is 0, then the timer
476 event will be signaled on every timer tick.
477
478 @retval EFI_SUCCESS The event has been set to be signaled at the requested time.
479 @retval EFI_INVALID_PARAMETER Event or Type is not valid.
480
481 **/
482 typedef
483 EFI_STATUS
484 (EFIAPI *EFI_SET_TIMER)(
485 IN EFI_EVENT Event,
486 IN EFI_TIMER_DELAY Type,
487 IN UINT64 TriggerTime
488 );
489
490 /**
491 Signals an event.
492
493 @param Event The event to signal.
494
495 @retval EFI_SUCCESS The event has been signaled.
496
497 **/
498 typedef
499 EFI_STATUS
500 (EFIAPI *EFI_SIGNAL_EVENT)(
501 IN EFI_EVENT Event
502 );
503
504 /**
505 Stops execution until an event is signaled.
506
507 @param NumberOfEvents The number of events in the Event array.
508 @param Event An array of EFI_EVENT.
509 @param Index Pointer to the index of the event which satisfied the wait condition.
510
511 @retval EFI_SUCCESS The event indicated by Index was signaled.
512 @retval EFI_INVALID_PARAMETER 1) NumberOfEvents is 0.
513 2) The event indicated by Index is of type
514 EVT_NOTIFY_SIGNAL.
515 @retval EFI_UNSUPPORTED The current TPL is not TPL_APPLICATION.
516
517 **/
518 typedef
519 EFI_STATUS
520 (EFIAPI *EFI_WAIT_FOR_EVENT)(
521 IN UINTN NumberOfEvents,
522 IN EFI_EVENT *Event,
523 OUT UINTN *Index
524 );
525
526 /**
527 Closes an event.
528
529 @param Event The event to close.
530
531 @retval EFI_SUCCESS The event has been closed.
532
533 **/
534 typedef
535 EFI_STATUS
536 (EFIAPI *EFI_CLOSE_EVENT)(
537 IN EFI_EVENT Event
538 );
539
540 /**
541 Checks whether an event is in the signaled state.
542
543 @param Event The event to check.
544
545 @retval EFI_SUCCESS The event is in the signaled state.
546 @retval EFI_NOT_READY The event is not in the signaled state.
547 @retval EFI_INVALID_PARAMETER Event is of type EVT_NOTIFY_SIGNAL.
548
549 **/
550 typedef
551 EFI_STATUS
552 (EFIAPI *EFI_CHECK_EVENT)(
553 IN EFI_EVENT Event
554 );
555
556
557 //
558 // Task priority level
559 //
560 #define TPL_APPLICATION 4
561 #define TPL_CALLBACK 8
562 #define TPL_NOTIFY 16
563 #define TPL_HIGH_LEVEL 31
564
565
566 /**
567 Raises a task's priority level and returns its previous level.
568
569 @param NewTpl The new task priority level.
570
571 @return Previous task priority level
572
573 **/
574 typedef
575 EFI_TPL
576 (EFIAPI *EFI_RAISE_TPL)(
577 IN EFI_TPL NewTpl
578 );
579
580 /**
581 Restores a task's priority level to its previous value.
582
583 @param OldTpl The previous task priority level to restore.
584
585 **/
586 typedef
587 VOID
588 (EFIAPI *EFI_RESTORE_TPL)(
589 IN EFI_TPL OldTpl
590 );
591
592 /**
593 Returns the value of a variable.
594
595 @param VariableName A Null-terminated Unicode string that is the name of the
596 vendor's variable.
597 @param VendorGuid A unique identifier for the vendor.
598 @param Attributes If not NULL, a pointer to the memory location to return the
599 attributes bitmask for the variable.
600 @param DataSize On input, the size in bytes of the return Data buffer.
601 On output the size of data returned in Data.
602 @param Data The buffer to return the contents of the variable.
603
604 @retval EFI_SUCCESS The function completed successfully.
605 @retval EFI_NOT_FOUND The variable was not found.
606 @retval EFI_BUFFER_TOO_SMALL The DataSize is too small for the result.
607 @retval EFI_INVALID_PARAMETER VariableName is NULL.
608 @retval EFI_INVALID_PARAMETER VendorGuid is NULL.
609 @retval EFI_INVALID_PARAMETER DataSize is NULL.
610 @retval EFI_INVALID_PARAMETER The DataSize is not too small and Data is NULL.
611 @retval EFI_DEVICE_ERROR The variable could not be retrieved due to a hardware error.
612 @retval EFI_SECURITY_VIOLATION The variable could not be retrieved due to an authentication failure.
613
614 **/
615 typedef
616 EFI_STATUS
617 (EFIAPI *EFI_GET_VARIABLE)(
618 IN CHAR16 *VariableName,
619 IN EFI_GUID *VendorGuid,
620 OUT UINT32 *Attributes, OPTIONAL
621 IN OUT UINTN *DataSize,
622 OUT VOID *Data
623 );
624
625 /**
626 Enumerates the current variable names.
627
628 @param VariableNameSize The size of the VariableName buffer.
629 @param VariableName On input, supplies the last VariableName that was returned
630 by GetNextVariableName(). On output, returns the Nullterminated
631 Unicode string of the current variable.
632 @param VendorGuid On input, supplies the last VendorGuid that was returned by
633 GetNextVariableName(). On output, returns the
634 VendorGuid of the current variable.
635
636 @retval EFI_SUCCESS The function completed successfully.
637 @retval EFI_NOT_FOUND The next variable was not found.
638 @retval EFI_BUFFER_TOO_SMALL The VariableNameSize is too small for the result.
639 @retval EFI_INVALID_PARAMETER VariableNameSize is NULL.
640 @retval EFI_INVALID_PARAMETER VariableName is NULL.
641 @retval EFI_INVALID_PARAMETER VendorGuid is NULL.
642 @retval EFI_DEVICE_ERROR The variable could not be retrieved due to a hardware error.
643
644 **/
645 typedef
646 EFI_STATUS
647 (EFIAPI *EFI_GET_NEXT_VARIABLE_NAME)(
648 IN OUT UINTN *VariableNameSize,
649 IN OUT CHAR16 *VariableName,
650 IN OUT EFI_GUID *VendorGuid
651 );
652
653 /**
654 Sets the value of a variable.
655
656 @param VariableName A Null-terminated string that is the name of the vendor's variable.
657 Each VariableName is unique for each VendorGuid. VariableName must
658 contain 1 or more characters. If VariableName is an empty string,
659 then EFI_INVALID_PARAMETER is returned.
660 @param VendorGuid A unique identifier for the vendor.
661 @param Attributes Attributes bitmask to set for the variable.
662 @param DataSize The size in bytes of the Data buffer. A size of zero causes the
663 variable to be deleted.
664 @param Data The contents for the variable.
665
666 @retval EFI_SUCCESS The firmware has successfully stored the variable and its data as
667 defined by the Attributes.
668 @retval EFI_INVALID_PARAMETER An invalid combination of attribute bits was supplied, or the
669 DataSize exceeds the maximum allowed.
670 @retval EFI_INVALID_PARAMETER VariableName is an empty string.
671 @retval EFI_OUT_OF_RESOURCES Not enough storage is available to hold the variable and its data.
672 @retval EFI_DEVICE_ERROR The variable could not be retrieved due to a hardware error.
673 @retval EFI_WRITE_PROTECTED The variable in question is read-only.
674 @retval EFI_WRITE_PROTECTED The variable in question cannot be deleted.
675 @retval EFI_SECURITY_VIOLATION The variable could not be written due to EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS
676 set but the AuthInfo does NOT pass the validation check carried out
677 by the firmware.
678 @retval EFI_NOT_FOUND The variable trying to be updated or deleted was not found.
679
680 **/
681 typedef
682 EFI_STATUS
683 (EFIAPI *EFI_SET_VARIABLE)(
684 IN CHAR16 *VariableName,
685 IN EFI_GUID *VendorGuid,
686 IN UINT32 Attributes,
687 IN UINTN DataSize,
688 IN VOID *Data
689 );
690
691
692 ///
693 /// This provides the capabilities of the
694 /// real time clock device as exposed through the EFI interfaces.
695 ///
696 typedef struct {
697 ///
698 /// Provides the reporting resolution of the real-time clock device in
699 /// counts per second. For a normal PC-AT CMOS RTC device, this
700 /// value would be 1 Hz, or 1, to indicate that the device only reports
701 /// the time to the resolution of 1 second.
702 ///
703 UINT32 Resolution;
704 ///
705 /// Provides the timekeeping accuracy of the real-time clock in an
706 /// error rate of 1E-6 parts per million. For a clock with an accuracy
707 /// of 50 parts per million, the value in this field would be
708 /// 50,000,000.
709 ///
710 UINT32 Accuracy;
711 ///
712 /// A TRUE indicates that a time set operation clears the device's
713 /// time below the Resolution reporting level. A FALSE
714 /// indicates that the state below the Resolution level of the
715 /// device is not cleared when the time is set. Normal PC-AT CMOS
716 /// RTC devices set this value to FALSE.
717 ///
718 BOOLEAN SetsToZero;
719 } EFI_TIME_CAPABILITIES;
720
721 /**
722 Returns the current time and date information, and the time-keeping capabilities
723 of the hardware platform.
724
725 @param Time A pointer to storage to receive a snapshot of the current time.
726 @param Capabilities An optional pointer to a buffer to receive the real time clock
727 device's capabilities.
728
729 @retval EFI_SUCCESS The operation completed successfully.
730 @retval EFI_INVALID_PARAMETER Time is NULL.
731 @retval EFI_DEVICE_ERROR The time could not be retrieved due to hardware error.
732
733 **/
734 typedef
735 EFI_STATUS
736 (EFIAPI *EFI_GET_TIME)(
737 OUT EFI_TIME *Time,
738 OUT EFI_TIME_CAPABILITIES *Capabilities OPTIONAL
739 );
740
741 /**
742 Sets the current local time and date information.
743
744 @param Time A pointer to the current time.
745
746 @retval EFI_SUCCESS The operation completed successfully.
747 @retval EFI_INVALID_PARAMETER A time field is out of range.
748 @retval EFI_DEVICE_ERROR The time could not be set due due to hardware error.
749
750 **/
751 typedef
752 EFI_STATUS
753 (EFIAPI *EFI_SET_TIME)(
754 IN EFI_TIME *Time
755 );
756
757 /**
758 Returns the current wakeup alarm clock setting.
759
760 @param Enabled Indicates if the alarm is currently enabled or disabled.
761 @param Pending Indicates if the alarm signal is pending and requires acknowledgement.
762 @param Time The current alarm setting.
763
764 @retval EFI_SUCCESS The alarm settings were returned.
765 @retval EFI_INVALID_PARAMETER Enabled is NULL.
766 @retval EFI_INVALID_PARAMETER Pending is NULL.
767 @retval EFI_INVALID_PARAMETER Time is NULL.
768 @retval EFI_DEVICE_ERROR The wakeup time could not be retrieved due to a hardware error.
769 @retval EFI_UNSUPPORTED A wakeup timer is not supported on this platform.
770
771 **/
772 typedef
773 EFI_STATUS
774 (EFIAPI *EFI_GET_WAKEUP_TIME)(
775 OUT BOOLEAN *Enabled,
776 OUT BOOLEAN *Pending,
777 OUT EFI_TIME *Time
778 );
779
780 /**
781 Sets the system wakeup alarm clock time.
782
783 @param Enabled Enable or disable the wakeup alarm.
784 @param Time If Enable is TRUE, the time to set the wakeup alarm for.
785 If Enable is FALSE, then this parameter is optional, and may be NULL.
786
787 @retval EFI_SUCCESS If Enable is TRUE, then the wakeup alarm was enabled. If
788 Enable is FALSE, then the wakeup alarm was disabled.
789 @retval EFI_INVALID_PARAMETER A time field is out of range.
790 @retval EFI_DEVICE_ERROR The wakeup time could not be set due to a hardware error.
791 @retval EFI_UNSUPPORTED A wakeup timer is not supported on this platform.
792
793 **/
794 typedef
795 EFI_STATUS
796 (EFIAPI *EFI_SET_WAKEUP_TIME)(
797 IN BOOLEAN Enable,
798 IN EFI_TIME *Time OPTIONAL
799 );
800
801 /**
802 Loads an EFI image into memory.
803
804 @param BootPolicy If TRUE, indicates that the request originates from the boot
805 manager, and that the boot manager is attempting to load
806 FilePath as a boot selection. Ignored if SourceBuffer is
807 not NULL.
808 @param ParentImageHandle The caller's image handle.
809 @param DevicePath The DeviceHandle specific file path from which the image is
810 loaded.
811 @param SourceBuffer If not NULL, a pointer to the memory location containing a copy
812 of the image to be loaded.
813 @param SourceSize The size in bytes of SourceBuffer. Ignored if SourceBuffer is NULL.
814 @param ImageHandle Pointer to the returned image handle that is created when the
815 image is successfully loaded.
816
817 @retval EFI_SUCCESS Image was loaded into memory correctly.
818 @retval EFI_NOT_FOUND Both SourceBuffer and DevicePath are NULL.
819 @retval EFI_INVALID_PARAMETER One or more parametes are invalid.
820 @retval EFI_UNSUPPORTED The image type is not supported.
821 @retval EFI_OUT_OF_RESOURCES Image was not loaded due to insufficient resources.
822 @retval EFI_LOAD_ERROR Image was not loaded because the image format was corrupt or not
823 understood.
824 @retval EFI_DEVICE_ERROR Image was not loaded because the device returned a read error.
825
826 **/
827 typedef
828 EFI_STATUS
829 (EFIAPI *EFI_IMAGE_LOAD)(
830 IN BOOLEAN BootPolicy,
831 IN EFI_HANDLE ParentImageHandle,
832 IN EFI_DEVICE_PATH_PROTOCOL *DevicePath,
833 IN VOID *SourceBuffer OPTIONAL,
834 IN UINTN SourceSize,
835 OUT EFI_HANDLE *ImageHandle
836 );
837
838 /**
839 Transfers control to a loaded image's entry point.
840
841 @param ImageHandle Handle of image to be started.
842 @param ExitDataSize Pointer to the size, in bytes, of ExitData.
843 @param ExitData Pointer to a pointer to a data buffer that includes a Null-terminated
844 Unicode string, optionally followed by additional binary data.
845
846 @retval EFI_INVALID_PARAMETER ImageHandle is either an invalid image handle or the image
847 has already been initialized with StartImage
848 @return Exit code from image
849
850 **/
851 typedef
852 EFI_STATUS
853 (EFIAPI *EFI_IMAGE_START)(
854 IN EFI_HANDLE ImageHandle,
855 OUT UINTN *ExitDataSize,
856 OUT CHAR16 **ExitData OPTIONAL
857 );
858
859 /**
860 Terminates a loaded EFI image and returns control to boot services.
861
862 @param ImageHandle Handle that identifies the image.
863 @param ExitStatus The image's exit code.
864 @param ExitDataSize The size, in bytes, of ExitData.
865 @param ExitData Pointer to a data buffer that includes a Null-terminated Unicode string,
866 optionally followed by additional binary data.
867
868 @retval EFI_SUCCESS The image specified by ImageHandle was unloaded.
869 @retval EFI_INVALID_PARAMETER The image specified by ImageHandle has been loaded and
870 started with LoadImage() and StartImage(), but the
871 image is not the currently executing image.
872
873 **/
874 typedef
875 EFI_STATUS
876 (EFIAPI *EFI_EXIT)(
877 IN EFI_HANDLE ImageHandle,
878 IN EFI_STATUS ExitStatus,
879 IN UINTN ExitDataSize,
880 IN CHAR16 *ExitData OPTIONAL
881 );
882
883 /**
884 Unloads an image.
885
886 @param ImageHandle Handle that identifies the image to be unloaded.
887
888 @retval EFI_SUCCESS The image has been unloaded.
889 @retval EFI_INVALID_PARAMETER ImageHandle is not a valid image handle.
890
891 **/
892 typedef
893 EFI_STATUS
894 (EFIAPI *EFI_IMAGE_UNLOAD)(
895 IN EFI_HANDLE ImageHandle
896 );
897
898 /**
899 Terminates all boot services.
900
901 @param ImageHandle Handle that identifies the exiting image.
902 @param MapKey Key to the latest memory map.
903
904 @retval EFI_SUCCESS Boot services have been terminated.
905 @retval EFI_INVALID_PARAMETER MapKey is incorrect.
906
907 **/
908 typedef
909 EFI_STATUS
910 (EFIAPI *EFI_EXIT_BOOT_SERVICES)(
911 IN EFI_HANDLE ImageHandle,
912 IN UINTN MapKey
913 );
914
915 /**
916 Induces a fine-grained stall.
917
918 @param Microseconds The number of microseconds to stall execution.
919
920 @retval EFI_SUCCESS Execution was stalled at least the requested number of
921 Microseconds.
922
923 **/
924 typedef
925 EFI_STATUS
926 (EFIAPI *EFI_STALL)(
927 IN UINTN Microseconds
928 );
929
930 /**
931 Sets the system's watchdog timer.
932
933 @param Timeout The number of seconds to set the watchdog timer to.
934 @param WatchdogCode The numeric code to log on a watchdog timer timeout event.
935 @param DataSize The size, in bytes, of WatchdogData.
936 @param WatchdogData A data buffer that includes a Null-terminated Unicode string, optionally
937 followed by additional binary data.
938
939 @retval EFI_SUCCESS The timeout has been set.
940 @retval EFI_INVALID_PARAMETER The supplied WatchdogCode is invalid.
941 @retval EFI_UNSUPPORTED The system does not have a watchdog timer.
942 @retval EFI_DEVICE_ERROR The watch dog timer could not be programmed due to a hardware
943 error.
944
945 **/
946 typedef
947 EFI_STATUS
948 (EFIAPI *EFI_SET_WATCHDOG_TIMER)(
949 IN UINTN Timeout,
950 IN UINT64 WatchdogCode,
951 IN UINTN DataSize,
952 IN CHAR16 *WatchdogData OPTIONAL
953 );
954
955 ///
956 /// Enumeration of reset types.
957 ///
958 typedef enum {
959 ///
960 /// Used to induce a system-wide reset. This sets all circuitry within the
961 /// system to its initial state. This type of reset is asynchronous to system
962 /// operation and operates withgout regard to cycle boundaries. EfiColdReset
963 /// is tantamount to a system power cycle.
964 ///
965 EfiResetCold,
966 ///
967 /// Used to induce a system-wide initialization. The processors are set to their
968 /// initial state, and pending cycles are not corrupted. If the system does
969 /// not support this reset type, then an EfiResetCold must be performed.
970 ///
971 EfiResetWarm,
972 ///
973 /// Used to induce an entry into a power state equivalent to the ACPI G2/S5 or G3
974 /// state. If the system does not support this reset type, then when the system
975 /// is rebooted, it should exhibit the EfiResetCold attributes.
976 ///
977 EfiResetShutdown
978 } EFI_RESET_TYPE;
979
980 /**
981 Resets the entire platform.
982
983 @param ResetType The type of reset to perform.
984 @param ResetStatus The status code for the reset.
985 @param DataSize The size, in bytes, of WatchdogData.
986 @param ResetData For a ResetType of EfiResetCold, EfiResetWarm, or
987 EfiResetShutdown the data buffer starts with a Null-terminated
988 Unicode string, optionally followed by additional binary data.
989
990 **/
991 typedef
992 VOID
993 (EFIAPI *EFI_RESET_SYSTEM)(
994 IN EFI_RESET_TYPE ResetType,
995 IN EFI_STATUS ResetStatus,
996 IN UINTN DataSize,
997 IN VOID *ResetData OPTIONAL
998 );
999
1000 /**
1001 Returns a monotonically increasing count for the platform.
1002
1003 @param Count Pointer to returned value.
1004
1005 @retval EFI_SUCCESS The next monotonic count was returned.
1006 @retval EFI_INVALID_PARAMETER Count is NULL.
1007 @retval EFI_DEVICE_ERROR The device is not functioning properly.
1008
1009 **/
1010 typedef
1011 EFI_STATUS
1012 (EFIAPI *EFI_GET_NEXT_MONOTONIC_COUNT)(
1013 OUT UINT64 *Count
1014 );
1015
1016 /**
1017 Returns the next high 32 bits of the platform's monotonic counter.
1018
1019 @param HighCount Pointer to returned value.
1020
1021 @retval EFI_SUCCESS The next high monotonic count was returned.
1022 @retval EFI_INVALID_PARAMETER HighCount is NULL.
1023 @retval EFI_DEVICE_ERROR The device is not functioning properly.
1024
1025 **/
1026 typedef
1027 EFI_STATUS
1028 (EFIAPI *EFI_GET_NEXT_HIGH_MONO_COUNT)(
1029 OUT UINT32 *HighCount
1030 );
1031
1032 /**
1033 Computes and returns a 32-bit CRC for a data buffer.
1034
1035 @param Data A pointer to the buffer on which the 32-bit CRC is to be computed.
1036 @param DataSize The number of bytes in the buffer Data.
1037 @param Crc32 The 32-bit CRC that was computed for the data buffer specified by Data
1038 and DataSize.
1039
1040 @retval EFI_SUCCESS The 32-bit CRC was computed for the data buffer and returned in
1041 Crc32.
1042 @retval EFI_INVALID_PARAMETER Data is NULL.
1043 @retval EFI_INVALID_PARAMETER Crc32 is NULL.
1044 @retval EFI_INVALID_PARAMETER DataSize is 0.
1045
1046 **/
1047 typedef
1048 EFI_STATUS
1049 (EFIAPI *EFI_CALCULATE_CRC32)(
1050 IN VOID *Data,
1051 IN UINTN DataSize,
1052 OUT UINT32 *Crc32
1053 );
1054
1055 /**
1056 Copies the contents of one buffer to another buffer.
1057
1058 @param Destination Pointer to the destination buffer of the memory copy.
1059 @param Source Pointer to the source buffer of the memory copy.
1060 @param Length Number of bytes to copy from Source to Destination.
1061
1062 **/
1063 typedef
1064 VOID
1065 (EFIAPI *EFI_COPY_MEM)(
1066 IN VOID *Destination,
1067 IN VOID *Source,
1068 IN UINTN Length
1069 );
1070
1071 /**
1072 The SetMem() function fills a buffer with a specified value.
1073
1074 @param Buffer Pointer to the buffer to fill.
1075 @param Size Number of bytes in Buffer to fill.
1076 @param Value Value to fill Buffer with.
1077
1078 **/
1079 typedef
1080 VOID
1081 (EFIAPI *EFI_SET_MEM)(
1082 IN VOID *Buffer,
1083 IN UINTN Size,
1084 IN UINT8 Value
1085 );
1086
1087 ///
1088 /// Enumeration of EFI Interface Types
1089 ///
1090 typedef enum {
1091 ///
1092 /// Indicates that the supplied protocol interface is supplied in native form.
1093 ///
1094 EFI_NATIVE_INTERFACE
1095 } EFI_INTERFACE_TYPE;
1096
1097 /**
1098 Installs a protocol interface on a device handle. If the handle does not exist, it is created and added
1099 to the list of handles in the system. InstallMultipleProtocolInterfaces() performs
1100 more error checking than InstallProtocolInterface(), so it is recommended that
1101 InstallMultipleProtocolInterfaces() be used in place of
1102 InstallProtocolInterface()
1103
1104 @param Handle A pointer to the EFI_HANDLE on which the interface is to be installed.
1105 @param Protocol The numeric ID of the protocol interface.
1106 @param InterfaceType Indicates whether Interface is supplied in native form.
1107 @param Interface A pointer to the protocol interface.
1108
1109 @retval EFI_SUCCESS The protocol interface was installed.
1110 @retval EFI_OUT_OF_RESOURCES Space for a new handle could not be allocated.
1111 @retval EFI_INVALID_PARAMETER Handle is NULL.
1112 @retval EFI_INVALID_PARAMETER Protocol is NULL.
1113 @retval EFI_INVALID_PARAMETER InterfaceType is not EFI_NATIVE_INTERFACE.
1114 @retval EFI_INVALID_PARAMETER Protocol is already installed on the handle specified by Handle.
1115
1116 **/
1117 typedef
1118 EFI_STATUS
1119 (EFIAPI *EFI_INSTALL_PROTOCOL_INTERFACE)(
1120 IN OUT EFI_HANDLE *Handle,
1121 IN EFI_GUID *Protocol,
1122 IN EFI_INTERFACE_TYPE InterfaceType,
1123 IN VOID *Interface
1124 );
1125
1126 /**
1127 Installs one or more protocol interfaces into the boot services environment.
1128
1129 @param Handle The handle to install the new protocol interfaces on, or NULL if a new
1130 handle is to be allocated.
1131 @param ... A variable argument list containing pairs of protocol GUIDs and protocol
1132 interfaces.
1133
1134 @retval EFI_SUCCESS All the protocol interface was installed.
1135 @retval EFI_OUT_OF_RESOURCES There was not enough memory in pool to install all the protocols.
1136 @retval EFI_ALREADY_STARTED A Device Path Protocol instance was passed in that is already present in
1137 the handle database.
1138
1139 **/
1140 typedef
1141 EFI_STATUS
1142 (EFIAPI *EFI_INSTALL_MULTIPLE_PROTOCOL_INTERFACES)(
1143 IN OUT EFI_HANDLE *Handle,
1144 ...
1145 );
1146
1147 /**
1148 Reinstalls a protocol interface on a device handle.
1149
1150 @param Handle Handle on which the interface is to be reinstalled.
1151 @param Protocol The numeric ID of the interface.
1152 @param OldInterface A pointer to the old interface. NULL can be used if a structure is not
1153 associated with Protocol.
1154 @param NewInterface A pointer to the new interface.
1155
1156 @retval EFI_SUCCESS The protocol interface was reinstalled.
1157 @retval EFI_NOT_FOUND The OldInterface on the handle was not found.
1158 @retval EFI_ACCESS_DENIED The protocol interface could not be reinstalled,
1159 because OldInterface is still being used by a
1160 driver that will not release it.
1161 @retval EFI_INVALID_PARAMETER Handle is not a valid EFI_HANDLE.
1162 @retval EFI_INVALID_PARAMETER Protocol is NULL.
1163
1164 **/
1165 typedef
1166 EFI_STATUS
1167 (EFIAPI *EFI_REINSTALL_PROTOCOL_INTERFACE)(
1168 IN EFI_HANDLE Handle,
1169 IN EFI_GUID *Protocol,
1170 IN VOID *OldInterface,
1171 IN VOID *NewInterface
1172 );
1173
1174 /**
1175 Removes a protocol interface from a device handle. It is recommended that
1176 UninstallMultipleProtocolInterfaces() be used in place of
1177 UninstallProtocolInterface().
1178
1179 @param Handle The handle on which the interface was installed.
1180 @param Protocol The numeric ID of the interface.
1181 @param Interface A pointer to the interface.
1182
1183 @retval EFI_SUCCESS The interface was removed.
1184 @retval EFI_NOT_FOUND The interface was not found.
1185 @retval EFI_ACCESS_DENIED The interface was not removed because the interface
1186 is still being used by a driver.
1187 @retval EFI_INVALID_PARAMETER Handle is not a valid EFI_HANDLE.
1188 @retval EFI_INVALID_PARAMETER Protocol is NULL.
1189
1190 **/
1191 typedef
1192 EFI_STATUS
1193 (EFIAPI *EFI_UNINSTALL_PROTOCOL_INTERFACE)(
1194 IN EFI_HANDLE Handle,
1195 IN EFI_GUID *Protocol,
1196 IN VOID *Interface
1197 );
1198
1199 /**
1200 Removes one or more protocol interfaces into the boot services environment.
1201
1202 @param Handle The handle to remove the protocol interfaces from.
1203 @param ... A variable argument list containing pairs of protocol GUIDs and
1204 protocol interfaces.
1205
1206 @retval EFI_SUCCESS All the protocol interfaces were removed.
1207 @retval EFI_INVALID_PARAMETER One of the protocol interfaces was not previously installed on Handle.
1208
1209 **/
1210 typedef
1211 EFI_STATUS
1212 (EFIAPI *EFI_UNINSTALL_MULTIPLE_PROTOCOL_INTERFACES)(
1213 IN EFI_HANDLE Handle,
1214 ...
1215 );
1216
1217 /**
1218 Queries a handle to determine if it supports a specified protocol.
1219
1220 @param Handle The handle being queried.
1221 @param Protocol The published unique identifier of the protocol.
1222 @param Interface Supplies the address where a pointer to the corresponding Protocol
1223 Interface is returned.
1224
1225 @retval EFI_SUCCESS The interface information for the specified protocol was returned.
1226 @retval EFI_UNSUPPORTED The device does not support the specified protocol.
1227 @retval EFI_INVALID_PARAMETER Handle is not a valid EFI_HANDLE.
1228 @retval EFI_INVALID_PARAMETER Protocol is NULL.
1229 @retval EFI_INVALID_PARAMETER Interface is NULL.
1230
1231 **/
1232 typedef
1233 EFI_STATUS
1234 (EFIAPI *EFI_HANDLE_PROTOCOL)(
1235 IN EFI_HANDLE Handle,
1236 IN EFI_GUID *Protocol,
1237 OUT VOID **Interface
1238 );
1239
1240 #define EFI_OPEN_PROTOCOL_BY_HANDLE_PROTOCOL 0x00000001
1241 #define EFI_OPEN_PROTOCOL_GET_PROTOCOL 0x00000002
1242 #define EFI_OPEN_PROTOCOL_TEST_PROTOCOL 0x00000004
1243 #define EFI_OPEN_PROTOCOL_BY_CHILD_CONTROLLER 0x00000008
1244 #define EFI_OPEN_PROTOCOL_BY_DRIVER 0x00000010
1245 #define EFI_OPEN_PROTOCOL_EXCLUSIVE 0x00000020
1246
1247 /**
1248 Queries a handle to determine if it supports a specified protocol. If the protocol is supported by the
1249 handle, it opens the protocol on behalf of the calling agent.
1250
1251 @param Handle The handle for the protocol interface that is being opened.
1252 @param Protocol The published unique identifier of the protocol.
1253 @param Interface Supplies the address where a pointer to the corresponding Protocol
1254 Interface is returned.
1255 @param AgentHandle The handle of the agent that is opening the protocol interface
1256 specified by Protocol and Interface.
1257 @param ControllerHandle If the agent that is opening a protocol is a driver that follows the
1258 UEFI Driver Model, then this parameter is the controller handle
1259 that requires the protocol interface. If the agent does not follow
1260 the UEFI Driver Model, then this parameter is optional and may
1261 be NULL.
1262 @param Attributes The open mode of the protocol interface specified by Handle
1263 and Protocol.
1264
1265 @retval EFI_SUCCESS An item was added to the open list for the protocol interface, and the
1266 protocol interface was returned in Interface.
1267 @retval EFI_UNSUPPORTED Handle does not support Protocol.
1268 @retval EFI_INVALID_PARAMETER One or more parameters are invalid.
1269 @retval EFI_ACCESS_DENIED Required attributes can't be supported in current environment.
1270 @retval EFI_ALREADY_STARTED Item on the open list already has requierd attributes whose agent
1271 handle is the same as AgentHandle.
1272
1273 **/
1274 typedef
1275 EFI_STATUS
1276 (EFIAPI *EFI_OPEN_PROTOCOL)(
1277 IN EFI_HANDLE Handle,
1278 IN EFI_GUID *Protocol,
1279 OUT VOID **Interface, OPTIONAL
1280 IN EFI_HANDLE AgentHandle,
1281 IN EFI_HANDLE ControllerHandle,
1282 IN UINT32 Attributes
1283 );
1284
1285
1286 /**
1287 Closes a protocol on a handle that was opened using OpenProtocol().
1288
1289 @param Handle The handle for the protocol interface that was previously opened
1290 with OpenProtocol(), and is now being closed.
1291 @param Protocol The published unique identifier of the protocol.
1292 @param AgentHandle The handle of the agent that is closing the protocol interface.
1293 @param ControllerHandle If the agent that opened a protocol is a driver that follows the
1294 UEFI Driver Model, then this parameter is the controller handle
1295 that required the protocol interface.
1296
1297 @retval EFI_SUCCESS The protocol instance was closed.
1298 @retval EFI_INVALID_PARAMETER 1) Handle is not a valid EFI_HANDLE.
1299 2) AgentHandle is not a valid EFI_HANDLE.
1300 3) ControllerHandle is not NULL and ControllerHandle is not a valid EFI_HANDLE.
1301 4) Protocol is NULL.
1302 @retval EFI_NOT_FOUND 1) Handle does not support the protocol specified by Protocol.
1303 2) The protocol interface specified by Handle and Protocol is not
1304 currently open by AgentHandle and ControllerHandle.
1305
1306 **/
1307 typedef
1308 EFI_STATUS
1309 (EFIAPI *EFI_CLOSE_PROTOCOL)(
1310 IN EFI_HANDLE Handle,
1311 IN EFI_GUID *Protocol,
1312 IN EFI_HANDLE AgentHandle,
1313 IN EFI_HANDLE ControllerHandle
1314 );
1315
1316 ///
1317 /// EFI Oprn Protocol Information Entry
1318 ///
1319 typedef struct {
1320 EFI_HANDLE AgentHandle;
1321 EFI_HANDLE ControllerHandle;
1322 UINT32 Attributes;
1323 UINT32 OpenCount;
1324 } EFI_OPEN_PROTOCOL_INFORMATION_ENTRY;
1325
1326 /**
1327 Retrieves the list of agents that currently have a protocol interface opened.
1328
1329 @param Handle The handle for the protocol interface that is being queried.
1330 @param Protocol The published unique identifier of the protocol.
1331 @param EntryBuffer A pointer to a buffer of open protocol information in the form of
1332 EFI_OPEN_PROTOCOL_INFORMATION_ENTRY structures.
1333 @param EntryCount A pointer to the number of entries in EntryBuffer.
1334
1335 @retval EFI_SUCCESS The open protocol information was returned in EntryBuffer, and the
1336 number of entries was returned EntryCount.
1337 @retval EFI_OUT_OF_RESOURCES There are not enough resources available to allocate EntryBuffer.
1338 @retval EFI_NOT_FOUND Handle does not support the protocol specified by Protocol.
1339
1340 **/
1341 typedef
1342 EFI_STATUS
1343 (EFIAPI *EFI_OPEN_PROTOCOL_INFORMATION)(
1344 IN EFI_HANDLE Handle,
1345 IN EFI_GUID *Protocol,
1346 OUT EFI_OPEN_PROTOCOL_INFORMATION_ENTRY **EntryBuffer,
1347 OUT UINTN *EntryCount
1348 );
1349
1350 /**
1351 Retrieves the list of protocol interface GUIDs that are installed on a handle in a buffer allocated
1352 from pool.
1353
1354 @param Handle The handle from which to retrieve the list of protocol interface
1355 GUIDs.
1356 @param ProtocolBuffer A pointer to the list of protocol interface GUID pointers that are
1357 installed on Handle.
1358 @param ProtocolBufferCount A pointer to the number of GUID pointers present in
1359 ProtocolBuffer.
1360
1361 @retval EFI_SUCCESS The list of protocol interface GUIDs installed on Handle was returned in
1362 ProtocolBuffer. The number of protocol interface GUIDs was
1363 returned in ProtocolBufferCount.
1364 @retval EFI_OUT_OF_RESOURCES There is not enough pool memory to store the results.
1365 @retval EFI_INVALID_PARAMETER Handle is NULL.
1366 @retval EFI_INVALID_PARAMETER Handle is not a valid EFI_HANDLE.
1367 @retval EFI_INVALID_PARAMETER ProtocolBuffer is NULL.
1368 @retval EFI_INVALID_PARAMETER ProtocolBufferCount is NULL.
1369
1370 **/
1371 typedef
1372 EFI_STATUS
1373 (EFIAPI *EFI_PROTOCOLS_PER_HANDLE)(
1374 IN EFI_HANDLE Handle,
1375 OUT EFI_GUID ***ProtocolBuffer,
1376 OUT UINTN *ProtocolBufferCount
1377 );
1378
1379 /**
1380 Creates an event that is to be signaled whenever an interface is installed for a specified protocol.
1381
1382 @param Protocol The numeric ID of the protocol for which the event is to be registered.
1383 @param Event Event that is to be signaled whenever a protocol interface is registered
1384 for Protocol.
1385 @param Registration A pointer to a memory location to receive the registration value.
1386
1387 @retval EFI_SUCCESS The notification event has been registered.
1388 @retval EFI_OUT_OF_RESOURCES Space for the notification event could not be allocated.
1389 @retval EFI_INVALID_PARAMETER Protocol is NULL.
1390 @retval EFI_INVALID_PARAMETER Event is NULL.
1391 @retval EFI_INVALID_PARAMETER Registration is NULL.
1392
1393 **/
1394 typedef
1395 EFI_STATUS
1396 (EFIAPI *EFI_REGISTER_PROTOCOL_NOTIFY)(
1397 IN EFI_GUID *Protocol,
1398 IN EFI_EVENT Event,
1399 OUT VOID **Registration
1400 );
1401
1402 ///
1403 /// Enumeration of EFI Locate Search Types
1404 ///
1405 typedef enum {
1406 ///
1407 /// Retrieve all the handles in the handle database.
1408 ///
1409 AllHandles,
1410 ///
1411 /// Retrieve the next handle fron a RegisterProtocolNotify() event.
1412 ///
1413 ByRegisterNotify,
1414 ///
1415 /// Retrieve the set of handles from the handle database that support a
1416 /// specified protocol.
1417 ///
1418 ByProtocol
1419 } EFI_LOCATE_SEARCH_TYPE;
1420
1421 /**
1422 Returns an array of handles that support a specified protocol.
1423
1424 @param SearchType Specifies which handle(s) are to be returned.
1425 @param Protocol Specifies the protocol to search by.
1426 @param SearchKey Specifies the search key.
1427 @param BufferSize On input, the size in bytes of Buffer. On output, the size in bytes of
1428 the array returned in Buffer (if the buffer was large enough) or the
1429 size, in bytes, of the buffer needed to obtain the array (if the buffer was
1430 not large enough).
1431 @param Buffer The buffer in which the array is returned.
1432
1433 @retval EFI_SUCCESS The array of handles was returned.
1434 @retval EFI_NOT_FOUND No handles match the search.
1435 @retval EFI_BUFFER_TOO_SMALL The BufferSize is too small for the result.
1436 @retval EFI_INVALID_PARAMETER SearchType is not a member of EFI_LOCATE_SEARCH_TYPE.
1437 @retval EFI_INVALID_PARAMETER SearchType is ByRegisterNotify and SearchKey is NULL.
1438 @retval EFI_INVALID_PARAMETER SearchType is ByProtocol and Protocol is NULL.
1439 @retval EFI_INVALID_PARAMETER One or more matches are found and BufferSize is NULL.
1440 @retval EFI_INVALID_PARAMETER BufferSize is large enough for the result and Buffer is NULL.
1441
1442 **/
1443 typedef
1444 EFI_STATUS
1445 (EFIAPI *EFI_LOCATE_HANDLE)(
1446 IN EFI_LOCATE_SEARCH_TYPE SearchType,
1447 IN EFI_GUID *Protocol, OPTIONAL
1448 IN VOID *SearchKey, OPTIONAL
1449 IN OUT UINTN *BufferSize,
1450 OUT EFI_HANDLE *Buffer
1451 );
1452
1453 /**
1454 Locates the handle to a device on the device path that supports the specified protocol.
1455
1456 @param Protocol Specifies the protocol to search for.
1457 @param DevicePath On input, a pointer to a pointer to the device path. On output, the device
1458 path pointer is modified to point to the remaining part of the device
1459 path.
1460 @param Device A pointer to the returned device handle.
1461
1462 @retval EFI_SUCCESS The resulting handle was returned.
1463 @retval EFI_NOT_FOUND No handles match the search.
1464 @retval EFI_INVALID_PARAMETER Protocol is NULL.
1465 @retval EFI_INVALID_PARAMETER DevicePath is NULL.
1466 @retval EFI_INVALID_PARAMETER A handle matched the search and Device is NULL.
1467
1468 **/
1469 typedef
1470 EFI_STATUS
1471 (EFIAPI *EFI_LOCATE_DEVICE_PATH)(
1472 IN EFI_GUID *Protocol,
1473 IN OUT EFI_DEVICE_PATH_PROTOCOL **DevicePath,
1474 OUT EFI_HANDLE *Device
1475 );
1476
1477 /**
1478 Adds, updates, or removes a configuration table entry from the EFI System Table.
1479
1480 @param Guid A pointer to the GUID for the entry to add, update, or remove.
1481 @param Table A pointer to the configuration table for the entry to add, update, or
1482 remove. May be NULL.
1483
1484 @retval EFI_SUCCESS The (Guid, Table) pair was added, updated, or removed.
1485 @retval EFI_NOT_FOUND An attempt was made to delete a nonexistent entry.
1486 @retval EFI_INVALID_PARAMETER Guid is not valid.
1487 @retval EFI_OUT_OF_RESOURCES There is not enough memory available to complete the operation.
1488
1489 **/
1490 typedef
1491 EFI_STATUS
1492 (EFIAPI *EFI_INSTALL_CONFIGURATION_TABLE)(
1493 IN EFI_GUID *Guid,
1494 IN VOID *Table
1495 );
1496
1497 /**
1498 Returns an array of handles that support the requested protocol in a buffer allocated from pool.
1499
1500 @param SearchType Specifies which handle(s) are to be returned.
1501 @param Protocol Provides the protocol to search by.
1502 This parameter is only valid for a SearchType of ByProtocol.
1503 @param SearchKey Supplies the search key depending on the SearchType.
1504 @param NoHandles The number of handles returned in Buffer.
1505 @param Buffer A pointer to the buffer to return the requested array of handles that
1506 support Protocol.
1507
1508 @retval EFI_SUCCESS The array of handles was returned in Buffer, and the number of
1509 handles in Buffer was returned in NoHandles.
1510 @retval EFI_NOT_FOUND No handles match the search.
1511 @retval EFI_OUT_OF_RESOURCES There is not enough pool memory to store the matching results.
1512 @retval EFI_INVALID_PARAMETER NoHandles is NULL.
1513 @retval EFI_INVALID_PARAMETER Buffer is NULL.
1514
1515 **/
1516 typedef
1517 EFI_STATUS
1518 (EFIAPI *EFI_LOCATE_HANDLE_BUFFER)(
1519 IN EFI_LOCATE_SEARCH_TYPE SearchType,
1520 IN EFI_GUID *Protocol, OPTIONAL
1521 IN VOID *SearchKey, OPTIONAL
1522 IN OUT UINTN *NoHandles,
1523 OUT EFI_HANDLE **Buffer
1524 );
1525
1526 /**
1527 Returns the first protocol instance that matches the given protocol.
1528
1529 @param Protocol Provides the protocol to search for.
1530 @param Registration Optional registration key returned from
1531 RegisterProtocolNotify().
1532 @param Interface On return, a pointer to the first interface that matches Protocol and
1533 Registration.
1534
1535 @retval EFI_SUCCESS A protocol instance matching Protocol was found and returned in
1536 Interface.
1537 @retval EFI_NOT_FOUND No protocol instances were found that match Protocol and
1538 Registration.
1539 @retval EFI_INVALID_PARAMETER Interface is NULL.
1540
1541 **/
1542 typedef
1543 EFI_STATUS
1544 (EFIAPI *EFI_LOCATE_PROTOCOL)(
1545 IN EFI_GUID *Protocol,
1546 IN VOID *Registration, OPTIONAL
1547 OUT VOID **Interface
1548 );
1549
1550 ///
1551 /// EFI Capsule Block Descriptor
1552 ///
1553 typedef struct {
1554 ///
1555 /// Length in bytes of the data pointed to by DataBlock/ContinuationPointer.
1556 ///
1557 UINT64 Length;
1558 union {
1559 ///
1560 /// Physical address of the data block. This member of the union is
1561 /// used if Length is not equal to zero.
1562 ///
1563 EFI_PHYSICAL_ADDRESS DataBlock;
1564 ///
1565 /// Physical address of another block of
1566 /// EFI_CAPSULE_BLOCK_DESCRIPTOR structures. This
1567 /// member of the union is used if Length is equal to zero. If
1568 /// ContinuationPointer is zero this entry represents the end of the list.
1569 ///
1570 EFI_PHYSICAL_ADDRESS ContinuationPointer;
1571 } Union;
1572 } EFI_CAPSULE_BLOCK_DESCRIPTOR;
1573
1574 ///
1575 /// EFI Capsule Header
1576 ///
1577 typedef struct {
1578 ///
1579 /// A GUID that defines the contents of a capsule.
1580 ///
1581 EFI_GUID CapsuleGuid;
1582 ///
1583 /// The size of the capsule header. This may be larger than the size of
1584 /// the EFI_CAPSULE_HEADER since CapsuleGuid may imply
1585 /// extended header entries
1586 ///
1587 UINT32 HeaderSize;
1588 ///
1589 /// Bit-mapped list describing the capsule attributes. The Flag values
1590 /// of 0x0000 - 0xFFFF are defined by CapsuleGuid. Flag values
1591 /// of 0x10000 - 0xFFFFFFFF are defined by this specification
1592 ///
1593 UINT32 Flags;
1594 ///
1595 /// Size in bytes of the capsule.
1596 ///
1597 UINT32 CapsuleImageSize;
1598 } EFI_CAPSULE_HEADER;
1599
1600 ///
1601 /// The EFI System Table entry must point to an array of capsules
1602 /// that contain the same CapsuleGuid value. The array must be
1603 /// prefixed by a UINT32 that represents the size of the array of capsules.
1604 ///
1605 typedef struct {
1606 ///
1607 /// the size of the array of capsules.
1608 ///
1609 UINT32 CapsuleArrayNumber;
1610 ///
1611 /// Point to an array of capsules that contain the same CapsuleGuid value.
1612 ///
1613 VOID* CapsulePtr[1];
1614 } EFI_CAPSULE_TABLE;
1615
1616 #define CAPSULE_FLAGS_PERSIST_ACROSS_RESET 0x00010000
1617 #define CAPSULE_FLAGS_POPULATE_SYSTEM_TABLE 0x00020000
1618 #define CAPSULE_FLAGS_INITIATE_RESET 0x00040000
1619
1620 /**
1621 Passes capsules to the firmware with both virtual and physical mapping. Depending on the intended
1622 consumption, the firmware may process the capsule immediately. If the payload should persist
1623 across a system reset, the reset value returned from EFI_QueryCapsuleCapabilities must
1624 be passed into ResetSystem() and will cause the capsule to be processed by the firmware as
1625 part of the reset process.
1626
1627 @param CapsuleHeaderArray Virtual pointer to an array of virtual pointers to the capsules
1628 being passed into update capsule.
1629 @param CapsuleCount Number of pointers to EFI_CAPSULE_HEADER in
1630 CaspuleHeaderArray.
1631 @param ScatterGatherList Physical pointer to a set of
1632 EFI_CAPSULE_BLOCK_DESCRIPTOR that describes the
1633 location in physical memory of a set of capsules.
1634
1635 @retval EFI_SUCCESS Valid capsule was passed. If
1636 CAPSULE_FLAGS_PERSIT_ACROSS_RESET is not set, the
1637 capsule has been successfully processed by the firmware.
1638 @retval EFI_INVALID_PARAMETER CapsuleSize is NULL, or an incompatible set of flags were
1639 set in the capsule header.
1640 @retval EFI_INVALID_PARAMETER CapsuleCount is 0.
1641 @retval EFI_DEVICE_ERROR The capsule update was started, but failed due to a device error.
1642 @retval EFI_UNSUPPORTED The capsule type is not supported on this platform.
1643 @retval EFI_OUT_OF_RESOURCES There were insufficient resources to process the capsule.
1644
1645 **/
1646 typedef
1647 EFI_STATUS
1648 (EFIAPI *EFI_UPDATE_CAPSULE)(
1649 IN EFI_CAPSULE_HEADER **CapsuleHeaderArray,
1650 IN UINTN CapsuleCount,
1651 IN EFI_PHYSICAL_ADDRESS ScatterGatherList OPTIONAL
1652 );
1653
1654 /**
1655 Returns if the capsule can be supported via UpdateCapsule().
1656
1657 @param CapsuleHeaderArray Virtual pointer to an array of virtual pointers to the capsules
1658 being passed into update capsule.
1659 @param CapsuleCount Number of pointers to EFI_CAPSULE_HEADER in
1660 CaspuleHeaderArray.
1661 @param MaxiumCapsuleSize On output the maximum size that UpdateCapsule() can
1662 support as an argument to UpdateCapsule() via
1663 CapsuleHeaderArray and ScatterGatherList.
1664 @param ResetType Returns the type of reset required for the capsule update.
1665
1666 @retval EFI_SUCCESS Valid answer returned.
1667 @retval EFI_UNSUPPORTED The capsule type is not supported on this platform, and
1668 MaximumCapsuleSize and ResetType are undefined.
1669 @retval EFI_INVALID_PARAMETER MaximumCapsuleSize is NULL.
1670 @retval EFI_OUT_OF_RESOURCES There were insufficient resources to process the query request.
1671
1672 **/
1673 typedef
1674 EFI_STATUS
1675 (EFIAPI *EFI_QUERY_CAPSULE_CAPABILITIES)(
1676 IN EFI_CAPSULE_HEADER **CapsuleHeaderArray,
1677 IN UINTN CapsuleCount,
1678 OUT UINT64 *MaximumCapsuleSize,
1679 OUT EFI_RESET_TYPE *ResetType
1680 );
1681
1682 /**
1683 Returns information about the EFI variables.
1684
1685 @param Attributes Attributes bitmask to specify the type of variables on
1686 which to return information.
1687 @param MaximumVariableStorageSize On output the maximum size of the storage space
1688 available for the EFI variables associated with the
1689 attributes specified.
1690 @param RemainingVariableStorageSize Returns the remaining size of the storage space
1691 available for the EFI variables associated with the
1692 attributes specified.
1693 @param MaximumVariableSize Returns the maximum size of the individual EFI
1694 variables associated with the attributes specified.
1695
1696 @retval EFI_SUCCESS Valid answer returned.
1697 @retval EFI_INVALID_PARAMETER An invalid combination of attribute bits was supplied
1698 @retval EFI_UNSUPPORTED The attribute is not supported on this platform, and the
1699 MaximumVariableStorageSize,
1700 RemainingVariableStorageSize, MaximumVariableSize
1701 are undefined.
1702
1703 **/
1704 typedef
1705 EFI_STATUS
1706 (EFIAPI *EFI_QUERY_VARIABLE_INFO)(
1707 IN UINT32 Attributes,
1708 OUT UINT64 *MaximumVariableStorageSize,
1709 OUT UINT64 *RemainingVariableStorageSize,
1710 OUT UINT64 *MaximumVariableSize
1711 );
1712
1713
1714 //
1715 // EFI Runtime Services Table
1716 //
1717 #define EFI_SYSTEM_TABLE_SIGNATURE SIGNATURE_64 ('I','B','I',' ','S','Y','S','T')
1718 #define EFI_SYSTEM_TABLE_REVISION ((2 << 16) | (10))
1719 #define EFI_2_30_SYSTEM_TABLE_REVISION ((2 << 16) | (30))
1720 #define EFI_2_20_SYSTEM_TABLE_REVISION ((2 << 16) | (20))
1721 #define EFI_2_10_SYSTEM_TABLE_REVISION ((2 << 16) | (10))
1722 #define EFI_2_00_SYSTEM_TABLE_REVISION ((2 << 16) | (00))
1723 #define EFI_1_10_SYSTEM_TABLE_REVISION ((1 << 16) | (10))
1724 #define EFI_1_02_SYSTEM_TABLE_REVISION ((1 << 16) | (02))
1725
1726 #define EFI_RUNTIME_SERVICES_SIGNATURE SIGNATURE_64 ('R','U','N','T','S','E','R','V')
1727 #define EFI_RUNTIME_SERVICES_REVISION EFI_2_10_SYSTEM_TABLE_REVISION
1728
1729 ///
1730 /// EFI Runtime Services Table
1731 ///
1732 typedef struct {
1733 ///
1734 /// The table header for the EFI Runtime Services Table.
1735 ///
1736 EFI_TABLE_HEADER Hdr;
1737
1738 //
1739 // Time Services
1740 //
1741 EFI_GET_TIME GetTime;
1742 EFI_SET_TIME SetTime;
1743 EFI_GET_WAKEUP_TIME GetWakeupTime;
1744 EFI_SET_WAKEUP_TIME SetWakeupTime;
1745
1746 //
1747 // Virtual Memory Services
1748 //
1749 EFI_SET_VIRTUAL_ADDRESS_MAP SetVirtualAddressMap;
1750 EFI_CONVERT_POINTER ConvertPointer;
1751
1752 //
1753 // Variable Services
1754 //
1755 EFI_GET_VARIABLE GetVariable;
1756 EFI_GET_NEXT_VARIABLE_NAME GetNextVariableName;
1757 EFI_SET_VARIABLE SetVariable;
1758
1759 //
1760 // Miscellaneous Services
1761 //
1762 EFI_GET_NEXT_HIGH_MONO_COUNT GetNextHighMonotonicCount;
1763 EFI_RESET_SYSTEM ResetSystem;
1764
1765 //
1766 // UEFI 2.0 Capsule Services
1767 //
1768 EFI_UPDATE_CAPSULE UpdateCapsule;
1769 EFI_QUERY_CAPSULE_CAPABILITIES QueryCapsuleCapabilities;
1770
1771 //
1772 // Miscellaneous UEFI 2.0 Service
1773 //
1774 EFI_QUERY_VARIABLE_INFO QueryVariableInfo;
1775 } EFI_RUNTIME_SERVICES;
1776
1777
1778 #define EFI_BOOT_SERVICES_SIGNATURE SIGNATURE_64 ('B','O','O','T','S','E','R','V')
1779 #define EFI_BOOT_SERVICES_REVISION EFI_2_10_SYSTEM_TABLE_REVISION
1780
1781 ///
1782 /// EFI Boot Services Table
1783 ///
1784 typedef struct {
1785 ///
1786 /// The table header for the EFI Boot Services Table.
1787 ///
1788 EFI_TABLE_HEADER Hdr;
1789
1790 //
1791 // Task Priority Services
1792 //
1793 EFI_RAISE_TPL RaiseTPL;
1794 EFI_RESTORE_TPL RestoreTPL;
1795
1796 //
1797 // Memory Services
1798 //
1799 EFI_ALLOCATE_PAGES AllocatePages;
1800 EFI_FREE_PAGES FreePages;
1801 EFI_GET_MEMORY_MAP GetMemoryMap;
1802 EFI_ALLOCATE_POOL AllocatePool;
1803 EFI_FREE_POOL FreePool;
1804
1805 //
1806 // Event & Timer Services
1807 //
1808 EFI_CREATE_EVENT CreateEvent;
1809 EFI_SET_TIMER SetTimer;
1810 EFI_WAIT_FOR_EVENT WaitForEvent;
1811 EFI_SIGNAL_EVENT SignalEvent;
1812 EFI_CLOSE_EVENT CloseEvent;
1813 EFI_CHECK_EVENT CheckEvent;
1814
1815 //
1816 // Protocol Handler Services
1817 //
1818 EFI_INSTALL_PROTOCOL_INTERFACE InstallProtocolInterface;
1819 EFI_REINSTALL_PROTOCOL_INTERFACE ReinstallProtocolInterface;
1820 EFI_UNINSTALL_PROTOCOL_INTERFACE UninstallProtocolInterface;
1821 EFI_HANDLE_PROTOCOL HandleProtocol;
1822 VOID *Reserved;
1823 EFI_REGISTER_PROTOCOL_NOTIFY RegisterProtocolNotify;
1824 EFI_LOCATE_HANDLE LocateHandle;
1825 EFI_LOCATE_DEVICE_PATH LocateDevicePath;
1826 EFI_INSTALL_CONFIGURATION_TABLE InstallConfigurationTable;
1827
1828 //
1829 // Image Services
1830 //
1831 EFI_IMAGE_LOAD LoadImage;
1832 EFI_IMAGE_START StartImage;
1833 EFI_EXIT Exit;
1834 EFI_IMAGE_UNLOAD UnloadImage;
1835 EFI_EXIT_BOOT_SERVICES ExitBootServices;
1836
1837 //
1838 // Miscellaneous Services
1839 //
1840 EFI_GET_NEXT_MONOTONIC_COUNT GetNextMonotonicCount;
1841 EFI_STALL Stall;
1842 EFI_SET_WATCHDOG_TIMER SetWatchdogTimer;
1843
1844 //
1845 // DriverSupport Services
1846 //
1847 EFI_CONNECT_CONTROLLER ConnectController;
1848 EFI_DISCONNECT_CONTROLLER DisconnectController;
1849
1850 //
1851 // Open and Close Protocol Services
1852 //
1853 EFI_OPEN_PROTOCOL OpenProtocol;
1854 EFI_CLOSE_PROTOCOL CloseProtocol;
1855 EFI_OPEN_PROTOCOL_INFORMATION OpenProtocolInformation;
1856
1857 //
1858 // Library Services
1859 //
1860 EFI_PROTOCOLS_PER_HANDLE ProtocolsPerHandle;
1861 EFI_LOCATE_HANDLE_BUFFER LocateHandleBuffer;
1862 EFI_LOCATE_PROTOCOL LocateProtocol;
1863 EFI_INSTALL_MULTIPLE_PROTOCOL_INTERFACES InstallMultipleProtocolInterfaces;
1864 EFI_UNINSTALL_MULTIPLE_PROTOCOL_INTERFACES UninstallMultipleProtocolInterfaces;
1865
1866 //
1867 // 32-bit CRC Services
1868 //
1869 EFI_CALCULATE_CRC32 CalculateCrc32;
1870
1871 //
1872 // Miscellaneous Services
1873 //
1874 EFI_COPY_MEM CopyMem;
1875 EFI_SET_MEM SetMem;
1876 EFI_CREATE_EVENT_EX CreateEventEx;
1877 } EFI_BOOT_SERVICES;
1878
1879 ///
1880 /// Contains a set of GUID/pointer pairs comprised of the ConfigurationTable field in the
1881 /// EFI System Table.
1882 ///
1883 typedef struct {
1884 ///
1885 /// The 128-bit GUID value that uniquely identifies the system configuration table.
1886 ///
1887 EFI_GUID VendorGuid;
1888 ///
1889 /// A pointer to the table associated with VendorGuid.
1890 ///
1891 VOID *VendorTable;
1892 } EFI_CONFIGURATION_TABLE;
1893
1894 ///
1895 /// EFI System Table
1896 ///
1897 typedef struct {
1898 ///
1899 /// The table header for the EFI System Table.
1900 ///
1901 EFI_TABLE_HEADER Hdr;
1902 ///
1903 /// A pointer to a null terminated Unicode string that identifies
1904 /// the vendor that produces the system firmware for the platform.
1905 ///
1906 CHAR16 *FirmwareVendor;
1907 ///
1908 /// A firmware vendor specific value that identifies the revision
1909 /// of the system firmware for the platform.
1910 ///
1911 UINT32 FirmwareRevision;
1912 ///
1913 /// The handle for the active console input device.
1914 ///
1915 EFI_HANDLE ConsoleInHandle;
1916 ///
1917 /// A pointer to the EFI_SIMPLE_TEXT_INPUT_PROTOCOL interface that is
1918 /// associated with ConsoleInHandle.
1919 ///
1920 EFI_SIMPLE_TEXT_INPUT_PROTOCOL *ConIn;
1921 ///
1922 /// The handle for the active console output device.
1923 ///
1924 EFI_HANDLE ConsoleOutHandle;
1925 ///
1926 /// A pointer to the EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL interface
1927 /// that is associated with ConsoleOutHandle.
1928 ///
1929 EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL *ConOut;
1930 ///
1931 /// The handle for the active standard error console device.
1932 ///
1933 EFI_HANDLE StandardErrorHandle;
1934 ///
1935 /// A pointer to the EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL interface
1936 /// that is associated with StandardErrorHandle.
1937 ///
1938 EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL *StdErr;
1939 ///
1940 /// A pointer to the EFI Runtime Services Table.
1941 ///
1942 EFI_RUNTIME_SERVICES *RuntimeServices;
1943 ///
1944 /// A pointer to the EFI Boot Services Table.
1945 ///
1946 EFI_BOOT_SERVICES *BootServices;
1947 ///
1948 /// The number of system configuration tables in the buffer ConfigurationTable.
1949 ///
1950 UINTN NumberOfTableEntries;
1951 ///
1952 /// A pointer to the system configuration tables.
1953 /// The number of entries in the table is NumberOfTableEntries.
1954 ///
1955 EFI_CONFIGURATION_TABLE *ConfigurationTable;
1956 } EFI_SYSTEM_TABLE;
1957
1958 /**
1959 This is the declaration of an EFI image entry point. This entry point is
1960 the same for UEFI Applications, UEFI OS Loaders, and UEFI Drivers including
1961 both device drivers and bus drivers.
1962
1963 @param ImageHandle The firmware allocated handle for the UEFI image.
1964 @param SystemTable A pointer to the EFI System Table.
1965
1966 @retval EFI_SUCCESS The operation completed successfully.
1967 @retval Others Some unexpected error happened.
1968 **/
1969 typedef
1970 EFI_STATUS
1971 (EFIAPI *EFI_IMAGE_ENTRY_POINT)(
1972 IN EFI_HANDLE ImageHandle,
1973 IN EFI_SYSTEM_TABLE *SystemTable
1974 );
1975
1976 //
1977 // EFI Load Options Attributes
1978 //
1979 #define LOAD_OPTION_ACTIVE 0x00000001
1980 #define LOAD_OPTION_FORCE_RECONNECT 0x00000002
1981 #define LOAD_OPTION_HIDDEN 0x00000008
1982 #define LOAD_OPTION_CATEGORY 0x00001F00
1983
1984 #define LOAD_OPTION_CATEGORY_BOOT 0x00000000
1985 #define LOAD_OPTION_CATEGORY_APP 0x00000100
1986
1987 #define EFI_BOOT_OPTION_SUPPORT_KEY 0x00000001
1988 #define EFI_BOOT_OPTION_SUPPORT_APP 0x00000002
1989 #define EFI_BOOT_OPTION_SUPPORT_COUNT 0x00000300
1990
1991 ///
1992 /// EFI Boot Key Data
1993 ///
1994 typedef union {
1995 struct {
1996 ///
1997 /// Indicates the revision of the EFI_KEY_OPTION structure. This revision level should be 0.
1998 ///
1999 UINT32 Revision : 8;
2000 ///
2001 /// Either the left or right Shift keys must be pressed (1) or must not be pressed (0).
2002 ///
2003 UINT32 ShiftPressed : 1;
2004 ///
2005 /// Either the left or right Control keys must be pressed (1) or must not be pressed (0).
2006 ///
2007 UINT32 ControlPressed : 1;
2008 ///
2009 /// Either the left or right Alt keys must be pressed (1) or must not be pressed (0).
2010 ///
2011 UINT32 AltPressed : 1;
2012 ///
2013 /// Either the left or right Logo keys must be pressed (1) or must not be pressed (0).
2014 ///
2015 UINT32 LogoPressed : 1;
2016 ///
2017 /// The Menu key must be pressed (1) or must not be pressed (0).
2018 ///
2019 UINT32 MenuPressed : 1;
2020 ///
2021 /// The SysReq key must be pressed (1) or must not be pressed (0).
2022 ///
2023 UINT32 SysReqPressed : 1;
2024 UINT32 Reserved : 16;
2025 ///
2026 /// Specifies the actual number of entries in EFI_KEY_OPTION.Keys, from 0-3. If
2027 /// zero, then only the shift state is considered. If more than one, then the boot option will
2028 /// only be launched if all of the specified keys are pressed with the same shift state.
2029 ///
2030 UINT32 InputKeyCount : 2;
2031 } Options;
2032 UINT32 PackedValue;
2033 } EFI_BOOT_KEY_DATA;
2034
2035 ///
2036 /// EFI Key Option
2037 ///
2038 typedef struct {
2039 ///
2040 /// Specifies options about how the key will be processed.
2041 ///
2042 EFI_BOOT_KEY_DATA KeyData;
2043 ///
2044 /// The CRC-32 which should match the CRC-32 of the entire EFI_LOAD_OPTION to
2045 /// which BootOption refers. If the CRC-32s do not match this value, then this key
2046 /// option is ignored.
2047 ///
2048 UINT32 BootOptionCrc;
2049 ///
2050 /// The Boot#### option which will be invoked if this key is pressed and the boot option
2051 /// is active (LOAD_OPTION_ACTIVE is set).
2052 ///
2053 UINT16 BootOption;
2054 ///
2055 /// The key codes to compare against those returned by the
2056 /// EFI_SIMPLE_TEXT_INPUT and EFI_SIMPLE_TEXT_INPUT_EX protocols.
2057 /// The number of key codes (0-3) is specified by the EFI_KEY_CODE_COUNT field in KeyOptions.
2058 ///
2059 //EFI_INPUT_KEY Keys[];
2060 } EFI_KEY_OPTION;
2061
2062 //
2063 // EFI File location to boot from on removable media devices
2064 //
2065 #define EFI_REMOVABLE_MEDIA_FILE_NAME_IA32 L"\\EFI\\BOOT\\BOOTIA32.EFI"
2066 #define EFI_REMOVABLE_MEDIA_FILE_NAME_IA64 L"\\EFI\\BOOT\\BOOTIA64.EFI"
2067 #define EFI_REMOVABLE_MEDIA_FILE_NAME_X64 L"\\EFI\\BOOT\\BOOTX64.EFI"
2068 #define EFI_REMOVABLE_MEDIA_FILE_NAME_ARM L"\\EFI\\BOOT\\BOOTARM.EFI"
2069
2070 #if defined (MDE_CPU_IA32)
2071 #define EFI_REMOVABLE_MEDIA_FILE_NAME EFI_REMOVABLE_MEDIA_FILE_NAME_IA32
2072 #elif defined (MDE_CPU_IPF)
2073 #define EFI_REMOVABLE_MEDIA_FILE_NAME EFI_REMOVABLE_MEDIA_FILE_NAME_IA64
2074 #elif defined (MDE_CPU_X64)
2075 #define EFI_REMOVABLE_MEDIA_FILE_NAME EFI_REMOVABLE_MEDIA_FILE_NAME_X64
2076 #elif defined (MDE_CPU_EBC)
2077 #elif defined (MDE_CPU_ARM)
2078 #define EFI_REMOVABLE_MEDIA_FILE_NAME EFI_REMOVABLE_MEDIA_FILE_NAME_ARM
2079 #else
2080 #error Unknown Processor Type
2081 #endif
2082
2083 #include <Uefi/UefiPxe.h>
2084 #include <Uefi/UefiGpt.h>
2085 #include <Uefi/UefiInternalFormRepresentation.h>
2086
2087 #endif