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1 /** @file
2 DXE Dispatcher.
3
4 Step #1 - When a FV protocol is added to the system every driver in the FV
5 is added to the mDiscoveredList. The SOR, Before, and After Depex are
6 pre-processed as drivers are added to the mDiscoveredList. If an Apriori
7 file exists in the FV those drivers are addeded to the
8 mScheduledQueue. The mFvHandleList is used to make sure a
9 FV is only processed once.
10
11 Step #2 - Dispatch. Remove driver from the mScheduledQueue and load and
12 start it. After mScheduledQueue is drained check the
13 mDiscoveredList to see if any item has a Depex that is ready to
14 be placed on the mScheduledQueue.
15
16 Step #3 - Adding to the mScheduledQueue requires that you process Before
17 and After dependencies. This is done recursively as the call to add
18 to the mScheduledQueue checks for Before and recursively adds
19 all Befores. It then addes the item that was passed in and then
20 processess the After dependecies by recursively calling the routine.
21
22 Dispatcher Rules:
23 The rules for the dispatcher are in chapter 10 of the DXE CIS. Figure 10-3
24 is the state diagram for the DXE dispatcher
25
26 Depex - Dependency Expresion.
27 SOR - Schedule On Request - Don't schedule if this bit is set.
28
29 Copyright (c) 2006 - 2008, Intel Corporation. <BR>
30 All rights reserved. This program and the accompanying materials
31 are licensed and made available under the terms and conditions of the BSD License
32 which accompanies this distribution. The full text of the license may be found at
33 http://opensource.org/licenses/bsd-license.php
34
35 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
36 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
37
38 **/
39
40 #include "DxeMain.h"
41
42 //
43 // The Driver List contains one copy of every driver that has been discovered.
44 // Items are never removed from the driver list. List of EFI_CORE_DRIVER_ENTRY
45 //
46 LIST_ENTRY mDiscoveredList = INITIALIZE_LIST_HEAD_VARIABLE (mDiscoveredList);
47
48 //
49 // Queue of drivers that are ready to dispatch. This queue is a subset of the
50 // mDiscoveredList.list of EFI_CORE_DRIVER_ENTRY.
51 //
52 LIST_ENTRY mScheduledQueue = INITIALIZE_LIST_HEAD_VARIABLE (mScheduledQueue);
53
54 //
55 // List of handles who's Fv's have been parsed and added to the mFwDriverList.
56 //
57 LIST_ENTRY mFvHandleList = INITIALIZE_LIST_HEAD_VARIABLE (mFvHandleList); // list of KNOWN_HANDLE
58
59 //
60 // Lock for mDiscoveredList, mScheduledQueue, gDispatcherRunning.
61 //
62 EFI_LOCK mDispatcherLock = EFI_INITIALIZE_LOCK_VARIABLE (TPL_HIGH_LEVEL);
63
64
65 //
66 // Flag for the DXE Dispacher. TRUE if dispatcher is execuing.
67 //
68 BOOLEAN gDispatcherRunning = FALSE;
69
70 //
71 // Module globals to manage the FwVol registration notification event
72 //
73 EFI_EVENT mFwVolEvent;
74 VOID *mFwVolEventRegistration;
75
76 //
77 // List of file types supported by dispatcher
78 //
79 EFI_FV_FILETYPE mDxeFileTypes[] = {
80 EFI_FV_FILETYPE_DRIVER,
81 EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER,
82 EFI_FV_FILETYPE_DXE_CORE,
83 EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE
84 };
85
86 typedef struct {
87 MEDIA_FW_VOL_FILEPATH_DEVICE_PATH File;
88 EFI_DEVICE_PATH_PROTOCOL End;
89 } FV_FILEPATH_DEVICE_PATH;
90
91 FV_FILEPATH_DEVICE_PATH mFvDevicePath;
92
93
94 //
95 // Function Prototypes
96 //
97 /**
98 Insert InsertedDriverEntry onto the mScheduledQueue. To do this you
99 must add any driver with a before dependency on InsertedDriverEntry first.
100 You do this by recursively calling this routine. After all the Befores are
101 processed you can add InsertedDriverEntry to the mScheduledQueue.
102 Then you can add any driver with an After dependency on InsertedDriverEntry
103 by recursively calling this routine.
104
105 @param InsertedDriverEntry The driver to insert on the ScheduledLink Queue
106
107 **/
108 VOID
109 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (
110 IN EFI_CORE_DRIVER_ENTRY *InsertedDriverEntry
111 );
112
113 /**
114 Event notification that is fired every time a FV dispatch protocol is added.
115 More than one protocol may have been added when this event is fired, so you
116 must loop on CoreLocateHandle () to see how many protocols were added and
117 do the following to each FV:
118 If the Fv has already been processed, skip it. If the Fv has not been
119 processed then mark it as being processed, as we are about to process it.
120 Read the Fv and add any driver in the Fv to the mDiscoveredList.The
121 mDiscoveredList is never free'ed and contains variables that define
122 the other states the DXE driver transitions to..
123 While you are at it read the A Priori file into memory.
124 Place drivers in the A Priori list onto the mScheduledQueue.
125
126 @param Event The Event that is being processed, not used.
127 @param Context Event Context, not used.
128
129 **/
130 VOID
131 EFIAPI
132 CoreFwVolEventProtocolNotify (
133 IN EFI_EVENT Event,
134 IN VOID *Context
135 );
136
137 /**
138 Convert FvHandle and DriverName into an EFI device path
139
140 @param Fv Fv protocol, needed to read Depex info out of
141 FLASH.
142 @param FvHandle Handle for Fv, needed in the
143 EFI_CORE_DRIVER_ENTRY so that the PE image can be
144 read out of the FV at a later time.
145 @param DriverName Name of driver to add to mDiscoveredList.
146
147 @return Pointer to device path constructed from FvHandle and DriverName
148
149 **/
150 EFI_DEVICE_PATH_PROTOCOL *
151 CoreFvToDevicePath (
152 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,
153 IN EFI_HANDLE FvHandle,
154 IN EFI_GUID *DriverName
155 );
156
157 /**
158 Add an entry to the mDiscoveredList. Allocate memory to store the DriverEntry,
159 and initilize any state variables. Read the Depex from the FV and store it
160 in DriverEntry. Pre-process the Depex to set the SOR, Before and After state.
161 The Discovered list is never free'ed and contains booleans that represent the
162 other possible DXE driver states.
163
164 @param Fv Fv protocol, needed to read Depex info out of
165 FLASH.
166 @param FvHandle Handle for Fv, needed in the
167 EFI_CORE_DRIVER_ENTRY so that the PE image can be
168 read out of the FV at a later time.
169 @param DriverName Name of driver to add to mDiscoveredList.
170
171 @retval EFI_SUCCESS If driver was added to the mDiscoveredList.
172 @retval EFI_ALREADY_STARTED The driver has already been started. Only one
173 DriverName may be active in the system at any one
174 time.
175
176 **/
177 EFI_STATUS
178 CoreAddToDriverList (
179 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,
180 IN EFI_HANDLE FvHandle,
181 IN EFI_GUID *DriverName
182 );
183
184 /**
185 Get the driver from the FV through driver name, and produce a FVB protocol on FvHandle.
186
187 @param Fv The FIRMWARE_VOLUME protocol installed on the FV.
188 @param FvHandle The handle which FVB protocol installed on.
189 @param DriverName The driver guid specified.
190
191 @retval EFI_OUT_OF_RESOURCES No enough memory or other resource.
192 @retval EFI_VOLUME_CORRUPTED Corrupted volume.
193 @retval EFI_SUCCESS Function successfully returned.
194
195 **/
196 EFI_STATUS
197 CoreProcessFvImageFile (
198 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,
199 IN EFI_HANDLE FvHandle,
200 IN EFI_GUID *DriverName
201 );
202
203
204 /**
205 Enter critical section by gaining lock on mDispatcherLock.
206
207 **/
208 VOID
209 CoreAcquireDispatcherLock (
210 VOID
211 )
212 {
213 CoreAcquireLock (&mDispatcherLock);
214 }
215
216
217 /**
218 Exit critical section by releasing lock on mDispatcherLock.
219
220 **/
221 VOID
222 CoreReleaseDispatcherLock (
223 VOID
224 )
225 {
226 CoreReleaseLock (&mDispatcherLock);
227 }
228
229
230 /**
231 Read Depex and pre-process the Depex for Before and After. If Section Extraction
232 protocol returns an error via ReadSection defer the reading of the Depex.
233
234 @param DriverEntry Driver to work on.
235
236 @retval EFI_SUCCESS Depex read and preprossesed
237 @retval EFI_PROTOCOL_ERROR The section extraction protocol returned an error
238 and Depex reading needs to be retried.
239 @retval Error DEPEX not found.
240
241 **/
242 EFI_STATUS
243 CoreGetDepexSectionAndPreProccess (
244 IN EFI_CORE_DRIVER_ENTRY *DriverEntry
245 )
246 {
247 EFI_STATUS Status;
248 EFI_SECTION_TYPE SectionType;
249 UINT32 AuthenticationStatus;
250 EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv;
251
252
253 Fv = DriverEntry->Fv;
254
255 //
256 // Grab Depex info, it will never be free'ed.
257 //
258 SectionType = EFI_SECTION_DXE_DEPEX;
259 Status = Fv->ReadSection (
260 DriverEntry->Fv,
261 &DriverEntry->FileName,
262 SectionType,
263 0,
264 &DriverEntry->Depex,
265 (UINTN *)&DriverEntry->DepexSize,
266 &AuthenticationStatus
267 );
268 if (EFI_ERROR (Status)) {
269 if (Status == EFI_PROTOCOL_ERROR) {
270 //
271 // The section extraction protocol failed so set protocol error flag
272 //
273 DriverEntry->DepexProtocolError = TRUE;
274 } else {
275 //
276 // If no Depex assume UEFI 2.0 driver model
277 //
278 DriverEntry->Depex = NULL;
279 DriverEntry->Dependent = TRUE;
280 DriverEntry->DepexProtocolError = FALSE;
281 }
282 } else {
283 //
284 // Set Before, After, and Unrequested state information based on Depex
285 // Driver will be put in Dependent or Unrequested state
286 //
287 CorePreProcessDepex (DriverEntry);
288 DriverEntry->DepexProtocolError = FALSE;
289 }
290
291 return Status;
292 }
293
294
295 /**
296 Check every driver and locate a matching one. If the driver is found, the Unrequested
297 state flag is cleared.
298
299 @param FirmwareVolumeHandle The handle of the Firmware Volume that contains
300 the firmware file specified by DriverName.
301 @param DriverName The Driver name to put in the Dependent state.
302
303 @retval EFI_SUCCESS The DriverName was found and it's SOR bit was
304 cleared
305 @retval EFI_NOT_FOUND The DriverName does not exist or it's SOR bit was
306 not set.
307
308 **/
309 EFI_STATUS
310 EFIAPI
311 CoreSchedule (
312 IN EFI_HANDLE FirmwareVolumeHandle,
313 IN EFI_GUID *DriverName
314 )
315 {
316 LIST_ENTRY *Link;
317 EFI_CORE_DRIVER_ENTRY *DriverEntry;
318
319 //
320 // Check every driver
321 //
322 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {
323 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
324 if (DriverEntry->FvHandle == FirmwareVolumeHandle &&
325 DriverEntry->Unrequested &&
326 CompareGuid (DriverName, &DriverEntry->FileName)) {
327 //
328 // Move the driver from the Unrequested to the Dependent state
329 //
330 CoreAcquireDispatcherLock ();
331 DriverEntry->Unrequested = FALSE;
332 DriverEntry->Dependent = TRUE;
333 CoreReleaseDispatcherLock ();
334
335 return EFI_SUCCESS;
336 }
337 }
338 return EFI_NOT_FOUND;
339 }
340
341
342
343 /**
344 Convert a driver from the Untrused back to the Scheduled state.
345
346 @param FirmwareVolumeHandle The handle of the Firmware Volume that contains
347 the firmware file specified by DriverName.
348 @param DriverName The Driver name to put in the Scheduled state
349
350 @retval EFI_SUCCESS The file was found in the untrusted state, and it
351 was promoted to the trusted state.
352 @retval EFI_NOT_FOUND The file was not found in the untrusted state.
353
354 **/
355 EFI_STATUS
356 EFIAPI
357 CoreTrust (
358 IN EFI_HANDLE FirmwareVolumeHandle,
359 IN EFI_GUID *DriverName
360 )
361 {
362 LIST_ENTRY *Link;
363 EFI_CORE_DRIVER_ENTRY *DriverEntry;
364
365 //
366 // Check every driver
367 //
368 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {
369 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
370 if (DriverEntry->FvHandle == FirmwareVolumeHandle &&
371 DriverEntry->Untrusted &&
372 CompareGuid (DriverName, &DriverEntry->FileName)) {
373 //
374 // Transition driver from Untrusted to Scheduled state.
375 //
376 CoreAcquireDispatcherLock ();
377 DriverEntry->Untrusted = FALSE;
378 DriverEntry->Scheduled = TRUE;
379 InsertTailList (&mScheduledQueue, &DriverEntry->ScheduledLink);
380 CoreReleaseDispatcherLock ();
381
382 return EFI_SUCCESS;
383 }
384 }
385 return EFI_NOT_FOUND;
386 }
387
388
389
390 /**
391 This is the main Dispatcher for DXE and it exits when there are no more
392 drivers to run. Drain the mScheduledQueue and load and start a PE
393 image for each driver. Search the mDiscoveredList to see if any driver can
394 be placed on the mScheduledQueue. If no drivers are placed on the
395 mScheduledQueue exit the function. On exit it is assumed the Bds()
396 will be called, and when the Bds() exits the Dispatcher will be called
397 again.
398
399 @retval EFI_ALREADY_STARTED The DXE Dispatcher is already running
400 @retval EFI_NOT_FOUND No DXE Drivers were dispatched
401 @retval EFI_SUCCESS One or more DXE Drivers were dispatched
402
403 **/
404 EFI_STATUS
405 EFIAPI
406 CoreDispatcher (
407 VOID
408 )
409 {
410 EFI_STATUS Status;
411 EFI_STATUS ReturnStatus;
412 LIST_ENTRY *Link;
413 EFI_CORE_DRIVER_ENTRY *DriverEntry;
414 BOOLEAN ReadyToRun;
415
416 if (gDispatcherRunning) {
417 //
418 // If the dispatcher is running don't let it be restarted.
419 //
420 return EFI_ALREADY_STARTED;
421 }
422
423 gDispatcherRunning = TRUE;
424
425
426 ReturnStatus = EFI_NOT_FOUND;
427 do {
428 //
429 // Drain the Scheduled Queue
430 //
431 while (!IsListEmpty (&mScheduledQueue)) {
432 DriverEntry = CR (
433 mScheduledQueue.ForwardLink,
434 EFI_CORE_DRIVER_ENTRY,
435 ScheduledLink,
436 EFI_CORE_DRIVER_ENTRY_SIGNATURE
437 );
438
439 //
440 // Load the DXE Driver image into memory. If the Driver was transitioned from
441 // Untrused to Scheduled it would have already been loaded so we may need to
442 // skip the LoadImage
443 //
444 if (DriverEntry->ImageHandle == NULL) {
445 DEBUG ((DEBUG_INFO, "Loading driver %g\n", &DriverEntry->FileName));
446 Status = CoreLoadImage (
447 FALSE,
448 gDxeCoreImageHandle,
449 DriverEntry->FvFileDevicePath,
450 NULL,
451 0,
452 &DriverEntry->ImageHandle
453 );
454
455 //
456 // Update the driver state to reflect that it's been loaded
457 //
458 if (EFI_ERROR (Status)) {
459 CoreAcquireDispatcherLock ();
460
461 if (Status == EFI_SECURITY_VIOLATION) {
462 //
463 // Take driver from Scheduled to Untrused state
464 //
465 DriverEntry->Untrusted = TRUE;
466 } else {
467 //
468 // The DXE Driver could not be loaded, and do not attempt to load or start it again.
469 // Take driver from Scheduled to Initialized.
470 //
471 // This case include the Never Trusted state if EFI_ACCESS_DENIED is returned
472 //
473 DriverEntry->Initialized = TRUE;
474 }
475
476 DriverEntry->Scheduled = FALSE;
477 RemoveEntryList (&DriverEntry->ScheduledLink);
478
479 CoreReleaseDispatcherLock ();
480
481 //
482 // If it's an error don't try the StartImage
483 //
484 continue;
485 }
486 }
487
488 CoreAcquireDispatcherLock ();
489
490 DriverEntry->Scheduled = FALSE;
491 DriverEntry->Initialized = TRUE;
492 RemoveEntryList (&DriverEntry->ScheduledLink);
493
494 CoreReleaseDispatcherLock ();
495
496
497 REPORT_STATUS_CODE_WITH_EXTENDED_DATA (
498 EFI_PROGRESS_CODE,
499 FixedPcdGet32(PcdStatusCodeValueDxeDriverBegin),
500 &DriverEntry->ImageHandle,
501 sizeof (DriverEntry->ImageHandle)
502 );
503
504 Status = CoreStartImage (DriverEntry->ImageHandle, NULL, NULL);
505
506 REPORT_STATUS_CODE_WITH_EXTENDED_DATA (
507 EFI_PROGRESS_CODE,
508 FixedPcdGet32(PcdStatusCodeValueDxeDriverEnd),
509 &DriverEntry->ImageHandle,
510 sizeof (DriverEntry->ImageHandle)
511 );
512
513 ReturnStatus = EFI_SUCCESS;
514 }
515
516 //
517 // Search DriverList for items to place on Scheduled Queue
518 //
519 ReadyToRun = FALSE;
520 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {
521 DriverEntry = CR (Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
522
523 if (DriverEntry->DepexProtocolError){
524 //
525 // If Section Extraction Protocol did not let the Depex be read before retry the read
526 //
527 Status = CoreGetDepexSectionAndPreProccess (DriverEntry);
528 }
529
530 if (DriverEntry->Dependent) {
531 if (CoreIsSchedulable (DriverEntry)) {
532 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (DriverEntry);
533 ReadyToRun = TRUE;
534 }
535 }
536 }
537 } while (ReadyToRun);
538
539 gDispatcherRunning = FALSE;
540
541 return ReturnStatus;
542 }
543
544
545 /**
546 Insert InsertedDriverEntry onto the mScheduledQueue. To do this you
547 must add any driver with a before dependency on InsertedDriverEntry first.
548 You do this by recursively calling this routine. After all the Befores are
549 processed you can add InsertedDriverEntry to the mScheduledQueue.
550 Then you can add any driver with an After dependency on InsertedDriverEntry
551 by recursively calling this routine.
552
553 @param InsertedDriverEntry The driver to insert on the ScheduledLink Queue
554
555 **/
556 VOID
557 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (
558 IN EFI_CORE_DRIVER_ENTRY *InsertedDriverEntry
559 )
560 {
561 LIST_ENTRY *Link;
562 EFI_CORE_DRIVER_ENTRY *DriverEntry;
563
564 //
565 // Process Before Dependency
566 //
567 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {
568 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
569 if (DriverEntry->Before && DriverEntry->Dependent) {
570 if (CompareGuid (&InsertedDriverEntry->FileName, &DriverEntry->BeforeAfterGuid)) {
571 //
572 // Recursively process BEFORE
573 //
574 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (DriverEntry);
575 }
576 }
577 }
578
579 //
580 // Convert driver from Dependent to Scheduled state
581 //
582 CoreAcquireDispatcherLock ();
583
584 InsertedDriverEntry->Dependent = FALSE;
585 InsertedDriverEntry->Scheduled = TRUE;
586 InsertTailList (&mScheduledQueue, &InsertedDriverEntry->ScheduledLink);
587
588 CoreReleaseDispatcherLock ();
589
590 //
591 // Process After Dependency
592 //
593 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {
594 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
595 if (DriverEntry->After && DriverEntry->Dependent) {
596 if (CompareGuid (&InsertedDriverEntry->FileName, &DriverEntry->BeforeAfterGuid)) {
597 //
598 // Recursively process AFTER
599 //
600 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (DriverEntry);
601 }
602 }
603 }
604 }
605
606
607 /**
608 Return TRUE if the Fv has been processed, FALSE if not.
609
610 @param FvHandle The handle of a FV that's being tested
611
612 @retval TRUE Fv protocol on FvHandle has been processed
613 @retval FALSE Fv protocol on FvHandle has not yet been processed
614
615 **/
616 BOOLEAN
617 FvHasBeenProcessed (
618 IN EFI_HANDLE FvHandle
619 )
620 {
621 LIST_ENTRY *Link;
622 KNOWN_HANDLE *KnownHandle;
623
624 for (Link = mFvHandleList.ForwardLink; Link != &mFvHandleList; Link = Link->ForwardLink) {
625 KnownHandle = CR(Link, KNOWN_HANDLE, Link, KNOWN_HANDLE_SIGNATURE);
626 if (KnownHandle->Handle == FvHandle) {
627 return TRUE;
628 }
629 }
630 return FALSE;
631 }
632
633
634 /**
635 Remember that Fv protocol on FvHandle has had it's drivers placed on the
636 mDiscoveredList. This fucntion adds entries on the mFvHandleList. Items are
637 never removed/freed from the mFvHandleList.
638
639 @param FvHandle The handle of a FV that has been processed
640
641 **/
642 VOID
643 FvIsBeingProcesssed (
644 IN EFI_HANDLE FvHandle
645 )
646 {
647 KNOWN_HANDLE *KnownHandle;
648
649 KnownHandle = AllocatePool (sizeof (KNOWN_HANDLE));
650 ASSERT (KnownHandle != NULL);
651
652 KnownHandle->Signature = KNOWN_HANDLE_SIGNATURE;
653 KnownHandle->Handle = FvHandle;
654 InsertTailList (&mFvHandleList, &KnownHandle->Link);
655 }
656
657
658
659
660 /**
661 Convert FvHandle and DriverName into an EFI device path
662
663 @param Fv Fv protocol, needed to read Depex info out of
664 FLASH.
665 @param FvHandle Handle for Fv, needed in the
666 EFI_CORE_DRIVER_ENTRY so that the PE image can be
667 read out of the FV at a later time.
668 @param DriverName Name of driver to add to mDiscoveredList.
669
670 @return Pointer to device path constructed from FvHandle and DriverName
671
672 **/
673 EFI_DEVICE_PATH_PROTOCOL *
674 CoreFvToDevicePath (
675 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,
676 IN EFI_HANDLE FvHandle,
677 IN EFI_GUID *DriverName
678 )
679 {
680 EFI_STATUS Status;
681 EFI_DEVICE_PATH_PROTOCOL *FvDevicePath;
682 EFI_DEVICE_PATH_PROTOCOL *FileNameDevicePath;
683
684 //
685 // Remember the device path of the FV
686 //
687 Status = CoreHandleProtocol (FvHandle, &gEfiDevicePathProtocolGuid, (VOID **)&FvDevicePath);
688 if (EFI_ERROR (Status)) {
689 FileNameDevicePath = NULL;
690 } else {
691 //
692 // Build a device path to the file in the FV to pass into gBS->LoadImage
693 //
694 EfiInitializeFwVolDevicepathNode (&mFvDevicePath.File, DriverName);
695 SetDevicePathEndNode (&mFvDevicePath.End);
696
697 FileNameDevicePath = AppendDevicePath (
698 FvDevicePath,
699 (EFI_DEVICE_PATH_PROTOCOL *)&mFvDevicePath
700 );
701 }
702
703 return FileNameDevicePath;
704 }
705
706
707
708 /**
709 Add an entry to the mDiscoveredList. Allocate memory to store the DriverEntry,
710 and initilize any state variables. Read the Depex from the FV and store it
711 in DriverEntry. Pre-process the Depex to set the SOR, Before and After state.
712 The Discovered list is never free'ed and contains booleans that represent the
713 other possible DXE driver states.
714
715 @param Fv Fv protocol, needed to read Depex info out of
716 FLASH.
717 @param FvHandle Handle for Fv, needed in the
718 EFI_CORE_DRIVER_ENTRY so that the PE image can be
719 read out of the FV at a later time.
720 @param DriverName Name of driver to add to mDiscoveredList.
721
722 @retval EFI_SUCCESS If driver was added to the mDiscoveredList.
723 @retval EFI_ALREADY_STARTED The driver has already been started. Only one
724 DriverName may be active in the system at any one
725 time.
726
727 **/
728 EFI_STATUS
729 CoreAddToDriverList (
730 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,
731 IN EFI_HANDLE FvHandle,
732 IN EFI_GUID *DriverName
733 )
734 {
735 EFI_CORE_DRIVER_ENTRY *DriverEntry;
736
737
738 //
739 // Create the Driver Entry for the list. ZeroPool initializes lots of variables to
740 // NULL or FALSE.
741 //
742 DriverEntry = AllocateZeroPool (sizeof (EFI_CORE_DRIVER_ENTRY));
743 ASSERT (DriverEntry != NULL);
744
745 DriverEntry->Signature = EFI_CORE_DRIVER_ENTRY_SIGNATURE;
746 CopyGuid (&DriverEntry->FileName, DriverName);
747 DriverEntry->FvHandle = FvHandle;
748 DriverEntry->Fv = Fv;
749 DriverEntry->FvFileDevicePath = CoreFvToDevicePath (Fv, FvHandle, DriverName);
750
751 CoreGetDepexSectionAndPreProccess (DriverEntry);
752
753 CoreAcquireDispatcherLock ();
754
755 InsertTailList (&mDiscoveredList, &DriverEntry->Link);
756
757 CoreReleaseDispatcherLock ();
758
759 return EFI_SUCCESS;
760 }
761
762
763 /**
764 Check if a FV Image type file (EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE) is
765 described by a EFI_HOB_FIRMWARE_VOLUME2 Hob.
766
767 @param FvHandle The handle which FVB protocol installed on.
768 @param DriverName The driver guid specified.
769
770 @retval TRUE This file is found in a EFI_HOB_FIRMWARE_VOLUME2
771 Hob.
772 @retval FALSE Not found.
773
774 **/
775 BOOLEAN
776 FvFoundInHobFv2 (
777 IN EFI_HANDLE FvHandle,
778 IN CONST EFI_GUID *DriverName
779 )
780 {
781 EFI_PEI_HOB_POINTERS HobFv2;
782
783 HobFv2.Raw = GetHobList ();
784
785 while ((HobFv2.Raw = GetNextHob (EFI_HOB_TYPE_FV2, HobFv2.Raw)) != NULL) {
786 if (CompareGuid (DriverName, &HobFv2.FirmwareVolume2->FileName)) {
787 return TRUE;
788 }
789 HobFv2.Raw = GET_NEXT_HOB (HobFv2);
790 }
791
792 return FALSE;
793 }
794
795
796
797 /**
798 Get the driver from the FV through driver name, and produce a FVB protocol on FvHandle.
799
800 @param Fv The FIRMWARE_VOLUME protocol installed on the FV.
801 @param FvHandle The handle which FVB protocol installed on.
802 @param DriverName The driver guid specified.
803
804 @retval EFI_OUT_OF_RESOURCES No enough memory or other resource.
805 @retval EFI_VOLUME_CORRUPTED Corrupted volume.
806 @retval EFI_SUCCESS Function successfully returned.
807
808 **/
809 EFI_STATUS
810 CoreProcessFvImageFile (
811 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,
812 IN EFI_HANDLE FvHandle,
813 IN EFI_GUID *DriverName
814 )
815 {
816 EFI_STATUS Status;
817 EFI_SECTION_TYPE SectionType;
818 UINT32 AuthenticationStatus;
819 VOID *Buffer;
820 VOID *AlignedBuffer;
821 UINTN BufferSize;
822 EFI_FIRMWARE_VOLUME_HEADER *FvHeader;
823 UINT32 FvAlignment;
824
825 //
826 // Read the first (and only the first) firmware volume section
827 //
828 SectionType = EFI_SECTION_FIRMWARE_VOLUME_IMAGE;
829 FvHeader = NULL;
830 FvAlignment = 0;
831 Buffer = NULL;
832 BufferSize = 0;
833 AlignedBuffer = NULL;
834 Status = Fv->ReadSection (
835 Fv,
836 DriverName,
837 SectionType,
838 0,
839 &Buffer,
840 &BufferSize,
841 &AuthenticationStatus
842 );
843 if (!EFI_ERROR (Status)) {
844 //
845 // FvImage should be at its required alignment.
846 //
847 FvHeader = (EFI_FIRMWARE_VOLUME_HEADER *) Buffer;
848 FvAlignment = 1 << ((FvHeader->Attributes & EFI_FVB2_ALIGNMENT) >> 16);
849 //
850 // FvAlignment must be more than 8 bytes required by FvHeader structure.
851 //
852 if (FvAlignment < 8) {
853 FvAlignment = 8;
854 }
855 //
856 // Allocate the aligned buffer for the FvImage.
857 //
858 AlignedBuffer = AllocateAlignedPages (EFI_SIZE_TO_PAGES (BufferSize), (UINTN) FvAlignment);
859 if (AlignedBuffer == NULL) {
860 Status = EFI_OUT_OF_RESOURCES;
861 } else {
862 //
863 // Move FvImage into the aligned buffer and release the original buffer.
864 //
865 CopyMem (AlignedBuffer, Buffer, BufferSize);
866 CoreFreePool (Buffer);
867 Buffer = NULL;
868 //
869 // Produce a FVB protocol for the file
870 //
871 Status = ProduceFVBProtocolOnBuffer (
872 (EFI_PHYSICAL_ADDRESS) (UINTN) AlignedBuffer,
873 (UINT64)BufferSize,
874 FvHandle,
875 NULL
876 );
877 }
878 }
879
880 if (EFI_ERROR (Status)) {
881 //
882 // ReadSection or Produce FVB failed, Free data buffer
883 //
884 if (Buffer != NULL) {
885 FreePool (Buffer);
886 }
887
888 if (AlignedBuffer != NULL) {
889 FreeAlignedPages (AlignedBuffer, EFI_SIZE_TO_PAGES (BufferSize));
890 }
891 }
892
893 return Status;
894 }
895
896
897 /**
898 Event notification that is fired every time a FV dispatch protocol is added.
899 More than one protocol may have been added when this event is fired, so you
900 must loop on CoreLocateHandle () to see how many protocols were added and
901 do the following to each FV:
902 If the Fv has already been processed, skip it. If the Fv has not been
903 processed then mark it as being processed, as we are about to process it.
904 Read the Fv and add any driver in the Fv to the mDiscoveredList.The
905 mDiscoveredList is never free'ed and contains variables that define
906 the other states the DXE driver transitions to..
907 While you are at it read the A Priori file into memory.
908 Place drivers in the A Priori list onto the mScheduledQueue.
909
910 @param Event The Event that is being processed, not used.
911 @param Context Event Context, not used.
912
913 **/
914 VOID
915 EFIAPI
916 CoreFwVolEventProtocolNotify (
917 IN EFI_EVENT Event,
918 IN VOID *Context
919 )
920 {
921 EFI_STATUS Status;
922 EFI_STATUS GetNextFileStatus;
923 EFI_STATUS SecurityStatus;
924 EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv;
925 EFI_DEVICE_PATH_PROTOCOL *FvDevicePath;
926 EFI_HANDLE FvHandle;
927 UINTN BufferSize;
928 EFI_GUID NameGuid;
929 UINTN Key;
930 EFI_FV_FILETYPE Type;
931 EFI_FV_FILE_ATTRIBUTES Attributes;
932 UINTN Size;
933 EFI_CORE_DRIVER_ENTRY *DriverEntry;
934 EFI_GUID *AprioriFile;
935 UINTN AprioriEntryCount;
936 UINTN Index;
937 LIST_ENTRY *Link;
938 UINT32 AuthenticationStatus;
939 UINTN SizeOfBuffer;
940
941
942 while (TRUE) {
943 BufferSize = sizeof (EFI_HANDLE);
944 Status = CoreLocateHandle (
945 ByRegisterNotify,
946 NULL,
947 mFwVolEventRegistration,
948 &BufferSize,
949 &FvHandle
950 );
951 if (EFI_ERROR (Status)) {
952 //
953 // If no more notification events exit
954 //
955 return;
956 }
957
958 if (FvHasBeenProcessed (FvHandle)) {
959 //
960 // This Fv has already been processed so lets skip it!
961 //
962 continue;
963 }
964
965 //
966 // Since we are about to process this Fv mark it as processed.
967 //
968 FvIsBeingProcesssed (FvHandle);
969
970 Status = CoreHandleProtocol (FvHandle, &gEfiFirmwareVolume2ProtocolGuid, (VOID **)&Fv);
971 if (EFI_ERROR (Status)) {
972 //
973 // The Handle has a FirmwareVolumeDispatch protocol and should also contiain
974 // a FirmwareVolume protocol thus we should never get here.
975 //
976 ASSERT (FALSE);
977 continue;
978 }
979
980 Status = CoreHandleProtocol (FvHandle, &gEfiDevicePathProtocolGuid, (VOID **)&FvDevicePath);
981 if (EFI_ERROR (Status)) {
982 //
983 // The Firmware volume doesn't have device path, can't be dispatched.
984 //
985 continue;
986 }
987
988 //
989 // Evaluate the authentication status of the Firmware Volume through
990 // Security Architectural Protocol
991 //
992 if (gSecurity != NULL) {
993 SecurityStatus = gSecurity->FileAuthenticationState (
994 gSecurity,
995 0,
996 FvDevicePath
997 );
998 if (SecurityStatus != EFI_SUCCESS) {
999 //
1000 // Security check failed. The firmware volume should not be used for any purpose.
1001 //
1002 continue;
1003 }
1004 }
1005
1006 //
1007 // Discover Drivers in FV and add them to the Discovered Driver List.
1008 // Process EFI_FV_FILETYPE_DRIVER type and then EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER
1009 // EFI_FV_FILETYPE_DXE_CORE is processed to produce a Loaded Image protocol for the core
1010 // EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE is processed to create a Fvb
1011 //
1012 for (Index = 0; Index < sizeof (mDxeFileTypes) / sizeof (EFI_FV_FILETYPE); Index++) {
1013 //
1014 // Initialize the search key
1015 //
1016 Key = 0;
1017 do {
1018 Type = mDxeFileTypes[Index];
1019 GetNextFileStatus = Fv->GetNextFile (
1020 Fv,
1021 &Key,
1022 &Type,
1023 &NameGuid,
1024 &Attributes,
1025 &Size
1026 );
1027 if (!EFI_ERROR (GetNextFileStatus)) {
1028 if (Type == EFI_FV_FILETYPE_DXE_CORE) {
1029 //
1030 // If this is the DXE core fill in it's DevicePath & DeviceHandle
1031 //
1032 if (gDxeCoreLoadedImage->FilePath == NULL) {
1033 if (CompareGuid (&NameGuid, gDxeCoreFileName)) {
1034 //
1035 // Maybe One specail Fv cantains only one DXE_CORE module, so its device path must
1036 // be initialized completely.
1037 //
1038 EfiInitializeFwVolDevicepathNode (&mFvDevicePath.File, &NameGuid);
1039 SetDevicePathEndNode (&mFvDevicePath.End);
1040
1041 gDxeCoreLoadedImage->FilePath = DuplicateDevicePath (
1042 (EFI_DEVICE_PATH_PROTOCOL *)&mFvDevicePath
1043 );
1044 gDxeCoreLoadedImage->DeviceHandle = FvHandle;
1045 }
1046 }
1047 } else if (Type == EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE) {
1048 //
1049 // Check if this EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE file has already
1050 // been extracted.
1051 //
1052 if (FvFoundInHobFv2 (FvHandle, &NameGuid)) {
1053 continue;
1054 }
1055 //
1056 // Found a firmware volume image. Produce a firmware volume block
1057 // protocol for it so it gets dispatched from. This is usually a
1058 // capsule.
1059 //
1060 CoreProcessFvImageFile (Fv, FvHandle, &NameGuid);
1061 } else {
1062 //
1063 // Transition driver from Undiscovered to Discovered state
1064 //
1065 CoreAddToDriverList (Fv, FvHandle, &NameGuid);
1066 }
1067 }
1068 } while (!EFI_ERROR (GetNextFileStatus));
1069 }
1070
1071 //
1072 // Read the array of GUIDs from the Apriori file if it is present in the firmware volume
1073 //
1074 AprioriFile = NULL;
1075 Status = Fv->ReadSection (
1076 Fv,
1077 &gAprioriGuid,
1078 EFI_SECTION_RAW,
1079 0,
1080 (VOID **)&AprioriFile,
1081 &SizeOfBuffer,
1082 &AuthenticationStatus
1083 );
1084 if (!EFI_ERROR (Status)) {
1085 AprioriEntryCount = SizeOfBuffer / sizeof (EFI_GUID);
1086 } else {
1087 AprioriEntryCount = 0;
1088 }
1089
1090 //
1091 // Put drivers on Apriori List on the Scheduled queue. The Discovered List includes
1092 // drivers not in the current FV and these must be skipped since the a priori list
1093 // is only valid for the FV that it resided in.
1094 //
1095 CoreAcquireDispatcherLock ();
1096
1097 for (Index = 0; Index < AprioriEntryCount; Index++) {
1098 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {
1099 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
1100 if (CompareGuid (&DriverEntry->FileName, &AprioriFile[Index]) &&
1101 (FvHandle == DriverEntry->FvHandle)) {
1102 DriverEntry->Dependent = FALSE;
1103 DriverEntry->Scheduled = TRUE;
1104 InsertTailList (&mScheduledQueue, &DriverEntry->ScheduledLink);
1105 break;
1106 }
1107 }
1108 }
1109
1110 CoreReleaseDispatcherLock ();
1111
1112 //
1113 // Free data allocated by Fv->ReadSection ()
1114 //
1115 CoreFreePool (AprioriFile);
1116 }
1117 }
1118
1119
1120
1121 /**
1122 Initialize the dispatcher. Initialize the notification function that runs when
1123 an FV2 protocol is added to the system.
1124
1125 **/
1126 VOID
1127 CoreInitializeDispatcher (
1128 VOID
1129 )
1130 {
1131 mFwVolEvent = EfiCreateProtocolNotifyEvent (
1132 &gEfiFirmwareVolume2ProtocolGuid,
1133 TPL_CALLBACK,
1134 CoreFwVolEventProtocolNotify,
1135 NULL,
1136 &mFwVolEventRegistration
1137 );
1138 }
1139
1140 //
1141 // Function only used in debug builds
1142 //
1143
1144 /**
1145 Traverse the discovered list for any drivers that were discovered but not loaded
1146 because the dependency experessions evaluated to false.
1147
1148 **/
1149 VOID
1150 CoreDisplayDiscoveredNotDispatched (
1151 VOID
1152 )
1153 {
1154 LIST_ENTRY *Link;
1155 EFI_CORE_DRIVER_ENTRY *DriverEntry;
1156
1157 for (Link = mDiscoveredList.ForwardLink;Link !=&mDiscoveredList; Link = Link->ForwardLink) {
1158 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);
1159 if (DriverEntry->Dependent) {
1160 DEBUG ((DEBUG_LOAD, "Driver %g was discovered but not loaded!!\n", &DriverEntry->FileName));
1161 }
1162 }
1163 }