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Add definition for EFI_FIRMWARE_CONTENTS_SIGNED_GUID.
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1/** @file\r
2 DXE Dispatcher.\r
3\r
4 Step #1 - When a FV protocol is added to the system every driver in the FV\r
5 is added to the mDiscoveredList. The SOR, Before, and After Depex are\r
6 pre-processed as drivers are added to the mDiscoveredList. If an Apriori\r
7 file exists in the FV those drivers are addeded to the\r
8 mScheduledQueue. The mFvHandleList is used to make sure a\r
9 FV is only processed once.\r
10\r
11 Step #2 - Dispatch. Remove driver from the mScheduledQueue and load and\r
12 start it. After mScheduledQueue is drained check the\r
13 mDiscoveredList to see if any item has a Depex that is ready to\r
14 be placed on the mScheduledQueue.\r
15\r
16 Step #3 - Adding to the mScheduledQueue requires that you process Before\r
17 and After dependencies. This is done recursively as the call to add\r
18 to the mScheduledQueue checks for Before and recursively adds\r
19 all Befores. It then addes the item that was passed in and then\r
20 processess the After dependecies by recursively calling the routine.\r
21\r
22 Dispatcher Rules:\r
23 The rules for the dispatcher are in chapter 10 of the DXE CIS. Figure 10-3\r
24 is the state diagram for the DXE dispatcher\r
25\r
26 Depex - Dependency Expresion.\r
27 SOR - Schedule On Request - Don't schedule if this bit is set.\r
28\r
29Copyright (c) 2006 - 2013, Intel Corporation. All rights reserved.<BR>\r
30This program and the accompanying materials\r
31are licensed and made available under the terms and conditions of the BSD License\r
32which accompanies this distribution. The full text of the license may be found at\r
33http://opensource.org/licenses/bsd-license.php\r
34\r
35THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
36WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
37\r
38**/\r
39\r
40#include "DxeMain.h"\r
41\r
42//\r
43// The Driver List contains one copy of every driver that has been discovered.\r
44// Items are never removed from the driver list. List of EFI_CORE_DRIVER_ENTRY\r
45//\r
46LIST_ENTRY mDiscoveredList = INITIALIZE_LIST_HEAD_VARIABLE (mDiscoveredList);\r
47\r
48//\r
49// Queue of drivers that are ready to dispatch. This queue is a subset of the\r
50// mDiscoveredList.list of EFI_CORE_DRIVER_ENTRY.\r
51//\r
52LIST_ENTRY mScheduledQueue = INITIALIZE_LIST_HEAD_VARIABLE (mScheduledQueue);\r
53\r
54//\r
55// List of handles who's Fv's have been parsed and added to the mFwDriverList.\r
56//\r
57LIST_ENTRY mFvHandleList = INITIALIZE_LIST_HEAD_VARIABLE (mFvHandleList); // list of KNOWN_HANDLE\r
58\r
59//\r
60// Lock for mDiscoveredList, mScheduledQueue, gDispatcherRunning.\r
61//\r
62EFI_LOCK mDispatcherLock = EFI_INITIALIZE_LOCK_VARIABLE (TPL_HIGH_LEVEL);\r
63\r
64\r
65//\r
66// Flag for the DXE Dispacher. TRUE if dispatcher is execuing.\r
67//\r
68BOOLEAN gDispatcherRunning = FALSE;\r
69\r
70//\r
71// Module globals to manage the FwVol registration notification event\r
72//\r
73EFI_EVENT mFwVolEvent;\r
74VOID *mFwVolEventRegistration;\r
75\r
76//\r
77// List of file types supported by dispatcher\r
78//\r
79EFI_FV_FILETYPE mDxeFileTypes[] = {\r
80 EFI_FV_FILETYPE_DRIVER,\r
81 EFI_FV_FILETYPE_COMBINED_SMM_DXE,\r
82 EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER,\r
83 EFI_FV_FILETYPE_DXE_CORE,\r
84 EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE\r
85};\r
86\r
87typedef struct {\r
88 MEDIA_FW_VOL_FILEPATH_DEVICE_PATH File;\r
89 EFI_DEVICE_PATH_PROTOCOL End;\r
90} FV_FILEPATH_DEVICE_PATH;\r
91\r
92FV_FILEPATH_DEVICE_PATH mFvDevicePath;\r
93\r
94//\r
95// Function Prototypes\r
96//\r
97/**\r
98 Insert InsertedDriverEntry onto the mScheduledQueue. To do this you\r
99 must add any driver with a before dependency on InsertedDriverEntry first.\r
100 You do this by recursively calling this routine. After all the Befores are\r
101 processed you can add InsertedDriverEntry to the mScheduledQueue.\r
102 Then you can add any driver with an After dependency on InsertedDriverEntry\r
103 by recursively calling this routine.\r
104\r
105 @param InsertedDriverEntry The driver to insert on the ScheduledLink Queue\r
106\r
107**/\r
108VOID\r
109CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (\r
110 IN EFI_CORE_DRIVER_ENTRY *InsertedDriverEntry\r
111 );\r
112\r
113/**\r
114 Event notification that is fired every time a FV dispatch protocol is added.\r
115 More than one protocol may have been added when this event is fired, so you\r
116 must loop on CoreLocateHandle () to see how many protocols were added and\r
117 do the following to each FV:\r
118 If the Fv has already been processed, skip it. If the Fv has not been\r
119 processed then mark it as being processed, as we are about to process it.\r
120 Read the Fv and add any driver in the Fv to the mDiscoveredList.The\r
121 mDiscoveredList is never free'ed and contains variables that define\r
122 the other states the DXE driver transitions to..\r
123 While you are at it read the A Priori file into memory.\r
124 Place drivers in the A Priori list onto the mScheduledQueue.\r
125\r
126 @param Event The Event that is being processed, not used.\r
127 @param Context Event Context, not used.\r
128\r
129**/\r
130VOID\r
131EFIAPI\r
132CoreFwVolEventProtocolNotify (\r
133 IN EFI_EVENT Event,\r
134 IN VOID *Context\r
135 );\r
136\r
137/**\r
138 Convert FvHandle and DriverName into an EFI device path\r
139\r
140 @param Fv Fv protocol, needed to read Depex info out of\r
141 FLASH.\r
142 @param FvHandle Handle for Fv, needed in the\r
143 EFI_CORE_DRIVER_ENTRY so that the PE image can be\r
144 read out of the FV at a later time.\r
145 @param DriverName Name of driver to add to mDiscoveredList.\r
146\r
147 @return Pointer to device path constructed from FvHandle and DriverName\r
148\r
149**/\r
150EFI_DEVICE_PATH_PROTOCOL *\r
151CoreFvToDevicePath (\r
152 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,\r
153 IN EFI_HANDLE FvHandle,\r
154 IN EFI_GUID *DriverName\r
155 );\r
156\r
157/**\r
158 Add an entry to the mDiscoveredList. Allocate memory to store the DriverEntry,\r
159 and initilize any state variables. Read the Depex from the FV and store it\r
160 in DriverEntry. Pre-process the Depex to set the SOR, Before and After state.\r
161 The Discovered list is never free'ed and contains booleans that represent the\r
162 other possible DXE driver states.\r
163\r
164 @param Fv Fv protocol, needed to read Depex info out of\r
165 FLASH.\r
166 @param FvHandle Handle for Fv, needed in the\r
167 EFI_CORE_DRIVER_ENTRY so that the PE image can be\r
168 read out of the FV at a later time.\r
169 @param DriverName Name of driver to add to mDiscoveredList.\r
170 @param Type Fv File Type of file to add to mDiscoveredList.\r
171\r
172 @retval EFI_SUCCESS If driver was added to the mDiscoveredList.\r
173 @retval EFI_ALREADY_STARTED The driver has already been started. Only one\r
174 DriverName may be active in the system at any one\r
175 time.\r
176\r
177**/\r
178EFI_STATUS\r
179CoreAddToDriverList (\r
180 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,\r
181 IN EFI_HANDLE FvHandle,\r
182 IN EFI_GUID *DriverName,\r
183 IN EFI_FV_FILETYPE Type\r
184 );\r
185\r
186/**\r
187 Get the driver from the FV through driver name, and produce a FVB protocol on FvHandle.\r
188\r
189 @param Fv The FIRMWARE_VOLUME protocol installed on the FV.\r
190 @param FvHandle The handle which FVB protocol installed on.\r
191 @param DriverName The driver guid specified.\r
192\r
193 @retval EFI_OUT_OF_RESOURCES No enough memory or other resource.\r
194 @retval EFI_VOLUME_CORRUPTED Corrupted volume.\r
195 @retval EFI_SUCCESS Function successfully returned.\r
196\r
197**/\r
198EFI_STATUS\r
199CoreProcessFvImageFile (\r
200 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,\r
201 IN EFI_HANDLE FvHandle,\r
202 IN EFI_GUID *DriverName\r
203 );\r
204\r
205\r
206/**\r
207 Enter critical section by gaining lock on mDispatcherLock.\r
208\r
209**/\r
210VOID\r
211CoreAcquireDispatcherLock (\r
212 VOID\r
213 )\r
214{\r
215 CoreAcquireLock (&mDispatcherLock);\r
216}\r
217\r
218\r
219/**\r
220 Exit critical section by releasing lock on mDispatcherLock.\r
221\r
222**/\r
223VOID\r
224CoreReleaseDispatcherLock (\r
225 VOID\r
226 )\r
227{\r
228 CoreReleaseLock (&mDispatcherLock);\r
229}\r
230\r
231\r
232/**\r
233 Read Depex and pre-process the Depex for Before and After. If Section Extraction\r
234 protocol returns an error via ReadSection defer the reading of the Depex.\r
235\r
236 @param DriverEntry Driver to work on.\r
237\r
238 @retval EFI_SUCCESS Depex read and preprossesed\r
239 @retval EFI_PROTOCOL_ERROR The section extraction protocol returned an error\r
240 and Depex reading needs to be retried.\r
241 @retval Error DEPEX not found.\r
242\r
243**/\r
244EFI_STATUS\r
245CoreGetDepexSectionAndPreProccess (\r
246 IN EFI_CORE_DRIVER_ENTRY *DriverEntry\r
247 )\r
248{\r
249 EFI_STATUS Status;\r
250 EFI_SECTION_TYPE SectionType;\r
251 UINT32 AuthenticationStatus;\r
252 EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv;\r
253\r
254\r
255 Fv = DriverEntry->Fv;\r
256\r
257 //\r
258 // Grab Depex info, it will never be free'ed.\r
259 //\r
260 SectionType = EFI_SECTION_DXE_DEPEX;\r
261 Status = Fv->ReadSection (\r
262 DriverEntry->Fv,\r
263 &DriverEntry->FileName,\r
264 SectionType,\r
265 0,\r
266 &DriverEntry->Depex,\r
267 (UINTN *)&DriverEntry->DepexSize,\r
268 &AuthenticationStatus\r
269 );\r
270 if (EFI_ERROR (Status)) {\r
271 if (Status == EFI_PROTOCOL_ERROR) {\r
272 //\r
273 // The section extraction protocol failed so set protocol error flag\r
274 //\r
275 DriverEntry->DepexProtocolError = TRUE;\r
276 } else {\r
277 //\r
278 // If no Depex assume UEFI 2.0 driver model\r
279 //\r
280 DriverEntry->Depex = NULL;\r
281 DriverEntry->Dependent = TRUE;\r
282 DriverEntry->DepexProtocolError = FALSE;\r
283 }\r
284 } else {\r
285 //\r
286 // Set Before, After, and Unrequested state information based on Depex\r
287 // Driver will be put in Dependent or Unrequested state\r
288 //\r
289 CorePreProcessDepex (DriverEntry);\r
290 DriverEntry->DepexProtocolError = FALSE;\r
291 }\r
292\r
293 return Status;\r
294}\r
295\r
296\r
297/**\r
298 Check every driver and locate a matching one. If the driver is found, the Unrequested\r
299 state flag is cleared.\r
300\r
301 @param FirmwareVolumeHandle The handle of the Firmware Volume that contains\r
302 the firmware file specified by DriverName.\r
303 @param DriverName The Driver name to put in the Dependent state.\r
304\r
305 @retval EFI_SUCCESS The DriverName was found and it's SOR bit was\r
306 cleared\r
307 @retval EFI_NOT_FOUND The DriverName does not exist or it's SOR bit was\r
308 not set.\r
309\r
310**/\r
311EFI_STATUS\r
312EFIAPI\r
313CoreSchedule (\r
314 IN EFI_HANDLE FirmwareVolumeHandle,\r
315 IN EFI_GUID *DriverName\r
316 )\r
317{\r
318 LIST_ENTRY *Link;\r
319 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
320\r
321 //\r
322 // Check every driver\r
323 //\r
324 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {\r
325 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
326 if (DriverEntry->FvHandle == FirmwareVolumeHandle &&\r
327 DriverEntry->Unrequested &&\r
328 CompareGuid (DriverName, &DriverEntry->FileName)) {\r
329 //\r
330 // Move the driver from the Unrequested to the Dependent state\r
331 //\r
332 CoreAcquireDispatcherLock ();\r
333 DriverEntry->Unrequested = FALSE;\r
334 DriverEntry->Dependent = TRUE;\r
335 CoreReleaseDispatcherLock ();\r
336\r
337 DEBUG ((DEBUG_DISPATCH, "Schedule FFS(%g) - EFI_SUCCESS\n", DriverName));\r
338 \r
339 return EFI_SUCCESS;\r
340 }\r
341 }\r
342 \r
343 DEBUG ((DEBUG_DISPATCH, "Schedule FFS(%g) - EFI_NOT_FOUND\n", DriverName));\r
344 \r
345 return EFI_NOT_FOUND;\r
346}\r
347\r
348\r
349\r
350/**\r
351 Convert a driver from the Untrused back to the Scheduled state.\r
352\r
353 @param FirmwareVolumeHandle The handle of the Firmware Volume that contains\r
354 the firmware file specified by DriverName.\r
355 @param DriverName The Driver name to put in the Scheduled state\r
356\r
357 @retval EFI_SUCCESS The file was found in the untrusted state, and it\r
358 was promoted to the trusted state.\r
359 @retval EFI_NOT_FOUND The file was not found in the untrusted state.\r
360\r
361**/\r
362EFI_STATUS\r
363EFIAPI\r
364CoreTrust (\r
365 IN EFI_HANDLE FirmwareVolumeHandle,\r
366 IN EFI_GUID *DriverName\r
367 )\r
368{\r
369 LIST_ENTRY *Link;\r
370 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
371\r
372 //\r
373 // Check every driver\r
374 //\r
375 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {\r
376 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
377 if (DriverEntry->FvHandle == FirmwareVolumeHandle &&\r
378 DriverEntry->Untrusted &&\r
379 CompareGuid (DriverName, &DriverEntry->FileName)) {\r
380 //\r
381 // Transition driver from Untrusted to Scheduled state.\r
382 //\r
383 CoreAcquireDispatcherLock ();\r
384 DriverEntry->Untrusted = FALSE;\r
385 DriverEntry->Scheduled = TRUE;\r
386 InsertTailList (&mScheduledQueue, &DriverEntry->ScheduledLink);\r
387 CoreReleaseDispatcherLock ();\r
388\r
389 return EFI_SUCCESS;\r
390 }\r
391 }\r
392 return EFI_NOT_FOUND;\r
393}\r
394\r
395\r
396/**\r
397 An empty function to pass error checking of CreateEventEx ().\r
398\r
399 @param Event Event whose notification function is being invoked.\r
400 @param Context Pointer to the notification function's context,\r
401 which is implementation-dependent.\r
402\r
403**/\r
404VOID\r
405EFIAPI\r
406CoreEmptyCallbackFunction (\r
407 IN EFI_EVENT Event,\r
408 IN VOID *Context\r
409 )\r
410{\r
411 return;\r
412}\r
413\r
414/**\r
415 This is the main Dispatcher for DXE and it exits when there are no more\r
416 drivers to run. Drain the mScheduledQueue and load and start a PE\r
417 image for each driver. Search the mDiscoveredList to see if any driver can\r
418 be placed on the mScheduledQueue. If no drivers are placed on the\r
419 mScheduledQueue exit the function. On exit it is assumed the Bds()\r
420 will be called, and when the Bds() exits the Dispatcher will be called\r
421 again.\r
422\r
423 @retval EFI_ALREADY_STARTED The DXE Dispatcher is already running\r
424 @retval EFI_NOT_FOUND No DXE Drivers were dispatched\r
425 @retval EFI_SUCCESS One or more DXE Drivers were dispatched\r
426\r
427**/\r
428EFI_STATUS\r
429EFIAPI\r
430CoreDispatcher (\r
431 VOID\r
432 )\r
433{\r
434 EFI_STATUS Status;\r
435 EFI_STATUS ReturnStatus;\r
436 LIST_ENTRY *Link;\r
437 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
438 BOOLEAN ReadyToRun;\r
439 EFI_EVENT DxeDispatchEvent;\r
440 \r
441\r
442 if (gDispatcherRunning) {\r
443 //\r
444 // If the dispatcher is running don't let it be restarted.\r
445 //\r
446 return EFI_ALREADY_STARTED;\r
447 }\r
448\r
449 gDispatcherRunning = TRUE;\r
450\r
451 Status = CoreCreateEventEx (\r
452 EVT_NOTIFY_SIGNAL,\r
453 TPL_NOTIFY,\r
454 CoreEmptyCallbackFunction,\r
455 NULL,\r
456 &gEfiEventDxeDispatchGuid,\r
457 &DxeDispatchEvent\r
458 );\r
459 if (EFI_ERROR (Status)) {\r
460 return Status;\r
461 }\r
462\r
463 ReturnStatus = EFI_NOT_FOUND;\r
464 do {\r
465 //\r
466 // Drain the Scheduled Queue\r
467 //\r
468 while (!IsListEmpty (&mScheduledQueue)) {\r
469 DriverEntry = CR (\r
470 mScheduledQueue.ForwardLink,\r
471 EFI_CORE_DRIVER_ENTRY,\r
472 ScheduledLink,\r
473 EFI_CORE_DRIVER_ENTRY_SIGNATURE\r
474 );\r
475\r
476 //\r
477 // Load the DXE Driver image into memory. If the Driver was transitioned from\r
478 // Untrused to Scheduled it would have already been loaded so we may need to\r
479 // skip the LoadImage\r
480 //\r
481 if (DriverEntry->ImageHandle == NULL && !DriverEntry->IsFvImage) {\r
482 DEBUG ((DEBUG_INFO, "Loading driver %g\n", &DriverEntry->FileName));\r
483 Status = CoreLoadImage (\r
484 FALSE,\r
485 gDxeCoreImageHandle,\r
486 DriverEntry->FvFileDevicePath,\r
487 NULL,\r
488 0,\r
489 &DriverEntry->ImageHandle\r
490 );\r
491\r
492 //\r
493 // Update the driver state to reflect that it's been loaded\r
494 //\r
495 if (EFI_ERROR (Status)) {\r
496 CoreAcquireDispatcherLock ();\r
497\r
498 if (Status == EFI_SECURITY_VIOLATION) {\r
499 //\r
500 // Take driver from Scheduled to Untrused state\r
501 //\r
502 DriverEntry->Untrusted = TRUE;\r
503 } else {\r
504 //\r
505 // The DXE Driver could not be loaded, and do not attempt to load or start it again.\r
506 // Take driver from Scheduled to Initialized.\r
507 //\r
508 // This case include the Never Trusted state if EFI_ACCESS_DENIED is returned\r
509 //\r
510 DriverEntry->Initialized = TRUE;\r
511 }\r
512\r
513 DriverEntry->Scheduled = FALSE;\r
514 RemoveEntryList (&DriverEntry->ScheduledLink);\r
515\r
516 CoreReleaseDispatcherLock ();\r
517\r
518 //\r
519 // If it's an error don't try the StartImage\r
520 //\r
521 continue;\r
522 }\r
523 }\r
524\r
525 CoreAcquireDispatcherLock ();\r
526\r
527 DriverEntry->Scheduled = FALSE;\r
528 DriverEntry->Initialized = TRUE;\r
529 RemoveEntryList (&DriverEntry->ScheduledLink);\r
530\r
531 CoreReleaseDispatcherLock ();\r
532\r
533 \r
534 if (DriverEntry->IsFvImage) {\r
535 //\r
536 // Produce a firmware volume block protocol for FvImage so it gets dispatched from. \r
537 //\r
538 Status = CoreProcessFvImageFile (DriverEntry->Fv, DriverEntry->FvHandle, &DriverEntry->FileName);\r
539 } else {\r
540 REPORT_STATUS_CODE_WITH_EXTENDED_DATA (\r
541 EFI_PROGRESS_CODE,\r
542 (EFI_SOFTWARE_DXE_CORE | EFI_SW_PC_INIT_BEGIN),\r
543 &DriverEntry->ImageHandle,\r
544 sizeof (DriverEntry->ImageHandle)\r
545 );\r
546 ASSERT (DriverEntry->ImageHandle != NULL);\r
547 \r
548 Status = CoreStartImage (DriverEntry->ImageHandle, NULL, NULL);\r
549 \r
550 REPORT_STATUS_CODE_WITH_EXTENDED_DATA (\r
551 EFI_PROGRESS_CODE,\r
552 (EFI_SOFTWARE_DXE_CORE | EFI_SW_PC_INIT_END),\r
553 &DriverEntry->ImageHandle,\r
554 sizeof (DriverEntry->ImageHandle)\r
555 );\r
556 }\r
557\r
558 ReturnStatus = EFI_SUCCESS;\r
559 }\r
560\r
561 //\r
562 // Now DXE Dispatcher finished one round of dispatch, signal an event group\r
563 // so that SMM Dispatcher get chance to dispatch SMM Drivers which depend\r
564 // on UEFI protocols\r
565 //\r
566 if (!EFI_ERROR (ReturnStatus)) {\r
567 CoreSignalEvent (DxeDispatchEvent);\r
568 }\r
569\r
570 //\r
571 // Search DriverList for items to place on Scheduled Queue\r
572 //\r
573 ReadyToRun = FALSE;\r
574 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {\r
575 DriverEntry = CR (Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
576\r
577 if (DriverEntry->DepexProtocolError){\r
578 //\r
579 // If Section Extraction Protocol did not let the Depex be read before retry the read\r
580 //\r
581 Status = CoreGetDepexSectionAndPreProccess (DriverEntry);\r
582 }\r
583\r
584 if (DriverEntry->Dependent) {\r
585 if (CoreIsSchedulable (DriverEntry)) {\r
586 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (DriverEntry);\r
587 ReadyToRun = TRUE;\r
588 }\r
589 } else {\r
590 if (DriverEntry->Unrequested) {\r
591 DEBUG ((DEBUG_DISPATCH, "Evaluate DXE DEPEX for FFS(%g)\n", &DriverEntry->FileName));\r
592 DEBUG ((DEBUG_DISPATCH, " SOR = Not Requested\n"));\r
593 DEBUG ((DEBUG_DISPATCH, " RESULT = FALSE\n"));\r
594 }\r
595 }\r
596 }\r
597 } while (ReadyToRun);\r
598\r
599 //\r
600 // Close DXE dispatch Event\r
601 //\r
602 CoreCloseEvent (DxeDispatchEvent);\r
603\r
604 gDispatcherRunning = FALSE;\r
605\r
606 return ReturnStatus;\r
607}\r
608\r
609\r
610/**\r
611 Insert InsertedDriverEntry onto the mScheduledQueue. To do this you\r
612 must add any driver with a before dependency on InsertedDriverEntry first.\r
613 You do this by recursively calling this routine. After all the Befores are\r
614 processed you can add InsertedDriverEntry to the mScheduledQueue.\r
615 Then you can add any driver with an After dependency on InsertedDriverEntry\r
616 by recursively calling this routine.\r
617\r
618 @param InsertedDriverEntry The driver to insert on the ScheduledLink Queue\r
619\r
620**/\r
621VOID\r
622CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (\r
623 IN EFI_CORE_DRIVER_ENTRY *InsertedDriverEntry\r
624 )\r
625{\r
626 LIST_ENTRY *Link;\r
627 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
628\r
629 //\r
630 // Process Before Dependency\r
631 //\r
632 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {\r
633 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
634 if (DriverEntry->Before && DriverEntry->Dependent && DriverEntry != InsertedDriverEntry) {\r
635 DEBUG ((DEBUG_DISPATCH, "Evaluate DXE DEPEX for FFS(%g)\n", &DriverEntry->FileName));\r
636 DEBUG ((DEBUG_DISPATCH, " BEFORE FFS(%g) = ", &DriverEntry->BeforeAfterGuid));\r
637 if (CompareGuid (&InsertedDriverEntry->FileName, &DriverEntry->BeforeAfterGuid)) {\r
638 //\r
639 // Recursively process BEFORE\r
640 //\r
641 DEBUG ((DEBUG_DISPATCH, "TRUE\n END\n RESULT = TRUE\n"));\r
642 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (DriverEntry);\r
643 } else {\r
644 DEBUG ((DEBUG_DISPATCH, "FALSE\n END\n RESULT = FALSE\n"));\r
645 }\r
646 }\r
647 }\r
648\r
649 //\r
650 // Convert driver from Dependent to Scheduled state\r
651 //\r
652 CoreAcquireDispatcherLock ();\r
653\r
654 InsertedDriverEntry->Dependent = FALSE;\r
655 InsertedDriverEntry->Scheduled = TRUE;\r
656 InsertTailList (&mScheduledQueue, &InsertedDriverEntry->ScheduledLink);\r
657\r
658 CoreReleaseDispatcherLock ();\r
659\r
660 //\r
661 // Process After Dependency\r
662 //\r
663 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {\r
664 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
665 if (DriverEntry->After && DriverEntry->Dependent && DriverEntry != InsertedDriverEntry) {\r
666 DEBUG ((DEBUG_DISPATCH, "Evaluate DXE DEPEX for FFS(%g)\n", &DriverEntry->FileName));\r
667 DEBUG ((DEBUG_DISPATCH, " AFTER FFS(%g) = ", &DriverEntry->BeforeAfterGuid));\r
668 if (CompareGuid (&InsertedDriverEntry->FileName, &DriverEntry->BeforeAfterGuid)) {\r
669 //\r
670 // Recursively process AFTER\r
671 //\r
672 DEBUG ((DEBUG_DISPATCH, "TRUE\n END\n RESULT = TRUE\n"));\r
673 CoreInsertOnScheduledQueueWhileProcessingBeforeAndAfter (DriverEntry);\r
674 } else {\r
675 DEBUG ((DEBUG_DISPATCH, "FALSE\n END\n RESULT = FALSE\n"));\r
676 }\r
677 }\r
678 }\r
679}\r
680\r
681\r
682/**\r
683 Return TRUE if the Fv has been processed, FALSE if not.\r
684\r
685 @param FvHandle The handle of a FV that's being tested\r
686\r
687 @retval TRUE Fv protocol on FvHandle has been processed\r
688 @retval FALSE Fv protocol on FvHandle has not yet been processed\r
689\r
690**/\r
691BOOLEAN\r
692FvHasBeenProcessed (\r
693 IN EFI_HANDLE FvHandle\r
694 )\r
695{\r
696 LIST_ENTRY *Link;\r
697 KNOWN_HANDLE *KnownHandle;\r
698\r
699 for (Link = mFvHandleList.ForwardLink; Link != &mFvHandleList; Link = Link->ForwardLink) {\r
700 KnownHandle = CR(Link, KNOWN_HANDLE, Link, KNOWN_HANDLE_SIGNATURE);\r
701 if (KnownHandle->Handle == FvHandle) {\r
702 return TRUE;\r
703 }\r
704 }\r
705 return FALSE;\r
706}\r
707\r
708\r
709/**\r
710 Remember that Fv protocol on FvHandle has had it's drivers placed on the\r
711 mDiscoveredList. This fucntion adds entries on the mFvHandleList if new \r
712 entry is different from one in mFvHandleList by checking FvImage Guid.\r
713 Items are never removed/freed from the mFvHandleList.\r
714\r
715 @param FvHandle The handle of a FV that has been processed\r
716\r
717 @return A point to new added FvHandle entry. If FvHandle with the same FvImage guid\r
718 has been added, NULL will return. \r
719\r
720**/\r
721KNOWN_HANDLE * \r
722FvIsBeingProcesssed (\r
723 IN EFI_HANDLE FvHandle\r
724 )\r
725{\r
726 EFI_STATUS Status;\r
727 EFI_GUID FvNameGuid;\r
728 BOOLEAN FvNameGuidIsFound;\r
729 UINT32 ExtHeaderOffset;\r
730 EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb;\r
731 EFI_FIRMWARE_VOLUME_HEADER *FwVolHeader;\r
732 EFI_FV_BLOCK_MAP_ENTRY *BlockMap;\r
733 UINTN LbaOffset;\r
734 UINTN Index;\r
735 EFI_LBA LbaIndex;\r
736 LIST_ENTRY *Link;\r
737 KNOWN_HANDLE *KnownHandle;\r
738\r
739 //\r
740 // Get the FirmwareVolumeBlock protocol on that handle\r
741 //\r
742 FvNameGuidIsFound = FALSE;\r
743 Status = CoreHandleProtocol (FvHandle, &gEfiFirmwareVolumeBlockProtocolGuid, (VOID **)&Fvb);\r
744 if (!EFI_ERROR (Status)) {\r
745 //\r
746 // Get the full FV header based on FVB protocol.\r
747 //\r
748 ASSERT (Fvb != NULL);\r
749 Status = GetFwVolHeader (Fvb, &FwVolHeader);\r
750 if (!EFI_ERROR (Status)) {\r
751 ASSERT (FwVolHeader != NULL);\r
752 if (VerifyFvHeaderChecksum (FwVolHeader) && FwVolHeader->ExtHeaderOffset != 0) {\r
753 ExtHeaderOffset = (UINT32) FwVolHeader->ExtHeaderOffset;\r
754 BlockMap = FwVolHeader->BlockMap;\r
755 LbaIndex = 0;\r
756 LbaOffset = 0;\r
757 //\r
758 // Find LbaIndex and LbaOffset for FV extension header based on BlockMap.\r
759 //\r
760 while ((BlockMap->NumBlocks != 0) || (BlockMap->Length != 0)) {\r
761 for (Index = 0; Index < BlockMap->NumBlocks && ExtHeaderOffset >= BlockMap->Length; Index ++) {\r
762 ExtHeaderOffset -= BlockMap->Length;\r
763 LbaIndex ++;\r
764 }\r
765 //\r
766 // Check whether FvExtHeader is crossing the multi block range.\r
767 //\r
768 if (Index < BlockMap->NumBlocks) {\r
769 LbaOffset = ExtHeaderOffset;\r
770 break;\r
771 }\r
772 BlockMap++;\r
773 }\r
774 //\r
775 // Read FvNameGuid from FV extension header.\r
776 //\r
777 Status = ReadFvbData (Fvb, &LbaIndex, &LbaOffset, sizeof (FvNameGuid), (UINT8 *) &FvNameGuid);\r
778 if (!EFI_ERROR (Status)) {\r
779 FvNameGuidIsFound = TRUE;\r
780 }\r
781 }\r
782 CoreFreePool (FwVolHeader);\r
783 }\r
784 }\r
785\r
786 if (FvNameGuidIsFound) {\r
787 //\r
788 // Check whether the FV image with the found FvNameGuid has been processed.\r
789 //\r
790 for (Link = mFvHandleList.ForwardLink; Link != &mFvHandleList; Link = Link->ForwardLink) {\r
791 KnownHandle = CR(Link, KNOWN_HANDLE, Link, KNOWN_HANDLE_SIGNATURE);\r
792 if (CompareGuid (&FvNameGuid, &KnownHandle->FvNameGuid)) {\r
793 DEBUG ((EFI_D_ERROR, "FvImage on FvHandle %p and %p has the same FvNameGuid %g.\n", FvHandle, KnownHandle->Handle, FvNameGuid));\r
794 return NULL;\r
795 }\r
796 }\r
797 }\r
798\r
799 KnownHandle = AllocateZeroPool (sizeof (KNOWN_HANDLE));\r
800 ASSERT (KnownHandle != NULL);\r
801\r
802 KnownHandle->Signature = KNOWN_HANDLE_SIGNATURE;\r
803 KnownHandle->Handle = FvHandle;\r
804 if (FvNameGuidIsFound) {\r
805 CopyGuid (&KnownHandle->FvNameGuid, &FvNameGuid);\r
806 }\r
807 InsertTailList (&mFvHandleList, &KnownHandle->Link);\r
808 return KnownHandle;\r
809}\r
810\r
811\r
812\r
813\r
814/**\r
815 Convert FvHandle and DriverName into an EFI device path\r
816\r
817 @param Fv Fv protocol, needed to read Depex info out of\r
818 FLASH.\r
819 @param FvHandle Handle for Fv, needed in the\r
820 EFI_CORE_DRIVER_ENTRY so that the PE image can be\r
821 read out of the FV at a later time.\r
822 @param DriverName Name of driver to add to mDiscoveredList.\r
823\r
824 @return Pointer to device path constructed from FvHandle and DriverName\r
825\r
826**/\r
827EFI_DEVICE_PATH_PROTOCOL *\r
828CoreFvToDevicePath (\r
829 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,\r
830 IN EFI_HANDLE FvHandle,\r
831 IN EFI_GUID *DriverName\r
832 )\r
833{\r
834 EFI_STATUS Status;\r
835 EFI_DEVICE_PATH_PROTOCOL *FvDevicePath;\r
836 EFI_DEVICE_PATH_PROTOCOL *FileNameDevicePath;\r
837\r
838 //\r
839 // Remember the device path of the FV\r
840 //\r
841 Status = CoreHandleProtocol (FvHandle, &gEfiDevicePathProtocolGuid, (VOID **)&FvDevicePath);\r
842 if (EFI_ERROR (Status)) {\r
843 FileNameDevicePath = NULL;\r
844 } else {\r
845 //\r
846 // Build a device path to the file in the FV to pass into gBS->LoadImage\r
847 //\r
848 EfiInitializeFwVolDevicepathNode (&mFvDevicePath.File, DriverName);\r
849 SetDevicePathEndNode (&mFvDevicePath.End);\r
850\r
851 FileNameDevicePath = AppendDevicePath (\r
852 FvDevicePath,\r
853 (EFI_DEVICE_PATH_PROTOCOL *)&mFvDevicePath\r
854 );\r
855 }\r
856\r
857 return FileNameDevicePath;\r
858}\r
859\r
860\r
861\r
862/**\r
863 Add an entry to the mDiscoveredList. Allocate memory to store the DriverEntry,\r
864 and initilize any state variables. Read the Depex from the FV and store it\r
865 in DriverEntry. Pre-process the Depex to set the SOR, Before and After state.\r
866 The Discovered list is never free'ed and contains booleans that represent the\r
867 other possible DXE driver states.\r
868\r
869 @param Fv Fv protocol, needed to read Depex info out of\r
870 FLASH.\r
871 @param FvHandle Handle for Fv, needed in the\r
872 EFI_CORE_DRIVER_ENTRY so that the PE image can be\r
873 read out of the FV at a later time.\r
874 @param DriverName Name of driver to add to mDiscoveredList.\r
875 @param Type Fv File Type of file to add to mDiscoveredList.\r
876\r
877 @retval EFI_SUCCESS If driver was added to the mDiscoveredList.\r
878 @retval EFI_ALREADY_STARTED The driver has already been started. Only one\r
879 DriverName may be active in the system at any one\r
880 time.\r
881\r
882**/\r
883EFI_STATUS\r
884CoreAddToDriverList (\r
885 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,\r
886 IN EFI_HANDLE FvHandle,\r
887 IN EFI_GUID *DriverName,\r
888 IN EFI_FV_FILETYPE Type\r
889 )\r
890{\r
891 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
892\r
893\r
894 //\r
895 // Create the Driver Entry for the list. ZeroPool initializes lots of variables to\r
896 // NULL or FALSE.\r
897 //\r
898 DriverEntry = AllocateZeroPool (sizeof (EFI_CORE_DRIVER_ENTRY));\r
899 ASSERT (DriverEntry != NULL);\r
900 if (Type == EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE) {\r
901 DriverEntry->IsFvImage = TRUE;\r
902 }\r
903\r
904 DriverEntry->Signature = EFI_CORE_DRIVER_ENTRY_SIGNATURE;\r
905 CopyGuid (&DriverEntry->FileName, DriverName);\r
906 DriverEntry->FvHandle = FvHandle;\r
907 DriverEntry->Fv = Fv;\r
908 DriverEntry->FvFileDevicePath = CoreFvToDevicePath (Fv, FvHandle, DriverName);\r
909\r
910 CoreGetDepexSectionAndPreProccess (DriverEntry);\r
911\r
912 CoreAcquireDispatcherLock ();\r
913\r
914 InsertTailList (&mDiscoveredList, &DriverEntry->Link);\r
915\r
916 CoreReleaseDispatcherLock ();\r
917\r
918 return EFI_SUCCESS;\r
919}\r
920\r
921\r
922/**\r
923 Check if a FV Image type file (EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE) is\r
924 described by a EFI_HOB_FIRMWARE_VOLUME2 Hob.\r
925\r
926 @param FvNameGuid The FV image guid specified.\r
927 @param DriverName The driver guid specified.\r
928\r
929 @retval TRUE This file is found in a EFI_HOB_FIRMWARE_VOLUME2\r
930 Hob.\r
931 @retval FALSE Not found.\r
932\r
933**/\r
934BOOLEAN\r
935FvFoundInHobFv2 (\r
936 IN CONST EFI_GUID *FvNameGuid,\r
937 IN CONST EFI_GUID *DriverName\r
938 )\r
939{\r
940 EFI_PEI_HOB_POINTERS HobFv2;\r
941\r
942 HobFv2.Raw = GetHobList ();\r
943\r
944 while ((HobFv2.Raw = GetNextHob (EFI_HOB_TYPE_FV2, HobFv2.Raw)) != NULL) {\r
945 //\r
946 // Compare parent FvNameGuid and FileGuid both.\r
947 //\r
948 if (CompareGuid (DriverName, &HobFv2.FirmwareVolume2->FileName) &&\r
949 CompareGuid (FvNameGuid, &HobFv2.FirmwareVolume2->FvName)) {\r
950 return TRUE;\r
951 }\r
952 HobFv2.Raw = GET_NEXT_HOB (HobFv2);\r
953 }\r
954\r
955 return FALSE;\r
956}\r
957\r
958\r
959\r
960/**\r
961 Get the driver from the FV through driver name, and produce a FVB protocol on FvHandle.\r
962\r
963 @param Fv The FIRMWARE_VOLUME protocol installed on the FV.\r
964 @param FvHandle The handle which FVB protocol installed on.\r
965 @param DriverName The driver guid specified.\r
966\r
967 @retval EFI_OUT_OF_RESOURCES No enough memory or other resource.\r
968 @retval EFI_VOLUME_CORRUPTED Corrupted volume.\r
969 @retval EFI_SUCCESS Function successfully returned.\r
970\r
971**/\r
972EFI_STATUS\r
973CoreProcessFvImageFile (\r
974 IN EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv,\r
975 IN EFI_HANDLE FvHandle,\r
976 IN EFI_GUID *DriverName\r
977 )\r
978{\r
979 EFI_STATUS Status;\r
980 EFI_SECTION_TYPE SectionType;\r
981 UINT32 AuthenticationStatus;\r
982 VOID *Buffer;\r
983 VOID *AlignedBuffer;\r
984 UINTN BufferSize;\r
985 EFI_FIRMWARE_VOLUME_HEADER *FvHeader;\r
986 UINT32 FvAlignment;\r
987 EFI_DEVICE_PATH_PROTOCOL *FvFileDevicePath;\r
988\r
989 //\r
990 // Read the first (and only the first) firmware volume section\r
991 //\r
992 SectionType = EFI_SECTION_FIRMWARE_VOLUME_IMAGE;\r
993 FvHeader = NULL;\r
994 FvAlignment = 0;\r
995 Buffer = NULL;\r
996 BufferSize = 0;\r
997 AlignedBuffer = NULL;\r
998 Status = Fv->ReadSection (\r
999 Fv,\r
1000 DriverName,\r
1001 SectionType,\r
1002 0,\r
1003 &Buffer,\r
1004 &BufferSize,\r
1005 &AuthenticationStatus\r
1006 );\r
1007 if (!EFI_ERROR (Status)) {\r
1008 //\r
1009 // Evaluate the authentication status of the Firmware Volume through\r
1010 // Security Architectural Protocol\r
1011 //\r
1012 if (gSecurity != NULL) {\r
1013 FvFileDevicePath = CoreFvToDevicePath (Fv, FvHandle, DriverName);\r
1014 Status = gSecurity->FileAuthenticationState (\r
1015 gSecurity,\r
1016 AuthenticationStatus,\r
1017 FvFileDevicePath\r
1018 );\r
1019 if (FvFileDevicePath != NULL) {\r
1020 FreePool (FvFileDevicePath);\r
1021 }\r
1022\r
1023 if (Status != EFI_SUCCESS) {\r
1024 //\r
1025 // Security check failed. The firmware volume should not be used for any purpose.\r
1026 //\r
1027 if (Buffer != NULL) {\r
1028 FreePool (Buffer);\r
1029 }\r
1030 return Status;\r
1031 }\r
1032 }\r
1033\r
1034 //\r
1035 // FvImage should be at its required alignment.\r
1036 //\r
1037 FvHeader = (EFI_FIRMWARE_VOLUME_HEADER *) Buffer;\r
1038 //\r
1039 // Get FvHeader alignment\r
1040 //\r
1041 FvAlignment = 1 << ((FvHeader->Attributes & EFI_FVB2_ALIGNMENT) >> 16);\r
1042 //\r
1043 // FvAlignment must be greater than or equal to 8 bytes of the minimum FFS alignment value. \r
1044 //\r
1045 if (FvAlignment < 8) {\r
1046 FvAlignment = 8;\r
1047 }\r
1048 //\r
1049 // Allocate the aligned buffer for the FvImage.\r
1050 //\r
1051 AlignedBuffer = AllocateAlignedPages (EFI_SIZE_TO_PAGES (BufferSize), (UINTN) FvAlignment);\r
1052 if (AlignedBuffer == NULL) {\r
1053 Status = EFI_OUT_OF_RESOURCES;\r
1054 } else {\r
1055 //\r
1056 // Move FvImage into the aligned buffer and release the original buffer.\r
1057 //\r
1058 CopyMem (AlignedBuffer, Buffer, BufferSize);\r
1059 CoreFreePool (Buffer);\r
1060 Buffer = NULL;\r
1061 //\r
1062 // Produce a FVB protocol for the file\r
1063 //\r
1064 Status = ProduceFVBProtocolOnBuffer (\r
1065 (EFI_PHYSICAL_ADDRESS) (UINTN) AlignedBuffer,\r
1066 (UINT64)BufferSize,\r
1067 FvHandle,\r
1068 AuthenticationStatus,\r
1069 NULL\r
1070 );\r
1071 }\r
1072 }\r
1073\r
1074 if (EFI_ERROR (Status)) {\r
1075 //\r
1076 // ReadSection or Produce FVB failed, Free data buffer\r
1077 //\r
1078 if (Buffer != NULL) {\r
1079 FreePool (Buffer);\r
1080 }\r
1081\r
1082 if (AlignedBuffer != NULL) {\r
1083 FreeAlignedPages (AlignedBuffer, EFI_SIZE_TO_PAGES (BufferSize));\r
1084 }\r
1085 }\r
1086\r
1087 return Status;\r
1088}\r
1089\r
1090\r
1091/**\r
1092 Event notification that is fired every time a FV dispatch protocol is added.\r
1093 More than one protocol may have been added when this event is fired, so you\r
1094 must loop on CoreLocateHandle () to see how many protocols were added and\r
1095 do the following to each FV:\r
1096 If the Fv has already been processed, skip it. If the Fv has not been\r
1097 processed then mark it as being processed, as we are about to process it.\r
1098 Read the Fv and add any driver in the Fv to the mDiscoveredList.The\r
1099 mDiscoveredList is never free'ed and contains variables that define\r
1100 the other states the DXE driver transitions to..\r
1101 While you are at it read the A Priori file into memory.\r
1102 Place drivers in the A Priori list onto the mScheduledQueue.\r
1103\r
1104 @param Event The Event that is being processed, not used.\r
1105 @param Context Event Context, not used.\r
1106\r
1107**/\r
1108VOID\r
1109EFIAPI\r
1110CoreFwVolEventProtocolNotify (\r
1111 IN EFI_EVENT Event,\r
1112 IN VOID *Context\r
1113 )\r
1114{\r
1115 EFI_STATUS Status;\r
1116 EFI_STATUS GetNextFileStatus;\r
1117 EFI_FIRMWARE_VOLUME2_PROTOCOL *Fv;\r
1118 EFI_DEVICE_PATH_PROTOCOL *FvDevicePath;\r
1119 EFI_HANDLE FvHandle;\r
1120 UINTN BufferSize;\r
1121 EFI_GUID NameGuid;\r
1122 UINTN Key;\r
1123 EFI_FV_FILETYPE Type;\r
1124 EFI_FV_FILE_ATTRIBUTES Attributes;\r
1125 UINTN Size;\r
1126 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
1127 EFI_GUID *AprioriFile;\r
1128 UINTN AprioriEntryCount;\r
1129 UINTN Index;\r
1130 LIST_ENTRY *Link;\r
1131 UINT32 AuthenticationStatus;\r
1132 UINTN SizeOfBuffer;\r
1133 VOID *DepexBuffer;\r
1134 KNOWN_HANDLE *KnownHandle;\r
1135\r
1136 while (TRUE) {\r
1137 BufferSize = sizeof (EFI_HANDLE);\r
1138 Status = CoreLocateHandle (\r
1139 ByRegisterNotify,\r
1140 NULL,\r
1141 mFwVolEventRegistration,\r
1142 &BufferSize,\r
1143 &FvHandle\r
1144 );\r
1145 if (EFI_ERROR (Status)) {\r
1146 //\r
1147 // If no more notification events exit\r
1148 //\r
1149 return;\r
1150 }\r
1151\r
1152 if (FvHasBeenProcessed (FvHandle)) {\r
1153 //\r
1154 // This Fv has already been processed so lets skip it!\r
1155 //\r
1156 continue;\r
1157 }\r
1158\r
1159 //\r
1160 // Since we are about to process this Fv mark it as processed.\r
1161 //\r
1162 KnownHandle = FvIsBeingProcesssed (FvHandle);\r
1163 if (KnownHandle == NULL) {\r
1164 //\r
1165 // The FV with the same FV name guid has already been processed. \r
1166 // So lets skip it!\r
1167 //\r
1168 continue;\r
1169 }\r
1170\r
1171 Status = CoreHandleProtocol (FvHandle, &gEfiFirmwareVolume2ProtocolGuid, (VOID **)&Fv);\r
1172 if (EFI_ERROR (Status) || Fv == NULL) {\r
1173 //\r
1174 // FvHandle must have Firmware Volume2 protocol thus we should never get here.\r
1175 //\r
1176 ASSERT (FALSE);\r
1177 continue;\r
1178 }\r
1179\r
1180 Status = CoreHandleProtocol (FvHandle, &gEfiDevicePathProtocolGuid, (VOID **)&FvDevicePath);\r
1181 if (EFI_ERROR (Status)) {\r
1182 //\r
1183 // The Firmware volume doesn't have device path, can't be dispatched.\r
1184 //\r
1185 continue;\r
1186 }\r
1187\r
1188 //\r
1189 // Discover Drivers in FV and add them to the Discovered Driver List.\r
1190 // Process EFI_FV_FILETYPE_DRIVER type and then EFI_FV_FILETYPE_COMBINED_PEIM_DRIVER\r
1191 // EFI_FV_FILETYPE_DXE_CORE is processed to produce a Loaded Image protocol for the core\r
1192 // EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE is processed to create a Fvb\r
1193 //\r
1194 for (Index = 0; Index < sizeof (mDxeFileTypes) / sizeof (EFI_FV_FILETYPE); Index++) {\r
1195 //\r
1196 // Initialize the search key\r
1197 //\r
1198 Key = 0;\r
1199 do {\r
1200 Type = mDxeFileTypes[Index];\r
1201 GetNextFileStatus = Fv->GetNextFile (\r
1202 Fv,\r
1203 &Key,\r
1204 &Type,\r
1205 &NameGuid,\r
1206 &Attributes,\r
1207 &Size\r
1208 );\r
1209 if (!EFI_ERROR (GetNextFileStatus)) {\r
1210 if (Type == EFI_FV_FILETYPE_DXE_CORE) {\r
1211 //\r
1212 // If this is the DXE core fill in it's DevicePath & DeviceHandle\r
1213 //\r
1214 if (gDxeCoreLoadedImage->FilePath == NULL) {\r
1215 if (CompareGuid (&NameGuid, gDxeCoreFileName)) {\r
1216 //\r
1217 // Maybe One specail Fv cantains only one DXE_CORE module, so its device path must\r
1218 // be initialized completely.\r
1219 //\r
1220 EfiInitializeFwVolDevicepathNode (&mFvDevicePath.File, &NameGuid);\r
1221 SetDevicePathEndNode (&mFvDevicePath.End);\r
1222\r
1223 gDxeCoreLoadedImage->FilePath = DuplicateDevicePath (\r
1224 (EFI_DEVICE_PATH_PROTOCOL *)&mFvDevicePath\r
1225 );\r
1226 gDxeCoreLoadedImage->DeviceHandle = FvHandle;\r
1227 }\r
1228 }\r
1229 } else if (Type == EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE) {\r
1230 //\r
1231 // Check if this EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE file has already\r
1232 // been extracted.\r
1233 //\r
1234 if (FvFoundInHobFv2 (&KnownHandle->FvNameGuid, &NameGuid)) {\r
1235 continue;\r
1236 }\r
1237\r
1238 //\r
1239 // Check if this EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE file has PEI depex section.\r
1240 //\r
1241 DepexBuffer = NULL;\r
1242 SizeOfBuffer = 0;\r
1243 Status = Fv->ReadSection (\r
1244 Fv,\r
1245 &NameGuid,\r
1246 EFI_SECTION_PEI_DEPEX,\r
1247 0,\r
1248 &DepexBuffer,\r
1249 &SizeOfBuffer,\r
1250 &AuthenticationStatus\r
1251 );\r
1252 if (!EFI_ERROR (Status)) {\r
1253 //\r
1254 // If PEI depex section is found, this FV image will be ignored in DXE phase.\r
1255 // Now, DxeCore doesn't support FV image with more one type DEPEX section.\r
1256 //\r
1257 FreePool (DepexBuffer);\r
1258 continue;\r
1259 }\r
1260\r
1261 //\r
1262 // Check if this EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE file has SMM depex section.\r
1263 //\r
1264 DepexBuffer = NULL;\r
1265 SizeOfBuffer = 0;\r
1266 Status = Fv->ReadSection (\r
1267 Fv,\r
1268 &NameGuid,\r
1269 EFI_SECTION_SMM_DEPEX,\r
1270 0,\r
1271 &DepexBuffer,\r
1272 &SizeOfBuffer,\r
1273 &AuthenticationStatus\r
1274 );\r
1275 if (!EFI_ERROR (Status)) {\r
1276 //\r
1277 // If SMM depex section is found, this FV image will be ignored in DXE phase.\r
1278 // Now, DxeCore doesn't support FV image with more one type DEPEX section.\r
1279 //\r
1280 FreePool (DepexBuffer);\r
1281 continue;\r
1282 }\r
1283\r
1284 //\r
1285 // Check if this EFI_FV_FILETYPE_FIRMWARE_VOLUME_IMAGE file has DXE depex section.\r
1286 //\r
1287 DepexBuffer = NULL;\r
1288 SizeOfBuffer = 0;\r
1289 Status = Fv->ReadSection (\r
1290 Fv,\r
1291 &NameGuid,\r
1292 EFI_SECTION_DXE_DEPEX,\r
1293 0,\r
1294 &DepexBuffer,\r
1295 &SizeOfBuffer,\r
1296 &AuthenticationStatus\r
1297 );\r
1298 if (EFI_ERROR (Status)) {\r
1299 //\r
1300 // If no depex section, produce a firmware volume block protocol for it so it gets dispatched from. \r
1301 //\r
1302 CoreProcessFvImageFile (Fv, FvHandle, &NameGuid);\r
1303 } else {\r
1304 //\r
1305 // If depex section is found, this FV image will be dispatched until its depex is evaluated to TRUE.\r
1306 //\r
1307 FreePool (DepexBuffer);\r
1308 CoreAddToDriverList (Fv, FvHandle, &NameGuid, Type);\r
1309 }\r
1310 } else {\r
1311 //\r
1312 // Transition driver from Undiscovered to Discovered state\r
1313 //\r
1314 CoreAddToDriverList (Fv, FvHandle, &NameGuid, Type);\r
1315 }\r
1316 }\r
1317 } while (!EFI_ERROR (GetNextFileStatus));\r
1318 }\r
1319\r
1320 //\r
1321 // Read the array of GUIDs from the Apriori file if it is present in the firmware volume\r
1322 //\r
1323 AprioriFile = NULL;\r
1324 Status = Fv->ReadSection (\r
1325 Fv,\r
1326 &gAprioriGuid,\r
1327 EFI_SECTION_RAW,\r
1328 0,\r
1329 (VOID **)&AprioriFile,\r
1330 &SizeOfBuffer,\r
1331 &AuthenticationStatus\r
1332 );\r
1333 if (!EFI_ERROR (Status)) {\r
1334 AprioriEntryCount = SizeOfBuffer / sizeof (EFI_GUID);\r
1335 } else {\r
1336 AprioriEntryCount = 0;\r
1337 }\r
1338\r
1339 //\r
1340 // Put drivers on Apriori List on the Scheduled queue. The Discovered List includes\r
1341 // drivers not in the current FV and these must be skipped since the a priori list\r
1342 // is only valid for the FV that it resided in.\r
1343 //\r
1344\r
1345 for (Index = 0; Index < AprioriEntryCount; Index++) {\r
1346 for (Link = mDiscoveredList.ForwardLink; Link != &mDiscoveredList; Link = Link->ForwardLink) {\r
1347 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
1348 if (CompareGuid (&DriverEntry->FileName, &AprioriFile[Index]) &&\r
1349 (FvHandle == DriverEntry->FvHandle)) {\r
1350 CoreAcquireDispatcherLock ();\r
1351 DriverEntry->Dependent = FALSE;\r
1352 DriverEntry->Scheduled = TRUE;\r
1353 InsertTailList (&mScheduledQueue, &DriverEntry->ScheduledLink);\r
1354 CoreReleaseDispatcherLock ();\r
1355 DEBUG ((DEBUG_DISPATCH, "Evaluate DXE DEPEX for FFS(%g)\n", &DriverEntry->FileName));\r
1356 DEBUG ((DEBUG_DISPATCH, " RESULT = TRUE (Apriori)\n"));\r
1357 break;\r
1358 }\r
1359 }\r
1360 }\r
1361\r
1362 //\r
1363 // Free data allocated by Fv->ReadSection ()\r
1364 //\r
1365 CoreFreePool (AprioriFile);\r
1366 }\r
1367}\r
1368\r
1369\r
1370\r
1371/**\r
1372 Initialize the dispatcher. Initialize the notification function that runs when\r
1373 an FV2 protocol is added to the system.\r
1374\r
1375**/\r
1376VOID\r
1377CoreInitializeDispatcher (\r
1378 VOID\r
1379 )\r
1380{\r
1381 mFwVolEvent = EfiCreateProtocolNotifyEvent (\r
1382 &gEfiFirmwareVolume2ProtocolGuid,\r
1383 TPL_CALLBACK,\r
1384 CoreFwVolEventProtocolNotify,\r
1385 NULL,\r
1386 &mFwVolEventRegistration\r
1387 );\r
1388}\r
1389\r
1390//\r
1391// Function only used in debug builds\r
1392//\r
1393\r
1394/**\r
1395 Traverse the discovered list for any drivers that were discovered but not loaded\r
1396 because the dependency experessions evaluated to false.\r
1397\r
1398**/\r
1399VOID\r
1400CoreDisplayDiscoveredNotDispatched (\r
1401 VOID\r
1402 )\r
1403{\r
1404 LIST_ENTRY *Link;\r
1405 EFI_CORE_DRIVER_ENTRY *DriverEntry;\r
1406\r
1407 for (Link = mDiscoveredList.ForwardLink;Link !=&mDiscoveredList; Link = Link->ForwardLink) {\r
1408 DriverEntry = CR(Link, EFI_CORE_DRIVER_ENTRY, Link, EFI_CORE_DRIVER_ENTRY_SIGNATURE);\r
1409 if (DriverEntry->Dependent) {\r
1410 DEBUG ((DEBUG_LOAD, "Driver %g was discovered but not loaded!!\n", &DriverEntry->FileName));\r
1411 }\r
1412 }\r
1413}\r