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1/** @file\r
2 The common variable operation routines shared by DXE_RUNTIME variable\r
3 module and DXE_SMM variable module.\r
4\r
5 Caution: This module requires additional review when modified.\r
6 This driver will have external input - variable data. They may be input in SMM mode.\r
7 This external input must be validated carefully to avoid security issue like\r
8 buffer overflow, integer overflow.\r
9\r
10 VariableServiceGetNextVariableName () and VariableServiceQueryVariableInfo() are external API.\r
11 They need check input parameter.\r
12\r
13 VariableServiceGetVariable() and VariableServiceSetVariable() are external API\r
14 to receive datasize and data buffer. The size should be checked carefully.\r
15\r
16 VariableServiceSetVariable() should also check authenticate data to avoid buffer overflow,\r
17 integer overflow. It should also check attribute to avoid authentication bypass.\r
18\r
19Copyright (c) 2006 - 2015, Intel Corporation. All rights reserved.<BR>\r
20This program and the accompanying materials\r
21are licensed and made available under the terms and conditions of the BSD License\r
22which accompanies this distribution. The full text of the license may be found at\r
23http://opensource.org/licenses/bsd-license.php\r
24\r
25THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
26WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
27\r
28**/\r
29\r
30#include "Variable.h"\r
31\r
32VARIABLE_MODULE_GLOBAL *mVariableModuleGlobal;\r
33\r
34///\r
35/// Define a memory cache that improves the search performance for a variable.\r
36///\r
37VARIABLE_STORE_HEADER *mNvVariableCache = NULL;\r
38\r
39///\r
40/// The memory entry used for variable statistics data.\r
41///\r
42VARIABLE_INFO_ENTRY *gVariableInfo = NULL;\r
43\r
44///\r
45/// The list to store the variables which cannot be set after the EFI_END_OF_DXE_EVENT_GROUP_GUID\r
46/// or EVT_GROUP_READY_TO_BOOT event.\r
47///\r
48LIST_ENTRY mLockedVariableList = INITIALIZE_LIST_HEAD_VARIABLE (mLockedVariableList);\r
49\r
50///\r
51/// The flag to indicate whether the platform has left the DXE phase of execution.\r
52///\r
53BOOLEAN mEndOfDxe = FALSE;\r
54\r
55///\r
56/// The flag to indicate whether the variable storage locking is enabled.\r
57///\r
58BOOLEAN mEnableLocking = TRUE;\r
59\r
60//\r
61// It will record the current boot error flag before EndOfDxe.\r
62//\r
63VAR_ERROR_FLAG mCurrentBootVarErrFlag = VAR_ERROR_FLAG_NO_ERROR;\r
64\r
65VARIABLE_ENTRY_PROPERTY mVariableEntryProperty[] = {\r
66 {\r
67 &gEdkiiVarErrorFlagGuid,\r
68 VAR_ERROR_FLAG_NAME,\r
69 {\r
70 VAR_CHECK_VARIABLE_PROPERTY_REVISION,\r
71 VAR_CHECK_VARIABLE_PROPERTY_READ_ONLY,\r
72 VARIABLE_ATTRIBUTE_NV_BS_RT,\r
73 sizeof (VAR_ERROR_FLAG),\r
74 sizeof (VAR_ERROR_FLAG)\r
75 }\r
76 },\r
77};\r
78\r
79AUTH_VAR_LIB_CONTEXT_IN mContextIn = {\r
80 AUTH_VAR_LIB_CONTEXT_IN_STRUCT_VERSION,\r
81 //\r
82 // StructSize, TO BE FILLED\r
83 //\r
84 0,\r
85 //\r
86 // MaxAuthVariableSize, TO BE FILLED\r
87 //\r
88 0,\r
89 VariableExLibFindVariable,\r
90 VariableExLibFindNextVariable,\r
91 VariableExLibUpdateVariable,\r
92 VariableExLibGetScratchBuffer,\r
93 VariableExLibCheckRemainingSpaceForConsistency,\r
94 VariableExLibAtRuntime,\r
95};\r
96\r
97AUTH_VAR_LIB_CONTEXT_OUT mContextOut;\r
98\r
99/**\r
100\r
101 SecureBoot Hook for auth variable update.\r
102\r
103 @param[in] VariableName Name of Variable to be found.\r
104 @param[in] VendorGuid Variable vendor GUID.\r
105**/\r
106VOID\r
107EFIAPI\r
108SecureBootHook (\r
109 IN CHAR16 *VariableName,\r
110 IN EFI_GUID *VendorGuid\r
111 );\r
112\r
113/**\r
114 Routine used to track statistical information about variable usage.\r
115 The data is stored in the EFI system table so it can be accessed later.\r
116 VariableInfo.efi can dump out the table. Only Boot Services variable\r
117 accesses are tracked by this code. The PcdVariableCollectStatistics\r
118 build flag controls if this feature is enabled.\r
119\r
120 A read that hits in the cache will have Read and Cache true for\r
121 the transaction. Data is allocated by this routine, but never\r
122 freed.\r
123\r
124 @param[in] VariableName Name of the Variable to track.\r
125 @param[in] VendorGuid Guid of the Variable to track.\r
126 @param[in] Volatile TRUE if volatile FALSE if non-volatile.\r
127 @param[in] Read TRUE if GetVariable() was called.\r
128 @param[in] Write TRUE if SetVariable() was called.\r
129 @param[in] Delete TRUE if deleted via SetVariable().\r
130 @param[in] Cache TRUE for a cache hit.\r
131\r
132**/\r
133VOID\r
134UpdateVariableInfo (\r
135 IN CHAR16 *VariableName,\r
136 IN EFI_GUID *VendorGuid,\r
137 IN BOOLEAN Volatile,\r
138 IN BOOLEAN Read,\r
139 IN BOOLEAN Write,\r
140 IN BOOLEAN Delete,\r
141 IN BOOLEAN Cache\r
142 )\r
143{\r
144 VARIABLE_INFO_ENTRY *Entry;\r
145\r
146 if (FeaturePcdGet (PcdVariableCollectStatistics)) {\r
147\r
148 if (AtRuntime ()) {\r
149 // Don't collect statistics at runtime.\r
150 return;\r
151 }\r
152\r
153 if (gVariableInfo == NULL) {\r
154 //\r
155 // On the first call allocate a entry and place a pointer to it in\r
156 // the EFI System Table.\r
157 //\r
158 gVariableInfo = AllocateZeroPool (sizeof (VARIABLE_INFO_ENTRY));\r
159 ASSERT (gVariableInfo != NULL);\r
160\r
161 CopyGuid (&gVariableInfo->VendorGuid, VendorGuid);\r
162 gVariableInfo->Name = AllocateZeroPool (StrSize (VariableName));\r
163 ASSERT (gVariableInfo->Name != NULL);\r
164 StrCpyS (gVariableInfo->Name, StrSize(VariableName)/sizeof(CHAR16), VariableName);\r
165 gVariableInfo->Volatile = Volatile;\r
166 }\r
167\r
168\r
169 for (Entry = gVariableInfo; Entry != NULL; Entry = Entry->Next) {\r
170 if (CompareGuid (VendorGuid, &Entry->VendorGuid)) {\r
171 if (StrCmp (VariableName, Entry->Name) == 0) {\r
172 if (Read) {\r
173 Entry->ReadCount++;\r
174 }\r
175 if (Write) {\r
176 Entry->WriteCount++;\r
177 }\r
178 if (Delete) {\r
179 Entry->DeleteCount++;\r
180 }\r
181 if (Cache) {\r
182 Entry->CacheCount++;\r
183 }\r
184\r
185 return;\r
186 }\r
187 }\r
188\r
189 if (Entry->Next == NULL) {\r
190 //\r
191 // If the entry is not in the table add it.\r
192 // Next iteration of the loop will fill in the data.\r
193 //\r
194 Entry->Next = AllocateZeroPool (sizeof (VARIABLE_INFO_ENTRY));\r
195 ASSERT (Entry->Next != NULL);\r
196\r
197 CopyGuid (&Entry->Next->VendorGuid, VendorGuid);\r
198 Entry->Next->Name = AllocateZeroPool (StrSize (VariableName));\r
199 ASSERT (Entry->Next->Name != NULL);\r
200 StrCpyS (Entry->Next->Name, StrSize(VariableName)/sizeof(CHAR16), VariableName);\r
201 Entry->Next->Volatile = Volatile;\r
202 }\r
203\r
204 }\r
205 }\r
206}\r
207\r
208\r
209/**\r
210\r
211 This code checks if variable header is valid or not.\r
212\r
213 @param Variable Pointer to the Variable Header.\r
214 @param VariableStoreEnd Pointer to the Variable Store End.\r
215\r
216 @retval TRUE Variable header is valid.\r
217 @retval FALSE Variable header is not valid.\r
218\r
219**/\r
220BOOLEAN\r
221IsValidVariableHeader (\r
222 IN VARIABLE_HEADER *Variable,\r
223 IN VARIABLE_HEADER *VariableStoreEnd\r
224 )\r
225{\r
226 if ((Variable == NULL) || (Variable >= VariableStoreEnd) || (Variable->StartId != VARIABLE_DATA)) {\r
227 //\r
228 // Variable is NULL or has reached the end of variable store,\r
229 // or the StartId is not correct.\r
230 //\r
231 return FALSE;\r
232 }\r
233\r
234 return TRUE;\r
235}\r
236\r
237\r
238/**\r
239\r
240 This function writes data to the FWH at the correct LBA even if the LBAs\r
241 are fragmented.\r
242\r
243 @param Global Pointer to VARAIBLE_GLOBAL structure.\r
244 @param Volatile Point out the Variable is Volatile or Non-Volatile.\r
245 @param SetByIndex TRUE if target pointer is given as index.\r
246 FALSE if target pointer is absolute.\r
247 @param Fvb Pointer to the writable FVB protocol.\r
248 @param DataPtrIndex Pointer to the Data from the end of VARIABLE_STORE_HEADER\r
249 structure.\r
250 @param DataSize Size of data to be written.\r
251 @param Buffer Pointer to the buffer from which data is written.\r
252\r
253 @retval EFI_INVALID_PARAMETER Parameters not valid.\r
254 @retval EFI_SUCCESS Variable store successfully updated.\r
255\r
256**/\r
257EFI_STATUS\r
258UpdateVariableStore (\r
259 IN VARIABLE_GLOBAL *Global,\r
260 IN BOOLEAN Volatile,\r
261 IN BOOLEAN SetByIndex,\r
262 IN EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb,\r
263 IN UINTN DataPtrIndex,\r
264 IN UINT32 DataSize,\r
265 IN UINT8 *Buffer\r
266 )\r
267{\r
268 EFI_FV_BLOCK_MAP_ENTRY *PtrBlockMapEntry;\r
269 UINTN BlockIndex2;\r
270 UINTN LinearOffset;\r
271 UINTN CurrWriteSize;\r
272 UINTN CurrWritePtr;\r
273 UINT8 *CurrBuffer;\r
274 EFI_LBA LbaNumber;\r
275 UINTN Size;\r
276 EFI_FIRMWARE_VOLUME_HEADER *FwVolHeader;\r
277 VARIABLE_STORE_HEADER *VolatileBase;\r
278 EFI_PHYSICAL_ADDRESS FvVolHdr;\r
279 EFI_PHYSICAL_ADDRESS DataPtr;\r
280 EFI_STATUS Status;\r
281\r
282 FwVolHeader = NULL;\r
283 DataPtr = DataPtrIndex;\r
284\r
285 //\r
286 // Check if the Data is Volatile.\r
287 //\r
288 if (!Volatile) {\r
289 if (Fvb == NULL) {\r
290 return EFI_INVALID_PARAMETER;\r
291 }\r
292 Status = Fvb->GetPhysicalAddress(Fvb, &FvVolHdr);\r
293 ASSERT_EFI_ERROR (Status);\r
294\r
295 FwVolHeader = (EFI_FIRMWARE_VOLUME_HEADER *) ((UINTN) FvVolHdr);\r
296 //\r
297 // Data Pointer should point to the actual Address where data is to be\r
298 // written.\r
299 //\r
300 if (SetByIndex) {\r
301 DataPtr += mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase;\r
302 }\r
303\r
304 if ((DataPtr + DataSize) >= ((EFI_PHYSICAL_ADDRESS) (UINTN) ((UINT8 *) FwVolHeader + FwVolHeader->FvLength))) {\r
305 return EFI_INVALID_PARAMETER;\r
306 }\r
307 } else {\r
308 //\r
309 // Data Pointer should point to the actual Address where data is to be\r
310 // written.\r
311 //\r
312 VolatileBase = (VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase);\r
313 if (SetByIndex) {\r
314 DataPtr += mVariableModuleGlobal->VariableGlobal.VolatileVariableBase;\r
315 }\r
316\r
317 if ((DataPtr + DataSize) >= ((UINTN) ((UINT8 *) VolatileBase + VolatileBase->Size))) {\r
318 return EFI_INVALID_PARAMETER;\r
319 }\r
320\r
321 //\r
322 // If Volatile Variable just do a simple mem copy.\r
323 //\r
324 CopyMem ((UINT8 *)(UINTN)DataPtr, Buffer, DataSize);\r
325 return EFI_SUCCESS;\r
326 }\r
327\r
328 //\r
329 // If we are here we are dealing with Non-Volatile Variables.\r
330 //\r
331 LinearOffset = (UINTN) FwVolHeader;\r
332 CurrWritePtr = (UINTN) DataPtr;\r
333 CurrWriteSize = DataSize;\r
334 CurrBuffer = Buffer;\r
335 LbaNumber = 0;\r
336\r
337 if (CurrWritePtr < LinearOffset) {\r
338 return EFI_INVALID_PARAMETER;\r
339 }\r
340\r
341 for (PtrBlockMapEntry = FwVolHeader->BlockMap; PtrBlockMapEntry->NumBlocks != 0; PtrBlockMapEntry++) {\r
342 for (BlockIndex2 = 0; BlockIndex2 < PtrBlockMapEntry->NumBlocks; BlockIndex2++) {\r
343 //\r
344 // Check to see if the Variable Writes are spanning through multiple\r
345 // blocks.\r
346 //\r
347 if ((CurrWritePtr >= LinearOffset) && (CurrWritePtr < LinearOffset + PtrBlockMapEntry->Length)) {\r
348 if ((CurrWritePtr + CurrWriteSize) <= (LinearOffset + PtrBlockMapEntry->Length)) {\r
349 Status = Fvb->Write (\r
350 Fvb,\r
351 LbaNumber,\r
352 (UINTN) (CurrWritePtr - LinearOffset),\r
353 &CurrWriteSize,\r
354 CurrBuffer\r
355 );\r
356 return Status;\r
357 } else {\r
358 Size = (UINT32) (LinearOffset + PtrBlockMapEntry->Length - CurrWritePtr);\r
359 Status = Fvb->Write (\r
360 Fvb,\r
361 LbaNumber,\r
362 (UINTN) (CurrWritePtr - LinearOffset),\r
363 &Size,\r
364 CurrBuffer\r
365 );\r
366 if (EFI_ERROR (Status)) {\r
367 return Status;\r
368 }\r
369\r
370 CurrWritePtr = LinearOffset + PtrBlockMapEntry->Length;\r
371 CurrBuffer = CurrBuffer + Size;\r
372 CurrWriteSize = CurrWriteSize - Size;\r
373 }\r
374 }\r
375\r
376 LinearOffset += PtrBlockMapEntry->Length;\r
377 LbaNumber++;\r
378 }\r
379 }\r
380\r
381 return EFI_SUCCESS;\r
382}\r
383\r
384\r
385/**\r
386\r
387 This code gets the current status of Variable Store.\r
388\r
389 @param VarStoreHeader Pointer to the Variable Store Header.\r
390\r
391 @retval EfiRaw Variable store status is raw.\r
392 @retval EfiValid Variable store status is valid.\r
393 @retval EfiInvalid Variable store status is invalid.\r
394\r
395**/\r
396VARIABLE_STORE_STATUS\r
397GetVariableStoreStatus (\r
398 IN VARIABLE_STORE_HEADER *VarStoreHeader\r
399 )\r
400{\r
401 if ((CompareGuid (&VarStoreHeader->Signature, &gEfiAuthenticatedVariableGuid) ||\r
402 CompareGuid (&VarStoreHeader->Signature, &gEfiVariableGuid)) &&\r
403 VarStoreHeader->Format == VARIABLE_STORE_FORMATTED &&\r
404 VarStoreHeader->State == VARIABLE_STORE_HEALTHY\r
405 ) {\r
406\r
407 return EfiValid;\r
408 } else if (((UINT32 *)(&VarStoreHeader->Signature))[0] == 0xffffffff &&\r
409 ((UINT32 *)(&VarStoreHeader->Signature))[1] == 0xffffffff &&\r
410 ((UINT32 *)(&VarStoreHeader->Signature))[2] == 0xffffffff &&\r
411 ((UINT32 *)(&VarStoreHeader->Signature))[3] == 0xffffffff &&\r
412 VarStoreHeader->Size == 0xffffffff &&\r
413 VarStoreHeader->Format == 0xff &&\r
414 VarStoreHeader->State == 0xff\r
415 ) {\r
416\r
417 return EfiRaw;\r
418 } else {\r
419 return EfiInvalid;\r
420 }\r
421}\r
422\r
423/**\r
424 This code gets the size of variable header.\r
425\r
426 @return Size of variable header in bytes in type UINTN.\r
427\r
428**/\r
429UINTN\r
430GetVariableHeaderSize (\r
431 VOID\r
432 )\r
433{\r
434 UINTN Value;\r
435\r
436 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
437 Value = sizeof (AUTHENTICATED_VARIABLE_HEADER);\r
438 } else {\r
439 Value = sizeof (VARIABLE_HEADER);\r
440 }\r
441\r
442 return Value;\r
443}\r
444\r
445/**\r
446\r
447 This code gets the size of name of variable.\r
448\r
449 @param Variable Pointer to the Variable Header.\r
450\r
451 @return UINTN Size of variable in bytes.\r
452\r
453**/\r
454UINTN\r
455NameSizeOfVariable (\r
456 IN VARIABLE_HEADER *Variable\r
457 )\r
458{\r
459 AUTHENTICATED_VARIABLE_HEADER *AuthVariable;\r
460\r
461 AuthVariable = (AUTHENTICATED_VARIABLE_HEADER *) Variable;\r
462 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
463 if (AuthVariable->State == (UINT8) (-1) ||\r
464 AuthVariable->DataSize == (UINT32) (-1) ||\r
465 AuthVariable->NameSize == (UINT32) (-1) ||\r
466 AuthVariable->Attributes == (UINT32) (-1)) {\r
467 return 0;\r
468 }\r
469 return (UINTN) AuthVariable->NameSize;\r
470 } else {\r
471 if (Variable->State == (UINT8) (-1) ||\r
472 Variable->DataSize == (UINT32) (-1) ||\r
473 Variable->NameSize == (UINT32) (-1) ||\r
474 Variable->Attributes == (UINT32) (-1)) {\r
475 return 0;\r
476 }\r
477 return (UINTN) Variable->NameSize;\r
478 }\r
479}\r
480\r
481/**\r
482 This code sets the size of name of variable.\r
483\r
484 @param[in] Variable Pointer to the Variable Header.\r
485 @param[in] NameSize Name size to set.\r
486\r
487**/\r
488VOID\r
489SetNameSizeOfVariable (\r
490 IN VARIABLE_HEADER *Variable,\r
491 IN UINTN NameSize\r
492 )\r
493{\r
494 AUTHENTICATED_VARIABLE_HEADER *AuthVariable;\r
495\r
496 AuthVariable = (AUTHENTICATED_VARIABLE_HEADER *) Variable;\r
497 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
498 AuthVariable->NameSize = (UINT32) NameSize;\r
499 } else {\r
500 Variable->NameSize = (UINT32) NameSize;\r
501 }\r
502}\r
503\r
504/**\r
505\r
506 This code gets the size of variable data.\r
507\r
508 @param Variable Pointer to the Variable Header.\r
509\r
510 @return Size of variable in bytes.\r
511\r
512**/\r
513UINTN\r
514DataSizeOfVariable (\r
515 IN VARIABLE_HEADER *Variable\r
516 )\r
517{\r
518 AUTHENTICATED_VARIABLE_HEADER *AuthVariable;\r
519\r
520 AuthVariable = (AUTHENTICATED_VARIABLE_HEADER *) Variable;\r
521 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
522 if (AuthVariable->State == (UINT8) (-1) ||\r
523 AuthVariable->DataSize == (UINT32) (-1) ||\r
524 AuthVariable->NameSize == (UINT32) (-1) ||\r
525 AuthVariable->Attributes == (UINT32) (-1)) {\r
526 return 0;\r
527 }\r
528 return (UINTN) AuthVariable->DataSize;\r
529 } else {\r
530 if (Variable->State == (UINT8) (-1) ||\r
531 Variable->DataSize == (UINT32) (-1) ||\r
532 Variable->NameSize == (UINT32) (-1) ||\r
533 Variable->Attributes == (UINT32) (-1)) {\r
534 return 0;\r
535 }\r
536 return (UINTN) Variable->DataSize;\r
537 }\r
538}\r
539\r
540/**\r
541 This code sets the size of variable data.\r
542\r
543 @param[in] Variable Pointer to the Variable Header.\r
544 @param[in] DataSize Data size to set.\r
545\r
546**/\r
547VOID\r
548SetDataSizeOfVariable (\r
549 IN VARIABLE_HEADER *Variable,\r
550 IN UINTN DataSize\r
551 )\r
552{\r
553 AUTHENTICATED_VARIABLE_HEADER *AuthVariable;\r
554\r
555 AuthVariable = (AUTHENTICATED_VARIABLE_HEADER *) Variable;\r
556 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
557 AuthVariable->DataSize = (UINT32) DataSize;\r
558 } else {\r
559 Variable->DataSize = (UINT32) DataSize;\r
560 }\r
561}\r
562\r
563/**\r
564\r
565 This code gets the pointer to the variable name.\r
566\r
567 @param Variable Pointer to the Variable Header.\r
568\r
569 @return Pointer to Variable Name which is Unicode encoding.\r
570\r
571**/\r
572CHAR16 *\r
573GetVariableNamePtr (\r
574 IN VARIABLE_HEADER *Variable\r
575 )\r
576{\r
577 return (CHAR16 *) ((UINTN) Variable + GetVariableHeaderSize ());\r
578}\r
579\r
580/**\r
581 This code gets the pointer to the variable guid.\r
582\r
583 @param Variable Pointer to the Variable Header.\r
584\r
585 @return A EFI_GUID* pointer to Vendor Guid.\r
586\r
587**/\r
588EFI_GUID *\r
589GetVendorGuidPtr (\r
590 IN VARIABLE_HEADER *Variable\r
591 )\r
592{\r
593 AUTHENTICATED_VARIABLE_HEADER *AuthVariable;\r
594\r
595 AuthVariable = (AUTHENTICATED_VARIABLE_HEADER *) Variable;\r
596 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
597 return &AuthVariable->VendorGuid;\r
598 } else {\r
599 return &Variable->VendorGuid;\r
600 }\r
601}\r
602\r
603/**\r
604\r
605 This code gets the pointer to the variable data.\r
606\r
607 @param Variable Pointer to the Variable Header.\r
608\r
609 @return Pointer to Variable Data.\r
610\r
611**/\r
612UINT8 *\r
613GetVariableDataPtr (\r
614 IN VARIABLE_HEADER *Variable\r
615 )\r
616{\r
617 UINTN Value;\r
618\r
619 //\r
620 // Be careful about pad size for alignment.\r
621 //\r
622 Value = (UINTN) GetVariableNamePtr (Variable);\r
623 Value += NameSizeOfVariable (Variable);\r
624 Value += GET_PAD_SIZE (NameSizeOfVariable (Variable));\r
625\r
626 return (UINT8 *) Value;\r
627}\r
628\r
629/**\r
630 This code gets the variable data offset related to variable header.\r
631\r
632 @param Variable Pointer to the Variable Header.\r
633\r
634 @return Variable Data offset.\r
635\r
636**/\r
637UINTN\r
638GetVariableDataOffset (\r
639 IN VARIABLE_HEADER *Variable\r
640 )\r
641{\r
642 UINTN Value;\r
643\r
644 //\r
645 // Be careful about pad size for alignment\r
646 //\r
647 Value = GetVariableHeaderSize ();\r
648 Value += NameSizeOfVariable (Variable);\r
649 Value += GET_PAD_SIZE (NameSizeOfVariable (Variable));\r
650\r
651 return Value;\r
652}\r
653\r
654/**\r
655\r
656 This code gets the pointer to the next variable header.\r
657\r
658 @param Variable Pointer to the Variable Header.\r
659\r
660 @return Pointer to next variable header.\r
661\r
662**/\r
663VARIABLE_HEADER *\r
664GetNextVariablePtr (\r
665 IN VARIABLE_HEADER *Variable\r
666 )\r
667{\r
668 UINTN Value;\r
669\r
670 Value = (UINTN) GetVariableDataPtr (Variable);\r
671 Value += DataSizeOfVariable (Variable);\r
672 Value += GET_PAD_SIZE (DataSizeOfVariable (Variable));\r
673\r
674 //\r
675 // Be careful about pad size for alignment.\r
676 //\r
677 return (VARIABLE_HEADER *) HEADER_ALIGN (Value);\r
678}\r
679\r
680/**\r
681\r
682 Gets the pointer to the first variable header in given variable store area.\r
683\r
684 @param VarStoreHeader Pointer to the Variable Store Header.\r
685\r
686 @return Pointer to the first variable header.\r
687\r
688**/\r
689VARIABLE_HEADER *\r
690GetStartPointer (\r
691 IN VARIABLE_STORE_HEADER *VarStoreHeader\r
692 )\r
693{\r
694 //\r
695 // The end of variable store.\r
696 //\r
697 return (VARIABLE_HEADER *) HEADER_ALIGN (VarStoreHeader + 1);\r
698}\r
699\r
700/**\r
701\r
702 Gets the pointer to the end of the variable storage area.\r
703\r
704 This function gets pointer to the end of the variable storage\r
705 area, according to the input variable store header.\r
706\r
707 @param VarStoreHeader Pointer to the Variable Store Header.\r
708\r
709 @return Pointer to the end of the variable storage area.\r
710\r
711**/\r
712VARIABLE_HEADER *\r
713GetEndPointer (\r
714 IN VARIABLE_STORE_HEADER *VarStoreHeader\r
715 )\r
716{\r
717 //\r
718 // The end of variable store\r
719 //\r
720 return (VARIABLE_HEADER *) HEADER_ALIGN ((UINTN) VarStoreHeader + VarStoreHeader->Size);\r
721}\r
722\r
723/**\r
724 Record variable error flag.\r
725\r
726 @param[in] Flag Variable error flag to record.\r
727 @param[in] VariableName Name of variable.\r
728 @param[in] VendorGuid Guid of variable.\r
729 @param[in] Attributes Attributes of the variable.\r
730 @param[in] VariableSize Size of the variable.\r
731\r
732**/\r
733VOID\r
734RecordVarErrorFlag (\r
735 IN VAR_ERROR_FLAG Flag,\r
736 IN CHAR16 *VariableName,\r
737 IN EFI_GUID *VendorGuid,\r
738 IN UINT32 Attributes,\r
739 IN UINTN VariableSize\r
740 )\r
741{\r
742 EFI_STATUS Status;\r
743 VARIABLE_POINTER_TRACK Variable;\r
744 VAR_ERROR_FLAG *VarErrFlag;\r
745 VAR_ERROR_FLAG TempFlag;\r
746\r
747 DEBUG_CODE (\r
748 DEBUG ((EFI_D_ERROR, "RecordVarErrorFlag (0x%02x) %s:%g - 0x%08x - 0x%x\n", Flag, VariableName, VendorGuid, Attributes, VariableSize));\r
749 if (Flag == VAR_ERROR_FLAG_SYSTEM_ERROR) {\r
750 if (AtRuntime ()) {\r
751 DEBUG ((EFI_D_ERROR, "CommonRuntimeVariableSpace = 0x%x - CommonVariableTotalSize = 0x%x\n", mVariableModuleGlobal->CommonRuntimeVariableSpace, mVariableModuleGlobal->CommonVariableTotalSize));\r
752 } else {\r
753 DEBUG ((EFI_D_ERROR, "CommonVariableSpace = 0x%x - CommonVariableTotalSize = 0x%x\n", mVariableModuleGlobal->CommonVariableSpace, mVariableModuleGlobal->CommonVariableTotalSize));\r
754 }\r
755 } else {\r
756 DEBUG ((EFI_D_ERROR, "CommonMaxUserVariableSpace = 0x%x - CommonUserVariableTotalSize = 0x%x\n", mVariableModuleGlobal->CommonMaxUserVariableSpace, mVariableModuleGlobal->CommonUserVariableTotalSize));\r
757 }\r
758 );\r
759\r
760 if (!mEndOfDxe) {\r
761 //\r
762 // Before EndOfDxe, just record the current boot variable error flag to local variable,\r
763 // and leave the variable error flag in NV flash as the last boot variable error flag.\r
764 // After EndOfDxe in InitializeVarErrorFlag (), the variable error flag in NV flash\r
765 // will be initialized to this local current boot variable error flag.\r
766 //\r
767 mCurrentBootVarErrFlag &= Flag;\r
768 return;\r
769 }\r
770\r
771 //\r
772 // Record error flag (it should have be initialized).\r
773 //\r
774 Status = FindVariable (\r
775 VAR_ERROR_FLAG_NAME,\r
776 &gEdkiiVarErrorFlagGuid,\r
777 &Variable,\r
778 &mVariableModuleGlobal->VariableGlobal,\r
779 FALSE\r
780 );\r
781 if (!EFI_ERROR (Status)) {\r
782 VarErrFlag = (VAR_ERROR_FLAG *) GetVariableDataPtr (Variable.CurrPtr);\r
783 TempFlag = *VarErrFlag;\r
784 TempFlag &= Flag;\r
785 if (TempFlag == *VarErrFlag) {\r
786 return;\r
787 }\r
788 Status = UpdateVariableStore (\r
789 &mVariableModuleGlobal->VariableGlobal,\r
790 FALSE,\r
791 FALSE,\r
792 mVariableModuleGlobal->FvbInstance,\r
793 (UINTN) VarErrFlag - (UINTN) mNvVariableCache + (UINTN) mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
794 sizeof (TempFlag),\r
795 &TempFlag\r
796 );\r
797 if (!EFI_ERROR (Status)) {\r
798 //\r
799 // Update the data in NV cache.\r
800 //\r
801 *VarErrFlag = Flag;\r
802 }\r
803 }\r
804}\r
805\r
806/**\r
807 Initialize variable error flag.\r
808\r
809 Before EndOfDxe, the variable indicates the last boot variable error flag,\r
810 then it means the last boot variable error flag must be got before EndOfDxe.\r
811 After EndOfDxe, the variable indicates the current boot variable error flag,\r
812 then it means the current boot variable error flag must be got after EndOfDxe.\r
813\r
814**/\r
815VOID\r
816InitializeVarErrorFlag (\r
817 VOID\r
818 )\r
819{\r
820 EFI_STATUS Status;\r
821 VARIABLE_POINTER_TRACK Variable;\r
822 VAR_ERROR_FLAG Flag;\r
823 VAR_ERROR_FLAG VarErrFlag;\r
824\r
825 if (!mEndOfDxe) {\r
826 return;\r
827 }\r
828\r
829 Flag = mCurrentBootVarErrFlag;\r
830 DEBUG ((EFI_D_INFO, "Initialize variable error flag (%02x)\n", Flag));\r
831\r
832 Status = FindVariable (\r
833 VAR_ERROR_FLAG_NAME,\r
834 &gEdkiiVarErrorFlagGuid,\r
835 &Variable,\r
836 &mVariableModuleGlobal->VariableGlobal,\r
837 FALSE\r
838 );\r
839 if (!EFI_ERROR (Status)) {\r
840 VarErrFlag = *((VAR_ERROR_FLAG *) GetVariableDataPtr (Variable.CurrPtr));\r
841 if (VarErrFlag == Flag) {\r
842 return;\r
843 }\r
844 }\r
845\r
846 UpdateVariable (\r
847 VAR_ERROR_FLAG_NAME,\r
848 &gEdkiiVarErrorFlagGuid,\r
849 &Flag,\r
850 sizeof (Flag),\r
851 VARIABLE_ATTRIBUTE_NV_BS_RT,\r
852 0,\r
853 0,\r
854 &Variable,\r
855 NULL\r
856 );\r
857}\r
858\r
859/**\r
860 Is user variable?\r
861\r
862 @param[in] Variable Pointer to variable header.\r
863\r
864 @retval TRUE User variable.\r
865 @retval FALSE System variable.\r
866\r
867**/\r
868BOOLEAN\r
869IsUserVariable (\r
870 IN VARIABLE_HEADER *Variable\r
871 )\r
872{\r
873 VAR_CHECK_VARIABLE_PROPERTY Property;\r
874\r
875 //\r
876 // Only after End Of Dxe, the variables belong to system variable are fixed.\r
877 // If PcdMaxUserNvStorageVariableSize is 0, it means user variable share the same NV storage with system variable,\r
878 // then no need to check if the variable is user variable or not specially.\r
879 //\r
880 if (mEndOfDxe && (mVariableModuleGlobal->CommonMaxUserVariableSpace != mVariableModuleGlobal->CommonVariableSpace)) {\r
881 if (InternalVarCheckVariablePropertyGet (GetVariableNamePtr (Variable), GetVendorGuidPtr (Variable), &Property) == EFI_NOT_FOUND) {\r
882 return TRUE;\r
883 }\r
884 }\r
885 return FALSE;\r
886}\r
887\r
888/**\r
889 Calculate common user variable total size.\r
890\r
891**/\r
892VOID\r
893CalculateCommonUserVariableTotalSize (\r
894 VOID\r
895 )\r
896{\r
897 VARIABLE_HEADER *Variable;\r
898 VARIABLE_HEADER *NextVariable;\r
899 UINTN VariableSize;\r
900 VAR_CHECK_VARIABLE_PROPERTY Property;\r
901\r
902 //\r
903 // Only after End Of Dxe, the variables belong to system variable are fixed.\r
904 // If PcdMaxUserNvStorageVariableSize is 0, it means user variable share the same NV storage with system variable,\r
905 // then no need to calculate the common user variable total size specially.\r
906 //\r
907 if (mEndOfDxe && (mVariableModuleGlobal->CommonMaxUserVariableSpace != mVariableModuleGlobal->CommonVariableSpace)) {\r
908 Variable = GetStartPointer (mNvVariableCache);\r
909 while (IsValidVariableHeader (Variable, GetEndPointer (mNvVariableCache))) {\r
910 NextVariable = GetNextVariablePtr (Variable);\r
911 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
912 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
913 if (InternalVarCheckVariablePropertyGet (GetVariableNamePtr (Variable), GetVendorGuidPtr (Variable), &Property) == EFI_NOT_FOUND) {\r
914 //\r
915 // No property, it is user variable.\r
916 //\r
917 mVariableModuleGlobal->CommonUserVariableTotalSize += VariableSize;\r
918 }\r
919 }\r
920\r
921 Variable = NextVariable;\r
922 }\r
923 }\r
924}\r
925\r
926/**\r
927 Initialize variable quota.\r
928\r
929**/\r
930VOID\r
931InitializeVariableQuota (\r
932 VOID\r
933 )\r
934{\r
935 STATIC BOOLEAN Initialized;\r
936\r
937 if (!mEndOfDxe || Initialized) {\r
938 return;\r
939 }\r
940 Initialized = TRUE;\r
941\r
942 InitializeVarErrorFlag ();\r
943 CalculateCommonUserVariableTotalSize ();\r
944}\r
945\r
946/**\r
947\r
948 Variable store garbage collection and reclaim operation.\r
949\r
950 @param[in] VariableBase Base address of variable store.\r
951 @param[out] LastVariableOffset Offset of last variable.\r
952 @param[in] IsVolatile The variable store is volatile or not;\r
953 if it is non-volatile, need FTW.\r
954 @param[in, out] UpdatingPtrTrack Pointer to updating variable pointer track structure.\r
955 @param[in] NewVariable Pointer to new variable.\r
956 @param[in] NewVariableSize New variable size.\r
957\r
958 @return EFI_SUCCESS Reclaim operation has finished successfully.\r
959 @return EFI_OUT_OF_RESOURCES No enough memory resources or variable space.\r
960 @return Others Unexpect error happened during reclaim operation.\r
961\r
962**/\r
963EFI_STATUS\r
964Reclaim (\r
965 IN EFI_PHYSICAL_ADDRESS VariableBase,\r
966 OUT UINTN *LastVariableOffset,\r
967 IN BOOLEAN IsVolatile,\r
968 IN OUT VARIABLE_POINTER_TRACK *UpdatingPtrTrack,\r
969 IN VARIABLE_HEADER *NewVariable,\r
970 IN UINTN NewVariableSize\r
971 )\r
972{\r
973 VARIABLE_HEADER *Variable;\r
974 VARIABLE_HEADER *AddedVariable;\r
975 VARIABLE_HEADER *NextVariable;\r
976 VARIABLE_HEADER *NextAddedVariable;\r
977 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
978 UINT8 *ValidBuffer;\r
979 UINTN MaximumBufferSize;\r
980 UINTN VariableSize;\r
981 UINTN NameSize;\r
982 UINT8 *CurrPtr;\r
983 VOID *Point0;\r
984 VOID *Point1;\r
985 BOOLEAN FoundAdded;\r
986 EFI_STATUS Status;\r
987 UINTN CommonVariableTotalSize;\r
988 UINTN CommonUserVariableTotalSize;\r
989 UINTN HwErrVariableTotalSize;\r
990 VARIABLE_HEADER *UpdatingVariable;\r
991 VARIABLE_HEADER *UpdatingInDeletedTransition;\r
992\r
993 UpdatingVariable = NULL;\r
994 UpdatingInDeletedTransition = NULL;\r
995 if (UpdatingPtrTrack != NULL) {\r
996 UpdatingVariable = UpdatingPtrTrack->CurrPtr;\r
997 UpdatingInDeletedTransition = UpdatingPtrTrack->InDeletedTransitionPtr;\r
998 }\r
999\r
1000 VariableStoreHeader = (VARIABLE_STORE_HEADER *) ((UINTN) VariableBase);\r
1001\r
1002 CommonVariableTotalSize = 0;\r
1003 CommonUserVariableTotalSize = 0;\r
1004 HwErrVariableTotalSize = 0;\r
1005\r
1006 if (IsVolatile) {\r
1007 //\r
1008 // Start Pointers for the variable.\r
1009 //\r
1010 Variable = GetStartPointer (VariableStoreHeader);\r
1011 MaximumBufferSize = sizeof (VARIABLE_STORE_HEADER);\r
1012\r
1013 while (IsValidVariableHeader (Variable, GetEndPointer (VariableStoreHeader))) {\r
1014 NextVariable = GetNextVariablePtr (Variable);\r
1015 if ((Variable->State == VAR_ADDED || Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) &&\r
1016 Variable != UpdatingVariable &&\r
1017 Variable != UpdatingInDeletedTransition\r
1018 ) {\r
1019 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
1020 MaximumBufferSize += VariableSize;\r
1021 }\r
1022\r
1023 Variable = NextVariable;\r
1024 }\r
1025\r
1026 if (NewVariable != NULL) {\r
1027 //\r
1028 // Add the new variable size.\r
1029 //\r
1030 MaximumBufferSize += NewVariableSize;\r
1031 }\r
1032\r
1033 //\r
1034 // Reserve the 1 Bytes with Oxff to identify the\r
1035 // end of the variable buffer.\r
1036 //\r
1037 MaximumBufferSize += 1;\r
1038 ValidBuffer = AllocatePool (MaximumBufferSize);\r
1039 if (ValidBuffer == NULL) {\r
1040 return EFI_OUT_OF_RESOURCES;\r
1041 }\r
1042 } else {\r
1043 //\r
1044 // For NV variable reclaim, don't allocate pool here and just use mNvVariableCache\r
1045 // as the buffer to reduce SMRAM consumption for SMM variable driver.\r
1046 //\r
1047 MaximumBufferSize = mNvVariableCache->Size;\r
1048 ValidBuffer = (UINT8 *) mNvVariableCache;\r
1049 }\r
1050\r
1051 SetMem (ValidBuffer, MaximumBufferSize, 0xff);\r
1052\r
1053 //\r
1054 // Copy variable store header.\r
1055 //\r
1056 CopyMem (ValidBuffer, VariableStoreHeader, sizeof (VARIABLE_STORE_HEADER));\r
1057 CurrPtr = (UINT8 *) GetStartPointer ((VARIABLE_STORE_HEADER *) ValidBuffer);\r
1058\r
1059 //\r
1060 // Reinstall all ADDED variables as long as they are not identical to Updating Variable.\r
1061 //\r
1062 Variable = GetStartPointer (VariableStoreHeader);\r
1063 while (IsValidVariableHeader (Variable, GetEndPointer (VariableStoreHeader))) {\r
1064 NextVariable = GetNextVariablePtr (Variable);\r
1065 if (Variable != UpdatingVariable && Variable->State == VAR_ADDED) {\r
1066 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
1067 CopyMem (CurrPtr, (UINT8 *) Variable, VariableSize);\r
1068 CurrPtr += VariableSize;\r
1069 if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
1070 HwErrVariableTotalSize += VariableSize;\r
1071 } else if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
1072 CommonVariableTotalSize += VariableSize;\r
1073 if (IsUserVariable (Variable)) {\r
1074 CommonUserVariableTotalSize += VariableSize;\r
1075 }\r
1076 }\r
1077 }\r
1078 Variable = NextVariable;\r
1079 }\r
1080\r
1081 //\r
1082 // Reinstall all in delete transition variables.\r
1083 //\r
1084 Variable = GetStartPointer (VariableStoreHeader);\r
1085 while (IsValidVariableHeader (Variable, GetEndPointer (VariableStoreHeader))) {\r
1086 NextVariable = GetNextVariablePtr (Variable);\r
1087 if (Variable != UpdatingVariable && Variable != UpdatingInDeletedTransition && Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
1088\r
1089 //\r
1090 // Buffer has cached all ADDED variable.\r
1091 // Per IN_DELETED variable, we have to guarantee that\r
1092 // no ADDED one in previous buffer.\r
1093 //\r
1094\r
1095 FoundAdded = FALSE;\r
1096 AddedVariable = GetStartPointer ((VARIABLE_STORE_HEADER *) ValidBuffer);\r
1097 while (IsValidVariableHeader (AddedVariable, GetEndPointer ((VARIABLE_STORE_HEADER *) ValidBuffer))) {\r
1098 NextAddedVariable = GetNextVariablePtr (AddedVariable);\r
1099 NameSize = NameSizeOfVariable (AddedVariable);\r
1100 if (CompareGuid (GetVendorGuidPtr (AddedVariable), GetVendorGuidPtr (Variable)) &&\r
1101 NameSize == NameSizeOfVariable (Variable)\r
1102 ) {\r
1103 Point0 = (VOID *) GetVariableNamePtr (AddedVariable);\r
1104 Point1 = (VOID *) GetVariableNamePtr (Variable);\r
1105 if (CompareMem (Point0, Point1, NameSize) == 0) {\r
1106 FoundAdded = TRUE;\r
1107 break;\r
1108 }\r
1109 }\r
1110 AddedVariable = NextAddedVariable;\r
1111 }\r
1112 if (!FoundAdded) {\r
1113 //\r
1114 // Promote VAR_IN_DELETED_TRANSITION to VAR_ADDED.\r
1115 //\r
1116 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
1117 CopyMem (CurrPtr, (UINT8 *) Variable, VariableSize);\r
1118 ((VARIABLE_HEADER *) CurrPtr)->State = VAR_ADDED;\r
1119 CurrPtr += VariableSize;\r
1120 if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
1121 HwErrVariableTotalSize += VariableSize;\r
1122 } else if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
1123 CommonVariableTotalSize += VariableSize;\r
1124 if (IsUserVariable (Variable)) {\r
1125 CommonUserVariableTotalSize += VariableSize;\r
1126 }\r
1127 }\r
1128 }\r
1129 }\r
1130\r
1131 Variable = NextVariable;\r
1132 }\r
1133\r
1134 //\r
1135 // Install the new variable if it is not NULL.\r
1136 //\r
1137 if (NewVariable != NULL) {\r
1138 if ((UINTN) (CurrPtr - ValidBuffer) + NewVariableSize > VariableStoreHeader->Size) {\r
1139 //\r
1140 // No enough space to store the new variable.\r
1141 //\r
1142 Status = EFI_OUT_OF_RESOURCES;\r
1143 goto Done;\r
1144 }\r
1145 if (!IsVolatile) {\r
1146 if ((NewVariable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
1147 HwErrVariableTotalSize += NewVariableSize;\r
1148 } else if ((NewVariable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
1149 CommonVariableTotalSize += NewVariableSize;\r
1150 if (IsUserVariable (NewVariable)) {\r
1151 CommonUserVariableTotalSize += NewVariableSize;\r
1152 }\r
1153 }\r
1154 if ((HwErrVariableTotalSize > PcdGet32 (PcdHwErrStorageSize)) ||\r
1155 (CommonVariableTotalSize > mVariableModuleGlobal->CommonVariableSpace) ||\r
1156 (CommonUserVariableTotalSize > mVariableModuleGlobal->CommonMaxUserVariableSpace)) {\r
1157 //\r
1158 // No enough space to store the new variable by NV or NV+HR attribute.\r
1159 //\r
1160 Status = EFI_OUT_OF_RESOURCES;\r
1161 goto Done;\r
1162 }\r
1163 }\r
1164\r
1165 CopyMem (CurrPtr, (UINT8 *) NewVariable, NewVariableSize);\r
1166 ((VARIABLE_HEADER *) CurrPtr)->State = VAR_ADDED;\r
1167 if (UpdatingVariable != NULL) {\r
1168 UpdatingPtrTrack->CurrPtr = (VARIABLE_HEADER *)((UINTN)UpdatingPtrTrack->StartPtr + ((UINTN)CurrPtr - (UINTN)GetStartPointer ((VARIABLE_STORE_HEADER *) ValidBuffer)));\r
1169 UpdatingPtrTrack->InDeletedTransitionPtr = NULL;\r
1170 }\r
1171 CurrPtr += NewVariableSize;\r
1172 }\r
1173\r
1174 if (IsVolatile) {\r
1175 //\r
1176 // If volatile variable store, just copy valid buffer.\r
1177 //\r
1178 SetMem ((UINT8 *) (UINTN) VariableBase, VariableStoreHeader->Size, 0xff);\r
1179 CopyMem ((UINT8 *) (UINTN) VariableBase, ValidBuffer, (UINTN) (CurrPtr - ValidBuffer));\r
1180 *LastVariableOffset = (UINTN) (CurrPtr - ValidBuffer);\r
1181 Status = EFI_SUCCESS;\r
1182 } else {\r
1183 //\r
1184 // If non-volatile variable store, perform FTW here.\r
1185 //\r
1186 Status = FtwVariableSpace (\r
1187 VariableBase,\r
1188 (VARIABLE_STORE_HEADER *) ValidBuffer\r
1189 );\r
1190 if (!EFI_ERROR (Status)) {\r
1191 *LastVariableOffset = (UINTN) (CurrPtr - ValidBuffer);\r
1192 mVariableModuleGlobal->HwErrVariableTotalSize = HwErrVariableTotalSize;\r
1193 mVariableModuleGlobal->CommonVariableTotalSize = CommonVariableTotalSize;\r
1194 mVariableModuleGlobal->CommonUserVariableTotalSize = CommonUserVariableTotalSize;\r
1195 } else {\r
1196 Variable = GetStartPointer ((VARIABLE_STORE_HEADER *)(UINTN)VariableBase);\r
1197 while (IsValidVariableHeader (Variable, GetEndPointer ((VARIABLE_STORE_HEADER *)(UINTN)VariableBase))) {\r
1198 NextVariable = GetNextVariablePtr (Variable);\r
1199 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
1200 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
1201 mVariableModuleGlobal->HwErrVariableTotalSize += VariableSize;\r
1202 } else if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
1203 mVariableModuleGlobal->CommonVariableTotalSize += VariableSize;\r
1204 if (IsUserVariable (Variable)) {\r
1205 mVariableModuleGlobal->CommonUserVariableTotalSize += VariableSize;\r
1206 }\r
1207 }\r
1208\r
1209 Variable = NextVariable;\r
1210 }\r
1211 *LastVariableOffset = (UINTN) Variable - (UINTN) VariableBase;\r
1212 }\r
1213 }\r
1214\r
1215Done:\r
1216 if (IsVolatile) {\r
1217 FreePool (ValidBuffer);\r
1218 } else {\r
1219 //\r
1220 // For NV variable reclaim, we use mNvVariableCache as the buffer, so copy the data back.\r
1221 //\r
1222 CopyMem (mNvVariableCache, (UINT8 *)(UINTN)VariableBase, VariableStoreHeader->Size);\r
1223 }\r
1224\r
1225 return Status;\r
1226}\r
1227\r
1228/**\r
1229 Find the variable in the specified variable store.\r
1230\r
1231 @param[in] VariableName Name of the variable to be found\r
1232 @param[in] VendorGuid Vendor GUID to be found.\r
1233 @param[in] IgnoreRtCheck Ignore EFI_VARIABLE_RUNTIME_ACCESS attribute\r
1234 check at runtime when searching variable.\r
1235 @param[in, out] PtrTrack Variable Track Pointer structure that contains Variable Information.\r
1236\r
1237 @retval EFI_SUCCESS Variable found successfully\r
1238 @retval EFI_NOT_FOUND Variable not found\r
1239**/\r
1240EFI_STATUS\r
1241FindVariableEx (\r
1242 IN CHAR16 *VariableName,\r
1243 IN EFI_GUID *VendorGuid,\r
1244 IN BOOLEAN IgnoreRtCheck,\r
1245 IN OUT VARIABLE_POINTER_TRACK *PtrTrack\r
1246 )\r
1247{\r
1248 VARIABLE_HEADER *InDeletedVariable;\r
1249 VOID *Point;\r
1250\r
1251 PtrTrack->InDeletedTransitionPtr = NULL;\r
1252\r
1253 //\r
1254 // Find the variable by walk through HOB, volatile and non-volatile variable store.\r
1255 //\r
1256 InDeletedVariable = NULL;\r
1257\r
1258 for ( PtrTrack->CurrPtr = PtrTrack->StartPtr\r
1259 ; IsValidVariableHeader (PtrTrack->CurrPtr, PtrTrack->EndPtr)\r
1260 ; PtrTrack->CurrPtr = GetNextVariablePtr (PtrTrack->CurrPtr)\r
1261 ) {\r
1262 if (PtrTrack->CurrPtr->State == VAR_ADDED ||\r
1263 PtrTrack->CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)\r
1264 ) {\r
1265 if (IgnoreRtCheck || !AtRuntime () || ((PtrTrack->CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) != 0)) {\r
1266 if (VariableName[0] == 0) {\r
1267 if (PtrTrack->CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
1268 InDeletedVariable = PtrTrack->CurrPtr;\r
1269 } else {\r
1270 PtrTrack->InDeletedTransitionPtr = InDeletedVariable;\r
1271 return EFI_SUCCESS;\r
1272 }\r
1273 } else {\r
1274 if (CompareGuid (VendorGuid, GetVendorGuidPtr (PtrTrack->CurrPtr))) {\r
1275 Point = (VOID *) GetVariableNamePtr (PtrTrack->CurrPtr);\r
1276\r
1277 ASSERT (NameSizeOfVariable (PtrTrack->CurrPtr) != 0);\r
1278 if (CompareMem (VariableName, Point, NameSizeOfVariable (PtrTrack->CurrPtr)) == 0) {\r
1279 if (PtrTrack->CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
1280 InDeletedVariable = PtrTrack->CurrPtr;\r
1281 } else {\r
1282 PtrTrack->InDeletedTransitionPtr = InDeletedVariable;\r
1283 return EFI_SUCCESS;\r
1284 }\r
1285 }\r
1286 }\r
1287 }\r
1288 }\r
1289 }\r
1290 }\r
1291\r
1292 PtrTrack->CurrPtr = InDeletedVariable;\r
1293 return (PtrTrack->CurrPtr == NULL) ? EFI_NOT_FOUND : EFI_SUCCESS;\r
1294}\r
1295\r
1296\r
1297/**\r
1298 Finds variable in storage blocks of volatile and non-volatile storage areas.\r
1299\r
1300 This code finds variable in storage blocks of volatile and non-volatile storage areas.\r
1301 If VariableName is an empty string, then we just return the first\r
1302 qualified variable without comparing VariableName and VendorGuid.\r
1303 If IgnoreRtCheck is TRUE, then we ignore the EFI_VARIABLE_RUNTIME_ACCESS attribute check\r
1304 at runtime when searching existing variable, only VariableName and VendorGuid are compared.\r
1305 Otherwise, variables without EFI_VARIABLE_RUNTIME_ACCESS are not visible at runtime.\r
1306\r
1307 @param[in] VariableName Name of the variable to be found.\r
1308 @param[in] VendorGuid Vendor GUID to be found.\r
1309 @param[out] PtrTrack VARIABLE_POINTER_TRACK structure for output,\r
1310 including the range searched and the target position.\r
1311 @param[in] Global Pointer to VARIABLE_GLOBAL structure, including\r
1312 base of volatile variable storage area, base of\r
1313 NV variable storage area, and a lock.\r
1314 @param[in] IgnoreRtCheck Ignore EFI_VARIABLE_RUNTIME_ACCESS attribute\r
1315 check at runtime when searching variable.\r
1316\r
1317 @retval EFI_INVALID_PARAMETER If VariableName is not an empty string, while\r
1318 VendorGuid is NULL.\r
1319 @retval EFI_SUCCESS Variable successfully found.\r
1320 @retval EFI_NOT_FOUND Variable not found\r
1321\r
1322**/\r
1323EFI_STATUS\r
1324FindVariable (\r
1325 IN CHAR16 *VariableName,\r
1326 IN EFI_GUID *VendorGuid,\r
1327 OUT VARIABLE_POINTER_TRACK *PtrTrack,\r
1328 IN VARIABLE_GLOBAL *Global,\r
1329 IN BOOLEAN IgnoreRtCheck\r
1330 )\r
1331{\r
1332 EFI_STATUS Status;\r
1333 VARIABLE_STORE_HEADER *VariableStoreHeader[VariableStoreTypeMax];\r
1334 VARIABLE_STORE_TYPE Type;\r
1335\r
1336 if (VariableName[0] != 0 && VendorGuid == NULL) {\r
1337 return EFI_INVALID_PARAMETER;\r
1338 }\r
1339\r
1340 //\r
1341 // 0: Volatile, 1: HOB, 2: Non-Volatile.\r
1342 // The index and attributes mapping must be kept in this order as RuntimeServiceGetNextVariableName\r
1343 // make use of this mapping to implement search algorithm.\r
1344 //\r
1345 VariableStoreHeader[VariableStoreTypeVolatile] = (VARIABLE_STORE_HEADER *) (UINTN) Global->VolatileVariableBase;\r
1346 VariableStoreHeader[VariableStoreTypeHob] = (VARIABLE_STORE_HEADER *) (UINTN) Global->HobVariableBase;\r
1347 VariableStoreHeader[VariableStoreTypeNv] = mNvVariableCache;\r
1348\r
1349 //\r
1350 // Find the variable by walk through HOB, volatile and non-volatile variable store.\r
1351 //\r
1352 for (Type = (VARIABLE_STORE_TYPE) 0; Type < VariableStoreTypeMax; Type++) {\r
1353 if (VariableStoreHeader[Type] == NULL) {\r
1354 continue;\r
1355 }\r
1356\r
1357 PtrTrack->StartPtr = GetStartPointer (VariableStoreHeader[Type]);\r
1358 PtrTrack->EndPtr = GetEndPointer (VariableStoreHeader[Type]);\r
1359 PtrTrack->Volatile = (BOOLEAN) (Type == VariableStoreTypeVolatile);\r
1360\r
1361 Status = FindVariableEx (VariableName, VendorGuid, IgnoreRtCheck, PtrTrack);\r
1362 if (!EFI_ERROR (Status)) {\r
1363 return Status;\r
1364 }\r
1365 }\r
1366 return EFI_NOT_FOUND;\r
1367}\r
1368\r
1369/**\r
1370 Get index from supported language codes according to language string.\r
1371\r
1372 This code is used to get corresponding index in supported language codes. It can handle\r
1373 RFC4646 and ISO639 language tags.\r
1374 In ISO639 language tags, take 3-characters as a delimitation to find matched string and calculate the index.\r
1375 In RFC4646 language tags, take semicolon as a delimitation to find matched string and calculate the index.\r
1376\r
1377 For example:\r
1378 SupportedLang = "engfraengfra"\r
1379 Lang = "eng"\r
1380 Iso639Language = TRUE\r
1381 The return value is "0".\r
1382 Another example:\r
1383 SupportedLang = "en;fr;en-US;fr-FR"\r
1384 Lang = "fr-FR"\r
1385 Iso639Language = FALSE\r
1386 The return value is "3".\r
1387\r
1388 @param SupportedLang Platform supported language codes.\r
1389 @param Lang Configured language.\r
1390 @param Iso639Language A bool value to signify if the handler is operated on ISO639 or RFC4646.\r
1391\r
1392 @retval The index of language in the language codes.\r
1393\r
1394**/\r
1395UINTN\r
1396GetIndexFromSupportedLangCodes(\r
1397 IN CHAR8 *SupportedLang,\r
1398 IN CHAR8 *Lang,\r
1399 IN BOOLEAN Iso639Language\r
1400 )\r
1401{\r
1402 UINTN Index;\r
1403 UINTN CompareLength;\r
1404 UINTN LanguageLength;\r
1405\r
1406 if (Iso639Language) {\r
1407 CompareLength = ISO_639_2_ENTRY_SIZE;\r
1408 for (Index = 0; Index < AsciiStrLen (SupportedLang); Index += CompareLength) {\r
1409 if (AsciiStrnCmp (Lang, SupportedLang + Index, CompareLength) == 0) {\r
1410 //\r
1411 // Successfully find the index of Lang string in SupportedLang string.\r
1412 //\r
1413 Index = Index / CompareLength;\r
1414 return Index;\r
1415 }\r
1416 }\r
1417 ASSERT (FALSE);\r
1418 return 0;\r
1419 } else {\r
1420 //\r
1421 // Compare RFC4646 language code\r
1422 //\r
1423 Index = 0;\r
1424 for (LanguageLength = 0; Lang[LanguageLength] != '\0'; LanguageLength++);\r
1425\r
1426 for (Index = 0; *SupportedLang != '\0'; Index++, SupportedLang += CompareLength) {\r
1427 //\r
1428 // Skip ';' characters in SupportedLang\r
1429 //\r
1430 for (; *SupportedLang != '\0' && *SupportedLang == ';'; SupportedLang++);\r
1431 //\r
1432 // Determine the length of the next language code in SupportedLang\r
1433 //\r
1434 for (CompareLength = 0; SupportedLang[CompareLength] != '\0' && SupportedLang[CompareLength] != ';'; CompareLength++);\r
1435\r
1436 if ((CompareLength == LanguageLength) &&\r
1437 (AsciiStrnCmp (Lang, SupportedLang, CompareLength) == 0)) {\r
1438 //\r
1439 // Successfully find the index of Lang string in SupportedLang string.\r
1440 //\r
1441 return Index;\r
1442 }\r
1443 }\r
1444 ASSERT (FALSE);\r
1445 return 0;\r
1446 }\r
1447}\r
1448\r
1449/**\r
1450 Get language string from supported language codes according to index.\r
1451\r
1452 This code is used to get corresponding language strings in supported language codes. It can handle\r
1453 RFC4646 and ISO639 language tags.\r
1454 In ISO639 language tags, take 3-characters as a delimitation. Find language string according to the index.\r
1455 In RFC4646 language tags, take semicolon as a delimitation. Find language string according to the index.\r
1456\r
1457 For example:\r
1458 SupportedLang = "engfraengfra"\r
1459 Index = "1"\r
1460 Iso639Language = TRUE\r
1461 The return value is "fra".\r
1462 Another example:\r
1463 SupportedLang = "en;fr;en-US;fr-FR"\r
1464 Index = "1"\r
1465 Iso639Language = FALSE\r
1466 The return value is "fr".\r
1467\r
1468 @param SupportedLang Platform supported language codes.\r
1469 @param Index The index in supported language codes.\r
1470 @param Iso639Language A bool value to signify if the handler is operated on ISO639 or RFC4646.\r
1471\r
1472 @retval The language string in the language codes.\r
1473\r
1474**/\r
1475CHAR8 *\r
1476GetLangFromSupportedLangCodes (\r
1477 IN CHAR8 *SupportedLang,\r
1478 IN UINTN Index,\r
1479 IN BOOLEAN Iso639Language\r
1480)\r
1481{\r
1482 UINTN SubIndex;\r
1483 UINTN CompareLength;\r
1484 CHAR8 *Supported;\r
1485\r
1486 SubIndex = 0;\r
1487 Supported = SupportedLang;\r
1488 if (Iso639Language) {\r
1489 //\r
1490 // According to the index of Lang string in SupportedLang string to get the language.\r
1491 // This code will be invoked in RUNTIME, therefore there is not a memory allocate/free operation.\r
1492 // In driver entry, it pre-allocates a runtime attribute memory to accommodate this string.\r
1493 //\r
1494 CompareLength = ISO_639_2_ENTRY_SIZE;\r
1495 mVariableModuleGlobal->Lang[CompareLength] = '\0';\r
1496 return CopyMem (mVariableModuleGlobal->Lang, SupportedLang + Index * CompareLength, CompareLength);\r
1497\r
1498 } else {\r
1499 while (TRUE) {\r
1500 //\r
1501 // Take semicolon as delimitation, sequentially traverse supported language codes.\r
1502 //\r
1503 for (CompareLength = 0; *Supported != ';' && *Supported != '\0'; CompareLength++) {\r
1504 Supported++;\r
1505 }\r
1506 if ((*Supported == '\0') && (SubIndex != Index)) {\r
1507 //\r
1508 // Have completed the traverse, but not find corrsponding string.\r
1509 // This case is not allowed to happen.\r
1510 //\r
1511 ASSERT(FALSE);\r
1512 return NULL;\r
1513 }\r
1514 if (SubIndex == Index) {\r
1515 //\r
1516 // According to the index of Lang string in SupportedLang string to get the language.\r
1517 // As this code will be invoked in RUNTIME, therefore there is not memory allocate/free operation.\r
1518 // In driver entry, it pre-allocates a runtime attribute memory to accommodate this string.\r
1519 //\r
1520 mVariableModuleGlobal->PlatformLang[CompareLength] = '\0';\r
1521 return CopyMem (mVariableModuleGlobal->PlatformLang, Supported - CompareLength, CompareLength);\r
1522 }\r
1523 SubIndex++;\r
1524\r
1525 //\r
1526 // Skip ';' characters in Supported\r
1527 //\r
1528 for (; *Supported != '\0' && *Supported == ';'; Supported++);\r
1529 }\r
1530 }\r
1531}\r
1532\r
1533/**\r
1534 Returns a pointer to an allocated buffer that contains the best matching language\r
1535 from a set of supported languages.\r
1536\r
1537 This function supports both ISO 639-2 and RFC 4646 language codes, but language\r
1538 code types may not be mixed in a single call to this function. This function\r
1539 supports a variable argument list that allows the caller to pass in a prioritized\r
1540 list of language codes to test against all the language codes in SupportedLanguages.\r
1541\r
1542 If SupportedLanguages is NULL, then ASSERT().\r
1543\r
1544 @param[in] SupportedLanguages A pointer to a Null-terminated ASCII string that\r
1545 contains a set of language codes in the format\r
1546 specified by Iso639Language.\r
1547 @param[in] Iso639Language If TRUE, then all language codes are assumed to be\r
1548 in ISO 639-2 format. If FALSE, then all language\r
1549 codes are assumed to be in RFC 4646 language format\r
1550 @param[in] ... A variable argument list that contains pointers to\r
1551 Null-terminated ASCII strings that contain one or more\r
1552 language codes in the format specified by Iso639Language.\r
1553 The first language code from each of these language\r
1554 code lists is used to determine if it is an exact or\r
1555 close match to any of the language codes in\r
1556 SupportedLanguages. Close matches only apply to RFC 4646\r
1557 language codes, and the matching algorithm from RFC 4647\r
1558 is used to determine if a close match is present. If\r
1559 an exact or close match is found, then the matching\r
1560 language code from SupportedLanguages is returned. If\r
1561 no matches are found, then the next variable argument\r
1562 parameter is evaluated. The variable argument list\r
1563 is terminated by a NULL.\r
1564\r
1565 @retval NULL The best matching language could not be found in SupportedLanguages.\r
1566 @retval NULL There are not enough resources available to return the best matching\r
1567 language.\r
1568 @retval Other A pointer to a Null-terminated ASCII string that is the best matching\r
1569 language in SupportedLanguages.\r
1570\r
1571**/\r
1572CHAR8 *\r
1573EFIAPI\r
1574VariableGetBestLanguage (\r
1575 IN CONST CHAR8 *SupportedLanguages,\r
1576 IN BOOLEAN Iso639Language,\r
1577 ...\r
1578 )\r
1579{\r
1580 VA_LIST Args;\r
1581 CHAR8 *Language;\r
1582 UINTN CompareLength;\r
1583 UINTN LanguageLength;\r
1584 CONST CHAR8 *Supported;\r
1585 CHAR8 *Buffer;\r
1586\r
1587 if (SupportedLanguages == NULL) {\r
1588 return NULL;\r
1589 }\r
1590\r
1591 VA_START (Args, Iso639Language);\r
1592 while ((Language = VA_ARG (Args, CHAR8 *)) != NULL) {\r
1593 //\r
1594 // Default to ISO 639-2 mode\r
1595 //\r
1596 CompareLength = 3;\r
1597 LanguageLength = MIN (3, AsciiStrLen (Language));\r
1598\r
1599 //\r
1600 // If in RFC 4646 mode, then determine the length of the first RFC 4646 language code in Language\r
1601 //\r
1602 if (!Iso639Language) {\r
1603 for (LanguageLength = 0; Language[LanguageLength] != 0 && Language[LanguageLength] != ';'; LanguageLength++);\r
1604 }\r
1605\r
1606 //\r
1607 // Trim back the length of Language used until it is empty\r
1608 //\r
1609 while (LanguageLength > 0) {\r
1610 //\r
1611 // Loop through all language codes in SupportedLanguages\r
1612 //\r
1613 for (Supported = SupportedLanguages; *Supported != '\0'; Supported += CompareLength) {\r
1614 //\r
1615 // In RFC 4646 mode, then Loop through all language codes in SupportedLanguages\r
1616 //\r
1617 if (!Iso639Language) {\r
1618 //\r
1619 // Skip ';' characters in Supported\r
1620 //\r
1621 for (; *Supported != '\0' && *Supported == ';'; Supported++);\r
1622 //\r
1623 // Determine the length of the next language code in Supported\r
1624 //\r
1625 for (CompareLength = 0; Supported[CompareLength] != 0 && Supported[CompareLength] != ';'; CompareLength++);\r
1626 //\r
1627 // If Language is longer than the Supported, then skip to the next language\r
1628 //\r
1629 if (LanguageLength > CompareLength) {\r
1630 continue;\r
1631 }\r
1632 }\r
1633 //\r
1634 // See if the first LanguageLength characters in Supported match Language\r
1635 //\r
1636 if (AsciiStrnCmp (Supported, Language, LanguageLength) == 0) {\r
1637 VA_END (Args);\r
1638\r
1639 Buffer = Iso639Language ? mVariableModuleGlobal->Lang : mVariableModuleGlobal->PlatformLang;\r
1640 Buffer[CompareLength] = '\0';\r
1641 return CopyMem (Buffer, Supported, CompareLength);\r
1642 }\r
1643 }\r
1644\r
1645 if (Iso639Language) {\r
1646 //\r
1647 // If ISO 639 mode, then each language can only be tested once\r
1648 //\r
1649 LanguageLength = 0;\r
1650 } else {\r
1651 //\r
1652 // If RFC 4646 mode, then trim Language from the right to the next '-' character\r
1653 //\r
1654 for (LanguageLength--; LanguageLength > 0 && Language[LanguageLength] != '-'; LanguageLength--);\r
1655 }\r
1656 }\r
1657 }\r
1658 VA_END (Args);\r
1659\r
1660 //\r
1661 // No matches were found\r
1662 //\r
1663 return NULL;\r
1664}\r
1665\r
1666/**\r
1667 This function is to check if the remaining variable space is enough to set\r
1668 all Variables from argument list successfully. The purpose of the check\r
1669 is to keep the consistency of the Variables to be in variable storage.\r
1670\r
1671 Note: Variables are assumed to be in same storage.\r
1672 The set sequence of Variables will be same with the sequence of VariableEntry from argument list,\r
1673 so follow the argument sequence to check the Variables.\r
1674\r
1675 @param[in] Attributes Variable attributes for Variable entries.\r
1676 @param[in] Marker VA_LIST style variable argument list.\r
1677 The variable argument list with type VARIABLE_ENTRY_CONSISTENCY *.\r
1678 A NULL terminates the list. The VariableSize of\r
1679 VARIABLE_ENTRY_CONSISTENCY is the variable data size as input.\r
1680 It will be changed to variable total size as output.\r
1681\r
1682 @retval TRUE Have enough variable space to set the Variables successfully.\r
1683 @retval FALSE No enough variable space to set the Variables successfully.\r
1684\r
1685**/\r
1686BOOLEAN\r
1687EFIAPI\r
1688CheckRemainingSpaceForConsistencyInternal (\r
1689 IN UINT32 Attributes,\r
1690 IN VA_LIST Marker\r
1691 )\r
1692{\r
1693 EFI_STATUS Status;\r
1694 VA_LIST Args;\r
1695 VARIABLE_ENTRY_CONSISTENCY *VariableEntry;\r
1696 UINT64 MaximumVariableStorageSize;\r
1697 UINT64 RemainingVariableStorageSize;\r
1698 UINT64 MaximumVariableSize;\r
1699 UINTN TotalNeededSize;\r
1700 UINTN OriginalVarSize;\r
1701 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
1702 VARIABLE_POINTER_TRACK VariablePtrTrack;\r
1703 VARIABLE_HEADER *NextVariable;\r
1704 UINTN VarNameSize;\r
1705 UINTN VarDataSize;\r
1706\r
1707 //\r
1708 // Non-Volatile related.\r
1709 //\r
1710 VariableStoreHeader = mNvVariableCache;\r
1711\r
1712 Status = VariableServiceQueryVariableInfoInternal (\r
1713 Attributes,\r
1714 &MaximumVariableStorageSize,\r
1715 &RemainingVariableStorageSize,\r
1716 &MaximumVariableSize\r
1717 );\r
1718 ASSERT_EFI_ERROR (Status);\r
1719\r
1720 TotalNeededSize = 0;\r
1721 Args = Marker;\r
1722 VariableEntry = VA_ARG (Args, VARIABLE_ENTRY_CONSISTENCY *);\r
1723 while (VariableEntry != NULL) {\r
1724 //\r
1725 // Calculate variable total size.\r
1726 //\r
1727 VarNameSize = StrSize (VariableEntry->Name);\r
1728 VarNameSize += GET_PAD_SIZE (VarNameSize);\r
1729 VarDataSize = VariableEntry->VariableSize;\r
1730 VarDataSize += GET_PAD_SIZE (VarDataSize);\r
1731 VariableEntry->VariableSize = HEADER_ALIGN (GetVariableHeaderSize () + VarNameSize + VarDataSize);\r
1732\r
1733 TotalNeededSize += VariableEntry->VariableSize;\r
1734 VariableEntry = VA_ARG (Args, VARIABLE_ENTRY_CONSISTENCY *);\r
1735 }\r
1736\r
1737 if (RemainingVariableStorageSize >= TotalNeededSize) {\r
1738 //\r
1739 // Already have enough space.\r
1740 //\r
1741 return TRUE;\r
1742 } else if (AtRuntime ()) {\r
1743 //\r
1744 // At runtime, no reclaim.\r
1745 // The original variable space of Variables can't be reused.\r
1746 //\r
1747 return FALSE;\r
1748 }\r
1749\r
1750 Args = Marker;\r
1751 VariableEntry = VA_ARG (Args, VARIABLE_ENTRY_CONSISTENCY *);\r
1752 while (VariableEntry != NULL) {\r
1753 //\r
1754 // Check if Variable[Index] has been present and get its size.\r
1755 //\r
1756 OriginalVarSize = 0;\r
1757 VariablePtrTrack.StartPtr = GetStartPointer (VariableStoreHeader);\r
1758 VariablePtrTrack.EndPtr = GetEndPointer (VariableStoreHeader);\r
1759 Status = FindVariableEx (\r
1760 VariableEntry->Name,\r
1761 VariableEntry->Guid,\r
1762 FALSE,\r
1763 &VariablePtrTrack\r
1764 );\r
1765 if (!EFI_ERROR (Status)) {\r
1766 //\r
1767 // Get size of Variable[Index].\r
1768 //\r
1769 NextVariable = GetNextVariablePtr (VariablePtrTrack.CurrPtr);\r
1770 OriginalVarSize = (UINTN) NextVariable - (UINTN) VariablePtrTrack.CurrPtr;\r
1771 //\r
1772 // Add the original size of Variable[Index] to remaining variable storage size.\r
1773 //\r
1774 RemainingVariableStorageSize += OriginalVarSize;\r
1775 }\r
1776 if (VariableEntry->VariableSize > RemainingVariableStorageSize) {\r
1777 //\r
1778 // No enough space for Variable[Index].\r
1779 //\r
1780 return FALSE;\r
1781 }\r
1782 //\r
1783 // Sub the (new) size of Variable[Index] from remaining variable storage size.\r
1784 //\r
1785 RemainingVariableStorageSize -= VariableEntry->VariableSize;\r
1786 VariableEntry = VA_ARG (Args, VARIABLE_ENTRY_CONSISTENCY *);\r
1787 }\r
1788\r
1789 return TRUE;\r
1790}\r
1791\r
1792/**\r
1793 This function is to check if the remaining variable space is enough to set\r
1794 all Variables from argument list successfully. The purpose of the check\r
1795 is to keep the consistency of the Variables to be in variable storage.\r
1796\r
1797 Note: Variables are assumed to be in same storage.\r
1798 The set sequence of Variables will be same with the sequence of VariableEntry from argument list,\r
1799 so follow the argument sequence to check the Variables.\r
1800\r
1801 @param[in] Attributes Variable attributes for Variable entries.\r
1802 @param ... The variable argument list with type VARIABLE_ENTRY_CONSISTENCY *.\r
1803 A NULL terminates the list. The VariableSize of\r
1804 VARIABLE_ENTRY_CONSISTENCY is the variable data size as input.\r
1805 It will be changed to variable total size as output.\r
1806\r
1807 @retval TRUE Have enough variable space to set the Variables successfully.\r
1808 @retval FALSE No enough variable space to set the Variables successfully.\r
1809\r
1810**/\r
1811BOOLEAN\r
1812EFIAPI\r
1813CheckRemainingSpaceForConsistency (\r
1814 IN UINT32 Attributes,\r
1815 ...\r
1816 )\r
1817{\r
1818 VA_LIST Marker;\r
1819 BOOLEAN Return;\r
1820\r
1821 VA_START (Marker, Attributes);\r
1822\r
1823 Return = CheckRemainingSpaceForConsistencyInternal (Attributes, Marker);\r
1824\r
1825 VA_END (Marker);\r
1826\r
1827 return Return;\r
1828}\r
1829\r
1830/**\r
1831 Hook the operations in PlatformLangCodes, LangCodes, PlatformLang and Lang.\r
1832\r
1833 When setting Lang/LangCodes, simultaneously update PlatformLang/PlatformLangCodes.\r
1834\r
1835 According to UEFI spec, PlatformLangCodes/LangCodes are only set once in firmware initialization,\r
1836 and are read-only. Therefore, in variable driver, only store the original value for other use.\r
1837\r
1838 @param[in] VariableName Name of variable.\r
1839\r
1840 @param[in] Data Variable data.\r
1841\r
1842 @param[in] DataSize Size of data. 0 means delete.\r
1843\r
1844 @retval EFI_SUCCESS The update operation is successful or ignored.\r
1845 @retval EFI_WRITE_PROTECTED Update PlatformLangCodes/LangCodes at runtime.\r
1846 @retval EFI_OUT_OF_RESOURCES No enough variable space to do the update operation.\r
1847 @retval Others Other errors happened during the update operation.\r
1848\r
1849**/\r
1850EFI_STATUS\r
1851AutoUpdateLangVariable (\r
1852 IN CHAR16 *VariableName,\r
1853 IN VOID *Data,\r
1854 IN UINTN DataSize\r
1855 )\r
1856{\r
1857 EFI_STATUS Status;\r
1858 CHAR8 *BestPlatformLang;\r
1859 CHAR8 *BestLang;\r
1860 UINTN Index;\r
1861 UINT32 Attributes;\r
1862 VARIABLE_POINTER_TRACK Variable;\r
1863 BOOLEAN SetLanguageCodes;\r
1864 VARIABLE_ENTRY_CONSISTENCY VariableEntry[2];\r
1865\r
1866 //\r
1867 // Don't do updates for delete operation\r
1868 //\r
1869 if (DataSize == 0) {\r
1870 return EFI_SUCCESS;\r
1871 }\r
1872\r
1873 SetLanguageCodes = FALSE;\r
1874\r
1875 if (StrCmp (VariableName, EFI_PLATFORM_LANG_CODES_VARIABLE_NAME) == 0) {\r
1876 //\r
1877 // PlatformLangCodes is a volatile variable, so it can not be updated at runtime.\r
1878 //\r
1879 if (AtRuntime ()) {\r
1880 return EFI_WRITE_PROTECTED;\r
1881 }\r
1882\r
1883 SetLanguageCodes = TRUE;\r
1884\r
1885 //\r
1886 // According to UEFI spec, PlatformLangCodes is only set once in firmware initialization, and is read-only\r
1887 // Therefore, in variable driver, only store the original value for other use.\r
1888 //\r
1889 if (mVariableModuleGlobal->PlatformLangCodes != NULL) {\r
1890 FreePool (mVariableModuleGlobal->PlatformLangCodes);\r
1891 }\r
1892 mVariableModuleGlobal->PlatformLangCodes = AllocateRuntimeCopyPool (DataSize, Data);\r
1893 ASSERT (mVariableModuleGlobal->PlatformLangCodes != NULL);\r
1894\r
1895 //\r
1896 // PlatformLang holds a single language from PlatformLangCodes,\r
1897 // so the size of PlatformLangCodes is enough for the PlatformLang.\r
1898 //\r
1899 if (mVariableModuleGlobal->PlatformLang != NULL) {\r
1900 FreePool (mVariableModuleGlobal->PlatformLang);\r
1901 }\r
1902 mVariableModuleGlobal->PlatformLang = AllocateRuntimePool (DataSize);\r
1903 ASSERT (mVariableModuleGlobal->PlatformLang != NULL);\r
1904\r
1905 } else if (StrCmp (VariableName, EFI_LANG_CODES_VARIABLE_NAME) == 0) {\r
1906 //\r
1907 // LangCodes is a volatile variable, so it can not be updated at runtime.\r
1908 //\r
1909 if (AtRuntime ()) {\r
1910 return EFI_WRITE_PROTECTED;\r
1911 }\r
1912\r
1913 SetLanguageCodes = TRUE;\r
1914\r
1915 //\r
1916 // According to UEFI spec, LangCodes is only set once in firmware initialization, and is read-only\r
1917 // Therefore, in variable driver, only store the original value for other use.\r
1918 //\r
1919 if (mVariableModuleGlobal->LangCodes != NULL) {\r
1920 FreePool (mVariableModuleGlobal->LangCodes);\r
1921 }\r
1922 mVariableModuleGlobal->LangCodes = AllocateRuntimeCopyPool (DataSize, Data);\r
1923 ASSERT (mVariableModuleGlobal->LangCodes != NULL);\r
1924 }\r
1925\r
1926 if (SetLanguageCodes\r
1927 && (mVariableModuleGlobal->PlatformLangCodes != NULL)\r
1928 && (mVariableModuleGlobal->LangCodes != NULL)) {\r
1929 //\r
1930 // Update Lang if PlatformLang is already set\r
1931 // Update PlatformLang if Lang is already set\r
1932 //\r
1933 Status = FindVariable (EFI_PLATFORM_LANG_VARIABLE_NAME, &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
1934 if (!EFI_ERROR (Status)) {\r
1935 //\r
1936 // Update Lang\r
1937 //\r
1938 VariableName = EFI_PLATFORM_LANG_VARIABLE_NAME;\r
1939 Data = GetVariableDataPtr (Variable.CurrPtr);\r
1940 DataSize = DataSizeOfVariable (Variable.CurrPtr);\r
1941 } else {\r
1942 Status = FindVariable (EFI_LANG_VARIABLE_NAME, &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
1943 if (!EFI_ERROR (Status)) {\r
1944 //\r
1945 // Update PlatformLang\r
1946 //\r
1947 VariableName = EFI_LANG_VARIABLE_NAME;\r
1948 Data = GetVariableDataPtr (Variable.CurrPtr);\r
1949 DataSize = DataSizeOfVariable (Variable.CurrPtr);\r
1950 } else {\r
1951 //\r
1952 // Neither PlatformLang nor Lang is set, directly return\r
1953 //\r
1954 return EFI_SUCCESS;\r
1955 }\r
1956 }\r
1957 }\r
1958\r
1959 Status = EFI_SUCCESS;\r
1960\r
1961 //\r
1962 // According to UEFI spec, "Lang" and "PlatformLang" is NV|BS|RT attributions.\r
1963 //\r
1964 Attributes = EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS;\r
1965\r
1966 if (StrCmp (VariableName, EFI_PLATFORM_LANG_VARIABLE_NAME) == 0) {\r
1967 //\r
1968 // Update Lang when PlatformLangCodes/LangCodes were set.\r
1969 //\r
1970 if ((mVariableModuleGlobal->PlatformLangCodes != NULL) && (mVariableModuleGlobal->LangCodes != NULL)) {\r
1971 //\r
1972 // When setting PlatformLang, firstly get most matched language string from supported language codes.\r
1973 //\r
1974 BestPlatformLang = VariableGetBestLanguage (mVariableModuleGlobal->PlatformLangCodes, FALSE, Data, NULL);\r
1975 if (BestPlatformLang != NULL) {\r
1976 //\r
1977 // Get the corresponding index in language codes.\r
1978 //\r
1979 Index = GetIndexFromSupportedLangCodes (mVariableModuleGlobal->PlatformLangCodes, BestPlatformLang, FALSE);\r
1980\r
1981 //\r
1982 // Get the corresponding ISO639 language tag according to RFC4646 language tag.\r
1983 //\r
1984 BestLang = GetLangFromSupportedLangCodes (mVariableModuleGlobal->LangCodes, Index, TRUE);\r
1985\r
1986 //\r
1987 // Check the variable space for both Lang and PlatformLang variable.\r
1988 //\r
1989 VariableEntry[0].VariableSize = ISO_639_2_ENTRY_SIZE + 1;\r
1990 VariableEntry[0].Guid = &gEfiGlobalVariableGuid;\r
1991 VariableEntry[0].Name = EFI_LANG_VARIABLE_NAME;\r
1992\r
1993 VariableEntry[1].VariableSize = AsciiStrSize (BestPlatformLang);\r
1994 VariableEntry[1].Guid = &gEfiGlobalVariableGuid;\r
1995 VariableEntry[1].Name = EFI_PLATFORM_LANG_VARIABLE_NAME;\r
1996 if (!CheckRemainingSpaceForConsistency (VARIABLE_ATTRIBUTE_NV_BS_RT, &VariableEntry[0], &VariableEntry[1], NULL)) {\r
1997 //\r
1998 // No enough variable space to set both Lang and PlatformLang successfully.\r
1999 //\r
2000 Status = EFI_OUT_OF_RESOURCES;\r
2001 } else {\r
2002 //\r
2003 // Successfully convert PlatformLang to Lang, and set the BestLang value into Lang variable simultaneously.\r
2004 //\r
2005 FindVariable (EFI_LANG_VARIABLE_NAME, &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
2006\r
2007 Status = UpdateVariable (EFI_LANG_VARIABLE_NAME, &gEfiGlobalVariableGuid, BestLang,\r
2008 ISO_639_2_ENTRY_SIZE + 1, Attributes, 0, 0, &Variable, NULL);\r
2009 }\r
2010\r
2011 DEBUG ((EFI_D_INFO, "Variable Driver Auto Update PlatformLang, PlatformLang:%a, Lang:%a Status: %r\n", BestPlatformLang, BestLang, Status));\r
2012 }\r
2013 }\r
2014\r
2015 } else if (StrCmp (VariableName, EFI_LANG_VARIABLE_NAME) == 0) {\r
2016 //\r
2017 // Update PlatformLang when PlatformLangCodes/LangCodes were set.\r
2018 //\r
2019 if ((mVariableModuleGlobal->PlatformLangCodes != NULL) && (mVariableModuleGlobal->LangCodes != NULL)) {\r
2020 //\r
2021 // When setting Lang, firstly get most matched language string from supported language codes.\r
2022 //\r
2023 BestLang = VariableGetBestLanguage (mVariableModuleGlobal->LangCodes, TRUE, Data, NULL);\r
2024 if (BestLang != NULL) {\r
2025 //\r
2026 // Get the corresponding index in language codes.\r
2027 //\r
2028 Index = GetIndexFromSupportedLangCodes (mVariableModuleGlobal->LangCodes, BestLang, TRUE);\r
2029\r
2030 //\r
2031 // Get the corresponding RFC4646 language tag according to ISO639 language tag.\r
2032 //\r
2033 BestPlatformLang = GetLangFromSupportedLangCodes (mVariableModuleGlobal->PlatformLangCodes, Index, FALSE);\r
2034\r
2035 //\r
2036 // Check the variable space for both PlatformLang and Lang variable.\r
2037 //\r
2038 VariableEntry[0].VariableSize = AsciiStrSize (BestPlatformLang);\r
2039 VariableEntry[0].Guid = &gEfiGlobalVariableGuid;\r
2040 VariableEntry[0].Name = EFI_PLATFORM_LANG_VARIABLE_NAME;\r
2041\r
2042 VariableEntry[1].VariableSize = ISO_639_2_ENTRY_SIZE + 1;\r
2043 VariableEntry[1].Guid = &gEfiGlobalVariableGuid;\r
2044 VariableEntry[1].Name = EFI_LANG_VARIABLE_NAME;\r
2045 if (!CheckRemainingSpaceForConsistency (VARIABLE_ATTRIBUTE_NV_BS_RT, &VariableEntry[0], &VariableEntry[1], NULL)) {\r
2046 //\r
2047 // No enough variable space to set both PlatformLang and Lang successfully.\r
2048 //\r
2049 Status = EFI_OUT_OF_RESOURCES;\r
2050 } else {\r
2051 //\r
2052 // Successfully convert Lang to PlatformLang, and set the BestPlatformLang value into PlatformLang variable simultaneously.\r
2053 //\r
2054 FindVariable (EFI_PLATFORM_LANG_VARIABLE_NAME, &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
2055\r
2056 Status = UpdateVariable (EFI_PLATFORM_LANG_VARIABLE_NAME, &gEfiGlobalVariableGuid, BestPlatformLang,\r
2057 AsciiStrSize (BestPlatformLang), Attributes, 0, 0, &Variable, NULL);\r
2058 }\r
2059\r
2060 DEBUG ((EFI_D_INFO, "Variable Driver Auto Update Lang, Lang:%a, PlatformLang:%a Status: %r\n", BestLang, BestPlatformLang, Status));\r
2061 }\r
2062 }\r
2063 }\r
2064\r
2065 if (SetLanguageCodes) {\r
2066 //\r
2067 // Continue to set PlatformLangCodes or LangCodes.\r
2068 //\r
2069 return EFI_SUCCESS;\r
2070 } else {\r
2071 return Status;\r
2072 }\r
2073}\r
2074\r
2075/**\r
2076 Compare two EFI_TIME data.\r
2077\r
2078\r
2079 @param FirstTime A pointer to the first EFI_TIME data.\r
2080 @param SecondTime A pointer to the second EFI_TIME data.\r
2081\r
2082 @retval TRUE The FirstTime is not later than the SecondTime.\r
2083 @retval FALSE The FirstTime is later than the SecondTime.\r
2084\r
2085**/\r
2086BOOLEAN\r
2087VariableCompareTimeStampInternal (\r
2088 IN EFI_TIME *FirstTime,\r
2089 IN EFI_TIME *SecondTime\r
2090 )\r
2091{\r
2092 if (FirstTime->Year != SecondTime->Year) {\r
2093 return (BOOLEAN) (FirstTime->Year < SecondTime->Year);\r
2094 } else if (FirstTime->Month != SecondTime->Month) {\r
2095 return (BOOLEAN) (FirstTime->Month < SecondTime->Month);\r
2096 } else if (FirstTime->Day != SecondTime->Day) {\r
2097 return (BOOLEAN) (FirstTime->Day < SecondTime->Day);\r
2098 } else if (FirstTime->Hour != SecondTime->Hour) {\r
2099 return (BOOLEAN) (FirstTime->Hour < SecondTime->Hour);\r
2100 } else if (FirstTime->Minute != SecondTime->Minute) {\r
2101 return (BOOLEAN) (FirstTime->Minute < SecondTime->Minute);\r
2102 }\r
2103\r
2104 return (BOOLEAN) (FirstTime->Second <= SecondTime->Second);\r
2105}\r
2106\r
2107/**\r
2108 Update the variable region with Variable information. If EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS is set,\r
2109 index of associated public key is needed.\r
2110\r
2111 @param[in] VariableName Name of variable.\r
2112 @param[in] VendorGuid Guid of variable.\r
2113 @param[in] Data Variable data.\r
2114 @param[in] DataSize Size of data. 0 means delete.\r
2115 @param[in] Attributes Attributes of the variable.\r
2116 @param[in] KeyIndex Index of associated public key.\r
2117 @param[in] MonotonicCount Value of associated monotonic count.\r
2118 @param[in, out] CacheVariable The variable information which is used to keep track of variable usage.\r
2119 @param[in] TimeStamp Value of associated TimeStamp.\r
2120\r
2121 @retval EFI_SUCCESS The update operation is success.\r
2122 @retval EFI_OUT_OF_RESOURCES Variable region is full, can not write other data into this region.\r
2123\r
2124**/\r
2125EFI_STATUS\r
2126UpdateVariable (\r
2127 IN CHAR16 *VariableName,\r
2128 IN EFI_GUID *VendorGuid,\r
2129 IN VOID *Data,\r
2130 IN UINTN DataSize,\r
2131 IN UINT32 Attributes OPTIONAL,\r
2132 IN UINT32 KeyIndex OPTIONAL,\r
2133 IN UINT64 MonotonicCount OPTIONAL,\r
2134 IN OUT VARIABLE_POINTER_TRACK *CacheVariable,\r
2135 IN EFI_TIME *TimeStamp OPTIONAL\r
2136 )\r
2137{\r
2138 EFI_STATUS Status;\r
2139 VARIABLE_HEADER *NextVariable;\r
2140 UINTN ScratchSize;\r
2141 UINTN MaxDataSize;\r
2142 UINTN VarNameOffset;\r
2143 UINTN VarDataOffset;\r
2144 UINTN VarNameSize;\r
2145 UINTN VarSize;\r
2146 BOOLEAN Volatile;\r
2147 EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb;\r
2148 UINT8 State;\r
2149 VARIABLE_POINTER_TRACK *Variable;\r
2150 VARIABLE_POINTER_TRACK NvVariable;\r
2151 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
2152 UINTN CacheOffset;\r
2153 UINT8 *BufferForMerge;\r
2154 UINTN MergedBufSize;\r
2155 BOOLEAN DataReady;\r
2156 UINTN DataOffset;\r
2157 BOOLEAN IsCommonVariable;\r
2158 BOOLEAN IsCommonUserVariable;\r
2159 AUTHENTICATED_VARIABLE_HEADER *AuthVariable;\r
2160\r
2161 if (mVariableModuleGlobal->FvbInstance == NULL) {\r
2162 //\r
2163 // The FVB protocol is not ready, so the EFI_VARIABLE_WRITE_ARCH_PROTOCOL is not installed.\r
2164 //\r
2165 if ((Attributes & EFI_VARIABLE_NON_VOLATILE) != 0) {\r
2166 //\r
2167 // Trying to update NV variable prior to the installation of EFI_VARIABLE_WRITE_ARCH_PROTOCOL\r
2168 //\r
2169 DEBUG ((EFI_D_ERROR, "Update NV variable before EFI_VARIABLE_WRITE_ARCH_PROTOCOL ready - %r\n", EFI_NOT_AVAILABLE_YET));\r
2170 return EFI_NOT_AVAILABLE_YET;\r
2171 } else if ((Attributes & VARIABLE_ATTRIBUTE_AT_AW) != 0) {\r
2172 //\r
2173 // Trying to update volatile authenticated variable prior to the installation of EFI_VARIABLE_WRITE_ARCH_PROTOCOL\r
2174 // The authenticated variable perhaps is not initialized, just return here.\r
2175 //\r
2176 DEBUG ((EFI_D_ERROR, "Update AUTH variable before EFI_VARIABLE_WRITE_ARCH_PROTOCOL ready - %r\n", EFI_NOT_AVAILABLE_YET));\r
2177 return EFI_NOT_AVAILABLE_YET;\r
2178 }\r
2179 }\r
2180\r
2181 if ((CacheVariable->CurrPtr == NULL) || CacheVariable->Volatile) {\r
2182 Variable = CacheVariable;\r
2183 } else {\r
2184 //\r
2185 // Update/Delete existing NV variable.\r
2186 // CacheVariable points to the variable in the memory copy of Flash area\r
2187 // Now let Variable points to the same variable in Flash area.\r
2188 //\r
2189 VariableStoreHeader = (VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase);\r
2190 Variable = &NvVariable;\r
2191 Variable->StartPtr = GetStartPointer (VariableStoreHeader);\r
2192 Variable->EndPtr = GetEndPointer (VariableStoreHeader);\r
2193 Variable->CurrPtr = (VARIABLE_HEADER *)((UINTN)Variable->StartPtr + ((UINTN)CacheVariable->CurrPtr - (UINTN)CacheVariable->StartPtr));\r
2194 if (CacheVariable->InDeletedTransitionPtr != NULL) {\r
2195 Variable->InDeletedTransitionPtr = (VARIABLE_HEADER *)((UINTN)Variable->StartPtr + ((UINTN)CacheVariable->InDeletedTransitionPtr - (UINTN)CacheVariable->StartPtr));\r
2196 } else {\r
2197 Variable->InDeletedTransitionPtr = NULL;\r
2198 }\r
2199 Variable->Volatile = FALSE;\r
2200 }\r
2201\r
2202 Fvb = mVariableModuleGlobal->FvbInstance;\r
2203\r
2204 //\r
2205 // Tricky part: Use scratch data area at the end of volatile variable store\r
2206 // as a temporary storage.\r
2207 //\r
2208 NextVariable = GetEndPointer ((VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase));\r
2209 ScratchSize = mVariableModuleGlobal->ScratchBufferSize;\r
2210 SetMem (NextVariable, ScratchSize, 0xff);\r
2211 DataReady = FALSE;\r
2212\r
2213 if (Variable->CurrPtr != NULL) {\r
2214 //\r
2215 // Update/Delete existing variable.\r
2216 //\r
2217 if (AtRuntime ()) {\r
2218 //\r
2219 // If AtRuntime and the variable is Volatile and Runtime Access,\r
2220 // the volatile is ReadOnly, and SetVariable should be aborted and\r
2221 // return EFI_WRITE_PROTECTED.\r
2222 //\r
2223 if (Variable->Volatile) {\r
2224 Status = EFI_WRITE_PROTECTED;\r
2225 goto Done;\r
2226 }\r
2227 //\r
2228 // Only variable that have NV attributes can be updated/deleted in Runtime.\r
2229 //\r
2230 if ((Variable->CurrPtr->Attributes & EFI_VARIABLE_NON_VOLATILE) == 0) {\r
2231 Status = EFI_INVALID_PARAMETER;\r
2232 goto Done;\r
2233 }\r
2234\r
2235 //\r
2236 // Only variable that have RT attributes can be updated/deleted in Runtime.\r
2237 //\r
2238 if ((Variable->CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0) {\r
2239 Status = EFI_INVALID_PARAMETER;\r
2240 goto Done;\r
2241 }\r
2242 }\r
2243\r
2244 //\r
2245 // Setting a data variable with no access, or zero DataSize attributes\r
2246 // causes it to be deleted.\r
2247 // When the EFI_VARIABLE_APPEND_WRITE attribute is set, DataSize of zero will\r
2248 // not delete the variable.\r
2249 //\r
2250 if ((((Attributes & EFI_VARIABLE_APPEND_WRITE) == 0) && (DataSize == 0))|| ((Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == 0)) {\r
2251 if (Variable->InDeletedTransitionPtr != NULL) {\r
2252 //\r
2253 // Both ADDED and IN_DELETED_TRANSITION variable are present,\r
2254 // set IN_DELETED_TRANSITION one to DELETED state first.\r
2255 //\r
2256 State = Variable->InDeletedTransitionPtr->State;\r
2257 State &= VAR_DELETED;\r
2258 Status = UpdateVariableStore (\r
2259 &mVariableModuleGlobal->VariableGlobal,\r
2260 Variable->Volatile,\r
2261 FALSE,\r
2262 Fvb,\r
2263 (UINTN) &Variable->InDeletedTransitionPtr->State,\r
2264 sizeof (UINT8),\r
2265 &State\r
2266 );\r
2267 if (!EFI_ERROR (Status)) {\r
2268 if (!Variable->Volatile) {\r
2269 ASSERT (CacheVariable->InDeletedTransitionPtr != NULL);\r
2270 CacheVariable->InDeletedTransitionPtr->State = State;\r
2271 }\r
2272 } else {\r
2273 goto Done;\r
2274 }\r
2275 }\r
2276\r
2277 State = Variable->CurrPtr->State;\r
2278 State &= VAR_DELETED;\r
2279\r
2280 Status = UpdateVariableStore (\r
2281 &mVariableModuleGlobal->VariableGlobal,\r
2282 Variable->Volatile,\r
2283 FALSE,\r
2284 Fvb,\r
2285 (UINTN) &Variable->CurrPtr->State,\r
2286 sizeof (UINT8),\r
2287 &State\r
2288 );\r
2289 if (!EFI_ERROR (Status)) {\r
2290 UpdateVariableInfo (VariableName, VendorGuid, Variable->Volatile, FALSE, FALSE, TRUE, FALSE);\r
2291 if (!Variable->Volatile) {\r
2292 CacheVariable->CurrPtr->State = State;\r
2293 FlushHobVariableToFlash (VariableName, VendorGuid);\r
2294 }\r
2295 }\r
2296 goto Done;\r
2297 }\r
2298 //\r
2299 // If the variable is marked valid, and the same data has been passed in,\r
2300 // then return to the caller immediately.\r
2301 //\r
2302 if (DataSizeOfVariable (Variable->CurrPtr) == DataSize &&\r
2303 (CompareMem (Data, GetVariableDataPtr (Variable->CurrPtr), DataSize) == 0) &&\r
2304 ((Attributes & EFI_VARIABLE_APPEND_WRITE) == 0) &&\r
2305 (TimeStamp == NULL)) {\r
2306 //\r
2307 // Variable content unchanged and no need to update timestamp, just return.\r
2308 //\r
2309 UpdateVariableInfo (VariableName, VendorGuid, Variable->Volatile, FALSE, TRUE, FALSE, FALSE);\r
2310 Status = EFI_SUCCESS;\r
2311 goto Done;\r
2312 } else if ((Variable->CurrPtr->State == VAR_ADDED) ||\r
2313 (Variable->CurrPtr->State == (VAR_ADDED & VAR_IN_DELETED_TRANSITION))) {\r
2314\r
2315 //\r
2316 // EFI_VARIABLE_APPEND_WRITE attribute only effects for existing variable.\r
2317 //\r
2318 if ((Attributes & EFI_VARIABLE_APPEND_WRITE) != 0) {\r
2319 //\r
2320 // NOTE: From 0 to DataOffset of NextVariable is reserved for Variable Header and Name.\r
2321 // From DataOffset of NextVariable is to save the existing variable data.\r
2322 //\r
2323 DataOffset = GetVariableDataOffset (Variable->CurrPtr);\r
2324 BufferForMerge = (UINT8 *) ((UINTN) NextVariable + DataOffset);\r
2325 CopyMem (BufferForMerge, (UINT8 *) ((UINTN) Variable->CurrPtr + DataOffset), DataSizeOfVariable (Variable->CurrPtr));\r
2326\r
2327 //\r
2328 // Set Max Common/Auth Variable Data Size as default MaxDataSize.\r
2329 //\r
2330 if ((Attributes & VARIABLE_ATTRIBUTE_AT_AW) != 0) {\r
2331 MaxDataSize = mVariableModuleGlobal->MaxAuthVariableSize - DataOffset;\r
2332 } else {\r
2333 MaxDataSize = mVariableModuleGlobal->MaxVariableSize - DataOffset;\r
2334 }\r
2335\r
2336 //\r
2337 // Append the new data to the end of existing data.\r
2338 // Max Harware error record variable data size is different from common/auth variable.\r
2339 //\r
2340 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
2341 MaxDataSize = PcdGet32 (PcdMaxHardwareErrorVariableSize) - DataOffset;\r
2342 }\r
2343\r
2344 if (DataSizeOfVariable (Variable->CurrPtr) + DataSize > MaxDataSize) {\r
2345 //\r
2346 // Existing data size + new data size exceed maximum variable size limitation.\r
2347 //\r
2348 Status = EFI_INVALID_PARAMETER;\r
2349 goto Done;\r
2350 }\r
2351 CopyMem ((UINT8*) ((UINTN) BufferForMerge + DataSizeOfVariable (Variable->CurrPtr)), Data, DataSize);\r
2352 MergedBufSize = DataSizeOfVariable (Variable->CurrPtr) + DataSize;\r
2353\r
2354 //\r
2355 // BufferForMerge(from DataOffset of NextVariable) has included the merged existing and new data.\r
2356 //\r
2357 Data = BufferForMerge;\r
2358 DataSize = MergedBufSize;\r
2359 DataReady = TRUE;\r
2360 }\r
2361\r
2362 //\r
2363 // Mark the old variable as in delete transition.\r
2364 //\r
2365 State = Variable->CurrPtr->State;\r
2366 State &= VAR_IN_DELETED_TRANSITION;\r
2367\r
2368 Status = UpdateVariableStore (\r
2369 &mVariableModuleGlobal->VariableGlobal,\r
2370 Variable->Volatile,\r
2371 FALSE,\r
2372 Fvb,\r
2373 (UINTN) &Variable->CurrPtr->State,\r
2374 sizeof (UINT8),\r
2375 &State\r
2376 );\r
2377 if (EFI_ERROR (Status)) {\r
2378 goto Done;\r
2379 }\r
2380 if (!Variable->Volatile) {\r
2381 CacheVariable->CurrPtr->State = State;\r
2382 }\r
2383 }\r
2384 } else {\r
2385 //\r
2386 // Not found existing variable. Create a new variable.\r
2387 //\r
2388\r
2389 if ((DataSize == 0) && ((Attributes & EFI_VARIABLE_APPEND_WRITE) != 0)) {\r
2390 Status = EFI_SUCCESS;\r
2391 goto Done;\r
2392 }\r
2393\r
2394 //\r
2395 // Make sure we are trying to create a new variable.\r
2396 // Setting a data variable with zero DataSize or no access attributes means to delete it.\r
2397 //\r
2398 if (DataSize == 0 || (Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == 0) {\r
2399 Status = EFI_NOT_FOUND;\r
2400 goto Done;\r
2401 }\r
2402\r
2403 //\r
2404 // Only variable have NV|RT attribute can be created in Runtime.\r
2405 //\r
2406 if (AtRuntime () &&\r
2407 (((Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0) || ((Attributes & EFI_VARIABLE_NON_VOLATILE) == 0))) {\r
2408 Status = EFI_INVALID_PARAMETER;\r
2409 goto Done;\r
2410 }\r
2411 }\r
2412\r
2413 //\r
2414 // Function part - create a new variable and copy the data.\r
2415 // Both update a variable and create a variable will come here.\r
2416 //\r
2417 NextVariable->StartId = VARIABLE_DATA;\r
2418 //\r
2419 // NextVariable->State = VAR_ADDED;\r
2420 //\r
2421 NextVariable->Reserved = 0;\r
2422 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
2423 AuthVariable = (AUTHENTICATED_VARIABLE_HEADER *) NextVariable;\r
2424 AuthVariable->PubKeyIndex = KeyIndex;\r
2425 AuthVariable->MonotonicCount = MonotonicCount;\r
2426 ZeroMem (&AuthVariable->TimeStamp, sizeof (EFI_TIME));\r
2427\r
2428 if (((Attributes & EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) != 0) &&\r
2429 (TimeStamp != NULL)) {\r
2430 if ((Attributes & EFI_VARIABLE_APPEND_WRITE) == 0) {\r
2431 CopyMem (&AuthVariable->TimeStamp, TimeStamp, sizeof (EFI_TIME));\r
2432 } else {\r
2433 //\r
2434 // In the case when the EFI_VARIABLE_APPEND_WRITE attribute is set, only\r
2435 // when the new TimeStamp value is later than the current timestamp associated\r
2436 // with the variable, we need associate the new timestamp with the updated value.\r
2437 //\r
2438 if (Variable->CurrPtr != NULL) {\r
2439 if (VariableCompareTimeStampInternal (&(((AUTHENTICATED_VARIABLE_HEADER *) Variable->CurrPtr)->TimeStamp), TimeStamp)) {\r
2440 CopyMem (&AuthVariable->TimeStamp, TimeStamp, sizeof (EFI_TIME));\r
2441 }\r
2442 }\r
2443 }\r
2444 }\r
2445 }\r
2446\r
2447 //\r
2448 // The EFI_VARIABLE_APPEND_WRITE attribute will never be set in the returned\r
2449 // Attributes bitmask parameter of a GetVariable() call.\r
2450 //\r
2451 NextVariable->Attributes = Attributes & (~EFI_VARIABLE_APPEND_WRITE);\r
2452\r
2453 VarNameOffset = GetVariableHeaderSize ();\r
2454 VarNameSize = StrSize (VariableName);\r
2455 CopyMem (\r
2456 (UINT8 *) ((UINTN) NextVariable + VarNameOffset),\r
2457 VariableName,\r
2458 VarNameSize\r
2459 );\r
2460 VarDataOffset = VarNameOffset + VarNameSize + GET_PAD_SIZE (VarNameSize);\r
2461\r
2462 //\r
2463 // If DataReady is TRUE, it means the variable data has been saved into\r
2464 // NextVariable during EFI_VARIABLE_APPEND_WRITE operation preparation.\r
2465 //\r
2466 if (!DataReady) {\r
2467 CopyMem (\r
2468 (UINT8 *) ((UINTN) NextVariable + VarDataOffset),\r
2469 Data,\r
2470 DataSize\r
2471 );\r
2472 }\r
2473\r
2474 CopyMem (GetVendorGuidPtr (NextVariable), VendorGuid, sizeof (EFI_GUID));\r
2475 //\r
2476 // There will be pad bytes after Data, the NextVariable->NameSize and\r
2477 // NextVariable->DataSize should not include pad size so that variable\r
2478 // service can get actual size in GetVariable.\r
2479 //\r
2480 SetNameSizeOfVariable (NextVariable, VarNameSize);\r
2481 SetDataSizeOfVariable (NextVariable, DataSize);\r
2482\r
2483 //\r
2484 // The actual size of the variable that stores in storage should\r
2485 // include pad size.\r
2486 //\r
2487 VarSize = VarDataOffset + DataSize + GET_PAD_SIZE (DataSize);\r
2488 if ((Attributes & EFI_VARIABLE_NON_VOLATILE) != 0) {\r
2489 //\r
2490 // Create a nonvolatile variable.\r
2491 //\r
2492 Volatile = FALSE;\r
2493\r
2494 IsCommonVariable = FALSE;\r
2495 IsCommonUserVariable = FALSE;\r
2496 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == 0) {\r
2497 IsCommonVariable = TRUE;\r
2498 IsCommonUserVariable = IsUserVariable (NextVariable);\r
2499 }\r
2500 if ((((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0)\r
2501 && ((VarSize + mVariableModuleGlobal->HwErrVariableTotalSize) > PcdGet32 (PcdHwErrStorageSize)))\r
2502 || (IsCommonVariable && ((VarSize + mVariableModuleGlobal->CommonVariableTotalSize) > mVariableModuleGlobal->CommonVariableSpace))\r
2503 || (IsCommonVariable && AtRuntime () && ((VarSize + mVariableModuleGlobal->CommonVariableTotalSize) > mVariableModuleGlobal->CommonRuntimeVariableSpace))\r
2504 || (IsCommonUserVariable && ((VarSize + mVariableModuleGlobal->CommonUserVariableTotalSize) > mVariableModuleGlobal->CommonMaxUserVariableSpace))) {\r
2505 if (AtRuntime ()) {\r
2506 if (IsCommonUserVariable && ((VarSize + mVariableModuleGlobal->CommonUserVariableTotalSize) > mVariableModuleGlobal->CommonMaxUserVariableSpace)) {\r
2507 RecordVarErrorFlag (VAR_ERROR_FLAG_USER_ERROR, VariableName, VendorGuid, Attributes, VarSize);\r
2508 }\r
2509 if (IsCommonVariable && ((VarSize + mVariableModuleGlobal->CommonVariableTotalSize) > mVariableModuleGlobal->CommonRuntimeVariableSpace)) {\r
2510 RecordVarErrorFlag (VAR_ERROR_FLAG_SYSTEM_ERROR, VariableName, VendorGuid, Attributes, VarSize);\r
2511 }\r
2512 Status = EFI_OUT_OF_RESOURCES;\r
2513 goto Done;\r
2514 }\r
2515 //\r
2516 // Perform garbage collection & reclaim operation, and integrate the new variable at the same time.\r
2517 //\r
2518 Status = Reclaim (\r
2519 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
2520 &mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
2521 FALSE,\r
2522 Variable,\r
2523 NextVariable,\r
2524 HEADER_ALIGN (VarSize)\r
2525 );\r
2526 if (!EFI_ERROR (Status)) {\r
2527 //\r
2528 // The new variable has been integrated successfully during reclaiming.\r
2529 //\r
2530 if (Variable->CurrPtr != NULL) {\r
2531 CacheVariable->CurrPtr = (VARIABLE_HEADER *)((UINTN) CacheVariable->StartPtr + ((UINTN) Variable->CurrPtr - (UINTN) Variable->StartPtr));\r
2532 CacheVariable->InDeletedTransitionPtr = NULL;\r
2533 }\r
2534 UpdateVariableInfo (VariableName, VendorGuid, FALSE, FALSE, TRUE, FALSE, FALSE);\r
2535 FlushHobVariableToFlash (VariableName, VendorGuid);\r
2536 } else {\r
2537 if (IsCommonUserVariable && ((VarSize + mVariableModuleGlobal->CommonUserVariableTotalSize) > mVariableModuleGlobal->CommonMaxUserVariableSpace)) {\r
2538 RecordVarErrorFlag (VAR_ERROR_FLAG_USER_ERROR, VariableName, VendorGuid, Attributes, VarSize);\r
2539 }\r
2540 if (IsCommonVariable && ((VarSize + mVariableModuleGlobal->CommonVariableTotalSize) > mVariableModuleGlobal->CommonVariableSpace)) {\r
2541 RecordVarErrorFlag (VAR_ERROR_FLAG_SYSTEM_ERROR, VariableName, VendorGuid, Attributes, VarSize);\r
2542 }\r
2543 }\r
2544 goto Done;\r
2545 }\r
2546 //\r
2547 // Four steps\r
2548 // 1. Write variable header\r
2549 // 2. Set variable state to header valid\r
2550 // 3. Write variable data\r
2551 // 4. Set variable state to valid\r
2552 //\r
2553 //\r
2554 // Step 1:\r
2555 //\r
2556 CacheOffset = mVariableModuleGlobal->NonVolatileLastVariableOffset;\r
2557 Status = UpdateVariableStore (\r
2558 &mVariableModuleGlobal->VariableGlobal,\r
2559 FALSE,\r
2560 TRUE,\r
2561 Fvb,\r
2562 mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
2563 (UINT32) GetVariableHeaderSize (),\r
2564 (UINT8 *) NextVariable\r
2565 );\r
2566\r
2567 if (EFI_ERROR (Status)) {\r
2568 goto Done;\r
2569 }\r
2570\r
2571 //\r
2572 // Step 2:\r
2573 //\r
2574 NextVariable->State = VAR_HEADER_VALID_ONLY;\r
2575 Status = UpdateVariableStore (\r
2576 &mVariableModuleGlobal->VariableGlobal,\r
2577 FALSE,\r
2578 TRUE,\r
2579 Fvb,\r
2580 mVariableModuleGlobal->NonVolatileLastVariableOffset + OFFSET_OF (VARIABLE_HEADER, State),\r
2581 sizeof (UINT8),\r
2582 &NextVariable->State\r
2583 );\r
2584\r
2585 if (EFI_ERROR (Status)) {\r
2586 goto Done;\r
2587 }\r
2588 //\r
2589 // Step 3:\r
2590 //\r
2591 Status = UpdateVariableStore (\r
2592 &mVariableModuleGlobal->VariableGlobal,\r
2593 FALSE,\r
2594 TRUE,\r
2595 Fvb,\r
2596 mVariableModuleGlobal->NonVolatileLastVariableOffset + GetVariableHeaderSize (),\r
2597 (UINT32) (VarSize - GetVariableHeaderSize ()),\r
2598 (UINT8 *) NextVariable + GetVariableHeaderSize ()\r
2599 );\r
2600\r
2601 if (EFI_ERROR (Status)) {\r
2602 goto Done;\r
2603 }\r
2604 //\r
2605 // Step 4:\r
2606 //\r
2607 NextVariable->State = VAR_ADDED;\r
2608 Status = UpdateVariableStore (\r
2609 &mVariableModuleGlobal->VariableGlobal,\r
2610 FALSE,\r
2611 TRUE,\r
2612 Fvb,\r
2613 mVariableModuleGlobal->NonVolatileLastVariableOffset + OFFSET_OF (VARIABLE_HEADER, State),\r
2614 sizeof (UINT8),\r
2615 &NextVariable->State\r
2616 );\r
2617\r
2618 if (EFI_ERROR (Status)) {\r
2619 goto Done;\r
2620 }\r
2621\r
2622 mVariableModuleGlobal->NonVolatileLastVariableOffset += HEADER_ALIGN (VarSize);\r
2623\r
2624 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0) {\r
2625 mVariableModuleGlobal->HwErrVariableTotalSize += HEADER_ALIGN (VarSize);\r
2626 } else {\r
2627 mVariableModuleGlobal->CommonVariableTotalSize += HEADER_ALIGN (VarSize);\r
2628 if (IsCommonUserVariable) {\r
2629 mVariableModuleGlobal->CommonUserVariableTotalSize += HEADER_ALIGN (VarSize);\r
2630 }\r
2631 }\r
2632 //\r
2633 // update the memory copy of Flash region.\r
2634 //\r
2635 CopyMem ((UINT8 *)mNvVariableCache + CacheOffset, (UINT8 *)NextVariable, VarSize);\r
2636 } else {\r
2637 //\r
2638 // Create a volatile variable.\r
2639 //\r
2640 Volatile = TRUE;\r
2641\r
2642 if ((UINT32) (VarSize + mVariableModuleGlobal->VolatileLastVariableOffset) >\r
2643 ((VARIABLE_STORE_HEADER *) ((UINTN) (mVariableModuleGlobal->VariableGlobal.VolatileVariableBase)))->Size) {\r
2644 //\r
2645 // Perform garbage collection & reclaim operation, and integrate the new variable at the same time.\r
2646 //\r
2647 Status = Reclaim (\r
2648 mVariableModuleGlobal->VariableGlobal.VolatileVariableBase,\r
2649 &mVariableModuleGlobal->VolatileLastVariableOffset,\r
2650 TRUE,\r
2651 Variable,\r
2652 NextVariable,\r
2653 HEADER_ALIGN (VarSize)\r
2654 );\r
2655 if (!EFI_ERROR (Status)) {\r
2656 //\r
2657 // The new variable has been integrated successfully during reclaiming.\r
2658 //\r
2659 if (Variable->CurrPtr != NULL) {\r
2660 CacheVariable->CurrPtr = (VARIABLE_HEADER *)((UINTN) CacheVariable->StartPtr + ((UINTN) Variable->CurrPtr - (UINTN) Variable->StartPtr));\r
2661 CacheVariable->InDeletedTransitionPtr = NULL;\r
2662 }\r
2663 UpdateVariableInfo (VariableName, VendorGuid, TRUE, FALSE, TRUE, FALSE, FALSE);\r
2664 }\r
2665 goto Done;\r
2666 }\r
2667\r
2668 NextVariable->State = VAR_ADDED;\r
2669 Status = UpdateVariableStore (\r
2670 &mVariableModuleGlobal->VariableGlobal,\r
2671 TRUE,\r
2672 TRUE,\r
2673 Fvb,\r
2674 mVariableModuleGlobal->VolatileLastVariableOffset,\r
2675 (UINT32) VarSize,\r
2676 (UINT8 *) NextVariable\r
2677 );\r
2678\r
2679 if (EFI_ERROR (Status)) {\r
2680 goto Done;\r
2681 }\r
2682\r
2683 mVariableModuleGlobal->VolatileLastVariableOffset += HEADER_ALIGN (VarSize);\r
2684 }\r
2685\r
2686 //\r
2687 // Mark the old variable as deleted.\r
2688 //\r
2689 if (!EFI_ERROR (Status) && Variable->CurrPtr != NULL) {\r
2690 if (Variable->InDeletedTransitionPtr != NULL) {\r
2691 //\r
2692 // Both ADDED and IN_DELETED_TRANSITION old variable are present,\r
2693 // set IN_DELETED_TRANSITION one to DELETED state first.\r
2694 //\r
2695 State = Variable->InDeletedTransitionPtr->State;\r
2696 State &= VAR_DELETED;\r
2697 Status = UpdateVariableStore (\r
2698 &mVariableModuleGlobal->VariableGlobal,\r
2699 Variable->Volatile,\r
2700 FALSE,\r
2701 Fvb,\r
2702 (UINTN) &Variable->InDeletedTransitionPtr->State,\r
2703 sizeof (UINT8),\r
2704 &State\r
2705 );\r
2706 if (!EFI_ERROR (Status)) {\r
2707 if (!Variable->Volatile) {\r
2708 ASSERT (CacheVariable->InDeletedTransitionPtr != NULL);\r
2709 CacheVariable->InDeletedTransitionPtr->State = State;\r
2710 }\r
2711 } else {\r
2712 goto Done;\r
2713 }\r
2714 }\r
2715\r
2716 State = Variable->CurrPtr->State;\r
2717 State &= VAR_DELETED;\r
2718\r
2719 Status = UpdateVariableStore (\r
2720 &mVariableModuleGlobal->VariableGlobal,\r
2721 Variable->Volatile,\r
2722 FALSE,\r
2723 Fvb,\r
2724 (UINTN) &Variable->CurrPtr->State,\r
2725 sizeof (UINT8),\r
2726 &State\r
2727 );\r
2728 if (!EFI_ERROR (Status) && !Variable->Volatile) {\r
2729 CacheVariable->CurrPtr->State = State;\r
2730 }\r
2731 }\r
2732\r
2733 if (!EFI_ERROR (Status)) {\r
2734 UpdateVariableInfo (VariableName, VendorGuid, Volatile, FALSE, TRUE, FALSE, FALSE);\r
2735 if (!Volatile) {\r
2736 FlushHobVariableToFlash (VariableName, VendorGuid);\r
2737 }\r
2738 }\r
2739\r
2740Done:\r
2741 return Status;\r
2742}\r
2743\r
2744/**\r
2745 Check if a Unicode character is a hexadecimal character.\r
2746\r
2747 This function checks if a Unicode character is a\r
2748 hexadecimal character. The valid hexadecimal character is\r
2749 L'0' to L'9', L'a' to L'f', or L'A' to L'F'.\r
2750\r
2751\r
2752 @param Char The character to check against.\r
2753\r
2754 @retval TRUE If the Char is a hexadecmial character.\r
2755 @retval FALSE If the Char is not a hexadecmial character.\r
2756\r
2757**/\r
2758BOOLEAN\r
2759EFIAPI\r
2760IsHexaDecimalDigitCharacter (\r
2761 IN CHAR16 Char\r
2762 )\r
2763{\r
2764 return (BOOLEAN) ((Char >= L'0' && Char <= L'9') || (Char >= L'A' && Char <= L'F') || (Char >= L'a' && Char <= L'f'));\r
2765}\r
2766\r
2767/**\r
2768\r
2769 This code checks if variable is hardware error record variable or not.\r
2770\r
2771 According to UEFI spec, hardware error record variable should use the EFI_HARDWARE_ERROR_VARIABLE VendorGuid\r
2772 and have the L"HwErrRec####" name convention, #### is a printed hex value and no 0x or h is included in the hex value.\r
2773\r
2774 @param VariableName Pointer to variable name.\r
2775 @param VendorGuid Variable Vendor Guid.\r
2776\r
2777 @retval TRUE Variable is hardware error record variable.\r
2778 @retval FALSE Variable is not hardware error record variable.\r
2779\r
2780**/\r
2781BOOLEAN\r
2782EFIAPI\r
2783IsHwErrRecVariable (\r
2784 IN CHAR16 *VariableName,\r
2785 IN EFI_GUID *VendorGuid\r
2786 )\r
2787{\r
2788 if (!CompareGuid (VendorGuid, &gEfiHardwareErrorVariableGuid) ||\r
2789 (StrLen (VariableName) != StrLen (L"HwErrRec####")) ||\r
2790 (StrnCmp(VariableName, L"HwErrRec", StrLen (L"HwErrRec")) != 0) ||\r
2791 !IsHexaDecimalDigitCharacter (VariableName[0x8]) ||\r
2792 !IsHexaDecimalDigitCharacter (VariableName[0x9]) ||\r
2793 !IsHexaDecimalDigitCharacter (VariableName[0xA]) ||\r
2794 !IsHexaDecimalDigitCharacter (VariableName[0xB])) {\r
2795 return FALSE;\r
2796 }\r
2797\r
2798 return TRUE;\r
2799}\r
2800\r
2801/**\r
2802 Mark a variable that will become read-only after leaving the DXE phase of execution.\r
2803\r
2804\r
2805 @param[in] This The VARIABLE_LOCK_PROTOCOL instance.\r
2806 @param[in] VariableName A pointer to the variable name that will be made read-only subsequently.\r
2807 @param[in] VendorGuid A pointer to the vendor GUID that will be made read-only subsequently.\r
2808\r
2809 @retval EFI_SUCCESS The variable specified by the VariableName and the VendorGuid was marked\r
2810 as pending to be read-only.\r
2811 @retval EFI_INVALID_PARAMETER VariableName or VendorGuid is NULL.\r
2812 Or VariableName is an empty string.\r
2813 @retval EFI_ACCESS_DENIED EFI_END_OF_DXE_EVENT_GROUP_GUID or EFI_EVENT_GROUP_READY_TO_BOOT has\r
2814 already been signaled.\r
2815 @retval EFI_OUT_OF_RESOURCES There is not enough resource to hold the lock request.\r
2816**/\r
2817EFI_STATUS\r
2818EFIAPI\r
2819VariableLockRequestToLock (\r
2820 IN CONST EDKII_VARIABLE_LOCK_PROTOCOL *This,\r
2821 IN CHAR16 *VariableName,\r
2822 IN EFI_GUID *VendorGuid\r
2823 )\r
2824{\r
2825 VARIABLE_ENTRY *Entry;\r
2826 CHAR16 *Name;\r
2827 LIST_ENTRY *Link;\r
2828 VARIABLE_ENTRY *LockedEntry;\r
2829\r
2830 if (VariableName == NULL || VariableName[0] == 0 || VendorGuid == NULL) {\r
2831 return EFI_INVALID_PARAMETER;\r
2832 }\r
2833\r
2834 if (mEndOfDxe) {\r
2835 return EFI_ACCESS_DENIED;\r
2836 }\r
2837\r
2838 Entry = AllocateRuntimeZeroPool (sizeof (*Entry) + StrSize (VariableName));\r
2839 if (Entry == NULL) {\r
2840 return EFI_OUT_OF_RESOURCES;\r
2841 }\r
2842\r
2843 DEBUG ((EFI_D_INFO, "[Variable] Lock: %g:%s\n", VendorGuid, VariableName));\r
2844\r
2845 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2846\r
2847 for ( Link = GetFirstNode (&mLockedVariableList)\r
2848 ; !IsNull (&mLockedVariableList, Link)\r
2849 ; Link = GetNextNode (&mLockedVariableList, Link)\r
2850 ) {\r
2851 LockedEntry = BASE_CR (Link, VARIABLE_ENTRY, Link);\r
2852 Name = (CHAR16 *) ((UINTN) LockedEntry + sizeof (*LockedEntry));\r
2853 if (CompareGuid (&LockedEntry->Guid, VendorGuid) && (StrCmp (Name, VariableName) == 0)) {\r
2854 goto Done;\r
2855 }\r
2856 }\r
2857\r
2858 Name = (CHAR16 *) ((UINTN) Entry + sizeof (*Entry));\r
2859 StrCpyS (Name, StrSize (VariableName)/sizeof(CHAR16), VariableName);\r
2860 CopyGuid (&Entry->Guid, VendorGuid);\r
2861 InsertTailList (&mLockedVariableList, &Entry->Link);\r
2862\r
2863Done:\r
2864 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2865\r
2866 return EFI_SUCCESS;\r
2867}\r
2868\r
2869/**\r
2870\r
2871 This code finds variable in storage blocks (Volatile or Non-Volatile).\r
2872\r
2873 Caution: This function may receive untrusted input.\r
2874 This function may be invoked in SMM mode, and datasize is external input.\r
2875 This function will do basic validation, before parse the data.\r
2876\r
2877 @param VariableName Name of Variable to be found.\r
2878 @param VendorGuid Variable vendor GUID.\r
2879 @param Attributes Attribute value of the variable found.\r
2880 @param DataSize Size of Data found. If size is less than the\r
2881 data, this value contains the required size.\r
2882 @param Data Data pointer.\r
2883\r
2884 @return EFI_INVALID_PARAMETER Invalid parameter.\r
2885 @return EFI_SUCCESS Find the specified variable.\r
2886 @return EFI_NOT_FOUND Not found.\r
2887 @return EFI_BUFFER_TO_SMALL DataSize is too small for the result.\r
2888\r
2889**/\r
2890EFI_STATUS\r
2891EFIAPI\r
2892VariableServiceGetVariable (\r
2893 IN CHAR16 *VariableName,\r
2894 IN EFI_GUID *VendorGuid,\r
2895 OUT UINT32 *Attributes OPTIONAL,\r
2896 IN OUT UINTN *DataSize,\r
2897 OUT VOID *Data\r
2898 )\r
2899{\r
2900 EFI_STATUS Status;\r
2901 VARIABLE_POINTER_TRACK Variable;\r
2902 UINTN VarDataSize;\r
2903\r
2904 if (VariableName == NULL || VendorGuid == NULL || DataSize == NULL) {\r
2905 return EFI_INVALID_PARAMETER;\r
2906 }\r
2907\r
2908 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2909\r
2910 Status = FindVariable (VariableName, VendorGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
2911 if (Variable.CurrPtr == NULL || EFI_ERROR (Status)) {\r
2912 goto Done;\r
2913 }\r
2914\r
2915 //\r
2916 // Get data size\r
2917 //\r
2918 VarDataSize = DataSizeOfVariable (Variable.CurrPtr);\r
2919 ASSERT (VarDataSize != 0);\r
2920\r
2921 if (*DataSize >= VarDataSize) {\r
2922 if (Data == NULL) {\r
2923 Status = EFI_INVALID_PARAMETER;\r
2924 goto Done;\r
2925 }\r
2926\r
2927 CopyMem (Data, GetVariableDataPtr (Variable.CurrPtr), VarDataSize);\r
2928 if (Attributes != NULL) {\r
2929 *Attributes = Variable.CurrPtr->Attributes;\r
2930 }\r
2931\r
2932 *DataSize = VarDataSize;\r
2933 UpdateVariableInfo (VariableName, VendorGuid, Variable.Volatile, TRUE, FALSE, FALSE, FALSE);\r
2934\r
2935 Status = EFI_SUCCESS;\r
2936 goto Done;\r
2937 } else {\r
2938 *DataSize = VarDataSize;\r
2939 Status = EFI_BUFFER_TOO_SMALL;\r
2940 goto Done;\r
2941 }\r
2942\r
2943Done:\r
2944 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2945 return Status;\r
2946}\r
2947\r
2948/**\r
2949 This code Finds the Next available variable.\r
2950\r
2951 Caution: This function may receive untrusted input.\r
2952 This function may be invoked in SMM mode. This function will do basic validation, before parse the data.\r
2953\r
2954 @param[in] VariableName Pointer to variable name.\r
2955 @param[in] VendorGuid Variable Vendor Guid.\r
2956 @param[out] VariablePtr Pointer to variable header address.\r
2957\r
2958 @return EFI_SUCCESS Find the specified variable.\r
2959 @return EFI_NOT_FOUND Not found.\r
2960\r
2961**/\r
2962EFI_STATUS\r
2963EFIAPI\r
2964VariableServiceGetNextVariableInternal (\r
2965 IN CHAR16 *VariableName,\r
2966 IN EFI_GUID *VendorGuid,\r
2967 OUT VARIABLE_HEADER **VariablePtr\r
2968 )\r
2969{\r
2970 VARIABLE_STORE_TYPE Type;\r
2971 VARIABLE_POINTER_TRACK Variable;\r
2972 VARIABLE_POINTER_TRACK VariableInHob;\r
2973 VARIABLE_POINTER_TRACK VariablePtrTrack;\r
2974 EFI_STATUS Status;\r
2975 VARIABLE_STORE_HEADER *VariableStoreHeader[VariableStoreTypeMax];\r
2976\r
2977 Status = FindVariable (VariableName, VendorGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
2978 if (Variable.CurrPtr == NULL || EFI_ERROR (Status)) {\r
2979 goto Done;\r
2980 }\r
2981\r
2982 if (VariableName[0] != 0) {\r
2983 //\r
2984 // If variable name is not NULL, get next variable.\r
2985 //\r
2986 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
2987 }\r
2988\r
2989 //\r
2990 // 0: Volatile, 1: HOB, 2: Non-Volatile.\r
2991 // The index and attributes mapping must be kept in this order as FindVariable\r
2992 // makes use of this mapping to implement search algorithm.\r
2993 //\r
2994 VariableStoreHeader[VariableStoreTypeVolatile] = (VARIABLE_STORE_HEADER *) (UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase;\r
2995 VariableStoreHeader[VariableStoreTypeHob] = (VARIABLE_STORE_HEADER *) (UINTN) mVariableModuleGlobal->VariableGlobal.HobVariableBase;\r
2996 VariableStoreHeader[VariableStoreTypeNv] = mNvVariableCache;\r
2997\r
2998 while (TRUE) {\r
2999 //\r
3000 // Switch from Volatile to HOB, to Non-Volatile.\r
3001 //\r
3002 while (!IsValidVariableHeader (Variable.CurrPtr, Variable.EndPtr)) {\r
3003 //\r
3004 // Find current storage index\r
3005 //\r
3006 for (Type = (VARIABLE_STORE_TYPE) 0; Type < VariableStoreTypeMax; Type++) {\r
3007 if ((VariableStoreHeader[Type] != NULL) && (Variable.StartPtr == GetStartPointer (VariableStoreHeader[Type]))) {\r
3008 break;\r
3009 }\r
3010 }\r
3011 ASSERT (Type < VariableStoreTypeMax);\r
3012 //\r
3013 // Switch to next storage\r
3014 //\r
3015 for (Type++; Type < VariableStoreTypeMax; Type++) {\r
3016 if (VariableStoreHeader[Type] != NULL) {\r
3017 break;\r
3018 }\r
3019 }\r
3020 //\r
3021 // Capture the case that\r
3022 // 1. current storage is the last one, or\r
3023 // 2. no further storage\r
3024 //\r
3025 if (Type == VariableStoreTypeMax) {\r
3026 Status = EFI_NOT_FOUND;\r
3027 goto Done;\r
3028 }\r
3029 Variable.StartPtr = GetStartPointer (VariableStoreHeader[Type]);\r
3030 Variable.EndPtr = GetEndPointer (VariableStoreHeader[Type]);\r
3031 Variable.CurrPtr = Variable.StartPtr;\r
3032 }\r
3033\r
3034 //\r
3035 // Variable is found\r
3036 //\r
3037 if (Variable.CurrPtr->State == VAR_ADDED || Variable.CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
3038 if (!AtRuntime () || ((Variable.CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) != 0)) {\r
3039 if (Variable.CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
3040 //\r
3041 // If it is a IN_DELETED_TRANSITION variable,\r
3042 // and there is also a same ADDED one at the same time,\r
3043 // don't return it.\r
3044 //\r
3045 VariablePtrTrack.StartPtr = Variable.StartPtr;\r
3046 VariablePtrTrack.EndPtr = Variable.EndPtr;\r
3047 Status = FindVariableEx (\r
3048 GetVariableNamePtr (Variable.CurrPtr),\r
3049 GetVendorGuidPtr (Variable.CurrPtr),\r
3050 FALSE,\r
3051 &VariablePtrTrack\r
3052 );\r
3053 if (!EFI_ERROR (Status) && VariablePtrTrack.CurrPtr->State == VAR_ADDED) {\r
3054 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
3055 continue;\r
3056 }\r
3057 }\r
3058\r
3059 //\r
3060 // Don't return NV variable when HOB overrides it\r
3061 //\r
3062 if ((VariableStoreHeader[VariableStoreTypeHob] != NULL) && (VariableStoreHeader[VariableStoreTypeNv] != NULL) &&\r
3063 (Variable.StartPtr == GetStartPointer (VariableStoreHeader[VariableStoreTypeNv]))\r
3064 ) {\r
3065 VariableInHob.StartPtr = GetStartPointer (VariableStoreHeader[VariableStoreTypeHob]);\r
3066 VariableInHob.EndPtr = GetEndPointer (VariableStoreHeader[VariableStoreTypeHob]);\r
3067 Status = FindVariableEx (\r
3068 GetVariableNamePtr (Variable.CurrPtr),\r
3069 GetVendorGuidPtr (Variable.CurrPtr),\r
3070 FALSE,\r
3071 &VariableInHob\r
3072 );\r
3073 if (!EFI_ERROR (Status)) {\r
3074 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
3075 continue;\r
3076 }\r
3077 }\r
3078\r
3079 *VariablePtr = Variable.CurrPtr;\r
3080 Status = EFI_SUCCESS;\r
3081 goto Done;\r
3082 }\r
3083 }\r
3084\r
3085 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
3086 }\r
3087\r
3088Done:\r
3089 return Status;\r
3090}\r
3091\r
3092/**\r
3093\r
3094 This code Finds the Next available variable.\r
3095\r
3096 Caution: This function may receive untrusted input.\r
3097 This function may be invoked in SMM mode. This function will do basic validation, before parse the data.\r
3098\r
3099 @param VariableNameSize Size of the variable name.\r
3100 @param VariableName Pointer to variable name.\r
3101 @param VendorGuid Variable Vendor Guid.\r
3102\r
3103 @return EFI_INVALID_PARAMETER Invalid parameter.\r
3104 @return EFI_SUCCESS Find the specified variable.\r
3105 @return EFI_NOT_FOUND Not found.\r
3106 @return EFI_BUFFER_TO_SMALL DataSize is too small for the result.\r
3107\r
3108**/\r
3109EFI_STATUS\r
3110EFIAPI\r
3111VariableServiceGetNextVariableName (\r
3112 IN OUT UINTN *VariableNameSize,\r
3113 IN OUT CHAR16 *VariableName,\r
3114 IN OUT EFI_GUID *VendorGuid\r
3115 )\r
3116{\r
3117 EFI_STATUS Status;\r
3118 UINTN VarNameSize;\r
3119 VARIABLE_HEADER *VariablePtr;\r
3120\r
3121 if (VariableNameSize == NULL || VariableName == NULL || VendorGuid == NULL) {\r
3122 return EFI_INVALID_PARAMETER;\r
3123 }\r
3124\r
3125 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
3126\r
3127 Status = VariableServiceGetNextVariableInternal (VariableName, VendorGuid, &VariablePtr);\r
3128 if (!EFI_ERROR (Status)) {\r
3129 VarNameSize = NameSizeOfVariable (VariablePtr);\r
3130 ASSERT (VarNameSize != 0);\r
3131 if (VarNameSize <= *VariableNameSize) {\r
3132 CopyMem (VariableName, GetVariableNamePtr (VariablePtr), VarNameSize);\r
3133 CopyMem (VendorGuid, GetVendorGuidPtr (VariablePtr), sizeof (EFI_GUID));\r
3134 Status = EFI_SUCCESS;\r
3135 } else {\r
3136 Status = EFI_BUFFER_TOO_SMALL;\r
3137 }\r
3138\r
3139 *VariableNameSize = VarNameSize;\r
3140 }\r
3141\r
3142 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
3143 return Status;\r
3144}\r
3145\r
3146/**\r
3147\r
3148 This code sets variable in storage blocks (Volatile or Non-Volatile).\r
3149\r
3150 Caution: This function may receive untrusted input.\r
3151 This function may be invoked in SMM mode, and datasize and data are external input.\r
3152 This function will do basic validation, before parse the data.\r
3153 This function will parse the authentication carefully to avoid security issues, like\r
3154 buffer overflow, integer overflow.\r
3155 This function will check attribute carefully to avoid authentication bypass.\r
3156\r
3157 @param VariableName Name of Variable to be found.\r
3158 @param VendorGuid Variable vendor GUID.\r
3159 @param Attributes Attribute value of the variable found\r
3160 @param DataSize Size of Data found. If size is less than the\r
3161 data, this value contains the required size.\r
3162 @param Data Data pointer.\r
3163\r
3164 @return EFI_INVALID_PARAMETER Invalid parameter.\r
3165 @return EFI_SUCCESS Set successfully.\r
3166 @return EFI_OUT_OF_RESOURCES Resource not enough to set variable.\r
3167 @return EFI_NOT_FOUND Not found.\r
3168 @return EFI_WRITE_PROTECTED Variable is read-only.\r
3169\r
3170**/\r
3171EFI_STATUS\r
3172EFIAPI\r
3173VariableServiceSetVariable (\r
3174 IN CHAR16 *VariableName,\r
3175 IN EFI_GUID *VendorGuid,\r
3176 IN UINT32 Attributes,\r
3177 IN UINTN DataSize,\r
3178 IN VOID *Data\r
3179 )\r
3180{\r
3181 VARIABLE_POINTER_TRACK Variable;\r
3182 EFI_STATUS Status;\r
3183 VARIABLE_HEADER *NextVariable;\r
3184 EFI_PHYSICAL_ADDRESS Point;\r
3185 UINTN PayloadSize;\r
3186 LIST_ENTRY *Link;\r
3187 VARIABLE_ENTRY *Entry;\r
3188 CHAR16 *Name;\r
3189\r
3190 //\r
3191 // Check input parameters.\r
3192 //\r
3193 if (VariableName == NULL || VariableName[0] == 0 || VendorGuid == NULL) {\r
3194 return EFI_INVALID_PARAMETER;\r
3195 }\r
3196\r
3197 if (DataSize != 0 && Data == NULL) {\r
3198 return EFI_INVALID_PARAMETER;\r
3199 }\r
3200\r
3201 //\r
3202 // Check for reserverd bit in variable attribute.\r
3203 //\r
3204 if ((Attributes & (~EFI_VARIABLE_ATTRIBUTES_MASK)) != 0) {\r
3205 return EFI_INVALID_PARAMETER;\r
3206 }\r
3207\r
3208 //\r
3209 // Make sure if runtime bit is set, boot service bit is set also.\r
3210 //\r
3211 if ((Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == EFI_VARIABLE_RUNTIME_ACCESS) {\r
3212 return EFI_INVALID_PARAMETER;\r
3213 } else if ((Attributes & VARIABLE_ATTRIBUTE_AT_AW) != 0) {\r
3214 if (!mVariableModuleGlobal->VariableGlobal.AuthSupport) {\r
3215 //\r
3216 // Not support authenticated variable write.\r
3217 //\r
3218 return EFI_INVALID_PARAMETER;\r
3219 }\r
3220 } else if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0) {\r
3221 if (PcdGet32 (PcdHwErrStorageSize) == 0) {\r
3222 //\r
3223 // Not support harware error record variable variable.\r
3224 //\r
3225 return EFI_INVALID_PARAMETER;\r
3226 }\r
3227 }\r
3228\r
3229 //\r
3230 // EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS and EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS attribute\r
3231 // cannot be set both.\r
3232 //\r
3233 if (((Attributes & EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS)\r
3234 && ((Attributes & EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS)) {\r
3235 return EFI_INVALID_PARAMETER;\r
3236 }\r
3237\r
3238 if ((Attributes & EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) {\r
3239 if (DataSize < AUTHINFO_SIZE) {\r
3240 //\r
3241 // Try to write Authenticated Variable without AuthInfo.\r
3242 //\r
3243 return EFI_SECURITY_VIOLATION;\r
3244 }\r
3245 PayloadSize = DataSize - AUTHINFO_SIZE;\r
3246 } else if ((Attributes & EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) {\r
3247 //\r
3248 // Sanity check for EFI_VARIABLE_AUTHENTICATION_2 descriptor.\r
3249 //\r
3250 if (DataSize < OFFSET_OF_AUTHINFO2_CERT_DATA ||\r
3251 ((EFI_VARIABLE_AUTHENTICATION_2 *) Data)->AuthInfo.Hdr.dwLength > DataSize - (OFFSET_OF (EFI_VARIABLE_AUTHENTICATION_2, AuthInfo)) ||\r
3252 ((EFI_VARIABLE_AUTHENTICATION_2 *) Data)->AuthInfo.Hdr.dwLength < OFFSET_OF (WIN_CERTIFICATE_UEFI_GUID, CertData)) {\r
3253 return EFI_SECURITY_VIOLATION;\r
3254 }\r
3255 PayloadSize = DataSize - AUTHINFO2_SIZE (Data);\r
3256 } else {\r
3257 PayloadSize = DataSize;\r
3258 }\r
3259\r
3260 if ((UINTN)(~0) - PayloadSize < StrSize(VariableName)){\r
3261 //\r
3262 // Prevent whole variable size overflow\r
3263 //\r
3264 return EFI_INVALID_PARAMETER;\r
3265 }\r
3266\r
3267 //\r
3268 // The size of the VariableName, including the Unicode Null in bytes plus\r
3269 // the DataSize is limited to maximum size of PcdGet32 (PcdMaxHardwareErrorVariableSize)\r
3270 // bytes for HwErrRec#### variable.\r
3271 //\r
3272 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
3273 if (StrSize (VariableName) + PayloadSize > PcdGet32 (PcdMaxHardwareErrorVariableSize) - GetVariableHeaderSize ()) {\r
3274 return EFI_INVALID_PARAMETER;\r
3275 }\r
3276 if (!IsHwErrRecVariable(VariableName, VendorGuid)) {\r
3277 return EFI_INVALID_PARAMETER;\r
3278 }\r
3279 } else {\r
3280 //\r
3281 // The size of the VariableName, including the Unicode Null in bytes plus\r
3282 // the DataSize is limited to maximum size of Max(Auth)VariableSize bytes.\r
3283 //\r
3284 if ((Attributes & VARIABLE_ATTRIBUTE_AT_AW) != 0) {\r
3285 if (StrSize (VariableName) + PayloadSize > mVariableModuleGlobal->MaxAuthVariableSize - GetVariableHeaderSize ()) {\r
3286 return EFI_INVALID_PARAMETER;\r
3287 }\r
3288 } else {\r
3289 if (StrSize (VariableName) + PayloadSize > mVariableModuleGlobal->MaxVariableSize - GetVariableHeaderSize ()) {\r
3290 return EFI_INVALID_PARAMETER;\r
3291 }\r
3292 }\r
3293 }\r
3294\r
3295 Status = InternalVarCheckSetVariableCheck (VariableName, VendorGuid, Attributes, PayloadSize, (VOID *) ((UINTN) Data + DataSize - PayloadSize));\r
3296 if (EFI_ERROR (Status)) {\r
3297 return Status;\r
3298 }\r
3299\r
3300 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
3301\r
3302 //\r
3303 // Consider reentrant in MCA/INIT/NMI. It needs be reupdated.\r
3304 //\r
3305 if (1 < InterlockedIncrement (&mVariableModuleGlobal->VariableGlobal.ReentrantState)) {\r
3306 Point = mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase;\r
3307 //\r
3308 // Parse non-volatile variable data and get last variable offset.\r
3309 //\r
3310 NextVariable = GetStartPointer ((VARIABLE_STORE_HEADER *) (UINTN) Point);\r
3311 while (IsValidVariableHeader (NextVariable, GetEndPointer ((VARIABLE_STORE_HEADER *) (UINTN) Point))) {\r
3312 NextVariable = GetNextVariablePtr (NextVariable);\r
3313 }\r
3314 mVariableModuleGlobal->NonVolatileLastVariableOffset = (UINTN) NextVariable - (UINTN) Point;\r
3315 }\r
3316\r
3317 if (mEndOfDxe && mEnableLocking) {\r
3318 //\r
3319 // Treat the variables listed in the forbidden variable list as read-only after leaving DXE phase.\r
3320 //\r
3321 for ( Link = GetFirstNode (&mLockedVariableList)\r
3322 ; !IsNull (&mLockedVariableList, Link)\r
3323 ; Link = GetNextNode (&mLockedVariableList, Link)\r
3324 ) {\r
3325 Entry = BASE_CR (Link, VARIABLE_ENTRY, Link);\r
3326 Name = (CHAR16 *) ((UINTN) Entry + sizeof (*Entry));\r
3327 if (CompareGuid (&Entry->Guid, VendorGuid) && (StrCmp (Name, VariableName) == 0)) {\r
3328 Status = EFI_WRITE_PROTECTED;\r
3329 DEBUG ((EFI_D_INFO, "[Variable]: Changing readonly variable after leaving DXE phase - %g:%s\n", VendorGuid, VariableName));\r
3330 goto Done;\r
3331 }\r
3332 }\r
3333 }\r
3334\r
3335 //\r
3336 // Check whether the input variable is already existed.\r
3337 //\r
3338 Status = FindVariable (VariableName, VendorGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, TRUE);\r
3339 if (!EFI_ERROR (Status)) {\r
3340 if (((Variable.CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0) && AtRuntime ()) {\r
3341 Status = EFI_WRITE_PROTECTED;\r
3342 goto Done;\r
3343 }\r
3344 if (Attributes != 0 && (Attributes & (~EFI_VARIABLE_APPEND_WRITE)) != Variable.CurrPtr->Attributes) {\r
3345 //\r
3346 // If a preexisting variable is rewritten with different attributes, SetVariable() shall not\r
3347 // modify the variable and shall return EFI_INVALID_PARAMETER. Two exceptions to this rule:\r
3348 // 1. No access attributes specified\r
3349 // 2. The only attribute differing is EFI_VARIABLE_APPEND_WRITE\r
3350 //\r
3351 Status = EFI_INVALID_PARAMETER;\r
3352 DEBUG ((EFI_D_INFO, "[Variable]: Rewritten a preexisting variable(0x%08x) with different attributes(0x%08x) - %g:%s\n", Variable.CurrPtr->Attributes, Attributes, VendorGuid, VariableName));\r
3353 goto Done;\r
3354 }\r
3355 }\r
3356\r
3357 if (!FeaturePcdGet (PcdUefiVariableDefaultLangDeprecate)) {\r
3358 //\r
3359 // Hook the operation of setting PlatformLangCodes/PlatformLang and LangCodes/Lang.\r
3360 //\r
3361 Status = AutoUpdateLangVariable (VariableName, Data, DataSize);\r
3362 if (EFI_ERROR (Status)) {\r
3363 //\r
3364 // The auto update operation failed, directly return to avoid inconsistency between PlatformLang and Lang.\r
3365 //\r
3366 goto Done;\r
3367 }\r
3368 }\r
3369\r
3370 if (mVariableModuleGlobal->VariableGlobal.AuthSupport) {\r
3371 Status = AuthVariableLibProcessVariable (VariableName, VendorGuid, Data, DataSize, Attributes);\r
3372 } else {\r
3373 Status = UpdateVariable (VariableName, VendorGuid, Data, DataSize, Attributes, 0, 0, &Variable, NULL);\r
3374 }\r
3375\r
3376Done:\r
3377 InterlockedDecrement (&mVariableModuleGlobal->VariableGlobal.ReentrantState);\r
3378 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
3379\r
3380 if (!AtRuntime ()) {\r
3381 if (!EFI_ERROR (Status)) {\r
3382 SecureBootHook (\r
3383 VariableName,\r
3384 VendorGuid\r
3385 );\r
3386 }\r
3387 }\r
3388\r
3389 return Status;\r
3390}\r
3391\r
3392/**\r
3393\r
3394 This code returns information about the EFI variables.\r
3395\r
3396 Caution: This function may receive untrusted input.\r
3397 This function may be invoked in SMM mode. This function will do basic validation, before parse the data.\r
3398\r
3399 @param Attributes Attributes bitmask to specify the type of variables\r
3400 on which to return information.\r
3401 @param MaximumVariableStorageSize Pointer to the maximum size of the storage space available\r
3402 for the EFI variables associated with the attributes specified.\r
3403 @param RemainingVariableStorageSize Pointer to the remaining size of the storage space available\r
3404 for EFI variables associated with the attributes specified.\r
3405 @param MaximumVariableSize Pointer to the maximum size of an individual EFI variables\r
3406 associated with the attributes specified.\r
3407\r
3408 @return EFI_SUCCESS Query successfully.\r
3409\r
3410**/\r
3411EFI_STATUS\r
3412EFIAPI\r
3413VariableServiceQueryVariableInfoInternal (\r
3414 IN UINT32 Attributes,\r
3415 OUT UINT64 *MaximumVariableStorageSize,\r
3416 OUT UINT64 *RemainingVariableStorageSize,\r
3417 OUT UINT64 *MaximumVariableSize\r
3418 )\r
3419{\r
3420 VARIABLE_HEADER *Variable;\r
3421 VARIABLE_HEADER *NextVariable;\r
3422 UINT64 VariableSize;\r
3423 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
3424 UINT64 CommonVariableTotalSize;\r
3425 UINT64 HwErrVariableTotalSize;\r
3426 EFI_STATUS Status;\r
3427 VARIABLE_POINTER_TRACK VariablePtrTrack;\r
3428\r
3429 CommonVariableTotalSize = 0;\r
3430 HwErrVariableTotalSize = 0;\r
3431\r
3432 if((Attributes & EFI_VARIABLE_NON_VOLATILE) == 0) {\r
3433 //\r
3434 // Query is Volatile related.\r
3435 //\r
3436 VariableStoreHeader = (VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase);\r
3437 } else {\r
3438 //\r
3439 // Query is Non-Volatile related.\r
3440 //\r
3441 VariableStoreHeader = mNvVariableCache;\r
3442 }\r
3443\r
3444 //\r
3445 // Now let's fill *MaximumVariableStorageSize *RemainingVariableStorageSize\r
3446 // with the storage size (excluding the storage header size).\r
3447 //\r
3448 *MaximumVariableStorageSize = VariableStoreHeader->Size - sizeof (VARIABLE_STORE_HEADER);\r
3449\r
3450 //\r
3451 // Harware error record variable needs larger size.\r
3452 //\r
3453 if ((Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
3454 *MaximumVariableStorageSize = PcdGet32 (PcdHwErrStorageSize);\r
3455 *MaximumVariableSize = PcdGet32 (PcdMaxHardwareErrorVariableSize) - GetVariableHeaderSize ();\r
3456 } else {\r
3457 if ((Attributes & EFI_VARIABLE_NON_VOLATILE) != 0) {\r
3458 if (AtRuntime ()) {\r
3459 *MaximumVariableStorageSize = mVariableModuleGlobal->CommonRuntimeVariableSpace;\r
3460 } else {\r
3461 *MaximumVariableStorageSize = mVariableModuleGlobal->CommonVariableSpace;\r
3462 }\r
3463 }\r
3464\r
3465 //\r
3466 // Let *MaximumVariableSize be Max(Auth)VariableSize with the exception of the variable header size.\r
3467 //\r
3468 if ((Attributes & VARIABLE_ATTRIBUTE_AT_AW) != 0) {\r
3469 *MaximumVariableSize = mVariableModuleGlobal->MaxAuthVariableSize - GetVariableHeaderSize ();\r
3470 } else {\r
3471 *MaximumVariableSize = mVariableModuleGlobal->MaxVariableSize - GetVariableHeaderSize ();\r
3472 }\r
3473 }\r
3474\r
3475 //\r
3476 // Point to the starting address of the variables.\r
3477 //\r
3478 Variable = GetStartPointer (VariableStoreHeader);\r
3479\r
3480 //\r
3481 // Now walk through the related variable store.\r
3482 //\r
3483 while (IsValidVariableHeader (Variable, GetEndPointer (VariableStoreHeader))) {\r
3484 NextVariable = GetNextVariablePtr (Variable);\r
3485 VariableSize = (UINT64) (UINTN) NextVariable - (UINT64) (UINTN) Variable;\r
3486\r
3487 if (AtRuntime ()) {\r
3488 //\r
3489 // We don't take the state of the variables in mind\r
3490 // when calculating RemainingVariableStorageSize,\r
3491 // since the space occupied by variables not marked with\r
3492 // VAR_ADDED is not allowed to be reclaimed in Runtime.\r
3493 //\r
3494 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
3495 HwErrVariableTotalSize += VariableSize;\r
3496 } else {\r
3497 CommonVariableTotalSize += VariableSize;\r
3498 }\r
3499 } else {\r
3500 //\r
3501 // Only care about Variables with State VAR_ADDED, because\r
3502 // the space not marked as VAR_ADDED is reclaimable now.\r
3503 //\r
3504 if (Variable->State == VAR_ADDED) {\r
3505 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
3506 HwErrVariableTotalSize += VariableSize;\r
3507 } else {\r
3508 CommonVariableTotalSize += VariableSize;\r
3509 }\r
3510 } else if (Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
3511 //\r
3512 // If it is a IN_DELETED_TRANSITION variable,\r
3513 // and there is not also a same ADDED one at the same time,\r
3514 // this IN_DELETED_TRANSITION variable is valid.\r
3515 //\r
3516 VariablePtrTrack.StartPtr = GetStartPointer (VariableStoreHeader);\r
3517 VariablePtrTrack.EndPtr = GetEndPointer (VariableStoreHeader);\r
3518 Status = FindVariableEx (\r
3519 GetVariableNamePtr (Variable),\r
3520 GetVendorGuidPtr (Variable),\r
3521 FALSE,\r
3522 &VariablePtrTrack\r
3523 );\r
3524 if (!EFI_ERROR (Status) && VariablePtrTrack.CurrPtr->State != VAR_ADDED) {\r
3525 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
3526 HwErrVariableTotalSize += VariableSize;\r
3527 } else {\r
3528 CommonVariableTotalSize += VariableSize;\r
3529 }\r
3530 }\r
3531 }\r
3532 }\r
3533\r
3534 //\r
3535 // Go to the next one.\r
3536 //\r
3537 Variable = NextVariable;\r
3538 }\r
3539\r
3540 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD){\r
3541 *RemainingVariableStorageSize = *MaximumVariableStorageSize - HwErrVariableTotalSize;\r
3542 } else {\r
3543 if (*MaximumVariableStorageSize < CommonVariableTotalSize) {\r
3544 *RemainingVariableStorageSize = 0;\r
3545 } else {\r
3546 *RemainingVariableStorageSize = *MaximumVariableStorageSize - CommonVariableTotalSize;\r
3547 }\r
3548 }\r
3549\r
3550 if (*RemainingVariableStorageSize < GetVariableHeaderSize ()) {\r
3551 *MaximumVariableSize = 0;\r
3552 } else if ((*RemainingVariableStorageSize - GetVariableHeaderSize ()) < *MaximumVariableSize) {\r
3553 *MaximumVariableSize = *RemainingVariableStorageSize - GetVariableHeaderSize ();\r
3554 }\r
3555\r
3556 return EFI_SUCCESS;\r
3557}\r
3558\r
3559/**\r
3560\r
3561 This code returns information about the EFI variables.\r
3562\r
3563 Caution: This function may receive untrusted input.\r
3564 This function may be invoked in SMM mode. This function will do basic validation, before parse the data.\r
3565\r
3566 @param Attributes Attributes bitmask to specify the type of variables\r
3567 on which to return information.\r
3568 @param MaximumVariableStorageSize Pointer to the maximum size of the storage space available\r
3569 for the EFI variables associated with the attributes specified.\r
3570 @param RemainingVariableStorageSize Pointer to the remaining size of the storage space available\r
3571 for EFI variables associated with the attributes specified.\r
3572 @param MaximumVariableSize Pointer to the maximum size of an individual EFI variables\r
3573 associated with the attributes specified.\r
3574\r
3575 @return EFI_INVALID_PARAMETER An invalid combination of attribute bits was supplied.\r
3576 @return EFI_SUCCESS Query successfully.\r
3577 @return EFI_UNSUPPORTED The attribute is not supported on this platform.\r
3578\r
3579**/\r
3580EFI_STATUS\r
3581EFIAPI\r
3582VariableServiceQueryVariableInfo (\r
3583 IN UINT32 Attributes,\r
3584 OUT UINT64 *MaximumVariableStorageSize,\r
3585 OUT UINT64 *RemainingVariableStorageSize,\r
3586 OUT UINT64 *MaximumVariableSize\r
3587 )\r
3588{\r
3589 EFI_STATUS Status;\r
3590\r
3591 if(MaximumVariableStorageSize == NULL || RemainingVariableStorageSize == NULL || MaximumVariableSize == NULL || Attributes == 0) {\r
3592 return EFI_INVALID_PARAMETER;\r
3593 }\r
3594\r
3595 if ((Attributes & EFI_VARIABLE_ATTRIBUTES_MASK) == 0) {\r
3596 //\r
3597 // Make sure the Attributes combination is supported by the platform.\r
3598 //\r
3599 return EFI_UNSUPPORTED;\r
3600 } else if ((Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == EFI_VARIABLE_RUNTIME_ACCESS) {\r
3601 //\r
3602 // Make sure if runtime bit is set, boot service bit is set also.\r
3603 //\r
3604 return EFI_INVALID_PARAMETER;\r
3605 } else if (AtRuntime () && ((Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0)) {\r
3606 //\r
3607 // Make sure RT Attribute is set if we are in Runtime phase.\r
3608 //\r
3609 return EFI_INVALID_PARAMETER;\r
3610 } else if ((Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
3611 //\r
3612 // Make sure Hw Attribute is set with NV.\r
3613 //\r
3614 return EFI_INVALID_PARAMETER;\r
3615 } else if ((Attributes & VARIABLE_ATTRIBUTE_AT_AW) != 0) {\r
3616 if (!mVariableModuleGlobal->VariableGlobal.AuthSupport) {\r
3617 //\r
3618 // Not support authenticated variable write.\r
3619 //\r
3620 return EFI_UNSUPPORTED;\r
3621 }\r
3622 } else if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0) {\r
3623 if (PcdGet32 (PcdHwErrStorageSize) == 0) {\r
3624 //\r
3625 // Not support harware error record variable variable.\r
3626 //\r
3627 return EFI_UNSUPPORTED;\r
3628 }\r
3629 }\r
3630\r
3631 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
3632\r
3633 Status = VariableServiceQueryVariableInfoInternal (\r
3634 Attributes,\r
3635 MaximumVariableStorageSize,\r
3636 RemainingVariableStorageSize,\r
3637 MaximumVariableSize\r
3638 );\r
3639\r
3640 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
3641 return Status;\r
3642}\r
3643\r
3644/**\r
3645 This function reclaims variable storage if free size is below the threshold.\r
3646\r
3647 Caution: This function may be invoked at SMM mode.\r
3648 Care must be taken to make sure not security issue.\r
3649\r
3650**/\r
3651VOID\r
3652ReclaimForOS(\r
3653 VOID\r
3654 )\r
3655{\r
3656 EFI_STATUS Status;\r
3657 UINTN RemainingCommonRuntimeVariableSpace;\r
3658 UINTN RemainingHwErrVariableSpace;\r
3659 STATIC BOOLEAN Reclaimed;\r
3660\r
3661 //\r
3662 // This function will be called only once at EndOfDxe or ReadyToBoot event.\r
3663 //\r
3664 if (Reclaimed) {\r
3665 return;\r
3666 }\r
3667 Reclaimed = TRUE;\r
3668\r
3669 Status = EFI_SUCCESS;\r
3670\r
3671 if (mVariableModuleGlobal->CommonRuntimeVariableSpace < mVariableModuleGlobal->CommonVariableTotalSize) {\r
3672 RemainingCommonRuntimeVariableSpace = 0;\r
3673 } else {\r
3674 RemainingCommonRuntimeVariableSpace = mVariableModuleGlobal->CommonRuntimeVariableSpace - mVariableModuleGlobal->CommonVariableTotalSize;\r
3675 }\r
3676\r
3677 RemainingHwErrVariableSpace = PcdGet32 (PcdHwErrStorageSize) - mVariableModuleGlobal->HwErrVariableTotalSize;\r
3678\r
3679 //\r
3680 // Check if the free area is below a threshold.\r
3681 //\r
3682 if (((RemainingCommonRuntimeVariableSpace < mVariableModuleGlobal->MaxVariableSize) ||\r
3683 (RemainingCommonRuntimeVariableSpace < mVariableModuleGlobal->MaxAuthVariableSize)) ||\r
3684 ((PcdGet32 (PcdHwErrStorageSize) != 0) &&\r
3685 (RemainingHwErrVariableSpace < PcdGet32 (PcdMaxHardwareErrorVariableSize)))){\r
3686 Status = Reclaim (\r
3687 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
3688 &mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
3689 FALSE,\r
3690 NULL,\r
3691 NULL,\r
3692 0\r
3693 );\r
3694 ASSERT_EFI_ERROR (Status);\r
3695 }\r
3696}\r
3697\r
3698/**\r
3699 Get non-volatile maximum variable size.\r
3700\r
3701 @return Non-volatile maximum variable size.\r
3702\r
3703**/\r
3704UINTN\r
3705GetNonVolatileMaxVariableSize (\r
3706 VOID\r
3707 )\r
3708{\r
3709 if (PcdGet32 (PcdHwErrStorageSize) != 0) {\r
3710 return MAX (MAX (PcdGet32 (PcdMaxVariableSize), PcdGet32 (PcdMaxAuthVariableSize)),\r
3711 PcdGet32 (PcdMaxHardwareErrorVariableSize));\r
3712 } else {\r
3713 return MAX (PcdGet32 (PcdMaxVariableSize), PcdGet32 (PcdMaxAuthVariableSize));\r
3714 }\r
3715}\r
3716\r
3717/**\r
3718 Init non-volatile variable store.\r
3719\r
3720 @param[out] NvFvHeader Output pointer to non-volatile FV header address.\r
3721\r
3722 @retval EFI_SUCCESS Function successfully executed.\r
3723 @retval EFI_OUT_OF_RESOURCES Fail to allocate enough memory resource.\r
3724 @retval EFI_VOLUME_CORRUPTED Variable Store or Firmware Volume for Variable Store is corrupted.\r
3725\r
3726**/\r
3727EFI_STATUS\r
3728InitNonVolatileVariableStore (\r
3729 OUT EFI_FIRMWARE_VOLUME_HEADER **NvFvHeader\r
3730 )\r
3731{\r
3732 EFI_FIRMWARE_VOLUME_HEADER *FvHeader;\r
3733 VARIABLE_HEADER *Variable;\r
3734 VARIABLE_HEADER *NextVariable;\r
3735 EFI_PHYSICAL_ADDRESS VariableStoreBase;\r
3736 UINT64 VariableStoreLength;\r
3737 UINTN VariableSize;\r
3738 EFI_HOB_GUID_TYPE *GuidHob;\r
3739 EFI_PHYSICAL_ADDRESS NvStorageBase;\r
3740 UINT8 *NvStorageData;\r
3741 UINT32 NvStorageSize;\r
3742 FAULT_TOLERANT_WRITE_LAST_WRITE_DATA *FtwLastWriteData;\r
3743 UINT32 BackUpOffset;\r
3744 UINT32 BackUpSize;\r
3745 UINT32 HwErrStorageSize;\r
3746 UINT32 MaxUserNvVariableSpaceSize;\r
3747 UINT32 BoottimeReservedNvVariableSpaceSize;\r
3748\r
3749 mVariableModuleGlobal->FvbInstance = NULL;\r
3750\r
3751 //\r
3752 // Allocate runtime memory used for a memory copy of the FLASH region.\r
3753 // Keep the memory and the FLASH in sync as updates occur.\r
3754 //\r
3755 NvStorageSize = PcdGet32 (PcdFlashNvStorageVariableSize);\r
3756 NvStorageData = AllocateRuntimeZeroPool (NvStorageSize);\r
3757 if (NvStorageData == NULL) {\r
3758 return EFI_OUT_OF_RESOURCES;\r
3759 }\r
3760\r
3761 NvStorageBase = (EFI_PHYSICAL_ADDRESS) PcdGet64 (PcdFlashNvStorageVariableBase64);\r
3762 if (NvStorageBase == 0) {\r
3763 NvStorageBase = (EFI_PHYSICAL_ADDRESS) PcdGet32 (PcdFlashNvStorageVariableBase);\r
3764 }\r
3765 //\r
3766 // Copy NV storage data to the memory buffer.\r
3767 //\r
3768 CopyMem (NvStorageData, (UINT8 *) (UINTN) NvStorageBase, NvStorageSize);\r
3769\r
3770 //\r
3771 // Check the FTW last write data hob.\r
3772 //\r
3773 GuidHob = GetFirstGuidHob (&gEdkiiFaultTolerantWriteGuid);\r
3774 if (GuidHob != NULL) {\r
3775 FtwLastWriteData = (FAULT_TOLERANT_WRITE_LAST_WRITE_DATA *) GET_GUID_HOB_DATA (GuidHob);\r
3776 if (FtwLastWriteData->TargetAddress == NvStorageBase) {\r
3777 DEBUG ((EFI_D_INFO, "Variable: NV storage is backed up in spare block: 0x%x\n", (UINTN) FtwLastWriteData->SpareAddress));\r
3778 //\r
3779 // Copy the backed up NV storage data to the memory buffer from spare block.\r
3780 //\r
3781 CopyMem (NvStorageData, (UINT8 *) (UINTN) (FtwLastWriteData->SpareAddress), NvStorageSize);\r
3782 } else if ((FtwLastWriteData->TargetAddress > NvStorageBase) &&\r
3783 (FtwLastWriteData->TargetAddress < (NvStorageBase + NvStorageSize))) {\r
3784 //\r
3785 // Flash NV storage from the Offset is backed up in spare block.\r
3786 //\r
3787 BackUpOffset = (UINT32) (FtwLastWriteData->TargetAddress - NvStorageBase);\r
3788 BackUpSize = NvStorageSize - BackUpOffset;\r
3789 DEBUG ((EFI_D_INFO, "Variable: High partial NV storage from offset: %x is backed up in spare block: 0x%x\n", BackUpOffset, (UINTN) FtwLastWriteData->SpareAddress));\r
3790 //\r
3791 // Copy the partial backed up NV storage data to the memory buffer from spare block.\r
3792 //\r
3793 CopyMem (NvStorageData + BackUpOffset, (UINT8 *) (UINTN) FtwLastWriteData->SpareAddress, BackUpSize);\r
3794 }\r
3795 }\r
3796\r
3797 FvHeader = (EFI_FIRMWARE_VOLUME_HEADER *) NvStorageData;\r
3798\r
3799 //\r
3800 // Check if the Firmware Volume is not corrupted\r
3801 //\r
3802 if ((FvHeader->Signature != EFI_FVH_SIGNATURE) || (!CompareGuid (&gEfiSystemNvDataFvGuid, &FvHeader->FileSystemGuid))) {\r
3803 FreePool (NvStorageData);\r
3804 DEBUG ((EFI_D_ERROR, "Firmware Volume for Variable Store is corrupted\n"));\r
3805 return EFI_VOLUME_CORRUPTED;\r
3806 }\r
3807\r
3808 VariableStoreBase = (EFI_PHYSICAL_ADDRESS) ((UINTN) FvHeader + FvHeader->HeaderLength);\r
3809 VariableStoreLength = (UINT64) (NvStorageSize - FvHeader->HeaderLength);\r
3810\r
3811 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase = VariableStoreBase;\r
3812 mNvVariableCache = (VARIABLE_STORE_HEADER *) (UINTN) VariableStoreBase;\r
3813 if (GetVariableStoreStatus (mNvVariableCache) != EfiValid) {\r
3814 FreePool (NvStorageData);\r
3815 DEBUG((EFI_D_ERROR, "Variable Store header is corrupted\n"));\r
3816 return EFI_VOLUME_CORRUPTED;\r
3817 }\r
3818 ASSERT(mNvVariableCache->Size == VariableStoreLength);\r
3819\r
3820 ASSERT (sizeof (VARIABLE_STORE_HEADER) <= VariableStoreLength);\r
3821\r
3822 mVariableModuleGlobal->VariableGlobal.AuthFormat = (BOOLEAN)(CompareGuid (&mNvVariableCache->Signature, &gEfiAuthenticatedVariableGuid));\r
3823\r
3824 HwErrStorageSize = PcdGet32 (PcdHwErrStorageSize);\r
3825 MaxUserNvVariableSpaceSize = PcdGet32 (PcdMaxUserNvVariableSpaceSize);\r
3826 BoottimeReservedNvVariableSpaceSize = PcdGet32 (PcdBoottimeReservedNvVariableSpaceSize);\r
3827\r
3828 //\r
3829 // Note that in EdkII variable driver implementation, Hardware Error Record type variable\r
3830 // is stored with common variable in the same NV region. So the platform integrator should\r
3831 // ensure that the value of PcdHwErrStorageSize is less than the value of\r
3832 // (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER)).\r
3833 //\r
3834 ASSERT (HwErrStorageSize < (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER)));\r
3835 //\r
3836 // Ensure that the value of PcdMaxUserNvVariableSpaceSize is less than the value of\r
3837 // (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER)) - PcdGet32 (PcdHwErrStorageSize).\r
3838 //\r
3839 ASSERT (MaxUserNvVariableSpaceSize < (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER) - HwErrStorageSize));\r
3840 //\r
3841 // Ensure that the value of PcdBoottimeReservedNvVariableSpaceSize is less than the value of\r
3842 // (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER)) - PcdGet32 (PcdHwErrStorageSize).\r
3843 //\r
3844 ASSERT (BoottimeReservedNvVariableSpaceSize < (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER) - HwErrStorageSize));\r
3845\r
3846 mVariableModuleGlobal->CommonVariableSpace = ((UINTN) VariableStoreLength - sizeof (VARIABLE_STORE_HEADER) - HwErrStorageSize);\r
3847 mVariableModuleGlobal->CommonMaxUserVariableSpace = ((MaxUserNvVariableSpaceSize != 0) ? MaxUserNvVariableSpaceSize : mVariableModuleGlobal->CommonVariableSpace);\r
3848 mVariableModuleGlobal->CommonRuntimeVariableSpace = mVariableModuleGlobal->CommonVariableSpace - BoottimeReservedNvVariableSpaceSize;\r
3849\r
3850 DEBUG ((EFI_D_INFO, "Variable driver common space: 0x%x 0x%x 0x%x\n", mVariableModuleGlobal->CommonVariableSpace, mVariableModuleGlobal->CommonMaxUserVariableSpace, mVariableModuleGlobal->CommonRuntimeVariableSpace));\r
3851\r
3852 //\r
3853 // The max NV variable size should be < (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER)).\r
3854 //\r
3855 ASSERT (GetNonVolatileMaxVariableSize () < (VariableStoreLength - sizeof (VARIABLE_STORE_HEADER)));\r
3856\r
3857 mVariableModuleGlobal->MaxVariableSize = PcdGet32 (PcdMaxVariableSize);\r
3858 mVariableModuleGlobal->MaxAuthVariableSize = ((PcdGet32 (PcdMaxAuthVariableSize) != 0) ? PcdGet32 (PcdMaxAuthVariableSize) : mVariableModuleGlobal->MaxVariableSize);\r
3859\r
3860 //\r
3861 // Parse non-volatile variable data and get last variable offset.\r
3862 //\r
3863 Variable = GetStartPointer ((VARIABLE_STORE_HEADER *)(UINTN)VariableStoreBase);\r
3864 while (IsValidVariableHeader (Variable, GetEndPointer ((VARIABLE_STORE_HEADER *)(UINTN)VariableStoreBase))) {\r
3865 NextVariable = GetNextVariablePtr (Variable);\r
3866 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
3867 if ((Variable->Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
3868 mVariableModuleGlobal->HwErrVariableTotalSize += VariableSize;\r
3869 } else {\r
3870 mVariableModuleGlobal->CommonVariableTotalSize += VariableSize;\r
3871 }\r
3872\r
3873 Variable = NextVariable;\r
3874 }\r
3875 mVariableModuleGlobal->NonVolatileLastVariableOffset = (UINTN) Variable - (UINTN) VariableStoreBase;\r
3876\r
3877 *NvFvHeader = FvHeader;\r
3878 return EFI_SUCCESS;\r
3879}\r
3880\r
3881/**\r
3882 Flush the HOB variable to flash.\r
3883\r
3884 @param[in] VariableName Name of variable has been updated or deleted.\r
3885 @param[in] VendorGuid Guid of variable has been updated or deleted.\r
3886\r
3887**/\r
3888VOID\r
3889FlushHobVariableToFlash (\r
3890 IN CHAR16 *VariableName,\r
3891 IN EFI_GUID *VendorGuid\r
3892 )\r
3893{\r
3894 EFI_STATUS Status;\r
3895 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
3896 VARIABLE_HEADER *Variable;\r
3897 VOID *VariableData;\r
3898 BOOLEAN ErrorFlag;\r
3899\r
3900 ErrorFlag = FALSE;\r
3901\r
3902 //\r
3903 // Flush the HOB variable to flash.\r
3904 //\r
3905 if (mVariableModuleGlobal->VariableGlobal.HobVariableBase != 0) {\r
3906 VariableStoreHeader = (VARIABLE_STORE_HEADER *) (UINTN) mVariableModuleGlobal->VariableGlobal.HobVariableBase;\r
3907 //\r
3908 // Set HobVariableBase to 0, it can avoid SetVariable to call back.\r
3909 //\r
3910 mVariableModuleGlobal->VariableGlobal.HobVariableBase = 0;\r
3911 for ( Variable = GetStartPointer (VariableStoreHeader)\r
3912 ; IsValidVariableHeader (Variable, GetEndPointer (VariableStoreHeader))\r
3913 ; Variable = GetNextVariablePtr (Variable)\r
3914 ) {\r
3915 if (Variable->State != VAR_ADDED) {\r
3916 //\r
3917 // The HOB variable has been set to DELETED state in local.\r
3918 //\r
3919 continue;\r
3920 }\r
3921 ASSERT ((Variable->Attributes & EFI_VARIABLE_NON_VOLATILE) != 0);\r
3922 if (VendorGuid == NULL || VariableName == NULL ||\r
3923 !CompareGuid (VendorGuid, GetVendorGuidPtr (Variable)) ||\r
3924 StrCmp (VariableName, GetVariableNamePtr (Variable)) != 0) {\r
3925 VariableData = GetVariableDataPtr (Variable);\r
3926 Status = VariableServiceSetVariable (\r
3927 GetVariableNamePtr (Variable),\r
3928 GetVendorGuidPtr (Variable),\r
3929 Variable->Attributes,\r
3930 DataSizeOfVariable (Variable),\r
3931 VariableData\r
3932 );\r
3933 DEBUG ((EFI_D_INFO, "Variable driver flush the HOB variable to flash: %g %s %r\n", GetVendorGuidPtr (Variable), GetVariableNamePtr (Variable), Status));\r
3934 } else {\r
3935 //\r
3936 // The updated or deleted variable is matched with the HOB variable.\r
3937 // Don't break here because we will try to set other HOB variables\r
3938 // since this variable could be set successfully.\r
3939 //\r
3940 Status = EFI_SUCCESS;\r
3941 }\r
3942 if (!EFI_ERROR (Status)) {\r
3943 //\r
3944 // If set variable successful, or the updated or deleted variable is matched with the HOB variable,\r
3945 // set the HOB variable to DELETED state in local.\r
3946 //\r
3947 DEBUG ((EFI_D_INFO, "Variable driver set the HOB variable to DELETED state in local: %g %s\n", GetVendorGuidPtr (Variable), GetVariableNamePtr (Variable)));\r
3948 Variable->State &= VAR_DELETED;\r
3949 } else {\r
3950 ErrorFlag = TRUE;\r
3951 }\r
3952 }\r
3953 if (ErrorFlag) {\r
3954 //\r
3955 // We still have HOB variable(s) not flushed in flash.\r
3956 //\r
3957 mVariableModuleGlobal->VariableGlobal.HobVariableBase = (EFI_PHYSICAL_ADDRESS) (UINTN) VariableStoreHeader;\r
3958 } else {\r
3959 //\r
3960 // All HOB variables have been flushed in flash.\r
3961 //\r
3962 DEBUG ((EFI_D_INFO, "Variable driver: all HOB variables have been flushed in flash.\n"));\r
3963 if (!AtRuntime ()) {\r
3964 FreePool ((VOID *) VariableStoreHeader);\r
3965 }\r
3966 }\r
3967 }\r
3968\r
3969}\r
3970\r
3971/**\r
3972 Initializes variable write service after FTW was ready.\r
3973\r
3974 @retval EFI_SUCCESS Function successfully executed.\r
3975 @retval Others Fail to initialize the variable service.\r
3976\r
3977**/\r
3978EFI_STATUS\r
3979VariableWriteServiceInitialize (\r
3980 VOID\r
3981 )\r
3982{\r
3983 EFI_STATUS Status;\r
3984 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
3985 UINTN Index;\r
3986 UINT8 Data;\r
3987 EFI_PHYSICAL_ADDRESS VariableStoreBase;\r
3988 EFI_PHYSICAL_ADDRESS NvStorageBase;\r
3989 VARIABLE_ENTRY_PROPERTY *VariableEntry;\r
3990\r
3991 NvStorageBase = (EFI_PHYSICAL_ADDRESS) PcdGet64 (PcdFlashNvStorageVariableBase64);\r
3992 if (NvStorageBase == 0) {\r
3993 NvStorageBase = (EFI_PHYSICAL_ADDRESS) PcdGet32 (PcdFlashNvStorageVariableBase);\r
3994 }\r
3995 VariableStoreBase = NvStorageBase + (((EFI_FIRMWARE_VOLUME_HEADER *)(UINTN)(NvStorageBase))->HeaderLength);\r
3996\r
3997 //\r
3998 // Let NonVolatileVariableBase point to flash variable store base directly after FTW ready.\r
3999 //\r
4000 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase = VariableStoreBase;\r
4001 VariableStoreHeader = (VARIABLE_STORE_HEADER *)(UINTN)VariableStoreBase;\r
4002\r
4003 //\r
4004 // Check if the free area is really free.\r
4005 //\r
4006 for (Index = mVariableModuleGlobal->NonVolatileLastVariableOffset; Index < VariableStoreHeader->Size; Index++) {\r
4007 Data = ((UINT8 *) mNvVariableCache)[Index];\r
4008 if (Data != 0xff) {\r
4009 //\r
4010 // There must be something wrong in variable store, do reclaim operation.\r
4011 //\r
4012 Status = Reclaim (\r
4013 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
4014 &mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
4015 FALSE,\r
4016 NULL,\r
4017 NULL,\r
4018 0\r
4019 );\r
4020 if (EFI_ERROR (Status)) {\r
4021 return Status;\r
4022 }\r
4023 break;\r
4024 }\r
4025 }\r
4026\r
4027 FlushHobVariableToFlash (NULL, NULL);\r
4028\r
4029 Status = EFI_SUCCESS;\r
4030 ZeroMem (&mContextOut, sizeof (mContextOut));\r
4031 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
4032 //\r
4033 // Authenticated variable initialize.\r
4034 //\r
4035 mContextIn.StructSize = sizeof (AUTH_VAR_LIB_CONTEXT_IN);\r
4036 mContextIn.MaxAuthVariableSize = mVariableModuleGlobal->MaxAuthVariableSize - GetVariableHeaderSize ();\r
4037 Status = AuthVariableLibInitialize (&mContextIn, &mContextOut);\r
4038 if (!EFI_ERROR (Status)) {\r
4039 DEBUG ((EFI_D_INFO, "Variable driver will work with auth variable support!\n"));\r
4040 mVariableModuleGlobal->VariableGlobal.AuthSupport = TRUE;\r
4041 if (mContextOut.AuthVarEntry != NULL) {\r
4042 for (Index = 0; Index < mContextOut.AuthVarEntryCount; Index++) {\r
4043 VariableEntry = &mContextOut.AuthVarEntry[Index];\r
4044 Status = InternalVarCheckVariablePropertySet (\r
4045 VariableEntry->Name,\r
4046 VariableEntry->Guid,\r
4047 &VariableEntry->VariableProperty\r
4048 );\r
4049 ASSERT_EFI_ERROR (Status);\r
4050 }\r
4051 }\r
4052 } else if (Status == EFI_UNSUPPORTED) {\r
4053 DEBUG ((EFI_D_INFO, "NOTICE - AuthVariableLibInitialize() returns %r!\n", Status));\r
4054 DEBUG ((EFI_D_INFO, "Variable driver will continue to work without auth variable support!\n"));\r
4055 mVariableModuleGlobal->VariableGlobal.AuthSupport = FALSE;\r
4056 Status = EFI_SUCCESS;\r
4057 }\r
4058 }\r
4059\r
4060 if (!EFI_ERROR (Status)) {\r
4061 for (Index = 0; Index < sizeof (mVariableEntryProperty) / sizeof (mVariableEntryProperty[0]); Index++) {\r
4062 VariableEntry = &mVariableEntryProperty[Index];\r
4063 Status = InternalVarCheckVariablePropertySet (VariableEntry->Name, VariableEntry->Guid, &VariableEntry->VariableProperty);\r
4064 ASSERT_EFI_ERROR (Status);\r
4065 }\r
4066 }\r
4067\r
4068 return Status;\r
4069}\r
4070\r
4071\r
4072/**\r
4073 Initializes variable store area for non-volatile and volatile variable.\r
4074\r
4075 @retval EFI_SUCCESS Function successfully executed.\r
4076 @retval EFI_OUT_OF_RESOURCES Fail to allocate enough memory resource.\r
4077\r
4078**/\r
4079EFI_STATUS\r
4080VariableCommonInitialize (\r
4081 VOID\r
4082 )\r
4083{\r
4084 EFI_STATUS Status;\r
4085 VARIABLE_STORE_HEADER *VolatileVariableStore;\r
4086 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
4087 UINT64 VariableStoreLength;\r
4088 UINTN ScratchSize;\r
4089 EFI_HOB_GUID_TYPE *GuidHob;\r
4090 EFI_GUID *VariableGuid;\r
4091 EFI_FIRMWARE_VOLUME_HEADER *NvFvHeader;\r
4092\r
4093 //\r
4094 // Allocate runtime memory for variable driver global structure.\r
4095 //\r
4096 mVariableModuleGlobal = AllocateRuntimeZeroPool (sizeof (VARIABLE_MODULE_GLOBAL));\r
4097 if (mVariableModuleGlobal == NULL) {\r
4098 return EFI_OUT_OF_RESOURCES;\r
4099 }\r
4100\r
4101 InitializeLock (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock, TPL_NOTIFY);\r
4102\r
4103 //\r
4104 // Init non-volatile variable store.\r
4105 //\r
4106 NvFvHeader = NULL;\r
4107 Status = InitNonVolatileVariableStore (&NvFvHeader);\r
4108 if (EFI_ERROR (Status)) {\r
4109 FreePool (mVariableModuleGlobal);\r
4110 return Status;\r
4111 }\r
4112\r
4113 //\r
4114 // mVariableModuleGlobal->VariableGlobal.AuthFormat\r
4115 // has been initialized in InitNonVolatileVariableStore().\r
4116 //\r
4117 if (mVariableModuleGlobal->VariableGlobal.AuthFormat) {\r
4118 DEBUG ((EFI_D_INFO, "Variable driver will work with auth variable format!\n"));\r
4119 //\r
4120 // Set AuthSupport to FALSE first, VariableWriteServiceInitialize() will initialize it.\r
4121 //\r
4122 mVariableModuleGlobal->VariableGlobal.AuthSupport = FALSE;\r
4123 VariableGuid = &gEfiAuthenticatedVariableGuid;\r
4124 } else {\r
4125 DEBUG ((EFI_D_INFO, "Variable driver will work without auth variable support!\n"));\r
4126 mVariableModuleGlobal->VariableGlobal.AuthSupport = FALSE;\r
4127 VariableGuid = &gEfiVariableGuid;\r
4128 }\r
4129\r
4130 //\r
4131 // Get HOB variable store.\r
4132 //\r
4133 GuidHob = GetFirstGuidHob (VariableGuid);\r
4134 if (GuidHob != NULL) {\r
4135 VariableStoreHeader = GET_GUID_HOB_DATA (GuidHob);\r
4136 VariableStoreLength = (UINT64) (GuidHob->Header.HobLength - sizeof (EFI_HOB_GUID_TYPE));\r
4137 if (GetVariableStoreStatus (VariableStoreHeader) == EfiValid) {\r
4138 mVariableModuleGlobal->VariableGlobal.HobVariableBase = (EFI_PHYSICAL_ADDRESS) (UINTN) AllocateRuntimeCopyPool ((UINTN) VariableStoreLength, (VOID *) VariableStoreHeader);\r
4139 if (mVariableModuleGlobal->VariableGlobal.HobVariableBase == 0) {\r
4140 FreePool (NvFvHeader);\r
4141 FreePool (mVariableModuleGlobal);\r
4142 return EFI_OUT_OF_RESOURCES;\r
4143 }\r
4144 } else {\r
4145 DEBUG ((EFI_D_ERROR, "HOB Variable Store header is corrupted!\n"));\r
4146 }\r
4147 }\r
4148\r
4149 //\r
4150 // Allocate memory for volatile variable store, note that there is a scratch space to store scratch data.\r
4151 //\r
4152 ScratchSize = GetNonVolatileMaxVariableSize ();\r
4153 mVariableModuleGlobal->ScratchBufferSize = ScratchSize;\r
4154 VolatileVariableStore = AllocateRuntimePool (PcdGet32 (PcdVariableStoreSize) + ScratchSize);\r
4155 if (VolatileVariableStore == NULL) {\r
4156 if (mVariableModuleGlobal->VariableGlobal.HobVariableBase != 0) {\r
4157 FreePool ((VOID *) (UINTN) mVariableModuleGlobal->VariableGlobal.HobVariableBase);\r
4158 }\r
4159 FreePool (NvFvHeader);\r
4160 FreePool (mVariableModuleGlobal);\r
4161 return EFI_OUT_OF_RESOURCES;\r
4162 }\r
4163\r
4164 SetMem (VolatileVariableStore, PcdGet32 (PcdVariableStoreSize) + ScratchSize, 0xff);\r
4165\r
4166 //\r
4167 // Initialize Variable Specific Data.\r
4168 //\r
4169 mVariableModuleGlobal->VariableGlobal.VolatileVariableBase = (EFI_PHYSICAL_ADDRESS) (UINTN) VolatileVariableStore;\r
4170 mVariableModuleGlobal->VolatileLastVariableOffset = (UINTN) GetStartPointer (VolatileVariableStore) - (UINTN) VolatileVariableStore;\r
4171\r
4172 CopyGuid (&VolatileVariableStore->Signature, VariableGuid);\r
4173 VolatileVariableStore->Size = PcdGet32 (PcdVariableStoreSize);\r
4174 VolatileVariableStore->Format = VARIABLE_STORE_FORMATTED;\r
4175 VolatileVariableStore->State = VARIABLE_STORE_HEALTHY;\r
4176 VolatileVariableStore->Reserved = 0;\r
4177 VolatileVariableStore->Reserved1 = 0;\r
4178\r
4179 return EFI_SUCCESS;\r
4180}\r
4181\r
4182\r
4183/**\r
4184 Get the proper fvb handle and/or fvb protocol by the given Flash address.\r
4185\r
4186 @param[in] Address The Flash address.\r
4187 @param[out] FvbHandle In output, if it is not NULL, it points to the proper FVB handle.\r
4188 @param[out] FvbProtocol In output, if it is not NULL, it points to the proper FVB protocol.\r
4189\r
4190**/\r
4191EFI_STATUS\r
4192GetFvbInfoByAddress (\r
4193 IN EFI_PHYSICAL_ADDRESS Address,\r
4194 OUT EFI_HANDLE *FvbHandle OPTIONAL,\r
4195 OUT EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL **FvbProtocol OPTIONAL\r
4196 )\r
4197{\r
4198 EFI_STATUS Status;\r
4199 EFI_HANDLE *HandleBuffer;\r
4200 UINTN HandleCount;\r
4201 UINTN Index;\r
4202 EFI_PHYSICAL_ADDRESS FvbBaseAddress;\r
4203 EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb;\r
4204 EFI_FVB_ATTRIBUTES_2 Attributes;\r
4205 UINTN BlockSize;\r
4206 UINTN NumberOfBlocks;\r
4207\r
4208 HandleBuffer = NULL;\r
4209 //\r
4210 // Get all FVB handles.\r
4211 //\r
4212 Status = GetFvbCountAndBuffer (&HandleCount, &HandleBuffer);\r
4213 if (EFI_ERROR (Status)) {\r
4214 return EFI_NOT_FOUND;\r
4215 }\r
4216\r
4217 //\r
4218 // Get the FVB to access variable store.\r
4219 //\r
4220 Fvb = NULL;\r
4221 for (Index = 0; Index < HandleCount; Index += 1, Status = EFI_NOT_FOUND, Fvb = NULL) {\r
4222 Status = GetFvbByHandle (HandleBuffer[Index], &Fvb);\r
4223 if (EFI_ERROR (Status)) {\r
4224 Status = EFI_NOT_FOUND;\r
4225 break;\r
4226 }\r
4227\r
4228 //\r
4229 // Ensure this FVB protocol supported Write operation.\r
4230 //\r
4231 Status = Fvb->GetAttributes (Fvb, &Attributes);\r
4232 if (EFI_ERROR (Status) || ((Attributes & EFI_FVB2_WRITE_STATUS) == 0)) {\r
4233 continue;\r
4234 }\r
4235\r
4236 //\r
4237 // Compare the address and select the right one.\r
4238 //\r
4239 Status = Fvb->GetPhysicalAddress (Fvb, &FvbBaseAddress);\r
4240 if (EFI_ERROR (Status)) {\r
4241 continue;\r
4242 }\r
4243\r
4244 //\r
4245 // Assume one FVB has one type of BlockSize.\r
4246 //\r
4247 Status = Fvb->GetBlockSize (Fvb, 0, &BlockSize, &NumberOfBlocks);\r
4248 if (EFI_ERROR (Status)) {\r
4249 continue;\r
4250 }\r
4251\r
4252 if ((Address >= FvbBaseAddress) && (Address < (FvbBaseAddress + BlockSize * NumberOfBlocks))) {\r
4253 if (FvbHandle != NULL) {\r
4254 *FvbHandle = HandleBuffer[Index];\r
4255 }\r
4256 if (FvbProtocol != NULL) {\r
4257 *FvbProtocol = Fvb;\r
4258 }\r
4259 Status = EFI_SUCCESS;\r
4260 break;\r
4261 }\r
4262 }\r
4263 FreePool (HandleBuffer);\r
4264\r
4265 if (Fvb == NULL) {\r
4266 Status = EFI_NOT_FOUND;\r
4267 }\r
4268\r
4269 return Status;\r
4270}\r
4271\r