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Fix memory overflow & VariableSize check issue for SetVariable append write.
[mirror_edk2.git] / SecurityPkg / VariableAuthenticated / RuntimeDxe / Variable.c
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0c18794e 1/** @file\r
021a1af9 2 The common variable operation routines shared by DXE_RUNTIME variable\r
0c18794e 3 module and DXE_SMM variable module.\r
4\r
dc204d5a
JY
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
83758cdc 19Copyright (c) 2009 - 2013, Intel Corporation. All rights reserved.<BR>\r
2d3fb919 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
0c18794e 23http://opensource.org/licenses/bsd-license.php\r
24\r
2d3fb919 25THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
0c18794e 26WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
27\r
28**/\r
29\r
30#include "Variable.h"\r
31#include "AuthService.h"\r
32\r
33VARIABLE_MODULE_GLOBAL *mVariableModuleGlobal;\r
34\r
35///\r
36/// Define a memory cache that improves the search performance for a variable.\r
37///\r
38VARIABLE_STORE_HEADER *mNvVariableCache = NULL;\r
39\r
40///\r
41/// The memory entry used for variable statistics data.\r
42///\r
43VARIABLE_INFO_ENTRY *gVariableInfo = NULL;\r
44\r
45\r
46/**\r
2d3fb919 47 Routine used to track statistical information about variable usage.\r
0c18794e 48 The data is stored in the EFI system table so it can be accessed later.\r
2d3fb919 49 VariableInfo.efi can dump out the table. Only Boot Services variable\r
0c18794e 50 accesses are tracked by this code. The PcdVariableCollectStatistics\r
2d3fb919 51 build flag controls if this feature is enabled.\r
0c18794e 52\r
2d3fb919 53 A read that hits in the cache will have Read and Cache true for\r
0c18794e 54 the transaction. Data is allocated by this routine, but never\r
55 freed.\r
56\r
57 @param[in] VariableName Name of the Variable to track.\r
58 @param[in] VendorGuid Guid of the Variable to track.\r
59 @param[in] Volatile TRUE if volatile FALSE if non-volatile.\r
60 @param[in] Read TRUE if GetVariable() was called.\r
61 @param[in] Write TRUE if SetVariable() was called.\r
62 @param[in] Delete TRUE if deleted via SetVariable().\r
63 @param[in] Cache TRUE for a cache hit.\r
64\r
65**/\r
66VOID\r
67UpdateVariableInfo (\r
68 IN CHAR16 *VariableName,\r
69 IN EFI_GUID *VendorGuid,\r
70 IN BOOLEAN Volatile,\r
71 IN BOOLEAN Read,\r
72 IN BOOLEAN Write,\r
73 IN BOOLEAN Delete,\r
74 IN BOOLEAN Cache\r
75 )\r
76{\r
77 VARIABLE_INFO_ENTRY *Entry;\r
78\r
79 if (FeaturePcdGet (PcdVariableCollectStatistics)) {\r
80\r
81 if (AtRuntime ()) {\r
82 // Don't collect statistics at runtime.\r
83 return;\r
84 }\r
85\r
86 if (gVariableInfo == NULL) {\r
87 //\r
88 // On the first call allocate a entry and place a pointer to it in\r
89 // the EFI System Table.\r
90 //\r
91 gVariableInfo = AllocateZeroPool (sizeof (VARIABLE_INFO_ENTRY));\r
92 ASSERT (gVariableInfo != NULL);\r
93\r
94 CopyGuid (&gVariableInfo->VendorGuid, VendorGuid);\r
95 gVariableInfo->Name = AllocatePool (StrSize (VariableName));\r
96 ASSERT (gVariableInfo->Name != NULL);\r
97 StrCpy (gVariableInfo->Name, VariableName);\r
98 gVariableInfo->Volatile = Volatile;\r
99 }\r
100\r
2d3fb919 101\r
0c18794e 102 for (Entry = gVariableInfo; Entry != NULL; Entry = Entry->Next) {\r
103 if (CompareGuid (VendorGuid, &Entry->VendorGuid)) {\r
104 if (StrCmp (VariableName, Entry->Name) == 0) {\r
105 if (Read) {\r
106 Entry->ReadCount++;\r
107 }\r
108 if (Write) {\r
109 Entry->WriteCount++;\r
110 }\r
111 if (Delete) {\r
112 Entry->DeleteCount++;\r
113 }\r
114 if (Cache) {\r
115 Entry->CacheCount++;\r
116 }\r
117\r
118 return;\r
119 }\r
120 }\r
121\r
122 if (Entry->Next == NULL) {\r
123 //\r
124 // If the entry is not in the table add it.\r
125 // Next iteration of the loop will fill in the data.\r
126 //\r
127 Entry->Next = AllocateZeroPool (sizeof (VARIABLE_INFO_ENTRY));\r
128 ASSERT (Entry->Next != NULL);\r
129\r
130 CopyGuid (&Entry->Next->VendorGuid, VendorGuid);\r
131 Entry->Next->Name = AllocatePool (StrSize (VariableName));\r
132 ASSERT (Entry->Next->Name != NULL);\r
133 StrCpy (Entry->Next->Name, VariableName);\r
134 Entry->Next->Volatile = Volatile;\r
135 }\r
136\r
137 }\r
138 }\r
139}\r
140\r
141\r
142/**\r
143\r
144 This code checks if variable header is valid or not.\r
145\r
146 @param Variable Pointer to the Variable Header.\r
147\r
148 @retval TRUE Variable header is valid.\r
149 @retval FALSE Variable header is not valid.\r
150\r
151**/\r
152BOOLEAN\r
153IsValidVariableHeader (\r
154 IN VARIABLE_HEADER *Variable\r
155 )\r
156{\r
157 if (Variable == NULL || Variable->StartId != VARIABLE_DATA) {\r
158 return FALSE;\r
159 }\r
160\r
161 return TRUE;\r
162}\r
163\r
164\r
165/**\r
166\r
167 This function writes data to the FWH at the correct LBA even if the LBAs\r
168 are fragmented.\r
169\r
170 @param Global Pointer to VARAIBLE_GLOBAL structure.\r
171 @param Volatile Point out the Variable is Volatile or Non-Volatile.\r
172 @param SetByIndex TRUE if target pointer is given as index.\r
173 FALSE if target pointer is absolute.\r
174 @param Fvb Pointer to the writable FVB protocol.\r
175 @param DataPtrIndex Pointer to the Data from the end of VARIABLE_STORE_HEADER\r
176 structure.\r
177 @param DataSize Size of data to be written.\r
178 @param Buffer Pointer to the buffer from which data is written.\r
179\r
180 @retval EFI_INVALID_PARAMETER Parameters not valid.\r
181 @retval EFI_SUCCESS Variable store successfully updated.\r
182\r
183**/\r
184EFI_STATUS\r
185UpdateVariableStore (\r
186 IN VARIABLE_GLOBAL *Global,\r
187 IN BOOLEAN Volatile,\r
188 IN BOOLEAN SetByIndex,\r
189 IN EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb,\r
190 IN UINTN DataPtrIndex,\r
191 IN UINT32 DataSize,\r
192 IN UINT8 *Buffer\r
193 )\r
194{\r
195 EFI_FV_BLOCK_MAP_ENTRY *PtrBlockMapEntry;\r
196 UINTN BlockIndex2;\r
197 UINTN LinearOffset;\r
198 UINTN CurrWriteSize;\r
199 UINTN CurrWritePtr;\r
200 UINT8 *CurrBuffer;\r
201 EFI_LBA LbaNumber;\r
202 UINTN Size;\r
203 EFI_FIRMWARE_VOLUME_HEADER *FwVolHeader;\r
204 VARIABLE_STORE_HEADER *VolatileBase;\r
205 EFI_PHYSICAL_ADDRESS FvVolHdr;\r
206 EFI_PHYSICAL_ADDRESS DataPtr;\r
207 EFI_STATUS Status;\r
208\r
209 FwVolHeader = NULL;\r
210 DataPtr = DataPtrIndex;\r
211\r
212 //\r
213 // Check if the Data is Volatile.\r
214 //\r
215 if (!Volatile) {\r
648f98d1 216 if (Fvb == NULL) {\r
217 return EFI_INVALID_PARAMETER;\r
218 }\r
0c18794e 219 Status = Fvb->GetPhysicalAddress(Fvb, &FvVolHdr);\r
220 ASSERT_EFI_ERROR (Status);\r
221\r
222 FwVolHeader = (EFI_FIRMWARE_VOLUME_HEADER *) ((UINTN) FvVolHdr);\r
223 //\r
224 // Data Pointer should point to the actual Address where data is to be\r
225 // written.\r
226 //\r
227 if (SetByIndex) {\r
228 DataPtr += mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase;\r
229 }\r
230\r
231 if ((DataPtr + DataSize) >= ((EFI_PHYSICAL_ADDRESS) (UINTN) ((UINT8 *) FwVolHeader + FwVolHeader->FvLength))) {\r
232 return EFI_INVALID_PARAMETER;\r
233 }\r
234 } else {\r
235 //\r
236 // Data Pointer should point to the actual Address where data is to be\r
237 // written.\r
238 //\r
239 VolatileBase = (VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase);\r
240 if (SetByIndex) {\r
241 DataPtr += mVariableModuleGlobal->VariableGlobal.VolatileVariableBase;\r
242 }\r
243\r
244 if ((DataPtr + DataSize) >= ((UINTN) ((UINT8 *) VolatileBase + VolatileBase->Size))) {\r
245 return EFI_INVALID_PARAMETER;\r
246 }\r
2d3fb919 247\r
0c18794e 248 //\r
249 // If Volatile Variable just do a simple mem copy.\r
2d3fb919 250 //\r
0c18794e 251 CopyMem ((UINT8 *)(UINTN)DataPtr, Buffer, DataSize);\r
252 return EFI_SUCCESS;\r
253 }\r
2d3fb919 254\r
0c18794e 255 //\r
256 // If we are here we are dealing with Non-Volatile Variables.\r
257 //\r
258 LinearOffset = (UINTN) FwVolHeader;\r
259 CurrWritePtr = (UINTN) DataPtr;\r
260 CurrWriteSize = DataSize;\r
261 CurrBuffer = Buffer;\r
262 LbaNumber = 0;\r
263\r
264 if (CurrWritePtr < LinearOffset) {\r
265 return EFI_INVALID_PARAMETER;\r
266 }\r
267\r
268 for (PtrBlockMapEntry = FwVolHeader->BlockMap; PtrBlockMapEntry->NumBlocks != 0; PtrBlockMapEntry++) {\r
269 for (BlockIndex2 = 0; BlockIndex2 < PtrBlockMapEntry->NumBlocks; BlockIndex2++) {\r
270 //\r
271 // Check to see if the Variable Writes are spanning through multiple\r
272 // blocks.\r
273 //\r
274 if ((CurrWritePtr >= LinearOffset) && (CurrWritePtr < LinearOffset + PtrBlockMapEntry->Length)) {\r
275 if ((CurrWritePtr + CurrWriteSize) <= (LinearOffset + PtrBlockMapEntry->Length)) {\r
276 Status = Fvb->Write (\r
277 Fvb,\r
278 LbaNumber,\r
279 (UINTN) (CurrWritePtr - LinearOffset),\r
280 &CurrWriteSize,\r
281 CurrBuffer\r
282 );\r
283 return Status;\r
284 } else {\r
285 Size = (UINT32) (LinearOffset + PtrBlockMapEntry->Length - CurrWritePtr);\r
286 Status = Fvb->Write (\r
287 Fvb,\r
288 LbaNumber,\r
289 (UINTN) (CurrWritePtr - LinearOffset),\r
290 &Size,\r
291 CurrBuffer\r
292 );\r
293 if (EFI_ERROR (Status)) {\r
294 return Status;\r
295 }\r
296\r
297 CurrWritePtr = LinearOffset + PtrBlockMapEntry->Length;\r
298 CurrBuffer = CurrBuffer + Size;\r
299 CurrWriteSize = CurrWriteSize - Size;\r
300 }\r
301 }\r
302\r
303 LinearOffset += PtrBlockMapEntry->Length;\r
304 LbaNumber++;\r
305 }\r
306 }\r
307\r
308 return EFI_SUCCESS;\r
309}\r
310\r
311\r
312/**\r
313\r
314 This code gets the current status of Variable Store.\r
315\r
316 @param VarStoreHeader Pointer to the Variable Store Header.\r
317\r
318 @retval EfiRaw Variable store status is raw.\r
319 @retval EfiValid Variable store status is valid.\r
320 @retval EfiInvalid Variable store status is invalid.\r
321\r
322**/\r
323VARIABLE_STORE_STATUS\r
324GetVariableStoreStatus (\r
325 IN VARIABLE_STORE_HEADER *VarStoreHeader\r
326 )\r
327{\r
328 if (CompareGuid (&VarStoreHeader->Signature, &gEfiAuthenticatedVariableGuid) &&\r
329 VarStoreHeader->Format == VARIABLE_STORE_FORMATTED &&\r
330 VarStoreHeader->State == VARIABLE_STORE_HEALTHY\r
331 ) {\r
332\r
333 return EfiValid;\r
334 } else if (((UINT32 *)(&VarStoreHeader->Signature))[0] == 0xffffffff &&\r
335 ((UINT32 *)(&VarStoreHeader->Signature))[1] == 0xffffffff &&\r
336 ((UINT32 *)(&VarStoreHeader->Signature))[2] == 0xffffffff &&\r
337 ((UINT32 *)(&VarStoreHeader->Signature))[3] == 0xffffffff &&\r
338 VarStoreHeader->Size == 0xffffffff &&\r
339 VarStoreHeader->Format == 0xff &&\r
340 VarStoreHeader->State == 0xff\r
341 ) {\r
342\r
343 return EfiRaw;\r
344 } else {\r
345 return EfiInvalid;\r
346 }\r
347}\r
348\r
349\r
350/**\r
351\r
352 This code gets the size of name of variable.\r
353\r
354 @param Variable Pointer to the Variable Header.\r
355\r
356 @return UINTN Size of variable in bytes.\r
357\r
358**/\r
359UINTN\r
360NameSizeOfVariable (\r
361 IN VARIABLE_HEADER *Variable\r
362 )\r
363{\r
364 if (Variable->State == (UINT8) (-1) ||\r
365 Variable->DataSize == (UINT32) (-1) ||\r
366 Variable->NameSize == (UINT32) (-1) ||\r
367 Variable->Attributes == (UINT32) (-1)) {\r
368 return 0;\r
369 }\r
370 return (UINTN) Variable->NameSize;\r
371}\r
372\r
373/**\r
374\r
375 This code gets the size of variable data.\r
376\r
377 @param Variable Pointer to the Variable Header.\r
378\r
379 @return Size of variable in bytes.\r
380\r
381**/\r
382UINTN\r
383DataSizeOfVariable (\r
384 IN VARIABLE_HEADER *Variable\r
385 )\r
386{\r
387 if (Variable->State == (UINT8) (-1) ||\r
388 Variable->DataSize == (UINT32) (-1) ||\r
389 Variable->NameSize == (UINT32) (-1) ||\r
390 Variable->Attributes == (UINT32) (-1)) {\r
391 return 0;\r
392 }\r
393 return (UINTN) Variable->DataSize;\r
394}\r
395\r
396/**\r
397\r
398 This code gets the pointer to the variable name.\r
399\r
400 @param Variable Pointer to the Variable Header.\r
401\r
402 @return Pointer to Variable Name which is Unicode encoding.\r
403\r
404**/\r
405CHAR16 *\r
406GetVariableNamePtr (\r
407 IN VARIABLE_HEADER *Variable\r
408 )\r
409{\r
410\r
411 return (CHAR16 *) (Variable + 1);\r
412}\r
413\r
414/**\r
415\r
416 This code gets the pointer to the variable data.\r
417\r
418 @param Variable Pointer to the Variable Header.\r
419\r
420 @return Pointer to Variable Data.\r
421\r
422**/\r
423UINT8 *\r
424GetVariableDataPtr (\r
425 IN VARIABLE_HEADER *Variable\r
426 )\r
427{\r
428 UINTN Value;\r
2d3fb919 429\r
0c18794e 430 //\r
431 // Be careful about pad size for alignment.\r
432 //\r
433 Value = (UINTN) GetVariableNamePtr (Variable);\r
434 Value += NameSizeOfVariable (Variable);\r
435 Value += GET_PAD_SIZE (NameSizeOfVariable (Variable));\r
436\r
437 return (UINT8 *) Value;\r
438}\r
439\r
440\r
441/**\r
442\r
443 This code gets the pointer to the next variable header.\r
444\r
445 @param Variable Pointer to the Variable Header.\r
446\r
447 @return Pointer to next variable header.\r
448\r
449**/\r
450VARIABLE_HEADER *\r
451GetNextVariablePtr (\r
452 IN VARIABLE_HEADER *Variable\r
453 )\r
454{\r
455 UINTN Value;\r
456\r
457 if (!IsValidVariableHeader (Variable)) {\r
458 return NULL;\r
459 }\r
460\r
461 Value = (UINTN) GetVariableDataPtr (Variable);\r
462 Value += DataSizeOfVariable (Variable);\r
463 Value += GET_PAD_SIZE (DataSizeOfVariable (Variable));\r
464\r
465 //\r
466 // Be careful about pad size for alignment.\r
467 //\r
468 return (VARIABLE_HEADER *) HEADER_ALIGN (Value);\r
469}\r
470\r
471/**\r
472\r
473 Gets the pointer to the first variable header in given variable store area.\r
474\r
475 @param VarStoreHeader Pointer to the Variable Store Header.\r
476\r
477 @return Pointer to the first variable header.\r
478\r
479**/\r
480VARIABLE_HEADER *\r
481GetStartPointer (\r
482 IN VARIABLE_STORE_HEADER *VarStoreHeader\r
483 )\r
484{\r
485 //\r
486 // The end of variable store.\r
487 //\r
488 return (VARIABLE_HEADER *) HEADER_ALIGN (VarStoreHeader + 1);\r
489}\r
490\r
491/**\r
492\r
493 Gets the pointer to the end of the variable storage area.\r
494\r
495 This function gets pointer to the end of the variable storage\r
496 area, according to the input variable store header.\r
497\r
498 @param VarStoreHeader Pointer to the Variable Store Header.\r
499\r
2d3fb919 500 @return Pointer to the end of the variable storage area.\r
0c18794e 501\r
502**/\r
503VARIABLE_HEADER *\r
504GetEndPointer (\r
505 IN VARIABLE_STORE_HEADER *VarStoreHeader\r
506 )\r
507{\r
508 //\r
509 // The end of variable store\r
510 //\r
511 return (VARIABLE_HEADER *) HEADER_ALIGN ((UINTN) VarStoreHeader + VarStoreHeader->Size);\r
512}\r
513\r
83758cdc 514/**\r
515\r
516 Check the PubKeyIndex is a valid key or not.\r
517\r
518 This function will iterate the NV storage to see if this PubKeyIndex is still referenced \r
519 by any valid count-based auth variabe.\r
520 \r
521 @param[in] PubKeyIndex Index of the public key in public key store.\r
522\r
523 @retval TRUE The PubKeyIndex is still in use.\r
524 @retval FALSE The PubKeyIndex is not referenced by any count-based auth variabe.\r
525 \r
526**/\r
527BOOLEAN\r
528IsValidPubKeyIndex (\r
529 IN UINT32 PubKeyIndex\r
530 )\r
531{\r
532 VARIABLE_HEADER *Variable;\r
533\r
534 if (PubKeyIndex > mPubKeyNumber) {\r
535 return FALSE;\r
536 }\r
537 \r
538 Variable = GetStartPointer (mNvVariableCache);\r
539 \r
540 while (IsValidVariableHeader (Variable)) {\r
541 if ((Variable->State == VAR_ADDED || Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) && \r
542 Variable->PubKeyIndex == PubKeyIndex) {\r
543 return TRUE;\r
544 }\r
545 Variable = GetNextVariablePtr (Variable);\r
546 }\r
547 \r
548 return FALSE;\r
549}\r
0c18794e 550\r
551/**\r
552\r
83758cdc 553 Get the number of valid public key in PubKeyStore.\r
554 \r
555 @param[in] PubKeyNumber Number of the public key in public key store.\r
556\r
557 @return Number of valid public key in PubKeyStore.\r
558\r
559**/\r
560UINT32\r
561GetValidPubKeyNumber (\r
562 IN UINT32 PubKeyNumber\r
563 )\r
564{\r
565 UINT32 PubKeyIndex;\r
566 UINT32 Counter;\r
567\r
568 Counter = 0;\r
569 \r
570 for (PubKeyIndex = 1; PubKeyIndex <= PubKeyNumber; PubKeyIndex++) {\r
571 if (IsValidPubKeyIndex (PubKeyIndex)) {\r
572 Counter++;\r
573 }\r
574 }\r
575 \r
576 return Counter;\r
577}\r
578\r
579/**\r
580\r
581 Filter the useless key in public key store.\r
582\r
583 This function will find out all valid public keys in public key database, save them in new allocated \r
584 buffer NewPubKeyStore, and give the new PubKeyIndex. The caller is responsible for freeing buffer\r
585 NewPubKeyIndex and NewPubKeyStore with FreePool().\r
586\r
587 @param[in] PubKeyStore Point to the public key database.\r
588 @param[in] PubKeyNumber Number of the public key in PubKeyStore.\r
589 @param[out] NewPubKeyIndex Point to an array of new PubKeyIndex corresponds to NewPubKeyStore.\r
590 @param[out] NewPubKeyStore Saved all valid public keys in PubKeyStore.\r
591 @param[out] NewPubKeySize Buffer size of the NewPubKeyStore.\r
592 \r
593 @retval EFI_SUCCESS Trim operation is complete successfully.\r
594 @retval EFI_OUT_OF_RESOURCES No enough memory resources, or no useless key in PubKeyStore.\r
595 \r
596**/\r
597EFI_STATUS\r
598PubKeyStoreFilter (\r
599 IN UINT8 *PubKeyStore,\r
600 IN UINT32 PubKeyNumber,\r
601 OUT UINT32 **NewPubKeyIndex,\r
602 OUT UINT8 **NewPubKeyStore,\r
603 OUT UINT32 *NewPubKeySize\r
604 )\r
605{\r
606 UINT32 PubKeyIndex;\r
607 UINT32 CopiedKey;\r
608 UINT32 NewPubKeyNumber;\r
609 \r
610 NewPubKeyNumber = GetValidPubKeyNumber (PubKeyNumber);\r
611 if (NewPubKeyNumber == PubKeyNumber) {\r
612 return EFI_OUT_OF_RESOURCES;\r
613 }\r
614\r
615 if (NewPubKeyNumber != 0) {\r
616 *NewPubKeySize = NewPubKeyNumber * EFI_CERT_TYPE_RSA2048_SIZE;\r
617 } else {\r
618 *NewPubKeySize = sizeof (UINT8);\r
619 }\r
620\r
621 *NewPubKeyStore = AllocatePool (*NewPubKeySize);\r
622 if (*NewPubKeyStore == NULL) {\r
623 return EFI_OUT_OF_RESOURCES;\r
624 }\r
0c18794e 625\r
83758cdc 626 *NewPubKeyIndex = AllocateZeroPool ((PubKeyNumber + 1) * sizeof (UINT32));\r
627 if (*NewPubKeyIndex == NULL) {\r
628 FreePool (*NewPubKeyStore);\r
629 return EFI_OUT_OF_RESOURCES;\r
630 }\r
0c18794e 631\r
83758cdc 632 CopiedKey = 0;\r
633 for (PubKeyIndex = 1; PubKeyIndex <= PubKeyNumber; PubKeyIndex++) {\r
634 if (IsValidPubKeyIndex (PubKeyIndex)) {\r
635 CopyMem (\r
636 *NewPubKeyStore + CopiedKey * EFI_CERT_TYPE_RSA2048_SIZE,\r
637 PubKeyStore + (PubKeyIndex - 1) * EFI_CERT_TYPE_RSA2048_SIZE,\r
638 EFI_CERT_TYPE_RSA2048_SIZE\r
639 );\r
640 (*NewPubKeyIndex)[PubKeyIndex] = ++CopiedKey;\r
641 }\r
642 }\r
643 return EFI_SUCCESS;\r
644}\r
645\r
646/**\r
647\r
648 Variable store garbage collection and reclaim operation.\r
649\r
650 If ReclaimPubKeyStore is FALSE, reclaim variable space by deleting the obsoleted varaibles.\r
651 If ReclaimPubKeyStore is TRUE, reclaim invalid key in public key database and update the PubKeyIndex\r
652 for all the count-based authenticate variable in NV storage.\r
653\r
ca5a7d87 654 @param[in] VariableBase Base address of variable store.\r
655 @param[out] LastVariableOffset Offset of last variable.\r
656 @param[in] IsVolatile The variable store is volatile or not;\r
657 if it is non-volatile, need FTW.\r
658 @param[in, out] UpdatingPtrTrack Pointer to updating variable pointer track structure.\r
659 @param[in] ReclaimPubKeyStore Reclaim for public key database or not.\r
660 @param[in] ReclaimAnyway If TRUE, do reclaim anyway.\r
83758cdc 661 \r
83758cdc 662 @return EFI_SUCCESS Reclaim operation has finished successfully.\r
ca5a7d87 663 @return EFI_OUT_OF_RESOURCES No enough memory resources.\r
664 @return EFI_DEVICE_ERROR The public key database doesn't exist.\r
83758cdc 665 @return Others Unexpect error happened during reclaim operation.\r
0c18794e 666\r
667**/\r
668EFI_STATUS\r
669Reclaim (\r
ca5a7d87 670 IN EFI_PHYSICAL_ADDRESS VariableBase,\r
671 OUT UINTN *LastVariableOffset,\r
672 IN BOOLEAN IsVolatile,\r
673 IN OUT VARIABLE_POINTER_TRACK *UpdatingPtrTrack,\r
674 IN BOOLEAN ReclaimPubKeyStore,\r
675 IN BOOLEAN ReclaimAnyway\r
0c18794e 676 )\r
677{\r
678 VARIABLE_HEADER *Variable;\r
679 VARIABLE_HEADER *AddedVariable;\r
680 VARIABLE_HEADER *NextVariable;\r
681 VARIABLE_HEADER *NextAddedVariable;\r
682 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
683 UINT8 *ValidBuffer;\r
684 UINTN MaximumBufferSize;\r
685 UINTN VariableSize;\r
686 UINTN VariableNameSize;\r
687 UINTN UpdatingVariableNameSize;\r
688 UINTN NameSize;\r
689 UINT8 *CurrPtr;\r
690 VOID *Point0;\r
691 VOID *Point1;\r
692 BOOLEAN FoundAdded;\r
693 EFI_STATUS Status;\r
694 CHAR16 *VariableNamePtr;\r
695 CHAR16 *UpdatingVariableNamePtr;\r
8f3a9e58
SZ
696 UINTN CommonVariableTotalSize;\r
697 UINTN HwErrVariableTotalSize;\r
83758cdc 698 UINT32 *NewPubKeyIndex;\r
699 UINT8 *NewPubKeyStore;\r
700 UINT32 NewPubKeySize;\r
701 VARIABLE_HEADER *PubKeyHeader;\r
335e2681 702 BOOLEAN NeedDoReclaim;\r
23b06935
SZ
703 VARIABLE_HEADER *UpdatingVariable;\r
704\r
705 UpdatingVariable = NULL;\r
706 if (UpdatingPtrTrack != NULL) {\r
707 UpdatingVariable = UpdatingPtrTrack->CurrPtr;\r
708 }\r
0c18794e 709\r
335e2681 710 NeedDoReclaim = FALSE;\r
0c18794e 711 VariableStoreHeader = (VARIABLE_STORE_HEADER *) ((UINTN) VariableBase);\r
8f3a9e58
SZ
712\r
713 CommonVariableTotalSize = 0;\r
714 HwErrVariableTotalSize = 0;\r
83758cdc 715 NewPubKeyIndex = NULL;\r
716 NewPubKeyStore = NULL;\r
717 NewPubKeySize = 0;\r
718 PubKeyHeader = NULL;\r
719 \r
0c18794e 720 //\r
721 // Start Pointers for the variable.\r
722 //\r
723 Variable = GetStartPointer (VariableStoreHeader);\r
724 MaximumBufferSize = sizeof (VARIABLE_STORE_HEADER);\r
725\r
726 while (IsValidVariableHeader (Variable)) {\r
727 NextVariable = GetNextVariablePtr (Variable);\r
2d3fb919 728 if (Variable->State == VAR_ADDED ||\r
0c18794e 729 Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)\r
730 ) {\r
731 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
732 MaximumBufferSize += VariableSize;\r
335e2681
SZ
733 } else {\r
734 NeedDoReclaim = TRUE;\r
0c18794e 735 }\r
736\r
737 Variable = NextVariable;\r
738 }\r
739\r
335e2681
SZ
740 if (!ReclaimAnyway && !NeedDoReclaim) {\r
741 DEBUG ((EFI_D_INFO, "Variable driver: no DELETED variable found, so no variable space could be reclaimed.\n"));\r
742 return EFI_SUCCESS;\r
743 }\r
744\r
0c18794e 745 //\r
2d3fb919 746 // Reserve the 1 Bytes with Oxff to identify the\r
747 // end of the variable buffer.\r
748 //\r
0c18794e 749 MaximumBufferSize += 1;\r
750 ValidBuffer = AllocatePool (MaximumBufferSize);\r
751 if (ValidBuffer == NULL) {\r
752 return EFI_OUT_OF_RESOURCES;\r
753 }\r
754\r
755 SetMem (ValidBuffer, MaximumBufferSize, 0xff);\r
756\r
757 //\r
758 // Copy variable store header.\r
759 //\r
760 CopyMem (ValidBuffer, VariableStoreHeader, sizeof (VARIABLE_STORE_HEADER));\r
761 CurrPtr = (UINT8 *) GetStartPointer ((VARIABLE_STORE_HEADER *) ValidBuffer);\r
762\r
83758cdc 763 if (ReclaimPubKeyStore) {\r
764 //\r
765 // Trim the PubKeyStore and get new PubKeyIndex.\r
766 //\r
767 Status = PubKeyStoreFilter (\r
768 mPubKeyStore,\r
769 mPubKeyNumber,\r
770 &NewPubKeyIndex,\r
771 &NewPubKeyStore,\r
772 &NewPubKeySize\r
773 );\r
774 if (EFI_ERROR (Status)) {\r
775 FreePool (ValidBuffer);\r
776 return Status;\r
777 }\r
0c18794e 778\r
83758cdc 779 //\r
780 // Refresh the PubKeyIndex for all valid variables (ADDED and IN_DELETED_TRANSITION).\r
781 //\r
782 Variable = GetStartPointer (mNvVariableCache);\r
783 while (IsValidVariableHeader (Variable)) {\r
784 NextVariable = GetNextVariablePtr (Variable);\r
785 if (Variable->State == VAR_ADDED || Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
786 if ((StrCmp (GetVariableNamePtr (Variable), AUTHVAR_KEYDB_NAME) == 0) && \r
787 (CompareGuid (&Variable->VendorGuid, &gEfiAuthenticatedVariableGuid))) {\r
788 //\r
789 // Skip the public key database, it will be reinstalled later.\r
790 //\r
791 PubKeyHeader = Variable;\r
0c18794e 792 Variable = NextVariable;\r
793 continue;\r
794 }\r
83758cdc 795 \r
796 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
797 CopyMem (CurrPtr, (UINT8 *) Variable, VariableSize);\r
798 ((VARIABLE_HEADER*) CurrPtr)->PubKeyIndex = NewPubKeyIndex[Variable->PubKeyIndex];\r
799 CurrPtr += VariableSize;\r
800 if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
801 HwErrVariableTotalSize += VariableSize;\r
802 } else if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
803 CommonVariableTotalSize += VariableSize;\r
804 }\r
0c18794e 805 }\r
83758cdc 806 Variable = NextVariable;\r
0c18794e 807 }\r
0c18794e 808\r
83758cdc 809 //\r
810 // Reinstall the new public key database.\r
811 //\r
12cbe232 812 ASSERT (PubKeyHeader != NULL);\r
ca5a7d87 813 if (PubKeyHeader == NULL) {\r
814 FreePool (ValidBuffer);\r
815 FreePool (NewPubKeyIndex);\r
816 FreePool (NewPubKeyStore);\r
817 return EFI_DEVICE_ERROR;\r
818 }\r
83758cdc 819 CopyMem (CurrPtr, (UINT8*) PubKeyHeader, sizeof (VARIABLE_HEADER));\r
820 Variable = (VARIABLE_HEADER*) CurrPtr;\r
821 Variable->DataSize = NewPubKeySize;\r
822 StrCpy (GetVariableNamePtr (Variable), GetVariableNamePtr (PubKeyHeader));\r
823 CopyMem (GetVariableDataPtr (Variable), NewPubKeyStore, NewPubKeySize);\r
824 CurrPtr = (UINT8*) GetNextVariablePtr (Variable); \r
825 CommonVariableTotalSize += (UINTN) CurrPtr - (UINTN) Variable;\r
826 } else {\r
827 //\r
828 // Reinstall all ADDED variables as long as they are not identical to Updating Variable.\r
829 //\r
830 Variable = GetStartPointer (VariableStoreHeader);\r
831 while (IsValidVariableHeader (Variable)) {\r
832 NextVariable = GetNextVariablePtr (Variable);\r
833 if (Variable->State == VAR_ADDED) {\r
834 if (UpdatingVariable != NULL) {\r
835 if (UpdatingVariable == Variable) {\r
836 Variable = NextVariable;\r
837 continue;\r
838 }\r
0c18794e 839\r
83758cdc 840 VariableNameSize = NameSizeOfVariable(Variable);\r
841 UpdatingVariableNameSize = NameSizeOfVariable(UpdatingVariable);\r
2d3fb919 842\r
83758cdc 843 VariableNamePtr = GetVariableNamePtr (Variable);\r
844 UpdatingVariableNamePtr = GetVariableNamePtr (UpdatingVariable);\r
845 if (CompareGuid (&Variable->VendorGuid, &UpdatingVariable->VendorGuid) &&\r
846 VariableNameSize == UpdatingVariableNameSize &&\r
847 CompareMem (VariableNamePtr, UpdatingVariableNamePtr, VariableNameSize) == 0 ) {\r
848 Variable = NextVariable;\r
849 continue;\r
0c18794e 850 }\r
851 }\r
0c18794e 852 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
853 CopyMem (CurrPtr, (UINT8 *) Variable, VariableSize);\r
0c18794e 854 CurrPtr += VariableSize;\r
855 if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
8f3a9e58 856 HwErrVariableTotalSize += VariableSize;\r
0c18794e 857 } else if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
8f3a9e58 858 CommonVariableTotalSize += VariableSize;\r
0c18794e 859 }\r
860 }\r
83758cdc 861 Variable = NextVariable;\r
0c18794e 862 }\r
863\r
83758cdc 864 //\r
865 // Reinstall the variable being updated if it is not NULL.\r
866 //\r
867 if (UpdatingVariable != NULL) {\r
868 VariableSize = (UINTN)(GetNextVariablePtr (UpdatingVariable)) - (UINTN)UpdatingVariable;\r
869 CopyMem (CurrPtr, (UINT8 *) UpdatingVariable, VariableSize);\r
23b06935
SZ
870 UpdatingPtrTrack->CurrPtr = (VARIABLE_HEADER *)((UINTN)UpdatingPtrTrack->StartPtr + ((UINTN)CurrPtr - (UINTN)GetStartPointer ((VARIABLE_STORE_HEADER *) ValidBuffer)));\r
871 UpdatingPtrTrack->InDeletedTransitionPtr = NULL;\r
83758cdc 872 CurrPtr += VariableSize;\r
873 if ((!IsVolatile) && ((UpdatingVariable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
874 HwErrVariableTotalSize += VariableSize;\r
875 } else if ((!IsVolatile) && ((UpdatingVariable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
876 CommonVariableTotalSize += VariableSize;\r
877 }\r
878 }\r
879\r
880 //\r
881 // Reinstall all in delete transition variables.\r
882 //\r
883 Variable = GetStartPointer (VariableStoreHeader);\r
884 while (IsValidVariableHeader (Variable)) {\r
885 NextVariable = GetNextVariablePtr (Variable);\r
886 if (Variable != UpdatingVariable && Variable->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
887\r
888 //\r
889 // Buffer has cached all ADDED variable.\r
890 // Per IN_DELETED variable, we have to guarantee that\r
891 // no ADDED one in previous buffer.\r
892 //\r
893\r
894 FoundAdded = FALSE;\r
895 AddedVariable = GetStartPointer ((VARIABLE_STORE_HEADER *) ValidBuffer);\r
896 while (IsValidVariableHeader (AddedVariable)) {\r
897 NextAddedVariable = GetNextVariablePtr (AddedVariable);\r
898 NameSize = NameSizeOfVariable (AddedVariable);\r
899 if (CompareGuid (&AddedVariable->VendorGuid, &Variable->VendorGuid) &&\r
900 NameSize == NameSizeOfVariable (Variable)\r
901 ) {\r
902 Point0 = (VOID *) GetVariableNamePtr (AddedVariable);\r
903 Point1 = (VOID *) GetVariableNamePtr (Variable);\r
23b06935 904 if (CompareMem (Point0, Point1, NameSize) == 0) {\r
83758cdc 905 FoundAdded = TRUE;\r
906 break;\r
907 }\r
908 }\r
909 AddedVariable = NextAddedVariable;\r
910 }\r
911 if (!FoundAdded) {\r
912 //\r
913 // Promote VAR_IN_DELETED_TRANSITION to VAR_ADDED.\r
914 //\r
915 VariableSize = (UINTN) NextVariable - (UINTN) Variable;\r
916 CopyMem (CurrPtr, (UINT8 *) Variable, VariableSize);\r
917 ((VARIABLE_HEADER *) CurrPtr)->State = VAR_ADDED;\r
918 CurrPtr += VariableSize;\r
919 if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
920 HwErrVariableTotalSize += VariableSize;\r
921 } else if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
922 CommonVariableTotalSize += VariableSize;\r
923 }\r
924 }\r
925 }\r
926\r
927 Variable = NextVariable;\r
928 }\r
0c18794e 929 }\r
930\r
931 if (IsVolatile) {\r
932 //\r
933 // If volatile variable store, just copy valid buffer.\r
934 //\r
935 SetMem ((UINT8 *) (UINTN) VariableBase, VariableStoreHeader->Size, 0xff);\r
936 CopyMem ((UINT8 *) (UINTN) VariableBase, ValidBuffer, (UINTN) (CurrPtr - (UINT8 *) ValidBuffer));\r
937 Status = EFI_SUCCESS;\r
938 } else {\r
939 //\r
940 // If non-volatile variable store, perform FTW here.\r
941 //\r
942 Status = FtwVariableSpace (\r
943 VariableBase,\r
944 ValidBuffer,\r
945 (UINTN) (CurrPtr - (UINT8 *) ValidBuffer)\r
946 );\r
947 CopyMem (mNvVariableCache, (CHAR8 *)(UINTN)VariableBase, VariableStoreHeader->Size);\r
948 }\r
949 if (!EFI_ERROR (Status)) {\r
950 *LastVariableOffset = (UINTN) (CurrPtr - (UINT8 *) ValidBuffer);\r
8f3a9e58
SZ
951 if (!IsVolatile) {\r
952 mVariableModuleGlobal->HwErrVariableTotalSize = HwErrVariableTotalSize;\r
953 mVariableModuleGlobal->CommonVariableTotalSize = CommonVariableTotalSize;\r
954 }\r
0c18794e 955 } else {\r
8f3a9e58
SZ
956 NextVariable = GetStartPointer ((VARIABLE_STORE_HEADER *)(UINTN)VariableBase);\r
957 while (IsValidVariableHeader (NextVariable)) {\r
958 VariableSize = NextVariable->NameSize + NextVariable->DataSize + sizeof (VARIABLE_HEADER);\r
959 if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
960 mVariableModuleGlobal->HwErrVariableTotalSize += HEADER_ALIGN (VariableSize);\r
961 } else if ((!IsVolatile) && ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
962 mVariableModuleGlobal->CommonVariableTotalSize += HEADER_ALIGN (VariableSize);\r
963 }\r
964\r
965 NextVariable = GetNextVariablePtr (NextVariable);\r
966 }\r
967 *LastVariableOffset = (UINTN) NextVariable - (UINTN) VariableBase;\r
0c18794e 968 }\r
969\r
83758cdc 970 if (NewPubKeyStore != NULL) {\r
971 FreePool (NewPubKeyStore);\r
972 }\r
973\r
974 if (NewPubKeyIndex != NULL) {\r
975 FreePool (NewPubKeyIndex);\r
976 }\r
977 \r
0c18794e 978 FreePool (ValidBuffer);\r
979\r
980 return Status;\r
981}\r
982\r
9a000b46
RN
983/**\r
984 Find the variable in the specified variable store.\r
985\r
ecc722ad 986 @param[in] VariableName Name of the variable to be found\r
987 @param[in] VendorGuid Vendor GUID to be found.\r
9622df63
SZ
988 @param[in] IgnoreRtCheck Ignore EFI_VARIABLE_RUNTIME_ACCESS attribute\r
989 check at runtime when searching variable.\r
ecc722ad 990 @param[in, out] PtrTrack Variable Track Pointer structure that contains Variable Information.\r
9a000b46 991\r
ecc722ad 992 @retval EFI_SUCCESS Variable found successfully\r
993 @retval EFI_NOT_FOUND Variable not found\r
9a000b46
RN
994**/\r
995EFI_STATUS\r
996FindVariableEx (\r
997 IN CHAR16 *VariableName,\r
998 IN EFI_GUID *VendorGuid,\r
9622df63 999 IN BOOLEAN IgnoreRtCheck,\r
9a000b46
RN
1000 IN OUT VARIABLE_POINTER_TRACK *PtrTrack\r
1001 )\r
1002{\r
1003 VARIABLE_HEADER *InDeletedVariable;\r
1004 VOID *Point;\r
1005\r
23b06935
SZ
1006 PtrTrack->InDeletedTransitionPtr = NULL;\r
1007\r
9a000b46
RN
1008 //\r
1009 // Find the variable by walk through HOB, volatile and non-volatile variable store.\r
1010 //\r
1011 InDeletedVariable = NULL;\r
1012\r
1013 for ( PtrTrack->CurrPtr = PtrTrack->StartPtr\r
1014 ; (PtrTrack->CurrPtr < PtrTrack->EndPtr) && IsValidVariableHeader (PtrTrack->CurrPtr)\r
1015 ; PtrTrack->CurrPtr = GetNextVariablePtr (PtrTrack->CurrPtr)\r
1016 ) {\r
2d3fb919 1017 if (PtrTrack->CurrPtr->State == VAR_ADDED ||\r
9a000b46
RN
1018 PtrTrack->CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)\r
1019 ) {\r
9622df63 1020 if (IgnoreRtCheck || !AtRuntime () || ((PtrTrack->CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) != 0)) {\r
9a000b46
RN
1021 if (VariableName[0] == 0) {\r
1022 if (PtrTrack->CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
1023 InDeletedVariable = PtrTrack->CurrPtr;\r
1024 } else {\r
23b06935 1025 PtrTrack->InDeletedTransitionPtr = InDeletedVariable;\r
9a000b46
RN
1026 return EFI_SUCCESS;\r
1027 }\r
1028 } else {\r
1029 if (CompareGuid (VendorGuid, &PtrTrack->CurrPtr->VendorGuid)) {\r
1030 Point = (VOID *) GetVariableNamePtr (PtrTrack->CurrPtr);\r
1031\r
1032 ASSERT (NameSizeOfVariable (PtrTrack->CurrPtr) != 0);\r
1033 if (CompareMem (VariableName, Point, NameSizeOfVariable (PtrTrack->CurrPtr)) == 0) {\r
1034 if (PtrTrack->CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
1035 InDeletedVariable = PtrTrack->CurrPtr;\r
1036 } else {\r
23b06935 1037 PtrTrack->InDeletedTransitionPtr = InDeletedVariable;\r
9a000b46
RN
1038 return EFI_SUCCESS;\r
1039 }\r
1040 }\r
1041 }\r
1042 }\r
1043 }\r
1044 }\r
1045 }\r
1046\r
1047 PtrTrack->CurrPtr = InDeletedVariable;\r
1048 return (PtrTrack->CurrPtr == NULL) ? EFI_NOT_FOUND : EFI_SUCCESS;\r
1049}\r
1050\r
0c18794e 1051\r
1052/**\r
1053 Finds variable in storage blocks of volatile and non-volatile storage areas.\r
1054\r
1055 This code finds variable in storage blocks of volatile and non-volatile storage areas.\r
1056 If VariableName is an empty string, then we just return the first\r
1057 qualified variable without comparing VariableName and VendorGuid.\r
9622df63
SZ
1058 If IgnoreRtCheck is TRUE, then we ignore the EFI_VARIABLE_RUNTIME_ACCESS attribute check\r
1059 at runtime when searching existing variable, only VariableName and VendorGuid are compared.\r
1060 Otherwise, variables without EFI_VARIABLE_RUNTIME_ACCESS are not visible at runtime.\r
0c18794e 1061\r
ecc722ad 1062 @param[in] VariableName Name of the variable to be found.\r
1063 @param[in] VendorGuid Vendor GUID to be found.\r
1064 @param[out] PtrTrack VARIABLE_POINTER_TRACK structure for output,\r
0c18794e 1065 including the range searched and the target position.\r
ecc722ad 1066 @param[in] Global Pointer to VARIABLE_GLOBAL structure, including\r
0c18794e 1067 base of volatile variable storage area, base of\r
1068 NV variable storage area, and a lock.\r
9622df63
SZ
1069 @param[in] IgnoreRtCheck Ignore EFI_VARIABLE_RUNTIME_ACCESS attribute\r
1070 check at runtime when searching variable.\r
0c18794e 1071\r
1072 @retval EFI_INVALID_PARAMETER If VariableName is not an empty string, while\r
1073 VendorGuid is NULL.\r
1074 @retval EFI_SUCCESS Variable successfully found.\r
1075 @retval EFI_NOT_FOUND Variable not found\r
1076\r
1077**/\r
1078EFI_STATUS\r
1079FindVariable (\r
1080 IN CHAR16 *VariableName,\r
1081 IN EFI_GUID *VendorGuid,\r
1082 OUT VARIABLE_POINTER_TRACK *PtrTrack,\r
ecc722ad 1083 IN VARIABLE_GLOBAL *Global,\r
9622df63 1084 IN BOOLEAN IgnoreRtCheck\r
0c18794e 1085 )\r
1086{\r
9a000b46
RN
1087 EFI_STATUS Status;\r
1088 VARIABLE_STORE_HEADER *VariableStoreHeader[VariableStoreTypeMax];\r
1089 VARIABLE_STORE_TYPE Type;\r
1090\r
1091 if (VariableName[0] != 0 && VendorGuid == NULL) {\r
1092 return EFI_INVALID_PARAMETER;\r
1093 }\r
0c18794e 1094\r
1095 //\r
9a000b46 1096 // 0: Volatile, 1: HOB, 2: Non-Volatile.\r
0c18794e 1097 // The index and attributes mapping must be kept in this order as RuntimeServiceGetNextVariableName\r
1098 // make use of this mapping to implement search algorithm.\r
1099 //\r
9a000b46
RN
1100 VariableStoreHeader[VariableStoreTypeVolatile] = (VARIABLE_STORE_HEADER *) (UINTN) Global->VolatileVariableBase;\r
1101 VariableStoreHeader[VariableStoreTypeHob] = (VARIABLE_STORE_HEADER *) (UINTN) Global->HobVariableBase;\r
1102 VariableStoreHeader[VariableStoreTypeNv] = mNvVariableCache;\r
0c18794e 1103\r
1104 //\r
9a000b46 1105 // Find the variable by walk through HOB, volatile and non-volatile variable store.\r
0c18794e 1106 //\r
9a000b46
RN
1107 for (Type = (VARIABLE_STORE_TYPE) 0; Type < VariableStoreTypeMax; Type++) {\r
1108 if (VariableStoreHeader[Type] == NULL) {\r
1109 continue;\r
1110 }\r
0c18794e 1111\r
9a000b46
RN
1112 PtrTrack->StartPtr = GetStartPointer (VariableStoreHeader[Type]);\r
1113 PtrTrack->EndPtr = GetEndPointer (VariableStoreHeader[Type]);\r
1114 PtrTrack->Volatile = (BOOLEAN) (Type == VariableStoreTypeVolatile);\r
0c18794e 1115\r
9622df63 1116 Status = FindVariableEx (VariableName, VendorGuid, IgnoreRtCheck, PtrTrack);\r
9a000b46
RN
1117 if (!EFI_ERROR (Status)) {\r
1118 return Status;\r
0c18794e 1119 }\r
1120 }\r
0c18794e 1121 return EFI_NOT_FOUND;\r
1122}\r
1123\r
1124/**\r
1125 Get index from supported language codes according to language string.\r
1126\r
1127 This code is used to get corresponding index in supported language codes. It can handle\r
1128 RFC4646 and ISO639 language tags.\r
1129 In ISO639 language tags, take 3-characters as a delimitation to find matched string and calculate the index.\r
1130 In RFC4646 language tags, take semicolon as a delimitation to find matched string and calculate the index.\r
1131\r
1132 For example:\r
1133 SupportedLang = "engfraengfra"\r
1134 Lang = "eng"\r
1135 Iso639Language = TRUE\r
1136 The return value is "0".\r
1137 Another example:\r
1138 SupportedLang = "en;fr;en-US;fr-FR"\r
1139 Lang = "fr-FR"\r
1140 Iso639Language = FALSE\r
1141 The return value is "3".\r
1142\r
1143 @param SupportedLang Platform supported language codes.\r
1144 @param Lang Configured language.\r
1145 @param Iso639Language A bool value to signify if the handler is operated on ISO639 or RFC4646.\r
1146\r
1147 @retval The index of language in the language codes.\r
1148\r
1149**/\r
1150UINTN\r
1151GetIndexFromSupportedLangCodes(\r
1152 IN CHAR8 *SupportedLang,\r
1153 IN CHAR8 *Lang,\r
1154 IN BOOLEAN Iso639Language\r
2d3fb919 1155 )\r
0c18794e 1156{\r
1157 UINTN Index;\r
1158 UINTN CompareLength;\r
1159 UINTN LanguageLength;\r
1160\r
1161 if (Iso639Language) {\r
1162 CompareLength = ISO_639_2_ENTRY_SIZE;\r
1163 for (Index = 0; Index < AsciiStrLen (SupportedLang); Index += CompareLength) {\r
1164 if (AsciiStrnCmp (Lang, SupportedLang + Index, CompareLength) == 0) {\r
1165 //\r
1166 // Successfully find the index of Lang string in SupportedLang string.\r
1167 //\r
1168 Index = Index / CompareLength;\r
1169 return Index;\r
1170 }\r
1171 }\r
1172 ASSERT (FALSE);\r
1173 return 0;\r
1174 } else {\r
1175 //\r
1176 // Compare RFC4646 language code\r
1177 //\r
1178 Index = 0;\r
1179 for (LanguageLength = 0; Lang[LanguageLength] != '\0'; LanguageLength++);\r
1180\r
1181 for (Index = 0; *SupportedLang != '\0'; Index++, SupportedLang += CompareLength) {\r
1182 //\r
1183 // Skip ';' characters in SupportedLang\r
1184 //\r
1185 for (; *SupportedLang != '\0' && *SupportedLang == ';'; SupportedLang++);\r
1186 //\r
1187 // Determine the length of the next language code in SupportedLang\r
1188 //\r
1189 for (CompareLength = 0; SupportedLang[CompareLength] != '\0' && SupportedLang[CompareLength] != ';'; CompareLength++);\r
2d3fb919 1190\r
1191 if ((CompareLength == LanguageLength) &&\r
0c18794e 1192 (AsciiStrnCmp (Lang, SupportedLang, CompareLength) == 0)) {\r
1193 //\r
1194 // Successfully find the index of Lang string in SupportedLang string.\r
1195 //\r
1196 return Index;\r
1197 }\r
1198 }\r
1199 ASSERT (FALSE);\r
1200 return 0;\r
1201 }\r
1202}\r
1203\r
1204/**\r
1205 Get language string from supported language codes according to index.\r
1206\r
1207 This code is used to get corresponding language strings in supported language codes. It can handle\r
1208 RFC4646 and ISO639 language tags.\r
1209 In ISO639 language tags, take 3-characters as a delimitation. Find language string according to the index.\r
1210 In RFC4646 language tags, take semicolon as a delimitation. Find language string according to the index.\r
1211\r
1212 For example:\r
1213 SupportedLang = "engfraengfra"\r
1214 Index = "1"\r
1215 Iso639Language = TRUE\r
1216 The return value is "fra".\r
1217 Another example:\r
1218 SupportedLang = "en;fr;en-US;fr-FR"\r
1219 Index = "1"\r
1220 Iso639Language = FALSE\r
1221 The return value is "fr".\r
1222\r
1223 @param SupportedLang Platform supported language codes.\r
1224 @param Index The index in supported language codes.\r
1225 @param Iso639Language A bool value to signify if the handler is operated on ISO639 or RFC4646.\r
1226\r
1227 @retval The language string in the language codes.\r
1228\r
1229**/\r
1230CHAR8 *\r
1231GetLangFromSupportedLangCodes (\r
1232 IN CHAR8 *SupportedLang,\r
1233 IN UINTN Index,\r
1234 IN BOOLEAN Iso639Language\r
1235)\r
1236{\r
1237 UINTN SubIndex;\r
1238 UINTN CompareLength;\r
1239 CHAR8 *Supported;\r
1240\r
1241 SubIndex = 0;\r
1242 Supported = SupportedLang;\r
1243 if (Iso639Language) {\r
1244 //\r
1245 // According to the index of Lang string in SupportedLang string to get the language.\r
1246 // This code will be invoked in RUNTIME, therefore there is not a memory allocate/free operation.\r
1247 // In driver entry, it pre-allocates a runtime attribute memory to accommodate this string.\r
1248 //\r
1249 CompareLength = ISO_639_2_ENTRY_SIZE;\r
1250 mVariableModuleGlobal->Lang[CompareLength] = '\0';\r
1251 return CopyMem (mVariableModuleGlobal->Lang, SupportedLang + Index * CompareLength, CompareLength);\r
2d3fb919 1252\r
0c18794e 1253 } else {\r
1254 while (TRUE) {\r
1255 //\r
1256 // Take semicolon as delimitation, sequentially traverse supported language codes.\r
1257 //\r
1258 for (CompareLength = 0; *Supported != ';' && *Supported != '\0'; CompareLength++) {\r
1259 Supported++;\r
1260 }\r
1261 if ((*Supported == '\0') && (SubIndex != Index)) {\r
1262 //\r
1263 // Have completed the traverse, but not find corrsponding string.\r
1264 // This case is not allowed to happen.\r
1265 //\r
1266 ASSERT(FALSE);\r
1267 return NULL;\r
1268 }\r
1269 if (SubIndex == Index) {\r
1270 //\r
1271 // According to the index of Lang string in SupportedLang string to get the language.\r
1272 // As this code will be invoked in RUNTIME, therefore there is not memory allocate/free operation.\r
1273 // In driver entry, it pre-allocates a runtime attribute memory to accommodate this string.\r
1274 //\r
1275 mVariableModuleGlobal->PlatformLang[CompareLength] = '\0';\r
1276 return CopyMem (mVariableModuleGlobal->PlatformLang, Supported - CompareLength, CompareLength);\r
1277 }\r
1278 SubIndex++;\r
1279\r
1280 //\r
1281 // Skip ';' characters in Supported\r
1282 //\r
1283 for (; *Supported != '\0' && *Supported == ';'; Supported++);\r
1284 }\r
1285 }\r
1286}\r
1287\r
1288/**\r
2d3fb919 1289 Returns a pointer to an allocated buffer that contains the best matching language\r
1290 from a set of supported languages.\r
1291\r
1292 This function supports both ISO 639-2 and RFC 4646 language codes, but language\r
0c18794e 1293 code types may not be mixed in a single call to this function. This function\r
1294 supports a variable argument list that allows the caller to pass in a prioritized\r
1295 list of language codes to test against all the language codes in SupportedLanguages.\r
1296\r
1297 If SupportedLanguages is NULL, then ASSERT().\r
1298\r
1299 @param[in] SupportedLanguages A pointer to a Null-terminated ASCII string that\r
2d3fb919 1300 contains a set of language codes in the format\r
0c18794e 1301 specified by Iso639Language.\r
1302 @param[in] Iso639Language If TRUE, then all language codes are assumed to be\r
1303 in ISO 639-2 format. If FALSE, then all language\r
1304 codes are assumed to be in RFC 4646 language format\r
2d3fb919 1305 @param[in] ... A variable argument list that contains pointers to\r
0c18794e 1306 Null-terminated ASCII strings that contain one or more\r
1307 language codes in the format specified by Iso639Language.\r
1308 The first language code from each of these language\r
1309 code lists is used to determine if it is an exact or\r
2d3fb919 1310 close match to any of the language codes in\r
0c18794e 1311 SupportedLanguages. Close matches only apply to RFC 4646\r
1312 language codes, and the matching algorithm from RFC 4647\r
2d3fb919 1313 is used to determine if a close match is present. If\r
0c18794e 1314 an exact or close match is found, then the matching\r
1315 language code from SupportedLanguages is returned. If\r
1316 no matches are found, then the next variable argument\r
2d3fb919 1317 parameter is evaluated. The variable argument list\r
0c18794e 1318 is terminated by a NULL.\r
1319\r
1320 @retval NULL The best matching language could not be found in SupportedLanguages.\r
2d3fb919 1321 @retval NULL There are not enough resources available to return the best matching\r
0c18794e 1322 language.\r
2d3fb919 1323 @retval Other A pointer to a Null-terminated ASCII string that is the best matching\r
0c18794e 1324 language in SupportedLanguages.\r
1325\r
1326**/\r
1327CHAR8 *\r
1328EFIAPI\r
1329VariableGetBestLanguage (\r
2d3fb919 1330 IN CONST CHAR8 *SupportedLanguages,\r
0c18794e 1331 IN BOOLEAN Iso639Language,\r
1332 ...\r
1333 )\r
1334{\r
1335 VA_LIST Args;\r
1336 CHAR8 *Language;\r
1337 UINTN CompareLength;\r
1338 UINTN LanguageLength;\r
1339 CONST CHAR8 *Supported;\r
1340 CHAR8 *Buffer;\r
1341\r
648f98d1 1342 if (SupportedLanguages == NULL) {\r
1343 return NULL;\r
1344 }\r
0c18794e 1345\r
1346 VA_START (Args, Iso639Language);\r
1347 while ((Language = VA_ARG (Args, CHAR8 *)) != NULL) {\r
1348 //\r
1349 // Default to ISO 639-2 mode\r
1350 //\r
1351 CompareLength = 3;\r
1352 LanguageLength = MIN (3, AsciiStrLen (Language));\r
1353\r
1354 //\r
1355 // If in RFC 4646 mode, then determine the length of the first RFC 4646 language code in Language\r
1356 //\r
1357 if (!Iso639Language) {\r
1358 for (LanguageLength = 0; Language[LanguageLength] != 0 && Language[LanguageLength] != ';'; LanguageLength++);\r
1359 }\r
1360\r
1361 //\r
1362 // Trim back the length of Language used until it is empty\r
1363 //\r
1364 while (LanguageLength > 0) {\r
1365 //\r
1366 // Loop through all language codes in SupportedLanguages\r
1367 //\r
1368 for (Supported = SupportedLanguages; *Supported != '\0'; Supported += CompareLength) {\r
1369 //\r
1370 // In RFC 4646 mode, then Loop through all language codes in SupportedLanguages\r
1371 //\r
1372 if (!Iso639Language) {\r
1373 //\r
1374 // Skip ';' characters in Supported\r
1375 //\r
1376 for (; *Supported != '\0' && *Supported == ';'; Supported++);\r
1377 //\r
1378 // Determine the length of the next language code in Supported\r
1379 //\r
1380 for (CompareLength = 0; Supported[CompareLength] != 0 && Supported[CompareLength] != ';'; CompareLength++);\r
1381 //\r
1382 // If Language is longer than the Supported, then skip to the next language\r
1383 //\r
1384 if (LanguageLength > CompareLength) {\r
1385 continue;\r
1386 }\r
1387 }\r
1388 //\r
1389 // See if the first LanguageLength characters in Supported match Language\r
1390 //\r
1391 if (AsciiStrnCmp (Supported, Language, LanguageLength) == 0) {\r
1392 VA_END (Args);\r
1393\r
1394 Buffer = Iso639Language ? mVariableModuleGlobal->Lang : mVariableModuleGlobal->PlatformLang;\r
1395 Buffer[CompareLength] = '\0';\r
1396 return CopyMem (Buffer, Supported, CompareLength);\r
1397 }\r
1398 }\r
1399\r
1400 if (Iso639Language) {\r
1401 //\r
1402 // If ISO 639 mode, then each language can only be tested once\r
1403 //\r
1404 LanguageLength = 0;\r
1405 } else {\r
1406 //\r
2d3fb919 1407 // If RFC 4646 mode, then trim Language from the right to the next '-' character\r
0c18794e 1408 //\r
1409 for (LanguageLength--; LanguageLength > 0 && Language[LanguageLength] != '-'; LanguageLength--);\r
1410 }\r
1411 }\r
1412 }\r
1413 VA_END (Args);\r
1414\r
1415 //\r
2d3fb919 1416 // No matches were found\r
0c18794e 1417 //\r
1418 return NULL;\r
1419}\r
1420\r
1421/**\r
1422 Hook the operations in PlatformLangCodes, LangCodes, PlatformLang and Lang.\r
1423\r
1424 When setting Lang/LangCodes, simultaneously update PlatformLang/PlatformLangCodes.\r
1425\r
1426 According to UEFI spec, PlatformLangCodes/LangCodes are only set once in firmware initialization,\r
1427 and are read-only. Therefore, in variable driver, only store the original value for other use.\r
1428\r
1429 @param[in] VariableName Name of variable.\r
1430\r
1431 @param[in] Data Variable data.\r
1432\r
1433 @param[in] DataSize Size of data. 0 means delete.\r
1434\r
1435**/\r
1436VOID\r
4d832aab 1437AutoUpdateLangVariable (\r
0c18794e 1438 IN CHAR16 *VariableName,\r
1439 IN VOID *Data,\r
1440 IN UINTN DataSize\r
1441 )\r
1442{\r
1443 EFI_STATUS Status;\r
1444 CHAR8 *BestPlatformLang;\r
1445 CHAR8 *BestLang;\r
1446 UINTN Index;\r
1447 UINT32 Attributes;\r
1448 VARIABLE_POINTER_TRACK Variable;\r
1449 BOOLEAN SetLanguageCodes;\r
1450\r
1451 //\r
1452 // Don't do updates for delete operation\r
1453 //\r
1454 if (DataSize == 0) {\r
1455 return;\r
1456 }\r
1457\r
1458 SetLanguageCodes = FALSE;\r
1459\r
1460 if (StrCmp (VariableName, L"PlatformLangCodes") == 0) {\r
1461 //\r
1462 // PlatformLangCodes is a volatile variable, so it can not be updated at runtime.\r
1463 //\r
1464 if (AtRuntime ()) {\r
1465 return;\r
1466 }\r
1467\r
1468 SetLanguageCodes = TRUE;\r
1469\r
1470 //\r
1471 // According to UEFI spec, PlatformLangCodes is only set once in firmware initialization, and is read-only\r
1472 // Therefore, in variable driver, only store the original value for other use.\r
1473 //\r
1474 if (mVariableModuleGlobal->PlatformLangCodes != NULL) {\r
1475 FreePool (mVariableModuleGlobal->PlatformLangCodes);\r
1476 }\r
1477 mVariableModuleGlobal->PlatformLangCodes = AllocateRuntimeCopyPool (DataSize, Data);\r
1478 ASSERT (mVariableModuleGlobal->PlatformLangCodes != NULL);\r
1479\r
1480 //\r
2d3fb919 1481 // PlatformLang holds a single language from PlatformLangCodes,\r
0c18794e 1482 // so the size of PlatformLangCodes is enough for the PlatformLang.\r
1483 //\r
1484 if (mVariableModuleGlobal->PlatformLang != NULL) {\r
1485 FreePool (mVariableModuleGlobal->PlatformLang);\r
1486 }\r
1487 mVariableModuleGlobal->PlatformLang = AllocateRuntimePool (DataSize);\r
1488 ASSERT (mVariableModuleGlobal->PlatformLang != NULL);\r
1489\r
1490 } else if (StrCmp (VariableName, L"LangCodes") == 0) {\r
1491 //\r
1492 // LangCodes is a volatile variable, so it can not be updated at runtime.\r
1493 //\r
1494 if (AtRuntime ()) {\r
1495 return;\r
1496 }\r
1497\r
1498 SetLanguageCodes = TRUE;\r
1499\r
1500 //\r
1501 // According to UEFI spec, LangCodes is only set once in firmware initialization, and is read-only\r
1502 // Therefore, in variable driver, only store the original value for other use.\r
1503 //\r
1504 if (mVariableModuleGlobal->LangCodes != NULL) {\r
1505 FreePool (mVariableModuleGlobal->LangCodes);\r
1506 }\r
1507 mVariableModuleGlobal->LangCodes = AllocateRuntimeCopyPool (DataSize, Data);\r
1508 ASSERT (mVariableModuleGlobal->LangCodes != NULL);\r
1509 }\r
1510\r
2d3fb919 1511 if (SetLanguageCodes\r
0c18794e 1512 && (mVariableModuleGlobal->PlatformLangCodes != NULL)\r
1513 && (mVariableModuleGlobal->LangCodes != NULL)) {\r
1514 //\r
1515 // Update Lang if PlatformLang is already set\r
1516 // Update PlatformLang if Lang is already set\r
1517 //\r
ecc722ad 1518 Status = FindVariable (L"PlatformLang", &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
0c18794e 1519 if (!EFI_ERROR (Status)) {\r
1520 //\r
1521 // Update Lang\r
1522 //\r
1523 VariableName = L"PlatformLang";\r
1524 Data = GetVariableDataPtr (Variable.CurrPtr);\r
1525 DataSize = Variable.CurrPtr->DataSize;\r
1526 } else {\r
ecc722ad 1527 Status = FindVariable (L"Lang", &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
0c18794e 1528 if (!EFI_ERROR (Status)) {\r
1529 //\r
1530 // Update PlatformLang\r
1531 //\r
1532 VariableName = L"Lang";\r
1533 Data = GetVariableDataPtr (Variable.CurrPtr);\r
1534 DataSize = Variable.CurrPtr->DataSize;\r
1535 } else {\r
1536 //\r
1537 // Neither PlatformLang nor Lang is set, directly return\r
1538 //\r
1539 return;\r
1540 }\r
1541 }\r
1542 }\r
2d3fb919 1543\r
0c18794e 1544 //\r
1545 // According to UEFI spec, "Lang" and "PlatformLang" is NV|BS|RT attributions.\r
1546 //\r
1547 Attributes = EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS;\r
1548\r
1549 if (StrCmp (VariableName, L"PlatformLang") == 0) {\r
1550 //\r
1551 // Update Lang when PlatformLangCodes/LangCodes were set.\r
1552 //\r
1553 if ((mVariableModuleGlobal->PlatformLangCodes != NULL) && (mVariableModuleGlobal->LangCodes != NULL)) {\r
1554 //\r
1555 // When setting PlatformLang, firstly get most matched language string from supported language codes.\r
1556 //\r
1557 BestPlatformLang = VariableGetBestLanguage (mVariableModuleGlobal->PlatformLangCodes, FALSE, Data, NULL);\r
1558 if (BestPlatformLang != NULL) {\r
1559 //\r
1560 // Get the corresponding index in language codes.\r
1561 //\r
1562 Index = GetIndexFromSupportedLangCodes (mVariableModuleGlobal->PlatformLangCodes, BestPlatformLang, FALSE);\r
1563\r
1564 //\r
1565 // Get the corresponding ISO639 language tag according to RFC4646 language tag.\r
1566 //\r
1567 BestLang = GetLangFromSupportedLangCodes (mVariableModuleGlobal->LangCodes, Index, TRUE);\r
1568\r
1569 //\r
1570 // Successfully convert PlatformLang to Lang, and set the BestLang value into Lang variable simultaneously.\r
1571 //\r
ecc722ad 1572 FindVariable (L"Lang", &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
0c18794e 1573\r
1574 Status = UpdateVariable (L"Lang", &gEfiGlobalVariableGuid, BestLang,\r
1575 ISO_639_2_ENTRY_SIZE + 1, Attributes, 0, 0, &Variable, NULL);\r
1576\r
1577 DEBUG ((EFI_D_INFO, "Variable Driver Auto Update PlatformLang, PlatformLang:%a, Lang:%a\n", BestPlatformLang, BestLang));\r
1578\r
1579 ASSERT_EFI_ERROR(Status);\r
1580 }\r
1581 }\r
1582\r
1583 } else if (StrCmp (VariableName, L"Lang") == 0) {\r
1584 //\r
1585 // Update PlatformLang when PlatformLangCodes/LangCodes were set.\r
1586 //\r
1587 if ((mVariableModuleGlobal->PlatformLangCodes != NULL) && (mVariableModuleGlobal->LangCodes != NULL)) {\r
1588 //\r
1589 // When setting Lang, firstly get most matched language string from supported language codes.\r
1590 //\r
1591 BestLang = VariableGetBestLanguage (mVariableModuleGlobal->LangCodes, TRUE, Data, NULL);\r
1592 if (BestLang != NULL) {\r
1593 //\r
1594 // Get the corresponding index in language codes.\r
1595 //\r
1596 Index = GetIndexFromSupportedLangCodes (mVariableModuleGlobal->LangCodes, BestLang, TRUE);\r
1597\r
1598 //\r
1599 // Get the corresponding RFC4646 language tag according to ISO639 language tag.\r
1600 //\r
1601 BestPlatformLang = GetLangFromSupportedLangCodes (mVariableModuleGlobal->PlatformLangCodes, Index, FALSE);\r
1602\r
1603 //\r
1604 // Successfully convert Lang to PlatformLang, and set the BestPlatformLang value into PlatformLang variable simultaneously.\r
1605 //\r
ecc722ad 1606 FindVariable (L"PlatformLang", &gEfiGlobalVariableGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
0c18794e 1607\r
2d3fb919 1608 Status = UpdateVariable (L"PlatformLang", &gEfiGlobalVariableGuid, BestPlatformLang,\r
0c18794e 1609 AsciiStrSize (BestPlatformLang), Attributes, 0, 0, &Variable, NULL);\r
1610\r
1611 DEBUG ((EFI_D_INFO, "Variable Driver Auto Update Lang, Lang:%a, PlatformLang:%a\n", BestLang, BestPlatformLang));\r
1612 ASSERT_EFI_ERROR (Status);\r
1613 }\r
1614 }\r
1615 }\r
1616}\r
1617\r
1618/**\r
1619 Update the variable region with Variable information. If EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS is set,\r
1620 index of associated public key is needed.\r
1621\r
1622 @param[in] VariableName Name of variable.\r
1623 @param[in] VendorGuid Guid of variable.\r
1624 @param[in] Data Variable data.\r
1625 @param[in] DataSize Size of data. 0 means delete.\r
1626 @param[in] Attributes Attributes of the variable.\r
1627 @param[in] KeyIndex Index of associated public key.\r
1628 @param[in] MonotonicCount Value of associated monotonic count.\r
23b06935 1629 @param[in, out] CacheVariable The variable information which is used to keep track of variable usage.\r
0c18794e 1630 @param[in] TimeStamp Value of associated TimeStamp.\r
2d3fb919 1631\r
0c18794e 1632 @retval EFI_SUCCESS The update operation is success.\r
1633 @retval EFI_OUT_OF_RESOURCES Variable region is full, can not write other data into this region.\r
1634\r
1635**/\r
1636EFI_STATUS\r
1637UpdateVariable (\r
1638 IN CHAR16 *VariableName,\r
1639 IN EFI_GUID *VendorGuid,\r
1640 IN VOID *Data,\r
1641 IN UINTN DataSize,\r
1642 IN UINT32 Attributes OPTIONAL,\r
1643 IN UINT32 KeyIndex OPTIONAL,\r
1644 IN UINT64 MonotonicCount OPTIONAL,\r
23b06935 1645 IN OUT VARIABLE_POINTER_TRACK *CacheVariable,\r
0c18794e 1646 IN EFI_TIME *TimeStamp OPTIONAL\r
1647 )\r
1648{\r
1649 EFI_STATUS Status;\r
1650 VARIABLE_HEADER *NextVariable;\r
1651 UINTN ScratchSize;\r
732d199d 1652 UINTN MaxDataSize;\r
0c18794e 1653 UINTN NonVolatileVarableStoreSize;\r
1654 UINTN VarNameOffset;\r
1655 UINTN VarDataOffset;\r
1656 UINTN VarNameSize;\r
1657 UINTN VarSize;\r
1658 BOOLEAN Volatile;\r
1659 EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb;\r
1660 UINT8 State;\r
0c18794e 1661 VARIABLE_POINTER_TRACK *Variable;\r
1662 VARIABLE_POINTER_TRACK NvVariable;\r
1663 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
1664 UINTN CacheOffset;\r
1665 UINTN BufSize;\r
1666 UINTN DataOffset;\r
0c18794e 1667\r
1668 if (mVariableModuleGlobal->FvbInstance == NULL) {\r
1669 //\r
1670 // The FVB protocol is not installed, so the EFI_VARIABLE_WRITE_ARCH_PROTOCOL is not installed.\r
1671 //\r
1672 if ((Attributes & EFI_VARIABLE_NON_VOLATILE) != 0) {\r
1673 //\r
1674 // Trying to update NV variable prior to the installation of EFI_VARIABLE_WRITE_ARCH_PROTOCOL\r
1675 //\r
1676 return EFI_NOT_AVAILABLE_YET;\r
1677 } else if ((Attributes & EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) != 0) {\r
1678 //\r
1679 // Trying to update volatile authenticated variable prior to the installation of EFI_VARIABLE_WRITE_ARCH_PROTOCOL\r
1680 // The authenticated variable perhaps is not initialized, just return here.\r
1681 //\r
1682 return EFI_NOT_AVAILABLE_YET;\r
1683 }\r
1684 }\r
1685\r
1686 if ((CacheVariable->CurrPtr == NULL) || CacheVariable->Volatile) {\r
1687 Variable = CacheVariable;\r
1688 } else {\r
1689 //\r
1690 // Update/Delete existing NV variable.\r
1691 // CacheVariable points to the variable in the memory copy of Flash area\r
1692 // Now let Variable points to the same variable in Flash area.\r
1693 //\r
1694 VariableStoreHeader = (VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase);\r
2d3fb919 1695 Variable = &NvVariable;\r
0c18794e 1696 Variable->StartPtr = GetStartPointer (VariableStoreHeader);\r
1697 Variable->EndPtr = GetEndPointer (VariableStoreHeader);\r
1698 Variable->CurrPtr = (VARIABLE_HEADER *)((UINTN)Variable->StartPtr + ((UINTN)CacheVariable->CurrPtr - (UINTN)CacheVariable->StartPtr));\r
23b06935
SZ
1699 if (CacheVariable->InDeletedTransitionPtr != NULL) {\r
1700 Variable->InDeletedTransitionPtr = (VARIABLE_HEADER *)((UINTN)Variable->StartPtr + ((UINTN)CacheVariable->InDeletedTransitionPtr - (UINTN)CacheVariable->StartPtr));\r
1701 } else {\r
1702 Variable->InDeletedTransitionPtr = NULL;\r
1703 }\r
0c18794e 1704 Variable->Volatile = FALSE;\r
2d3fb919 1705 }\r
0c18794e 1706\r
1707 Fvb = mVariableModuleGlobal->FvbInstance;\r
0c18794e 1708\r
1709 //\r
1710 // Tricky part: Use scratch data area at the end of volatile variable store\r
1711 // as a temporary storage.\r
1712 //\r
1713 NextVariable = GetEndPointer ((VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase));\r
1714 ScratchSize = MAX (PcdGet32 (PcdMaxVariableSize), PcdGet32 (PcdMaxHardwareErrorVariableSize));\r
732d199d 1715\r
0c18794e 1716\r
1717 if (Variable->CurrPtr != NULL) {\r
1718 //\r
1719 // Update/Delete existing variable.\r
1720 //\r
2d3fb919 1721 if (AtRuntime ()) {\r
0c18794e 1722 //\r
2d3fb919 1723 // If AtRuntime and the variable is Volatile and Runtime Access,\r
1724 // the volatile is ReadOnly, and SetVariable should be aborted and\r
0c18794e 1725 // return EFI_WRITE_PROTECTED.\r
1726 //\r
1727 if (Variable->Volatile) {\r
1728 Status = EFI_WRITE_PROTECTED;\r
1729 goto Done;\r
1730 }\r
1731 //\r
1732 // Only variable that have NV attributes can be updated/deleted in Runtime.\r
1733 //\r
1734 if ((Variable->CurrPtr->Attributes & EFI_VARIABLE_NON_VOLATILE) == 0) {\r
1735 Status = EFI_INVALID_PARAMETER;\r
2d3fb919 1736 goto Done;\r
0c18794e 1737 }\r
ecc722ad 1738 \r
1739 //\r
1740 // Only variable that have RT attributes can be updated/deleted in Runtime.\r
1741 //\r
1742 if ((Variable->CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0) {\r
1743 Status = EFI_INVALID_PARAMETER;\r
1744 goto Done;\r
1745 }\r
0c18794e 1746 }\r
1747\r
1748 //\r
1749 // Setting a data variable with no access, or zero DataSize attributes\r
1750 // causes it to be deleted.\r
2d3fb919 1751 // When the EFI_VARIABLE_APPEND_WRITE attribute is set, DataSize of zero will\r
1752 // not delete the variable.\r
0c18794e 1753 //\r
2d3fb919 1754 if ((((Attributes & EFI_VARIABLE_APPEND_WRITE) == 0) && (DataSize == 0))|| ((Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == 0)) {\r
23b06935
SZ
1755 if (Variable->InDeletedTransitionPtr != NULL) {\r
1756 //\r
1757 // Both ADDED and IN_DELETED_TRANSITION variable are present,\r
1758 // set IN_DELETED_TRANSITION one to DELETED state first.\r
1759 //\r
1760 State = Variable->InDeletedTransitionPtr->State;\r
1761 State &= VAR_DELETED;\r
1762 Status = UpdateVariableStore (\r
1763 &mVariableModuleGlobal->VariableGlobal,\r
1764 Variable->Volatile,\r
1765 FALSE,\r
1766 Fvb,\r
1767 (UINTN) &Variable->InDeletedTransitionPtr->State,\r
1768 sizeof (UINT8),\r
1769 &State\r
1770 );\r
1771 if (!EFI_ERROR (Status)) {\r
1772 if (!Variable->Volatile) {\r
0cc565de 1773 ASSERT (CacheVariable->InDeletedTransitionPtr != NULL);\r
23b06935
SZ
1774 CacheVariable->InDeletedTransitionPtr->State = State;\r
1775 }\r
1776 } else {\r
1777 goto Done;\r
1778 }\r
1779 }\r
1780\r
0c18794e 1781 State = Variable->CurrPtr->State;\r
1782 State &= VAR_DELETED;\r
1783\r
1784 Status = UpdateVariableStore (\r
1785 &mVariableModuleGlobal->VariableGlobal,\r
1786 Variable->Volatile,\r
1787 FALSE,\r
1788 Fvb,\r
1789 (UINTN) &Variable->CurrPtr->State,\r
1790 sizeof (UINT8),\r
1791 &State\r
2d3fb919 1792 );\r
0c18794e 1793 if (!EFI_ERROR (Status)) {\r
1794 UpdateVariableInfo (VariableName, VendorGuid, Variable->Volatile, FALSE, FALSE, TRUE, FALSE);\r
1795 if (!Variable->Volatile) {\r
1796 CacheVariable->CurrPtr->State = State;\r
335e2681 1797 FlushHobVariableToFlash (VariableName, VendorGuid);\r
0c18794e 1798 }\r
1799 }\r
2d3fb919 1800 goto Done;\r
0c18794e 1801 }\r
1802 //\r
1803 // If the variable is marked valid, and the same data has been passed in,\r
1804 // then return to the caller immediately.\r
1805 //\r
1806 if (DataSizeOfVariable (Variable->CurrPtr) == DataSize &&\r
1807 (CompareMem (Data, GetVariableDataPtr (Variable->CurrPtr), DataSize) == 0) &&\r
2d3fb919 1808 ((Attributes & EFI_VARIABLE_APPEND_WRITE) == 0) &&\r
1809 (TimeStamp == NULL)) {\r
1810 //\r
1811 // Variable content unchanged and no need to update timestamp, just return.\r
1812 //\r
0c18794e 1813 UpdateVariableInfo (VariableName, VendorGuid, Variable->Volatile, FALSE, TRUE, FALSE, FALSE);\r
1814 Status = EFI_SUCCESS;\r
1815 goto Done;\r
1816 } else if ((Variable->CurrPtr->State == VAR_ADDED) ||\r
1817 (Variable->CurrPtr->State == (VAR_ADDED & VAR_IN_DELETED_TRANSITION))) {\r
1818\r
1819 //\r
1820 // EFI_VARIABLE_APPEND_WRITE attribute only effects for existing variable\r
1821 //\r
1822 if ((Attributes & EFI_VARIABLE_APPEND_WRITE) != 0) {\r
2d3fb919 1823 //\r
1824 // Cache the previous variable data into StorageArea.\r
1825 //\r
1826 DataOffset = sizeof (VARIABLE_HEADER) + Variable->CurrPtr->NameSize + GET_PAD_SIZE (Variable->CurrPtr->NameSize);\r
1827 CopyMem (mStorageArea, (UINT8*)((UINTN) Variable->CurrPtr + DataOffset), Variable->CurrPtr->DataSize);\r
1828\r
732d199d 1829 //\r
1830 // Set Max Common Variable Data Size as default MaxDataSize \r
1831 //\r
1832 MaxDataSize = PcdGet32 (PcdMaxVariableSize) - sizeof (VARIABLE_HEADER) - StrSize (VariableName) - GET_PAD_SIZE (StrSize (VariableName));\r
1833\r
1834\r
5767f22f 1835 if ((CompareGuid (VendorGuid, &gEfiImageSecurityDatabaseGuid) &&\r
1836 ((StrCmp (VariableName, EFI_IMAGE_SECURITY_DATABASE) == 0) || (StrCmp (VariableName, EFI_IMAGE_SECURITY_DATABASE1) == 0))) ||\r
1837 (CompareGuid (VendorGuid, &gEfiGlobalVariableGuid) && (StrCmp (VariableName, EFI_KEY_EXCHANGE_KEY_NAME) == 0))) {\r
732d199d 1838\r
2d3fb919 1839 //\r
5767f22f 1840 // For variables with formatted as EFI_SIGNATURE_LIST, the driver shall not perform an append of\r
2d3fb919 1841 // EFI_SIGNATURE_DATA values that are already part of the existing variable value.\r
1842 //\r
732d199d 1843 Status = AppendSignatureList (\r
1844 mStorageArea, \r
1845 Variable->CurrPtr->DataSize, \r
1846 MaxDataSize - Variable->CurrPtr->DataSize,\r
1847 Data, \r
1848 DataSize, \r
1849 &BufSize\r
1850 );\r
1851 if (Status == EFI_BUFFER_TOO_SMALL) {\r
1852 //\r
1853 // Signture List is too long, Failed to Append\r
1854 //\r
1855 Status = EFI_INVALID_PARAMETER;\r
1856 goto Done;\r
1857 }\r
1858\r
2d3fb919 1859 if (BufSize == Variable->CurrPtr->DataSize) {\r
1860 if ((TimeStamp == NULL) || CompareTimeStamp (TimeStamp, &Variable->CurrPtr->TimeStamp)) {\r
1861 //\r
1862 // New EFI_SIGNATURE_DATA is not found and timestamp is not later\r
1863 // than current timestamp, return EFI_SUCCESS directly.\r
1864 //\r
1865 UpdateVariableInfo (VariableName, VendorGuid, Variable->Volatile, FALSE, TRUE, FALSE, FALSE);\r
1866 Status = EFI_SUCCESS;\r
1867 goto Done;\r
1868 }\r
1869 }\r
1870 } else {\r
1871 //\r
1872 // For other Variables, append the new data to the end of previous data.\r
732d199d 1873 // Max Harware error record variable data size is different from common variable\r
2d3fb919 1874 //\r
732d199d 1875 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
1876 MaxDataSize = PcdGet32 (PcdMaxHardwareErrorVariableSize) - sizeof (VARIABLE_HEADER) - StrSize (VariableName) - GET_PAD_SIZE (StrSize (VariableName));\r
1877 }\r
1878\r
1879 if (Variable->CurrPtr->DataSize + DataSize > MaxDataSize) {\r
1880 //\r
1881 // Exsiting data + Appended data exceed maximum variable size limitation \r
1882 //\r
1883 Status = EFI_INVALID_PARAMETER;\r
1884 goto Done;\r
1885 }\r
2d3fb919 1886 CopyMem ((UINT8*)((UINTN) mStorageArea + Variable->CurrPtr->DataSize), Data, DataSize);\r
1887 BufSize = Variable->CurrPtr->DataSize + DataSize;\r
1888 }\r
1889\r
0c18794e 1890 //\r
1891 // Override Data and DataSize which are used for combined data area including previous and new data.\r
1892 //\r
1893 Data = mStorageArea;\r
1894 DataSize = BufSize;\r
1895 }\r
1896\r
1897 //\r
1898 // Mark the old variable as in delete transition.\r
1899 //\r
1900 State = Variable->CurrPtr->State;\r
1901 State &= VAR_IN_DELETED_TRANSITION;\r
1902\r
1903 Status = UpdateVariableStore (\r
1904 &mVariableModuleGlobal->VariableGlobal,\r
1905 Variable->Volatile,\r
1906 FALSE,\r
1907 Fvb,\r
1908 (UINTN) &Variable->CurrPtr->State,\r
1909 sizeof (UINT8),\r
1910 &State\r
2d3fb919 1911 );\r
0c18794e 1912 if (EFI_ERROR (Status)) {\r
2d3fb919 1913 goto Done;\r
1914 }\r
0c18794e 1915 if (!Variable->Volatile) {\r
1916 CacheVariable->CurrPtr->State = State;\r
1917 }\r
2d3fb919 1918 }\r
0c18794e 1919 } else {\r
1920 //\r
1921 // Not found existing variable. Create a new variable.\r
0c18794e 1922 //\r
2d3fb919 1923\r
1924 if ((DataSize == 0) && ((Attributes & EFI_VARIABLE_APPEND_WRITE) != 0)) {\r
1925 Status = EFI_SUCCESS;\r
0c18794e 1926 goto Done;\r
1927 }\r
2d3fb919 1928\r
0c18794e 1929 //\r
1930 // Make sure we are trying to create a new variable.\r
2d3fb919 1931 // Setting a data variable with zero DataSize or no access attributes means to delete it.\r
0c18794e 1932 //\r
1933 if (DataSize == 0 || (Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == 0) {\r
1934 Status = EFI_NOT_FOUND;\r
1935 goto Done;\r
1936 }\r
2d3fb919 1937\r
0c18794e 1938 //\r
1939 // Only variable have NV|RT attribute can be created in Runtime.\r
1940 //\r
1941 if (AtRuntime () &&\r
1942 (((Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0) || ((Attributes & EFI_VARIABLE_NON_VOLATILE) == 0))) {\r
1943 Status = EFI_INVALID_PARAMETER;\r
1944 goto Done;\r
2d3fb919 1945 }\r
0c18794e 1946 }\r
1947\r
1948 //\r
1949 // Function part - create a new variable and copy the data.\r
1950 // Both update a variable and create a variable will come here.\r
1951\r
1952 SetMem (NextVariable, ScratchSize, 0xff);\r
1953\r
1954 NextVariable->StartId = VARIABLE_DATA;\r
1955 //\r
1956 // NextVariable->State = VAR_ADDED;\r
1957 //\r
1958 NextVariable->Reserved = 0;\r
1959 NextVariable->PubKeyIndex = KeyIndex;\r
1960 NextVariable->MonotonicCount = MonotonicCount;\r
2d3fb919 1961 ZeroMem (&NextVariable->TimeStamp, sizeof (EFI_TIME));\r
0c18794e 1962\r
3b4151bc 1963 if (((Attributes & EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) != 0) &&\r
2d3fb919 1964 (TimeStamp != NULL)) {\r
3b4151bc 1965 if ((Attributes & EFI_VARIABLE_APPEND_WRITE) == 0) {\r
1966 CopyMem (&NextVariable->TimeStamp, TimeStamp, sizeof (EFI_TIME));\r
1967 } else {\r
0c18794e 1968 //\r
1969 // In the case when the EFI_VARIABLE_APPEND_WRITE attribute is set, only\r
1970 // when the new TimeStamp value is later than the current timestamp associated\r
1971 // with the variable, we need associate the new timestamp with the updated value.\r
1972 //\r
2d3fb919 1973 if (Variable->CurrPtr != NULL) {\r
1974 if (CompareTimeStamp (&Variable->CurrPtr->TimeStamp, TimeStamp)) {\r
1975 CopyMem (&NextVariable->TimeStamp, TimeStamp, sizeof (EFI_TIME));\r
1976 }\r
0c18794e 1977 }\r
3b4151bc 1978 }\r
0c18794e 1979 }\r
1980\r
1981 //\r
2d3fb919 1982 // The EFI_VARIABLE_APPEND_WRITE attribute will never be set in the returned\r
0c18794e 1983 // Attributes bitmask parameter of a GetVariable() call.\r
1984 //\r
1985 NextVariable->Attributes = Attributes & (~EFI_VARIABLE_APPEND_WRITE);\r
2d3fb919 1986\r
0c18794e 1987 VarNameOffset = sizeof (VARIABLE_HEADER);\r
1988 VarNameSize = StrSize (VariableName);\r
1989 CopyMem (\r
1990 (UINT8 *) ((UINTN) NextVariable + VarNameOffset),\r
1991 VariableName,\r
1992 VarNameSize\r
1993 );\r
1994 VarDataOffset = VarNameOffset + VarNameSize + GET_PAD_SIZE (VarNameSize);\r
1995 CopyMem (\r
1996 (UINT8 *) ((UINTN) NextVariable + VarDataOffset),\r
1997 Data,\r
1998 DataSize\r
1999 );\r
2000 CopyMem (&NextVariable->VendorGuid, VendorGuid, sizeof (EFI_GUID));\r
2001 //\r
2002 // There will be pad bytes after Data, the NextVariable->NameSize and\r
2003 // NextVariable->DataSize should not include pad size so that variable\r
2004 // service can get actual size in GetVariable.\r
2005 //\r
2006 NextVariable->NameSize = (UINT32)VarNameSize;\r
2007 NextVariable->DataSize = (UINT32)DataSize;\r
2008\r
2009 //\r
2010 // The actual size of the variable that stores in storage should\r
2011 // include pad size.\r
2012 //\r
2013 VarSize = VarDataOffset + DataSize + GET_PAD_SIZE (DataSize);\r
2014 if ((Attributes & EFI_VARIABLE_NON_VOLATILE) != 0) {\r
2015 //\r
2016 // Create a nonvolatile variable.\r
2017 //\r
2018 Volatile = FALSE;\r
2019 NonVolatileVarableStoreSize = ((VARIABLE_STORE_HEADER *)(UINTN)(mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase))->Size;\r
2d3fb919 2020 if ((((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0)\r
0c18794e 2021 && ((VarSize + mVariableModuleGlobal->HwErrVariableTotalSize) > PcdGet32 (PcdHwErrStorageSize)))\r
2d3fb919 2022 || (((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == 0)\r
0c18794e 2023 && ((VarSize + mVariableModuleGlobal->CommonVariableTotalSize) > NonVolatileVarableStoreSize - sizeof (VARIABLE_STORE_HEADER) - PcdGet32 (PcdHwErrStorageSize)))) {\r
2024 if (AtRuntime ()) {\r
2025 Status = EFI_OUT_OF_RESOURCES;\r
2026 goto Done;\r
2027 }\r
2028 //\r
2029 // Perform garbage collection & reclaim operation.\r
2030 //\r
83758cdc 2031 Status = Reclaim (\r
2032 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
2033 &mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
2034 FALSE,\r
23b06935 2035 Variable,\r
83758cdc 2036 FALSE,\r
2037 FALSE\r
2038 );\r
0c18794e 2039 if (EFI_ERROR (Status)) {\r
2040 goto Done;\r
2041 }\r
2042 //\r
2043 // If still no enough space, return out of resources.\r
2044 //\r
2d3fb919 2045 if ((((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0)\r
0c18794e 2046 && ((VarSize + mVariableModuleGlobal->HwErrVariableTotalSize) > PcdGet32 (PcdHwErrStorageSize)))\r
2d3fb919 2047 || (((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == 0)\r
0c18794e 2048 && ((VarSize + mVariableModuleGlobal->CommonVariableTotalSize) > NonVolatileVarableStoreSize - sizeof (VARIABLE_STORE_HEADER) - PcdGet32 (PcdHwErrStorageSize)))) {\r
2049 Status = EFI_OUT_OF_RESOURCES;\r
2050 goto Done;\r
2051 }\r
23b06935
SZ
2052 if (Variable->CurrPtr != NULL) {\r
2053 CacheVariable->CurrPtr = (VARIABLE_HEADER *)((UINTN) CacheVariable->StartPtr + ((UINTN) Variable->CurrPtr - (UINTN) Variable->StartPtr));\r
2054 CacheVariable->InDeletedTransitionPtr = NULL;\r
2055 }\r
0c18794e 2056 }\r
2057 //\r
2058 // Four steps\r
2059 // 1. Write variable header\r
2d3fb919 2060 // 2. Set variable state to header valid\r
0c18794e 2061 // 3. Write variable data\r
2062 // 4. Set variable state to valid\r
2063 //\r
2064 //\r
2065 // Step 1:\r
2066 //\r
2067 CacheOffset = mVariableModuleGlobal->NonVolatileLastVariableOffset;\r
2068 Status = UpdateVariableStore (\r
2069 &mVariableModuleGlobal->VariableGlobal,\r
2070 FALSE,\r
2071 TRUE,\r
2072 Fvb,\r
2073 mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
2074 sizeof (VARIABLE_HEADER),\r
2075 (UINT8 *) NextVariable\r
2076 );\r
2077\r
2078 if (EFI_ERROR (Status)) {\r
2079 goto Done;\r
2080 }\r
2081\r
2082 //\r
2083 // Step 2:\r
2084 //\r
2085 NextVariable->State = VAR_HEADER_VALID_ONLY;\r
2086 Status = UpdateVariableStore (\r
2087 &mVariableModuleGlobal->VariableGlobal,\r
2088 FALSE,\r
2089 TRUE,\r
2090 Fvb,\r
2091 mVariableModuleGlobal->NonVolatileLastVariableOffset + OFFSET_OF (VARIABLE_HEADER, State),\r
2092 sizeof (UINT8),\r
2093 &NextVariable->State\r
2094 );\r
2095\r
2096 if (EFI_ERROR (Status)) {\r
2097 goto Done;\r
2098 }\r
2099 //\r
2100 // Step 3:\r
2101 //\r
2102 Status = UpdateVariableStore (\r
2103 &mVariableModuleGlobal->VariableGlobal,\r
2104 FALSE,\r
2105 TRUE,\r
2106 Fvb,\r
2107 mVariableModuleGlobal->NonVolatileLastVariableOffset + sizeof (VARIABLE_HEADER),\r
2108 (UINT32) VarSize - sizeof (VARIABLE_HEADER),\r
2109 (UINT8 *) NextVariable + sizeof (VARIABLE_HEADER)\r
2110 );\r
2111\r
2112 if (EFI_ERROR (Status)) {\r
2113 goto Done;\r
2114 }\r
2115 //\r
2116 // Step 4:\r
2117 //\r
2118 NextVariable->State = VAR_ADDED;\r
2119 Status = UpdateVariableStore (\r
2120 &mVariableModuleGlobal->VariableGlobal,\r
2121 FALSE,\r
2122 TRUE,\r
2123 Fvb,\r
2124 mVariableModuleGlobal->NonVolatileLastVariableOffset + OFFSET_OF (VARIABLE_HEADER, State),\r
2125 sizeof (UINT8),\r
2126 &NextVariable->State\r
2127 );\r
2128\r
2129 if (EFI_ERROR (Status)) {\r
2130 goto Done;\r
2131 }\r
2132\r
2133 mVariableModuleGlobal->NonVolatileLastVariableOffset += HEADER_ALIGN (VarSize);\r
2134\r
2135 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) != 0) {\r
2136 mVariableModuleGlobal->HwErrVariableTotalSize += HEADER_ALIGN (VarSize);\r
2137 } else {\r
2138 mVariableModuleGlobal->CommonVariableTotalSize += HEADER_ALIGN (VarSize);\r
2139 }\r
2140 //\r
2141 // update the memory copy of Flash region.\r
2142 //\r
2143 CopyMem ((UINT8 *)mNvVariableCache + CacheOffset, (UINT8 *)NextVariable, VarSize);\r
2144 } else {\r
2145 //\r
2146 // Create a volatile variable.\r
2d3fb919 2147 //\r
0c18794e 2148 Volatile = TRUE;\r
2149\r
2150 if ((UINT32) (VarSize + mVariableModuleGlobal->VolatileLastVariableOffset) >\r
2151 ((VARIABLE_STORE_HEADER *) ((UINTN) (mVariableModuleGlobal->VariableGlobal.VolatileVariableBase)))->Size) {\r
2152 //\r
2153 // Perform garbage collection & reclaim operation.\r
2154 //\r
83758cdc 2155 Status = Reclaim (\r
2156 mVariableModuleGlobal->VariableGlobal.VolatileVariableBase,\r
2157 &mVariableModuleGlobal->VolatileLastVariableOffset,\r
2158 TRUE,\r
23b06935 2159 Variable,\r
83758cdc 2160 FALSE,\r
2161 FALSE\r
2162 );\r
0c18794e 2163 if (EFI_ERROR (Status)) {\r
2164 goto Done;\r
2165 }\r
2166 //\r
2167 // If still no enough space, return out of resources.\r
2168 //\r
2169 if ((UINT32) (VarSize + mVariableModuleGlobal->VolatileLastVariableOffset) >\r
2170 ((VARIABLE_STORE_HEADER *) ((UINTN) (mVariableModuleGlobal->VariableGlobal.VolatileVariableBase)))->Size\r
2171 ) {\r
2172 Status = EFI_OUT_OF_RESOURCES;\r
2173 goto Done;\r
2174 }\r
23b06935
SZ
2175 if (Variable->CurrPtr != NULL) {\r
2176 CacheVariable->CurrPtr = (VARIABLE_HEADER *)((UINTN) CacheVariable->StartPtr + ((UINTN) Variable->CurrPtr - (UINTN) Variable->StartPtr));\r
2177 CacheVariable->InDeletedTransitionPtr = NULL;\r
2178 }\r
0c18794e 2179 }\r
2180\r
2181 NextVariable->State = VAR_ADDED;\r
2182 Status = UpdateVariableStore (\r
2183 &mVariableModuleGlobal->VariableGlobal,\r
2184 TRUE,\r
2185 TRUE,\r
2186 Fvb,\r
2187 mVariableModuleGlobal->VolatileLastVariableOffset,\r
2188 (UINT32) VarSize,\r
2189 (UINT8 *) NextVariable\r
2190 );\r
2191\r
2192 if (EFI_ERROR (Status)) {\r
2193 goto Done;\r
2194 }\r
2195\r
2196 mVariableModuleGlobal->VolatileLastVariableOffset += HEADER_ALIGN (VarSize);\r
2197 }\r
2198\r
2199 //\r
2200 // Mark the old variable as deleted.\r
2201 //\r
23b06935
SZ
2202 if (!EFI_ERROR (Status) && Variable->CurrPtr != NULL) {\r
2203 if (Variable->InDeletedTransitionPtr != NULL) {\r
2204 //\r
2205 // Both ADDED and IN_DELETED_TRANSITION old variable are present,\r
2206 // set IN_DELETED_TRANSITION one to DELETED state first.\r
2207 //\r
2208 State = Variable->InDeletedTransitionPtr->State;\r
2209 State &= VAR_DELETED;\r
2210 Status = UpdateVariableStore (\r
2211 &mVariableModuleGlobal->VariableGlobal,\r
2212 Variable->Volatile,\r
2213 FALSE,\r
2214 Fvb,\r
2215 (UINTN) &Variable->InDeletedTransitionPtr->State,\r
2216 sizeof (UINT8),\r
2217 &State\r
2218 );\r
2219 if (!EFI_ERROR (Status)) {\r
2220 if (!Variable->Volatile) {\r
0cc565de 2221 ASSERT (CacheVariable->InDeletedTransitionPtr != NULL);\r
23b06935
SZ
2222 CacheVariable->InDeletedTransitionPtr->State = State;\r
2223 }\r
2224 } else {\r
2225 goto Done;\r
2226 }\r
2227 }\r
2228\r
0c18794e 2229 State = Variable->CurrPtr->State;\r
2230 State &= VAR_DELETED;\r
2231\r
2232 Status = UpdateVariableStore (\r
2233 &mVariableModuleGlobal->VariableGlobal,\r
2234 Variable->Volatile,\r
2235 FALSE,\r
2236 Fvb,\r
2237 (UINTN) &Variable->CurrPtr->State,\r
2238 sizeof (UINT8),\r
2239 &State\r
2240 );\r
2d3fb919 2241 if (!EFI_ERROR (Status) && !Variable->Volatile) {\r
0c18794e 2242 CacheVariable->CurrPtr->State = State;\r
2243 }\r
2244 }\r
2245\r
2246 if (!EFI_ERROR (Status)) {\r
2247 UpdateVariableInfo (VariableName, VendorGuid, Volatile, FALSE, TRUE, FALSE, FALSE);\r
335e2681
SZ
2248 if (!Volatile) {\r
2249 FlushHobVariableToFlash (VariableName, VendorGuid);\r
2250 }\r
0c18794e 2251 }\r
2252\r
2253Done:\r
2254 return Status;\r
2255}\r
2256\r
a5f15e30
SZ
2257/**\r
2258 Check if a Unicode character is a hexadecimal character.\r
2259\r
2260 This function checks if a Unicode character is a \r
2261 hexadecimal character. The valid hexadecimal character is \r
2262 L'0' to L'9', L'a' to L'f', or L'A' to L'F'.\r
2263\r
2264\r
2265 @param Char The character to check against.\r
2266\r
2267 @retval TRUE If the Char is a hexadecmial character.\r
2268 @retval FALSE If the Char is not a hexadecmial character.\r
2269\r
2270**/\r
2271BOOLEAN\r
2272EFIAPI\r
2273IsHexaDecimalDigitCharacter (\r
2274 IN CHAR16 Char\r
2275 )\r
2276{\r
2277 return (BOOLEAN) ((Char >= L'0' && Char <= L'9') || (Char >= L'A' && Char <= L'F') || (Char >= L'a' && Char <= L'f'));\r
2278}\r
2279\r
2280/**\r
2281\r
2282 This code checks if variable is hardware error record variable or not.\r
2283\r
2284 According to UEFI spec, hardware error record variable should use the EFI_HARDWARE_ERROR_VARIABLE VendorGuid\r
2285 and have the L"HwErrRec####" name convention, #### is a printed hex value and no 0x or h is included in the hex value.\r
2286\r
2287 @param VariableName Pointer to variable name.\r
2288 @param VendorGuid Variable Vendor Guid.\r
2289\r
2290 @retval TRUE Variable is hardware error record variable.\r
2291 @retval FALSE Variable is not hardware error record variable.\r
2292\r
2293**/\r
2294BOOLEAN\r
2295EFIAPI\r
2296IsHwErrRecVariable (\r
2297 IN CHAR16 *VariableName,\r
2298 IN EFI_GUID *VendorGuid\r
2299 )\r
2300{\r
2301 if (!CompareGuid (VendorGuid, &gEfiHardwareErrorVariableGuid) ||\r
2302 (StrLen (VariableName) != StrLen (L"HwErrRec####")) ||\r
2303 (StrnCmp(VariableName, L"HwErrRec", StrLen (L"HwErrRec")) != 0) ||\r
2304 !IsHexaDecimalDigitCharacter (VariableName[0x8]) ||\r
2305 !IsHexaDecimalDigitCharacter (VariableName[0x9]) ||\r
2306 !IsHexaDecimalDigitCharacter (VariableName[0xA]) ||\r
2307 !IsHexaDecimalDigitCharacter (VariableName[0xB])) {\r
2308 return FALSE;\r
2309 }\r
2310\r
2311 return TRUE;\r
2312}\r
2313\r
05a643f9 2314/**\r
2315 This code checks if variable should be treated as read-only variable.\r
2316\r
2317 @param[in] VariableName Name of the Variable.\r
2318 @param[in] VendorGuid GUID of the Variable.\r
2319\r
2320 @retval TRUE This variable is read-only variable.\r
2321 @retval FALSE This variable is NOT read-only variable.\r
2322 \r
2323**/\r
2324BOOLEAN\r
2325IsReadOnlyVariable (\r
2326 IN CHAR16 *VariableName,\r
2327 IN EFI_GUID *VendorGuid\r
2328 )\r
2329{\r
2330 if (CompareGuid (VendorGuid, &gEfiGlobalVariableGuid)) {\r
2331 if ((StrCmp (VariableName, EFI_SETUP_MODE_NAME) == 0) ||\r
2332 (StrCmp (VariableName, EFI_SIGNATURE_SUPPORT_NAME) == 0) ||\r
2333 (StrCmp (VariableName, EFI_SECURE_BOOT_MODE_NAME) == 0)) {\r
2334 return TRUE;\r
2335 }\r
2336 }\r
2337 \r
2338 return FALSE;\r
2339}\r
2340\r
0c18794e 2341/**\r
2342\r
2343 This code finds variable in storage blocks (Volatile or Non-Volatile).\r
2344\r
dc204d5a
JY
2345 Caution: This function may receive untrusted input.\r
2346 This function may be invoked in SMM mode, and datasize is external input.\r
2347 This function will do basic validation, before parse the data.\r
2348\r
0c18794e 2349 @param VariableName Name of Variable to be found.\r
2350 @param VendorGuid Variable vendor GUID.\r
2351 @param Attributes Attribute value of the variable found.\r
2352 @param DataSize Size of Data found. If size is less than the\r
2353 data, this value contains the required size.\r
2354 @param Data Data pointer.\r
2d3fb919 2355\r
0c18794e 2356 @return EFI_INVALID_PARAMETER Invalid parameter.\r
2357 @return EFI_SUCCESS Find the specified variable.\r
2358 @return EFI_NOT_FOUND Not found.\r
2359 @return EFI_BUFFER_TO_SMALL DataSize is too small for the result.\r
2360\r
2361**/\r
2362EFI_STATUS\r
2363EFIAPI\r
2364VariableServiceGetVariable (\r
2365 IN CHAR16 *VariableName,\r
2366 IN EFI_GUID *VendorGuid,\r
2367 OUT UINT32 *Attributes OPTIONAL,\r
2368 IN OUT UINTN *DataSize,\r
2369 OUT VOID *Data\r
2370 )\r
2371{\r
2372 EFI_STATUS Status;\r
2373 VARIABLE_POINTER_TRACK Variable;\r
2374 UINTN VarDataSize;\r
2375\r
2376 if (VariableName == NULL || VendorGuid == NULL || DataSize == NULL) {\r
2377 return EFI_INVALID_PARAMETER;\r
2378 }\r
2379\r
2380 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2d3fb919 2381\r
ecc722ad 2382 Status = FindVariable (VariableName, VendorGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
0c18794e 2383 if (Variable.CurrPtr == NULL || EFI_ERROR (Status)) {\r
2384 goto Done;\r
2385 }\r
2386\r
2387 //\r
2388 // Get data size\r
2389 //\r
2390 VarDataSize = DataSizeOfVariable (Variable.CurrPtr);\r
2391 ASSERT (VarDataSize != 0);\r
2392\r
2393 if (*DataSize >= VarDataSize) {\r
2394 if (Data == NULL) {\r
2395 Status = EFI_INVALID_PARAMETER;\r
2396 goto Done;\r
2397 }\r
2398\r
2399 CopyMem (Data, GetVariableDataPtr (Variable.CurrPtr), VarDataSize);\r
2400 if (Attributes != NULL) {\r
2401 *Attributes = Variable.CurrPtr->Attributes;\r
2402 }\r
2403\r
2404 *DataSize = VarDataSize;\r
2405 UpdateVariableInfo (VariableName, VendorGuid, Variable.Volatile, TRUE, FALSE, FALSE, FALSE);\r
2d3fb919 2406\r
0c18794e 2407 Status = EFI_SUCCESS;\r
2408 goto Done;\r
2409 } else {\r
2410 *DataSize = VarDataSize;\r
2411 Status = EFI_BUFFER_TOO_SMALL;\r
2412 goto Done;\r
2413 }\r
2414\r
2415Done:\r
2416 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2417 return Status;\r
2418}\r
2419\r
2420\r
2421\r
2422/**\r
2423\r
2424 This code Finds the Next available variable.\r
2425\r
dc204d5a
JY
2426 Caution: This function may receive untrusted input.\r
2427 This function may be invoked in SMM mode. This function will do basic validation, before parse the data.\r
2428\r
0c18794e 2429 @param VariableNameSize Size of the variable name.\r
2430 @param VariableName Pointer to variable name.\r
2431 @param VendorGuid Variable Vendor Guid.\r
2432\r
2433 @return EFI_INVALID_PARAMETER Invalid parameter.\r
2434 @return EFI_SUCCESS Find the specified variable.\r
2435 @return EFI_NOT_FOUND Not found.\r
2436 @return EFI_BUFFER_TO_SMALL DataSize is too small for the result.\r
2437\r
2438**/\r
2439EFI_STATUS\r
2440EFIAPI\r
2441VariableServiceGetNextVariableName (\r
2442 IN OUT UINTN *VariableNameSize,\r
2443 IN OUT CHAR16 *VariableName,\r
2444 IN OUT EFI_GUID *VendorGuid\r
2445 )\r
2446{\r
9a000b46 2447 VARIABLE_STORE_TYPE Type;\r
0c18794e 2448 VARIABLE_POINTER_TRACK Variable;\r
9a000b46 2449 VARIABLE_POINTER_TRACK VariableInHob;\r
23b06935 2450 VARIABLE_POINTER_TRACK VariablePtrTrack;\r
0c18794e 2451 UINTN VarNameSize;\r
2452 EFI_STATUS Status;\r
9a000b46 2453 VARIABLE_STORE_HEADER *VariableStoreHeader[VariableStoreTypeMax];\r
0c18794e 2454\r
2455 if (VariableNameSize == NULL || VariableName == NULL || VendorGuid == NULL) {\r
2456 return EFI_INVALID_PARAMETER;\r
2457 }\r
2458\r
2459 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2460\r
ecc722ad 2461 Status = FindVariable (VariableName, VendorGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, FALSE);\r
0c18794e 2462 if (Variable.CurrPtr == NULL || EFI_ERROR (Status)) {\r
2463 goto Done;\r
2464 }\r
2465\r
2466 if (VariableName[0] != 0) {\r
2467 //\r
2468 // If variable name is not NULL, get next variable.\r
2469 //\r
2470 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
2471 }\r
2472\r
9a000b46
RN
2473 //\r
2474 // 0: Volatile, 1: HOB, 2: Non-Volatile.\r
2475 // The index and attributes mapping must be kept in this order as FindVariable\r
2476 // makes use of this mapping to implement search algorithm.\r
2477 //\r
2478 VariableStoreHeader[VariableStoreTypeVolatile] = (VARIABLE_STORE_HEADER *) (UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase;\r
2479 VariableStoreHeader[VariableStoreTypeHob] = (VARIABLE_STORE_HEADER *) (UINTN) mVariableModuleGlobal->VariableGlobal.HobVariableBase;\r
2480 VariableStoreHeader[VariableStoreTypeNv] = mNvVariableCache;\r
2481\r
0c18794e 2482 while (TRUE) {\r
2483 //\r
9a000b46 2484 // Switch from Volatile to HOB, to Non-Volatile.\r
0c18794e 2485 //\r
9a000b46
RN
2486 while ((Variable.CurrPtr >= Variable.EndPtr) ||\r
2487 (Variable.CurrPtr == NULL) ||\r
2488 !IsValidVariableHeader (Variable.CurrPtr)\r
2489 ) {\r
2490 //\r
2491 // Find current storage index\r
2492 //\r
2493 for (Type = (VARIABLE_STORE_TYPE) 0; Type < VariableStoreTypeMax; Type++) {\r
2494 if ((VariableStoreHeader[Type] != NULL) && (Variable.StartPtr == GetStartPointer (VariableStoreHeader[Type]))) {\r
2495 break;\r
2496 }\r
2497 }\r
2498 ASSERT (Type < VariableStoreTypeMax);\r
2499 //\r
2500 // Switch to next storage\r
2501 //\r
2502 for (Type++; Type < VariableStoreTypeMax; Type++) {\r
2503 if (VariableStoreHeader[Type] != NULL) {\r
2504 break;\r
2505 }\r
2506 }\r
2507 //\r
2d3fb919 2508 // Capture the case that\r
9a000b46
RN
2509 // 1. current storage is the last one, or\r
2510 // 2. no further storage\r
2511 //\r
2512 if (Type == VariableStoreTypeMax) {\r
0c18794e 2513 Status = EFI_NOT_FOUND;\r
2514 goto Done;\r
2515 }\r
9a000b46
RN
2516 Variable.StartPtr = GetStartPointer (VariableStoreHeader[Type]);\r
2517 Variable.EndPtr = GetEndPointer (VariableStoreHeader[Type]);\r
2518 Variable.CurrPtr = Variable.StartPtr;\r
0c18794e 2519 }\r
9a000b46 2520\r
0c18794e 2521 //\r
2522 // Variable is found\r
2523 //\r
23b06935
SZ
2524 if (Variable.CurrPtr->State == VAR_ADDED || Variable.CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
2525 if (!AtRuntime () || ((Variable.CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) != 0)) {\r
2526 if (Variable.CurrPtr->State == (VAR_IN_DELETED_TRANSITION & VAR_ADDED)) {\r
2527 //\r
2528 // If it is a IN_DELETED_TRANSITION variable,\r
2529 // and there is also a same ADDED one at the same time,\r
2530 // don't return it.\r
2531 //\r
2532 VariablePtrTrack.StartPtr = Variable.StartPtr;\r
2533 VariablePtrTrack.EndPtr = Variable.EndPtr;\r
2534 Status = FindVariableEx (\r
2535 GetVariableNamePtr (Variable.CurrPtr),\r
2536 &Variable.CurrPtr->VendorGuid,\r
2537 FALSE,\r
2538 &VariablePtrTrack\r
2539 );\r
2540 if (!EFI_ERROR (Status) && VariablePtrTrack.CurrPtr->State == VAR_ADDED) {\r
2541 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
2542 continue;\r
2543 }\r
2544 }\r
9a000b46
RN
2545\r
2546 //\r
2547 // Don't return NV variable when HOB overrides it\r
2548 //\r
2d3fb919 2549 if ((VariableStoreHeader[VariableStoreTypeHob] != NULL) && (VariableStoreHeader[VariableStoreTypeNv] != NULL) &&\r
9a000b46
RN
2550 (Variable.StartPtr == GetStartPointer (VariableStoreHeader[VariableStoreTypeNv]))\r
2551 ) {\r
2552 VariableInHob.StartPtr = GetStartPointer (VariableStoreHeader[VariableStoreTypeHob]);\r
2553 VariableInHob.EndPtr = GetEndPointer (VariableStoreHeader[VariableStoreTypeHob]);\r
2554 Status = FindVariableEx (\r
2555 GetVariableNamePtr (Variable.CurrPtr),\r
2556 &Variable.CurrPtr->VendorGuid,\r
ecc722ad 2557 FALSE,\r
9a000b46
RN
2558 &VariableInHob\r
2559 );\r
2560 if (!EFI_ERROR (Status)) {\r
2561 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
2562 continue;\r
2563 }\r
2564 }\r
2565\r
0c18794e 2566 VarNameSize = NameSizeOfVariable (Variable.CurrPtr);\r
2567 ASSERT (VarNameSize != 0);\r
2568\r
2569 if (VarNameSize <= *VariableNameSize) {\r
9a000b46
RN
2570 CopyMem (VariableName, GetVariableNamePtr (Variable.CurrPtr), VarNameSize);\r
2571 CopyMem (VendorGuid, &Variable.CurrPtr->VendorGuid, sizeof (EFI_GUID));\r
0c18794e 2572 Status = EFI_SUCCESS;\r
2573 } else {\r
2574 Status = EFI_BUFFER_TOO_SMALL;\r
2575 }\r
2576\r
2577 *VariableNameSize = VarNameSize;\r
2578 goto Done;\r
2579 }\r
2580 }\r
2581\r
2582 Variable.CurrPtr = GetNextVariablePtr (Variable.CurrPtr);\r
2583 }\r
2584\r
2585Done:\r
2586 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2587 return Status;\r
2588}\r
2589\r
2590/**\r
2591\r
2592 This code sets variable in storage blocks (Volatile or Non-Volatile).\r
2593\r
dc204d5a
JY
2594 Caution: This function may receive untrusted input.\r
2595 This function may be invoked in SMM mode, and datasize and data are external input.\r
2596 This function will do basic validation, before parse the data.\r
2597 This function will parse the authentication carefully to avoid security issues, like\r
2598 buffer overflow, integer overflow.\r
2599 This function will check attribute carefully to avoid authentication bypass.\r
2600\r
0c18794e 2601 @param VariableName Name of Variable to be found.\r
2602 @param VendorGuid Variable vendor GUID.\r
2603 @param Attributes Attribute value of the variable found\r
2604 @param DataSize Size of Data found. If size is less than the\r
2605 data, this value contains the required size.\r
2606 @param Data Data pointer.\r
2607\r
2608 @return EFI_INVALID_PARAMETER Invalid parameter.\r
2609 @return EFI_SUCCESS Set successfully.\r
2610 @return EFI_OUT_OF_RESOURCES Resource not enough to set variable.\r
2611 @return EFI_NOT_FOUND Not found.\r
2612 @return EFI_WRITE_PROTECTED Variable is read-only.\r
2613\r
2614**/\r
2615EFI_STATUS\r
2616EFIAPI\r
2617VariableServiceSetVariable (\r
2618 IN CHAR16 *VariableName,\r
2619 IN EFI_GUID *VendorGuid,\r
2620 IN UINT32 Attributes,\r
2621 IN UINTN DataSize,\r
2622 IN VOID *Data\r
2623 )\r
2624{\r
2625 VARIABLE_POINTER_TRACK Variable;\r
2626 EFI_STATUS Status;\r
2627 VARIABLE_HEADER *NextVariable;\r
2628 EFI_PHYSICAL_ADDRESS Point;\r
2629 UINTN PayloadSize;\r
2630\r
2631 //\r
2632 // Check input parameters.\r
2633 //\r
2634 if (VariableName == NULL || VariableName[0] == 0 || VendorGuid == NULL) {\r
2635 return EFI_INVALID_PARAMETER;\r
2d3fb919 2636 }\r
0c18794e 2637\r
05a643f9 2638 if (IsReadOnlyVariable (VariableName, VendorGuid)) {\r
2639 return EFI_WRITE_PROTECTED;\r
2640 }\r
2641\r
0c18794e 2642 if (DataSize != 0 && Data == NULL) {\r
2643 return EFI_INVALID_PARAMETER;\r
2644 }\r
2645\r
275beb2b 2646 //\r
2647 // Check for reserverd bit in variable attribute.\r
2648 //\r
2649 if ((Attributes & (~EFI_VARIABLE_ATTRIBUTES_MASK)) != 0) {\r
2650 return EFI_INVALID_PARAMETER;\r
2651 }\r
2652\r
0c18794e 2653 //\r
2654 // Make sure if runtime bit is set, boot service bit is set also.\r
2655 //\r
2656 if ((Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == EFI_VARIABLE_RUNTIME_ACCESS) {\r
2657 return EFI_INVALID_PARAMETER;\r
2658 }\r
2659\r
2660 //\r
2d3fb919 2661 // EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS and EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS attribute\r
0c18794e 2662 // cannot be set both.\r
2663 //\r
2d3fb919 2664 if (((Attributes & EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS)\r
0c18794e 2665 && ((Attributes & EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS)) {\r
2666 return EFI_INVALID_PARAMETER;\r
2d3fb919 2667 }\r
0c18794e 2668\r
2669 if ((Attributes & EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS) {\r
2670 if (DataSize < AUTHINFO_SIZE) {\r
2671 //\r
2d3fb919 2672 // Try to write Authenticated Variable without AuthInfo.\r
0c18794e 2673 //\r
2674 return EFI_SECURITY_VIOLATION;\r
2d3fb919 2675 }\r
2676 PayloadSize = DataSize - AUTHINFO_SIZE;\r
2677 } else if ((Attributes & EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) == EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS) {\r
2678 //\r
2679 // Sanity check for EFI_VARIABLE_AUTHENTICATION_2 descriptor.\r
2680 //\r
2681 if (DataSize < OFFSET_OF_AUTHINFO2_CERT_DATA ||\r
6bc4e19f 2682 ((EFI_VARIABLE_AUTHENTICATION_2 *) Data)->AuthInfo.Hdr.dwLength > DataSize - (OFFSET_OF (EFI_VARIABLE_AUTHENTICATION_2, AuthInfo)) ||\r
2683 ((EFI_VARIABLE_AUTHENTICATION_2 *) Data)->AuthInfo.Hdr.dwLength < OFFSET_OF (WIN_CERTIFICATE_UEFI_GUID, CertData)) {\r
2d3fb919 2684 return EFI_SECURITY_VIOLATION;\r
2685 }\r
2686 PayloadSize = DataSize - AUTHINFO2_SIZE (Data);\r
0c18794e 2687 } else {\r
2d3fb919 2688 PayloadSize = DataSize;\r
0c18794e 2689 }\r
2d3fb919 2690\r
56251c66 2691 if ((UINTN)(~0) - PayloadSize < StrSize(VariableName)){\r
2692 //\r
2693 // Prevent whole variable size overflow \r
2694 // \r
2695 return EFI_INVALID_PARAMETER;\r
2696 }\r
2697\r
0c18794e 2698 //\r
2699 // The size of the VariableName, including the Unicode Null in bytes plus\r
2700 // the DataSize is limited to maximum size of PcdGet32 (PcdMaxHardwareErrorVariableSize)\r
2701 // bytes for HwErrRec, and PcdGet32 (PcdMaxVariableSize) bytes for the others.\r
2702 //\r
2703 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
56251c66 2704 if (StrSize (VariableName) + PayloadSize > PcdGet32 (PcdMaxHardwareErrorVariableSize) - sizeof (VARIABLE_HEADER)) {\r
0c18794e 2705 return EFI_INVALID_PARAMETER;\r
2706 }\r
a5f15e30 2707 if (!IsHwErrRecVariable(VariableName, VendorGuid)) {\r
0c18794e 2708 return EFI_INVALID_PARAMETER;\r
2709 }\r
2710 } else {\r
2711 //\r
2712 // The size of the VariableName, including the Unicode Null in bytes plus\r
2713 // the DataSize is limited to maximum size of PcdGet32 (PcdMaxVariableSize) bytes.\r
2714 //\r
56251c66 2715 if (StrSize (VariableName) + PayloadSize > PcdGet32 (PcdMaxVariableSize) - sizeof (VARIABLE_HEADER)) {\r
0c18794e 2716 return EFI_INVALID_PARAMETER;\r
2d3fb919 2717 }\r
2718 }\r
0c18794e 2719\r
021a1af9
SZ
2720 if (AtRuntime ()) {\r
2721 //\r
2722 // HwErrRecSupport Global Variable identifies the level of hardware error record persistence\r
2723 // support implemented by the platform. This variable is only modified by firmware and is read-only to the OS.\r
2724 //\r
2725 if (CompareGuid (VendorGuid, &gEfiGlobalVariableGuid) && (StrCmp (VariableName, L"HwErrRecSupport") == 0)) {\r
2726 return EFI_WRITE_PROTECTED;\r
2727 }\r
2728 }\r
2729\r
0c18794e 2730 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2731\r
2732 //\r
2733 // Consider reentrant in MCA/INIT/NMI. It needs be reupdated.\r
2734 //\r
2735 if (1 < InterlockedIncrement (&mVariableModuleGlobal->VariableGlobal.ReentrantState)) {\r
2736 Point = mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase;\r
2737 //\r
2738 // Parse non-volatile variable data and get last variable offset.\r
2739 //\r
2740 NextVariable = GetStartPointer ((VARIABLE_STORE_HEADER *) (UINTN) Point);\r
2d3fb919 2741 while ((NextVariable < GetEndPointer ((VARIABLE_STORE_HEADER *) (UINTN) Point))\r
0c18794e 2742 && IsValidVariableHeader (NextVariable)) {\r
2743 NextVariable = GetNextVariablePtr (NextVariable);\r
2744 }\r
2745 mVariableModuleGlobal->NonVolatileLastVariableOffset = (UINTN) NextVariable - (UINTN) Point;\r
2746 }\r
2747\r
2748 //\r
2749 // Check whether the input variable is already existed.\r
2750 //\r
ecc722ad 2751 Status = FindVariable (VariableName, VendorGuid, &Variable, &mVariableModuleGlobal->VariableGlobal, TRUE);\r
2752 if (!EFI_ERROR (Status)) {\r
2753 if (((Variable.CurrPtr->Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0) && AtRuntime ()) {\r
2754 return EFI_WRITE_PROTECTED;\r
2755 }\r
2756 }\r
2757 \r
0c18794e 2758 //\r
2759 // Hook the operation of setting PlatformLangCodes/PlatformLang and LangCodes/Lang.\r
2760 //\r
2761 AutoUpdateLangVariable (VariableName, Data, DataSize);\r
2762 //\r
2763 // Process PK, KEK, Sigdb seperately.\r
2764 //\r
2765 if (CompareGuid (VendorGuid, &gEfiGlobalVariableGuid) && (StrCmp (VariableName, EFI_PLATFORM_KEY_NAME) == 0)){\r
2766 Status = ProcessVarWithPk (VariableName, VendorGuid, Data, DataSize, &Variable, Attributes, TRUE);\r
2767 } else if (CompareGuid (VendorGuid, &gEfiGlobalVariableGuid) && (StrCmp (VariableName, EFI_KEY_EXCHANGE_KEY_NAME) == 0)) {\r
2768 Status = ProcessVarWithPk (VariableName, VendorGuid, Data, DataSize, &Variable, Attributes, FALSE);\r
ecc722ad 2769 } else if (CompareGuid (VendorGuid, &gEfiImageSecurityDatabaseGuid) && \r
2770 ((StrCmp (VariableName, EFI_IMAGE_SECURITY_DATABASE) == 0) || (StrCmp (VariableName, EFI_IMAGE_SECURITY_DATABASE1) == 0))) {\r
05a643f9 2771 Status = ProcessVarWithPk (VariableName, VendorGuid, Data, DataSize, &Variable, Attributes, FALSE);\r
2772 if (EFI_ERROR (Status)) {\r
2773 Status = ProcessVarWithKek (VariableName, VendorGuid, Data, DataSize, &Variable, Attributes);\r
2774 }\r
0c18794e 2775 } else {\r
2776 Status = ProcessVariable (VariableName, VendorGuid, Data, DataSize, &Variable, Attributes);\r
2777 }\r
2778\r
2779 InterlockedDecrement (&mVariableModuleGlobal->VariableGlobal.ReentrantState);\r
2780 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2781\r
2782 return Status;\r
2783}\r
2784\r
2785/**\r
2786\r
2787 This code returns information about the EFI variables.\r
2788\r
dc204d5a
JY
2789 Caution: This function may receive untrusted input.\r
2790 This function may be invoked in SMM mode. This function will do basic validation, before parse the data.\r
2791\r
0c18794e 2792 @param Attributes Attributes bitmask to specify the type of variables\r
2793 on which to return information.\r
2794 @param MaximumVariableStorageSize Pointer to the maximum size of the storage space available\r
2795 for the EFI variables associated with the attributes specified.\r
2796 @param RemainingVariableStorageSize Pointer to the remaining size of the storage space available\r
2797 for EFI variables associated with the attributes specified.\r
2798 @param MaximumVariableSize Pointer to the maximum size of an individual EFI variables\r
2799 associated with the attributes specified.\r
2800\r
2801 @return EFI_INVALID_PARAMETER An invalid combination of attribute bits was supplied.\r
2802 @return EFI_SUCCESS Query successfully.\r
2803 @return EFI_UNSUPPORTED The attribute is not supported on this platform.\r
2804\r
2805**/\r
2806EFI_STATUS\r
2807EFIAPI\r
2808VariableServiceQueryVariableInfo (\r
2809 IN UINT32 Attributes,\r
2810 OUT UINT64 *MaximumVariableStorageSize,\r
2811 OUT UINT64 *RemainingVariableStorageSize,\r
2812 OUT UINT64 *MaximumVariableSize\r
2813 )\r
2814{\r
2815 VARIABLE_HEADER *Variable;\r
2816 VARIABLE_HEADER *NextVariable;\r
2817 UINT64 VariableSize;\r
2818 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
2819 UINT64 CommonVariableTotalSize;\r
2820 UINT64 HwErrVariableTotalSize;\r
2821\r
2822 CommonVariableTotalSize = 0;\r
2823 HwErrVariableTotalSize = 0;\r
2824\r
2825 if(MaximumVariableStorageSize == NULL || RemainingVariableStorageSize == NULL || MaximumVariableSize == NULL || Attributes == 0) {\r
2826 return EFI_INVALID_PARAMETER;\r
2827 }\r
2828\r
2829 if((Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == 0) {\r
2830 //\r
2831 // Make sure the Attributes combination is supported by the platform.\r
2832 //\r
2d3fb919 2833 return EFI_UNSUPPORTED;\r
0c18794e 2834 } else if ((Attributes & (EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_BOOTSERVICE_ACCESS)) == EFI_VARIABLE_RUNTIME_ACCESS) {\r
2835 //\r
2836 // Make sure if runtime bit is set, boot service bit is set also.\r
2837 //\r
2838 return EFI_INVALID_PARAMETER;\r
2839 } else if (AtRuntime () && ((Attributes & EFI_VARIABLE_RUNTIME_ACCESS) == 0)) {\r
2840 //\r
2841 // Make sure RT Attribute is set if we are in Runtime phase.\r
2842 //\r
2843 return EFI_INVALID_PARAMETER;\r
2844 } else if ((Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
2845 //\r
2846 // Make sure Hw Attribute is set with NV.\r
2847 //\r
2848 return EFI_INVALID_PARAMETER;\r
2849 }\r
2850\r
2851 AcquireLockOnlyAtBootTime(&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2852\r
2853 if((Attributes & EFI_VARIABLE_NON_VOLATILE) == 0) {\r
2854 //\r
2855 // Query is Volatile related.\r
2856 //\r
2857 VariableStoreHeader = (VARIABLE_STORE_HEADER *) ((UINTN) mVariableModuleGlobal->VariableGlobal.VolatileVariableBase);\r
2858 } else {\r
2859 //\r
2860 // Query is Non-Volatile related.\r
2861 //\r
2862 VariableStoreHeader = mNvVariableCache;\r
2863 }\r
2864\r
2865 //\r
2866 // Now let's fill *MaximumVariableStorageSize *RemainingVariableStorageSize\r
2867 // with the storage size (excluding the storage header size).\r
2868 //\r
2869 *MaximumVariableStorageSize = VariableStoreHeader->Size - sizeof (VARIABLE_STORE_HEADER);\r
2870\r
2871 //\r
2872 // Harware error record variable needs larger size.\r
2873 //\r
2874 if ((Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
2875 *MaximumVariableStorageSize = PcdGet32 (PcdHwErrStorageSize);\r
2876 *MaximumVariableSize = PcdGet32 (PcdMaxHardwareErrorVariableSize) - sizeof (VARIABLE_HEADER);\r
2877 } else {\r
2878 if ((Attributes & EFI_VARIABLE_NON_VOLATILE) != 0) {\r
2879 ASSERT (PcdGet32 (PcdHwErrStorageSize) < VariableStoreHeader->Size);\r
2880 *MaximumVariableStorageSize = VariableStoreHeader->Size - sizeof (VARIABLE_STORE_HEADER) - PcdGet32 (PcdHwErrStorageSize);\r
2881 }\r
2882\r
2883 //\r
2884 // Let *MaximumVariableSize be PcdGet32 (PcdMaxVariableSize) with the exception of the variable header size.\r
2885 //\r
2886 *MaximumVariableSize = PcdGet32 (PcdMaxVariableSize) - sizeof (VARIABLE_HEADER);\r
2887 }\r
2888\r
2889 //\r
2890 // Point to the starting address of the variables.\r
2891 //\r
2892 Variable = GetStartPointer (VariableStoreHeader);\r
2893\r
2894 //\r
2895 // Now walk through the related variable store.\r
2896 //\r
2897 while ((Variable < GetEndPointer (VariableStoreHeader)) && IsValidVariableHeader (Variable)) {\r
2898 NextVariable = GetNextVariablePtr (Variable);\r
2899 VariableSize = (UINT64) (UINTN) NextVariable - (UINT64) (UINTN) Variable;\r
2900\r
2901 if (AtRuntime ()) {\r
2902 //\r
2903 // We don't take the state of the variables in mind\r
2904 // when calculating RemainingVariableStorageSize,\r
2905 // since the space occupied by variables not marked with\r
2906 // VAR_ADDED is not allowed to be reclaimed in Runtime.\r
2907 //\r
2908 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
2909 HwErrVariableTotalSize += VariableSize;\r
2910 } else {\r
2911 CommonVariableTotalSize += VariableSize;\r
2912 }\r
2913 } else {\r
2914 //\r
2915 // Only care about Variables with State VAR_ADDED, because\r
2916 // the space not marked as VAR_ADDED is reclaimable now.\r
2917 //\r
2918 if (Variable->State == VAR_ADDED) {\r
2919 if ((Variable->Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD) {\r
2920 HwErrVariableTotalSize += VariableSize;\r
2921 } else {\r
2922 CommonVariableTotalSize += VariableSize;\r
2923 }\r
2924 }\r
2925 }\r
2926\r
2927 //\r
2928 // Go to the next one.\r
2929 //\r
2930 Variable = NextVariable;\r
2931 }\r
2932\r
2933 if ((Attributes & EFI_VARIABLE_HARDWARE_ERROR_RECORD) == EFI_VARIABLE_HARDWARE_ERROR_RECORD){\r
2934 *RemainingVariableStorageSize = *MaximumVariableStorageSize - HwErrVariableTotalSize;\r
2935 }else {\r
2936 *RemainingVariableStorageSize = *MaximumVariableStorageSize - CommonVariableTotalSize;\r
2937 }\r
2938\r
2939 if (*RemainingVariableStorageSize < sizeof (VARIABLE_HEADER)) {\r
2940 *MaximumVariableSize = 0;\r
2941 } else if ((*RemainingVariableStorageSize - sizeof (VARIABLE_HEADER)) < *MaximumVariableSize) {\r
2942 *MaximumVariableSize = *RemainingVariableStorageSize - sizeof (VARIABLE_HEADER);\r
2943 }\r
2944\r
2945 ReleaseLockOnlyAtBootTime (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock);\r
2946 return EFI_SUCCESS;\r
2947}\r
2948\r
2949\r
2950/**\r
2951 This function reclaims variable storage if free size is below the threshold.\r
2d3fb919 2952\r
876ac395 2953 Caution: This function may be invoked at SMM mode.\r
2954 Care must be taken to make sure not security issue.\r
dc204d5a 2955\r
0c18794e 2956**/\r
2957VOID\r
2958ReclaimForOS(\r
2959 VOID\r
2960 )\r
2961{\r
2962 EFI_STATUS Status;\r
2963 UINTN CommonVariableSpace;\r
2964 UINTN RemainingCommonVariableSpace;\r
2965 UINTN RemainingHwErrVariableSpace;\r
2966\r
2d3fb919 2967 Status = EFI_SUCCESS;\r
0c18794e 2968\r
2969 CommonVariableSpace = ((VARIABLE_STORE_HEADER *) ((UINTN) (mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase)))->Size - sizeof (VARIABLE_STORE_HEADER) - PcdGet32(PcdHwErrStorageSize); //Allowable max size of common variable storage space\r
2970\r
2971 RemainingCommonVariableSpace = CommonVariableSpace - mVariableModuleGlobal->CommonVariableTotalSize;\r
2972\r
2973 RemainingHwErrVariableSpace = PcdGet32 (PcdHwErrStorageSize) - mVariableModuleGlobal->HwErrVariableTotalSize;\r
2974 //\r
2975 // Check if the free area is blow a threshold.\r
2976 //\r
2977 if ((RemainingCommonVariableSpace < PcdGet32 (PcdMaxVariableSize))\r
2d3fb919 2978 || ((PcdGet32 (PcdHwErrStorageSize) != 0) &&\r
0c18794e 2979 (RemainingHwErrVariableSpace < PcdGet32 (PcdMaxHardwareErrorVariableSize)))){\r
2980 Status = Reclaim (\r
2981 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
2982 &mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
2983 FALSE,\r
335e2681 2984 NULL,\r
83758cdc 2985 FALSE,\r
335e2681 2986 FALSE\r
0c18794e 2987 );\r
2988 ASSERT_EFI_ERROR (Status);\r
2989 }\r
2990}\r
2991\r
335e2681
SZ
2992/**\r
2993 Flush the HOB variable to flash.\r
2994\r
2995 @param[in] VariableName Name of variable has been updated or deleted.\r
2996 @param[in] VendorGuid Guid of variable has been updated or deleted.\r
2997\r
2998**/\r
2999VOID\r
3000FlushHobVariableToFlash (\r
3001 IN CHAR16 *VariableName,\r
3002 IN EFI_GUID *VendorGuid\r
3003 )\r
3004{\r
3005 EFI_STATUS Status;\r
3006 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
3007 VARIABLE_HEADER *Variable;\r
3008 VOID *VariableData;\r
3009 BOOLEAN ErrorFlag;\r
3010\r
3011 ErrorFlag = FALSE;\r
3012\r
3013 //\r
3014 // Flush the HOB variable to flash.\r
3015 //\r
3016 if (mVariableModuleGlobal->VariableGlobal.HobVariableBase != 0) {\r
3017 VariableStoreHeader = (VARIABLE_STORE_HEADER *) (UINTN) mVariableModuleGlobal->VariableGlobal.HobVariableBase;\r
3018 //\r
3019 // Set HobVariableBase to 0, it can avoid SetVariable to call back.\r
3020 //\r
3021 mVariableModuleGlobal->VariableGlobal.HobVariableBase = 0;\r
3022 for ( Variable = GetStartPointer (VariableStoreHeader)\r
3023 ; (Variable < GetEndPointer (VariableStoreHeader) && IsValidVariableHeader (Variable))\r
3024 ; Variable = GetNextVariablePtr (Variable)\r
3025 ) {\r
3026 if (Variable->State != VAR_ADDED) {\r
3027 //\r
3028 // The HOB variable has been set to DELETED state in local.\r
3029 //\r
3030 continue;\r
3031 }\r
3032 ASSERT ((Variable->Attributes & EFI_VARIABLE_NON_VOLATILE) != 0);\r
3033 if (VendorGuid == NULL || VariableName == NULL ||\r
3034 !CompareGuid (VendorGuid, &Variable->VendorGuid) ||\r
3035 StrCmp (VariableName, GetVariableNamePtr (Variable)) != 0) {\r
3036 VariableData = GetVariableDataPtr (Variable);\r
3037 Status = VariableServiceSetVariable (\r
3038 GetVariableNamePtr (Variable),\r
3039 &Variable->VendorGuid,\r
3040 Variable->Attributes,\r
3041 Variable->DataSize,\r
3042 VariableData\r
3043 );\r
3044 DEBUG ((EFI_D_INFO, "Variable driver flush the HOB variable to flash: %g %s %r\n", &Variable->VendorGuid, GetVariableNamePtr (Variable), Status));\r
3045 } else {\r
3046 //\r
3047 // The updated or deleted variable is matched with the HOB variable.\r
3048 // Don't break here because we will try to set other HOB variables\r
3049 // since this variable could be set successfully.\r
3050 //\r
3051 Status = EFI_SUCCESS;\r
3052 }\r
3053 if (!EFI_ERROR (Status)) {\r
3054 //\r
3055 // If set variable successful, or the updated or deleted variable is matched with the HOB variable,\r
3056 // set the HOB variable to DELETED state in local.\r
3057 //\r
3058 DEBUG ((EFI_D_INFO, "Variable driver set the HOB variable to DELETED state in local: %g %s\n", &Variable->VendorGuid, GetVariableNamePtr (Variable)));\r
3059 Variable->State &= VAR_DELETED;\r
3060 } else {\r
3061 ErrorFlag = TRUE;\r
3062 }\r
3063 }\r
3064 if (ErrorFlag) {\r
3065 //\r
3066 // We still have HOB variable(s) not flushed in flash.\r
3067 //\r
3068 mVariableModuleGlobal->VariableGlobal.HobVariableBase = (EFI_PHYSICAL_ADDRESS) (UINTN) VariableStoreHeader;\r
3069 } else {\r
3070 //\r
3071 // All HOB variables have been flushed in flash.\r
3072 //\r
3073 DEBUG ((EFI_D_INFO, "Variable driver: all HOB variables have been flushed in flash.\n"));\r
3074 if (!AtRuntime ()) {\r
3075 FreePool ((VOID *) VariableStoreHeader);\r
3076 }\r
3077 }\r
3078 }\r
3079\r
3080}\r
0c18794e 3081\r
3082/**\r
3083 Initializes variable write service after FVB was ready.\r
3084\r
3085 @retval EFI_SUCCESS Function successfully executed.\r
3086 @retval Others Fail to initialize the variable service.\r
3087\r
3088**/\r
3089EFI_STATUS\r
3090VariableWriteServiceInitialize (\r
3091 VOID\r
3092 )\r
3093{\r
3094 EFI_STATUS Status;\r
3095 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
3096 UINTN Index;\r
3097 UINT8 Data;\r
3098 EFI_PHYSICAL_ADDRESS VariableStoreBase;\r
0c18794e 3099\r
3100 VariableStoreBase = mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase;\r
3101 VariableStoreHeader = (VARIABLE_STORE_HEADER *)(UINTN)VariableStoreBase;\r
2d3fb919 3102\r
0c18794e 3103 //\r
3104 // Check if the free area is really free.\r
3105 //\r
9a000b46 3106 for (Index = mVariableModuleGlobal->NonVolatileLastVariableOffset; Index < VariableStoreHeader->Size; Index++) {\r
0c18794e 3107 Data = ((UINT8 *) mNvVariableCache)[Index];\r
3108 if (Data != 0xff) {\r
3109 //\r
3110 // There must be something wrong in variable store, do reclaim operation.\r
3111 //\r
3112 Status = Reclaim (\r
3113 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase,\r
3114 &mVariableModuleGlobal->NonVolatileLastVariableOffset,\r
3115 FALSE,\r
335e2681 3116 NULL,\r
83758cdc 3117 FALSE,\r
335e2681 3118 TRUE\r
0c18794e 3119 );\r
3120 if (EFI_ERROR (Status)) {\r
3121 return Status;\r
3122 }\r
3123 break;\r
3124 }\r
3125 }\r
3126\r
335e2681 3127 FlushHobVariableToFlash (NULL, NULL);\r
9a000b46 3128\r
0c18794e 3129 //\r
3130 // Authenticated variable initialize.\r
3131 //\r
3132 Status = AutenticatedVariableServiceInitialize ();\r
3133\r
3134 return Status;\r
3135}\r
3136\r
3137\r
3138/**\r
3139 Initializes variable store area for non-volatile and volatile variable.\r
3140\r
3141 @retval EFI_SUCCESS Function successfully executed.\r
3142 @retval EFI_OUT_OF_RESOURCES Fail to allocate enough memory resource.\r
3143\r
3144**/\r
3145EFI_STATUS\r
3146VariableCommonInitialize (\r
3147 VOID\r
3148 )\r
3149{\r
3150 EFI_STATUS Status;\r
3151 VARIABLE_STORE_HEADER *VolatileVariableStore;\r
3152 VARIABLE_STORE_HEADER *VariableStoreHeader;\r
3153 VARIABLE_HEADER *NextVariable;\r
3154 EFI_PHYSICAL_ADDRESS TempVariableStoreHeader;\r
3155 EFI_PHYSICAL_ADDRESS VariableStoreBase;\r
3156 UINT64 VariableStoreLength;\r
3157 UINTN ScratchSize;\r
3158 UINTN VariableSize;\r
9a000b46 3159 EFI_HOB_GUID_TYPE *GuidHob;\r
0c18794e 3160\r
3161 //\r
3162 // Allocate runtime memory for variable driver global structure.\r
3163 //\r
3164 mVariableModuleGlobal = AllocateRuntimeZeroPool (sizeof (VARIABLE_MODULE_GLOBAL));\r
3165 if (mVariableModuleGlobal == NULL) {\r
3166 return EFI_OUT_OF_RESOURCES;\r
3167 }\r
3168\r
3169 InitializeLock (&mVariableModuleGlobal->VariableGlobal.VariableServicesLock, TPL_NOTIFY);\r
3170\r
3171 //\r
3172 // Note that in EdkII variable driver implementation, Hardware Error Record type variable\r
3173 // is stored with common variable in the same NV region. So the platform integrator should\r
2d3fb919 3174 // ensure that the value of PcdHwErrStorageSize is less than or equal to the value of\r
0c18794e 3175 // PcdFlashNvStorageVariableSize.\r
3176 //\r
3177 ASSERT (PcdGet32 (PcdHwErrStorageSize) <= PcdGet32 (PcdFlashNvStorageVariableSize));\r
3178\r
9a000b46
RN
3179 //\r
3180 // Get HOB variable store.\r
3181 //\r
3182 GuidHob = GetFirstGuidHob (&gEfiAuthenticatedVariableGuid);\r
3183 if (GuidHob != NULL) {\r
3184 VariableStoreHeader = GET_GUID_HOB_DATA (GuidHob);\r
335e2681 3185 VariableStoreLength = (UINT64) (GuidHob->Header.HobLength - sizeof (EFI_HOB_GUID_TYPE));\r
9a000b46 3186 if (GetVariableStoreStatus (VariableStoreHeader) == EfiValid) {\r
335e2681
SZ
3187 mVariableModuleGlobal->VariableGlobal.HobVariableBase = (EFI_PHYSICAL_ADDRESS) (UINTN) AllocateRuntimeCopyPool ((UINTN) VariableStoreLength, (VOID *) VariableStoreHeader);\r
3188 if (mVariableModuleGlobal->VariableGlobal.HobVariableBase == 0) {\r
3189 return EFI_OUT_OF_RESOURCES;\r
3190 }\r
9a000b46
RN
3191 } else {\r
3192 DEBUG ((EFI_D_ERROR, "HOB Variable Store header is corrupted!\n"));\r
3193 }\r
3194 }\r
3195\r
0c18794e 3196 //\r
3197 // Allocate memory for volatile variable store, note that there is a scratch space to store scratch data.\r
3198 //\r
3199 ScratchSize = MAX (PcdGet32 (PcdMaxVariableSize), PcdGet32 (PcdMaxHardwareErrorVariableSize));\r
3200 VolatileVariableStore = AllocateRuntimePool (PcdGet32 (PcdVariableStoreSize) + ScratchSize);\r
3201 if (VolatileVariableStore == NULL) {\r
3202 FreePool (mVariableModuleGlobal);\r
3203 return EFI_OUT_OF_RESOURCES;\r
3204 }\r
3205\r
3206 SetMem (VolatileVariableStore, PcdGet32 (PcdVariableStoreSize) + ScratchSize, 0xff);\r
3207\r
3208 //\r
3209 // Initialize Variable Specific Data.\r
3210 //\r
3211 mVariableModuleGlobal->VariableGlobal.VolatileVariableBase = (EFI_PHYSICAL_ADDRESS) (UINTN) VolatileVariableStore;\r
3212 mVariableModuleGlobal->VolatileLastVariableOffset = (UINTN) GetStartPointer (VolatileVariableStore) - (UINTN) VolatileVariableStore;\r
3213 mVariableModuleGlobal->FvbInstance = NULL;\r
3214\r
3215 CopyGuid (&VolatileVariableStore->Signature, &gEfiAuthenticatedVariableGuid);\r
3216 VolatileVariableStore->Size = PcdGet32 (PcdVariableStoreSize);\r
3217 VolatileVariableStore->Format = VARIABLE_STORE_FORMATTED;\r
3218 VolatileVariableStore->State = VARIABLE_STORE_HEALTHY;\r
3219 VolatileVariableStore->Reserved = 0;\r
3220 VolatileVariableStore->Reserved1 = 0;\r
3221\r
3222 //\r
9a000b46 3223 // Get non-volatile variable store.\r
0c18794e 3224 //\r
3225\r
3226 TempVariableStoreHeader = (EFI_PHYSICAL_ADDRESS) PcdGet64 (PcdFlashNvStorageVariableBase64);\r
3227 if (TempVariableStoreHeader == 0) {\r
3228 TempVariableStoreHeader = (EFI_PHYSICAL_ADDRESS) PcdGet32 (PcdFlashNvStorageVariableBase);\r
3229 }\r
4d832aab 3230 \r
3231 //\r
3232 // Check if the Firmware Volume is not corrupted\r
3233 //\r
3234 if ((((EFI_FIRMWARE_VOLUME_HEADER *)(UINTN)(TempVariableStoreHeader))->Signature != EFI_FVH_SIGNATURE) ||\r
3235 (!CompareGuid (&gEfiSystemNvDataFvGuid, &((EFI_FIRMWARE_VOLUME_HEADER *)(UINTN)(TempVariableStoreHeader))->FileSystemGuid))) {\r
3236 Status = EFI_VOLUME_CORRUPTED;\r
3237 DEBUG ((EFI_D_ERROR, "Firmware Volume for Variable Store is corrupted\n"));\r
3238 goto Done;\r
3239 }\r
3240\r
0c18794e 3241 VariableStoreBase = TempVariableStoreHeader + \\r
3242 (((EFI_FIRMWARE_VOLUME_HEADER *)(UINTN)(TempVariableStoreHeader)) -> HeaderLength);\r
3243 VariableStoreLength = (UINT64) PcdGet32 (PcdFlashNvStorageVariableSize) - \\r
3244 (((EFI_FIRMWARE_VOLUME_HEADER *)(UINTN)(TempVariableStoreHeader)) -> HeaderLength);\r
3245\r
3246 mVariableModuleGlobal->VariableGlobal.NonVolatileVariableBase = VariableStoreBase;\r
3247 VariableStoreHeader = (VARIABLE_STORE_HEADER *)(UINTN)VariableStoreBase;\r
3248 if (GetVariableStoreStatus (VariableStoreHeader) != EfiValid) {\r
3249 Status = EFI_VOLUME_CORRUPTED;\r
3250 DEBUG((EFI_D_INFO, "Variable Store header is corrupted\n"));\r
3251 goto Done;\r
2d3fb919 3252 }\r
0c18794e 3253 ASSERT(VariableStoreHeader->Size == VariableStoreLength);\r
2d3fb919 3254\r
3588bb35
SZ
3255 //\r
3256 // The max variable or hardware error variable size should be < variable store size.\r
3257 //\r
3258 ASSERT(MAX (PcdGet32 (PcdMaxVariableSize), PcdGet32 (PcdMaxHardwareErrorVariableSize)) < VariableStoreLength);\r
3259\r
0c18794e 3260 //\r
3261 // Parse non-volatile variable data and get last variable offset.\r
3262 //\r
3263 NextVariable = GetStartPointer ((VARIABLE_STORE_HEADER *)(UINTN)VariableStoreBase);\r
3264 while (IsValidVariableHeader (NextVariable)) {\r
3265 VariableSize = NextVariable->NameSize + NextVariable->DataSize + sizeof (VARIABLE_HEADER);\r
3266 if ((NextVariable->Attributes & (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) == (EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_HARDWARE_ERROR_RECORD)) {\r
3267 mVariableModuleGlobal->HwErrVariableTotalSize += HEADER_ALIGN (VariableSize);\r
3268 } else {\r
3269 mVariableModuleGlobal->CommonVariableTotalSize += HEADER_ALIGN (VariableSize);\r
3270 }\r
3271\r
3272 NextVariable = GetNextVariablePtr (NextVariable);\r
3273 }\r
3274\r
3275 mVariableModuleGlobal->NonVolatileLastVariableOffset = (UINTN) NextVariable - (UINTN) VariableStoreBase;\r
2d3fb919 3276\r
0c18794e 3277 //\r
3278 // Allocate runtime memory used for a memory copy of the FLASH region.\r
3279 // Keep the memory and the FLASH in sync as updates occur\r
3280 //\r
3281 mNvVariableCache = AllocateRuntimeZeroPool ((UINTN)VariableStoreLength);\r
3282 if (mNvVariableCache == NULL) {\r
3283 Status = EFI_OUT_OF_RESOURCES;\r
3284 goto Done;\r
3285 }\r
3286 CopyMem (mNvVariableCache, (CHAR8 *)(UINTN)VariableStoreBase, (UINTN)VariableStoreLength);\r
3287 Status = EFI_SUCCESS;\r
3288\r
3289Done:\r
3290 if (EFI_ERROR (Status)) {\r
3291 FreePool (mVariableModuleGlobal);\r
3292 FreePool (VolatileVariableStore);\r
3293 }\r
3294\r
3295 return Status;\r
3296}\r
3297\r
3298\r
3299/**\r
3300 Get the proper fvb handle and/or fvb protocol by the given Flash address.\r
3301\r
3302 @param[in] Address The Flash address.\r
3303 @param[out] FvbHandle In output, if it is not NULL, it points to the proper FVB handle.\r
3304 @param[out] FvbProtocol In output, if it is not NULL, it points to the proper FVB protocol.\r
3305\r
3306**/\r
3307EFI_STATUS\r
3308GetFvbInfoByAddress (\r
3309 IN EFI_PHYSICAL_ADDRESS Address,\r
3310 OUT EFI_HANDLE *FvbHandle OPTIONAL,\r
3311 OUT EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL **FvbProtocol OPTIONAL\r
3312 )\r
3313{\r
3314 EFI_STATUS Status;\r
3315 EFI_HANDLE *HandleBuffer;\r
3316 UINTN HandleCount;\r
3317 UINTN Index;\r
3318 EFI_PHYSICAL_ADDRESS FvbBaseAddress;\r
3319 EFI_FIRMWARE_VOLUME_BLOCK_PROTOCOL *Fvb;\r
3320 EFI_FIRMWARE_VOLUME_HEADER *FwVolHeader;\r
3321 EFI_FVB_ATTRIBUTES_2 Attributes;\r
2d3fb919 3322\r
0c18794e 3323 //\r
3324 // Get all FVB handles.\r
3325 //\r
3326 Status = GetFvbCountAndBuffer (&HandleCount, &HandleBuffer);\r
3327 if (EFI_ERROR (Status)) {\r
3328 return EFI_NOT_FOUND;\r
3329 }\r
3330\r
3331 //\r
3332 // Get the FVB to access variable store.\r
3333 //\r
3334 Fvb = NULL;\r
3335 for (Index = 0; Index < HandleCount; Index += 1, Status = EFI_NOT_FOUND, Fvb = NULL) {\r
3336 Status = GetFvbByHandle (HandleBuffer[Index], &Fvb);\r
3337 if (EFI_ERROR (Status)) {\r
3338 Status = EFI_NOT_FOUND;\r
3339 break;\r
3340 }\r
3341\r
3342 //\r
3343 // Ensure this FVB protocol supported Write operation.\r
3344 //\r
3345 Status = Fvb->GetAttributes (Fvb, &Attributes);\r
3346 if (EFI_ERROR (Status) || ((Attributes & EFI_FVB2_WRITE_STATUS) == 0)) {\r
2d3fb919 3347 continue;\r
0c18794e 3348 }\r
2d3fb919 3349\r
0c18794e 3350 //\r
3351 // Compare the address and select the right one.\r
3352 //\r
3353 Status = Fvb->GetPhysicalAddress (Fvb, &FvbBaseAddress);\r
3354 if (EFI_ERROR (Status)) {\r
3355 continue;\r
3356 }\r
3357\r
3358 FwVolHeader = (EFI_FIRMWARE_VOLUME_HEADER *) ((UINTN) FvbBaseAddress);\r
3359 if ((Address >= FvbBaseAddress) && (Address < (FvbBaseAddress + FwVolHeader->FvLength))) {\r
3360 if (FvbHandle != NULL) {\r
3361 *FvbHandle = HandleBuffer[Index];\r
3362 }\r
3363 if (FvbProtocol != NULL) {\r
3364 *FvbProtocol = Fvb;\r
3365 }\r
3366 Status = EFI_SUCCESS;\r
3367 break;\r
3368 }\r
3369 }\r
3370 FreePool (HandleBuffer);\r
3371\r
3372 if (Fvb == NULL) {\r
3373 Status = EFI_NOT_FOUND;\r
3374 }\r
2d3fb919 3375\r
3376 return Status;\r
0c18794e 3377}\r
3378\r