1 /** @file 2 This module produce main entry for BDS phase - BdsEntry. 3 When this module was dispatched by DxeCore, gEfiBdsArchProtocolGuid will be installed 4 which contains interface of BdsEntry. 5 After DxeCore finish DXE phase, gEfiBdsArchProtocolGuid->BdsEntry will be invoked 6 to enter BDS phase. 7 8 Copyright (c) 2004 - 2014, Intel Corporation. All rights reserved.<BR> 9 This program and the accompanying materials 10 are licensed and made available under the terms and conditions of the BSD License 11 which accompanies this distribution. The full text of the license may be found at 12 http://opensource.org/licenses/bsd-license.php 13 14 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS, 15 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED. 16 17 **/ 18 19 #include "Bds.h" 20 #include "Language.h" 21 #include "FrontPage.h" 22 #include "Hotkey.h" 23 #include "HwErrRecSupport.h" 24 25 /// 26 /// BDS arch protocol instance initial value. 27 /// 28 /// Note: Current BDS not directly get the BootMode, DefaultBoot, 29 /// TimeoutDefault, MemoryTestLevel value from the BDS arch protocol. 30 /// Please refer to the library useage of BdsLibGetBootMode, BdsLibGetTimeout 31 /// and PlatformBdsDiagnostics in BdsPlatform.c 32 /// 33 EFI_HANDLE gBdsHandle = NULL; 34 35 EFI_BDS_ARCH_PROTOCOL gBds = { 36 BdsEntry 37 }; 38 39 UINT16 *mBootNext = NULL; 40 41 /// 42 /// The read-only variables defined in UEFI Spec. 43 /// 44 CHAR16 *mReadOnlyVariables[] = { 45 L"PlatformLangCodes", 46 L"LangCodes", 47 L"BootOptionSupport", 48 L"HwErrRecSupport", 49 L"OsIndicationsSupported" 50 }; 51 52 /** 53 54 Install Boot Device Selection Protocol 55 56 @param ImageHandle The image handle. 57 @param SystemTable The system table. 58 59 @retval EFI_SUCEESS BDS has finished initializing. 60 Return the dispatcher and recall BDS.Entry 61 @retval Other Return status from AllocatePool() or gBS->InstallProtocolInterface 62 63 **/ 64 EFI_STATUS 65 EFIAPI 66 BdsInitialize ( 67 IN EFI_HANDLE ImageHandle, 68 IN EFI_SYSTEM_TABLE *SystemTable 69 ) 70 { 71 EFI_STATUS Status; 72 73 // 74 // Install protocol interface 75 // 76 Status = gBS->InstallMultipleProtocolInterfaces ( 77 &gBdsHandle, 78 &gEfiBdsArchProtocolGuid, &gBds, 79 NULL 80 ); 81 ASSERT_EFI_ERROR (Status); 82 83 return Status; 84 } 85 86 87 /** 88 An empty function to pass error checking of CreateEventEx (). 89 90 @param Event Event whose notification function is being invoked. 91 @param Context Pointer to the notification function's context, 92 which is implementation-dependent. 93 94 **/ 95 VOID 96 EFIAPI 97 BdsEmptyCallbackFunction ( 98 IN EFI_EVENT Event, 99 IN VOID *Context 100 ) 101 { 102 } 103 104 /** 105 106 This function attempts to boot for the boot order specified 107 by platform policy. 108 109 **/ 110 VOID 111 BdsBootDeviceSelect ( 112 VOID 113 ) 114 { 115 EFI_STATUS Status; 116 LIST_ENTRY *Link; 117 BDS_COMMON_OPTION *BootOption; 118 UINTN ExitDataSize; 119 CHAR16 *ExitData; 120 UINT16 Timeout; 121 LIST_ENTRY BootLists; 122 CHAR16 Buffer[20]; 123 BOOLEAN BootNextExist; 124 LIST_ENTRY *LinkBootNext; 125 EFI_EVENT ConnectConInEvent; 126 127 // 128 // Got the latest boot option 129 // 130 BootNextExist = FALSE; 131 LinkBootNext = NULL; 132 ConnectConInEvent = NULL; 133 InitializeListHead (&BootLists); 134 135 // 136 // First check the boot next option 137 // 138 ZeroMem (Buffer, sizeof (Buffer)); 139 140 // 141 // Create Event to signal ConIn connection request 142 // 143 if (PcdGetBool (PcdConInConnectOnDemand)) { 144 Status = gBS->CreateEventEx ( 145 EVT_NOTIFY_SIGNAL, 146 TPL_CALLBACK, 147 BdsEmptyCallbackFunction, 148 NULL, 149 &gConnectConInEventGuid, 150 &ConnectConInEvent 151 ); 152 if (EFI_ERROR(Status)) { 153 ConnectConInEvent = NULL; 154 } 155 } 156 157 if (mBootNext != NULL) { 158 // 159 // Indicate we have the boot next variable, so this time 160 // boot will always have this boot option 161 // 162 BootNextExist = TRUE; 163 164 // 165 // Clear the this variable so it's only exist in this time boot 166 // 167 Status = gRT->SetVariable ( 168 L"BootNext", 169 &gEfiGlobalVariableGuid, 170 EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_NON_VOLATILE, 171 0, 172 NULL 173 ); 174 // 175 // Deleting variable with current variable implementation shouldn't fail. 176 // 177 ASSERT_EFI_ERROR (Status); 178 179 // 180 // Add the boot next boot option 181 // 182 UnicodeSPrint (Buffer, sizeof (Buffer), L"Boot%04x", *mBootNext); 183 BootOption = BdsLibVariableToOption (&BootLists, Buffer); 184 185 // 186 // If fail to get boot option from variable, just return and do nothing. 187 // 188 if (BootOption == NULL) { 189 return; 190 } 191 192 BootOption->BootCurrent = *mBootNext; 193 } 194 // 195 // Parse the boot order to get boot option 196 // 197 BdsLibBuildOptionFromVar (&BootLists, L"BootOrder"); 198 199 // 200 // When we didn't have chance to build boot option variables in the first 201 // full configuration boot (e.g.: Reset in the first page or in Device Manager), 202 // we have no boot options in the following mini configuration boot. 203 // Give the last chance to enumerate the boot options. 204 // 205 if (IsListEmpty (&BootLists)) { 206 BdsLibEnumerateAllBootOption (&BootLists); 207 } 208 209 Link = BootLists.ForwardLink; 210 211 // 212 // Parameter check, make sure the loop will be valid 213 // 214 if (Link == NULL) { 215 return ; 216 } 217 // 218 // Here we make the boot in a loop, every boot success will 219 // return to the front page 220 // 221 for (;;) { 222 // 223 // Check the boot option list first 224 // 225 if (Link == &BootLists) { 226 // 227 // When LazyConIn enabled, signal connect ConIn event before enter UI 228 // 229 if (PcdGetBool (PcdConInConnectOnDemand) && ConnectConInEvent != NULL) { 230 gBS->SignalEvent (ConnectConInEvent); 231 } 232 233 // 234 // There are two ways to enter here: 235 // 1. There is no active boot option, give user chance to 236 // add new boot option 237 // 2. All the active boot option processed, and there is no 238 // one is success to boot, then we back here to allow user 239 // add new active boot option 240 // 241 Timeout = 0xffff; 242 PlatformBdsEnterFrontPage (Timeout, FALSE); 243 InitializeListHead (&BootLists); 244 BdsLibBuildOptionFromVar (&BootLists, L"BootOrder"); 245 Link = BootLists.ForwardLink; 246 continue; 247 } 248 // 249 // Get the boot option from the link list 250 // 251 BootOption = CR (Link, BDS_COMMON_OPTION, Link, BDS_LOAD_OPTION_SIGNATURE); 252 253 // 254 // According to EFI Specification, if a load option is not marked 255 // as LOAD_OPTION_ACTIVE, the boot manager will not automatically 256 // load the option. 257 // 258 if (!IS_LOAD_OPTION_TYPE (BootOption->Attribute, LOAD_OPTION_ACTIVE)) { 259 // 260 // skip the header of the link list, because it has no boot option 261 // 262 Link = Link->ForwardLink; 263 continue; 264 } 265 // 266 // Make sure the boot option device path connected, 267 // but ignore the BBS device path 268 // 269 if (DevicePathType (BootOption->DevicePath) != BBS_DEVICE_PATH) { 270 // 271 // Notes: the internal shell can not been connected with device path 272 // so we do not check the status here 273 // 274 BdsLibConnectDevicePath (BootOption->DevicePath); 275 } 276 277 // 278 // Restore to original mode before launching boot option. 279 // 280 BdsSetConsoleMode (FALSE); 281 282 // 283 // All the driver options should have been processed since 284 // now boot will be performed. 285 // 286 Status = BdsLibBootViaBootOption (BootOption, BootOption->DevicePath, &ExitDataSize, &ExitData); 287 if (Status != EFI_SUCCESS) { 288 // 289 // Call platform action to indicate the boot fail 290 // 291 BootOption->StatusString = GetStringById (STRING_TOKEN (STR_BOOT_FAILED)); 292 PlatformBdsBootFail (BootOption, Status, ExitData, ExitDataSize); 293 294 // 295 // Check the next boot option 296 // 297 Link = Link->ForwardLink; 298 299 } else { 300 // 301 // Call platform action to indicate the boot success 302 // 303 BootOption->StatusString = GetStringById (STRING_TOKEN (STR_BOOT_SUCCEEDED)); 304 PlatformBdsBootSuccess (BootOption); 305 306 // 307 // Boot success, then stop process the boot order, and 308 // present the boot manager menu, front page 309 // 310 311 // 312 // When LazyConIn enabled, signal connect ConIn Event before enter UI 313 // 314 if (PcdGetBool (PcdConInConnectOnDemand) && ConnectConInEvent != NULL) { 315 gBS->SignalEvent (ConnectConInEvent); 316 } 317 318 Timeout = 0xffff; 319 PlatformBdsEnterFrontPage (Timeout, FALSE); 320 321 // 322 // Rescan the boot option list, avoid potential risk of the boot 323 // option change in front page 324 // 325 if (BootNextExist) { 326 LinkBootNext = BootLists.ForwardLink; 327 } 328 329 InitializeListHead (&BootLists); 330 if (LinkBootNext != NULL) { 331 // 332 // Reserve the boot next option 333 // 334 InsertTailList (&BootLists, LinkBootNext); 335 } 336 337 BdsLibBuildOptionFromVar (&BootLists, L"BootOrder"); 338 Link = BootLists.ForwardLink; 339 } 340 } 341 342 } 343 344 /** 345 346 Validate input console variable data. 347 348 If found the device path is not a valid device path, remove the variable. 349 350 @param VariableName Input console variable name. 351 352 **/ 353 VOID 354 BdsFormalizeConsoleVariable ( 355 IN CHAR16 *VariableName 356 ) 357 { 358 EFI_DEVICE_PATH_PROTOCOL *DevicePath; 359 UINTN VariableSize; 360 EFI_STATUS Status; 361 362 DevicePath = BdsLibGetVariableAndSize ( 363 VariableName, 364 &gEfiGlobalVariableGuid, 365 &VariableSize 366 ); 367 if ((DevicePath != NULL) && !IsDevicePathValid (DevicePath, VariableSize)) { 368 Status = gRT->SetVariable ( 369 VariableName, 370 &gEfiGlobalVariableGuid, 371 EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_NON_VOLATILE, 372 0, 373 NULL 374 ); 375 // 376 // Deleting variable with current variable implementation shouldn't fail. 377 // 378 ASSERT_EFI_ERROR (Status); 379 } 380 } 381 382 /** 383 384 Formalize Bds global variables. 385 386 1. For ConIn/ConOut/ConErr, if found the device path is not a valid device path, remove the variable. 387 2. For OsIndicationsSupported, Create a BS/RT/UINT64 variable to report caps 388 3. Delete OsIndications variable if it is not NV/BS/RT UINT64 389 Item 3 is used to solve case when OS corrupts OsIndications. Here simply delete this NV variable. 390 391 **/ 392 VOID 393 BdsFormalizeEfiGlobalVariable ( 394 VOID 395 ) 396 { 397 EFI_STATUS Status; 398 UINT64 OsIndicationSupport; 399 UINT64 OsIndication; 400 UINTN DataSize; 401 UINT32 Attributes; 402 403 // 404 // Validate Console variable. 405 // 406 BdsFormalizeConsoleVariable (L"ConIn"); 407 BdsFormalizeConsoleVariable (L"ConOut"); 408 BdsFormalizeConsoleVariable (L"ErrOut"); 409 410 // 411 // OS indicater support variable 412 // 413 OsIndicationSupport = EFI_OS_INDICATIONS_BOOT_TO_FW_UI \ 414 | EFI_OS_INDICATIONS_FMP_CAPSULE_SUPPORTED; 415 416 BdsDxeSetVariableAndReportStatusCodeOnError ( 417 L"OsIndicationsSupported", 418 &gEfiGlobalVariableGuid, 419 EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS, 420 sizeof(UINT64), 421 &OsIndicationSupport 422 ); 423 424 // 425 // If OsIndications is invalid, remove it. 426 // Invalid case 427 // 1. Data size != UINT64 428 // 2. OsIndication value inconsistence 429 // 3. OsIndication attribute inconsistence 430 // 431 OsIndication = 0; 432 Attributes = 0; 433 DataSize = sizeof(UINT64); 434 Status = gRT->GetVariable ( 435 L"OsIndications", 436 &gEfiGlobalVariableGuid, 437 &Attributes, 438 &DataSize, 439 &OsIndication 440 ); 441 442 if (!EFI_ERROR(Status)) { 443 if (DataSize != sizeof(UINT64) || 444 (OsIndication & ~OsIndicationSupport) != 0 || 445 Attributes != (EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_NON_VOLATILE)){ 446 447 DEBUG ((EFI_D_ERROR, "Unformalized OsIndications variable exists. Delete it\n")); 448 Status = gRT->SetVariable ( 449 L"OsIndications", 450 &gEfiGlobalVariableGuid, 451 0, 452 0, 453 NULL 454 ); 455 // 456 // Deleting variable with current variable implementation shouldn't fail. 457 // 458 ASSERT_EFI_ERROR (Status); 459 } 460 } 461 462 } 463 464 /** 465 466 Allocate a block of memory that will contain performance data to OS. 467 468 **/ 469 VOID 470 BdsAllocateMemoryForPerformanceData ( 471 VOID 472 ) 473 { 474 EFI_STATUS Status; 475 EFI_PHYSICAL_ADDRESS AcpiLowMemoryBase; 476 EDKII_VARIABLE_LOCK_PROTOCOL *VariableLock; 477 478 AcpiLowMemoryBase = 0x0FFFFFFFFULL; 479 480 // 481 // Allocate a block of memory that will contain performance data to OS. 482 // 483 Status = gBS->AllocatePages ( 484 AllocateMaxAddress, 485 EfiReservedMemoryType, 486 EFI_SIZE_TO_PAGES (PERF_DATA_MAX_LENGTH), 487 &AcpiLowMemoryBase 488 ); 489 if (!EFI_ERROR (Status)) { 490 // 491 // Save the pointer to variable for use in S3 resume. 492 // 493 BdsDxeSetVariableAndReportStatusCodeOnError ( 494 L"PerfDataMemAddr", 495 &gPerformanceProtocolGuid, 496 EFI_VARIABLE_NON_VOLATILE | EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS, 497 sizeof (EFI_PHYSICAL_ADDRESS), 498 &AcpiLowMemoryBase 499 ); 500 if (EFI_ERROR (Status)) { 501 DEBUG ((EFI_D_ERROR, "[Bds] PerfDataMemAddr (%08x) cannot be saved to NV storage.\n", AcpiLowMemoryBase)); 502 } 503 // 504 // Mark L"PerfDataMemAddr" variable to read-only if the Variable Lock protocol exists 505 // Still lock it even the variable cannot be saved to prevent it's set by 3rd party code. 506 // 507 Status = gBS->LocateProtocol (&gEdkiiVariableLockProtocolGuid, NULL, (VOID **) &VariableLock); 508 if (!EFI_ERROR (Status)) { 509 Status = VariableLock->RequestToLock (VariableLock, L"PerfDataMemAddr", &gPerformanceProtocolGuid); 510 ASSERT_EFI_ERROR (Status); 511 } 512 } 513 } 514 515 /** 516 517 Service routine for BdsInstance->Entry(). Devices are connected, the 518 consoles are initialized, and the boot options are tried. 519 520 @param This Protocol Instance structure. 521 522 **/ 523 VOID 524 EFIAPI 525 BdsEntry ( 526 IN EFI_BDS_ARCH_PROTOCOL *This 527 ) 528 { 529 LIST_ENTRY DriverOptionList; 530 LIST_ENTRY BootOptionList; 531 UINTN BootNextSize; 532 CHAR16 *FirmwareVendor; 533 EFI_STATUS Status; 534 UINT16 BootTimeOut; 535 UINTN Index; 536 EDKII_VARIABLE_LOCK_PROTOCOL *VariableLock; 537 538 // 539 // Insert the performance probe 540 // 541 PERF_END (NULL, "DXE", NULL, 0); 542 PERF_START (NULL, "BDS", NULL, 0); 543 544 PERF_CODE ( 545 BdsAllocateMemoryForPerformanceData (); 546 ); 547 548 // 549 // Initialize the global system boot option and driver option 550 // 551 InitializeListHead (&DriverOptionList); 552 InitializeListHead (&BootOptionList); 553 554 // 555 // Initialize hotkey service 556 // 557 InitializeHotkeyService (); 558 559 // 560 // Fill in FirmwareVendor and FirmwareRevision from PCDs 561 // 562 FirmwareVendor = (CHAR16 *)PcdGetPtr (PcdFirmwareVendor); 563 gST->FirmwareVendor = AllocateRuntimeCopyPool (StrSize (FirmwareVendor), FirmwareVendor); 564 ASSERT (gST->FirmwareVendor != NULL); 565 gST->FirmwareRevision = PcdGet32 (PcdFirmwareRevision); 566 567 // 568 // Fixup Tasble CRC after we updated Firmware Vendor and Revision 569 // 570 gST->Hdr.CRC32 = 0; 571 gBS->CalculateCrc32 ((VOID *)gST, sizeof(EFI_SYSTEM_TABLE), &gST->Hdr.CRC32); 572 573 // 574 // Validate Variable. 575 // 576 BdsFormalizeEfiGlobalVariable(); 577 578 // 579 // Mark the read-only variables if the Variable Lock protocol exists 580 // 581 Status = gBS->LocateProtocol (&gEdkiiVariableLockProtocolGuid, NULL, (VOID **) &VariableLock); 582 DEBUG ((EFI_D_INFO, "[BdsDxe] Locate Variable Lock protocol - %r\n", Status)); 583 if (!EFI_ERROR (Status)) { 584 for (Index = 0; Index < sizeof (mReadOnlyVariables) / sizeof (mReadOnlyVariables[0]); Index++) { 585 Status = VariableLock->RequestToLock (VariableLock, mReadOnlyVariables[Index], &gEfiGlobalVariableGuid); 586 ASSERT_EFI_ERROR (Status); 587 } 588 } 589 590 // 591 // Report Status Code to indicate connecting drivers will happen 592 // 593 REPORT_STATUS_CODE ( 594 EFI_PROGRESS_CODE, 595 (EFI_SOFTWARE_DXE_BS_DRIVER | EFI_SW_DXE_BS_PC_BEGIN_CONNECTING_DRIVERS) 596 ); 597 598 InitializeHwErrRecSupport(); 599 600 // 601 // Initialize L"Timeout" EFI global variable. 602 // 603 BootTimeOut = PcdGet16 (PcdPlatformBootTimeOut); 604 if (BootTimeOut != 0xFFFF) { 605 // 606 // If time out value equal 0xFFFF, no need set to 0xFFFF to variable area because UEFI specification 607 // define same behavior between no value or 0xFFFF value for L"Timeout". 608 // 609 BdsDxeSetVariableAndReportStatusCodeOnError ( 610 L"Timeout", 611 &gEfiGlobalVariableGuid, 612 EFI_VARIABLE_BOOTSERVICE_ACCESS | EFI_VARIABLE_RUNTIME_ACCESS | EFI_VARIABLE_NON_VOLATILE, 613 sizeof (UINT16), 614 &BootTimeOut 615 ); 616 } 617 618 // 619 // bugbug: platform specific code 620 // Initialize the platform specific string and language 621 // 622 InitializeStringSupport (); 623 InitializeLanguage (TRUE); 624 InitializeFrontPage (TRUE); 625 626 // 627 // Do the platform init, can be customized by OEM/IBV 628 // 629 PERF_START (NULL, "PlatformBds", "BDS", 0); 630 PlatformBdsInit (); 631 632 // 633 // Set up the device list based on EFI 1.1 variables 634 // process Driver#### and Load the driver's in the 635 // driver option list 636 // 637 BdsLibBuildOptionFromVar (&DriverOptionList, L"DriverOrder"); 638 if (!IsListEmpty (&DriverOptionList)) { 639 BdsLibLoadDrivers (&DriverOptionList); 640 } 641 // 642 // Check if we have the boot next option 643 // 644 mBootNext = BdsLibGetVariableAndSize ( 645 L"BootNext", 646 &gEfiGlobalVariableGuid, 647 &BootNextSize 648 ); 649 650 // 651 // Setup some platform policy here 652 // 653 PlatformBdsPolicyBehavior (&DriverOptionList, &BootOptionList, BdsProcessCapsules, BdsMemoryTest); 654 PERF_END (NULL, "PlatformBds", "BDS", 0); 655 656 // 657 // BDS select the boot device to load OS 658 // 659 BdsBootDeviceSelect (); 660 661 // 662 // Only assert here since this is the right behavior, we should never 663 // return back to DxeCore. 664 // 665 ASSERT (FALSE); 666 667 return ; 668 } 669 670 671 /** 672 Set the variable and report the error through status code upon failure. 673 674 @param VariableName A Null-terminated string that is the name of the vendor's variable. 675 Each VariableName is unique for each VendorGuid. VariableName must 676 contain 1 or more characters. If VariableName is an empty string, 677 then EFI_INVALID_PARAMETER is returned. 678 @param VendorGuid A unique identifier for the vendor. 679 @param Attributes Attributes bitmask to set for the variable. 680 @param DataSize The size in bytes of the Data buffer. Unless the EFI_VARIABLE_APPEND_WRITE, 681 EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS, or 682 EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS attribute is set, a size of zero 683 causes the variable to be deleted. When the EFI_VARIABLE_APPEND_WRITE attribute is 684 set, then a SetVariable() call with a DataSize of zero will not cause any change to 685 the variable value (the timestamp associated with the variable may be updated however 686 even if no new data value is provided,see the description of the 687 EFI_VARIABLE_AUTHENTICATION_2 descriptor below. In this case the DataSize will not 688 be zero since the EFI_VARIABLE_AUTHENTICATION_2 descriptor will be populated). 689 @param Data The contents for the variable. 690 691 @retval EFI_SUCCESS The firmware has successfully stored the variable and its data as 692 defined by the Attributes. 693 @retval EFI_INVALID_PARAMETER An invalid combination of attribute bits, name, and GUID was supplied, or the 694 DataSize exceeds the maximum allowed. 695 @retval EFI_INVALID_PARAMETER VariableName is an empty string. 696 @retval EFI_OUT_OF_RESOURCES Not enough storage is available to hold the variable and its data. 697 @retval EFI_DEVICE_ERROR The variable could not be retrieved due to a hardware error. 698 @retval EFI_WRITE_PROTECTED The variable in question is read-only. 699 @retval EFI_WRITE_PROTECTED The variable in question cannot be deleted. 700 @retval EFI_SECURITY_VIOLATION The variable could not be written due to EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS 701 or EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACESS being set, but the AuthInfo 702 does NOT pass the validation check carried out by the firmware. 703 704 @retval EFI_NOT_FOUND The variable trying to be updated or deleted was not found. 705 **/ 706 EFI_STATUS 707 BdsDxeSetVariableAndReportStatusCodeOnError ( 708 IN CHAR16 *VariableName, 709 IN EFI_GUID *VendorGuid, 710 IN UINT32 Attributes, 711 IN UINTN DataSize, 712 IN VOID *Data 713 ) 714 { 715 EFI_STATUS Status; 716 EDKII_SET_VARIABLE_STATUS *SetVariableStatus; 717 UINTN NameSize; 718 719 Status = gRT->SetVariable ( 720 VariableName, 721 VendorGuid, 722 Attributes, 723 DataSize, 724 Data 725 ); 726 if (EFI_ERROR (Status)) { 727 NameSize = StrSize (VariableName); 728 SetVariableStatus = AllocatePool (sizeof (EDKII_SET_VARIABLE_STATUS) + NameSize + DataSize); 729 if (SetVariableStatus != NULL) { 730 CopyGuid (&SetVariableStatus->Guid, VendorGuid); 731 SetVariableStatus->NameSize = NameSize; 732 SetVariableStatus->DataSize = DataSize; 733 SetVariableStatus->SetStatus = Status; 734 SetVariableStatus->Attributes = Attributes; 735 CopyMem (SetVariableStatus + 1, VariableName, NameSize); 736 CopyMem (((UINT8 *) (SetVariableStatus + 1)) + NameSize, Data, DataSize); 737 738 REPORT_STATUS_CODE_EX ( 739 EFI_ERROR_CODE, 740 PcdGet32 (PcdErrorCodeSetVariable), 741 0, 742 NULL, 743 &gEdkiiStatusCodeDataTypeVariableGuid, 744 SetVariableStatus, 745 sizeof (EDKII_SET_VARIABLE_STATUS) + NameSize + DataSize 746 ); 747 748 FreePool (SetVariableStatus); 749 } 750 } 751 752 return Status; 753 } 754 755