]> git.proxmox.com Git - mirror_edk2.git/blame - UefiCpuPkg/Universal/Acpi/S3Resume2Pei/S3Resume.c
Remove the useless performance logging code in BootScriptExecutorDxe driver and recor...
[mirror_edk2.git] / UefiCpuPkg / Universal / Acpi / S3Resume2Pei / S3Resume.c
CommitLineData
1f569620 1/** @file\r
2 This module produces the EFI_PEI_S3_RESUME_PPI.\r
3 This module works with StandAloneBootScriptExecutor to S3 resume to OS.\r
4 This module will excute the boot script saved during last boot and after that,\r
5 control is passed to OS waking up handler.\r
6\r
e47459e6 7 Copyright (c) 2006 - 2012, Intel Corporation. All rights reserved.<BR>\r
1f569620 8\r
9 This program and the accompanying materials\r
10 are licensed and made available under the terms and conditions\r
11 of the BSD License which accompanies this distribution. The\r
12 full text of the license may be found at\r
13 http://opensource.org/licenses/bsd-license.php\r
14\r
15 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
16 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
17\r
18**/\r
19\r
20#include <PiPei.h>\r
21\r
22#include <Guid/AcpiS3Context.h>\r
23#include <Guid/BootScriptExecutorVariable.h>\r
24#include <Guid/Performance.h>\r
25#include <Ppi/ReadOnlyVariable2.h>\r
26#include <Ppi/S3Resume2.h>\r
27#include <Ppi/SmmAccess.h>\r
28#include <Ppi/PostBootScriptTable.h>\r
29#include <Ppi/EndOfPeiPhase.h>\r
30\r
31#include <Library/DebugLib.h>\r
32#include <Library/BaseLib.h>\r
33#include <Library/TimerLib.h>\r
34#include <Library/PeimEntryPoint.h>\r
35#include <Library/PeiServicesLib.h>\r
36#include <Library/HobLib.h>\r
37#include <Library/PerformanceLib.h>\r
38#include <Library/PeiServicesTablePointerLib.h>\r
39#include <Library/IoLib.h>\r
40#include <Library/BaseMemoryLib.h>\r
41#include <Library/MemoryAllocationLib.h>\r
42#include <Library/PcdLib.h>\r
43#include <Library/DebugAgentLib.h>\r
44#include <Library/LocalApicLib.h>\r
45#include <Library/ReportStatusCodeLib.h>\r
46#include <Library/PrintLib.h>\r
c56b6566 47#include <Library/HobLib.h>\r
1f569620 48#include <Library/LockBoxLib.h>\r
49#include <IndustryStandard/Acpi.h>\r
50\r
51#pragma pack(1)\r
52typedef union {\r
53 struct {\r
54 UINT32 LimitLow : 16;\r
55 UINT32 BaseLow : 16;\r
56 UINT32 BaseMid : 8;\r
57 UINT32 Type : 4;\r
58 UINT32 System : 1;\r
59 UINT32 Dpl : 2;\r
60 UINT32 Present : 1;\r
61 UINT32 LimitHigh : 4;\r
62 UINT32 Software : 1;\r
63 UINT32 Reserved : 1;\r
64 UINT32 DefaultSize : 1;\r
65 UINT32 Granularity : 1;\r
66 UINT32 BaseHigh : 8;\r
67 } Bits;\r
68 UINT64 Uint64;\r
69} IA32_GDT;\r
70\r
71//\r
72// Page-Map Level-4 Offset (PML4) and\r
73// Page-Directory-Pointer Offset (PDPE) entries 4K & 2MB\r
74//\r
75typedef union {\r
76 struct {\r
77 UINT64 Present:1; // 0 = Not present in memory, 1 = Present in memory\r
78 UINT64 ReadWrite:1; // 0 = Read-Only, 1= Read/Write\r
79 UINT64 UserSupervisor:1; // 0 = Supervisor, 1=User\r
80 UINT64 WriteThrough:1; // 0 = Write-Back caching, 1=Write-Through caching\r
81 UINT64 CacheDisabled:1; // 0 = Cached, 1=Non-Cached\r
82 UINT64 Accessed:1; // 0 = Not accessed, 1 = Accessed (set by CPU)\r
83 UINT64 Reserved:1; // Reserved\r
84 UINT64 MustBeZero:2; // Must Be Zero\r
85 UINT64 Available:3; // Available for use by system software\r
86 UINT64 PageTableBaseAddress:40; // Page Table Base Address\r
87 UINT64 AvabilableHigh:11; // Available for use by system software\r
88 UINT64 Nx:1; // No Execute bit\r
89 } Bits;\r
90 UINT64 Uint64;\r
91} PAGE_MAP_AND_DIRECTORY_POINTER;\r
92\r
93//\r
94// Page Table Entry 2MB\r
95//\r
96typedef union {\r
97 struct {\r
98 UINT64 Present:1; // 0 = Not present in memory, 1 = Present in memory\r
99 UINT64 ReadWrite:1; // 0 = Read-Only, 1= Read/Write\r
100 UINT64 UserSupervisor:1; // 0 = Supervisor, 1=User\r
101 UINT64 WriteThrough:1; // 0 = Write-Back caching, 1=Write-Through caching\r
102 UINT64 CacheDisabled:1; // 0 = Cached, 1=Non-Cached\r
103 UINT64 Accessed:1; // 0 = Not accessed, 1 = Accessed (set by CPU)\r
104 UINT64 Dirty:1; // 0 = Not Dirty, 1 = written by processor on access to page\r
105 UINT64 MustBe1:1; // Must be 1 \r
106 UINT64 Global:1; // 0 = Not global page, 1 = global page TLB not cleared on CR3 write\r
107 UINT64 Available:3; // Available for use by system software\r
108 UINT64 PAT:1; //\r
109 UINT64 MustBeZero:8; // Must be zero;\r
110 UINT64 PageTableBaseAddress:31; // Page Table Base Address\r
111 UINT64 AvabilableHigh:11; // Available for use by system software\r
112 UINT64 Nx:1; // 0 = Execute Code, 1 = No Code Execution\r
113 } Bits;\r
114 UINT64 Uint64;\r
115} PAGE_TABLE_ENTRY;\r
116\r
c56b6566
JY
117//\r
118// Page Table Entry 1GB\r
119//\r
120typedef union {\r
121 struct {\r
122 UINT64 Present:1; // 0 = Not present in memory, 1 = Present in memory\r
123 UINT64 ReadWrite:1; // 0 = Read-Only, 1= Read/Write\r
124 UINT64 UserSupervisor:1; // 0 = Supervisor, 1=User\r
125 UINT64 WriteThrough:1; // 0 = Write-Back caching, 1=Write-Through caching\r
126 UINT64 CacheDisabled:1; // 0 = Cached, 1=Non-Cached\r
127 UINT64 Accessed:1; // 0 = Not accessed, 1 = Accessed (set by CPU)\r
128 UINT64 Dirty:1; // 0 = Not Dirty, 1 = written by processor on access to page\r
129 UINT64 MustBe1:1; // Must be 1 \r
130 UINT64 Global:1; // 0 = Not global page, 1 = global page TLB not cleared on CR3 write\r
131 UINT64 Available:3; // Available for use by system software\r
132 UINT64 PAT:1; //\r
133 UINT64 MustBeZero:17; // Must be zero;\r
134 UINT64 PageTableBaseAddress:22; // Page Table Base Address\r
135 UINT64 AvabilableHigh:11; // Available for use by system software\r
136 UINT64 Nx:1; // 0 = Execute Code, 1 = No Code Execution\r
137 } Bits;\r
138 UINT64 Uint64;\r
139} PAGE_TABLE_1G_ENTRY;\r
140\r
1f569620 141#pragma pack()\r
142\r
143//\r
144// Function prototypes\r
145//\r
146/**\r
147 a ASM function to transfer control to OS.\r
148 \r
149 @param S3WakingVector The S3 waking up vector saved in ACPI Facs table\r
150 @param AcpiLowMemoryBase a buffer under 1M which could be used during the transfer \r
151**/\r
152typedef\r
153VOID\r
154(EFIAPI *ASM_TRANSFER_CONTROL) (\r
155 IN UINT32 S3WakingVector,\r
156 IN UINT32 AcpiLowMemoryBase\r
157 );\r
158\r
159/**\r
160 Restores the platform to its preboot configuration for an S3 resume and\r
161 jumps to the OS waking vector.\r
162\r
163 This function will restore the platform to its pre-boot configuration that was\r
164 pre-stored in the boot script table and transfer control to OS waking vector.\r
165 Upon invocation, this function is responsible for locating the following\r
166 information before jumping to OS waking vector:\r
167 - ACPI tables\r
168 - boot script table\r
169 - any other information that it needs\r
170\r
171 The S3RestoreConfig() function then executes the pre-stored boot script table\r
172 and transitions the platform to the pre-boot state. The boot script is recorded\r
173 during regular boot using the EFI_S3_SAVE_STATE_PROTOCOL.Write() and\r
174 EFI_S3_SMM_SAVE_STATE_PROTOCOL.Write() functions. Finally, this function\r
175 transfers control to the OS waking vector. If the OS supports only a real-mode\r
176 waking vector, this function will switch from flat mode to real mode before\r
177 jumping to the waking vector. If all platform pre-boot configurations are\r
178 successfully restored and all other necessary information is ready, this\r
179 function will never return and instead will directly jump to the OS waking\r
180 vector. If this function returns, it indicates that the attempt to resume\r
181 from the ACPI S3 sleep state failed.\r
182\r
183 @param[in] This Pointer to this instance of the PEI_S3_RESUME_PPI\r
184\r
185 @retval EFI_ABORTED Execution of the S3 resume boot script table failed.\r
186 @retval EFI_NOT_FOUND Some necessary information that is used for the S3\r
187 resume boot path could not be located.\r
188\r
189**/\r
190EFI_STATUS\r
191EFIAPI\r
192S3RestoreConfig2 (\r
193 IN EFI_PEI_S3_RESUME2_PPI *This\r
194 );\r
195\r
196//\r
197// Globals\r
198//\r
199EFI_PEI_S3_RESUME2_PPI mS3ResumePpi = { S3RestoreConfig2 };\r
200\r
201EFI_PEI_PPI_DESCRIPTOR mPpiList = {\r
202 (EFI_PEI_PPI_DESCRIPTOR_PPI | EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST),\r
203 &gEfiPeiS3Resume2PpiGuid,\r
204 &mS3ResumePpi\r
205};\r
206\r
207EFI_PEI_PPI_DESCRIPTOR mPpiListPostScriptTable = {\r
208 (EFI_PEI_PPI_DESCRIPTOR_PPI | EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST),\r
209 &gPeiPostScriptTablePpiGuid,\r
210 0\r
211};\r
212\r
213EFI_PEI_PPI_DESCRIPTOR mPpiListEndOfPeiTable = {\r
214 (EFI_PEI_PPI_DESCRIPTOR_PPI | EFI_PEI_PPI_DESCRIPTOR_TERMINATE_LIST),\r
215 &gEfiEndOfPeiSignalPpiGuid,\r
216 0\r
217};\r
218\r
219//\r
220// Global Descriptor Table (GDT)\r
221//\r
222GLOBAL_REMOVE_IF_UNREFERENCED IA32_GDT mGdtEntries[] = {\r
223/* selector { Global Segment Descriptor } */\r
224/* 0x00 */ {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}},\r
225/* 0x08 */ {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}},\r
226/* 0x10 */ {{0xFFFF, 0, 0, 0xB, 1, 0, 1, 0xF, 0, 0, 1, 1, 0}},\r
227/* 0x18 */ {{0xFFFF, 0, 0, 0x3, 1, 0, 1, 0xF, 0, 0, 1, 1, 0}},\r
228/* 0x20 */ {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}},\r
229/* 0x28 */ {{0xFFFF, 0, 0, 0xB, 1, 0, 1, 0xF, 0, 0, 0, 1, 0}},\r
230/* 0x30 */ {{0xFFFF, 0, 0, 0x3, 1, 0, 1, 0xF, 0, 0, 0, 1, 0}},\r
231/* 0x38 */ {{0xFFFF, 0, 0, 0xB, 1, 0, 1, 0xF, 0, 1, 0, 1, 0}},\r
232/* 0x40 */ {{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}},\r
233};\r
234\r
235//\r
236// IA32 Gdt register\r
237//\r
238GLOBAL_REMOVE_IF_UNREFERENCED CONST IA32_DESCRIPTOR mGdt = {\r
239 sizeof (mGdtEntries) - 1,\r
240 (UINTN) mGdtEntries\r
241 };\r
242\r
243/**\r
244 Performance measure function to get S3 detailed performance data.\r
245\r
246 This function will getS3 detailed performance data and saved in pre-reserved ACPI memory.\r
247**/\r
248VOID\r
249WriteToOsS3PerformanceData (\r
250 VOID\r
251 )\r
252{\r
253 EFI_STATUS Status;\r
254 EFI_PHYSICAL_ADDRESS mAcpiLowMemoryBase;\r
255 PERF_HEADER *PerfHeader;\r
256 PERF_DATA *PerfData;\r
257 UINT64 Ticker;\r
258 UINTN Index;\r
259 EFI_PEI_READ_ONLY_VARIABLE2_PPI *VariableServices;\r
260 UINTN VarSize;\r
261 UINTN LogEntryKey;\r
262 CONST VOID *Handle;\r
263 CONST CHAR8 *Token;\r
264 CONST CHAR8 *Module;\r
265 UINT64 StartTicker;\r
266 UINT64 EndTicker;\r
267 UINT64 StartValue;\r
268 UINT64 EndValue;\r
269 BOOLEAN CountUp;\r
270 UINT64 Freq;\r
271\r
272 //\r
273 // Retrive time stamp count as early as possilbe\r
274 //\r
275 Ticker = GetPerformanceCounter ();\r
276\r
277 Freq = GetPerformanceCounterProperties (&StartValue, &EndValue);\r
278\r
279 Freq = DivU64x32 (Freq, 1000);\r
280\r
281 Status = PeiServicesLocatePpi (\r
282 &gEfiPeiReadOnlyVariable2PpiGuid,\r
283 0,\r
284 NULL,\r
285 (VOID **) &VariableServices\r
286 );\r
287 ASSERT_EFI_ERROR (Status);\r
288\r
289 VarSize = sizeof (EFI_PHYSICAL_ADDRESS);\r
290 Status = VariableServices->GetVariable (\r
291 VariableServices,\r
292 L"PerfDataMemAddr",\r
293 &gPerformanceProtocolGuid,\r
294 NULL,\r
295 &VarSize,\r
296 &mAcpiLowMemoryBase\r
297 );\r
298 if (EFI_ERROR (Status)) {\r
299 DEBUG ((EFI_D_ERROR, "Fail to retrieve variable to log S3 performance data \n"));\r
300 return;\r
301 }\r
302\r
303 PerfHeader = (PERF_HEADER *) (UINTN) mAcpiLowMemoryBase;\r
304\r
305 if (PerfHeader->Signiture != PERFORMANCE_SIGNATURE) {\r
306 DEBUG ((EFI_D_ERROR, "Performance data in ACPI memory get corrupted! \n"));\r
307 return;\r
308 }\r
309\r
310 //\r
311 // Record total S3 resume time.\r
312 //\r
313 if (EndValue >= StartValue) {\r
314 PerfHeader->S3Resume = Ticker - StartValue;\r
315 CountUp = TRUE;\r
316 } else {\r
317 PerfHeader->S3Resume = StartValue - Ticker;\r
318 CountUp = FALSE;\r
319 }\r
320\r
321 //\r
322 // Get S3 detailed performance data\r
323 //\r
324 Index = 0;\r
325 LogEntryKey = 0;\r
326 while ((LogEntryKey = GetPerformanceMeasurement (\r
327 LogEntryKey,\r
328 &Handle,\r
329 &Token,\r
330 &Module,\r
331 &StartTicker,\r
332 &EndTicker)) != 0) {\r
333 if (EndTicker != 0) {\r
334 PerfData = &PerfHeader->S3Entry[Index];\r
335\r
336 //\r
337 // Use File Handle to specify the different performance log for PEIM.\r
338 // File Handle is the base address of PEIM FFS file.\r
339 //\r
340 if ((AsciiStrnCmp (Token, "PEIM", PEI_PERFORMANCE_STRING_SIZE) == 0) && (Handle != NULL)) {\r
341 AsciiSPrint (PerfData->Token, PERF_TOKEN_LENGTH, "0x%11p", Handle);\r
342 } else {\r
343 AsciiStrnCpy (PerfData->Token, Token, PERF_TOKEN_LENGTH);\r
344 }\r
345 if (StartTicker == 1) {\r
346 StartTicker = StartValue;\r
347 }\r
348 if (EndTicker == 1) {\r
349 EndTicker = StartValue;\r
350 }\r
351 Ticker = CountUp? (EndTicker - StartTicker) : (StartTicker - EndTicker);\r
352 PerfData->Duration = (UINT32) DivU64x32 (Ticker, (UINT32) Freq);\r
353\r
354 //\r
355 // Only Record > 1ms performance data so that more big performance can be recorded.\r
356 //\r
357 if ((Ticker > Freq) && (++Index >= PERF_PEI_ENTRY_MAX_NUM)) {\r
358 //\r
359 // Reach the maximum number of PEI performance log entries.\r
360 //\r
361 break;\r
362 }\r
363 }\r
364 }\r
365 PerfHeader->S3EntryNum = (UINT32) Index;\r
366}\r
367\r
368/**\r
369 Jump to OS waking vector.\r
370 The function will install boot script done PPI, report S3 resume status code, and then jump to OS waking vector.\r
371\r
372 @param AcpiS3Context a pointer to a structure of ACPI_S3_CONTEXT\r
373 @param PeiS3ResumeState a pointer to a structure of PEI_S3_RESUME_STATE\r
374**/\r
375VOID\r
376EFIAPI\r
377S3ResumeBootOs (\r
378 IN ACPI_S3_CONTEXT *AcpiS3Context,\r
379 IN PEI_S3_RESUME_STATE *PeiS3ResumeState\r
380 )\r
381{\r
382 EFI_STATUS Status;\r
383 EFI_ACPI_4_0_FIRMWARE_ACPI_CONTROL_STRUCTURE *Facs;\r
384 ASM_TRANSFER_CONTROL AsmTransferControl;\r
385 UINTN TempStackTop;\r
386 UINTN TempStack[0x10];\r
387\r
388 //\r
389 // Restore IDT\r
390 //\r
391 AsmWriteIdtr (&PeiS3ResumeState->Idtr);\r
392\r
5c0687cc
SZ
393 PERF_END (NULL, "ScriptExec", NULL, 0);\r
394\r
1f569620 395 //\r
396 // Install BootScriptDonePpi\r
397 //\r
398 Status = PeiServicesInstallPpi (&mPpiListPostScriptTable);\r
399 ASSERT_EFI_ERROR (Status);\r
400\r
401 //\r
402 // Get ACPI Table Address\r
403 //\r
404 Facs = (EFI_ACPI_4_0_FIRMWARE_ACPI_CONTROL_STRUCTURE *) ((UINTN) (AcpiS3Context->AcpiFacsTable));\r
405\r
406 if ((Facs == NULL) ||\r
407 (Facs->Signature != EFI_ACPI_4_0_FIRMWARE_ACPI_CONTROL_STRUCTURE_SIGNATURE) ||\r
408 ((Facs->FirmwareWakingVector == 0) && (Facs->XFirmwareWakingVector == 0)) ) {\r
409 CpuDeadLoop ();\r
410 return ;\r
411 }\r
412\r
413 //\r
414 // report status code on S3 resume\r
415 //\r
416 REPORT_STATUS_CODE (EFI_PROGRESS_CODE, EFI_SOFTWARE_PEI_MODULE | EFI_SW_PEI_PC_OS_WAKE);\r
417\r
418 //\r
419 // Install EndOfPeiPpi\r
420 //\r
421 Status = PeiServicesInstallPpi (&mPpiListEndOfPeiTable);\r
422 ASSERT_EFI_ERROR (Status);\r
423\r
424 PERF_CODE (\r
425 WriteToOsS3PerformanceData ();\r
426 );\r
427\r
428 AsmTransferControl = (ASM_TRANSFER_CONTROL)(UINTN)PeiS3ResumeState->AsmTransferControl;\r
429 if (Facs->XFirmwareWakingVector != 0) {\r
430 //\r
431 // Switch to native waking vector\r
432 //\r
433 TempStackTop = (UINTN)&TempStack + sizeof(TempStack);\r
434 if ((Facs->Version == EFI_ACPI_4_0_FIRMWARE_ACPI_CONTROL_STRUCTURE_VERSION) &&\r
435 ((Facs->Flags & EFI_ACPI_4_0_64BIT_WAKE_SUPPORTED_F) != 0) &&\r
436 ((Facs->Flags & EFI_ACPI_4_0_OSPM_64BIT_WAKE__F) != 0)) {\r
437 //\r
438 // X64 long mode waking vector\r
439 //\r
440 DEBUG (( EFI_D_ERROR, "Transfer to 64bit OS waking vector - %x\r\n", (UINTN)Facs->XFirmwareWakingVector));\r
441 if (FeaturePcdGet (PcdDxeIplSwitchToLongMode)) {\r
442 AsmEnablePaging64 (\r
443 0x38,\r
444 Facs->XFirmwareWakingVector,\r
445 0,\r
446 0,\r
447 (UINT64)(UINTN)TempStackTop\r
448 );\r
449 } else {\r
450 DEBUG (( EFI_D_ERROR, "Unsupported for 32bit DXE transfer to 64bit OS waking vector!\r\n"));\r
451 ASSERT (FALSE);\r
452 }\r
453 } else {\r
454 //\r
455 // IA32 protected mode waking vector (Page disabled)\r
456 //\r
457 DEBUG (( EFI_D_ERROR, "Transfer to 32bit OS waking vector - %x\r\n", (UINTN)Facs->XFirmwareWakingVector));\r
458 SwitchStack (\r
459 (SWITCH_STACK_ENTRY_POINT) (UINTN) Facs->XFirmwareWakingVector,\r
460 NULL,\r
461 NULL,\r
462 (VOID *)(UINTN)TempStackTop\r
463 );\r
464 }\r
465 } else {\r
466 //\r
467 // 16bit Realmode waking vector\r
468 //\r
469 DEBUG (( EFI_D_ERROR, "Transfer to 16bit OS waking vector - %x\r\n", (UINTN)Facs->FirmwareWakingVector));\r
470 AsmTransferControl (Facs->FirmwareWakingVector, 0x0);\r
471 }\r
472\r
473 //\r
474 // Never run to here\r
475 //\r
476 CpuDeadLoop();\r
477}\r
478\r
479/**\r
480 Restore S3 page table because we do not trust ACPINvs content.\r
481 If BootScriptExector driver will not run in 64-bit mode, this function will do nothing. \r
482\r
483 @param S3NvsPageTableAddress PageTableAddress in ACPINvs\r
484**/\r
485VOID\r
486RestoreS3PageTables (\r
487 IN UINTN S3NvsPageTableAddress\r
488 )\r
489{\r
490 if (FeaturePcdGet (PcdDxeIplSwitchToLongMode)) {\r
491 UINT32 RegEax;\r
c56b6566 492 UINT32 RegEdx;\r
1f569620 493 UINT8 PhysicalAddressBits;\r
494 EFI_PHYSICAL_ADDRESS PageAddress;\r
495 UINTN IndexOfPml4Entries;\r
496 UINTN IndexOfPdpEntries;\r
497 UINTN IndexOfPageDirectoryEntries;\r
c56b6566
JY
498 UINT32 NumberOfPml4EntriesNeeded;\r
499 UINT32 NumberOfPdpEntriesNeeded;\r
1f569620 500 PAGE_MAP_AND_DIRECTORY_POINTER *PageMapLevel4Entry;\r
501 PAGE_MAP_AND_DIRECTORY_POINTER *PageMap;\r
502 PAGE_MAP_AND_DIRECTORY_POINTER *PageDirectoryPointerEntry;\r
503 PAGE_TABLE_ENTRY *PageDirectoryEntry;\r
c56b6566
JY
504 VOID *Hob;\r
505 BOOLEAN Page1GSupport;\r
506 PAGE_TABLE_1G_ENTRY *PageDirectory1GEntry;\r
1f569620 507\r
508 //\r
509 // NOTE: We have to ASSUME the page table generation format, because we do not know whole page table information.\r
510 // The whole page table is too large to be saved in SMRAM.\r
511 //\r
512 // The assumption is : whole page table is allocated in CONTINOUS memory and CR3 points to TOP page.\r
513 //\r
514 DEBUG ((EFI_D_ERROR, "S3NvsPageTableAddress - %x\n", S3NvsPageTableAddress));\r
515\r
516 //\r
517 // By architecture only one PageMapLevel4 exists - so lets allocate storgage for it.\r
518 //\r
519 PageMap = (PAGE_MAP_AND_DIRECTORY_POINTER *)S3NvsPageTableAddress;\r
520 S3NvsPageTableAddress += SIZE_4KB;\r
521 \r
c56b6566 522 Page1GSupport = FALSE;\r
378175d2
JY
523 if (PcdGetBool(PcdUse1GPageTable)) {\r
524 AsmCpuid (0x80000000, &RegEax, NULL, NULL, NULL);\r
525 if (RegEax >= 0x80000001) {\r
526 AsmCpuid (0x80000001, NULL, NULL, NULL, &RegEdx);\r
527 if ((RegEdx & BIT26) != 0) {\r
528 Page1GSupport = TRUE;\r
529 }\r
c56b6566
JY
530 }\r
531 }\r
532 \r
1f569620 533 //\r
534 // Get physical address bits supported.\r
535 //\r
c56b6566
JY
536 Hob = GetFirstHob (EFI_HOB_TYPE_CPU);\r
537 if (Hob != NULL) {\r
538 PhysicalAddressBits = ((EFI_HOB_CPU *) Hob)->SizeOfMemorySpace;\r
1f569620 539 } else {\r
c56b6566
JY
540 AsmCpuid (0x80000000, &RegEax, NULL, NULL, NULL);\r
541 if (RegEax >= 0x80000008) {\r
542 AsmCpuid (0x80000008, &RegEax, NULL, NULL, NULL);\r
543 PhysicalAddressBits = (UINT8) RegEax;\r
544 } else {\r
545 PhysicalAddressBits = 36;\r
546 }\r
1f569620 547 }\r
548 \r
c56b6566
JY
549 //\r
550 // IA-32e paging translates 48-bit linear addresses to 52-bit physical addresses.\r
551 //\r
552 ASSERT (PhysicalAddressBits <= 52);\r
553 if (PhysicalAddressBits > 48) {\r
554 PhysicalAddressBits = 48;\r
555 }\r
556\r
1f569620 557 //\r
558 // Calculate the table entries needed.\r
559 //\r
560 if (PhysicalAddressBits <= 39) {\r
561 NumberOfPml4EntriesNeeded = 1;\r
c56b6566 562 NumberOfPdpEntriesNeeded = (UINT32)LShiftU64 (1, (PhysicalAddressBits - 30));\r
1f569620 563 } else {\r
c56b6566 564 NumberOfPml4EntriesNeeded = (UINT32)LShiftU64 (1, (PhysicalAddressBits - 39));\r
1f569620 565 NumberOfPdpEntriesNeeded = 512;\r
566 }\r
567 \r
568 PageMapLevel4Entry = PageMap;\r
569 PageAddress = 0;\r
570 for (IndexOfPml4Entries = 0; IndexOfPml4Entries < NumberOfPml4EntriesNeeded; IndexOfPml4Entries++, PageMapLevel4Entry++) {\r
571 //\r
572 // Each PML4 entry points to a page of Page Directory Pointer entires.\r
573 // So lets allocate space for them and fill them in in the IndexOfPdpEntries loop.\r
574 //\r
575 PageDirectoryPointerEntry = (PAGE_MAP_AND_DIRECTORY_POINTER *)S3NvsPageTableAddress;\r
576 S3NvsPageTableAddress += SIZE_4KB;\r
577 \r
578 //\r
579 // Make a PML4 Entry\r
580 //\r
581 PageMapLevel4Entry->Uint64 = (UINT64)(UINTN)PageDirectoryPointerEntry;\r
582 PageMapLevel4Entry->Bits.ReadWrite = 1;\r
583 PageMapLevel4Entry->Bits.Present = 1;\r
c56b6566
JY
584\r
585 if (Page1GSupport) {\r
54d3b84e 586 PageDirectory1GEntry = (VOID *) PageDirectoryPointerEntry;\r
1f569620 587 \r
c56b6566 588 for (IndexOfPageDirectoryEntries = 0; IndexOfPageDirectoryEntries < 512; IndexOfPageDirectoryEntries++, PageDirectory1GEntry++, PageAddress += SIZE_1GB) {\r
1f569620 589 //\r
590 // Fill in the Page Directory entries\r
591 //\r
c56b6566
JY
592 PageDirectory1GEntry->Uint64 = (UINT64)PageAddress;\r
593 PageDirectory1GEntry->Bits.ReadWrite = 1;\r
594 PageDirectory1GEntry->Bits.Present = 1;\r
595 PageDirectory1GEntry->Bits.MustBe1 = 1;\r
596 }\r
597 } else {\r
598 for (IndexOfPdpEntries = 0; IndexOfPdpEntries < NumberOfPdpEntriesNeeded; IndexOfPdpEntries++, PageDirectoryPointerEntry++) {\r
599 //\r
600 // Each Directory Pointer entries points to a page of Page Directory entires.\r
601 // So allocate space for them and fill them in in the IndexOfPageDirectoryEntries loop.\r
602 // \r
603 PageDirectoryEntry = (PAGE_TABLE_ENTRY *)S3NvsPageTableAddress;\r
604 S3NvsPageTableAddress += SIZE_4KB;\r
605 \r
606 //\r
607 // Fill in a Page Directory Pointer Entries\r
608 //\r
609 PageDirectoryPointerEntry->Uint64 = (UINT64)(UINTN)PageDirectoryEntry;\r
610 PageDirectoryPointerEntry->Bits.ReadWrite = 1;\r
611 PageDirectoryPointerEntry->Bits.Present = 1;\r
612 \r
613 for (IndexOfPageDirectoryEntries = 0; IndexOfPageDirectoryEntries < 512; IndexOfPageDirectoryEntries++, PageDirectoryEntry++, PageAddress += SIZE_2MB) {\r
614 //\r
615 // Fill in the Page Directory entries\r
616 //\r
617 PageDirectoryEntry->Uint64 = (UINT64)PageAddress;\r
618 PageDirectoryEntry->Bits.ReadWrite = 1;\r
619 PageDirectoryEntry->Bits.Present = 1;\r
620 PageDirectoryEntry->Bits.MustBe1 = 1;\r
621 }\r
1f569620 622 }\r
623 }\r
624 }\r
625 return ;\r
626 } else {\r
627 //\r
628 // If DXE is running 32-bit mode, no need to establish page table.\r
629 //\r
630 return ;\r
631 }\r
632}\r
633\r
634/**\r
635 Jump to boot script executor driver.\r
636\r
637 The function will close and lock SMRAM and then jump to boot script execute driver to executing S3 boot script table.\r
638\r
639 @param AcpiS3Context a pointer to a structure of ACPI_S3_CONTEXT\r
640 @param EfiBootScriptExecutorVariable The function entry to executing S3 boot Script table. This function is build in\r
641 boot script execute driver\r
642**/\r
643VOID\r
644EFIAPI\r
645S3ResumeExecuteBootScript (\r
646 IN ACPI_S3_CONTEXT *AcpiS3Context,\r
647 IN BOOT_SCRIPT_EXECUTOR_VARIABLE *EfiBootScriptExecutorVariable\r
648 )\r
649{\r
650 EFI_STATUS Status;\r
651 PEI_SMM_ACCESS_PPI *SmmAccess;\r
652 UINTN Index;\r
653 VOID *GuidHob;\r
654 IA32_DESCRIPTOR *IdtDescriptor;\r
655 VOID *IdtBuffer;\r
656 PEI_S3_RESUME_STATE *PeiS3ResumeState;\r
657\r
658 DEBUG ((EFI_D_ERROR, "S3ResumeExecuteBootScript()\n"));\r
659\r
660 //\r
661 // Attempt to use content from SMRAM first\r
662 //\r
663 GuidHob = GetFirstGuidHob (&gEfiAcpiVariableGuid);\r
664 if (GuidHob != NULL) {\r
665 //\r
666 // Last step for SMM - send SMI for initialization\r
667 //\r
668\r
669 //\r
670 // Send SMI to APs\r
671 // \r
672 SendSmiIpiAllExcludingSelf ();\r
673 //\r
674 // Send SMI to BSP\r
675 //\r
676 SendSmiIpi (GetApicId ());\r
677\r
678 Status = PeiServicesLocatePpi (\r
679 &gPeiSmmAccessPpiGuid,\r
680 0,\r
681 NULL,\r
682 (VOID **) &SmmAccess\r
683 );\r
684\r
685 DEBUG ((EFI_D_ERROR, "Close all SMRAM regions before executing boot script\n"));\r
686\r
687 for (Index = 0, Status = EFI_SUCCESS; !EFI_ERROR (Status); Index++) {\r
688 Status = SmmAccess->Close ((EFI_PEI_SERVICES **)GetPeiServicesTablePointer (), SmmAccess, Index);\r
689 }\r
690\r
691 DEBUG ((EFI_D_ERROR, "Lock all SMRAM regions before executing boot script\n"));\r
692\r
693 for (Index = 0, Status = EFI_SUCCESS; !EFI_ERROR (Status); Index++) {\r
694 Status = SmmAccess->Lock ((EFI_PEI_SERVICES **)GetPeiServicesTablePointer (), SmmAccess, Index);\r
695 }\r
696 }\r
697\r
698 if (FeaturePcdGet (PcdDxeIplSwitchToLongMode)) {\r
699 //\r
700 // Need reconstruct page table here, since we do not trust ACPINvs.\r
701 //\r
702 RestoreS3PageTables ((UINTN)AcpiS3Context->S3NvsPageTableAddress);\r
703 AsmWriteCr3 ((UINTN)AcpiS3Context->S3NvsPageTableAddress);\r
704 }\r
705\r
706 if (FeaturePcdGet (PcdFrameworkCompatibilitySupport)) {\r
707 //\r
708 // On some platform, such as ECP, a dispatch node in boot script table may execute a 32-bit PEIM which may need PeiServices\r
709 // pointer. So PeiServices need preserve in (IDTBase- sizeof (UINTN)). \r
710 //\r
711 IdtDescriptor = (IA32_DESCRIPTOR *) (UINTN) (AcpiS3Context->IdtrProfile);\r
712 //\r
713 // Make sure the newly allcated IDT align with 16-bytes\r
714 // \r
715 IdtBuffer = AllocatePages (EFI_SIZE_TO_PAGES((IdtDescriptor->Limit + 1) + 16));\r
716 ASSERT (IdtBuffer != NULL);\r
e47459e6 717 //\r
718 // Additional 16 bytes allocated to save IA32 IDT descriptor and Pei Service Table Pointer\r
719 // IA32 IDT descriptor will be used to setup IA32 IDT table for 32-bit Framework Boot Script code\r
720 // \r
721 ZeroMem (IdtBuffer, 16);\r
722 AsmReadIdtr ((IA32_DESCRIPTOR *)IdtBuffer);\r
1f569620 723 CopyMem ((VOID*)((UINT8*)IdtBuffer + 16),(VOID*)(IdtDescriptor->Base), (IdtDescriptor->Limit + 1));\r
724 IdtDescriptor->Base = (UINTN)((UINT8*)IdtBuffer + 16);\r
725 *(UINTN*)(IdtDescriptor->Base - sizeof(UINTN)) = (UINTN)GetPeiServicesTablePointer ();\r
726 }\r
727\r
728 //\r
729 // Need to make sure the GDT is loaded with values that support long mode and real mode.\r
730 //\r
731 AsmWriteGdtr (&mGdt);\r
732\r
733 //\r
734 // Prepare data for return back\r
735 //\r
736 PeiS3ResumeState = AllocatePool (sizeof(*PeiS3ResumeState));\r
737 ASSERT (PeiS3ResumeState != NULL);\r
738 DEBUG (( EFI_D_ERROR, "PeiS3ResumeState - %x\r\n", PeiS3ResumeState));\r
739 PeiS3ResumeState->ReturnCs = 0x10;\r
740 PeiS3ResumeState->ReturnEntryPoint = (EFI_PHYSICAL_ADDRESS)(UINTN)S3ResumeBootOs;\r
741 PeiS3ResumeState->ReturnStackPointer = (EFI_PHYSICAL_ADDRESS)(UINTN)&Status;\r
742 //\r
743 // Save IDT\r
744 //\r
745 AsmReadIdtr (&PeiS3ResumeState->Idtr);\r
746\r
5c0687cc
SZ
747 PERF_START (NULL, "ScriptExec", NULL, 0);\r
748\r
1f569620 749 if (FeaturePcdGet (PcdDxeIplSwitchToLongMode)) {\r
750 //\r
751 // X64 S3 Resume\r
752 //\r
753 DEBUG (( EFI_D_ERROR, "Enable X64 and transfer control to Standalone Boot Script Executor\r\n"));\r
754\r
755 //\r
756 // Switch to long mode to complete resume.\r
757 //\r
758 AsmEnablePaging64 (\r
759 0x38,\r
760 EfiBootScriptExecutorVariable->BootScriptExecutorEntrypoint,\r
761 (UINT64)(UINTN)AcpiS3Context,\r
762 (UINT64)(UINTN)PeiS3ResumeState,\r
763 (UINT64)(UINTN)(AcpiS3Context->BootScriptStackBase + AcpiS3Context->BootScriptStackSize)\r
764 );\r
765 } else {\r
766 //\r
767 // IA32 S3 Resume\r
768 //\r
769 DEBUG (( EFI_D_ERROR, "transfer control to Standalone Boot Script Executor\r\n"));\r
770 SwitchStack (\r
771 (SWITCH_STACK_ENTRY_POINT) (UINTN) EfiBootScriptExecutorVariable->BootScriptExecutorEntrypoint,\r
772 (VOID *)AcpiS3Context,\r
773 (VOID *)PeiS3ResumeState,\r
774 (VOID *)(UINTN)(AcpiS3Context->BootScriptStackBase + AcpiS3Context->BootScriptStackSize)\r
775 );\r
776 }\r
777\r
778 //\r
779 // Never run to here\r
780 //\r
781 CpuDeadLoop();\r
782}\r
783/**\r
784 Restores the platform to its preboot configuration for an S3 resume and\r
785 jumps to the OS waking vector.\r
786\r
787 This function will restore the platform to its pre-boot configuration that was\r
788 pre-stored in the boot script table and transfer control to OS waking vector.\r
789 Upon invocation, this function is responsible for locating the following\r
790 information before jumping to OS waking vector:\r
791 - ACPI tables\r
792 - boot script table\r
793 - any other information that it needs\r
794\r
795 The S3RestoreConfig() function then executes the pre-stored boot script table\r
796 and transitions the platform to the pre-boot state. The boot script is recorded\r
797 during regular boot using the EFI_S3_SAVE_STATE_PROTOCOL.Write() and\r
798 EFI_S3_SMM_SAVE_STATE_PROTOCOL.Write() functions. Finally, this function\r
799 transfers control to the OS waking vector. If the OS supports only a real-mode\r
800 waking vector, this function will switch from flat mode to real mode before\r
801 jumping to the waking vector. If all platform pre-boot configurations are\r
802 successfully restored and all other necessary information is ready, this\r
803 function will never return and instead will directly jump to the OS waking\r
804 vector. If this function returns, it indicates that the attempt to resume\r
805 from the ACPI S3 sleep state failed.\r
806\r
807 @param[in] This Pointer to this instance of the PEI_S3_RESUME_PPI\r
808\r
809 @retval EFI_ABORTED Execution of the S3 resume boot script table failed.\r
810 @retval EFI_NOT_FOUND Some necessary information that is used for the S3\r
811 resume boot path could not be located.\r
812\r
813**/\r
814EFI_STATUS\r
815EFIAPI\r
816S3RestoreConfig2 (\r
817 IN EFI_PEI_S3_RESUME2_PPI *This\r
818 )\r
819{\r
820 EFI_STATUS Status;\r
821 PEI_SMM_ACCESS_PPI *SmmAccess;\r
822 UINTN Index;\r
823 ACPI_S3_CONTEXT *AcpiS3Context;\r
824 EFI_PEI_READ_ONLY_VARIABLE2_PPI *VariableServices;\r
825 EFI_PHYSICAL_ADDRESS TempEfiBootScriptExecutorVariable;\r
826 EFI_PHYSICAL_ADDRESS TempAcpiS3Context;\r
827 BOOT_SCRIPT_EXECUTOR_VARIABLE *EfiBootScriptExecutorVariable;\r
828 UINTN VarSize;\r
829 EFI_SMRAM_DESCRIPTOR *SmramDescriptor;\r
830 SMM_S3_RESUME_STATE *SmmS3ResumeState;\r
831 VOID *GuidHob;\r
832\r
833 DEBUG ((EFI_D_ERROR, "Enter S3 PEIM\r\n"));\r
834\r
835 Status = PeiServicesLocatePpi (\r
836 &gPeiSmmAccessPpiGuid,\r
837 0,\r
838 NULL,\r
839 (VOID **) &SmmAccess\r
840 );\r
841 for (Index = 0; !EFI_ERROR (Status); Index++) {\r
842 Status = SmmAccess->Open ((EFI_PEI_SERVICES **)GetPeiServicesTablePointer (), SmmAccess, Index);\r
843 }\r
844\r
845 Status = PeiServicesLocatePpi (\r
846 &gEfiPeiReadOnlyVariable2PpiGuid,\r
847 0,\r
848 NULL,\r
849 (VOID **) &VariableServices\r
850 );\r
851 if (EFI_ERROR (Status)) {\r
852 return Status;\r
853 }\r
854\r
855 VarSize = sizeof (EFI_PHYSICAL_ADDRESS);\r
856 Status = RestoreLockBox (\r
857 &gEfiAcpiVariableGuid,\r
858 &TempAcpiS3Context,\r
859 &VarSize\r
860 );\r
861 ASSERT_EFI_ERROR (Status);\r
862\r
863 AcpiS3Context = (ACPI_S3_CONTEXT *)(UINTN)TempAcpiS3Context;\r
864 ASSERT (AcpiS3Context != NULL);\r
865\r
866 Status = RestoreLockBox (\r
867 &gEfiAcpiS3ContextGuid,\r
868 NULL,\r
869 NULL\r
870 );\r
871 ASSERT_EFI_ERROR (Status);\r
872\r
873 VarSize = sizeof (TempEfiBootScriptExecutorVariable);\r
874 Status = RestoreLockBox (\r
875 &gEfiBootScriptExecutorVariableGuid,\r
876 &TempEfiBootScriptExecutorVariable,\r
877 &VarSize\r
878 );\r
879 ASSERT_EFI_ERROR (Status);\r
880\r
881 Status = RestoreLockBox (\r
882 &gEfiBootScriptExecutorContextGuid,\r
883 NULL,\r
884 NULL\r
885 );\r
886 ASSERT_EFI_ERROR (Status);\r
887\r
888 EfiBootScriptExecutorVariable = (BOOT_SCRIPT_EXECUTOR_VARIABLE *) (UINTN) TempEfiBootScriptExecutorVariable;\r
889\r
890 DEBUG (( EFI_D_ERROR, "AcpiS3Context = %x\n", AcpiS3Context));\r
891 DEBUG (( EFI_D_ERROR, "Waking Vector = %x\n", ((EFI_ACPI_2_0_FIRMWARE_ACPI_CONTROL_STRUCTURE *) ((UINTN) (AcpiS3Context->AcpiFacsTable)))->FirmwareWakingVector));\r
892 DEBUG (( EFI_D_ERROR, "AcpiS3Context->AcpiFacsTable = %x\n", AcpiS3Context->AcpiFacsTable));\r
893 DEBUG (( EFI_D_ERROR, "AcpiS3Context->S3NvsPageTableAddress = %x\n", AcpiS3Context->S3NvsPageTableAddress));\r
894 DEBUG (( EFI_D_ERROR, "AcpiS3Context->S3DebugBufferAddress = %x\n", AcpiS3Context->S3DebugBufferAddress));\r
895 DEBUG (( EFI_D_ERROR, "EfiBootScriptExecutorVariable->BootScriptExecutorEntrypoint = %x\n", EfiBootScriptExecutorVariable->BootScriptExecutorEntrypoint));\r
896\r
897 //\r
898 // Additional step for BootScript integrity - we only handle BootScript and BootScriptExecutor.\r
899 // Script dispatch image and context (parameter) are handled by platform.\r
900 // We just use restore all lock box in place, no need restore one by one.\r
901 //\r
902 Status = RestoreAllLockBoxInPlace ();\r
903 ASSERT_EFI_ERROR (Status);\r
904 if (EFI_ERROR (Status)) {\r
905 // Something wrong\r
906 CpuDeadLoop ();\r
907 }\r
908\r
909 //\r
910 // Attempt to use content from SMRAM first\r
911 //\r
912 GuidHob = GetFirstGuidHob (&gEfiAcpiVariableGuid);\r
913 if (GuidHob != NULL) {\r
914 SmramDescriptor = (EFI_SMRAM_DESCRIPTOR *) GET_GUID_HOB_DATA (GuidHob);\r
915 SmmS3ResumeState = (SMM_S3_RESUME_STATE *)(UINTN)SmramDescriptor->CpuStart;\r
916\r
917 SmmS3ResumeState->ReturnCs = AsmReadCs ();\r
918 SmmS3ResumeState->ReturnEntryPoint = (EFI_PHYSICAL_ADDRESS)(UINTN)S3ResumeExecuteBootScript;\r
919 SmmS3ResumeState->ReturnContext1 = (EFI_PHYSICAL_ADDRESS)(UINTN)AcpiS3Context;\r
920 SmmS3ResumeState->ReturnContext2 = (EFI_PHYSICAL_ADDRESS)(UINTN)EfiBootScriptExecutorVariable;\r
921 SmmS3ResumeState->ReturnStackPointer = (EFI_PHYSICAL_ADDRESS)(UINTN)&Status;\r
922\r
923 DEBUG (( EFI_D_ERROR, "SMM S3 Signature = %x\n", SmmS3ResumeState->Signature));\r
924 DEBUG (( EFI_D_ERROR, "SMM S3 Stack Base = %x\n", SmmS3ResumeState->SmmS3StackBase));\r
925 DEBUG (( EFI_D_ERROR, "SMM S3 Stack Size = %x\n", SmmS3ResumeState->SmmS3StackSize));\r
926 DEBUG (( EFI_D_ERROR, "SMM S3 Resume Entry Point = %x\n", SmmS3ResumeState->SmmS3ResumeEntryPoint));\r
927 DEBUG (( EFI_D_ERROR, "SMM S3 CR0 = %x\n", SmmS3ResumeState->SmmS3Cr0));\r
928 DEBUG (( EFI_D_ERROR, "SMM S3 CR3 = %x\n", SmmS3ResumeState->SmmS3Cr3));\r
929 DEBUG (( EFI_D_ERROR, "SMM S3 CR4 = %x\n", SmmS3ResumeState->SmmS3Cr4));\r
930 DEBUG (( EFI_D_ERROR, "SMM S3 Return CS = %x\n", SmmS3ResumeState->ReturnCs));\r
931 DEBUG (( EFI_D_ERROR, "SMM S3 Return Entry Point = %x\n", SmmS3ResumeState->ReturnEntryPoint));\r
932 DEBUG (( EFI_D_ERROR, "SMM S3 Return Context1 = %x\n", SmmS3ResumeState->ReturnContext1));\r
933 DEBUG (( EFI_D_ERROR, "SMM S3 Return Context2 = %x\n", SmmS3ResumeState->ReturnContext2));\r
934 DEBUG (( EFI_D_ERROR, "SMM S3 Return Stack Pointer = %x\n", SmmS3ResumeState->ReturnStackPointer));\r
935 DEBUG (( EFI_D_ERROR, "SMM S3 Smst = %x\n", SmmS3ResumeState->Smst));\r
936\r
937 //\r
938 // Disable interrupt of Debug timer.\r
939 //\r
940 SaveAndSetDebugTimerInterrupt (FALSE);\r
941\r
942 if (SmmS3ResumeState->Signature == SMM_S3_RESUME_SMM_32) {\r
943 SwitchStack (\r
944 (SWITCH_STACK_ENTRY_POINT)(UINTN)SmmS3ResumeState->SmmS3ResumeEntryPoint,\r
945 (VOID *)AcpiS3Context,\r
946 0,\r
947 (VOID *)(UINTN)(SmmS3ResumeState->SmmS3StackBase + SmmS3ResumeState->SmmS3StackSize)\r
948 );\r
949 }\r
950 if (SmmS3ResumeState->Signature == SMM_S3_RESUME_SMM_64) {\r
951 //\r
952 // Switch to long mode to complete resume.\r
953 //\r
954\r
955 //\r
956 // Need to make sure the GDT is loaded with values that support long mode and real mode.\r
957 //\r
958 AsmWriteGdtr (&mGdt);\r
959 AsmWriteCr3 ((UINTN)SmmS3ResumeState->SmmS3Cr3);\r
960 AsmEnablePaging64 (\r
961 0x38,\r
962 SmmS3ResumeState->SmmS3ResumeEntryPoint,\r
963 (UINT64)(UINTN)AcpiS3Context,\r
964 0,\r
965 SmmS3ResumeState->SmmS3StackBase + SmmS3ResumeState->SmmS3StackSize\r
966 );\r
967 }\r
968\r
969 }\r
970\r
971 S3ResumeExecuteBootScript (AcpiS3Context, EfiBootScriptExecutorVariable );\r
972 return EFI_SUCCESS;\r
973}\r
974/**\r
975 Main entry for S3 Resume PEIM.\r
976\r
977 This routine is to install EFI_PEI_S3_RESUME2_PPI.\r
978 \r
979 @param FileHandle Handle of the file being invoked.\r
980 @param PeiServices Pointer to PEI Services table.\r
981\r
982 @retval EFI_SUCCESS S3Resume Ppi is installed successfully.\r
983\r
984**/\r
985EFI_STATUS\r
986EFIAPI\r
987PeimS3ResumeEntryPoint (\r
988 IN EFI_PEI_FILE_HANDLE FileHandle,\r
989 IN CONST EFI_PEI_SERVICES **PeiServices\r
990 )\r
991{\r
992 EFI_STATUS Status;\r
993\r
994 //\r
995 // Install S3 Resume Ppi\r
996 //\r
997 Status = (**PeiServices).InstallPpi (PeiServices, &mPpiList);\r
998 ASSERT_EFI_ERROR (Status);\r
999\r
1000 return EFI_SUCCESS;\r
1001}\r
1002\r