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Update SmmBase Communicate Thunk behaivor to be compatible with Framework implemenation.
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1/** @file\r
2 SMM Base Helper SMM driver.\r
3\r
4 This driver is the counterpart of the SMM Base On SMM Base2 Thunk driver. It\r
5 provides helping services in SMM to the SMM Base On SMM Base2 Thunk driver.\r
6\r
7 Copyright (c) 2009 - 2010, Intel Corporation\r
8 All rights reserved. This program and the accompanying materials\r
9 are licensed and made available under the terms and conditions of the BSD License\r
10 which accompanies this distribution. The full text of the license may be found at\r
11 http://opensource.org/licenses/bsd-license.php\r
12\r
13 THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
14 WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
15\r
16**/\r
17\r
18#include <PiSmm.h>\r
19#include <Library/DebugLib.h>\r
20#include <Library/UefiBootServicesTableLib.h>\r
21#include <Library/SmmServicesTableLib.h>\r
22#include <Library/BaseLib.h>\r
23#include <Library/BaseMemoryLib.h>\r
24#include <Library/PeCoffLib.h>\r
25#include <Library/DevicePathLib.h>\r
26#include <Library/CacheMaintenanceLib.h>\r
27#include <Library/MemoryAllocationLib.h>\r
28#include <Guid/SmmBaseThunkCommunication.h>\r
29#include <Protocol/SmmBaseHelperReady.h>\r
30#include <Protocol/SmmCpu.h>\r
31#include <Protocol/LoadedImage.h>\r
32#include <Protocol/SmmCpuSaveState.h>\r
33#include <Protocol/MpService.h>\r
34#include <Protocol/LoadPe32Image.h>\r
35\r
36///\r
37/// Structure for tracking paired information of registered Framework SMI handler\r
38/// and correpsonding dispatch handle for SMI handler thunk.\r
39///\r
40typedef struct {\r
41 LIST_ENTRY Link;\r
42 EFI_HANDLE DispatchHandle;\r
43 EFI_HANDLE SmmImageHandle;\r
44 EFI_SMM_CALLBACK_ENTRY_POINT CallbackAddress;\r
45 VOID *CommunicationBuffer;\r
46 UINTN *SourceSize;\r
47} CALLBACK_INFO;\r
48\r
49typedef struct {\r
50 ///\r
51 /// PI SMM CPU Save State register index\r
52 ///\r
53 EFI_SMM_SAVE_STATE_REGISTER Register;\r
54 ///\r
55 /// Offset in Framework SMST\r
56 ///\r
57 UINTN Offset;\r
58} CPU_SAVE_STATE_CONVERSION;\r
59\r
60#define CPU_SAVE_STATE_GET_OFFSET(Field) (UINTN)(&(((EFI_SMM_CPU_SAVE_STATE *) 0)->Ia32SaveState.Field))\r
61\r
62\r
63EFI_HANDLE mDispatchHandle;\r
64EFI_SMM_CPU_PROTOCOL *mSmmCpu;\r
65EFI_PE32_IMAGE_PROTOCOL *mLoadPe32Image;\r
66EFI_GUID mEfiSmmCpuIoGuid = EFI_SMM_CPU_IO_GUID;\r
67EFI_SMM_BASE_HELPER_READY_PROTOCOL *mSmmBaseHelperReady;\r
68EFI_SMM_SYSTEM_TABLE *mFrameworkSmst;\r
69UINTN mNumberOfProcessors;\r
70\r
71LIST_ENTRY mCallbackInfoListHead = INITIALIZE_LIST_HEAD_VARIABLE (mCallbackInfoListHead);\r
72\r
73CPU_SAVE_STATE_CONVERSION mCpuSaveStateConvTable[] = {\r
74 {EFI_SMM_SAVE_STATE_REGISTER_LDTBASE , CPU_SAVE_STATE_GET_OFFSET(LDTBase)},\r
75 {EFI_SMM_SAVE_STATE_REGISTER_ES , CPU_SAVE_STATE_GET_OFFSET(ES)},\r
76 {EFI_SMM_SAVE_STATE_REGISTER_CS , CPU_SAVE_STATE_GET_OFFSET(CS)},\r
77 {EFI_SMM_SAVE_STATE_REGISTER_SS , CPU_SAVE_STATE_GET_OFFSET(SS)},\r
78 {EFI_SMM_SAVE_STATE_REGISTER_DS , CPU_SAVE_STATE_GET_OFFSET(DS)},\r
79 {EFI_SMM_SAVE_STATE_REGISTER_FS , CPU_SAVE_STATE_GET_OFFSET(FS)},\r
80 {EFI_SMM_SAVE_STATE_REGISTER_GS , CPU_SAVE_STATE_GET_OFFSET(GS)},\r
81 {EFI_SMM_SAVE_STATE_REGISTER_TR_SEL , CPU_SAVE_STATE_GET_OFFSET(TR)},\r
82 {EFI_SMM_SAVE_STATE_REGISTER_DR7 , CPU_SAVE_STATE_GET_OFFSET(DR7)},\r
83 {EFI_SMM_SAVE_STATE_REGISTER_DR6 , CPU_SAVE_STATE_GET_OFFSET(DR6)},\r
84 {EFI_SMM_SAVE_STATE_REGISTER_RAX , CPU_SAVE_STATE_GET_OFFSET(EAX)},\r
85 {EFI_SMM_SAVE_STATE_REGISTER_RBX , CPU_SAVE_STATE_GET_OFFSET(EBX)},\r
86 {EFI_SMM_SAVE_STATE_REGISTER_RCX , CPU_SAVE_STATE_GET_OFFSET(ECX)},\r
87 {EFI_SMM_SAVE_STATE_REGISTER_RDX , CPU_SAVE_STATE_GET_OFFSET(EDX)},\r
88 {EFI_SMM_SAVE_STATE_REGISTER_RSP , CPU_SAVE_STATE_GET_OFFSET(ESP)},\r
89 {EFI_SMM_SAVE_STATE_REGISTER_RBP , CPU_SAVE_STATE_GET_OFFSET(EBP)},\r
90 {EFI_SMM_SAVE_STATE_REGISTER_RSI , CPU_SAVE_STATE_GET_OFFSET(ESI)},\r
91 {EFI_SMM_SAVE_STATE_REGISTER_RDI , CPU_SAVE_STATE_GET_OFFSET(EDI)},\r
92 {EFI_SMM_SAVE_STATE_REGISTER_RIP , CPU_SAVE_STATE_GET_OFFSET(EIP)},\r
93 {EFI_SMM_SAVE_STATE_REGISTER_RFLAGS , CPU_SAVE_STATE_GET_OFFSET(EFLAGS)},\r
94 {EFI_SMM_SAVE_STATE_REGISTER_CR0 , CPU_SAVE_STATE_GET_OFFSET(CR0)},\r
95 {EFI_SMM_SAVE_STATE_REGISTER_CR3 , CPU_SAVE_STATE_GET_OFFSET(CR3)}\r
96};\r
97\r
98/**\r
99 Framework SMST SmmInstallConfigurationTable() Thunk.\r
100\r
101 This thunk calls the PI SMM SmmInstallConfigurationTable() and then update the configuration\r
102 table related fields in the Framework SMST because the PI SMM SmmInstallConfigurationTable()\r
103 function may modify these fields.\r
104\r
105 @param[in] SystemTable A pointer to the SMM System Table.\r
106 @param[in] Guid A pointer to the GUID for the entry to add, update, or remove.\r
107 @param[in] Table A pointer to the buffer of the table to add.\r
108 @param[in] TableSize The size of the table to install.\r
109\r
110 @retval EFI_SUCCESS The (Guid, Table) pair was added, updated, or removed.\r
111 @retval EFI_INVALID_PARAMETER Guid is not valid.\r
112 @retval EFI_NOT_FOUND An attempt was made to delete a non-existent entry.\r
113 @retval EFI_OUT_OF_RESOURCES There is not enough memory available to complete the operation.\r
114**/\r
115EFI_STATUS\r
116EFIAPI\r
117SmmInstallConfigurationTable (\r
118 IN EFI_SMM_SYSTEM_TABLE *SystemTable,\r
119 IN EFI_GUID *Guid,\r
120 IN VOID *Table,\r
121 IN UINTN TableSize\r
122 )\r
123{\r
124 EFI_STATUS Status;\r
125 \r
126 Status = gSmst->SmmInstallConfigurationTable (gSmst, Guid, Table, TableSize);\r
127 if (!EFI_ERROR (Status)) {\r
128 mFrameworkSmst->NumberOfTableEntries = gSmst->NumberOfTableEntries;\r
129 mFrameworkSmst->SmmConfigurationTable = gSmst->SmmConfigurationTable;\r
130 }\r
131 return Status; \r
132}\r
133\r
134/**\r
135 Construct a Framework SMST based on the PI SMM SMST.\r
136\r
137 @return Pointer to the constructed Framework SMST.\r
138**/\r
139EFI_SMM_SYSTEM_TABLE *\r
140ConstructFrameworkSmst (\r
141 VOID\r
142 )\r
143{\r
144 EFI_SMM_SYSTEM_TABLE *FrameworkSmst;\r
145\r
146 FrameworkSmst = (EFI_SMM_SYSTEM_TABLE *)AllocatePool (sizeof (EFI_SMM_SYSTEM_TABLE));\r
147 ASSERT (FrameworkSmst != NULL);\r
148\r
149 ///\r
150 /// Copy same things from PI SMST to Framework SMST\r
151 ///\r
152 CopyMem (FrameworkSmst, gSmst, (UINTN)(&((EFI_SMM_SYSTEM_TABLE *)0)->SmmIo));\r
153 CopyMem (\r
154 &FrameworkSmst->SmmIo, \r
155 &gSmst->SmmIo,\r
156 sizeof (EFI_SMM_SYSTEM_TABLE) - (UINTN)(&((EFI_SMM_SYSTEM_TABLE *)0)->SmmIo)\r
157 );\r
158\r
159 ///\r
160 /// Update Framework SMST\r
161 ///\r
162 FrameworkSmst->Hdr.Revision = EFI_SMM_SYSTEM_TABLE_REVISION;\r
163 CopyGuid (&FrameworkSmst->EfiSmmCpuIoGuid, &mEfiSmmCpuIoGuid);\r
164\r
165 FrameworkSmst->CpuSaveState = (EFI_SMM_CPU_SAVE_STATE *)AllocateZeroPool (mNumberOfProcessors * sizeof (EFI_SMM_CPU_SAVE_STATE));\r
166 ASSERT (FrameworkSmst->CpuSaveState != NULL);\r
167\r
168 ///\r
169 /// Do not support floating point state now\r
170 ///\r
171 FrameworkSmst->CpuOptionalFloatingPointState = NULL;\r
172\r
173 FrameworkSmst->SmmInstallConfigurationTable = SmmInstallConfigurationTable;\r
174\r
175 return FrameworkSmst;\r
176}\r
177\r
178/**\r
179 Load a given Framework SMM driver into SMRAM and invoke its entry point.\r
180\r
181 @param[in] ParentImageHandle Parent Image Handle.\r
182 @param[in] FilePath Location of the image to be installed as the handler.\r
183 @param[in] SourceBuffer Optional source buffer in case the image file\r
184 is in memory.\r
185 @param[in] SourceSize Size of the source image file, if in memory.\r
186 @param[out] ImageHandle The handle that the base driver uses to decode \r
187 the handler. Unique among SMM handlers only, \r
188 not unique across DXE/EFI.\r
189\r
190 @retval EFI_SUCCESS The operation was successful.\r
191 @retval EFI_OUT_OF_RESOURCES There were no additional SMRAM resources to load the handler\r
192 @retval EFI_UNSUPPORTED Can not find its copy in normal memory.\r
193 @retval EFI_INVALID_PARAMETER The handlers was not the correct image type\r
194**/\r
195EFI_STATUS\r
196LoadImage (\r
197 IN EFI_HANDLE ParentImageHandle,\r
198 IN EFI_DEVICE_PATH_PROTOCOL *FilePath,\r
199 IN VOID *SourceBuffer,\r
200 IN UINTN SourceSize,\r
201 OUT EFI_HANDLE *ImageHandle\r
202 )\r
203{\r
204 EFI_STATUS Status;\r
205 UINTN PageCount;\r
206 UINTN OrgPageCount;\r
207 EFI_PHYSICAL_ADDRESS DstBuffer;\r
208\r
209 if (FilePath == NULL || ImageHandle == NULL) { \r
210 return EFI_INVALID_PARAMETER;\r
211 }\r
212\r
213 PageCount = 1;\r
214 do {\r
215 OrgPageCount = PageCount;\r
216 DstBuffer = (UINTN)-1;\r
217 Status = gSmst->SmmAllocatePages (\r
218 AllocateMaxAddress,\r
219 EfiRuntimeServicesCode,\r
220 PageCount,\r
221 &DstBuffer\r
222 );\r
223 if (EFI_ERROR (Status)) {\r
224 return Status;\r
225 }\r
226\r
227 Status = mLoadPe32Image->LoadPeImage (\r
228 mLoadPe32Image,\r
229 ParentImageHandle,\r
230 FilePath,\r
231 SourceBuffer,\r
232 SourceSize,\r
233 DstBuffer,\r
234 &PageCount,\r
235 ImageHandle,\r
236 NULL,\r
237 EFI_LOAD_PE_IMAGE_ATTRIBUTE_NONE\r
238 );\r
239 if (EFI_ERROR (Status)) {\r
240 FreePages ((VOID *)(UINTN)DstBuffer, OrgPageCount);\r
241 }\r
242 } while (Status == EFI_BUFFER_TOO_SMALL);\r
243\r
244 if (!EFI_ERROR (Status)) {\r
245 ///\r
246 /// Update MP state in Framework SMST before transferring control to Framework SMM driver entry point\r
247 /// in case it may invoke AP\r
248 ///\r
249 mFrameworkSmst->CurrentlyExecutingCpu = gSmst->CurrentlyExecutingCpu;\r
250\r
251 Status = gBS->StartImage (*ImageHandle, NULL, NULL);\r
252 if (EFI_ERROR (Status)) {\r
253 mLoadPe32Image->UnLoadPeImage (mLoadPe32Image, *ImageHandle);\r
254 *ImageHandle = NULL;\r
255 FreePages ((VOID *)(UINTN)DstBuffer, PageCount);\r
256 }\r
257 }\r
258\r
259 return Status;\r
260}\r
261\r
262\r
263/** \r
264 Thunk service of EFI_SMM_BASE_PROTOCOL.Register().\r
265\r
266 @param[in, out] FunctionData Pointer to SMMBASE_FUNCTION_DATA.\r
267**/\r
268VOID\r
269Register (\r
270 IN OUT SMMBASE_FUNCTION_DATA *FunctionData\r
271 )\r
272{\r
273 EFI_STATUS Status;\r
274\r
275 if (FunctionData->Args.Register.LegacyIA32Binary) {\r
276 Status = EFI_UNSUPPORTED;\r
277 } else {\r
278 Status = LoadImage (\r
279 FunctionData->SmmBaseImageHandle,\r
280 FunctionData->Args.Register.FilePath,\r
281 FunctionData->Args.Register.SourceBuffer,\r
282 FunctionData->Args.Register.SourceSize,\r
283 FunctionData->Args.Register.ImageHandle\r
284 );\r
285 }\r
286 FunctionData->Status = Status;\r
287}\r
288\r
289/** \r
290 Thunk service of EFI_SMM_BASE_PROTOCOL.UnRegister().\r
291\r
292 @param[in, out] FunctionData Pointer to SMMBASE_FUNCTION_DATA.\r
293**/\r
294VOID\r
295UnRegister (\r
296 IN OUT SMMBASE_FUNCTION_DATA *FunctionData\r
297 )\r
298{\r
299 ///\r
300 /// Unregister not supported now\r
301 ///\r
302 FunctionData->Status = EFI_UNSUPPORTED;\r
303}\r
304\r
305/**\r
306 Search for Framework SMI handler information according to specific PI SMM dispatch handle.\r
307\r
308 @param[in] DispatchHandle The unique handle assigned by SmiHandlerRegister(). \r
309\r
310 @return Pointer to CALLBACK_INFO. If NULL, no callback info record is found.\r
311**/\r
312CALLBACK_INFO *\r
313GetCallbackInfo (\r
314 IN EFI_HANDLE DispatchHandle\r
315 )\r
316{\r
317 LIST_ENTRY *Node;\r
318\r
319 Node = GetFirstNode (&mCallbackInfoListHead);\r
320 while (!IsNull (&mCallbackInfoListHead, Node)) {\r
321 if (((CALLBACK_INFO *)Node)->DispatchHandle == DispatchHandle) {\r
322 return (CALLBACK_INFO *)Node;\r
323 }\r
324 Node = GetNextNode (&mCallbackInfoListHead, Node);\r
325 }\r
326 return NULL;\r
327}\r
328\r
329/**\r
330 Callback thunk for Framework SMI handler.\r
331\r
332 This thunk functions calls the Framework SMI handler and converts the return value\r
333 defined from Framework SMI handlers to a correpsonding return value defined by PI SMM.\r
334\r
335 @param[in] DispatchHandle The unique handle assigned to this handler by SmiHandlerRegister().\r
336 @param[in] Context Points to an optional handler context which was specified when the\r
337 handler was registered.\r
338 @param[in, out] CommBuffer A pointer to a collection of data in memory that will\r
339 be conveyed from a non-SMM environment into an SMM environment.\r
340 @param[in, out] CommBufferSize The size of the CommBuffer.\r
341\r
342 @retval EFI_SUCCESS The interrupt was handled and quiesced. No other handlers \r
343 should still be called.\r
344 @retval EFI_WARN_INTERRUPT_SOURCE_QUIESCED The interrupt has been quiesced but other handlers should \r
345 still be called.\r
346 @retval EFI_WARN_INTERRUPT_SOURCE_PENDING The interrupt is still pending and other handlers should still \r
347 be called.\r
348 @retval EFI_INTERRUPT_PENDING The interrupt could not be quiesced.\r
349**/\r
350EFI_STATUS\r
351EFIAPI\r
352CallbackThunk (\r
353 IN EFI_HANDLE DispatchHandle,\r
354 IN CONST VOID *Context OPTIONAL,\r
355 IN OUT VOID *CommBuffer OPTIONAL,\r
356 IN OUT UINTN *CommBufferSize OPTIONAL\r
357 )\r
358{\r
359 EFI_STATUS Status;\r
360 CALLBACK_INFO *CallbackInfo;\r
361 UINTN Index;\r
362 UINTN CpuIndex;\r
363 EFI_SMM_CPU_STATE *State;\r
364 EFI_SMI_CPU_SAVE_STATE *SaveState;\r
365\r
366 ///\r
367 /// Before transferring the control into the Framework SMI handler, update CPU Save States\r
368 /// and MP states in the Framework SMST.\r
369 ///\r
370\r
371 for (CpuIndex = 0; CpuIndex < mNumberOfProcessors; CpuIndex++) {\r
372 State = (EFI_SMM_CPU_STATE *)gSmst->CpuSaveState[CpuIndex];\r
373 SaveState = &mFrameworkSmst->CpuSaveState[CpuIndex].Ia32SaveState;\r
374\r
375 if (State->x86.SMMRevId < EFI_SMM_MIN_REV_ID_x64) {\r
376 SaveState->SMBASE = State->x86.SMBASE;\r
377 SaveState->SMMRevId = State->x86.SMMRevId;\r
378 SaveState->IORestart = State->x86.IORestart;\r
379 SaveState->AutoHALTRestart = State->x86.AutoHALTRestart;\r
380 } else {\r
381 SaveState->SMBASE = State->x64.SMBASE;\r
382 SaveState->SMMRevId = State->x64.SMMRevId;\r
383 SaveState->IORestart = State->x64.IORestart;\r
384 SaveState->AutoHALTRestart = State->x64.AutoHALTRestart;\r
385 }\r
386\r
387 for (Index = 0; Index < sizeof (mCpuSaveStateConvTable) / sizeof (CPU_SAVE_STATE_CONVERSION); Index++) {\r
388 ///\r
389 /// Try to use SMM CPU Protocol to access CPU save states if possible\r
390 ///\r
391 Status = mSmmCpu->ReadSaveState (\r
392 mSmmCpu,\r
393 (UINTN)sizeof (UINT32),\r
394 mCpuSaveStateConvTable[Index].Register,\r
395 CpuIndex,\r
396 ((UINT8 *)SaveState) + mCpuSaveStateConvTable[Index].Offset\r
397 );\r
398 ASSERT_EFI_ERROR (Status);\r
399 }\r
400 }\r
401\r
402 mFrameworkSmst->CurrentlyExecutingCpu = gSmst->CurrentlyExecutingCpu;\r
403\r
404 ///\r
405 /// Search for Framework SMI handler information\r
406 ///\r
407 CallbackInfo = GetCallbackInfo (DispatchHandle);\r
408 ASSERT (CallbackInfo != NULL);\r
409\r
410 ///\r
411 /// Thunk into original Framwork SMI handler\r
412 ///\r
413 Status = (CallbackInfo->CallbackAddress) (\r
414 CallbackInfo->SmmImageHandle,\r
415 CallbackInfo->CommunicationBuffer,\r
416 CallbackInfo->SourceSize\r
417 );\r
418 ///\r
419 /// Save CPU Save States in case any of them was modified\r
420 ///\r
421 for (CpuIndex = 0; CpuIndex < mNumberOfProcessors; CpuIndex++) {\r
422 for (Index = 0; Index < sizeof (mCpuSaveStateConvTable) / sizeof (CPU_SAVE_STATE_CONVERSION); Index++) {\r
423 Status = mSmmCpu->WriteSaveState (\r
424 mSmmCpu,\r
425 (UINTN)sizeof (UINT32),\r
426 mCpuSaveStateConvTable[Index].Register,\r
427 CpuIndex,\r
428 ((UINT8 *)&mFrameworkSmst->CpuSaveState[CpuIndex].Ia32SaveState) + \r
429 mCpuSaveStateConvTable[Index].Offset\r
430 );\r
431 }\r
432 }\r
433\r
434 ///\r
435 /// Conversion of returned status code\r
436 ///\r
437 switch (Status) {\r
438 case EFI_HANDLER_SUCCESS:\r
439 Status = EFI_WARN_INTERRUPT_SOURCE_QUIESCED;\r
440 break;\r
441 case EFI_HANDLER_CRITICAL_EXIT:\r
442 case EFI_HANDLER_SOURCE_QUIESCED:\r
443 Status = EFI_SUCCESS;\r
444 break;\r
445 case EFI_HANDLER_SOURCE_PENDING:\r
446 Status = EFI_WARN_INTERRUPT_SOURCE_PENDING;\r
447 break;\r
448 }\r
449 return Status;\r
450}\r
451\r
452/** \r
453 Thunk service of EFI_SMM_BASE_PROTOCOL.RegisterCallback().\r
454\r
455 @param[in, out] FunctionData Pointer to SMMBASE_FUNCTION_DATA.\r
456**/\r
457VOID\r
458RegisterCallback (\r
459 IN OUT SMMBASE_FUNCTION_DATA *FunctionData\r
460 )\r
461{\r
462 CALLBACK_INFO *Buffer;\r
463\r
464 ///\r
465 /// Note that MakeLast and FloatingPointSave options are not supported in PI SMM\r
466 ///\r
467\r
468 ///\r
469 /// Allocate buffer for callback thunk information\r
470 ///\r
471 Buffer = (CALLBACK_INFO *)AllocateZeroPool (sizeof (CALLBACK_INFO));\r
472 if (Buffer == NULL) {\r
473 FunctionData->Status = EFI_OUT_OF_RESOURCES;\r
474 return;\r
475 }\r
476\r
477 ///\r
478 /// Fill SmmImageHandle and CallbackAddress into the thunk\r
479 ///\r
480 Buffer->SmmImageHandle = FunctionData->Args.RegisterCallback.SmmImageHandle;\r
481 Buffer->CallbackAddress = FunctionData->Args.RegisterCallback.CallbackAddress;\r
482\r
483 ///\r
484 /// Register the thunk code as a root SMI handler\r
485 ///\r
486 FunctionData->Status = gSmst->SmiHandlerRegister (\r
487 CallbackThunk,\r
488 NULL,\r
489 &Buffer->DispatchHandle\r
490 );\r
491 if (EFI_ERROR (FunctionData->Status)) {\r
492 FreePool (Buffer);\r
493 return;\r
494 }\r
495\r
496 ///\r
497 /// Save this callback info\r
498 ///\r
499 InsertTailList (&mCallbackInfoListHead, &Buffer->Link);\r
500}\r
501\r
502\r
503/** \r
504 Thunk service of EFI_SMM_BASE_PROTOCOL.SmmAllocatePool().\r
505\r
506 @param[in, out] FunctionData Pointer to SMMBASE_FUNCTION_DATA.\r
507**/\r
508VOID\r
509HelperAllocatePool (\r
510 IN OUT SMMBASE_FUNCTION_DATA *FunctionData\r
511 )\r
512{\r
513 FunctionData->Status = gSmst->SmmAllocatePool (\r
514 FunctionData->Args.AllocatePool.PoolType,\r
515 FunctionData->Args.AllocatePool.Size,\r
516 FunctionData->Args.AllocatePool.Buffer\r
517 );\r
518}\r
519\r
520/** \r
521 Thunk service of EFI_SMM_BASE_PROTOCOL.SmmFreePool().\r
522\r
523 @param[in, out] FunctionData Pointer to SMMBASE_FUNCTION_DATA.\r
524**/\r
525VOID\r
526HelperFreePool (\r
527 IN OUT SMMBASE_FUNCTION_DATA *FunctionData\r
528 )\r
529{\r
530 FreePool (FunctionData->Args.FreePool.Buffer);\r
531 FunctionData->Status = EFI_SUCCESS;\r
532}\r
533\r
534/** \r
535 Thunk service of EFI_SMM_BASE_PROTOCOL.Communicate().\r
536\r
537 @param[in, out] FunctionData Pointer to SMMBASE_FUNCTION_DATA.\r
538**/\r
539VOID\r
540HelperCommunicate (\r
541 IN OUT SMMBASE_FUNCTION_DATA *FunctionData\r
542 )\r
543{\r
544 LIST_ENTRY *Node;\r
545 CALLBACK_INFO *CallbackInfo;\r
546\r
547 if (FunctionData->Args.Communicate.CommunicationBuffer == NULL) {\r
548 FunctionData->Status = EFI_INVALID_PARAMETER;\r
549 return;\r
550 }\r
551\r
552 Node = GetFirstNode (&mCallbackInfoListHead);\r
553 while (!IsNull (&mCallbackInfoListHead, Node)) {\r
554 CallbackInfo = (CALLBACK_INFO *)Node;\r
555\r
556 if (FunctionData->Args.Communicate.ImageHandle == CallbackInfo->SmmImageHandle) {\r
557 CallbackInfo->CommunicationBuffer = FunctionData->Args.Communicate.CommunicationBuffer;\r
558 CallbackInfo->SourceSize = FunctionData->Args.Communicate.SourceSize;\r
559\r
560 ///\r
561 /// The message was successfully posted.\r
562 ///\r
563 FunctionData->Status = EFI_SUCCESS;\r
564 return;\r
565 }\r
566 Node = GetNextNode (&mCallbackInfoListHead, Node);\r
567 }\r
568\r
569 FunctionData->Status = EFI_INVALID_PARAMETER;\r
570}\r
571\r
572/**\r
573 Communication service SMI Handler entry.\r
574\r
575 This SMI handler provides services for the SMM Base Thunk driver.\r
576\r
577 @param[in] DispatchHandle The unique handle assigned to this handler by SmiHandlerRegister().\r
578 @param[in] RegisterContext Points to an optional handler context which was specified when the\r
579 handler was registered.\r
580 @param[in, out] CommBuffer A pointer to a collection of data in memory that will\r
581 be conveyed from a non-SMM environment into an SMM environment.\r
582 @param[in, out] CommBufferSize The size of the CommBuffer.\r
583\r
584 @retval EFI_SUCCESS The interrupt was handled and quiesced. No other handlers \r
585 should still be called.\r
586 @retval EFI_WARN_INTERRUPT_SOURCE_QUIESCED The interrupt has been quiesced but other handlers should \r
587 still be called.\r
588 @retval EFI_WARN_INTERRUPT_SOURCE_PENDING The interrupt is still pending and other handlers should still \r
589 be called.\r
590 @retval EFI_INTERRUPT_PENDING The interrupt could not be quiesced.\r
591**/\r
592EFI_STATUS\r
593EFIAPI\r
594SmmHandlerEntry (\r
595 IN EFI_HANDLE DispatchHandle,\r
596 IN CONST VOID *RegisterContext,\r
597 IN OUT VOID *CommBuffer,\r
598 IN OUT UINTN *CommBufferSize\r
599 )\r
600{\r
601 SMMBASE_FUNCTION_DATA *FunctionData;\r
602\r
603 ASSERT (CommBuffer != NULL);\r
604 ASSERT (*CommBufferSize == sizeof (SMMBASE_FUNCTION_DATA));\r
605\r
606 FunctionData = (SMMBASE_FUNCTION_DATA *)CommBuffer;\r
607\r
608 switch (FunctionData->Function) {\r
609 case SmmBaseFunctionRegister:\r
610 Register (FunctionData);\r
611 break;\r
612 case SmmBaseFunctionUnregister:\r
613 UnRegister (FunctionData);\r
614 break;\r
615 case SmmBaseFunctionRegisterCallback:\r
616 RegisterCallback (FunctionData);\r
617 break;\r
618 case SmmBaseFunctionAllocatePool:\r
619 HelperAllocatePool (FunctionData);\r
620 break;\r
621 case SmmBaseFunctionFreePool:\r
622 HelperFreePool (FunctionData);\r
623 break;\r
624 case SmmBaseFunctionCommunicate:\r
625 HelperCommunicate (FunctionData);\r
626 break;\r
627 default:\r
628 ASSERT (FALSE);\r
629 FunctionData->Status = EFI_UNSUPPORTED;\r
630 }\r
631 return EFI_SUCCESS;\r
632}\r
633\r
634/**\r
635 Entry point function of the SMM Base Helper SMM driver.\r
636\r
637 @param[in] ImageHandle The firmware allocated handle for the EFI image. \r
638 @param[in] SystemTable A pointer to the EFI System Table.\r
639 \r
640 @retval EFI_SUCCESS The entry point is executed successfully.\r
641 @retval other Some error occurs when executing this entry point.\r
642**/\r
643EFI_STATUS\r
644EFIAPI\r
645SmmBaseHelperMain (\r
646 IN EFI_HANDLE ImageHandle,\r
647 IN EFI_SYSTEM_TABLE *SystemTable\r
648 )\r
649{\r
650 EFI_STATUS Status;\r
651 EFI_MP_SERVICES_PROTOCOL *MpServices;\r
652 EFI_HANDLE Handle;\r
653 UINTN NumberOfEnabledProcessors;\r
654 \r
655 Handle = NULL;\r
656 ///\r
657 /// Locate SMM CPU Protocol which is used later to retrieve/update CPU Save States\r
658 ///\r
659 Status = gSmst->SmmLocateProtocol (&gEfiSmmCpuProtocolGuid, NULL, (VOID **) &mSmmCpu);\r
660 ASSERT_EFI_ERROR (Status);\r
661\r
662 ///\r
663 /// Locate PE32 Image Protocol which is used later to load Framework SMM driver\r
664 ///\r
665 Status = SystemTable->BootServices->LocateProtocol (&gEfiLoadPeImageProtocolGuid, NULL, (VOID **) &mLoadPe32Image);\r
666 ASSERT_EFI_ERROR (Status);\r
667\r
668 //\r
669 // Get MP Services Protocol\r
670 //\r
671 Status = SystemTable->BootServices->LocateProtocol (&gEfiMpServiceProtocolGuid, NULL, (VOID **)&MpServices);\r
672 ASSERT_EFI_ERROR (Status);\r
673\r
674 //\r
675 // Use MP Services Protocol to retrieve the number of processors and number of enabled processors\r
676 //\r
677 Status = MpServices->GetNumberOfProcessors (MpServices, &mNumberOfProcessors, &NumberOfEnabledProcessors);\r
678 ASSERT_EFI_ERROR (Status);\r
679 \r
680 ///\r
681 /// Interface structure of SMM BASE Helper Ready Protocol is allocated from UEFI pool\r
682 /// instead of SMM pool so that SMM Base Thunk driver can access it in Non-SMM mode.\r
683 ///\r
684 Status = gBS->AllocatePool (\r
685 EfiBootServicesData,\r
686 sizeof (EFI_SMM_BASE_HELPER_READY_PROTOCOL),\r
687 (VOID **)&mSmmBaseHelperReady\r
688 );\r
689 ASSERT_EFI_ERROR (Status);\r
690\r
691 ///\r
692 /// Construct Framework SMST from PI SMST\r
693 ///\r
694 mFrameworkSmst = ConstructFrameworkSmst ();\r
695 mSmmBaseHelperReady->FrameworkSmst = mFrameworkSmst;\r
696 mSmmBaseHelperReady->ServiceEntry = SmmHandlerEntry;\r
697\r
698 ///\r
699 /// Register SMM Base Helper services for SMM Base Thunk driver\r
700 ///\r
701 Status = gSmst->SmiHandlerRegister (SmmHandlerEntry, &gEfiSmmBaseThunkCommunicationGuid, &mDispatchHandle);\r
702 ASSERT_EFI_ERROR (Status);\r
703\r
704 ///\r
705 /// Install EFI SMM Base Helper Protocol in the UEFI handle database\r
706 ///\r
707 Status = gBS->InstallProtocolInterface (\r
708 &Handle,\r
709 &gEfiSmmBaseHelperReadyProtocolGuid,\r
710 EFI_NATIVE_INTERFACE,\r
711 mSmmBaseHelperReady\r
712 );\r
713 ASSERT_EFI_ERROR (Status);\r
714\r
715 return Status;\r
716}\r
717\r