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MdeModulePkg DxeCore: Enhance MemoryAttributesTable installation
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31f228cf 1/** @file\r
2 DXE Core Main Entry Point\r
3\r
a94d51bd 4Copyright (c) 2006 - 2016, Intel Corporation. All rights reserved.<BR>\r
cd5ebaa0 5This program and the accompanying materials\r
31f228cf 6are licensed and made available under the terms and conditions of the BSD License\r
7which accompanies this distribution. The full text of the license may be found at\r
8http://opensource.org/licenses/bsd-license.php\r
9\r
10THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
11WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
12\r
13**/\r
14\r
15#include "DxeMain.h"\r
16\r
17//\r
18// DXE Core Global Variables for Protocols from PEI\r
19//\r
20EFI_HANDLE mDecompressHandle = NULL;\r
21\r
22//\r
23// DXE Core globals for Architecture Protocols\r
24//\r
25EFI_SECURITY_ARCH_PROTOCOL *gSecurity = NULL;\r
bc2dfdbc 26EFI_SECURITY2_ARCH_PROTOCOL *gSecurity2 = NULL;\r
31f228cf 27EFI_CPU_ARCH_PROTOCOL *gCpu = NULL;\r
28EFI_METRONOME_ARCH_PROTOCOL *gMetronome = NULL;\r
29EFI_TIMER_ARCH_PROTOCOL *gTimer = NULL;\r
30EFI_BDS_ARCH_PROTOCOL *gBds = NULL;\r
31EFI_WATCHDOG_TIMER_ARCH_PROTOCOL *gWatchdogTimer = NULL;\r
32\r
0803854b 33//\r
34// DXE Core globals for optional protocol dependencies\r
35//\r
36EFI_SMM_BASE2_PROTOCOL *gSmmBase2 = NULL;\r
37\r
31f228cf 38//\r
39// DXE Core Global used to update core loaded image protocol handle\r
40//\r
41EFI_GUID *gDxeCoreFileName;\r
42EFI_LOADED_IMAGE_PROTOCOL *gDxeCoreLoadedImage;\r
43\r
44//\r
45// DXE Core Module Variables\r
46//\r
47EFI_BOOT_SERVICES mBootServices = {\r
48 {\r
49 EFI_BOOT_SERVICES_SIGNATURE, // Signature\r
50 EFI_BOOT_SERVICES_REVISION, // Revision\r
51 sizeof (EFI_BOOT_SERVICES), // HeaderSize\r
52 0, // CRC32\r
53 0 // Reserved\r
54 },\r
55 (EFI_RAISE_TPL) CoreRaiseTpl, // RaiseTPL\r
56 (EFI_RESTORE_TPL) CoreRestoreTpl, // RestoreTPL\r
57 (EFI_ALLOCATE_PAGES) CoreAllocatePages, // AllocatePages\r
58 (EFI_FREE_PAGES) CoreFreePages, // FreePages\r
59 (EFI_GET_MEMORY_MAP) CoreGetMemoryMap, // GetMemoryMap\r
60 (EFI_ALLOCATE_POOL) CoreAllocatePool, // AllocatePool\r
61 (EFI_FREE_POOL) CoreFreePool, // FreePool\r
62 (EFI_CREATE_EVENT) CoreCreateEvent, // CreateEvent\r
63 (EFI_SET_TIMER) CoreSetTimer, // SetTimer\r
64 (EFI_WAIT_FOR_EVENT) CoreWaitForEvent, // WaitForEvent\r
65 (EFI_SIGNAL_EVENT) CoreSignalEvent, // SignalEvent\r
66 (EFI_CLOSE_EVENT) CoreCloseEvent, // CloseEvent\r
67 (EFI_CHECK_EVENT) CoreCheckEvent, // CheckEvent\r
68 (EFI_INSTALL_PROTOCOL_INTERFACE) CoreInstallProtocolInterface, // InstallProtocolInterface\r
69 (EFI_REINSTALL_PROTOCOL_INTERFACE) CoreReinstallProtocolInterface, // ReinstallProtocolInterface\r
70 (EFI_UNINSTALL_PROTOCOL_INTERFACE) CoreUninstallProtocolInterface, // UninstallProtocolInterface\r
71 (EFI_HANDLE_PROTOCOL) CoreHandleProtocol, // HandleProtocol\r
72 (VOID *) NULL, // Reserved\r
73 (EFI_REGISTER_PROTOCOL_NOTIFY) CoreRegisterProtocolNotify, // RegisterProtocolNotify\r
74 (EFI_LOCATE_HANDLE) CoreLocateHandle, // LocateHandle\r
75 (EFI_LOCATE_DEVICE_PATH) CoreLocateDevicePath, // LocateDevicePath\r
76 (EFI_INSTALL_CONFIGURATION_TABLE) CoreInstallConfigurationTable, // InstallConfigurationTable\r
77 (EFI_IMAGE_LOAD) CoreLoadImage, // LoadImage\r
78 (EFI_IMAGE_START) CoreStartImage, // StartImage\r
79 (EFI_EXIT) CoreExit, // Exit\r
80 (EFI_IMAGE_UNLOAD) CoreUnloadImage, // UnloadImage\r
81 (EFI_EXIT_BOOT_SERVICES) CoreExitBootServices, // ExitBootServices\r
82 (EFI_GET_NEXT_MONOTONIC_COUNT) CoreEfiNotAvailableYetArg1, // GetNextMonotonicCount\r
83 (EFI_STALL) CoreStall, // Stall\r
84 (EFI_SET_WATCHDOG_TIMER) CoreSetWatchdogTimer, // SetWatchdogTimer\r
85 (EFI_CONNECT_CONTROLLER) CoreConnectController, // ConnectController\r
86 (EFI_DISCONNECT_CONTROLLER) CoreDisconnectController, // DisconnectController\r
87 (EFI_OPEN_PROTOCOL) CoreOpenProtocol, // OpenProtocol\r
88 (EFI_CLOSE_PROTOCOL) CoreCloseProtocol, // CloseProtocol\r
89 (EFI_OPEN_PROTOCOL_INFORMATION) CoreOpenProtocolInformation, // OpenProtocolInformation\r
90 (EFI_PROTOCOLS_PER_HANDLE) CoreProtocolsPerHandle, // ProtocolsPerHandle\r
91 (EFI_LOCATE_HANDLE_BUFFER) CoreLocateHandleBuffer, // LocateHandleBuffer\r
92 (EFI_LOCATE_PROTOCOL) CoreLocateProtocol, // LocateProtocol\r
93 (EFI_INSTALL_MULTIPLE_PROTOCOL_INTERFACES) CoreInstallMultipleProtocolInterfaces, // InstallMultipleProtocolInterfaces\r
94 (EFI_UNINSTALL_MULTIPLE_PROTOCOL_INTERFACES) CoreUninstallMultipleProtocolInterfaces, // UninstallMultipleProtocolInterfaces\r
95 (EFI_CALCULATE_CRC32) CoreEfiNotAvailableYetArg3, // CalculateCrc32\r
96 (EFI_COPY_MEM) CopyMem, // CopyMem\r
97 (EFI_SET_MEM) SetMem, // SetMem\r
98 (EFI_CREATE_EVENT_EX) CoreCreateEventEx // CreateEventEx\r
99};\r
100\r
101EFI_DXE_SERVICES mDxeServices = {\r
102 {\r
103 DXE_SERVICES_SIGNATURE, // Signature\r
104 DXE_SERVICES_REVISION, // Revision\r
105 sizeof (DXE_SERVICES), // HeaderSize\r
106 0, // CRC32\r
107 0 // Reserved\r
108 },\r
109 (EFI_ADD_MEMORY_SPACE) CoreAddMemorySpace, // AddMemorySpace\r
110 (EFI_ALLOCATE_MEMORY_SPACE) CoreAllocateMemorySpace, // AllocateMemorySpace\r
111 (EFI_FREE_MEMORY_SPACE) CoreFreeMemorySpace, // FreeMemorySpace\r
112 (EFI_REMOVE_MEMORY_SPACE) CoreRemoveMemorySpace, // RemoveMemorySpace\r
113 (EFI_GET_MEMORY_SPACE_DESCRIPTOR) CoreGetMemorySpaceDescriptor, // GetMemorySpaceDescriptor\r
114 (EFI_SET_MEMORY_SPACE_ATTRIBUTES) CoreSetMemorySpaceAttributes, // SetMemorySpaceAttributes\r
115 (EFI_GET_MEMORY_SPACE_MAP) CoreGetMemorySpaceMap, // GetMemorySpaceMap\r
116 (EFI_ADD_IO_SPACE) CoreAddIoSpace, // AddIoSpace\r
117 (EFI_ALLOCATE_IO_SPACE) CoreAllocateIoSpace, // AllocateIoSpace\r
118 (EFI_FREE_IO_SPACE) CoreFreeIoSpace, // FreeIoSpace\r
119 (EFI_REMOVE_IO_SPACE) CoreRemoveIoSpace, // RemoveIoSpace\r
120 (EFI_GET_IO_SPACE_DESCRIPTOR) CoreGetIoSpaceDescriptor, // GetIoSpaceDescriptor\r
121 (EFI_GET_IO_SPACE_MAP) CoreGetIoSpaceMap, // GetIoSpaceMap\r
122 (EFI_DISPATCH) CoreDispatcher, // Dispatch\r
123 (EFI_SCHEDULE) CoreSchedule, // Schedule\r
124 (EFI_TRUST) CoreTrust, // Trust\r
125 (EFI_PROCESS_FIRMWARE_VOLUME) CoreProcessFirmwareVolume, // ProcessFirmwareVolume\r
771ee501 126 (EFI_SET_MEMORY_SPACE_CAPABILITIES)CoreSetMemorySpaceCapabilities, // SetMemorySpaceCapabilities\r
31f228cf 127};\r
128\r
129EFI_SYSTEM_TABLE mEfiSystemTableTemplate = {\r
130 {\r
131 EFI_SYSTEM_TABLE_SIGNATURE, // Signature\r
132 EFI_SYSTEM_TABLE_REVISION, // Revision\r
133 sizeof (EFI_SYSTEM_TABLE), // HeaderSize\r
134 0, // CRC32\r
135 0 // Reserved\r
136 },\r
137 NULL, // FirmwareVendor\r
138 0, // FirmwareRevision\r
139 NULL, // ConsoleInHandle\r
140 NULL, // ConIn\r
141 NULL, // ConsoleOutHandle\r
142 NULL, // ConOut\r
143 NULL, // StandardErrorHandle\r
144 NULL, // StdErr\r
145 NULL, // RuntimeServices\r
146 &mBootServices, // BootServices\r
147 0, // NumberOfConfigurationTableEntries\r
148 NULL // ConfigurationTable\r
149};\r
150\r
151EFI_RUNTIME_SERVICES mEfiRuntimeServicesTableTemplate = {\r
152 {\r
153 EFI_RUNTIME_SERVICES_SIGNATURE, // Signature\r
154 EFI_RUNTIME_SERVICES_REVISION, // Revision\r
155 sizeof (EFI_RUNTIME_SERVICES), // HeaderSize\r
156 0, // CRC32\r
157 0 // Reserved\r
158 },\r
159 (EFI_GET_TIME) CoreEfiNotAvailableYetArg2, // GetTime\r
160 (EFI_SET_TIME) CoreEfiNotAvailableYetArg1, // SetTime\r
161 (EFI_GET_WAKEUP_TIME) CoreEfiNotAvailableYetArg3, // GetWakeupTime\r
162 (EFI_SET_WAKEUP_TIME) CoreEfiNotAvailableYetArg2, // SetWakeupTime\r
163 (EFI_SET_VIRTUAL_ADDRESS_MAP) CoreEfiNotAvailableYetArg4, // SetVirtualAddressMap\r
164 (EFI_CONVERT_POINTER) CoreEfiNotAvailableYetArg2, // ConvertPointer\r
165 (EFI_GET_VARIABLE) CoreEfiNotAvailableYetArg5, // GetVariable\r
166 (EFI_GET_NEXT_VARIABLE_NAME) CoreEfiNotAvailableYetArg3, // GetNextVariableName\r
167 (EFI_SET_VARIABLE) CoreEfiNotAvailableYetArg5, // SetVariable\r
168 (EFI_GET_NEXT_HIGH_MONO_COUNT) CoreEfiNotAvailableYetArg1, // GetNextHighMonotonicCount\r
169 (EFI_RESET_SYSTEM) CoreEfiNotAvailableYetArg4, // ResetSystem\r
170 (EFI_UPDATE_CAPSULE) CoreEfiNotAvailableYetArg3, // UpdateCapsule\r
171 (EFI_QUERY_CAPSULE_CAPABILITIES) CoreEfiNotAvailableYetArg4, // QueryCapsuleCapabilities\r
172 (EFI_QUERY_VARIABLE_INFO) CoreEfiNotAvailableYetArg4 // QueryVariableInfo\r
173};\r
174\r
175EFI_RUNTIME_ARCH_PROTOCOL gRuntimeTemplate = {\r
176 INITIALIZE_LIST_HEAD_VARIABLE (gRuntimeTemplate.ImageHead),\r
177 INITIALIZE_LIST_HEAD_VARIABLE (gRuntimeTemplate.EventHead),\r
178\r
179 //\r
180 // Make sure Size != sizeof (EFI_MEMORY_DESCRIPTOR). This will\r
181 // prevent people from having pointer math bugs in their code.\r
182 // now you have to use *DescriptorSize to make things work.\r
183 //\r
184 sizeof (EFI_MEMORY_DESCRIPTOR) + sizeof (UINT64) - (sizeof (EFI_MEMORY_DESCRIPTOR) % sizeof (UINT64)),\r
185 EFI_MEMORY_DESCRIPTOR_VERSION,\r
186 0,\r
187 NULL,\r
188 NULL,\r
189 FALSE,\r
190 FALSE\r
191};\r
192\r
193EFI_RUNTIME_ARCH_PROTOCOL *gRuntime = &gRuntimeTemplate;\r
194\r
195//\r
196// DXE Core Global Variables for the EFI System Table, Boot Services Table,\r
197// DXE Services Table, and Runtime Services Table\r
198//\r
199EFI_DXE_SERVICES *gDxeCoreDS = &mDxeServices;\r
200EFI_SYSTEM_TABLE *gDxeCoreST = NULL;\r
201\r
202//\r
203// For debug initialize gDxeCoreRT to template. gDxeCoreRT must be allocated from RT memory\r
204// but gDxeCoreRT is used for ASSERT () and DEBUG () type macros so lets give it\r
205// a value that will not cause debug infrastructure to crash early on.\r
206//\r
207EFI_RUNTIME_SERVICES *gDxeCoreRT = &mEfiRuntimeServicesTableTemplate;\r
208EFI_HANDLE gDxeCoreImageHandle = NULL;\r
209\r
74a88770 210BOOLEAN gMemoryMapTerminated = FALSE;\r
31f228cf 211\r
212//\r
213// EFI Decompress Protocol\r
214//\r
215EFI_DECOMPRESS_PROTOCOL gEfiDecompress = {\r
216 DxeMainUefiDecompressGetInfo,\r
217 DxeMainUefiDecompress\r
218};\r
219\r
220//\r
e7af83ae 221// For Loading modules at fixed address feature, the configuration table is to cache the top address below which to load\r
222// Runtime code&boot time code\r
54ea99a7 223//\r
ebfb7bb5 224GLOBAL_REMOVE_IF_UNREFERENCED EFI_LOAD_FIXED_ADDRESS_CONFIGURATION_TABLE gLoadModuleAtFixAddressConfigurationTable = {0, 0};\r
54ea99a7 225\r
31f228cf 226// Main entry point to the DXE Core\r
227//\r
228\r
229/**\r
230 Main entry point to DXE Core.\r
231\r
232 @param HobStart Pointer to the beginning of the HOB List from PEI.\r
233\r
234 @return This function should never return.\r
235\r
236**/\r
237VOID\r
238EFIAPI\r
239DxeMain (\r
240 IN VOID *HobStart\r
241 )\r
242{\r
d0d41b52 243 EFI_STATUS Status;\r
244 EFI_PHYSICAL_ADDRESS MemoryBaseAddress;\r
245 UINT64 MemoryLength;\r
246 PE_COFF_LOADER_IMAGE_CONTEXT ImageContext;\r
57f360f2
JF
247 UINTN Index;\r
248 EFI_HOB_GUID_TYPE *GuidHob;\r
249 EFI_VECTOR_HANDOFF_INFO *VectorInfoList;\r
250 EFI_VECTOR_HANDOFF_INFO *VectorInfo;\r
1cf4e933 251 VOID *EntryPoint;\r
31f228cf 252\r
1e172d6b 253 //\r
254 // Setup the default exception handlers\r
255 //\r
57f360f2
JF
256 VectorInfoList = NULL;\r
257 GuidHob = GetNextGuidHob (&gEfiVectorHandoffInfoPpiGuid, HobStart);\r
258 if (GuidHob != NULL) {\r
259 VectorInfoList = (EFI_VECTOR_HANDOFF_INFO *) (GET_GUID_HOB_DATA(GuidHob));\r
260 }\r
261 Status = InitializeCpuExceptionHandlers (VectorInfoList);\r
262 ASSERT_EFI_ERROR (Status);\r
1e172d6b 263 \r
e7af83ae 264 //\r
265 // Initialize Debug Agent to support source level debug in DXE phase\r
266 //\r
4cf7e038 267 InitializeDebugAgent (DEBUG_AGENT_INIT_DXE_CORE, HobStart, NULL);\r
e7af83ae 268\r
31f228cf 269 //\r
270 // Initialize Memory Services\r
271 //\r
272 CoreInitializeMemoryServices (&HobStart, &MemoryBaseAddress, &MemoryLength);\r
273\r
84edd20b
SZ
274 MemoryProfileInit (HobStart);\r
275\r
31f228cf 276 //\r
277 // Allocate the EFI System Table and EFI Runtime Service Table from EfiRuntimeServicesData\r
278 // Use the templates to initialize the contents of the EFI System Table and EFI Runtime Services Table\r
279 //\r
280 gDxeCoreST = AllocateRuntimeCopyPool (sizeof (EFI_SYSTEM_TABLE), &mEfiSystemTableTemplate);\r
281 ASSERT (gDxeCoreST != NULL);\r
282\r
283 gDxeCoreRT = AllocateRuntimeCopyPool (sizeof (EFI_RUNTIME_SERVICES), &mEfiRuntimeServicesTableTemplate);\r
284 ASSERT (gDxeCoreRT != NULL);\r
285\r
286 gDxeCoreST->RuntimeServices = gDxeCoreRT;\r
287\r
288 //\r
289 // Start the Image Services.\r
290 //\r
291 Status = CoreInitializeImageServices (HobStart);\r
292 ASSERT_EFI_ERROR (Status);\r
293\r
31f228cf 294 //\r
295 // Initialize the Global Coherency Domain Services\r
296 //\r
297 Status = CoreInitializeGcdServices (&HobStart, MemoryBaseAddress, MemoryLength);\r
298 ASSERT_EFI_ERROR (Status);\r
299\r
c5d53799
SZ
300 //\r
301 // Call constructor for all libraries\r
302 //\r
303 ProcessLibraryConstructorList (gDxeCoreImageHandle, gDxeCoreST);\r
304 PERF_END (NULL,"PEI", NULL, 0) ;\r
305 PERF_START (NULL,"DXE", NULL, 0) ;\r
306\r
31ffa077
SZ
307 //\r
308 // Report DXE Core image information to the PE/COFF Extra Action Library\r
309 //\r
310 ZeroMem (&ImageContext, sizeof (ImageContext));\r
311 ImageContext.ImageAddress = (EFI_PHYSICAL_ADDRESS)(UINTN)gDxeCoreLoadedImage->ImageBase;\r
312 ImageContext.PdbPointer = PeCoffLoaderGetPdbPointer ((VOID*)(UINTN)ImageContext.ImageAddress);\r
313 ImageContext.SizeOfHeaders = PeCoffGetSizeOfHeaders ((VOID*)(UINTN)ImageContext.ImageAddress);\r
314 Status = PeCoffLoaderGetEntryPoint ((VOID*)(UINTN)ImageContext.ImageAddress, &EntryPoint);\r
315 if (Status == EFI_SUCCESS) {\r
316 ImageContext.EntryPoint = (EFI_PHYSICAL_ADDRESS)(UINTN)EntryPoint;\r
317 }\r
318 PeCoffLoaderRelocateImageExtraAction (&ImageContext);\r
319\r
31f228cf 320 //\r
321 // Install the DXE Services Table into the EFI System Tables's Configuration Table\r
322 //\r
323 Status = CoreInstallConfigurationTable (&gEfiDxeServicesTableGuid, gDxeCoreDS);\r
324 ASSERT_EFI_ERROR (Status);\r
325\r
326 //\r
327 // Install the HOB List into the EFI System Tables's Configuration Table\r
328 //\r
329 Status = CoreInstallConfigurationTable (&gEfiHobListGuid, HobStart);\r
330 ASSERT_EFI_ERROR (Status);\r
331\r
332 //\r
333 // Install Memory Type Information Table into the EFI System Tables's Configuration Table\r
334 //\r
335 Status = CoreInstallConfigurationTable (&gEfiMemoryTypeInformationGuid, &gMemoryTypeInformation);\r
336 ASSERT_EFI_ERROR (Status);\r
e7af83ae 337\r
54ea99a7 338 //\r
e7af83ae 339 // If Loading modules At fixed address feature is enabled, install Load moduels at fixed address\r
54ea99a7 340 // Configuration Table so that user could easily to retrieve the top address to load Dxe and PEI\r
e7af83ae 341 // Code and Tseg base to load SMM driver.\r
54ea99a7 342 //\r
852081fc 343 if (PcdGet64(PcdLoadModuleAtFixAddressEnable) != 0) {\r
54ea99a7 344 Status = CoreInstallConfigurationTable (&gLoadFixedAddressConfigurationTableGuid, &gLoadModuleAtFixAddressConfigurationTable);\r
345 ASSERT_EFI_ERROR (Status);\r
346 }\r
31f228cf 347 //\r
348 // Report Status Code here for DXE_ENTRY_POINT once it is available\r
349 //\r
350 REPORT_STATUS_CODE (\r
351 EFI_PROGRESS_CODE,\r
f9876ecf 352 (EFI_SOFTWARE_DXE_CORE | EFI_SW_DXE_CORE_PC_ENTRY_POINT)\r
31f228cf 353 );\r
354\r
355 //\r
356 // Create the aligned system table pointer structure that is used by external\r
357 // debuggers to locate the system table... Also, install debug image info\r
358 // configuration table.\r
359 //\r
360 CoreInitializeDebugImageInfoTable ();\r
361 CoreNewDebugImageInfoEntry (\r
362 EFI_DEBUG_IMAGE_INFO_TYPE_NORMAL,\r
363 gDxeCoreLoadedImage,\r
364 gDxeCoreImageHandle\r
365 );\r
366\r
367 DEBUG ((DEBUG_INFO | DEBUG_LOAD, "HOBLIST address in DXE = 0x%p\n", HobStart));\r
368\r
369 DEBUG_CODE_BEGIN ();\r
370 EFI_PEI_HOB_POINTERS Hob;\r
371\r
372 for (Hob.Raw = HobStart; !END_OF_HOB_LIST(Hob); Hob.Raw = GET_NEXT_HOB(Hob)) {\r
373 if (GET_HOB_TYPE (Hob) == EFI_HOB_TYPE_MEMORY_ALLOCATION) {\r
8e90dd6b 374 DEBUG ((DEBUG_INFO | DEBUG_LOAD, "Memory Allocation 0x%08x 0x%0lx - 0x%0lx\n", \\r
bfef82a1 375 Hob.MemoryAllocation->AllocDescriptor.MemoryType, \\r
31f228cf 376 Hob.MemoryAllocation->AllocDescriptor.MemoryBaseAddress, \\r
bfef82a1 377 Hob.MemoryAllocation->AllocDescriptor.MemoryBaseAddress + Hob.MemoryAllocation->AllocDescriptor.MemoryLength - 1));\r
31f228cf 378 }\r
379 }\r
380 for (Hob.Raw = HobStart; !END_OF_HOB_LIST(Hob); Hob.Raw = GET_NEXT_HOB(Hob)) {\r
381 if (GET_HOB_TYPE (Hob) == EFI_HOB_TYPE_FV2) {\r
3351d21f 382 DEBUG ((DEBUG_INFO | DEBUG_LOAD, "FV2 Hob 0x%0lx - 0x%0lx\n", Hob.FirmwareVolume2->BaseAddress, Hob.FirmwareVolume2->BaseAddress + Hob.FirmwareVolume2->Length - 1));\r
31f228cf 383 } else if (GET_HOB_TYPE (Hob) == EFI_HOB_TYPE_FV) {\r
24e11fd8 384 DEBUG ((DEBUG_INFO | DEBUG_LOAD, "FV Hob 0x%0lx - 0x%0lx\n", Hob.FirmwareVolume->BaseAddress, Hob.FirmwareVolume->BaseAddress + Hob.FirmwareVolume->Length - 1));\r
31f228cf 385 }\r
386 }\r
387 DEBUG_CODE_END ();\r
388\r
389 //\r
390 // Initialize the Event Services\r
391 //\r
392 Status = CoreInitializeEventServices ();\r
393 ASSERT_EFI_ERROR (Status);\r
394\r
84edd20b
SZ
395 MemoryProfileInstallProtocol ();\r
396\r
03d486b2 397 CoreInitializePropertiesTable ();\r
a94d51bd 398 CoreInitializeMemoryAttributesTable ();\r
03d486b2 399\r
57f360f2
JF
400 //\r
401 // Get persisted vector hand-off info from GUIDeed HOB again due to HobStart may be updated,\r
402 // and install configuration table\r
403 //\r
404 GuidHob = GetNextGuidHob (&gEfiVectorHandoffInfoPpiGuid, HobStart);\r
405 if (GuidHob != NULL) {\r
406 VectorInfoList = (EFI_VECTOR_HANDOFF_INFO *) (GET_GUID_HOB_DATA(GuidHob));\r
407 VectorInfo = VectorInfoList;\r
408 Index = 1;\r
409 while (VectorInfo->Attribute != EFI_VECTOR_HANDOFF_LAST_ENTRY) {\r
410 VectorInfo ++;\r
411 Index ++;\r
412 }\r
413 VectorInfo = AllocateCopyPool (sizeof (EFI_VECTOR_HANDOFF_INFO) * Index, (VOID *) VectorInfoList);\r
414 ASSERT (VectorInfo != NULL);\r
415 Status = CoreInstallConfigurationTable (&gEfiVectorHandoffTableGuid, (VOID *) VectorInfo);\r
416 ASSERT_EFI_ERROR (Status);\r
417 }\r
31f228cf 418\r
419 //\r
420 // Get the Protocols that were passed in from PEI to DXE through GUIDed HOBs\r
421 //\r
422 // These Protocols are not architectural. This implementation is sharing code between\r
423 // PEI and DXE in order to save FLASH space. These Protocols could also be implemented\r
424 // as part of the DXE Core. However, that would also require the DXE Core to be ported\r
425 // each time a different CPU is used, a different Decompression algorithm is used, or a\r
426 // different Image type is used. By placing these Protocols in PEI, the DXE Core remains\r
427 // generic, and only PEI and the Arch Protocols need to be ported from Platform to Platform,\r
428 // and from CPU to CPU.\r
429 //\r
430\r
431 //\r
432 // Publish the EFI, Tiano, and Custom Decompress protocols for use by other DXE components\r
433 //\r
434 Status = CoreInstallMultipleProtocolInterfaces (\r
435 &mDecompressHandle,\r
436 &gEfiDecompressProtocolGuid, &gEfiDecompress,\r
437 NULL\r
438 );\r
439 ASSERT_EFI_ERROR (Status);\r
440\r
441 //\r
442 // Register for the GUIDs of the Architectural Protocols, so the rest of the\r
443 // EFI Boot Services and EFI Runtime Services tables can be filled in.\r
74e44290 444 // Also register for the GUIDs of optional protocols.\r
31f228cf 445 //\r
74e44290 446 CoreNotifyOnProtocolInstallation ();\r
31f228cf 447\r
448 //\r
449 // Produce Firmware Volume Protocols, one for each FV in the HOB list.\r
450 //\r
451 Status = FwVolBlockDriverInit (gDxeCoreImageHandle, gDxeCoreST);\r
452 ASSERT_EFI_ERROR (Status);\r
453\r
454 Status = FwVolDriverInit (gDxeCoreImageHandle, gDxeCoreST);\r
455 ASSERT_EFI_ERROR (Status);\r
456\r
457 //\r
458 // Produce the Section Extraction Protocol\r
459 //\r
460 Status = InitializeSectionExtraction (gDxeCoreImageHandle, gDxeCoreST);\r
461 ASSERT_EFI_ERROR (Status);\r
462\r
463 //\r
464 // Initialize the DXE Dispatcher\r
465 //\r
466 PERF_START (NULL,"CoreInitializeDispatcher", "DxeMain", 0) ;\r
467 CoreInitializeDispatcher ();\r
468 PERF_END (NULL,"CoreInitializeDispatcher", "DxeMain", 0) ;\r
469\r
470 //\r
471 // Invoke the DXE Dispatcher\r
472 //\r
473 PERF_START (NULL, "CoreDispatcher", "DxeMain", 0);\r
474 CoreDispatcher ();\r
475 PERF_END (NULL, "CoreDispatcher", "DxeMain", 0);\r
476\r
477 //\r
478 // Display Architectural protocols that were not loaded if this is DEBUG build\r
479 //\r
480 DEBUG_CODE_BEGIN ();\r
481 CoreDisplayMissingArchProtocols ();\r
482 DEBUG_CODE_END ();\r
483\r
484 //\r
485 // Display any drivers that were not dispatched because dependency expression\r
486 // evaluated to false if this is a debug build\r
487 //\r
488 DEBUG_CODE_BEGIN ();\r
489 CoreDisplayDiscoveredNotDispatched ();\r
490 DEBUG_CODE_END ();\r
491\r
492 //\r
493 // Assert if the Architectural Protocols are not present.\r
494 //\r
37623a5c 495 Status = CoreAllEfiServicesAvailable ();\r
496 if (EFI_ERROR(Status)) {\r
497 //\r
498 // Report Status code that some Architectural Protocols are not present.\r
499 //\r
500 REPORT_STATUS_CODE (\r
501 EFI_ERROR_CODE | EFI_ERROR_MAJOR,\r
502 (EFI_SOFTWARE_DXE_CORE | EFI_SW_DXE_CORE_EC_NO_ARCH)\r
503 ); \r
504 }\r
505 ASSERT_EFI_ERROR (Status);\r
31f228cf 506\r
507 //\r
508 // Report Status code before transfer control to BDS\r
509 //\r
510 REPORT_STATUS_CODE (\r
511 EFI_PROGRESS_CODE,\r
f9876ecf 512 (EFI_SOFTWARE_DXE_CORE | EFI_SW_DXE_CORE_PC_HANDOFF_TO_NEXT)\r
31f228cf 513 );\r
514\r
515 //\r
516 // Transfer control to the BDS Architectural Protocol\r
517 //\r
518 gBds->Entry (gBds);\r
519\r
520 //\r
521 // BDS should never return\r
522 //\r
523 ASSERT (FALSE);\r
524 CpuDeadLoop ();\r
525}\r
526\r
527\r
528\r
529/**\r
530 Place holder function until all the Boot Services and Runtime Services are\r
531 available.\r
532\r
533 @return EFI_NOT_AVAILABLE_YET\r
534\r
535**/\r
536EFI_STATUS\r
537EFIAPI\r
538CoreEfiNotAvailableYetArg0 (\r
539 VOID\r
540 )\r
541{\r
542 //\r
543 // This function should never be executed. If it does, then the architectural protocols\r
544 // have not been designed correctly. The CpuBreakpoint () is commented out for now until the\r
545 // DXE Core and all the Architectural Protocols are complete.\r
546 //\r
547\r
548 return EFI_NOT_AVAILABLE_YET;\r
549}\r
550\r
551\r
552/**\r
553 Place holder function until all the Boot Services and Runtime Services are\r
554 available.\r
555\r
556 @param Arg1 Undefined\r
557\r
558 @return EFI_NOT_AVAILABLE_YET\r
559\r
560**/\r
561EFI_STATUS\r
562EFIAPI\r
563CoreEfiNotAvailableYetArg1 (\r
564 UINTN Arg1\r
565 )\r
566{\r
567 //\r
568 // This function should never be executed. If it does, then the architectural protocols\r
569 // have not been designed correctly. The CpuBreakpoint () is commented out for now until the\r
570 // DXE Core and all the Architectural Protocols are complete.\r
571 //\r
572\r
573 return EFI_NOT_AVAILABLE_YET;\r
574}\r
575\r
576\r
577/**\r
578 Place holder function until all the Boot Services and Runtime Services are available.\r
579\r
580 @param Arg1 Undefined\r
581 @param Arg2 Undefined\r
582\r
583 @return EFI_NOT_AVAILABLE_YET\r
584\r
585**/\r
586EFI_STATUS\r
587EFIAPI\r
588CoreEfiNotAvailableYetArg2 (\r
589 UINTN Arg1,\r
590 UINTN Arg2\r
591 )\r
592{\r
593 //\r
594 // This function should never be executed. If it does, then the architectural protocols\r
595 // have not been designed correctly. The CpuBreakpoint () is commented out for now until the\r
596 // DXE Core and all the Architectural Protocols are complete.\r
597 //\r
598\r
599 return EFI_NOT_AVAILABLE_YET;\r
600}\r
601\r
602\r
603/**\r
604 Place holder function until all the Boot Services and Runtime Services are available.\r
605\r
606 @param Arg1 Undefined\r
607 @param Arg2 Undefined\r
608 @param Arg3 Undefined\r
609\r
610 @return EFI_NOT_AVAILABLE_YET\r
611\r
612**/\r
613EFI_STATUS\r
614EFIAPI\r
615CoreEfiNotAvailableYetArg3 (\r
616 UINTN Arg1,\r
617 UINTN Arg2,\r
618 UINTN Arg3\r
619 )\r
620{\r
621 //\r
622 // This function should never be executed. If it does, then the architectural protocols\r
623 // have not been designed correctly. The CpuBreakpoint () is commented out for now until the\r
624 // DXE Core and all the Architectural Protocols are complete.\r
625 //\r
626\r
627 return EFI_NOT_AVAILABLE_YET;\r
628}\r
629\r
630\r
631/**\r
632 Place holder function until all the Boot Services and Runtime Services are available.\r
633\r
634 @param Arg1 Undefined\r
635 @param Arg2 Undefined\r
636 @param Arg3 Undefined\r
637 @param Arg4 Undefined\r
638\r
639 @return EFI_NOT_AVAILABLE_YET\r
640\r
641**/\r
642EFI_STATUS\r
643EFIAPI\r
644CoreEfiNotAvailableYetArg4 (\r
645 UINTN Arg1,\r
646 UINTN Arg2,\r
647 UINTN Arg3,\r
648 UINTN Arg4\r
649 )\r
650{\r
651 //\r
652 // This function should never be executed. If it does, then the architectural protocols\r
653 // have not been designed correctly. The CpuBreakpoint () is commented out for now until the\r
654 // DXE Core and all the Architectural Protocols are complete.\r
655 //\r
656\r
657 return EFI_NOT_AVAILABLE_YET;\r
658}\r
659\r
660\r
661/**\r
662 Place holder function until all the Boot Services and Runtime Services are available.\r
663\r
664 @param Arg1 Undefined\r
665 @param Arg2 Undefined\r
666 @param Arg3 Undefined\r
667 @param Arg4 Undefined\r
668 @param Arg5 Undefined\r
669\r
670 @return EFI_NOT_AVAILABLE_YET\r
671\r
672**/\r
673EFI_STATUS\r
674EFIAPI\r
675CoreEfiNotAvailableYetArg5 (\r
676 UINTN Arg1,\r
677 UINTN Arg2,\r
678 UINTN Arg3,\r
679 UINTN Arg4,\r
680 UINTN Arg5\r
681 )\r
682{\r
683 //\r
684 // This function should never be executed. If it does, then the architectural protocols\r
685 // have not been designed correctly. The CpuBreakpoint () is commented out for now until the\r
686 // DXE Core and all the Architectural Protocols are complete.\r
687 //\r
688\r
689 return EFI_NOT_AVAILABLE_YET;\r
690}\r
691\r
692\r
693/**\r
694 Calcualte the 32-bit CRC in a EFI table using the service provided by the\r
695 gRuntime service.\r
696\r
697 @param Hdr Pointer to an EFI standard header\r
698\r
699**/\r
700VOID\r
701CalculateEfiHdrCrc (\r
702 IN OUT EFI_TABLE_HEADER *Hdr\r
703 )\r
704{\r
705 UINT32 Crc;\r
706\r
707 Hdr->CRC32 = 0;\r
708\r
709 //\r
710 // If gBS->CalculateCrce32 () == CoreEfiNotAvailableYet () then\r
711 // Crc will come back as zero if we set it to zero here\r
712 //\r
713 Crc = 0;\r
714 gBS->CalculateCrc32 ((UINT8 *)Hdr, Hdr->HeaderSize, &Crc);\r
715 Hdr->CRC32 = Crc;\r
716}\r
717\r
718\r
719/**\r
720 Terminates all boot services.\r
721\r
722 @param ImageHandle Handle that identifies the exiting image.\r
723 @param MapKey Key to the latest memory map.\r
724\r
725 @retval EFI_SUCCESS Boot Services terminated\r
726 @retval EFI_INVALID_PARAMETER MapKey is incorrect.\r
727\r
728**/\r
729EFI_STATUS\r
730EFIAPI\r
731CoreExitBootServices (\r
732 IN EFI_HANDLE ImageHandle,\r
733 IN UINTN MapKey\r
734 )\r
735{\r
736 EFI_STATUS Status;\r
737\r
785b5f5a 738 //\r
739 // Disable Timer\r
740 //\r
741 gTimer->SetTimerPeriod (gTimer, 0);\r
742\r
31f228cf 743 //\r
744 // Terminate memory services if the MapKey matches\r
745 //\r
746 Status = CoreTerminateMemoryMap (MapKey);\r
747 if (EFI_ERROR (Status)) {\r
044824d9 748 //\r
749 // Notify other drivers that ExitBootServices fail \r
750 //\r
751 CoreNotifySignalList (&gEventExitBootServicesFailedGuid);\r
31f228cf 752 return Status;\r
753 }\r
754\r
74a88770
SZ
755 gMemoryMapTerminated = TRUE;\r
756\r
31f228cf 757 //\r
758 // Notify other drivers that we are exiting boot services.\r
759 //\r
760 CoreNotifySignalList (&gEfiEventExitBootServicesGuid);\r
761\r
e4c83a4f
LG
762 //\r
763 // Report that ExitBootServices() has been called\r
764 //\r
765 REPORT_STATUS_CODE (\r
766 EFI_PROGRESS_CODE,\r
767 (EFI_SOFTWARE_EFI_BOOT_SERVICE | EFI_SW_BS_PC_EXIT_BOOT_SERVICES)\r
768 );\r
769\r
213fecef 770 //\r
771 // Disable interrupt of Debug timer.\r
772 //\r
773 SaveAndSetDebugTimerInterrupt (FALSE);\r
774\r
31f228cf 775 //\r
776 // Disable CPU Interrupts\r
777 //\r
778 gCpu->DisableInterrupt (gCpu);\r
779\r
31f228cf 780 //\r
781 // Clear the non-runtime values of the EFI System Table\r
782 //\r
783 gDxeCoreST->BootServices = NULL;\r
784 gDxeCoreST->ConIn = NULL;\r
785 gDxeCoreST->ConsoleInHandle = NULL;\r
786 gDxeCoreST->ConOut = NULL;\r
787 gDxeCoreST->ConsoleOutHandle = NULL;\r
788 gDxeCoreST->StdErr = NULL;\r
789 gDxeCoreST->StandardErrorHandle = NULL;\r
790\r
791 //\r
792 // Recompute the 32-bit CRC of the EFI System Table\r
793 //\r
794 CalculateEfiHdrCrc (&gDxeCoreST->Hdr);\r
795\r
796 //\r
797 // Zero out the Boot Service Table\r
798 //\r
799 ZeroMem (gBS, sizeof (EFI_BOOT_SERVICES));\r
800 gBS = NULL;\r
801\r
802 //\r
803 // Update the AtRuntime field in Runtiem AP.\r
804 //\r
805 gRuntime->AtRuntime = TRUE;\r
806\r
807 return Status;\r
808}\r
809\r
810\r
811/**\r
812 Given a compressed source buffer, this function retrieves the size of the\r
813 uncompressed buffer and the size of the scratch buffer required to decompress\r
814 the compressed source buffer.\r
815\r
816 The GetInfo() function retrieves the size of the uncompressed buffer and the\r
817 temporary scratch buffer required to decompress the buffer specified by Source\r
818 and SourceSize. If the size of the uncompressed buffer or the size of the\r
819 scratch buffer cannot be determined from the compressed data specified by\r
820 Source and SourceData, then EFI_INVALID_PARAMETER is returned. Otherwise, the\r
821 size of the uncompressed buffer is returned in DestinationSize, the size of\r
822 the scratch buffer is returned in ScratchSize, and EFI_SUCCESS is returned.\r
823 The GetInfo() function does not have scratch buffer available to perform a\r
824 thorough checking of the validity of the source data. It just retrieves the\r
825 "Original Size" field from the beginning bytes of the source data and output\r
826 it as DestinationSize. And ScratchSize is specific to the decompression\r
827 implementation.\r
828\r
829 @param This A pointer to the EFI_DECOMPRESS_PROTOCOL instance.\r
830 @param Source The source buffer containing the compressed data.\r
831 @param SourceSize The size, in bytes, of the source buffer.\r
832 @param DestinationSize A pointer to the size, in bytes, of the\r
833 uncompressed buffer that will be generated when the\r
834 compressed buffer specified by Source and\r
835 SourceSize is decompressed.\r
836 @param ScratchSize A pointer to the size, in bytes, of the scratch\r
837 buffer that is required to decompress the\r
838 compressed buffer specified by Source and\r
839 SourceSize.\r
840\r
841 @retval EFI_SUCCESS The size of the uncompressed data was returned in\r
842 DestinationSize and the size of the scratch buffer\r
843 was returned in ScratchSize.\r
844 @retval EFI_INVALID_PARAMETER The size of the uncompressed data or the size of\r
845 the scratch buffer cannot be determined from the\r
846 compressed data specified by Source and\r
847 SourceSize.\r
848\r
849**/\r
850EFI_STATUS\r
851EFIAPI\r
852DxeMainUefiDecompressGetInfo (\r
853 IN EFI_DECOMPRESS_PROTOCOL *This,\r
854 IN VOID *Source,\r
855 IN UINT32 SourceSize,\r
856 OUT UINT32 *DestinationSize,\r
857 OUT UINT32 *ScratchSize\r
858 )\r
859{\r
860 if (Source == NULL || DestinationSize == NULL || ScratchSize == NULL) {\r
861 return EFI_INVALID_PARAMETER;\r
862 }\r
863 return UefiDecompressGetInfo (Source, SourceSize, DestinationSize, ScratchSize);\r
864}\r
865\r
866\r
867/**\r
868 Decompresses a compressed source buffer.\r
869\r
870 The Decompress() function extracts decompressed data to its original form.\r
871 This protocol is designed so that the decompression algorithm can be\r
872 implemented without using any memory services. As a result, the Decompress()\r
873 Function is not allowed to call AllocatePool() or AllocatePages() in its\r
874 implementation. It is the caller's responsibility to allocate and free the\r
875 Destination and Scratch buffers.\r
876 If the compressed source data specified by Source and SourceSize is\r
93e8d03c 877 successfully decompressed into Destination, then EFI_SUCCESS is returned. If\r
31f228cf 878 the compressed source data specified by Source and SourceSize is not in a\r
879 valid compressed data format, then EFI_INVALID_PARAMETER is returned.\r
880\r
881 @param This A pointer to the EFI_DECOMPRESS_PROTOCOL instance.\r
882 @param Source The source buffer containing the compressed data.\r
883 @param SourceSize SourceSizeThe size of source data.\r
884 @param Destination On output, the destination buffer that contains\r
885 the uncompressed data.\r
886 @param DestinationSize The size of the destination buffer. The size of\r
887 the destination buffer needed is obtained from\r
888 EFI_DECOMPRESS_PROTOCOL.GetInfo().\r
889 @param Scratch A temporary scratch buffer that is used to perform\r
890 the decompression.\r
891 @param ScratchSize The size of scratch buffer. The size of the\r
892 scratch buffer needed is obtained from GetInfo().\r
893\r
894 @retval EFI_SUCCESS Decompression completed successfully, and the\r
895 uncompressed buffer is returned in Destination.\r
896 @retval EFI_INVALID_PARAMETER The source buffer specified by Source and\r
897 SourceSize is corrupted (not in a valid\r
898 compressed format).\r
899\r
900**/\r
901EFI_STATUS\r
902EFIAPI\r
903DxeMainUefiDecompress (\r
904 IN EFI_DECOMPRESS_PROTOCOL *This,\r
905 IN VOID *Source,\r
906 IN UINT32 SourceSize,\r
907 IN OUT VOID *Destination,\r
908 IN UINT32 DestinationSize,\r
909 IN OUT VOID *Scratch,\r
910 IN UINT32 ScratchSize\r
911 )\r
912{\r
913 EFI_STATUS Status;\r
914 UINT32 TestDestinationSize;\r
915 UINT32 TestScratchSize;\r
916\r
917 if (Source == NULL || Destination== NULL || Scratch == NULL) {\r
918 return EFI_INVALID_PARAMETER;\r
919 }\r
920\r
921 Status = UefiDecompressGetInfo (Source, SourceSize, &TestDestinationSize, &TestScratchSize);\r
922 if (EFI_ERROR (Status)) {\r
923 return Status;\r
924 }\r
925\r
926 if (ScratchSize < TestScratchSize || DestinationSize < TestDestinationSize) {\r
927 return RETURN_INVALID_PARAMETER;\r
928 }\r
929\r
930 return UefiDecompress (Source, Destination, Scratch);\r
931}\r