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1 ## @file MdeModulePkg.dec
2 #
3 # This package provides the modules that conform to UEFI/PI Industry standards.
4 # It also provides the defintions(including PPIs/PROTOCOLs/GUIDs and library classes)
5 # and libraries instances, which are used for those modules.
6 #
7 # Copyright (c) 2007 - 2010, Intel Corporation.
8 #
9 # All rights reserved.
10 # This program and the accompanying materials are licensed and made available under
11 # the terms and conditions of the BSD License which accompanies this distribution.
12 # The full text of the license may be found at
13 # http://opensource.org/licenses/bsd-license.php
14 #
15 # THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
16 # WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
17 #
18 ##
19
20
21 [Defines]
22 DEC_SPECIFICATION = 0x00010005
23 PACKAGE_NAME = MdeModulePkg
24 PACKAGE_GUID = BA0D78D6-2CAF-414b-BD4D-B6762A894288
25 PACKAGE_VERSION = 0.91
26
27 [Includes]
28 Include
29
30
31 [LibraryClasses]
32 ## @libraryclass IpIo layer upon EFI IP4 Protocol.
33 # This library is only intended to be used by UEFI network stack modules.
34 IpIoLib|Include/Library/IpIoLib.h
35
36 ## @libraryclass Basic function for UEFI network stack.
37 # This library is only intended to be used by UEFI network stack modules.
38 NetLib|Include/Library/NetLib.h
39
40 ## @libraryclass The helper routines to access UDP service.
41 # This library is only intended to be used by UEFI network stack modules.
42 UdpIoLib|Include/Library/UdpIoLib.h
43
44 ## @libraryclass Defines a set of methods to reset whole system.
45 ResetSystemLib|Include/Library/ResetSystemLib.h
46
47 ## @libraryclass Defines a set of methods related do S3 mode.
48 # This library class is no longer used and modules using this library should
49 # directly locate EFI_PEI_S3_RESUME_PPI defined in PI 1.2 specification.
50 S3Lib|Include/Library/S3Lib.h
51
52 ## @libraryclass Defines a set of methods related recovery mode.
53 # This library class is no longer used and modules using this library should
54 # directly locate EFI_PEI_RECOVERY_MODULE_PPI defined in PI 1.2 specification.
55 RecoveryLib|Include/Library/RecoveryLib.h
56
57 ## @libraryclass Provides HII related functions.
58 HiiLib|Include/Library/HiiLib.h
59
60 ## @libraryclass Defines a set of interfaces on how to process capusle image update.
61 CapsuleLib|Include/Library/CapsuleLib.h
62
63 ## @libraryclass Library for Deferred Procedure Calls.
64 DpcLib|Include/Library/DpcLib.h
65
66 ## @libraryclass Provides global variables that are pointers
67 # to the UEFI HII related protocols.
68 #
69 UefiHiiServicesLib|Include/Library/UefiHiiServicesLib.h
70
71 ## @libraryclass Provides a set of interfaces to abstract the policy of security measurement.
72 #
73 SecurityManagementLib|MdeModulePkg/Include/Library/SecurityManagementLib.h
74
75 ## @libraryclass OEM status code libary is used to report status code to OEM device.
76 #
77 OemHookStatusCodeLib|Include/Library/OemHookStatusCodeLib.h
78
79 ## @libraryclass Debug Agent is used to provide soft debug capability.
80 #
81 DebugAgentLib|Include/Library/DebugAgentLib.h
82 [Guids]
83 ## MdeModule package token space guid
84 # Include/Guid/MdeModulePkgTokenSpace.h
85 gEfiMdeModulePkgTokenSpaceGuid = { 0xA1AFF049, 0xFDEB, 0x442a, { 0xB3, 0x20, 0x13, 0xAB, 0x4C, 0xB7, 0x2B, 0xBC }}
86
87 ## Hob guid for Pcd DataBase
88 # Include/Guid/PcdDataBaseHobGuid.h
89 gPcdDataBaseHobGuid = { 0xEA296D92, 0x0B69, 0x423C, { 0x8C, 0x28, 0x33, 0xB4, 0xE0, 0xA9, 0x12, 0x68 }}
90
91 ## Guid for EDKII implementation GUIDed opcodes
92 # Include/Guid/MdeModuleHii.h
93 gEfiIfrTianoGuid = { 0xf0b1735, 0x87a0, 0x4193, {0xb2, 0x66, 0x53, 0x8c, 0x38, 0xaf, 0x48, 0xce }}
94
95 ## Guid for Framework vfr GUIDed opcodes.
96 # Include/Guid/MdeModuleHii.h
97 gEfiIfrFrameworkGuid = { 0x31ca5d1a, 0xd511, 0x4931, { 0xb7, 0x82, 0xae, 0x6b, 0x2b, 0x17, 0x8c, 0xd7 }}
98
99 ## Guid to specify the System Non Volatile FV
100 # Include/Guid/SystemNvDataGuid.h
101 gEfiSystemNvDataFvGuid = { 0xFFF12B8D, 0x7696, 0x4C8B, { 0xA9, 0x85, 0x27, 0x47, 0x07, 0x5B, 0x4F, 0x50 }}
102
103 ## Guid specify the device is the console out device.
104 # Include/Guid/ConsoleOutDevice.h
105 gEfiConsoleOutDeviceGuid = { 0xD3B36F2C, 0xD551, 0x11D4, { 0x9A, 0x46, 0x00, 0x90, 0x27, 0x3F, 0xC1, 0x4D }}
106
107 ## Guid specify the device is the console in device.
108 # Include/Guid/ConsoleInDevice.h
109 gEfiConsoleInDeviceGuid = { 0xD3B36F2B, 0xD551, 0x11D4, { 0x9A, 0x46, 0x00, 0x90, 0x27, 0x3F, 0xC1, 0x4D }}
110
111 ## Hob and Variable guid specify the platform memory type information.
112 # Include/Guid/MemoryTypeInformation.h
113 gEfiMemoryTypeInformationGuid = { 0x4C19049F, 0x4137, 0x4DD3, { 0x9C, 0x10, 0x8B, 0x97, 0xA8, 0x3F, 0xFD, 0xFA }}
114
115 ## Capsule update hob and variable guid
116 # Include/Guid/CapsuleVendor.h
117 gEfiCapsuleVendorGuid = { 0x711C703F, 0xC285, 0x4B10, { 0xA3, 0xB0, 0x36, 0xEC, 0xBD, 0x3C, 0x8B, 0xE2 }}
118
119 ## Guid specifiy the device is the StdErr device.
120 # Include/Guid/StandardErrorDevice.h
121 gEfiStandardErrorDeviceGuid = { 0xD3B36F2D, 0xD551, 0x11D4, { 0x9A, 0x46, 0x00, 0x90, 0x27, 0x3F, 0xC1, 0x4D }}
122
123 ## Guid acted as variable store header's signature and to specify the variable list entries put in the EFI system table.
124 # Include/Guid/VariableFormat.h
125 gEfiVariableGuid = { 0xddcf3616, 0x3275, 0x4164, { 0x98, 0xb6, 0xfe, 0x85, 0x70, 0x7f, 0xfe, 0x7d }}
126
127 ## Performance protocol guid that also acts as the performance HOB guid and performance variable GUID
128 # Include/Guid/Performance.h
129 gPerformanceProtocolGuid = { 0x76B6BDFA, 0x2ACD, 0x4462, { 0x9E, 0x3F, 0xCB, 0x58, 0xC9, 0x69, 0xD9, 0x37 }}
130
131 ## Guid is defined for CRC32 encapsulation scheme.
132 # Include/Guid/Crc32GuidedSectionExtraction.h
133 gEfiCrc32GuidedSectionExtractionGuid = { 0xFC1BCDB0, 0x7D31, 0x49aa, {0x93, 0x6A, 0xA4, 0x60, 0x0D, 0x9D, 0xD0, 0x83 } }
134
135 ## Include/Guid/NicIp4ConfigNvData.h
136 gEfiNicIp4ConfigVariableGuid = {0xd8944553, 0xc4dd, 0x41f4, { 0x9b, 0x30, 0xe1, 0x39, 0x7c, 0xfb, 0x26, 0x7b }}
137
138 ## Include/Guid/StatusCodeCallbackGuid.h
139 gStatusCodeCallbackGuid = {0xe701458c, 0x4900, 0x4ca5, {0xb7, 0x72, 0x3d, 0x37, 0x94, 0x9f, 0x79, 0x27}}
140
141 ## GUID identifies status code records HOB that originate from the PEI status code
142 # Include/Guid/MemoryStatusCodeRecord.h
143 gMemoryStatusCodeRecordGuid = { 0x060CC026, 0x4C0D, 0x4DDA, { 0x8F, 0x41, 0x59, 0x5F, 0xEF, 0x00, 0xA5, 0x02 }}
144
145 ## GUID used to pass DEBUG() macro information through the Status Code Protocol and Status Code PPI
146 # Include/Guid/StatusCodeDataTypeDebug.h
147 gEfiStatusCodeDataTypeDebugGuid = { 0x9A4E9246, 0xD553, 0x11D5, { 0x87, 0xE2, 0x00, 0x06, 0x29, 0x45, 0xC3, 0xB9 }}
148
149 ## A configuration Table Guid for Load module at fixed address
150 # Include/Guid/LoadModuleAtFixedAddress.h
151 gLoadFixedAddressConfigurationTableGuid = { 0x2CA88B53,0xD296,0x4080, { 0xA4,0xA5,0xCA,0xD9,0xBA,0xE2,0x4B,0x9 } }
152
153 [Protocols]
154 ## Load File protocol provides capability to load and unload EFI image into memory and execute it.
155 # Include/Protocol/LoadPe32Image.h
156 # This protocol is deprecated. Native EDKII module should NOT use this protocol to load/unload image.
157 # If developer need implement such functionality, they should use BasePeCoffLib.
158 gEfiLoadPeImageProtocolGuid = { 0x5CB5C776, 0x60D5, 0x45EE, { 0x88, 0x3C, 0x45, 0x27, 0x08, 0xCD, 0x74, 0x3F }}
159
160 ## Print protocol defines basic print functions to print the format unicode and ascii string.
161 # Include/Protocol/Print2.h
162 gEfiPrint2ProtocolGuid = { 0xf05976ef, 0x83f1, 0x4f3d, { 0x86, 0x19, 0xf7, 0x59, 0x5d, 0x41, 0xe5, 0x38 } }
163
164 ## This protocol defines the generic memory test interfaces in Dxe phase.
165 # Include/Protocol/GenericMemoryTest.h
166 gEfiGenericMemTestProtocolGuid = { 0x309DE7F1, 0x7F5E, 0x4ACE, { 0xB4, 0x9C, 0x53, 0x1B, 0xE5, 0xAA, 0x95, 0xEF }}
167
168 ## Include/Protocol/Dpc.h
169 gEfiDpcProtocolGuid = {0x480f8ae9, 0xc46, 0x4aa9, { 0xbc, 0x89, 0xdb, 0x9f, 0xba, 0x61, 0x98, 0x6 }}
170
171 ## Fault Tolerant Write protocol provides boot-time service to do fault tolerant write capability for block devices.
172 # Include/Protocol/FaultTolerantWrite.h
173 gEfiFaultTolerantWriteProtocolGuid = { 0x3EBD9E82, 0x2C78, 0x4DE6, { 0x97, 0x86, 0x8D, 0x4B, 0xFC, 0xB7, 0xC8, 0x81 }}
174
175 ## This protocol is used to abstract the swap operation of boot block and backup block of boot FV.
176 # Include/Protocol/SwapAddressRange.h
177 gEfiSwapAddressRangeProtocolGuid = { 0x1259F60D, 0xB754, 0x468E, { 0xA7, 0x89, 0x4D, 0xB8, 0x5D, 0x55, 0xE8, 0x7E }}
178
179 [PcdsFeatureFlag]
180 ## Indicate whether platform can support update capsule across a system reset
181 gEfiMdeModulePkgTokenSpaceGuid.PcdSupportUpdateCapsuleReset|FALSE|BOOLEAN|0x0001001d
182
183 ## This feature flag can be used to enable or disable all PCD PEIM services.
184 # If TRUE, all PCD PPI services will be produced.
185 # If FALSE, the minimal PCD PEIM services (only GetService) will be produced.
186 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiFullPcdDatabaseEnable|TRUE|BOOLEAN|0x00010020
187
188 ## If TRUE, then the Device Path To Text Protocol should be produced by the platform.
189 # It can be disabled to save size.
190 gEfiMdeModulePkgTokenSpaceGuid.PcdDevicePathSupportDevicePathToText|TRUE|BOOLEAN|0x00010037
191
192 ## If TRUE, then the Device Path From Text Protocol should be produced by the platform.
193 # It can be disabled to save size.
194 gEfiMdeModulePkgTokenSpaceGuid.PcdDevicePathSupportDevicePathFromText|TRUE|BOOLEAN|0x00010038
195
196 ## If TRUE, enable the statistic functionality about variable usage. Such information is
197 # stored as a vendor configuration table into the EFI system table.
198 # If user wants to use VariableInfo application in MdeModulePkg\Application directory to get
199 # variable usage info, this pcd should be set as TRUE. Otherwise VariableInfo application can
200 # not output useful info.
201 gEfiMdeModulePkgTokenSpaceGuid.PcdVariableCollectStatistics|FALSE|BOOLEAN|0x0001003f
202
203 ## If TRUE, Unicode Collation Protocol will be installed.
204 gEfiMdeModulePkgTokenSpaceGuid.PcdUnicodeCollationSupport|TRUE|BOOLEAN|0x00010040
205
206 ## If TRUE, Unicode Collation 2 Protocol will be installed.
207 gEfiMdeModulePkgTokenSpaceGuid.PcdUnicodeCollation2Support|TRUE|BOOLEAN|0x00010041
208
209 ## If TRUE, Graphics Output Protocol will be installed on virtual handle created by ConsplitterDxe.
210 # It could be set FALSE to save size.
211 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutGopSupport|TRUE|BOOLEAN|0x00010042
212
213 ## If TRUE, UGA Draw Protocol will be installed on virtual handle created by ConsplitterDxe.
214 # It could be set FALSE to save size.
215 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutUgaSupport|TRUE|BOOLEAN|0x00010043
216
217 ## If TRUE, when PeiCore dispatches a PEI module, PeiCore will first search TE section from this PEIM to load the image.
218 # If TE section is not found, then PeiCore will search PE section.
219 # If FALSE, PeiCore will first search PE section from PEIM to load the image.
220 # This PCD is used to tune Pei phase performance to reduce the search image time.
221 # It can be set according to the generated image section type.
222 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreImageLoaderSearchTeSectionFirst|TRUE|BOOLEAN|0x00010044
223
224 ## If TRUE, force to switch off the support of legacy usb. So legacy usb device driver can not make use of SMI
225 # interrupt to access usb device in the case of absence of usb stack.
226 # DUET platform requires the token to be TRUE.
227 gEfiMdeModulePkgTokenSpaceGuid.PcdTurnOffUsbLegacySupport|FALSE|BOOLEAN|0x00010047
228
229 ## If TRUE, HiiImageProtocol will be installed.
230 # FALSE is for size reduction.
231 gEfiMdeModulePkgTokenSpaceGuid.PcdSupportHiiImageProtocol|TRUE|BOOLEAN|0x00010100
232
233 ## If TRUE, USB KeyBoard Driver disables the default keyboard layout.
234 # The default keyboard layout serves as the backup when no keyboard layout can be retrieved
235 # from HII database.
236 gEfiMdeModulePkgTokenSpaceGuid.PcdDisableDefaultKeyboardLayoutInUsbKbDriver|FALSE|BOOLEAN|0x00010200
237
238 ## If TRUE, Setup Browser supports GUID opcodes generated from Framework HII VFR file by VFR compiler.
239 # If TRUE, the PeiCore will handle the framework FvHob and install FvInfo PPI for it.
240 # This is used to provide backward compatibility support to Framework HII and Framework FvHob.
241 gEfiMdeModulePkgTokenSpaceGuid.PcdFrameworkCompatibilitySupport|FALSE|BOOLEAN|0x00012009
242
243 ## If TRUE, HelloWorld Application will print the verbose information.
244 # This PCD is a sample to explain FeatureFlag PCD usage.
245 gEfiMdeModulePkgTokenSpaceGuid.PcdHelloWorldPrintEnable|TRUE|BOOLEAN|0x0001200a
246
247 ## If TRUE, FULL FTW protocol services (total six APIs) will be produced.
248 # If FASLE, only FTW Write service is available.
249 gEfiMdeModulePkgTokenSpaceGuid.PcdFullFtwServiceEnable|TRUE|BOOLEAN|0x0001200b
250
251 ## If TRUE, DXE IPL must support the UEFI decompression algorithm.
252 # If FALSE, DXE IPL will not support UEFI decompression to save space.
253 gEfiMdeModulePkgTokenSpaceGuid.PcdDxeIplSupportUefiDecompress|TRUE|BOOLEAN|0x0001200c
254
255 ## This PCD specifies whether PciBus supports the hot plug device.
256 gEfiMdeModulePkgTokenSpaceGuid.PcdPciBusHotplugDeviceSupport|TRUE|BOOLEAN|0x0001003d
257
258 ## This PCD specifies whether the Single Root I/O virtualization support.
259 gEfiMdeModulePkgTokenSpaceGuid.PcdSrIovSupport|TRUE|BOOLEAN|0x10000044
260
261 ## This PCD specifies whether the Alternative Routing-ID support.
262 gEfiMdeModulePkgTokenSpaceGuid.PcdAriSupport|TRUE|BOOLEAN|0x10000045
263
264 ## This PCD specifies whether the Multi Root I/O virtualization support.
265 gEfiMdeModulePkgTokenSpaceGuid.PcdMrIovSupport|FALSE|BOOLEAN|0x10000046
266
267 ## This PCD specifies whether the PCI bus driver probes non-standard,
268 # such as 2K/1K/512, granularity for PCI to PCI bridge I/O window.
269 gEfiMdeModulePkgTokenSpaceGuid.PcdPciBridgeIoAlignmentProbe|FALSE|BOOLEAN|0x10000047
270 ## This PCD specifies whether StatusCode is reported via Serial port.
271 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeUseSerial|TRUE|BOOLEAN|0x00010022
272
273 ## This PCD specifies whether StatusCode is stored in memory.
274 # The memory is boot time memory in PEI Phase and is runtime memory in DXE Phase.
275 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeUseMemory|FALSE|BOOLEAN|0x00010023
276
277 ## This PCD specifies whether Peiphase StatusCode is replayed in DxePhase.
278 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeReplayIn|FALSE|BOOLEAN|0x0001002d
279
280 [PcdsFeatureFlag.IA32, PcdsFeatureFlag.X64]
281 ##
282 # This feature flag specifies whether DxeIpl switches to long mode to enter DXE phase.
283 # If it is TRUE, DxeIpl will load a 64-bit DxeCore and switch to long mode to hand over to DxeCore;
284 # otherwise, DxeIpl will load a 32-bit DxeCore and perform stack switch to hand over to DxeCore.
285 # It is assumed that 64-bit DxeCore is built in firmware if it is true; otherwise 32-bit DxeCore
286 # is built in firmware.
287 #
288 gEfiMdeModulePkgTokenSpaceGuid.PcdDxeIplSwitchToLongMode|TRUE|BOOLEAN|0x0001003b
289
290 [PcdsFixedAtBuild]
291 ## Dynamic type PCD can be registered callback function for Pcd setting action.
292 # PcdMaxPeiPcdCallBackNumberPerPcdEntry indicate maximum number of callback function
293 # for a dynamic PCD used in PEI phase.
294 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxPeiPcdCallBackNumberPerPcdEntry|0x08|UINT32|0x0001000f
295
296 ## VPD type PCD allow developer point an absoluted physical address PcdVpdBaseAddress
297 # to store PCD value.
298 #
299 gEfiMdeModulePkgTokenSpaceGuid.PcdVpdBaseAddress|0x0|UINT32|0x00010010
300
301 ## Maximum number of FV is supported by PeiCore's dispatching.
302 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxFvSupported|6|UINT32|0x00010030
303
304 ## Maximum PEIM count in every FV is supported by PeiCore's dispatching.
305 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxPeimPerFv|32|UINT32|0x00010031
306
307 ## Maximum stack size for PeiCore.
308 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxPeiStackSize|0x20000|UINT32|0x00010032
309
310 ## Maximum PPI count is supported by PeiCore's PPI database.
311 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxPpiSupported|64|UINT32|0x00010033
312
313 ## Size of the NV variable range. Note that this value should less than or equal to PcdFlashNvStorageFtwSpareSize
314 # The root cause is that variable driver will use FTW protocol to reclaim variable region.
315 # If the length of variable region is larger than FTW spare size, it means the whole variable region can not
316 # be reflushed through the manner of fault tolerant write.
317 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableSize|0x0|UINT32|0x30000002
318
319 ## The maximum size of single common variable, that is non-HwErr type varible.
320 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxVariableSize|0x400|UINT32|0x30000003
321
322 ## The maximum size of single hardware error record variable.
323 # In IA32/X64 platforms, this value should be larger than 1KB.
324 # In IA64 platforms, this value should be larger than 128KB.
325 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxHardwareErrorVariableSize|0x8000|UINT32|0x30000004
326
327 ## The size of reserved HwErr variable space. Note that this value must be less than or equal to PcdFlashNvStorageVariableSize
328 # In EdkII implementation, HwErr type variable is stored with common non-volatile variables in the same NV region.
329 # so the platform integrator should ensure this value is less than or equal to PcdFlashNvStorageVariableSize.
330 # this value is used to guarantee the space of HwErr type variable and not populated by common variable.
331 gEfiMdeModulePkgTokenSpaceGuid.PcdHwErrStorageSize|0x0000|UINT32|0x30000006
332
333 ## The size of volatile buffer. This buffer is used to store VOLATILE attribute variable.
334 gEfiMdeModulePkgTokenSpaceGuid.PcdVariableStoreSize|0x10000|UINT32|0x30000005
335
336 ## Size of the FTW spare block range. Note that this value should larger than PcdFlashNvStorageVariableSize
337 # The root cause is that variable driver will use FTW protocol to reclaim variable region.
338 # If the length of variable region is larger than FTW spare size, it means the whole variable region can not
339 # be reflushed through the manner of fault tolerant write.
340 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareSize|0x0|UINT32|0x30000014
341
342 ## Size of the FTW working block range.
343 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingSize|0x0|UINT32|0x30000011
344
345 ## FFS filename to find the ACPI tables
346 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiTableStorageFile|{ 0x25, 0x4e, 0x37, 0x7e, 0x01, 0x8e, 0xee, 0x4f, 0x87, 0xf2, 0x39, 0xc, 0x23, 0xc6, 0x6, 0xcd }|VOID*|16
347
348 ## Single root I/O virtualization virtual function memory BAR alignment
349 # BITN set indicates 2 of n+12 power
350 # BIT0 set indicates 4KB alignment
351 # BIT1 set indicates 8KB alignment
352 gEfiMdeModulePkgTokenSpaceGuid.PcdSrIovSystemPageSize|0x1|UINT32|0x10000047
353
354 ## Flag of enabling/disabling the feature of Loading Module at Fixed Address
355 # -1: Enable the feature as fixed offset to TOLM
356 # 0: Disable the feature.
357 # Positive Value: Enable the feature as fixed absolute address, and the value is the top memory address
358 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadModuleAtFixAddressEnable|0|UINT64|0x30001015
359
360 ## Smbios version
361 gEfiMdeModulePkgTokenSpaceGuid.PcdSmbiosVersion|0x0206|UINT16|0x00010055
362
363 [PcdsFixedAtBuild,PcdsPatchableInModule]
364 ## Maximun number of performance log entries during PEI phase.
365 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxPeiPerformanceLogEntries|40|UINT8|0x0001002f
366
367 ## RTC Update Timeout Value
368 gEfiMdeModulePkgTokenSpaceGuid.PcdRealTimeClockUpdateTimeout|100000|UINT32|0x00010034
369
370 [PcdsPatchableInModule,PcdsDynamic]
371 ## This PCD defines the Console output column and the default value is 25 according to UEFI spec
372 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutRow|25|UINT32|0x40000006
373
374 ## This PCD defines the Console output row and the default value is 80 according to UEFI spec
375 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutColumn|80|UINT32|0x40000007
376
377 [PcdsFixedAtBuild,PcdsDynamic]
378 ## Base address of the NV variable range in flash device
379 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableBase|0x0|UINT32|0x30000001
380
381 ## Base address of the FTW spare block range in flash device.
382 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareBase|0x0|UINT32|0x30000013
383
384 ## Base address of the FTW working block range in flash device.
385 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingBase|0x0|UINT32|0x30000010
386
387 ## This PCD defines the print string.
388 # This PCD is a sample to explain String typed PCD usage.
389 gEfiMdeModulePkgTokenSpaceGuid.PcdHelloWorldPrintString|L"UEFI Hello World!\n"|VOID*|0x40000004
390
391 ## This PCD defines a reserved memory range for the EMU Variable driver's NV Variable Store
392 # The range is valid if non-zero. The memory range size must be PcdVariableStoreSize.
393 gEfiMdeModulePkgTokenSpaceGuid.PcdEmuVariableNvStoreReserved|0|UINT64|0x40000008
394
395 [PcdsFixedAtBuild,PcdsPatchableInModule,PcdsDynamic]
396 ## This PCD defines the times to print hello world string.
397 # This PCD is a sample to explain FixedAtBuild UINT32 PCD usage.
398 gEfiMdeModulePkgTokenSpaceGuid.PcdHelloWorldPrintTimes|1|UINT32|0x40000005
399
400 ## Indicate the max size of the populated capsule image that the platform can support.
401 # The default max size is 100MB (0x6400000) for more than one large capsule images.
402 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxSizePopulateCapsule|0x6400000|UINT32|0x0001001e
403
404 ## Indicate the max size of the non-populated capsule image that the platform can support.
405 # The default max size is 10MB (0xa00000) for the casule image without populated flag setting.
406 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxSizeNonPopulateCapsule|0xa00000|UINT32|0x0001001f
407
408 ## Null-terminated Unicode string of the firmware vendor name that is default name filled into the EFI System Table
409 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareVendor|L"EDK II"|VOID*|0xx00010050
410
411 ## Firmware revision that is default value filled into the EFI System Table
412 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareRevision|0x00010000|UINT32|0x00010051
413
414 ## Null-terminated Unicode string that described the firmware version
415 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareVersionString|L""|VOID*|0x00010052
416
417 ## Null-terminated Unicode string that contains the date the formware was released
418 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareReleaseDateString|L""|VOID*|0x00010053
419
420 ## PcdStatusCodeMemorySize is used when PcdStatusCodeUseMemory is set to true
421 # (PcdStatusCodeMemorySize * KBytes) is the total taken memory size.
422 # The default value in PeiPhase is 1 KBytes.
423 # The default value in DxePhase is 128 KBytes.
424 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeMemorySize|1|UINT16|0x00010054
425
426 [PcdsPatchableInModule]
427 ## Specify memory size with page number for PEI code when
428 # the feature of Loading Module at Fixed Address is enabled
429 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressPeiCodePageNumber|0|UINT32|0x00000029
430
431 ## Specify memory size with page number for DXE boot time code when
432 # the feature of Loading Module at Fixed Address is enabled
433 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressBootTimeCodePageNumber|0|UINT32|0x0000002a
434
435 ## Specify memory size with page number for DXE runtime code when
436 # the feature of Loading Module at Fixed Address is enabled
437 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressRuntimeCodePageNumber|0|UINT32|0x0000002b
438
439 ## Specify memory size with page number for SMM code when
440 # the feature of Loading Module at Fixed Address is enabled
441 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressSmmCodePageNumber|0|UINT32|0x0000002c
442