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MdeModulePkg: Remove Ip4ConfigDxe and related guid definition
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1 ## @file MdeModulePkg.dec
2 # This package provides the modules that conform to UEFI/PI Industry standards.
3 # It also provides the definitions(including PPIs/PROTOCOLs/GUIDs and library classes)
4 # and libraries instances, which are used for those modules.
5 #
6 # Copyright (c) 2007 - 2015, Intel Corporation. All rights reserved.<BR>
7 # This program and the accompanying materials are licensed and made available under
8 # the terms and conditions of the BSD License that accompanies this distribution.
9 # The full text of the license may be found at
10 # http://opensource.org/licenses/bsd-license.php.
11 #
12 # THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
13 # WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
14 #
15 ##
16
17
18 [Defines]
19 DEC_SPECIFICATION = 0x00010005
20 PACKAGE_NAME = MdeModulePkg
21 PACKAGE_UNI_FILE = MdeModulePkg.uni
22 PACKAGE_GUID = BA0D78D6-2CAF-414b-BD4D-B6762A894288
23 PACKAGE_VERSION = 0.96
24
25 [Includes]
26 Include
27
28
29 [LibraryClasses]
30 ## @libraryclass IpIo layer upon EFI IP4 Protocol.
31 # This library is only intended to be used by UEFI network stack modules.
32 IpIoLib|Include/Library/IpIoLib.h
33
34 ## @libraryclass Basic function for UEFI network stack.
35 # This library is only intended to be used by UEFI network stack modules.
36 NetLib|Include/Library/NetLib.h
37
38 ## @libraryclass The helper routines to access UDP service.
39 # This library is only intended to be used by UEFI network stack modules.
40 UdpIoLib|Include/Library/UdpIoLib.h
41
42 ## @libraryclass The helper routines to access TCP service.
43 # This library is only intended to be used by UEFI network stack modules.
44 TcpIoLib|Include/Library/TcpIoLib.h
45
46 ## @libraryclass Defines a set of methods to reset whole system.
47 ResetSystemLib|Include/Library/ResetSystemLib.h
48
49 ## @libraryclass Defines a set of methods related do S3 mode.
50 # This library class is no longer used and modules using this library should
51 # directly locate EFI_PEI_S3_RESUME_PPI defined in PI 1.2 specification.
52 S3Lib|Include/Library/S3Lib.h
53
54 ## @libraryclass Defines a set of methods related recovery mode.
55 # This library class is no longer used and modules using this library should
56 # directly locate EFI_PEI_RECOVERY_MODULE_PPI defined in PI 1.2 specification.
57 RecoveryLib|Include/Library/RecoveryLib.h
58
59 ## @libraryclass Provides HII related functions.
60 HiiLib|Include/Library/HiiLib.h
61
62 ## @libraryclass Defines a set of interfaces on how to process capusle image update.
63 CapsuleLib|Include/Library/CapsuleLib.h
64
65 ## @libraryclass Library for Deferred Procedure Calls.
66 DpcLib|Include/Library/DpcLib.h
67
68 ## @libraryclass Provides global variables that are pointers
69 # to the UEFI HII related protocols.
70 #
71 UefiHiiServicesLib|Include/Library/UefiHiiServicesLib.h
72
73 ## @libraryclass Provides a set of interfaces to abstract the policy of security measurement.
74 #
75 SecurityManagementLib|Include/Library/SecurityManagementLib.h
76
77 ## @libraryclass OEM status code libary is used to report status code to OEM device.
78 #
79 OemHookStatusCodeLib|Include/Library/OemHookStatusCodeLib.h
80
81 ## @libraryclass Debug Agent is used to provide soft debug capability.
82 #
83 DebugAgentLib|Include/Library/DebugAgentLib.h
84
85 ## @libraryclass Provide platform specific hooks.
86 #
87 PlatformHookLib|Include/Library/PlatformHookLib.h
88
89 ## @libraryclass Provide platform specific hooks for SMM core.
90 #
91 SmmCorePlatformHookLib|Include/Library/SmmCorePlatformHookLib.h
92
93 ## @libraryclass Provide capability to maintain the data integrity cross S3 phase.
94 #
95 LockBoxLib|Include/Library/LockBoxLib.h
96
97 ## @libraryclass Provide the CPU exception handler.
98 #
99 CpuExceptionHandlerLib|Include/Library/CpuExceptionHandlerLib.h
100
101 ## @libraryclass Provides platform specific display interface.
102 #
103 CustomizedDisplayLib|Include/Library/CustomizedDisplayLib.h
104
105 ## @libraryclass Provides sorting functions
106 SortLib|Include/Library/SortLib.h
107
108 ## @libraryclass Provides core boot manager functions
109 UefiBootManagerLib|Include/Library/UefiBootManagerLib.h
110
111 ## @libraryclass Provides core boot manager functions
112 PlatformBootManagerLib|Include/Library/PlatformBootManagerLib.h
113
114 ## @libraryclass Provides common interfaces about TPM measurement for other modules.
115 #
116 TpmMeasurementLib|Include/Library/TpmMeasurementLib.h
117
118 ## @libraryclass Provides authenticated variable services.
119 #
120 AuthVariableLib|Include/Library/AuthVariableLib.h
121
122 [Guids]
123 ## MdeModule package token space guid
124 # Include/Guid/MdeModulePkgTokenSpace.h
125 gEfiMdeModulePkgTokenSpaceGuid = { 0xA1AFF049, 0xFDEB, 0x442a, { 0xB3, 0x20, 0x13, 0xAB, 0x4C, 0xB7, 0x2B, 0xBC }}
126
127 ## Hob guid for Pcd DataBase
128 # Include/Guid/PcdDataBaseHobGuid.h
129 gPcdDataBaseHobGuid = { 0xEA296D92, 0x0B69, 0x423C, { 0x8C, 0x28, 0x33, 0xB4, 0xE0, 0xA9, 0x12, 0x68 }}
130
131 ## Guid for PCD DataBase signature.
132 # Include/Guid/PcdDataBaseSignatureGuid.h
133 gPcdDataBaseSignatureGuid = { 0x3c7d193c, 0x682c, 0x4c14, { 0xa6, 0x8f, 0x55, 0x2d, 0xea, 0x4f, 0x43, 0x7e }}
134
135 ## Guid for EDKII implementation GUIDed opcodes
136 # Include/Guid/MdeModuleHii.h
137 gEfiIfrTianoGuid = { 0xf0b1735, 0x87a0, 0x4193, {0xb2, 0x66, 0x53, 0x8c, 0x38, 0xaf, 0x48, 0xce }}
138
139 ## Guid for Framework vfr GUIDed opcodes.
140 # Include/Guid/MdeModuleHii.h
141 gEfiIfrFrameworkGuid = { 0x31ca5d1a, 0xd511, 0x4931, { 0xb7, 0x82, 0xae, 0x6b, 0x2b, 0x17, 0x8c, 0xd7 }}
142
143 ## Guid to specify the System Non Volatile FV
144 # Include/Guid/SystemNvDataGuid.h
145 gEfiSystemNvDataFvGuid = { 0xFFF12B8D, 0x7696, 0x4C8B, { 0xA9, 0x85, 0x27, 0x47, 0x07, 0x5B, 0x4F, 0x50 }}
146
147 ## GUID used as the signature of FTW working block header.
148 # Include/Guid/SystemNvDataGuid.h
149 gEdkiiWorkingBlockSignatureGuid = { 0x9e58292b, 0x7c68, 0x497d, { 0xa0, 0xce, 0x65, 0x0, 0xfd, 0x9f, 0x1b, 0x95 }}
150
151 ## GUID used to build FTW last write data hob and install PPI to inform the check for FTW last write data has been done.
152 # Include/Guid/FaultTolerantWrite.h
153 gEdkiiFaultTolerantWriteGuid = { 0x1d3e9cb8, 0x43af, 0x490b, { 0x83, 0xa, 0x35, 0x16, 0xaa, 0x53, 0x20, 0x47 }}
154
155 ## Guid specify the device is the console out device.
156 # Include/Guid/ConsoleOutDevice.h
157 gEfiConsoleOutDeviceGuid = { 0xD3B36F2C, 0xD551, 0x11D4, { 0x9A, 0x46, 0x00, 0x90, 0x27, 0x3F, 0xC1, 0x4D }}
158
159 ## Guid specify the device is the console in device.
160 # Include/Guid/ConsoleInDevice.h
161 gEfiConsoleInDeviceGuid = { 0xD3B36F2B, 0xD551, 0x11D4, { 0x9A, 0x46, 0x00, 0x90, 0x27, 0x3F, 0xC1, 0x4D }}
162
163 ## Hob and Variable guid specify the platform memory type information.
164 # Include/Guid/MemoryTypeInformation.h
165 gEfiMemoryTypeInformationGuid = { 0x4C19049F, 0x4137, 0x4DD3, { 0x9C, 0x10, 0x8B, 0x97, 0xA8, 0x3F, 0xFD, 0xFA }}
166
167 ## Capsule update hob and variable guid
168 # Include/Guid/CapsuleVendor.h
169 gEfiCapsuleVendorGuid = { 0x711C703F, 0xC285, 0x4B10, { 0xA3, 0xB0, 0x36, 0xEC, 0xBD, 0x3C, 0x8B, 0xE2 }}
170
171 ## Guid specifiy the device is the StdErr device.
172 # Include/Guid/StandardErrorDevice.h
173 gEfiStandardErrorDeviceGuid = { 0xD3B36F2D, 0xD551, 0x11D4, { 0x9A, 0x46, 0x00, 0x90, 0x27, 0x3F, 0xC1, 0x4D }}
174
175 ## Guid acted as variable store header's signature and to specify the variable list entries put in the EFI system table.
176 # Include/Guid/VariableFormat.h
177 gEfiVariableGuid = { 0xddcf3616, 0x3275, 0x4164, { 0x98, 0xb6, 0xfe, 0x85, 0x70, 0x7f, 0xfe, 0x7d }}
178
179 ## Guid acted as the authenticated variable store header's signature, and to specify the variable list entries put in the EFI system table.
180 # Include/Guid/AuthenticatedVariableFormat.h
181 gEfiAuthenticatedVariableGuid = { 0xaaf32c78, 0x947b, 0x439a, { 0xa1, 0x80, 0x2e, 0x14, 0x4e, 0xc3, 0x77, 0x92 } }
182
183 # Include/Guid/VariableIndexTable.h
184 gEfiVariableIndexTableGuid = { 0x8cfdb8c8, 0xd6b2, 0x40f3, { 0x8e, 0x97, 0x02, 0x30, 0x7c, 0xc9, 0x8b, 0x7c }}
185
186 ## Guid is defined for SMM variable module to notify SMM variable wrapper module when variable write service was ready.
187 # Include/Guid/SmmVariableCommon.h
188 gSmmVariableWriteGuid = { 0x93ba1826, 0xdffb, 0x45dd, { 0x82, 0xa7, 0xe7, 0xdc, 0xaa, 0x3b, 0xbd, 0xf3 }}
189
190 ## Performance protocol guid that also acts as the performance HOB guid and performance variable GUID
191 # Include/Guid/Performance.h
192 gPerformanceProtocolGuid = { 0x76B6BDFA, 0x2ACD, 0x4462, { 0x9E, 0x3F, 0xCB, 0x58, 0xC9, 0x69, 0xD9, 0x37 } }
193 gSmmPerformanceProtocolGuid = { 0xf866226a, 0xeaa5, 0x4f5a, { 0xa9, 0xa, 0x6c, 0xfb, 0xa5, 0x7c, 0x58, 0x8e } }
194 gPerformanceExProtocolGuid = { 0x1ea81bec, 0xf01a, 0x4d98, { 0xa2, 0x1, 0x4a, 0x61, 0xce, 0x2f, 0xc0, 0x22 } }
195 gSmmPerformanceExProtocolGuid = { 0x931fc048, 0xc71d, 0x4455, { 0x89, 0x30, 0x47, 0x6, 0x30, 0xe3, 0xe, 0xe5 } }
196
197 ## Guid is defined for CRC32 encapsulation scheme.
198 # Include/Guid/Crc32GuidedSectionExtraction.h
199 gEfiCrc32GuidedSectionExtractionGuid = { 0xFC1BCDB0, 0x7D31, 0x49aa, {0x93, 0x6A, 0xA4, 0x60, 0x0D, 0x9D, 0xD0, 0x83 } }
200
201 ## Include/Guid/StatusCodeCallbackGuid.h
202 gStatusCodeCallbackGuid = {0xe701458c, 0x4900, 0x4ca5, {0xb7, 0x72, 0x3d, 0x37, 0x94, 0x9f, 0x79, 0x27}}
203
204 ## GUID identifies status code records HOB that originate from the PEI status code
205 # Include/Guid/MemoryStatusCodeRecord.h
206 gMemoryStatusCodeRecordGuid = { 0x060CC026, 0x4C0D, 0x4DDA, { 0x8F, 0x41, 0x59, 0x5F, 0xEF, 0x00, 0xA5, 0x02 }}
207
208 ## GUID used to pass DEBUG() macro information through the Status Code Protocol and Status Code PPI
209 # Include/Guid/StatusCodeDataTypeDebug.h
210 gEfiStatusCodeDataTypeDebugGuid = { 0x9A4E9246, 0xD553, 0x11D5, { 0x87, 0xE2, 0x00, 0x06, 0x29, 0x45, 0xC3, 0xB9 }}
211
212 ## A configuration Table Guid for Load module at fixed address
213 # Include/Guid/LoadModuleAtFixedAddress.h
214 gLoadFixedAddressConfigurationTableGuid = { 0x2CA88B53,0xD296,0x4080, { 0xA4,0xA5,0xCA,0xD9,0xBA,0xE2,0x4B,0x9 } }
215
216 ## GUID used to store the global debug mask value into an EFI Variable
217 # Include/Guid/DebugMask.h
218 gEfiGenericVariableGuid = { 0x59d1c24f, 0x50f1, 0x401a, {0xb1, 0x01, 0xf3, 0x3e, 0x0d, 0xae, 0xd4, 0x43} }
219
220 ## Event for the DXE Core to signal idle events
221 # Include/Guid/EventIdle.h
222 gIdleLoopEventGuid = { 0x3c8d294c, 0x5fc3, 0x4451, { 0xbb, 0x31, 0xc4, 0xc0, 0x32, 0x29, 0x5e, 0x6c } }
223
224 ## Include/Guid/RecoveryDevice.h
225 gRecoveryOnFatUsbDiskGuid = { 0x0FFBCE19, 0x324C, 0x4690, { 0xA0, 0x09, 0x98, 0xC6, 0xAE, 0x2E, 0xB1, 0x86 }}
226
227 ## Include/Guid/RecoveryDevice.h
228 gRecoveryOnFatIdeDiskGuid = { 0xB38573B6, 0x6200, 0x4AC5, { 0xB5, 0x1D, 0x82, 0xE6, 0x59, 0x38, 0xD7, 0x83 }}
229
230 ## Include/Guid/RecoveryDevice.h
231 gRecoveryOnFatFloppyDiskGuid = { 0x2E3D2E75, 0x9B2E, 0x412D, { 0xB4, 0xB1, 0x70, 0x41, 0x6B, 0x87, 0x00, 0xFF }}
232
233 ## Include/Guid/RecoveryDevice.h
234 gRecoveryOnDataCdGuid = { 0x5CAC0099, 0x0DC9, 0x48E5, { 0x80, 0x68, 0xBB, 0x95, 0xF5, 0x40, 0x0A, 0x9F }}
235
236 ## Include/Guid/SmmLockBox.h
237 gEfiSmmLockBoxCommunicationGuid = { 0x2a3cfebd, 0x27e8, 0x4d0a, { 0x8b, 0x79, 0xd6, 0x88, 0xc2, 0xa3, 0xe1, 0xc0 }}
238
239 ## Include/Guid/AcpiS3Context.h
240 gEfiAcpiVariableGuid = { 0xAF9FFD67, 0xEC10, 0x488A, { 0x9D, 0xFC, 0x6C, 0xBF, 0x5E, 0xE2, 0x2C, 0x2E }}
241
242 ## Include/Guid/AcpiS3Context.h
243 gEfiAcpiS3ContextGuid = { 0xef98d3a, 0x3e33, 0x497a, { 0xa4, 0x1, 0x77, 0xbe, 0x3e, 0xb7, 0x4f, 0x38 }}
244
245 ## Include/Guid/BootScriptExecutorVariable.h
246 gEfiBootScriptExecutorVariableGuid = { 0x3079818c, 0x46d4, 0x4a73, { 0xae, 0xf3, 0xe3, 0xe4, 0x6c, 0xf1, 0xee, 0xdb }}
247 gEfiBootScriptExecutorContextGuid = { 0x79cb58c4, 0xac51, 0x442f, { 0xaf, 0xd7, 0x98, 0xe4, 0x7d, 0x2e, 0x99, 0x8 }}
248
249 ## Include/Guid/UsbKeyBoardLayout.h
250 gUsbKeyboardLayoutPackageGuid = { 0xc0f3b43, 0x44de, 0x4907, { 0xb4, 0x78, 0x22, 0x5f, 0x6f, 0x62, 0x89, 0xdc }}
251 gUsbKeyboardLayoutKeyGuid = { 0x3a4d7a7c, 0x18a, 0x4b42, { 0x81, 0xb3, 0xdc, 0x10, 0xe3, 0xb5, 0x91, 0xbd }}
252
253 ## Include/Guid/HiiResourceSampleHii.h
254 gHiiResourceSamleFormSetGuid = { 0x4f4ef7f0, 0xaa29, 0x4ce9, { 0xba, 0x41, 0x64, 0x3e, 0x1, 0x23, 0xa9, 0x9f }}
255
256 ## Include/Guid/DriverSampleHii.h
257 gDriverSampleFormSetGuid = { 0xA04A27f4, 0xDF00, 0x4D42, { 0xB5, 0x52, 0x39, 0x51, 0x13, 0x02, 0x11, 0x3D }}
258 gDriverSampleInventoryGuid = { 0xb3f56470, 0x6141, 0x4621, { 0x8f, 0x19, 0x70, 0x4e, 0x57, 0x7a, 0xa9, 0xe8 }}
259 gEfiIfrRefreshIdOpGuid = { 0xF5E655D9, 0x02A6, 0x46f2, { 0x9E, 0x76, 0xB8, 0xBE, 0x8E, 0x60, 0xAB, 0x22 }}
260
261 ## Include/Guid/PlatDriOverrideHii.h
262 gPlatformOverridesManagerGuid = { 0x8614567d, 0x35be, 0x4415, { 0x8d, 0x88, 0xbd, 0x7d, 0xc, 0x9c, 0x70, 0xc0 }}
263
264 ## Include/Guid/Ip4Config2Hii.h
265 gIp4Config2NvDataGuid = { 0x9b942747, 0x154e, 0x4d29, { 0xa4, 0x36, 0xbf, 0x71, 0x0, 0xc8, 0xb5, 0x3b }}
266
267 ## Include/Guid/VlanConfigHii.h
268 gVlanConfigFormSetGuid = { 0xd79df6b0, 0xef44, 0x43bd, { 0x97, 0x97, 0x43, 0xe9, 0x3b, 0xcf, 0x5f, 0xa8 }}
269
270 ## Include/Guid/Ip4IScsiConfigHii.h
271 gIp4IScsiConfigGuid = { 0x6456ed61, 0x3579, 0x41c9, { 0x8a, 0x26, 0x0a, 0x0b, 0xd6, 0x2b, 0x78, 0xfc }}
272 gIScsiCHAPAuthInfoGuid = { 0x786ec0ac, 0x65ae, 0x4d1b, { 0xb1, 0x37, 0xd, 0x11, 0xa, 0x48, 0x37, 0x97 }}
273
274 ## Include/Guid/ZeroGuid.h
275 gZeroGuid = { 0x0, 0x0, 0x0, {0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}}
276
277 ## Include/Guid/MtcVendor.h
278 gMtcVendorGuid = { 0xeb704011, 0x1402, 0x11d3, { 0x8e, 0x77, 0x0, 0xa0, 0xc9, 0x69, 0x72, 0x3b }}
279
280 ## Guid for Firmware Performance Data Table (FPDT) implementation.
281 # Include/Guid/FirmwarePerformance.h
282 gEfiFirmwarePerformanceGuid = { 0xc095791a, 0x3001, 0x47b2, { 0x80, 0xc9, 0xea, 0xc7, 0x31, 0x9f, 0x2f, 0xa4 }}
283 gFirmwarePerformanceS3PointerGuid = { 0xdc65adc, 0xa973, 0x4130, { 0x8d, 0xf0, 0x2a, 0xdb, 0xeb, 0x9e, 0x4a, 0x31 }}
284
285 ## Include/Guid/ExitBootServiceFailed.h
286 gEventExitBootServicesFailedGuid = { 0x4f6c5507, 0x232f, 0x4787, { 0xb9, 0x5e, 0x72, 0xf8, 0x62, 0x49, 0xc, 0xb1 } }
287
288 ## Include/Guid/ConnectConInEvent.h
289 gConnectConInEventGuid = { 0xdb4e8151, 0x57ed, 0x4bed, { 0x88, 0x33, 0x67, 0x51, 0xb5, 0xd1, 0xa8, 0xd7 }}
290
291 ## Include/Guid/StatusCodeDataTypeVariable.h
292 gEdkiiStatusCodeDataTypeVariableGuid = { 0xf6ee6dbb, 0xd67f, 0x4ea0, { 0x8b, 0x96, 0x6a, 0x71, 0xb1, 0x9d, 0x84, 0xad }}
293
294 ## Include/Guid/MemoryProfile.h
295 gEdkiiMemoryProfileGuid = { 0x821c9a09, 0x541a, 0x40f6, { 0x9f, 0x43, 0xa, 0xd1, 0x93, 0xa1, 0x2c, 0xfe }}
296
297 ## Include/Protocol/VarErrorFlag.h
298 gEdkiiVarErrorFlagGuid = { 0x4b37fe8, 0xf6ae, 0x480b, { 0xbd, 0xd5, 0x37, 0xd9, 0x8c, 0x5e, 0x89, 0xaa } }
299
300 ## GUID indicates the LZMA custom compress/decompress algorithm.
301 # Include/Guid/LzmaDecompress.h
302 gLzmaCustomDecompressGuid = { 0xEE4E5898, 0x3914, 0x4259, { 0x9D, 0x6E, 0xDC, 0x7B, 0xD7, 0x94, 0x03, 0xCF }}
303 gLzmaF86CustomDecompressGuid = { 0xD42AE6BD, 0x1352, 0x4bfb, { 0x90, 0x9A, 0xCA, 0x72, 0xA6, 0xEA, 0xE8, 0x89 }}
304
305 ## Include/Guid/TtyTerm.h
306 gEfiTtyTermGuid = { 0x7d916d80, 0x5bb1, 0x458c, {0xa4, 0x8f, 0xe2, 0x5f, 0xdd, 0x51, 0xef, 0x94 }}
307
308 [Ppis]
309 ## Include/Ppi/AtaController.h
310 gPeiAtaControllerPpiGuid = { 0xa45e60d1, 0xc719, 0x44aa, { 0xb0, 0x7a, 0xaa, 0x77, 0x7f, 0x85, 0x90, 0x6d }}
311
312 ## Include/Ppi/UsbHostController.h
313 gPeiUsbHostControllerPpiGuid = { 0x652B38A9, 0x77F4, 0x453F, { 0x89, 0xD5, 0xE7, 0xBD, 0xC3, 0x52, 0xFC, 0x53 }}
314
315 ## Include/Ppi/Usb2HostController.h
316 gPeiUsb2HostControllerPpiGuid = { 0xfedd6305, 0xe2d7, 0x4ed5, { 0x9f, 0xaa, 0xda, 0x8, 0xe, 0x33, 0x6c, 0x22 }}
317
318 ## Include/Ppi/UsbController.h
319 gPeiUsbControllerPpiGuid = { 0x3BC1F6DE, 0x693E, 0x4547, { 0xA3, 0x00, 0x21, 0x82, 0x3C, 0xA4, 0x20, 0xB2 }}
320
321 ## Include/Ppi/UsbIo.h
322 gPeiUsbIoPpiGuid = { 0x7C29785C, 0x66B9, 0x49FC, { 0xB7, 0x97, 0x1C, 0xA5, 0x55, 0x0E, 0xF2, 0x83 }}
323
324 ## Include/Ppi/SecPerformance.h
325 gPeiSecPerformancePpiGuid = { 0x0ecc666b, 0x4662, 0x47f9, { 0x9d, 0xd5, 0xd0, 0x96, 0xff, 0x7d, 0xa4, 0x9e }}
326
327 ## Include/Ppi/SmmCommunication.h
328 gEfiPeiSmmCommunicationPpiGuid = { 0xae933e1c, 0xcc47, 0x4e38, { 0x8f, 0xe, 0xe2, 0xf6, 0x1d, 0x26, 0x5, 0xdf }}
329
330 ## Include/Ppi/SmmAccess.h
331 gPeiSmmAccessPpiGuid = { 0x268f33a9, 0xcccd, 0x48be, { 0x88, 0x17, 0x86, 0x5, 0x3a, 0xc3, 0x2e, 0xd6 }}
332
333 ## Include/Ppi/SmmControl.h
334 gPeiSmmControlPpiGuid = { 0x61c68702, 0x4d7e, 0x4f43, { 0x8d, 0xef, 0xa7, 0x43, 0x5, 0xce, 0x74, 0xc5 }}
335
336 ## Include/Ppi/PostBootScriptTable.h
337 gPeiPostScriptTablePpiGuid = { 0x88c9d306, 0x900, 0x4eb5, { 0x82, 0x60, 0x3e, 0x2d, 0xbe, 0xda, 0x1f, 0x89}}
338
339 ## Include/Ppi/SerialPortPei.h
340 gPeiSerialPortPpiGuid = { 0x490e9d85, 0x8aef, 0x4193, { 0x8e, 0x56, 0xf7, 0x34, 0xa9, 0xff, 0xac, 0x8b}}
341
342 ## Include/Ppi/UfsHostController.h
343 gEdkiiPeiUfsHostControllerPpiGuid = { 0xdc54b283, 0x1a77, 0x4cd6, { 0x83, 0xbb, 0xfd, 0xda, 0x46, 0x9a, 0x2e, 0xc6 }}
344
345 [Protocols]
346 ## Load File protocol provides capability to load and unload EFI image into memory and execute it.
347 # Include/Protocol/LoadPe32Image.h
348 # This protocol is deprecated. Native EDKII module should NOT use this protocol to load/unload image.
349 # If developer need implement such functionality, they should use BasePeCoffLib.
350 gEfiLoadPeImageProtocolGuid = { 0x5CB5C776, 0x60D5, 0x45EE, { 0x88, 0x3C, 0x45, 0x27, 0x08, 0xCD, 0x74, 0x3F }}
351
352 ## Print protocol defines basic print functions to print the format unicode and ascii string.
353 # Include/Protocol/Print2.h
354 gEfiPrint2ProtocolGuid = { 0xf05976ef, 0x83f1, 0x4f3d, { 0x86, 0x19, 0xf7, 0x59, 0x5d, 0x41, 0xe5, 0x38 } }
355
356 ## This protocol defines the generic memory test interfaces in Dxe phase.
357 # Include/Protocol/GenericMemoryTest.h
358 gEfiGenericMemTestProtocolGuid = { 0x309DE7F1, 0x7F5E, 0x4ACE, { 0xB4, 0x9C, 0x53, 0x1B, 0xE5, 0xAA, 0x95, 0xEF }}
359
360 ## Include/Protocol/Dpc.h
361 gEfiDpcProtocolGuid = {0x480f8ae9, 0xc46, 0x4aa9, { 0xbc, 0x89, 0xdb, 0x9f, 0xba, 0x61, 0x98, 0x6 }}
362
363 ## Fault Tolerant Write protocol provides boot-time service to do fault tolerant write capability for block devices.
364 # Include/Protocol/FaultTolerantWrite.h
365 gEfiFaultTolerantWriteProtocolGuid = { 0x3EBD9E82, 0x2C78, 0x4DE6, { 0x97, 0x86, 0x8D, 0x4B, 0xFC, 0xB7, 0xC8, 0x81 }}
366
367 ## This protocol provides boot-time service to do fault tolerant write capability for block devices in SMM environment.
368 # Include/Protocol/SmmFaultTolerantWrite.h
369 gEfiSmmFaultTolerantWriteProtocolGuid = { 0x3868fc3b, 0x7e45, 0x43a7, { 0x90, 0x6c, 0x4b, 0xa4, 0x7d, 0xe1, 0x75, 0x4d }}
370
371 ## This protocol is used to abstract the swap operation of boot block and backup block of boot FV.
372 # Include/Protocol/SwapAddressRange.h
373 gEfiSwapAddressRangeProtocolGuid = { 0x1259F60D, 0xB754, 0x468E, { 0xA7, 0x89, 0x4D, 0xB8, 0x5D, 0x55, 0xE8, 0x7E }}
374
375 ## This protocol is used to abstract the swap operation of boot block and backup block of boot FV in SMM environment.
376 # Include/Protocol/SmmSwapAddressRange.h
377 gEfiSmmSwapAddressRangeProtocolGuid = { 0x67c4f112, 0x3385, 0x4e55, { 0x9c, 0x5b, 0xc0, 0x5b, 0x71, 0x7c, 0x42, 0x28 }}
378
379 ## This protocol is intended for use as a means to store data in the EFI SMM environment.
380 # Include/Protocol/SmmVariableProtocol.h
381 gEfiSmmVariableProtocolGuid = { 0xed32d533, 0x99e6, 0x4209, { 0x9c, 0xc0, 0x2d, 0x72, 0xcd, 0xd9, 0x98, 0xa7 }}
382
383 ## This protocol is intended for use as a means to mark a variable read-only after the event EFI_END_OF_DXE_EVENT_GUID is signaled.
384 # Include/Protocol/VariableLock.h
385 gEdkiiVariableLockProtocolGuid = { 0xcd3d0a05, 0x9e24, 0x437c, { 0xa8, 0x91, 0x1e, 0xe0, 0x53, 0xdb, 0x76, 0x38 }}
386
387 ## Include/Protocol/VarCheck.h
388 gEdkiiVarCheckProtocolGuid = { 0xaf23b340, 0x97b4, 0x4685, { 0x8d, 0x4f, 0xa3, 0xf2, 0x81, 0x69, 0xb2, 0x1d } }
389
390 ## Include/Protocol/SmmVarCheck.h
391 gEdkiiSmmVarCheckProtocolGuid = { 0xb0d8f3c1, 0xb7de, 0x4c11, { 0xbc, 0x89, 0x2f, 0xb5, 0x62, 0xc8, 0xc4, 0x11 } }
392
393 ## This protocol is similar with DXE FVB protocol and used in the UEFI SMM evvironment.
394 # Include/Protocol/SmmFirmwareVolumeBlock.h
395 gEfiSmmFirmwareVolumeBlockProtocolGuid = { 0xd326d041, 0xbd31, 0x4c01, { 0xb5, 0xa8, 0x62, 0x8b, 0xe8, 0x7f, 0x6, 0x53 }}
396
397 ## This protocol allows the error level mask for DEBUG() macros to be adjusted for DXE Phase modules
398 # Include/Guid/DebugMask.h
399 gEfiDebugMaskProtocolGuid = { 0x4c8a2451, 0xc207, 0x405b, {0x96, 0x94, 0x99, 0xea, 0x13, 0x25, 0x13, 0x41} }
400
401 ## Include/Protocol/LockBox.h
402 gEfiLockBoxProtocolGuid = { 0xbd445d79, 0xb7ad, 0x4f04, { 0x9a, 0xd8, 0x29, 0xbd, 0x20, 0x40, 0xeb, 0x3c }}
403
404 ## Include/Protocol/FormBrowserEx.h
405 gEfiFormBrowserExProtocolGuid = { 0x1f73b18d, 0x4630, 0x43c1, { 0xa1, 0xde, 0x6f, 0x80, 0x85, 0x5d, 0x7d, 0xa4 } }
406
407 ## Include/Protocol/EbcVmTest.h
408 gEfiEbcVmTestProtocolGuid = { 0xAAEACCFD, 0xF27B, 0x4C17, { 0xB6, 0x10, 0x75, 0xCA, 0x1F, 0x2D, 0xFB, 0x52 } }
409
410 ## Include/Protocol/EbcSimpleDebugger.h
411 gEfiEbcSimpleDebuggerProtocolGuid = { 0x2a72d11e, 0x7376, 0x40f6, { 0x9c, 0x68, 0x23, 0xfa, 0x2f, 0xe3, 0x63, 0xf1 } }
412
413 ## Include/Protocol/BootLogo.h
414 gEfiBootLogoProtocolGuid = { 0xcdea2bd3, 0xfc25, 0x4c1c, { 0xb9, 0x7c, 0xb3, 0x11, 0x86, 0x6, 0x49, 0x90 } }
415
416 ## Include/Protocol/DisplayProtocol.h
417 gEdkiiFormDisplayEngineProtocolGuid = { 0x9bbe29e9, 0xfda1, 0x41ec, { 0xad, 0x52, 0x45, 0x22, 0x13, 0x74, 0x2d, 0x2e } }
418
419 ## Include/Protocol/FormBrowserEx2.h
420 gEdkiiFormBrowserEx2ProtocolGuid = { 0xa770c357, 0xb693, 0x4e6d, { 0xa6, 0xcf, 0xd2, 0x1c, 0x72, 0x8e, 0x55, 0xb } }
421
422 ## Include/Protocol/UfsHostController.h
423 gEdkiiUfsHostControllerProtocolGuid = { 0xebc01af5, 0x7a9, 0x489e, { 0xb7, 0xce, 0xdc, 0x8, 0x9e, 0x45, 0x9b, 0x2f } }
424
425 ## Include/Protocol/EsrtManagement.h
426 gEsrtManagementProtocolGuid = { 0xa340c064, 0x723c, 0x4a9c, { 0xa4, 0xdd, 0xd5, 0xb4, 0x7a, 0x26, 0xfb, 0xb0 }}
427
428 ## Include/Protocol/SmmExitBootServices.h
429 gEdkiiSmmExitBootServicesProtocolGuid = { 0x296eb418, 0xc4c8, 0x4e05, { 0xab, 0x59, 0x39, 0xe8, 0xaf, 0x56, 0xf0, 0xa } }
430
431 ## Include/Protocol/SmmLegacyBoot.h
432 gEdkiiSmmLegacyBootProtocolGuid = { 0x85a8ab57, 0x644, 0x4110, { 0x85, 0xf, 0x98, 0x13, 0x22, 0x4, 0x70, 0x70 } }
433
434 ## Include/Protocol/SmmReadyToBoot.h
435 gEdkiiSmmReadyToBootProtocolGuid = { 0x6e057ecf, 0xfa99, 0x4f39, { 0x95, 0xbc, 0x59, 0xf9, 0x92, 0x1d, 0x17, 0xe4 } }
436
437 #
438 # [Error.gEfiMdeModulePkgTokenSpaceGuid]
439 # 0x80000001 | Invalid value provided.
440 # 0x80000002 | Reserved bits must be set to zero.
441 # 0x80000003 | Incorrect progress code provided.
442 # 0x80000004 | Invalid foreground color specified.
443 # 0x80000005 | Invalid background color specified.
444 # 0x80000006 | Incorrect error code provided.
445 #
446
447 [PcdsFeatureFlag]
448 ## Indicates if the platform can support update capsule across a system reset.<BR><BR>
449 # TRUE - Supports update capsule across a system reset.<BR>
450 # FALSE - Does not support update capsule across a system reset.<BR>
451 # @Prompt Enable update capsule across a system reset.
452 gEfiMdeModulePkgTokenSpaceGuid.PcdSupportUpdateCapsuleReset|FALSE|BOOLEAN|0x0001001d
453
454 ## Indicates if all PCD PPI services will be enabled.<BR><BR>
455 # TRUE - All PCD PPI services will be produced.<BR>
456 # FALSE - Minimal PCD PPI services (only GetService) will be produced.<BR>
457 # @Prompt Enable full PEI PCD services.
458 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiFullPcdDatabaseEnable|TRUE|BOOLEAN|0x00010020
459
460 ## Indicates if the Device Path To Text Protocol should be produced by the platform.
461 # It can be disabled to save size.<BR><BR>
462 # TRUE - Device Path To Text Protocol will be produced.<BR>
463 # FALSE - Device Path To Text Protocol will not be produced.<BR>
464 # @Prompt Enable Device Path to Text support.
465 gEfiMdeModulePkgTokenSpaceGuid.PcdDevicePathSupportDevicePathToText|TRUE|BOOLEAN|0x00010037
466
467 ## Indicates if the Device Path From Text Protocol should be produced by the platform.
468 # It can be disabled to save size.<BR><BR>
469 # TRUE - Device Path From Text Protocol will be produced.<BR>
470 # FALSE - Device Path From Text Protocol will not be produced.<BR>
471 # @Prompt Enable Device Path From Text support.
472 gEfiMdeModulePkgTokenSpaceGuid.PcdDevicePathSupportDevicePathFromText|TRUE|BOOLEAN|0x00010038
473
474 ## Indicates if the statistics about variable usage will be collected. This information is
475 # stored as a vendor configuration table into the EFI system table.
476 # Set this PCD to TRUE to use VariableInfo application in MdeModulePkg\Application directory to get
477 # variable usage info. VariableInfo application will not output information if not set to TRUE.<BR><BR>
478 # TRUE - Statistics about variable usage will be collected.<BR>
479 # FALSE - Statistics about variable usage will not be collected.<BR>
480 # @Prompt Enable variable statistics collection.
481 gEfiMdeModulePkgTokenSpaceGuid.PcdVariableCollectStatistics|FALSE|BOOLEAN|0x0001003f
482
483 ## Indicates if Unicode Collation Protocol will be installed.<BR><BR>
484 # TRUE - Installs Unicode Collation Protocol.<BR>
485 # FALSE - Does not install Unicode Collation Protocol.<BR>
486 # @Prompt Enable Unicode Collation support.
487 gEfiMdeModulePkgTokenSpaceGuid.PcdUnicodeCollationSupport|TRUE|BOOLEAN|0x00010040
488
489 ## Indicates if Unicode Collation 2 Protocol will be installed.<BR><BR>
490 # TRUE - Installs Unicode Collation 2 Protocol.<BR>
491 # FALSE - Does not install Unicode Collation 2 Protocol.<BR>
492 # @Prompt Enable Unicode Collation 2 support.
493 gEfiMdeModulePkgTokenSpaceGuid.PcdUnicodeCollation2Support|TRUE|BOOLEAN|0x00010041
494
495 ## Indicates if Graphics Output Protocol will be installed on virtual handle created by ConsplitterDxe.
496 # It could be set FALSE to save size.<BR><BR>
497 # TRUE - Installs Graphics Output Protocol on virtual handle created by ConsplitterDxe.<BR>
498 # FALSE - Does not install Graphics Output Protocol on virtual handle created by ConsplitterDxe.<BR>
499 # @Prompt Enable ConOut GOP support.
500 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutGopSupport|TRUE|BOOLEAN|0x00010042
501
502 ## Indicates if UGA Draw Protocol will be installed on virtual handle created by ConsplitterDxe.
503 # It could be set FALSE to save size.<BR><BR>
504 # TRUE - Installs UGA Draw Protocol on virtual handle created by ConsplitterDxe.<BR>
505 # FALSE - Does not install UGA Draw Protocol on virtual handle created by ConsplitterDxe.<BR>
506 # @Prompt Enable ConOut UGA support.
507 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutUgaSupport|TRUE|BOOLEAN|0x00010043
508
509 ## Indicates PeiCore will first search TE section from the PEIM to load the image, or PE32 section, when PeiCore dispatches a PEI module.
510 # This PCD is used to tune PEI phase performance to reduce the search image time.
511 # It can be set according to the generated image section type.<BR><BR>
512 # TRUE - PeiCore will first search TE section from PEIM to load the image, if TE section is not found, then PeiCore will search PE section.<BR>
513 # FALSE - PeiCore will first search PE section from PEIM to load the image.<BR>
514 # @Prompt PeiCore search TE section first.
515 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreImageLoaderSearchTeSectionFirst|TRUE|BOOLEAN|0x00010044
516
517 ## Indicates if to turn off the support of legacy usb. So legacy usb device driver can not make use of SMI
518 # interrupt to access usb device in the case of absence of usb stack.
519 # DUET platform requires the token to be TRUE.<BR><BR>
520 # TRUE - Turn off usb legacy support.<BR>
521 # FALSE - Does not turn off usb legacy support.<BR>
522 # @Prompt Turn off USB legacy support.
523 gEfiMdeModulePkgTokenSpaceGuid.PcdTurnOffUsbLegacySupport|FALSE|BOOLEAN|0x00010047
524
525 ## Indicates if HiiImageProtocol will be installed.
526 # FALSE is for size reduction.<BR><BR>
527 # TRUE - Installs HiiImageProtocol.<BR>
528 # FALSE - Does not install HiiImageProtocol.<BR>
529 # @Prompt Enable HII image support.
530 gEfiMdeModulePkgTokenSpaceGuid.PcdSupportHiiImageProtocol|TRUE|BOOLEAN|0x00010100
531
532 ## Indicates if USB KeyBoard Driver disables the default keyboard layout.
533 # The default keyboard layout serves as the backup when no keyboard layout can be retrieved
534 # from HII database.<BR><BR>
535 # TRUE - USB KeyBoard Driver will disable the default keyboard layout.<BR>
536 # FALSE - USB KeyBoard Driver will not disable the default keyboard layout.<BR>
537 # @Prompt Disable default keyboard layout in USB KeyBoard Driver.
538 gEfiMdeModulePkgTokenSpaceGuid.PcdDisableDefaultKeyboardLayoutInUsbKbDriver|FALSE|BOOLEAN|0x00010200
539
540 ## Indicates if backward compatibility to Framework HII and Framework FvHob is supported.<BR><BR>
541 # TRUE - Setup Browser supports GUID opcodes generated from Framework HII VFR file by VFR compiler.
542 # the PeiCore will handle the framework FvHob and install FvInfo PPI for it.<BR>
543 # FALSE - Setup Browser doesn't support GUID opcodes generated from Framework HII VFR file by VFR compiler.
544 # the PeiCore will not handle the framework FvHob and install FvInfo PPI for it.<BR>
545 # @Prompt Enable framework backward compatibility support.
546 gEfiMdeModulePkgTokenSpaceGuid.PcdFrameworkCompatibilitySupport|FALSE|BOOLEAN|0x00012009
547
548 ## Indicates if HelloWorld Application will print the verbose information.
549 # This PCD is a sample to explain FeatureFlag PCD usage.<BR><BR>
550 # TRUE - HelloWorld Application will print the verbose information.<BR>
551 # FALSE - HelloWorld Application will not print the verbose information.<BR>
552 # @Prompt Enable HelloWorld print.
553 gEfiMdeModulePkgTokenSpaceGuid.PcdHelloWorldPrintEnable|TRUE|BOOLEAN|0x0001200a
554
555 ## Indicates if FULL FTW protocol services (total six APIs) will be produced.<BR><BR>
556 # TRUE - Produces FULL FTW protocol services (total six APIs).<BR>
557 # FALSE - Only FTW Write service is available.<BR>
558 # @Prompt Enable FULL FTW services.
559 gEfiMdeModulePkgTokenSpaceGuid.PcdFullFtwServiceEnable|TRUE|BOOLEAN|0x0001200b
560
561 ## Indicates if DXE IPL supports the UEFI decompression algorithm.<BR><BR>
562 # TRUE - DXE IPL will support UEFI decompression.<BR>
563 # FALSE - DXE IPL will not support UEFI decompression to save space.<BR>
564 # @Prompt Enable UEFI decompression support in DXE IPL.
565 gEfiMdeModulePkgTokenSpaceGuid.PcdDxeIplSupportUefiDecompress|TRUE|BOOLEAN|0x0001200c
566
567 ## Indicates if PciBus driver supports the hot plug device.<BR><BR>
568 # TRUE - PciBus driver supports the hot plug device.<BR>
569 # FALSE - PciBus driver doesn't support the hot plug device.<BR>
570 # @Prompt Enable PciBus hot plug device support.
571 gEfiMdeModulePkgTokenSpaceGuid.PcdPciBusHotplugDeviceSupport|TRUE|BOOLEAN|0x0001003d
572
573 ## Indicates if the PciBus driver probes non-standard, such as 2K/1K/512, granularity for PCI to PCI bridge I/O window.<BR><BR>
574 # TRUE - PciBus driver probes non-standard granularity for PCI to PCI bridge I/O window.<BR>
575 # FALSE - PciBus driver doesn't probe non-standard granularity for PCI to PCI bridge I/O window.<BR>
576 # @Prompt Enable PCI bridge IO alignment probe.
577 gEfiMdeModulePkgTokenSpaceGuid.PcdPciBridgeIoAlignmentProbe|FALSE|BOOLEAN|0x0001004e
578
579 ## Indicates if StatusCode is reported via Serial port.<BR><BR>
580 # TRUE - Reports StatusCode via Serial port.<BR>
581 # FALSE - Does not report StatusCode via Serial port.<BR>
582 # @Prompt Enable StatusCode via Serial port.
583 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeUseSerial|TRUE|BOOLEAN|0x00010022
584
585 ## Indicates if StatusCode is stored in memory.
586 # The memory is boot time memory in PEI Phase and is runtime memory in DXE Phase.<BR><BR>
587 # TRUE - Stores StatusCode in memory.<BR>
588 # FALSE - Does not store StatusCode in memory.<BR>
589 # @Prompt Enable StatusCode via memory.
590 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeUseMemory|FALSE|BOOLEAN|0x00010023
591
592 ## Indicates if PEI phase StatusCode will be replayed in DXE phase.<BR><BR>
593 # TRUE - Replays PEI phase StatusCode in DXE phased.<BR>
594 # FALSE - Does not replay PEI phase StatusCode in DXE phase.<BR>
595 # @Prompt Enable PEI StatusCode replay in DXE phase
596 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeReplayIn|FALSE|BOOLEAN|0x0001002d
597
598 ## Indicates if ACPI SDT protocol will be installed.<BR><BR>
599 # TRUE - Installs ACPI SDT protocol.<BR>
600 # FALSE - Does not install ACPI SDT protocol.<BR>
601 # @Prompt Enable ACPI SDT support.
602 gEfiMdeModulePkgTokenSpaceGuid.PcdInstallAcpiSdtProtocol|FALSE|BOOLEAN|0x0001004d
603
604 ## Indicates if the unaligned I/O, MMIO, and PCI Configuration cycles through the PCI I/O Protocol are enabled.
605 # The default value for this PCD is false to disable support for unaligned PCI I/O Protocol requests.<BR><BR>
606 # TRUE - Enables the unaligned I/O, MMIO, and PCI Configuration cycles through the PCI I/O Protocol.<BR>
607 # FALSE - Disables the unaligned I/O, MMIO, and PCI Configuration cycles through the PCI I/O Protocol.<BR>
608 # @Prompt Enable unaligned PCI I/O support.
609 gEfiMdeModulePkgTokenSpaceGuid.PcdUnalignedPciIoEnable|FALSE|BOOLEAN|0x0001003e
610
611 ## Indicates if TEXT statement is always set to GrayOut statement in HII Form Browser.<BR><BR>
612 # TRUE - TEXT statement will always be set to GrayOut.<BR>
613 # FALSE - TEXT statement will be set to GrayOut only when GrayOut condition is TRUE.<BR>
614 # @Prompt Always GrayOut TEXT statement.
615 gEfiMdeModulePkgTokenSpaceGuid.PcdBrowserGrayOutTextStatement|FALSE|BOOLEAN|0x0001004f
616
617 ## Indicates if unselectable menu should be gray out in HII Form Browser.<BR><BR>
618 # TRUE - The unselectable menu will be set to GrayOut.<BR>
619 # FALSE - The menu will be show as normal menu entry even if it is not selectable.<BR>
620 # @Prompt GrayOut read only menu.
621 gEfiMdeModulePkgTokenSpaceGuid.PcdBrowerGrayOutReadOnlyMenu|FALSE|BOOLEAN|0x00010070
622
623 ## Indicates if recovery from IDE disk will be supported.<BR><BR>
624 # TRUE - Supports recovery from IDE disk.<BR>
625 # FALSE - Does not support recovery from IDE disk.<BR>
626 # @Prompt Enable recovery on IDE disk.
627 gEfiMdeModulePkgTokenSpaceGuid.PcdRecoveryOnIdeDisk|TRUE|BOOLEAN|0x00010060
628
629 ## Indicates if recovery from FAT floppy disk will be supported.<BR><BR>
630 # TRUE - Supports recovery from FAT floppy disk.<BR>
631 # FALSE - Does not support recovery from FAT floppy disk.<BR>
632 # @Prompt Enable recovery on FAT floppy disk.
633 gEfiMdeModulePkgTokenSpaceGuid.PcdRecoveryOnFatFloppyDisk|TRUE|BOOLEAN|0x00010061
634
635 ## Indicates if recovery from data CD will be supported.<BR><BR>
636 # TRUE - Supports recovery from data CD.<BR>
637 # FALSE - Does not support recovery from data CD.<BR>
638 # @Prompt Enable recovery on data CD.
639 gEfiMdeModulePkgTokenSpaceGuid.PcdRecoveryOnDataCD|TRUE|BOOLEAN|0x00010062
640
641 ## Indicates if recovery from FAT USB disk will be supported.<BR><BR>
642 # TRUE - Supports recovery from USB disk.<BR>
643 # FALSE - Does not support recovery from USB disk.<BR>
644 # @Prompt Enable recovery on FAT USB disk.
645 gEfiMdeModulePkgTokenSpaceGuid.PcdRecoveryOnFatUsbDisk|TRUE|BOOLEAN|0x00010063
646
647 ## Indicates if S3 performance data will be supported in ACPI FPDT table.<BR><BR>
648 # TRUE - S3 performance data will be supported in ACPI FPDT table.<BR>
649 # FALSE - S3 performance data will not be supported in ACPI FPDT table.<BR>
650 # @Prompt Enable S3 performance data support.
651 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwarePerformanceDataTableS3Support|TRUE|BOOLEAN|0x00010064
652
653 [PcdsFeatureFlag.IA32, PcdsFeatureFlag.X64]
654 ## Indicates if DxeIpl should switch to long mode to enter DXE phase.
655 # It is assumed that 64-bit DxeCore is built in firmware if it is true; otherwise 32-bit DxeCore
656 # is built in firmware.<BR><BR>
657 # TRUE - DxeIpl will load a 64-bit DxeCore and switch to long mode to hand over to DxeCore.<BR>
658 # FALSE - DxeIpl will load a 32-bit DxeCore and perform stack switch to hand over to DxeCore.<BR>
659 # @Prompt DxeIpl switch to long mode.
660 gEfiMdeModulePkgTokenSpaceGuid.PcdDxeIplSwitchToLongMode|TRUE|BOOLEAN|0x0001003b
661
662 ## Indicates if DxeIpl should rebuild page tables. This flag only
663 # makes sense in the case where the DxeIpl and the DxeCore are both X64.<BR><BR>
664 # TRUE - DxeIpl will rebuild page tables.<BR>
665 # FALSE - DxeIpl will not rebuild page tables.<BR>
666 # @Prompt DxeIpl rebuild page tables.
667 gEfiMdeModulePkgTokenSpaceGuid.PcdDxeIplBuildPageTables|TRUE|BOOLEAN|0x0001003c
668
669 [PcdsFixedAtBuild]
670 ## Flag of enabling/disabling the feature of Loading Module at Fixed Address.<BR><BR>
671 # 0xFFFFFFFFFFFFFFFF: Enable the feature as fixed offset to TOLM.<BR>
672 # 0: Disable the feature.<BR>
673 # Other Value: Enable the feature as fixed absolute address, and the value is the top memory address.<BR>
674 # @Prompt Enable LMFA feature.
675 # @Expression 0x80000001 | (gEfiMdeModulePkgTokenSpaceGuid.PcdLoadModuleAtFixAddressEnable == 0xFFFFFFFFFFFFFFFF || gEfiMdeModulePkgTokenSpaceGuid.PcdLoadModuleAtFixAddressEnable <= 0x0FFFFFFFFFFFFFFF)
676 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadModuleAtFixAddressEnable|0|UINT64|0x30001015
677
678 ## Progress Code for OS Loader LoadImage start.<BR><BR>
679 # PROGRESS_CODE_OS_LOADER_LOAD = (EFI_SOFTWARE_DXE_BS_DRIVER | (EFI_OEM_SPECIFIC | 0x00000000)) = 0x03058000<BR>
680 # @Prompt Progress Code for OS Loader LoadImage start.
681 # @ValidList 0x80000003 | 0x03058000
682 gEfiMdeModulePkgTokenSpaceGuid.PcdProgressCodeOsLoaderLoad|0x03058000|UINT32|0x30001030
683
684 ## Progress Code for OS Loader StartImage start.<BR><BR>
685 # PROGRESS_CODE_OS_LOADER_START = (EFI_SOFTWARE_DXE_BS_DRIVER | (EFI_OEM_SPECIFIC | 0x00000001)) = 0x03058001<BR>
686 # @Prompt Progress Code for OS Loader StartImage start.
687 # @ValidList 0x80000003 | 0x03058001
688 gEfiMdeModulePkgTokenSpaceGuid.PcdProgressCodeOsLoaderStart|0x03058001|UINT32|0x30001031
689
690 ## Progress Code for S3 Suspend start.<BR><BR>
691 # PROGRESS_CODE_S3_SUSPEND_START = (EFI_SOFTWARE_SMM_DRIVER | (EFI_OEM_SPECIFIC | 0x00000000)) = 0x03078000<BR>
692 # @Prompt Progress Code for S3 Suspend start.
693 # @ValidList 0x80000003 | 0x03078000
694 gEfiMdeModulePkgTokenSpaceGuid.PcdProgressCodeS3SuspendStart|0x03078000|UINT32|0x30001032
695
696 ## Progress Code for S3 Suspend end.<BR><BR>
697 # PROGRESS_CODE_S3_SUSPEND_END = (EFI_SOFTWARE_SMM_DRIVER | (EFI_OEM_SPECIFIC | 0x00000001)) = 0x03078001<BR>
698 # @Prompt Progress Code for S3 Suspend end.
699 # @ValidList 0x80000003 | 0x03078001
700 gEfiMdeModulePkgTokenSpaceGuid.PcdProgressCodeS3SuspendEnd|0x03078001|UINT32|0x30001033
701
702 ## Error Code for SetVariable failure.<BR><BR>
703 # EDKII_ERROR_CODE_SET_VARIABLE = (EFI_SOFTWARE_DXE_BS_DRIVER | (EFI_OEM_SPECIFIC | 0x00000002)) = 0x03058002<BR>
704 # @Prompt Error Code for SetVariable failure.
705 # @ValidList 0x80000006 | 0x03058002
706 gEfiMdeModulePkgTokenSpaceGuid.PcdErrorCodeSetVariable|0x03058002|UINT32|0x30001040
707
708 [PcdsFixedAtBuild, PcdsPatchableInModule]
709 ## Dynamic type PCD can be registered callback function for Pcd setting action.
710 # PcdMaxPeiPcdCallBackNumberPerPcdEntry indicates the maximum number of callback function
711 # for a dynamic PCD used in PEI phase.
712 # @Prompt Max PEI PCD callback number per PCD entry.
713 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxPeiPcdCallBackNumberPerPcdEntry|0x08|UINT32|0x0001000f
714
715 ## VPD type PCD allows a developer to point to an absolute physical address PcdVpdBaseAddress
716 # to store PCD value.
717 # @Prompt VPD base address.
718 gEfiMdeModulePkgTokenSpaceGuid.PcdVpdBaseAddress|0x0|UINT32|0x00010010
719
720 ## Maximum number of FV is supported by PeiCore's dispatching.
721 # @Prompt Maximum number of FV supported by PeiCore.
722 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxFvSupported|6|UINT32|0x00010030
723
724 ## Maximum File count in every FV is supported by PeiCore's dispatching.
725 # PeiCore supported File type includes PEIM, Combined PEIM and FV.
726 # @Prompt Maximum File count per FV supported by PeiCore.
727 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxPeimPerFv|32|UINT32|0x00010031
728
729 ## Maximum stack size for PeiCore.
730 # @Prompt Maximum stack size for PeiCore.
731 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxPeiStackSize|0x20000|UINT32|0x00010032
732
733 ## Maximum PPI count is supported by PeiCore's PPI database.
734 # @Prompt Maximum PPI count supported by PeiCore.
735 gEfiMdeModulePkgTokenSpaceGuid.PcdPeiCoreMaxPpiSupported|64|UINT32|0x00010033
736
737 ## The maximum size of a single non-HwErr type variable.
738 # @Prompt Maximum variable size.
739 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxVariableSize|0x400|UINT32|0x30000003
740
741 ## The maximum size of a single authenticated variable.
742 # The value is 0 as default for compatibility that maximum authenticated variable size is specified by PcdMaxVariableSize.
743 # @Prompt Maximum authenticated variable size.
744 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxAuthVariableSize|0x00|UINT32|0x30000009
745
746 ## The maximum size of single hardware error record variable.<BR><BR>
747 # In IA32/X64 platforms, this value should be larger than 1KB.<BR>
748 # In IA64 platforms, this value should be larger than 128KB.<BR>
749 # @Prompt Maximum HwErr variable size.
750 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxHardwareErrorVariableSize|0x8000|UINT32|0x30000004
751
752 ## The size of reserved HwErr variable space. Note that this value must be less than (PcdFlashNvStorageVariableSize - EFI_FIRMWARE_VOLUME_HEADER.HeaderLength - sizeof (VARIABLE_STORE_HEADER)).
753 # In EdkII implementation, HwErr type variable is stored with common non-volatile variables in the same NV region.
754 # so the platform integrator should ensure this value is less than (PcdFlashNvStorageVariableSize - EFI_FIRMWARE_VOLUME_HEADER.HeaderLength - sizeof (VARIABLE_STORE_HEADER)).
755 # this value is used to guarantee the space of HwErr type variable and not populated by common variable.
756 # @Prompt HwErr variable storage size.
757 gEfiMdeModulePkgTokenSpaceGuid.PcdHwErrStorageSize|0x0000|UINT32|0x30000006
758
759 ## The size of maximum user NV variable space.<BR><BR>
760 # Note that this value must be less than (PcdFlashNvStorageVariableSize - EFI_FIRMWARE_VOLUME_HEADER.HeaderLength - sizeof (VARIABLE_STORE_HEADER) - PcdHwErrStorageSize).<BR>
761 # If the value is 0, it means user variable share the same NV storage with system variable,
762 # this is designed to keep the compatibility for the platform that does not allocate special region for user variable.<BR>
763 # If the value is non-0, the below 4 types of variables will be regarded as System Variable after EndOfDxe, their property could be got by VarCheck protocol,
764 # otherwise the variable will be regarded as user variable.<BR>
765 # 1) UEFI defined variables (gEfiGlobalVariableGuid and gEfiImageSecurityDatabaseGuid(auth variable) variables at least).<BR>
766 # 2) Variables managed by Variable driver internally.<BR>
767 # 3) Variables need to be locked, they MUST be set by VariableLock protocol.<BR>
768 # 4) Important variables during platform boot, their property SHOULD be set by VarCheck protocol.<BR>
769 # The PCD is used to guarantee the space of system variable and not populated by user variable.<BR>
770 # @Prompt Maximum user NV variable space size.
771 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxUserNvVariableSpaceSize|0x00|UINT32|0x00000009
772
773 ## The size of NV variable space reserved at UEFI boottime.<BR><BR>
774 # Note that this value must be less than (PcdFlashNvStorageVariableSize - EFI_FIRMWARE_VOLUME_HEADER.HeaderLength - sizeof (VARIABLE_STORE_HEADER) - PcdHwErrStorageSize).<BR>
775 # In EdkII implementation, variable driver can reserved some NV storage region for boottime settings.
776 # So at UEFI runtime, the variable service consumer can not exhaust full NV storage region.<BR>
777 # Then the common NV variable space size at boottime will be
778 # (PcdFlashNvStorageVariableSize - EFI_FIRMWARE_VOLUME_HEADER.HeaderLength - sizeof (VARIABLE_STORE_HEADER) - PcdHwErrStorageSize),<BR>
779 # and the common NV variable space size at runtime will be
780 # (PcdFlashNvStorageVariableSize - EFI_FIRMWARE_VOLUME_HEADER.HeaderLength - sizeof (VARIABLE_STORE_HEADER) - PcdHwErrStorageSize) - PcdBoottimeReservedNvVariableSpaceSize.<BR>
781 # @Prompt Boottime reserved NV variable space size.
782 gEfiMdeModulePkgTokenSpaceGuid.PcdBoottimeReservedNvVariableSpaceSize|0x00|UINT32|0x30000007
783
784 ## Reclaim variable space at EndOfDxe.<BR><BR>
785 # The value is FALSE as default for compatibility that variable driver tries to reclaim variable space at ReadyToBoot event.<BR>
786 # If the value is set to TRUE, variable driver tries to reclaim variable space at EndOfDxe event.<BR>
787 # @Prompt Reclaim variable space at EndOfDxe.
788 gEfiMdeModulePkgTokenSpaceGuid.PcdReclaimVariableSpaceAtEndOfDxe|FALSE|BOOLEAN|0x30000008
789
790 ## The size of volatile buffer. This buffer is used to store VOLATILE attribute variables.
791 # @Prompt Variable storage size.
792 gEfiMdeModulePkgTokenSpaceGuid.PcdVariableStoreSize|0x10000|UINT32|0x30000005
793
794 ## FFS filename to find the ACPI tables.
795 # @Prompt FFS name of ACPI tables storage.
796 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiTableStorageFile|{ 0x25, 0x4e, 0x37, 0x7e, 0x01, 0x8e, 0xee, 0x4f, 0x87, 0xf2, 0x39, 0xc, 0x23, 0xc6, 0x6, 0xcd }|VOID*|0x30000016
797
798 ## FFS filename to find the capsule coalesce image.
799 # @Prompt FFS name of capsule coalesce image.
800 gEfiMdeModulePkgTokenSpaceGuid.PcdCapsuleCoalesceFile|{ 0xA6, 0xE4, 0xFD, 0xF7, 0x4C, 0x29, 0x3c, 0x49, 0xB5, 0x0F, 0x97, 0x34, 0x55, 0x3B, 0xB7, 0x57 }|VOID*|0x30000017
801
802 ## Maximum number of performance log entries during PEI phase.
803 # @Prompt Maximum number of PEI performance log entries.
804 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxPeiPerformanceLogEntries|40|UINT8|0x0001002f
805
806 ## RTC Update Timeout Value(microsecond).
807 # @Prompt RTC Update Timeout Value.
808 gEfiMdeModulePkgTokenSpaceGuid.PcdRealTimeClockUpdateTimeout|100000|UINT32|0x00010034
809
810 ## Indicates the 16550 serial port registers are in MMIO space, or in I/O space. Default is I/O space.<BR><BR>
811 # TRUE - 16550 serial port registers are in MMIO space.<BR>
812 # FALSE - 16550 serial port registers are in I/O space.<BR>
813 # @Prompt Serial port registers use MMIO.
814 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialUseMmio|FALSE|BOOLEAN|0x00020000
815
816 ## Indicates if the 16550 serial port hardware flow control will be enabled. Default is FALSE.<BR><BR>
817 # TRUE - 16550 serial port hardware flow control will be enabled.<BR>
818 # FALSE - 16550 serial port hardware flow control will be disabled.<BR>
819 # @Prompt Enable serial port hardware flow control.
820 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialUseHardwareFlowControl|FALSE|BOOLEAN|0x00020001
821
822 ## Indicates if the 16550 serial Tx operations will be blocked if DSR is not asserted (no cable). Default is FALSE.
823 # This PCD is ignored if PcdSerialUseHardwareFlowControl is FALSE.<BR><BR>
824 # TRUE - 16550 serial Tx operations will be blocked if DSR is not asserted.<BR>
825 # FALSE - 16550 serial Tx operations will not be blocked if DSR is not asserted.<BR>
826 # @Prompt Enable serial port cable detetion.
827 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialDetectCable|FALSE|BOOLEAN|0x00020006
828
829 ## Base address of 16550 serial port registers in MMIO or I/O space. Default is 0x3F8.
830 # @Prompt Base address of serial port registers.
831 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialRegisterBase|0x03F8|UINT64|0x00020002
832
833 ## Baud rate for the 16550 serial port. Default is 115200 baud.
834 # @Prompt Baud rate for serial port.
835 # @ValidList 0x80000001 | 921600, 460800, 230400, 115200, 57600, 38400, 19200, 9600, 7200, 4800, 3600, 2400, 2000, 1800, 1200, 600, 300, 150, 134, 110, 75, 50
836 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialBaudRate|115200|UINT32|0x00020003
837
838 ## Line Control Register (LCR) for the 16550 serial port. This encodes data bits, parity, and stop bits.<BR><BR>
839 # BIT1..BIT0 - Data bits. 00b = 5 bits, 01b = 6 bits, 10b = 7 bits, 11b = 8 bits<BR>
840 # BIT2 - Stop Bits. 0 = 1 stop bit. 1 = 1.5 stop bits if 5 data bits selected, otherwise 2 stop bits.<BR>
841 # BIT5..BIT3 - Parity. xx0b = No Parity, 001b = Odd Parity, 011b = Even Parity, 101b = Mark Parity, 111b=Stick Parity<BR>
842 # BIT7..BIT6 - Reserved. Must be 0.<BR>
843 #
844 # Default is No Parity, 8 Data Bits, 1 Stop Bit.<BR>
845 # @Prompt Serial port Line Control settings.
846 # @Expression 0x80000002 | (gEfiMdeModulePkgTokenSpaceGuid.PcdSerialLineControl & 0xC0) == 0
847 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialLineControl|0x03|UINT8|0x00020004
848
849 ## FIFO Control Register (FCR) for the 16550 serial port.<BR><BR>
850 # BIT0 - FIFO Enable. 0 = Disable FIFOs. 1 = Enable FIFOs.<BR>
851 # BIT1 - Clear receive FIFO. 1 = Clear FIFO.<BR>
852 # BIT2 - Clear transmit FIFO. 1 = Clear FIFO.<BR>
853 # BIT4..BIT3 - Reserved. Must be 0.<BR>
854 # BIT5 - Enable 64-byte FIFO. 0 = Disable 64-byte FIFO. 1 = Enable 64-byte FIFO<BR>
855 # BIT7..BIT6 - Reserved. Must be 0.<BR>
856 #
857 # Default is to enable and clear all FIFOs.<BR>
858 # @Prompt Serial port FIFO Control settings.
859 # @Expression 0x80000002 | (gEfiMdeModulePkgTokenSpaceGuid.PcdSerialFifoControl & 0xD8) == 0
860 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialFifoControl|0x07|UINT8|0x00020005
861
862 ## This setting can override the default TFTP block size. A value of 0 computes
863 # the default from MTU information. A non-zero value will be used as block size
864 # in bytes.
865 # @Prompt TFTP block size.
866 gEfiMdeModulePkgTokenSpaceGuid.PcdTftpBlockSize|0x0|UINT64|0x30001026
867
868 ## Maximum address that the DXE Core will allocate the EFI_SYSTEM_TABLE_POINTER
869 # structure. The default value for this PCD is 0, which means that the DXE Core
870 # will allocate the buffer from the EFI_SYSTEM_TABLE_POINTER structure on a 4MB
871 # boundary as close to the top of memory as feasible. If this PCD is set to a
872 # value other than 0, then the DXE Core will first attempt to allocate the
873 # EFI_SYSTEM_TABLE_POINTER structure on a 4MB boundary below the address specified
874 # by this PCD, and if that allocation fails, retry the allocation on a 4MB
875 # boundary as close to the top of memory as feasible.
876 # @Prompt Maximum Efi System Table Pointer address.
877 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxEfiSystemTablePointerAddress|0x0|UINT64|0x30001027
878
879 ## Indicates if to shadow PEIM on S3 boot path after memory is ready.<BR><BR>
880 # TRUE - Shadow PEIM on S3 boot path after memory is ready.<BR>
881 # FALSE - Not shadow PEIM on S3 boot path after memory is ready.<BR>
882 # @Prompt Shadow Peim On S3 Boot.
883 gEfiMdeModulePkgTokenSpaceGuid.PcdShadowPeimOnS3Boot|FALSE|BOOLEAN|0x30001028
884
885 ## The mask is used to control memory profile behavior.<BR><BR>
886 # BIT0 - Enable UEFI memory profile.<BR>
887 # BIT1 - Enable SMRAM profile.<BR>
888 # @Prompt Memory Profile Property.
889 # @Expression 0x80000002 | (gEfiMdeModulePkgTokenSpaceGuid.PcdMemoryProfilePropertyMask & 0xFC) == 0
890 gEfiMdeModulePkgTokenSpaceGuid.PcdMemoryProfilePropertyMask|0x0|UINT8|0x30001041
891
892 ## This flag is to control which memory types of alloc info will be recorded by DxeCore & SmmCore.<BR><BR>
893 # For SmmCore, only EfiRuntimeServicesCode and EfiRuntimeServicesData are valid.<BR>
894 #
895 # Below is bit mask for this PCD: (Order is same as UEFI spec)<BR>
896 # EfiReservedMemoryType 0x0001<BR>
897 # EfiLoaderCode 0x0002<BR>
898 # EfiLoaderData 0x0004<BR>
899 # EfiBootServicesCode 0x0008<BR>
900 # EfiBootServicesData 0x0010<BR>
901 # EfiRuntimeServicesCode 0x0020<BR>
902 # EfiRuntimeServicesData 0x0040<BR>
903 # EfiConventionalMemory 0x0080<BR>
904 # EfiUnusableMemory 0x0100<BR>
905 # EfiACPIReclaimMemory 0x0200<BR>
906 # EfiACPIMemoryNVS 0x0400<BR>
907 # EfiMemoryMappedIO 0x0800<BR>
908 # EfiMemoryMappedIOPortSpace 0x1000<BR>
909 # EfiPalCode 0x2000<BR>
910 # EfiPersistentMemory 0x4000<BR>
911 # OEM Reserved 0x4000000000000000<BR>
912 # OS Reserved 0x8000000000000000<BR>
913 #
914 # e.g. Reserved+ACPINvs+ACPIReclaim+RuntimeCode+RuntimeData are needed, 0x661 should be used.<BR>
915 #
916 # @Prompt Memory profile memory type.
917 gEfiMdeModulePkgTokenSpaceGuid.PcdMemoryProfileMemoryType|0x0|UINT64|0x30001042
918
919 ## PCI Serial Device Info. It is an array of Device, Function, and Power Management
920 # information that describes the path that contains zero or more PCI to PCI briges
921 # followed by a PCI serial device. Each array entry is 4-bytes in length. The
922 # first byte is the PCI Device Number, then second byte is the PCI Function Number,
923 # and the last two bytes are the offset to the PCI power management capabilities
924 # register used to manage the D0-D3 states. If a PCI power management capabilities
925 # register is not present, then the last two bytes in the offset is set to 0. The
926 # array is terminated by an array entry with a PCI Device Number of 0xFF. For a
927 # non-PCI fixed address serial device, such as an ISA serial device, the value is 0xFF.
928 # @Prompt Pci Serial Device Info
929 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialPciDeviceInfo|{0xFF}|VOID*|0x00010067
930
931 ## Serial Port Extended Transmit FIFO Size. The default is 64 bytes.
932 # @Prompt Serial Port Extended Transmit FIFO Size in Bytes
933 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialExtendedTxFifoSize|64|UINT32|0x00010068
934
935 ## This PCD points to the file name GUID of the BootManagerMenuApp
936 # Platform can customize the PCD to point to different application for Boot Manager Menu
937 gEfiMdeModulePkgTokenSpaceGuid.PcdBootManagerMenuFile|{ 0xdc, 0x5b, 0xc2, 0xee, 0xf2, 0x67, 0x95, 0x4d, 0xb1, 0xd5, 0xf8, 0x1b, 0x20, 0x39, 0xd1, 0x1d }|VOID*|0x0001006b
938
939 ## This PCD points to the formset GUID of the driver health management form
940 # The form will be popped up by BDS core when there are Configuration Required driver health intances.
941 # Platform can customize the PCD to point to different formset.
942 gEfiMdeModulePkgTokenSpaceGuid.PcdDriverHealthConfigureForm|{ 0xf4, 0xd9, 0x96, 0x42, 0xfc, 0xf6, 0xde, 0x4d, 0x86, 0x85, 0x8c, 0xe2, 0xd7, 0x9d, 0x90, 0xf0 }|VOID*|0x0001006c
943
944 ## The number of bytes between registers in serial device. The default is 1 byte.
945 # @Prompt Serial Port Register Stride in Bytes
946 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialRegisterStride|1|UINT32|0x0001006d
947
948 [PcdsPatchableInModule, PcdsDynamic, PcdsDynamicEx]
949 ## This PCD defines the Console output row. The default value is 25 according to UEFI spec.
950 # This PCD could be set to 0 then console output would be at max column and max row.
951 # @Prompt Console output row.
952 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutRow|25|UINT32|0x40000006
953
954 ## This PCD defines the Console output row. The default value is 80 according to UEFI spec.
955 # This PCD could be set to 0 then console output would be at max column and max row.
956 # @Prompt Console output column.
957 gEfiMdeModulePkgTokenSpaceGuid.PcdConOutColumn|80|UINT32|0x40000007
958
959 ## This PCD defines the video horizontal resolution.
960 # If this PCD is set to 0 then video resolution would be at highest resolution.
961 # @Prompt Video horizontal resolution.
962 gEfiMdeModulePkgTokenSpaceGuid.PcdVideoHorizontalResolution|800|UINT32|0x40000009
963
964 ## This PCD defines the video vertical resolution.
965 # If this PCD is set to 0 then video resolution would be at highest resolution.
966 # @Prompt Video vertical resolution.
967 gEfiMdeModulePkgTokenSpaceGuid.PcdVideoVerticalResolution|600|UINT32|0x4000000a
968
969 # The 4 PCDs below are used to specify the video resolution and text mode of text setup.
970 # To make text setup work in this resolution, PcdVideoHorizontalResolution, PcdVideoVerticalResolution,
971 # PcdConOutColumn and PcdConOutRow should be created as PcdsDynamic or PcdsDynamicEx in platform DSC file.
972 # Then BDS setup will update these PCDs defined in MdeModulePkg.dec and reconnect console drivers
973 # (GraphicsConsole, Terminal, Consplitter) to make the video resolution and text mode work
974 # for text setup.
975
976 ## Specify the video horizontal resolution of text setup.
977 # @Prompt Video Horizontal Resolution of Text Setup
978 gEfiMdeModulePkgTokenSpaceGuid.PcdSetupVideoHorizontalResolution|800|UINT32|0x4000000b
979
980 ## Specify the video vertical resolution of text setup.
981 # @Prompt Video Vertical Resolution of Text Setup
982 gEfiMdeModulePkgTokenSpaceGuid.PcdSetupVideoVerticalResolution|600|UINT32|0x4000000c
983
984 ## Specify the console output column of text setup.
985 # @Prompt Console Output Column of Text Setup
986 gEfiMdeModulePkgTokenSpaceGuid.PcdSetupConOutColumn|80|UINT32|0x4000000d
987
988 ## Specify the console output row of text setup.
989 # @Prompt Console Output Row of Text Setup
990 gEfiMdeModulePkgTokenSpaceGuid.PcdSetupConOutRow|25|UINT32|0x4000000e
991
992 [PcdsFixedAtBuild, PcdsPatchableInModule, PcdsDynamic, PcdsDynamicEx]
993 ## UART clock frequency is for the baud rate configuration.
994 # @Prompt Serial Port Clock Rate.
995 gEfiMdeModulePkgTokenSpaceGuid.PcdSerialClockRate|1843200|UINT32|0x00010066
996
997 ## This PCD points to the front page formset GUID
998 # Compare the FormsetGuid or ClassGuid with this PCD value can detect whether in front page
999 gEfiMdeModulePkgTokenSpaceGuid.PcdFrontPageFormSetGuid|{ 0xbc, 0x30, 0x0c, 0x9e,0x06, 0x3f, 0xa6, 0x4b, 0x82, 0x88, 0x9, 0x17, 0x9b, 0x85, 0x5d, 0xbe }|VOID*|0x0001006e
1000
1001 ## Base address of the NV variable range in flash device.
1002 # @Prompt Base address of flash NV variable range.
1003 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableBase|0x0|UINT32|0x30000001
1004
1005 ## Size of the NV variable range. Note that this value should less than or equal to PcdFlashNvStorageFtwSpareSize.
1006 # The root cause is that variable driver will use FTW protocol to reclaim variable region.
1007 # If the length of variable region is larger than FTW spare size, it means the whole variable region can not
1008 # be reflushed through the manner of fault tolerant write.
1009 # @Prompt Size of flash NV variable range.
1010 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableSize|0x0|UINT32|0x30000002
1011
1012 ## Base address of the FTW spare block range in flash device. Note that this value should be block size aligned.
1013 # @Prompt Base address of flash FTW spare block range.
1014 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareBase|0x0|UINT32|0x30000013
1015
1016 ## Size of the FTW spare block range. Note that this value should larger than PcdFlashNvStorageVariableSize and block size aligned.
1017 # The root cause is that variable driver will use FTW protocol to reclaim variable region.
1018 # If the length of variable region is larger than FTW spare size, it means the whole variable region can not
1019 # be reflushed through the manner of fault tolerant write.
1020 # @Prompt Size of flash FTW spare block range.
1021 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareSize|0x0|UINT32|0x30000014
1022
1023 ## Base address of the FTW working block range in flash device.
1024 # If PcdFlashNvStorageFtwWorkingSize is larger than one block size, this value should be block size aligned.
1025 # @Prompt Base address of flash FTW working block range.
1026 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingBase|0x0|UINT32|0x30000010
1027
1028 ## Size of the FTW working block range.
1029 # If the value is less than one block size, the work space range should not span blocks.
1030 # If the value is larger than one block size, it should be block size aligned.
1031 # @Prompt Size of flash FTW working block range.
1032 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingSize|0x0|UINT32|0x30000011
1033
1034 ## 64-bit Base address of the NV variable range in flash device.
1035 # @Prompt 64-bit Base address of flash NV variable range.
1036 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableBase64|0x0|UINT64|0x80000001
1037
1038 ## 64-bit Base address of the FTW spare block range in flash device. Note that this value should be block size aligned.
1039 # @Prompt 64-bit Base address of flash FTW spare block range.
1040 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareBase64|0x0|UINT64|0x80000013
1041
1042 ## 64-bit Base address of the FTW working block range in flash device.
1043 # If PcdFlashNvStorageFtwWorkingSize is larger than one block size, this value should be block size aligned.
1044 # @Prompt 64-bit Base address of flash FTW working block range.
1045 gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingBase64|0x0|UINT64|0x80000010
1046
1047 ## This PCD defines a reserved memory range for the EMU Variable driver's NV Variable Store.
1048 # The range is valid if non-zero. The memory range size must be PcdVariableStoreSize.
1049 # @Prompt Reserved memory range for EMU variable NV storage.
1050 gEfiMdeModulePkgTokenSpaceGuid.PcdEmuVariableNvStoreReserved|0|UINT64|0x40000008
1051
1052 ## This PCD defines the times to print hello world string.
1053 # This PCD is a sample to explain UINT32 PCD usage.
1054 # @Prompt HellowWorld print times.
1055 gEfiMdeModulePkgTokenSpaceGuid.PcdHelloWorldPrintTimes|1|UINT32|0x40000005
1056
1057 ## This PCD defines the HelloWorld print string.
1058 # This PCD is a sample to explain String typed PCD usage.
1059 # @Prompt HelloWorld print string.
1060 gEfiMdeModulePkgTokenSpaceGuid.PcdHelloWorldPrintString|L"UEFI Hello World!\n"|VOID*|0x40000004
1061
1062 ## Indicates the maximum size of the capsule image with a reset flag that the platform can support.
1063 # The default max size is 100MB (0x6400000) for more than one large capsule images.
1064 # @Prompt Max size of populated capsule.
1065 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxSizePopulateCapsule|0x6400000|UINT32|0x0001001e
1066
1067 ## Indicates the maximum size of the capsule image without a reset flag that the platform can support.
1068 # The default max size is 10MB (0xa00000) for the casule image without reset flag setting.
1069 # @Prompt Max size of non-populated capsule.
1070 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxSizeNonPopulateCapsule|0xa00000|UINT32|0x0001001f
1071
1072 ## Null-terminated Unicode string of the firmware vendor name that is the default name filled into the EFI System Table.
1073 # @Prompt Firmware vendor.
1074 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareVendor|L"EDK II"|VOID*|0x00010050
1075
1076 ## Firmware revision that is the default revision filled into the EFI System Table.
1077 # @Prompt Firmware revision.
1078 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareRevision|0x00010000|UINT32|0x00010051
1079
1080 ## Null-terminated Unicode string that describes the firmware version.
1081 # @Prompt Firmware version string.
1082 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareVersionString|L""|VOID*|0x00010052
1083
1084 ## Null-terminated Unicode string that contains the date the firmware was released
1085 # @Prompt Firmware release data string.
1086 gEfiMdeModulePkgTokenSpaceGuid.PcdFirmwareReleaseDateString|L""|VOID*|0x00010053
1087
1088 ## PcdStatusCodeMemorySize is used when PcdStatusCodeUseMemory is set to true.
1089 # (PcdStatusCodeMemorySize * KBytes) is the total taken memory size.<BR><BR>
1090 # The default value in PeiPhase is 1 KBytes.<BR>
1091 # The default value in DxePhase is 128 KBytes.<BR>
1092 # @Prompt StatusCode memory size.
1093 gEfiMdeModulePkgTokenSpaceGuid.PcdStatusCodeMemorySize|1|UINT16|0x00010054
1094
1095 ## Indicates if to reset system when memory type information changes.<BR><BR>
1096 # TRUE - Resets system when memory type information changes.<BR>
1097 # FALSE - Does not reset system when memory type information changes.<BR>
1098 # @Prompt Reset on memory type information change.
1099 gEfiMdeModulePkgTokenSpaceGuid.PcdResetOnMemoryTypeInformationChange|TRUE|BOOLEAN|0x00010056
1100
1101 ## Specify the foreground color for Subtile text in HII Form Browser. The default value is EFI_BLUE.
1102 # Only following values defined in UEFI specification are valid:<BR><BR>
1103 # 0x00 (EFI_BLACK)<BR>
1104 # 0x01 (EFI_BLUE)<BR>
1105 # 0x02 (EFI_GREEN)<BR>
1106 # 0x03 (EFI_CYAN)<BR>
1107 # 0x04 (EFI_RED)<BR>
1108 # 0x05 (EFI_MAGENTA)<BR>
1109 # 0x06 (EFI_BROWN)<BR>
1110 # 0x07 (EFI_LIGHTGRAY)<BR>
1111 # 0x08 (EFI_DARKGRAY)<BR>
1112 # 0x09 (EFI_LIGHTBLUE)<BR>
1113 # 0x0A (EFI_LIGHTGREEN)<BR>
1114 # 0x0B (EFI_LIGHTCYAN)<BR>
1115 # 0x0C (EFI_LIGHTRED)<BR>
1116 # 0x0D (EFI_LIGHTMAGENTA)<BR>
1117 # 0x0E (EFI_YELLOW)<BR>
1118 # 0x0F (EFI_WHITE)<BR>
1119 # @Prompt Foreground color for browser subtile.
1120 # @ValidRange 0x80000004 | 0x00 - 0x0F
1121 gEfiMdeModulePkgTokenSpaceGuid.PcdBrowserSubtitleTextColor|0x01|UINT8|0x00010057
1122
1123 ## Specify the foreground color for prompt and Question value text in HII Form Browser. The default value is EFI_BLACK.
1124 # Only following values defined in UEFI specification are valid:<BR><BR>
1125 # 0x00 (EFI_BLACK)<BR>
1126 # 0x01 (EFI_BLUE)<BR>
1127 # 0x02 (EFI_GREEN)<BR>
1128 # 0x03 (EFI_CYAN)<BR>
1129 # 0x04 (EFI_RED)<BR>
1130 # 0x05 (EFI_MAGENTA)<BR>
1131 # 0x06 (EFI_BROWN)<BR>
1132 # 0x07 (EFI_LIGHTGRAY)<BR>
1133 # 0x08 (EFI_DARKGRAY)<BR>
1134 # 0x09 (EFI_LIGHTBLUE)<BR>
1135 # 0x0A (EFI_LIGHTGREEN)<BR>
1136 # 0x0B (EFI_LIGHTCYAN)<BR>
1137 # 0x0C (EFI_LIGHTRED)<BR>
1138 # 0x0D (EFI_LIGHTMAGENTA)<BR>
1139 # 0x0E (EFI_YELLOW)<BR>
1140 # 0x0F (EFI_WHITE)<BR>
1141 # @Prompt Foreground color for browser field.
1142 # @ValidRange 0x80000004 | 0x00 - 0x0F
1143 gEfiMdeModulePkgTokenSpaceGuid.PcdBrowserFieldTextColor|0x00|UINT8|0x00010058
1144
1145 ## Specify the foreground color for highlighted prompt and Question value text in HII Form Browser.
1146 # The default value is EFI_LIGHTGRAY. Only following values defined in UEFI specification are valid:<BR><BR>
1147 # 0x00 (EFI_BLACK)<BR>
1148 # 0x01 (EFI_BLUE)<BR>
1149 # 0x02 (EFI_GREEN)<BR>
1150 # 0x03 (EFI_CYAN)<BR>
1151 # 0x04 (EFI_RED)<BR>
1152 # 0x05 (EFI_MAGENTA)<BR>
1153 # 0x06 (EFI_BROWN)<BR>
1154 # 0x07 (EFI_LIGHTGRAY)<BR>
1155 # 0x08 (EFI_DARKGRAY)<BR>
1156 # 0x09 (EFI_LIGHTBLUE)<BR>
1157 # 0x0A (EFI_LIGHTGREEN)<BR>
1158 # 0x0B (EFI_LIGHTCYAN)<BR>
1159 # 0x0C (EFI_LIGHTRED)<BR>
1160 # 0x0D (EFI_LIGHTMAGENTA)<BR>
1161 # 0x0E (EFI_YELLOW)<BR>
1162 # 0x0F (EFI_WHITE)<BR>
1163 # @Prompt Foreground color for highlighted browser field.
1164 # @ValidRange 0x80000004 | 0x00 - 0x0F
1165 gEfiMdeModulePkgTokenSpaceGuid.PcdBrowserFieldTextHighlightColor|0x07|UINT8|0x00010059
1166
1167 ## Specify the background color for highlighted prompt and Question value text in HII Form Browser.
1168 # The default value is EFI_BACKGROUND_BLACK. Only following values defined in UEFI specification are valid:<BR><BR>
1169 # 0x00 (EFI_BACKGROUND_BLACK)<BR>
1170 # 0x10 (EFI_BACKGROUND_BLUE)<BR>
1171 # 0x20 (EFI_BACKGROUND_GREEN)<BR>
1172 # 0x30 (EFI_BACKGROUND_CYAN)<BR>
1173 # 0x40 (EFI_BACKGROUND_RED)<BR>
1174 # 0x50 (EFI_BACKGROUND_MAGENTA)<BR>
1175 # 0x60 (EFI_BACKGROUND_BROWN)<BR>
1176 # 0x70 (EFI_BACKGROUND_LIGHTGRAY)<BR>
1177 # @Prompt Background color for highlighted browser field.
1178 # @ValidList 0x80000005 | 0x00, 0x10, 0x20, 0x30, 0x40, 0x50, 0x60, 0x70
1179 gEfiMdeModulePkgTokenSpaceGuid.PcdBrowserFieldBackgroundHighlightColor|0x00|UINT8|0x0001005A
1180
1181 ## Time in second to delay for SATA devices to spin-up for recovery.
1182 # @Prompt SATA spin-up delay time in second for recovery path.
1183 gEfiMdeModulePkgTokenSpaceGuid.PcdSataSpinUpDelayInSecForRecoveryPath|15|UINT16|0x0001005B
1184
1185 ## This PCD is used to specify memory size with page number for a pre-allocated ACPI NVS memory to hold
1186 # runtime created S3 boot script entries. The default page number is 2. When changing the value of this
1187 # PCD, the platform developer should make sure the memory size is large enough to hold the S3 boot
1188 # script node created in runtime phase.
1189 # @Prompt Reserved page number for S3 Boot Script Runtime Table.
1190 gEfiMdeModulePkgTokenSpaceGuid.PcdS3BootScriptRuntimeTableReservePageNumber|0x2|UINT16|0x0001005C
1191
1192 ## The PCD is used to specify the stack size when capsule IA32 PEI transfers to long mode in PEI phase.
1193 # The default size is 32K. When changing the value of this PCD, the platform developer should
1194 # make sure the memory size is large enough to meet capsule PEI requirement in capsule update path.
1195 # @Prompt Stack size for CapsulePei transfer to long mode.
1196 gEfiMdeModulePkgTokenSpaceGuid.PcdCapsulePeiLongModeStackSize|0x8000|UINT32|0x0001005D
1197
1198 ## Indicates if 1G page table will be enabled.<BR><BR>
1199 # TRUE - 1G page table will be enabled.<BR>
1200 # FALSE - 1G page table will not be enabled.<BR>
1201 # @Prompt Enable 1G page table support.
1202 gEfiMdeModulePkgTokenSpaceGuid.PcdUse1GPageTable|FALSE|BOOLEAN|0x0001005E
1203
1204 ## Indicates if the Single Root I/O virtualization is supported.<BR><BR>
1205 # TRUE - Single Root I/O virtualization is supported.<BR>
1206 # FALSE - Single Root I/O virtualization is not supported.<BR>
1207 # @Prompt Enable SRIOV support.
1208 gEfiMdeModulePkgTokenSpaceGuid.PcdSrIovSupport|TRUE|BOOLEAN|0x10000044
1209
1210 ## Indicates if the Alternative Routing-ID is supported.<BR><BR>
1211 # TRUE - Alternative Routing-ID is supported.<BR>
1212 # FALSE - Alternative Routing-ID is not supported.<BR>
1213 # @Prompt Enable ARI support.
1214 gEfiMdeModulePkgTokenSpaceGuid.PcdAriSupport|TRUE|BOOLEAN|0x10000045
1215
1216 ## Indicates if the Multi Root I/O virtualization is supported.<BR><BR>
1217 # TRUE - Multi Root I/O virtualization is supported.<BR>
1218 # FALSE - Multi Root I/O virtualization is not supported.<BR>
1219 # @Prompt Enable MRIOV support.
1220 gEfiMdeModulePkgTokenSpaceGuid.PcdMrIovSupport|FALSE|BOOLEAN|0x10000046
1221
1222 ## Single root I/O virtualization virtual function memory BAR alignment.<BR><BR>
1223 # BITN set indicates 2 of n+12 power<BR>
1224 # BIT0 set indicates 4KB alignment<BR>
1225 # BIT1 set indicates 8KB alignment<BR>
1226 # @Prompt SRIOV system page size.
1227 gEfiMdeModulePkgTokenSpaceGuid.PcdSrIovSystemPageSize|0x1|UINT32|0x10000047
1228
1229 ## SMBIOS version.
1230 # @Prompt SMBIOS version.
1231 gEfiMdeModulePkgTokenSpaceGuid.PcdSmbiosVersion|0x0300|UINT16|0x00010055
1232
1233 ## SMBIOS Docrev field in SMBIOS 3.0 (64-bit) Entry Point Structure.
1234 # @Prompt SMBIOS Docrev field in SMBIOS 3.0 (64-bit) Entry Point Structure.
1235 gEfiMdeModulePkgTokenSpaceGuid.PcdSmbiosDocRev|0x0|UINT8|0x0001006A
1236
1237 ## SMBIOS produce method.
1238 # BIT0 set indicates 32-bit entry point and table are produced.<BR>
1239 # BIT1 set indicates 64-bit entry point and table are produced.<BR>
1240 # @Prompt The policy to produce SMBIOS entry point and table.
1241 gEfiMdeModulePkgTokenSpaceGuid.PcdSmbiosEntryPointProvideMethod|0x3|UINT32|0x00010069
1242
1243 ## This PCD specifies the additional pad size in FPDT Basic Boot Performance Table for
1244 # the extension FPDT boot records received after ReadyToBoot and before ExitBootService.
1245 # @Prompt Pad size for extension FPDT boot records.
1246 gEfiMdeModulePkgTokenSpaceGuid.PcdExtFpdtBootRecordPadSize|0x0|UINT32|0x0001005F
1247
1248 ## Indicates if ConIn device are connected on demand.<BR><BR>
1249 # TRUE - ConIn device are not connected during BDS and ReadKeyStroke/ReadKeyStrokeEx produced
1250 # by Consplitter should be called before any real key read operation.<BR>
1251 # FALSE - ConIn device may be connected normally during BDS.<BR>
1252 # @Prompt ConIn connect on demand.
1253 gEfiMdeModulePkgTokenSpaceGuid.PcdConInConnectOnDemand|FALSE|BOOLEAN|0x10000060
1254
1255 ## Indicates if the S.M.A.R.T feature of attached ATA hard disks will be enabled.<BR><BR>
1256 # TRUE - S.M.A.R.T feature of attached ATA hard disks will be enabled.<BR>
1257 # FALSE - S.M.A.R.T feature of attached ATA hard disks will be default status.<BR>
1258 # @Prompt Enable ATA S.M.A.R.T feature.
1259 gEfiMdeModulePkgTokenSpaceGuid.PcdAtaSmartEnable|TRUE|BOOLEAN|0x00010065
1260
1261 ## Indicates if full PCI enumeration is disabled.<BR><BR>
1262 # TRUE - Full PCI enumeration is disabled.<BR>
1263 # FALSE - Full PCI enumeration is not disabled.<BR>
1264 # @Prompt Disable full PCI enumeration.
1265 gEfiMdeModulePkgTokenSpaceGuid.PcdPciDisableBusEnumeration|FALSE|BOOLEAN|0x10000048
1266
1267 ## Disk I/O - Number of Data Buffer block.
1268 # Define the size in block of the pre-allocated buffer. It provide better
1269 # performance for large Disk I/O requests.
1270 # @Prompt Disk I/O - Number of Data Buffer block.
1271 gEfiMdeModulePkgTokenSpaceGuid.PcdDiskIoDataBufferBlockNum|64|UINT32|0x30001039
1272
1273 ## This PCD specifies the PCI-based UFS host controller mmio base address.
1274 # Define the mmio base address of the pci-based UFS host controller. If there are multiple UFS
1275 # host controllers, their mmio base addresses are calculated one by one from this base address.
1276 # @Prompt Mmio base address of pci-based UFS host controller.
1277 gEfiMdeModulePkgTokenSpaceGuid.PcdUfsPciHostControllerMmioBase|0xd0000000|UINT32|0x10000061
1278
1279 ## Specify Max ESRT cache entry number supported for FMP instances
1280 #
1281 # @Prompt Max FMP ESRT entry number to be synced & cached in repository.
1282 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxFmpEsrtCacheNum|32|UINT32|0x0000006b
1283
1284 ## Specify Max ESRT cache entry number supported for Non FMP instances
1285 #
1286 # @Prompt Max Non-FMP ESRT entry number to be cached in repository.
1287 gEfiMdeModulePkgTokenSpaceGuid.PcdMaxNonFmpEsrtCacheNum|32|UINT32|0x0000006c
1288
1289 ## Specify of Capsule Flag defined by CapsuleGuid to request system reboot after capsule process
1290 #
1291 # @Prompt Flag to request system reboot after processing capsule.
1292 gEfiMdeModulePkgTokenSpaceGuid.PcdSystemRebootAfterCapsuleProcessFlag|0x0001|UINT16|0x0000006d
1293
1294 ## Publish PropertiesTable or not.
1295 #
1296 # If this PCD is TRUE, DxeCore publishs PropertiesTable.
1297 # DxeCore evaluates if all runtime drivers has 4K aligned PE sections. If all
1298 # PE sections in runtime drivers are 4K aligned, DxeCore sets BIT0 in
1299 # PropertiesTable. Or DxeCore clears BIT0 in PropertiesTable.
1300 # If this PCD is FALSE, DxeCore does not publish PropertiesTable.
1301 #
1302 # If PropertiesTable has BIT0 set, DxeCore uses below policy in UEFI memory map:
1303 # 1) Use EfiRuntimeServicesCode for runtime driver PE image code section and
1304 # use EfiRuntimeServicesData for runtime driver PE image header and other section.
1305 # 2) Set EfiRuntimeServicesCode to be EFI_MEMORY_RO.
1306 # 3) Set EfiRuntimeServicesData to be EFI_MEMORY_XP.
1307 # 4) Set EfiMemoryMappedIO and EfiMemoryMappedIOPortSpace to be EFI_MEMORY_XP.
1308 #
1309 # NOTE: Platform need gurantee this PCD is set correctly. Platform should set
1310 # this PCD to be TURE if and only if all runtime driver has seperated Code/Data
1311 # section. If PE code/data sections are merged, the result is unpredictable.
1312 #
1313 # @Prompt Publish UEFI PropertiesTable.
1314 gEfiMdeModulePkgTokenSpaceGuid.PcdPropertiesTableEnable|TRUE|BOOLEAN|0x0000006e
1315
1316 ## Default OEM ID for ACPI table creation, its length must be 0x6 bytes to follow ACPI specification.
1317 # @Prompt Default OEM ID for ACPI table creation.
1318 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiDefaultOemId|"INTEL "|VOID*|0x30001034
1319
1320 ## Default OEM Table ID for ACPI table creation, it is "EDK2 ".
1321 # @Prompt Default OEM Table ID for ACPI table creation.
1322 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiDefaultOemTableId|0x20202020324B4445|UINT64|0x30001035
1323
1324 ## Default OEM Revision for ACPI table creation.
1325 # @Prompt Default OEM Revision for ACPI table creation.
1326 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiDefaultOemRevision|0x00000002|UINT32|0x30001036
1327
1328 ## Default Creator ID for ACPI table creation.
1329 # @Prompt Default Creator ID for ACPI table creation.
1330 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiDefaultCreatorId|0x20202020|UINT32|0x30001037
1331
1332 ## Default Creator Revision for ACPI table creation.
1333 # @Prompt Default Creator Revision for ACPI table creation.
1334 gEfiMdeModulePkgTokenSpaceGuid.PcdAcpiDefaultCreatorRevision|0x01000013|UINT32|0x30001038
1335
1336 [PcdsPatchableInModule]
1337 ## Specify memory size with page number for PEI code when
1338 # Loading Module at Fixed Address feature is enabled.
1339 # The value will be set by the build tool.
1340 # @Prompt LMFA PEI code page number.
1341 # @ValidList 0x80000001 | 0
1342 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressPeiCodePageNumber|0|UINT32|0x00000029
1343
1344 ## Specify memory size with page number for DXE boot time code when
1345 # Loading Module at Fixed Address feature is enabled.
1346 # The value will be set by the build tool.
1347 # @Prompt LMFA DXE boot code page number.
1348 # @ValidList 0x80000001 | 0
1349 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressBootTimeCodePageNumber|0|UINT32|0x0000002a
1350
1351 ## Specify memory size with page number for DXE runtime code when
1352 # Loading Module at Fixed Address feature is enabled.
1353 # The value will be set by the build tool.
1354 # @Prompt LMFA DXE runtime code page number.
1355 # @ValidList 0x80000001 | 0
1356 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressRuntimeCodePageNumber|0|UINT32|0x0000002b
1357
1358 ## Specify memory size with page number for SMM code when
1359 # Loading Module at Fixed Address feature is enabled.
1360 # The value will be set by the build tool.
1361 # @Prompt LMFA SMM code page number.
1362 # @ValidList 0x80000001 | 0
1363 gEfiMdeModulePkgTokenSpaceGuid.PcdLoadFixAddressSmmCodePageNumber|0|UINT32|0x0000002c
1364
1365 [PcdsDynamic, PcdsDynamicEx]
1366 ## This dynamic PCD hold an address to point to private data structure used in DxeS3BootScriptLib library
1367 # instance which records the S3 boot script table start address, length, etc. To introduce this PCD is
1368 # only for DxeS3BootScriptLib instance implementation purpose. The platform developer should make sure the
1369 # default value is set to Zero. And the PCD is assumed ONLY to be accessed in DxeS3BootScriptLib Library.
1370 # @Prompt S3 Boot Script Table Private Data pointer.
1371 # @ValidList 0x80000001 | 0x0
1372 gEfiMdeModulePkgTokenSpaceGuid.PcdS3BootScriptTablePrivateDataPtr|0x0|UINT64|0x00030000
1373
1374 ## This dynamic PCD hold an address to point to private data structure SMM copy used in DxeS3BootScriptLib library
1375 # instance which records the S3 boot script table start address, length, etc. To introduce this PCD is
1376 # only for DxeS3BootScriptLib instance implementation purpose. The platform developer should make sure the
1377 # default value is set to Zero. And the PCD is assumed ONLY to be accessed in DxeS3BootScriptLib Library.
1378 # @Prompt S3 Boot Script Table Private Smm Data pointer.
1379 # @ValidList 0x80000001 | 0x0
1380 gEfiMdeModulePkgTokenSpaceGuid.PcdS3BootScriptTablePrivateSmmDataPtr|0x0|UINT64|0x00030001
1381
1382 ## This dynamic PCD hold an address to point to the memory of page table. The page table establishes a 1:1
1383 # Virtual to Physical mapping according to the processor physical address bits.
1384 # @Prompt Identify Mapping Page Table pointer.
1385 # @ValidList 0x80000001 | 0x0
1386 gEfiMdeModulePkgTokenSpaceGuid.PcdIdentifyMappingPageTablePtr|0x0|UINT64|0x00030002
1387
1388 [UserExtensions.TianoCore."ExtraFiles"]
1389 MdeModulePkgExtra.uni