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1 ## @file
2 # EFI/Framework Open Virtual Machine Firmware (OVMF) platform
3 #
4 # Copyright (c) 2020, Rebecca Cran <rebecca@bsdio.com>
5 # Copyright (c) 2006 - 2019, Intel Corporation. All rights reserved.<BR>
6 # Copyright (c) 2014, Pluribus Networks, Inc.
7 #
8 # SPDX-License-Identifier: BSD-2-Clause-Patent
9 #
10 ##
11
12 [Defines]
13 DEC_SPECIFICATION = 0x00010005
14 PACKAGE_NAME = OvmfPkg
15 PACKAGE_GUID = 2daf5f34-50e5-4b9d-b8e3-5562334d87e5
16 PACKAGE_VERSION = 0.1
17
18 [Includes]
19 Include
20 Csm/Include
21
22 [LibraryClasses]
23 ## @libraryclass Access bhyve's firmware control interface.
24 BhyveFwCtlLib|Include/Library/BhyveFwCtlLib.h
25
26 ## @libraryclass Verify blobs read from the VMM
27 BlobVerifierLib|Include/Library/BlobVerifierLib.h
28
29 ## @libraryclass Loads and boots a Linux kernel image
30 #
31 LoadLinuxLib|Include/Library/LoadLinuxLib.h
32
33 ## @libraryclass Declares helper functions for Secure Encrypted
34 # Virtualization (SEV) guests.
35 MemEncryptSevLib|Include/Library/MemEncryptSevLib.h
36
37 ## @libraryclass Save and restore variables using a file
38 #
39 NvVarsFileLib|Include/Library/NvVarsFileLib.h
40
41 ## @libraryclass Provides services to work with PCI capabilities in PCI
42 # config space.
43 PciCapLib|Include/Library/PciCapLib.h
44
45 ## @libraryclass Layered on top of PciCapLib, allows clients to plug an
46 # EFI_PCI_IO_PROTOCOL backend into PciCapLib, for config
47 # space access.
48 PciCapPciIoLib|Include/Library/PciCapPciIoLib.h
49
50 ## @libraryclass Layered on top of PciCapLib, allows clients to plug a
51 # PciSegmentLib backend into PciCapLib, for config space
52 # access.
53 PciCapPciSegmentLib|Include/Library/PciCapPciSegmentLib.h
54
55 ## @libraryclass Provide common utility functions to PciHostBridgeLib
56 # instances in ArmVirtPkg and OvmfPkg.
57 PciHostBridgeUtilityLib|Include/Library/PciHostBridgeUtilityLib.h
58
59 ## @libraryclass Register a status code handler for printing the Boot
60 # Manager's LoadImage() and StartImage() preparations, and
61 # return codes, to the UEFI console.
62 PlatformBmPrintScLib|Include/Library/PlatformBmPrintScLib.h
63
64 ## @libraryclass Customize FVB2 protocol member functions for a platform.
65 PlatformFvbLib|Include/Library/PlatformFvbLib.h
66
67 ## @libraryclass Access QEMU's firmware configuration interface
68 #
69 QemuFwCfgLib|Include/Library/QemuFwCfgLib.h
70
71 ## @libraryclass S3 support for QEMU fw_cfg
72 #
73 QemuFwCfgS3Lib|Include/Library/QemuFwCfgS3Lib.h
74
75 ## @libraryclass Parse the contents of named fw_cfg files as simple
76 # (scalar) data types.
77 QemuFwCfgSimpleParserLib|Include/Library/QemuFwCfgSimpleParserLib.h
78
79 ## @libraryclass Rewrite the BootOrder NvVar based on QEMU's "bootorder"
80 # fw_cfg file.
81 #
82 QemuBootOrderLib|Include/Library/QemuBootOrderLib.h
83
84 ## @libraryclass Load a kernel image and command line passed to QEMU via
85 # the command line
86 #
87 QemuLoadImageLib|Include/Library/QemuLoadImageLib.h
88
89 ## @libraryclass Serialize (and deserialize) variables
90 #
91 SerializeVariablesLib|Include/Library/SerializeVariablesLib.h
92
93 ## @libraryclass Declares utility functions for virtio device drivers.
94 VirtioLib|Include/Library/VirtioLib.h
95
96 ## @libraryclass Install Virtio Device Protocol instances on virtio-mmio
97 # transports.
98 VirtioMmioDeviceLib|Include/Library/VirtioMmioDeviceLib.h
99
100 ## @libraryclass Invoke Xen hypercalls
101 #
102 XenHypercallLib|Include/Library/XenHypercallLib.h
103
104 ## @libraryclass Manage XenBus device path and I/O handles
105 #
106 XenIoMmioLib|Include/Library/XenIoMmioLib.h
107
108 ## @libraryclass Get information about Xen
109 #
110 XenPlatformLib|Include/Library/XenPlatformLib.h
111
112 [Guids]
113 gUefiOvmfPkgTokenSpaceGuid = {0x93bb96af, 0xb9f2, 0x4eb8, {0x94, 0x62, 0xe0, 0xba, 0x74, 0x56, 0x42, 0x36}}
114 gEfiXenInfoGuid = {0xd3b46f3b, 0xd441, 0x1244, {0x9a, 0x12, 0x0, 0x12, 0x27, 0x3f, 0xc1, 0x4d}}
115 gOvmfPkKek1AppPrefixGuid = {0x4e32566d, 0x8e9e, 0x4f52, {0x81, 0xd3, 0x5b, 0xb9, 0x71, 0x5f, 0x97, 0x27}}
116 gOvmfPlatformConfigGuid = {0x7235c51c, 0x0c80, 0x4cab, {0x87, 0xac, 0x3b, 0x08, 0x4a, 0x63, 0x04, 0xb1}}
117 gVirtioMmioTransportGuid = {0x837dca9e, 0xe874, 0x4d82, {0xb2, 0x9a, 0x23, 0xfe, 0x0e, 0x23, 0xd1, 0xe2}}
118 gQemuRamfbGuid = {0x557423a1, 0x63ab, 0x406c, {0xbe, 0x7e, 0x91, 0xcd, 0xbc, 0x08, 0xc4, 0x57}}
119 gXenBusRootDeviceGuid = {0xa732241f, 0x383d, 0x4d9c, {0x8a, 0xe1, 0x8e, 0x09, 0x83, 0x75, 0x89, 0xd7}}
120 gRootBridgesConnectedEventGroupGuid = {0x24a2d66f, 0xeedd, 0x4086, {0x90, 0x42, 0xf2, 0x6e, 0x47, 0x97, 0xee, 0x69}}
121 gMicrosoftVendorGuid = {0x77fa9abd, 0x0359, 0x4d32, {0xbd, 0x60, 0x28, 0xf4, 0xe7, 0x8f, 0x78, 0x4b}}
122 gEfiLegacyBiosGuid = {0x2E3044AC, 0x879F, 0x490F, {0x97, 0x60, 0xBB, 0xDF, 0xAF, 0x69, 0x5F, 0x50}}
123 gEfiLegacyDevOrderVariableGuid = {0xa56074db, 0x65fe, 0x45f7, {0xbd, 0x21, 0x2d, 0x2b, 0xdd, 0x8e, 0x96, 0x52}}
124 gQemuKernelLoaderFsMediaGuid = {0x1428f772, 0xb64a, 0x441e, {0xb8, 0xc3, 0x9e, 0xbd, 0xd7, 0xf8, 0x93, 0xc7}}
125 gGrubFileGuid = {0xb5ae312c, 0xbc8a, 0x43b1, {0x9c, 0x62, 0xeb, 0xb8, 0x26, 0xdd, 0x5d, 0x07}}
126 gConfidentialComputingSecretGuid = {0xadf956ad, 0xe98c, 0x484c, {0xae, 0x11, 0xb5, 0x1c, 0x7d, 0x33, 0x64, 0x47}}
127 gConfidentialComputingSevSnpBlobGuid = {0x067b1f5f, 0xcf26, 0x44c5, {0x85, 0x54, 0x93, 0xd7, 0x77, 0x91, 0x2d, 0x42}}
128
129 [Ppis]
130 # PPI whose presence in the PPI database signals that the TPM base address
131 # has been discovered and recorded
132 gOvmfTpmDiscoveredPpiGuid = {0xb9a61ad0, 0x2802, 0x41f3, {0xb5, 0x13, 0x96, 0x51, 0xce, 0x6b, 0xd5, 0x75}}
133
134 # This PPI signals that accessing the MMIO range of the TPM is possible in
135 # the PEI phase, regardless of memory encryption
136 gOvmfTpmMmioAccessiblePpiGuid = {0x35c84ff2, 0x7bfe, 0x453d, {0x84, 0x5f, 0x68, 0x3a, 0x49, 0x2c, 0xf7, 0xb7}}
137
138 [Protocols]
139 gVirtioDeviceProtocolGuid = {0xfa920010, 0x6785, 0x4941, {0xb6, 0xec, 0x49, 0x8c, 0x57, 0x9f, 0x16, 0x0a}}
140 gXenBusProtocolGuid = {0x3d3ca290, 0xb9a5, 0x11e3, {0xb7, 0x5d, 0xb8, 0xac, 0x6f, 0x7d, 0x65, 0xe6}}
141 gXenIoProtocolGuid = {0x6efac84f, 0x0ab0, 0x4747, {0x81, 0xbe, 0x85, 0x55, 0x62, 0x59, 0x04, 0x49}}
142 gIoMmuAbsentProtocolGuid = {0xf8775d50, 0x8abd, 0x4adf, {0x92, 0xac, 0x85, 0x3e, 0x51, 0xf6, 0xc8, 0xdc}}
143 gEfiLegacy8259ProtocolGuid = {0x38321dba, 0x4fe0, 0x4e17, {0x8a, 0xec, 0x41, 0x30, 0x55, 0xea, 0xed, 0xc1}}
144 gEfiFirmwareVolumeProtocolGuid = {0x389F751F, 0x1838, 0x4388, {0x83, 0x90, 0xcd, 0x81, 0x54, 0xbd, 0x27, 0xf8}}
145 gEfiIsaAcpiProtocolGuid = {0x64a892dc, 0x5561, 0x4536, {0x92, 0xc7, 0x79, 0x9b, 0xfc, 0x18, 0x33, 0x55}}
146 gEfiIsaIoProtocolGuid = {0x7ee2bd44, 0x3da0, 0x11d4, {0x9a, 0x38, 0x0, 0x90, 0x27, 0x3f, 0xc1, 0x4d}}
147 gEfiLegacyBiosProtocolGuid = {0xdb9a1e3d, 0x45cb, 0x4abb, {0x85, 0x3b, 0xe5, 0x38, 0x7f, 0xdb, 0x2e, 0x2d}}
148 gEfiLegacyBiosPlatformProtocolGuid = {0x783658a3, 0x4172, 0x4421, {0xa2, 0x99, 0xe0, 0x09, 0x07, 0x9c, 0x0c, 0xb4}}
149 gEfiLegacyInterruptProtocolGuid = {0x31ce593d, 0x108a, 0x485d, {0xad, 0xb2, 0x78, 0xf2, 0x1f, 0x29, 0x66, 0xbe}}
150 gEfiVgaMiniPortProtocolGuid = {0xc7735a2f, 0x88f5, 0x4882, {0xae, 0x63, 0xfa, 0xac, 0x8c, 0x8b, 0x86, 0xb3}}
151 gOvmfLoadedX86LinuxKernelProtocolGuid = {0xa3edc05d, 0xb618, 0x4ff6, {0x95, 0x52, 0x76, 0xd7, 0x88, 0x63, 0x43, 0xc8}}
152
153 [PcdsFixedAtBuild]
154 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfPeiMemFvBase|0x0|UINT32|0
155 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfPeiMemFvSize|0x0|UINT32|1
156 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfDxeMemFvBase|0x0|UINT32|0x15
157 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfDxeMemFvSize|0x0|UINT32|0x16
158
159 ## This flag is used to control the destination port for PlatformDebugLibIoPort
160 gUefiOvmfPkgTokenSpaceGuid.PcdDebugIoPort|0x402|UINT16|4
161
162 ## When VirtioScsiDxe is instantiated for a HBA, the numbers of targets and
163 # LUNs are retrieved from the host during virtio-scsi setup.
164 # MdeModulePkg/Bus/Scsi/ScsiBusDxe then scans all MaxTarget * MaxLun
165 # possible devices. This can take extremely long, for example with
166 # MaxTarget=255 and MaxLun=16383. The *inclusive* constants below limit
167 # MaxTarget and MaxLun, independently, should the host report higher values,
168 # so that scanning the number of devices given by their product is still
169 # acceptably fast.
170 gUefiOvmfPkgTokenSpaceGuid.PcdVirtioScsiMaxTargetLimit|31|UINT16|6
171 gUefiOvmfPkgTokenSpaceGuid.PcdVirtioScsiMaxLunLimit|7|UINT32|7
172
173 ## Sets the *inclusive* number of targets and LUNs that PvScsi exposes for
174 # scan by ScsiBusDxe.
175 # As specified above for VirtioScsi, ScsiBusDxe scans all MaxTarget * MaxLun
176 # possible devices, which can take extremely long. Thus, the below constants
177 # are used so that scanning the number of devices given by their product
178 # is still acceptably fast.
179 gUefiOvmfPkgTokenSpaceGuid.PcdPvScsiMaxTargetLimit|64|UINT8|0x36
180 gUefiOvmfPkgTokenSpaceGuid.PcdPvScsiMaxLunLimit|0|UINT8|0x37
181
182 ## After PvScsiDxe sends a SCSI request to the device, it waits for
183 # the request completion in a polling loop.
184 # This constant defines how many micro-seconds to wait between each
185 # polling loop iteration.
186 gUefiOvmfPkgTokenSpaceGuid.PcdPvScsiWaitForCmpStallInUsecs|5|UINT32|0x38
187
188 ## Set the *inclusive* number of targets that MptScsi exposes for scan
189 # by ScsiBusDxe.
190 gUefiOvmfPkgTokenSpaceGuid.PcdMptScsiMaxTargetLimit|7|UINT8|0x39
191
192 ## Microseconds to stall between polling for MptScsi request result
193 gUefiOvmfPkgTokenSpaceGuid.PcdMptScsiStallPerPollUsec|5|UINT32|0x3a
194
195 ## Set the *inclusive* number of targets and LUNs that LsiScsi exposes for
196 # scan by ScsiBusDxe.
197 gUefiOvmfPkgTokenSpaceGuid.PcdLsiScsiMaxTargetLimit|7|UINT8|0x3b
198 gUefiOvmfPkgTokenSpaceGuid.PcdLsiScsiMaxLunLimit|0|UINT8|0x3c
199
200 ## Microseconds to stall between polling for LsiScsi request result
201 gUefiOvmfPkgTokenSpaceGuid.PcdLsiScsiStallPerPollUsec|5|UINT32|0x3d
202
203 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFlashNvStorageEventLogBase|0x0|UINT32|0x8
204 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFlashNvStorageEventLogSize|0x0|UINT32|0x9
205 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFirmwareFdSize|0x0|UINT32|0xa
206 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFirmwareBlockSize|0|UINT32|0xb
207 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFlashNvStorageVariableBase|0x0|UINT32|0xc
208 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFlashNvStorageFtwSpareBase|0x0|UINT32|0xd
209 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFlashNvStorageFtwWorkingBase|0x0|UINT32|0xe
210 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFdBaseAddress|0x0|UINT32|0xf
211 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecPageTablesBase|0x0|UINT32|0x11
212 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecPageTablesSize|0x0|UINT32|0x12
213 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecPeiTempRamBase|0x0|UINT32|0x13
214 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecPeiTempRamSize|0x0|UINT32|0x14
215 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfLockBoxStorageBase|0x0|UINT32|0x18
216 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfLockBoxStorageSize|0x0|UINT32|0x19
217 gUefiOvmfPkgTokenSpaceGuid.PcdGuidedExtractHandlerTableSize|0x0|UINT32|0x1a
218 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfDecompressionScratchEnd|0x0|UINT32|0x1f
219
220 ## Pcd8259LegacyModeMask defines the default mask value for platform. This
221 # value is determined.
222 # 1) If platform only support pure UEFI, value should be set to 0xFFFF or
223 # 0xFFFE; Because only clock interrupt is allowed in legacy mode in pure
224 # UEFI platform.
225 # 2) If platform install CSM and use thunk module:
226 # a) If thunk call provided by CSM binary requires some legacy interrupt
227 # support, the corresponding bit should be opened as 0.
228 # For example, if keyboard interfaces provided CSM binary use legacy
229 # keyboard interrupt in 8259 bit 1, then the value should be set to
230 # 0xFFFC.
231 # b) If all thunk call provied by CSM binary do not require legacy
232 # interrupt support, value should be set to 0xFFFF or 0xFFFE.
233 #
234 # The default value of legacy mode mask could be changed by
235 # EFI_LEGACY_8259_PROTOCOL->SetMask(). But it is rarely need change it
236 # except some special cases such as when initializing the CSM binary, it
237 # should be set to 0xFFFF to mask all legacy interrupt. Please restore the
238 # original legacy mask value if changing is made for these special case.
239 gUefiOvmfPkgTokenSpaceGuid.Pcd8259LegacyModeMask|0xFFFF|UINT16|0x3
240
241 ## Pcd8259LegacyModeEdgeLevel defines the default edge level for legacy
242 # mode's interrrupt controller.
243 # For the corresponding bits, 0 = Edge triggered and 1 = Level triggered.
244 gUefiOvmfPkgTokenSpaceGuid.Pcd8259LegacyModeEdgeLevel|0x0000|UINT16|0x5
245
246 ## Indicates if BiosVideo driver will switch to 80x25 Text VGA Mode when
247 # exiting boot service.
248 # TRUE - Switch to Text VGA Mode.
249 # FALSE - Does not switch to Text VGA Mode.
250 gUefiOvmfPkgTokenSpaceGuid.PcdBiosVideoSetTextVgaModeEnable|FALSE|BOOLEAN|0x28
251
252 ## Indicates if BiosVideo driver will check for VESA BIOS Extension service
253 # support.
254 # TRUE - Check for VESA BIOS Extension service.
255 # FALSE - Does not check for VESA BIOS Extension service.
256 gUefiOvmfPkgTokenSpaceGuid.PcdBiosVideoCheckVbeEnable|TRUE|BOOLEAN|0x29
257
258 ## Indicates if BiosVideo driver will check for VGA service support.
259 # NOTE: If both PcdBiosVideoCheckVbeEnable and PcdBiosVideoCheckVgaEnable
260 # are set to FALSE, that means Graphics Output protocol will not be
261 # installed, the VGA miniport protocol will be installed instead.
262 # TRUE - Check for VGA service.<BR>
263 # FALSE - Does not check for VGA service.<BR>
264 gUefiOvmfPkgTokenSpaceGuid.PcdBiosVideoCheckVgaEnable|TRUE|BOOLEAN|0x2a
265
266 ## Indicates if memory space for legacy region will be set as cacheable.
267 # TRUE - Set cachebility for legacy region.
268 # FALSE - Does not set cachebility for legacy region.
269 gUefiOvmfPkgTokenSpaceGuid.PcdLegacyBiosCacheLegacyRegion|TRUE|BOOLEAN|0x2b
270
271 ## Specify memory size with bytes to reserve EBDA below 640K for OPROM.
272 # The value should be a multiple of 4KB.
273 gUefiOvmfPkgTokenSpaceGuid.PcdEbdaReservedMemorySize|0x8000|UINT32|0x2c
274
275 ## Specify memory base address for OPROM to find free memory.
276 # Some OPROMs do not use EBDA or PMM to allocate memory for its usage,
277 # instead they find the memory filled with zero from 0x20000.
278 # The value should be a multiple of 4KB.
279 # The range should be below the EBDA reserved range from
280 # (CONVENTIONAL_MEMORY_TOP - Reserved EBDA Memory Size) to
281 # CONVENTIONAL_MEMORY_TOP.
282 gUefiOvmfPkgTokenSpaceGuid.PcdOpromReservedMemoryBase|0x60000|UINT32|0x2d
283
284 ## Specify memory size with bytes for OPROM to find free memory.
285 # The value should be a multiple of 4KB. And the range should be below the
286 # EBDA reserved range from
287 # (CONVENTIONAL_MEMORY_TOP - Reserved EBDA Memory Size) to
288 # CONVENTIONAL_MEMORY_TOP.
289 gUefiOvmfPkgTokenSpaceGuid.PcdOpromReservedMemorySize|0x28000|UINT32|0x2e
290
291 ## Specify the end of address below 1MB for the OPROM.
292 # The last shadowed OpROM should not exceed this address.
293 gUefiOvmfPkgTokenSpaceGuid.PcdEndOpromShadowAddress|0xdffff|UINT32|0x2f
294
295 ## Specify the low PMM (Post Memory Manager) size with bytes below 1MB.
296 # The value should be a multiple of 4KB.
297 # @Prompt Low PMM (Post Memory Manager) Size
298 gUefiOvmfPkgTokenSpaceGuid.PcdLowPmmMemorySize|0x10000|UINT32|0x30
299
300 ## Specify the high PMM (Post Memory Manager) size with bytes above 1MB.
301 # The value should be a multiple of 4KB.
302 gUefiOvmfPkgTokenSpaceGuid.PcdHighPmmMemorySize|0x400000|UINT32|0x31
303
304 gUefiOvmfPkgTokenSpaceGuid.PcdXenPvhStartOfDayStructPtr|0x0|UINT32|0x17
305 gUefiOvmfPkgTokenSpaceGuid.PcdXenPvhStartOfDayStructPtrSize|0x0|UINT32|0x32
306
307 ## Number of page frames to use for storing grant table entries.
308 gUefiOvmfPkgTokenSpaceGuid.PcdXenGrantFrames|4|UINT32|0x33
309
310 ## Specify the extra page table needed to mark the GHCB as unencrypted.
311 # The value should be a multiple of 4KB for each.
312 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecGhcbPageTableBase|0x0|UINT32|0x3e
313 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecGhcbPageTableSize|0x0|UINT32|0x3f
314
315 ## The base address of the SEC GHCB page used by SEV-ES.
316 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecGhcbBase|0|UINT32|0x40
317 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecGhcbSize|0|UINT32|0x41
318 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecGhcbBackupBase|0|UINT32|0x44
319 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecGhcbBackupSize|0|UINT32|0x45
320
321 ## The base address and size of the SEV Launch Secret Area provisioned
322 # after remote attestation. If this is set in the .fdf, the platform
323 # is responsible for protecting the area from DXE phase overwrites.
324 gUefiOvmfPkgTokenSpaceGuid.PcdSevLaunchSecretBase|0x0|UINT32|0x42
325 gUefiOvmfPkgTokenSpaceGuid.PcdSevLaunchSecretSize|0x0|UINT32|0x43
326
327 ## The base address and size of a hash table confirming allowed
328 # parameters to be passed in via the Qemu firmware configuration
329 # device
330 gUefiOvmfPkgTokenSpaceGuid.PcdQemuHashTableBase|0x0|UINT32|0x47
331 gUefiOvmfPkgTokenSpaceGuid.PcdQemuHashTableSize|0x0|UINT32|0x48
332
333 ## The base address and size of the work area used during the SEC
334 # phase by the SEV and TDX supports.
335 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfWorkAreaBase|0|UINT32|0x49
336 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfWorkAreaSize|0|UINT32|0x50
337
338 ## The work area contains a fixed size header in the Include/WorkArea.h.
339 # The size of this header is used early boot, and is provided through
340 # a fixed PCD. It need to be kept in sync with any changes to the
341 # header definition.
342 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfConfidentialComputingWorkAreaHeader|4|UINT32|0x51
343
344 ## The base address and size of the TDX Cfv base and size.
345 gUefiOvmfPkgTokenSpaceGuid.PcdCfvBase|0|UINT32|0x52
346 gUefiOvmfPkgTokenSpaceGuid.PcdCfvRawDataOffset|0|UINT32|0x53
347 gUefiOvmfPkgTokenSpaceGuid.PcdCfvRawDataSize|0|UINT32|0x54
348
349 ## The base address and size of the TDX Bfv base and size.
350 gUefiOvmfPkgTokenSpaceGuid.PcdBfvBase|0|UINT32|0x55
351 gUefiOvmfPkgTokenSpaceGuid.PcdBfvRawDataOffset|0|UINT32|0x56
352 gUefiOvmfPkgTokenSpaceGuid.PcdBfvRawDataSize|0|UINT32|0x57
353
354 ## The base address and size of the SEV-SNP Secrets Area that contains
355 # the VM platform communication key used to send and recieve the
356 # messages to the PSP. If this is set in the .fdf, the platform
357 # is responsible to reserve this area from DXE phase overwrites.
358 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSnpSecretsBase|0|UINT32|0x58
359 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSnpSecretsSize|0|UINT32|0x59
360
361 ## The base address and size of a CPUID Area that contains the hypervisor
362 # provided CPUID results. In the case of SEV-SNP, the CPUID results are
363 # filtered by the SEV-SNP firmware. If this is set in the .fdf, the
364 # platform is responsible to reserve this area from DXE phase overwrites.
365 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfCpuidBase|0|UINT32|0x60
366 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfCpuidSize|0|UINT32|0x61
367
368 ## The range of memory that is validated by the SEC phase.
369 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecValidatedStart|0|UINT32|0x62
370 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfSecValidatedEnd|0|UINT32|0x63
371
372 [PcdsDynamic, PcdsDynamicEx]
373 gUefiOvmfPkgTokenSpaceGuid.PcdEmuVariableEvent|0|UINT64|2
374 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfFlashVariablesEnable|FALSE|BOOLEAN|0x10
375 gUefiOvmfPkgTokenSpaceGuid.PcdOvmfHostBridgePciDevId|0|UINT16|0x1b
376 gUefiOvmfPkgTokenSpaceGuid.PcdQemuSmbiosValidated|FALSE|BOOLEAN|0x21
377
378 ## The IO port aperture shared by all PCI root bridges.
379 #
380 gUefiOvmfPkgTokenSpaceGuid.PcdPciIoBase|0x0|UINT64|0x22
381 gUefiOvmfPkgTokenSpaceGuid.PcdPciIoSize|0x0|UINT64|0x23
382
383 ## The 32-bit MMIO aperture shared by all PCI root bridges.
384 #
385 gUefiOvmfPkgTokenSpaceGuid.PcdPciMmio32Base|0x0|UINT64|0x24
386 gUefiOvmfPkgTokenSpaceGuid.PcdPciMmio32Size|0x0|UINT64|0x25
387
388 ## The 64-bit MMIO aperture shared by all PCI root bridges.
389 #
390 gUefiOvmfPkgTokenSpaceGuid.PcdPciMmio64Base|0x0|UINT64|0x26
391 gUefiOvmfPkgTokenSpaceGuid.PcdPciMmio64Size|0x0|UINT64|0x27
392
393 ## The following setting controls how many megabytes we configure as TSEG on
394 # Q35, for SMRAM purposes. Permitted defaults are: 1, 2, 8. Other defaults
395 # cause undefined behavior. During boot, the PCD is updated by PlatformPei
396 # to reflect the extended TSEG size, if one is advertized by QEMU.
397 #
398 # This PCD is only accessed if PcdSmmSmramRequire is TRUE (see below).
399 gUefiOvmfPkgTokenSpaceGuid.PcdQ35TsegMbytes|8|UINT16|0x20
400
401 ## Set to TRUE by PlatformPei if the Q35 board supports the "SMRAM at default
402 # SMBASE" feature.
403 #
404 # This PCD is only accessed if PcdSmmSmramRequire is TRUE (see below).
405 gUefiOvmfPkgTokenSpaceGuid.PcdQ35SmramAtDefaultSmbase|FALSE|BOOLEAN|0x34
406
407 ## This PCD adds a communication channel between OVMF's SmmCpuFeaturesLib
408 # instance in PiSmmCpuDxeSmm, and CpuHotplugSmm.
409 gUefiOvmfPkgTokenSpaceGuid.PcdCpuHotEjectDataAddress|0|UINT64|0x46
410
411 ## This PCD tracks where PcdVideo{Horizontal,Vertical}Resolution
412 # values are coming from.
413 # 0 - unset (defaults from platform dsc)
414 # 1 - set from PlatformConfig
415 # 2 - set by GOP Driver.
416 gUefiOvmfPkgTokenSpaceGuid.PcdVideoResolutionSource|0|UINT8|0x64
417
418 [PcdsFeatureFlag]
419 gUefiOvmfPkgTokenSpaceGuid.PcdQemuBootOrderPciTranslation|TRUE|BOOLEAN|0x1c
420 gUefiOvmfPkgTokenSpaceGuid.PcdQemuBootOrderMmioTranslation|FALSE|BOOLEAN|0x1d
421
422 ## This feature flag enables SMM/SMRAM support. Note that it also requires
423 # such support from the underlying QEMU instance; if that support is not
424 # present, the firmware will reject continuing after a certain point.
425 #
426 # The flag also acts as a general "security switch"; when TRUE, many
427 # components will change behavior, with the goal of preventing a malicious
428 # runtime OS from tampering with firmware structures (special memory ranges
429 # used by OVMF, the varstore pflash chip, LockBox etc).
430 gUefiOvmfPkgTokenSpaceGuid.PcdSmmSmramRequire|FALSE|BOOLEAN|0x1e
431
432 ## Informs modules (including pre-DXE-phase modules) whether the platform
433 # firmware contains a CSM (Compatibility Support Module).
434 #
435 gUefiOvmfPkgTokenSpaceGuid.PcdCsmEnable|FALSE|BOOLEAN|0x35