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1 #
2 # Copyright (c) 2011 - 2015, ARM Limited. All rights reserved.
3 #
4 # This program and the accompanying materials
5 # are licensed and made available under the terms and conditions of the BSD License
6 # which accompanies this distribution. The full text of the license may be found at
7 # http://opensource.org/licenses/bsd-license.php
8 #
9 # THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
10 # WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
11 #
12
13 ################################################################################
14 #
15 # FD Section
16 # The [FD] Section is made up of the definition statements and a
17 # description of what goes into the Flash Device Image. Each FD section
18 # defines one flash "device" image. A flash device image may be one of
19 # the following: Removable media bootable image (like a boot floppy
20 # image,) an Option ROM image (that would be "flashed" into an add-in
21 # card,) a System "Flash" image (that would be burned into a system's
22 # flash) or an Update ("Capsule") image that will be used to update and
23 # existing system flash.
24 #
25 ################################################################################
26
27 [FD.FVP_AARCH64_EFI_SEC]
28 BaseAddress = 0x00000000|gArmTokenSpaceGuid.PcdFdBaseAddress # The base address of the Firmware in SecureROM.
29 Size = 0x04000000|gArmTokenSpaceGuid.PcdFdSize # The size in bytes of the device (64MiB).
30 ErasePolarity = 1
31
32 # This one is tricky, it must be: BlockSize * NumBlocks = Size
33 BlockSize = 0x00001000
34 NumBlocks = 0x4000
35
36 ################################################################################
37 #
38 # Following are lists of FD Region layout which correspond to the locations of different
39 # images within the flash device.
40 #
41 # Regions must be defined in ascending order and may not overlap.
42 #
43 # A Layout Region start with a eight digit hex offset (leading "0x" required) followed by
44 # the pipe "|" character, followed by the size of the region, also in hex with the leading
45 # "0x" characters. Like:
46 # Offset|Size
47 # PcdOffsetCName|PcdSizeCName
48 # RegionType <FV, DATA, or FILE>
49 #
50 ################################################################################
51
52 0x00000000|0x00080000
53 gArmTokenSpaceGuid.PcdSecureFvBaseAddress|gArmTokenSpaceGuid.PcdSecureFvSize
54 FV = FVMAIN_SEC
55
56 [FD.FVP_AARCH64_EFI]
57 !ifdef ARM_FVP_RUN_NORFLASH
58 BaseAddress = 0x08000000|gArmTokenSpaceGuid.PcdFdBaseAddress # The base address of the Firmware in Flash0.
59 !else
60 BaseAddress = 0x88000000|gArmTokenSpaceGuid.PcdFdBaseAddress # UEFI in DRAM + 128MB.
61 !endif
62 Size = 0x04000000|gArmTokenSpaceGuid.PcdFdSize # The size in bytes of the device (64MiB).
63 ErasePolarity = 1
64
65 # This one is tricky, it must be: BlockSize * NumBlocks = Size
66 BlockSize = 0x00001000
67 NumBlocks = 0x4000
68
69 0x00000000|0x00280000
70 gArmTokenSpaceGuid.PcdFvBaseAddress|gArmTokenSpaceGuid.PcdFvSize
71 FV = FVMAIN_COMPACT
72
73 ################################################################################
74 #
75 # FV Section
76 #
77 # [FV] section is used to define what components or modules are placed within a flash
78 # device file. This section also defines order the components and modules are positioned
79 # within the image. The [FV] section consists of define statements, set statements and
80 # module statements.
81 #
82 ################################################################################
83
84 [FV.FVMAIN_SEC]
85 FvBaseAddress = 0x0 # Secure ROM
86 FvForceRebase = TRUE
87 FvAlignment = 16
88 ERASE_POLARITY = 1
89 MEMORY_MAPPED = TRUE
90 STICKY_WRITE = TRUE
91 LOCK_CAP = TRUE
92 LOCK_STATUS = TRUE
93 WRITE_DISABLED_CAP = TRUE
94 WRITE_ENABLED_CAP = TRUE
95 WRITE_STATUS = TRUE
96 WRITE_LOCK_CAP = TRUE
97 WRITE_LOCK_STATUS = TRUE
98 READ_DISABLED_CAP = TRUE
99 READ_ENABLED_CAP = TRUE
100 READ_STATUS = TRUE
101 READ_LOCK_CAP = TRUE
102 READ_LOCK_STATUS = TRUE
103
104 INF ArmPlatformPkg/Sec/Sec.inf
105
106
107 [FV.FvMain]
108 BlockSize = 0x40
109 NumBlocks = 0 # This FV gets compressed so make it just big enough
110 FvAlignment = 16 # FV alignment and FV attributes setting.
111 ERASE_POLARITY = 1
112 MEMORY_MAPPED = TRUE
113 STICKY_WRITE = TRUE
114 LOCK_CAP = TRUE
115 LOCK_STATUS = TRUE
116 WRITE_DISABLED_CAP = TRUE
117 WRITE_ENABLED_CAP = TRUE
118 WRITE_STATUS = TRUE
119 WRITE_LOCK_CAP = TRUE
120 WRITE_LOCK_STATUS = TRUE
121 READ_DISABLED_CAP = TRUE
122 READ_ENABLED_CAP = TRUE
123 READ_STATUS = TRUE
124 READ_LOCK_CAP = TRUE
125 READ_LOCK_STATUS = TRUE
126 FvNameGuid = 87940482-fc81-41c3-87e6-399cf85ac8a0
127
128 APRIORI DXE {
129 INF MdeModulePkg/Universal/PCD/Dxe/Pcd.inf
130 }
131
132 INF MdeModulePkg/Core/Dxe/DxeMain.inf
133 INF MdeModulePkg/Universal/PCD/Dxe/Pcd.inf
134
135 #
136 # PI DXE Drivers producing Architectural Protocols (EFI Services)
137 #
138 INF ArmPkg/Drivers/CpuDxe/CpuDxe.inf
139 INF MdeModulePkg/Core/RuntimeDxe/RuntimeDxe.inf
140 INF MdeModulePkg/Universal/SecurityStubDxe/SecurityStubDxe.inf
141 INF MdeModulePkg/Universal/CapsuleRuntimeDxe/CapsuleRuntimeDxe.inf
142 INF MdeModulePkg/Universal/Variable/RuntimeDxe/VariableRuntimeDxe.inf
143 INF MdeModulePkg/Universal/FaultTolerantWriteDxe/FaultTolerantWriteDxe.inf
144 INF MdeModulePkg/Universal/MonotonicCounterRuntimeDxe/MonotonicCounterRuntimeDxe.inf
145 INF EmbeddedPkg/ResetRuntimeDxe/ResetRuntimeDxe.inf
146 INF EmbeddedPkg/RealTimeClockRuntimeDxe/RealTimeClockRuntimeDxe.inf
147 INF EmbeddedPkg/MetronomeDxe/MetronomeDxe.inf
148
149 INF MdeModulePkg/Universal/HiiDatabaseDxe/HiiDatabaseDxe.inf
150
151 #
152 # Multiple Console IO support
153 #
154 INF MdeModulePkg/Universal/Console/ConPlatformDxe/ConPlatformDxe.inf
155 INF MdeModulePkg/Universal/Console/ConSplitterDxe/ConSplitterDxe.inf
156 INF MdeModulePkg/Universal/Console/GraphicsConsoleDxe/GraphicsConsoleDxe.inf
157 INF MdeModulePkg/Universal/Console/TerminalDxe/TerminalDxe.inf
158 INF EmbeddedPkg/SerialDxe/SerialDxe.inf
159
160 INF ArmPkg/Drivers/ArmGic/ArmGicDxe.inf
161 INF ArmPkg/Drivers/TimerDxe/TimerDxe.inf
162 INF ArmPlatformPkg/Drivers/NorFlashDxe/NorFlashDxe.inf
163 !ifndef ARM_FOUNDATION_FVP
164 INF ArmPlatformPkg/Drivers/LcdGraphicsOutputDxe/PL111LcdGraphicsOutputDxe.inf
165 !endif
166 INF ArmPlatformPkg/Drivers/SP805WatchdogDxe/SP805WatchdogDxe.inf
167
168 #
169 # Semi-hosting filesystem
170 #
171 INF ArmPkg/Filesystem/SemihostFs/SemihostFs.inf
172
173 #
174 # FAT filesystem + GPT/MBR partitioning
175 #
176 INF MdeModulePkg/Universal/Disk/DiskIoDxe/DiskIoDxe.inf
177 INF MdeModulePkg/Universal/Disk/PartitionDxe/PartitionDxe.inf
178 INF FatBinPkg/EnhancedFatDxe/Fat.inf
179 INF MdeModulePkg/Universal/Disk/UnicodeCollation/EnglishDxe/EnglishDxe.inf
180
181 !ifndef ARM_FOUNDATION_FVP
182 #
183 # Multimedia Card Interface
184 #
185 INF EmbeddedPkg/Universal/MmcDxe/MmcDxe.inf
186 INF ArmPlatformPkg/Drivers/PL180MciDxe/PL180MciDxe.inf
187 !endif
188
189 #
190 # Platform Driver
191 #
192 INF ArmPlatformPkg/ArmVExpressPkg/ArmVExpressDxe/ArmFvpDxe.inf
193 INF OvmfPkg/VirtioBlkDxe/VirtioBlk.inf
194
195 #
196 # UEFI application (Shell Embedded Boot Loader)
197 #
198 INF ShellBinPkg/UefiShell/UefiShell.inf
199
200 #
201 # Bds
202 #
203 INF MdeModulePkg/Universal/DevicePathDxe/DevicePathDxe.inf
204 INF ArmPlatformPkg/Bds/Bds.inf
205
206 # Legacy Linux Loader
207 INF ArmPkg/Application/LinuxLoader/LinuxLoader.inf
208
209 # FV Filesystem
210 INF MdeModulePkg/Universal/FvSimpleFileSystemDxe/FvSimpleFileSystemDxe.inf
211
212 #
213 # FDT installation
214 #
215 # The UEFI driver is at the end of the list of the driver to be dispatched
216 # after the device drivers (eg: Ethernet) to ensure we have support for them.
217 INF EmbeddedPkg/Drivers/FdtPlatformDxe/FdtPlatformDxe.inf
218
219 !ifdef $(DTB_DIR)
220 #
221 # Embed flattened device tree (FDT) images for all known
222 # variants of this platform
223 #
224 FILE RAW = PCD (gArmVExpressTokenSpaceGuid.PcdFdtFvpBaseAEMv8x4GicV2) {
225 $(DTB_DIR)/fvp-base-gicv2-psci.dtb
226 }
227 FILE RAW = PCD (gArmVExpressTokenSpaceGuid.PcdFdtFvpBaseAEMv8x4GicV2Legacy) {
228 $(DTB_DIR)/fvp-base-gicv2legacy-psci.dtb
229 }
230 FILE RAW = PCD (gArmVExpressTokenSpaceGuid.PcdFdtFvpBaseAEMv8x4GicV3) {
231 $(DTB_DIR)/fvp-base-gicv3-psci.dtb
232 }
233 FILE RAW = PCD (gArmVExpressTokenSpaceGuid.PcdFdtFvpFoundationGicV2) {
234 $(DTB_DIR)/fvp-foundation-gicv2-psci.dtb
235 }
236 FILE RAW = PCD (gArmVExpressTokenSpaceGuid.PcdFdtFvpFoundationGicV2Legacy) {
237 $(DTB_DIR)/fvp-foundation-gicv2legacy-psci.dtb
238 }
239 FILE RAW = PCD (gArmVExpressTokenSpaceGuid.PcdFdtFvpFoundationGicV3) {
240 $(DTB_DIR)/fvp-foundation-gicv3-psci.dtb
241 }
242 !endif
243
244 [FV.FVMAIN_COMPACT]
245 FvAlignment = 16
246 ERASE_POLARITY = 1
247 MEMORY_MAPPED = TRUE
248 STICKY_WRITE = TRUE
249 LOCK_CAP = TRUE
250 LOCK_STATUS = TRUE
251 WRITE_DISABLED_CAP = TRUE
252 WRITE_ENABLED_CAP = TRUE
253 WRITE_STATUS = TRUE
254 WRITE_LOCK_CAP = TRUE
255 WRITE_LOCK_STATUS = TRUE
256 READ_DISABLED_CAP = TRUE
257 READ_ENABLED_CAP = TRUE
258 READ_STATUS = TRUE
259 READ_LOCK_CAP = TRUE
260 READ_LOCK_STATUS = TRUE
261
262 !if $(EDK2_SKIP_PEICORE) == 1
263 INF ArmPlatformPkg/PrePi/PeiMPCore.inf
264 !else
265 INF ArmPlatformPkg/PrePeiCore/PrePeiCoreMPCore.inf
266 INF MdeModulePkg/Core/Pei/PeiMain.inf
267 INF ArmPlatformPkg/PlatformPei/PlatformPeim.inf
268 INF ArmPlatformPkg/MemoryInitPei/MemoryInitPeim.inf
269 INF ArmPkg/Drivers/CpuPei/CpuPei.inf
270 INF MdeModulePkg/Universal/PCD/Pei/Pcd.inf
271 INF IntelFrameworkModulePkg/Universal/StatusCode/Pei/StatusCodePei.inf
272 INF MdeModulePkg/Universal/Variable/Pei/VariablePei.inf
273 INF MdeModulePkg/Core/DxeIplPeim/DxeIpl.inf
274 !endif
275
276 FILE FV_IMAGE = 9E21FD93-9C72-4c15-8C4B-E77F1DB2D792 {
277 SECTION GUIDED EE4E5898-3914-4259-9D6E-DC7BD79403CF PROCESSING_REQUIRED = TRUE {
278 SECTION FV_IMAGE = FVMAIN
279 }
280 }
281
282
283 ################################################################################
284 #
285 # Rules are use with the [FV] section's module INF type to define
286 # how an FFS file is created for a given INF file. The following Rule are the default
287 # rules for the different module type. User can add the customized rules to define the
288 # content of the FFS file.
289 #
290 ################################################################################
291
292
293 ############################################################################
294 # Example of a DXE_DRIVER FFS file with a Checksum encapsulation section #
295 ############################################################################
296 #
297 #[Rule.Common.DXE_DRIVER]
298 # FILE DRIVER = $(NAMED_GUID) {
299 # DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
300 # COMPRESS PI_STD {
301 # GUIDED {
302 # PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
303 # UI STRING="$(MODULE_NAME)" Optional
304 # VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
305 # }
306 # }
307 # }
308 #
309 ############################################################################
310
311 [Rule.Common.SEC]
312 FILE SEC = $(NAMED_GUID) RELOCS_STRIPPED FIXED {
313 TE TE Align = Auto $(INF_OUTPUT)/$(MODULE_NAME).efi
314 }
315
316 [Rule.Common.PEI_CORE]
317 FILE PEI_CORE = $(NAMED_GUID) FIXED {
318 TE TE Align = Auto $(INF_OUTPUT)/$(MODULE_NAME).efi
319 UI STRING ="$(MODULE_NAME)" Optional
320 }
321
322 [Rule.Common.PEIM]
323 FILE PEIM = $(NAMED_GUID) FIXED {
324 PEI_DEPEX PEI_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
325 TE TE Align = Auto $(INF_OUTPUT)/$(MODULE_NAME).efi
326 UI STRING="$(MODULE_NAME)" Optional
327 }
328
329 [Rule.Common.PEIM.TIANOCOMPRESSED]
330 FILE PEIM = $(NAMED_GUID) DEBUG_MYTOOLS_IA32 {
331 PEI_DEPEX PEI_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
332 GUIDED A31280AD-481E-41B6-95E8-127F4C984779 PROCESSING_REQUIRED = TRUE {
333 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
334 UI STRING="$(MODULE_NAME)" Optional
335 }
336 }
337
338 [Rule.Common.DXE_CORE]
339 FILE DXE_CORE = $(NAMED_GUID) {
340 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
341 UI STRING="$(MODULE_NAME)" Optional
342 }
343
344 [Rule.Common.UEFI_DRIVER]
345 FILE DRIVER = $(NAMED_GUID) {
346 DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
347 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
348 UI STRING="$(MODULE_NAME)" Optional
349 }
350
351 [Rule.Common.DXE_DRIVER]
352 FILE DRIVER = $(NAMED_GUID) {
353 DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
354 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
355 UI STRING="$(MODULE_NAME)" Optional
356 }
357
358 [Rule.Common.DXE_RUNTIME_DRIVER]
359 FILE DRIVER = $(NAMED_GUID) {
360 DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
361 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
362 UI STRING="$(MODULE_NAME)" Optional
363 }
364
365 [Rule.Common.UEFI_APPLICATION]
366 FILE APPLICATION = $(NAMED_GUID) {
367 UI STRING ="$(MODULE_NAME)" Optional
368 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
369 }
370
371 [Rule.Common.UEFI_DRIVER.BINARY]
372 FILE DRIVER = $(NAMED_GUID) {
373 DXE_DEPEX DXE_DEPEX Optional |.depex
374 PE32 PE32 |.efi
375 UI STRING="$(MODULE_NAME)" Optional
376 VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
377 }
378
379 [Rule.Common.UEFI_APPLICATION.BINARY]
380 FILE APPLICATION = $(NAMED_GUID) {
381 PE32 PE32 |.efi
382 UI STRING="$(MODULE_NAME)" Optional
383 VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
384 }