1# 2# Copyright (c) 2011-2015, ARM Limited. All rights reserved. 3# Copyright (c) 2014, Linaro Limited. All rights reserved. 4# Copyright (c) 2015, Intel Corporation. All rights reserved.<BR> 5# 6# This program and the accompanying materials 7# are licensed and made available under the terms and conditions of the BSD License 8# which accompanies this distribution. The full text of the license may be found at 9# http://opensource.org/licenses/bsd-license.php 10# 11# THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS, 12# WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED. 13# 14 15################################################################################ 16# 17# FD Section 18# The [FD] Section is made up of the definition statements and a 19# description of what goes into the Flash Device Image. Each FD section 20# defines one flash "device" image. A flash device image may be one of 21# the following: Removable media bootable image (like a boot floppy 22# image,) an Option ROM image (that would be "flashed" into an add-in 23# card,) a System "Flash" image (that would be burned into a system's 24# flash) or an Update ("Capsule") image that will be used to update and 25# existing system flash. 26# 27################################################################################ 28 29[FD.XEN_EFI] 30BaseAddress = 0x00000000|gArmTokenSpaceGuid.PcdFdBaseAddress 31Size = 0x00200000|gArmTokenSpaceGuid.PcdFdSize 32ErasePolarity = 1 33 34# This one is tricky, it must be: BlockSize * NumBlocks = Size 35BlockSize = 0x00001000 36NumBlocks = 0x200 37 38################################################################################ 39# 40# Following are lists of FD Region layout which correspond to the locations of different 41# images within the flash device. 42# 43# Regions must be defined in ascending order and may not overlap. 44# 45# A Layout Region start with a eight digit hex offset (leading "0x" required) followed by 46# the pipe "|" character, followed by the size of the region, also in hex with the leading 47# "0x" characters. Like: 48# Offset|Size 49# PcdOffsetCName|PcdSizeCName 50# RegionType <FV, DATA, or FILE> 51# 52################################################################################ 53 54# 55# Implement the Linux kernel header layout so that the Xen loader will identify 56# it as something bootable, and execute it with a FDT pointer in x0 or r2. 57# This area will be reused to store a copy of the FDT so round it up to 8 KB. 58# 590x00000000|0x00002000 60DATA = { 61!if $(ARCH) == AARCH64 62 0x01, 0x00, 0x00, 0x10, # code0: adr x1, . 63 0xff, 0x07, 0x00, 0x14, # code1: b 0x2000 64 0x00, 0x00, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, # text_offset: 512 KB 65 0x00, 0x00, 0x20, 0x00, 0x00, 0x00, 0x00, 0x00, # image_size: 2 MB 66 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, # flags 67 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, # res2 68 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, # res3 69 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, # res4 70 0x41, 0x52, 0x4d, 0x64, # magic: "ARM\x64" 71 0x00, 0x00, 0x00, 0x00 # res5 72!else 73 0x08, 0x10, 0x4f, 0xe2, # adr r1, . 74 0x02, 0x00, 0xa0, 0xe1, # mov r0, r2 (DTB) 75 0x00, 0x00, 0xa0, 0xe1, # nop 76 0x00, 0x00, 0xa0, 0xe1, # nop 77 0x00, 0x00, 0xa0, 0xe1, # nop 78 0x00, 0x00, 0xa0, 0xe1, # nop 79 0x00, 0x00, 0xa0, 0xe1, # nop 80 0x00, 0x00, 0xa0, 0xe1, # nop 81 82 0xf6, 0x07, 0x00, 0xea, # b 0x2000 83 0x18, 0x28, 0x6f, 0x01, # magic 84 0x00, 0x00, 0x00, 0x00, # start 85 0x00, 0x00, 0x20, 0x00, # image size: 2 MB 86 0x01, 0x02, 0x03, 0x04 # endiannness flag 87!endif 88} 89 900x00002000|0x001fe000 91gArmTokenSpaceGuid.PcdFvBaseAddress|gArmTokenSpaceGuid.PcdFvSize 92FV = FVMAIN_COMPACT 93 94 95################################################################################ 96# 97# FV Section 98# 99# [FV] section is used to define what components or modules are placed within a flash 100# device file. This section also defines order the components and modules are positioned 101# within the image. The [FV] section consists of define statements, set statements and 102# module statements. 103# 104################################################################################ 105 106[FV.FvMain] 107BlockSize = 0x40 108NumBlocks = 0 # This FV gets compressed so make it just big enough 109FvAlignment = 16 # FV alignment and FV attributes setting. 110ERASE_POLARITY = 1 111MEMORY_MAPPED = TRUE 112STICKY_WRITE = TRUE 113LOCK_CAP = TRUE 114LOCK_STATUS = TRUE 115WRITE_DISABLED_CAP = TRUE 116WRITE_ENABLED_CAP = TRUE 117WRITE_STATUS = TRUE 118WRITE_LOCK_CAP = TRUE 119WRITE_LOCK_STATUS = TRUE 120READ_DISABLED_CAP = TRUE 121READ_ENABLED_CAP = TRUE 122READ_STATUS = TRUE 123READ_LOCK_CAP = TRUE 124READ_LOCK_STATUS = TRUE 125 126 APRIORI DXE { 127 INF MdeModulePkg/Universal/PCD/Dxe/Pcd.inf 128 INF ArmVirtPkg/VirtFdtDxe/VirtFdtDxe.inf 129 } 130 INF MdeModulePkg/Core/Dxe/DxeMain.inf 131 INF MdeModulePkg/Universal/PCD/Dxe/Pcd.inf 132 INF ArmVirtPkg/VirtFdtDxe/VirtFdtDxe.inf 133 134 # 135 # PI DXE Drivers producing Architectural Protocols (EFI Services) 136 # 137 INF ArmPkg/Drivers/CpuDxe/CpuDxe.inf 138 INF MdeModulePkg/Core/RuntimeDxe/RuntimeDxe.inf 139 INF MdeModulePkg/Universal/SecurityStubDxe/SecurityStubDxe.inf 140 INF MdeModulePkg/Universal/CapsuleRuntimeDxe/CapsuleRuntimeDxe.inf 141 142 INF MdeModulePkg/Universal/Variable/EmuRuntimeDxe/EmuVariableRuntimeDxe.inf 143 144 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 INF MdeModulePkg/Universal/HiiDatabaseDxe/HiiDatabaseDxe.inf 149 150 # 151 # Multiple Console IO support 152 # 153 INF MdeModulePkg/Universal/Console/ConPlatformDxe/ConPlatformDxe.inf 154 INF MdeModulePkg/Universal/Console/TerminalDxe/TerminalDxe.inf 155 INF MdeModulePkg/Universal/SerialDxe/SerialDxe.inf 156 157 INF ArmPkg/Drivers/ArmGic/ArmGicDxe.inf 158 INF ArmPkg/Drivers/TimerDxe/TimerDxe.inf 159 INF MdeModulePkg/Universal/WatchdogTimerDxe/WatchdogTimer.inf 160 161 # 162 # FAT filesystem + GPT/MBR partitioning 163 # 164 INF MdeModulePkg/Universal/Disk/DiskIoDxe/DiskIoDxe.inf 165 INF MdeModulePkg/Universal/Disk/PartitionDxe/PartitionDxe.inf 166 INF FatBinPkg/EnhancedFatDxe/Fat.inf 167 INF MdeModulePkg/Universal/Disk/UnicodeCollation/EnglishDxe/EnglishDxe.inf 168 169 # 170 # UEFI application (Shell Embedded Boot Loader) 171 # 172 INF ShellPkg/Application/Shell/Shell.inf 173 174 # 175 # Bds 176 # 177 INF MdeModulePkg/Universal/DevicePathDxe/DevicePathDxe.inf 178 INF MdeModulePkg/Universal/DisplayEngineDxe/DisplayEngineDxe.inf 179 INF MdeModulePkg/Universal/SetupBrowserDxe/SetupBrowserDxe.inf 180 INF IntelFrameworkModulePkg/Universal/BdsDxe/BdsDxe.inf 181 182 INF OvmfPkg/XenBusDxe/XenBusDxe.inf 183 INF OvmfPkg/XenPvBlkDxe/XenPvBlkDxe.inf 184 185[FV.FVMAIN_COMPACT] 186FvAlignment = 16 187ERASE_POLARITY = 1 188MEMORY_MAPPED = TRUE 189STICKY_WRITE = TRUE 190LOCK_CAP = TRUE 191LOCK_STATUS = TRUE 192WRITE_DISABLED_CAP = TRUE 193WRITE_ENABLED_CAP = TRUE 194WRITE_STATUS = TRUE 195WRITE_LOCK_CAP = TRUE 196WRITE_LOCK_STATUS = TRUE 197READ_DISABLED_CAP = TRUE 198READ_ENABLED_CAP = TRUE 199READ_STATUS = TRUE 200READ_LOCK_CAP = TRUE 201READ_LOCK_STATUS = TRUE 202 203 INF ArmVirtPkg/PrePi/ArmVirtPrePiUniCoreRelocatable.inf 204 205 FILE FV_IMAGE = 9E21FD93-9C72-4c15-8C4B-E77F1DB2D792 { 206 SECTION GUIDED EE4E5898-3914-4259-9D6E-DC7BD79403CF PROCESSING_REQUIRED = TRUE { 207 SECTION FV_IMAGE = FVMAIN 208 } 209 } 210 211 212################################################################################ 213# 214# Rules are use with the [FV] section's module INF type to define 215# how an FFS file is created for a given INF file. The following Rule are the default 216# rules for the different module type. User can add the customized rules to define the 217# content of the FFS file. 218# 219################################################################################ 220 221 222############################################################################ 223# Example of a DXE_DRIVER FFS file with a Checksum encapsulation section # 224############################################################################ 225# 226#[Rule.Common.DXE_DRIVER] 227# FILE DRIVER = $(NAMED_GUID) { 228# DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex 229# COMPRESS PI_STD { 230# GUIDED { 231# PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 232# UI STRING="$(MODULE_NAME)" Optional 233# VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER) 234# } 235# } 236# } 237# 238############################################################################ 239 240[Rule.Common.SEC] 241 FILE SEC = $(NAMED_GUID) RELOCS_STRIPPED FIXED { 242 TE TE Align = Auto $(INF_OUTPUT)/$(MODULE_NAME).efi 243 } 244 245[Rule.Common.PEI_CORE] 246 FILE PEI_CORE = $(NAMED_GUID) FIXED { 247 TE TE Align = Auto $(INF_OUTPUT)/$(MODULE_NAME).efi 248 UI STRING ="$(MODULE_NAME)" Optional 249 } 250 251[Rule.Common.PEIM] 252 FILE PEIM = $(NAMED_GUID) FIXED { 253 PEI_DEPEX PEI_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex 254 TE TE Align = Auto $(INF_OUTPUT)/$(MODULE_NAME).efi 255 UI STRING="$(MODULE_NAME)" Optional 256 } 257 258[Rule.Common.PEIM.TIANOCOMPRESSED] 259 FILE PEIM = $(NAMED_GUID) DEBUG_MYTOOLS_IA32 { 260 PEI_DEPEX PEI_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex 261 GUIDED A31280AD-481E-41B6-95E8-127F4C984779 PROCESSING_REQUIRED = TRUE { 262 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 263 UI STRING="$(MODULE_NAME)" Optional 264 } 265 } 266 267[Rule.Common.DXE_CORE] 268 FILE DXE_CORE = $(NAMED_GUID) { 269 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 270 UI STRING="$(MODULE_NAME)" Optional 271 } 272 273[Rule.Common.UEFI_DRIVER] 274 FILE DRIVER = $(NAMED_GUID) { 275 DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex 276 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 277 UI STRING="$(MODULE_NAME)" Optional 278 } 279 280[Rule.Common.DXE_DRIVER] 281 FILE DRIVER = $(NAMED_GUID) { 282 DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex 283 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 284 UI STRING="$(MODULE_NAME)" Optional 285 } 286 287[Rule.Common.DXE_RUNTIME_DRIVER] 288 FILE DRIVER = $(NAMED_GUID) { 289 DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex 290 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 291 UI STRING="$(MODULE_NAME)" Optional 292 } 293 294[Rule.Common.UEFI_APPLICATION] 295 FILE APPLICATION = $(NAMED_GUID) { 296 UI STRING ="$(MODULE_NAME)" Optional 297 PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi 298 } 299 300[Rule.Common.UEFI_DRIVER.BINARY] 301 FILE DRIVER = $(NAMED_GUID) { 302 DXE_DEPEX DXE_DEPEX Optional |.depex 303 PE32 PE32 |.efi 304 UI STRING="$(MODULE_NAME)" Optional 305 VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER) 306 } 307 308[Rule.Common.UEFI_APPLICATION.BINARY] 309 FILE APPLICATION = $(NAMED_GUID) { 310 PE32 PE32 |.efi 311 UI STRING="$(MODULE_NAME)" Optional 312 VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER) 313 } 314 315[Rule.Common.USER_DEFINED.ACPITABLE] 316 FILE FREEFORM = $(NAMED_GUID) { 317 RAW ACPI |.acpi 318 RAW ASL |.aml 319 UI STRING="$(MODULE_NAME)" Optional 320 } 321