mirror of https://github.com/acidanthera/audk.git
615 lines
25 KiB
Plaintext
615 lines
25 KiB
Plaintext
## @file
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# FDF file of Clanton Peak CRB platform with 32-bit DXE
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#
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# This package provides QuarkNcSocId platform specific modules.
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# Copyright (c) 2013 - 2019 Intel Corporation.
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#
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# This program and the accompanying materials
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# are licensed and made available under the terms and conditions of the BSD License
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# which accompanies this distribution. The full text of the license may be found at
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# http://opensource.org/licenses/bsd-license.php
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#
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# THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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# WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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#
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##
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################################################################################
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#
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# Defines Section - statements that will be processed to create a Makefile.
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#
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################################################################################
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[Defines]
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# Address 0x100000000 (4 GB reset address)
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# Base Size
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# +---------------------------+
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# FLASH_BASE | FD.Quark: | 0x800000 (8 MB)
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# 0xFF800000 | BaseAddress |
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# +---------------------------+
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#
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# Flash offsets are 0 based, but are relative to FD.Quark BaseAddress, e.g. Payload Base is at 0x400000, Flash Base is at 0xFF800000 for 8 MB SPI part.
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# 0xFF800000 + 0x400000 = 0xFFC00000.
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#
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# Address 0x0 (0xFF800000 for 8 MB SPI part)
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# +---------------------------+
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# FLASH_FV_PAYLOAD_BASE | Payload Image | FLASH_FV_PAYLOAD_SIZE
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# 0x00400000 | | 0x00100000
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# +---------------------------+
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# FLASH_FV_MAIN_BASE | FvMain Image (Compressed) | FLASH_FV_MAIN_SIZE
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# 0x00500000 | | 0x001E0000
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# +---------------------------+
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# NVRAM_AREA_BASE | NVRAM Area= | NVRAM_AREA_SIZE
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# 0x006E0000 | Variable + FTW Working + |
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# | FTW Spare |
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# +---+-------------------+---+
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# NVRAM_AREA_VARIABLE_BASE | | NVRAM_AREA_VARIABLE_SIZE
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# | |
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# +-------------------+
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# FTW_WORKING_BASE | | FTW_WORKING_SIZE
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# | |
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# +-------------------+
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# FTW_SPARE_BASE | | FTW_SPARE_SIZE
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# | |
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# +---+-------------------+---+
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# RMU_BINARY_BASE | RMU Binary | RMU_BINARY_SIZE
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# 0x00700000 | | 0x00008000
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# +---------------------------+
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# PLATFORM_DATA_BASE | PlatformData Binary | PLATFORM_DATA_SIZE
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# 0x00710000 | | 0x00001000
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# +---------------------------+
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# FVRECOVERY_IMAGE_BASE | FVRECOVERY Image | FVRECOVERY_IMAGE_SIZE
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# 0x720000 | | 0x000E0000
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# +---------------------------+
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#
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# Define value used to compute FLASH regions below reset vector location just below 4GB
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#
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DEFINE RESET_ADDRESS = 0x100000000 # 4 GB
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#
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# Set size of FLASH to 8MB
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#
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DEFINE FLASH_SIZE = 0x800000
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DEFINE FLASH_BASE = $(RESET_ADDRESS) - $(FLASH_SIZE) # The base address of the Flash Device
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#
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# Set FLASH block size to 4KB
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#
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DEFINE FLASH_BLOCKSIZE = 0x1000 # 4 KB
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#
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# Misc settings
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#
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DEFINE FLASH_BLOCKSIZE_DATA = 0x00, 0x10, 0x00, 0x00 # equivalent for DATA blocks
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#
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# Start PAYLOAD at 4MB into 8MB FLASH
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#
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DEFINE FLASH_FV_PAYLOAD_BASE = 0x00400000
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DEFINE FLASH_FV_PAYLOAD_SIZE = 0x00100000
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#
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# Put FVMAIN between PAYLOAD and RMU Binary
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#
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DEFINE FLASH_FV_MAIN_BASE = 0x00500000
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DEFINE FLASH_FV_MAIN_SIZE = 0x001E0000
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#
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# Place NV Storage just above Platform Data Base
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#
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DEFINE NVRAM_AREA_VARIABLE_BASE = 0x006E0000
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DEFINE NVRAM_AREA_SIZE = 0x00020000
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DEFINE NVRAM_AREA_VARIABLE_SIZE = 0x0000E000
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DEFINE FTW_WORKING_BASE = $(NVRAM_AREA_VARIABLE_BASE) + $(NVRAM_AREA_VARIABLE_SIZE)
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DEFINE FTW_WORKING_SIZE = 0x00002000
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DEFINE FTW_SPARE_BASE = $(FTW_WORKING_BASE) + $(FTW_WORKING_SIZE)
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DEFINE FTW_SPARE_SIZE = $(NVRAM_AREA_SIZE) - $(NVRAM_AREA_VARIABLE_SIZE) - $(FTW_WORKING_SIZE)
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#
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# RMU Binary must be at fixed address 1MB below 4GB (0xFFF00000)
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#
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DEFINE RMU_BINARY_BASE = 0x00700000 # HW fixed address
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DEFINE RMU_BINARY_SIZE = 0x00008000 # HW fixed address, so fixed size
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#
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# Platform Data Base must be 64KB above RMU
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#
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DEFINE VPD_BASE = 0x00708000
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DEFINE VPD_SIZE = 0x00001000
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#
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# Place FV Recovery above NV Storage
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#
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DEFINE FVRECOVERY_IMAGE_SIZE = 0x000F0000
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DEFINE FVRECOVERY_IMAGE_BASE = $(FLASH_SIZE) - $(FVRECOVERY_IMAGE_SIZE)
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################################################################################
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#
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# FD Section
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# The [FD] Section is made up of the definition statements and a
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# description of what goes into the Flash Device Image. Each FD section
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# defines one flash "device" image. A flash device image may be one of
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# the following: Removable media bootable image (like a boot floppy
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# image,) an Option ROM image (that would be "flashed" into an add-in
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# card,) a System "Flash" image (that would be burned into a system's
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# flash) or an Update ("Capsule") image that will be used to update and
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# existing system flash.
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#
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################################################################################
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[FD.Quark]
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BaseAddress = 0xFF800000 #The base address of the Flash Device; set to same value as FLASH_BASE.
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Size = 0x800000 #The size in bytes of the Flash Device; set to same value as FLASH_SIZE.
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ErasePolarity = 1
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BlockSize = $(FLASH_BLOCKSIZE)
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NumBlocks = 0x800 #The number of blocks for the Flash Device.
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SET gQuarkPlatformTokenSpaceGuid.PcdFlashAreaBaseAddress = $(FLASH_BASE)
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SET gQuarkPlatformTokenSpaceGuid.PcdFlashAreaSize = $(FLASH_SIZE)
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################################################################################
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#
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# Following are lists of FD Region layout which correspond to the locations of different
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# images within the flash device.
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#
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# Regions must be defined in ascending order and may not overlap.
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#
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# A Layout Region start with a eight digit hex offset (leading "0x" required) followed by
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# the pipe "|" character, followed by the size of the region, also in hex with the leading
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# "0x" characters. Like:
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# Offset|Size
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# PcdOffsetCName|PcdSizeCName
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# RegionType <FV, DATA, or FILE>
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#
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################################################################################
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########################################################
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# Quark Payload Image
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########################################################
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$(FLASH_FV_PAYLOAD_BASE)|$(FLASH_FV_PAYLOAD_SIZE)
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gQuarkPlatformTokenSpaceGuid.PcdFlashFvPayloadBase|gQuarkPlatformTokenSpaceGuid.PcdFlashFvPayloadSize
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FV = PAYLOAD
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########################################################
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# Quark FVMAIN Image (Compressed)
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########################################################
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$(FLASH_FV_MAIN_BASE)|$(FLASH_FV_MAIN_SIZE)
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gQuarkPlatformTokenSpaceGuid.PcdFlashFvMainBase|gQuarkPlatformTokenSpaceGuid.PcdFlashFvMainSize
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FV = FVMAIN_COMPACT
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#############################################################################
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# Quark NVRAM Area
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# Quark NVRAM Area contains: Variable + FTW Working + FTW Spare
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#############################################################################
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$(NVRAM_AREA_VARIABLE_BASE)|$(NVRAM_AREA_VARIABLE_SIZE)
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gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableBase|gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableSize
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#NV_VARIABLE_STORE
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DATA = {
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## This is the EFI_FIRMWARE_VOLUME_HEADER
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# ZeroVector []
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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# FileSystemGuid: gEfiSystemNvDataFvGuid =
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# { 0xFFF12B8D, 0x7696, 0x4C8B, { 0xA9, 0x85, 0x27, 0x47, 0x07, 0x5B, 0x4F, 0x50 }}
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0x8D, 0x2B, 0xF1, 0xFF, 0x96, 0x76, 0x8B, 0x4C,
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0xA9, 0x85, 0x27, 0x47, 0x07, 0x5B, 0x4F, 0x50,
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# FvLength: 0x20000
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0x00, 0x00, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00,
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#Signature "_FVH" #Attributes
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0x5f, 0x46, 0x56, 0x48, 0xff, 0xfe, 0x04, 0x00,
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#HeaderLength #CheckSum #ExtHeaderOffset #Reserved #Revision
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0x48, 0x00, 0x19, 0xF9, 0x00, 0x00, 0x00, 0x02,
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#Blockmap[0]: 32 Blocks * 0x1000 Bytes / Block
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0x20, 0x00, 0x00, 0x00, $(FLASH_BLOCKSIZE_DATA),
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#Blockmap[1]: End
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0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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## This is the VARIABLE_STORE_HEADER
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!if $(SECURE_BOOT_ENABLE)
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# Signature: gEfiAuthenticatedVariableGuid = { 0xaaf32c78, 0x947b, 0x439a, { 0xa1, 0x80, 0x2e, 0x14, 0x4e, 0xc3, 0x77, 0x92 } }
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0x78, 0x2c, 0xf3, 0xaa, 0x7b, 0x94, 0x9a, 0x43,
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0xa1, 0x80, 0x2e, 0x14, 0x4e, 0xc3, 0x77, 0x92,
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!else
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# Signature: gEfiVariableGuid = { 0xddcf3616, 0x3275, 0x4164, { 0x98, 0xb6, 0xfe, 0x85, 0x70, 0x7f, 0xfe, 0x7d }}
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0x16, 0x36, 0xcf, 0xdd, 0x75, 0x32, 0x64, 0x41,
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0x98, 0xb6, 0xfe, 0x85, 0x70, 0x7f, 0xfe, 0x7d,
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!endif
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#Size: 0x0E000 (gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageVariableSize) - 0x48 (size of EFI_FIRMWARE_VOLUME_HEADER) = 0x0DFB8
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# This can speed up the Variable Dispatch a bit.
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0xB8, 0xDF, 0x00, 0x00,
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#FORMATTED: 0x5A #HEALTHY: 0xFE #Reserved: UINT16 #Reserved1: UINT32
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0x5A, 0xFE, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
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}
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$(FTW_WORKING_BASE)|$(FTW_WORKING_SIZE)
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gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingBase|gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwWorkingSize
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#NV_FTW_WORKING
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DATA = {
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# EFI_FAULT_TOLERANT_WORKING_BLOCK_HEADER->Signature = gEdkiiWorkingBlockSignatureGuid =
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# { 0x9e58292b, 0x7c68, 0x497d, { 0xa0, 0xce, 0x65, 0x0, 0xfd, 0x9f, 0x1b, 0x95 }}
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0x2b, 0x29, 0x58, 0x9e, 0x68, 0x7c, 0x7d, 0x49,
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0xa0, 0xce, 0x65, 0x0, 0xfd, 0x9f, 0x1b, 0x95,
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# Crc:UINT32 #WorkingBlockValid:1, WorkingBlockInvalid:1, Reserved
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0xE2, 0x33, 0xF2, 0x03, 0xFE, 0xFF, 0xFF, 0xFF,
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# WriteQueueSize: UINT64 #Size: 0x2000 - 0x20 (FTW_WORKING_HEADER) = 0x1FE0
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0xE0, 0x1F, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00
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}
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$(FTW_SPARE_BASE)|$(FTW_SPARE_SIZE)
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gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareBase|gEfiMdeModulePkgTokenSpaceGuid.PcdFlashNvStorageFtwSpareSize
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#NV_FTW_SPARE
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#########################################################
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# Quark Remote Management Unit Binary
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#########################################################
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$(RMU_BINARY_BASE)|$(RMU_BINARY_SIZE)
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INF QuarkSocBinPkg/QuarkNorthCluster/Binary/QuarkMicrocode/QuarkMicrocode.inf
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#########################################################
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# PlatformData Binary, default for standalone is none built-in so user selects.
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#########################################################
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$(VPD_BASE)|$(VPD_SIZE)
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gEfiMdeModulePkgTokenSpaceGuid.PcdVpdBaseAddress
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FILE = $(OUTPUT_DIRECTORY)/$(TARGET)_$(TOOL_CHAIN_TAG)/FV/8C3D856A-9BE6-468E-850A-24F7A8D38E08.bin
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#######################
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# Quark FVRECOVERY Image
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#######################
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$(FVRECOVERY_IMAGE_BASE)|$(FVRECOVERY_IMAGE_SIZE)
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gQuarkPlatformTokenSpaceGuid.PcdFlashFvRecoveryBase|gQuarkPlatformTokenSpaceGuid.PcdFlashFvRecoverySize
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FV = FVRECOVERY
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################################################################################
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#
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# FV Section
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#
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# [FV] section is used to define what components or modules are placed within a flash
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# device file. This section also defines order the components and modules are positioned
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# within the image. The [FV] section consists of define statements, set statements and
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# module statements.
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#
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################################################################################
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[FV.FVRECOVERY]
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BlockSize = $(FLASH_BLOCKSIZE)
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FvAlignment = 16 #FV alignment and FV attributes setting.
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ERASE_POLARITY = 1
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MEMORY_MAPPED = TRUE
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STICKY_WRITE = TRUE
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LOCK_CAP = TRUE
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LOCK_STATUS = TRUE
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WRITE_DISABLED_CAP = TRUE
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WRITE_ENABLED_CAP = TRUE
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WRITE_STATUS = TRUE
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WRITE_LOCK_CAP = TRUE
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WRITE_LOCK_STATUS = TRUE
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READ_DISABLED_CAP = TRUE
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READ_ENABLED_CAP = TRUE
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READ_STATUS = TRUE
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READ_LOCK_CAP = TRUE
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READ_LOCK_STATUS = TRUE
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FvNameGuid = 18D6D9F4-2EEF-4913-AEE6-BE61C6DA6CC8
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################################################################################
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#
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# The INF statements point to EDK component and EDK II module INF files, which will be placed into this FV image.
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# Parsing tools will scan the INF file to determine the type of component or module.
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# The component or module type is used to reference the standard rules
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# defined elsewhere in the FDF file.
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#
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# The format for INF statements is:
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# INF $(PathAndInfFileName)
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#
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################################################################################
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##
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# PEI Apriori file example, more PEIM module added later.
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##
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APRIORI PEI {
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INF MdeModulePkg/Universal/PCD/Pei/Pcd.inf
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# PlatformConfigPei should be immediately after Pcd driver.
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INF QuarkPlatformPkg/Platform/Pei/PlatformConfig/PlatformConfigPei.inf
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INF MdeModulePkg/Universal/PcatSingleSegmentPciCfg2Pei/PcatSingleSegmentPciCfg2Pei.inf
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}
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##
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# SEC Phase modules
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##
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INF UefiCpuPkg/SecCore/SecCore.inf
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INF MdeModulePkg/Core/Pei/PeiMain.inf
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##
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# PEI Phase RAW Data files.
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##
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FILE FREEFORM = PCD(gEfiQuarkNcSocIdTokenSpaceGuid.PcdQuarkMicrocodeFile) {
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SECTION RAW = QuarkSocBinPkg/QuarkNorthCluster/Binary/QuarkMicrocode/RMU.bin
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}
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INF RuleOverride = NORELOC MdeModulePkg/Universal/PCD/Pei/Pcd.inf
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INF QuarkPlatformPkg/Platform/Pei/PlatformConfig/PlatformConfigPei.inf
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INF RuleOverride = NORELOC MdeModulePkg/Universal/FaultTolerantWritePei/FaultTolerantWritePei.inf
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INF RuleOverride = NORELOC MdeModulePkg/Universal/Variable/Pei/VariablePei.inf
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INF RuleOverride = NORELOC QuarkSocPkg/QuarkNorthCluster/MemoryInit/Pei/MemoryInitPei.inf
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INF QuarkPlatformPkg/Platform/Pei/PlatformInit/PlatformEarlyInit.inf
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INF MdeModulePkg/Universal/PcatSingleSegmentPciCfg2Pei/PcatSingleSegmentPciCfg2Pei.inf
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INF MdeModulePkg/Core/DxeIplPeim/DxeIpl.inf
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################################################################################
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#
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# FV Section
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#
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# [FV] section is used to define what components or modules are placed within a flash
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# device file. This section also defines order the components and modules are positioned
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# within the image. The [FV] section consists of define statements, set statements and
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# module statements.
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#
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################################################################################
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[FV.FVMAIN]
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BlockSize = $(FLASH_BLOCKSIZE)
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FvAlignment = 16
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ERASE_POLARITY = 1
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MEMORY_MAPPED = TRUE
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STICKY_WRITE = TRUE
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LOCK_CAP = TRUE
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LOCK_STATUS = TRUE
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WRITE_DISABLED_CAP = TRUE
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WRITE_ENABLED_CAP = TRUE
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WRITE_STATUS = TRUE
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WRITE_LOCK_CAP = TRUE
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WRITE_LOCK_STATUS = TRUE
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READ_DISABLED_CAP = TRUE
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READ_ENABLED_CAP = TRUE
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READ_STATUS = TRUE
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READ_LOCK_CAP = TRUE
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READ_LOCK_STATUS = TRUE
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FvNameGuid = 30D9ED01-38D2-418a-90D5-C561750BF80F
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##
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# DXE Phase modules
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##
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INF MdeModulePkg/Core/Dxe/DxeMain.inf
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INF MdeModulePkg/Universal/PCD/Dxe/Pcd.inf
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!if $(SOURCE_DEBUG_ENABLE)
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INF SourceLevelDebugPkg/DebugAgentDxe/DebugAgentDxe.inf
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!endif
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#
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# Early SoC / Platform modules
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#
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INF QuarkPlatformPkg/Platform/Dxe/PlatformInit/PlatformInitDxe.inf
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##
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# EDK Core modules
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##
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INF UefiCpuPkg/CpuIo2Dxe/CpuIo2Dxe.inf
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INF MdeModulePkg/Universal/SecurityStubDxe/SecurityStubDxe.inf
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INF UefiCpuPkg/CpuDxe/CpuDxe.inf
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INF MdeModulePkg/Universal/Metronome/Metronome.inf
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INF MdeModulePkg/Universal/WatchdogTimerDxe/WatchdogTimer.inf
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INF MdeModulePkg/Core/RuntimeDxe/RuntimeDxe.inf
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INF MdeModulePkg/Universal/Variable/RuntimeDxe/VariableRuntimeDxe.inf
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INF MdeModulePkg/Universal/CapsuleRuntimeDxe/CapsuleRuntimeDxe.inf
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INF MdeModulePkg/Universal/MonotonicCounterRuntimeDxe/MonotonicCounterRuntimeDxe.inf
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INF MdeModulePkg/Universal/ResetSystemRuntimeDxe/ResetSystemRuntimeDxe.inf
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INF PcAtChipsetPkg/PcatRealTimeClockRuntimeDxe/PcatRealTimeClockRuntimeDxe.inf
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INF MdeModulePkg/Universal/DevicePathDxe/DevicePathDxe.inf
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INF MdeModulePkg/Universal/MemoryTest/NullMemoryTestDxe/NullMemoryTestDxe.inf
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#
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# Platform
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#
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INF MdeModulePkg/Universal/BdsDxe/BdsDxe.inf
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#INF MdeModulePkg/Application/UiApp/UiApp.inf
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INF QuarkPlatformPkg/Pci/Dxe/PciHostBridge/PciHostBridge.inf
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INF QuarkSocPkg/QuarkNorthCluster/QNCInit/Dxe/QNCInitDxe.inf
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INF PcAtChipsetPkg/HpetTimerDxe/HpetTimerDxe.inf
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INF QuarkPlatformPkg/Platform/Dxe/Setup/DxePlatform.inf
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#
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# PCI
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#
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INF QuarkPlatformPkg/Pci/Dxe/PciPlatform/PciPlatform.inf
|
|
INF MdeModulePkg/Bus/Pci/PciBusDxe/PciBusDxe.inf
|
|
INF QuarkSocPkg/QuarkSouthCluster/IohInit/Dxe/IohInitDxe.inf
|
|
!if $(SOURCE_DEBUG_ENABLE)
|
|
!else
|
|
INF MdeModulePkg/Bus/Pci/PciSioSerialDxe/PciSioSerialDxe.inf
|
|
!endif
|
|
|
|
#
|
|
# Console
|
|
#
|
|
INF MdeModulePkg/Universal/Console/ConPlatformDxe/ConPlatformDxe.inf
|
|
INF MdeModulePkg/Universal/Console/ConSplitterDxe/ConSplitterDxe.inf
|
|
INF MdeModulePkg/Universal/Console/TerminalDxe/TerminalDxe.inf
|
|
|
|
INF MdeModulePkg/Universal/HiiDatabaseDxe/HiiDatabaseDxe.inf
|
|
INF MdeModulePkg/Universal/DisplayEngineDxe/DisplayEngineDxe.inf
|
|
INF MdeModulePkg/Universal/SetupBrowserDxe/SetupBrowserDxe.inf
|
|
INF MdeModulePkg/Universal/Disk/UnicodeCollation/EnglishDxe/EnglishDxe.inf
|
|
|
|
#
|
|
# File System Modules
|
|
#
|
|
INF MdeModulePkg/Universal/FvSimpleFileSystemDxe/FvSimpleFileSystemDxe.inf
|
|
|
|
#
|
|
# Performance Application
|
|
#
|
|
!if $(PERFORMANCE_ENABLE)
|
|
INF ShellPkg/DynamicCommand/DpDynamicCommand/DpDynamicCommand.inf
|
|
!endif
|
|
|
|
################################################################################
|
|
#
|
|
# FV Section
|
|
#
|
|
# [FV] section is used to define what components or modules are placed within a flash
|
|
# device file. This section also defines order the components and modules are positioned
|
|
# within the image. The [FV] section consists of define statements, set statements and
|
|
# module statements.
|
|
#
|
|
################################################################################
|
|
[FV.FVMAIN_COMPACT]
|
|
FvAlignment = 16
|
|
ERASE_POLARITY = 1
|
|
MEMORY_MAPPED = TRUE
|
|
STICKY_WRITE = TRUE
|
|
LOCK_CAP = TRUE
|
|
LOCK_STATUS = TRUE
|
|
WRITE_DISABLED_CAP = TRUE
|
|
WRITE_ENABLED_CAP = TRUE
|
|
WRITE_STATUS = TRUE
|
|
WRITE_LOCK_CAP = TRUE
|
|
WRITE_LOCK_STATUS = TRUE
|
|
READ_DISABLED_CAP = TRUE
|
|
READ_ENABLED_CAP = TRUE
|
|
READ_STATUS = TRUE
|
|
READ_LOCK_CAP = TRUE
|
|
READ_LOCK_STATUS = TRUE
|
|
|
|
FILE FV_IMAGE = 9E21FD93-9C72-4c15-8C4B-E77F1DB2D792 {
|
|
SECTION GUIDED A31280AD-481E-41B6-95E8-127F4C984779 { # TIANO COMPRESS GUID
|
|
SECTION FV_IMAGE = FVMAIN
|
|
}
|
|
}
|
|
|
|
################################################################################
|
|
#
|
|
# FV Section
|
|
#
|
|
# [FV] section is used to define what components or modules are placed within a flash
|
|
# device file. This section also defines order the components and modules are positioned
|
|
# within the image. The [FV] section consists of define statements, set statements and
|
|
# module statements.
|
|
#
|
|
################################################################################
|
|
[FV.PAYLOAD]
|
|
BlockSize = $(FLASH_BLOCKSIZE)
|
|
FvAlignment = 16 #FV alignment and FV attributes setting.
|
|
ERASE_POLARITY = 1
|
|
MEMORY_MAPPED = TRUE
|
|
STICKY_WRITE = TRUE
|
|
LOCK_CAP = TRUE
|
|
LOCK_STATUS = TRUE
|
|
WRITE_DISABLED_CAP = TRUE
|
|
WRITE_ENABLED_CAP = TRUE
|
|
WRITE_STATUS = TRUE
|
|
WRITE_LOCK_CAP = TRUE
|
|
WRITE_LOCK_STATUS = TRUE
|
|
READ_DISABLED_CAP = TRUE
|
|
READ_ENABLED_CAP = TRUE
|
|
READ_STATUS = TRUE
|
|
READ_LOCK_CAP = TRUE
|
|
READ_LOCK_STATUS = TRUE
|
|
|
|
#
|
|
# Shell and Applications
|
|
#
|
|
INF ShellPkg/Application/Shell/Shell.inf
|
|
|
|
################################################################################
|
|
#
|
|
# Rules are use with the [FV] section's module INF type to define
|
|
# how an FFS file is created for a given INF file. The following Rule are the default
|
|
# rules for the different module type. User can add the customized rules to define the
|
|
# content of the FFS file.
|
|
#
|
|
################################################################################
|
|
[Rule.Common.SEC]
|
|
FILE SEC = $(NAMED_GUID) RELOCS_STRIPPED {
|
|
TE TE Align = 8 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
RAW BIN Align = 16 |.com
|
|
}
|
|
|
|
[Rule.Common.PEI_CORE]
|
|
FILE PEI_CORE = $(NAMED_GUID) {
|
|
TE TE $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.PEIM.NORELOC]
|
|
FILE PEIM = $(NAMED_GUID) RELOCS_STRIPPED {
|
|
PEI_DEPEX PEI_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
|
|
TE TE $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.PEIM]
|
|
FILE PEIM = $(NAMED_GUID) {
|
|
PEI_DEPEX PEI_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
|
|
TE TE $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.DXE_CORE]
|
|
FILE DXE_CORE = $(NAMED_GUID) {
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.UEFI_DRIVER]
|
|
FILE DRIVER = $(NAMED_GUID) {
|
|
DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.DXE_DRIVER]
|
|
FILE DRIVER = $(NAMED_GUID) {
|
|
DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.DXE_RUNTIME_DRIVER]
|
|
FILE DRIVER = $(NAMED_GUID) {
|
|
DXE_DEPEX DXE_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.DXE_SMM_DRIVER]
|
|
FILE SMM = $(NAMED_GUID) {
|
|
SMM_DEPEX SMM_DEPEX Optional $(INF_OUTPUT)/$(MODULE_NAME).depex
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.SMM_CORE]
|
|
FILE SMM_CORE = $(NAMED_GUID) {
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.UEFI_APPLICATION]
|
|
FILE APPLICATION = $(NAMED_GUID) {
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="$(MODULE_NAME)" Optional
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.UEFI_APPLICATION.UI]
|
|
FILE APPLICATION = $(NAMED_GUID) {
|
|
PE32 PE32 $(INF_OUTPUT)/$(MODULE_NAME).efi
|
|
UI STRING="Enter Setup"
|
|
VERSION STRING="$(INF_VERSION)" Optional BUILD_NUM=$(BUILD_NUMBER)
|
|
}
|
|
|
|
[Rule.Common.USER_DEFINED.ACPITABLE]
|
|
FILE FREEFORM = $(NAMED_GUID) {
|
|
RAW ACPI |.acpi
|
|
RAW ASL |.aml
|
|
}
|