edk2/BaseTools/Source/Python/GenFds/Fv.py
Michael D Kinney adc5e8d009 BaseTools/GenFds: Propagate Xip flag to FV INF via ,XIP suffix
Add Xip attribute to FDF Rule class and parse the Xip keyword in
EFI section rules of FDF files. Add XipEnabled attribute to
FfsInfStatement that is determined from the applicable FDF Rule's
section Xip setting. When generating the FV INF file, append ",XIP"
to EFI_FILE_NAME entries for modules whose Rule specifies Xip=TRUE.

This enables per-file XIP rebase control in GenFv by communicating
which files require XIP rebase directly in the FV INF file format.

Signed-off-by: Michael D Kinney <michael.d.kinney@intel.com>
2026-06-22 15:18:12 +00:00

435 lines
20 KiB
Python

## @file
# process FV generation
#
# Copyright (c) 2007 - 2018, Intel Corporation. All rights reserved.<BR>
#
# SPDX-License-Identifier: BSD-2-Clause-Patent
#
##
# Import Modules
#
from __future__ import absolute_import
import Common.LongFilePathOs as os
import subprocess
from io import BytesIO
from struct import *
from . import FfsFileStatement
from .GenFdsGlobalVariable import GenFdsGlobalVariable
from Common.Misc import SaveFileOnChange, PackGUID
from Common.LongFilePathSupport import CopyLongFilePath
from Common.LongFilePathSupport import OpenLongFilePath as open
from Common.DataType import *
FV_UI_EXT_ENTY_GUID = 'A67DF1FA-8DE8-4E98-AF09-4BDF2EFFBC7C'
## generate FV
#
#
class FV (object):
## The constructor
#
# @param self The object pointer
#
def __init__(self, Name=None):
self.UiFvName = Name
self.CreateFileName = None
self.BlockSizeList = []
self.DefineVarDict = {}
self.SetVarDict = {}
self.FvAlignment = None
self.FvAttributeDict = {}
self.FvNameGuid = None
self.FvNameString = None
self.AprioriSectionList = []
self.FfsList = []
self.BsBaseAddress = None
self.RtBaseAddress = None
self.FvInfFile = None
self.FvAddressFile = None
self.BaseAddress = None
self.InfFileName = None
self.FvAddressFileName = None
self.CapsuleName = None
self.FvBaseAddress = None
self.FvForceRebase = None
self.FvRegionInFD = None
self.UsedSizeEnable = False
self.FvExtEntryTypeValue = []
self.FvExtEntryType = []
self.FvExtEntryData = []
## AddToBuffer()
#
# Generate Fv and add it to the Buffer
#
# @param self The object pointer
# @param Buffer The buffer generated FV data will be put
# @param BaseAddress base address of FV
# @param BlockSize block size of FV
# @param BlockNum How many blocks in FV
# @param ErasePolarity Flash erase polarity
# @param MacroDict macro value pair
# @retval string Generated FV file path
#
def AddToBuffer (self, Buffer, BaseAddress=None, BlockSize= None, BlockNum=None, ErasePloarity='1', MacroDict = None, Flag=False):
if BaseAddress is None and self.UiFvName.upper() + 'fv' in GenFdsGlobalVariable.ImageBinDict:
return GenFdsGlobalVariable.ImageBinDict[self.UiFvName.upper() + 'fv']
if MacroDict is None:
MacroDict = {}
#
# Check whether FV in Capsule is in FD flash region.
# If yes, return error. Doesn't support FV in Capsule image is also in FD flash region.
#
if self.CapsuleName is not None:
for FdObj in GenFdsGlobalVariable.FdfParser.Profile.FdDict.values():
for RegionObj in FdObj.RegionList:
if RegionObj.RegionType == BINARY_FILE_TYPE_FV:
for RegionData in RegionObj.RegionDataList:
if RegionData.endswith(".fv"):
continue
elif RegionData.upper() + 'fv' in GenFdsGlobalVariable.ImageBinDict:
continue
elif self.UiFvName.upper() == RegionData.upper():
GenFdsGlobalVariable.ErrorLogger("Capsule %s in FD region can't contain a FV %s in FD region." % (self.CapsuleName, self.UiFvName.upper()))
if not Flag:
GenFdsGlobalVariable.InfLogger( "\nGenerating %s FV" %self.UiFvName)
GenFdsGlobalVariable.LargeFileInFvFlags.append(False)
FFSGuid = None
if self.FvBaseAddress is not None:
BaseAddress = self.FvBaseAddress
if not Flag:
self._InitializeInf(BaseAddress, BlockSize, BlockNum, ErasePloarity)
#
# First Process the Apriori section
#
MacroDict.update(self.DefineVarDict)
GenFdsGlobalVariable.VerboseLogger('First generate Apriori file !')
FfsFileList = []
for AprSection in self.AprioriSectionList:
FileName = AprSection.GenFfs (self.UiFvName, MacroDict, IsMakefile=Flag)
FfsFileList.append(FileName)
# Add Apriori file name to Inf file
if not Flag:
self.FvInfFile.append("EFI_FILE_NAME = " + \
FileName + \
TAB_LINE_BREAK)
# Process Modules in FfsList
for FfsFile in self.FfsList:
if Flag:
if isinstance(FfsFile, FfsFileStatement.FileStatement):
continue
if GenFdsGlobalVariable.EnableGenfdsMultiThread and GenFdsGlobalVariable.ModuleFile and GenFdsGlobalVariable.ModuleFile.Path.find(os.path.normpath(FfsFile.InfFileName)) == -1:
continue
FileName = FfsFile.GenFfs(MacroDict, FvParentAddr=BaseAddress, IsMakefile=Flag, FvName=self.UiFvName)
FfsFileList.append(FileName)
if not Flag:
XipSuffix = ""
if hasattr(FfsFile, 'XipEnabled') and FfsFile.XipEnabled:
XipSuffix = ",XIP"
self.FvInfFile.append("EFI_FILE_NAME = " + \
FileName + \
XipSuffix + \
TAB_LINE_BREAK)
if not Flag:
FvInfFile = ''.join(self.FvInfFile)
SaveFileOnChange(self.InfFileName, FvInfFile, False)
#
# Call GenFv tool
#
FvOutputFile = os.path.join(GenFdsGlobalVariable.FvDir, self.UiFvName)
FvOutputFile = FvOutputFile + '.Fv'
# BUGBUG: FvOutputFile could be specified from FDF file (FV section, CreateFile statement)
if self.CreateFileName is not None:
FvOutputFile = self.CreateFileName
if Flag:
GenFdsGlobalVariable.ImageBinDict[self.UiFvName.upper() + 'fv'] = FvOutputFile
return FvOutputFile
FvInfoFileName = os.path.join(GenFdsGlobalVariable.FfsDir, self.UiFvName + '.inf')
if not Flag:
CopyLongFilePath(GenFdsGlobalVariable.FvAddressFileName, FvInfoFileName)
OrigFvInfo = None
if os.path.exists (FvInfoFileName):
OrigFvInfo = open(FvInfoFileName, 'r').read()
if GenFdsGlobalVariable.LargeFileInFvFlags[-1]:
FFSGuid = GenFdsGlobalVariable.EFI_FIRMWARE_FILE_SYSTEM3_GUID
GenFdsGlobalVariable.GenerateFirmwareVolume(
FvOutputFile,
[self.InfFileName],
AddressFile=FvInfoFileName,
FfsList=FfsFileList,
ForceRebase=self.FvForceRebase,
FileSystemGuid=FFSGuid
)
NewFvInfo = None
if os.path.exists (FvInfoFileName):
NewFvInfo = open(FvInfoFileName, 'r').read()
if NewFvInfo is not None and NewFvInfo != OrigFvInfo:
FvChildAddr = []
AddFileObj = open(FvInfoFileName, 'r')
AddrStrings = AddFileObj.readlines()
AddrKeyFound = False
for AddrString in AddrStrings:
if AddrKeyFound:
#get base address for the inside FvImage
FvChildAddr.append (AddrString)
elif AddrString.find ("[FV_BASE_ADDRESS]") != -1:
AddrKeyFound = True
AddFileObj.close()
if FvChildAddr != []:
# Update Ffs again
for FfsFile in self.FfsList:
FileName = FfsFile.GenFfs(MacroDict, FvChildAddr, BaseAddress, IsMakefile=Flag, FvName=self.UiFvName)
if GenFdsGlobalVariable.LargeFileInFvFlags[-1]:
FFSGuid = GenFdsGlobalVariable.EFI_FIRMWARE_FILE_SYSTEM3_GUID;
#Update GenFv again
GenFdsGlobalVariable.GenerateFirmwareVolume(
FvOutputFile,
[self.InfFileName],
AddressFile=FvInfoFileName,
FfsList=FfsFileList,
ForceRebase=self.FvForceRebase,
FileSystemGuid=FFSGuid
)
#
# Write the Fv contents to Buffer
#
if os.path.isfile(FvOutputFile) and os.path.getsize(FvOutputFile) >= 0x48:
FvFileObj = open(FvOutputFile, 'rb')
# PI FvHeader is 0x48 byte
FvHeaderBuffer = FvFileObj.read(0x48)
Signature = FvHeaderBuffer[0x28:0x32]
if Signature and Signature.startswith(b'_FVH'):
GenFdsGlobalVariable.VerboseLogger("\nGenerate %s FV Successfully" % self.UiFvName)
GenFdsGlobalVariable.SharpCounter = 0
FvFileObj.seek(0)
Buffer.write(FvFileObj.read())
# FV alignment position.
FvAlignmentValue = 1 << (ord(FvHeaderBuffer[0x2E:0x2F]) & 0x1F)
if FvAlignmentValue >= 0x400:
if FvAlignmentValue >= 0x100000:
if FvAlignmentValue >= 0x1000000:
#The max alignment supported by FFS is 16M.
self.FvAlignment = "16M"
else:
self.FvAlignment = str(FvAlignmentValue // 0x100000) + "M"
else:
self.FvAlignment = str(FvAlignmentValue // 0x400) + "K"
else:
# FvAlignmentValue is less than 1K
self.FvAlignment = str (FvAlignmentValue)
FvFileObj.close()
GenFdsGlobalVariable.ImageBinDict[self.UiFvName.upper() + 'fv'] = FvOutputFile
GenFdsGlobalVariable.LargeFileInFvFlags.pop()
else:
GenFdsGlobalVariable.ErrorLogger("Invalid FV file %s." % self.UiFvName)
else:
GenFdsGlobalVariable.ErrorLogger("Failed to generate %s FV file." %self.UiFvName)
return FvOutputFile
## _GetBlockSize()
#
# Calculate FV's block size
# Inherit block size from FD if no block size specified in FV
#
def _GetBlockSize(self):
if self.BlockSizeList:
return True
for FdObj in GenFdsGlobalVariable.FdfParser.Profile.FdDict.values():
for RegionObj in FdObj.RegionList:
if RegionObj.RegionType != BINARY_FILE_TYPE_FV:
continue
for RegionData in RegionObj.RegionDataList:
#
# Found the FD and region that contain this FV
#
if self.UiFvName.upper() == RegionData.upper():
RegionObj.BlockInfoOfRegion(FdObj.BlockSizeList, self)
if self.BlockSizeList:
return True
return False
## _InitializeInf()
#
# Initialize the inf file to create FV
#
# @param self The object pointer
# @param BaseAddress base address of FV
# @param BlockSize block size of FV
# @param BlockNum How many blocks in FV
# @param ErasePolarity Flash erase polarity
#
def _InitializeInf (self, BaseAddress = None, BlockSize= None, BlockNum = None, ErasePloarity='1'):
#
# Create FV inf file
#
self.InfFileName = os.path.join(GenFdsGlobalVariable.FvDir,
self.UiFvName + '.inf')
self.FvInfFile = []
#
# Add [Options]
#
self.FvInfFile.append("[options]" + TAB_LINE_BREAK)
if BaseAddress is not None:
self.FvInfFile.append("EFI_BASE_ADDRESS = " + \
BaseAddress + \
TAB_LINE_BREAK)
if BlockSize is not None:
self.FvInfFile.append("EFI_BLOCK_SIZE = " + \
'0x%X' %BlockSize + \
TAB_LINE_BREAK)
if BlockNum is not None:
self.FvInfFile.append("EFI_NUM_BLOCKS = " + \
' 0x%X' %BlockNum + \
TAB_LINE_BREAK)
else:
if self.BlockSizeList == []:
if not self._GetBlockSize():
#set default block size is 1
self.FvInfFile.append("EFI_BLOCK_SIZE = 0x1" + TAB_LINE_BREAK)
for BlockSize in self.BlockSizeList:
if BlockSize[0] is not None:
self.FvInfFile.append("EFI_BLOCK_SIZE = " + \
'0x%X' %BlockSize[0] + \
TAB_LINE_BREAK)
if BlockSize[1] is not None:
self.FvInfFile.append("EFI_NUM_BLOCKS = " + \
' 0x%X' %BlockSize[1] + \
TAB_LINE_BREAK)
if self.BsBaseAddress is not None:
self.FvInfFile.append('EFI_BOOT_DRIVER_BASE_ADDRESS = ' + \
'0x%X' %self.BsBaseAddress)
if self.RtBaseAddress is not None:
self.FvInfFile.append('EFI_RUNTIME_DRIVER_BASE_ADDRESS = ' + \
'0x%X' %self.RtBaseAddress)
#
# Add attribute
#
self.FvInfFile.append("[attributes]" + TAB_LINE_BREAK)
self.FvInfFile.append("EFI_ERASE_POLARITY = " + \
' %s' %ErasePloarity + \
TAB_LINE_BREAK)
if not (self.FvAttributeDict is None):
for FvAttribute in self.FvAttributeDict.keys():
if FvAttribute == "FvUsedSizeEnable":
if self.FvAttributeDict[FvAttribute].upper() in ('TRUE', '1'):
self.UsedSizeEnable = True
continue
self.FvInfFile.append("EFI_" + \
FvAttribute + \
' = ' + \
self.FvAttributeDict[FvAttribute] + \
TAB_LINE_BREAK )
if self.FvAlignment is not None:
self.FvInfFile.append("EFI_FVB2_ALIGNMENT_" + \
self.FvAlignment.strip() + \
" = TRUE" + \
TAB_LINE_BREAK)
#
# Generate FV extension header file
#
if not self.FvNameGuid:
if len(self.FvExtEntryType) > 0 or self.UsedSizeEnable:
GenFdsGlobalVariable.ErrorLogger("FV Extension Header Entries declared for %s with no FvNameGuid declaration." % (self.UiFvName))
else:
TotalSize = 16 + 4
Buffer = bytearray()
if self.UsedSizeEnable:
TotalSize += (4 + 4)
## define EFI_FV_EXT_TYPE_USED_SIZE_TYPE 0x03
#typedef struct
# {
# EFI_FIRMWARE_VOLUME_EXT_ENTRY Hdr;
# UINT32 UsedSize;
# } EFI_FIRMWARE_VOLUME_EXT_ENTRY_USED_SIZE_TYPE;
Buffer += pack('HHL', 8, 3, 0)
if self.FvNameString == 'TRUE':
#
# Create EXT entry for FV UI name
# This GUID is used: A67DF1FA-8DE8-4E98-AF09-4BDF2EFFBC7C
#
FvUiLen = len(self.UiFvName)
TotalSize += (FvUiLen + 16 + 4)
Guid = FV_UI_EXT_ENTY_GUID.split('-')
#
# Layout:
# EFI_FIRMWARE_VOLUME_EXT_ENTRY: size 4
# GUID: size 16
# FV UI name
#
Buffer += (pack('HH', (FvUiLen + 16 + 4), 0x0002)
+ PackGUID(Guid)
+ self.UiFvName.encode('utf-8'))
for Index in range (0, len(self.FvExtEntryType)):
if self.FvExtEntryType[Index] == 'FILE':
# check if the path is absolute or relative
if os.path.isabs(self.FvExtEntryData[Index]):
FileFullPath = os.path.normpath(self.FvExtEntryData[Index])
else:
FileFullPath = os.path.normpath(os.path.join(GenFdsGlobalVariable.WorkSpaceDir, self.FvExtEntryData[Index]))
# check if the file path exists or not
if not os.path.isfile(FileFullPath):
GenFdsGlobalVariable.ErrorLogger("Error opening FV Extension Header Entry file %s." % (self.FvExtEntryData[Index]))
FvExtFile = open (FileFullPath, 'rb')
FvExtFile.seek(0, 2)
Size = FvExtFile.tell()
if Size >= 0x10000:
GenFdsGlobalVariable.ErrorLogger("The size of FV Extension Header Entry file %s exceeds 0x10000." % (self.FvExtEntryData[Index]))
TotalSize += (Size + 4)
FvExtFile.seek(0)
Buffer += pack('HH', (Size + 4), int(self.FvExtEntryTypeValue[Index], 16))
Buffer += FvExtFile.read()
FvExtFile.close()
if self.FvExtEntryType[Index] == 'DATA':
ByteList = self.FvExtEntryData[Index].split(',')
Size = len (ByteList)
if Size >= 0x10000:
GenFdsGlobalVariable.ErrorLogger("The size of FV Extension Header Entry data %s exceeds 0x10000." % (self.FvExtEntryData[Index]))
TotalSize += (Size + 4)
Buffer += pack('HH', (Size + 4), int(self.FvExtEntryTypeValue[Index], 16))
for Index1 in range (0, Size):
Buffer += pack('B', int(ByteList[Index1], 16))
Guid = self.FvNameGuid.split('-')
Buffer = PackGUID(Guid) + pack('=L', TotalSize) + Buffer
#
# Generate FV extension header file if the total size is not zero
#
if TotalSize > 0:
FvExtHeaderFileName = os.path.join(GenFdsGlobalVariable.FvDir, self.UiFvName + '.ext')
FvExtHeaderFile = BytesIO()
FvExtHeaderFile.write(Buffer)
Changed = SaveFileOnChange(FvExtHeaderFileName, FvExtHeaderFile.getvalue(), True)
FvExtHeaderFile.close()
if Changed:
if os.path.exists (self.InfFileName):
os.remove (self.InfFileName)
self.FvInfFile.append("EFI_FV_EXT_HEADER_FILE_NAME = " + \
FvExtHeaderFileName + \
TAB_LINE_BREAK)
#
# Add [Files]
#
self.FvInfFile.append("[files]" + TAB_LINE_BREAK)