Files
slimbootloader/BaseTools/Source/Python/GenFds/AprioriSection.py
Mike Crowe 990e3e81e6 Use LF line endings in the repository
Convert the line endings stored for all text files in the repository to
LF. The majority previously used DOS-style CRLF line endings. Add a
.gitattributes file to enforce this and treat certain extensions as
never being text files.

Update PatchCheck.py to insist on LF line endings rather than CRLF.
However, its other checks fail on this commit due to lots of
pre-existing complaints that it only notices because the line endings
have changed.

Silicon/QemuSocPkg/FspBin/Patches/0001-Build-QEMU-FSP-2.0-binaries.patch
needs to be treated as binary since it contains a mixture of line
endings.

This change has implications depending on the client platform you are
using the repository from:

* Windows

The usual configuration for Git on Windows means that text files will
be checked out to the work tree with DOS-style CRLF line endings. If
that's not the case then you can configure Git to do so for the entire
machine with:

 git config --global core.autocrlf true

or for just the repository with:

 git config core.autocrlf true

Line endings will be normalised to LF when they are committed to the
repository. If you commit a text file with only LF line endings then it
will be converted to CRLF line endings in your work tree.

* Linux, MacOS and other Unices

The usual configuration for Git on such platforms is to check files out
of the repository with LF line endings. This is probably the right thing
for you. In the unlikely even that you are using Git on Unix but editing
or compiling on Windows for some reason then you may need to tweak your
configuration to force the use of CRLF line endings as described above.

* General

For more information see
https://docs.github.com/en/get-started/getting-started-with-git/configuring-git-to-handle-line-endings .

Fixes: https://github.com/slimbootloader/slimbootloader/issues/1400
Signed-off-by: Mike Crowe <mac@mcrowe.com>
2021-11-10 12:46:42 -08:00

122 lines
4.7 KiB
Python

## @file
# process APRIORI file data and generate PEI/DXE APRIORI file
#
# Copyright (c) 2007 - 2018, Intel Corporation. All rights reserved.<BR>
#
# SPDX-License-Identifier: BSD-2-Clause-Patent
#
##
# Import Modules
#
from __future__ import absolute_import
from struct import pack
import Common.LongFilePathOs as os
from io import BytesIO
from .FfsFileStatement import FileStatement
from .GenFdsGlobalVariable import GenFdsGlobalVariable
from Common.StringUtils import NormPath
from Common.Misc import SaveFileOnChange, PathClass
from Common.EdkLogger import error as EdkLoggerError
from Common.BuildToolError import RESOURCE_NOT_AVAILABLE
from Common.DataType import TAB_COMMON
DXE_APRIORI_GUID = "FC510EE7-FFDC-11D4-BD41-0080C73C8881"
PEI_APRIORI_GUID = "1B45CC0A-156A-428A-AF62-49864DA0E6E6"
## process APRIORI file data and generate PEI/DXE APRIORI file
#
#
class AprioriSection (object):
## The constructor
#
# @param self The object pointer
#
def __init__(self):
self.DefineVarDict = {}
self.FfsList = []
self.AprioriType = ""
## GenFfs() method
#
# Generate FFS for APRIORI file
#
# @param self The object pointer
# @param FvName for whom apriori file generated
# @param Dict dictionary contains macro and its value
# @retval string Generated file name
#
def GenFfs (self, FvName, Dict = None, IsMakefile = False):
if Dict is None:
Dict = {}
Buffer = BytesIO()
if self.AprioriType == "PEI":
AprioriFileGuid = PEI_APRIORI_GUID
else:
AprioriFileGuid = DXE_APRIORI_GUID
OutputAprFilePath = os.path.join (GenFdsGlobalVariable.WorkSpaceDir, \
GenFdsGlobalVariable.FfsDir,\
AprioriFileGuid + FvName)
if not os.path.exists(OutputAprFilePath):
os.makedirs(OutputAprFilePath)
OutputAprFileName = os.path.join( OutputAprFilePath, \
AprioriFileGuid + FvName + '.Apri' )
AprFfsFileName = os.path.join (OutputAprFilePath,\
AprioriFileGuid + FvName + '.Ffs')
Dict.update(self.DefineVarDict)
InfFileName = None
for FfsObj in self.FfsList:
Guid = ""
if isinstance(FfsObj, FileStatement):
Guid = FfsObj.NameGuid
else:
InfFileName = NormPath(FfsObj.InfFileName)
Arch = FfsObj.GetCurrentArch()
if Arch:
Dict['$(ARCH)'] = Arch
InfFileName = GenFdsGlobalVariable.MacroExtend(InfFileName, Dict, Arch)
if Arch:
Inf = GenFdsGlobalVariable.WorkSpace.BuildObject[PathClass(InfFileName, GenFdsGlobalVariable.WorkSpaceDir), Arch, GenFdsGlobalVariable.TargetName, GenFdsGlobalVariable.ToolChainTag]
Guid = Inf.Guid
else:
Inf = GenFdsGlobalVariable.WorkSpace.BuildObject[PathClass(InfFileName, GenFdsGlobalVariable.WorkSpaceDir), TAB_COMMON, GenFdsGlobalVariable.TargetName, GenFdsGlobalVariable.ToolChainTag]
Guid = Inf.Guid
if not Inf.Module.Binaries:
EdkLoggerError("GenFds", RESOURCE_NOT_AVAILABLE,
"INF %s not found in build ARCH %s!" \
% (InfFileName, GenFdsGlobalVariable.ArchList))
GuidPart = Guid.split('-')
Buffer.write(pack('I', int(GuidPart[0], 16)))
Buffer.write(pack('H', int(GuidPart[1], 16)))
Buffer.write(pack('H', int(GuidPart[2], 16)))
for Num in range(2):
Char = GuidPart[3][Num*2:Num*2+2]
Buffer.write(pack('B', int(Char, 16)))
for Num in range(6):
Char = GuidPart[4][Num*2:Num*2+2]
Buffer.write(pack('B', int(Char, 16)))
SaveFileOnChange(OutputAprFileName, Buffer.getvalue())
RawSectionFileName = os.path.join( OutputAprFilePath, \
AprioriFileGuid + FvName + '.raw' )
MakefilePath = None
if IsMakefile:
if not InfFileName:
return None
MakefilePath = InfFileName, Arch
GenFdsGlobalVariable.GenerateSection(RawSectionFileName, [OutputAprFileName], 'EFI_SECTION_RAW', IsMakefile=IsMakefile)
GenFdsGlobalVariable.GenerateFfs(AprFfsFileName, [RawSectionFileName],
'EFI_FV_FILETYPE_FREEFORM', AprioriFileGuid, MakefilePath=MakefilePath)
return AprFfsFileName