mirror of https://github.com/acidanthera/audk.git
198 lines
9.1 KiB
Python
198 lines
9.1 KiB
Python
## @file
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# This file is used to define the functions to operate bios binary file.
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#
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# Copyright (c) 2021-, Intel Corporation. All rights reserved.<BR>
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# SPDX-License-Identifier: BSD-2-Clause-Patent
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##
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from core.FMMTParser import *
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from core.FvHandler import *
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from utils.FvLayoutPrint import *
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from utils.FmmtLogger import FmmtLogger as logger
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global Fv_count
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Fv_count = 0
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# The ROOT_TYPE can be 'ROOT_TREE', 'ROOT_FV_TREE', 'ROOT_FFS_TREE', 'ROOT_SECTION_TREE'
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def ViewFile(inputfile: str, ROOT_TYPE: str, layoutfile: str=None, outputfile: str=None) -> None:
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if not os.path.exists(inputfile):
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logger.error("Invalid inputfile, can not open {}.".format(inputfile))
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raise Exception("Process Failed: Invalid inputfile!")
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# 1. Data Prepare
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with open(inputfile, "rb") as f:
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whole_data = f.read()
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FmmtParser = FMMTParser(inputfile, ROOT_TYPE)
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# 2. DataTree Create
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logger.debug('Parsing inputfile data......')
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FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, whole_data)
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logger.debug('Done!')
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# 3. Log Output
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InfoDict = FmmtParser.WholeFvTree.ExportTree()
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logger.debug('BinaryTree created, start parsing BinaryTree data......')
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FmmtParser.WholeFvTree.parserTree(InfoDict, FmmtParser.BinaryInfo)
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logger.debug('Done!')
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GetFormatter("").LogPrint(FmmtParser.BinaryInfo)
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if layoutfile:
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if os.path.splitext(layoutfile)[1]:
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layoutfilename = layoutfile
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layoutfileformat = os.path.splitext(layoutfile)[1][1:].lower()
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else:
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layoutfilename = "Layout_{}{}".format(os.path.basename(inputfile),".{}".format(layoutfile.lower()))
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layoutfileformat = layoutfile.lower()
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GetFormatter(layoutfileformat).dump(InfoDict, FmmtParser.BinaryInfo, layoutfilename)
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# 4. Data Encapsulation
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if outputfile:
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logger.debug('Start encapsulating data......')
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FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False)
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with open(outputfile, "wb") as f:
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f.write(FmmtParser.FinalData)
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logger.debug('Encapsulated data is saved in {}.'.format(outputfile))
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def DeleteFfs(inputfile: str, TargetFfs_name: str, outputfile: str, Fv_name: str=None) -> None:
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if not os.path.exists(inputfile):
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logger.error("Invalid inputfile, can not open {}.".format(inputfile))
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raise Exception("Process Failed: Invalid inputfile!")
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# 1. Data Prepare
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with open(inputfile, "rb") as f:
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whole_data = f.read()
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FmmtParser = FMMTParser(inputfile, ROOT_TREE)
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# 2. DataTree Create
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logger.debug('Parsing inputfile data......')
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FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, whole_data)
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logger.debug('Done!')
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# 3. Data Modify
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FmmtParser.WholeFvTree.FindNode(TargetFfs_name, FmmtParser.WholeFvTree.Findlist)
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# Choose the Specfic DeleteFfs with Fv info
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if Fv_name:
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for item in FmmtParser.WholeFvTree.Findlist:
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if item.Parent.key != Fv_name and item.Parent.Data.Name != Fv_name:
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FmmtParser.WholeFvTree.Findlist.remove(item)
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Status = False
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if FmmtParser.WholeFvTree.Findlist != []:
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for Delete_Ffs in FmmtParser.WholeFvTree.Findlist:
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FfsMod = FvHandler(None, Delete_Ffs)
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Status = FfsMod.DeleteFfs()
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else:
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logger.error('Target Ffs not found!!!')
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# 4. Data Encapsulation
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if Status:
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logger.debug('Start encapsulating data......')
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FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False)
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with open(outputfile, "wb") as f:
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f.write(FmmtParser.FinalData)
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logger.debug('Encapsulated data is saved in {}.'.format(outputfile))
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def AddNewFfs(inputfile: str, Fv_name: str, newffsfile: str, outputfile: str) -> None:
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if not os.path.exists(inputfile):
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logger.error("Invalid inputfile, can not open {}.".format(inputfile))
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raise Exception("Process Failed: Invalid inputfile!")
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if not os.path.exists(newffsfile):
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logger.error("Invalid ffsfile, can not open {}.".format(newffsfile))
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raise Exception("Process Failed: Invalid ffs file!")
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# 1. Data Prepare
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with open(inputfile, "rb") as f:
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whole_data = f.read()
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FmmtParser = FMMTParser(inputfile, ROOT_TREE)
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# 2. DataTree Create
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logger.debug('Parsing inputfile data......')
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FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, whole_data)
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logger.debug('Done!')
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# Get Target Fv and Target Ffs_Pad
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FmmtParser.WholeFvTree.FindNode(Fv_name, FmmtParser.WholeFvTree.Findlist)
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# Create new ffs Tree
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with open(newffsfile, "rb") as f:
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new_ffs_data = f.read()
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NewFmmtParser = FMMTParser(newffsfile, ROOT_FFS_TREE)
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Status = False
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# 3. Data Modify
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if FmmtParser.WholeFvTree.Findlist:
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for TargetFv in FmmtParser.WholeFvTree.Findlist:
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TargetFfsPad = TargetFv.Child[-1]
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logger.debug('Parsing newffsfile data......')
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if TargetFfsPad.type == FFS_FREE_SPACE:
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NewFmmtParser.ParserFromRoot(NewFmmtParser.WholeFvTree, new_ffs_data, TargetFfsPad.Data.HOffset)
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else:
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NewFmmtParser.ParserFromRoot(NewFmmtParser.WholeFvTree, new_ffs_data, TargetFfsPad.Data.HOffset+TargetFfsPad.Data.Size)
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logger.debug('Done!')
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FfsMod = FvHandler(NewFmmtParser.WholeFvTree.Child[0], TargetFfsPad)
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Status = FfsMod.AddFfs()
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else:
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logger.error('Target Fv not found!!!')
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# 4. Data Encapsulation
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if Status:
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logger.debug('Start encapsulating data......')
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FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False)
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with open(outputfile, "wb") as f:
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f.write(FmmtParser.FinalData)
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logger.debug('Encapsulated data is saved in {}.'.format(outputfile))
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def ReplaceFfs(inputfile: str, Ffs_name: str, newffsfile: str, outputfile: str, Fv_name: str=None) -> None:
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if not os.path.exists(inputfile):
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logger.error("Invalid inputfile, can not open {}.".format(inputfile))
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raise Exception("Process Failed: Invalid inputfile!")
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# 1. Data Prepare
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with open(inputfile, "rb") as f:
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whole_data = f.read()
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FmmtParser = FMMTParser(inputfile, ROOT_TREE)
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# 2. DataTree Create
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logger.debug('Parsing inputfile data......')
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FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, whole_data)
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logger.debug('Done!')
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with open(newffsfile, "rb") as f:
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new_ffs_data = f.read()
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newFmmtParser = FMMTParser(newffsfile, FV_TREE)
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logger.debug('Parsing newffsfile data......')
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newFmmtParser.ParserFromRoot(newFmmtParser.WholeFvTree, new_ffs_data)
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logger.debug('Done!')
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Status = False
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# 3. Data Modify
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new_ffs = newFmmtParser.WholeFvTree.Child[0]
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new_ffs.Data.PadData = GetPadSize(new_ffs.Data.Size, FFS_COMMON_ALIGNMENT) * b'\xff'
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FmmtParser.WholeFvTree.FindNode(Ffs_name, FmmtParser.WholeFvTree.Findlist)
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if Fv_name:
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for item in FmmtParser.WholeFvTree.Findlist:
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if item.Parent.key != Fv_name and item.Parent.Data.Name != Fv_name:
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FmmtParser.WholeFvTree.Findlist.remove(item)
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if FmmtParser.WholeFvTree.Findlist != []:
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for TargetFfs in FmmtParser.WholeFvTree.Findlist:
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FfsMod = FvHandler(newFmmtParser.WholeFvTree.Child[0], TargetFfs)
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Status = FfsMod.ReplaceFfs()
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else:
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logger.error('Target Ffs not found!!!')
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# 4. Data Encapsulation
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if Status:
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logger.debug('Start encapsulating data......')
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FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False)
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with open(outputfile, "wb") as f:
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f.write(FmmtParser.FinalData)
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logger.debug('Encapsulated data is saved in {}.'.format(outputfile))
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def ExtractFfs(inputfile: str, Ffs_name: str, outputfile: str, Fv_name: str=None) -> None:
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if not os.path.exists(inputfile):
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logger.error("Invalid inputfile, can not open {}.".format(inputfile))
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raise Exception("Process Failed: Invalid inputfile!")
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# 1. Data Prepare
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with open(inputfile, "rb") as f:
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whole_data = f.read()
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FmmtParser = FMMTParser(inputfile, ROOT_TREE)
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# 2. DataTree Create
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logger.debug('Parsing inputfile data......')
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FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, whole_data)
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logger.debug('Done!')
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FmmtParser.WholeFvTree.FindNode(Ffs_name, FmmtParser.WholeFvTree.Findlist)
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if Fv_name:
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for item in FmmtParser.WholeFvTree.Findlist:
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if item.Parent.key != Fv_name and item.Parent.Data.Name != Fv_name:
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FmmtParser.WholeFvTree.Findlist.remove(item)
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if FmmtParser.WholeFvTree.Findlist != []:
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TargetNode = FmmtParser.WholeFvTree.Findlist[0]
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TargetFv = TargetNode.Parent
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if TargetFv.Data.Header.Attributes & EFI_FVB2_ERASE_POLARITY:
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TargetNode.Data.Header.State = c_uint8(
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~TargetNode.Data.Header.State)
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FinalData = struct2stream(TargetNode.Data.Header) + TargetNode.Data.Data
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with open(outputfile, "wb") as f:
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f.write(FinalData)
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logger.debug('Extract ffs data is saved in {}.'.format(outputfile))
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else:
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logger.error('Target Ffs not found!!!')
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