mirror of https://github.com/acidanthera/audk.git
966 lines
30 KiB
Python
966 lines
30 KiB
Python
## @file
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# This file is used to define common string related functions used in parsing
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# process
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#
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# Copyright (c) 2011 - 2014, Intel Corporation. All rights reserved.<BR>
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#
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# This program and the accompanying materials are licensed and made available
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# under the terms and conditions of the BSD License which accompanies this
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# 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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String
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'''
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##
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# Import Modules
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#
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import re
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import os.path
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from string import strip
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import Logger.Log as Logger
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import Library.DataType as DataType
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from Logger.ToolError import FORMAT_INVALID
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from Logger.ToolError import PARSER_ERROR
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from Logger import StringTable as ST
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#
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# Regular expression for matching macro used in DSC/DEC/INF file inclusion
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#
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gMACRO_PATTERN = re.compile("\$\(([_A-Z][_A-Z0-9]*)\)", re.UNICODE)
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## GetSplitValueList
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#
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# Get a value list from a string with multiple values splited with SplitTag
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# The default SplitTag is DataType.TAB_VALUE_SPLIT
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# 'AAA|BBB|CCC' -> ['AAA', 'BBB', 'CCC']
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#
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# @param String: The input string to be splitted
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# @param SplitTag: The split key, default is DataType.TAB_VALUE_SPLIT
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# @param MaxSplit: The max number of split values, default is -1
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#
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#
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def GetSplitValueList(String, SplitTag=DataType.TAB_VALUE_SPLIT, MaxSplit=-1):
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return map(lambda l: l.strip(), String.split(SplitTag, MaxSplit))
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## MergeArches
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#
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# Find a key's all arches in dict, add the new arch to the list
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# If not exist any arch, set the arch directly
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#
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# @param Dict: The input value for Dict
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# @param Key: The input value for Key
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# @param Arch: The Arch to be added or merged
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#
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def MergeArches(Dict, Key, Arch):
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if Key in Dict.keys():
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Dict[Key].append(Arch)
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else:
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Dict[Key] = Arch.split()
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## GenDefines
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#
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# Parse a string with format "DEFINE <VarName> = <PATH>"
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# Generate a map Defines[VarName] = PATH
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# Return False if invalid format
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#
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# @param String: String with DEFINE statement
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# @param Arch: Supportted Arch
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# @param Defines: DEFINE statement to be parsed
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#
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def GenDefines(String, Arch, Defines):
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if String.find(DataType.TAB_DEFINE + ' ') > -1:
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List = String.replace(DataType.TAB_DEFINE + ' ', '').\
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split(DataType.TAB_EQUAL_SPLIT)
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if len(List) == 2:
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Defines[(CleanString(List[0]), Arch)] = CleanString(List[1])
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return 0
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else:
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return -1
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return 1
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## GetLibraryClassesWithModuleType
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#
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# Get Library Class definition when no module type defined
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#
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# @param Lines: The content to be parsed
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# @param Key: Reserved
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# @param KeyValues: To store data after parsing
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# @param CommentCharacter: Comment char, used to ignore comment content
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#
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def GetLibraryClassesWithModuleType(Lines, Key, KeyValues, CommentCharacter):
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NewKey = SplitModuleType(Key)
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Lines = Lines.split(DataType.TAB_SECTION_END, 1)[1]
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LineList = Lines.splitlines()
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for Line in LineList:
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Line = CleanString(Line, CommentCharacter)
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if Line != '' and Line[0] != CommentCharacter:
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KeyValues.append([CleanString(Line, CommentCharacter), NewKey[1]])
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return True
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## GetDynamics
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#
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# Get Dynamic Pcds
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#
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# @param Lines: The content to be parsed
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# @param Key: Reserved
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# @param KeyValues: To store data after parsing
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# @param CommentCharacter: Comment char, used to ignore comment content
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#
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def GetDynamics(Lines, Key, KeyValues, CommentCharacter):
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#
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# Get SkuId Name List
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#
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SkuIdNameList = SplitModuleType(Key)
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Lines = Lines.split(DataType.TAB_SECTION_END, 1)[1]
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LineList = Lines.splitlines()
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for Line in LineList:
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Line = CleanString(Line, CommentCharacter)
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if Line != '' and Line[0] != CommentCharacter:
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KeyValues.append([CleanString(Line, CommentCharacter), SkuIdNameList[1]])
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return True
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## SplitModuleType
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#
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# Split ModuleType out of section defien to get key
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# [LibraryClass.Arch.ModuleType|ModuleType|ModuleType] -> [
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# 'LibraryClass.Arch', ['ModuleType', 'ModuleType', 'ModuleType'] ]
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#
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# @param Key: String to be parsed
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#
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def SplitModuleType(Key):
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KeyList = Key.split(DataType.TAB_SPLIT)
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#
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# Fill in for arch
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#
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KeyList.append('')
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#
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# Fill in for moduletype
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#
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KeyList.append('')
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ReturnValue = []
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KeyValue = KeyList[0]
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if KeyList[1] != '':
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KeyValue = KeyValue + DataType.TAB_SPLIT + KeyList[1]
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ReturnValue.append(KeyValue)
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ReturnValue.append(GetSplitValueList(KeyList[2]))
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return ReturnValue
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## Replace macro in string
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#
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# This method replace macros used in given string. The macros are given in a
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# dictionary.
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#
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# @param String String to be processed
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# @param MacroDefinitions The macro definitions in the form of dictionary
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# @param SelfReplacement To decide whether replace un-defined macro to ''
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# @param Line: The content contain line string and line number
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# @param FileName: The meta-file file name
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#
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def ReplaceMacro(String, MacroDefinitions = None, SelfReplacement = False, Line = None, FileName = None, Flag = False):
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LastString = String
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if MacroDefinitions == None:
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MacroDefinitions = {}
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while MacroDefinitions:
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QuotedStringList = []
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HaveQuotedMacroFlag = False
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if not Flag:
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MacroUsed = gMACRO_PATTERN.findall(String)
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else:
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ReQuotedString = re.compile('\"')
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QuotedStringList = ReQuotedString.split(String)
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if len(QuotedStringList) >= 3:
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HaveQuotedMacroFlag = True
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Count = 0
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MacroString = ""
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for QuotedStringItem in QuotedStringList:
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Count += 1
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if Count % 2 != 0:
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MacroString += QuotedStringItem
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if Count == len(QuotedStringList) and Count%2 == 0:
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MacroString += QuotedStringItem
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MacroUsed = gMACRO_PATTERN.findall(MacroString)
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#
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# no macro found in String, stop replacing
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#
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if len(MacroUsed) == 0:
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break
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for Macro in MacroUsed:
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if Macro not in MacroDefinitions:
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if SelfReplacement:
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String = String.replace("$(%s)" % Macro, '')
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Logger.Debug(5, "Delete undefined MACROs in file %s line %d: %s!" %(FileName, Line[1], Line[0]))
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continue
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if not HaveQuotedMacroFlag:
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String = String.replace("$(%s)" % Macro, MacroDefinitions[Macro])
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else:
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Count = 0
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for QuotedStringItem in QuotedStringList:
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Count += 1
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if Count % 2 != 0:
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QuotedStringList[Count-1] = QuotedStringList[Count-1].replace("$(%s)" % Macro,
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MacroDefinitions[Macro])
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elif Count == len(QuotedStringList) and Count%2 == 0:
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QuotedStringList[Count-1] = QuotedStringList[Count-1].replace("$(%s)" % Macro,
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MacroDefinitions[Macro])
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RetString = ''
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if HaveQuotedMacroFlag:
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Count = 0
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for QuotedStringItem in QuotedStringList:
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Count += 1
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if Count != len(QuotedStringList):
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RetString += QuotedStringList[Count-1] + "\""
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else:
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RetString += QuotedStringList[Count-1]
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String = RetString
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#
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# in case there's macro not defined
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#
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if String == LastString:
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break
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LastString = String
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return String
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## NormPath
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#
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# Create a normal path
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# And replace DFEINE in the path
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#
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# @param Path: The input value for Path to be converted
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# @param Defines: A set for DEFINE statement
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#
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def NormPath(Path, Defines = None):
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IsRelativePath = False
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if Defines == None:
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Defines = {}
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if Path:
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if Path[0] == '.':
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IsRelativePath = True
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#
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# Replace with Define
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#
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if Defines:
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Path = ReplaceMacro(Path, Defines)
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#
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# To local path format
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#
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Path = os.path.normpath(Path)
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if IsRelativePath and Path[0] != '.':
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Path = os.path.join('.', Path)
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return Path
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## CleanString
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#
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# Remove comments in a string
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# Remove spaces
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#
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# @param Line: The string to be cleaned
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# @param CommentCharacter: Comment char, used to ignore comment content,
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# default is DataType.TAB_COMMENT_SPLIT
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#
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def CleanString(Line, CommentCharacter=DataType.TAB_COMMENT_SPLIT, AllowCppStyleComment=False):
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#
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# remove whitespace
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#
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Line = Line.strip()
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#
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# Replace EDK1's comment character
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#
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if AllowCppStyleComment:
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Line = Line.replace(DataType.TAB_COMMENT_EDK1_SPLIT, CommentCharacter)
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#
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# remove comments, but we should escape comment character in string
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#
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InString = False
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for Index in range(0, len(Line)):
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if Line[Index] == '"':
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InString = not InString
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elif Line[Index] == CommentCharacter and not InString:
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Line = Line[0: Index]
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break
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#
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# remove whitespace again
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#
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Line = Line.strip()
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return Line
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## CleanString2
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#
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# Split comments in a string
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# Remove spaces
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#
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# @param Line: The string to be cleaned
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# @param CommentCharacter: Comment char, used to ignore comment content,
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# default is DataType.TAB_COMMENT_SPLIT
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#
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def CleanString2(Line, CommentCharacter=DataType.TAB_COMMENT_SPLIT, AllowCppStyleComment=False):
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#
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# remove whitespace
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#
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Line = Line.strip()
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#
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# Replace EDK1's comment character
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#
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if AllowCppStyleComment:
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Line = Line.replace(DataType.TAB_COMMENT_EDK1_SPLIT, CommentCharacter)
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#
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# separate comments and statements
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#
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LineParts = Line.split(CommentCharacter, 1)
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#
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# remove whitespace again
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#
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Line = LineParts[0].strip()
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if len(LineParts) > 1:
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Comment = LineParts[1].strip()
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#
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# Remove prefixed and trailing comment characters
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#
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Start = 0
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End = len(Comment)
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while Start < End and Comment.startswith(CommentCharacter, Start, End):
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Start += 1
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while End >= 0 and Comment.endswith(CommentCharacter, Start, End):
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End -= 1
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Comment = Comment[Start:End]
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Comment = Comment.strip()
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else:
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Comment = ''
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return Line, Comment
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## GetMultipleValuesOfKeyFromLines
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#
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# Parse multiple strings to clean comment and spaces
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# The result is saved to KeyValues
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#
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# @param Lines: The content to be parsed
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# @param Key: Reserved
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# @param KeyValues: To store data after parsing
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# @param CommentCharacter: Comment char, used to ignore comment content
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#
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def GetMultipleValuesOfKeyFromLines(Lines, Key, KeyValues, CommentCharacter):
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if Key:
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pass
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if KeyValues:
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pass
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Lines = Lines.split(DataType.TAB_SECTION_END, 1)[1]
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LineList = Lines.split('\n')
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for Line in LineList:
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Line = CleanString(Line, CommentCharacter)
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if Line != '' and Line[0] != CommentCharacter:
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KeyValues += [Line]
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return True
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## GetDefineValue
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#
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# Parse a DEFINE statement to get defined value
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# DEFINE Key Value
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#
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# @param String: The content to be parsed
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# @param Key: The key of DEFINE statement
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# @param CommentCharacter: Comment char, used to ignore comment content
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#
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def GetDefineValue(String, Key, CommentCharacter):
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if CommentCharacter:
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pass
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String = CleanString(String)
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return String[String.find(Key + ' ') + len(Key + ' ') : ]
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## GetSingleValueOfKeyFromLines
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#
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# Parse multiple strings as below to get value of each definition line
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# Key1 = Value1
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# Key2 = Value2
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# The result is saved to Dictionary
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#
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# @param Lines: The content to be parsed
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# @param Dictionary: To store data after parsing
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# @param CommentCharacter: Comment char, be used to ignore comment content
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# @param KeySplitCharacter: Key split char, between key name and key value.
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# Key1 = Value1, '=' is the key split char
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# @param ValueSplitFlag: Value split flag, be used to decide if has
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# multiple values
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# @param ValueSplitCharacter: Value split char, be used to split multiple
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# values. Key1 = Value1|Value2, '|' is the value
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# split char
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#
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def GetSingleValueOfKeyFromLines(Lines, Dictionary, CommentCharacter, KeySplitCharacter, \
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ValueSplitFlag, ValueSplitCharacter):
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Lines = Lines.split('\n')
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Keys = []
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Value = ''
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DefineValues = ['']
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SpecValues = ['']
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for Line in Lines:
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#
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# Handle DEFINE and SPEC
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#
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if Line.find(DataType.TAB_INF_DEFINES_DEFINE + ' ') > -1:
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if '' in DefineValues:
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DefineValues.remove('')
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DefineValues.append(GetDefineValue(Line, DataType.TAB_INF_DEFINES_DEFINE, CommentCharacter))
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continue
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if Line.find(DataType.TAB_INF_DEFINES_SPEC + ' ') > -1:
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if '' in SpecValues:
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SpecValues.remove('')
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SpecValues.append(GetDefineValue(Line, DataType.TAB_INF_DEFINES_SPEC, CommentCharacter))
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continue
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#
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# Handle Others
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#
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LineList = Line.split(KeySplitCharacter, 1)
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if len(LineList) >= 2:
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Key = LineList[0].split()
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if len(Key) == 1 and Key[0][0] != CommentCharacter:
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#
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# Remove comments and white spaces
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#
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LineList[1] = CleanString(LineList[1], CommentCharacter)
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if ValueSplitFlag:
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Value = map(strip, LineList[1].split(ValueSplitCharacter))
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else:
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Value = CleanString(LineList[1], CommentCharacter).splitlines()
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if Key[0] in Dictionary:
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if Key[0] not in Keys:
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Dictionary[Key[0]] = Value
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Keys.append(Key[0])
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else:
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Dictionary[Key[0]].extend(Value)
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else:
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Dictionary[DataType.TAB_INF_DEFINES_MACRO][Key[0]] = Value[0]
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if DefineValues == []:
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DefineValues = ['']
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if SpecValues == []:
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SpecValues = ['']
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Dictionary[DataType.TAB_INF_DEFINES_DEFINE] = DefineValues
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Dictionary[DataType.TAB_INF_DEFINES_SPEC] = SpecValues
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return True
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## The content to be parsed
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#
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# Do pre-check for a file before it is parsed
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# Check $()
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# Check []
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#
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# @param FileName: Used for error report
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# @param FileContent: File content to be parsed
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# @param SupSectionTag: Used for error report
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#
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def PreCheck(FileName, FileContent, SupSectionTag):
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if SupSectionTag:
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pass
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LineNo = 0
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IsFailed = False
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NewFileContent = ''
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for Line in FileContent.splitlines():
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LineNo = LineNo + 1
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#
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# Clean current line
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#
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Line = CleanString(Line)
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#
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# Remove commented line
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#
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if Line.find(DataType.TAB_COMMA_SPLIT) == 0:
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Line = ''
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#
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# Check $()
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#
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if Line.find('$') > -1:
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if Line.find('$(') < 0 or Line.find(')') < 0:
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Logger.Error("Parser", FORMAT_INVALID, Line=LineNo, File=FileName, RaiseError = Logger.IS_RAISE_ERROR)
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#
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# Check []
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#
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if Line.find('[') > -1 or Line.find(']') > -1:
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#
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# Only get one '[' or one ']'
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#
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if not (Line.find('[') > -1 and Line.find(']') > -1):
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Logger.Error("Parser", FORMAT_INVALID, Line=LineNo, File=FileName, RaiseError = Logger.IS_RAISE_ERROR)
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#
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# Regenerate FileContent
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#
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NewFileContent = NewFileContent + Line + '\r\n'
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if IsFailed:
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Logger.Error("Parser", FORMAT_INVALID, Line=LineNo, File=FileName, RaiseError = Logger.IS_RAISE_ERROR)
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return NewFileContent
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|
|
## CheckFileType
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#
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# Check if the Filename is including ExtName
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# Return True if it exists
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# Raise a error message if it not exists
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#
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# @param CheckFilename: Name of the file to be checked
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|
# @param ExtName: Ext name of the file to be checked
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|
# @param ContainerFilename: The container file which describes the file to be
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# checked, used for error report
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# @param SectionName: Used for error report
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# @param Line: The line in container file which defines the file
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# to be checked
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#
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def CheckFileType(CheckFilename, ExtName, ContainerFilename, SectionName, Line, LineNo=-1):
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if CheckFilename != '' and CheckFilename != None:
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(Root, Ext) = os.path.splitext(CheckFilename)
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if Ext.upper() != ExtName.upper() and Root:
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ContainerFile = open(ContainerFilename, 'r').read()
|
|
if LineNo == -1:
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LineNo = GetLineNo(ContainerFile, Line)
|
|
ErrorMsg = ST.ERR_SECTIONNAME_INVALID % (SectionName, CheckFilename, ExtName)
|
|
Logger.Error("Parser", PARSER_ERROR, ErrorMsg, Line=LineNo, \
|
|
File=ContainerFilename, RaiseError=Logger.IS_RAISE_ERROR)
|
|
|
|
return True
|
|
|
|
## CheckFileExist
|
|
#
|
|
# Check if the file exists
|
|
# Return True if it exists
|
|
# Raise a error message if it not exists
|
|
#
|
|
# @param CheckFilename: Name of the file to be checked
|
|
# @param WorkspaceDir: Current workspace dir
|
|
# @param ContainerFilename: The container file which describes the file to
|
|
# be checked, used for error report
|
|
# @param SectionName: Used for error report
|
|
# @param Line: The line in container file which defines the
|
|
# file to be checked
|
|
#
|
|
def CheckFileExist(WorkspaceDir, CheckFilename, ContainerFilename, SectionName, Line, LineNo=-1):
|
|
CheckFile = ''
|
|
if CheckFilename != '' and CheckFilename != None:
|
|
CheckFile = WorkspaceFile(WorkspaceDir, CheckFilename)
|
|
if not os.path.isfile(CheckFile):
|
|
ContainerFile = open(ContainerFilename, 'r').read()
|
|
if LineNo == -1:
|
|
LineNo = GetLineNo(ContainerFile, Line)
|
|
ErrorMsg = ST.ERR_CHECKFILE_NOTFOUND % (CheckFile, SectionName)
|
|
Logger.Error("Parser", PARSER_ERROR, ErrorMsg,
|
|
File=ContainerFilename, Line = LineNo, RaiseError=Logger.IS_RAISE_ERROR)
|
|
return CheckFile
|
|
|
|
## GetLineNo
|
|
#
|
|
# Find the index of a line in a file
|
|
#
|
|
# @param FileContent: Search scope
|
|
# @param Line: Search key
|
|
#
|
|
def GetLineNo(FileContent, Line, IsIgnoreComment=True):
|
|
LineList = FileContent.splitlines()
|
|
for Index in range(len(LineList)):
|
|
if LineList[Index].find(Line) > -1:
|
|
#
|
|
# Ignore statement in comment
|
|
#
|
|
if IsIgnoreComment:
|
|
if LineList[Index].strip()[0] == DataType.TAB_COMMENT_SPLIT:
|
|
continue
|
|
return Index + 1
|
|
|
|
return -1
|
|
|
|
## RaiseParserError
|
|
#
|
|
# Raise a parser error
|
|
#
|
|
# @param Line: String which has error
|
|
# @param Section: Used for error report
|
|
# @param File: File which has the string
|
|
# @param Format: Correct format
|
|
#
|
|
def RaiseParserError(Line, Section, File, Format='', LineNo=-1):
|
|
if LineNo == -1:
|
|
LineNo = GetLineNo(open(os.path.normpath(File), 'r').read(), Line)
|
|
ErrorMsg = ST.ERR_INVALID_NOTFOUND % (Line, Section)
|
|
if Format != '':
|
|
Format = "Correct format is " + Format
|
|
Logger.Error("Parser", PARSER_ERROR, ErrorMsg, File=File, Line=LineNo, \
|
|
ExtraData=Format, RaiseError=Logger.IS_RAISE_ERROR)
|
|
|
|
## WorkspaceFile
|
|
#
|
|
# Return a full path with workspace dir
|
|
#
|
|
# @param WorkspaceDir: Workspace dir
|
|
# @param Filename: Relative file name
|
|
#
|
|
def WorkspaceFile(WorkspaceDir, Filename):
|
|
return os.path.join(NormPath(WorkspaceDir), NormPath(Filename))
|
|
|
|
## Split string
|
|
#
|
|
# Revmove '"' which startswith and endswith string
|
|
#
|
|
# @param String: The string need to be splited
|
|
#
|
|
def SplitString(String):
|
|
if String.startswith('\"'):
|
|
String = String[1:]
|
|
if String.endswith('\"'):
|
|
String = String[:-1]
|
|
return String
|
|
|
|
## Convert To Sql String
|
|
#
|
|
# Replace "'" with "''" in each item of StringList
|
|
#
|
|
# @param StringList: A list for strings to be converted
|
|
#
|
|
def ConvertToSqlString(StringList):
|
|
return map(lambda s: s.replace("'", "''") , StringList)
|
|
|
|
## Convert To Sql String
|
|
#
|
|
# Replace "'" with "''" in the String
|
|
#
|
|
# @param String: A String to be converted
|
|
#
|
|
def ConvertToSqlString2(String):
|
|
return String.replace("'", "''")
|
|
|
|
## GetStringOfList
|
|
#
|
|
# Get String of a List
|
|
#
|
|
# @param Lines: string list
|
|
# @param Split: split character
|
|
#
|
|
def GetStringOfList(List, Split = ' '):
|
|
if type(List) != type([]):
|
|
return List
|
|
Str = ''
|
|
for Item in List:
|
|
Str = Str + Item + Split
|
|
return Str.strip()
|
|
|
|
## Get HelpTextList
|
|
#
|
|
# Get HelpTextList from HelpTextClassList
|
|
#
|
|
# @param HelpTextClassList: Help Text Class List
|
|
#
|
|
def GetHelpTextList(HelpTextClassList):
|
|
List = []
|
|
if HelpTextClassList:
|
|
for HelpText in HelpTextClassList:
|
|
if HelpText.String.endswith('\n'):
|
|
HelpText.String = HelpText.String[0: len(HelpText.String) - len('\n')]
|
|
List.extend(HelpText.String.split('\n'))
|
|
return List
|
|
|
|
## Get String Array Length
|
|
#
|
|
# Get String Array Length
|
|
#
|
|
# @param String: the source string
|
|
#
|
|
def StringArrayLength(String):
|
|
if isinstance(String, unicode):
|
|
return (len(String) + 1) * 2 + 1
|
|
elif String.startswith('L"'):
|
|
return (len(String) - 3 + 1) * 2
|
|
elif String.startswith('"'):
|
|
return (len(String) - 2 + 1)
|
|
else:
|
|
return len(String.split()) + 1
|
|
|
|
## RemoveDupOption
|
|
#
|
|
# Remove Dup Option
|
|
#
|
|
# @param OptionString: the option string
|
|
# @param Which: Which flag
|
|
# @param Against: Against flag
|
|
#
|
|
def RemoveDupOption(OptionString, Which="/I", Against=None):
|
|
OptionList = OptionString.split()
|
|
ValueList = []
|
|
if Against:
|
|
ValueList += Against
|
|
for Index in range(len(OptionList)):
|
|
Opt = OptionList[Index]
|
|
if not Opt.startswith(Which):
|
|
continue
|
|
if len(Opt) > len(Which):
|
|
Val = Opt[len(Which):]
|
|
else:
|
|
Val = ""
|
|
if Val in ValueList:
|
|
OptionList[Index] = ""
|
|
else:
|
|
ValueList.append(Val)
|
|
return " ".join(OptionList)
|
|
|
|
## Check if the string is HexDgit
|
|
#
|
|
# Return true if all characters in the string are digits and there is at
|
|
# least one character
|
|
# or valid Hexs (started with 0x, following by hexdigit letters)
|
|
# , false otherwise.
|
|
# @param string: input string
|
|
#
|
|
def IsHexDigit(Str):
|
|
try:
|
|
int(Str, 10)
|
|
return True
|
|
except ValueError:
|
|
if len(Str) > 2 and Str.upper().startswith('0X'):
|
|
try:
|
|
int(Str, 16)
|
|
return True
|
|
except ValueError:
|
|
return False
|
|
return False
|
|
|
|
## Check if the string is HexDgit and its integer value within limit of UINT32
|
|
#
|
|
# Return true if all characters in the string are digits and there is at
|
|
# least one character
|
|
# or valid Hexs (started with 0x, following by hexdigit letters)
|
|
# , false otherwise.
|
|
# @param string: input string
|
|
#
|
|
def IsHexDigitUINT32(Str):
|
|
try:
|
|
Value = int(Str, 10)
|
|
if (Value <= 0xFFFFFFFF) and (Value >= 0):
|
|
return True
|
|
except ValueError:
|
|
if len(Str) > 2 and Str.upper().startswith('0X'):
|
|
try:
|
|
Value = int(Str, 16)
|
|
if (Value <= 0xFFFFFFFF) and (Value >= 0):
|
|
return True
|
|
except ValueError:
|
|
return False
|
|
return False
|
|
|
|
## CleanSpecialChar
|
|
#
|
|
# The ASCII text files of type INF, DEC, INI are edited by developers,
|
|
# and may contain characters that cannot be directly translated to strings that
|
|
# are conformant with the UDP XML Schema. Any characters in this category
|
|
# (0x00-0x08, TAB [0x09], 0x0B, 0x0C, 0x0E-0x1F, 0x80-0xFF)
|
|
# must be converted to a space character[0x20] as part of the parsing process.
|
|
#
|
|
def ConvertSpecialChar(Lines):
|
|
RetLines = []
|
|
for line in Lines:
|
|
ReMatchSpecialChar = re.compile(r"[\x00-\x08]|\x09|\x0b|\x0c|[\x0e-\x1f]|[\x7f-\xff]")
|
|
RetLines.append(ReMatchSpecialChar.sub(' ', line))
|
|
|
|
return RetLines
|
|
|
|
## __GetTokenList
|
|
#
|
|
# Assume Str is a valid feature flag expression.
|
|
# Return a list which contains tokens: alpha numeric token and other token
|
|
# Whitespace are not stripped
|
|
#
|
|
def __GetTokenList(Str):
|
|
InQuote = False
|
|
Token = ''
|
|
TokenOP = ''
|
|
PreChar = ''
|
|
List = []
|
|
for Char in Str:
|
|
if InQuote:
|
|
Token += Char
|
|
if Char == '"' and PreChar != '\\':
|
|
InQuote = not InQuote
|
|
List.append(Token)
|
|
Token = ''
|
|
continue
|
|
if Char == '"':
|
|
if Token and Token != 'L':
|
|
List.append(Token)
|
|
Token = ''
|
|
if TokenOP:
|
|
List.append(TokenOP)
|
|
TokenOP = ''
|
|
InQuote = not InQuote
|
|
Token += Char
|
|
continue
|
|
|
|
if not (Char.isalnum() or Char in '_'):
|
|
TokenOP += Char
|
|
if Token:
|
|
List.append(Token)
|
|
Token = ''
|
|
else:
|
|
Token += Char
|
|
if TokenOP:
|
|
List.append(TokenOP)
|
|
TokenOP = ''
|
|
|
|
if PreChar == '\\' and Char == '\\':
|
|
PreChar = ''
|
|
else:
|
|
PreChar = Char
|
|
if Token:
|
|
List.append(Token)
|
|
if TokenOP:
|
|
List.append(TokenOP)
|
|
return List
|
|
|
|
## ConvertNEToNOTEQ
|
|
#
|
|
# Convert NE operator to NOT EQ
|
|
# For example: 1 NE 2 -> 1 NOT EQ 2
|
|
#
|
|
# @param Expr: Feature flag expression to be converted
|
|
#
|
|
def ConvertNEToNOTEQ(Expr):
|
|
List = __GetTokenList(Expr)
|
|
for Index in range(len(List)):
|
|
if List[Index] == 'NE':
|
|
List[Index] = 'NOT EQ'
|
|
return ''.join(List)
|
|
|
|
## ConvertNOTEQToNE
|
|
#
|
|
# Convert NOT EQ operator to NE
|
|
# For example: 1 NOT NE 2 -> 1 NE 2
|
|
#
|
|
# @param Expr: Feature flag expression to be converted
|
|
#
|
|
def ConvertNOTEQToNE(Expr):
|
|
List = __GetTokenList(Expr)
|
|
HasNOT = False
|
|
RetList = []
|
|
for Token in List:
|
|
if HasNOT and Token == 'EQ':
|
|
# At least, 'NOT' is in the list
|
|
while not RetList[-1].strip():
|
|
RetList.pop()
|
|
RetList[-1] = 'NE'
|
|
HasNOT = False
|
|
continue
|
|
if Token == 'NOT':
|
|
HasNOT = True
|
|
elif Token.strip():
|
|
HasNOT = False
|
|
RetList.append(Token)
|
|
|
|
return ''.join(RetList)
|
|
|
|
## SplitPcdEntry
|
|
#
|
|
# Split an PCD entry string to Token.CName and PCD value and FFE.
|
|
# NOTE: PCD Value and FFE can contain "|" in it's expression. And in INF specification, have below rule.
|
|
# When using the characters "|" or "||" in an expression, the expression must be encapsulated in
|
|
# open "(" and close ")" parenthesis.
|
|
#
|
|
# @param String An PCD entry string need to be split.
|
|
#
|
|
# @return List [PcdTokenCName, Value, FFE]
|
|
#
|
|
def SplitPcdEntry(String):
|
|
if not String:
|
|
return ['', '',''], False
|
|
|
|
PcdTokenCName = ''
|
|
PcdValue = ''
|
|
PcdFeatureFlagExp = ''
|
|
|
|
ValueList = GetSplitValueList(String, "|", 1)
|
|
|
|
#
|
|
# Only contain TokenCName
|
|
#
|
|
if len(ValueList) == 1:
|
|
return [ValueList[0]], True
|
|
|
|
NewValueList = []
|
|
|
|
if len(ValueList) == 2:
|
|
PcdTokenCName = ValueList[0]
|
|
ValueList = GetSplitValueList(ValueList[1], "|")
|
|
|
|
RemainCount = 0
|
|
for Item in ValueList:
|
|
ParenthesisCount = 0
|
|
for Char in Item:
|
|
if Char == "(":
|
|
ParenthesisCount += 1
|
|
if Char == ")":
|
|
ParenthesisCount -= 1
|
|
|
|
#
|
|
# An individual item
|
|
#
|
|
if RemainCount == 0 and ParenthesisCount >= 0:
|
|
NewValueList.append(Item)
|
|
RemainCount = ParenthesisCount
|
|
elif RemainCount > 0 and RemainCount + ParenthesisCount >= 0:
|
|
NewValueList[-1] = NewValueList[-1] + '|' + Item
|
|
RemainCount = RemainCount + ParenthesisCount
|
|
elif RemainCount > 0 and RemainCount + ParenthesisCount < 0:
|
|
#
|
|
# ERROR, return
|
|
#
|
|
return ['', '', ''], False
|
|
|
|
if len(NewValueList) == 1:
|
|
PcdValue = NewValueList[0]
|
|
return [PcdTokenCName, PcdValue], True
|
|
elif len(NewValueList) == 2:
|
|
PcdValue = NewValueList[0]
|
|
PcdFeatureFlagExp = NewValueList[1]
|
|
return [PcdTokenCName, PcdValue, PcdFeatureFlagExp], True
|
|
else:
|
|
return ['', '', ''], False
|
|
|
|
return ['', '', ''], False
|
|
|
|
## Check if two arches matched?
|
|
#
|
|
# @param Arch1
|
|
# @param Arch2
|
|
#
|
|
def IsMatchArch(Arch1, Arch2):
|
|
if 'COMMON' in Arch1 or 'COMMON' in Arch2:
|
|
return True
|
|
if isinstance(Arch1, basestring) and isinstance(Arch2, basestring):
|
|
if Arch1 == Arch2:
|
|
return True
|
|
|
|
if isinstance(Arch1, basestring) and isinstance(Arch2, list):
|
|
return Arch1 in Arch2
|
|
|
|
if isinstance(Arch2, basestring) and isinstance(Arch1, list):
|
|
return Arch2 in Arch1
|
|
|
|
if isinstance(Arch1, list) and isinstance(Arch2, list):
|
|
for Item1 in Arch1:
|
|
for Item2 in Arch2:
|
|
if Item1 == Item2:
|
|
return True
|
|
|
|
return False
|