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1 ## @file
2 # This file is used to parse and evaluate expression in directive or PCD value.
3 #
4 # Copyright (c) 2011 - 2017, Intel Corporation. All rights reserved.<BR>
5 # This program and the accompanying materials
6 # are licensed and made available under the terms and conditions of the BSD License
7 # which accompanies this distribution. The full text of the license may be found at
8 # http://opensource.org/licenses/bsd-license.php
9 #
10 # THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
11 # WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
12
13 ## Import Modules
14 #
15 from Common.GlobalData import *
16 from CommonDataClass.Exceptions import BadExpression
17 from CommonDataClass.Exceptions import WrnExpression
18 from Misc import GuidStringToGuidStructureString
19
20 ERR_STRING_EXPR = 'This operator cannot be used in string expression: [%s].'
21 ERR_SNYTAX = 'Syntax error, the rest of expression cannot be evaluated: [%s].'
22 ERR_MATCH = 'No matching right parenthesis.'
23 ERR_STRING_TOKEN = 'Bad string token: [%s].'
24 ERR_MACRO_TOKEN = 'Bad macro token: [%s].'
25 ERR_EMPTY_TOKEN = 'Empty token is not allowed.'
26 ERR_PCD_RESOLVE = 'PCD token cannot be resolved: [%s].'
27 ERR_VALID_TOKEN = 'No more valid token found from rest of string: [%s].'
28 ERR_EXPR_TYPE = 'Different types found in expression.'
29 ERR_OPERATOR_UNSUPPORT = 'Unsupported operator: [%s]'
30 ERR_REL_NOT_IN = 'Expect "IN" after "not" operator.'
31 WRN_BOOL_EXPR = 'Operand of boolean type cannot be used in arithmetic expression.'
32 WRN_EQCMP_STR_OTHERS = '== Comparison between Operand of string type and Boolean/Number Type always return False.'
33 WRN_NECMP_STR_OTHERS = '!= Comparison between Operand of string type and Boolean/Number Type always return True.'
34 ERR_RELCMP_STR_OTHERS = 'Operator taking Operand of string type and Boolean/Number Type is not allowed: [%s].'
35 ERR_STRING_CMP = 'Unicode string and general string cannot be compared: [%s %s %s]'
36 ERR_ARRAY_TOKEN = 'Bad C array or C format GUID token: [%s].'
37 ERR_ARRAY_ELE = 'This must be HEX value for NList or Array: [%s].'
38 ERR_EMPTY_EXPR = 'Empty expression is not allowed.'
39 ERR_IN_OPERAND = 'Macro after IN operator can only be: $(FAMILY), $(ARCH), $(TOOL_CHAIN_TAG) and $(TARGET).'
40
41 ## SplitString
42 # Split string to list according double quote
43 # For example: abc"de\"f"ghi"jkl"mn will be: ['abc', '"de\"f"', 'ghi', '"jkl"', 'mn']
44 #
45 def SplitString(String):
46 # There might be escaped quote: "abc\"def\\\"ghi"
47 Str = String.replace('\\\\', '//').replace('\\\"', '\\\'')
48 RetList = []
49 InQuote = False
50 Item = ''
51 for i, ch in enumerate(Str):
52 if ch == '"':
53 InQuote = not InQuote
54 if not InQuote:
55 Item += String[i]
56 RetList.append(Item)
57 Item = ''
58 continue
59 if Item:
60 RetList.append(Item)
61 Item = ''
62 Item += String[i]
63 if InQuote:
64 raise BadExpression(ERR_STRING_TOKEN % Item)
65 if Item:
66 RetList.append(Item)
67 return RetList
68
69 ## ReplaceExprMacro
70 #
71 def ReplaceExprMacro(String, Macros, ExceptionList = None):
72 StrList = SplitString(String)
73 for i, String in enumerate(StrList):
74 InQuote = False
75 if String.startswith('"'):
76 InQuote = True
77 MacroStartPos = String.find('$(')
78 if MacroStartPos < 0:
79 for Pcd in gPlatformPcds.keys():
80 if Pcd in String:
81 if Pcd not in gConditionalPcds:
82 gConditionalPcds.append(Pcd)
83 continue
84 RetStr = ''
85 while MacroStartPos >= 0:
86 RetStr = String[0:MacroStartPos]
87 MacroEndPos = String.find(')', MacroStartPos)
88 if MacroEndPos < 0:
89 raise BadExpression(ERR_MACRO_TOKEN % String[MacroStartPos:])
90 Macro = String[MacroStartPos+2:MacroEndPos]
91 if Macro not in Macros:
92 # From C reference manual:
93 # If an undefined macro name appears in the constant-expression of
94 # !if or !elif, it is replaced by the integer constant 0.
95 RetStr += '0'
96 elif not InQuote:
97 Tklst = RetStr.split()
98 if Tklst and Tklst[-1] in ['IN', 'in'] and ExceptionList and Macro not in ExceptionList:
99 raise BadExpression(ERR_IN_OPERAND)
100 # Make sure the macro in exception list is encapsulated by double quote
101 # For example: DEFINE ARCH = IA32 X64
102 # $(ARCH) is replaced with "IA32 X64"
103 if ExceptionList and Macro in ExceptionList:
104 RetStr += '"' + Macros[Macro] + '"'
105 elif Macros[Macro].strip():
106 RetStr += Macros[Macro]
107 else:
108 RetStr += '""'
109 else:
110 RetStr += Macros[Macro]
111 RetStr += String[MacroEndPos+1:]
112 String = RetStr
113 MacroStartPos = String.find('$(')
114 StrList[i] = RetStr
115 return ''.join(StrList)
116
117 SupportedInMacroList = ['TARGET', 'TOOL_CHAIN_TAG', 'ARCH', 'FAMILY']
118
119 class ValueExpression(object):
120 # Logical operator mapping
121 LogicalOperators = {
122 '&&' : 'and', '||' : 'or',
123 '!' : 'not', 'AND': 'and',
124 'OR' : 'or' , 'NOT': 'not',
125 'XOR': '^' , 'xor': '^',
126 'EQ' : '==' , 'NE' : '!=',
127 'GT' : '>' , 'LT' : '<',
128 'GE' : '>=' , 'LE' : '<=',
129 'IN' : 'in'
130 }
131
132 NonLetterOpLst = ['+', '-', '*', '/', '%', '&', '|', '^', '~', '<<', '>>', '!', '=', '>', '<']
133
134 PcdPattern = re.compile(r'[_a-zA-Z][0-9A-Za-z_]*\.[_a-zA-Z][0-9A-Za-z_]*$')
135 HexPattern = re.compile(r'0[xX][0-9a-fA-F]+$')
136 RegGuidPattern = re.compile(r'[0-9a-fA-F]{8}-[0-9a-fA-F]{4}-[0-9a-fA-F]{4}-[0-9a-fA-F]{4}-[0-9a-fA-F]{12}')
137
138 SymbolPattern = re.compile("("
139 "\$\([A-Z][A-Z0-9_]*\)|\$\(\w+\.\w+\)|\w+\.\w+|"
140 "&&|\|\||!(?!=)|"
141 "(?<=\W)AND(?=\W)|(?<=\W)OR(?=\W)|(?<=\W)NOT(?=\W)|(?<=\W)XOR(?=\W)|"
142 "(?<=\W)EQ(?=\W)|(?<=\W)NE(?=\W)|(?<=\W)GT(?=\W)|(?<=\W)LT(?=\W)|(?<=\W)GE(?=\W)|(?<=\W)LE(?=\W)"
143 ")")
144
145 @staticmethod
146 def Eval(Operator, Oprand1, Oprand2 = None):
147 WrnExp = None
148
149 if Operator not in ["==", "!=", ">=", "<=", ">", "<", "in", "not in"] and \
150 (type(Oprand1) == type('') or type(Oprand2) == type('')):
151 raise BadExpression(ERR_STRING_EXPR % Operator)
152
153 TypeDict = {
154 type(0) : 0,
155 type(0L) : 0,
156 type('') : 1,
157 type(True) : 2
158 }
159
160 EvalStr = ''
161 if Operator in ["!", "NOT", "not"]:
162 if type(Oprand1) == type(''):
163 raise BadExpression(ERR_STRING_EXPR % Operator)
164 EvalStr = 'not Oprand1'
165 elif Operator in ["~"]:
166 if type(Oprand1) == type(''):
167 raise BadExpression(ERR_STRING_EXPR % Operator)
168 EvalStr = '~ Oprand1'
169 else:
170 if Operator in ["+", "-"] and (type(True) in [type(Oprand1), type(Oprand2)]):
171 # Boolean in '+'/'-' will be evaluated but raise warning
172 WrnExp = WrnExpression(WRN_BOOL_EXPR)
173 elif type('') in [type(Oprand1), type(Oprand2)] and type(Oprand1)!= type(Oprand2):
174 # == between string and number/boolean will always return False, != return True
175 if Operator == "==":
176 WrnExp = WrnExpression(WRN_EQCMP_STR_OTHERS)
177 WrnExp.result = False
178 raise WrnExp
179 elif Operator == "!=":
180 WrnExp = WrnExpression(WRN_NECMP_STR_OTHERS)
181 WrnExp.result = True
182 raise WrnExp
183 else:
184 raise BadExpression(ERR_RELCMP_STR_OTHERS % Operator)
185 elif TypeDict[type(Oprand1)] != TypeDict[type(Oprand2)]:
186 if Operator in ["==", "!=", ">=", "<=", ">", "<"] and set((TypeDict[type(Oprand1)], TypeDict[type(Oprand2)])) == set((TypeDict[type(True)], TypeDict[type(0)])):
187 # comparison between number and boolean is allowed
188 pass
189 elif Operator in ['&', '|', '^', "and", "or"] and set((TypeDict[type(Oprand1)], TypeDict[type(Oprand2)])) == set((TypeDict[type(True)], TypeDict[type(0)])):
190 # bitwise and logical operation between number and boolean is allowed
191 pass
192 else:
193 raise BadExpression(ERR_EXPR_TYPE)
194 if type(Oprand1) == type('') and type(Oprand2) == type(''):
195 if (Oprand1.startswith('L"') and not Oprand2.startswith('L"')) or \
196 (not Oprand1.startswith('L"') and Oprand2.startswith('L"')):
197 raise BadExpression(ERR_STRING_CMP % (Oprand1, Operator, Oprand2))
198 if 'in' in Operator and type(Oprand2) == type(''):
199 Oprand2 = Oprand2.split()
200 EvalStr = 'Oprand1 ' + Operator + ' Oprand2'
201
202 # Local symbols used by built in eval function
203 Dict = {
204 'Oprand1' : Oprand1,
205 'Oprand2' : Oprand2
206 }
207 try:
208 Val = eval(EvalStr, {}, Dict)
209 except Exception, Excpt:
210 raise BadExpression(str(Excpt))
211
212 if Operator in ['and', 'or']:
213 if Val:
214 Val = True
215 else:
216 Val = False
217
218 if WrnExp:
219 WrnExp.result = Val
220 raise WrnExp
221 return Val
222
223 def __init__(self, Expression, SymbolTable={}):
224 self._NoProcess = False
225 if type(Expression) != type(''):
226 self._Expr = Expression
227 self._NoProcess = True
228 return
229
230 self._Expr = ReplaceExprMacro(Expression.strip(),
231 SymbolTable,
232 SupportedInMacroList)
233
234 if not self._Expr.strip():
235 raise BadExpression(ERR_EMPTY_EXPR)
236
237 #
238 # The symbol table including PCD and macro mapping
239 #
240 self._Symb = SymbolTable
241 self._Symb.update(self.LogicalOperators)
242 self._Idx = 0
243 self._Len = len(self._Expr)
244 self._Token = ''
245 self._WarnExcept = None
246
247 # Literal token without any conversion
248 self._LiteralToken = ''
249
250 # Public entry for this class
251 # @param RealValue: False: only evaluate if the expression is true or false, used for conditional expression
252 # True : return the evaluated str(value), used for PCD value
253 #
254 # @return: True or False if RealValue is False
255 # Evaluated value of string format if RealValue is True
256 #
257 def __call__(self, RealValue=False, Depth=0):
258 if self._NoProcess:
259 return self._Expr
260
261 self._Depth = Depth
262
263 self._Expr = self._Expr.strip()
264 if RealValue and Depth == 0:
265 self._Token = self._Expr
266 if self.__IsNumberToken():
267 return self._Expr
268
269 try:
270 Token = self._GetToken()
271 if type(Token) == type('') and Token.startswith('{') and Token.endswith('}') and self._Idx >= self._Len:
272 return self._Expr
273 except BadExpression:
274 pass
275
276 self._Idx = 0
277 self._Token = ''
278
279 Val = self._OrExpr()
280 RealVal = Val
281 if type(Val) == type(''):
282 if Val == 'L""':
283 Val = False
284 elif not Val:
285 Val = False
286 RealVal = '""'
287 elif not Val.startswith('L"') and not Val.startswith('{'):
288 Val = True
289 RealVal = '"' + RealVal + '"'
290
291 # The expression has been parsed, but the end of expression is not reached
292 # It means the rest does not comply EBNF of <Expression>
293 if self._Idx != self._Len:
294 raise BadExpression(ERR_SNYTAX % self._Expr[self._Idx:])
295
296 if RealValue:
297 RetVal = str(RealVal)
298 elif Val:
299 RetVal = True
300 else:
301 RetVal = False
302
303 if self._WarnExcept:
304 self._WarnExcept.result = RetVal
305 raise self._WarnExcept
306 else:
307 return RetVal
308
309 # Template function to parse binary operators which have same precedence
310 # Expr [Operator Expr]*
311 def _ExprFuncTemplate(self, EvalFunc, OpLst):
312 Val = EvalFunc()
313 while self._IsOperator(OpLst):
314 Op = self._Token
315 try:
316 Val = self.Eval(Op, Val, EvalFunc())
317 except WrnExpression, Warn:
318 self._WarnExcept = Warn
319 Val = Warn.result
320 return Val
321
322 # A [|| B]*
323 def _OrExpr(self):
324 return self._ExprFuncTemplate(self._AndExpr, ["OR", "or", "||"])
325
326 # A [&& B]*
327 def _AndExpr(self):
328 return self._ExprFuncTemplate(self._BitOr, ["AND", "and", "&&"])
329
330 # A [ | B]*
331 def _BitOr(self):
332 return self._ExprFuncTemplate(self._BitXor, ["|"])
333
334 # A [ ^ B]*
335 def _BitXor(self):
336 return self._ExprFuncTemplate(self._BitAnd, ["XOR", "xor", "^"])
337
338 # A [ & B]*
339 def _BitAnd(self):
340 return self._ExprFuncTemplate(self._EqExpr, ["&"])
341
342 # A [ == B]*
343 def _EqExpr(self):
344 Val = self._RelExpr()
345 while self._IsOperator(["==", "!=", "EQ", "NE", "IN", "in", "!", "NOT", "not"]):
346 Op = self._Token
347 if Op in ["!", "NOT", "not"]:
348 if not self._IsOperator(["IN", "in"]):
349 raise BadExpression(ERR_REL_NOT_IN)
350 Op += ' ' + self._Token
351 try:
352 Val = self.Eval(Op, Val, self._RelExpr())
353 except WrnExpression, Warn:
354 self._WarnExcept = Warn
355 Val = Warn.result
356 return Val
357
358 # A [ > B]*
359 def _RelExpr(self):
360 return self._ExprFuncTemplate(self._ShiftExpr, ["<=", ">=", "<", ">", "LE", "GE", "LT", "GT"])
361
362 def _ShiftExpr(self):
363 return self._ExprFuncTemplate(self._AddExpr, ["<<", ">>"])
364
365 # A [ + B]*
366 def _AddExpr(self):
367 return self._ExprFuncTemplate(self._MulExpr, ["+", "-"])
368
369 # A [ * B]*
370 def _MulExpr(self):
371 return self._ExprFuncTemplate(self._UnaryExpr, ["*", "/", "%"])
372
373 # [!]*A
374 def _UnaryExpr(self):
375 if self._IsOperator(["!", "NOT", "not"]):
376 Val = self._UnaryExpr()
377 try:
378 return self.Eval('not', Val)
379 except WrnExpression, Warn:
380 self._WarnExcept = Warn
381 return Warn.result
382 if self._IsOperator(["~"]):
383 Val = self._UnaryExpr()
384 try:
385 return self.Eval('~', Val)
386 except WrnExpression, Warn:
387 self._WarnExcept = Warn
388 return Warn.result
389 return self._IdenExpr()
390
391 # Parse identifier or encapsulated expression
392 def _IdenExpr(self):
393 Tk = self._GetToken()
394 if Tk == '(':
395 Val = self._OrExpr()
396 try:
397 # _GetToken may also raise BadExpression
398 if self._GetToken() != ')':
399 raise BadExpression(ERR_MATCH)
400 except BadExpression:
401 raise BadExpression(ERR_MATCH)
402 return Val
403 return Tk
404
405 # Skip whitespace or tab
406 def __SkipWS(self):
407 for Char in self._Expr[self._Idx:]:
408 if Char not in ' \t':
409 break
410 self._Idx += 1
411
412 # Try to convert string to number
413 def __IsNumberToken(self):
414 Radix = 10
415 if self._Token.lower()[0:2] == '0x' and len(self._Token) > 2:
416 Radix = 16
417 try:
418 self._Token = int(self._Token, Radix)
419 return True
420 except ValueError:
421 return False
422 except TypeError:
423 return False
424
425 # Parse array: {...}
426 def __GetArray(self):
427 Token = '{'
428 self._Idx += 1
429 self.__GetNList(True)
430 Token += self._LiteralToken
431 if self._Idx >= self._Len or self._Expr[self._Idx] != '}':
432 raise BadExpression(ERR_ARRAY_TOKEN % Token)
433 Token += '}'
434
435 # All whitespace and tabs in array are already stripped.
436 IsArray = IsGuid = False
437 if len(Token.split(',')) == 11 and len(Token.split(',{')) == 2 \
438 and len(Token.split('},')) == 1:
439 HexLen = [11,6,6,5,4,4,4,4,4,4,6]
440 HexList= Token.split(',')
441 if HexList[3].startswith('{') and \
442 not [Index for Index, Hex in enumerate(HexList) if len(Hex) > HexLen[Index]]:
443 IsGuid = True
444 if Token.lstrip('{').rstrip('}').find('{') == -1:
445 if not [Hex for Hex in Token.lstrip('{').rstrip('}').split(',') if len(Hex) > 4]:
446 IsArray = True
447 if not IsArray and not IsGuid:
448 raise BadExpression(ERR_ARRAY_TOKEN % Token)
449 self._Idx += 1
450 self._Token = self._LiteralToken = Token
451 return self._Token
452
453 # Parse string, the format must be: "..."
454 def __GetString(self):
455 Idx = self._Idx
456
457 # Skip left quote
458 self._Idx += 1
459
460 # Replace escape \\\", \"
461 Expr = self._Expr[self._Idx:].replace('\\\\', '//').replace('\\\"', '\\\'')
462 for Ch in Expr:
463 self._Idx += 1
464 if Ch == '"':
465 break
466 self._Token = self._LiteralToken = self._Expr[Idx:self._Idx]
467 if not self._Token.endswith('"'):
468 raise BadExpression(ERR_STRING_TOKEN % self._Token)
469 self._Token = self._Token[1:-1]
470 return self._Token
471
472 # Get token that is comprised by alphanumeric, underscore or dot(used by PCD)
473 # @param IsAlphaOp: Indicate if parsing general token or script operator(EQ, NE...)
474 def __GetIdToken(self, IsAlphaOp = False):
475 IdToken = ''
476 for Ch in self._Expr[self._Idx:]:
477 if not self.__IsIdChar(Ch):
478 break
479 self._Idx += 1
480 IdToken += Ch
481
482 self._Token = self._LiteralToken = IdToken
483 if not IsAlphaOp:
484 self.__ResolveToken()
485 return self._Token
486
487 # Try to resolve token
488 def __ResolveToken(self):
489 if not self._Token:
490 raise BadExpression(ERR_EMPTY_TOKEN)
491
492 # PCD token
493 if self.PcdPattern.match(self._Token):
494 if self._Token not in self._Symb:
495 Ex = BadExpression(ERR_PCD_RESOLVE % self._Token)
496 Ex.Pcd = self._Token
497 raise Ex
498 self._Token = ValueExpression(self._Symb[self._Token], self._Symb)(True, self._Depth+1)
499 if type(self._Token) != type(''):
500 self._LiteralToken = hex(self._Token)
501 return
502
503 if self._Token.startswith('"'):
504 self._Token = self._Token[1:-1]
505 elif self._Token in ["FALSE", "false", "False"]:
506 self._Token = False
507 elif self._Token in ["TRUE", "true", "True"]:
508 self._Token = True
509 else:
510 self.__IsNumberToken()
511
512 def __GetNList(self, InArray=False):
513 self._GetSingleToken()
514 if not self.__IsHexLiteral():
515 if InArray:
516 raise BadExpression(ERR_ARRAY_ELE % self._Token)
517 return self._Token
518
519 self.__SkipWS()
520 Expr = self._Expr[self._Idx:]
521 if not Expr.startswith(','):
522 return self._Token
523
524 NList = self._LiteralToken
525 while Expr.startswith(','):
526 NList += ','
527 self._Idx += 1
528 self.__SkipWS()
529 self._GetSingleToken()
530 if not self.__IsHexLiteral():
531 raise BadExpression(ERR_ARRAY_ELE % self._Token)
532 NList += self._LiteralToken
533 self.__SkipWS()
534 Expr = self._Expr[self._Idx:]
535 self._Token = self._LiteralToken = NList
536 return self._Token
537
538 def __IsHexLiteral(self):
539 if self._LiteralToken.startswith('{') and \
540 self._LiteralToken.endswith('}'):
541 return True
542
543 if self.HexPattern.match(self._LiteralToken):
544 Token = self._LiteralToken[2:]
545 Token = Token.lstrip('0')
546 if not Token:
547 self._LiteralToken = '0x0'
548 else:
549 self._LiteralToken = '0x' + Token.lower()
550 return True
551 return False
552
553 def _GetToken(self):
554 return self.__GetNList()
555
556 @staticmethod
557 def __IsIdChar(Ch):
558 return Ch in '._:' or Ch.isalnum()
559
560 # Parse operand
561 def _GetSingleToken(self):
562 self.__SkipWS()
563 Expr = self._Expr[self._Idx:]
564 if Expr.startswith('L"'):
565 # Skip L
566 self._Idx += 1
567 UStr = self.__GetString()
568 self._Token = 'L"' + UStr + '"'
569 return self._Token
570
571 self._Token = ''
572 if Expr:
573 Ch = Expr[0]
574 Match = self.RegGuidPattern.match(Expr)
575 if Match and not Expr[Match.end():Match.end()+1].isalnum() \
576 and Expr[Match.end():Match.end()+1] != '_':
577 self._Idx += Match.end()
578 self._Token = ValueExpression(GuidStringToGuidStructureString(Expr[0:Match.end()]))(True, self._Depth+1)
579 return self._Token
580 elif self.__IsIdChar(Ch):
581 return self.__GetIdToken()
582 elif Ch == '"':
583 return self.__GetString()
584 elif Ch == '{':
585 return self.__GetArray()
586 elif Ch == '(' or Ch == ')':
587 self._Idx += 1
588 self._Token = Ch
589 return self._Token
590
591 raise BadExpression(ERR_VALID_TOKEN % Expr)
592
593 # Parse operator
594 def _GetOperator(self):
595 self.__SkipWS()
596 LegalOpLst = ['&&', '||', '!=', '==', '>=', '<='] + self.NonLetterOpLst
597
598 self._Token = ''
599 Expr = self._Expr[self._Idx:]
600
601 # Reach end of expression
602 if not Expr:
603 return ''
604
605 # Script operator: LT, GT, LE, GE, EQ, NE, and, or, xor, not
606 if Expr[0].isalpha():
607 return self.__GetIdToken(True)
608
609 # Start to get regular operator: +, -, <, > ...
610 if Expr[0] not in self.NonLetterOpLst:
611 return ''
612
613 OpToken = ''
614 for Ch in Expr:
615 if Ch in self.NonLetterOpLst:
616 if '!' == Ch and OpToken:
617 break
618 self._Idx += 1
619 OpToken += Ch
620 else:
621 break
622
623 if OpToken not in LegalOpLst:
624 raise BadExpression(ERR_OPERATOR_UNSUPPORT % OpToken)
625 self._Token = OpToken
626 return OpToken
627
628 # Check if current token matches the operators given from OpList
629 def _IsOperator(self, OpList):
630 Idx = self._Idx
631 self._GetOperator()
632 if self._Token in OpList:
633 if self._Token in self.LogicalOperators:
634 self._Token = self.LogicalOperators[self._Token]
635 return True
636 self._Idx = Idx
637 return False
638
639 if __name__ == '__main__':
640 pass
641 while True:
642 input = raw_input('Input expr: ')
643 if input in 'qQ':
644 break
645 try:
646 print ValueExpression(input)(True)
647 print ValueExpression(input)(False)
648 except WrnExpression, Ex:
649 print Ex.result
650 print str(Ex)
651 except Exception, Ex:
652 print str(Ex)