# Generated from ./MathExpr.g4 by ANTLR 4.13.2 # encoding: utf-8 from antlr4 import * from io import StringIO import sys if sys.version_info[1] > 5: from typing import TextIO else: from typing.io import TextIO def serializedATN(): return [ 4,1,84,527,2,0,7,0,2,1,7,1,2,2,7,2,2,3,7,3,2,4,7,4,2,5,7,5,2,6,7, 6,2,7,7,7,2,8,7,8,2,9,7,9,2,10,7,10,2,11,7,11,1,0,1,0,3,0,27,8,0, 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, 1,1,1,1,1,1,1,1,1,1,5,1,50,8,1,10,1,12,1,53,9,1,1,2,1,2,1,2,1,2, 1,2,1,2,1,2,1,2,1,2,5,2,64,8,2,10,2,12,2,67,9,2,1,3,1,3,1,3,1,3, 1,3,1,3,1,3,1,3,1,3,1,3,1,3,1,3,5,3,81,8,3,10,3,12,3,84,9,3,1,4, 1,4,1,4,1,4,1,4,3,4,91,8,4,1,5,1,5,1,5,1,5,1,5,3,5,98,8,5,1,6,1, 6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1,6,1, 6,1,6,1,6,5,6,120,8,6,10,6,12,6,123,9,6,1,6,1,6,3,6,127,8,6,1,7, 1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7, 1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7,1,7, 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324,1,0,0,0,303,304,5,55,0,0,304,305,5,76,0,0,305,306,3,0,0,0,306, 307,5,77,0,0,307,324,1,0,0,0,308,309,5,56,0,0,309,310,5,76,0,0,310, 311,3,0,0,0,311,312,5,77,0,0,312,324,1,0,0,0,313,314,5,57,0,0,314, 315,5,76,0,0,315,316,3,0,0,0,316,317,5,77,0,0,317,324,1,0,0,0,318, 319,5,58,0,0,319,320,5,76,0,0,320,321,3,0,0,0,321,322,5,77,0,0,322, 324,1,0,0,0,323,128,1,0,0,0,323,133,1,0,0,0,323,138,1,0,0,0,323, 143,1,0,0,0,323,148,1,0,0,0,323,153,1,0,0,0,323,158,1,0,0,0,323, 163,1,0,0,0,323,168,1,0,0,0,323,173,1,0,0,0,323,178,1,0,0,0,323, 183,1,0,0,0,323,188,1,0,0,0,323,193,1,0,0,0,323,198,1,0,0,0,323, 203,1,0,0,0,323,208,1,0,0,0,323,213,1,0,0,0,323,218,1,0,0,0,323, 223,1,0,0,0,323,228,1,0,0,0,323,233,1,0,0,0,323,238,1,0,0,0,323, 243,1,0,0,0,323,248,1,0,0,0,323,253,1,0,0,0,323,258,1,0,0,0,323, 263,1,0,0,0,323,268,1,0,0,0,323,273,1,0,0,0,323,278,1,0,0,0,323, 283,1,0,0,0,323,288,1,0,0,0,323,293,1,0,0,0,323,298,1,0,0,0,323, 303,1,0,0,0,323,308,1,0,0,0,323,313,1,0,0,0,323,318,1,0,0,0,324, 15,1,0,0,0,325,326,5,29,0,0,326,327,5,76,0,0,327,328,3,0,0,0,328, 329,5,78,0,0,329,330,3,0,0,0,330,331,5,77,0,0,331,403,1,0,0,0,332, 333,5,7,0,0,333,334,5,76,0,0,334,335,3,0,0,0,335,336,5,78,0,0,336, 337,3,0,0,0,337,338,5,77,0,0,338,403,1,0,0,0,339,340,5,21,0,0,340, 341,5,76,0,0,341,342,3,0,0,0,342,343,5,78,0,0,343,344,3,0,0,0,344, 345,5,77,0,0,345,403,1,0,0,0,346,347,5,22,0,0,347,348,5,76,0,0,348, 349,3,0,0,0,349,350,5,78,0,0,350,351,3,0,0,0,351,352,5,77,0,0,352, 403,1,0,0,0,353,354,5,38,0,0,354,355,5,76,0,0,355,356,3,0,0,0,356, 357,5,78,0,0,357,358,3,0,0,0,358,359,5,77,0,0,359,403,1,0,0,0,360, 361,5,52,0,0,361,362,5,76,0,0,362,363,3,0,0,0,363,364,5,78,0,0,364, 365,3,0,0,0,365,366,5,77,0,0,366,403,1,0,0,0,367,368,5,53,0,0,368, 369,5,76,0,0,369,370,3,0,0,0,370,371,5,78,0,0,371,372,3,0,0,0,372, 373,5,77,0,0,373,403,1,0,0,0,374,375,5,59,0,0,375,376,5,76,0,0,376, 377,3,0,0,0,377,378,5,78,0,0,378,379,3,0,0,0,379,380,5,77,0,0,380, 403,1,0,0,0,381,382,5,60,0,0,382,383,5,76,0,0,383,384,3,0,0,0,384, 385,5,78,0,0,385,386,3,0,0,0,386,387,5,77,0,0,387,403,1,0,0,0,388, 389,5,61,0,0,389,390,5,76,0,0,390,391,3,0,0,0,391,392,5,78,0,0,392, 393,3,0,0,0,393,394,5,77,0,0,394,403,1,0,0,0,395,396,5,62,0,0,396, 397,5,76,0,0,397,398,3,0,0,0,398,399,5,78,0,0,399,400,3,0,0,0,400, 401,5,77,0,0,401,403,1,0,0,0,402,325,1,0,0,0,402,332,1,0,0,0,402, 339,1,0,0,0,402,346,1,0,0,0,402,353,1,0,0,0,402,360,1,0,0,0,402, 367,1,0,0,0,402,374,1,0,0,0,402,381,1,0,0,0,402,388,1,0,0,0,402, 395,1,0,0,0,403,17,1,0,0,0,404,405,5,31,0,0,405,406,5,76,0,0,406, 407,3,0,0,0,407,408,5,78,0,0,408,409,3,0,0,0,409,410,5,78,0,0,410, 411,3,0,0,0,411,412,5,77,0,0,412,441,1,0,0,0,413,414,5,37,0,0,414, 415,5,76,0,0,415,416,3,0,0,0,416,417,5,78,0,0,417,418,3,0,0,0,418, 419,5,78,0,0,419,420,3,0,0,0,420,421,5,77,0,0,421,441,1,0,0,0,422, 423,5,39,0,0,423,424,5,76,0,0,424,425,3,0,0,0,425,426,5,78,0,0,426, 427,3,0,0,0,427,428,5,78,0,0,428,429,3,0,0,0,429,430,5,77,0,0,430, 441,1,0,0,0,431,432,5,51,0,0,432,433,5,76,0,0,433,434,3,0,0,0,434, 435,5,78,0,0,435,436,3,0,0,0,436,437,5,78,0,0,437,438,3,0,0,0,438, 439,5,77,0,0,439,441,1,0,0,0,440,404,1,0,0,0,440,413,1,0,0,0,440, 422,1,0,0,0,440,431,1,0,0,0,441,19,1,0,0,0,442,443,5,48,0,0,443, 444,5,76,0,0,444,445,3,0,0,0,445,446,5,78,0,0,446,447,3,0,0,0,447, 448,5,78,0,0,448,449,3,0,0,0,449,450,5,78,0,0,450,451,3,0,0,0,451, 452,5,77,0,0,452,21,1,0,0,0,453,454,5,19,0,0,454,455,5,76,0,0,455, 460,3,0,0,0,456,457,5,78,0,0,457,459,3,0,0,0,458,456,1,0,0,0,459, 462,1,0,0,0,460,458,1,0,0,0,460,461,1,0,0,0,461,463,1,0,0,0,462, 460,1,0,0,0,463,464,5,77,0,0,464,525,1,0,0,0,465,466,5,20,0,0,466, 467,5,76,0,0,467,472,3,0,0,0,468,469,5,78,0,0,469,471,3,0,0,0,470, 468,1,0,0,0,471,474,1,0,0,0,472,470,1,0,0,0,472,473,1,0,0,0,473, 475,1,0,0,0,474,472,1,0,0,0,475,476,5,77,0,0,476,525,1,0,0,0,477, 478,5,45,0,0,478,479,5,76,0,0,479,482,3,0,0,0,480,481,5,78,0,0,481, 483,3,0,0,0,482,480,1,0,0,0,483,484,1,0,0,0,484,482,1,0,0,0,484, 485,1,0,0,0,485,486,1,0,0,0,486,487,5,77,0,0,487,525,1,0,0,0,488, 489,5,46,0,0,489,490,5,76,0,0,490,493,3,0,0,0,491,492,5,78,0,0,492, 494,3,0,0,0,493,491,1,0,0,0,494,495,1,0,0,0,495,493,1,0,0,0,495, 496,1,0,0,0,496,497,1,0,0,0,497,498,5,77,0,0,498,525,1,0,0,0,499, 500,5,47,0,0,500,501,5,76,0,0,501,504,3,0,0,0,502,503,5,78,0,0,503, 505,3,0,0,0,504,502,1,0,0,0,505,506,1,0,0,0,506,504,1,0,0,0,506, 507,1,0,0,0,507,508,1,0,0,0,508,509,5,77,0,0,509,525,1,0,0,0,510, 511,5,49,0,0,511,512,5,76,0,0,512,513,3,0,0,0,513,514,5,78,0,0,514, 515,3,0,0,0,515,516,5,77,0,0,516,525,1,0,0,0,517,518,5,50,0,0,518, 519,5,76,0,0,519,520,3,0,0,0,520,521,5,78,0,0,521,522,3,0,0,0,522, 523,5,77,0,0,523,525,1,0,0,0,524,453,1,0,0,0,524,465,1,0,0,0,524, 477,1,0,0,0,524,488,1,0,0,0,524,499,1,0,0,0,524,510,1,0,0,0,524, 517,1,0,0,0,525,23,1,0,0,0,20,26,49,51,63,65,80,82,90,97,121,126, 323,402,440,460,472,484,495,506,524 ] class MathExprParser ( Parser ): grammarFileName = "MathExpr.g4" atn = ATNDeserializer().deserialize(serializedATN()) decisionsToDFA = [ DFA(ds, i) for i, ds in enumerate(atn.decisionToState) ] sharedContextCache = PredictionContextCache() literalNames = [ "", "'sin'", "'cos'", "'tan'", "'asin'", "'acos'", "'atan'", "'atan2'", "'sinh'", "'cosh'", "'tanh'", "'asinh'", "'acosh'", "'atanh'", "'abs'", "'sqrt'", "'ln'", "'log'", "'exp'", "'smin'", "'smax'", "'tmin'", "'tmax'", "'tnorm'", "'snorm'", "'floor'", "'ceil'", "'round'", "'gamma'", "'pow'", "'sigm'", "'clamp'", "'fft'", "'ifft'", "'angle'", "'print'", "", "'lerp'", "'step'", "'smoothstep'", "'fract'", "'relu'", "'softplus'", "'gelu'", "'sign'", "'map'", "", "", "'swap'", "", "", "'range'", "'topk'", "'botk'", "'pinv'", "'sum'", "'mean'", "'std'", "'var'", "", "", "'quantile'", "'dot'", "'+'", "'-'", "'*'", "'/'", "'%'", "'^'", "'>='", "'>'", "'<='", "'<'", "'=='", "'!='", "'|'", "'('", "')'", "','", "'['", "']'" ] symbolicNames = [ "", "SIN", "COS", "TAN", "ASIN", "ACOS", "ATAN", "ATAN2", "SINH", "COSH", "TANH", "ASINH", "ACOSH", "ATANH", "ABS", "SQRT", "LN", "LOG", "EXP", "SMIN", "SMAX", "TMIN", "TMAX", "TNORM", "SNORM", "FLOOR", "CEIL", "ROUND", "GAMMA", "POWE", "SIGM", "CLAMP", "SFFT", "SIFFT", "ANGL", "PRNT", "PRINT_SHAPE", "LERP", "STEP", "SMOOTHSTEP", "FRACT", "RELU", "SOFTPLUS", "GELU", "SIGN", "MAP", "EZCONV", "CONV", "SWAP", "PERM", "RESHAPE", "RANGE", "TOPK", "BOTK", "PINV", "SUM", "MEAN", "STD", "VAR", "QUARTILE", "PERCENTILE", "QUANTILE", "DOT", "PLUS", "MINUS", "MULT", "DIV", "MOD", "POW", "GE", "GT", "LE", "LT", "EQ", "NE", "PIPE", "LPAREN", "RPAREN", "COMMA", "LBRACKET", "RBRACKET", "CONSTANT", "NUMBER", "VARIABLE", "WS" ] RULE_expr = 0 RULE_compExpr = 1 RULE_addExpr = 2 RULE_mulExpr = 3 RULE_powExpr = 4 RULE_unaryExpr = 5 RULE_atom = 6 RULE_func1 = 7 RULE_func2 = 8 RULE_func3 = 9 RULE_func4 = 10 RULE_funcN = 11 ruleNames = [ "expr", "compExpr", "addExpr", "mulExpr", "powExpr", "unaryExpr", "atom", "func1", "func2", "func3", "func4", "funcN" ] EOF = Token.EOF SIN=1 COS=2 TAN=3 ASIN=4 ACOS=5 ATAN=6 ATAN2=7 SINH=8 COSH=9 TANH=10 ASINH=11 ACOSH=12 ATANH=13 ABS=14 SQRT=15 LN=16 LOG=17 EXP=18 SMIN=19 SMAX=20 TMIN=21 TMAX=22 TNORM=23 SNORM=24 FLOOR=25 CEIL=26 ROUND=27 GAMMA=28 POWE=29 SIGM=30 CLAMP=31 SFFT=32 SIFFT=33 ANGL=34 PRNT=35 PRINT_SHAPE=36 LERP=37 STEP=38 SMOOTHSTEP=39 FRACT=40 RELU=41 SOFTPLUS=42 GELU=43 SIGN=44 MAP=45 EZCONV=46 CONV=47 SWAP=48 PERM=49 RESHAPE=50 RANGE=51 TOPK=52 BOTK=53 PINV=54 SUM=55 MEAN=56 STD=57 VAR=58 QUARTILE=59 PERCENTILE=60 QUANTILE=61 DOT=62 PLUS=63 MINUS=64 MULT=65 DIV=66 MOD=67 POW=68 GE=69 GT=70 LE=71 LT=72 EQ=73 NE=74 PIPE=75 LPAREN=76 RPAREN=77 COMMA=78 LBRACKET=79 RBRACKET=80 CONSTANT=81 NUMBER=82 VARIABLE=83 WS=84 def __init__(self, input:TokenStream, output:TextIO = sys.stdout): super().__init__(input, output) self.checkVersion("4.13.2") self._interp = ParserATNSimulator(self, self.atn, self.decisionsToDFA, self.sharedContextCache) self._predicates = None class ExprContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def atom(self): return self.getTypedRuleContext(MathExprParser.AtomContext,0) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def getRuleIndex(self): return MathExprParser.RULE_expr def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterExpr" ): listener.enterExpr(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitExpr" ): listener.exitExpr(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitExpr" ): return visitor.visitExpr(self) else: return visitor.visitChildren(self) def expr(self): localctx = MathExprParser.ExprContext(self, self._ctx, self.state) self.enterRule(localctx, 0, self.RULE_expr) try: self.state = 26 self._errHandler.sync(self) la_ = self._interp.adaptivePredict(self._input,0,self._ctx) if la_ == 1: self.enterOuterAlt(localctx, 1) self.state = 24 self.atom() pass elif la_ == 2: self.enterOuterAlt(localctx, 2) self.state = 25 self.compExpr(0) pass except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class CompExprContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_compExpr def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class LtExpContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def LT(self): return self.getToken(MathExprParser.LT, 0) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterLtExp" ): listener.enterLtExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitLtExp" ): listener.exitLtExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitLtExp" ): return visitor.visitLtExp(self) else: return visitor.visitChildren(self) class EqExpContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def EQ(self): return self.getToken(MathExprParser.EQ, 0) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterEqExp" ): listener.enterEqExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitEqExp" ): listener.exitEqExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitEqExp" ): return visitor.visitEqExp(self) else: return visitor.visitChildren(self) class ToAddContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterToAdd" ): listener.enterToAdd(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitToAdd" ): listener.exitToAdd(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitToAdd" ): return visitor.visitToAdd(self) else: return visitor.visitChildren(self) class GeExpContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def GE(self): return self.getToken(MathExprParser.GE, 0) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterGeExp" ): listener.enterGeExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitGeExp" ): listener.exitGeExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitGeExp" ): return visitor.visitGeExp(self) else: return visitor.visitChildren(self) class LeExpContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def LE(self): return self.getToken(MathExprParser.LE, 0) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterLeExp" ): listener.enterLeExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitLeExp" ): listener.exitLeExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitLeExp" ): return visitor.visitLeExp(self) else: return visitor.visitChildren(self) class NeExpContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def NE(self): return self.getToken(MathExprParser.NE, 0) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterNeExp" ): listener.enterNeExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitNeExp" ): listener.exitNeExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitNeExp" ): return visitor.visitNeExp(self) else: return visitor.visitChildren(self) class GtExpContext(CompExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.CompExprContext super().__init__(parser) self.copyFrom(ctx) def compExpr(self): return self.getTypedRuleContext(MathExprParser.CompExprContext,0) def GT(self): return self.getToken(MathExprParser.GT, 0) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterGtExp" ): listener.enterGtExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitGtExp" ): listener.exitGtExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitGtExp" ): return visitor.visitGtExp(self) else: return visitor.visitChildren(self) def compExpr(self, _p:int=0): _parentctx = self._ctx _parentState = self.state localctx = MathExprParser.CompExprContext(self, self._ctx, _parentState) _prevctx = localctx _startState = 2 self.enterRecursionRule(localctx, 2, self.RULE_compExpr, _p) try: self.enterOuterAlt(localctx, 1) localctx = MathExprParser.ToAddContext(self, localctx) self._ctx = localctx _prevctx = localctx self.state = 29 self.addExpr(0) self._ctx.stop = self._input.LT(-1) self.state = 51 self._errHandler.sync(self) _alt = self._interp.adaptivePredict(self._input,2,self._ctx) while _alt!=2 and _alt!=ATN.INVALID_ALT_NUMBER: if _alt==1: if self._parseListeners is not None: self.triggerExitRuleEvent() _prevctx = localctx self.state = 49 self._errHandler.sync(self) la_ = self._interp.adaptivePredict(self._input,1,self._ctx) if la_ == 1: localctx = MathExprParser.GtExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr) self.state = 31 if not self.precpred(self._ctx, 7): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 7)") self.state = 32 self.match(MathExprParser.GT) self.state = 33 self.addExpr(0) pass elif la_ == 2: localctx = MathExprParser.GeExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr) self.state = 34 if not self.precpred(self._ctx, 6): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 6)") self.state = 35 self.match(MathExprParser.GE) self.state = 36 self.addExpr(0) pass elif la_ == 3: localctx = MathExprParser.LtExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr) self.state = 37 if not self.precpred(self._ctx, 5): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 5)") self.state = 38 self.match(MathExprParser.LT) self.state = 39 self.addExpr(0) pass elif la_ == 4: localctx = MathExprParser.LeExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr) self.state = 40 if not self.precpred(self._ctx, 4): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 4)") self.state = 41 self.match(MathExprParser.LE) self.state = 42 self.addExpr(0) pass elif la_ == 5: localctx = MathExprParser.EqExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr) self.state = 43 if not self.precpred(self._ctx, 3): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 3)") self.state = 44 self.match(MathExprParser.EQ) self.state = 45 self.addExpr(0) pass elif la_ == 6: localctx = MathExprParser.NeExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr) self.state = 46 if not self.precpred(self._ctx, 2): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 2)") self.state = 47 self.match(MathExprParser.NE) self.state = 48 self.addExpr(0) pass self.state = 53 self._errHandler.sync(self) _alt = self._interp.adaptivePredict(self._input,2,self._ctx) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.unrollRecursionContexts(_parentctx) return localctx class AddExprContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_addExpr def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class AddExpContext(AddExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AddExprContext super().__init__(parser) self.copyFrom(ctx) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def PLUS(self): return self.getToken(MathExprParser.PLUS, 0) def mulExpr(self): return self.getTypedRuleContext(MathExprParser.MulExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAddExp" ): listener.enterAddExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAddExp" ): listener.exitAddExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAddExp" ): return visitor.visitAddExp(self) else: return visitor.visitChildren(self) class ToMulContext(AddExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AddExprContext super().__init__(parser) self.copyFrom(ctx) def mulExpr(self): return self.getTypedRuleContext(MathExprParser.MulExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterToMul" ): listener.enterToMul(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitToMul" ): listener.exitToMul(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitToMul" ): return visitor.visitToMul(self) else: return visitor.visitChildren(self) class SubExpContext(AddExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AddExprContext super().__init__(parser) self.copyFrom(ctx) def addExpr(self): return self.getTypedRuleContext(MathExprParser.AddExprContext,0) def MINUS(self): return self.getToken(MathExprParser.MINUS, 0) def mulExpr(self): return self.getTypedRuleContext(MathExprParser.MulExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSubExp" ): listener.enterSubExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSubExp" ): listener.exitSubExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSubExp" ): return visitor.visitSubExp(self) else: return visitor.visitChildren(self) def addExpr(self, _p:int=0): _parentctx = self._ctx _parentState = self.state localctx = MathExprParser.AddExprContext(self, self._ctx, _parentState) _prevctx = localctx _startState = 4 self.enterRecursionRule(localctx, 4, self.RULE_addExpr, _p) try: self.enterOuterAlt(localctx, 1) localctx = MathExprParser.ToMulContext(self, localctx) self._ctx = localctx _prevctx = localctx self.state = 55 self.mulExpr(0) self._ctx.stop = self._input.LT(-1) self.state = 65 self._errHandler.sync(self) _alt = self._interp.adaptivePredict(self._input,4,self._ctx) while _alt!=2 and _alt!=ATN.INVALID_ALT_NUMBER: if _alt==1: if self._parseListeners is not None: self.triggerExitRuleEvent() _prevctx = localctx self.state = 63 self._errHandler.sync(self) la_ = self._interp.adaptivePredict(self._input,3,self._ctx) if la_ == 1: localctx = MathExprParser.AddExpContext(self, MathExprParser.AddExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_addExpr) self.state = 57 if not self.precpred(self._ctx, 3): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 3)") self.state = 58 self.match(MathExprParser.PLUS) self.state = 59 self.mulExpr(0) pass elif la_ == 2: localctx = MathExprParser.SubExpContext(self, MathExprParser.AddExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_addExpr) self.state = 60 if not self.precpred(self._ctx, 2): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 2)") self.state = 61 self.match(MathExprParser.MINUS) self.state = 62 self.mulExpr(0) pass self.state = 67 self._errHandler.sync(self) _alt = self._interp.adaptivePredict(self._input,4,self._ctx) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.unrollRecursionContexts(_parentctx) return localctx class MulExprContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_mulExpr def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class MulExpContext(MulExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.MulExprContext super().__init__(parser) self.copyFrom(ctx) def mulExpr(self): return self.getTypedRuleContext(MathExprParser.MulExprContext,0) def MULT(self): return self.getToken(MathExprParser.MULT, 0) def powExpr(self): return self.getTypedRuleContext(MathExprParser.PowExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterMulExp" ): listener.enterMulExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitMulExp" ): listener.exitMulExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitMulExp" ): return visitor.visitMulExp(self) else: return visitor.visitChildren(self) class ModExpContext(MulExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.MulExprContext super().__init__(parser) self.copyFrom(ctx) def mulExpr(self): return self.getTypedRuleContext(MathExprParser.MulExprContext,0) def MOD(self): return self.getToken(MathExprParser.MOD, 0) def powExpr(self): return self.getTypedRuleContext(MathExprParser.PowExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterModExp" ): listener.enterModExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitModExp" ): listener.exitModExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitModExp" ): return visitor.visitModExp(self) else: return visitor.visitChildren(self) class DivExpContext(MulExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.MulExprContext super().__init__(parser) self.copyFrom(ctx) def mulExpr(self): return self.getTypedRuleContext(MathExprParser.MulExprContext,0) def DIV(self): return self.getToken(MathExprParser.DIV, 0) def powExpr(self): return self.getTypedRuleContext(MathExprParser.PowExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterDivExp" ): listener.enterDivExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitDivExp" ): listener.exitDivExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitDivExp" ): return visitor.visitDivExp(self) else: return visitor.visitChildren(self) class ToPowContext(MulExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.MulExprContext super().__init__(parser) self.copyFrom(ctx) def powExpr(self): return self.getTypedRuleContext(MathExprParser.PowExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterToPow" ): listener.enterToPow(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitToPow" ): listener.exitToPow(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitToPow" ): return visitor.visitToPow(self) else: return visitor.visitChildren(self) def mulExpr(self, _p:int=0): _parentctx = self._ctx _parentState = self.state localctx = MathExprParser.MulExprContext(self, self._ctx, _parentState) _prevctx = localctx _startState = 6 self.enterRecursionRule(localctx, 6, self.RULE_mulExpr, _p) try: self.enterOuterAlt(localctx, 1) localctx = MathExprParser.ToPowContext(self, localctx) self._ctx = localctx _prevctx = localctx self.state = 69 self.powExpr() self._ctx.stop = self._input.LT(-1) self.state = 82 self._errHandler.sync(self) _alt = self._interp.adaptivePredict(self._input,6,self._ctx) while _alt!=2 and _alt!=ATN.INVALID_ALT_NUMBER: if _alt==1: if self._parseListeners is not None: self.triggerExitRuleEvent() _prevctx = localctx self.state = 80 self._errHandler.sync(self) la_ = self._interp.adaptivePredict(self._input,5,self._ctx) if la_ == 1: localctx = MathExprParser.MulExpContext(self, MathExprParser.MulExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_mulExpr) self.state = 71 if not self.precpred(self._ctx, 4): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 4)") self.state = 72 self.match(MathExprParser.MULT) self.state = 73 self.powExpr() pass elif la_ == 2: localctx = MathExprParser.DivExpContext(self, MathExprParser.MulExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_mulExpr) self.state = 74 if not self.precpred(self._ctx, 3): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 3)") self.state = 75 self.match(MathExprParser.DIV) self.state = 76 self.powExpr() pass elif la_ == 3: localctx = MathExprParser.ModExpContext(self, MathExprParser.MulExprContext(self, _parentctx, _parentState)) self.pushNewRecursionContext(localctx, _startState, self.RULE_mulExpr) self.state = 77 if not self.precpred(self._ctx, 2): from antlr4.error.Errors import FailedPredicateException raise FailedPredicateException(self, "self.precpred(self._ctx, 2)") self.state = 78 self.match(MathExprParser.MOD) self.state = 79 self.powExpr() pass self.state = 84 self._errHandler.sync(self) _alt = self._interp.adaptivePredict(self._input,6,self._ctx) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.unrollRecursionContexts(_parentctx) return localctx class PowExprContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_powExpr def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class PowExpContext(PowExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.PowExprContext super().__init__(parser) self.copyFrom(ctx) def unaryExpr(self): return self.getTypedRuleContext(MathExprParser.UnaryExprContext,0) def POW(self): return self.getToken(MathExprParser.POW, 0) def powExpr(self): return self.getTypedRuleContext(MathExprParser.PowExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPowExp" ): listener.enterPowExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPowExp" ): listener.exitPowExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPowExp" ): return visitor.visitPowExp(self) else: return visitor.visitChildren(self) class ToUnaryContext(PowExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.PowExprContext super().__init__(parser) self.copyFrom(ctx) def unaryExpr(self): return self.getTypedRuleContext(MathExprParser.UnaryExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterToUnary" ): listener.enterToUnary(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitToUnary" ): listener.exitToUnary(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitToUnary" ): return visitor.visitToUnary(self) else: return visitor.visitChildren(self) def powExpr(self): localctx = MathExprParser.PowExprContext(self, self._ctx, self.state) self.enterRule(localctx, 8, self.RULE_powExpr) try: self.state = 90 self._errHandler.sync(self) la_ = self._interp.adaptivePredict(self._input,7,self._ctx) if la_ == 1: localctx = MathExprParser.PowExpContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 85 self.unaryExpr() self.state = 86 self.match(MathExprParser.POW) self.state = 87 self.powExpr() pass elif la_ == 2: localctx = MathExprParser.ToUnaryContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 89 self.unaryExpr() pass except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class UnaryExprContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_unaryExpr def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class UnaryPlusContext(UnaryExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.UnaryExprContext super().__init__(parser) self.copyFrom(ctx) def PLUS(self): return self.getToken(MathExprParser.PLUS, 0) def unaryExpr(self): return self.getTypedRuleContext(MathExprParser.UnaryExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterUnaryPlus" ): listener.enterUnaryPlus(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitUnaryPlus" ): listener.exitUnaryPlus(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitUnaryPlus" ): return visitor.visitUnaryPlus(self) else: return visitor.visitChildren(self) class UnaryMinusContext(UnaryExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.UnaryExprContext super().__init__(parser) self.copyFrom(ctx) def MINUS(self): return self.getToken(MathExprParser.MINUS, 0) def unaryExpr(self): return self.getTypedRuleContext(MathExprParser.UnaryExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterUnaryMinus" ): listener.enterUnaryMinus(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitUnaryMinus" ): listener.exitUnaryMinus(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitUnaryMinus" ): return visitor.visitUnaryMinus(self) else: return visitor.visitChildren(self) class ToAtomContext(UnaryExprContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.UnaryExprContext super().__init__(parser) self.copyFrom(ctx) def atom(self): return self.getTypedRuleContext(MathExprParser.AtomContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterToAtom" ): listener.enterToAtom(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitToAtom" ): listener.exitToAtom(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitToAtom" ): return visitor.visitToAtom(self) else: return visitor.visitChildren(self) def unaryExpr(self): localctx = MathExprParser.UnaryExprContext(self, self._ctx, self.state) self.enterRule(localctx, 10, self.RULE_unaryExpr) try: self.state = 97 self._errHandler.sync(self) token = self._input.LA(1) if token in [63]: localctx = MathExprParser.UnaryPlusContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 92 self.match(MathExprParser.PLUS) self.state = 93 self.unaryExpr() pass elif token in [64]: localctx = MathExprParser.UnaryMinusContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 94 self.match(MathExprParser.MINUS) self.state = 95 self.unaryExpr() pass elif token in [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 75, 76, 79, 81, 82, 83]: localctx = MathExprParser.ToAtomContext(self, localctx) self.enterOuterAlt(localctx, 3) self.state = 96 self.atom() pass else: raise NoViableAltException(self) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class AtomContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_atom def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class Func4ExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def func4(self): return self.getTypedRuleContext(MathExprParser.Func4Context,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFunc4Exp" ): listener.enterFunc4Exp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFunc4Exp" ): listener.exitFunc4Exp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFunc4Exp" ): return visitor.visitFunc4Exp(self) else: return visitor.visitChildren(self) class Func2ExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def func2(self): return self.getTypedRuleContext(MathExprParser.Func2Context,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFunc2Exp" ): listener.enterFunc2Exp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFunc2Exp" ): listener.exitFunc2Exp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFunc2Exp" ): return visitor.visitFunc2Exp(self) else: return visitor.visitChildren(self) class VariableExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def VARIABLE(self): return self.getToken(MathExprParser.VARIABLE, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterVariableExp" ): listener.enterVariableExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitVariableExp" ): listener.exitVariableExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitVariableExp" ): return visitor.visitVariableExp(self) else: return visitor.visitChildren(self) class Func3ExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def func3(self): return self.getTypedRuleContext(MathExprParser.Func3Context,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFunc3Exp" ): listener.enterFunc3Exp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFunc3Exp" ): listener.exitFunc3Exp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFunc3Exp" ): return visitor.visitFunc3Exp(self) else: return visitor.visitChildren(self) class ParenExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterParenExp" ): listener.enterParenExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitParenExp" ): listener.exitParenExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitParenExp" ): return visitor.visitParenExp(self) else: return visitor.visitChildren(self) class ConstantExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def CONSTANT(self): return self.getToken(MathExprParser.CONSTANT, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterConstantExp" ): listener.enterConstantExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitConstantExp" ): listener.exitConstantExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitConstantExp" ): return visitor.visitConstantExp(self) else: return visitor.visitChildren(self) class Func1ExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def func1(self): return self.getTypedRuleContext(MathExprParser.Func1Context,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFunc1Exp" ): listener.enterFunc1Exp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFunc1Exp" ): listener.exitFunc1Exp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFunc1Exp" ): return visitor.visitFunc1Exp(self) else: return visitor.visitChildren(self) class FuncNExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def funcN(self): return self.getTypedRuleContext(MathExprParser.FuncNContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFuncNExp" ): listener.enterFuncNExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFuncNExp" ): listener.exitFuncNExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFuncNExp" ): return visitor.visitFuncNExp(self) else: return visitor.visitChildren(self) class NumberExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def NUMBER(self): return self.getToken(MathExprParser.NUMBER, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterNumberExp" ): listener.enterNumberExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitNumberExp" ): listener.exitNumberExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitNumberExp" ): return visitor.visitNumberExp(self) else: return visitor.visitChildren(self) class AbsExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def PIPE(self, i:int=None): if i is None: return self.getTokens(MathExprParser.PIPE) else: return self.getToken(MathExprParser.PIPE, i) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAbsExp" ): listener.enterAbsExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAbsExp" ): listener.exitAbsExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAbsExp" ): return visitor.visitAbsExp(self) else: return visitor.visitChildren(self) class ListExpContext(AtomContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext super().__init__(parser) self.copyFrom(ctx) def LBRACKET(self): return self.getToken(MathExprParser.LBRACKET, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def RBRACKET(self): return self.getToken(MathExprParser.RBRACKET, 0) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterListExp" ): listener.enterListExp(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitListExp" ): listener.exitListExp(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitListExp" ): return visitor.visitListExp(self) else: return visitor.visitChildren(self) def atom(self): localctx = MathExprParser.AtomContext(self, self._ctx, self.state) self.enterRule(localctx, 12, self.RULE_atom) self._la = 0 # Token type try: self.state = 126 self._errHandler.sync(self) token = self._input.LA(1) if token in [1, 2, 3, 4, 5, 6, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 23, 24, 25, 26, 27, 28, 30, 32, 33, 34, 35, 36, 40, 41, 42, 43, 44, 54, 55, 56, 57, 58]: localctx = MathExprParser.Func1ExpContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 99 self.func1() pass elif token in [7, 21, 22, 29, 38, 52, 53, 59, 60, 61, 62]: localctx = MathExprParser.Func2ExpContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 100 self.func2() pass elif token in [31, 37, 39, 51]: localctx = MathExprParser.Func3ExpContext(self, localctx) self.enterOuterAlt(localctx, 3) self.state = 101 self.func3() pass elif token in [48]: localctx = MathExprParser.Func4ExpContext(self, localctx) self.enterOuterAlt(localctx, 4) self.state = 102 self.func4() pass elif token in [19, 20, 45, 46, 47, 49, 50]: localctx = MathExprParser.FuncNExpContext(self, localctx) self.enterOuterAlt(localctx, 5) self.state = 103 self.funcN() pass elif token in [83]: localctx = MathExprParser.VariableExpContext(self, localctx) self.enterOuterAlt(localctx, 6) self.state = 104 self.match(MathExprParser.VARIABLE) pass elif token in [82]: localctx = MathExprParser.NumberExpContext(self, localctx) self.enterOuterAlt(localctx, 7) self.state = 105 self.match(MathExprParser.NUMBER) pass elif token in [81]: localctx = MathExprParser.ConstantExpContext(self, localctx) self.enterOuterAlt(localctx, 8) self.state = 106 self.match(MathExprParser.CONSTANT) pass elif token in [76]: localctx = MathExprParser.ParenExpContext(self, localctx) self.enterOuterAlt(localctx, 9) self.state = 107 self.match(MathExprParser.LPAREN) self.state = 108 self.expr() self.state = 109 self.match(MathExprParser.RPAREN) pass elif token in [75]: localctx = MathExprParser.AbsExpContext(self, localctx) self.enterOuterAlt(localctx, 10) self.state = 111 self.match(MathExprParser.PIPE) self.state = 112 self.expr() self.state = 113 self.match(MathExprParser.PIPE) pass elif token in [79]: localctx = MathExprParser.ListExpContext(self, localctx) self.enterOuterAlt(localctx, 11) self.state = 115 self.match(MathExprParser.LBRACKET) self.state = 116 self.expr() self.state = 121 self._errHandler.sync(self) _la = self._input.LA(1) while _la==78: self.state = 117 self.match(MathExprParser.COMMA) self.state = 118 self.expr() self.state = 123 self._errHandler.sync(self) _la = self._input.LA(1) self.state = 124 self.match(MathExprParser.RBRACKET) pass else: raise NoViableAltException(self) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class Func1Context(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_func1 def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class SoftplusFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SOFTPLUS(self): return self.getToken(MathExprParser.SOFTPLUS, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSoftplusFunc" ): listener.enterSoftplusFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSoftplusFunc" ): listener.exitSoftplusFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSoftplusFunc" ): return visitor.visitSoftplusFunc(self) else: return visitor.visitChildren(self) class TanhFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def TANH(self): return self.getToken(MathExprParser.TANH, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterTanhFunc" ): listener.enterTanhFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitTanhFunc" ): listener.exitTanhFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitTanhFunc" ): return visitor.visitTanhFunc(self) else: return visitor.visitChildren(self) class AcoshFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ACOSH(self): return self.getToken(MathExprParser.ACOSH, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAcoshFunc" ): listener.enterAcoshFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAcoshFunc" ): listener.exitAcoshFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAcoshFunc" ): return visitor.visitAcoshFunc(self) else: return visitor.visitChildren(self) class SqrtFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SQRT(self): return self.getToken(MathExprParser.SQRT, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSqrtFunc" ): listener.enterSqrtFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSqrtFunc" ): listener.exitSqrtFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSqrtFunc" ): return visitor.visitSqrtFunc(self) else: return visitor.visitChildren(self) class FloorFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def FLOOR(self): return self.getToken(MathExprParser.FLOOR, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFloorFunc" ): listener.enterFloorFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFloorFunc" ): listener.exitFloorFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFloorFunc" ): return visitor.visitFloorFunc(self) else: return visitor.visitChildren(self) class RoundFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ROUND(self): return self.getToken(MathExprParser.ROUND, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterRoundFunc" ): listener.enterRoundFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitRoundFunc" ): listener.exitRoundFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitRoundFunc" ): return visitor.visitRoundFunc(self) else: return visitor.visitChildren(self) class MeanFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def MEAN(self): return self.getToken(MathExprParser.MEAN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterMeanFunc" ): listener.enterMeanFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitMeanFunc" ): listener.exitMeanFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitMeanFunc" ): return visitor.visitMeanFunc(self) else: return visitor.visitChildren(self) class CeilFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def CEIL(self): return self.getToken(MathExprParser.CEIL, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterCeilFunc" ): listener.enterCeilFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitCeilFunc" ): listener.exitCeilFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitCeilFunc" ): return visitor.visitCeilFunc(self) else: return visitor.visitChildren(self) class GeluFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def GELU(self): return self.getToken(MathExprParser.GELU, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterGeluFunc" ): listener.enterGeluFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitGeluFunc" ): listener.exitGeluFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitGeluFunc" ): return visitor.visitGeluFunc(self) else: return visitor.visitChildren(self) class PrintFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def PRNT(self): return self.getToken(MathExprParser.PRNT, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPrintFunc" ): listener.enterPrintFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPrintFunc" ): listener.exitPrintFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPrintFunc" ): return visitor.visitPrintFunc(self) else: return visitor.visitChildren(self) class AbsFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ABS(self): return self.getToken(MathExprParser.ABS, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAbsFunc" ): listener.enterAbsFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAbsFunc" ): listener.exitAbsFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAbsFunc" ): return visitor.visitAbsFunc(self) else: return visitor.visitChildren(self) class AtanFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ATAN(self): return self.getToken(MathExprParser.ATAN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAtanFunc" ): listener.enterAtanFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAtanFunc" ): listener.exitAtanFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAtanFunc" ): return visitor.visitAtanFunc(self) else: return visitor.visitChildren(self) class ReluFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def RELU(self): return self.getToken(MathExprParser.RELU, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterReluFunc" ): listener.enterReluFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitReluFunc" ): listener.exitReluFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitReluFunc" ): return visitor.visitReluFunc(self) else: return visitor.visitChildren(self) class SinhFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SINH(self): return self.getToken(MathExprParser.SINH, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSinhFunc" ): listener.enterSinhFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSinhFunc" ): listener.exitSinhFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSinhFunc" ): return visitor.visitSinhFunc(self) else: return visitor.visitChildren(self) class SigmoidFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SIGM(self): return self.getToken(MathExprParser.SIGM, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSigmoidFunc" ): listener.enterSigmoidFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSigmoidFunc" ): listener.exitSigmoidFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSigmoidFunc" ): return visitor.visitSigmoidFunc(self) else: return visitor.visitChildren(self) class LogFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def LOG(self): return self.getToken(MathExprParser.LOG, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterLogFunc" ): listener.enterLogFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitLogFunc" ): listener.exitLogFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitLogFunc" ): return visitor.visitLogFunc(self) else: return visitor.visitChildren(self) class LnFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def LN(self): return self.getToken(MathExprParser.LN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterLnFunc" ): listener.enterLnFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitLnFunc" ): listener.exitLnFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitLnFunc" ): return visitor.visitLnFunc(self) else: return visitor.visitChildren(self) class TNormFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def TNORM(self): return self.getToken(MathExprParser.TNORM, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterTNormFunc" ): listener.enterTNormFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitTNormFunc" ): listener.exitTNormFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitTNormFunc" ): return visitor.visitTNormFunc(self) else: return visitor.visitChildren(self) class SNormFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SNORM(self): return self.getToken(MathExprParser.SNORM, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSNormFunc" ): listener.enterSNormFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSNormFunc" ): listener.exitSNormFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSNormFunc" ): return visitor.visitSNormFunc(self) else: return visitor.visitChildren(self) class SinFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SIN(self): return self.getToken(MathExprParser.SIN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSinFunc" ): listener.enterSinFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSinFunc" ): listener.exitSinFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSinFunc" ): return visitor.visitSinFunc(self) else: return visitor.visitChildren(self) class StdFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def STD(self): return self.getToken(MathExprParser.STD, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterStdFunc" ): listener.enterStdFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitStdFunc" ): listener.exitStdFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitStdFunc" ): return visitor.visitStdFunc(self) else: return visitor.visitChildren(self) class AcosFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ACOS(self): return self.getToken(MathExprParser.ACOS, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAcosFunc" ): listener.enterAcosFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAcosFunc" ): listener.exitAcosFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAcosFunc" ): return visitor.visitAcosFunc(self) else: return visitor.visitChildren(self) class CoshFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def COSH(self): return self.getToken(MathExprParser.COSH, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterCoshFunc" ): listener.enterCoshFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitCoshFunc" ): listener.exitCoshFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitCoshFunc" ): return visitor.visitCoshFunc(self) else: return visitor.visitChildren(self) class AnglFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ANGL(self): return self.getToken(MathExprParser.ANGL, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAnglFunc" ): listener.enterAnglFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAnglFunc" ): listener.exitAnglFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAnglFunc" ): return visitor.visitAnglFunc(self) else: return visitor.visitChildren(self) class SumFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SUM(self): return self.getToken(MathExprParser.SUM, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSumFunc" ): listener.enterSumFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSumFunc" ): listener.exitSumFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSumFunc" ): return visitor.visitSumFunc(self) else: return visitor.visitChildren(self) class SignFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SIGN(self): return self.getToken(MathExprParser.SIGN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSignFunc" ): listener.enterSignFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSignFunc" ): listener.exitSignFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSignFunc" ): return visitor.visitSignFunc(self) else: return visitor.visitChildren(self) class TanFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def TAN(self): return self.getToken(MathExprParser.TAN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterTanFunc" ): listener.enterTanFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitTanFunc" ): listener.exitTanFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitTanFunc" ): return visitor.visitTanFunc(self) else: return visitor.visitChildren(self) class PinvFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def PINV(self): return self.getToken(MathExprParser.PINV, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPinvFunc" ): listener.enterPinvFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPinvFunc" ): listener.exitPinvFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPinvFunc" ): return visitor.visitPinvFunc(self) else: return visitor.visitChildren(self) class SifftFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SIFFT(self): return self.getToken(MathExprParser.SIFFT, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSifftFunc" ): listener.enterSifftFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSifftFunc" ): listener.exitSifftFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSifftFunc" ): return visitor.visitSifftFunc(self) else: return visitor.visitChildren(self) class FractFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def FRACT(self): return self.getToken(MathExprParser.FRACT, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterFractFunc" ): listener.enterFractFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitFractFunc" ): listener.exitFractFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitFractFunc" ): return visitor.visitFractFunc(self) else: return visitor.visitChildren(self) class GammaFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def GAMMA(self): return self.getToken(MathExprParser.GAMMA, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterGammaFunc" ): listener.enterGammaFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitGammaFunc" ): listener.exitGammaFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitGammaFunc" ): return visitor.visitGammaFunc(self) else: return visitor.visitChildren(self) class CosFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def COS(self): return self.getToken(MathExprParser.COS, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterCosFunc" ): listener.enterCosFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitCosFunc" ): listener.exitCosFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitCosFunc" ): return visitor.visitCosFunc(self) else: return visitor.visitChildren(self) class VarFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def VAR(self): return self.getToken(MathExprParser.VAR, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterVarFunc" ): listener.enterVarFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitVarFunc" ): listener.exitVarFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitVarFunc" ): return visitor.visitVarFunc(self) else: return visitor.visitChildren(self) class AsinFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ASIN(self): return self.getToken(MathExprParser.ASIN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAsinFunc" ): listener.enterAsinFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAsinFunc" ): listener.exitAsinFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAsinFunc" ): return visitor.visitAsinFunc(self) else: return visitor.visitChildren(self) class AsinhFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ASINH(self): return self.getToken(MathExprParser.ASINH, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAsinhFunc" ): listener.enterAsinhFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAsinhFunc" ): listener.exitAsinhFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAsinhFunc" ): return visitor.visitAsinhFunc(self) else: return visitor.visitChildren(self) class SfftFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def SFFT(self): return self.getToken(MathExprParser.SFFT, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSfftFunc" ): listener.enterSfftFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSfftFunc" ): listener.exitSfftFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSfftFunc" ): return visitor.visitSfftFunc(self) else: return visitor.visitChildren(self) class AtanhFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def ATANH(self): return self.getToken(MathExprParser.ATANH, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAtanhFunc" ): listener.enterAtanhFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAtanhFunc" ): listener.exitAtanhFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAtanhFunc" ): return visitor.visitAtanhFunc(self) else: return visitor.visitChildren(self) class ExpFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def EXP(self): return self.getToken(MathExprParser.EXP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterExpFunc" ): listener.enterExpFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitExpFunc" ): listener.exitExpFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitExpFunc" ): return visitor.visitExpFunc(self) else: return visitor.visitChildren(self) class PrintShapeFuncContext(Func1Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context super().__init__(parser) self.copyFrom(ctx) def PRINT_SHAPE(self): return self.getToken(MathExprParser.PRINT_SHAPE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self): return self.getTypedRuleContext(MathExprParser.ExprContext,0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPrintShapeFunc" ): listener.enterPrintShapeFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPrintShapeFunc" ): listener.exitPrintShapeFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPrintShapeFunc" ): return visitor.visitPrintShapeFunc(self) else: return visitor.visitChildren(self) def func1(self): localctx = MathExprParser.Func1Context(self, self._ctx, self.state) self.enterRule(localctx, 14, self.RULE_func1) try: self.state = 323 self._errHandler.sync(self) token = self._input.LA(1) if token in [1]: localctx = MathExprParser.SinFuncContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 128 self.match(MathExprParser.SIN) self.state = 129 self.match(MathExprParser.LPAREN) self.state = 130 self.expr() self.state = 131 self.match(MathExprParser.RPAREN) pass elif token in [2]: localctx = MathExprParser.CosFuncContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 133 self.match(MathExprParser.COS) self.state = 134 self.match(MathExprParser.LPAREN) self.state = 135 self.expr() self.state = 136 self.match(MathExprParser.RPAREN) pass elif token in [3]: localctx = MathExprParser.TanFuncContext(self, localctx) self.enterOuterAlt(localctx, 3) self.state = 138 self.match(MathExprParser.TAN) self.state = 139 self.match(MathExprParser.LPAREN) self.state = 140 self.expr() self.state = 141 self.match(MathExprParser.RPAREN) pass elif token in [4]: localctx = MathExprParser.AsinFuncContext(self, localctx) self.enterOuterAlt(localctx, 4) self.state = 143 self.match(MathExprParser.ASIN) self.state = 144 self.match(MathExprParser.LPAREN) self.state = 145 self.expr() self.state = 146 self.match(MathExprParser.RPAREN) pass elif token in [5]: localctx = MathExprParser.AcosFuncContext(self, localctx) self.enterOuterAlt(localctx, 5) self.state = 148 self.match(MathExprParser.ACOS) self.state = 149 self.match(MathExprParser.LPAREN) self.state = 150 self.expr() self.state = 151 self.match(MathExprParser.RPAREN) pass elif token in [6]: localctx = MathExprParser.AtanFuncContext(self, localctx) self.enterOuterAlt(localctx, 6) self.state = 153 self.match(MathExprParser.ATAN) self.state = 154 self.match(MathExprParser.LPAREN) self.state = 155 self.expr() self.state = 156 self.match(MathExprParser.RPAREN) pass elif token in [8]: localctx = MathExprParser.SinhFuncContext(self, localctx) self.enterOuterAlt(localctx, 7) self.state = 158 self.match(MathExprParser.SINH) self.state = 159 self.match(MathExprParser.LPAREN) self.state = 160 self.expr() self.state = 161 self.match(MathExprParser.RPAREN) pass elif token in [9]: localctx = MathExprParser.CoshFuncContext(self, localctx) self.enterOuterAlt(localctx, 8) self.state = 163 self.match(MathExprParser.COSH) self.state = 164 self.match(MathExprParser.LPAREN) self.state = 165 self.expr() self.state = 166 self.match(MathExprParser.RPAREN) pass elif token in [10]: localctx = MathExprParser.TanhFuncContext(self, localctx) self.enterOuterAlt(localctx, 9) self.state = 168 self.match(MathExprParser.TANH) self.state = 169 self.match(MathExprParser.LPAREN) self.state = 170 self.expr() self.state = 171 self.match(MathExprParser.RPAREN) pass elif token in [11]: localctx = MathExprParser.AsinhFuncContext(self, localctx) self.enterOuterAlt(localctx, 10) self.state = 173 self.match(MathExprParser.ASINH) self.state = 174 self.match(MathExprParser.LPAREN) self.state = 175 self.expr() self.state = 176 self.match(MathExprParser.RPAREN) pass elif token in [12]: localctx = MathExprParser.AcoshFuncContext(self, localctx) self.enterOuterAlt(localctx, 11) self.state = 178 self.match(MathExprParser.ACOSH) self.state = 179 self.match(MathExprParser.LPAREN) self.state = 180 self.expr() self.state = 181 self.match(MathExprParser.RPAREN) pass elif token in [13]: localctx = MathExprParser.AtanhFuncContext(self, localctx) self.enterOuterAlt(localctx, 12) self.state = 183 self.match(MathExprParser.ATANH) self.state = 184 self.match(MathExprParser.LPAREN) self.state = 185 self.expr() self.state = 186 self.match(MathExprParser.RPAREN) pass elif token in [14]: localctx = MathExprParser.AbsFuncContext(self, localctx) self.enterOuterAlt(localctx, 13) self.state = 188 self.match(MathExprParser.ABS) self.state = 189 self.match(MathExprParser.LPAREN) self.state = 190 self.expr() self.state = 191 self.match(MathExprParser.RPAREN) pass elif token in [15]: localctx = MathExprParser.SqrtFuncContext(self, localctx) self.enterOuterAlt(localctx, 14) self.state = 193 self.match(MathExprParser.SQRT) self.state = 194 self.match(MathExprParser.LPAREN) self.state = 195 self.expr() self.state = 196 self.match(MathExprParser.RPAREN) pass elif token in [16]: localctx = MathExprParser.LnFuncContext(self, localctx) self.enterOuterAlt(localctx, 15) self.state = 198 self.match(MathExprParser.LN) self.state = 199 self.match(MathExprParser.LPAREN) self.state = 200 self.expr() self.state = 201 self.match(MathExprParser.RPAREN) pass elif token in [17]: localctx = MathExprParser.LogFuncContext(self, localctx) self.enterOuterAlt(localctx, 16) self.state = 203 self.match(MathExprParser.LOG) self.state = 204 self.match(MathExprParser.LPAREN) self.state = 205 self.expr() self.state = 206 self.match(MathExprParser.RPAREN) pass elif token in [18]: localctx = MathExprParser.ExpFuncContext(self, localctx) self.enterOuterAlt(localctx, 17) self.state = 208 self.match(MathExprParser.EXP) self.state = 209 self.match(MathExprParser.LPAREN) self.state = 210 self.expr() self.state = 211 self.match(MathExprParser.RPAREN) pass elif token in [23]: localctx = MathExprParser.TNormFuncContext(self, localctx) self.enterOuterAlt(localctx, 18) self.state = 213 self.match(MathExprParser.TNORM) self.state = 214 self.match(MathExprParser.LPAREN) self.state = 215 self.expr() self.state = 216 self.match(MathExprParser.RPAREN) pass elif token in [24]: localctx = MathExprParser.SNormFuncContext(self, localctx) self.enterOuterAlt(localctx, 19) self.state = 218 self.match(MathExprParser.SNORM) self.state = 219 self.match(MathExprParser.LPAREN) self.state = 220 self.expr() self.state = 221 self.match(MathExprParser.RPAREN) pass elif token in [25]: localctx = MathExprParser.FloorFuncContext(self, localctx) self.enterOuterAlt(localctx, 20) self.state = 223 self.match(MathExprParser.FLOOR) self.state = 224 self.match(MathExprParser.LPAREN) self.state = 225 self.expr() self.state = 226 self.match(MathExprParser.RPAREN) pass elif token in [26]: localctx = MathExprParser.CeilFuncContext(self, localctx) self.enterOuterAlt(localctx, 21) self.state = 228 self.match(MathExprParser.CEIL) self.state = 229 self.match(MathExprParser.LPAREN) self.state = 230 self.expr() self.state = 231 self.match(MathExprParser.RPAREN) pass elif token in [27]: localctx = MathExprParser.RoundFuncContext(self, localctx) self.enterOuterAlt(localctx, 22) self.state = 233 self.match(MathExprParser.ROUND) self.state = 234 self.match(MathExprParser.LPAREN) self.state = 235 self.expr() self.state = 236 self.match(MathExprParser.RPAREN) pass elif token in [28]: localctx = MathExprParser.GammaFuncContext(self, localctx) self.enterOuterAlt(localctx, 23) self.state = 238 self.match(MathExprParser.GAMMA) self.state = 239 self.match(MathExprParser.LPAREN) self.state = 240 self.expr() self.state = 241 self.match(MathExprParser.RPAREN) pass elif token in [30]: localctx = MathExprParser.SigmoidFuncContext(self, localctx) self.enterOuterAlt(localctx, 24) self.state = 243 self.match(MathExprParser.SIGM) self.state = 244 self.match(MathExprParser.LPAREN) self.state = 245 self.expr() self.state = 246 self.match(MathExprParser.RPAREN) pass elif token in [32]: localctx = MathExprParser.SfftFuncContext(self, localctx) self.enterOuterAlt(localctx, 25) self.state = 248 self.match(MathExprParser.SFFT) self.state = 249 self.match(MathExprParser.LPAREN) self.state = 250 self.expr() self.state = 251 self.match(MathExprParser.RPAREN) pass elif token in [33]: localctx = MathExprParser.SifftFuncContext(self, localctx) self.enterOuterAlt(localctx, 26) self.state = 253 self.match(MathExprParser.SIFFT) self.state = 254 self.match(MathExprParser.LPAREN) self.state = 255 self.expr() self.state = 256 self.match(MathExprParser.RPAREN) pass elif token in [34]: localctx = MathExprParser.AnglFuncContext(self, localctx) self.enterOuterAlt(localctx, 27) self.state = 258 self.match(MathExprParser.ANGL) self.state = 259 self.match(MathExprParser.LPAREN) self.state = 260 self.expr() self.state = 261 self.match(MathExprParser.RPAREN) pass elif token in [35]: localctx = MathExprParser.PrintFuncContext(self, localctx) self.enterOuterAlt(localctx, 28) self.state = 263 self.match(MathExprParser.PRNT) self.state = 264 self.match(MathExprParser.LPAREN) self.state = 265 self.expr() self.state = 266 self.match(MathExprParser.RPAREN) pass elif token in [40]: localctx = MathExprParser.FractFuncContext(self, localctx) self.enterOuterAlt(localctx, 29) self.state = 268 self.match(MathExprParser.FRACT) self.state = 269 self.match(MathExprParser.LPAREN) self.state = 270 self.expr() self.state = 271 self.match(MathExprParser.RPAREN) pass elif token in [41]: localctx = MathExprParser.ReluFuncContext(self, localctx) self.enterOuterAlt(localctx, 30) self.state = 273 self.match(MathExprParser.RELU) self.state = 274 self.match(MathExprParser.LPAREN) self.state = 275 self.expr() self.state = 276 self.match(MathExprParser.RPAREN) pass elif token in [42]: localctx = MathExprParser.SoftplusFuncContext(self, localctx) self.enterOuterAlt(localctx, 31) self.state = 278 self.match(MathExprParser.SOFTPLUS) self.state = 279 self.match(MathExprParser.LPAREN) self.state = 280 self.expr() self.state = 281 self.match(MathExprParser.RPAREN) pass elif token in [43]: localctx = MathExprParser.GeluFuncContext(self, localctx) self.enterOuterAlt(localctx, 32) self.state = 283 self.match(MathExprParser.GELU) self.state = 284 self.match(MathExprParser.LPAREN) self.state = 285 self.expr() self.state = 286 self.match(MathExprParser.RPAREN) pass elif token in [44]: localctx = MathExprParser.SignFuncContext(self, localctx) self.enterOuterAlt(localctx, 33) self.state = 288 self.match(MathExprParser.SIGN) self.state = 289 self.match(MathExprParser.LPAREN) self.state = 290 self.expr() self.state = 291 self.match(MathExprParser.RPAREN) pass elif token in [36]: localctx = MathExprParser.PrintShapeFuncContext(self, localctx) self.enterOuterAlt(localctx, 34) self.state = 293 self.match(MathExprParser.PRINT_SHAPE) self.state = 294 self.match(MathExprParser.LPAREN) self.state = 295 self.expr() self.state = 296 self.match(MathExprParser.RPAREN) pass elif token in [54]: localctx = MathExprParser.PinvFuncContext(self, localctx) self.enterOuterAlt(localctx, 35) self.state = 298 self.match(MathExprParser.PINV) self.state = 299 self.match(MathExprParser.LPAREN) self.state = 300 self.expr() self.state = 301 self.match(MathExprParser.RPAREN) pass elif token in [55]: localctx = MathExprParser.SumFuncContext(self, localctx) self.enterOuterAlt(localctx, 36) self.state = 303 self.match(MathExprParser.SUM) self.state = 304 self.match(MathExprParser.LPAREN) self.state = 305 self.expr() self.state = 306 self.match(MathExprParser.RPAREN) pass elif token in [56]: localctx = MathExprParser.MeanFuncContext(self, localctx) self.enterOuterAlt(localctx, 37) self.state = 308 self.match(MathExprParser.MEAN) self.state = 309 self.match(MathExprParser.LPAREN) self.state = 310 self.expr() self.state = 311 self.match(MathExprParser.RPAREN) pass elif token in [57]: localctx = MathExprParser.StdFuncContext(self, localctx) self.enterOuterAlt(localctx, 38) self.state = 313 self.match(MathExprParser.STD) self.state = 314 self.match(MathExprParser.LPAREN) self.state = 315 self.expr() self.state = 316 self.match(MathExprParser.RPAREN) pass elif token in [58]: localctx = MathExprParser.VarFuncContext(self, localctx) self.enterOuterAlt(localctx, 39) self.state = 318 self.match(MathExprParser.VAR) self.state = 319 self.match(MathExprParser.LPAREN) self.state = 320 self.expr() self.state = 321 self.match(MathExprParser.RPAREN) pass else: raise NoViableAltException(self) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class Func2Context(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_func2 def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class TopkFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def TOPK(self): return self.getToken(MathExprParser.TOPK, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterTopkFunc" ): listener.enterTopkFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitTopkFunc" ): listener.exitTopkFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitTopkFunc" ): return visitor.visitTopkFunc(self) else: return visitor.visitChildren(self) class BotkFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def BOTK(self): return self.getToken(MathExprParser.BOTK, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterBotkFunc" ): listener.enterBotkFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitBotkFunc" ): listener.exitBotkFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitBotkFunc" ): return visitor.visitBotkFunc(self) else: return visitor.visitChildren(self) class PercentileFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def PERCENTILE(self): return self.getToken(MathExprParser.PERCENTILE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPercentileFunc" ): listener.enterPercentileFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPercentileFunc" ): listener.exitPercentileFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPercentileFunc" ): return visitor.visitPercentileFunc(self) else: return visitor.visitChildren(self) class TMaxFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def TMAX(self): return self.getToken(MathExprParser.TMAX, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterTMaxFunc" ): listener.enterTMaxFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitTMaxFunc" ): listener.exitTMaxFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitTMaxFunc" ): return visitor.visitTMaxFunc(self) else: return visitor.visitChildren(self) class PowFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def POWE(self): return self.getToken(MathExprParser.POWE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPowFunc" ): listener.enterPowFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPowFunc" ): listener.exitPowFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPowFunc" ): return visitor.visitPowFunc(self) else: return visitor.visitChildren(self) class DotFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def DOT(self): return self.getToken(MathExprParser.DOT, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterDotFunc" ): listener.enterDotFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitDotFunc" ): listener.exitDotFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitDotFunc" ): return visitor.visitDotFunc(self) else: return visitor.visitChildren(self) class StepFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def STEP(self): return self.getToken(MathExprParser.STEP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterStepFunc" ): listener.enterStepFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitStepFunc" ): listener.exitStepFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitStepFunc" ): return visitor.visitStepFunc(self) else: return visitor.visitChildren(self) class Atan2FuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def ATAN2(self): return self.getToken(MathExprParser.ATAN2, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterAtan2Func" ): listener.enterAtan2Func(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitAtan2Func" ): listener.exitAtan2Func(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitAtan2Func" ): return visitor.visitAtan2Func(self) else: return visitor.visitChildren(self) class QuantileFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def QUANTILE(self): return self.getToken(MathExprParser.QUANTILE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterQuantileFunc" ): listener.enterQuantileFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitQuantileFunc" ): listener.exitQuantileFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitQuantileFunc" ): return visitor.visitQuantileFunc(self) else: return visitor.visitChildren(self) class QuartileFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def QUARTILE(self): return self.getToken(MathExprParser.QUARTILE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterQuartileFunc" ): listener.enterQuartileFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitQuartileFunc" ): listener.exitQuartileFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitQuartileFunc" ): return visitor.visitQuartileFunc(self) else: return visitor.visitChildren(self) class TMinFuncContext(Func2Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context super().__init__(parser) self.copyFrom(ctx) def TMIN(self): return self.getToken(MathExprParser.TMIN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterTMinFunc" ): listener.enterTMinFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitTMinFunc" ): listener.exitTMinFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitTMinFunc" ): return visitor.visitTMinFunc(self) else: return visitor.visitChildren(self) def func2(self): localctx = MathExprParser.Func2Context(self, self._ctx, self.state) self.enterRule(localctx, 16, self.RULE_func2) try: self.state = 402 self._errHandler.sync(self) token = self._input.LA(1) if token in [29]: localctx = MathExprParser.PowFuncContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 325 self.match(MathExprParser.POWE) self.state = 326 self.match(MathExprParser.LPAREN) self.state = 327 self.expr() self.state = 328 self.match(MathExprParser.COMMA) self.state = 329 self.expr() self.state = 330 self.match(MathExprParser.RPAREN) pass elif token in [7]: localctx = MathExprParser.Atan2FuncContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 332 self.match(MathExprParser.ATAN2) self.state = 333 self.match(MathExprParser.LPAREN) self.state = 334 self.expr() self.state = 335 self.match(MathExprParser.COMMA) self.state = 336 self.expr() self.state = 337 self.match(MathExprParser.RPAREN) pass elif token in [21]: localctx = MathExprParser.TMinFuncContext(self, localctx) self.enterOuterAlt(localctx, 3) self.state = 339 self.match(MathExprParser.TMIN) self.state = 340 self.match(MathExprParser.LPAREN) self.state = 341 self.expr() self.state = 342 self.match(MathExprParser.COMMA) self.state = 343 self.expr() self.state = 344 self.match(MathExprParser.RPAREN) pass elif token in [22]: localctx = MathExprParser.TMaxFuncContext(self, localctx) self.enterOuterAlt(localctx, 4) self.state = 346 self.match(MathExprParser.TMAX) self.state = 347 self.match(MathExprParser.LPAREN) self.state = 348 self.expr() self.state = 349 self.match(MathExprParser.COMMA) self.state = 350 self.expr() self.state = 351 self.match(MathExprParser.RPAREN) pass elif token in [38]: localctx = MathExprParser.StepFuncContext(self, localctx) self.enterOuterAlt(localctx, 5) self.state = 353 self.match(MathExprParser.STEP) self.state = 354 self.match(MathExprParser.LPAREN) self.state = 355 self.expr() self.state = 356 self.match(MathExprParser.COMMA) self.state = 357 self.expr() self.state = 358 self.match(MathExprParser.RPAREN) pass elif token in [52]: localctx = MathExprParser.TopkFuncContext(self, localctx) self.enterOuterAlt(localctx, 6) self.state = 360 self.match(MathExprParser.TOPK) self.state = 361 self.match(MathExprParser.LPAREN) self.state = 362 self.expr() self.state = 363 self.match(MathExprParser.COMMA) self.state = 364 self.expr() self.state = 365 self.match(MathExprParser.RPAREN) pass elif token in [53]: localctx = MathExprParser.BotkFuncContext(self, localctx) self.enterOuterAlt(localctx, 7) self.state = 367 self.match(MathExprParser.BOTK) self.state = 368 self.match(MathExprParser.LPAREN) self.state = 369 self.expr() self.state = 370 self.match(MathExprParser.COMMA) self.state = 371 self.expr() self.state = 372 self.match(MathExprParser.RPAREN) pass elif token in [59]: localctx = MathExprParser.QuartileFuncContext(self, localctx) self.enterOuterAlt(localctx, 8) self.state = 374 self.match(MathExprParser.QUARTILE) self.state = 375 self.match(MathExprParser.LPAREN) self.state = 376 self.expr() self.state = 377 self.match(MathExprParser.COMMA) self.state = 378 self.expr() self.state = 379 self.match(MathExprParser.RPAREN) pass elif token in [60]: localctx = MathExprParser.PercentileFuncContext(self, localctx) self.enterOuterAlt(localctx, 9) self.state = 381 self.match(MathExprParser.PERCENTILE) self.state = 382 self.match(MathExprParser.LPAREN) self.state = 383 self.expr() self.state = 384 self.match(MathExprParser.COMMA) self.state = 385 self.expr() self.state = 386 self.match(MathExprParser.RPAREN) pass elif token in [61]: localctx = MathExprParser.QuantileFuncContext(self, localctx) self.enterOuterAlt(localctx, 10) self.state = 388 self.match(MathExprParser.QUANTILE) self.state = 389 self.match(MathExprParser.LPAREN) self.state = 390 self.expr() self.state = 391 self.match(MathExprParser.COMMA) self.state = 392 self.expr() self.state = 393 self.match(MathExprParser.RPAREN) pass elif token in [62]: localctx = MathExprParser.DotFuncContext(self, localctx) self.enterOuterAlt(localctx, 11) self.state = 395 self.match(MathExprParser.DOT) self.state = 396 self.match(MathExprParser.LPAREN) self.state = 397 self.expr() self.state = 398 self.match(MathExprParser.COMMA) self.state = 399 self.expr() self.state = 400 self.match(MathExprParser.RPAREN) pass else: raise NoViableAltException(self) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class Func3Context(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_func3 def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class LerpFuncContext(Func3Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context super().__init__(parser) self.copyFrom(ctx) def LERP(self): return self.getToken(MathExprParser.LERP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterLerpFunc" ): listener.enterLerpFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitLerpFunc" ): listener.exitLerpFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitLerpFunc" ): return visitor.visitLerpFunc(self) else: return visitor.visitChildren(self) class SmoothstepFuncContext(Func3Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context super().__init__(parser) self.copyFrom(ctx) def SMOOTHSTEP(self): return self.getToken(MathExprParser.SMOOTHSTEP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSmoothstepFunc" ): listener.enterSmoothstepFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSmoothstepFunc" ): listener.exitSmoothstepFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSmoothstepFunc" ): return visitor.visitSmoothstepFunc(self) else: return visitor.visitChildren(self) class RangeFuncContext(Func3Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context super().__init__(parser) self.copyFrom(ctx) def RANGE(self): return self.getToken(MathExprParser.RANGE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterRangeFunc" ): listener.enterRangeFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitRangeFunc" ): listener.exitRangeFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitRangeFunc" ): return visitor.visitRangeFunc(self) else: return visitor.visitChildren(self) class ClampFuncContext(Func3Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context super().__init__(parser) self.copyFrom(ctx) def CLAMP(self): return self.getToken(MathExprParser.CLAMP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterClampFunc" ): listener.enterClampFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitClampFunc" ): listener.exitClampFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitClampFunc" ): return visitor.visitClampFunc(self) else: return visitor.visitChildren(self) def func3(self): localctx = MathExprParser.Func3Context(self, self._ctx, self.state) self.enterRule(localctx, 18, self.RULE_func3) try: self.state = 440 self._errHandler.sync(self) token = self._input.LA(1) if token in [31]: localctx = MathExprParser.ClampFuncContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 404 self.match(MathExprParser.CLAMP) self.state = 405 self.match(MathExprParser.LPAREN) self.state = 406 self.expr() self.state = 407 self.match(MathExprParser.COMMA) self.state = 408 self.expr() self.state = 409 self.match(MathExprParser.COMMA) self.state = 410 self.expr() self.state = 411 self.match(MathExprParser.RPAREN) pass elif token in [37]: localctx = MathExprParser.LerpFuncContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 413 self.match(MathExprParser.LERP) self.state = 414 self.match(MathExprParser.LPAREN) self.state = 415 self.expr() self.state = 416 self.match(MathExprParser.COMMA) self.state = 417 self.expr() self.state = 418 self.match(MathExprParser.COMMA) self.state = 419 self.expr() self.state = 420 self.match(MathExprParser.RPAREN) pass elif token in [39]: localctx = MathExprParser.SmoothstepFuncContext(self, localctx) self.enterOuterAlt(localctx, 3) self.state = 422 self.match(MathExprParser.SMOOTHSTEP) self.state = 423 self.match(MathExprParser.LPAREN) self.state = 424 self.expr() self.state = 425 self.match(MathExprParser.COMMA) self.state = 426 self.expr() self.state = 427 self.match(MathExprParser.COMMA) self.state = 428 self.expr() self.state = 429 self.match(MathExprParser.RPAREN) pass elif token in [51]: localctx = MathExprParser.RangeFuncContext(self, localctx) self.enterOuterAlt(localctx, 4) self.state = 431 self.match(MathExprParser.RANGE) self.state = 432 self.match(MathExprParser.LPAREN) self.state = 433 self.expr() self.state = 434 self.match(MathExprParser.COMMA) self.state = 435 self.expr() self.state = 436 self.match(MathExprParser.COMMA) self.state = 437 self.expr() self.state = 438 self.match(MathExprParser.RPAREN) pass else: raise NoViableAltException(self) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class Func4Context(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_func4 def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class SwapFuncContext(Func4Context): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func4Context super().__init__(parser) self.copyFrom(ctx) def SWAP(self): return self.getToken(MathExprParser.SWAP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSwapFunc" ): listener.enterSwapFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSwapFunc" ): listener.exitSwapFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSwapFunc" ): return visitor.visitSwapFunc(self) else: return visitor.visitChildren(self) def func4(self): localctx = MathExprParser.Func4Context(self, self._ctx, self.state) self.enterRule(localctx, 20, self.RULE_func4) try: localctx = MathExprParser.SwapFuncContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 442 self.match(MathExprParser.SWAP) self.state = 443 self.match(MathExprParser.LPAREN) self.state = 444 self.expr() self.state = 445 self.match(MathExprParser.COMMA) self.state = 446 self.expr() self.state = 447 self.match(MathExprParser.COMMA) self.state = 448 self.expr() self.state = 449 self.match(MathExprParser.COMMA) self.state = 450 self.expr() self.state = 451 self.match(MathExprParser.RPAREN) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx class FuncNContext(ParserRuleContext): __slots__ = 'parser' def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1): super().__init__(parent, invokingState) self.parser = parser def getRuleIndex(self): return MathExprParser.RULE_funcN def copyFrom(self, ctx:ParserRuleContext): super().copyFrom(ctx) class SMaxFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def SMAX(self): return self.getToken(MathExprParser.SMAX, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSMaxFunc" ): listener.enterSMaxFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSMaxFunc" ): listener.exitSMaxFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSMaxFunc" ): return visitor.visitSMaxFunc(self) else: return visitor.visitChildren(self) class MapFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def MAP(self): return self.getToken(MathExprParser.MAP, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterMapFunc" ): listener.enterMapFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitMapFunc" ): listener.exitMapFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitMapFunc" ): return visitor.visitMapFunc(self) else: return visitor.visitChildren(self) class EzConvFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def EZCONV(self): return self.getToken(MathExprParser.EZCONV, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterEzConvFunc" ): listener.enterEzConvFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitEzConvFunc" ): listener.exitEzConvFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitEzConvFunc" ): return visitor.visitEzConvFunc(self) else: return visitor.visitChildren(self) class PermuteFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def PERM(self): return self.getToken(MathExprParser.PERM, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterPermuteFunc" ): listener.enterPermuteFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitPermuteFunc" ): listener.exitPermuteFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitPermuteFunc" ): return visitor.visitPermuteFunc(self) else: return visitor.visitChildren(self) class ReshapeFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def RESHAPE(self): return self.getToken(MathExprParser.RESHAPE, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def COMMA(self): return self.getToken(MathExprParser.COMMA, 0) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterReshapeFunc" ): listener.enterReshapeFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitReshapeFunc" ): listener.exitReshapeFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitReshapeFunc" ): return visitor.visitReshapeFunc(self) else: return visitor.visitChildren(self) class SMinFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def SMIN(self): return self.getToken(MathExprParser.SMIN, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterSMinFunc" ): listener.enterSMinFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitSMinFunc" ): listener.exitSMinFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitSMinFunc" ): return visitor.visitSMinFunc(self) else: return visitor.visitChildren(self) class ConvFuncContext(FuncNContext): def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext super().__init__(parser) self.copyFrom(ctx) def CONV(self): return self.getToken(MathExprParser.CONV, 0) def LPAREN(self): return self.getToken(MathExprParser.LPAREN, 0) def expr(self, i:int=None): if i is None: return self.getTypedRuleContexts(MathExprParser.ExprContext) else: return self.getTypedRuleContext(MathExprParser.ExprContext,i) def RPAREN(self): return self.getToken(MathExprParser.RPAREN, 0) def COMMA(self, i:int=None): if i is None: return self.getTokens(MathExprParser.COMMA) else: return self.getToken(MathExprParser.COMMA, i) def enterRule(self, listener:ParseTreeListener): if hasattr( listener, "enterConvFunc" ): listener.enterConvFunc(self) def exitRule(self, listener:ParseTreeListener): if hasattr( listener, "exitConvFunc" ): listener.exitConvFunc(self) def accept(self, visitor:ParseTreeVisitor): if hasattr( visitor, "visitConvFunc" ): return visitor.visitConvFunc(self) else: return visitor.visitChildren(self) def funcN(self): localctx = MathExprParser.FuncNContext(self, self._ctx, self.state) self.enterRule(localctx, 22, self.RULE_funcN) self._la = 0 # Token type try: self.state = 524 self._errHandler.sync(self) token = self._input.LA(1) if token in [19]: localctx = MathExprParser.SMinFuncContext(self, localctx) self.enterOuterAlt(localctx, 1) self.state = 453 self.match(MathExprParser.SMIN) self.state = 454 self.match(MathExprParser.LPAREN) self.state = 455 self.expr() self.state = 460 self._errHandler.sync(self) _la = self._input.LA(1) while _la==78: self.state = 456 self.match(MathExprParser.COMMA) self.state = 457 self.expr() self.state = 462 self._errHandler.sync(self) _la = self._input.LA(1) self.state = 463 self.match(MathExprParser.RPAREN) pass elif token in [20]: localctx = MathExprParser.SMaxFuncContext(self, localctx) self.enterOuterAlt(localctx, 2) self.state = 465 self.match(MathExprParser.SMAX) self.state = 466 self.match(MathExprParser.LPAREN) self.state = 467 self.expr() self.state = 472 self._errHandler.sync(self) _la = self._input.LA(1) while _la==78: self.state = 468 self.match(MathExprParser.COMMA) self.state = 469 self.expr() self.state = 474 self._errHandler.sync(self) _la = self._input.LA(1) self.state = 475 self.match(MathExprParser.RPAREN) pass elif token in [45]: localctx = MathExprParser.MapFuncContext(self, localctx) self.enterOuterAlt(localctx, 3) self.state = 477 self.match(MathExprParser.MAP) self.state = 478 self.match(MathExprParser.LPAREN) self.state = 479 self.expr() self.state = 482 self._errHandler.sync(self) _la = self._input.LA(1) while True: self.state = 480 self.match(MathExprParser.COMMA) self.state = 481 self.expr() self.state = 484 self._errHandler.sync(self) _la = self._input.LA(1) if not (_la==78): break self.state = 486 self.match(MathExprParser.RPAREN) pass elif token in [46]: localctx = MathExprParser.EzConvFuncContext(self, localctx) self.enterOuterAlt(localctx, 4) self.state = 488 self.match(MathExprParser.EZCONV) self.state = 489 self.match(MathExprParser.LPAREN) self.state = 490 self.expr() self.state = 493 self._errHandler.sync(self) _la = self._input.LA(1) while True: self.state = 491 self.match(MathExprParser.COMMA) self.state = 492 self.expr() self.state = 495 self._errHandler.sync(self) _la = self._input.LA(1) if not (_la==78): break self.state = 497 self.match(MathExprParser.RPAREN) pass elif token in [47]: localctx = MathExprParser.ConvFuncContext(self, localctx) self.enterOuterAlt(localctx, 5) self.state = 499 self.match(MathExprParser.CONV) self.state = 500 self.match(MathExprParser.LPAREN) self.state = 501 self.expr() self.state = 504 self._errHandler.sync(self) _la = self._input.LA(1) while True: self.state = 502 self.match(MathExprParser.COMMA) self.state = 503 self.expr() self.state = 506 self._errHandler.sync(self) _la = self._input.LA(1) if not (_la==78): break self.state = 508 self.match(MathExprParser.RPAREN) pass elif token in [49]: localctx = MathExprParser.PermuteFuncContext(self, localctx) self.enterOuterAlt(localctx, 6) self.state = 510 self.match(MathExprParser.PERM) self.state = 511 self.match(MathExprParser.LPAREN) self.state = 512 self.expr() self.state = 513 self.match(MathExprParser.COMMA) self.state = 514 self.expr() self.state = 515 self.match(MathExprParser.RPAREN) pass elif token in [50]: localctx = MathExprParser.ReshapeFuncContext(self, localctx) self.enterOuterAlt(localctx, 7) self.state = 517 self.match(MathExprParser.RESHAPE) self.state = 518 self.match(MathExprParser.LPAREN) self.state = 519 self.expr() self.state = 520 self.match(MathExprParser.COMMA) self.state = 521 self.expr() self.state = 522 self.match(MathExprParser.RPAREN) pass else: raise NoViableAltException(self) except RecognitionException as re: localctx.exception = re self._errHandler.reportError(self, re) self._errHandler.recover(self, re) finally: self.exitRule() return localctx def sempred(self, localctx:RuleContext, ruleIndex:int, predIndex:int): if self._predicates == None: self._predicates = dict() self._predicates[1] = self.compExpr_sempred self._predicates[2] = self.addExpr_sempred self._predicates[3] = self.mulExpr_sempred pred = self._predicates.get(ruleIndex, None) if pred is None: raise Exception("No predicate with index:" + str(ruleIndex)) else: return pred(localctx, predIndex) def compExpr_sempred(self, localctx:CompExprContext, predIndex:int): if predIndex == 0: return self.precpred(self._ctx, 7) if predIndex == 1: return self.precpred(self._ctx, 6) if predIndex == 2: return self.precpred(self._ctx, 5) if predIndex == 3: return self.precpred(self._ctx, 4) if predIndex == 4: return self.precpred(self._ctx, 3) if predIndex == 5: return self.precpred(self._ctx, 2) def addExpr_sempred(self, localctx:AddExprContext, predIndex:int): if predIndex == 6: return self.precpred(self._ctx, 3) if predIndex == 7: return self.precpred(self._ctx, 2) def mulExpr_sempred(self, localctx:MulExprContext, predIndex:int): if predIndex == 8: return self.precpred(self._ctx, 4) if predIndex == 9: return self.precpred(self._ctx, 3) if predIndex == 10: return self.precpred(self._ctx, 2)