Files
mcDandy-more_math/more_math/Parser/MathExprParser.py
T
mcDandy 458901bb2a Fix map function + add common variables
should have added them from beginning instead of giving custom names to them. Will not be deleting that.
2025-12-27 17:58:13 +01:00

4034 lines
145 KiB
Python

# 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 [
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0,419,422,3,0,0,0,420,421,5,4,0,0,421,423,3,0,0,0,422,420,1,0,0,
0,423,424,1,0,0,0,424,422,1,0,0,0,424,425,1,0,0,0,425,426,1,0,0,
0,426,427,5,2,0,0,427,436,1,0,0,0,428,429,5,54,0,0,429,430,5,1,0,
0,430,431,3,0,0,0,431,432,5,4,0,0,432,433,3,0,0,0,433,434,5,2,0,
0,434,436,1,0,0,0,435,382,1,0,0,0,435,394,1,0,0,0,435,406,1,0,0,
0,435,417,1,0,0,0,435,428,1,0,0,0,436,23,1,0,0,0,19,26,49,51,63,
65,80,82,90,97,121,126,303,340,369,389,401,413,424,435
]
class MathExprParser ( Parser ):
grammarFileName = "MathExpr.g4"
atn = ATNDeserializer().deserialize(serializedATN())
decisionsToDFA = [ DFA(ds, i) for i, ds in enumerate(atn.decisionToState) ]
sharedContextCache = PredictionContextCache()
literalNames = [ "<INVALID>", "'('", "')'", "'['", "','", "']'", "'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'", "'print_shape'", "'pshp'", "'lerp'", "'step'",
"'smoothstep'", "'fract'", "'relu'", "'softplus'",
"'gelu'", "'sign'", "'map'", "'conv'", "'swap'", "'permute'",
"'+'", "'-'", "'*'", "'/'", "'%'", "'^'", "'>='", "'>'",
"'<='", "'<'", "'=='", "'!='", "'|'" ]
symbolicNames = [ "<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"<INVALID>", "<INVALID>", "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_L",
"PRINT_SHAPE", "LERP", "STEP", "SMOOTHSTEP", "FRACT",
"RELU", "SOFTPLUS", "GELU", "SIGN", "MAP", "CONV",
"SWAP", "PERM", "PLUS", "MINUS", "MULT", "DIV", "MOD",
"POW", "GE", "GT", "LE", "LT", "EQ", "NE", "PIPE",
"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
T__0=1
T__1=2
T__2=3
T__3=4
T__4=5
SIN=6
COS=7
TAN=8
ASIN=9
ACOS=10
ATAN=11
ATAN2=12
SINH=13
COSH=14
TANH=15
ASINH=16
ACOSH=17
ATANH=18
ABS=19
SQRT=20
LN=21
LOG=22
EXP=23
SMIN=24
SMAX=25
TMIN=26
TMAX=27
TNORM=28
SNORM=29
FLOOR=30
CEIL=31
ROUND=32
GAMMA=33
POWE=34
SIGM=35
CLAMP=36
SFFT=37
SIFFT=38
ANGL=39
PRNT=40
PRINT_SHAPE_L=41
PRINT_SHAPE=42
LERP=43
STEP=44
SMOOTHSTEP=45
FRACT=46
RELU=47
SOFTPLUS=48
GELU=49
SIGN=50
MAP=51
CONV=52
SWAP=53
PERM=54
PLUS=55
MINUS=56
MULT=57
DIV=58
MOD=59
POW=60
GE=61
GT=62
LE=63
LT=64
EQ=65
NE=66
PIPE=67
CONSTANT=68
NUMBER=69
VARIABLE=70
WS=71
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 [55]:
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 [56]:
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, 3, 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, 67, 68, 69, 70]:
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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,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 [6, 7, 8, 9, 10, 11, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 28, 29, 30, 31, 32, 33, 35, 37, 38, 39, 40, 41, 42, 46, 47, 48, 49, 50]:
localctx = MathExprParser.Func1ExpContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 99
self.func1()
pass
elif token in [12, 26, 27, 34, 44]:
localctx = MathExprParser.Func2ExpContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 100
self.func2()
pass
elif token in [36, 43, 45]:
localctx = MathExprParser.Func3ExpContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 101
self.func3()
pass
elif token in [53]:
localctx = MathExprParser.Func4ExpContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 102
self.func4()
pass
elif token in [24, 25, 51, 52, 54]:
localctx = MathExprParser.FuncNExpContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 103
self.funcN()
pass
elif token in [70]:
localctx = MathExprParser.VariableExpContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 104
self.match(MathExprParser.VARIABLE)
pass
elif token in [69]:
localctx = MathExprParser.NumberExpContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 105
self.match(MathExprParser.NUMBER)
pass
elif token in [68]:
localctx = MathExprParser.ConstantExpContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 106
self.match(MathExprParser.CONSTANT)
pass
elif token in [1]:
localctx = MathExprParser.ParenExpContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 107
self.match(MathExprParser.T__0)
self.state = 108
self.expr()
self.state = 109
self.match(MathExprParser.T__1)
pass
elif token in [67]:
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 [3]:
localctx = MathExprParser.ListExpContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 115
self.match(MathExprParser.T__2)
self.state = 116
self.expr()
self.state = 121
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==4:
self.state = 117
self.match(MathExprParser.T__3)
self.state = 118
self.expr()
self.state = 123
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 124
self.match(MathExprParser.T__4)
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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,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_L(self):
return self.getToken(MathExprParser.PRINT_SHAPE_L, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def PRINT_SHAPE(self):
return self.getToken(MathExprParser.PRINT_SHAPE, 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 = 303
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [6]:
localctx = MathExprParser.SinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 128
self.match(MathExprParser.SIN)
self.state = 129
self.match(MathExprParser.T__0)
self.state = 130
self.expr()
self.state = 131
self.match(MathExprParser.T__1)
pass
elif token in [7]:
localctx = MathExprParser.CosFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 133
self.match(MathExprParser.COS)
self.state = 134
self.match(MathExprParser.T__0)
self.state = 135
self.expr()
self.state = 136
self.match(MathExprParser.T__1)
pass
elif token in [8]:
localctx = MathExprParser.TanFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 138
self.match(MathExprParser.TAN)
self.state = 139
self.match(MathExprParser.T__0)
self.state = 140
self.expr()
self.state = 141
self.match(MathExprParser.T__1)
pass
elif token in [9]:
localctx = MathExprParser.AsinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 143
self.match(MathExprParser.ASIN)
self.state = 144
self.match(MathExprParser.T__0)
self.state = 145
self.expr()
self.state = 146
self.match(MathExprParser.T__1)
pass
elif token in [10]:
localctx = MathExprParser.AcosFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 148
self.match(MathExprParser.ACOS)
self.state = 149
self.match(MathExprParser.T__0)
self.state = 150
self.expr()
self.state = 151
self.match(MathExprParser.T__1)
pass
elif token in [11]:
localctx = MathExprParser.AtanFuncContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 153
self.match(MathExprParser.ATAN)
self.state = 154
self.match(MathExprParser.T__0)
self.state = 155
self.expr()
self.state = 156
self.match(MathExprParser.T__1)
pass
elif token in [13]:
localctx = MathExprParser.SinhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 158
self.match(MathExprParser.SINH)
self.state = 159
self.match(MathExprParser.T__0)
self.state = 160
self.expr()
self.state = 161
self.match(MathExprParser.T__1)
pass
elif token in [14]:
localctx = MathExprParser.CoshFuncContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 163
self.match(MathExprParser.COSH)
self.state = 164
self.match(MathExprParser.T__0)
self.state = 165
self.expr()
self.state = 166
self.match(MathExprParser.T__1)
pass
elif token in [15]:
localctx = MathExprParser.TanhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 168
self.match(MathExprParser.TANH)
self.state = 169
self.match(MathExprParser.T__0)
self.state = 170
self.expr()
self.state = 171
self.match(MathExprParser.T__1)
pass
elif token in [16]:
localctx = MathExprParser.AsinhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 10)
self.state = 173
self.match(MathExprParser.ASINH)
self.state = 174
self.match(MathExprParser.T__0)
self.state = 175
self.expr()
self.state = 176
self.match(MathExprParser.T__1)
pass
elif token in [17]:
localctx = MathExprParser.AcoshFuncContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 178
self.match(MathExprParser.ACOSH)
self.state = 179
self.match(MathExprParser.T__0)
self.state = 180
self.expr()
self.state = 181
self.match(MathExprParser.T__1)
pass
elif token in [18]:
localctx = MathExprParser.AtanhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 12)
self.state = 183
self.match(MathExprParser.ATANH)
self.state = 184
self.match(MathExprParser.T__0)
self.state = 185
self.expr()
self.state = 186
self.match(MathExprParser.T__1)
pass
elif token in [19]:
localctx = MathExprParser.AbsFuncContext(self, localctx)
self.enterOuterAlt(localctx, 13)
self.state = 188
self.match(MathExprParser.ABS)
self.state = 189
self.match(MathExprParser.T__0)
self.state = 190
self.expr()
self.state = 191
self.match(MathExprParser.T__1)
pass
elif token in [20]:
localctx = MathExprParser.SqrtFuncContext(self, localctx)
self.enterOuterAlt(localctx, 14)
self.state = 193
self.match(MathExprParser.SQRT)
self.state = 194
self.match(MathExprParser.T__0)
self.state = 195
self.expr()
self.state = 196
self.match(MathExprParser.T__1)
pass
elif token in [21]:
localctx = MathExprParser.LnFuncContext(self, localctx)
self.enterOuterAlt(localctx, 15)
self.state = 198
self.match(MathExprParser.LN)
self.state = 199
self.match(MathExprParser.T__0)
self.state = 200
self.expr()
self.state = 201
self.match(MathExprParser.T__1)
pass
elif token in [22]:
localctx = MathExprParser.LogFuncContext(self, localctx)
self.enterOuterAlt(localctx, 16)
self.state = 203
self.match(MathExprParser.LOG)
self.state = 204
self.match(MathExprParser.T__0)
self.state = 205
self.expr()
self.state = 206
self.match(MathExprParser.T__1)
pass
elif token in [23]:
localctx = MathExprParser.ExpFuncContext(self, localctx)
self.enterOuterAlt(localctx, 17)
self.state = 208
self.match(MathExprParser.EXP)
self.state = 209
self.match(MathExprParser.T__0)
self.state = 210
self.expr()
self.state = 211
self.match(MathExprParser.T__1)
pass
elif token in [28]:
localctx = MathExprParser.TNormFuncContext(self, localctx)
self.enterOuterAlt(localctx, 18)
self.state = 213
self.match(MathExprParser.TNORM)
self.state = 214
self.match(MathExprParser.T__0)
self.state = 215
self.expr()
self.state = 216
self.match(MathExprParser.T__1)
pass
elif token in [29]:
localctx = MathExprParser.SNormFuncContext(self, localctx)
self.enterOuterAlt(localctx, 19)
self.state = 218
self.match(MathExprParser.SNORM)
self.state = 219
self.match(MathExprParser.T__0)
self.state = 220
self.expr()
self.state = 221
self.match(MathExprParser.T__1)
pass
elif token in [30]:
localctx = MathExprParser.FloorFuncContext(self, localctx)
self.enterOuterAlt(localctx, 20)
self.state = 223
self.match(MathExprParser.FLOOR)
self.state = 224
self.match(MathExprParser.T__0)
self.state = 225
self.expr()
self.state = 226
self.match(MathExprParser.T__1)
pass
elif token in [31]:
localctx = MathExprParser.CeilFuncContext(self, localctx)
self.enterOuterAlt(localctx, 21)
self.state = 228
self.match(MathExprParser.CEIL)
self.state = 229
self.match(MathExprParser.T__0)
self.state = 230
self.expr()
self.state = 231
self.match(MathExprParser.T__1)
pass
elif token in [32]:
localctx = MathExprParser.RoundFuncContext(self, localctx)
self.enterOuterAlt(localctx, 22)
self.state = 233
self.match(MathExprParser.ROUND)
self.state = 234
self.match(MathExprParser.T__0)
self.state = 235
self.expr()
self.state = 236
self.match(MathExprParser.T__1)
pass
elif token in [33]:
localctx = MathExprParser.GammaFuncContext(self, localctx)
self.enterOuterAlt(localctx, 23)
self.state = 238
self.match(MathExprParser.GAMMA)
self.state = 239
self.match(MathExprParser.T__0)
self.state = 240
self.expr()
self.state = 241
self.match(MathExprParser.T__1)
pass
elif token in [35]:
localctx = MathExprParser.SigmoidFuncContext(self, localctx)
self.enterOuterAlt(localctx, 24)
self.state = 243
self.match(MathExprParser.SIGM)
self.state = 244
self.match(MathExprParser.T__0)
self.state = 245
self.expr()
self.state = 246
self.match(MathExprParser.T__1)
pass
elif token in [37]:
localctx = MathExprParser.SfftFuncContext(self, localctx)
self.enterOuterAlt(localctx, 25)
self.state = 248
self.match(MathExprParser.SFFT)
self.state = 249
self.match(MathExprParser.T__0)
self.state = 250
self.expr()
self.state = 251
self.match(MathExprParser.T__1)
pass
elif token in [38]:
localctx = MathExprParser.SifftFuncContext(self, localctx)
self.enterOuterAlt(localctx, 26)
self.state = 253
self.match(MathExprParser.SIFFT)
self.state = 254
self.match(MathExprParser.T__0)
self.state = 255
self.expr()
self.state = 256
self.match(MathExprParser.T__1)
pass
elif token in [39]:
localctx = MathExprParser.AnglFuncContext(self, localctx)
self.enterOuterAlt(localctx, 27)
self.state = 258
self.match(MathExprParser.ANGL)
self.state = 259
self.match(MathExprParser.T__0)
self.state = 260
self.expr()
self.state = 261
self.match(MathExprParser.T__1)
pass
elif token in [40]:
localctx = MathExprParser.PrintFuncContext(self, localctx)
self.enterOuterAlt(localctx, 28)
self.state = 263
self.match(MathExprParser.PRNT)
self.state = 264
self.match(MathExprParser.T__0)
self.state = 265
self.expr()
self.state = 266
self.match(MathExprParser.T__1)
pass
elif token in [46]:
localctx = MathExprParser.FractFuncContext(self, localctx)
self.enterOuterAlt(localctx, 29)
self.state = 268
self.match(MathExprParser.FRACT)
self.state = 269
self.match(MathExprParser.T__0)
self.state = 270
self.expr()
self.state = 271
self.match(MathExprParser.T__1)
pass
elif token in [47]:
localctx = MathExprParser.ReluFuncContext(self, localctx)
self.enterOuterAlt(localctx, 30)
self.state = 273
self.match(MathExprParser.RELU)
self.state = 274
self.match(MathExprParser.T__0)
self.state = 275
self.expr()
self.state = 276
self.match(MathExprParser.T__1)
pass
elif token in [48]:
localctx = MathExprParser.SoftplusFuncContext(self, localctx)
self.enterOuterAlt(localctx, 31)
self.state = 278
self.match(MathExprParser.SOFTPLUS)
self.state = 279
self.match(MathExprParser.T__0)
self.state = 280
self.expr()
self.state = 281
self.match(MathExprParser.T__1)
pass
elif token in [49]:
localctx = MathExprParser.GeluFuncContext(self, localctx)
self.enterOuterAlt(localctx, 32)
self.state = 283
self.match(MathExprParser.GELU)
self.state = 284
self.match(MathExprParser.T__0)
self.state = 285
self.expr()
self.state = 286
self.match(MathExprParser.T__1)
pass
elif token in [50]:
localctx = MathExprParser.SignFuncContext(self, localctx)
self.enterOuterAlt(localctx, 33)
self.state = 288
self.match(MathExprParser.SIGN)
self.state = 289
self.match(MathExprParser.T__0)
self.state = 290
self.expr()
self.state = 291
self.match(MathExprParser.T__1)
pass
elif token in [41]:
localctx = MathExprParser.PrintShapeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 34)
self.state = 293
self.match(MathExprParser.PRINT_SHAPE_L)
self.state = 294
self.match(MathExprParser.T__0)
self.state = 295
self.expr()
self.state = 296
self.match(MathExprParser.T__1)
pass
elif token in [42]:
localctx = MathExprParser.PrintShapeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 35)
self.state = 298
self.match(MathExprParser.PRINT_SHAPE)
self.state = 299
self.match(MathExprParser.T__0)
self.state = 300
self.expr()
self.state = 301
self.match(MathExprParser.T__1)
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 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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 = 340
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [34]:
localctx = MathExprParser.PowFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 305
self.match(MathExprParser.POWE)
self.state = 306
self.match(MathExprParser.T__0)
self.state = 307
self.expr()
self.state = 308
self.match(MathExprParser.T__3)
self.state = 309
self.expr()
self.state = 310
self.match(MathExprParser.T__1)
pass
elif token in [12]:
localctx = MathExprParser.Atan2FuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 312
self.match(MathExprParser.ATAN2)
self.state = 313
self.match(MathExprParser.T__0)
self.state = 314
self.expr()
self.state = 315
self.match(MathExprParser.T__3)
self.state = 316
self.expr()
self.state = 317
self.match(MathExprParser.T__1)
pass
elif token in [26]:
localctx = MathExprParser.TMinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 319
self.match(MathExprParser.TMIN)
self.state = 320
self.match(MathExprParser.T__0)
self.state = 321
self.expr()
self.state = 322
self.match(MathExprParser.T__3)
self.state = 323
self.expr()
self.state = 324
self.match(MathExprParser.T__1)
pass
elif token in [27]:
localctx = MathExprParser.TMaxFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 326
self.match(MathExprParser.TMAX)
self.state = 327
self.match(MathExprParser.T__0)
self.state = 328
self.expr()
self.state = 329
self.match(MathExprParser.T__3)
self.state = 330
self.expr()
self.state = 331
self.match(MathExprParser.T__1)
pass
elif token in [44]:
localctx = MathExprParser.StepFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 333
self.match(MathExprParser.STEP)
self.state = 334
self.match(MathExprParser.T__0)
self.state = 335
self.expr()
self.state = 336
self.match(MathExprParser.T__3)
self.state = 337
self.expr()
self.state = 338
self.match(MathExprParser.T__1)
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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 = 369
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [36]:
localctx = MathExprParser.ClampFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 342
self.match(MathExprParser.CLAMP)
self.state = 343
self.match(MathExprParser.T__0)
self.state = 344
self.expr()
self.state = 345
self.match(MathExprParser.T__3)
self.state = 346
self.expr()
self.state = 347
self.match(MathExprParser.T__3)
self.state = 348
self.expr()
self.state = 349
self.match(MathExprParser.T__1)
pass
elif token in [43]:
localctx = MathExprParser.LerpFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 351
self.match(MathExprParser.LERP)
self.state = 352
self.match(MathExprParser.T__0)
self.state = 353
self.expr()
self.state = 354
self.match(MathExprParser.T__3)
self.state = 355
self.expr()
self.state = 356
self.match(MathExprParser.T__3)
self.state = 357
self.expr()
self.state = 358
self.match(MathExprParser.T__1)
pass
elif token in [45]:
localctx = MathExprParser.SmoothstepFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 360
self.match(MathExprParser.SMOOTHSTEP)
self.state = 361
self.match(MathExprParser.T__0)
self.state = 362
self.expr()
self.state = 363
self.match(MathExprParser.T__3)
self.state = 364
self.expr()
self.state = 365
self.match(MathExprParser.T__3)
self.state = 366
self.expr()
self.state = 367
self.match(MathExprParser.T__1)
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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 = 371
self.match(MathExprParser.SWAP)
self.state = 372
self.match(MathExprParser.T__0)
self.state = 373
self.expr()
self.state = 374
self.match(MathExprParser.T__3)
self.state = 375
self.expr()
self.state = 376
self.match(MathExprParser.T__3)
self.state = 377
self.expr()
self.state = 378
self.match(MathExprParser.T__3)
self.state = 379
self.expr()
self.state = 380
self.match(MathExprParser.T__1)
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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,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 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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
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 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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,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 expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,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 = 435
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [24]:
localctx = MathExprParser.SMinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 382
self.match(MathExprParser.SMIN)
self.state = 383
self.match(MathExprParser.T__0)
self.state = 384
self.expr()
self.state = 389
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==4:
self.state = 385
self.match(MathExprParser.T__3)
self.state = 386
self.expr()
self.state = 391
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 392
self.match(MathExprParser.T__1)
pass
elif token in [25]:
localctx = MathExprParser.SMaxFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 394
self.match(MathExprParser.SMAX)
self.state = 395
self.match(MathExprParser.T__0)
self.state = 396
self.expr()
self.state = 401
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==4:
self.state = 397
self.match(MathExprParser.T__3)
self.state = 398
self.expr()
self.state = 403
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 404
self.match(MathExprParser.T__1)
pass
elif token in [51]:
localctx = MathExprParser.MapFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 406
self.match(MathExprParser.MAP)
self.state = 407
self.match(MathExprParser.T__0)
self.state = 408
self.expr()
self.state = 411
self._errHandler.sync(self)
_la = self._input.LA(1)
while True:
self.state = 409
self.match(MathExprParser.T__3)
self.state = 410
self.expr()
self.state = 413
self._errHandler.sync(self)
_la = self._input.LA(1)
if not (_la==4):
break
self.state = 415
self.match(MathExprParser.T__1)
pass
elif token in [52]:
localctx = MathExprParser.ConvFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 417
self.match(MathExprParser.CONV)
self.state = 418
self.match(MathExprParser.T__0)
self.state = 419
self.expr()
self.state = 422
self._errHandler.sync(self)
_la = self._input.LA(1)
while True:
self.state = 420
self.match(MathExprParser.T__3)
self.state = 421
self.expr()
self.state = 424
self._errHandler.sync(self)
_la = self._input.LA(1)
if not (_la==4):
break
self.state = 426
self.match(MathExprParser.T__1)
pass
elif token in [54]:
localctx = MathExprParser.PermuteFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 428
self.match(MathExprParser.PERM)
self.state = 429
self.match(MathExprParser.T__0)
self.state = 430
self.expr()
self.state = 431
self.match(MathExprParser.T__3)
self.state = 432
self.expr()
self.state = 433
self.match(MathExprParser.T__1)
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)