Files
mcDandy-more_math/more_math/Parser/legacy/MathExprParser.py
T
2026-06-15 21:49:26 +02:00

14615 lines
594 KiB
Python

# Generated from MathExpr.g4 by ANTLR 4.9.3
# 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():
with StringIO() as buf:
buf.write("\3\u608b\ua72a\u8133\ub9ed\u417c\u3be7\u7786\u5964\3\u00e1")
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buf.write("\u0387\u03b5\u03b7\u03e2\u03e4\u03e6\u0404\u040d\u0418")
buf.write("\u0423\u0444\u045d\u04be\u04cb\u04df\u04eb\u04f7\u0503")
buf.write("\u0507\u0513\u0517\u052c\u0538\u0545\u0549\u054d\u0551")
buf.write("\u0555\u0559\u055d\u0596\u05ac\u05b8\u05c4\u05cf\u05da")
buf.write("\u05ec\u05f0\u05f7\u0600\u060b\u0616\u0621\u062e\u063b")
buf.write("\u0648\u0655\u0662\u066f\u067c\u0687\u0692\u069d\u06a1")
buf.write("\u06a5\u06b0\u06b4\u06b8\u06c3\u06c7\u06cb\u06d6\u06da")
buf.write("\u06de\u06ed\u06f1\u06f5\u06f9\u06fd")
return buf.getvalue()
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'", "<INVALID>",
"<INVALID>", "'lerp'", "'step'", "'smoothstep'", "'fract'",
"'relu'", "'softplus'", "'gelu'", "'sign'", "'map'",
"<INVALID>", "<INVALID>", "'swap'", "<INVALID>", "<INVALID>",
"'range'", "'linspace'", "'logspace'", "'topk'", "'botk'",
"'pinv'", "'sum'", "'mean'", "'std'", "'var'", "<INVALID>",
"<INVALID>", "'quantile'", "'dot'", "'moment'", "'erf'",
"'erfinv'", "'any'", "'all'", "'edge'", "<INVALID>",
"'median'", "'mode'", "'cumsum'", "'cumprod'", "<INVALID>",
"<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"'smootherstep'", "<INVALID>", "'remap'", "<INVALID>",
"<INVALID>", "'flatten'", "'append'", "'get_value'",
"'flow_apply'", "<INVALID>", "'motion_mask'", "'flow_to_image'",
"<INVALID>", "<INVALID>", "'where'", "<INVALID>", "'overlay'",
"'pad'", "'cross'", "'matmul'", "'rife'", "<INVALID>",
"<INVALID>", "'shape'", "<INVALID>", "<INVALID>", "<INVALID>",
"'tensor'", "'stack_push'", "'stack_pop'", "'stack_clear'",
"'stack_has'", "'stack_get'", "<INVALID>", "'int'",
"'float'", "'upper'", "'lower'", "'trim'", "'split'",
"'join'", "'substring'", "'substr'", "'find'", "'replace'",
"'dilate'", "'erode'", "'morph_open'", "'morph_close'",
"'rgb_to_oklab'", "'rgb_to_cielab'", "'oklab_to_rgb'",
"'cielab_to_rgb'", "'rgb_to_hsv'", "'hsv_to_rgb'",
"'int_to_rgb'", "'rgb_to_int'", "'interpolate_linear'",
"'interpolate_area'", "<INVALID>", "'text_image'",
"'if'", "'else'", "'while'", "'for'", "'in'", "'break'",
"'continue'", "'return'", "<INVALID>", "'sort'", "'argsort'",
"'argmin'", "'argmax'", "'softmax'", "'softmin'", "'unique'",
"'flip'", "'roll'", "'cov'", "<INVALID>", "'entropy'",
"'crop'", "<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"<INVALID>", "<INVALID>", "<INVALID>", "<INVALID>",
"'+'", "'-'", "'*'", "'/'", "'%'", "'^'", "'<<'", "'>>'",
"'>='", "'>'", "'<='", "'<'", "'=='", "'='", "'+='",
"'-='", "'*='", "'/='", "'%='", "'!='", "'|'", "'('",
"')'", "','", "';'", "'->'", "'['", "']'", "'?'", "':'",
"'{'", "'}'" ]
symbolicNames = [ "<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",
"NVL", "LERP", "STEP", "SMOOTHSTEP", "FRACT", "RELU",
"SOFTPLUS", "GELU", "SIGN", "MAP", "EZCONV", "CONV",
"SWAP", "PERM", "RESHAPE", "RANGE", "LINSPACE", "LOGSPACE",
"TOPK", "BOTK", "PINV", "SUM", "MEAN", "STD", "VAR",
"QUARTILE", "PERCENTILE", "QUANTILE", "DOT", "MOMENT",
"ERF", "ERFINV", "ANY", "ALL", "EDGE", "GAUSSIAN",
"MEDIAN", "MODE", "CUMSUM", "CUMPROD", "TOPK_IND",
"BOTK_IND", "CUBIC_EASE", "ELASTIC_EASE", "SINE_EASE",
"SMOOTHERSTEP", "DIST", "REMAP", "COSSIM", "COUNT",
"FLATTEN", "APPEND", "GET_VALUE", "FLOW_APPLY", "BATCH_SHUFFLE",
"MOTION_MASK", "FLOW_TO_IMAGE", "FLOW_MAG", "FLOW_ANG",
"WHERE", "HISTOGRAM", "OVERLAY", "PAD", "CROSS", "MATMUL",
"RIFE", "BNOT", "BITCOUNT", "SHAPE", "BAND", "XOR",
"BOR", "TENSOR", "PUSH", "POP", "CLEAR", "HAS", "GET",
"CONCAT", "INT", "FLOAT", "UPPER", "LOWER", "TRIM",
"SPLIT", "JOIN", "SUBSTRING", "SUBSTR", "FIND", "REPLACE",
"DILATE", "ERODE", "MORPH_OPEN", "MORPH_CLOSE", "RGB_TO_OKLAB",
"RGB_TO_CIELAB", "OKLAB_TO_RGB", "CIELAB_TO_RGB",
"RGB_TO_HSV", "HSV_TO_RGB", "INT_TO_RGB", "RGB_TO_INT",
"INTERPOLATE_LINEAR", "INTERPOLATE_AREA", "INTERPOLATE_NEAREST",
"TEXT_IMAGE", "IF", "ELSE", "WHILE", "FOR", "IN",
"BREAK", "CONTINUE", "RETURN", "TIMESTAMP", "SORT",
"ARGSORT", "ARGMIN", "ARGMAX", "SOFTMAX", "SOFTMIN",
"UNIQUE", "FLIP", "ROLL", "COV", "CORR", "ENTROPY",
"CROP", "NONE", "NOISE", "RAND", "CAUCHY", "EXPONENTIAL",
"LOGNORMAL", "BERNOULLI", "POISSON", "GAMMADIST",
"BETADIST", "LAPLACEDIST", "GUMBELDIST", "WEIBULLDIST",
"CHI2DIST", "STUDENTTDIST", "PERLIN", "CELLULAR",
"PLASMA", "RIDGED", "DOMAIN_WARP", "PLUS", "MINUS",
"MULT", "DIV", "MOD", "POW", "LSHIFT", "RSHIFT", "GE",
"GT", "LE", "LT", "EQ", "EQUEALS", "PLUS_EQ", "MINUS_EQ",
"MULT_EQ", "DIV_EQ", "MOD_EQ", "NE", "PIPE", "LPAREN",
"RPAREN", "COMMA", "SEMICOLON", "ARROW", "LBRACKET",
"RBRACKET", "QUESTION", "COLON", "LBRACE", "RBRACE",
"NUMBER", "CONSTANT", "STRING", "VARIABLE", "SL_COMMENT",
"ML_COMMENT", "WS" ]
RULE_start = 0
RULE_funcDef = 1
RULE_varDef = 2
RULE_paramList = 3
RULE_stmt = 4
RULE_ifStmt = 5
RULE_whileStmt = 6
RULE_forStmt = 7
RULE_block = 8
RULE_breakStmt = 9
RULE_continueStmt = 10
RULE_returnStmt = 11
RULE_expr = 12
RULE_ternaryExpr = 13
RULE_compExpr = 14
RULE_addExpr = 15
RULE_mulExpr = 16
RULE_shiftExpr = 17
RULE_powExpr = 18
RULE_unaryExpr = 19
RULE_indexExpr = 20
RULE_atom = 21
RULE_exprList = 22
RULE_func0 = 23
RULE_func1 = 24
RULE_func2 = 25
RULE_func3 = 26
RULE_func4 = 27
RULE_func5 = 28
RULE_funcN = 29
RULE_funcNoise = 30
ruleNames = [ "start", "funcDef", "varDef", "paramList", "stmt", "ifStmt",
"whileStmt", "forStmt", "block", "breakStmt", "continueStmt",
"returnStmt", "expr", "ternaryExpr", "compExpr", "addExpr",
"mulExpr", "shiftExpr", "powExpr", "unaryExpr", "indexExpr",
"atom", "exprList", "func0", "func1", "func2", "func3",
"func4", "func5", "funcN", "funcNoise" ]
EOF = Token.EOF
SIN=1
COS=2
TAN=3
ASIN=4
ACOS=5
ATAN=6
ATAN2=7
SINH=8
COSH=9
TANH=10
ASINH=11
ACOSH=12
ATANH=13
ABS=14
SQRT=15
LN=16
LOG=17
EXP=18
SMIN=19
SMAX=20
TMIN=21
TMAX=22
TNORM=23
SNORM=24
FLOOR=25
CEIL=26
ROUND=27
GAMMA=28
POWE=29
SIGM=30
CLAMP=31
SFFT=32
SIFFT=33
ANGL=34
PRNT=35
PRINT_SHAPE=36
NVL=37
LERP=38
STEP=39
SMOOTHSTEP=40
FRACT=41
RELU=42
SOFTPLUS=43
GELU=44
SIGN=45
MAP=46
EZCONV=47
CONV=48
SWAP=49
PERM=50
RESHAPE=51
RANGE=52
LINSPACE=53
LOGSPACE=54
TOPK=55
BOTK=56
PINV=57
SUM=58
MEAN=59
STD=60
VAR=61
QUARTILE=62
PERCENTILE=63
QUANTILE=64
DOT=65
MOMENT=66
ERF=67
ERFINV=68
ANY=69
ALL=70
EDGE=71
GAUSSIAN=72
MEDIAN=73
MODE=74
CUMSUM=75
CUMPROD=76
TOPK_IND=77
BOTK_IND=78
CUBIC_EASE=79
ELASTIC_EASE=80
SINE_EASE=81
SMOOTHERSTEP=82
DIST=83
REMAP=84
COSSIM=85
COUNT=86
FLATTEN=87
APPEND=88
GET_VALUE=89
FLOW_APPLY=90
BATCH_SHUFFLE=91
MOTION_MASK=92
FLOW_TO_IMAGE=93
FLOW_MAG=94
FLOW_ANG=95
WHERE=96
HISTOGRAM=97
OVERLAY=98
PAD=99
CROSS=100
MATMUL=101
RIFE=102
BNOT=103
BITCOUNT=104
SHAPE=105
BAND=106
XOR=107
BOR=108
TENSOR=109
PUSH=110
POP=111
CLEAR=112
HAS=113
GET=114
CONCAT=115
INT=116
FLOAT=117
UPPER=118
LOWER=119
TRIM=120
SPLIT=121
JOIN=122
SUBSTRING=123
SUBSTR=124
FIND=125
REPLACE=126
DILATE=127
ERODE=128
MORPH_OPEN=129
MORPH_CLOSE=130
RGB_TO_OKLAB=131
RGB_TO_CIELAB=132
OKLAB_TO_RGB=133
CIELAB_TO_RGB=134
RGB_TO_HSV=135
HSV_TO_RGB=136
INT_TO_RGB=137
RGB_TO_INT=138
INTERPOLATE_LINEAR=139
INTERPOLATE_AREA=140
INTERPOLATE_NEAREST=141
TEXT_IMAGE=142
IF=143
ELSE=144
WHILE=145
FOR=146
IN=147
BREAK=148
CONTINUE=149
RETURN=150
TIMESTAMP=151
SORT=152
ARGSORT=153
ARGMIN=154
ARGMAX=155
SOFTMAX=156
SOFTMIN=157
UNIQUE=158
FLIP=159
ROLL=160
COV=161
CORR=162
ENTROPY=163
CROP=164
NONE=165
NOISE=166
RAND=167
CAUCHY=168
EXPONENTIAL=169
LOGNORMAL=170
BERNOULLI=171
POISSON=172
GAMMADIST=173
BETADIST=174
LAPLACEDIST=175
GUMBELDIST=176
WEIBULLDIST=177
CHI2DIST=178
STUDENTTDIST=179
PERLIN=180
CELLULAR=181
PLASMA=182
RIDGED=183
DOMAIN_WARP=184
PLUS=185
MINUS=186
MULT=187
DIV=188
MOD=189
POW=190
LSHIFT=191
RSHIFT=192
GE=193
GT=194
LE=195
LT=196
EQ=197
EQUEALS=198
PLUS_EQ=199
MINUS_EQ=200
MULT_EQ=201
DIV_EQ=202
MOD_EQ=203
NE=204
PIPE=205
LPAREN=206
RPAREN=207
COMMA=208
SEMICOLON=209
ARROW=210
LBRACKET=211
RBRACKET=212
QUESTION=213
COLON=214
LBRACE=215
RBRACE=216
NUMBER=217
CONSTANT=218
STRING=219
VARIABLE=220
SL_COMMENT=221
ML_COMMENT=222
WS=223
def __init__(self, input:TokenStream, output:TextIO = sys.stdout):
super().__init__(input, output)
self.checkVersion("4.9.3")
self._interp = ParserATNSimulator(self, self.atn, self.decisionsToDFA, self.sharedContextCache)
self._predicates = None
class StartContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def EOF(self):
return self.getToken(MathExprParser.EOF, 0)
def funcDef(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.FuncDefContext)
else:
return self.getTypedRuleContext(MathExprParser.FuncDefContext,i)
def varDef(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.VarDefContext)
else:
return self.getTypedRuleContext(MathExprParser.VarDefContext,i)
def stmt(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.StmtContext)
else:
return self.getTypedRuleContext(MathExprParser.StmtContext,i)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def getRuleIndex(self):
return MathExprParser.RULE_start
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterStart" ):
listener.enterStart(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitStart" ):
listener.exitStart(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitStart" ):
return visitor.visitStart(self)
else:
return visitor.visitChildren(self)
def start(self):
localctx = MathExprParser.StartContext(self, self._ctx, self.state)
self.enterRule(localctx, 0, self.RULE_start)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
self.state = 67
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,1,self._ctx)
while _alt!=2 and _alt!=ATN.INVALID_ALT_NUMBER:
if _alt==1:
self.state = 65
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,0,self._ctx)
if la_ == 1:
self.state = 62
self.funcDef()
pass
elif la_ == 2:
self.state = 63
self.varDef()
pass
elif la_ == 3:
self.state = 64
self.stmt()
pass
self.state = 69
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,1,self._ctx)
self.state = 70
self.expr()
self.state = 72
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.SEMICOLON:
self.state = 71
self.match(MathExprParser.SEMICOLON)
self.state = 74
self.match(MathExprParser.EOF)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class FuncDefContext(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_funcDef
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class FunctionDefContext(FuncDefContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncDefContext
super().__init__(parser)
self.copyFrom(ctx)
def VARIABLE(self):
return self.getToken(MathExprParser.VARIABLE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def ARROW(self):
return self.getToken(MathExprParser.ARROW, 0)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def block(self):
return self.getTypedRuleContext(MathExprParser.BlockContext,0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def paramList(self):
return self.getTypedRuleContext(MathExprParser.ParamListContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFunctionDef" ):
listener.enterFunctionDef(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFunctionDef" ):
listener.exitFunctionDef(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFunctionDef" ):
return visitor.visitFunctionDef(self)
else:
return visitor.visitChildren(self)
def funcDef(self):
localctx = MathExprParser.FuncDefContext(self, self._ctx, self.state)
self.enterRule(localctx, 2, self.RULE_funcDef)
self._la = 0 # Token type
try:
localctx = MathExprParser.FunctionDefContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 76
self.match(MathExprParser.VARIABLE)
self.state = 77
self.match(MathExprParser.LPAREN)
self.state = 79
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.VARIABLE:
self.state = 78
self.paramList()
self.state = 81
self.match(MathExprParser.RPAREN)
self.state = 82
self.match(MathExprParser.ARROW)
self.state = 85
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.LBRACE]:
self.state = 83
self.block()
pass
elif token in [MathExprParser.SIN, MathExprParser.COS, MathExprParser.TAN, MathExprParser.ASIN, MathExprParser.ACOS, MathExprParser.ATAN, MathExprParser.ATAN2, MathExprParser.SINH, MathExprParser.COSH, MathExprParser.TANH, MathExprParser.ASINH, MathExprParser.ACOSH, MathExprParser.ATANH, MathExprParser.ABS, MathExprParser.SQRT, MathExprParser.LN, MathExprParser.LOG, MathExprParser.EXP, MathExprParser.SMIN, MathExprParser.SMAX, MathExprParser.TMIN, MathExprParser.TMAX, MathExprParser.TNORM, MathExprParser.SNORM, MathExprParser.FLOOR, MathExprParser.CEIL, MathExprParser.ROUND, MathExprParser.GAMMA, MathExprParser.POWE, MathExprParser.SIGM, MathExprParser.CLAMP, MathExprParser.SFFT, MathExprParser.SIFFT, MathExprParser.ANGL, MathExprParser.PRNT, MathExprParser.PRINT_SHAPE, MathExprParser.NVL, MathExprParser.LERP, MathExprParser.STEP, MathExprParser.SMOOTHSTEP, MathExprParser.FRACT, MathExprParser.SOFTPLUS, MathExprParser.GELU, MathExprParser.SIGN, MathExprParser.MAP, MathExprParser.EZCONV, MathExprParser.CONV, MathExprParser.SWAP, MathExprParser.PERM, MathExprParser.RESHAPE, MathExprParser.RANGE, MathExprParser.LINSPACE, MathExprParser.LOGSPACE, MathExprParser.TOPK, MathExprParser.BOTK, MathExprParser.PINV, MathExprParser.SUM, MathExprParser.MEAN, MathExprParser.STD, MathExprParser.VAR, MathExprParser.QUARTILE, MathExprParser.PERCENTILE, MathExprParser.QUANTILE, MathExprParser.DOT, MathExprParser.MOMENT, MathExprParser.ERF, MathExprParser.ERFINV, MathExprParser.ANY, MathExprParser.ALL, MathExprParser.EDGE, MathExprParser.GAUSSIAN, MathExprParser.MEDIAN, MathExprParser.MODE, MathExprParser.CUMSUM, MathExprParser.CUMPROD, MathExprParser.TOPK_IND, MathExprParser.BOTK_IND, MathExprParser.CUBIC_EASE, MathExprParser.ELASTIC_EASE, MathExprParser.SINE_EASE, MathExprParser.SMOOTHERSTEP, MathExprParser.DIST, MathExprParser.REMAP, MathExprParser.COSSIM, MathExprParser.COUNT, MathExprParser.FLATTEN, MathExprParser.APPEND, MathExprParser.GET_VALUE, MathExprParser.FLOW_APPLY, MathExprParser.BATCH_SHUFFLE, MathExprParser.MOTION_MASK, MathExprParser.FLOW_TO_IMAGE, MathExprParser.FLOW_MAG, MathExprParser.FLOW_ANG, MathExprParser.WHERE, MathExprParser.HISTOGRAM, MathExprParser.OVERLAY, MathExprParser.PAD, MathExprParser.CROSS, MathExprParser.MATMUL, MathExprParser.RIFE, MathExprParser.BNOT, MathExprParser.BITCOUNT, MathExprParser.SHAPE, MathExprParser.BAND, MathExprParser.XOR, MathExprParser.BOR, MathExprParser.TENSOR, MathExprParser.PUSH, MathExprParser.POP, MathExprParser.CLEAR, MathExprParser.HAS, MathExprParser.GET, MathExprParser.CONCAT, MathExprParser.INT, MathExprParser.FLOAT, MathExprParser.UPPER, MathExprParser.LOWER, MathExprParser.TRIM, MathExprParser.SPLIT, MathExprParser.JOIN, MathExprParser.SUBSTRING, MathExprParser.SUBSTR, MathExprParser.FIND, MathExprParser.REPLACE, MathExprParser.DILATE, MathExprParser.ERODE, MathExprParser.MORPH_OPEN, MathExprParser.MORPH_CLOSE, MathExprParser.RGB_TO_OKLAB, MathExprParser.RGB_TO_CIELAB, MathExprParser.OKLAB_TO_RGB, MathExprParser.CIELAB_TO_RGB, MathExprParser.RGB_TO_HSV, MathExprParser.HSV_TO_RGB, MathExprParser.INT_TO_RGB, MathExprParser.RGB_TO_INT, MathExprParser.INTERPOLATE_LINEAR, MathExprParser.INTERPOLATE_AREA, MathExprParser.INTERPOLATE_NEAREST, MathExprParser.TEXT_IMAGE, MathExprParser.BREAK, MathExprParser.CONTINUE, MathExprParser.TIMESTAMP, MathExprParser.SORT, MathExprParser.ARGSORT, MathExprParser.ARGMIN, MathExprParser.ARGMAX, MathExprParser.SOFTMAX, MathExprParser.SOFTMIN, MathExprParser.UNIQUE, MathExprParser.FLIP, MathExprParser.ROLL, MathExprParser.COV, MathExprParser.CORR, MathExprParser.ENTROPY, MathExprParser.CROP, MathExprParser.NONE, MathExprParser.NOISE, MathExprParser.RAND, MathExprParser.CAUCHY, MathExprParser.EXPONENTIAL, MathExprParser.LOGNORMAL, MathExprParser.BERNOULLI, MathExprParser.POISSON, MathExprParser.GAMMADIST, MathExprParser.BETADIST, MathExprParser.LAPLACEDIST, MathExprParser.GUMBELDIST, MathExprParser.WEIBULLDIST, MathExprParser.CHI2DIST, MathExprParser.STUDENTTDIST, MathExprParser.PERLIN, MathExprParser.CELLULAR, MathExprParser.PLASMA, MathExprParser.RIDGED, MathExprParser.DOMAIN_WARP, MathExprParser.PLUS, MathExprParser.MINUS, MathExprParser.PIPE, MathExprParser.LPAREN, MathExprParser.LBRACKET, MathExprParser.NUMBER, MathExprParser.CONSTANT, MathExprParser.STRING, MathExprParser.VARIABLE]:
self.state = 84
self.expr()
pass
else:
raise NoViableAltException(self)
self.state = 87
self.match(MathExprParser.SEMICOLON)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class VarDefContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def VARIABLE(self):
return self.getToken(MathExprParser.VARIABLE, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def EQUEALS(self):
return self.getToken(MathExprParser.EQUEALS, 0)
def PLUS_EQ(self):
return self.getToken(MathExprParser.PLUS_EQ, 0)
def MINUS_EQ(self):
return self.getToken(MathExprParser.MINUS_EQ, 0)
def MULT_EQ(self):
return self.getToken(MathExprParser.MULT_EQ, 0)
def DIV_EQ(self):
return self.getToken(MathExprParser.DIV_EQ, 0)
def MOD_EQ(self):
return self.getToken(MathExprParser.MOD_EQ, 0)
def LBRACKET(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.LBRACKET)
else:
return self.getToken(MathExprParser.LBRACKET, i)
def RBRACKET(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.RBRACKET)
else:
return self.getToken(MathExprParser.RBRACKET, i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def getRuleIndex(self):
return MathExprParser.RULE_varDef
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterVarDef" ):
listener.enterVarDef(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitVarDef" ):
listener.exitVarDef(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitVarDef" ):
return visitor.visitVarDef(self)
else:
return visitor.visitChildren(self)
def varDef(self):
localctx = MathExprParser.VarDefContext(self, self._ctx, self.state)
self.enterRule(localctx, 4, self.RULE_varDef)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
self.state = 89
self.match(MathExprParser.VARIABLE)
self.state = 103
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.LBRACKET:
self.state = 90
self.match(MathExprParser.LBRACKET)
self.state = 91
self.expr()
self.state = 96
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 92
self.match(MathExprParser.COMMA)
self.state = 93
self.expr()
self.state = 98
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 99
self.match(MathExprParser.RBRACKET)
self.state = 105
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 106
_la = self._input.LA(1)
if not(((((_la - 198)) & ~0x3f) == 0 and ((1 << (_la - 198)) & ((1 << (MathExprParser.EQUEALS - 198)) | (1 << (MathExprParser.PLUS_EQ - 198)) | (1 << (MathExprParser.MINUS_EQ - 198)) | (1 << (MathExprParser.MULT_EQ - 198)) | (1 << (MathExprParser.DIV_EQ - 198)) | (1 << (MathExprParser.MOD_EQ - 198)))) != 0)):
self._errHandler.recoverInline(self)
else:
self._errHandler.reportMatch(self)
self.consume()
self.state = 107
self.expr()
self.state = 108
self.match(MathExprParser.SEMICOLON)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class ParamListContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def VARIABLE(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.VARIABLE)
else:
return self.getToken(MathExprParser.VARIABLE, i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def getRuleIndex(self):
return MathExprParser.RULE_paramList
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterParamList" ):
listener.enterParamList(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitParamList" ):
listener.exitParamList(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitParamList" ):
return visitor.visitParamList(self)
else:
return visitor.visitChildren(self)
def paramList(self):
localctx = MathExprParser.ParamListContext(self, self._ctx, self.state)
self.enterRule(localctx, 6, self.RULE_paramList)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
self.state = 110
self.match(MathExprParser.VARIABLE)
self.state = 115
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 111
self.match(MathExprParser.COMMA)
self.state = 112
self.match(MathExprParser.VARIABLE)
self.state = 117
self._errHandler.sync(self)
_la = self._input.LA(1)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class StmtContext(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_stmt
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class BreakStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def breakStmt(self):
return self.getTypedRuleContext(MathExprParser.BreakStmtContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBreakStatement" ):
listener.enterBreakStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBreakStatement" ):
listener.exitBreakStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBreakStatement" ):
return visitor.visitBreakStatement(self)
else:
return visitor.visitChildren(self)
class VarDefStmtContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def varDef(self):
return self.getTypedRuleContext(MathExprParser.VarDefContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterVarDefStmt" ):
listener.enterVarDefStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitVarDefStmt" ):
listener.exitVarDefStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitVarDefStmt" ):
return visitor.visitVarDefStmt(self)
else:
return visitor.visitChildren(self)
class IfStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def ifStmt(self):
return self.getTypedRuleContext(MathExprParser.IfStmtContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterIfStatement" ):
listener.enterIfStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitIfStatement" ):
listener.exitIfStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitIfStatement" ):
return visitor.visitIfStatement(self)
else:
return visitor.visitChildren(self)
class ReturnStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def returnStmt(self):
return self.getTypedRuleContext(MathExprParser.ReturnStmtContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterReturnStatement" ):
listener.enterReturnStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitReturnStatement" ):
listener.exitReturnStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitReturnStatement" ):
return visitor.visitReturnStatement(self)
else:
return visitor.visitChildren(self)
class ExprStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterExprStatement" ):
listener.enterExprStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitExprStatement" ):
listener.exitExprStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitExprStatement" ):
return visitor.visitExprStatement(self)
else:
return visitor.visitChildren(self)
class BlockStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def block(self):
return self.getTypedRuleContext(MathExprParser.BlockContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBlockStatement" ):
listener.enterBlockStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBlockStatement" ):
listener.exitBlockStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBlockStatement" ):
return visitor.visitBlockStatement(self)
else:
return visitor.visitChildren(self)
class WhileStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def whileStmt(self):
return self.getTypedRuleContext(MathExprParser.WhileStmtContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterWhileStatement" ):
listener.enterWhileStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitWhileStatement" ):
listener.exitWhileStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitWhileStatement" ):
return visitor.visitWhileStatement(self)
else:
return visitor.visitChildren(self)
class ForStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def forStmt(self):
return self.getTypedRuleContext(MathExprParser.ForStmtContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterForStatement" ):
listener.enterForStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitForStatement" ):
listener.exitForStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitForStatement" ):
return visitor.visitForStatement(self)
else:
return visitor.visitChildren(self)
class ContinueStatementContext(StmtContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.StmtContext
super().__init__(parser)
self.copyFrom(ctx)
def continueStmt(self):
return self.getTypedRuleContext(MathExprParser.ContinueStmtContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterContinueStatement" ):
listener.enterContinueStatement(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitContinueStatement" ):
listener.exitContinueStatement(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitContinueStatement" ):
return visitor.visitContinueStatement(self)
else:
return visitor.visitChildren(self)
def stmt(self):
localctx = MathExprParser.StmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 8, self.RULE_stmt)
try:
self.state = 129
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,8,self._ctx)
if la_ == 1:
localctx = MathExprParser.IfStatementContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 118
self.ifStmt()
pass
elif la_ == 2:
localctx = MathExprParser.WhileStatementContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 119
self.whileStmt()
pass
elif la_ == 3:
localctx = MathExprParser.BlockStatementContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 120
self.block()
pass
elif la_ == 4:
localctx = MathExprParser.BreakStatementContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 121
self.breakStmt()
pass
elif la_ == 5:
localctx = MathExprParser.ContinueStatementContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 122
self.continueStmt()
pass
elif la_ == 6:
localctx = MathExprParser.ReturnStatementContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 123
self.returnStmt()
pass
elif la_ == 7:
localctx = MathExprParser.VarDefStmtContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 124
self.varDef()
pass
elif la_ == 8:
localctx = MathExprParser.ForStatementContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 125
self.forStmt()
pass
elif la_ == 9:
localctx = MathExprParser.ExprStatementContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 126
self.expr()
self.state = 127
self.match(MathExprParser.SEMICOLON)
pass
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class IfStmtContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def IF(self):
return self.getToken(MathExprParser.IF, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def stmt(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.StmtContext)
else:
return self.getTypedRuleContext(MathExprParser.StmtContext,i)
def ELSE(self):
return self.getToken(MathExprParser.ELSE, 0)
def getRuleIndex(self):
return MathExprParser.RULE_ifStmt
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterIfStmt" ):
listener.enterIfStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitIfStmt" ):
listener.exitIfStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitIfStmt" ):
return visitor.visitIfStmt(self)
else:
return visitor.visitChildren(self)
def ifStmt(self):
localctx = MathExprParser.IfStmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 10, self.RULE_ifStmt)
try:
self.enterOuterAlt(localctx, 1)
self.state = 131
self.match(MathExprParser.IF)
self.state = 132
self.match(MathExprParser.LPAREN)
self.state = 133
self.expr()
self.state = 134
self.match(MathExprParser.RPAREN)
self.state = 135
self.stmt()
self.state = 138
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,9,self._ctx)
if la_ == 1:
self.state = 136
self.match(MathExprParser.ELSE)
self.state = 137
self.stmt()
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class WhileStmtContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def WHILE(self):
return self.getToken(MathExprParser.WHILE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def stmt(self):
return self.getTypedRuleContext(MathExprParser.StmtContext,0)
def getRuleIndex(self):
return MathExprParser.RULE_whileStmt
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterWhileStmt" ):
listener.enterWhileStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitWhileStmt" ):
listener.exitWhileStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitWhileStmt" ):
return visitor.visitWhileStmt(self)
else:
return visitor.visitChildren(self)
def whileStmt(self):
localctx = MathExprParser.WhileStmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 12, self.RULE_whileStmt)
try:
self.enterOuterAlt(localctx, 1)
self.state = 140
self.match(MathExprParser.WHILE)
self.state = 141
self.match(MathExprParser.LPAREN)
self.state = 142
self.expr()
self.state = 143
self.match(MathExprParser.RPAREN)
self.state = 144
self.stmt()
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class ForStmtContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def FOR(self):
return self.getToken(MathExprParser.FOR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def VARIABLE(self):
return self.getToken(MathExprParser.VARIABLE, 0)
def IN(self):
return self.getToken(MathExprParser.IN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def stmt(self):
return self.getTypedRuleContext(MathExprParser.StmtContext,0)
def getRuleIndex(self):
return MathExprParser.RULE_forStmt
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterForStmt" ):
listener.enterForStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitForStmt" ):
listener.exitForStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitForStmt" ):
return visitor.visitForStmt(self)
else:
return visitor.visitChildren(self)
def forStmt(self):
localctx = MathExprParser.ForStmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 14, self.RULE_forStmt)
try:
self.enterOuterAlt(localctx, 1)
self.state = 146
self.match(MathExprParser.FOR)
self.state = 147
self.match(MathExprParser.LPAREN)
self.state = 148
self.match(MathExprParser.VARIABLE)
self.state = 149
self.match(MathExprParser.IN)
self.state = 150
self.expr()
self.state = 151
self.match(MathExprParser.RPAREN)
self.state = 152
self.stmt()
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class BlockContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def LBRACE(self):
return self.getToken(MathExprParser.LBRACE, 0)
def RBRACE(self):
return self.getToken(MathExprParser.RBRACE, 0)
def stmt(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.StmtContext)
else:
return self.getTypedRuleContext(MathExprParser.StmtContext,i)
def getRuleIndex(self):
return MathExprParser.RULE_block
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBlock" ):
listener.enterBlock(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBlock" ):
listener.exitBlock(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBlock" ):
return visitor.visitBlock(self)
else:
return visitor.visitChildren(self)
def block(self):
localctx = MathExprParser.BlockContext(self, self._ctx, self.state)
self.enterRule(localctx, 16, self.RULE_block)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
self.state = 154
self.match(MathExprParser.LBRACE)
self.state = 158
self._errHandler.sync(self)
_la = self._input.LA(1)
while (((_la) & ~0x3f) == 0 and ((1 << _la) & ((1 << MathExprParser.SIN) | (1 << MathExprParser.COS) | (1 << MathExprParser.TAN) | (1 << MathExprParser.ASIN) | (1 << MathExprParser.ACOS) | (1 << MathExprParser.ATAN) | (1 << MathExprParser.ATAN2) | (1 << MathExprParser.SINH) | (1 << MathExprParser.COSH) | (1 << MathExprParser.TANH) | (1 << MathExprParser.ASINH) | (1 << MathExprParser.ACOSH) | (1 << MathExprParser.ATANH) | (1 << MathExprParser.ABS) | (1 << MathExprParser.SQRT) | (1 << MathExprParser.LN) | (1 << MathExprParser.LOG) | (1 << MathExprParser.EXP) | (1 << MathExprParser.SMIN) | (1 << MathExprParser.SMAX) | (1 << MathExprParser.TMIN) | (1 << MathExprParser.TMAX) | (1 << MathExprParser.TNORM) | (1 << MathExprParser.SNORM) | (1 << MathExprParser.FLOOR) | (1 << MathExprParser.CEIL) | (1 << MathExprParser.ROUND) | (1 << MathExprParser.GAMMA) | (1 << MathExprParser.POWE) | (1 << MathExprParser.SIGM) | (1 << MathExprParser.CLAMP) | (1 << MathExprParser.SFFT) | (1 << MathExprParser.SIFFT) | (1 << MathExprParser.ANGL) | (1 << MathExprParser.PRNT) | (1 << MathExprParser.PRINT_SHAPE) | (1 << MathExprParser.NVL) | (1 << MathExprParser.LERP) | (1 << MathExprParser.STEP) | (1 << MathExprParser.SMOOTHSTEP) | (1 << MathExprParser.FRACT) | (1 << MathExprParser.SOFTPLUS) | (1 << MathExprParser.GELU) | (1 << MathExprParser.SIGN) | (1 << MathExprParser.MAP) | (1 << MathExprParser.EZCONV) | (1 << MathExprParser.CONV) | (1 << MathExprParser.SWAP) | (1 << MathExprParser.PERM) | (1 << MathExprParser.RESHAPE) | (1 << MathExprParser.RANGE) | (1 << MathExprParser.LINSPACE) | (1 << MathExprParser.LOGSPACE) | (1 << MathExprParser.TOPK) | (1 << MathExprParser.BOTK) | (1 << MathExprParser.PINV) | (1 << MathExprParser.SUM) | (1 << MathExprParser.MEAN) | (1 << MathExprParser.STD) | (1 << MathExprParser.VAR) | (1 << MathExprParser.QUARTILE) | (1 << MathExprParser.PERCENTILE))) != 0) or ((((_la - 64)) & ~0x3f) == 0 and ((1 << (_la - 64)) & ((1 << (MathExprParser.QUANTILE - 64)) | (1 << (MathExprParser.DOT - 64)) | (1 << (MathExprParser.MOMENT - 64)) | (1 << (MathExprParser.ERF - 64)) | (1 << (MathExprParser.ERFINV - 64)) | (1 << (MathExprParser.ANY - 64)) | (1 << (MathExprParser.ALL - 64)) | (1 << (MathExprParser.EDGE - 64)) | (1 << (MathExprParser.GAUSSIAN - 64)) | (1 << (MathExprParser.MEDIAN - 64)) | (1 << (MathExprParser.MODE - 64)) | (1 << (MathExprParser.CUMSUM - 64)) | (1 << (MathExprParser.CUMPROD - 64)) | (1 << (MathExprParser.TOPK_IND - 64)) | (1 << (MathExprParser.BOTK_IND - 64)) | (1 << (MathExprParser.CUBIC_EASE - 64)) | (1 << (MathExprParser.ELASTIC_EASE - 64)) | (1 << (MathExprParser.SINE_EASE - 64)) | (1 << (MathExprParser.SMOOTHERSTEP - 64)) | (1 << (MathExprParser.DIST - 64)) | (1 << (MathExprParser.REMAP - 64)) | (1 << (MathExprParser.COSSIM - 64)) | (1 << (MathExprParser.COUNT - 64)) | (1 << (MathExprParser.FLATTEN - 64)) | (1 << (MathExprParser.APPEND - 64)) | (1 << (MathExprParser.GET_VALUE - 64)) | (1 << (MathExprParser.FLOW_APPLY - 64)) | (1 << (MathExprParser.BATCH_SHUFFLE - 64)) | (1 << (MathExprParser.MOTION_MASK - 64)) | (1 << (MathExprParser.FLOW_TO_IMAGE - 64)) | (1 << (MathExprParser.FLOW_MAG - 64)) | (1 << (MathExprParser.FLOW_ANG - 64)) | (1 << (MathExprParser.WHERE - 64)) | (1 << (MathExprParser.HISTOGRAM - 64)) | (1 << (MathExprParser.OVERLAY - 64)) | (1 << (MathExprParser.PAD - 64)) | (1 << (MathExprParser.CROSS - 64)) | (1 << (MathExprParser.MATMUL - 64)) | (1 << (MathExprParser.RIFE - 64)) | (1 << (MathExprParser.BNOT - 64)) | (1 << (MathExprParser.BITCOUNT - 64)) | (1 << (MathExprParser.SHAPE - 64)) | (1 << (MathExprParser.BAND - 64)) | (1 << (MathExprParser.XOR - 64)) | (1 << (MathExprParser.BOR - 64)) | (1 << (MathExprParser.TENSOR - 64)) | (1 << (MathExprParser.PUSH - 64)) | (1 << (MathExprParser.POP - 64)) | (1 << (MathExprParser.CLEAR - 64)) | (1 << (MathExprParser.HAS - 64)) | (1 << (MathExprParser.GET - 64)) | (1 << (MathExprParser.CONCAT - 64)) | (1 << (MathExprParser.INT - 64)) | (1 << (MathExprParser.FLOAT - 64)) | (1 << (MathExprParser.UPPER - 64)) | (1 << (MathExprParser.LOWER - 64)) | (1 << (MathExprParser.TRIM - 64)) | (1 << (MathExprParser.SPLIT - 64)) | (1 << (MathExprParser.JOIN - 64)) | (1 << (MathExprParser.SUBSTRING - 64)) | (1 << (MathExprParser.SUBSTR - 64)) | (1 << (MathExprParser.FIND - 64)) | (1 << (MathExprParser.REPLACE - 64)) | (1 << (MathExprParser.DILATE - 64)))) != 0) or ((((_la - 128)) & ~0x3f) == 0 and ((1 << (_la - 128)) & ((1 << (MathExprParser.ERODE - 128)) | (1 << (MathExprParser.MORPH_OPEN - 128)) | (1 << (MathExprParser.MORPH_CLOSE - 128)) | (1 << (MathExprParser.RGB_TO_OKLAB - 128)) | (1 << (MathExprParser.RGB_TO_CIELAB - 128)) | (1 << (MathExprParser.OKLAB_TO_RGB - 128)) | (1 << (MathExprParser.CIELAB_TO_RGB - 128)) | (1 << (MathExprParser.RGB_TO_HSV - 128)) | (1 << (MathExprParser.HSV_TO_RGB - 128)) | (1 << (MathExprParser.INT_TO_RGB - 128)) | (1 << (MathExprParser.RGB_TO_INT - 128)) | (1 << (MathExprParser.INTERPOLATE_LINEAR - 128)) | (1 << (MathExprParser.INTERPOLATE_AREA - 128)) | (1 << (MathExprParser.INTERPOLATE_NEAREST - 128)) | (1 << (MathExprParser.TEXT_IMAGE - 128)) | (1 << (MathExprParser.IF - 128)) | (1 << (MathExprParser.WHILE - 128)) | (1 << (MathExprParser.FOR - 128)) | (1 << (MathExprParser.BREAK - 128)) | (1 << (MathExprParser.CONTINUE - 128)) | (1 << (MathExprParser.RETURN - 128)) | (1 << (MathExprParser.TIMESTAMP - 128)) | (1 << (MathExprParser.SORT - 128)) | (1 << (MathExprParser.ARGSORT - 128)) | (1 << (MathExprParser.ARGMIN - 128)) | (1 << (MathExprParser.ARGMAX - 128)) | (1 << (MathExprParser.SOFTMAX - 128)) | (1 << (MathExprParser.SOFTMIN - 128)) | (1 << (MathExprParser.UNIQUE - 128)) | (1 << (MathExprParser.FLIP - 128)) | (1 << (MathExprParser.ROLL - 128)) | (1 << (MathExprParser.COV - 128)) | (1 << (MathExprParser.CORR - 128)) | (1 << (MathExprParser.ENTROPY - 128)) | (1 << (MathExprParser.CROP - 128)) | (1 << (MathExprParser.NONE - 128)) | (1 << (MathExprParser.NOISE - 128)) | (1 << (MathExprParser.RAND - 128)) | (1 << (MathExprParser.CAUCHY - 128)) | (1 << (MathExprParser.EXPONENTIAL - 128)) | (1 << (MathExprParser.LOGNORMAL - 128)) | (1 << (MathExprParser.BERNOULLI - 128)) | (1 << (MathExprParser.POISSON - 128)) | (1 << (MathExprParser.GAMMADIST - 128)) | (1 << (MathExprParser.BETADIST - 128)) | (1 << (MathExprParser.LAPLACEDIST - 128)) | (1 << (MathExprParser.GUMBELDIST - 128)) | (1 << (MathExprParser.WEIBULLDIST - 128)) | (1 << (MathExprParser.CHI2DIST - 128)) | (1 << (MathExprParser.STUDENTTDIST - 128)) | (1 << (MathExprParser.PERLIN - 128)) | (1 << (MathExprParser.CELLULAR - 128)) | (1 << (MathExprParser.PLASMA - 128)) | (1 << (MathExprParser.RIDGED - 128)) | (1 << (MathExprParser.DOMAIN_WARP - 128)) | (1 << (MathExprParser.PLUS - 128)) | (1 << (MathExprParser.MINUS - 128)))) != 0) or ((((_la - 205)) & ~0x3f) == 0 and ((1 << (_la - 205)) & ((1 << (MathExprParser.PIPE - 205)) | (1 << (MathExprParser.LPAREN - 205)) | (1 << (MathExprParser.LBRACKET - 205)) | (1 << (MathExprParser.LBRACE - 205)) | (1 << (MathExprParser.NUMBER - 205)) | (1 << (MathExprParser.CONSTANT - 205)) | (1 << (MathExprParser.STRING - 205)) | (1 << (MathExprParser.VARIABLE - 205)))) != 0):
self.state = 155
self.stmt()
self.state = 160
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 161
self.match(MathExprParser.RBRACE)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class BreakStmtContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def BREAK(self):
return self.getToken(MathExprParser.BREAK, 0)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def getRuleIndex(self):
return MathExprParser.RULE_breakStmt
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBreakStmt" ):
listener.enterBreakStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBreakStmt" ):
listener.exitBreakStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBreakStmt" ):
return visitor.visitBreakStmt(self)
else:
return visitor.visitChildren(self)
def breakStmt(self):
localctx = MathExprParser.BreakStmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 18, self.RULE_breakStmt)
try:
self.enterOuterAlt(localctx, 1)
self.state = 163
self.match(MathExprParser.BREAK)
self.state = 164
self.match(MathExprParser.SEMICOLON)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class ContinueStmtContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def CONTINUE(self):
return self.getToken(MathExprParser.CONTINUE, 0)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def getRuleIndex(self):
return MathExprParser.RULE_continueStmt
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterContinueStmt" ):
listener.enterContinueStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitContinueStmt" ):
listener.exitContinueStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitContinueStmt" ):
return visitor.visitContinueStmt(self)
else:
return visitor.visitChildren(self)
def continueStmt(self):
localctx = MathExprParser.ContinueStmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 20, self.RULE_continueStmt)
try:
self.enterOuterAlt(localctx, 1)
self.state = 166
self.match(MathExprParser.CONTINUE)
self.state = 167
self.match(MathExprParser.SEMICOLON)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class ReturnStmtContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def RETURN(self):
return self.getToken(MathExprParser.RETURN, 0)
def SEMICOLON(self):
return self.getToken(MathExprParser.SEMICOLON, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def getRuleIndex(self):
return MathExprParser.RULE_returnStmt
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterReturnStmt" ):
listener.enterReturnStmt(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitReturnStmt" ):
listener.exitReturnStmt(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitReturnStmt" ):
return visitor.visitReturnStmt(self)
else:
return visitor.visitChildren(self)
def returnStmt(self):
localctx = MathExprParser.ReturnStmtContext(self, self._ctx, self.state)
self.enterRule(localctx, 22, self.RULE_returnStmt)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
self.state = 169
self.match(MathExprParser.RETURN)
self.state = 171
self._errHandler.sync(self)
_la = self._input.LA(1)
if (((_la) & ~0x3f) == 0 and ((1 << _la) & ((1 << MathExprParser.SIN) | (1 << MathExprParser.COS) | (1 << MathExprParser.TAN) | (1 << MathExprParser.ASIN) | (1 << MathExprParser.ACOS) | (1 << MathExprParser.ATAN) | (1 << MathExprParser.ATAN2) | (1 << MathExprParser.SINH) | (1 << MathExprParser.COSH) | (1 << MathExprParser.TANH) | (1 << MathExprParser.ASINH) | (1 << MathExprParser.ACOSH) | (1 << MathExprParser.ATANH) | (1 << MathExprParser.ABS) | (1 << MathExprParser.SQRT) | (1 << MathExprParser.LN) | (1 << MathExprParser.LOG) | (1 << MathExprParser.EXP) | (1 << MathExprParser.SMIN) | (1 << MathExprParser.SMAX) | (1 << MathExprParser.TMIN) | (1 << MathExprParser.TMAX) | (1 << MathExprParser.TNORM) | (1 << MathExprParser.SNORM) | (1 << MathExprParser.FLOOR) | (1 << MathExprParser.CEIL) | (1 << MathExprParser.ROUND) | (1 << MathExprParser.GAMMA) | (1 << MathExprParser.POWE) | (1 << MathExprParser.SIGM) | (1 << MathExprParser.CLAMP) | (1 << MathExprParser.SFFT) | (1 << MathExprParser.SIFFT) | (1 << MathExprParser.ANGL) | (1 << MathExprParser.PRNT) | (1 << MathExprParser.PRINT_SHAPE) | (1 << MathExprParser.NVL) | (1 << MathExprParser.LERP) | (1 << MathExprParser.STEP) | (1 << MathExprParser.SMOOTHSTEP) | (1 << MathExprParser.FRACT) | (1 << MathExprParser.SOFTPLUS) | (1 << MathExprParser.GELU) | (1 << MathExprParser.SIGN) | (1 << MathExprParser.MAP) | (1 << MathExprParser.EZCONV) | (1 << MathExprParser.CONV) | (1 << MathExprParser.SWAP) | (1 << MathExprParser.PERM) | (1 << MathExprParser.RESHAPE) | (1 << MathExprParser.RANGE) | (1 << MathExprParser.LINSPACE) | (1 << MathExprParser.LOGSPACE) | (1 << MathExprParser.TOPK) | (1 << MathExprParser.BOTK) | (1 << MathExprParser.PINV) | (1 << MathExprParser.SUM) | (1 << MathExprParser.MEAN) | (1 << MathExprParser.STD) | (1 << MathExprParser.VAR) | (1 << MathExprParser.QUARTILE) | (1 << MathExprParser.PERCENTILE))) != 0) or ((((_la - 64)) & ~0x3f) == 0 and ((1 << (_la - 64)) & ((1 << (MathExprParser.QUANTILE - 64)) | (1 << (MathExprParser.DOT - 64)) | (1 << (MathExprParser.MOMENT - 64)) | (1 << (MathExprParser.ERF - 64)) | (1 << (MathExprParser.ERFINV - 64)) | (1 << (MathExprParser.ANY - 64)) | (1 << (MathExprParser.ALL - 64)) | (1 << (MathExprParser.EDGE - 64)) | (1 << (MathExprParser.GAUSSIAN - 64)) | (1 << (MathExprParser.MEDIAN - 64)) | (1 << (MathExprParser.MODE - 64)) | (1 << (MathExprParser.CUMSUM - 64)) | (1 << (MathExprParser.CUMPROD - 64)) | (1 << (MathExprParser.TOPK_IND - 64)) | (1 << (MathExprParser.BOTK_IND - 64)) | (1 << (MathExprParser.CUBIC_EASE - 64)) | (1 << (MathExprParser.ELASTIC_EASE - 64)) | (1 << (MathExprParser.SINE_EASE - 64)) | (1 << (MathExprParser.SMOOTHERSTEP - 64)) | (1 << (MathExprParser.DIST - 64)) | (1 << (MathExprParser.REMAP - 64)) | (1 << (MathExprParser.COSSIM - 64)) | (1 << (MathExprParser.COUNT - 64)) | (1 << (MathExprParser.FLATTEN - 64)) | (1 << (MathExprParser.APPEND - 64)) | (1 << (MathExprParser.GET_VALUE - 64)) | (1 << (MathExprParser.FLOW_APPLY - 64)) | (1 << (MathExprParser.BATCH_SHUFFLE - 64)) | (1 << (MathExprParser.MOTION_MASK - 64)) | (1 << (MathExprParser.FLOW_TO_IMAGE - 64)) | (1 << (MathExprParser.FLOW_MAG - 64)) | (1 << (MathExprParser.FLOW_ANG - 64)) | (1 << (MathExprParser.WHERE - 64)) | (1 << (MathExprParser.HISTOGRAM - 64)) | (1 << (MathExprParser.OVERLAY - 64)) | (1 << (MathExprParser.PAD - 64)) | (1 << (MathExprParser.CROSS - 64)) | (1 << (MathExprParser.MATMUL - 64)) | (1 << (MathExprParser.RIFE - 64)) | (1 << (MathExprParser.BNOT - 64)) | (1 << (MathExprParser.BITCOUNT - 64)) | (1 << (MathExprParser.SHAPE - 64)) | (1 << (MathExprParser.BAND - 64)) | (1 << (MathExprParser.XOR - 64)) | (1 << (MathExprParser.BOR - 64)) | (1 << (MathExprParser.TENSOR - 64)) | (1 << (MathExprParser.PUSH - 64)) | (1 << (MathExprParser.POP - 64)) | (1 << (MathExprParser.CLEAR - 64)) | (1 << (MathExprParser.HAS - 64)) | (1 << (MathExprParser.GET - 64)) | (1 << (MathExprParser.CONCAT - 64)) | (1 << (MathExprParser.INT - 64)) | (1 << (MathExprParser.FLOAT - 64)) | (1 << (MathExprParser.UPPER - 64)) | (1 << (MathExprParser.LOWER - 64)) | (1 << (MathExprParser.TRIM - 64)) | (1 << (MathExprParser.SPLIT - 64)) | (1 << (MathExprParser.JOIN - 64)) | (1 << (MathExprParser.SUBSTRING - 64)) | (1 << (MathExprParser.SUBSTR - 64)) | (1 << (MathExprParser.FIND - 64)) | (1 << (MathExprParser.REPLACE - 64)) | (1 << (MathExprParser.DILATE - 64)))) != 0) or ((((_la - 128)) & ~0x3f) == 0 and ((1 << (_la - 128)) & ((1 << (MathExprParser.ERODE - 128)) | (1 << (MathExprParser.MORPH_OPEN - 128)) | (1 << (MathExprParser.MORPH_CLOSE - 128)) | (1 << (MathExprParser.RGB_TO_OKLAB - 128)) | (1 << (MathExprParser.RGB_TO_CIELAB - 128)) | (1 << (MathExprParser.OKLAB_TO_RGB - 128)) | (1 << (MathExprParser.CIELAB_TO_RGB - 128)) | (1 << (MathExprParser.RGB_TO_HSV - 128)) | (1 << (MathExprParser.HSV_TO_RGB - 128)) | (1 << (MathExprParser.INT_TO_RGB - 128)) | (1 << (MathExprParser.RGB_TO_INT - 128)) | (1 << (MathExprParser.INTERPOLATE_LINEAR - 128)) | (1 << (MathExprParser.INTERPOLATE_AREA - 128)) | (1 << (MathExprParser.INTERPOLATE_NEAREST - 128)) | (1 << (MathExprParser.TEXT_IMAGE - 128)) | (1 << (MathExprParser.BREAK - 128)) | (1 << (MathExprParser.CONTINUE - 128)) | (1 << (MathExprParser.TIMESTAMP - 128)) | (1 << (MathExprParser.SORT - 128)) | (1 << (MathExprParser.ARGSORT - 128)) | (1 << (MathExprParser.ARGMIN - 128)) | (1 << (MathExprParser.ARGMAX - 128)) | (1 << (MathExprParser.SOFTMAX - 128)) | (1 << (MathExprParser.SOFTMIN - 128)) | (1 << (MathExprParser.UNIQUE - 128)) | (1 << (MathExprParser.FLIP - 128)) | (1 << (MathExprParser.ROLL - 128)) | (1 << (MathExprParser.COV - 128)) | (1 << (MathExprParser.CORR - 128)) | (1 << (MathExprParser.ENTROPY - 128)) | (1 << (MathExprParser.CROP - 128)) | (1 << (MathExprParser.NONE - 128)) | (1 << (MathExprParser.NOISE - 128)) | (1 << (MathExprParser.RAND - 128)) | (1 << (MathExprParser.CAUCHY - 128)) | (1 << (MathExprParser.EXPONENTIAL - 128)) | (1 << (MathExprParser.LOGNORMAL - 128)) | (1 << (MathExprParser.BERNOULLI - 128)) | (1 << (MathExprParser.POISSON - 128)) | (1 << (MathExprParser.GAMMADIST - 128)) | (1 << (MathExprParser.BETADIST - 128)) | (1 << (MathExprParser.LAPLACEDIST - 128)) | (1 << (MathExprParser.GUMBELDIST - 128)) | (1 << (MathExprParser.WEIBULLDIST - 128)) | (1 << (MathExprParser.CHI2DIST - 128)) | (1 << (MathExprParser.STUDENTTDIST - 128)) | (1 << (MathExprParser.PERLIN - 128)) | (1 << (MathExprParser.CELLULAR - 128)) | (1 << (MathExprParser.PLASMA - 128)) | (1 << (MathExprParser.RIDGED - 128)) | (1 << (MathExprParser.DOMAIN_WARP - 128)) | (1 << (MathExprParser.PLUS - 128)) | (1 << (MathExprParser.MINUS - 128)))) != 0) or ((((_la - 205)) & ~0x3f) == 0 and ((1 << (_la - 205)) & ((1 << (MathExprParser.PIPE - 205)) | (1 << (MathExprParser.LPAREN - 205)) | (1 << (MathExprParser.LBRACKET - 205)) | (1 << (MathExprParser.NUMBER - 205)) | (1 << (MathExprParser.CONSTANT - 205)) | (1 << (MathExprParser.STRING - 205)) | (1 << (MathExprParser.VARIABLE - 205)))) != 0):
self.state = 170
self.expr()
self.state = 173
self.match(MathExprParser.SEMICOLON)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class ExprContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def ternaryExpr(self):
return self.getTypedRuleContext(MathExprParser.TernaryExprContext,0)
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, 24, self.RULE_expr)
try:
self.state = 178
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,12,self._ctx)
if la_ == 1:
self.enterOuterAlt(localctx, 1)
self.state = 175
self.ternaryExpr()
pass
elif la_ == 2:
self.enterOuterAlt(localctx, 2)
self.state = 176
self.atom()
pass
elif la_ == 3:
self.enterOuterAlt(localctx, 3)
self.state = 177
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 TernaryExprContext(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_ternaryExpr
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class TernaryExpContext(TernaryExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.TernaryExprContext
super().__init__(parser)
self.copyFrom(ctx)
def compExpr(self):
return self.getTypedRuleContext(MathExprParser.CompExprContext,0)
def QUESTION(self):
return self.getToken(MathExprParser.QUESTION, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COLON(self):
return self.getToken(MathExprParser.COLON, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTernaryExp" ):
listener.enterTernaryExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTernaryExp" ):
listener.exitTernaryExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTernaryExp" ):
return visitor.visitTernaryExp(self)
else:
return visitor.visitChildren(self)
def ternaryExpr(self):
localctx = MathExprParser.TernaryExprContext(self, self._ctx, self.state)
self.enterRule(localctx, 26, self.RULE_ternaryExpr)
try:
localctx = MathExprParser.TernaryExpContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 180
self.compExpr(0)
self.state = 181
self.match(MathExprParser.QUESTION)
self.state = 182
self.expr()
self.state = 183
self.match(MathExprParser.COLON)
self.state = 184
self.expr()
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 = 28
self.enterRecursionRule(localctx, 28, self.RULE_compExpr, _p)
try:
self.enterOuterAlt(localctx, 1)
localctx = MathExprParser.ToAddContext(self, localctx)
self._ctx = localctx
_prevctx = localctx
self.state = 187
self.addExpr(0)
self._ctx.stop = self._input.LT(-1)
self.state = 209
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,14,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 = 207
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,13,self._ctx)
if la_ == 1:
localctx = MathExprParser.GtExpContext(self, MathExprParser.CompExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_compExpr)
self.state = 189
if not self.precpred(self._ctx, 7):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 7)")
self.state = 190
self.match(MathExprParser.GT)
self.state = 191
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 = 192
if not self.precpred(self._ctx, 6):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 6)")
self.state = 193
self.match(MathExprParser.GE)
self.state = 194
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 = 195
if not self.precpred(self._ctx, 5):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 5)")
self.state = 196
self.match(MathExprParser.LT)
self.state = 197
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 = 198
if not self.precpred(self._ctx, 4):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 4)")
self.state = 199
self.match(MathExprParser.LE)
self.state = 200
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 = 201
if not self.precpred(self._ctx, 3):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 3)")
self.state = 202
self.match(MathExprParser.EQ)
self.state = 203
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 = 204
if not self.precpred(self._ctx, 2):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 2)")
self.state = 205
self.match(MathExprParser.NE)
self.state = 206
self.addExpr(0)
pass
self.state = 211
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,14,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 = 30
self.enterRecursionRule(localctx, 30, self.RULE_addExpr, _p)
try:
self.enterOuterAlt(localctx, 1)
localctx = MathExprParser.ToMulContext(self, localctx)
self._ctx = localctx
_prevctx = localctx
self.state = 213
self.mulExpr(0)
self._ctx.stop = self._input.LT(-1)
self.state = 223
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,16,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 = 221
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,15,self._ctx)
if la_ == 1:
localctx = MathExprParser.AddExpContext(self, MathExprParser.AddExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_addExpr)
self.state = 215
if not self.precpred(self._ctx, 3):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 3)")
self.state = 216
self.match(MathExprParser.PLUS)
self.state = 217
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 = 218
if not self.precpred(self._ctx, 2):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 2)")
self.state = 219
self.match(MathExprParser.MINUS)
self.state = 220
self.mulExpr(0)
pass
self.state = 225
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,16,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 ToShiftContext(MulExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.MulExprContext
super().__init__(parser)
self.copyFrom(ctx)
def shiftExpr(self):
return self.getTypedRuleContext(MathExprParser.ShiftExprContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterToShift" ):
listener.enterToShift(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitToShift" ):
listener.exitToShift(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitToShift" ):
return visitor.visitToShift(self)
else:
return visitor.visitChildren(self)
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 shiftExpr(self):
return self.getTypedRuleContext(MathExprParser.ShiftExprContext,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 shiftExpr(self):
return self.getTypedRuleContext(MathExprParser.ShiftExprContext,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 shiftExpr(self):
return self.getTypedRuleContext(MathExprParser.ShiftExprContext,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)
def mulExpr(self, _p:int=0):
_parentctx = self._ctx
_parentState = self.state
localctx = MathExprParser.MulExprContext(self, self._ctx, _parentState)
_prevctx = localctx
_startState = 32
self.enterRecursionRule(localctx, 32, self.RULE_mulExpr, _p)
try:
self.enterOuterAlt(localctx, 1)
localctx = MathExprParser.ToShiftContext(self, localctx)
self._ctx = localctx
_prevctx = localctx
self.state = 227
self.shiftExpr(0)
self._ctx.stop = self._input.LT(-1)
self.state = 240
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,18,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 = 238
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,17,self._ctx)
if la_ == 1:
localctx = MathExprParser.MulExpContext(self, MathExprParser.MulExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_mulExpr)
self.state = 229
if not self.precpred(self._ctx, 4):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 4)")
self.state = 230
self.match(MathExprParser.MULT)
self.state = 231
self.shiftExpr(0)
pass
elif la_ == 2:
localctx = MathExprParser.DivExpContext(self, MathExprParser.MulExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_mulExpr)
self.state = 232
if not self.precpred(self._ctx, 3):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 3)")
self.state = 233
self.match(MathExprParser.DIV)
self.state = 234
self.shiftExpr(0)
pass
elif la_ == 3:
localctx = MathExprParser.ModExpContext(self, MathExprParser.MulExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_mulExpr)
self.state = 235
if not self.precpred(self._ctx, 2):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 2)")
self.state = 236
self.match(MathExprParser.MOD)
self.state = 237
self.shiftExpr(0)
pass
self.state = 242
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,18,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 ShiftExprContext(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_shiftExpr
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class RShiftExpContext(ShiftExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.ShiftExprContext
super().__init__(parser)
self.copyFrom(ctx)
def shiftExpr(self):
return self.getTypedRuleContext(MathExprParser.ShiftExprContext,0)
def RSHIFT(self):
return self.getToken(MathExprParser.RSHIFT, 0)
def powExpr(self):
return self.getTypedRuleContext(MathExprParser.PowExprContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRShiftExp" ):
listener.enterRShiftExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRShiftExp" ):
listener.exitRShiftExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRShiftExp" ):
return visitor.visitRShiftExp(self)
else:
return visitor.visitChildren(self)
class LShiftExpContext(ShiftExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.ShiftExprContext
super().__init__(parser)
self.copyFrom(ctx)
def shiftExpr(self):
return self.getTypedRuleContext(MathExprParser.ShiftExprContext,0)
def LSHIFT(self):
return self.getToken(MathExprParser.LSHIFT, 0)
def powExpr(self):
return self.getTypedRuleContext(MathExprParser.PowExprContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLShiftExp" ):
listener.enterLShiftExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLShiftExp" ):
listener.exitLShiftExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLShiftExp" ):
return visitor.visitLShiftExp(self)
else:
return visitor.visitChildren(self)
class ToPowContext(ShiftExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.ShiftExprContext
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 shiftExpr(self, _p:int=0):
_parentctx = self._ctx
_parentState = self.state
localctx = MathExprParser.ShiftExprContext(self, self._ctx, _parentState)
_prevctx = localctx
_startState = 34
self.enterRecursionRule(localctx, 34, self.RULE_shiftExpr, _p)
try:
self.enterOuterAlt(localctx, 1)
localctx = MathExprParser.ToPowContext(self, localctx)
self._ctx = localctx
_prevctx = localctx
self.state = 244
self.powExpr()
self._ctx.stop = self._input.LT(-1)
self.state = 254
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,20,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 = 252
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,19,self._ctx)
if la_ == 1:
localctx = MathExprParser.LShiftExpContext(self, MathExprParser.ShiftExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_shiftExpr)
self.state = 246
if not self.precpred(self._ctx, 3):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 3)")
self.state = 247
self.match(MathExprParser.LSHIFT)
self.state = 248
self.powExpr()
pass
elif la_ == 2:
localctx = MathExprParser.RShiftExpContext(self, MathExprParser.ShiftExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_shiftExpr)
self.state = 249
if not self.precpred(self._ctx, 2):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 2)")
self.state = 250
self.match(MathExprParser.RSHIFT)
self.state = 251
self.powExpr()
pass
self.state = 256
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,20,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, 36, self.RULE_powExpr)
try:
self.state = 262
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,21,self._ctx)
if la_ == 1:
localctx = MathExprParser.PowExpContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 257
self.unaryExpr()
self.state = 258
self.match(MathExprParser.POW)
self.state = 259
self.powExpr()
pass
elif la_ == 2:
localctx = MathExprParser.ToUnaryContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 261
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 ToIndexContext(UnaryExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.UnaryExprContext
super().__init__(parser)
self.copyFrom(ctx)
def indexExpr(self):
return self.getTypedRuleContext(MathExprParser.IndexExprContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterToIndex" ):
listener.enterToIndex(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitToIndex" ):
listener.exitToIndex(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitToIndex" ):
return visitor.visitToIndex(self)
else:
return visitor.visitChildren(self)
def unaryExpr(self):
localctx = MathExprParser.UnaryExprContext(self, self._ctx, self.state)
self.enterRule(localctx, 38, self.RULE_unaryExpr)
try:
self.state = 269
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.PLUS]:
localctx = MathExprParser.UnaryPlusContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 264
self.match(MathExprParser.PLUS)
self.state = 265
self.unaryExpr()
pass
elif token in [MathExprParser.MINUS]:
localctx = MathExprParser.UnaryMinusContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 266
self.match(MathExprParser.MINUS)
self.state = 267
self.unaryExpr()
pass
elif token in [MathExprParser.SIN, MathExprParser.COS, MathExprParser.TAN, MathExprParser.ASIN, MathExprParser.ACOS, MathExprParser.ATAN, MathExprParser.ATAN2, MathExprParser.SINH, MathExprParser.COSH, MathExprParser.TANH, MathExprParser.ASINH, MathExprParser.ACOSH, MathExprParser.ATANH, MathExprParser.ABS, MathExprParser.SQRT, MathExprParser.LN, MathExprParser.LOG, MathExprParser.EXP, MathExprParser.SMIN, MathExprParser.SMAX, MathExprParser.TMIN, MathExprParser.TMAX, MathExprParser.TNORM, MathExprParser.SNORM, MathExprParser.FLOOR, MathExprParser.CEIL, MathExprParser.ROUND, MathExprParser.GAMMA, MathExprParser.POWE, MathExprParser.SIGM, MathExprParser.CLAMP, MathExprParser.SFFT, MathExprParser.SIFFT, MathExprParser.ANGL, MathExprParser.PRNT, MathExprParser.PRINT_SHAPE, MathExprParser.NVL, MathExprParser.LERP, MathExprParser.STEP, MathExprParser.SMOOTHSTEP, MathExprParser.FRACT, MathExprParser.SOFTPLUS, MathExprParser.GELU, MathExprParser.SIGN, MathExprParser.MAP, MathExprParser.EZCONV, MathExprParser.CONV, MathExprParser.SWAP, MathExprParser.PERM, MathExprParser.RESHAPE, MathExprParser.RANGE, MathExprParser.LINSPACE, MathExprParser.LOGSPACE, MathExprParser.TOPK, MathExprParser.BOTK, MathExprParser.PINV, MathExprParser.SUM, MathExprParser.MEAN, MathExprParser.STD, MathExprParser.VAR, MathExprParser.QUARTILE, MathExprParser.PERCENTILE, MathExprParser.QUANTILE, MathExprParser.DOT, MathExprParser.MOMENT, MathExprParser.ERF, MathExprParser.ERFINV, MathExprParser.ANY, MathExprParser.ALL, MathExprParser.EDGE, MathExprParser.GAUSSIAN, MathExprParser.MEDIAN, MathExprParser.MODE, MathExprParser.CUMSUM, MathExprParser.CUMPROD, MathExprParser.TOPK_IND, MathExprParser.BOTK_IND, MathExprParser.CUBIC_EASE, MathExprParser.ELASTIC_EASE, MathExprParser.SINE_EASE, MathExprParser.SMOOTHERSTEP, MathExprParser.DIST, MathExprParser.REMAP, MathExprParser.COSSIM, MathExprParser.COUNT, MathExprParser.FLATTEN, MathExprParser.APPEND, MathExprParser.GET_VALUE, MathExprParser.FLOW_APPLY, MathExprParser.BATCH_SHUFFLE, MathExprParser.MOTION_MASK, MathExprParser.FLOW_TO_IMAGE, MathExprParser.FLOW_MAG, MathExprParser.FLOW_ANG, MathExprParser.WHERE, MathExprParser.HISTOGRAM, MathExprParser.OVERLAY, MathExprParser.PAD, MathExprParser.CROSS, MathExprParser.MATMUL, MathExprParser.RIFE, MathExprParser.BNOT, MathExprParser.BITCOUNT, MathExprParser.SHAPE, MathExprParser.BAND, MathExprParser.XOR, MathExprParser.BOR, MathExprParser.TENSOR, MathExprParser.PUSH, MathExprParser.POP, MathExprParser.CLEAR, MathExprParser.HAS, MathExprParser.GET, MathExprParser.CONCAT, MathExprParser.INT, MathExprParser.FLOAT, MathExprParser.UPPER, MathExprParser.LOWER, MathExprParser.TRIM, MathExprParser.SPLIT, MathExprParser.JOIN, MathExprParser.SUBSTRING, MathExprParser.SUBSTR, MathExprParser.FIND, MathExprParser.REPLACE, MathExprParser.DILATE, MathExprParser.ERODE, MathExprParser.MORPH_OPEN, MathExprParser.MORPH_CLOSE, MathExprParser.RGB_TO_OKLAB, MathExprParser.RGB_TO_CIELAB, MathExprParser.OKLAB_TO_RGB, MathExprParser.CIELAB_TO_RGB, MathExprParser.RGB_TO_HSV, MathExprParser.HSV_TO_RGB, MathExprParser.INT_TO_RGB, MathExprParser.RGB_TO_INT, MathExprParser.INTERPOLATE_LINEAR, MathExprParser.INTERPOLATE_AREA, MathExprParser.INTERPOLATE_NEAREST, MathExprParser.TEXT_IMAGE, MathExprParser.BREAK, MathExprParser.CONTINUE, MathExprParser.TIMESTAMP, MathExprParser.SORT, MathExprParser.ARGSORT, MathExprParser.ARGMIN, MathExprParser.ARGMAX, MathExprParser.SOFTMAX, MathExprParser.SOFTMIN, MathExprParser.UNIQUE, MathExprParser.FLIP, MathExprParser.ROLL, MathExprParser.COV, MathExprParser.CORR, MathExprParser.ENTROPY, MathExprParser.CROP, MathExprParser.NONE, MathExprParser.NOISE, MathExprParser.RAND, MathExprParser.CAUCHY, MathExprParser.EXPONENTIAL, MathExprParser.LOGNORMAL, MathExprParser.BERNOULLI, MathExprParser.POISSON, MathExprParser.GAMMADIST, MathExprParser.BETADIST, MathExprParser.LAPLACEDIST, MathExprParser.GUMBELDIST, MathExprParser.WEIBULLDIST, MathExprParser.CHI2DIST, MathExprParser.STUDENTTDIST, MathExprParser.PERLIN, MathExprParser.CELLULAR, MathExprParser.PLASMA, MathExprParser.RIDGED, MathExprParser.DOMAIN_WARP, MathExprParser.PIPE, MathExprParser.LPAREN, MathExprParser.LBRACKET, MathExprParser.NUMBER, MathExprParser.CONSTANT, MathExprParser.STRING, MathExprParser.VARIABLE]:
localctx = MathExprParser.ToIndexContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 268
self.indexExpr(0)
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 IndexExprContext(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_indexExpr
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class IndexExpContext(IndexExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.IndexExprContext
super().__init__(parser)
self.copyFrom(ctx)
def indexExpr(self):
return self.getTypedRuleContext(MathExprParser.IndexExprContext,0)
def LBRACKET(self):
return self.getToken(MathExprParser.LBRACKET, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RBRACKET(self):
return self.getToken(MathExprParser.RBRACKET, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterIndexExp" ):
listener.enterIndexExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitIndexExp" ):
listener.exitIndexExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitIndexExp" ):
return visitor.visitIndexExp(self)
else:
return visitor.visitChildren(self)
class ToAtomContext(IndexExprContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.IndexExprContext
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 indexExpr(self, _p:int=0):
_parentctx = self._ctx
_parentState = self.state
localctx = MathExprParser.IndexExprContext(self, self._ctx, _parentState)
_prevctx = localctx
_startState = 40
self.enterRecursionRule(localctx, 40, self.RULE_indexExpr, _p)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
localctx = MathExprParser.ToAtomContext(self, localctx)
self._ctx = localctx
_prevctx = localctx
self.state = 272
self.atom()
self._ctx.stop = self._input.LT(-1)
self.state = 288
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,24,self._ctx)
while _alt!=2 and _alt!=ATN.INVALID_ALT_NUMBER:
if _alt==1:
if self._parseListeners is not None:
self.triggerExitRuleEvent()
_prevctx = localctx
localctx = MathExprParser.IndexExpContext(self, MathExprParser.IndexExprContext(self, _parentctx, _parentState))
self.pushNewRecursionContext(localctx, _startState, self.RULE_indexExpr)
self.state = 274
if not self.precpred(self._ctx, 2):
from antlr4.error.Errors import FailedPredicateException
raise FailedPredicateException(self, "self.precpred(self._ctx, 2)")
self.state = 275
self.match(MathExprParser.LBRACKET)
self.state = 276
self.expr()
self.state = 281
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 277
self.match(MathExprParser.COMMA)
self.state = 278
self.expr()
self.state = 283
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 284
self.match(MathExprParser.RBRACKET)
self.state = 290
self._errHandler.sync(self)
_alt = self._interp.adaptivePredict(self._input,24,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 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 Func5ExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def func5(self):
return self.getTypedRuleContext(MathExprParser.Func5Context,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFunc5Exp" ):
listener.enterFunc5Exp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFunc5Exp" ):
listener.exitFunc5Exp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFunc5Exp" ):
return visitor.visitFunc5Exp(self)
else:
return visitor.visitChildren(self)
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 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 StringExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def STRING(self):
return self.getToken(MathExprParser.STRING, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterStringExp" ):
listener.enterStringExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitStringExp" ):
listener.exitStringExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitStringExp" ):
return visitor.visitStringExp(self)
else:
return visitor.visitChildren(self)
class LambdaExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def paramList(self):
return self.getTypedRuleContext(MathExprParser.ParamListContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def ARROW(self):
return self.getToken(MathExprParser.ARROW, 0)
def block(self):
return self.getTypedRuleContext(MathExprParser.BlockContext,0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLambdaExp" ):
listener.enterLambdaExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLambdaExp" ):
listener.exitLambdaExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLambdaExp" ):
return visitor.visitLambdaExp(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 NoneExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def NONE(self):
return self.getToken(MathExprParser.NONE, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterNoneExp" ):
listener.enterNoneExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitNoneExp" ):
listener.exitNoneExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitNoneExp" ):
return visitor.visitNoneExp(self)
else:
return visitor.visitChildren(self)
class BreakExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def BREAK(self):
return self.getToken(MathExprParser.BREAK, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBreakExp" ):
listener.enterBreakExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBreakExp" ):
listener.exitBreakExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBreakExp" ):
return visitor.visitBreakExp(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 AbsExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def PIPE(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.PIPE)
else:
return self.getToken(MathExprParser.PIPE, i)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAbsExp" ):
listener.enterAbsExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAbsExp" ):
listener.exitAbsExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAbsExp" ):
return visitor.visitAbsExp(self)
else:
return visitor.visitChildren(self)
class ListExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def LBRACKET(self):
return self.getToken(MathExprParser.LBRACKET, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RBRACKET(self):
return self.getToken(MathExprParser.RBRACKET, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterListExp" ):
listener.enterListExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitListExp" ):
listener.exitListExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitListExp" ):
return visitor.visitListExp(self)
else:
return visitor.visitChildren(self)
class ContinueExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def CONTINUE(self):
return self.getToken(MathExprParser.CONTINUE, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterContinueExp" ):
listener.enterContinueExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitContinueExp" ):
listener.exitContinueExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitContinueExp" ):
return visitor.visitContinueExp(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 CallExpContext(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 LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def exprList(self):
return self.getTypedRuleContext(MathExprParser.ExprListContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCallExp" ):
listener.enterCallExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCallExp" ):
listener.exitCallExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCallExp" ):
return visitor.visitCallExp(self)
else:
return visitor.visitChildren(self)
class ParenExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterParenExp" ):
listener.enterParenExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitParenExp" ):
listener.exitParenExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitParenExp" ):
return visitor.visitParenExp(self)
else:
return visitor.visitChildren(self)
class FuncNoiseExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def funcNoise(self):
return self.getTypedRuleContext(MathExprParser.FuncNoiseContext,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFuncNoiseExp" ):
listener.enterFuncNoiseExp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFuncNoiseExp" ):
listener.exitFuncNoiseExp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFuncNoiseExp" ):
return visitor.visitFuncNoiseExp(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 Func0ExpContext(AtomContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.AtomContext
super().__init__(parser)
self.copyFrom(ctx)
def func0(self):
return self.getTypedRuleContext(MathExprParser.Func0Context,0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFunc0Exp" ):
listener.enterFunc0Exp(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFunc0Exp" ):
listener.exitFunc0Exp(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFunc0Exp" ):
return visitor.visitFunc0Exp(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)
def atom(self):
localctx = MathExprParser.AtomContext(self, self._ctx, self.state)
self.enterRule(localctx, 42, self.RULE_atom)
self._la = 0 # Token type
try:
self.state = 343
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,28,self._ctx)
if la_ == 1:
localctx = MathExprParser.Func0ExpContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 291
self.func0()
pass
elif la_ == 2:
localctx = MathExprParser.Func1ExpContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 292
self.func1()
pass
elif la_ == 3:
localctx = MathExprParser.Func2ExpContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 293
self.func2()
pass
elif la_ == 4:
localctx = MathExprParser.Func3ExpContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 294
self.func3()
pass
elif la_ == 5:
localctx = MathExprParser.Func4ExpContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 295
self.func4()
pass
elif la_ == 6:
localctx = MathExprParser.Func5ExpContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 296
self.func5()
pass
elif la_ == 7:
localctx = MathExprParser.FuncNExpContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 297
self.funcN()
pass
elif la_ == 8:
localctx = MathExprParser.FuncNoiseExpContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 298
self.funcNoise()
pass
elif la_ == 9:
localctx = MathExprParser.VariableExpContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 299
self.match(MathExprParser.VARIABLE)
pass
elif la_ == 10:
localctx = MathExprParser.NumberExpContext(self, localctx)
self.enterOuterAlt(localctx, 10)
self.state = 300
self.match(MathExprParser.NUMBER)
pass
elif la_ == 11:
localctx = MathExprParser.ConstantExpContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 301
self.match(MathExprParser.CONSTANT)
pass
elif la_ == 12:
localctx = MathExprParser.StringExpContext(self, localctx)
self.enterOuterAlt(localctx, 12)
self.state = 302
self.match(MathExprParser.STRING)
pass
elif la_ == 13:
localctx = MathExprParser.LambdaExpContext(self, localctx)
self.enterOuterAlt(localctx, 13)
self.state = 303
self.match(MathExprParser.LPAREN)
self.state = 304
self.paramList()
self.state = 305
self.match(MathExprParser.RPAREN)
self.state = 306
self.match(MathExprParser.ARROW)
self.state = 309
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.LBRACE]:
self.state = 307
self.block()
pass
elif token in [MathExprParser.SIN, MathExprParser.COS, MathExprParser.TAN, MathExprParser.ASIN, MathExprParser.ACOS, MathExprParser.ATAN, MathExprParser.ATAN2, MathExprParser.SINH, MathExprParser.COSH, MathExprParser.TANH, MathExprParser.ASINH, MathExprParser.ACOSH, MathExprParser.ATANH, MathExprParser.ABS, MathExprParser.SQRT, MathExprParser.LN, MathExprParser.LOG, MathExprParser.EXP, MathExprParser.SMIN, MathExprParser.SMAX, MathExprParser.TMIN, MathExprParser.TMAX, MathExprParser.TNORM, MathExprParser.SNORM, MathExprParser.FLOOR, MathExprParser.CEIL, MathExprParser.ROUND, MathExprParser.GAMMA, MathExprParser.POWE, MathExprParser.SIGM, MathExprParser.CLAMP, MathExprParser.SFFT, MathExprParser.SIFFT, MathExprParser.ANGL, MathExprParser.PRNT, MathExprParser.PRINT_SHAPE, MathExprParser.NVL, MathExprParser.LERP, MathExprParser.STEP, MathExprParser.SMOOTHSTEP, MathExprParser.FRACT, MathExprParser.SOFTPLUS, MathExprParser.GELU, MathExprParser.SIGN, MathExprParser.MAP, MathExprParser.EZCONV, MathExprParser.CONV, MathExprParser.SWAP, MathExprParser.PERM, MathExprParser.RESHAPE, MathExprParser.RANGE, MathExprParser.LINSPACE, MathExprParser.LOGSPACE, MathExprParser.TOPK, MathExprParser.BOTK, MathExprParser.PINV, MathExprParser.SUM, MathExprParser.MEAN, MathExprParser.STD, MathExprParser.VAR, MathExprParser.QUARTILE, MathExprParser.PERCENTILE, MathExprParser.QUANTILE, MathExprParser.DOT, MathExprParser.MOMENT, MathExprParser.ERF, MathExprParser.ERFINV, MathExprParser.ANY, MathExprParser.ALL, MathExprParser.EDGE, MathExprParser.GAUSSIAN, MathExprParser.MEDIAN, MathExprParser.MODE, MathExprParser.CUMSUM, MathExprParser.CUMPROD, MathExprParser.TOPK_IND, MathExprParser.BOTK_IND, MathExprParser.CUBIC_EASE, MathExprParser.ELASTIC_EASE, MathExprParser.SINE_EASE, MathExprParser.SMOOTHERSTEP, MathExprParser.DIST, MathExprParser.REMAP, MathExprParser.COSSIM, MathExprParser.COUNT, MathExprParser.FLATTEN, MathExprParser.APPEND, MathExprParser.GET_VALUE, MathExprParser.FLOW_APPLY, MathExprParser.BATCH_SHUFFLE, MathExprParser.MOTION_MASK, MathExprParser.FLOW_TO_IMAGE, MathExprParser.FLOW_MAG, MathExprParser.FLOW_ANG, MathExprParser.WHERE, MathExprParser.HISTOGRAM, MathExprParser.OVERLAY, MathExprParser.PAD, MathExprParser.CROSS, MathExprParser.MATMUL, MathExprParser.RIFE, MathExprParser.BNOT, MathExprParser.BITCOUNT, MathExprParser.SHAPE, MathExprParser.BAND, MathExprParser.XOR, MathExprParser.BOR, MathExprParser.TENSOR, MathExprParser.PUSH, MathExprParser.POP, MathExprParser.CLEAR, MathExprParser.HAS, MathExprParser.GET, MathExprParser.CONCAT, MathExprParser.INT, MathExprParser.FLOAT, MathExprParser.UPPER, MathExprParser.LOWER, MathExprParser.TRIM, MathExprParser.SPLIT, MathExprParser.JOIN, MathExprParser.SUBSTRING, MathExprParser.SUBSTR, MathExprParser.FIND, MathExprParser.REPLACE, MathExprParser.DILATE, MathExprParser.ERODE, MathExprParser.MORPH_OPEN, MathExprParser.MORPH_CLOSE, MathExprParser.RGB_TO_OKLAB, MathExprParser.RGB_TO_CIELAB, MathExprParser.OKLAB_TO_RGB, MathExprParser.CIELAB_TO_RGB, MathExprParser.RGB_TO_HSV, MathExprParser.HSV_TO_RGB, MathExprParser.INT_TO_RGB, MathExprParser.RGB_TO_INT, MathExprParser.INTERPOLATE_LINEAR, MathExprParser.INTERPOLATE_AREA, MathExprParser.INTERPOLATE_NEAREST, MathExprParser.TEXT_IMAGE, MathExprParser.BREAK, MathExprParser.CONTINUE, MathExprParser.TIMESTAMP, MathExprParser.SORT, MathExprParser.ARGSORT, MathExprParser.ARGMIN, MathExprParser.ARGMAX, MathExprParser.SOFTMAX, MathExprParser.SOFTMIN, MathExprParser.UNIQUE, MathExprParser.FLIP, MathExprParser.ROLL, MathExprParser.COV, MathExprParser.CORR, MathExprParser.ENTROPY, MathExprParser.CROP, MathExprParser.NONE, MathExprParser.NOISE, MathExprParser.RAND, MathExprParser.CAUCHY, MathExprParser.EXPONENTIAL, MathExprParser.LOGNORMAL, MathExprParser.BERNOULLI, MathExprParser.POISSON, MathExprParser.GAMMADIST, MathExprParser.BETADIST, MathExprParser.LAPLACEDIST, MathExprParser.GUMBELDIST, MathExprParser.WEIBULLDIST, MathExprParser.CHI2DIST, MathExprParser.STUDENTTDIST, MathExprParser.PERLIN, MathExprParser.CELLULAR, MathExprParser.PLASMA, MathExprParser.RIDGED, MathExprParser.DOMAIN_WARP, MathExprParser.PLUS, MathExprParser.MINUS, MathExprParser.PIPE, MathExprParser.LPAREN, MathExprParser.LBRACKET, MathExprParser.NUMBER, MathExprParser.CONSTANT, MathExprParser.STRING, MathExprParser.VARIABLE]:
self.state = 308
self.expr()
pass
else:
raise NoViableAltException(self)
pass
elif la_ == 14:
localctx = MathExprParser.ParenExpContext(self, localctx)
self.enterOuterAlt(localctx, 14)
self.state = 311
self.match(MathExprParser.LPAREN)
self.state = 312
self.expr()
self.state = 313
self.match(MathExprParser.RPAREN)
pass
elif la_ == 15:
localctx = MathExprParser.ParenExpContext(self, localctx)
self.enterOuterAlt(localctx, 15)
self.state = 315
self.match(MathExprParser.LPAREN)
self.state = 316
self.expr()
self.state = 317
self.match(MathExprParser.RPAREN)
pass
elif la_ == 16:
localctx = MathExprParser.AbsExpContext(self, localctx)
self.enterOuterAlt(localctx, 16)
self.state = 319
self.match(MathExprParser.PIPE)
self.state = 320
self.expr()
self.state = 321
self.match(MathExprParser.PIPE)
pass
elif la_ == 17:
localctx = MathExprParser.ListExpContext(self, localctx)
self.enterOuterAlt(localctx, 17)
self.state = 323
self.match(MathExprParser.LBRACKET)
self.state = 324
self.expr()
self.state = 329
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 325
self.match(MathExprParser.COMMA)
self.state = 326
self.expr()
self.state = 331
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 332
self.match(MathExprParser.RBRACKET)
pass
elif la_ == 18:
localctx = MathExprParser.CallExpContext(self, localctx)
self.enterOuterAlt(localctx, 18)
self.state = 334
self.match(MathExprParser.VARIABLE)
self.state = 335
self.match(MathExprParser.LPAREN)
self.state = 337
self._errHandler.sync(self)
_la = self._input.LA(1)
if (((_la) & ~0x3f) == 0 and ((1 << _la) & ((1 << MathExprParser.SIN) | (1 << MathExprParser.COS) | (1 << MathExprParser.TAN) | (1 << MathExprParser.ASIN) | (1 << MathExprParser.ACOS) | (1 << MathExprParser.ATAN) | (1 << MathExprParser.ATAN2) | (1 << MathExprParser.SINH) | (1 << MathExprParser.COSH) | (1 << MathExprParser.TANH) | (1 << MathExprParser.ASINH) | (1 << MathExprParser.ACOSH) | (1 << MathExprParser.ATANH) | (1 << MathExprParser.ABS) | (1 << MathExprParser.SQRT) | (1 << MathExprParser.LN) | (1 << MathExprParser.LOG) | (1 << MathExprParser.EXP) | (1 << MathExprParser.SMIN) | (1 << MathExprParser.SMAX) | (1 << MathExprParser.TMIN) | (1 << MathExprParser.TMAX) | (1 << MathExprParser.TNORM) | (1 << MathExprParser.SNORM) | (1 << MathExprParser.FLOOR) | (1 << MathExprParser.CEIL) | (1 << MathExprParser.ROUND) | (1 << MathExprParser.GAMMA) | (1 << MathExprParser.POWE) | (1 << MathExprParser.SIGM) | (1 << MathExprParser.CLAMP) | (1 << MathExprParser.SFFT) | (1 << MathExprParser.SIFFT) | (1 << MathExprParser.ANGL) | (1 << MathExprParser.PRNT) | (1 << MathExprParser.PRINT_SHAPE) | (1 << MathExprParser.NVL) | (1 << MathExprParser.LERP) | (1 << MathExprParser.STEP) | (1 << MathExprParser.SMOOTHSTEP) | (1 << MathExprParser.FRACT) | (1 << MathExprParser.SOFTPLUS) | (1 << MathExprParser.GELU) | (1 << MathExprParser.SIGN) | (1 << MathExprParser.MAP) | (1 << MathExprParser.EZCONV) | (1 << MathExprParser.CONV) | (1 << MathExprParser.SWAP) | (1 << MathExprParser.PERM) | (1 << MathExprParser.RESHAPE) | (1 << MathExprParser.RANGE) | (1 << MathExprParser.LINSPACE) | (1 << MathExprParser.LOGSPACE) | (1 << MathExprParser.TOPK) | (1 << MathExprParser.BOTK) | (1 << MathExprParser.PINV) | (1 << MathExprParser.SUM) | (1 << MathExprParser.MEAN) | (1 << MathExprParser.STD) | (1 << MathExprParser.VAR) | (1 << MathExprParser.QUARTILE) | (1 << MathExprParser.PERCENTILE))) != 0) or ((((_la - 64)) & ~0x3f) == 0 and ((1 << (_la - 64)) & ((1 << (MathExprParser.QUANTILE - 64)) | (1 << (MathExprParser.DOT - 64)) | (1 << (MathExprParser.MOMENT - 64)) | (1 << (MathExprParser.ERF - 64)) | (1 << (MathExprParser.ERFINV - 64)) | (1 << (MathExprParser.ANY - 64)) | (1 << (MathExprParser.ALL - 64)) | (1 << (MathExprParser.EDGE - 64)) | (1 << (MathExprParser.GAUSSIAN - 64)) | (1 << (MathExprParser.MEDIAN - 64)) | (1 << (MathExprParser.MODE - 64)) | (1 << (MathExprParser.CUMSUM - 64)) | (1 << (MathExprParser.CUMPROD - 64)) | (1 << (MathExprParser.TOPK_IND - 64)) | (1 << (MathExprParser.BOTK_IND - 64)) | (1 << (MathExprParser.CUBIC_EASE - 64)) | (1 << (MathExprParser.ELASTIC_EASE - 64)) | (1 << (MathExprParser.SINE_EASE - 64)) | (1 << (MathExprParser.SMOOTHERSTEP - 64)) | (1 << (MathExprParser.DIST - 64)) | (1 << (MathExprParser.REMAP - 64)) | (1 << (MathExprParser.COSSIM - 64)) | (1 << (MathExprParser.COUNT - 64)) | (1 << (MathExprParser.FLATTEN - 64)) | (1 << (MathExprParser.APPEND - 64)) | (1 << (MathExprParser.GET_VALUE - 64)) | (1 << (MathExprParser.FLOW_APPLY - 64)) | (1 << (MathExprParser.BATCH_SHUFFLE - 64)) | (1 << (MathExprParser.MOTION_MASK - 64)) | (1 << (MathExprParser.FLOW_TO_IMAGE - 64)) | (1 << (MathExprParser.FLOW_MAG - 64)) | (1 << (MathExprParser.FLOW_ANG - 64)) | (1 << (MathExprParser.WHERE - 64)) | (1 << (MathExprParser.HISTOGRAM - 64)) | (1 << (MathExprParser.OVERLAY - 64)) | (1 << (MathExprParser.PAD - 64)) | (1 << (MathExprParser.CROSS - 64)) | (1 << (MathExprParser.MATMUL - 64)) | (1 << (MathExprParser.RIFE - 64)) | (1 << (MathExprParser.BNOT - 64)) | (1 << (MathExprParser.BITCOUNT - 64)) | (1 << (MathExprParser.SHAPE - 64)) | (1 << (MathExprParser.BAND - 64)) | (1 << (MathExprParser.XOR - 64)) | (1 << (MathExprParser.BOR - 64)) | (1 << (MathExprParser.TENSOR - 64)) | (1 << (MathExprParser.PUSH - 64)) | (1 << (MathExprParser.POP - 64)) | (1 << (MathExprParser.CLEAR - 64)) | (1 << (MathExprParser.HAS - 64)) | (1 << (MathExprParser.GET - 64)) | (1 << (MathExprParser.CONCAT - 64)) | (1 << (MathExprParser.INT - 64)) | (1 << (MathExprParser.FLOAT - 64)) | (1 << (MathExprParser.UPPER - 64)) | (1 << (MathExprParser.LOWER - 64)) | (1 << (MathExprParser.TRIM - 64)) | (1 << (MathExprParser.SPLIT - 64)) | (1 << (MathExprParser.JOIN - 64)) | (1 << (MathExprParser.SUBSTRING - 64)) | (1 << (MathExprParser.SUBSTR - 64)) | (1 << (MathExprParser.FIND - 64)) | (1 << (MathExprParser.REPLACE - 64)) | (1 << (MathExprParser.DILATE - 64)))) != 0) or ((((_la - 128)) & ~0x3f) == 0 and ((1 << (_la - 128)) & ((1 << (MathExprParser.ERODE - 128)) | (1 << (MathExprParser.MORPH_OPEN - 128)) | (1 << (MathExprParser.MORPH_CLOSE - 128)) | (1 << (MathExprParser.RGB_TO_OKLAB - 128)) | (1 << (MathExprParser.RGB_TO_CIELAB - 128)) | (1 << (MathExprParser.OKLAB_TO_RGB - 128)) | (1 << (MathExprParser.CIELAB_TO_RGB - 128)) | (1 << (MathExprParser.RGB_TO_HSV - 128)) | (1 << (MathExprParser.HSV_TO_RGB - 128)) | (1 << (MathExprParser.INT_TO_RGB - 128)) | (1 << (MathExprParser.RGB_TO_INT - 128)) | (1 << (MathExprParser.INTERPOLATE_LINEAR - 128)) | (1 << (MathExprParser.INTERPOLATE_AREA - 128)) | (1 << (MathExprParser.INTERPOLATE_NEAREST - 128)) | (1 << (MathExprParser.TEXT_IMAGE - 128)) | (1 << (MathExprParser.BREAK - 128)) | (1 << (MathExprParser.CONTINUE - 128)) | (1 << (MathExprParser.TIMESTAMP - 128)) | (1 << (MathExprParser.SORT - 128)) | (1 << (MathExprParser.ARGSORT - 128)) | (1 << (MathExprParser.ARGMIN - 128)) | (1 << (MathExprParser.ARGMAX - 128)) | (1 << (MathExprParser.SOFTMAX - 128)) | (1 << (MathExprParser.SOFTMIN - 128)) | (1 << (MathExprParser.UNIQUE - 128)) | (1 << (MathExprParser.FLIP - 128)) | (1 << (MathExprParser.ROLL - 128)) | (1 << (MathExprParser.COV - 128)) | (1 << (MathExprParser.CORR - 128)) | (1 << (MathExprParser.ENTROPY - 128)) | (1 << (MathExprParser.CROP - 128)) | (1 << (MathExprParser.NONE - 128)) | (1 << (MathExprParser.NOISE - 128)) | (1 << (MathExprParser.RAND - 128)) | (1 << (MathExprParser.CAUCHY - 128)) | (1 << (MathExprParser.EXPONENTIAL - 128)) | (1 << (MathExprParser.LOGNORMAL - 128)) | (1 << (MathExprParser.BERNOULLI - 128)) | (1 << (MathExprParser.POISSON - 128)) | (1 << (MathExprParser.GAMMADIST - 128)) | (1 << (MathExprParser.BETADIST - 128)) | (1 << (MathExprParser.LAPLACEDIST - 128)) | (1 << (MathExprParser.GUMBELDIST - 128)) | (1 << (MathExprParser.WEIBULLDIST - 128)) | (1 << (MathExprParser.CHI2DIST - 128)) | (1 << (MathExprParser.STUDENTTDIST - 128)) | (1 << (MathExprParser.PERLIN - 128)) | (1 << (MathExprParser.CELLULAR - 128)) | (1 << (MathExprParser.PLASMA - 128)) | (1 << (MathExprParser.RIDGED - 128)) | (1 << (MathExprParser.DOMAIN_WARP - 128)) | (1 << (MathExprParser.PLUS - 128)) | (1 << (MathExprParser.MINUS - 128)))) != 0) or ((((_la - 205)) & ~0x3f) == 0 and ((1 << (_la - 205)) & ((1 << (MathExprParser.PIPE - 205)) | (1 << (MathExprParser.LPAREN - 205)) | (1 << (MathExprParser.LBRACKET - 205)) | (1 << (MathExprParser.NUMBER - 205)) | (1 << (MathExprParser.CONSTANT - 205)) | (1 << (MathExprParser.STRING - 205)) | (1 << (MathExprParser.VARIABLE - 205)))) != 0):
self.state = 336
self.exprList()
self.state = 339
self.match(MathExprParser.RPAREN)
pass
elif la_ == 19:
localctx = MathExprParser.NoneExpContext(self, localctx)
self.enterOuterAlt(localctx, 19)
self.state = 340
self.match(MathExprParser.NONE)
pass
elif la_ == 20:
localctx = MathExprParser.BreakExpContext(self, localctx)
self.enterOuterAlt(localctx, 20)
self.state = 341
self.match(MathExprParser.BREAK)
pass
elif la_ == 21:
localctx = MathExprParser.ContinueExpContext(self, localctx)
self.enterOuterAlt(localctx, 21)
self.state = 342
self.match(MathExprParser.CONTINUE)
pass
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class ExprListContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def getRuleIndex(self):
return MathExprParser.RULE_exprList
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterExprList" ):
listener.enterExprList(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitExprList" ):
listener.exitExprList(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitExprList" ):
return visitor.visitExprList(self)
else:
return visitor.visitChildren(self)
def exprList(self):
localctx = MathExprParser.ExprListContext(self, self._ctx, self.state)
self.enterRule(localctx, 44, self.RULE_exprList)
self._la = 0 # Token type
try:
self.enterOuterAlt(localctx, 1)
self.state = 345
self.expr()
self.state = 350
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 346
self.match(MathExprParser.COMMA)
self.state = 347
self.expr()
self.state = 352
self._errHandler.sync(self)
_la = self._input.LA(1)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class Func0Context(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_func0
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class TimestampFuncContext(Func0Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func0Context
super().__init__(parser)
self.copyFrom(ctx)
def TIMESTAMP(self):
return self.getToken(MathExprParser.TIMESTAMP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTimestampFunc" ):
listener.enterTimestampFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTimestampFunc" ):
listener.exitTimestampFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTimestampFunc" ):
return visitor.visitTimestampFunc(self)
else:
return visitor.visitChildren(self)
def func0(self):
localctx = MathExprParser.Func0Context(self, self._ctx, self.state)
self.enterRule(localctx, 46, self.RULE_func0)
try:
localctx = MathExprParser.TimestampFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 353
self.match(MathExprParser.TIMESTAMP)
self.state = 354
self.match(MathExprParser.LPAREN)
self.state = 355
self.match(MathExprParser.RPAREN)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class Func1Context(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def getRuleIndex(self):
return MathExprParser.RULE_func1
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class SoftplusFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SOFTPLUS(self):
return self.getToken(MathExprParser.SOFTPLUS, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSoftplusFunc" ):
listener.enterSoftplusFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSoftplusFunc" ):
listener.exitSoftplusFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSoftplusFunc" ):
return visitor.visitSoftplusFunc(self)
else:
return visitor.visitChildren(self)
class SoftminFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SOFTMIN(self):
return self.getToken(MathExprParser.SOFTMIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSoftminFunc" ):
listener.enterSoftminFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSoftminFunc" ):
listener.exitSoftminFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSoftminFunc" ):
return visitor.visitSoftminFunc(self)
else:
return visitor.visitChildren(self)
class AcoshFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ACOSH(self):
return self.getToken(MathExprParser.ACOSH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAcoshFunc" ):
listener.enterAcoshFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAcoshFunc" ):
listener.exitAcoshFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAcoshFunc" ):
return visitor.visitAcoshFunc(self)
else:
return visitor.visitChildren(self)
class SqrtFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SQRT(self):
return self.getToken(MathExprParser.SQRT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSqrtFunc" ):
listener.enterSqrtFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSqrtFunc" ):
listener.exitSqrtFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSqrtFunc" ):
return visitor.visitSqrtFunc(self)
else:
return visitor.visitChildren(self)
class FloorFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def FLOOR(self):
return self.getToken(MathExprParser.FLOOR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFloorFunc" ):
listener.enterFloorFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFloorFunc" ):
listener.exitFloorFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFloorFunc" ):
return visitor.visitFloorFunc(self)
else:
return visitor.visitChildren(self)
class MeanFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def MEAN(self):
return self.getToken(MathExprParser.MEAN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMeanFunc" ):
listener.enterMeanFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMeanFunc" ):
listener.exitMeanFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMeanFunc" ):
return visitor.visitMeanFunc(self)
else:
return visitor.visitChildren(self)
class CeilFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def CEIL(self):
return self.getToken(MathExprParser.CEIL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCeilFunc" ):
listener.enterCeilFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCeilFunc" ):
listener.exitCeilFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCeilFunc" ):
return visitor.visitCeilFunc(self)
else:
return visitor.visitChildren(self)
class MotionMaskFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def MOTION_MASK(self):
return self.getToken(MathExprParser.MOTION_MASK, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMotionMaskFunc" ):
listener.enterMotionMaskFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMotionMaskFunc" ):
listener.exitMotionMaskFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMotionMaskFunc" ):
return visitor.visitMotionMaskFunc(self)
else:
return visitor.visitChildren(self)
class EntropyFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ENTROPY(self):
return self.getToken(MathExprParser.ENTROPY, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterEntropyFunc" ):
listener.enterEntropyFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitEntropyFunc" ):
listener.exitEntropyFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitEntropyFunc" ):
return visitor.visitEntropyFunc(self)
else:
return visitor.visitChildren(self)
class AbsFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ABS(self):
return self.getToken(MathExprParser.ABS, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAbsFunc" ):
listener.enterAbsFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAbsFunc" ):
listener.exitAbsFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAbsFunc" ):
return visitor.visitAbsFunc(self)
else:
return visitor.visitChildren(self)
class AtanFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ATAN(self):
return self.getToken(MathExprParser.ATAN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAtanFunc" ):
listener.enterAtanFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAtanFunc" ):
listener.exitAtanFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAtanFunc" ):
return visitor.visitAtanFunc(self)
else:
return visitor.visitChildren(self)
class TrimFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def TRIM(self):
return self.getToken(MathExprParser.TRIM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTrimFunc" ):
listener.enterTrimFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTrimFunc" ):
listener.exitTrimFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTrimFunc" ):
return visitor.visitTrimFunc(self)
else:
return visitor.visitChildren(self)
class SinhFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SINH(self):
return self.getToken(MathExprParser.SINH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSinhFunc" ):
listener.enterSinhFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSinhFunc" ):
listener.exitSinhFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSinhFunc" ):
return visitor.visitSinhFunc(self)
else:
return visitor.visitChildren(self)
class SigmoidFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SIGM(self):
return self.getToken(MathExprParser.SIGM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSigmoidFunc" ):
listener.enterSigmoidFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSigmoidFunc" ):
listener.exitSigmoidFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSigmoidFunc" ):
return visitor.visitSigmoidFunc(self)
else:
return visitor.visitChildren(self)
class BitNotFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def BNOT(self):
return self.getToken(MathExprParser.BNOT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBitNotFunc" ):
listener.enterBitNotFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBitNotFunc" ):
listener.exitBitNotFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBitNotFunc" ):
return visitor.visitBitNotFunc(self)
else:
return visitor.visitChildren(self)
class LogFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def LOG(self):
return self.getToken(MathExprParser.LOG, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLogFunc" ):
listener.enterLogFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLogFunc" ):
listener.exitLogFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLogFunc" ):
return visitor.visitLogFunc(self)
else:
return visitor.visitChildren(self)
class TNormFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def TNORM(self):
return self.getToken(MathExprParser.TNORM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTNormFunc" ):
listener.enterTNormFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTNormFunc" ):
listener.exitTNormFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTNormFunc" ):
return visitor.visitTNormFunc(self)
else:
return visitor.visitChildren(self)
class SinFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SIN(self):
return self.getToken(MathExprParser.SIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSinFunc" ):
listener.enterSinFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSinFunc" ):
listener.exitSinFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSinFunc" ):
return visitor.visitSinFunc(self)
else:
return visitor.visitChildren(self)
class FlattenFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def FLATTEN(self):
return self.getToken(MathExprParser.FLATTEN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFlattenFunc" ):
listener.enterFlattenFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFlattenFunc" ):
listener.exitFlattenFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFlattenFunc" ):
return visitor.visitFlattenFunc(self)
else:
return visitor.visitChildren(self)
class AcosFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ACOS(self):
return self.getToken(MathExprParser.ACOS, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAcosFunc" ):
listener.enterAcosFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAcosFunc" ):
listener.exitAcosFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAcosFunc" ):
return visitor.visitAcosFunc(self)
else:
return visitor.visitChildren(self)
class CoshFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def COSH(self):
return self.getToken(MathExprParser.COSH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCoshFunc" ):
listener.enterCoshFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCoshFunc" ):
listener.exitCoshFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCoshFunc" ):
return visitor.visitCoshFunc(self)
else:
return visitor.visitChildren(self)
class AnglFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ANGL(self):
return self.getToken(MathExprParser.ANGL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAnglFunc" ):
listener.enterAnglFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAnglFunc" ):
listener.exitAnglFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAnglFunc" ):
return visitor.visitAnglFunc(self)
else:
return visitor.visitChildren(self)
class CumsumFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def CUMSUM(self):
return self.getToken(MathExprParser.CUMSUM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCumsumFunc" ):
listener.enterCumsumFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCumsumFunc" ):
listener.exitCumsumFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCumsumFunc" ):
return visitor.visitCumsumFunc(self)
else:
return visitor.visitChildren(self)
class GetFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def GET(self):
return self.getToken(MathExprParser.GET, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGetFunc" ):
listener.enterGetFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGetFunc" ):
listener.exitGetFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGetFunc" ):
return visitor.visitGetFunc(self)
else:
return visitor.visitChildren(self)
class SignFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SIGN(self):
return self.getToken(MathExprParser.SIGN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSignFunc" ):
listener.enterSignFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSignFunc" ):
listener.exitSignFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSignFunc" ):
return visitor.visitSignFunc(self)
else:
return visitor.visitChildren(self)
class TanFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def TAN(self):
return self.getToken(MathExprParser.TAN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTanFunc" ):
listener.enterTanFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTanFunc" ):
listener.exitTanFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTanFunc" ):
return visitor.visitTanFunc(self)
else:
return visitor.visitChildren(self)
class PinvFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def PINV(self):
return self.getToken(MathExprParser.PINV, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPinvFunc" ):
listener.enterPinvFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPinvFunc" ):
listener.exitPinvFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPinvFunc" ):
return visitor.visitPinvFunc(self)
else:
return visitor.visitChildren(self)
class GammaFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def GAMMA(self):
return self.getToken(MathExprParser.GAMMA, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGammaFunc" ):
listener.enterGammaFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGammaFunc" ):
listener.exitGammaFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGammaFunc" ):
return visitor.visitGammaFunc(self)
else:
return visitor.visitChildren(self)
class SoftmaxFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SOFTMAX(self):
return self.getToken(MathExprParser.SOFTMAX, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSoftmaxFunc" ):
listener.enterSoftmaxFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSoftmaxFunc" ):
listener.exitSoftmaxFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSoftmaxFunc" ):
return visitor.visitSoftmaxFunc(self)
else:
return visitor.visitChildren(self)
class SfftFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SFFT(self):
return self.getToken(MathExprParser.SFFT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSfftFunc" ):
listener.enterSfftFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSfftFunc" ):
listener.exitSfftFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSfftFunc" ):
return visitor.visitSfftFunc(self)
else:
return visitor.visitChildren(self)
class VarFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def VAR(self):
return self.getToken(MathExprParser.VAR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterVarFunc" ):
listener.enterVarFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitVarFunc" ):
listener.exitVarFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitVarFunc" ):
return visitor.visitVarFunc(self)
else:
return visitor.visitChildren(self)
class AsinFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ASIN(self):
return self.getToken(MathExprParser.ASIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAsinFunc" ):
listener.enterAsinFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAsinFunc" ):
listener.exitAsinFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAsinFunc" ):
return visitor.visitAsinFunc(self)
else:
return visitor.visitChildren(self)
class CountFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def COUNT(self):
return self.getToken(MathExprParser.COUNT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCountFunc" ):
listener.enterCountFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCountFunc" ):
listener.exitCountFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCountFunc" ):
return visitor.visitCountFunc(self)
else:
return visitor.visitChildren(self)
class AsinhFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ASINH(self):
return self.getToken(MathExprParser.ASINH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAsinhFunc" ):
listener.enterAsinhFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAsinhFunc" ):
listener.exitAsinhFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAsinhFunc" ):
return visitor.visitAsinhFunc(self)
else:
return visitor.visitChildren(self)
class FloatFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def FLOAT(self):
return self.getToken(MathExprParser.FLOAT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFloatFunc" ):
listener.enterFloatFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFloatFunc" ):
listener.exitFloatFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFloatFunc" ):
return visitor.visitFloatFunc(self)
else:
return visitor.visitChildren(self)
class AllFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ALL(self):
return self.getToken(MathExprParser.ALL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAllFunc" ):
listener.enterAllFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAllFunc" ):
listener.exitAllFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAllFunc" ):
return visitor.visitAllFunc(self)
else:
return visitor.visitChildren(self)
class AtanhFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ATANH(self):
return self.getToken(MathExprParser.ATANH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAtanhFunc" ):
listener.enterAtanhFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAtanhFunc" ):
listener.exitAtanhFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAtanhFunc" ):
return visitor.visitAtanhFunc(self)
else:
return visitor.visitChildren(self)
class ClearFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def CLEAR(self):
return self.getToken(MathExprParser.CLEAR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterClearFunc" ):
listener.enterClearFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitClearFunc" ):
listener.exitClearFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitClearFunc" ):
return visitor.visitClearFunc(self)
else:
return visitor.visitChildren(self)
class ErfinvFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ERFINV(self):
return self.getToken(MathExprParser.ERFINV, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterErfinvFunc" ):
listener.enterErfinvFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitErfinvFunc" ):
listener.exitErfinvFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitErfinvFunc" ):
return visitor.visitErfinvFunc(self)
else:
return visitor.visitChildren(self)
class FlowToImageFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def FLOW_TO_IMAGE(self):
return self.getToken(MathExprParser.FLOW_TO_IMAGE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFlowToImageFunc" ):
listener.enterFlowToImageFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFlowToImageFunc" ):
listener.exitFlowToImageFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFlowToImageFunc" ):
return visitor.visitFlowToImageFunc(self)
else:
return visitor.visitChildren(self)
class PopFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def POP(self):
return self.getToken(MathExprParser.POP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPopFunc" ):
listener.enterPopFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPopFunc" ):
listener.exitPopFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPopFunc" ):
return visitor.visitPopFunc(self)
else:
return visitor.visitChildren(self)
class MedianFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def MEDIAN(self):
return self.getToken(MathExprParser.MEDIAN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMedianFunc" ):
listener.enterMedianFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMedianFunc" ):
listener.exitMedianFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMedianFunc" ):
return visitor.visitMedianFunc(self)
else:
return visitor.visitChildren(self)
class PrintShapeFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def PRINT_SHAPE(self):
return self.getToken(MathExprParser.PRINT_SHAPE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPrintShapeFunc" ):
listener.enterPrintShapeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPrintShapeFunc" ):
listener.exitPrintShapeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPrintShapeFunc" ):
return visitor.visitPrintShapeFunc(self)
else:
return visitor.visitChildren(self)
class SortFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SORT(self):
return self.getToken(MathExprParser.SORT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSortFunc" ):
listener.enterSortFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSortFunc" ):
listener.exitSortFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSortFunc" ):
return visitor.visitSortFunc(self)
else:
return visitor.visitChildren(self)
class MorphOpenFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def MORPH_OPEN(self):
return self.getToken(MathExprParser.MORPH_OPEN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMorphOpenFunc" ):
listener.enterMorphOpenFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMorphOpenFunc" ):
listener.exitMorphOpenFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMorphOpenFunc" ):
return visitor.visitMorphOpenFunc(self)
else:
return visitor.visitChildren(self)
class FlowAngFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def FLOW_ANG(self):
return self.getToken(MathExprParser.FLOW_ANG, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFlowAngFunc" ):
listener.enterFlowAngFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFlowAngFunc" ):
listener.exitFlowAngFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFlowAngFunc" ):
return visitor.visitFlowAngFunc(self)
else:
return visitor.visitChildren(self)
class TanhFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def TANH(self):
return self.getToken(MathExprParser.TANH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTanhFunc" ):
listener.enterTanhFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTanhFunc" ):
listener.exitTanhFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTanhFunc" ):
return visitor.visitTanhFunc(self)
else:
return visitor.visitChildren(self)
class AnyFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ANY(self):
return self.getToken(MathExprParser.ANY, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAnyFunc" ):
listener.enterAnyFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAnyFunc" ):
listener.exitAnyFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAnyFunc" ):
return visitor.visitAnyFunc(self)
else:
return visitor.visitChildren(self)
class ModeFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def MODE(self):
return self.getToken(MathExprParser.MODE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterModeFunc" ):
listener.enterModeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitModeFunc" ):
listener.exitModeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitModeFunc" ):
return visitor.visitModeFunc(self)
else:
return visitor.visitChildren(self)
class ErodeFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ERODE(self):
return self.getToken(MathExprParser.ERODE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterErodeFunc" ):
listener.enterErodeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitErodeFunc" ):
listener.exitErodeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitErodeFunc" ):
return visitor.visitErodeFunc(self)
else:
return visitor.visitChildren(self)
class ErfFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ERF(self):
return self.getToken(MathExprParser.ERF, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterErfFunc" ):
listener.enterErfFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitErfFunc" ):
listener.exitErfFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitErfFunc" ):
return visitor.visitErfFunc(self)
else:
return visitor.visitChildren(self)
class UniqueFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def UNIQUE(self):
return self.getToken(MathExprParser.UNIQUE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterUniqueFunc" ):
listener.enterUniqueFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitUniqueFunc" ):
listener.exitUniqueFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitUniqueFunc" ):
return visitor.visitUniqueFunc(self)
else:
return visitor.visitChildren(self)
class RoundFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ROUND(self):
return self.getToken(MathExprParser.ROUND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRoundFunc" ):
listener.enterRoundFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRoundFunc" ):
listener.exitRoundFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRoundFunc" ):
return visitor.visitRoundFunc(self)
else:
return visitor.visitChildren(self)
class GeluFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def GELU(self):
return self.getToken(MathExprParser.GELU, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGeluFunc" ):
listener.enterGeluFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGeluFunc" ):
listener.exitGeluFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGeluFunc" ):
return visitor.visitGeluFunc(self)
else:
return visitor.visitChildren(self)
class PrintFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def PRNT(self):
return self.getToken(MathExprParser.PRNT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPrintFunc" ):
listener.enterPrintFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPrintFunc" ):
listener.exitPrintFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPrintFunc" ):
return visitor.visitPrintFunc(self)
else:
return visitor.visitChildren(self)
class ArgmaxFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ARGMAX(self):
return self.getToken(MathExprParser.ARGMAX, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterArgmaxFunc" ):
listener.enterArgmaxFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitArgmaxFunc" ):
listener.exitArgmaxFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitArgmaxFunc" ):
return visitor.visitArgmaxFunc(self)
else:
return visitor.visitChildren(self)
class UpperFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def UPPER(self):
return self.getToken(MathExprParser.UPPER, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterUpperFunc" ):
listener.enterUpperFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitUpperFunc" ):
listener.exitUpperFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitUpperFunc" ):
return visitor.visitUpperFunc(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 FRACT(self):
return self.getToken(MathExprParser.FRACT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "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 ShapeFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SHAPE(self):
return self.getToken(MathExprParser.SHAPE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterShapeFunc" ):
listener.enterShapeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitShapeFunc" ):
listener.exitShapeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitShapeFunc" ):
return visitor.visitShapeFunc(self)
else:
return visitor.visitChildren(self)
class IntFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def INT(self):
return self.getToken(MathExprParser.INT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterIntFunc" ):
listener.enterIntFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitIntFunc" ):
listener.exitIntFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitIntFunc" ):
return visitor.visitIntFunc(self)
else:
return visitor.visitChildren(self)
class EdgeFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def EDGE(self):
return self.getToken(MathExprParser.EDGE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterEdgeFunc" ):
listener.enterEdgeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitEdgeFunc" ):
listener.exitEdgeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitEdgeFunc" ):
return visitor.visitEdgeFunc(self)
else:
return visitor.visitChildren(self)
class LnFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def LN(self):
return self.getToken(MathExprParser.LN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLnFunc" ):
listener.enterLnFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLnFunc" ):
listener.exitLnFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLnFunc" ):
return visitor.visitLnFunc(self)
else:
return visitor.visitChildren(self)
class BitCountFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def BITCOUNT(self):
return self.getToken(MathExprParser.BITCOUNT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBitCountFunc" ):
listener.enterBitCountFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBitCountFunc" ):
listener.exitBitCountFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBitCountFunc" ):
return visitor.visitBitCountFunc(self)
else:
return visitor.visitChildren(self)
class ArgminFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ARGMIN(self):
return self.getToken(MathExprParser.ARGMIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterArgminFunc" ):
listener.enterArgminFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitArgminFunc" ):
listener.exitArgminFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitArgminFunc" ):
return visitor.visitArgminFunc(self)
else:
return visitor.visitChildren(self)
class StdFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def STD(self):
return self.getToken(MathExprParser.STD, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterStdFunc" ):
listener.enterStdFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitStdFunc" ):
listener.exitStdFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitStdFunc" ):
return visitor.visitStdFunc(self)
else:
return visitor.visitChildren(self)
class DilateFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def DILATE(self):
return self.getToken(MathExprParser.DILATE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterDilateFunc" ):
listener.enterDilateFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitDilateFunc" ):
listener.exitDilateFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitDilateFunc" ):
return visitor.visitDilateFunc(self)
else:
return visitor.visitChildren(self)
class SumFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def SUM(self):
return self.getToken(MathExprParser.SUM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSumFunc" ):
listener.enterSumFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSumFunc" ):
listener.exitSumFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSumFunc" ):
return visitor.visitSumFunc(self)
else:
return visitor.visitChildren(self)
class HasFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def HAS(self):
return self.getToken(MathExprParser.HAS, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterHasFunc" ):
listener.enterHasFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitHasFunc" ):
listener.exitHasFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitHasFunc" ):
return visitor.visitHasFunc(self)
else:
return visitor.visitChildren(self)
class FlowMagFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def FLOW_MAG(self):
return self.getToken(MathExprParser.FLOW_MAG, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFlowMagFunc" ):
listener.enterFlowMagFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFlowMagFunc" ):
listener.exitFlowMagFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFlowMagFunc" ):
return visitor.visitFlowMagFunc(self)
else:
return visitor.visitChildren(self)
class CosFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def COS(self):
return self.getToken(MathExprParser.COS, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCosFunc" ):
listener.enterCosFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCosFunc" ):
listener.exitCosFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCosFunc" ):
return visitor.visitCosFunc(self)
else:
return visitor.visitChildren(self)
class ArgsortFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def ARGSORT(self):
return self.getToken(MathExprParser.ARGSORT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterArgsortFunc" ):
listener.enterArgsortFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitArgsortFunc" ):
listener.exitArgsortFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitArgsortFunc" ):
return visitor.visitArgsortFunc(self)
else:
return visitor.visitChildren(self)
class CumprodFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def CUMPROD(self):
return self.getToken(MathExprParser.CUMPROD, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCumprodFunc" ):
listener.enterCumprodFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCumprodFunc" ):
listener.exitCumprodFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCumprodFunc" ):
return visitor.visitCumprodFunc(self)
else:
return visitor.visitChildren(self)
class MorphCloseFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def MORPH_CLOSE(self):
return self.getToken(MathExprParser.MORPH_CLOSE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMorphCloseFunc" ):
listener.enterMorphCloseFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMorphCloseFunc" ):
listener.exitMorphCloseFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMorphCloseFunc" ):
return visitor.visitMorphCloseFunc(self)
else:
return visitor.visitChildren(self)
class ExpFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def EXP(self):
return self.getToken(MathExprParser.EXP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterExpFunc" ):
listener.enterExpFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitExpFunc" ):
listener.exitExpFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitExpFunc" ):
return visitor.visitExpFunc(self)
else:
return visitor.visitChildren(self)
class LowerFuncContext(Func1Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func1Context
super().__init__(parser)
self.copyFrom(ctx)
def LOWER(self):
return self.getToken(MathExprParser.LOWER, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLowerFunc" ):
listener.enterLowerFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLowerFunc" ):
listener.exitLowerFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLowerFunc" ):
return visitor.visitLowerFunc(self)
else:
return visitor.visitChildren(self)
def func1(self):
localctx = MathExprParser.Func1Context(self, self._ctx, self.state)
self.enterRule(localctx, 48, self.RULE_func1)
self._la = 0 # Token type
try:
self.state = 764
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.SIN]:
localctx = MathExprParser.SinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 357
self.match(MathExprParser.SIN)
self.state = 358
self.match(MathExprParser.LPAREN)
self.state = 359
self.expr()
self.state = 360
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.COS]:
localctx = MathExprParser.CosFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 362
self.match(MathExprParser.COS)
self.state = 363
self.match(MathExprParser.LPAREN)
self.state = 364
self.expr()
self.state = 365
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TAN]:
localctx = MathExprParser.TanFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 367
self.match(MathExprParser.TAN)
self.state = 368
self.match(MathExprParser.LPAREN)
self.state = 369
self.expr()
self.state = 370
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ASIN]:
localctx = MathExprParser.AsinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 372
self.match(MathExprParser.ASIN)
self.state = 373
self.match(MathExprParser.LPAREN)
self.state = 374
self.expr()
self.state = 375
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ACOS]:
localctx = MathExprParser.AcosFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 377
self.match(MathExprParser.ACOS)
self.state = 378
self.match(MathExprParser.LPAREN)
self.state = 379
self.expr()
self.state = 380
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ATAN]:
localctx = MathExprParser.AtanFuncContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 382
self.match(MathExprParser.ATAN)
self.state = 383
self.match(MathExprParser.LPAREN)
self.state = 384
self.expr()
self.state = 385
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SINH]:
localctx = MathExprParser.SinhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 387
self.match(MathExprParser.SINH)
self.state = 388
self.match(MathExprParser.LPAREN)
self.state = 389
self.expr()
self.state = 390
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.COSH]:
localctx = MathExprParser.CoshFuncContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 392
self.match(MathExprParser.COSH)
self.state = 393
self.match(MathExprParser.LPAREN)
self.state = 394
self.expr()
self.state = 395
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TANH]:
localctx = MathExprParser.TanhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 397
self.match(MathExprParser.TANH)
self.state = 398
self.match(MathExprParser.LPAREN)
self.state = 399
self.expr()
self.state = 400
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ASINH]:
localctx = MathExprParser.AsinhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 10)
self.state = 402
self.match(MathExprParser.ASINH)
self.state = 403
self.match(MathExprParser.LPAREN)
self.state = 404
self.expr()
self.state = 405
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ACOSH]:
localctx = MathExprParser.AcoshFuncContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 407
self.match(MathExprParser.ACOSH)
self.state = 408
self.match(MathExprParser.LPAREN)
self.state = 409
self.expr()
self.state = 410
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ATANH]:
localctx = MathExprParser.AtanhFuncContext(self, localctx)
self.enterOuterAlt(localctx, 12)
self.state = 412
self.match(MathExprParser.ATANH)
self.state = 413
self.match(MathExprParser.LPAREN)
self.state = 414
self.expr()
self.state = 415
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ABS]:
localctx = MathExprParser.AbsFuncContext(self, localctx)
self.enterOuterAlt(localctx, 13)
self.state = 417
self.match(MathExprParser.ABS)
self.state = 418
self.match(MathExprParser.LPAREN)
self.state = 419
self.expr()
self.state = 420
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SQRT]:
localctx = MathExprParser.SqrtFuncContext(self, localctx)
self.enterOuterAlt(localctx, 14)
self.state = 422
self.match(MathExprParser.SQRT)
self.state = 423
self.match(MathExprParser.LPAREN)
self.state = 424
self.expr()
self.state = 425
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LN]:
localctx = MathExprParser.LnFuncContext(self, localctx)
self.enterOuterAlt(localctx, 15)
self.state = 427
self.match(MathExprParser.LN)
self.state = 428
self.match(MathExprParser.LPAREN)
self.state = 429
self.expr()
self.state = 430
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LOG]:
localctx = MathExprParser.LogFuncContext(self, localctx)
self.enterOuterAlt(localctx, 16)
self.state = 432
self.match(MathExprParser.LOG)
self.state = 433
self.match(MathExprParser.LPAREN)
self.state = 434
self.expr()
self.state = 435
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.EXP]:
localctx = MathExprParser.ExpFuncContext(self, localctx)
self.enterOuterAlt(localctx, 17)
self.state = 437
self.match(MathExprParser.EXP)
self.state = 438
self.match(MathExprParser.LPAREN)
self.state = 439
self.expr()
self.state = 440
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TNORM]:
localctx = MathExprParser.TNormFuncContext(self, localctx)
self.enterOuterAlt(localctx, 18)
self.state = 442
self.match(MathExprParser.TNORM)
self.state = 443
self.match(MathExprParser.LPAREN)
self.state = 444
self.expr()
self.state = 445
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLOOR]:
localctx = MathExprParser.FloorFuncContext(self, localctx)
self.enterOuterAlt(localctx, 19)
self.state = 447
self.match(MathExprParser.FLOOR)
self.state = 448
self.match(MathExprParser.LPAREN)
self.state = 449
self.expr()
self.state = 450
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CEIL]:
localctx = MathExprParser.CeilFuncContext(self, localctx)
self.enterOuterAlt(localctx, 20)
self.state = 452
self.match(MathExprParser.CEIL)
self.state = 453
self.match(MathExprParser.LPAREN)
self.state = 454
self.expr()
self.state = 455
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ROUND]:
localctx = MathExprParser.RoundFuncContext(self, localctx)
self.enterOuterAlt(localctx, 21)
self.state = 457
self.match(MathExprParser.ROUND)
self.state = 458
self.match(MathExprParser.LPAREN)
self.state = 459
self.expr()
self.state = 460
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GAMMA]:
localctx = MathExprParser.GammaFuncContext(self, localctx)
self.enterOuterAlt(localctx, 22)
self.state = 462
self.match(MathExprParser.GAMMA)
self.state = 463
self.match(MathExprParser.LPAREN)
self.state = 464
self.expr()
self.state = 465
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SIGM]:
localctx = MathExprParser.SigmoidFuncContext(self, localctx)
self.enterOuterAlt(localctx, 23)
self.state = 467
self.match(MathExprParser.SIGM)
self.state = 468
self.match(MathExprParser.LPAREN)
self.state = 469
self.expr()
self.state = 470
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ANGL]:
localctx = MathExprParser.AnglFuncContext(self, localctx)
self.enterOuterAlt(localctx, 24)
self.state = 472
self.match(MathExprParser.ANGL)
self.state = 473
self.match(MathExprParser.LPAREN)
self.state = 474
self.expr()
self.state = 475
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PRNT]:
localctx = MathExprParser.PrintFuncContext(self, localctx)
self.enterOuterAlt(localctx, 25)
self.state = 477
self.match(MathExprParser.PRNT)
self.state = 478
self.match(MathExprParser.LPAREN)
self.state = 479
self.expr()
self.state = 480
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FRACT]:
localctx = MathExprParser.ReluFuncContext(self, localctx)
self.enterOuterAlt(localctx, 26)
self.state = 482
self.match(MathExprParser.FRACT)
self.state = 483
self.match(MathExprParser.LPAREN)
self.state = 484
self.expr()
self.state = 485
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SOFTPLUS]:
localctx = MathExprParser.SoftplusFuncContext(self, localctx)
self.enterOuterAlt(localctx, 27)
self.state = 487
self.match(MathExprParser.SOFTPLUS)
self.state = 488
self.match(MathExprParser.LPAREN)
self.state = 489
self.expr()
self.state = 490
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GELU]:
localctx = MathExprParser.GeluFuncContext(self, localctx)
self.enterOuterAlt(localctx, 28)
self.state = 492
self.match(MathExprParser.GELU)
self.state = 493
self.match(MathExprParser.LPAREN)
self.state = 494
self.expr()
self.state = 495
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SIGN]:
localctx = MathExprParser.SignFuncContext(self, localctx)
self.enterOuterAlt(localctx, 29)
self.state = 497
self.match(MathExprParser.SIGN)
self.state = 498
self.match(MathExprParser.LPAREN)
self.state = 499
self.expr()
self.state = 500
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PRINT_SHAPE]:
localctx = MathExprParser.PrintShapeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 30)
self.state = 502
self.match(MathExprParser.PRINT_SHAPE)
self.state = 503
self.match(MathExprParser.LPAREN)
self.state = 504
self.expr()
self.state = 505
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PINV]:
localctx = MathExprParser.PinvFuncContext(self, localctx)
self.enterOuterAlt(localctx, 31)
self.state = 507
self.match(MathExprParser.PINV)
self.state = 508
self.match(MathExprParser.LPAREN)
self.state = 509
self.expr()
self.state = 510
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SUM]:
localctx = MathExprParser.SumFuncContext(self, localctx)
self.enterOuterAlt(localctx, 32)
self.state = 512
self.match(MathExprParser.SUM)
self.state = 513
self.match(MathExprParser.LPAREN)
self.state = 514
self.expr()
self.state = 515
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MEAN]:
localctx = MathExprParser.MeanFuncContext(self, localctx)
self.enterOuterAlt(localctx, 33)
self.state = 517
self.match(MathExprParser.MEAN)
self.state = 518
self.match(MathExprParser.LPAREN)
self.state = 519
self.expr()
self.state = 520
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.STD]:
localctx = MathExprParser.StdFuncContext(self, localctx)
self.enterOuterAlt(localctx, 34)
self.state = 522
self.match(MathExprParser.STD)
self.state = 523
self.match(MathExprParser.LPAREN)
self.state = 524
self.expr()
self.state = 525
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.VAR]:
localctx = MathExprParser.VarFuncContext(self, localctx)
self.enterOuterAlt(localctx, 35)
self.state = 527
self.match(MathExprParser.VAR)
self.state = 528
self.match(MathExprParser.LPAREN)
self.state = 529
self.expr()
self.state = 530
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SORT]:
localctx = MathExprParser.SortFuncContext(self, localctx)
self.enterOuterAlt(localctx, 36)
self.state = 532
self.match(MathExprParser.SORT)
self.state = 533
self.match(MathExprParser.LPAREN)
self.state = 534
self.expr()
self.state = 535
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ANY]:
localctx = MathExprParser.AnyFuncContext(self, localctx)
self.enterOuterAlt(localctx, 37)
self.state = 537
self.match(MathExprParser.ANY)
self.state = 538
self.match(MathExprParser.LPAREN)
self.state = 539
self.expr()
self.state = 540
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ALL]:
localctx = MathExprParser.AllFuncContext(self, localctx)
self.enterOuterAlt(localctx, 38)
self.state = 542
self.match(MathExprParser.ALL)
self.state = 543
self.match(MathExprParser.LPAREN)
self.state = 544
self.expr()
self.state = 545
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.EDGE]:
localctx = MathExprParser.EdgeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 39)
self.state = 547
self.match(MathExprParser.EDGE)
self.state = 548
self.match(MathExprParser.LPAREN)
self.state = 549
self.expr()
self.state = 552
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 550
self.match(MathExprParser.COMMA)
self.state = 551
self.expr()
self.state = 554
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MEDIAN]:
localctx = MathExprParser.MedianFuncContext(self, localctx)
self.enterOuterAlt(localctx, 40)
self.state = 556
self.match(MathExprParser.MEDIAN)
self.state = 557
self.match(MathExprParser.LPAREN)
self.state = 558
self.expr()
self.state = 559
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MODE]:
localctx = MathExprParser.ModeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 41)
self.state = 561
self.match(MathExprParser.MODE)
self.state = 562
self.match(MathExprParser.LPAREN)
self.state = 563
self.expr()
self.state = 564
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CUMSUM]:
localctx = MathExprParser.CumsumFuncContext(self, localctx)
self.enterOuterAlt(localctx, 42)
self.state = 566
self.match(MathExprParser.CUMSUM)
self.state = 567
self.match(MathExprParser.LPAREN)
self.state = 568
self.expr()
self.state = 569
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.COUNT]:
localctx = MathExprParser.CountFuncContext(self, localctx)
self.enterOuterAlt(localctx, 43)
self.state = 571
self.match(MathExprParser.COUNT)
self.state = 572
self.match(MathExprParser.LPAREN)
self.state = 573
self.expr()
self.state = 574
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CUMPROD]:
localctx = MathExprParser.CumprodFuncContext(self, localctx)
self.enterOuterAlt(localctx, 44)
self.state = 576
self.match(MathExprParser.CUMPROD)
self.state = 577
self.match(MathExprParser.LPAREN)
self.state = 578
self.expr()
self.state = 579
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.POP]:
localctx = MathExprParser.PopFuncContext(self, localctx)
self.enterOuterAlt(localctx, 45)
self.state = 581
self.match(MathExprParser.POP)
self.state = 582
self.match(MathExprParser.LPAREN)
self.state = 583
self.expr()
self.state = 584
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CLEAR]:
localctx = MathExprParser.ClearFuncContext(self, localctx)
self.enterOuterAlt(localctx, 46)
self.state = 586
self.match(MathExprParser.CLEAR)
self.state = 587
self.match(MathExprParser.LPAREN)
self.state = 588
self.expr()
self.state = 589
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.HAS]:
localctx = MathExprParser.HasFuncContext(self, localctx)
self.enterOuterAlt(localctx, 47)
self.state = 591
self.match(MathExprParser.HAS)
self.state = 592
self.match(MathExprParser.LPAREN)
self.state = 593
self.expr()
self.state = 594
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GET]:
localctx = MathExprParser.GetFuncContext(self, localctx)
self.enterOuterAlt(localctx, 48)
self.state = 596
self.match(MathExprParser.GET)
self.state = 597
self.match(MathExprParser.LPAREN)
self.state = 598
self.expr()
self.state = 599
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ARGSORT]:
localctx = MathExprParser.ArgsortFuncContext(self, localctx)
self.enterOuterAlt(localctx, 49)
self.state = 601
self.match(MathExprParser.ARGSORT)
self.state = 602
self.match(MathExprParser.LPAREN)
self.state = 603
self.expr()
self.state = 606
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 604
self.match(MathExprParser.COMMA)
self.state = 605
self.expr()
self.state = 608
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ARGMIN]:
localctx = MathExprParser.ArgminFuncContext(self, localctx)
self.enterOuterAlt(localctx, 50)
self.state = 610
self.match(MathExprParser.ARGMIN)
self.state = 611
self.match(MathExprParser.LPAREN)
self.state = 612
self.expr()
self.state = 613
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ARGMAX]:
localctx = MathExprParser.ArgmaxFuncContext(self, localctx)
self.enterOuterAlt(localctx, 51)
self.state = 615
self.match(MathExprParser.ARGMAX)
self.state = 616
self.match(MathExprParser.LPAREN)
self.state = 617
self.expr()
self.state = 618
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SOFTMAX]:
localctx = MathExprParser.SoftmaxFuncContext(self, localctx)
self.enterOuterAlt(localctx, 52)
self.state = 620
self.match(MathExprParser.SOFTMAX)
self.state = 621
self.match(MathExprParser.LPAREN)
self.state = 622
self.expr()
self.state = 625
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 623
self.match(MathExprParser.COMMA)
self.state = 624
self.expr()
self.state = 627
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SOFTMIN]:
localctx = MathExprParser.SoftminFuncContext(self, localctx)
self.enterOuterAlt(localctx, 53)
self.state = 629
self.match(MathExprParser.SOFTMIN)
self.state = 630
self.match(MathExprParser.LPAREN)
self.state = 631
self.expr()
self.state = 634
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 632
self.match(MathExprParser.COMMA)
self.state = 633
self.expr()
self.state = 636
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ERF]:
localctx = MathExprParser.ErfFuncContext(self, localctx)
self.enterOuterAlt(localctx, 54)
self.state = 638
self.match(MathExprParser.ERF)
self.state = 639
self.match(MathExprParser.LPAREN)
self.state = 640
self.expr()
self.state = 641
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ERFINV]:
localctx = MathExprParser.ErfinvFuncContext(self, localctx)
self.enterOuterAlt(localctx, 55)
self.state = 643
self.match(MathExprParser.ERFINV)
self.state = 644
self.match(MathExprParser.LPAREN)
self.state = 645
self.expr()
self.state = 646
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.UNIQUE]:
localctx = MathExprParser.UniqueFuncContext(self, localctx)
self.enterOuterAlt(localctx, 56)
self.state = 648
self.match(MathExprParser.UNIQUE)
self.state = 649
self.match(MathExprParser.LPAREN)
self.state = 650
self.expr()
self.state = 651
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLATTEN]:
localctx = MathExprParser.FlattenFuncContext(self, localctx)
self.enterOuterAlt(localctx, 57)
self.state = 653
self.match(MathExprParser.FLATTEN)
self.state = 654
self.match(MathExprParser.LPAREN)
self.state = 655
self.expr()
self.state = 656
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MOTION_MASK]:
localctx = MathExprParser.MotionMaskFuncContext(self, localctx)
self.enterOuterAlt(localctx, 58)
self.state = 658
self.match(MathExprParser.MOTION_MASK)
self.state = 659
self.match(MathExprParser.LPAREN)
self.state = 660
self.expr()
self.state = 661
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLOW_TO_IMAGE]:
localctx = MathExprParser.FlowToImageFuncContext(self, localctx)
self.enterOuterAlt(localctx, 59)
self.state = 663
self.match(MathExprParser.FLOW_TO_IMAGE)
self.state = 664
self.match(MathExprParser.LPAREN)
self.state = 665
self.expr()
self.state = 666
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BNOT]:
localctx = MathExprParser.BitNotFuncContext(self, localctx)
self.enterOuterAlt(localctx, 60)
self.state = 668
self.match(MathExprParser.BNOT)
self.state = 669
self.match(MathExprParser.LPAREN)
self.state = 670
self.expr()
self.state = 671
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BITCOUNT]:
localctx = MathExprParser.BitCountFuncContext(self, localctx)
self.enterOuterAlt(localctx, 61)
self.state = 673
self.match(MathExprParser.BITCOUNT)
self.state = 674
self.match(MathExprParser.LPAREN)
self.state = 675
self.expr()
self.state = 676
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SHAPE]:
localctx = MathExprParser.ShapeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 62)
self.state = 678
self.match(MathExprParser.SHAPE)
self.state = 679
self.match(MathExprParser.LPAREN)
self.state = 680
self.expr()
self.state = 681
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.UPPER]:
localctx = MathExprParser.UpperFuncContext(self, localctx)
self.enterOuterAlt(localctx, 63)
self.state = 683
self.match(MathExprParser.UPPER)
self.state = 684
self.match(MathExprParser.LPAREN)
self.state = 685
self.expr()
self.state = 686
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LOWER]:
localctx = MathExprParser.LowerFuncContext(self, localctx)
self.enterOuterAlt(localctx, 64)
self.state = 688
self.match(MathExprParser.LOWER)
self.state = 689
self.match(MathExprParser.LPAREN)
self.state = 690
self.expr()
self.state = 691
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TRIM]:
localctx = MathExprParser.TrimFuncContext(self, localctx)
self.enterOuterAlt(localctx, 65)
self.state = 693
self.match(MathExprParser.TRIM)
self.state = 694
self.match(MathExprParser.LPAREN)
self.state = 695
self.expr()
self.state = 696
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ENTROPY]:
localctx = MathExprParser.EntropyFuncContext(self, localctx)
self.enterOuterAlt(localctx, 66)
self.state = 698
self.match(MathExprParser.ENTROPY)
self.state = 699
self.match(MathExprParser.LPAREN)
self.state = 700
self.expr()
self.state = 701
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SFFT]:
localctx = MathExprParser.SfftFuncContext(self, localctx)
self.enterOuterAlt(localctx, 67)
self.state = 703
self.match(MathExprParser.SFFT)
self.state = 704
self.match(MathExprParser.LPAREN)
self.state = 705
self.expr()
self.state = 706
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.DILATE]:
localctx = MathExprParser.DilateFuncContext(self, localctx)
self.enterOuterAlt(localctx, 68)
self.state = 708
self.match(MathExprParser.DILATE)
self.state = 709
self.match(MathExprParser.LPAREN)
self.state = 710
self.expr()
self.state = 713
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 711
self.match(MathExprParser.COMMA)
self.state = 712
self.expr()
self.state = 715
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ERODE]:
localctx = MathExprParser.ErodeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 69)
self.state = 717
self.match(MathExprParser.ERODE)
self.state = 718
self.match(MathExprParser.LPAREN)
self.state = 719
self.expr()
self.state = 722
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 720
self.match(MathExprParser.COMMA)
self.state = 721
self.expr()
self.state = 724
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MORPH_OPEN]:
localctx = MathExprParser.MorphOpenFuncContext(self, localctx)
self.enterOuterAlt(localctx, 70)
self.state = 726
self.match(MathExprParser.MORPH_OPEN)
self.state = 727
self.match(MathExprParser.LPAREN)
self.state = 728
self.expr()
self.state = 731
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 729
self.match(MathExprParser.COMMA)
self.state = 730
self.expr()
self.state = 733
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MORPH_CLOSE]:
localctx = MathExprParser.MorphCloseFuncContext(self, localctx)
self.enterOuterAlt(localctx, 71)
self.state = 735
self.match(MathExprParser.MORPH_CLOSE)
self.state = 736
self.match(MathExprParser.LPAREN)
self.state = 737
self.expr()
self.state = 740
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 738
self.match(MathExprParser.COMMA)
self.state = 739
self.expr()
self.state = 742
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.INT]:
localctx = MathExprParser.IntFuncContext(self, localctx)
self.enterOuterAlt(localctx, 72)
self.state = 744
self.match(MathExprParser.INT)
self.state = 745
self.match(MathExprParser.LPAREN)
self.state = 746
self.expr()
self.state = 747
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLOAT]:
localctx = MathExprParser.FloatFuncContext(self, localctx)
self.enterOuterAlt(localctx, 73)
self.state = 749
self.match(MathExprParser.FLOAT)
self.state = 750
self.match(MathExprParser.LPAREN)
self.state = 751
self.expr()
self.state = 752
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLOW_MAG]:
localctx = MathExprParser.FlowMagFuncContext(self, localctx)
self.enterOuterAlt(localctx, 74)
self.state = 754
self.match(MathExprParser.FLOW_MAG)
self.state = 755
self.match(MathExprParser.LPAREN)
self.state = 756
self.expr()
self.state = 757
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLOW_ANG]:
localctx = MathExprParser.FlowAngFuncContext(self, localctx)
self.enterOuterAlt(localctx, 75)
self.state = 759
self.match(MathExprParser.FLOW_ANG)
self.state = 760
self.match(MathExprParser.LPAREN)
self.state = 761
self.expr()
self.state = 762
self.match(MathExprParser.RPAREN)
pass
else:
raise NoViableAltException(self)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class Func2Context(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def getRuleIndex(self):
return MathExprParser.RULE_func2
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class CorrFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def CORR(self):
return self.getToken(MathExprParser.CORR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCorrFunc" ):
listener.enterCorrFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCorrFunc" ):
listener.exitCorrFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCorrFunc" ):
return visitor.visitCorrFunc(self)
else:
return visitor.visitChildren(self)
class CovFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def COV(self):
return self.getToken(MathExprParser.COV, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCovFunc" ):
listener.enterCovFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCovFunc" ):
listener.exitCovFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCovFunc" ):
return visitor.visitCovFunc(self)
else:
return visitor.visitChildren(self)
class PadFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def PAD(self):
return self.getToken(MathExprParser.PAD, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPadFunc" ):
listener.enterPadFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPadFunc" ):
listener.exitPadFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPadFunc" ):
return visitor.visitPadFunc(self)
else:
return visitor.visitChildren(self)
class InterpolateAreaFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def INTERPOLATE_AREA(self):
return self.getToken(MathExprParser.INTERPOLATE_AREA, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterInterpolateAreaFunc" ):
listener.enterInterpolateAreaFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitInterpolateAreaFunc" ):
listener.exitInterpolateAreaFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitInterpolateAreaFunc" ):
return visitor.visitInterpolateAreaFunc(self)
else:
return visitor.visitChildren(self)
class BotkFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def BOTK(self):
return self.getToken(MathExprParser.BOTK, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBotkFunc" ):
listener.enterBotkFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBotkFunc" ):
listener.exitBotkFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBotkFunc" ):
return visitor.visitBotkFunc(self)
else:
return visitor.visitChildren(self)
class BotkIndFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def BOTK_IND(self):
return self.getToken(MathExprParser.BOTK_IND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBotkIndFunc" ):
listener.enterBotkIndFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBotkIndFunc" ):
listener.exitBotkIndFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBotkIndFunc" ):
return visitor.visitBotkIndFunc(self)
else:
return visitor.visitChildren(self)
class PowFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def POWE(self):
return self.getToken(MathExprParser.POWE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPowFunc" ):
listener.enterPowFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPowFunc" ):
listener.exitPowFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPowFunc" ):
return visitor.visitPowFunc(self)
else:
return visitor.visitChildren(self)
class DotFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def DOT(self):
return self.getToken(MathExprParser.DOT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterDotFunc" ):
listener.enterDotFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitDotFunc" ):
listener.exitDotFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitDotFunc" ):
return visitor.visitDotFunc(self)
else:
return visitor.visitChildren(self)
class AppendFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def APPEND(self):
return self.getToken(MathExprParser.APPEND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAppendFunc" ):
listener.enterAppendFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAppendFunc" ):
listener.exitAppendFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAppendFunc" ):
return visitor.visitAppendFunc(self)
else:
return visitor.visitChildren(self)
class SNormFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def SNORM(self):
return self.getToken(MathExprParser.SNORM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 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 FlipFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def FLIP(self):
return self.getToken(MathExprParser.FLIP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFlipFunc" ):
listener.enterFlipFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFlipFunc" ):
listener.exitFlipFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFlipFunc" ):
return visitor.visitFlipFunc(self)
else:
return visitor.visitChildren(self)
class BitAndFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def BAND(self):
return self.getToken(MathExprParser.BAND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBitAndFunc" ):
listener.enterBitAndFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBitAndFunc" ):
listener.exitBitAndFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBitAndFunc" ):
return visitor.visitBitAndFunc(self)
else:
return visitor.visitChildren(self)
class SplitFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def SPLIT(self):
return self.getToken(MathExprParser.SPLIT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSplitFunc" ):
listener.enterSplitFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSplitFunc" ):
listener.exitSplitFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSplitFunc" ):
return visitor.visitSplitFunc(self)
else:
return visitor.visitChildren(self)
class PermuteFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def PERM(self):
return self.getToken(MathExprParser.PERM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPermuteFunc" ):
listener.enterPermuteFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPermuteFunc" ):
listener.exitPermuteFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPermuteFunc" ):
return visitor.visitPermuteFunc(self)
else:
return visitor.visitChildren(self)
class BitOrFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def BOR(self):
return self.getToken(MathExprParser.BOR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBitOrFunc" ):
listener.enterBitOrFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBitOrFunc" ):
listener.exitBitOrFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBitOrFunc" ):
return visitor.visitBitOrFunc(self)
else:
return visitor.visitChildren(self)
class InterpolateLinearFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def INTERPOLATE_LINEAR(self):
return self.getToken(MathExprParser.INTERPOLATE_LINEAR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterInterpolateLinearFunc" ):
listener.enterInterpolateLinearFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitInterpolateLinearFunc" ):
listener.exitInterpolateLinearFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitInterpolateLinearFunc" ):
return visitor.visitInterpolateLinearFunc(self)
else:
return visitor.visitChildren(self)
class EmptyTensorFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def TENSOR(self):
return self.getToken(MathExprParser.TENSOR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def indexExpr(self):
return self.getTypedRuleContext(MathExprParser.IndexExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def 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, "enterEmptyTensorFunc" ):
listener.enterEmptyTensorFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitEmptyTensorFunc" ):
listener.exitEmptyTensorFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitEmptyTensorFunc" ):
return visitor.visitEmptyTensorFunc(self)
else:
return visitor.visitChildren(self)
class TopkFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def TOPK(self):
return self.getToken(MathExprParser.TOPK, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTopkFunc" ):
listener.enterTopkFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTopkFunc" ):
listener.exitTopkFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTopkFunc" ):
return visitor.visitTopkFunc(self)
else:
return visitor.visitChildren(self)
class PercentileFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def PERCENTILE(self):
return self.getToken(MathExprParser.PERCENTILE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPercentileFunc" ):
listener.enterPercentileFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPercentileFunc" ):
listener.exitPercentileFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPercentileFunc" ):
return visitor.visitPercentileFunc(self)
else:
return visitor.visitChildren(self)
class TopkIndFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def TOPK_IND(self):
return self.getToken(MathExprParser.TOPK_IND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTopkIndFunc" ):
listener.enterTopkIndFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTopkIndFunc" ):
listener.exitTopkIndFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTopkIndFunc" ):
return visitor.visitTopkIndFunc(self)
else:
return visitor.visitChildren(self)
class FlowApplyFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def FLOW_APPLY(self):
return self.getToken(MathExprParser.FLOW_APPLY, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFlowApplyFunc" ):
listener.enterFlowApplyFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFlowApplyFunc" ):
listener.exitFlowApplyFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFlowApplyFunc" ):
return visitor.visitFlowApplyFunc(self)
else:
return visitor.visitChildren(self)
class BatchShuffleFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def BATCH_SHUFFLE(self):
return self.getToken(MathExprParser.BATCH_SHUFFLE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBatchShuffleFunc" ):
listener.enterBatchShuffleFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBatchShuffleFunc" ):
listener.exitBatchShuffleFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBatchShuffleFunc" ):
return visitor.visitBatchShuffleFunc(self)
else:
return visitor.visitChildren(self)
class FindFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def FIND(self):
return self.getToken(MathExprParser.FIND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterFindFunc" ):
listener.enterFindFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitFindFunc" ):
listener.exitFindFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitFindFunc" ):
return visitor.visitFindFunc(self)
else:
return visitor.visitChildren(self)
class Int_to_rgbFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def INT_TO_RGB(self):
return self.getToken(MathExprParser.INT_TO_RGB, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self):
return self.getTypedRuleContext(MathExprParser.ExprContext,0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterInt_to_rgbFunc" ):
listener.enterInt_to_rgbFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitInt_to_rgbFunc" ):
listener.exitInt_to_rgbFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitInt_to_rgbFunc" ):
return visitor.visitInt_to_rgbFunc(self)
else:
return visitor.visitChildren(self)
class MatmulFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def MATMUL(self):
return self.getToken(MathExprParser.MATMUL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMatmulFunc" ):
listener.enterMatmulFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMatmulFunc" ):
listener.exitMatmulFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMatmulFunc" ):
return visitor.visitMatmulFunc(self)
else:
return visitor.visitChildren(self)
class StepFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def STEP(self):
return self.getToken(MathExprParser.STEP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterStepFunc" ):
listener.enterStepFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitStepFunc" ):
listener.exitStepFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitStepFunc" ):
return visitor.visitStepFunc(self)
else:
return visitor.visitChildren(self)
class JoinFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def JOIN(self):
return self.getToken(MathExprParser.JOIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterJoinFunc" ):
listener.enterJoinFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitJoinFunc" ):
listener.exitJoinFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitJoinFunc" ):
return visitor.visitJoinFunc(self)
else:
return visitor.visitChildren(self)
class Atan2FuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def ATAN2(self):
return self.getToken(MathExprParser.ATAN2, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterAtan2Func" ):
listener.enterAtan2Func(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitAtan2Func" ):
listener.exitAtan2Func(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitAtan2Func" ):
return visitor.visitAtan2Func(self)
else:
return visitor.visitChildren(self)
class QuantileFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def QUANTILE(self):
return self.getToken(MathExprParser.QUANTILE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterQuantileFunc" ):
listener.enterQuantileFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitQuantileFunc" ):
listener.exitQuantileFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitQuantileFunc" ):
return visitor.visitQuantileFunc(self)
else:
return visitor.visitChildren(self)
class InterpolateNearestExactFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def INTERPOLATE_NEAREST(self):
return self.getToken(MathExprParser.INTERPOLATE_NEAREST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterInterpolateNearestExactFunc" ):
listener.enterInterpolateNearestExactFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitInterpolateNearestExactFunc" ):
listener.exitInterpolateNearestExactFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitInterpolateNearestExactFunc" ):
return visitor.visitInterpolateNearestExactFunc(self)
else:
return visitor.visitChildren(self)
class BitXorFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def XOR(self):
return self.getToken(MathExprParser.XOR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBitXorFunc" ):
listener.enterBitXorFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBitXorFunc" ):
listener.exitBitXorFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBitXorFunc" ):
return visitor.visitBitXorFunc(self)
else:
return visitor.visitChildren(self)
class Rgb_to_intFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def RGB_TO_INT(self):
return self.getToken(MathExprParser.RGB_TO_INT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRgb_to_intFunc" ):
listener.enterRgb_to_intFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRgb_to_intFunc" ):
listener.exitRgb_to_intFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRgb_to_intFunc" ):
return visitor.visitRgb_to_intFunc(self)
else:
return visitor.visitChildren(self)
class TMaxFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def TMAX(self):
return self.getToken(MathExprParser.TMAX, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTMaxFunc" ):
listener.enterTMaxFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTMaxFunc" ):
listener.exitTMaxFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTMaxFunc" ):
return visitor.visitTMaxFunc(self)
else:
return visitor.visitChildren(self)
class PushFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def PUSH(self):
return self.getToken(MathExprParser.PUSH, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPushFunc" ):
listener.enterPushFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPushFunc" ):
listener.exitPushFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPushFunc" ):
return visitor.visitPushFunc(self)
else:
return visitor.visitChildren(self)
class GetValueFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def GET_VALUE(self):
return self.getToken(MathExprParser.GET_VALUE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGetValueFunc" ):
listener.enterGetValueFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGetValueFunc" ):
listener.exitGetValueFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGetValueFunc" ):
return visitor.visitGetValueFunc(self)
else:
return visitor.visitChildren(self)
class CossimFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def COSSIM(self):
return self.getToken(MathExprParser.COSSIM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCossimFunc" ):
listener.enterCossimFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCossimFunc" ):
listener.exitCossimFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCossimFunc" ):
return visitor.visitCossimFunc(self)
else:
return visitor.visitChildren(self)
class CrossFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def CROSS(self):
return self.getToken(MathExprParser.CROSS, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCrossFunc" ):
listener.enterCrossFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCrossFunc" ):
listener.exitCrossFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCrossFunc" ):
return visitor.visitCrossFunc(self)
else:
return visitor.visitChildren(self)
class RifeFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def RIFE(self):
return self.getToken(MathExprParser.RIFE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRifeFunc" ):
listener.enterRifeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRifeFunc" ):
listener.exitRifeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRifeFunc" ):
return visitor.visitRifeFunc(self)
else:
return visitor.visitChildren(self)
class GaussianFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def GAUSSIAN(self):
return self.getToken(MathExprParser.GAUSSIAN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGaussianFunc" ):
listener.enterGaussianFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGaussianFunc" ):
listener.exitGaussianFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGaussianFunc" ):
return visitor.visitGaussianFunc(self)
else:
return visitor.visitChildren(self)
class SubstringFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def SUBSTRING(self):
return self.getToken(MathExprParser.SUBSTRING, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def SUBSTR(self):
return self.getToken(MathExprParser.SUBSTR, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSubstringFunc" ):
listener.enterSubstringFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSubstringFunc" ):
listener.exitSubstringFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSubstringFunc" ):
return visitor.visitSubstringFunc(self)
else:
return visitor.visitChildren(self)
class QuartileFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def QUARTILE(self):
return self.getToken(MathExprParser.QUARTILE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterQuartileFunc" ):
listener.enterQuartileFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitQuartileFunc" ):
listener.exitQuartileFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitQuartileFunc" ):
return visitor.visitQuartileFunc(self)
else:
return visitor.visitChildren(self)
class TMinFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def TMIN(self):
return self.getToken(MathExprParser.TMIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTMinFunc" ):
listener.enterTMinFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTMinFunc" ):
listener.exitTMinFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTMinFunc" ):
return visitor.visitTMinFunc(self)
else:
return visitor.visitChildren(self)
class ReplaceFuncContext(Func2Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func2Context
super().__init__(parser)
self.copyFrom(ctx)
def REPLACE(self):
return self.getToken(MathExprParser.REPLACE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterReplaceFunc" ):
listener.enterReplaceFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitReplaceFunc" ):
listener.exitReplaceFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitReplaceFunc" ):
return visitor.visitReplaceFunc(self)
else:
return visitor.visitChildren(self)
def func2(self):
localctx = MathExprParser.Func2Context(self, self._ctx, self.state)
self.enterRule(localctx, 50, self.RULE_func2)
self._la = 0 # Token type
try:
self.state = 1115
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.POWE]:
localctx = MathExprParser.PowFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 766
self.match(MathExprParser.POWE)
self.state = 767
self.match(MathExprParser.LPAREN)
self.state = 768
self.expr()
self.state = 769
self.match(MathExprParser.COMMA)
self.state = 770
self.expr()
self.state = 771
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ATAN2]:
localctx = MathExprParser.Atan2FuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 773
self.match(MathExprParser.ATAN2)
self.state = 774
self.match(MathExprParser.LPAREN)
self.state = 775
self.expr()
self.state = 776
self.match(MathExprParser.COMMA)
self.state = 777
self.expr()
self.state = 778
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TMIN]:
localctx = MathExprParser.TMinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 780
self.match(MathExprParser.TMIN)
self.state = 781
self.match(MathExprParser.LPAREN)
self.state = 782
self.expr()
self.state = 783
self.match(MathExprParser.COMMA)
self.state = 784
self.expr()
self.state = 785
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TMAX]:
localctx = MathExprParser.TMaxFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 787
self.match(MathExprParser.TMAX)
self.state = 788
self.match(MathExprParser.LPAREN)
self.state = 789
self.expr()
self.state = 790
self.match(MathExprParser.COMMA)
self.state = 791
self.expr()
self.state = 792
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SNORM]:
localctx = MathExprParser.SNormFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 794
self.match(MathExprParser.SNORM)
self.state = 795
self.match(MathExprParser.LPAREN)
self.state = 796
self.expr()
self.state = 799
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 797
self.match(MathExprParser.COMMA)
self.state = 798
self.expr()
self.state = 801
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.STEP]:
localctx = MathExprParser.StepFuncContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 803
self.match(MathExprParser.STEP)
self.state = 804
self.match(MathExprParser.LPAREN)
self.state = 805
self.expr()
self.state = 806
self.match(MathExprParser.COMMA)
self.state = 807
self.expr()
self.state = 808
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TOPK]:
localctx = MathExprParser.TopkFuncContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 810
self.match(MathExprParser.TOPK)
self.state = 811
self.match(MathExprParser.LPAREN)
self.state = 812
self.expr()
self.state = 813
self.match(MathExprParser.COMMA)
self.state = 814
self.expr()
self.state = 815
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BOTK]:
localctx = MathExprParser.BotkFuncContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 817
self.match(MathExprParser.BOTK)
self.state = 818
self.match(MathExprParser.LPAREN)
self.state = 819
self.expr()
self.state = 820
self.match(MathExprParser.COMMA)
self.state = 821
self.expr()
self.state = 822
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.QUARTILE]:
localctx = MathExprParser.QuartileFuncContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 824
self.match(MathExprParser.QUARTILE)
self.state = 825
self.match(MathExprParser.LPAREN)
self.state = 826
self.expr()
self.state = 827
self.match(MathExprParser.COMMA)
self.state = 828
self.expr()
self.state = 829
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PERCENTILE]:
localctx = MathExprParser.PercentileFuncContext(self, localctx)
self.enterOuterAlt(localctx, 10)
self.state = 831
self.match(MathExprParser.PERCENTILE)
self.state = 832
self.match(MathExprParser.LPAREN)
self.state = 833
self.expr()
self.state = 834
self.match(MathExprParser.COMMA)
self.state = 835
self.expr()
self.state = 836
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.QUANTILE]:
localctx = MathExprParser.QuantileFuncContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 838
self.match(MathExprParser.QUANTILE)
self.state = 839
self.match(MathExprParser.LPAREN)
self.state = 840
self.expr()
self.state = 841
self.match(MathExprParser.COMMA)
self.state = 842
self.expr()
self.state = 843
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.DOT]:
localctx = MathExprParser.DotFuncContext(self, localctx)
self.enterOuterAlt(localctx, 12)
self.state = 845
self.match(MathExprParser.DOT)
self.state = 846
self.match(MathExprParser.LPAREN)
self.state = 847
self.expr()
self.state = 848
self.match(MathExprParser.COMMA)
self.state = 849
self.expr()
self.state = 850
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.COSSIM]:
localctx = MathExprParser.CossimFuncContext(self, localctx)
self.enterOuterAlt(localctx, 13)
self.state = 852
self.match(MathExprParser.COSSIM)
self.state = 853
self.match(MathExprParser.LPAREN)
self.state = 854
self.expr()
self.state = 855
self.match(MathExprParser.COMMA)
self.state = 856
self.expr()
self.state = 857
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLIP]:
localctx = MathExprParser.FlipFuncContext(self, localctx)
self.enterOuterAlt(localctx, 14)
self.state = 859
self.match(MathExprParser.FLIP)
self.state = 860
self.match(MathExprParser.LPAREN)
self.state = 861
self.expr()
self.state = 862
self.match(MathExprParser.COMMA)
self.state = 863
self.expr()
self.state = 864
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.COV]:
localctx = MathExprParser.CovFuncContext(self, localctx)
self.enterOuterAlt(localctx, 15)
self.state = 866
self.match(MathExprParser.COV)
self.state = 867
self.match(MathExprParser.LPAREN)
self.state = 868
self.expr()
self.state = 869
self.match(MathExprParser.COMMA)
self.state = 870
self.expr()
self.state = 871
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CORR]:
localctx = MathExprParser.CorrFuncContext(self, localctx)
self.enterOuterAlt(localctx, 16)
self.state = 873
self.match(MathExprParser.CORR)
self.state = 874
self.match(MathExprParser.LPAREN)
self.state = 875
self.expr()
self.state = 876
self.match(MathExprParser.COMMA)
self.state = 877
self.expr()
self.state = 878
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.APPEND]:
localctx = MathExprParser.AppendFuncContext(self, localctx)
self.enterOuterAlt(localctx, 17)
self.state = 880
self.match(MathExprParser.APPEND)
self.state = 881
self.match(MathExprParser.LPAREN)
self.state = 882
self.expr()
self.state = 883
self.match(MathExprParser.COMMA)
self.state = 884
self.expr()
self.state = 885
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PERM]:
localctx = MathExprParser.PermuteFuncContext(self, localctx)
self.enterOuterAlt(localctx, 18)
self.state = 887
self.match(MathExprParser.PERM)
self.state = 888
self.match(MathExprParser.LPAREN)
self.state = 889
self.expr()
self.state = 890
self.match(MathExprParser.COMMA)
self.state = 891
self.expr()
self.state = 892
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GAUSSIAN]:
localctx = MathExprParser.GaussianFuncContext(self, localctx)
self.enterOuterAlt(localctx, 19)
self.state = 894
self.match(MathExprParser.GAUSSIAN)
self.state = 895
self.match(MathExprParser.LPAREN)
self.state = 896
self.expr()
self.state = 897
self.match(MathExprParser.COMMA)
self.state = 898
self.expr()
self.state = 901
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 899
self.match(MathExprParser.COMMA)
self.state = 900
self.expr()
self.state = 903
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TOPK_IND]:
localctx = MathExprParser.TopkIndFuncContext(self, localctx)
self.enterOuterAlt(localctx, 20)
self.state = 905
self.match(MathExprParser.TOPK_IND)
self.state = 906
self.match(MathExprParser.LPAREN)
self.state = 907
self.expr()
self.state = 908
self.match(MathExprParser.COMMA)
self.state = 909
self.expr()
self.state = 910
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BOTK_IND]:
localctx = MathExprParser.BotkIndFuncContext(self, localctx)
self.enterOuterAlt(localctx, 21)
self.state = 912
self.match(MathExprParser.BOTK_IND)
self.state = 913
self.match(MathExprParser.LPAREN)
self.state = 914
self.expr()
self.state = 915
self.match(MathExprParser.COMMA)
self.state = 916
self.expr()
self.state = 917
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BATCH_SHUFFLE]:
localctx = MathExprParser.BatchShuffleFuncContext(self, localctx)
self.enterOuterAlt(localctx, 22)
self.state = 919
self.match(MathExprParser.BATCH_SHUFFLE)
self.state = 920
self.match(MathExprParser.LPAREN)
self.state = 921
self.expr()
self.state = 922
self.match(MathExprParser.COMMA)
self.state = 923
self.expr()
self.state = 924
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PUSH]:
localctx = MathExprParser.PushFuncContext(self, localctx)
self.enterOuterAlt(localctx, 23)
self.state = 926
self.match(MathExprParser.PUSH)
self.state = 927
self.match(MathExprParser.LPAREN)
self.state = 928
self.expr()
self.state = 929
self.match(MathExprParser.COMMA)
self.state = 930
self.expr()
self.state = 931
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GET_VALUE]:
localctx = MathExprParser.GetValueFuncContext(self, localctx)
self.enterOuterAlt(localctx, 24)
self.state = 933
self.match(MathExprParser.GET_VALUE)
self.state = 934
self.match(MathExprParser.LPAREN)
self.state = 935
self.expr()
self.state = 936
self.match(MathExprParser.COMMA)
self.state = 937
self.expr()
self.state = 938
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TENSOR]:
localctx = MathExprParser.EmptyTensorFuncContext(self, localctx)
self.enterOuterAlt(localctx, 25)
self.state = 940
self.match(MathExprParser.TENSOR)
self.state = 941
self.match(MathExprParser.LPAREN)
self.state = 942
self.indexExpr(0)
self.state = 949
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 943
self.match(MathExprParser.COMMA)
self.state = 944
self.expr()
self.state = 947
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 945
self.match(MathExprParser.COMMA)
self.state = 946
self.expr()
self.state = 951
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PAD]:
localctx = MathExprParser.PadFuncContext(self, localctx)
self.enterOuterAlt(localctx, 26)
self.state = 953
self.match(MathExprParser.PAD)
self.state = 954
self.match(MathExprParser.LPAREN)
self.state = 955
self.expr()
self.state = 956
self.match(MathExprParser.COMMA)
self.state = 957
self.expr()
self.state = 958
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CROSS]:
localctx = MathExprParser.CrossFuncContext(self, localctx)
self.enterOuterAlt(localctx, 27)
self.state = 960
self.match(MathExprParser.CROSS)
self.state = 961
self.match(MathExprParser.LPAREN)
self.state = 962
self.expr()
self.state = 963
self.match(MathExprParser.COMMA)
self.state = 964
self.expr()
self.state = 965
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MATMUL]:
localctx = MathExprParser.MatmulFuncContext(self, localctx)
self.enterOuterAlt(localctx, 28)
self.state = 967
self.match(MathExprParser.MATMUL)
self.state = 968
self.match(MathExprParser.LPAREN)
self.state = 969
self.expr()
self.state = 970
self.match(MathExprParser.COMMA)
self.state = 971
self.expr()
self.state = 972
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FLOW_APPLY]:
localctx = MathExprParser.FlowApplyFuncContext(self, localctx)
self.enterOuterAlt(localctx, 29)
self.state = 974
self.match(MathExprParser.FLOW_APPLY)
self.state = 975
self.match(MathExprParser.LPAREN)
self.state = 976
self.expr()
self.state = 977
self.match(MathExprParser.COMMA)
self.state = 978
self.expr()
self.state = 979
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RIFE]:
localctx = MathExprParser.RifeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 30)
self.state = 981
self.match(MathExprParser.RIFE)
self.state = 982
self.match(MathExprParser.LPAREN)
self.state = 983
self.expr()
self.state = 984
self.match(MathExprParser.COMMA)
self.state = 985
self.expr()
self.state = 996
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 986
self.match(MathExprParser.COMMA)
self.state = 987
self.expr()
self.state = 994
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 988
self.match(MathExprParser.COMMA)
self.state = 989
self.expr()
self.state = 992
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 990
self.match(MathExprParser.COMMA)
self.state = 991
self.expr()
self.state = 998
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BAND]:
localctx = MathExprParser.BitAndFuncContext(self, localctx)
self.enterOuterAlt(localctx, 31)
self.state = 1000
self.match(MathExprParser.BAND)
self.state = 1001
self.match(MathExprParser.LPAREN)
self.state = 1002
self.expr()
self.state = 1003
self.match(MathExprParser.COMMA)
self.state = 1004
self.expr()
self.state = 1005
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.XOR]:
localctx = MathExprParser.BitXorFuncContext(self, localctx)
self.enterOuterAlt(localctx, 32)
self.state = 1007
self.match(MathExprParser.XOR)
self.state = 1008
self.match(MathExprParser.LPAREN)
self.state = 1009
self.expr()
self.state = 1010
self.match(MathExprParser.COMMA)
self.state = 1011
self.expr()
self.state = 1012
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BOR]:
localctx = MathExprParser.BitOrFuncContext(self, localctx)
self.enterOuterAlt(localctx, 33)
self.state = 1014
self.match(MathExprParser.BOR)
self.state = 1015
self.match(MathExprParser.LPAREN)
self.state = 1016
self.expr()
self.state = 1017
self.match(MathExprParser.COMMA)
self.state = 1018
self.expr()
self.state = 1019
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SPLIT]:
localctx = MathExprParser.SplitFuncContext(self, localctx)
self.enterOuterAlt(localctx, 34)
self.state = 1021
self.match(MathExprParser.SPLIT)
self.state = 1022
self.match(MathExprParser.LPAREN)
self.state = 1023
self.expr()
self.state = 1026
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1024
self.match(MathExprParser.COMMA)
self.state = 1025
self.expr()
self.state = 1028
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.JOIN]:
localctx = MathExprParser.JoinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 35)
self.state = 1030
self.match(MathExprParser.JOIN)
self.state = 1031
self.match(MathExprParser.LPAREN)
self.state = 1032
self.expr()
self.state = 1035
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1033
self.match(MathExprParser.COMMA)
self.state = 1034
self.expr()
self.state = 1037
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SUBSTRING]:
localctx = MathExprParser.SubstringFuncContext(self, localctx)
self.enterOuterAlt(localctx, 36)
self.state = 1039
self.match(MathExprParser.SUBSTRING)
self.state = 1040
self.match(MathExprParser.LPAREN)
self.state = 1041
self.expr()
self.state = 1042
self.match(MathExprParser.COMMA)
self.state = 1043
self.expr()
self.state = 1046
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1044
self.match(MathExprParser.COMMA)
self.state = 1045
self.expr()
self.state = 1048
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SUBSTR]:
localctx = MathExprParser.SubstringFuncContext(self, localctx)
self.enterOuterAlt(localctx, 37)
self.state = 1050
self.match(MathExprParser.SUBSTR)
self.state = 1051
self.match(MathExprParser.LPAREN)
self.state = 1052
self.expr()
self.state = 1053
self.match(MathExprParser.COMMA)
self.state = 1054
self.expr()
self.state = 1057
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1055
self.match(MathExprParser.COMMA)
self.state = 1056
self.expr()
self.state = 1059
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.FIND]:
localctx = MathExprParser.FindFuncContext(self, localctx)
self.enterOuterAlt(localctx, 38)
self.state = 1061
self.match(MathExprParser.FIND)
self.state = 1062
self.match(MathExprParser.LPAREN)
self.state = 1063
self.expr()
self.state = 1064
self.match(MathExprParser.COMMA)
self.state = 1065
self.expr()
self.state = 1066
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.REPLACE]:
localctx = MathExprParser.ReplaceFuncContext(self, localctx)
self.enterOuterAlt(localctx, 39)
self.state = 1068
self.match(MathExprParser.REPLACE)
self.state = 1069
self.match(MathExprParser.LPAREN)
self.state = 1070
self.expr()
self.state = 1071
self.match(MathExprParser.COMMA)
self.state = 1072
self.expr()
self.state = 1073
self.match(MathExprParser.COMMA)
self.state = 1074
self.expr()
self.state = 1075
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.INT_TO_RGB]:
localctx = MathExprParser.Int_to_rgbFuncContext(self, localctx)
self.enterOuterAlt(localctx, 40)
self.state = 1077
self.match(MathExprParser.INT_TO_RGB)
self.state = 1078
self.match(MathExprParser.LPAREN)
self.state = 1079
self.expr()
self.state = 1080
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RGB_TO_INT]:
localctx = MathExprParser.Rgb_to_intFuncContext(self, localctx)
self.enterOuterAlt(localctx, 41)
self.state = 1082
self.match(MathExprParser.RGB_TO_INT)
self.state = 1083
self.match(MathExprParser.LPAREN)
self.state = 1084
self.expr()
self.state = 1090
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1085
self.match(MathExprParser.COMMA)
self.state = 1086
self.expr()
self.state = 1087
self.match(MathExprParser.COMMA)
self.state = 1088
self.expr()
self.state = 1092
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.INTERPOLATE_LINEAR]:
localctx = MathExprParser.InterpolateLinearFuncContext(self, localctx)
self.enterOuterAlt(localctx, 42)
self.state = 1094
self.match(MathExprParser.INTERPOLATE_LINEAR)
self.state = 1095
self.match(MathExprParser.LPAREN)
self.state = 1096
self.expr()
self.state = 1097
self.match(MathExprParser.COMMA)
self.state = 1098
self.expr()
self.state = 1099
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.INTERPOLATE_AREA]:
localctx = MathExprParser.InterpolateAreaFuncContext(self, localctx)
self.enterOuterAlt(localctx, 43)
self.state = 1101
self.match(MathExprParser.INTERPOLATE_AREA)
self.state = 1102
self.match(MathExprParser.LPAREN)
self.state = 1103
self.expr()
self.state = 1104
self.match(MathExprParser.COMMA)
self.state = 1105
self.expr()
self.state = 1106
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.INTERPOLATE_NEAREST]:
localctx = MathExprParser.InterpolateNearestExactFuncContext(self, localctx)
self.enterOuterAlt(localctx, 44)
self.state = 1108
self.match(MathExprParser.INTERPOLATE_NEAREST)
self.state = 1109
self.match(MathExprParser.LPAREN)
self.state = 1110
self.expr()
self.state = 1111
self.match(MathExprParser.COMMA)
self.state = 1112
self.expr()
self.state = 1113
self.match(MathExprParser.RPAREN)
pass
else:
raise NoViableAltException(self)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class Func3Context(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def getRuleIndex(self):
return MathExprParser.RULE_func3
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class SmootherstepFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def SMOOTHERSTEP(self):
return self.getToken(MathExprParser.SMOOTHERSTEP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSmootherstepFunc" ):
listener.enterSmootherstepFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSmootherstepFunc" ):
listener.exitSmootherstepFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSmootherstepFunc" ):
return visitor.visitSmootherstepFunc(self)
else:
return visitor.visitChildren(self)
class WhereFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def WHERE(self):
return self.getToken(MathExprParser.WHERE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterWhereFunc" ):
listener.enterWhereFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitWhereFunc" ):
listener.exitWhereFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitWhereFunc" ):
return visitor.visitWhereFunc(self)
else:
return visitor.visitChildren(self)
class RgbToOklabFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def RGB_TO_OKLAB(self):
return self.getToken(MathExprParser.RGB_TO_OKLAB, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRgbToOklabFunc" ):
listener.enterRgbToOklabFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRgbToOklabFunc" ):
listener.exitRgbToOklabFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRgbToOklabFunc" ):
return visitor.visitRgbToOklabFunc(self)
else:
return visitor.visitChildren(self)
class CielabToRgbFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def CIELAB_TO_RGB(self):
return self.getToken(MathExprParser.CIELAB_TO_RGB, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCielabToRgbFunc" ):
listener.enterCielabToRgbFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCielabToRgbFunc" ):
listener.exitCielabToRgbFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCielabToRgbFunc" ):
return visitor.visitCielabToRgbFunc(self)
else:
return visitor.visitChildren(self)
class CubicEaseFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def CUBIC_EASE(self):
return self.getToken(MathExprParser.CUBIC_EASE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCubicEaseFunc" ):
listener.enterCubicEaseFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCubicEaseFunc" ):
listener.exitCubicEaseFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCubicEaseFunc" ):
return visitor.visitCubicEaseFunc(self)
else:
return visitor.visitChildren(self)
class HsvToRgbFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def HSV_TO_RGB(self):
return self.getToken(MathExprParser.HSV_TO_RGB, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterHsvToRgbFunc" ):
listener.enterHsvToRgbFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitHsvToRgbFunc" ):
listener.exitHsvToRgbFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitHsvToRgbFunc" ):
return visitor.visitHsvToRgbFunc(self)
else:
return visitor.visitChildren(self)
class SmoothstepFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def SMOOTHSTEP(self):
return self.getToken(MathExprParser.SMOOTHSTEP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSmoothstepFunc" ):
listener.enterSmoothstepFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSmoothstepFunc" ):
listener.exitSmoothstepFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSmoothstepFunc" ):
return visitor.visitSmoothstepFunc(self)
else:
return visitor.visitChildren(self)
class LinspaceFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def LINSPACE(self):
return self.getToken(MathExprParser.LINSPACE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLinspaceFunc" ):
listener.enterLinspaceFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLinspaceFunc" ):
listener.exitLinspaceFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLinspaceFunc" ):
return visitor.visitLinspaceFunc(self)
else:
return visitor.visitChildren(self)
class OklabToRgbFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def OKLAB_TO_RGB(self):
return self.getToken(MathExprParser.OKLAB_TO_RGB, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterOklabToRgbFunc" ):
listener.enterOklabToRgbFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitOklabToRgbFunc" ):
listener.exitOklabToRgbFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitOklabToRgbFunc" ):
return visitor.visitOklabToRgbFunc(self)
else:
return visitor.visitChildren(self)
class ClampFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def CLAMP(self):
return self.getToken(MathExprParser.CLAMP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterClampFunc" ):
listener.enterClampFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitClampFunc" ):
listener.exitClampFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitClampFunc" ):
return visitor.visitClampFunc(self)
else:
return visitor.visitChildren(self)
class SineEaseFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def SINE_EASE(self):
return self.getToken(MathExprParser.SINE_EASE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSineEaseFunc" ):
listener.enterSineEaseFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSineEaseFunc" ):
listener.exitSineEaseFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSineEaseFunc" ):
return visitor.visitSineEaseFunc(self)
else:
return visitor.visitChildren(self)
class OverlayFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def OVERLAY(self):
return self.getToken(MathExprParser.OVERLAY, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterOverlayFunc" ):
listener.enterOverlayFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitOverlayFunc" ):
listener.exitOverlayFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitOverlayFunc" ):
return visitor.visitOverlayFunc(self)
else:
return visitor.visitChildren(self)
class TextImageFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def TEXT_IMAGE(self):
return self.getToken(MathExprParser.TEXT_IMAGE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterTextImageFunc" ):
listener.enterTextImageFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitTextImageFunc" ):
listener.exitTextImageFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitTextImageFunc" ):
return visitor.visitTextImageFunc(self)
else:
return visitor.visitChildren(self)
class RollFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def ROLL(self):
return self.getToken(MathExprParser.ROLL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRollFunc" ):
listener.enterRollFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRollFunc" ):
listener.exitRollFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRollFunc" ):
return visitor.visitRollFunc(self)
else:
return visitor.visitChildren(self)
class RgbToCielabFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def RGB_TO_CIELAB(self):
return self.getToken(MathExprParser.RGB_TO_CIELAB, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRgbToCielabFunc" ):
listener.enterRgbToCielabFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRgbToCielabFunc" ):
listener.exitRgbToCielabFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRgbToCielabFunc" ):
return visitor.visitRgbToCielabFunc(self)
else:
return visitor.visitChildren(self)
class MomentFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def MOMENT(self):
return self.getToken(MathExprParser.MOMENT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMomentFunc" ):
listener.enterMomentFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMomentFunc" ):
listener.exitMomentFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMomentFunc" ):
return visitor.visitMomentFunc(self)
else:
return visitor.visitChildren(self)
class LerpFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def LERP(self):
return self.getToken(MathExprParser.LERP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLerpFunc" ):
listener.enterLerpFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLerpFunc" ):
listener.exitLerpFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLerpFunc" ):
return visitor.visitLerpFunc(self)
else:
return visitor.visitChildren(self)
class RgbToHsvFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def RGB_TO_HSV(self):
return self.getToken(MathExprParser.RGB_TO_HSV, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRgbToHsvFunc" ):
listener.enterRgbToHsvFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRgbToHsvFunc" ):
listener.exitRgbToHsvFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRgbToHsvFunc" ):
return visitor.visitRgbToHsvFunc(self)
else:
return visitor.visitChildren(self)
class SifftFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def SIFFT(self):
return self.getToken(MathExprParser.SIFFT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 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 ElasticEaseFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def ELASTIC_EASE(self):
return self.getToken(MathExprParser.ELASTIC_EASE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterElasticEaseFunc" ):
listener.enterElasticEaseFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitElasticEaseFunc" ):
listener.exitElasticEaseFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitElasticEaseFunc" ):
return visitor.visitElasticEaseFunc(self)
else:
return visitor.visitChildren(self)
class RangeFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def RANGE(self):
return self.getToken(MathExprParser.RANGE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRangeFunc" ):
listener.enterRangeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRangeFunc" ):
listener.exitRangeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRangeFunc" ):
return visitor.visitRangeFunc(self)
else:
return visitor.visitChildren(self)
class CropFuncContext(Func3Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func3Context
super().__init__(parser)
self.copyFrom(ctx)
def CROP(self):
return self.getToken(MathExprParser.CROP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCropFunc" ):
listener.enterCropFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCropFunc" ):
listener.exitCropFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCropFunc" ):
return visitor.visitCropFunc(self)
else:
return visitor.visitChildren(self)
def func3(self):
localctx = MathExprParser.Func3Context(self, self._ctx, self.state)
self.enterRule(localctx, 52, self.RULE_func3)
self._la = 0 # Token type
try:
self.state = 1371
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.CLAMP]:
localctx = MathExprParser.ClampFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 1117
self.match(MathExprParser.CLAMP)
self.state = 1118
self.match(MathExprParser.LPAREN)
self.state = 1119
self.expr()
self.state = 1120
self.match(MathExprParser.COMMA)
self.state = 1121
self.expr()
self.state = 1122
self.match(MathExprParser.COMMA)
self.state = 1123
self.expr()
self.state = 1124
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LERP]:
localctx = MathExprParser.LerpFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 1126
self.match(MathExprParser.LERP)
self.state = 1127
self.match(MathExprParser.LPAREN)
self.state = 1128
self.expr()
self.state = 1129
self.match(MathExprParser.COMMA)
self.state = 1130
self.expr()
self.state = 1131
self.match(MathExprParser.COMMA)
self.state = 1132
self.expr()
self.state = 1133
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SMOOTHSTEP]:
localctx = MathExprParser.SmoothstepFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 1135
self.match(MathExprParser.SMOOTHSTEP)
self.state = 1136
self.match(MathExprParser.LPAREN)
self.state = 1137
self.expr()
self.state = 1138
self.match(MathExprParser.COMMA)
self.state = 1139
self.expr()
self.state = 1140
self.match(MathExprParser.COMMA)
self.state = 1141
self.expr()
self.state = 1142
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RANGE]:
localctx = MathExprParser.RangeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 1144
self.match(MathExprParser.RANGE)
self.state = 1145
self.match(MathExprParser.LPAREN)
self.state = 1146
self.expr()
self.state = 1147
self.match(MathExprParser.COMMA)
self.state = 1148
self.expr()
self.state = 1149
self.match(MathExprParser.COMMA)
self.state = 1150
self.expr()
self.state = 1151
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MOMENT]:
localctx = MathExprParser.MomentFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 1153
self.match(MathExprParser.MOMENT)
self.state = 1154
self.match(MathExprParser.LPAREN)
self.state = 1155
self.expr()
self.state = 1156
self.match(MathExprParser.COMMA)
self.state = 1157
self.expr()
self.state = 1158
self.match(MathExprParser.COMMA)
self.state = 1159
self.expr()
self.state = 1160
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CUBIC_EASE]:
localctx = MathExprParser.CubicEaseFuncContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 1162
self.match(MathExprParser.CUBIC_EASE)
self.state = 1163
self.match(MathExprParser.LPAREN)
self.state = 1164
self.expr()
self.state = 1165
self.match(MathExprParser.COMMA)
self.state = 1166
self.expr()
self.state = 1167
self.match(MathExprParser.COMMA)
self.state = 1168
self.expr()
self.state = 1169
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ELASTIC_EASE]:
localctx = MathExprParser.ElasticEaseFuncContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 1171
self.match(MathExprParser.ELASTIC_EASE)
self.state = 1172
self.match(MathExprParser.LPAREN)
self.state = 1173
self.expr()
self.state = 1174
self.match(MathExprParser.COMMA)
self.state = 1175
self.expr()
self.state = 1176
self.match(MathExprParser.COMMA)
self.state = 1177
self.expr()
self.state = 1178
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SINE_EASE]:
localctx = MathExprParser.SineEaseFuncContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 1180
self.match(MathExprParser.SINE_EASE)
self.state = 1181
self.match(MathExprParser.LPAREN)
self.state = 1182
self.expr()
self.state = 1183
self.match(MathExprParser.COMMA)
self.state = 1184
self.expr()
self.state = 1185
self.match(MathExprParser.COMMA)
self.state = 1186
self.expr()
self.state = 1187
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SMOOTHERSTEP]:
localctx = MathExprParser.SmootherstepFuncContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 1189
self.match(MathExprParser.SMOOTHERSTEP)
self.state = 1190
self.match(MathExprParser.LPAREN)
self.state = 1191
self.expr()
self.state = 1192
self.match(MathExprParser.COMMA)
self.state = 1193
self.expr()
self.state = 1194
self.match(MathExprParser.COMMA)
self.state = 1195
self.expr()
self.state = 1196
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CROP]:
localctx = MathExprParser.CropFuncContext(self, localctx)
self.enterOuterAlt(localctx, 10)
self.state = 1198
self.match(MathExprParser.CROP)
self.state = 1199
self.match(MathExprParser.LPAREN)
self.state = 1200
self.expr()
self.state = 1201
self.match(MathExprParser.COMMA)
self.state = 1202
self.expr()
self.state = 1203
self.match(MathExprParser.COMMA)
self.state = 1204
self.expr()
self.state = 1205
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SIFFT]:
localctx = MathExprParser.SifftFuncContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 1207
self.match(MathExprParser.SIFFT)
self.state = 1208
self.match(MathExprParser.LPAREN)
self.state = 1209
self.expr()
self.state = 1212
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1210
self.match(MathExprParser.COMMA)
self.state = 1211
self.expr()
self.state = 1214
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.OVERLAY]:
localctx = MathExprParser.OverlayFuncContext(self, localctx)
self.enterOuterAlt(localctx, 12)
self.state = 1216
self.match(MathExprParser.OVERLAY)
self.state = 1217
self.match(MathExprParser.LPAREN)
self.state = 1218
self.expr()
self.state = 1219
self.match(MathExprParser.COMMA)
self.state = 1220
self.expr()
self.state = 1221
self.match(MathExprParser.COMMA)
self.state = 1222
self.expr()
self.state = 1225
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1223
self.match(MathExprParser.COMMA)
self.state = 1224
self.expr()
self.state = 1227
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LINSPACE]:
localctx = MathExprParser.LinspaceFuncContext(self, localctx)
self.enterOuterAlt(localctx, 13)
self.state = 1229
self.match(MathExprParser.LINSPACE)
self.state = 1230
self.match(MathExprParser.LPAREN)
self.state = 1231
self.expr()
self.state = 1232
self.match(MathExprParser.COMMA)
self.state = 1233
self.expr()
self.state = 1234
self.match(MathExprParser.COMMA)
self.state = 1235
self.expr()
self.state = 1236
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.ROLL]:
localctx = MathExprParser.RollFuncContext(self, localctx)
self.enterOuterAlt(localctx, 14)
self.state = 1238
self.match(MathExprParser.ROLL)
self.state = 1239
self.match(MathExprParser.LPAREN)
self.state = 1240
self.expr()
self.state = 1241
self.match(MathExprParser.COMMA)
self.state = 1242
self.expr()
self.state = 1245
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1243
self.match(MathExprParser.COMMA)
self.state = 1244
self.expr()
self.state = 1247
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RGB_TO_OKLAB]:
localctx = MathExprParser.RgbToOklabFuncContext(self, localctx)
self.enterOuterAlt(localctx, 15)
self.state = 1249
self.match(MathExprParser.RGB_TO_OKLAB)
self.state = 1250
self.match(MathExprParser.LPAREN)
self.state = 1251
self.expr()
self.state = 1257
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1252
self.match(MathExprParser.COMMA)
self.state = 1253
self.expr()
self.state = 1254
self.match(MathExprParser.COMMA)
self.state = 1255
self.expr()
self.state = 1259
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RGB_TO_CIELAB]:
localctx = MathExprParser.RgbToCielabFuncContext(self, localctx)
self.enterOuterAlt(localctx, 16)
self.state = 1261
self.match(MathExprParser.RGB_TO_CIELAB)
self.state = 1262
self.match(MathExprParser.LPAREN)
self.state = 1263
self.expr()
self.state = 1269
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1264
self.match(MathExprParser.COMMA)
self.state = 1265
self.expr()
self.state = 1266
self.match(MathExprParser.COMMA)
self.state = 1267
self.expr()
self.state = 1271
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RGB_TO_HSV]:
localctx = MathExprParser.RgbToHsvFuncContext(self, localctx)
self.enterOuterAlt(localctx, 17)
self.state = 1273
self.match(MathExprParser.RGB_TO_HSV)
self.state = 1274
self.match(MathExprParser.LPAREN)
self.state = 1275
self.expr()
self.state = 1281
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,57,self._ctx)
if la_ == 1:
self.state = 1276
self.match(MathExprParser.COMMA)
self.state = 1277
self.expr()
self.state = 1278
self.match(MathExprParser.COMMA)
self.state = 1279
self.expr()
self.state = 1285
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1283
self.match(MathExprParser.COMMA)
self.state = 1284
self.expr()
self.state = 1287
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.HSV_TO_RGB]:
localctx = MathExprParser.HsvToRgbFuncContext(self, localctx)
self.enterOuterAlt(localctx, 18)
self.state = 1289
self.match(MathExprParser.HSV_TO_RGB)
self.state = 1290
self.match(MathExprParser.LPAREN)
self.state = 1291
self.expr()
self.state = 1297
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,59,self._ctx)
if la_ == 1:
self.state = 1292
self.match(MathExprParser.COMMA)
self.state = 1293
self.expr()
self.state = 1294
self.match(MathExprParser.COMMA)
self.state = 1295
self.expr()
self.state = 1301
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1299
self.match(MathExprParser.COMMA)
self.state = 1300
self.expr()
self.state = 1303
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.WHERE]:
localctx = MathExprParser.WhereFuncContext(self, localctx)
self.enterOuterAlt(localctx, 19)
self.state = 1305
self.match(MathExprParser.WHERE)
self.state = 1306
self.match(MathExprParser.LPAREN)
self.state = 1307
self.expr()
self.state = 1308
self.match(MathExprParser.COMMA)
self.state = 1309
self.expr()
self.state = 1310
self.match(MathExprParser.COMMA)
self.state = 1311
self.expr()
self.state = 1312
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.OKLAB_TO_RGB]:
localctx = MathExprParser.OklabToRgbFuncContext(self, localctx)
self.enterOuterAlt(localctx, 20)
self.state = 1314
self.match(MathExprParser.OKLAB_TO_RGB)
self.state = 1315
self.match(MathExprParser.LPAREN)
self.state = 1316
self.expr()
self.state = 1322
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1317
self.match(MathExprParser.COMMA)
self.state = 1318
self.expr()
self.state = 1319
self.match(MathExprParser.COMMA)
self.state = 1320
self.expr()
self.state = 1324
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CIELAB_TO_RGB]:
localctx = MathExprParser.CielabToRgbFuncContext(self, localctx)
self.enterOuterAlt(localctx, 21)
self.state = 1326
self.match(MathExprParser.CIELAB_TO_RGB)
self.state = 1327
self.match(MathExprParser.LPAREN)
self.state = 1328
self.expr()
self.state = 1334
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1329
self.match(MathExprParser.COMMA)
self.state = 1330
self.expr()
self.state = 1331
self.match(MathExprParser.COMMA)
self.state = 1332
self.expr()
self.state = 1336
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.TEXT_IMAGE]:
localctx = MathExprParser.TextImageFuncContext(self, localctx)
self.enterOuterAlt(localctx, 22)
self.state = 1338
self.match(MathExprParser.TEXT_IMAGE)
self.state = 1339
self.match(MathExprParser.LPAREN)
self.state = 1340
self.expr()
self.state = 1341
self.match(MathExprParser.COMMA)
self.state = 1342
self.expr()
self.state = 1343
self.match(MathExprParser.COMMA)
self.state = 1344
self.expr()
self.state = 1347
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,63,self._ctx)
if la_ == 1:
self.state = 1345
self.match(MathExprParser.COMMA)
self.state = 1346
self.expr()
self.state = 1351
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,64,self._ctx)
if la_ == 1:
self.state = 1349
self.match(MathExprParser.COMMA)
self.state = 1350
self.expr()
self.state = 1355
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,65,self._ctx)
if la_ == 1:
self.state = 1353
self.match(MathExprParser.COMMA)
self.state = 1354
self.expr()
self.state = 1359
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,66,self._ctx)
if la_ == 1:
self.state = 1357
self.match(MathExprParser.COMMA)
self.state = 1358
self.expr()
self.state = 1363
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,67,self._ctx)
if la_ == 1:
self.state = 1361
self.match(MathExprParser.COMMA)
self.state = 1362
self.expr()
self.state = 1367
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1365
self.match(MathExprParser.COMMA)
self.state = 1366
self.expr()
self.state = 1369
self.match(MathExprParser.RPAREN)
pass
else:
raise NoViableAltException(self)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class Func4Context(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def getRuleIndex(self):
return MathExprParser.RULE_func4
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class DistFuncContext(Func4Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func4Context
super().__init__(parser)
self.copyFrom(ctx)
def DIST(self):
return self.getToken(MathExprParser.DIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterDistFunc" ):
listener.enterDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitDistFunc" ):
listener.exitDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitDistFunc" ):
return visitor.visitDistFunc(self)
else:
return visitor.visitChildren(self)
class HistogramFuncContext(Func4Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func4Context
super().__init__(parser)
self.copyFrom(ctx)
def HISTOGRAM(self):
return self.getToken(MathExprParser.HISTOGRAM, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterHistogramFunc" ):
listener.enterHistogramFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitHistogramFunc" ):
listener.exitHistogramFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitHistogramFunc" ):
return visitor.visitHistogramFunc(self)
else:
return visitor.visitChildren(self)
class LogspaceFuncContext(Func4Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func4Context
super().__init__(parser)
self.copyFrom(ctx)
def LOGSPACE(self):
return self.getToken(MathExprParser.LOGSPACE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLogspaceFunc" ):
listener.enterLogspaceFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLogspaceFunc" ):
listener.exitLogspaceFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLogspaceFunc" ):
return visitor.visitLogspaceFunc(self)
else:
return visitor.visitChildren(self)
class NvlFuncContext(Func4Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func4Context
super().__init__(parser)
self.copyFrom(ctx)
def NVL(self):
return self.getToken(MathExprParser.NVL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterNvlFunc" ):
listener.enterNvlFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitNvlFunc" ):
listener.exitNvlFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitNvlFunc" ):
return visitor.visitNvlFunc(self)
else:
return visitor.visitChildren(self)
class SwapFuncContext(Func4Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func4Context
super().__init__(parser)
self.copyFrom(ctx)
def SWAP(self):
return self.getToken(MathExprParser.SWAP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSwapFunc" ):
listener.enterSwapFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSwapFunc" ):
listener.exitSwapFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSwapFunc" ):
return visitor.visitSwapFunc(self)
else:
return visitor.visitChildren(self)
def func4(self):
localctx = MathExprParser.Func4Context(self, self._ctx, self.state)
self.enterRule(localctx, 54, self.RULE_func4)
try:
self.state = 1428
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.SWAP]:
localctx = MathExprParser.SwapFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 1373
self.match(MathExprParser.SWAP)
self.state = 1374
self.match(MathExprParser.LPAREN)
self.state = 1375
self.expr()
self.state = 1376
self.match(MathExprParser.COMMA)
self.state = 1377
self.expr()
self.state = 1378
self.match(MathExprParser.COMMA)
self.state = 1379
self.expr()
self.state = 1380
self.match(MathExprParser.COMMA)
self.state = 1381
self.expr()
self.state = 1382
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.NVL]:
localctx = MathExprParser.NvlFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 1384
self.match(MathExprParser.NVL)
self.state = 1385
self.match(MathExprParser.LPAREN)
self.state = 1386
self.expr()
self.state = 1387
self.match(MathExprParser.COMMA)
self.state = 1388
self.expr()
self.state = 1389
self.match(MathExprParser.COMMA)
self.state = 1390
self.expr()
self.state = 1391
self.match(MathExprParser.COMMA)
self.state = 1392
self.expr()
self.state = 1393
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LOGSPACE]:
localctx = MathExprParser.LogspaceFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 1395
self.match(MathExprParser.LOGSPACE)
self.state = 1396
self.match(MathExprParser.LPAREN)
self.state = 1397
self.expr()
self.state = 1398
self.match(MathExprParser.COMMA)
self.state = 1399
self.expr()
self.state = 1400
self.match(MathExprParser.COMMA)
self.state = 1401
self.expr()
self.state = 1402
self.match(MathExprParser.COMMA)
self.state = 1403
self.expr()
self.state = 1404
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.DIST]:
localctx = MathExprParser.DistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 1406
self.match(MathExprParser.DIST)
self.state = 1407
self.match(MathExprParser.LPAREN)
self.state = 1408
self.expr()
self.state = 1409
self.match(MathExprParser.COMMA)
self.state = 1410
self.expr()
self.state = 1411
self.match(MathExprParser.COMMA)
self.state = 1412
self.expr()
self.state = 1413
self.match(MathExprParser.COMMA)
self.state = 1414
self.expr()
self.state = 1415
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.HISTOGRAM]:
localctx = MathExprParser.HistogramFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 1417
self.match(MathExprParser.HISTOGRAM)
self.state = 1418
self.match(MathExprParser.LPAREN)
self.state = 1419
self.expr()
self.state = 1420
self.match(MathExprParser.COMMA)
self.state = 1421
self.expr()
self.state = 1422
self.match(MathExprParser.COMMA)
self.state = 1423
self.expr()
self.state = 1424
self.match(MathExprParser.COMMA)
self.state = 1425
self.expr()
self.state = 1426
self.match(MathExprParser.RPAREN)
pass
else:
raise NoViableAltException(self)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class Func5Context(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_func5
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class RemapFuncContext(Func5Context):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.Func5Context
super().__init__(parser)
self.copyFrom(ctx)
def REMAP(self):
return self.getToken(MathExprParser.REMAP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRemapFunc" ):
listener.enterRemapFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRemapFunc" ):
listener.exitRemapFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRemapFunc" ):
return visitor.visitRemapFunc(self)
else:
return visitor.visitChildren(self)
def func5(self):
localctx = MathExprParser.Func5Context(self, self._ctx, self.state)
self.enterRule(localctx, 56, self.RULE_func5)
try:
localctx = MathExprParser.RemapFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 1430
self.match(MathExprParser.REMAP)
self.state = 1431
self.match(MathExprParser.LPAREN)
self.state = 1432
self.expr()
self.state = 1433
self.match(MathExprParser.COMMA)
self.state = 1434
self.expr()
self.state = 1435
self.match(MathExprParser.COMMA)
self.state = 1436
self.expr()
self.state = 1437
self.match(MathExprParser.COMMA)
self.state = 1438
self.expr()
self.state = 1439
self.match(MathExprParser.COMMA)
self.state = 1440
self.expr()
self.state = 1441
self.match(MathExprParser.RPAREN)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class FuncNContext(ParserRuleContext):
__slots__ = 'parser'
def __init__(self, parser, parent:ParserRuleContext=None, invokingState:int=-1):
super().__init__(parent, invokingState)
self.parser = parser
def getRuleIndex(self):
return MathExprParser.RULE_funcN
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class SMaxFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def SMAX(self):
return self.getToken(MathExprParser.SMAX, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSMaxFunc" ):
listener.enterSMaxFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSMaxFunc" ):
listener.exitSMaxFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSMaxFunc" ):
return visitor.visitSMaxFunc(self)
else:
return visitor.visitChildren(self)
class MapFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def MAP(self):
return self.getToken(MathExprParser.MAP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterMapFunc" ):
listener.enterMapFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitMapFunc" ):
listener.exitMapFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitMapFunc" ):
return visitor.visitMapFunc(self)
else:
return visitor.visitChildren(self)
class ConcatFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def CONCAT(self):
return self.getToken(MathExprParser.CONCAT, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterConcatFunc" ):
listener.enterConcatFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitConcatFunc" ):
listener.exitConcatFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitConcatFunc" ):
return visitor.visitConcatFunc(self)
else:
return visitor.visitChildren(self)
class EzConvFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def EZCONV(self):
return self.getToken(MathExprParser.EZCONV, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterEzConvFunc" ):
listener.enterEzConvFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitEzConvFunc" ):
listener.exitEzConvFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitEzConvFunc" ):
return visitor.visitEzConvFunc(self)
else:
return visitor.visitChildren(self)
class ReshapeFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def RESHAPE(self):
return self.getToken(MathExprParser.RESHAPE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterReshapeFunc" ):
listener.enterReshapeFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitReshapeFunc" ):
listener.exitReshapeFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitReshapeFunc" ):
return visitor.visitReshapeFunc(self)
else:
return visitor.visitChildren(self)
class SMinFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def SMIN(self):
return self.getToken(MathExprParser.SMIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterSMinFunc" ):
listener.enterSMinFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitSMinFunc" ):
listener.exitSMinFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitSMinFunc" ):
return visitor.visitSMinFunc(self)
else:
return visitor.visitChildren(self)
class ConvFuncContext(FuncNContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNContext
super().__init__(parser)
self.copyFrom(ctx)
def CONV(self):
return self.getToken(MathExprParser.CONV, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterConvFunc" ):
listener.enterConvFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitConvFunc" ):
listener.exitConvFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitConvFunc" ):
return visitor.visitConvFunc(self)
else:
return visitor.visitChildren(self)
def funcN(self):
localctx = MathExprParser.FuncNContext(self, self._ctx, self.state)
self.enterRule(localctx, 58, self.RULE_funcN)
self._la = 0 # Token type
try:
self.state = 1518
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.SMIN]:
localctx = MathExprParser.SMinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 1443
self.match(MathExprParser.SMIN)
self.state = 1444
self.match(MathExprParser.LPAREN)
self.state = 1445
self.expr()
self.state = 1450
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 1446
self.match(MathExprParser.COMMA)
self.state = 1447
self.expr()
self.state = 1452
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 1453
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.SMAX]:
localctx = MathExprParser.SMaxFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 1455
self.match(MathExprParser.SMAX)
self.state = 1456
self.match(MathExprParser.LPAREN)
self.state = 1457
self.expr()
self.state = 1462
self._errHandler.sync(self)
_la = self._input.LA(1)
while _la==MathExprParser.COMMA:
self.state = 1458
self.match(MathExprParser.COMMA)
self.state = 1459
self.expr()
self.state = 1464
self._errHandler.sync(self)
_la = self._input.LA(1)
self.state = 1465
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.MAP]:
localctx = MathExprParser.MapFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 1467
self.match(MathExprParser.MAP)
self.state = 1468
self.match(MathExprParser.LPAREN)
self.state = 1469
self.expr()
self.state = 1472
self._errHandler.sync(self)
_la = self._input.LA(1)
while True:
self.state = 1470
self.match(MathExprParser.COMMA)
self.state = 1471
self.expr()
self.state = 1474
self._errHandler.sync(self)
_la = self._input.LA(1)
if not (_la==MathExprParser.COMMA):
break
self.state = 1476
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.EZCONV]:
localctx = MathExprParser.EzConvFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 1478
self.match(MathExprParser.EZCONV)
self.state = 1479
self.match(MathExprParser.LPAREN)
self.state = 1480
self.expr()
self.state = 1483
self._errHandler.sync(self)
_la = self._input.LA(1)
while True:
self.state = 1481
self.match(MathExprParser.COMMA)
self.state = 1482
self.expr()
self.state = 1485
self._errHandler.sync(self)
_la = self._input.LA(1)
if not (_la==MathExprParser.COMMA):
break
self.state = 1487
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CONV]:
localctx = MathExprParser.ConvFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 1489
self.match(MathExprParser.CONV)
self.state = 1490
self.match(MathExprParser.LPAREN)
self.state = 1491
self.expr()
self.state = 1494
self._errHandler.sync(self)
_la = self._input.LA(1)
while True:
self.state = 1492
self.match(MathExprParser.COMMA)
self.state = 1493
self.expr()
self.state = 1496
self._errHandler.sync(self)
_la = self._input.LA(1)
if not (_la==MathExprParser.COMMA):
break
self.state = 1498
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RESHAPE]:
localctx = MathExprParser.ReshapeFuncContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 1500
self.match(MathExprParser.RESHAPE)
self.state = 1501
self.match(MathExprParser.LPAREN)
self.state = 1502
self.expr()
self.state = 1503
self.match(MathExprParser.COMMA)
self.state = 1504
self.expr()
self.state = 1505
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CONCAT]:
localctx = MathExprParser.ConcatFuncContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 1507
self.match(MathExprParser.CONCAT)
self.state = 1508
self.match(MathExprParser.LPAREN)
self.state = 1509
self.expr()
self.state = 1512
self._errHandler.sync(self)
_la = self._input.LA(1)
while True:
self.state = 1510
self.match(MathExprParser.COMMA)
self.state = 1511
self.expr()
self.state = 1514
self._errHandler.sync(self)
_la = self._input.LA(1)
if not (_la==MathExprParser.COMMA):
break
self.state = 1516
self.match(MathExprParser.RPAREN)
pass
else:
raise NoViableAltException(self)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
class FuncNoiseContext(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_funcNoise
def copyFrom(self, ctx:ParserRuleContext):
super().copyFrom(ctx)
class ExponentialFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def EXPONENTIAL(self):
return self.getToken(MathExprParser.EXPONENTIAL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterExponentialFunc" ):
listener.enterExponentialFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitExponentialFunc" ):
listener.exitExponentialFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitExponentialFunc" ):
return visitor.visitExponentialFunc(self)
else:
return visitor.visitChildren(self)
class PoissonFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def POISSON(self):
return self.getToken(MathExprParser.POISSON, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPoissonFunc" ):
listener.enterPoissonFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPoissonFunc" ):
listener.exitPoissonFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPoissonFunc" ):
return visitor.visitPoissonFunc(self)
else:
return visitor.visitChildren(self)
class LaplaceDistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def LAPLACEDIST(self):
return self.getToken(MathExprParser.LAPLACEDIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLaplaceDistFunc" ):
listener.enterLaplaceDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLaplaceDistFunc" ):
listener.exitLaplaceDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLaplaceDistFunc" ):
return visitor.visitLaplaceDistFunc(self)
else:
return visitor.visitChildren(self)
class CellularFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def CELLULAR(self):
return self.getToken(MathExprParser.CELLULAR, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCellularFunc" ):
listener.enterCellularFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCellularFunc" ):
listener.exitCellularFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCellularFunc" ):
return visitor.visitCellularFunc(self)
else:
return visitor.visitChildren(self)
class NoiseFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def NOISE(self):
return self.getToken(MathExprParser.NOISE, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterNoiseFunc" ):
listener.enterNoiseFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitNoiseFunc" ):
listener.exitNoiseFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitNoiseFunc" ):
return visitor.visitNoiseFunc(self)
else:
return visitor.visitChildren(self)
class BetaDistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def BETADIST(self):
return self.getToken(MathExprParser.BETADIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBetaDistFunc" ):
listener.enterBetaDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBetaDistFunc" ):
listener.exitBetaDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBetaDistFunc" ):
return visitor.visitBetaDistFunc(self)
else:
return visitor.visitChildren(self)
class BernoulliFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def BERNOULLI(self):
return self.getToken(MathExprParser.BERNOULLI, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterBernoulliFunc" ):
listener.enterBernoulliFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitBernoulliFunc" ):
listener.exitBernoulliFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitBernoulliFunc" ):
return visitor.visitBernoulliFunc(self)
else:
return visitor.visitChildren(self)
class GammaDistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def GAMMADIST(self):
return self.getToken(MathExprParser.GAMMADIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGammaDistFunc" ):
listener.enterGammaDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGammaDistFunc" ):
listener.exitGammaDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGammaDistFunc" ):
return visitor.visitGammaDistFunc(self)
else:
return visitor.visitChildren(self)
class WeibullDistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def WEIBULLDIST(self):
return self.getToken(MathExprParser.WEIBULLDIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterWeibullDistFunc" ):
listener.enterWeibullDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitWeibullDistFunc" ):
listener.exitWeibullDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitWeibullDistFunc" ):
return visitor.visitWeibullDistFunc(self)
else:
return visitor.visitChildren(self)
class LogNormalFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def LOGNORMAL(self):
return self.getToken(MathExprParser.LOGNORMAL, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterLogNormalFunc" ):
listener.enterLogNormalFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitLogNormalFunc" ):
listener.exitLogNormalFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitLogNormalFunc" ):
return visitor.visitLogNormalFunc(self)
else:
return visitor.visitChildren(self)
class PerlinFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def PERLIN(self):
return self.getToken(MathExprParser.PERLIN, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPerlinFunc" ):
listener.enterPerlinFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPerlinFunc" ):
listener.exitPerlinFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPerlinFunc" ):
return visitor.visitPerlinFunc(self)
else:
return visitor.visitChildren(self)
class PlasmaFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def PLASMA(self):
return self.getToken(MathExprParser.PLASMA, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterPlasmaFunc" ):
listener.enterPlasmaFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitPlasmaFunc" ):
listener.exitPlasmaFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitPlasmaFunc" ):
return visitor.visitPlasmaFunc(self)
else:
return visitor.visitChildren(self)
class DomainWarpFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def DOMAIN_WARP(self):
return self.getToken(MathExprParser.DOMAIN_WARP, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterDomainWarpFunc" ):
listener.enterDomainWarpFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitDomainWarpFunc" ):
listener.exitDomainWarpFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitDomainWarpFunc" ):
return visitor.visitDomainWarpFunc(self)
else:
return visitor.visitChildren(self)
class RidgedFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def RIDGED(self):
return self.getToken(MathExprParser.RIDGED, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRidgedFunc" ):
listener.enterRidgedFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRidgedFunc" ):
listener.exitRidgedFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRidgedFunc" ):
return visitor.visitRidgedFunc(self)
else:
return visitor.visitChildren(self)
class GumbelDistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def GUMBELDIST(self):
return self.getToken(MathExprParser.GUMBELDIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterGumbelDistFunc" ):
listener.enterGumbelDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitGumbelDistFunc" ):
listener.exitGumbelDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitGumbelDistFunc" ):
return visitor.visitGumbelDistFunc(self)
else:
return visitor.visitChildren(self)
class CauchyFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def CAUCHY(self):
return self.getToken(MathExprParser.CAUCHY, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterCauchyFunc" ):
listener.enterCauchyFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitCauchyFunc" ):
listener.exitCauchyFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitCauchyFunc" ):
return visitor.visitCauchyFunc(self)
else:
return visitor.visitChildren(self)
class StudentTDistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def STUDENTTDIST(self):
return self.getToken(MathExprParser.STUDENTTDIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterStudentTDistFunc" ):
listener.enterStudentTDistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitStudentTDistFunc" ):
listener.exitStudentTDistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitStudentTDistFunc" ):
return visitor.visitStudentTDistFunc(self)
else:
return visitor.visitChildren(self)
class Chi2DistFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def CHI2DIST(self):
return self.getToken(MathExprParser.CHI2DIST, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def COMMA(self, i:int=None):
if i is None:
return self.getTokens(MathExprParser.COMMA)
else:
return self.getToken(MathExprParser.COMMA, i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterChi2DistFunc" ):
listener.enterChi2DistFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitChi2DistFunc" ):
listener.exitChi2DistFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitChi2DistFunc" ):
return visitor.visitChi2DistFunc(self)
else:
return visitor.visitChildren(self)
class RandFuncContext(FuncNoiseContext):
def __init__(self, parser, ctx:ParserRuleContext): # actually a MathExprParser.FuncNoiseContext
super().__init__(parser)
self.copyFrom(ctx)
def RAND(self):
return self.getToken(MathExprParser.RAND, 0)
def LPAREN(self):
return self.getToken(MathExprParser.LPAREN, 0)
def expr(self, i:int=None):
if i is None:
return self.getTypedRuleContexts(MathExprParser.ExprContext)
else:
return self.getTypedRuleContext(MathExprParser.ExprContext,i)
def RPAREN(self):
return self.getToken(MathExprParser.RPAREN, 0)
def COMMA(self):
return self.getToken(MathExprParser.COMMA, 0)
def enterRule(self, listener:ParseTreeListener):
if hasattr( listener, "enterRandFunc" ):
listener.enterRandFunc(self)
def exitRule(self, listener:ParseTreeListener):
if hasattr( listener, "exitRandFunc" ):
listener.exitRandFunc(self)
def accept(self, visitor:ParseTreeVisitor):
if hasattr( visitor, "visitRandFunc" ):
return visitor.visitRandFunc(self)
else:
return visitor.visitChildren(self)
def funcNoise(self):
localctx = MathExprParser.FuncNoiseContext(self, self._ctx, self.state)
self.enterRule(localctx, 60, self.RULE_funcNoise)
self._la = 0 # Token type
try:
self.state = 1787
self._errHandler.sync(self)
token = self._input.LA(1)
if token in [MathExprParser.NOISE]:
localctx = MathExprParser.NoiseFuncContext(self, localctx)
self.enterOuterAlt(localctx, 1)
self.state = 1520
self.match(MathExprParser.NOISE)
self.state = 1521
self.match(MathExprParser.LPAREN)
self.state = 1522
self.expr()
self.state = 1525
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1523
self.match(MathExprParser.COMMA)
self.state = 1524
self.expr()
self.state = 1527
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RAND]:
localctx = MathExprParser.RandFuncContext(self, localctx)
self.enterOuterAlt(localctx, 2)
self.state = 1529
self.match(MathExprParser.RAND)
self.state = 1530
self.match(MathExprParser.LPAREN)
self.state = 1531
self.expr()
self.state = 1534
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1532
self.match(MathExprParser.COMMA)
self.state = 1533
self.expr()
self.state = 1536
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.EXPONENTIAL]:
localctx = MathExprParser.ExponentialFuncContext(self, localctx)
self.enterOuterAlt(localctx, 3)
self.state = 1538
self.match(MathExprParser.EXPONENTIAL)
self.state = 1539
self.match(MathExprParser.LPAREN)
self.state = 1540
self.expr()
self.state = 1541
self.match(MathExprParser.COMMA)
self.state = 1542
self.expr()
self.state = 1545
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1543
self.match(MathExprParser.COMMA)
self.state = 1544
self.expr()
self.state = 1547
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BERNOULLI]:
localctx = MathExprParser.BernoulliFuncContext(self, localctx)
self.enterOuterAlt(localctx, 4)
self.state = 1549
self.match(MathExprParser.BERNOULLI)
self.state = 1550
self.match(MathExprParser.LPAREN)
self.state = 1551
self.expr()
self.state = 1552
self.match(MathExprParser.COMMA)
self.state = 1553
self.expr()
self.state = 1556
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1554
self.match(MathExprParser.COMMA)
self.state = 1555
self.expr()
self.state = 1558
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.POISSON]:
localctx = MathExprParser.PoissonFuncContext(self, localctx)
self.enterOuterAlt(localctx, 5)
self.state = 1560
self.match(MathExprParser.POISSON)
self.state = 1561
self.match(MathExprParser.LPAREN)
self.state = 1562
self.expr()
self.state = 1563
self.match(MathExprParser.COMMA)
self.state = 1564
self.expr()
self.state = 1567
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1565
self.match(MathExprParser.COMMA)
self.state = 1566
self.expr()
self.state = 1569
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CAUCHY]:
localctx = MathExprParser.CauchyFuncContext(self, localctx)
self.enterOuterAlt(localctx, 6)
self.state = 1571
self.match(MathExprParser.CAUCHY)
self.state = 1572
self.match(MathExprParser.LPAREN)
self.state = 1573
self.expr()
self.state = 1574
self.match(MathExprParser.COMMA)
self.state = 1575
self.expr()
self.state = 1576
self.match(MathExprParser.COMMA)
self.state = 1577
self.expr()
self.state = 1580
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1578
self.match(MathExprParser.COMMA)
self.state = 1579
self.expr()
self.state = 1582
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LOGNORMAL]:
localctx = MathExprParser.LogNormalFuncContext(self, localctx)
self.enterOuterAlt(localctx, 7)
self.state = 1584
self.match(MathExprParser.LOGNORMAL)
self.state = 1585
self.match(MathExprParser.LPAREN)
self.state = 1586
self.expr()
self.state = 1587
self.match(MathExprParser.COMMA)
self.state = 1588
self.expr()
self.state = 1589
self.match(MathExprParser.COMMA)
self.state = 1590
self.expr()
self.state = 1593
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1591
self.match(MathExprParser.COMMA)
self.state = 1592
self.expr()
self.state = 1595
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GAMMADIST]:
localctx = MathExprParser.GammaDistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 8)
self.state = 1597
self.match(MathExprParser.GAMMADIST)
self.state = 1598
self.match(MathExprParser.LPAREN)
self.state = 1599
self.expr()
self.state = 1600
self.match(MathExprParser.COMMA)
self.state = 1601
self.expr()
self.state = 1602
self.match(MathExprParser.COMMA)
self.state = 1603
self.expr()
self.state = 1606
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1604
self.match(MathExprParser.COMMA)
self.state = 1605
self.expr()
self.state = 1608
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.BETADIST]:
localctx = MathExprParser.BetaDistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 9)
self.state = 1610
self.match(MathExprParser.BETADIST)
self.state = 1611
self.match(MathExprParser.LPAREN)
self.state = 1612
self.expr()
self.state = 1613
self.match(MathExprParser.COMMA)
self.state = 1614
self.expr()
self.state = 1615
self.match(MathExprParser.COMMA)
self.state = 1616
self.expr()
self.state = 1619
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1617
self.match(MathExprParser.COMMA)
self.state = 1618
self.expr()
self.state = 1621
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.LAPLACEDIST]:
localctx = MathExprParser.LaplaceDistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 10)
self.state = 1623
self.match(MathExprParser.LAPLACEDIST)
self.state = 1624
self.match(MathExprParser.LPAREN)
self.state = 1625
self.expr()
self.state = 1626
self.match(MathExprParser.COMMA)
self.state = 1627
self.expr()
self.state = 1628
self.match(MathExprParser.COMMA)
self.state = 1629
self.expr()
self.state = 1632
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1630
self.match(MathExprParser.COMMA)
self.state = 1631
self.expr()
self.state = 1634
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.GUMBELDIST]:
localctx = MathExprParser.GumbelDistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 11)
self.state = 1636
self.match(MathExprParser.GUMBELDIST)
self.state = 1637
self.match(MathExprParser.LPAREN)
self.state = 1638
self.expr()
self.state = 1639
self.match(MathExprParser.COMMA)
self.state = 1640
self.expr()
self.state = 1641
self.match(MathExprParser.COMMA)
self.state = 1642
self.expr()
self.state = 1645
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1643
self.match(MathExprParser.COMMA)
self.state = 1644
self.expr()
self.state = 1647
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.WEIBULLDIST]:
localctx = MathExprParser.WeibullDistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 12)
self.state = 1649
self.match(MathExprParser.WEIBULLDIST)
self.state = 1650
self.match(MathExprParser.LPAREN)
self.state = 1651
self.expr()
self.state = 1652
self.match(MathExprParser.COMMA)
self.state = 1653
self.expr()
self.state = 1654
self.match(MathExprParser.COMMA)
self.state = 1655
self.expr()
self.state = 1658
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1656
self.match(MathExprParser.COMMA)
self.state = 1657
self.expr()
self.state = 1660
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CHI2DIST]:
localctx = MathExprParser.Chi2DistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 13)
self.state = 1662
self.match(MathExprParser.CHI2DIST)
self.state = 1663
self.match(MathExprParser.LPAREN)
self.state = 1664
self.expr()
self.state = 1665
self.match(MathExprParser.COMMA)
self.state = 1666
self.expr()
self.state = 1669
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1667
self.match(MathExprParser.COMMA)
self.state = 1668
self.expr()
self.state = 1671
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.STUDENTTDIST]:
localctx = MathExprParser.StudentTDistFuncContext(self, localctx)
self.enterOuterAlt(localctx, 14)
self.state = 1673
self.match(MathExprParser.STUDENTTDIST)
self.state = 1674
self.match(MathExprParser.LPAREN)
self.state = 1675
self.expr()
self.state = 1676
self.match(MathExprParser.COMMA)
self.state = 1677
self.expr()
self.state = 1680
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1678
self.match(MathExprParser.COMMA)
self.state = 1679
self.expr()
self.state = 1682
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PERLIN]:
localctx = MathExprParser.PerlinFuncContext(self, localctx)
self.enterOuterAlt(localctx, 15)
self.state = 1684
self.match(MathExprParser.PERLIN)
self.state = 1685
self.match(MathExprParser.LPAREN)
self.state = 1686
self.expr()
self.state = 1687
self.match(MathExprParser.COMMA)
self.state = 1688
self.expr()
self.state = 1691
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,92,self._ctx)
if la_ == 1:
self.state = 1689
self.match(MathExprParser.COMMA)
self.state = 1690
self.expr()
self.state = 1695
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,93,self._ctx)
if la_ == 1:
self.state = 1693
self.match(MathExprParser.COMMA)
self.state = 1694
self.expr()
self.state = 1699
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1697
self.match(MathExprParser.COMMA)
self.state = 1698
self.expr()
self.state = 1701
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.CELLULAR]:
localctx = MathExprParser.CellularFuncContext(self, localctx)
self.enterOuterAlt(localctx, 16)
self.state = 1703
self.match(MathExprParser.CELLULAR)
self.state = 1704
self.match(MathExprParser.LPAREN)
self.state = 1705
self.expr()
self.state = 1706
self.match(MathExprParser.COMMA)
self.state = 1707
self.expr()
self.state = 1710
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,95,self._ctx)
if la_ == 1:
self.state = 1708
self.match(MathExprParser.COMMA)
self.state = 1709
self.expr()
self.state = 1714
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,96,self._ctx)
if la_ == 1:
self.state = 1712
self.match(MathExprParser.COMMA)
self.state = 1713
self.expr()
self.state = 1718
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1716
self.match(MathExprParser.COMMA)
self.state = 1717
self.expr()
self.state = 1720
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.PLASMA]:
localctx = MathExprParser.PlasmaFuncContext(self, localctx)
self.enterOuterAlt(localctx, 17)
self.state = 1722
self.match(MathExprParser.PLASMA)
self.state = 1723
self.match(MathExprParser.LPAREN)
self.state = 1724
self.expr()
self.state = 1725
self.match(MathExprParser.COMMA)
self.state = 1726
self.expr()
self.state = 1729
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,98,self._ctx)
if la_ == 1:
self.state = 1727
self.match(MathExprParser.COMMA)
self.state = 1728
self.expr()
self.state = 1733
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,99,self._ctx)
if la_ == 1:
self.state = 1731
self.match(MathExprParser.COMMA)
self.state = 1732
self.expr()
self.state = 1737
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1735
self.match(MathExprParser.COMMA)
self.state = 1736
self.expr()
self.state = 1739
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.RIDGED]:
localctx = MathExprParser.RidgedFuncContext(self, localctx)
self.enterOuterAlt(localctx, 18)
self.state = 1741
self.match(MathExprParser.RIDGED)
self.state = 1742
self.match(MathExprParser.LPAREN)
self.state = 1743
self.expr()
self.state = 1744
self.match(MathExprParser.COMMA)
self.state = 1745
self.expr()
self.state = 1748
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,101,self._ctx)
if la_ == 1:
self.state = 1746
self.match(MathExprParser.COMMA)
self.state = 1747
self.expr()
self.state = 1752
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,102,self._ctx)
if la_ == 1:
self.state = 1750
self.match(MathExprParser.COMMA)
self.state = 1751
self.expr()
self.state = 1756
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1754
self.match(MathExprParser.COMMA)
self.state = 1755
self.expr()
self.state = 1758
self.match(MathExprParser.RPAREN)
pass
elif token in [MathExprParser.DOMAIN_WARP]:
localctx = MathExprParser.DomainWarpFuncContext(self, localctx)
self.enterOuterAlt(localctx, 19)
self.state = 1760
self.match(MathExprParser.DOMAIN_WARP)
self.state = 1761
self.match(MathExprParser.LPAREN)
self.state = 1762
self.expr()
self.state = 1763
self.match(MathExprParser.COMMA)
self.state = 1764
self.expr()
self.state = 1765
self.match(MathExprParser.COMMA)
self.state = 1766
self.expr()
self.state = 1767
self.match(MathExprParser.COMMA)
self.state = 1768
self.expr()
self.state = 1771
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,104,self._ctx)
if la_ == 1:
self.state = 1769
self.match(MathExprParser.COMMA)
self.state = 1770
self.expr()
self.state = 1775
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,105,self._ctx)
if la_ == 1:
self.state = 1773
self.match(MathExprParser.COMMA)
self.state = 1774
self.expr()
self.state = 1779
self._errHandler.sync(self)
la_ = self._interp.adaptivePredict(self._input,106,self._ctx)
if la_ == 1:
self.state = 1777
self.match(MathExprParser.COMMA)
self.state = 1778
self.expr()
self.state = 1783
self._errHandler.sync(self)
_la = self._input.LA(1)
if _la==MathExprParser.COMMA:
self.state = 1781
self.match(MathExprParser.COMMA)
self.state = 1782
self.expr()
self.state = 1785
self.match(MathExprParser.RPAREN)
pass
else:
raise NoViableAltException(self)
except RecognitionException as re:
localctx.exception = re
self._errHandler.reportError(self, re)
self._errHandler.recover(self, re)
finally:
self.exitRule()
return localctx
def sempred(self, localctx:RuleContext, ruleIndex:int, predIndex:int):
if self._predicates == None:
self._predicates = dict()
self._predicates[14] = self.compExpr_sempred
self._predicates[15] = self.addExpr_sempred
self._predicates[16] = self.mulExpr_sempred
self._predicates[17] = self.shiftExpr_sempred
self._predicates[20] = self.indexExpr_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)
def shiftExpr_sempred(self, localctx:ShiftExprContext, predIndex:int):
if predIndex == 11:
return self.precpred(self._ctx, 3)
if predIndex == 12:
return self.precpred(self._ctx, 2)
def indexExpr_sempred(self, localctx:IndexExprContext, predIndex:int):
if predIndex == 13:
return self.precpred(self._ctx, 2)