polserver/lib/EscriptGrammar/EscriptParser.h
Eric Swanson d456cc98eb
Update compiler grammar (#238)
* Update grammar
  - add '=' to grammar so that we can report appropriate errors
  - add elvis ?: operator
  - add foreachIterableExpression to match old compiler (which only allows certain expressions)
  - allow both byref and unused on the same function parameter
  - rename methodCall -> functionCall
  - rename memberCall -> methodCall
  - add named parser rule for functionReference
  - move everything that isn't expression(s) with operators into primary
    - expression is now just the left-recursive rules and prefix operators
  - add named parser rules for struct, dictionary, error, array initialization
  - remove special-case for named parameters with := from function call argument, because it is ambiguous with assignment
  - Moved array access, object member access, and object method calls to navigationSuffix

* Regen grammar
2020-08-21 01:53:42 -07:00

1580 lines
62 KiB
C++

// Generated from lib/EscriptGrammar/EscriptParser.g4 by ANTLR 4.8
#pragma once
#include "antlr4-runtime.h"
namespace EscriptGrammar {
class EscriptParser : public antlr4::Parser {
public:
enum {
IF = 1, THEN = 2, ELSEIF = 3, ENDIF = 4, ELSE = 5, GOTO = 6, RETURN = 7,
TOK_CONST = 8, VAR = 9, DO = 10, DOWHILE = 11, WHILE = 12, ENDWHILE = 13,
EXIT = 14, DECLARE = 15, FUNCTION = 16, ENDFUNCTION = 17, EXPORTED = 18,
USE = 19, INCLUDE = 20, BREAK = 21, CONTINUE = 22, FOR = 23, ENDFOR = 24,
TO = 25, FOREACH = 26, ENDFOREACH = 27, REPEAT = 28, UNTIL = 29, PROGRAM = 30,
ENDPROGRAM = 31, CASE = 32, DEFAULT = 33, ENDCASE = 34, ENUM = 35, ENDENUM = 36,
DOWNTO = 37, STEP = 38, REFERENCE = 39, TOK_OUT = 40, INOUT = 41, BYVAL = 42,
STRING = 43, TOK_LONG = 44, INTEGER = 45, UNSIGNED = 46, SIGNED = 47,
REAL = 48, FLOAT = 49, DOUBLE = 50, AS = 51, IS = 52, AND_A = 53, AND_B = 54,
OR_A = 55, OR_B = 56, BANG_A = 57, BANG_B = 58, BYREF = 59, UNUSED = 60,
TOK_ERROR = 61, HASH = 62, DICTIONARY = 63, STRUCT = 64, ARRAY = 65,
STACK = 66, TOK_IN = 67, DECIMAL_LITERAL = 68, HEX_LITERAL = 69, OCT_LITERAL = 70,
BINARY_LITERAL = 71, FLOAT_LITERAL = 72, HEX_FLOAT_LITERAL = 73, CHAR_LITERAL = 74,
STRING_LITERAL = 75, NULL_LITERAL = 76, LPAREN = 77, RPAREN = 78, LBRACK = 79,
RBRACK = 80, LBRACE = 81, RBRACE = 82, DOT = 83, ARROW = 84, MUL = 85,
DIV = 86, MOD = 87, ADD = 88, SUB = 89, ADD_ASSIGN = 90, SUB_ASSIGN = 91,
MUL_ASSIGN = 92, DIV_ASSIGN = 93, MOD_ASSIGN = 94, LE = 95, LT = 96,
GE = 97, GT = 98, RSHIFT = 99, LSHIFT = 100, BITAND = 101, CARET = 102,
BITOR = 103, NOTEQUAL_A = 104, NOTEQUAL_B = 105, EQUAL_DEPRECATED = 106,
EQUAL = 107, ASSIGN = 108, ADDMEMBER = 109, DELMEMBER = 110, CHKMEMBER = 111,
SEMI = 112, COMMA = 113, TILDE = 114, AT = 115, COLONCOLON = 116, COLON = 117,
INC = 118, DEC = 119, ELVIS = 120, WS = 121, COMMENT = 122, LINE_COMMENT = 123,
IDENTIFIER = 124
};
enum {
RuleCompilationUnit = 0, RuleModuleUnit = 1, RuleModuleDeclarationStatement = 2,
RuleModuleFunctionDeclaration = 3, RuleModuleFunctionParameterList = 4,
RuleModuleFunctionParameter = 5, RuleTopLevelDeclaration = 6, RuleFunctionDeclaration = 7,
RuleStringIdentifier = 8, RuleUseDeclaration = 9, RuleIncludeDeclaration = 10,
RuleProgramDeclaration = 11, RuleStatement = 12, RuleStatementLabel = 13,
RuleIfStatement = 14, RuleGotoStatement = 15, RuleReturnStatement = 16,
RuleConstStatement = 17, RuleVarStatement = 18, RuleDoStatement = 19,
RuleWhileStatement = 20, RuleExitStatement = 21, RuleDeclareStatement = 22,
RuleBreakStatement = 23, RuleContinueStatement = 24, RuleForStatement = 25,
RuleForeachIterableExpression = 26, RuleForeachStatement = 27, RuleRepeatStatement = 28,
RuleCaseStatement = 29, RuleEnumStatement = 30, RuleBlock = 31, RuleVariableDeclarationInitializer = 32,
RuleEnumList = 33, RuleEnumListEntry = 34, RuleSwitchBlockStatementGroup = 35,
RuleSwitchLabel = 36, RuleForGroup = 37, RuleBasicForStatement = 38,
RuleCstyleForStatement = 39, RuleIdentifierList = 40, RuleVariableDeclarationList = 41,
RuleVariableDeclaration = 42, RuleProgramParameters = 43, RuleProgramParameterList = 44,
RuleProgramParameter = 45, RuleFunctionParameters = 46, RuleFunctionParameterList = 47,
RuleFunctionParameter = 48, RuleScopedFunctionCall = 49, RuleFunctionReference = 50,
RuleExpression = 51, RulePrimary = 52, RuleExplicitArrayInitializer = 53,
RuleExplicitStructInitializer = 54, RuleExplicitDictInitializer = 55,
RuleExplicitErrorInitializer = 56, RuleBareArrayInitializer = 57, RuleParExpression = 58,
RuleExpressionList = 59, RuleExpressionSuffix = 60, RuleIndexingSuffix = 61,
RuleNavigationSuffix = 62, RuleMethodCallSuffix = 63, RuleFunctionCall = 64,
RuleStructInitializerExpression = 65, RuleStructInitializerExpressionList = 66,
RuleStructInitializer = 67, RuleDictInitializerExpression = 68, RuleDictInitializerExpressionList = 69,
RuleDictInitializer = 70, RuleArrayInitializer = 71, RuleLiteral = 72,
RuleIntegerLiteral = 73, RuleFloatLiteral = 74
};
EscriptParser(antlr4::TokenStream *input);
~EscriptParser();
virtual std::string getGrammarFileName() const override;
virtual const antlr4::atn::ATN& getATN() const override { return _atn; };
virtual const std::vector<std::string>& getTokenNames() const override { return _tokenNames; }; // deprecated: use vocabulary instead.
virtual const std::vector<std::string>& getRuleNames() const override;
virtual antlr4::dfa::Vocabulary& getVocabulary() const override;
class CompilationUnitContext;
class ModuleUnitContext;
class ModuleDeclarationStatementContext;
class ModuleFunctionDeclarationContext;
class ModuleFunctionParameterListContext;
class ModuleFunctionParameterContext;
class TopLevelDeclarationContext;
class FunctionDeclarationContext;
class StringIdentifierContext;
class UseDeclarationContext;
class IncludeDeclarationContext;
class ProgramDeclarationContext;
class StatementContext;
class StatementLabelContext;
class IfStatementContext;
class GotoStatementContext;
class ReturnStatementContext;
class ConstStatementContext;
class VarStatementContext;
class DoStatementContext;
class WhileStatementContext;
class ExitStatementContext;
class DeclareStatementContext;
class BreakStatementContext;
class ContinueStatementContext;
class ForStatementContext;
class ForeachIterableExpressionContext;
class ForeachStatementContext;
class RepeatStatementContext;
class CaseStatementContext;
class EnumStatementContext;
class BlockContext;
class VariableDeclarationInitializerContext;
class EnumListContext;
class EnumListEntryContext;
class SwitchBlockStatementGroupContext;
class SwitchLabelContext;
class ForGroupContext;
class BasicForStatementContext;
class CstyleForStatementContext;
class IdentifierListContext;
class VariableDeclarationListContext;
class VariableDeclarationContext;
class ProgramParametersContext;
class ProgramParameterListContext;
class ProgramParameterContext;
class FunctionParametersContext;
class FunctionParameterListContext;
class FunctionParameterContext;
class ScopedFunctionCallContext;
class FunctionReferenceContext;
class ExpressionContext;
class PrimaryContext;
class ExplicitArrayInitializerContext;
class ExplicitStructInitializerContext;
class ExplicitDictInitializerContext;
class ExplicitErrorInitializerContext;
class BareArrayInitializerContext;
class ParExpressionContext;
class ExpressionListContext;
class ExpressionSuffixContext;
class IndexingSuffixContext;
class NavigationSuffixContext;
class MethodCallSuffixContext;
class FunctionCallContext;
class StructInitializerExpressionContext;
class StructInitializerExpressionListContext;
class StructInitializerContext;
class DictInitializerExpressionContext;
class DictInitializerExpressionListContext;
class DictInitializerContext;
class ArrayInitializerContext;
class LiteralContext;
class IntegerLiteralContext;
class FloatLiteralContext;
class CompilationUnitContext : public antlr4::ParserRuleContext {
public:
CompilationUnitContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *EOF();
std::vector<TopLevelDeclarationContext *> topLevelDeclaration();
TopLevelDeclarationContext* topLevelDeclaration(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
CompilationUnitContext* compilationUnit();
class ModuleUnitContext : public antlr4::ParserRuleContext {
public:
ModuleUnitContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *EOF();
std::vector<ModuleDeclarationStatementContext *> moduleDeclarationStatement();
ModuleDeclarationStatementContext* moduleDeclarationStatement(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ModuleUnitContext* moduleUnit();
class ModuleDeclarationStatementContext : public antlr4::ParserRuleContext {
public:
ModuleDeclarationStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
ModuleFunctionDeclarationContext *moduleFunctionDeclaration();
ConstStatementContext *constStatement();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ModuleDeclarationStatementContext* moduleDeclarationStatement();
class ModuleFunctionDeclarationContext : public antlr4::ParserRuleContext {
public:
ModuleFunctionDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *LPAREN();
antlr4::tree::TerminalNode *RPAREN();
antlr4::tree::TerminalNode *SEMI();
ModuleFunctionParameterListContext *moduleFunctionParameterList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ModuleFunctionDeclarationContext* moduleFunctionDeclaration();
class ModuleFunctionParameterListContext : public antlr4::ParserRuleContext {
public:
ModuleFunctionParameterListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<ModuleFunctionParameterContext *> moduleFunctionParameter();
ModuleFunctionParameterContext* moduleFunctionParameter(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ModuleFunctionParameterListContext* moduleFunctionParameterList();
class ModuleFunctionParameterContext : public antlr4::ParserRuleContext {
public:
ModuleFunctionParameterContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *ASSIGN();
ExpressionContext *expression();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ModuleFunctionParameterContext* moduleFunctionParameter();
class TopLevelDeclarationContext : public antlr4::ParserRuleContext {
public:
TopLevelDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
UseDeclarationContext *useDeclaration();
IncludeDeclarationContext *includeDeclaration();
ProgramDeclarationContext *programDeclaration();
FunctionDeclarationContext *functionDeclaration();
StatementContext *statement();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
TopLevelDeclarationContext* topLevelDeclaration();
class FunctionDeclarationContext : public antlr4::ParserRuleContext {
public:
FunctionDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *FUNCTION();
antlr4::tree::TerminalNode *IDENTIFIER();
FunctionParametersContext *functionParameters();
BlockContext *block();
antlr4::tree::TerminalNode *ENDFUNCTION();
antlr4::tree::TerminalNode *EXPORTED();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FunctionDeclarationContext* functionDeclaration();
class StringIdentifierContext : public antlr4::ParserRuleContext {
public:
StringIdentifierContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *STRING_LITERAL();
antlr4::tree::TerminalNode *IDENTIFIER();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
StringIdentifierContext* stringIdentifier();
class UseDeclarationContext : public antlr4::ParserRuleContext {
public:
UseDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *USE();
StringIdentifierContext *stringIdentifier();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
UseDeclarationContext* useDeclaration();
class IncludeDeclarationContext : public antlr4::ParserRuleContext {
public:
IncludeDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *INCLUDE();
StringIdentifierContext *stringIdentifier();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
IncludeDeclarationContext* includeDeclaration();
class ProgramDeclarationContext : public antlr4::ParserRuleContext {
public:
ProgramDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *PROGRAM();
antlr4::tree::TerminalNode *IDENTIFIER();
ProgramParametersContext *programParameters();
BlockContext *block();
antlr4::tree::TerminalNode *ENDPROGRAM();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ProgramDeclarationContext* programDeclaration();
class StatementContext : public antlr4::ParserRuleContext {
public:
EscriptParser::ExpressionContext *statementExpression = nullptr;;
StatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
IfStatementContext *ifStatement();
GotoStatementContext *gotoStatement();
ReturnStatementContext *returnStatement();
ConstStatementContext *constStatement();
VarStatementContext *varStatement();
DoStatementContext *doStatement();
WhileStatementContext *whileStatement();
ExitStatementContext *exitStatement();
DeclareStatementContext *declareStatement();
BreakStatementContext *breakStatement();
ContinueStatementContext *continueStatement();
ForStatementContext *forStatement();
ForeachStatementContext *foreachStatement();
RepeatStatementContext *repeatStatement();
CaseStatementContext *caseStatement();
EnumStatementContext *enumStatement();
antlr4::tree::TerminalNode *SEMI();
ExpressionContext *expression();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
StatementContext* statement();
class StatementLabelContext : public antlr4::ParserRuleContext {
public:
StatementLabelContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *COLON();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
StatementLabelContext* statementLabel();
class IfStatementContext : public antlr4::ParserRuleContext {
public:
IfStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IF();
std::vector<ParExpressionContext *> parExpression();
ParExpressionContext* parExpression(size_t i);
std::vector<BlockContext *> block();
BlockContext* block(size_t i);
antlr4::tree::TerminalNode *ENDIF();
antlr4::tree::TerminalNode *THEN();
std::vector<antlr4::tree::TerminalNode *> ELSEIF();
antlr4::tree::TerminalNode* ELSEIF(size_t i);
antlr4::tree::TerminalNode *ELSE();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
IfStatementContext* ifStatement();
class GotoStatementContext : public antlr4::ParserRuleContext {
public:
GotoStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *GOTO();
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
GotoStatementContext* gotoStatement();
class ReturnStatementContext : public antlr4::ParserRuleContext {
public:
ReturnStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *RETURN();
antlr4::tree::TerminalNode *SEMI();
ExpressionContext *expression();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ReturnStatementContext* returnStatement();
class ConstStatementContext : public antlr4::ParserRuleContext {
public:
ConstStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *TOK_CONST();
VariableDeclarationContext *variableDeclaration();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ConstStatementContext* constStatement();
class VarStatementContext : public antlr4::ParserRuleContext {
public:
VarStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *VAR();
VariableDeclarationListContext *variableDeclarationList();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
VarStatementContext* varStatement();
class DoStatementContext : public antlr4::ParserRuleContext {
public:
DoStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *DO();
BlockContext *block();
antlr4::tree::TerminalNode *DOWHILE();
ParExpressionContext *parExpression();
antlr4::tree::TerminalNode *SEMI();
StatementLabelContext *statementLabel();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
DoStatementContext* doStatement();
class WhileStatementContext : public antlr4::ParserRuleContext {
public:
WhileStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *WHILE();
ParExpressionContext *parExpression();
BlockContext *block();
antlr4::tree::TerminalNode *ENDWHILE();
StatementLabelContext *statementLabel();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
WhileStatementContext* whileStatement();
class ExitStatementContext : public antlr4::ParserRuleContext {
public:
ExitStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *EXIT();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExitStatementContext* exitStatement();
class DeclareStatementContext : public antlr4::ParserRuleContext {
public:
DeclareStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *DECLARE();
antlr4::tree::TerminalNode *FUNCTION();
IdentifierListContext *identifierList();
antlr4::tree::TerminalNode *SEMI();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
DeclareStatementContext* declareStatement();
class BreakStatementContext : public antlr4::ParserRuleContext {
public:
BreakStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *BREAK();
antlr4::tree::TerminalNode *SEMI();
antlr4::tree::TerminalNode *IDENTIFIER();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
BreakStatementContext* breakStatement();
class ContinueStatementContext : public antlr4::ParserRuleContext {
public:
ContinueStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *CONTINUE();
antlr4::tree::TerminalNode *SEMI();
antlr4::tree::TerminalNode *IDENTIFIER();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ContinueStatementContext* continueStatement();
class ForStatementContext : public antlr4::ParserRuleContext {
public:
ForStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *FOR();
ForGroupContext *forGroup();
antlr4::tree::TerminalNode *ENDFOR();
StatementLabelContext *statementLabel();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ForStatementContext* forStatement();
class ForeachIterableExpressionContext : public antlr4::ParserRuleContext {
public:
ForeachIterableExpressionContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
FunctionCallContext *functionCall();
ScopedFunctionCallContext *scopedFunctionCall();
antlr4::tree::TerminalNode *IDENTIFIER();
ParExpressionContext *parExpression();
BareArrayInitializerContext *bareArrayInitializer();
ExplicitArrayInitializerContext *explicitArrayInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ForeachIterableExpressionContext* foreachIterableExpression();
class ForeachStatementContext : public antlr4::ParserRuleContext {
public:
ForeachStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *FOREACH();
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *TOK_IN();
ForeachIterableExpressionContext *foreachIterableExpression();
BlockContext *block();
antlr4::tree::TerminalNode *ENDFOREACH();
StatementLabelContext *statementLabel();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ForeachStatementContext* foreachStatement();
class RepeatStatementContext : public antlr4::ParserRuleContext {
public:
RepeatStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *REPEAT();
BlockContext *block();
antlr4::tree::TerminalNode *UNTIL();
ExpressionContext *expression();
antlr4::tree::TerminalNode *SEMI();
StatementLabelContext *statementLabel();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
RepeatStatementContext* repeatStatement();
class CaseStatementContext : public antlr4::ParserRuleContext {
public:
CaseStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *CASE();
antlr4::tree::TerminalNode *LPAREN();
ExpressionContext *expression();
antlr4::tree::TerminalNode *RPAREN();
antlr4::tree::TerminalNode *ENDCASE();
StatementLabelContext *statementLabel();
std::vector<SwitchBlockStatementGroupContext *> switchBlockStatementGroup();
SwitchBlockStatementGroupContext* switchBlockStatementGroup(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
CaseStatementContext* caseStatement();
class EnumStatementContext : public antlr4::ParserRuleContext {
public:
EnumStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *ENUM();
antlr4::tree::TerminalNode *IDENTIFIER();
EnumListContext *enumList();
antlr4::tree::TerminalNode *ENDENUM();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
EnumStatementContext* enumStatement();
class BlockContext : public antlr4::ParserRuleContext {
public:
BlockContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<StatementContext *> statement();
StatementContext* statement(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
BlockContext* block();
class VariableDeclarationInitializerContext : public antlr4::ParserRuleContext {
public:
VariableDeclarationInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *ASSIGN();
ExpressionContext *expression();
antlr4::tree::TerminalNode *ARRAY();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
VariableDeclarationInitializerContext* variableDeclarationInitializer();
class EnumListContext : public antlr4::ParserRuleContext {
public:
EnumListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<EnumListEntryContext *> enumListEntry();
EnumListEntryContext* enumListEntry(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
EnumListContext* enumList();
class EnumListEntryContext : public antlr4::ParserRuleContext {
public:
EnumListEntryContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *ASSIGN();
ExpressionContext *expression();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
EnumListEntryContext* enumListEntry();
class SwitchBlockStatementGroupContext : public antlr4::ParserRuleContext {
public:
SwitchBlockStatementGroupContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
BlockContext *block();
std::vector<SwitchLabelContext *> switchLabel();
SwitchLabelContext* switchLabel(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
SwitchBlockStatementGroupContext* switchBlockStatementGroup();
class SwitchLabelContext : public antlr4::ParserRuleContext {
public:
SwitchLabelContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *COLON();
IntegerLiteralContext *integerLiteral();
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *STRING_LITERAL();
antlr4::tree::TerminalNode *DEFAULT();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
SwitchLabelContext* switchLabel();
class ForGroupContext : public antlr4::ParserRuleContext {
public:
ForGroupContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
CstyleForStatementContext *cstyleForStatement();
BasicForStatementContext *basicForStatement();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ForGroupContext* forGroup();
class BasicForStatementContext : public antlr4::ParserRuleContext {
public:
BasicForStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *ASSIGN();
std::vector<ExpressionContext *> expression();
ExpressionContext* expression(size_t i);
antlr4::tree::TerminalNode *TO();
BlockContext *block();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
BasicForStatementContext* basicForStatement();
class CstyleForStatementContext : public antlr4::ParserRuleContext {
public:
CstyleForStatementContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LPAREN();
std::vector<ExpressionContext *> expression();
ExpressionContext* expression(size_t i);
std::vector<antlr4::tree::TerminalNode *> SEMI();
antlr4::tree::TerminalNode* SEMI(size_t i);
antlr4::tree::TerminalNode *RPAREN();
BlockContext *block();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
CstyleForStatementContext* cstyleForStatement();
class IdentifierListContext : public antlr4::ParserRuleContext {
public:
IdentifierListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *COMMA();
IdentifierListContext *identifierList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
IdentifierListContext* identifierList();
class VariableDeclarationListContext : public antlr4::ParserRuleContext {
public:
VariableDeclarationListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<VariableDeclarationContext *> variableDeclaration();
VariableDeclarationContext* variableDeclaration(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
VariableDeclarationListContext* variableDeclarationList();
class VariableDeclarationContext : public antlr4::ParserRuleContext {
public:
VariableDeclarationContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
VariableDeclarationInitializerContext *variableDeclarationInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
VariableDeclarationContext* variableDeclaration();
class ProgramParametersContext : public antlr4::ParserRuleContext {
public:
ProgramParametersContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LPAREN();
antlr4::tree::TerminalNode *RPAREN();
ProgramParameterListContext *programParameterList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ProgramParametersContext* programParameters();
class ProgramParameterListContext : public antlr4::ParserRuleContext {
public:
ProgramParameterListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<ProgramParameterContext *> programParameter();
ProgramParameterContext* programParameter(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ProgramParameterListContext* programParameterList();
class ProgramParameterContext : public antlr4::ParserRuleContext {
public:
ProgramParameterContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *UNUSED();
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *ASSIGN();
ExpressionContext *expression();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ProgramParameterContext* programParameter();
class FunctionParametersContext : public antlr4::ParserRuleContext {
public:
FunctionParametersContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LPAREN();
antlr4::tree::TerminalNode *RPAREN();
FunctionParameterListContext *functionParameterList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FunctionParametersContext* functionParameters();
class FunctionParameterListContext : public antlr4::ParserRuleContext {
public:
FunctionParameterListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<FunctionParameterContext *> functionParameter();
FunctionParameterContext* functionParameter(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FunctionParameterListContext* functionParameterList();
class FunctionParameterContext : public antlr4::ParserRuleContext {
public:
FunctionParameterContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *BYREF();
antlr4::tree::TerminalNode *UNUSED();
antlr4::tree::TerminalNode *ASSIGN();
ExpressionContext *expression();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FunctionParameterContext* functionParameter();
class ScopedFunctionCallContext : public antlr4::ParserRuleContext {
public:
ScopedFunctionCallContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *COLONCOLON();
FunctionCallContext *functionCall();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ScopedFunctionCallContext* scopedFunctionCall();
class FunctionReferenceContext : public antlr4::ParserRuleContext {
public:
FunctionReferenceContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *AT();
antlr4::tree::TerminalNode *IDENTIFIER();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FunctionReferenceContext* functionReference();
class ExpressionContext : public antlr4::ParserRuleContext {
public:
antlr4::Token *prefix = nullptr;;
antlr4::Token *bop = nullptr;;
antlr4::Token *postfix = nullptr;;
ExpressionContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
PrimaryContext *primary();
std::vector<ExpressionContext *> expression();
ExpressionContext* expression(size_t i);
antlr4::tree::TerminalNode *ADD();
antlr4::tree::TerminalNode *SUB();
antlr4::tree::TerminalNode *INC();
antlr4::tree::TerminalNode *DEC();
antlr4::tree::TerminalNode *TILDE();
antlr4::tree::TerminalNode *BANG_A();
antlr4::tree::TerminalNode *BANG_B();
antlr4::tree::TerminalNode *MUL();
antlr4::tree::TerminalNode *DIV();
antlr4::tree::TerminalNode *MOD();
antlr4::tree::TerminalNode *LSHIFT();
antlr4::tree::TerminalNode *RSHIFT();
antlr4::tree::TerminalNode *ELVIS();
antlr4::tree::TerminalNode *LE();
antlr4::tree::TerminalNode *GE();
antlr4::tree::TerminalNode *GT();
antlr4::tree::TerminalNode *LT();
antlr4::tree::TerminalNode *EQUAL_DEPRECATED();
antlr4::tree::TerminalNode *EQUAL();
antlr4::tree::TerminalNode *NOTEQUAL_B();
antlr4::tree::TerminalNode *NOTEQUAL_A();
antlr4::tree::TerminalNode *BITAND();
antlr4::tree::TerminalNode *CARET();
antlr4::tree::TerminalNode *BITOR();
antlr4::tree::TerminalNode *TOK_IN();
antlr4::tree::TerminalNode *AND_A();
antlr4::tree::TerminalNode *AND_B();
antlr4::tree::TerminalNode *OR_A();
antlr4::tree::TerminalNode *OR_B();
antlr4::tree::TerminalNode *ADDMEMBER();
antlr4::tree::TerminalNode *DELMEMBER();
antlr4::tree::TerminalNode *CHKMEMBER();
antlr4::tree::TerminalNode *ASSIGN();
antlr4::tree::TerminalNode *ADD_ASSIGN();
antlr4::tree::TerminalNode *SUB_ASSIGN();
antlr4::tree::TerminalNode *MUL_ASSIGN();
antlr4::tree::TerminalNode *DIV_ASSIGN();
antlr4::tree::TerminalNode *MOD_ASSIGN();
ExpressionSuffixContext *expressionSuffix();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExpressionContext* expression();
ExpressionContext* expression(int precedence);
class PrimaryContext : public antlr4::ParserRuleContext {
public:
PrimaryContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
LiteralContext *literal();
ParExpressionContext *parExpression();
FunctionCallContext *functionCall();
ScopedFunctionCallContext *scopedFunctionCall();
antlr4::tree::TerminalNode *IDENTIFIER();
FunctionReferenceContext *functionReference();
ExplicitArrayInitializerContext *explicitArrayInitializer();
ExplicitStructInitializerContext *explicitStructInitializer();
ExplicitDictInitializerContext *explicitDictInitializer();
ExplicitErrorInitializerContext *explicitErrorInitializer();
BareArrayInitializerContext *bareArrayInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
PrimaryContext* primary();
class ExplicitArrayInitializerContext : public antlr4::ParserRuleContext {
public:
ExplicitArrayInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *ARRAY();
ArrayInitializerContext *arrayInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExplicitArrayInitializerContext* explicitArrayInitializer();
class ExplicitStructInitializerContext : public antlr4::ParserRuleContext {
public:
ExplicitStructInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *STRUCT();
StructInitializerContext *structInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExplicitStructInitializerContext* explicitStructInitializer();
class ExplicitDictInitializerContext : public antlr4::ParserRuleContext {
public:
ExplicitDictInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *DICTIONARY();
DictInitializerContext *dictInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExplicitDictInitializerContext* explicitDictInitializer();
class ExplicitErrorInitializerContext : public antlr4::ParserRuleContext {
public:
ExplicitErrorInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *TOK_ERROR();
StructInitializerContext *structInitializer();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExplicitErrorInitializerContext* explicitErrorInitializer();
class BareArrayInitializerContext : public antlr4::ParserRuleContext {
public:
BareArrayInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LBRACE();
antlr4::tree::TerminalNode *RBRACE();
ExpressionListContext *expressionList();
antlr4::tree::TerminalNode *COMMA();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
BareArrayInitializerContext* bareArrayInitializer();
class ParExpressionContext : public antlr4::ParserRuleContext {
public:
ParExpressionContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LPAREN();
ExpressionContext *expression();
antlr4::tree::TerminalNode *RPAREN();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ParExpressionContext* parExpression();
class ExpressionListContext : public antlr4::ParserRuleContext {
public:
ExpressionListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<ExpressionContext *> expression();
ExpressionContext* expression(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExpressionListContext* expressionList();
class ExpressionSuffixContext : public antlr4::ParserRuleContext {
public:
ExpressionSuffixContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
IndexingSuffixContext *indexingSuffix();
MethodCallSuffixContext *methodCallSuffix();
NavigationSuffixContext *navigationSuffix();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ExpressionSuffixContext* expressionSuffix();
class IndexingSuffixContext : public antlr4::ParserRuleContext {
public:
IndexingSuffixContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LBRACK();
ExpressionListContext *expressionList();
antlr4::tree::TerminalNode *RBRACK();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
IndexingSuffixContext* indexingSuffix();
class NavigationSuffixContext : public antlr4::ParserRuleContext {
public:
NavigationSuffixContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *DOT();
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *STRING_LITERAL();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
NavigationSuffixContext* navigationSuffix();
class MethodCallSuffixContext : public antlr4::ParserRuleContext {
public:
MethodCallSuffixContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *DOT();
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *LPAREN();
antlr4::tree::TerminalNode *RPAREN();
ExpressionListContext *expressionList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
MethodCallSuffixContext* methodCallSuffix();
class FunctionCallContext : public antlr4::ParserRuleContext {
public:
FunctionCallContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *LPAREN();
antlr4::tree::TerminalNode *RPAREN();
ExpressionListContext *expressionList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FunctionCallContext* functionCall();
class StructInitializerExpressionContext : public antlr4::ParserRuleContext {
public:
StructInitializerExpressionContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *IDENTIFIER();
antlr4::tree::TerminalNode *ASSIGN();
ExpressionContext *expression();
antlr4::tree::TerminalNode *STRING_LITERAL();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
StructInitializerExpressionContext* structInitializerExpression();
class StructInitializerExpressionListContext : public antlr4::ParserRuleContext {
public:
StructInitializerExpressionListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<StructInitializerExpressionContext *> structInitializerExpression();
StructInitializerExpressionContext* structInitializerExpression(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
StructInitializerExpressionListContext* structInitializerExpressionList();
class StructInitializerContext : public antlr4::ParserRuleContext {
public:
StructInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LBRACE();
antlr4::tree::TerminalNode *RBRACE();
StructInitializerExpressionListContext *structInitializerExpressionList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
StructInitializerContext* structInitializer();
class DictInitializerExpressionContext : public antlr4::ParserRuleContext {
public:
DictInitializerExpressionContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<ExpressionContext *> expression();
ExpressionContext* expression(size_t i);
antlr4::tree::TerminalNode *ARROW();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
DictInitializerExpressionContext* dictInitializerExpression();
class DictInitializerExpressionListContext : public antlr4::ParserRuleContext {
public:
DictInitializerExpressionListContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
std::vector<DictInitializerExpressionContext *> dictInitializerExpression();
DictInitializerExpressionContext* dictInitializerExpression(size_t i);
std::vector<antlr4::tree::TerminalNode *> COMMA();
antlr4::tree::TerminalNode* COMMA(size_t i);
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
DictInitializerExpressionListContext* dictInitializerExpressionList();
class DictInitializerContext : public antlr4::ParserRuleContext {
public:
DictInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LBRACE();
antlr4::tree::TerminalNode *RBRACE();
DictInitializerExpressionListContext *dictInitializerExpressionList();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
DictInitializerContext* dictInitializer();
class ArrayInitializerContext : public antlr4::ParserRuleContext {
public:
ArrayInitializerContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *LBRACE();
antlr4::tree::TerminalNode *RBRACE();
ExpressionListContext *expressionList();
antlr4::tree::TerminalNode *LPAREN();
antlr4::tree::TerminalNode *RPAREN();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
ArrayInitializerContext* arrayInitializer();
class LiteralContext : public antlr4::ParserRuleContext {
public:
LiteralContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
IntegerLiteralContext *integerLiteral();
FloatLiteralContext *floatLiteral();
antlr4::tree::TerminalNode *CHAR_LITERAL();
antlr4::tree::TerminalNode *STRING_LITERAL();
antlr4::tree::TerminalNode *NULL_LITERAL();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
LiteralContext* literal();
class IntegerLiteralContext : public antlr4::ParserRuleContext {
public:
IntegerLiteralContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *DECIMAL_LITERAL();
antlr4::tree::TerminalNode *HEX_LITERAL();
antlr4::tree::TerminalNode *OCT_LITERAL();
antlr4::tree::TerminalNode *BINARY_LITERAL();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
IntegerLiteralContext* integerLiteral();
class FloatLiteralContext : public antlr4::ParserRuleContext {
public:
FloatLiteralContext(antlr4::ParserRuleContext *parent, size_t invokingState);
virtual size_t getRuleIndex() const override;
antlr4::tree::TerminalNode *FLOAT_LITERAL();
antlr4::tree::TerminalNode *HEX_FLOAT_LITERAL();
virtual void enterRule(antlr4::tree::ParseTreeListener *listener) override;
virtual void exitRule(antlr4::tree::ParseTreeListener *listener) override;
virtual antlrcpp::Any accept(antlr4::tree::ParseTreeVisitor *visitor) override;
};
FloatLiteralContext* floatLiteral();
virtual bool sempred(antlr4::RuleContext *_localctx, size_t ruleIndex, size_t predicateIndex) override;
bool expressionSempred(ExpressionContext *_localctx, size_t predicateIndex);
private:
static std::vector<antlr4::dfa::DFA> _decisionToDFA;
static antlr4::atn::PredictionContextCache _sharedContextCache;
static std::vector<std::string> _ruleNames;
static std::vector<std::string> _tokenNames;
static std::vector<std::string> _literalNames;
static std::vector<std::string> _symbolicNames;
static antlr4::dfa::Vocabulary _vocabulary;
static antlr4::atn::ATN _atn;
static std::vector<uint16_t> _serializedATN;
struct Initializer {
Initializer();
};
static Initializer _init;
};
} // namespace EscriptGrammar