Files
wyst/parser/wyst_parser.go
T
2024-08-21 19:47:08 +02:00

3090 lines
70 KiB
Go

// Code generated from Wyst.g4 by ANTLR 4.13.2. DO NOT EDIT.
package parser // Wyst
import (
"fmt"
"strconv"
"sync"
"github.com/antlr4-go/antlr/v4"
)
// Suppress unused import errors
var _ = fmt.Printf
var _ = strconv.Itoa
var _ = sync.Once{}
type WystParser struct {
*antlr.BaseParser
}
var WystParserStaticData struct {
once sync.Once
serializedATN []int32
LiteralNames []string
SymbolicNames []string
RuleNames []string
PredictionContextCache *antlr.PredictionContextCache
atn *antlr.ATN
decisionToDFA []*antlr.DFA
}
func wystParserInit() {
staticData := &WystParserStaticData
staticData.LiteralNames = []string{
"", "'('", "','", "')'", "'{'", "';'", "'}'", "'='", "'.'", "'struct'",
"'namespace'", "'include'", "'use'",
}
staticData.SymbolicNames = []string{
"", "", "", "", "", "", "", "", "", "", "", "", "", "WS", "NUMBER",
"HEX", "IDENTIFIER", "MATH", "STRING",
}
staticData.RuleNames = []string{
"round_def", "enum_curly", "round_call", "fn_call", "func_def", "var_def",
"var_def_set", "call_tree", "struct_def", "namespace", "import_statement",
"use_statement", "expr", "code_block", "top",
}
staticData.PredictionContextCache = antlr.NewPredictionContextCache()
staticData.serializedATN = []int32{
4, 1, 18, 171, 2, 0, 7, 0, 2, 1, 7, 1, 2, 2, 7, 2, 2, 3, 7, 3, 2, 4, 7,
4, 2, 5, 7, 5, 2, 6, 7, 6, 2, 7, 7, 7, 2, 8, 7, 8, 2, 9, 7, 9, 2, 10, 7,
10, 2, 11, 7, 11, 2, 12, 7, 12, 2, 13, 7, 13, 2, 14, 7, 14, 1, 0, 1, 0,
1, 0, 1, 0, 5, 0, 35, 8, 0, 10, 0, 12, 0, 38, 9, 0, 1, 0, 3, 0, 41, 8,
0, 3, 0, 43, 8, 0, 1, 0, 1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 5, 1, 51, 8, 1,
10, 1, 12, 1, 54, 9, 1, 1, 1, 1, 1, 1, 2, 1, 2, 1, 2, 1, 2, 5, 2, 62, 8,
2, 10, 2, 12, 2, 65, 9, 2, 1, 2, 3, 2, 68, 8, 2, 3, 2, 70, 8, 2, 1, 2,
1, 2, 1, 3, 1, 3, 1, 3, 1, 4, 1, 4, 1, 4, 1, 4, 1, 4, 1, 5, 1, 5, 1, 5,
1, 6, 1, 6, 1, 6, 1, 6, 1, 7, 1, 7, 3, 7, 91, 8, 7, 1, 7, 1, 7, 1, 7, 3,
7, 96, 8, 7, 5, 7, 98, 8, 7, 10, 7, 12, 7, 101, 9, 7, 1, 8, 1, 8, 1, 8,
1, 8, 1, 9, 1, 9, 1, 9, 1, 9, 1, 9, 3, 9, 112, 8, 9, 1, 9, 1, 9, 1, 9,
5, 9, 117, 8, 9, 10, 9, 12, 9, 120, 9, 9, 1, 9, 1, 9, 1, 10, 1, 10, 1,
10, 1, 10, 1, 11, 1, 11, 1, 11, 1, 11, 1, 12, 1, 12, 1, 12, 1, 12, 1, 12,
3, 12, 137, 8, 12, 1, 12, 1, 12, 5, 12, 141, 8, 12, 10, 12, 12, 12, 144,
9, 12, 1, 13, 1, 13, 1, 13, 1, 13, 3, 13, 150, 8, 13, 1, 13, 1, 13, 5,
13, 154, 8, 13, 10, 13, 12, 13, 157, 9, 13, 1, 13, 1, 13, 1, 14, 1, 14,
1, 14, 1, 14, 1, 14, 5, 14, 166, 8, 14, 10, 14, 12, 14, 169, 9, 14, 1,
14, 0, 0, 15, 0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24, 26, 28, 0,
0, 181, 0, 30, 1, 0, 0, 0, 2, 46, 1, 0, 0, 0, 4, 57, 1, 0, 0, 0, 6, 73,
1, 0, 0, 0, 8, 76, 1, 0, 0, 0, 10, 81, 1, 0, 0, 0, 12, 84, 1, 0, 0, 0,
14, 90, 1, 0, 0, 0, 16, 102, 1, 0, 0, 0, 18, 106, 1, 0, 0, 0, 20, 123,
1, 0, 0, 0, 22, 127, 1, 0, 0, 0, 24, 136, 1, 0, 0, 0, 26, 145, 1, 0, 0,
0, 28, 167, 1, 0, 0, 0, 30, 42, 5, 1, 0, 0, 31, 36, 3, 10, 5, 0, 32, 33,
5, 2, 0, 0, 33, 35, 3, 10, 5, 0, 34, 32, 1, 0, 0, 0, 35, 38, 1, 0, 0, 0,
36, 34, 1, 0, 0, 0, 36, 37, 1, 0, 0, 0, 37, 40, 1, 0, 0, 0, 38, 36, 1,
0, 0, 0, 39, 41, 5, 2, 0, 0, 40, 39, 1, 0, 0, 0, 40, 41, 1, 0, 0, 0, 41,
43, 1, 0, 0, 0, 42, 31, 1, 0, 0, 0, 42, 43, 1, 0, 0, 0, 43, 44, 1, 0, 0,
0, 44, 45, 5, 3, 0, 0, 45, 1, 1, 0, 0, 0, 46, 52, 5, 4, 0, 0, 47, 48, 3,
10, 5, 0, 48, 49, 5, 5, 0, 0, 49, 51, 1, 0, 0, 0, 50, 47, 1, 0, 0, 0, 51,
54, 1, 0, 0, 0, 52, 50, 1, 0, 0, 0, 52, 53, 1, 0, 0, 0, 53, 55, 1, 0, 0,
0, 54, 52, 1, 0, 0, 0, 55, 56, 5, 6, 0, 0, 56, 3, 1, 0, 0, 0, 57, 69, 5,
1, 0, 0, 58, 63, 3, 24, 12, 0, 59, 60, 5, 2, 0, 0, 60, 62, 3, 24, 12, 0,
61, 59, 1, 0, 0, 0, 62, 65, 1, 0, 0, 0, 63, 61, 1, 0, 0, 0, 63, 64, 1,
0, 0, 0, 64, 67, 1, 0, 0, 0, 65, 63, 1, 0, 0, 0, 66, 68, 5, 2, 0, 0, 67,
66, 1, 0, 0, 0, 67, 68, 1, 0, 0, 0, 68, 70, 1, 0, 0, 0, 69, 58, 1, 0, 0,
0, 69, 70, 1, 0, 0, 0, 70, 71, 1, 0, 0, 0, 71, 72, 5, 3, 0, 0, 72, 5, 1,
0, 0, 0, 73, 74, 5, 16, 0, 0, 74, 75, 3, 4, 2, 0, 75, 7, 1, 0, 0, 0, 76,
77, 5, 16, 0, 0, 77, 78, 5, 16, 0, 0, 78, 79, 3, 0, 0, 0, 79, 80, 3, 26,
13, 0, 80, 9, 1, 0, 0, 0, 81, 82, 5, 16, 0, 0, 82, 83, 5, 16, 0, 0, 83,
11, 1, 0, 0, 0, 84, 85, 3, 10, 5, 0, 85, 86, 5, 7, 0, 0, 86, 87, 3, 24,
12, 0, 87, 13, 1, 0, 0, 0, 88, 91, 3, 6, 3, 0, 89, 91, 5, 16, 0, 0, 90,
88, 1, 0, 0, 0, 90, 89, 1, 0, 0, 0, 91, 99, 1, 0, 0, 0, 92, 95, 5, 8, 0,
0, 93, 96, 3, 6, 3, 0, 94, 96, 5, 16, 0, 0, 95, 93, 1, 0, 0, 0, 95, 94,
1, 0, 0, 0, 96, 98, 1, 0, 0, 0, 97, 92, 1, 0, 0, 0, 98, 101, 1, 0, 0, 0,
99, 97, 1, 0, 0, 0, 99, 100, 1, 0, 0, 0, 100, 15, 1, 0, 0, 0, 101, 99,
1, 0, 0, 0, 102, 103, 5, 9, 0, 0, 103, 104, 5, 16, 0, 0, 104, 105, 3, 2,
1, 0, 105, 17, 1, 0, 0, 0, 106, 107, 5, 10, 0, 0, 107, 108, 5, 16, 0, 0,
108, 118, 5, 4, 0, 0, 109, 112, 3, 10, 5, 0, 110, 112, 3, 12, 6, 0, 111,
109, 1, 0, 0, 0, 111, 110, 1, 0, 0, 0, 112, 113, 1, 0, 0, 0, 113, 114,
5, 5, 0, 0, 114, 117, 1, 0, 0, 0, 115, 117, 3, 8, 4, 0, 116, 111, 1, 0,
0, 0, 116, 115, 1, 0, 0, 0, 117, 120, 1, 0, 0, 0, 118, 116, 1, 0, 0, 0,
118, 119, 1, 0, 0, 0, 119, 121, 1, 0, 0, 0, 120, 118, 1, 0, 0, 0, 121,
122, 5, 6, 0, 0, 122, 19, 1, 0, 0, 0, 123, 124, 5, 11, 0, 0, 124, 125,
5, 16, 0, 0, 125, 126, 5, 5, 0, 0, 126, 21, 1, 0, 0, 0, 127, 128, 5, 12,
0, 0, 128, 129, 5, 16, 0, 0, 129, 130, 5, 5, 0, 0, 130, 23, 1, 0, 0, 0,
131, 137, 3, 14, 7, 0, 132, 137, 5, 14, 0, 0, 133, 137, 5, 15, 0, 0, 134,
137, 5, 16, 0, 0, 135, 137, 5, 18, 0, 0, 136, 131, 1, 0, 0, 0, 136, 132,
1, 0, 0, 0, 136, 133, 1, 0, 0, 0, 136, 134, 1, 0, 0, 0, 136, 135, 1, 0,
0, 0, 137, 142, 1, 0, 0, 0, 138, 139, 5, 17, 0, 0, 139, 141, 3, 24, 12,
0, 140, 138, 1, 0, 0, 0, 141, 144, 1, 0, 0, 0, 142, 140, 1, 0, 0, 0, 142,
143, 1, 0, 0, 0, 143, 25, 1, 0, 0, 0, 144, 142, 1, 0, 0, 0, 145, 155, 5,
4, 0, 0, 146, 150, 3, 24, 12, 0, 147, 150, 3, 10, 5, 0, 148, 150, 3, 12,
6, 0, 149, 146, 1, 0, 0, 0, 149, 147, 1, 0, 0, 0, 149, 148, 1, 0, 0, 0,
150, 151, 1, 0, 0, 0, 151, 152, 5, 5, 0, 0, 152, 154, 1, 0, 0, 0, 153,
149, 1, 0, 0, 0, 154, 157, 1, 0, 0, 0, 155, 153, 1, 0, 0, 0, 155, 156,
1, 0, 0, 0, 156, 158, 1, 0, 0, 0, 157, 155, 1, 0, 0, 0, 158, 159, 5, 6,
0, 0, 159, 27, 1, 0, 0, 0, 160, 166, 3, 8, 4, 0, 161, 166, 3, 16, 8, 0,
162, 166, 3, 18, 9, 0, 163, 166, 3, 20, 10, 0, 164, 166, 3, 22, 11, 0,
165, 160, 1, 0, 0, 0, 165, 161, 1, 0, 0, 0, 165, 162, 1, 0, 0, 0, 165,
163, 1, 0, 0, 0, 165, 164, 1, 0, 0, 0, 166, 169, 1, 0, 0, 0, 167, 165,
1, 0, 0, 0, 167, 168, 1, 0, 0, 0, 168, 29, 1, 0, 0, 0, 169, 167, 1, 0,
0, 0, 19, 36, 40, 42, 52, 63, 67, 69, 90, 95, 99, 111, 116, 118, 136, 142,
149, 155, 165, 167,
}
deserializer := antlr.NewATNDeserializer(nil)
staticData.atn = deserializer.Deserialize(staticData.serializedATN)
atn := staticData.atn
staticData.decisionToDFA = make([]*antlr.DFA, len(atn.DecisionToState))
decisionToDFA := staticData.decisionToDFA
for index, state := range atn.DecisionToState {
decisionToDFA[index] = antlr.NewDFA(state, index)
}
}
// WystParserInit initializes any static state used to implement WystParser. By default the
// static state used to implement the parser is lazily initialized during the first call to
// NewWystParser(). You can call this function if you wish to initialize the static state ahead
// of time.
func WystParserInit() {
staticData := &WystParserStaticData
staticData.once.Do(wystParserInit)
}
// NewWystParser produces a new parser instance for the optional input antlr.TokenStream.
func NewWystParser(input antlr.TokenStream) *WystParser {
WystParserInit()
this := new(WystParser)
this.BaseParser = antlr.NewBaseParser(input)
staticData := &WystParserStaticData
this.Interpreter = antlr.NewParserATNSimulator(this, staticData.atn, staticData.decisionToDFA, staticData.PredictionContextCache)
this.RuleNames = staticData.RuleNames
this.LiteralNames = staticData.LiteralNames
this.SymbolicNames = staticData.SymbolicNames
this.GrammarFileName = "Wyst.g4"
return this
}
// WystParser tokens.
const (
WystParserEOF = antlr.TokenEOF
WystParserT__0 = 1
WystParserT__1 = 2
WystParserT__2 = 3
WystParserT__3 = 4
WystParserT__4 = 5
WystParserT__5 = 6
WystParserT__6 = 7
WystParserT__7 = 8
WystParserT__8 = 9
WystParserT__9 = 10
WystParserT__10 = 11
WystParserT__11 = 12
WystParserWS = 13
WystParserNUMBER = 14
WystParserHEX = 15
WystParserIDENTIFIER = 16
WystParserMATH = 17
WystParserSTRING = 18
)
// WystParser rules.
const (
WystParserRULE_round_def = 0
WystParserRULE_enum_curly = 1
WystParserRULE_round_call = 2
WystParserRULE_fn_call = 3
WystParserRULE_func_def = 4
WystParserRULE_var_def = 5
WystParserRULE_var_def_set = 6
WystParserRULE_call_tree = 7
WystParserRULE_struct_def = 8
WystParserRULE_namespace = 9
WystParserRULE_import_statement = 10
WystParserRULE_use_statement = 11
WystParserRULE_expr = 12
WystParserRULE_code_block = 13
WystParserRULE_top = 14
)
// IRound_defContext is an interface to support dynamic dispatch.
type IRound_defContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllVar_def() []IVar_defContext
Var_def(i int) IVar_defContext
// IsRound_defContext differentiates from other interfaces.
IsRound_defContext()
}
type Round_defContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyRound_defContext() *Round_defContext {
var p = new(Round_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_round_def
return p
}
func InitEmptyRound_defContext(p *Round_defContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_round_def
}
func (*Round_defContext) IsRound_defContext() {}
func NewRound_defContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Round_defContext {
var p = new(Round_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_round_def
return p
}
func (s *Round_defContext) GetParser() antlr.Parser { return s.parser }
func (s *Round_defContext) AllVar_def() []IVar_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IVar_defContext); ok {
len++
}
}
tst := make([]IVar_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IVar_defContext); ok {
tst[i] = t.(IVar_defContext)
i++
}
}
return tst
}
func (s *Round_defContext) Var_def(i int) IVar_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IVar_defContext)
}
func (s *Round_defContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Round_defContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Round_defContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterRound_def(s)
}
}
func (s *Round_defContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitRound_def(s)
}
}
func (p *WystParser) Round_def() (localctx IRound_defContext) {
localctx = NewRound_defContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 0, WystParserRULE_round_def)
var _la int
var _alt int
p.EnterOuterAlt(localctx, 1)
{
p.SetState(30)
p.Match(WystParserT__0)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(42)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
if _la == WystParserIDENTIFIER {
{
p.SetState(31)
p.Var_def()
}
p.SetState(36)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_alt = p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 0, p.GetParserRuleContext())
if p.HasError() {
goto errorExit
}
for _alt != 2 && _alt != antlr.ATNInvalidAltNumber {
if _alt == 1 {
{
p.SetState(32)
p.Match(WystParserT__1)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(33)
p.Var_def()
}
}
p.SetState(38)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_alt = p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 0, p.GetParserRuleContext())
if p.HasError() {
goto errorExit
}
}
p.SetState(40)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
if _la == WystParserT__1 {
{
p.SetState(39)
p.Match(WystParserT__1)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
}
}
{
p.SetState(44)
p.Match(WystParserT__2)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IEnum_curlyContext is an interface to support dynamic dispatch.
type IEnum_curlyContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllVar_def() []IVar_defContext
Var_def(i int) IVar_defContext
// IsEnum_curlyContext differentiates from other interfaces.
IsEnum_curlyContext()
}
type Enum_curlyContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyEnum_curlyContext() *Enum_curlyContext {
var p = new(Enum_curlyContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_enum_curly
return p
}
func InitEmptyEnum_curlyContext(p *Enum_curlyContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_enum_curly
}
func (*Enum_curlyContext) IsEnum_curlyContext() {}
func NewEnum_curlyContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Enum_curlyContext {
var p = new(Enum_curlyContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_enum_curly
return p
}
func (s *Enum_curlyContext) GetParser() antlr.Parser { return s.parser }
func (s *Enum_curlyContext) AllVar_def() []IVar_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IVar_defContext); ok {
len++
}
}
tst := make([]IVar_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IVar_defContext); ok {
tst[i] = t.(IVar_defContext)
i++
}
}
return tst
}
func (s *Enum_curlyContext) Var_def(i int) IVar_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IVar_defContext)
}
func (s *Enum_curlyContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Enum_curlyContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Enum_curlyContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterEnum_curly(s)
}
}
func (s *Enum_curlyContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitEnum_curly(s)
}
}
func (p *WystParser) Enum_curly() (localctx IEnum_curlyContext) {
localctx = NewEnum_curlyContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 2, WystParserRULE_enum_curly)
var _la int
p.EnterOuterAlt(localctx, 1)
{
p.SetState(46)
p.Match(WystParserT__3)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(52)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
for _la == WystParserIDENTIFIER {
{
p.SetState(47)
p.Var_def()
}
{
p.SetState(48)
p.Match(WystParserT__4)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(54)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
}
{
p.SetState(55)
p.Match(WystParserT__5)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IRound_callContext is an interface to support dynamic dispatch.
type IRound_callContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllExpr() []IExprContext
Expr(i int) IExprContext
// IsRound_callContext differentiates from other interfaces.
IsRound_callContext()
}
type Round_callContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyRound_callContext() *Round_callContext {
var p = new(Round_callContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_round_call
return p
}
func InitEmptyRound_callContext(p *Round_callContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_round_call
}
func (*Round_callContext) IsRound_callContext() {}
func NewRound_callContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Round_callContext {
var p = new(Round_callContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_round_call
return p
}
func (s *Round_callContext) GetParser() antlr.Parser { return s.parser }
func (s *Round_callContext) AllExpr() []IExprContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IExprContext); ok {
len++
}
}
tst := make([]IExprContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IExprContext); ok {
tst[i] = t.(IExprContext)
i++
}
}
return tst
}
func (s *Round_callContext) Expr(i int) IExprContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IExprContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IExprContext)
}
func (s *Round_callContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Round_callContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Round_callContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterRound_call(s)
}
}
func (s *Round_callContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitRound_call(s)
}
}
func (p *WystParser) Round_call() (localctx IRound_callContext) {
localctx = NewRound_callContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 4, WystParserRULE_round_call)
var _la int
var _alt int
p.EnterOuterAlt(localctx, 1)
{
p.SetState(57)
p.Match(WystParserT__0)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(69)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
if (int64(_la) & ^0x3f) == 0 && ((int64(1)<<_la)&376832) != 0 {
{
p.SetState(58)
p.Expr()
}
p.SetState(63)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_alt = p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 4, p.GetParserRuleContext())
if p.HasError() {
goto errorExit
}
for _alt != 2 && _alt != antlr.ATNInvalidAltNumber {
if _alt == 1 {
{
p.SetState(59)
p.Match(WystParserT__1)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(60)
p.Expr()
}
}
p.SetState(65)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_alt = p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 4, p.GetParserRuleContext())
if p.HasError() {
goto errorExit
}
}
p.SetState(67)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
if _la == WystParserT__1 {
{
p.SetState(66)
p.Match(WystParserT__1)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
}
}
{
p.SetState(71)
p.Match(WystParserT__2)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IFn_callContext is an interface to support dynamic dispatch.
type IFn_callContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
IDENTIFIER() antlr.TerminalNode
Round_call() IRound_callContext
// IsFn_callContext differentiates from other interfaces.
IsFn_callContext()
}
type Fn_callContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyFn_callContext() *Fn_callContext {
var p = new(Fn_callContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_fn_call
return p
}
func InitEmptyFn_callContext(p *Fn_callContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_fn_call
}
func (*Fn_callContext) IsFn_callContext() {}
func NewFn_callContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Fn_callContext {
var p = new(Fn_callContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_fn_call
return p
}
func (s *Fn_callContext) GetParser() antlr.Parser { return s.parser }
func (s *Fn_callContext) IDENTIFIER() antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, 0)
}
func (s *Fn_callContext) Round_call() IRound_callContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IRound_callContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(IRound_callContext)
}
func (s *Fn_callContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Fn_callContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Fn_callContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterFn_call(s)
}
}
func (s *Fn_callContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitFn_call(s)
}
}
func (p *WystParser) Fn_call() (localctx IFn_callContext) {
localctx = NewFn_callContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 6, WystParserRULE_fn_call)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(73)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(74)
p.Round_call()
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IFunc_defContext is an interface to support dynamic dispatch.
type IFunc_defContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllIDENTIFIER() []antlr.TerminalNode
IDENTIFIER(i int) antlr.TerminalNode
Round_def() IRound_defContext
Code_block() ICode_blockContext
// IsFunc_defContext differentiates from other interfaces.
IsFunc_defContext()
}
type Func_defContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyFunc_defContext() *Func_defContext {
var p = new(Func_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_func_def
return p
}
func InitEmptyFunc_defContext(p *Func_defContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_func_def
}
func (*Func_defContext) IsFunc_defContext() {}
func NewFunc_defContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Func_defContext {
var p = new(Func_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_func_def
return p
}
func (s *Func_defContext) GetParser() antlr.Parser { return s.parser }
func (s *Func_defContext) AllIDENTIFIER() []antlr.TerminalNode {
return s.GetTokens(WystParserIDENTIFIER)
}
func (s *Func_defContext) IDENTIFIER(i int) antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, i)
}
func (s *Func_defContext) Round_def() IRound_defContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IRound_defContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(IRound_defContext)
}
func (s *Func_defContext) Code_block() ICode_blockContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(ICode_blockContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(ICode_blockContext)
}
func (s *Func_defContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Func_defContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Func_defContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterFunc_def(s)
}
}
func (s *Func_defContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitFunc_def(s)
}
}
func (p *WystParser) Func_def() (localctx IFunc_defContext) {
localctx = NewFunc_defContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 8, WystParserRULE_func_def)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(76)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(77)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(78)
p.Round_def()
}
{
p.SetState(79)
p.Code_block()
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IVar_defContext is an interface to support dynamic dispatch.
type IVar_defContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllIDENTIFIER() []antlr.TerminalNode
IDENTIFIER(i int) antlr.TerminalNode
// IsVar_defContext differentiates from other interfaces.
IsVar_defContext()
}
type Var_defContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyVar_defContext() *Var_defContext {
var p = new(Var_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_var_def
return p
}
func InitEmptyVar_defContext(p *Var_defContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_var_def
}
func (*Var_defContext) IsVar_defContext() {}
func NewVar_defContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Var_defContext {
var p = new(Var_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_var_def
return p
}
func (s *Var_defContext) GetParser() antlr.Parser { return s.parser }
func (s *Var_defContext) AllIDENTIFIER() []antlr.TerminalNode {
return s.GetTokens(WystParserIDENTIFIER)
}
func (s *Var_defContext) IDENTIFIER(i int) antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, i)
}
func (s *Var_defContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Var_defContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Var_defContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterVar_def(s)
}
}
func (s *Var_defContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitVar_def(s)
}
}
func (p *WystParser) Var_def() (localctx IVar_defContext) {
localctx = NewVar_defContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 10, WystParserRULE_var_def)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(81)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(82)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IVar_def_setContext is an interface to support dynamic dispatch.
type IVar_def_setContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
Var_def() IVar_defContext
Expr() IExprContext
// IsVar_def_setContext differentiates from other interfaces.
IsVar_def_setContext()
}
type Var_def_setContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyVar_def_setContext() *Var_def_setContext {
var p = new(Var_def_setContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_var_def_set
return p
}
func InitEmptyVar_def_setContext(p *Var_def_setContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_var_def_set
}
func (*Var_def_setContext) IsVar_def_setContext() {}
func NewVar_def_setContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Var_def_setContext {
var p = new(Var_def_setContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_var_def_set
return p
}
func (s *Var_def_setContext) GetParser() antlr.Parser { return s.parser }
func (s *Var_def_setContext) Var_def() IVar_defContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_defContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(IVar_defContext)
}
func (s *Var_def_setContext) Expr() IExprContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IExprContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(IExprContext)
}
func (s *Var_def_setContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Var_def_setContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Var_def_setContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterVar_def_set(s)
}
}
func (s *Var_def_setContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitVar_def_set(s)
}
}
func (p *WystParser) Var_def_set() (localctx IVar_def_setContext) {
localctx = NewVar_def_setContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 12, WystParserRULE_var_def_set)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(84)
p.Var_def()
}
{
p.SetState(85)
p.Match(WystParserT__6)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(86)
p.Expr()
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// ICall_treeContext is an interface to support dynamic dispatch.
type ICall_treeContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllFn_call() []IFn_callContext
Fn_call(i int) IFn_callContext
AllIDENTIFIER() []antlr.TerminalNode
IDENTIFIER(i int) antlr.TerminalNode
// IsCall_treeContext differentiates from other interfaces.
IsCall_treeContext()
}
type Call_treeContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyCall_treeContext() *Call_treeContext {
var p = new(Call_treeContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_call_tree
return p
}
func InitEmptyCall_treeContext(p *Call_treeContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_call_tree
}
func (*Call_treeContext) IsCall_treeContext() {}
func NewCall_treeContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Call_treeContext {
var p = new(Call_treeContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_call_tree
return p
}
func (s *Call_treeContext) GetParser() antlr.Parser { return s.parser }
func (s *Call_treeContext) AllFn_call() []IFn_callContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IFn_callContext); ok {
len++
}
}
tst := make([]IFn_callContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IFn_callContext); ok {
tst[i] = t.(IFn_callContext)
i++
}
}
return tst
}
func (s *Call_treeContext) Fn_call(i int) IFn_callContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IFn_callContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IFn_callContext)
}
func (s *Call_treeContext) AllIDENTIFIER() []antlr.TerminalNode {
return s.GetTokens(WystParserIDENTIFIER)
}
func (s *Call_treeContext) IDENTIFIER(i int) antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, i)
}
func (s *Call_treeContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Call_treeContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Call_treeContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterCall_tree(s)
}
}
func (s *Call_treeContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitCall_tree(s)
}
}
func (p *WystParser) Call_tree() (localctx ICall_treeContext) {
localctx = NewCall_treeContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 14, WystParserRULE_call_tree)
var _la int
p.EnterOuterAlt(localctx, 1)
p.SetState(90)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 7, p.GetParserRuleContext()) {
case 1:
{
p.SetState(88)
p.Fn_call()
}
case 2:
{
p.SetState(89)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case antlr.ATNInvalidAltNumber:
goto errorExit
}
p.SetState(99)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
for _la == WystParserT__7 {
{
p.SetState(92)
p.Match(WystParserT__7)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(95)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 8, p.GetParserRuleContext()) {
case 1:
{
p.SetState(93)
p.Fn_call()
}
case 2:
{
p.SetState(94)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case antlr.ATNInvalidAltNumber:
goto errorExit
}
p.SetState(101)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IStruct_defContext is an interface to support dynamic dispatch.
type IStruct_defContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
IDENTIFIER() antlr.TerminalNode
Enum_curly() IEnum_curlyContext
// IsStruct_defContext differentiates from other interfaces.
IsStruct_defContext()
}
type Struct_defContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyStruct_defContext() *Struct_defContext {
var p = new(Struct_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_struct_def
return p
}
func InitEmptyStruct_defContext(p *Struct_defContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_struct_def
}
func (*Struct_defContext) IsStruct_defContext() {}
func NewStruct_defContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Struct_defContext {
var p = new(Struct_defContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_struct_def
return p
}
func (s *Struct_defContext) GetParser() antlr.Parser { return s.parser }
func (s *Struct_defContext) IDENTIFIER() antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, 0)
}
func (s *Struct_defContext) Enum_curly() IEnum_curlyContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IEnum_curlyContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(IEnum_curlyContext)
}
func (s *Struct_defContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Struct_defContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Struct_defContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterStruct_def(s)
}
}
func (s *Struct_defContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitStruct_def(s)
}
}
func (p *WystParser) Struct_def() (localctx IStruct_defContext) {
localctx = NewStruct_defContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 16, WystParserRULE_struct_def)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(102)
p.Match(WystParserT__8)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(103)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(104)
p.Enum_curly()
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// INamespaceContext is an interface to support dynamic dispatch.
type INamespaceContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
IDENTIFIER() antlr.TerminalNode
AllFunc_def() []IFunc_defContext
Func_def(i int) IFunc_defContext
AllVar_def() []IVar_defContext
Var_def(i int) IVar_defContext
AllVar_def_set() []IVar_def_setContext
Var_def_set(i int) IVar_def_setContext
// IsNamespaceContext differentiates from other interfaces.
IsNamespaceContext()
}
type NamespaceContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyNamespaceContext() *NamespaceContext {
var p = new(NamespaceContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_namespace
return p
}
func InitEmptyNamespaceContext(p *NamespaceContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_namespace
}
func (*NamespaceContext) IsNamespaceContext() {}
func NewNamespaceContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *NamespaceContext {
var p = new(NamespaceContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_namespace
return p
}
func (s *NamespaceContext) GetParser() antlr.Parser { return s.parser }
func (s *NamespaceContext) IDENTIFIER() antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, 0)
}
func (s *NamespaceContext) AllFunc_def() []IFunc_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IFunc_defContext); ok {
len++
}
}
tst := make([]IFunc_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IFunc_defContext); ok {
tst[i] = t.(IFunc_defContext)
i++
}
}
return tst
}
func (s *NamespaceContext) Func_def(i int) IFunc_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IFunc_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IFunc_defContext)
}
func (s *NamespaceContext) AllVar_def() []IVar_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IVar_defContext); ok {
len++
}
}
tst := make([]IVar_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IVar_defContext); ok {
tst[i] = t.(IVar_defContext)
i++
}
}
return tst
}
func (s *NamespaceContext) Var_def(i int) IVar_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IVar_defContext)
}
func (s *NamespaceContext) AllVar_def_set() []IVar_def_setContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IVar_def_setContext); ok {
len++
}
}
tst := make([]IVar_def_setContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IVar_def_setContext); ok {
tst[i] = t.(IVar_def_setContext)
i++
}
}
return tst
}
func (s *NamespaceContext) Var_def_set(i int) IVar_def_setContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_def_setContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IVar_def_setContext)
}
func (s *NamespaceContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *NamespaceContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *NamespaceContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterNamespace(s)
}
}
func (s *NamespaceContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitNamespace(s)
}
}
func (p *WystParser) Namespace() (localctx INamespaceContext) {
localctx = NewNamespaceContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 18, WystParserRULE_namespace)
var _la int
p.EnterOuterAlt(localctx, 1)
{
p.SetState(106)
p.Match(WystParserT__9)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(107)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(108)
p.Match(WystParserT__3)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(118)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
for _la == WystParserIDENTIFIER {
p.SetState(116)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 11, p.GetParserRuleContext()) {
case 1:
p.SetState(111)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 10, p.GetParserRuleContext()) {
case 1:
{
p.SetState(109)
p.Var_def()
}
case 2:
{
p.SetState(110)
p.Var_def_set()
}
case antlr.ATNInvalidAltNumber:
goto errorExit
}
{
p.SetState(113)
p.Match(WystParserT__4)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case 2:
{
p.SetState(115)
p.Func_def()
}
case antlr.ATNInvalidAltNumber:
goto errorExit
}
p.SetState(120)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
}
{
p.SetState(121)
p.Match(WystParserT__5)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IImport_statementContext is an interface to support dynamic dispatch.
type IImport_statementContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
IDENTIFIER() antlr.TerminalNode
// IsImport_statementContext differentiates from other interfaces.
IsImport_statementContext()
}
type Import_statementContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyImport_statementContext() *Import_statementContext {
var p = new(Import_statementContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_import_statement
return p
}
func InitEmptyImport_statementContext(p *Import_statementContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_import_statement
}
func (*Import_statementContext) IsImport_statementContext() {}
func NewImport_statementContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Import_statementContext {
var p = new(Import_statementContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_import_statement
return p
}
func (s *Import_statementContext) GetParser() antlr.Parser { return s.parser }
func (s *Import_statementContext) IDENTIFIER() antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, 0)
}
func (s *Import_statementContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Import_statementContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Import_statementContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterImport_statement(s)
}
}
func (s *Import_statementContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitImport_statement(s)
}
}
func (p *WystParser) Import_statement() (localctx IImport_statementContext) {
localctx = NewImport_statementContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 20, WystParserRULE_import_statement)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(123)
p.Match(WystParserT__10)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(124)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(125)
p.Match(WystParserT__4)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IUse_statementContext is an interface to support dynamic dispatch.
type IUse_statementContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
IDENTIFIER() antlr.TerminalNode
// IsUse_statementContext differentiates from other interfaces.
IsUse_statementContext()
}
type Use_statementContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyUse_statementContext() *Use_statementContext {
var p = new(Use_statementContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_use_statement
return p
}
func InitEmptyUse_statementContext(p *Use_statementContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_use_statement
}
func (*Use_statementContext) IsUse_statementContext() {}
func NewUse_statementContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Use_statementContext {
var p = new(Use_statementContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_use_statement
return p
}
func (s *Use_statementContext) GetParser() antlr.Parser { return s.parser }
func (s *Use_statementContext) IDENTIFIER() antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, 0)
}
func (s *Use_statementContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Use_statementContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Use_statementContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterUse_statement(s)
}
}
func (s *Use_statementContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitUse_statement(s)
}
}
func (p *WystParser) Use_statement() (localctx IUse_statementContext) {
localctx = NewUse_statementContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 22, WystParserRULE_use_statement)
p.EnterOuterAlt(localctx, 1)
{
p.SetState(127)
p.Match(WystParserT__11)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(128)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(129)
p.Match(WystParserT__4)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// IExprContext is an interface to support dynamic dispatch.
type IExprContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
Call_tree() ICall_treeContext
NUMBER() antlr.TerminalNode
HEX() antlr.TerminalNode
IDENTIFIER() antlr.TerminalNode
STRING() antlr.TerminalNode
AllMATH() []antlr.TerminalNode
MATH(i int) antlr.TerminalNode
AllExpr() []IExprContext
Expr(i int) IExprContext
// IsExprContext differentiates from other interfaces.
IsExprContext()
}
type ExprContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyExprContext() *ExprContext {
var p = new(ExprContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_expr
return p
}
func InitEmptyExprContext(p *ExprContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_expr
}
func (*ExprContext) IsExprContext() {}
func NewExprContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *ExprContext {
var p = new(ExprContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_expr
return p
}
func (s *ExprContext) GetParser() antlr.Parser { return s.parser }
func (s *ExprContext) Call_tree() ICall_treeContext {
var t antlr.RuleContext
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(ICall_treeContext); ok {
t = ctx.(antlr.RuleContext)
break
}
}
if t == nil {
return nil
}
return t.(ICall_treeContext)
}
func (s *ExprContext) NUMBER() antlr.TerminalNode {
return s.GetToken(WystParserNUMBER, 0)
}
func (s *ExprContext) HEX() antlr.TerminalNode {
return s.GetToken(WystParserHEX, 0)
}
func (s *ExprContext) IDENTIFIER() antlr.TerminalNode {
return s.GetToken(WystParserIDENTIFIER, 0)
}
func (s *ExprContext) STRING() antlr.TerminalNode {
return s.GetToken(WystParserSTRING, 0)
}
func (s *ExprContext) AllMATH() []antlr.TerminalNode {
return s.GetTokens(WystParserMATH)
}
func (s *ExprContext) MATH(i int) antlr.TerminalNode {
return s.GetToken(WystParserMATH, i)
}
func (s *ExprContext) AllExpr() []IExprContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IExprContext); ok {
len++
}
}
tst := make([]IExprContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IExprContext); ok {
tst[i] = t.(IExprContext)
i++
}
}
return tst
}
func (s *ExprContext) Expr(i int) IExprContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IExprContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IExprContext)
}
func (s *ExprContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *ExprContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *ExprContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterExpr(s)
}
}
func (s *ExprContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitExpr(s)
}
}
func (p *WystParser) Expr() (localctx IExprContext) {
localctx = NewExprContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 24, WystParserRULE_expr)
var _alt int
p.EnterOuterAlt(localctx, 1)
p.SetState(136)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 13, p.GetParserRuleContext()) {
case 1:
{
p.SetState(131)
p.Call_tree()
}
case 2:
{
p.SetState(132)
p.Match(WystParserNUMBER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case 3:
{
p.SetState(133)
p.Match(WystParserHEX)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case 4:
{
p.SetState(134)
p.Match(WystParserIDENTIFIER)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case 5:
{
p.SetState(135)
p.Match(WystParserSTRING)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
case antlr.ATNInvalidAltNumber:
goto errorExit
}
p.SetState(142)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_alt = p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 14, p.GetParserRuleContext())
if p.HasError() {
goto errorExit
}
for _alt != 2 && _alt != antlr.ATNInvalidAltNumber {
if _alt == 1 {
{
p.SetState(138)
p.Match(WystParserMATH)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
{
p.SetState(139)
p.Expr()
}
}
p.SetState(144)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_alt = p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 14, p.GetParserRuleContext())
if p.HasError() {
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// ICode_blockContext is an interface to support dynamic dispatch.
type ICode_blockContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllExpr() []IExprContext
Expr(i int) IExprContext
AllVar_def() []IVar_defContext
Var_def(i int) IVar_defContext
AllVar_def_set() []IVar_def_setContext
Var_def_set(i int) IVar_def_setContext
// IsCode_blockContext differentiates from other interfaces.
IsCode_blockContext()
}
type Code_blockContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyCode_blockContext() *Code_blockContext {
var p = new(Code_blockContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_code_block
return p
}
func InitEmptyCode_blockContext(p *Code_blockContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_code_block
}
func (*Code_blockContext) IsCode_blockContext() {}
func NewCode_blockContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *Code_blockContext {
var p = new(Code_blockContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_code_block
return p
}
func (s *Code_blockContext) GetParser() antlr.Parser { return s.parser }
func (s *Code_blockContext) AllExpr() []IExprContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IExprContext); ok {
len++
}
}
tst := make([]IExprContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IExprContext); ok {
tst[i] = t.(IExprContext)
i++
}
}
return tst
}
func (s *Code_blockContext) Expr(i int) IExprContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IExprContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IExprContext)
}
func (s *Code_blockContext) AllVar_def() []IVar_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IVar_defContext); ok {
len++
}
}
tst := make([]IVar_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IVar_defContext); ok {
tst[i] = t.(IVar_defContext)
i++
}
}
return tst
}
func (s *Code_blockContext) Var_def(i int) IVar_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IVar_defContext)
}
func (s *Code_blockContext) AllVar_def_set() []IVar_def_setContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IVar_def_setContext); ok {
len++
}
}
tst := make([]IVar_def_setContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IVar_def_setContext); ok {
tst[i] = t.(IVar_def_setContext)
i++
}
}
return tst
}
func (s *Code_blockContext) Var_def_set(i int) IVar_def_setContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IVar_def_setContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IVar_def_setContext)
}
func (s *Code_blockContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *Code_blockContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *Code_blockContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterCode_block(s)
}
}
func (s *Code_blockContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitCode_block(s)
}
}
func (p *WystParser) Code_block() (localctx ICode_blockContext) {
localctx = NewCode_blockContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 26, WystParserRULE_code_block)
var _la int
p.EnterOuterAlt(localctx, 1)
{
p.SetState(145)
p.Match(WystParserT__3)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(155)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
for (int64(_la) & ^0x3f) == 0 && ((int64(1)<<_la)&376832) != 0 {
p.SetState(149)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetInterpreter().AdaptivePredict(p.BaseParser, p.GetTokenStream(), 15, p.GetParserRuleContext()) {
case 1:
{
p.SetState(146)
p.Expr()
}
case 2:
{
p.SetState(147)
p.Var_def()
}
case 3:
{
p.SetState(148)
p.Var_def_set()
}
case antlr.ATNInvalidAltNumber:
goto errorExit
}
{
p.SetState(151)
p.Match(WystParserT__4)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
p.SetState(157)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
}
{
p.SetState(158)
p.Match(WystParserT__5)
if p.HasError() {
// Recognition error - abort rule
goto errorExit
}
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}
// ITopContext is an interface to support dynamic dispatch.
type ITopContext interface {
antlr.ParserRuleContext
// GetParser returns the parser.
GetParser() antlr.Parser
// Getter signatures
AllFunc_def() []IFunc_defContext
Func_def(i int) IFunc_defContext
AllStruct_def() []IStruct_defContext
Struct_def(i int) IStruct_defContext
AllNamespace() []INamespaceContext
Namespace(i int) INamespaceContext
AllImport_statement() []IImport_statementContext
Import_statement(i int) IImport_statementContext
AllUse_statement() []IUse_statementContext
Use_statement(i int) IUse_statementContext
// IsTopContext differentiates from other interfaces.
IsTopContext()
}
type TopContext struct {
antlr.BaseParserRuleContext
parser antlr.Parser
}
func NewEmptyTopContext() *TopContext {
var p = new(TopContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_top
return p
}
func InitEmptyTopContext(p *TopContext) {
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, nil, -1)
p.RuleIndex = WystParserRULE_top
}
func (*TopContext) IsTopContext() {}
func NewTopContext(parser antlr.Parser, parent antlr.ParserRuleContext, invokingState int) *TopContext {
var p = new(TopContext)
antlr.InitBaseParserRuleContext(&p.BaseParserRuleContext, parent, invokingState)
p.parser = parser
p.RuleIndex = WystParserRULE_top
return p
}
func (s *TopContext) GetParser() antlr.Parser { return s.parser }
func (s *TopContext) AllFunc_def() []IFunc_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IFunc_defContext); ok {
len++
}
}
tst := make([]IFunc_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IFunc_defContext); ok {
tst[i] = t.(IFunc_defContext)
i++
}
}
return tst
}
func (s *TopContext) Func_def(i int) IFunc_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IFunc_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IFunc_defContext)
}
func (s *TopContext) AllStruct_def() []IStruct_defContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IStruct_defContext); ok {
len++
}
}
tst := make([]IStruct_defContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IStruct_defContext); ok {
tst[i] = t.(IStruct_defContext)
i++
}
}
return tst
}
func (s *TopContext) Struct_def(i int) IStruct_defContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IStruct_defContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IStruct_defContext)
}
func (s *TopContext) AllNamespace() []INamespaceContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(INamespaceContext); ok {
len++
}
}
tst := make([]INamespaceContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(INamespaceContext); ok {
tst[i] = t.(INamespaceContext)
i++
}
}
return tst
}
func (s *TopContext) Namespace(i int) INamespaceContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(INamespaceContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(INamespaceContext)
}
func (s *TopContext) AllImport_statement() []IImport_statementContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IImport_statementContext); ok {
len++
}
}
tst := make([]IImport_statementContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IImport_statementContext); ok {
tst[i] = t.(IImport_statementContext)
i++
}
}
return tst
}
func (s *TopContext) Import_statement(i int) IImport_statementContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IImport_statementContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IImport_statementContext)
}
func (s *TopContext) AllUse_statement() []IUse_statementContext {
children := s.GetChildren()
len := 0
for _, ctx := range children {
if _, ok := ctx.(IUse_statementContext); ok {
len++
}
}
tst := make([]IUse_statementContext, len)
i := 0
for _, ctx := range children {
if t, ok := ctx.(IUse_statementContext); ok {
tst[i] = t.(IUse_statementContext)
i++
}
}
return tst
}
func (s *TopContext) Use_statement(i int) IUse_statementContext {
var t antlr.RuleContext
j := 0
for _, ctx := range s.GetChildren() {
if _, ok := ctx.(IUse_statementContext); ok {
if j == i {
t = ctx.(antlr.RuleContext)
break
}
j++
}
}
if t == nil {
return nil
}
return t.(IUse_statementContext)
}
func (s *TopContext) GetRuleContext() antlr.RuleContext {
return s
}
func (s *TopContext) ToStringTree(ruleNames []string, recog antlr.Recognizer) string {
return antlr.TreesStringTree(s, ruleNames, recog)
}
func (s *TopContext) EnterRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.EnterTop(s)
}
}
func (s *TopContext) ExitRule(listener antlr.ParseTreeListener) {
if listenerT, ok := listener.(WystListener); ok {
listenerT.ExitTop(s)
}
}
func (p *WystParser) Top() (localctx ITopContext) {
localctx = NewTopContext(p, p.GetParserRuleContext(), p.GetState())
p.EnterRule(localctx, 28, WystParserRULE_top)
var _la int
p.EnterOuterAlt(localctx, 1)
p.SetState(167)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
for (int64(_la) & ^0x3f) == 0 && ((int64(1)<<_la)&73216) != 0 {
p.SetState(165)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
switch p.GetTokenStream().LA(1) {
case WystParserIDENTIFIER:
{
p.SetState(160)
p.Func_def()
}
case WystParserT__8:
{
p.SetState(161)
p.Struct_def()
}
case WystParserT__9:
{
p.SetState(162)
p.Namespace()
}
case WystParserT__10:
{
p.SetState(163)
p.Import_statement()
}
case WystParserT__11:
{
p.SetState(164)
p.Use_statement()
}
default:
p.SetError(antlr.NewNoViableAltException(p, nil, nil, nil, nil, nil))
goto errorExit
}
p.SetState(169)
p.GetErrorHandler().Sync(p)
if p.HasError() {
goto errorExit
}
_la = p.GetTokenStream().LA(1)
}
errorExit:
if p.HasError() {
v := p.GetError()
localctx.SetException(v)
p.GetErrorHandler().ReportError(p, v)
p.GetErrorHandler().Recover(p, v)
p.SetError(nil)
}
p.ExitRule()
return localctx
goto errorExit // Trick to prevent compiler error if the label is not used
}