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lang.go
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lang.go
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//line lang.y:2
package gohaml
import "fmt"
var Output inode
//line lang.y:9
type yySymType struct {
yys int
n inode
s string
i interface{}
c icodenode
}
const IDENT = 57346
const ATOM = 57347
const FOR = 57348
const RANGE = 57349
var yyToknames = []string{
"IDENT",
"ATOM",
"FOR",
"RANGE",
}
var yyStatenames = []string{}
const yyEofCode = 1
const yyErrCode = 2
const yyMaxDepth = 200
//line lang.y:66
//line yacctab:1
var yyExca = []int{
-1, 1,
1, -1,
-2, 0,
}
const yyNprod = 7
const yyPrivate = 57344
var yyTokenNames []string
var yyStates []string
const yyLast = 19
var yyAct = []int{
13, 14, 15, 7, 12, 5, 6, 17, 3, 19,
2, 11, 10, 16, 8, 4, 9, 18, 1,
}
var yyPact = []int{
4, -1000, 11, -4, -2, -7, 10, 7, -5, -1000,
-1000, -10, -8, -1000, 9, 0, -10, 5, -1000, -1000,
}
var yyPgo = []int{
0, 18, 16, 0,
}
var yyR1 = []int{
0, 1, 1, 2, 2, 3, 3,
}
var yyR2 = []int{
0, 8, 4, 1, 2, 3, 0,
}
var yyChk = []int{
-1000, -1, 6, 4, 4, 9, 8, 10, 4, -2,
5, 4, 9, -3, 11, 10, 4, 7, -3, 4,
}
var yyDef = []int{
0, -2, 0, 0, 0, 0, 0, 0, 0, 2,
3, 6, 0, 4, 0, 0, 6, 0, 5, 1,
}
var yyTok1 = []int{
1, 3, 3, 3, 3, 3, 3, 3, 3, 3,
3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
3, 3, 3, 3, 8, 3, 11, 3, 3, 3,
3, 3, 3, 3, 3, 3, 3, 3, 9, 3,
3, 10,
}
var yyTok2 = []int{
2, 3, 4, 5, 6, 7,
}
var yyTok3 = []int{
0,
}
//line yaccpar:1
/* parser for yacc output */
var yyDebug = 0
type yyLexer interface {
Lex(lval *yySymType) int
Error(s string)
}
const yyFlag = -1000
func yyTokname(c int) string {
if c > 0 && c <= len(yyToknames) {
if yyToknames[c-1] != "" {
return yyToknames[c-1]
}
}
return fmt.Sprintf("tok-%v", c)
}
func yyStatname(s int) string {
if s >= 0 && s < len(yyStatenames) {
if yyStatenames[s] != "" {
return yyStatenames[s]
}
}
return fmt.Sprintf("state-%v", s)
}
func yylex1(lex yyLexer, lval *yySymType) int {
c := 0
char := lex.Lex(lval)
if char <= 0 {
c = yyTok1[0]
goto out
}
if char < len(yyTok1) {
c = yyTok1[char]
goto out
}
if char >= yyPrivate {
if char < yyPrivate+len(yyTok2) {
c = yyTok2[char-yyPrivate]
goto out
}
}
for i := 0; i < len(yyTok3); i += 2 {
c = yyTok3[i+0]
if c == char {
c = yyTok3[i+1]
goto out
}
}
out:
if c == 0 {
c = yyTok2[1] /* unknown char */
}
if yyDebug >= 3 {
fmt.Printf("lex %U %s\n", uint(char), yyTokname(c))
}
return c
}
func yyParse(yylex yyLexer) int {
var yyn int
var yylval yySymType
var yyVAL yySymType
yyS := make([]yySymType, yyMaxDepth)
Nerrs := 0 /* number of errors */
Errflag := 0 /* error recovery flag */
yystate := 0
yychar := -1
yyp := -1
goto yystack
ret0:
return 0
ret1:
return 1
yystack:
/* put a state and value onto the stack */
if yyDebug >= 4 {
fmt.Printf("char %v in %v\n", yyTokname(yychar), yyStatname(yystate))
}
yyp++
if yyp >= len(yyS) {
nyys := make([]yySymType, len(yyS)*2)
copy(nyys, yyS)
yyS = nyys
}
yyS[yyp] = yyVAL
yyS[yyp].yys = yystate
yynewstate:
yyn = yyPact[yystate]
if yyn <= yyFlag {
goto yydefault /* simple state */
}
if yychar < 0 {
yychar = yylex1(yylex, &yylval)
}
yyn += yychar
if yyn < 0 || yyn >= yyLast {
goto yydefault
}
yyn = yyAct[yyn]
if yyChk[yyn] == yychar { /* valid shift */
yychar = -1
yyVAL = yylval
yystate = yyn
if Errflag > 0 {
Errflag--
}
goto yystack
}
yydefault:
/* default state action */
yyn = yyDef[yystate]
if yyn == -2 {
if yychar < 0 {
yychar = yylex1(yylex, &yylval)
}
/* look through exception table */
xi := 0
for {
if yyExca[xi+0] == -1 && yyExca[xi+1] == yystate {
break
}
xi += 2
}
for xi += 2; ; xi += 2 {
yyn = yyExca[xi+0]
if yyn < 0 || yyn == yychar {
break
}
}
yyn = yyExca[xi+1]
if yyn < 0 {
goto ret0
}
}
if yyn == 0 {
/* error ... attempt to resume parsing */
switch Errflag {
case 0: /* brand new error */
yylex.Error("syntax error")
Nerrs++
if yyDebug >= 1 {
fmt.Printf("%s", yyStatname(yystate))
fmt.Printf("saw %s\n", yyTokname(yychar))
}
fallthrough
case 1, 2: /* incompletely recovered error ... try again */
Errflag = 3
/* find a state where "error" is a legal shift action */
for yyp >= 0 {
yyn = yyPact[yyS[yyp].yys] + yyErrCode
if yyn >= 0 && yyn < yyLast {
yystate = yyAct[yyn] /* simulate a shift of "error" */
if yyChk[yystate] == yyErrCode {
goto yystack
}
}
/* the current p has no shift on "error", pop stack */
if yyDebug >= 2 {
fmt.Printf("error recovery pops state %d\n", yyS[yyp].yys)
}
yyp--
}
/* there is no state on the stack with an error shift ... abort */
goto ret1
case 3: /* no shift yet; clobber input char */
if yyDebug >= 2 {
fmt.Printf("error recovery discards %s\n", yyTokname(yychar))
}
if yychar == yyEofCode {
goto ret1
}
yychar = -1
goto yynewstate /* try again in the same state */
}
}
/* reduction by production yyn */
if yyDebug >= 2 {
fmt.Printf("reduce %v in:\n\t%v\n", yyn, yyStatname(yystate))
}
yynt := yyn
yypt := yyp
_ = yypt // guard against "declared and not used"
yyp -= yyR2[yyn]
yyVAL = yyS[yyp+1]
/* consult goto table to find next state */
yyn = yyR1[yyn]
yyg := yyPgo[yyn]
yyj := yyg + yyS[yyp].yys + 1
if yyj >= yyLast {
yystate = yyAct[yyg]
} else {
yystate = yyAct[yyj]
if yyChk[yystate] != -yyn {
yystate = yyAct[yyg]
}
}
// dummy call; replaced with literal code
switch yynt {
case 1:
//line lang.y:25
{
rn := new(rangenode)
rn._lhs1 = yyS[yypt-6].s
rn._lhs2 = yyS[yypt-4].s
rn._rhs = res{yyS[yypt-0].s, true}
yyVAL.n = rn
Output = yyVAL.n
}
case 2:
//line lang.y:34
{
yyS[yypt-0].c.setLHS(yyS[yypt-3].s)
yyVAL.n = yyS[yypt-0].c
Output = yyVAL.n
}
case 3:
//line lang.y:42
{
dan := new(declassnode)
dan._rhs = yyS[yypt-0].i
yyVAL.c = dan
}
case 4:
//line lang.y:48
{
dan := new(vdeclassnode)
dan._rhs.value = yyS[yypt-1].s + yyS[yypt-0].s
dan._rhs.needsResolution = true
yyVAL.c = dan
}
case 5:
//line lang.y:57
{
yyVAL.s = fmt.Sprintf(".%s%s", yyS[yypt-1].s, yyS[yypt-0].s)
}
case 6:
//line lang.y:61
{
yyVAL.s = ""
}
}
goto yystack /* stack new state and value */
}