mirror of
https://github.com/golang/go.git
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488 lines
11 KiB
Go
488 lines
11 KiB
Go
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Regular expression library.
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package regexp
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import os "os"
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export var ErrUnimplemented = os.NewError("unimplemented");
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export var ErrInternal = os.NewError("internal error");
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export var ErrUnmatchedLpar = os.NewError("unmatched '('");
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export var ErrUnmatchedRpar = os.NewError("unmatched ')'");
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export var ErrExtraneousBackslash = os.NewError("extraneous backslash");
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export var ErrEmpty = os.NewError("empty subexpression or alternation");
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export var ErrBadClosure = os.NewError("repeated closure (**, ++, etc.)");
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export var ErrBareClosure = os.NewError("closure applies to nothing");
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export var ErrBadBackslash = os.NewError("illegal backslash escape");
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// An instruction executed by the NFA
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type Inst interface {
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Type() int; // the type of this instruction: CHAR, ANY, etc.
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Next() Inst; // the instruction to execute after this one
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SetNext(i Inst);
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Print(ind string);
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}
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type RE struct {
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expr string; // the original expression
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ch *chan<- *RE; // reply channel when we're done
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error *os.Error; // compile- or run-time error; nil if OK
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start Inst;
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}
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const (
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START // beginning of program: marker to start
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= iota;
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END; // end of program: success
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BOT; // '^' beginning of text
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EOT; // '$' end of text
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CHAR; // 'a' regular character
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ANY; // '.' any character
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BRA; // '(' parenthesized expression
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EBRA; // ')'; end of '(' parenthesized expression
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ALT; // '|' alternation
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NOP; // do nothing; makes it easy to link without patching
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)
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// --- START start of program
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type Start struct {
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next Inst;
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}
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func (start *Start) Type() int { return START }
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func (start *Start) Next() Inst { return start.next }
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func (start *Start) SetNext(i Inst) { start.next = i }
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func (start *Start) Print(ind string) { print(ind, "start") }
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// --- END end of program
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type End struct {
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next Inst;
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}
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func (end *End) Type() int { return END }
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func (end *End) Next() Inst { return end.next }
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func (end *End) SetNext(i Inst) { end.next = i }
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func (end *End) Print(ind string) { print(ind, "end") }
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// --- BOT beginning of text
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type Bot struct {
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next Inst;
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}
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func (bot *Bot) Type() int { return BOT }
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func (bot *Bot) Next() Inst { return bot.next }
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func (bot *Bot) SetNext(i Inst) { bot.next = i }
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func (bot *Bot) Print(ind string) { print(ind, "bot") }
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// --- EOT end of text
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type Eot struct {
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next Inst;
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}
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func (eot *Eot) Type() int { return EOT }
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func (eot *Eot) Next() Inst { return eot.next }
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func (eot *Eot) SetNext(i Inst) { eot.next = i }
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func (eot *Eot) Print(ind string) { print(ind, "eot") }
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// --- CHAR a regular character
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type Char struct {
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next Inst;
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char int;
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set bool;
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}
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func (char *Char) Type() int { return CHAR }
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func (char *Char) Next() Inst { return char.next }
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func (char *Char) SetNext(i Inst) { char.next = i }
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func (char *Char) Print(ind string) { print(ind, "char ", string(char.char)) }
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func NewChar(char int) *Char {
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c := new(Char);
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c.char = char;
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return c;
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}
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// --- ANY any character
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type Any struct {
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next Inst;
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}
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func (any *Any) Type() int { return ANY }
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func (any *Any) Next() Inst { return any.next }
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func (any *Any) SetNext(i Inst) { any.next = i }
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func (any *Any) Print(ind string) { print(ind, "any") }
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// --- BRA parenthesized expression
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type Bra struct {
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next Inst;
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n int; // subexpression number
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}
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func (bra *Bra) Type() int { return BRA }
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func (bra *Bra) Next() Inst { return bra.next }
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func (bra *Bra) SetNext(i Inst) { bra.next = i }
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func (bra *Bra) Print(ind string) { print(ind , "bra"); }
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// --- EBRA end of parenthesized expression
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type Ebra struct {
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next Inst;
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n int; // subexpression number
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}
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func (ebra *Ebra) Type() int { return BRA }
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func (ebra *Ebra) Next() Inst { return ebra.next }
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func (ebra *Ebra) SetNext(i Inst) { ebra.next = i }
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func (ebra *Ebra) Print(ind string) { print(ind , "ebra ", ebra.n); }
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// --- ALT alternation
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type Alt struct {
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next Inst;
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left Inst; // other branch
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}
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func (alt *Alt) Type() int { return ALT }
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func (alt *Alt) Next() Inst { return alt.next }
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func (alt *Alt) SetNext(i Inst) { alt.next = i }
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func (alt *Alt) Print(ind string) { print(ind , "alt(", alt.left, ")"); }
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// --- NOP no operation
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type Nop struct {
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next Inst;
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}
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func (nop *Nop) Type() int { return NOP }
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func (nop *Nop) Next() Inst { return nop.next }
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func (nop *Nop) SetNext(i Inst) { nop.next = i }
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func (nop *Nop) Print(ind string) { print(ind, "nop") }
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// report error and exit compiling/executing goroutine
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func (re *RE) Error(err *os.Error) {
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re.error = err;
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re.ch <- re;
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sys.goexit();
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}
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type Parser struct {
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re *RE;
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nbra int; // number of brackets in expression, for subexpressions
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nlpar int; // number of unclosed lpars
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pos int;
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ch int;
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}
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const EOF = -1
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func (p *Parser) c() int {
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return p.ch;
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}
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func (p *Parser) nextc() int {
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if p.pos >= len(p.re.expr) {
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p.ch = EOF
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} else {
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c, w := sys.stringtorune(p.re.expr, p.pos); // TODO: stringotorune shoudl take a string*
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p.ch = c;
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p.pos += w;
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}
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return p.ch;
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}
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func NewParser(re *RE) *Parser {
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parser := new(Parser);
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parser.re = re;
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parser.nextc(); // load p.ch
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return parser;
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}
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/*
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Grammar:
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regexp:
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concatenation { '|' concatenation }
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concatenation:
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{ closure }
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closure:
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term { '*' | '+' | '?' }
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term:
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'.'
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character
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characterclass
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'(' regexp ')'
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*/
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func (p *Parser) Regexp() (start, end Inst)
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var NULL Inst
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type BUGinter interface{}
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// same as i == NULL. TODO: remove when 6g lets me do i == NULL
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func isNULL(i Inst) bool {
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return sys.BUG_intereq(i.(BUGinter), NULL.(BUGinter))
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}
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// same as i == j. TODO: remove when 6g lets me do i == j
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func isEQ(i,j Inst) bool {
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return sys.BUG_intereq(i.(BUGinter), j.(BUGinter))
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}
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func special(c int) bool {
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s := `\.+*?()|[-]`;
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for i := 0; i < len(s); i++ {
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if c == int(s[i]) {
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return true
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}
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}
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return false
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}
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func (p *Parser) Term() (start, end Inst) {
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switch c := p.c(); c {
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case '|', EOF:
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return NULL, NULL;
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case '*', '+', '|':
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p.re.Error(ErrBareClosure);
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case ')':
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if p.nlpar == 0 {
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p.re.Error(ErrUnmatchedRpar);
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}
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return NULL, NULL;
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case '.':
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p.nextc();
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start = new(Any);
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return start, start;
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case '(':
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p.nextc();
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p.nlpar++;
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start, end = p.Regexp();
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if p.c() != ')' {
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p.re.Error(ErrUnmatchedLpar);
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}
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p.nlpar--;
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p.nextc();
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p.nbra++;
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bra := new(Bra);
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ebra := new(Ebra);
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bra.n = p.nbra;
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ebra.n = p.nbra;
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if isNULL(start) {
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if !isNULL(end) { p.re.Error(ErrInternal) }
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start = ebra
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} else {
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end.SetNext(ebra);
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}
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bra.SetNext(start);
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return bra, ebra;
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case '\\':
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c = p.nextc();
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switch {
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case c == EOF:
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p.re.Error(ErrExtraneousBackslash);
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case c == 'n':
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c = '\n';
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case special(c):
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// c is as delivered
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default:
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p.re.Error(ErrBadBackslash);
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}
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fallthrough;
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default:
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p.nextc();
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start = NewChar(c);
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return start, start
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}
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panic("unreachable");
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}
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func (p *Parser) Closure() (start, end Inst) {
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start, end = p.Term();
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if isNULL(start) {
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return start, end
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}
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switch p.c() {
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case '*':
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// (start,end)*:
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alt := new(Alt);
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end.SetNext(alt); // after end, do alt
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alt.left = start; // alternate brach: return to start
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start = alt; // alt becomes new (start, end)
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end = alt;
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case '+':
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// (start,end)+:
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alt := new(Alt);
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end.SetNext(alt); // after end, do alt
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alt.left = start; // alternate brach: return to start
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end = alt; // start is unchanged; end is alt
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case '?':
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// (start,end)?:
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alt := new(Alt);
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nop := new(Nop);
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alt.left = start; // alternate branch is start
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alt.next = nop; // follow on to nop
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end.SetNext(nop); // after end, go to nop
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start = alt; // start is now alt
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end = nop; // end is nop pointed to by both branches
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default:
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return start, end;
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}
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switch p.nextc() {
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case '*', '+', '?':
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p.re.Error(ErrBadClosure);
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}
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return start, end;
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}
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func (p *Parser) Concatenation() (start, end Inst) {
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start, end = NULL, NULL;
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for {
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switch p.c() {
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case '|', ')', EOF:
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if isNULL(start) { // this is the empty string
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nop := new(Nop);
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return nop, nop;
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}
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return start, end;
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}
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nstart, nend := p.Closure();
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switch {
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case isNULL(nstart): // end of this concatenation
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return start, end;
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case isNULL(start): // this is first element of concatenation
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start, end = nstart, nend;
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default:
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end.SetNext(nstart);
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end = nend;
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}
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}
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panic("unreachable");
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}
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func (p *Parser) Regexp() (start, end Inst) {
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start, end = p.Concatenation();
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if isNULL(start) {
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return NULL, NULL
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}
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for {
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switch p.c() {
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default:
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return start, end;
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case '|':
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p.nextc();
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nstart, nend := p.Concatenation();
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// xyz|(nothing) is xyz or nop
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if isNULL(nstart) {
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nop := new(Nop);
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nstart, nend = nop, nop;
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}
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alt := new(Alt);
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alt.left = start;
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alt.next = nstart;
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nop := new(Nop);
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end.SetNext(nop);
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nend.SetNext(nop);
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start, end = alt, nop;
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}
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}
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panic("unreachable");
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}
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func UnNop(i Inst) Inst {
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for i.Type() == NOP {
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i = i.Next()
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}
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return i
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}
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func (re *RE) EliminateNops(start Inst) {
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for i := start; i.Type() != END; i = i.Next() { // last one is END
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i.SetNext(UnNop(i.Next()));
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if i.Type() == ALT {
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alt := i.(*Alt);
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alt.left = UnNop(alt.left);
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re.EliminateNops(alt.left);
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}
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}
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}
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// use a 'done' array to know where we've already printed.
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// the output is not pretty but it is serviceable.
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func (re *RE) Dump(ind string, inst Inst, done *[]Inst) {
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// see if we've been here, and mark it
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for i := 0; i < len(done); i++ {
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if isEQ(inst, done[i]) {
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print(ind, inst, ": -> ", inst.Next(), "...\n");
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return;
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}
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}
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slot := len(done);
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done= done[0:slot+1];
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done[slot] = inst;
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if isNULL(inst) {
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println("NULL");
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return;
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}
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if inst.Type() == END { print(inst, ": END\n"); return }
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print(ind, inst, ": ");
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inst.Print("");
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print(" -> ", inst.Next(), "\n");
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switch inst.Type() {
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case END:
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return;
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case ALT:
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re.Dump(ind + "\t", inst.(*Alt).left, done);
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}
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re.Dump(ind, inst.Next(), done);
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}
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func (re *RE) DumpAll() {
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re.Dump("", re.start, new([]Inst, 1000)[0:0]);
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}
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func (re *RE) DoParse() {
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parser := NewParser(re);
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start := new(Start);
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s, e := parser.Regexp();
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if isNULL(s) {
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if !isNULL(e) { re.Error(ErrInternal) }
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e = start;
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}
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start.next = s;
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re.start = start;
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e.SetNext(new(End));
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re.DumpAll();
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println();
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re.EliminateNops(re.start);
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re.DumpAll();
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println();
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re.Error(ErrUnimplemented);
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}
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func Compiler(str string, ch *chan *RE) {
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re := new(RE);
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re.expr = str;
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re.ch = ch;
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re.DoParse();
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ch <- re;
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}
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// Public interface has only execute functionality (not yet implemented)
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export type Regexp interface {
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// Execute() bool
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}
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// compile in separate goroutine; wait for result
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export func Compile(str string) (regexp Regexp, error *os.Error) {
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ch := new(chan *RE);
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go Compiler(str, ch);
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re := <-ch;
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return re, re.error
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}
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