import java.lang.reflect.*;
import java.lang.ref.*;
-/** juxtaposition; zero or more adjacent Elements; can specify a rewriting */
+/** <font color=green>juxtaposition; zero or more adjacent Elements; can specify a rewriting</font> */
public abstract class Sequence extends Element implements Iterable<Element> {
+ protected final Element[] elements;
+
+ final HashSet<Sequence> hated = new HashSet<Sequence>();
+
+ final HashSet<Sequence> needs = new HashSet<Sequence>();
+ final HashSet<Sequence> hates = new HashSet<Sequence>();
+
+ final Position firstp;
+
+ public Atom follow = null;
+ public final Atom follow() { return follow; }
+
// Static Constructors //////////////////////////////////////////////////////////////////////////////
abstract Sequence _clone();
Sequence dup() {
Sequence ret = _clone();
- for(Sequence s : needs) { ret.needs.add(s); s.needed.add(ret); }
+ for(Sequence s : needs) { ret.needs.add(s); }
for(Sequence s : hates) { ret.hates.add(s); s.hated.add(ret); }
ret.follow = follow;
- ret.lame = lame;
return ret;
}
public static final Sequence empty = new Sequence.Constant.Empty();
/** after matching the sequence, do not add anything to the output tree */
- public static Sequence drop(Element[] e, boolean lame) { return new Constant.Drop(e, lame); }
+ public static Sequence drop(Element[] e) { return new Constant.Drop(e); }
/** after matching the sequence, insert a constant into the output tree */
public static Sequence constant(Element[] e, Object o) { return new Constant(e, o); }
public static Sequence rewritingSequence(Object tag, Element[] e, boolean[] drops) {
return new RewritingSequence(tag, e, drops); }
- ////////////////////////////////////////////////////////////////////////////////
-
- public Element follow = null;
- public final Topology follow() { return follow==null ? null : Atom.toAtom(follow); }
+ public static Sequence regionRewritingSequence(Functor<Input.Region,Object> tagfunctor, Element[] e, boolean[] drops) {
+ return new RegionRewritingSequence(tagfunctor, e, drops); }
- Topology toAtom() {
- if (elements.length!=1)
- throw new RuntimeException("cannot invoke toAtom() on a Sequence with " + elements.length + " elements: " + this);
- return Atom.toAtom(elements[0]);
- }
+ ////////////////////////////////////////////////////////////////////////////////
- public Sequence and(Sequence s) { Sequence ret = dup(); ret.needs.add(s); s.needed.add(ret); return ret; }
+ public Sequence and(Sequence s) { Sequence ret = dup(); ret.needs.add(s); return ret; }
public Sequence not(Sequence s) { Sequence ret = dup(); ret.hates.add(s); s.hated.add(ret); return ret; }
- protected final Element[] elements;
+ public Iterable<Sequence> needs() { return needs; }
+ public Iterable<Sequence> hates() { return hates; }
- final HashSet<Sequence> needed = new HashSet<Sequence>();
- final HashSet<Sequence> hated = new HashSet<Sequence>();
- final HashSet<Sequence> needs = new HashSet<Sequence>();
- final HashSet<Sequence> hates = new HashSet<Sequence>();
- public boolean lame = false;
-
- final Position firstp;
Position firstp() { return firstp; }
public Iterator<Element> iterator() { return new ArrayIterator<Element>(elements); }
}
// DO NOT MESS WITH THE FOLLOWING LINE!!!
- private Forest.Ref epsilonForm = null;
+ private Forest.Many epsilonForm = null;
Forest epsilonForm() {
if (epsilonForm!=null) return epsilonForm;
- epsilonForm = new Forest.Ref();
+ epsilonForm = new Forest.Many();
epsilonForm.merge(firstp().rewrite(null, false));
return epsilonForm;
}
public Constant(Element[] e, Object result) { super(e); this.result = result; }
Sequence _clone() { return new Constant(elements, result); }
public <T> Forest<T> postReduce(Input.Region loc, Forest<T>[] args, Position p) {
- return (Forest<T>)Forest.leaf(loc, result, p);
+ return (Forest<T>)Forest.create(loc, result, null, false);
}
static class Drop extends Constant {
- Sequence _clone() { return new Drop(elements, lame); }
- public Drop(Element[] e, boolean lame) {
- super(e, null);
- this.lame = lame;
- }
+ Sequence _clone() { return new Drop(elements); }
+ public Drop(Element[] e) { super(e, null); }
}
static class Empty extends Sequence.Constant.Drop {
Sequence _clone() { return new Empty(); }
- public Empty() { super(new Element[] { }, false); } }
+ public Empty() { super(new Element[] { }); } }
}
static class Singleton extends Sequence {
private final int idx;
public Singleton(Element e) { this(new Element[] { e }, 0); }
public Singleton(Element[] e, int idx) { super(e); this.idx = idx; }
- public <T> Forest<T> postReduce(Input.Region loc, Forest<T>[] args, Position p) { return (Forest<T>)Forest.singleton(loc, args[idx], p); }
+ public <T> Forest<T> postReduce(Input.Region loc, Forest<T>[] args, Position p) { return args[idx]; }
Sequence _clone() { return new Singleton(elements,idx); }
}
Sequence _clone() { return new Unwrap(elements, drops); }
public <T> Forest<T> postReduce(Input.Region loc, Forest<T>[] args, Position p) {
for(int i=0; i<args.length; i++) if (args[i]==null) throw new Error();
- if (drops==null) return Forest.create(loc, (T)tag, args, true, false, p);
+ if (drops==null) return Forest.create(loc, (T)tag, args, true);
int count = 0;
for(int i=0; i<drops.length; i++) if (!drops[i]) count++;
Forest<T>[] args2 = new Forest[count];
int j = 0;
for(int i=0; i<args.length; i++) if (!drops[i]) args2[j++] = args[i];
- return Forest.create(loc, (T)tag, args2, true, false, p);
+ return Forest.create(loc, (T)tag, args2, true);
+ }
+ }
+
+
+
+ static class RegionRewritingSequence extends RewritingSequence {
+ private Functor<Input.Region, Object> tagf;
+ public RegionRewritingSequence(Functor<Input.Region,Object> tagfunctor, Element[] e, boolean[] drops) {
+ super(null, e, drops);
+ this.tagf = tagfunctor;
+ }
+ public <T> Forest<T> postReduce(Input.Region loc, Forest<T>[] args, Position p) {
+ this.tag = tagf.invoke(loc);
+ Forest<T> ret = super.postReduce(loc, args, p);
+ this.tag = null;
+ return ret;
}
}
static class RewritingSequence extends Sequence {
- /*private*/public final Object tag;
+ /*private*/public /*final*/ Object tag;
private final boolean[] drops;
private int count = 0;
Sequence _clone() { return new RewritingSequence(tag, elements, drops); }
int j = 0;
for(int i=0; i<args.length; i++) if (!drops[i]) args2[j++] = args[i];
//System.out.println("reduce \""+tag+"\"");
- return Forest.create(loc, (T)tag, args2, false, false, p);
+ return Forest.create(loc, (T)tag, args2, false);
}
public StringBuffer toString(StringBuffer sb, boolean spacing) {
int len = sb.length();