src/share/classes/com/sun/tools/javac/code/Symbol.java

Fri, 26 Feb 2010 08:42:22 -0800

author
jjg
date
Fri, 26 Feb 2010 08:42:22 -0800
changeset 509
b030706da5b4
parent 483
8e638442522a
child 537
9d9d08922405
permissions
-rw-r--r--

6881645: Unchecked method call on a method declared inside anonymous inner causes javac to crash
Reviewed-by: mcimadamore

duke@1 1 /*
xdono@54 2 * Copyright 1999-2008 Sun Microsystems, Inc. All Rights Reserved.
duke@1 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@1 4 *
duke@1 5 * This code is free software; you can redistribute it and/or modify it
duke@1 6 * under the terms of the GNU General Public License version 2 only, as
duke@1 7 * published by the Free Software Foundation. Sun designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
duke@1 9 * by Sun in the LICENSE file that accompanied this code.
duke@1 10 *
duke@1 11 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@1 12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@1 13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@1 14 * version 2 for more details (a copy is included in the LICENSE file that
duke@1 15 * accompanied this code).
duke@1 16 *
duke@1 17 * You should have received a copy of the GNU General Public License version
duke@1 18 * 2 along with this work; if not, write to the Free Software Foundation,
duke@1 19 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@1 20 *
duke@1 21 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
duke@1 22 * CA 95054 USA or visit www.sun.com if you need additional information or
duke@1 23 * have any questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.code;
duke@1 27
duke@1 28 import java.util.Set;
duke@1 29 import java.util.concurrent.Callable;
duke@1 30 import javax.lang.model.element.*;
duke@1 31 import javax.tools.JavaFileObject;
duke@1 32
duke@1 33 import com.sun.tools.javac.util.*;
duke@1 34 import com.sun.tools.javac.util.Name;
duke@1 35 import com.sun.tools.javac.code.Type.*;
duke@1 36 import com.sun.tools.javac.comp.Attr;
duke@1 37 import com.sun.tools.javac.comp.AttrContext;
duke@1 38 import com.sun.tools.javac.comp.Env;
duke@1 39 import com.sun.tools.javac.jvm.*;
duke@1 40 import com.sun.tools.javac.model.*;
duke@1 41 import com.sun.tools.javac.tree.JCTree;
duke@1 42
duke@1 43 import static com.sun.tools.javac.code.Flags.*;
duke@1 44 import static com.sun.tools.javac.code.Kinds.*;
duke@1 45 import static com.sun.tools.javac.code.TypeTags.*;
duke@1 46
duke@1 47 /** Root class for Java symbols. It contains subclasses
duke@1 48 * for specific sorts of symbols, such as variables, methods and operators,
duke@1 49 * types, packages. Each subclass is represented as a static inner class
duke@1 50 * inside Symbol.
duke@1 51 *
duke@1 52 * <p><b>This is NOT part of any API supported by Sun Microsystems. If
duke@1 53 * you write code that depends on this, you do so at your own risk.
duke@1 54 * This code and its internal interfaces are subject to change or
duke@1 55 * deletion without notice.</b>
duke@1 56 */
duke@1 57 public abstract class Symbol implements Element {
duke@1 58 // public Throwable debug = new Throwable();
duke@1 59
duke@1 60 /** The kind of this symbol.
duke@1 61 * @see Kinds
duke@1 62 */
duke@1 63 public int kind;
duke@1 64
duke@1 65 /** The flags of this symbol.
duke@1 66 */
duke@1 67 public long flags_field;
duke@1 68
duke@1 69 /** An accessor method for the flags of this symbol.
duke@1 70 * Flags of class symbols should be accessed through the accessor
duke@1 71 * method to make sure that the class symbol is loaded.
duke@1 72 */
duke@1 73 public long flags() { return flags_field; }
duke@1 74
duke@1 75 /** The attributes of this symbol.
duke@1 76 */
duke@1 77 public List<Attribute.Compound> attributes_field;
duke@1 78
duke@1 79 /** An accessor method for the attributes of this symbol.
duke@1 80 * Attributes of class symbols should be accessed through the accessor
duke@1 81 * method to make sure that the class symbol is loaded.
duke@1 82 */
duke@1 83 public List<Attribute.Compound> getAnnotationMirrors() {
duke@1 84 assert attributes_field != null;
duke@1 85 return attributes_field;
duke@1 86 }
duke@1 87
duke@1 88 /** Fetch a particular annotation from a symbol. */
duke@1 89 public Attribute.Compound attribute(Symbol anno) {
duke@1 90 for (Attribute.Compound a : getAnnotationMirrors())
duke@1 91 if (a.type.tsym == anno) return a;
duke@1 92 return null;
duke@1 93 }
duke@1 94
duke@1 95 /** The name of this symbol in Utf8 representation.
duke@1 96 */
duke@1 97 public Name name;
duke@1 98
duke@1 99 /** The type of this symbol.
duke@1 100 */
duke@1 101 public Type type;
duke@1 102
jjg@308 103 /** The type annotations targeted to a tree directly owned by this symbol
jjg@308 104 */
jjg@308 105 // type annotations are stored here for two purposes:
jjg@308 106 // - convenient location to store annotations for generation after erasure
jjg@308 107 // - a private interface for accessing type annotations parsed from
jjg@308 108 // classfiles
jjg@308 109 // the field is populated for the following declaration only
jjg@308 110 // class, field, variable and type parameters
jjg@308 111 //
jjg@308 112 public List<Attribute.TypeCompound> typeAnnotations;
jjg@308 113
duke@1 114 /** The owner of this symbol.
duke@1 115 */
duke@1 116 public Symbol owner;
duke@1 117
duke@1 118 /** The completer of this symbol.
duke@1 119 */
duke@1 120 public Completer completer;
duke@1 121
duke@1 122 /** A cache for the type erasure of this symbol.
duke@1 123 */
duke@1 124 public Type erasure_field;
duke@1 125
duke@1 126 /** Construct a symbol with given kind, flags, name, type and owner.
duke@1 127 */
duke@1 128 public Symbol(int kind, long flags, Name name, Type type, Symbol owner) {
duke@1 129 this.kind = kind;
duke@1 130 this.flags_field = flags;
duke@1 131 this.type = type;
duke@1 132 this.owner = owner;
duke@1 133 this.completer = null;
duke@1 134 this.erasure_field = null;
duke@1 135 this.attributes_field = List.nil();
jjg@308 136 this.typeAnnotations = List.nil();
duke@1 137 this.name = name;
duke@1 138 }
duke@1 139
duke@1 140 /** Clone this symbol with new owner.
duke@1 141 * Legal only for fields and methods.
duke@1 142 */
duke@1 143 public Symbol clone(Symbol newOwner) {
duke@1 144 throw new AssertionError();
duke@1 145 }
duke@1 146
mcimadamore@121 147 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 148 return v.visitSymbol(this, p);
mcimadamore@121 149 }
mcimadamore@121 150
duke@1 151 /** The Java source which this symbol represents.
duke@1 152 * A description of this symbol; overrides Object.
duke@1 153 */
duke@1 154 public String toString() {
duke@1 155 return name.toString();
duke@1 156 }
duke@1 157
duke@1 158 /** A Java source description of the location of this symbol; used for
mcimadamore@80 159 * error reporting.
mcimadamore@80 160 *
mcimadamore@80 161 * @return null if the symbol is a package or a toplevel class defined in
mcimadamore@80 162 * the default package; otherwise, the owner symbol is returned
duke@1 163 */
mcimadamore@80 164 public Symbol location() {
jjg@509 165 if (owner.name == null || (owner.name.isEmpty() && owner.kind != PCK && owner.kind != TYP)) {
mcimadamore@80 166 return null;
duke@1 167 }
mcimadamore@80 168 return owner;
duke@1 169 }
duke@1 170
mcimadamore@80 171 public Symbol location(Type site, Types types) {
jjg@113 172 if (owner.name == null || owner.name.isEmpty()) {
duke@1 173 return location();
duke@1 174 }
duke@1 175 if (owner.type.tag == CLASS) {
duke@1 176 Type ownertype = types.asOuterSuper(site, owner);
mcimadamore@80 177 if (ownertype != null) return ownertype.tsym;
duke@1 178 }
mcimadamore@80 179 return owner;
duke@1 180 }
duke@1 181
duke@1 182 /** The symbol's erased type.
duke@1 183 */
duke@1 184 public Type erasure(Types types) {
duke@1 185 if (erasure_field == null)
duke@1 186 erasure_field = types.erasure(type);
duke@1 187 return erasure_field;
duke@1 188 }
duke@1 189
duke@1 190 /** The external type of a symbol. This is the symbol's erased type
duke@1 191 * except for constructors of inner classes which get the enclosing
duke@1 192 * instance class added as first argument.
duke@1 193 */
duke@1 194 public Type externalType(Types types) {
duke@1 195 Type t = erasure(types);
jjg@113 196 if (name == name.table.names.init && owner.hasOuterInstance()) {
duke@1 197 Type outerThisType = types.erasure(owner.type.getEnclosingType());
duke@1 198 return new MethodType(t.getParameterTypes().prepend(outerThisType),
duke@1 199 t.getReturnType(),
duke@1 200 t.getThrownTypes(),
duke@1 201 t.tsym);
duke@1 202 } else {
duke@1 203 return t;
duke@1 204 }
duke@1 205 }
duke@1 206
duke@1 207 public boolean isStatic() {
duke@1 208 return
duke@1 209 (flags() & STATIC) != 0 ||
duke@1 210 (owner.flags() & INTERFACE) != 0 && kind != MTH;
duke@1 211 }
duke@1 212
duke@1 213 public boolean isInterface() {
duke@1 214 return (flags() & INTERFACE) != 0;
duke@1 215 }
duke@1 216
duke@1 217 /** Is this symbol declared (directly or indirectly) local
duke@1 218 * to a method or variable initializer?
duke@1 219 * Also includes fields of inner classes which are in
duke@1 220 * turn local to a method or variable initializer.
duke@1 221 */
duke@1 222 public boolean isLocal() {
duke@1 223 return
duke@1 224 (owner.kind & (VAR | MTH)) != 0 ||
duke@1 225 (owner.kind == TYP && owner.isLocal());
duke@1 226 }
duke@1 227
duke@1 228 /** Is this symbol a constructor?
duke@1 229 */
duke@1 230 public boolean isConstructor() {
jjg@113 231 return name == name.table.names.init;
duke@1 232 }
duke@1 233
duke@1 234 /** The fully qualified name of this symbol.
duke@1 235 * This is the same as the symbol's name except for class symbols,
duke@1 236 * which are handled separately.
duke@1 237 */
duke@1 238 public Name getQualifiedName() {
duke@1 239 return name;
duke@1 240 }
duke@1 241
duke@1 242 /** The fully qualified name of this symbol after converting to flat
duke@1 243 * representation. This is the same as the symbol's name except for
duke@1 244 * class symbols, which are handled separately.
duke@1 245 */
duke@1 246 public Name flatName() {
duke@1 247 return getQualifiedName();
duke@1 248 }
duke@1 249
duke@1 250 /** If this is a class or package, its members, otherwise null.
duke@1 251 */
duke@1 252 public Scope members() {
duke@1 253 return null;
duke@1 254 }
duke@1 255
duke@1 256 /** A class is an inner class if it it has an enclosing instance class.
duke@1 257 */
duke@1 258 public boolean isInner() {
duke@1 259 return type.getEnclosingType().tag == CLASS;
duke@1 260 }
duke@1 261
duke@1 262 /** An inner class has an outer instance if it is not an interface
duke@1 263 * it has an enclosing instance class which might be referenced from the class.
duke@1 264 * Nested classes can see instance members of their enclosing class.
duke@1 265 * Their constructors carry an additional this$n parameter, inserted
duke@1 266 * implicitly by the compiler.
duke@1 267 *
duke@1 268 * @see #isInner
duke@1 269 */
duke@1 270 public boolean hasOuterInstance() {
duke@1 271 return
duke@1 272 type.getEnclosingType().tag == CLASS && (flags() & (INTERFACE | NOOUTERTHIS)) == 0;
duke@1 273 }
duke@1 274
duke@1 275 /** The closest enclosing class of this symbol's declaration.
duke@1 276 */
duke@1 277 public ClassSymbol enclClass() {
duke@1 278 Symbol c = this;
duke@1 279 while (c != null &&
duke@1 280 ((c.kind & TYP) == 0 || c.type.tag != CLASS)) {
duke@1 281 c = c.owner;
duke@1 282 }
duke@1 283 return (ClassSymbol)c;
duke@1 284 }
duke@1 285
duke@1 286 /** The outermost class which indirectly owns this symbol.
duke@1 287 */
duke@1 288 public ClassSymbol outermostClass() {
duke@1 289 Symbol sym = this;
duke@1 290 Symbol prev = null;
duke@1 291 while (sym.kind != PCK) {
duke@1 292 prev = sym;
duke@1 293 sym = sym.owner;
duke@1 294 }
duke@1 295 return (ClassSymbol) prev;
duke@1 296 }
duke@1 297
duke@1 298 /** The package which indirectly owns this symbol.
duke@1 299 */
duke@1 300 public PackageSymbol packge() {
duke@1 301 Symbol sym = this;
duke@1 302 while (sym.kind != PCK) {
duke@1 303 sym = sym.owner;
duke@1 304 }
duke@1 305 return (PackageSymbol) sym;
duke@1 306 }
duke@1 307
duke@1 308 /** Is this symbol a subclass of `base'? Only defined for ClassSymbols.
duke@1 309 */
duke@1 310 public boolean isSubClass(Symbol base, Types types) {
duke@1 311 throw new AssertionError("isSubClass " + this);
duke@1 312 }
duke@1 313
duke@1 314 /** Fully check membership: hierarchy, protection, and hiding.
duke@1 315 * Does not exclude methods not inherited due to overriding.
duke@1 316 */
duke@1 317 public boolean isMemberOf(TypeSymbol clazz, Types types) {
duke@1 318 return
duke@1 319 owner == clazz ||
duke@1 320 clazz.isSubClass(owner, types) &&
duke@1 321 isInheritedIn(clazz, types) &&
duke@1 322 !hiddenIn((ClassSymbol)clazz, types);
duke@1 323 }
duke@1 324
duke@1 325 /** Is this symbol the same as or enclosed by the given class? */
duke@1 326 public boolean isEnclosedBy(ClassSymbol clazz) {
duke@1 327 for (Symbol sym = this; sym.kind != PCK; sym = sym.owner)
duke@1 328 if (sym == clazz) return true;
duke@1 329 return false;
duke@1 330 }
duke@1 331
duke@1 332 /** Check for hiding. Note that this doesn't handle multiple
duke@1 333 * (interface) inheritance. */
duke@1 334 private boolean hiddenIn(ClassSymbol clazz, Types types) {
duke@1 335 if (kind == MTH && (flags() & STATIC) == 0) return false;
duke@1 336 while (true) {
duke@1 337 if (owner == clazz) return false;
duke@1 338 Scope.Entry e = clazz.members().lookup(name);
duke@1 339 while (e.scope != null) {
duke@1 340 if (e.sym == this) return false;
duke@1 341 if (e.sym.kind == kind &&
duke@1 342 (kind != MTH ||
duke@1 343 (e.sym.flags() & STATIC) != 0 &&
duke@1 344 types.isSubSignature(e.sym.type, type)))
duke@1 345 return true;
duke@1 346 e = e.next();
duke@1 347 }
duke@1 348 Type superType = types.supertype(clazz.type);
duke@1 349 if (superType.tag != TypeTags.CLASS) return false;
duke@1 350 clazz = (ClassSymbol)superType.tsym;
duke@1 351 }
duke@1 352 }
duke@1 353
duke@1 354 /** Is this symbol inherited into a given class?
duke@1 355 * PRE: If symbol's owner is a interface,
duke@1 356 * it is already assumed that the interface is a superinterface
duke@1 357 * of given class.
duke@1 358 * @param clazz The class for which we want to establish membership.
duke@1 359 * This must be a subclass of the member's owner.
duke@1 360 */
duke@1 361 public boolean isInheritedIn(Symbol clazz, Types types) {
duke@1 362 switch ((int)(flags_field & Flags.AccessFlags)) {
duke@1 363 default: // error recovery
duke@1 364 case PUBLIC:
duke@1 365 return true;
duke@1 366 case PRIVATE:
duke@1 367 return this.owner == clazz;
duke@1 368 case PROTECTED:
duke@1 369 // we model interfaces as extending Object
duke@1 370 return (clazz.flags() & INTERFACE) == 0;
duke@1 371 case 0:
duke@1 372 PackageSymbol thisPackage = this.packge();
duke@1 373 for (Symbol sup = clazz;
duke@1 374 sup != null && sup != this.owner;
duke@1 375 sup = types.supertype(sup.type).tsym) {
mcimadamore@155 376 while (sup.type.tag == TYPEVAR)
mcimadamore@155 377 sup = sup.type.getUpperBound().tsym;
duke@1 378 if (sup.type.isErroneous())
duke@1 379 return true; // error recovery
duke@1 380 if ((sup.flags() & COMPOUND) != 0)
duke@1 381 continue;
duke@1 382 if (sup.packge() != thisPackage)
duke@1 383 return false;
duke@1 384 }
duke@1 385 return (clazz.flags() & INTERFACE) == 0;
duke@1 386 }
duke@1 387 }
duke@1 388
duke@1 389 /** The (variable or method) symbol seen as a member of given
duke@1 390 * class type`site' (this might change the symbol's type).
duke@1 391 * This is used exclusively for producing diagnostics.
duke@1 392 */
duke@1 393 public Symbol asMemberOf(Type site, Types types) {
duke@1 394 throw new AssertionError();
duke@1 395 }
duke@1 396
duke@1 397 /** Does this method symbol override `other' symbol, when both are seen as
duke@1 398 * members of class `origin'? It is assumed that _other is a member
duke@1 399 * of origin.
duke@1 400 *
duke@1 401 * It is assumed that both symbols have the same name. The static
duke@1 402 * modifier is ignored for this test.
duke@1 403 *
duke@1 404 * See JLS 8.4.6.1 (without transitivity) and 8.4.6.4
duke@1 405 */
duke@1 406 public boolean overrides(Symbol _other, TypeSymbol origin, Types types, boolean checkResult) {
duke@1 407 return false;
duke@1 408 }
duke@1 409
duke@1 410 /** Complete the elaboration of this symbol's definition.
duke@1 411 */
duke@1 412 public void complete() throws CompletionFailure {
duke@1 413 if (completer != null) {
duke@1 414 Completer c = completer;
duke@1 415 completer = null;
duke@1 416 c.complete(this);
duke@1 417 }
duke@1 418 }
duke@1 419
duke@1 420 /** True if the symbol represents an entity that exists.
duke@1 421 */
duke@1 422 public boolean exists() {
duke@1 423 return true;
duke@1 424 }
duke@1 425
duke@1 426 public Type asType() {
duke@1 427 return type;
duke@1 428 }
duke@1 429
duke@1 430 public Symbol getEnclosingElement() {
duke@1 431 return owner;
duke@1 432 }
duke@1 433
duke@1 434 public ElementKind getKind() {
duke@1 435 return ElementKind.OTHER; // most unkind
duke@1 436 }
duke@1 437
duke@1 438 public Set<Modifier> getModifiers() {
duke@1 439 return Flags.asModifierSet(flags());
duke@1 440 }
duke@1 441
duke@1 442 public Name getSimpleName() {
duke@1 443 return name;
duke@1 444 }
duke@1 445
duke@1 446 /**
duke@1 447 * @deprecated this method should never be used by javac internally.
duke@1 448 */
duke@1 449 @Deprecated
duke@1 450 public <A extends java.lang.annotation.Annotation> A getAnnotation(Class<A> annoType) {
duke@1 451 return JavacElements.getAnnotation(this, annoType);
duke@1 452 }
duke@1 453
duke@1 454 // TODO: getEnclosedElements should return a javac List, fix in FilteredMemberList
duke@1 455 public java.util.List<Symbol> getEnclosedElements() {
duke@1 456 return List.nil();
duke@1 457 }
duke@1 458
duke@1 459 public List<TypeSymbol> getTypeParameters() {
duke@1 460 ListBuffer<TypeSymbol> l = ListBuffer.lb();
duke@1 461 for (Type t : type.getTypeArguments()) {
duke@1 462 l.append(t.tsym);
duke@1 463 }
duke@1 464 return l.toList();
duke@1 465 }
duke@1 466
duke@1 467 public static class DelegatedSymbol extends Symbol {
duke@1 468 protected Symbol other;
duke@1 469 public DelegatedSymbol(Symbol other) {
duke@1 470 super(other.kind, other.flags_field, other.name, other.type, other.owner);
duke@1 471 this.other = other;
duke@1 472 }
duke@1 473 public String toString() { return other.toString(); }
mcimadamore@80 474 public Symbol location() { return other.location(); }
mcimadamore@80 475 public Symbol location(Type site, Types types) { return other.location(site, types); }
duke@1 476 public Type erasure(Types types) { return other.erasure(types); }
duke@1 477 public Type externalType(Types types) { return other.externalType(types); }
duke@1 478 public boolean isLocal() { return other.isLocal(); }
duke@1 479 public boolean isConstructor() { return other.isConstructor(); }
duke@1 480 public Name getQualifiedName() { return other.getQualifiedName(); }
duke@1 481 public Name flatName() { return other.flatName(); }
duke@1 482 public Scope members() { return other.members(); }
duke@1 483 public boolean isInner() { return other.isInner(); }
duke@1 484 public boolean hasOuterInstance() { return other.hasOuterInstance(); }
duke@1 485 public ClassSymbol enclClass() { return other.enclClass(); }
duke@1 486 public ClassSymbol outermostClass() { return other.outermostClass(); }
duke@1 487 public PackageSymbol packge() { return other.packge(); }
duke@1 488 public boolean isSubClass(Symbol base, Types types) { return other.isSubClass(base, types); }
duke@1 489 public boolean isMemberOf(TypeSymbol clazz, Types types) { return other.isMemberOf(clazz, types); }
duke@1 490 public boolean isEnclosedBy(ClassSymbol clazz) { return other.isEnclosedBy(clazz); }
duke@1 491 public boolean isInheritedIn(Symbol clazz, Types types) { return other.isInheritedIn(clazz, types); }
duke@1 492 public Symbol asMemberOf(Type site, Types types) { return other.asMemberOf(site, types); }
duke@1 493 public void complete() throws CompletionFailure { other.complete(); }
duke@1 494
duke@1 495 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 496 return other.accept(v, p);
duke@1 497 }
mcimadamore@121 498
mcimadamore@121 499 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 500 return v.visitSymbol(other, p);
mcimadamore@121 501 }
duke@1 502 }
duke@1 503
duke@1 504 /** A class for type symbols. Type variables are represented by instances
duke@1 505 * of this class, classes and packages by instances of subclasses.
duke@1 506 */
duke@1 507 public static class TypeSymbol
duke@1 508 extends Symbol implements TypeParameterElement {
duke@1 509 // Implements TypeParameterElement because type parameters don't
duke@1 510 // have their own TypeSymbol subclass.
duke@1 511 // TODO: type parameters should have their own TypeSymbol subclass
duke@1 512
duke@1 513 public TypeSymbol(long flags, Name name, Type type, Symbol owner) {
duke@1 514 super(TYP, flags, name, type, owner);
duke@1 515 }
duke@1 516
duke@1 517 /** form a fully qualified name from a name and an owner
duke@1 518 */
duke@1 519 static public Name formFullName(Name name, Symbol owner) {
duke@1 520 if (owner == null) return name;
duke@1 521 if (((owner.kind != ERR)) &&
duke@1 522 ((owner.kind & (VAR | MTH)) != 0
duke@1 523 || (owner.kind == TYP && owner.type.tag == TYPEVAR)
duke@1 524 )) return name;
duke@1 525 Name prefix = owner.getQualifiedName();
jjg@113 526 if (prefix == null || prefix == prefix.table.names.empty)
duke@1 527 return name;
duke@1 528 else return prefix.append('.', name);
duke@1 529 }
duke@1 530
duke@1 531 /** form a fully qualified name from a name and an owner, after
duke@1 532 * converting to flat representation
duke@1 533 */
duke@1 534 static public Name formFlatName(Name name, Symbol owner) {
duke@1 535 if (owner == null ||
duke@1 536 (owner.kind & (VAR | MTH)) != 0
duke@1 537 || (owner.kind == TYP && owner.type.tag == TYPEVAR)
duke@1 538 ) return name;
duke@1 539 char sep = owner.kind == TYP ? '$' : '.';
duke@1 540 Name prefix = owner.flatName();
jjg@113 541 if (prefix == null || prefix == prefix.table.names.empty)
duke@1 542 return name;
duke@1 543 else return prefix.append(sep, name);
duke@1 544 }
duke@1 545
duke@1 546 /**
duke@1 547 * A total ordering between type symbols that refines the
duke@1 548 * class inheritance graph.
duke@1 549 *
duke@1 550 * Typevariables always precede other kinds of symbols.
duke@1 551 */
duke@1 552 public final boolean precedes(TypeSymbol that, Types types) {
duke@1 553 if (this == that)
duke@1 554 return false;
duke@1 555 if (this.type.tag == that.type.tag) {
duke@1 556 if (this.type.tag == CLASS) {
duke@1 557 return
duke@1 558 types.rank(that.type) < types.rank(this.type) ||
duke@1 559 types.rank(that.type) == types.rank(this.type) &&
duke@1 560 that.getQualifiedName().compareTo(this.getQualifiedName()) < 0;
duke@1 561 } else if (this.type.tag == TYPEVAR) {
duke@1 562 return types.isSubtype(this.type, that.type);
duke@1 563 }
duke@1 564 }
duke@1 565 return this.type.tag == TYPEVAR;
duke@1 566 }
duke@1 567
duke@1 568 // For type params; overridden in subclasses.
duke@1 569 public ElementKind getKind() {
duke@1 570 return ElementKind.TYPE_PARAMETER;
duke@1 571 }
duke@1 572
duke@1 573 public java.util.List<Symbol> getEnclosedElements() {
duke@1 574 List<Symbol> list = List.nil();
duke@1 575 for (Scope.Entry e = members().elems; e != null; e = e.sibling) {
duke@1 576 if (e.sym != null && (e.sym.flags() & SYNTHETIC) == 0 && e.sym.owner == this)
duke@1 577 list = list.prepend(e.sym);
duke@1 578 }
duke@1 579 return list;
duke@1 580 }
duke@1 581
duke@1 582 // For type params.
duke@1 583 // Perhaps not needed if getEnclosingElement can be spec'ed
duke@1 584 // to do the same thing.
duke@1 585 // TODO: getGenericElement() might not be needed
duke@1 586 public Symbol getGenericElement() {
duke@1 587 return owner;
duke@1 588 }
duke@1 589
duke@1 590 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 591 assert type.tag == TYPEVAR; // else override will be invoked
duke@1 592 return v.visitTypeParameter(this, p);
duke@1 593 }
duke@1 594
mcimadamore@121 595 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 596 return v.visitTypeSymbol(this, p);
mcimadamore@121 597 }
mcimadamore@121 598
duke@1 599 public List<Type> getBounds() {
duke@1 600 TypeVar t = (TypeVar)type;
duke@1 601 Type bound = t.getUpperBound();
duke@1 602 if (!bound.isCompound())
duke@1 603 return List.of(bound);
duke@1 604 ClassType ct = (ClassType)bound;
duke@1 605 if (!ct.tsym.erasure_field.isInterface()) {
duke@1 606 return ct.interfaces_field.prepend(ct.supertype_field);
duke@1 607 } else {
duke@1 608 // No superclass was given in bounds.
duke@1 609 // In this case, supertype is Object, erasure is first interface.
duke@1 610 return ct.interfaces_field;
duke@1 611 }
duke@1 612 }
duke@1 613 }
duke@1 614
duke@1 615 /** A class for package symbols
duke@1 616 */
duke@1 617 public static class PackageSymbol extends TypeSymbol
duke@1 618 implements PackageElement {
duke@1 619
duke@1 620 public Scope members_field;
duke@1 621 public Name fullname;
duke@1 622 public ClassSymbol package_info; // see bug 6443073
duke@1 623
duke@1 624 public PackageSymbol(Name name, Type type, Symbol owner) {
duke@1 625 super(0, name, type, owner);
duke@1 626 this.kind = PCK;
duke@1 627 this.members_field = null;
duke@1 628 this.fullname = formFullName(name, owner);
duke@1 629 }
duke@1 630
duke@1 631 public PackageSymbol(Name name, Symbol owner) {
duke@1 632 this(name, null, owner);
duke@1 633 this.type = new PackageType(this);
duke@1 634 }
duke@1 635
duke@1 636 public String toString() {
duke@1 637 return fullname.toString();
duke@1 638 }
duke@1 639
duke@1 640 public Name getQualifiedName() {
duke@1 641 return fullname;
duke@1 642 }
duke@1 643
duke@1 644 public boolean isUnnamed() {
duke@1 645 return name.isEmpty() && owner != null;
duke@1 646 }
duke@1 647
duke@1 648 public Scope members() {
duke@1 649 if (completer != null) complete();
duke@1 650 return members_field;
duke@1 651 }
duke@1 652
duke@1 653 public long flags() {
duke@1 654 if (completer != null) complete();
duke@1 655 return flags_field;
duke@1 656 }
duke@1 657
duke@1 658 public List<Attribute.Compound> getAnnotationMirrors() {
duke@1 659 if (completer != null) complete();
jjg@483 660 if (package_info != null && package_info.completer != null) {
jjg@483 661 package_info.complete();
jjg@483 662 if (attributes_field.isEmpty())
jjg@483 663 attributes_field = package_info.attributes_field;
jjg@483 664 }
duke@1 665 assert attributes_field != null;
duke@1 666 return attributes_field;
duke@1 667 }
duke@1 668
duke@1 669 /** A package "exists" if a type or package that exists has
duke@1 670 * been seen within it.
duke@1 671 */
duke@1 672 public boolean exists() {
duke@1 673 return (flags_field & EXISTS) != 0;
duke@1 674 }
duke@1 675
duke@1 676 public ElementKind getKind() {
duke@1 677 return ElementKind.PACKAGE;
duke@1 678 }
duke@1 679
duke@1 680 public Symbol getEnclosingElement() {
duke@1 681 return null;
duke@1 682 }
duke@1 683
duke@1 684 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 685 return v.visitPackage(this, p);
duke@1 686 }
mcimadamore@121 687
mcimadamore@121 688 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 689 return v.visitPackageSymbol(this, p);
mcimadamore@121 690 }
duke@1 691 }
duke@1 692
duke@1 693 /** A class for class symbols
duke@1 694 */
duke@1 695 public static class ClassSymbol extends TypeSymbol implements TypeElement {
duke@1 696
duke@1 697 /** a scope for all class members; variables, methods and inner classes
duke@1 698 * type parameters are not part of this scope
duke@1 699 */
duke@1 700 public Scope members_field;
duke@1 701
duke@1 702 /** the fully qualified name of the class, i.e. pck.outer.inner.
duke@1 703 * null for anonymous classes
duke@1 704 */
duke@1 705 public Name fullname;
duke@1 706
duke@1 707 /** the fully qualified name of the class after converting to flat
duke@1 708 * representation, i.e. pck.outer$inner,
duke@1 709 * set externally for local and anonymous classes
duke@1 710 */
duke@1 711 public Name flatname;
duke@1 712
duke@1 713 /** the sourcefile where the class came from
duke@1 714 */
duke@1 715 public JavaFileObject sourcefile;
duke@1 716
duke@1 717 /** the classfile from where to load this class
duke@1 718 * this will have extension .class or .java
duke@1 719 */
duke@1 720 public JavaFileObject classfile;
duke@1 721
duke@1 722 /** the constant pool of the class
duke@1 723 */
duke@1 724 public Pool pool;
duke@1 725
duke@1 726 public ClassSymbol(long flags, Name name, Type type, Symbol owner) {
duke@1 727 super(flags, name, type, owner);
duke@1 728 this.members_field = null;
duke@1 729 this.fullname = formFullName(name, owner);
duke@1 730 this.flatname = formFlatName(name, owner);
duke@1 731 this.sourcefile = null;
duke@1 732 this.classfile = null;
duke@1 733 this.pool = null;
duke@1 734 }
duke@1 735
duke@1 736 public ClassSymbol(long flags, Name name, Symbol owner) {
duke@1 737 this(
duke@1 738 flags,
duke@1 739 name,
duke@1 740 new ClassType(Type.noType, null, null),
duke@1 741 owner);
duke@1 742 this.type.tsym = this;
duke@1 743 }
duke@1 744
duke@1 745 /** The Java source which this symbol represents.
duke@1 746 */
duke@1 747 public String toString() {
duke@1 748 return className();
duke@1 749 }
duke@1 750
duke@1 751 public long flags() {
duke@1 752 if (completer != null) complete();
duke@1 753 return flags_field;
duke@1 754 }
duke@1 755
duke@1 756 public Scope members() {
duke@1 757 if (completer != null) complete();
duke@1 758 return members_field;
duke@1 759 }
duke@1 760
duke@1 761 public List<Attribute.Compound> getAnnotationMirrors() {
duke@1 762 if (completer != null) complete();
duke@1 763 assert attributes_field != null;
duke@1 764 return attributes_field;
duke@1 765 }
duke@1 766
duke@1 767 public Type erasure(Types types) {
duke@1 768 if (erasure_field == null)
duke@1 769 erasure_field = new ClassType(types.erasure(type.getEnclosingType()),
duke@1 770 List.<Type>nil(), this);
duke@1 771 return erasure_field;
duke@1 772 }
duke@1 773
duke@1 774 public String className() {
jjg@113 775 if (name.isEmpty())
duke@1 776 return
duke@1 777 Log.getLocalizedString("anonymous.class", flatname);
duke@1 778 else
duke@1 779 return fullname.toString();
duke@1 780 }
duke@1 781
duke@1 782 public Name getQualifiedName() {
duke@1 783 return fullname;
duke@1 784 }
duke@1 785
duke@1 786 public Name flatName() {
duke@1 787 return flatname;
duke@1 788 }
duke@1 789
duke@1 790 public boolean isSubClass(Symbol base, Types types) {
duke@1 791 if (this == base) {
duke@1 792 return true;
duke@1 793 } else if ((base.flags() & INTERFACE) != 0) {
duke@1 794 for (Type t = type; t.tag == CLASS; t = types.supertype(t))
duke@1 795 for (List<Type> is = types.interfaces(t);
duke@1 796 is.nonEmpty();
duke@1 797 is = is.tail)
duke@1 798 if (is.head.tsym.isSubClass(base, types)) return true;
duke@1 799 } else {
duke@1 800 for (Type t = type; t.tag == CLASS; t = types.supertype(t))
duke@1 801 if (t.tsym == base) return true;
duke@1 802 }
duke@1 803 return false;
duke@1 804 }
duke@1 805
duke@1 806 /** Complete the elaboration of this symbol's definition.
duke@1 807 */
duke@1 808 public void complete() throws CompletionFailure {
duke@1 809 try {
duke@1 810 super.complete();
duke@1 811 } catch (CompletionFailure ex) {
duke@1 812 // quiet error recovery
duke@1 813 flags_field |= (PUBLIC|STATIC);
jjg@110 814 this.type = new ErrorType(this, Type.noType);
duke@1 815 throw ex;
duke@1 816 }
duke@1 817 }
duke@1 818
duke@1 819 public List<Type> getInterfaces() {
duke@1 820 complete();
duke@1 821 if (type instanceof ClassType) {
duke@1 822 ClassType t = (ClassType)type;
duke@1 823 if (t.interfaces_field == null) // FIXME: shouldn't be null
duke@1 824 t.interfaces_field = List.nil();
duke@1 825 return t.interfaces_field;
duke@1 826 } else {
duke@1 827 return List.nil();
duke@1 828 }
duke@1 829 }
duke@1 830
duke@1 831 public Type getSuperclass() {
duke@1 832 complete();
duke@1 833 if (type instanceof ClassType) {
duke@1 834 ClassType t = (ClassType)type;
duke@1 835 if (t.supertype_field == null) // FIXME: shouldn't be null
duke@1 836 t.supertype_field = Type.noType;
duke@1 837 // An interface has no superclass; its supertype is Object.
duke@1 838 return t.isInterface()
duke@1 839 ? Type.noType
duke@1 840 : t.supertype_field;
duke@1 841 } else {
duke@1 842 return Type.noType;
duke@1 843 }
duke@1 844 }
duke@1 845
duke@1 846 public ElementKind getKind() {
duke@1 847 long flags = flags();
duke@1 848 if ((flags & ANNOTATION) != 0)
duke@1 849 return ElementKind.ANNOTATION_TYPE;
duke@1 850 else if ((flags & INTERFACE) != 0)
duke@1 851 return ElementKind.INTERFACE;
duke@1 852 else if ((flags & ENUM) != 0)
duke@1 853 return ElementKind.ENUM;
duke@1 854 else
duke@1 855 return ElementKind.CLASS;
duke@1 856 }
duke@1 857
duke@1 858 public NestingKind getNestingKind() {
duke@1 859 complete();
duke@1 860 if (owner.kind == PCK)
duke@1 861 return NestingKind.TOP_LEVEL;
duke@1 862 else if (name.isEmpty())
duke@1 863 return NestingKind.ANONYMOUS;
duke@1 864 else if (owner.kind == MTH)
duke@1 865 return NestingKind.LOCAL;
duke@1 866 else
duke@1 867 return NestingKind.MEMBER;
duke@1 868 }
duke@1 869
duke@1 870 /**
duke@1 871 * @deprecated this method should never be used by javac internally.
duke@1 872 */
duke@1 873 @Override @Deprecated
duke@1 874 public <A extends java.lang.annotation.Annotation> A getAnnotation(Class<A> annoType) {
duke@1 875 return JavacElements.getAnnotation(this, annoType);
duke@1 876 }
duke@1 877
duke@1 878 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 879 return v.visitType(this, p);
duke@1 880 }
mcimadamore@121 881
mcimadamore@121 882 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 883 return v.visitClassSymbol(this, p);
mcimadamore@121 884 }
duke@1 885 }
duke@1 886
duke@1 887
duke@1 888 /** A class for variable symbols
duke@1 889 */
duke@1 890 public static class VarSymbol extends Symbol implements VariableElement {
duke@1 891
duke@1 892 /** The variable's declaration position.
duke@1 893 */
duke@1 894 public int pos = Position.NOPOS;
duke@1 895
duke@1 896 /** The variable's address. Used for different purposes during
duke@1 897 * flow analysis, translation and code generation.
duke@1 898 * Flow analysis:
duke@1 899 * If this is a blank final or local variable, its sequence number.
duke@1 900 * Translation:
duke@1 901 * If this is a private field, its access number.
duke@1 902 * Code generation:
duke@1 903 * If this is a local variable, its logical slot number.
duke@1 904 */
duke@1 905 public int adr = -1;
duke@1 906
duke@1 907 /** Construct a variable symbol, given its flags, name, type and owner.
duke@1 908 */
duke@1 909 public VarSymbol(long flags, Name name, Type type, Symbol owner) {
duke@1 910 super(VAR, flags, name, type, owner);
duke@1 911 }
duke@1 912
duke@1 913 /** Clone this symbol with new owner.
duke@1 914 */
duke@1 915 public VarSymbol clone(Symbol newOwner) {
duke@1 916 VarSymbol v = new VarSymbol(flags_field, name, type, newOwner);
duke@1 917 v.pos = pos;
duke@1 918 v.adr = adr;
duke@1 919 v.data = data;
duke@1 920 // System.out.println("clone " + v + " in " + newOwner);//DEBUG
duke@1 921 return v;
duke@1 922 }
duke@1 923
duke@1 924 public String toString() {
duke@1 925 return name.toString();
duke@1 926 }
duke@1 927
duke@1 928 public Symbol asMemberOf(Type site, Types types) {
duke@1 929 return new VarSymbol(flags_field, name, types.memberType(site, this), owner);
duke@1 930 }
duke@1 931
duke@1 932 public ElementKind getKind() {
duke@1 933 long flags = flags();
duke@1 934 if ((flags & PARAMETER) != 0) {
duke@1 935 if (isExceptionParameter())
duke@1 936 return ElementKind.EXCEPTION_PARAMETER;
duke@1 937 else
duke@1 938 return ElementKind.PARAMETER;
duke@1 939 } else if ((flags & ENUM) != 0) {
duke@1 940 return ElementKind.ENUM_CONSTANT;
duke@1 941 } else if (owner.kind == TYP || owner.kind == ERR) {
duke@1 942 return ElementKind.FIELD;
duke@1 943 } else {
duke@1 944 return ElementKind.LOCAL_VARIABLE;
duke@1 945 }
duke@1 946 }
duke@1 947
duke@1 948 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 949 return v.visitVariable(this, p);
duke@1 950 }
duke@1 951
duke@1 952 public Object getConstantValue() { // Mirror API
duke@1 953 return Constants.decode(getConstValue(), type);
duke@1 954 }
duke@1 955
duke@1 956 public void setLazyConstValue(final Env<AttrContext> env,
duke@1 957 final Log log,
duke@1 958 final Attr attr,
duke@1 959 final JCTree.JCExpression initializer)
duke@1 960 {
duke@1 961 setData(new Callable<Object>() {
duke@1 962 public Object call() {
duke@1 963 JavaFileObject source = log.useSource(env.toplevel.sourcefile);
duke@1 964 try {
duke@1 965 Type itype = attr.attribExpr(initializer, env, type);
duke@1 966 if (itype.constValue() != null)
duke@1 967 return attr.coerce(itype, type).constValue();
duke@1 968 else
duke@1 969 return null;
duke@1 970 } finally {
duke@1 971 log.useSource(source);
duke@1 972 }
duke@1 973 }
duke@1 974 });
duke@1 975 }
duke@1 976
duke@1 977 /**
duke@1 978 * The variable's constant value, if this is a constant.
duke@1 979 * Before the constant value is evaluated, it points to an
duke@1 980 * initalizer environment. If this is not a constant, it can
duke@1 981 * be used for other stuff.
duke@1 982 */
duke@1 983 private Object data;
duke@1 984
duke@1 985 public boolean isExceptionParameter() {
duke@1 986 return data == ElementKind.EXCEPTION_PARAMETER;
duke@1 987 }
duke@1 988
duke@1 989 public Object getConstValue() {
duke@1 990 // TODO: Consider if getConstValue and getConstantValue can be collapsed
duke@1 991 if (data == ElementKind.EXCEPTION_PARAMETER) {
duke@1 992 return null;
duke@1 993 } else if (data instanceof Callable<?>) {
duke@1 994 // In this case, this is final a variable, with an as
duke@1 995 // yet unevaluated initializer.
duke@1 996 Callable<?> eval = (Callable<?>)data;
duke@1 997 data = null; // to make sure we don't evaluate this twice.
duke@1 998 try {
duke@1 999 data = eval.call();
duke@1 1000 } catch (Exception ex) {
duke@1 1001 throw new AssertionError(ex);
duke@1 1002 }
duke@1 1003 }
duke@1 1004 return data;
duke@1 1005 }
duke@1 1006
duke@1 1007 public void setData(Object data) {
duke@1 1008 assert !(data instanceof Env<?>) : this;
duke@1 1009 this.data = data;
duke@1 1010 }
mcimadamore@121 1011
mcimadamore@121 1012 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 1013 return v.visitVarSymbol(this, p);
mcimadamore@121 1014 }
duke@1 1015 }
duke@1 1016
duke@1 1017 /** A class for method symbols.
duke@1 1018 */
duke@1 1019 public static class MethodSymbol extends Symbol implements ExecutableElement {
duke@1 1020
duke@1 1021 /** The code of the method. */
duke@1 1022 public Code code = null;
duke@1 1023
duke@1 1024 /** The parameters of the method. */
duke@1 1025 public List<VarSymbol> params = null;
duke@1 1026
duke@1 1027 /** The names of the parameters */
duke@1 1028 public List<Name> savedParameterNames;
duke@1 1029
duke@1 1030 /** For an attribute field accessor, its default value if any.
duke@1 1031 * The value is null if none appeared in the method
duke@1 1032 * declaration.
duke@1 1033 */
duke@1 1034 public Attribute defaultValue = null;
duke@1 1035
duke@1 1036 /** Construct a method symbol, given its flags, name, type and owner.
duke@1 1037 */
duke@1 1038 public MethodSymbol(long flags, Name name, Type type, Symbol owner) {
duke@1 1039 super(MTH, flags, name, type, owner);
duke@1 1040 assert owner.type.tag != TYPEVAR : owner + "." + name;
duke@1 1041 }
duke@1 1042
duke@1 1043 /** Clone this symbol with new owner.
duke@1 1044 */
duke@1 1045 public MethodSymbol clone(Symbol newOwner) {
duke@1 1046 MethodSymbol m = new MethodSymbol(flags_field, name, type, newOwner);
duke@1 1047 m.code = code;
duke@1 1048 return m;
duke@1 1049 }
duke@1 1050
duke@1 1051 /** The Java source which this symbol represents.
duke@1 1052 */
duke@1 1053 public String toString() {
duke@1 1054 if ((flags() & BLOCK) != 0) {
duke@1 1055 return owner.name.toString();
duke@1 1056 } else {
jjg@113 1057 String s = (name == name.table.names.init)
duke@1 1058 ? owner.name.toString()
duke@1 1059 : name.toString();
duke@1 1060 if (type != null) {
duke@1 1061 if (type.tag == FORALL)
duke@1 1062 s = "<" + ((ForAll)type).getTypeArguments() + ">" + s;
duke@1 1063 s += "(" + type.argtypes((flags() & VARARGS) != 0) + ")";
duke@1 1064 }
duke@1 1065 return s;
duke@1 1066 }
duke@1 1067 }
duke@1 1068
duke@1 1069 /** find a symbol that this (proxy method) symbol implements.
duke@1 1070 * @param c The class whose members are searched for
duke@1 1071 * implementations
duke@1 1072 */
duke@1 1073 public Symbol implemented(TypeSymbol c, Types types) {
duke@1 1074 Symbol impl = null;
duke@1 1075 for (List<Type> is = types.interfaces(c.type);
duke@1 1076 impl == null && is.nonEmpty();
duke@1 1077 is = is.tail) {
duke@1 1078 TypeSymbol i = is.head.tsym;
duke@1 1079 for (Scope.Entry e = i.members().lookup(name);
duke@1 1080 impl == null && e.scope != null;
duke@1 1081 e = e.next()) {
duke@1 1082 if (this.overrides(e.sym, (TypeSymbol)owner, types, true) &&
duke@1 1083 // FIXME: I suspect the following requires a
duke@1 1084 // subst() for a parametric return type.
duke@1 1085 types.isSameType(type.getReturnType(),
duke@1 1086 types.memberType(owner.type, e.sym).getReturnType())) {
duke@1 1087 impl = e.sym;
duke@1 1088 }
duke@1 1089 if (impl == null)
duke@1 1090 impl = implemented(i, types);
duke@1 1091 }
duke@1 1092 }
duke@1 1093 return impl;
duke@1 1094 }
duke@1 1095
duke@1 1096 /** Will the erasure of this method be considered by the VM to
duke@1 1097 * override the erasure of the other when seen from class `origin'?
duke@1 1098 */
duke@1 1099 public boolean binaryOverrides(Symbol _other, TypeSymbol origin, Types types) {
duke@1 1100 if (isConstructor() || _other.kind != MTH) return false;
duke@1 1101
duke@1 1102 if (this == _other) return true;
duke@1 1103 MethodSymbol other = (MethodSymbol)_other;
duke@1 1104
duke@1 1105 // check for a direct implementation
duke@1 1106 if (other.isOverridableIn((TypeSymbol)owner) &&
duke@1 1107 types.asSuper(owner.type, other.owner) != null &&
duke@1 1108 types.isSameType(erasure(types), other.erasure(types)))
duke@1 1109 return true;
duke@1 1110
duke@1 1111 // check for an inherited implementation
duke@1 1112 return
duke@1 1113 (flags() & ABSTRACT) == 0 &&
duke@1 1114 other.isOverridableIn(origin) &&
duke@1 1115 this.isMemberOf(origin, types) &&
duke@1 1116 types.isSameType(erasure(types), other.erasure(types));
duke@1 1117 }
duke@1 1118
duke@1 1119 /** The implementation of this (abstract) symbol in class origin,
duke@1 1120 * from the VM's point of view, null if method does not have an
duke@1 1121 * implementation in class.
duke@1 1122 * @param origin The class of which the implementation is a member.
duke@1 1123 */
duke@1 1124 public MethodSymbol binaryImplementation(ClassSymbol origin, Types types) {
duke@1 1125 for (TypeSymbol c = origin; c != null; c = types.supertype(c.type).tsym) {
duke@1 1126 for (Scope.Entry e = c.members().lookup(name);
duke@1 1127 e.scope != null;
duke@1 1128 e = e.next()) {
duke@1 1129 if (e.sym.kind == MTH &&
duke@1 1130 ((MethodSymbol)e.sym).binaryOverrides(this, origin, types))
duke@1 1131 return (MethodSymbol)e.sym;
duke@1 1132 }
duke@1 1133 }
duke@1 1134 return null;
duke@1 1135 }
duke@1 1136
duke@1 1137 /** Does this symbol override `other' symbol, when both are seen as
duke@1 1138 * members of class `origin'? It is assumed that _other is a member
duke@1 1139 * of origin.
duke@1 1140 *
duke@1 1141 * It is assumed that both symbols have the same name. The static
duke@1 1142 * modifier is ignored for this test.
duke@1 1143 *
duke@1 1144 * See JLS 8.4.6.1 (without transitivity) and 8.4.6.4
duke@1 1145 */
duke@1 1146 public boolean overrides(Symbol _other, TypeSymbol origin, Types types, boolean checkResult) {
duke@1 1147 if (isConstructor() || _other.kind != MTH) return false;
duke@1 1148
duke@1 1149 if (this == _other) return true;
duke@1 1150 MethodSymbol other = (MethodSymbol)_other;
duke@1 1151
duke@1 1152 // check for a direct implementation
duke@1 1153 if (other.isOverridableIn((TypeSymbol)owner) &&
duke@1 1154 types.asSuper(owner.type, other.owner) != null) {
duke@1 1155 Type mt = types.memberType(owner.type, this);
duke@1 1156 Type ot = types.memberType(owner.type, other);
duke@1 1157 if (types.isSubSignature(mt, ot)) {
duke@1 1158 if (!checkResult)
duke@1 1159 return true;
duke@1 1160 if (types.returnTypeSubstitutable(mt, ot))
duke@1 1161 return true;
duke@1 1162 }
duke@1 1163 }
duke@1 1164
duke@1 1165 // check for an inherited implementation
duke@1 1166 if ((flags() & ABSTRACT) != 0 ||
duke@1 1167 (other.flags() & ABSTRACT) == 0 ||
duke@1 1168 !other.isOverridableIn(origin) ||
duke@1 1169 !this.isMemberOf(origin, types))
duke@1 1170 return false;
duke@1 1171
duke@1 1172 // assert types.asSuper(origin.type, other.owner) != null;
duke@1 1173 Type mt = types.memberType(origin.type, this);
duke@1 1174 Type ot = types.memberType(origin.type, other);
duke@1 1175 return
duke@1 1176 types.isSubSignature(mt, ot) &&
duke@1 1177 (!checkResult || types.resultSubtype(mt, ot, Warner.noWarnings));
duke@1 1178 }
duke@1 1179
duke@1 1180 private boolean isOverridableIn(TypeSymbol origin) {
duke@1 1181 // JLS3 8.4.6.1
duke@1 1182 switch ((int)(flags_field & Flags.AccessFlags)) {
duke@1 1183 case Flags.PRIVATE:
duke@1 1184 return false;
duke@1 1185 case Flags.PUBLIC:
duke@1 1186 return true;
duke@1 1187 case Flags.PROTECTED:
duke@1 1188 return (origin.flags() & INTERFACE) == 0;
duke@1 1189 case 0:
duke@1 1190 // for package private: can only override in the same
duke@1 1191 // package
duke@1 1192 return
duke@1 1193 this.packge() == origin.packge() &&
duke@1 1194 (origin.flags() & INTERFACE) == 0;
duke@1 1195 default:
duke@1 1196 return false;
duke@1 1197 }
duke@1 1198 }
duke@1 1199
duke@1 1200 /** The implementation of this (abstract) symbol in class origin;
duke@1 1201 * null if none exists. Synthetic methods are not considered
duke@1 1202 * as possible implementations.
duke@1 1203 */
duke@1 1204 public MethodSymbol implementation(TypeSymbol origin, Types types, boolean checkResult) {
mcimadamore@341 1205 MethodSymbol res = types.implementation(this, origin, types, checkResult);
mcimadamore@341 1206 if (res != null)
mcimadamore@341 1207 return res;
duke@1 1208 // if origin is derived from a raw type, we might have missed
duke@1 1209 // an implementation because we do not know enough about instantiations.
duke@1 1210 // in this case continue with the supertype as origin.
duke@1 1211 if (types.isDerivedRaw(origin.type))
duke@1 1212 return implementation(types.supertype(origin.type).tsym, types, checkResult);
duke@1 1213 else
duke@1 1214 return null;
duke@1 1215 }
duke@1 1216
duke@1 1217 public List<VarSymbol> params() {
duke@1 1218 owner.complete();
duke@1 1219 if (params == null) {
jjg@428 1220 // If ClassReader.saveParameterNames has been set true, then
jjg@428 1221 // savedParameterNames will be set to a list of names that
jjg@428 1222 // matches the types in type.getParameterTypes(). If any names
jjg@428 1223 // were not found in the class file, those names in the list will
jjg@428 1224 // be set to the empty name.
jjg@428 1225 // If ClassReader.saveParameterNames has been set false, then
jjg@428 1226 // savedParameterNames will be null.
jjg@428 1227 List<Name> paramNames = savedParameterNames;
duke@1 1228 savedParameterNames = null;
jjg@428 1229 // discard the provided names if the list of names is the wrong size.
jjg@428 1230 if (paramNames == null || paramNames.size() != type.getParameterTypes().size())
jjg@428 1231 paramNames = List.nil();
duke@1 1232 ListBuffer<VarSymbol> buf = new ListBuffer<VarSymbol>();
jjg@428 1233 List<Name> remaining = paramNames;
jjg@428 1234 // assert: remaining and paramNames are both empty or both
jjg@428 1235 // have same cardinality as type.getParameterTypes()
jjg@428 1236 int i = 0;
duke@1 1237 for (Type t : type.getParameterTypes()) {
jjg@428 1238 Name paramName;
jjg@428 1239 if (remaining.isEmpty()) {
jjg@428 1240 // no names for any parameters available
jjg@428 1241 paramName = createArgName(i, paramNames);
jjg@428 1242 } else {
jjg@428 1243 paramName = remaining.head;
jjg@428 1244 remaining = remaining.tail;
jjg@428 1245 if (paramName.isEmpty()) {
jjg@428 1246 // no name for this specific parameter
jjg@428 1247 paramName = createArgName(i, paramNames);
jjg@428 1248 }
jjg@428 1249 }
jjg@428 1250 buf.append(new VarSymbol(PARAMETER, paramName, t, this));
jjg@428 1251 i++;
duke@1 1252 }
duke@1 1253 params = buf.toList();
duke@1 1254 }
duke@1 1255 return params;
duke@1 1256 }
duke@1 1257
jjg@428 1258 // Create a name for the argument at position 'index' that is not in
jjg@428 1259 // the exclude list. In normal use, either no names will have been
jjg@428 1260 // provided, in which case the exclude list is empty, or all the names
jjg@428 1261 // will have been provided, in which case this method will not be called.
jjg@428 1262 private Name createArgName(int index, List<Name> exclude) {
jjg@428 1263 String prefix = "arg";
jjg@428 1264 while (true) {
jjg@428 1265 Name argName = name.table.fromString(prefix + index);
jjg@428 1266 if (!exclude.contains(argName))
jjg@428 1267 return argName;
jjg@428 1268 prefix += "$";
jjg@428 1269 }
jjg@428 1270 }
jjg@428 1271
duke@1 1272 public Symbol asMemberOf(Type site, Types types) {
duke@1 1273 return new MethodSymbol(flags_field, name, types.memberType(site, this), owner);
duke@1 1274 }
duke@1 1275
duke@1 1276 public ElementKind getKind() {
jjg@113 1277 if (name == name.table.names.init)
duke@1 1278 return ElementKind.CONSTRUCTOR;
jjg@113 1279 else if (name == name.table.names.clinit)
duke@1 1280 return ElementKind.STATIC_INIT;
duke@1 1281 else
duke@1 1282 return ElementKind.METHOD;
duke@1 1283 }
duke@1 1284
duke@1 1285 public Attribute getDefaultValue() {
duke@1 1286 return defaultValue;
duke@1 1287 }
duke@1 1288
duke@1 1289 public List<VarSymbol> getParameters() {
duke@1 1290 return params();
duke@1 1291 }
duke@1 1292
duke@1 1293 public boolean isVarArgs() {
duke@1 1294 return (flags() & VARARGS) != 0;
duke@1 1295 }
duke@1 1296
duke@1 1297 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 1298 return v.visitExecutable(this, p);
duke@1 1299 }
duke@1 1300
mcimadamore@121 1301 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 1302 return v.visitMethodSymbol(this, p);
mcimadamore@121 1303 }
mcimadamore@121 1304
duke@1 1305 public Type getReturnType() {
duke@1 1306 return asType().getReturnType();
duke@1 1307 }
duke@1 1308
duke@1 1309 public List<Type> getThrownTypes() {
duke@1 1310 return asType().getThrownTypes();
duke@1 1311 }
duke@1 1312 }
duke@1 1313
duke@1 1314 /** A class for predefined operators.
duke@1 1315 */
duke@1 1316 public static class OperatorSymbol extends MethodSymbol {
duke@1 1317
duke@1 1318 public int opcode;
duke@1 1319
duke@1 1320 public OperatorSymbol(Name name, Type type, int opcode, Symbol owner) {
duke@1 1321 super(PUBLIC | STATIC, name, type, owner);
duke@1 1322 this.opcode = opcode;
duke@1 1323 }
mcimadamore@121 1324
mcimadamore@121 1325 public <R, P> R accept(Symbol.Visitor<R, P> v, P p) {
mcimadamore@121 1326 return v.visitOperatorSymbol(this, p);
mcimadamore@121 1327 }
duke@1 1328 }
duke@1 1329
duke@1 1330 /** Symbol completer interface.
duke@1 1331 */
duke@1 1332 public static interface Completer {
duke@1 1333 void complete(Symbol sym) throws CompletionFailure;
duke@1 1334 }
duke@1 1335
duke@1 1336 public static class CompletionFailure extends RuntimeException {
duke@1 1337 private static final long serialVersionUID = 0;
duke@1 1338 public Symbol sym;
duke@1 1339
jjg@12 1340 /** A diagnostic object describing the failure
jjg@12 1341 */
jjg@12 1342 public JCDiagnostic diag;
jjg@12 1343
duke@1 1344 /** A localized string describing the failure.
jjg@12 1345 * @deprecated Use {@code getDetail()} or {@code getMessage()}
duke@1 1346 */
jjg@12 1347 @Deprecated
duke@1 1348 public String errmsg;
duke@1 1349
duke@1 1350 public CompletionFailure(Symbol sym, String errmsg) {
duke@1 1351 this.sym = sym;
duke@1 1352 this.errmsg = errmsg;
duke@1 1353 // this.printStackTrace();//DEBUG
duke@1 1354 }
duke@1 1355
jjg@12 1356 public CompletionFailure(Symbol sym, JCDiagnostic diag) {
jjg@12 1357 this.sym = sym;
jjg@12 1358 this.diag = diag;
jjg@12 1359 // this.printStackTrace();//DEBUG
jjg@12 1360 }
jjg@12 1361
jjg@12 1362 public JCDiagnostic getDiagnostic() {
jjg@12 1363 return diag;
jjg@12 1364 }
jjg@12 1365
jjg@12 1366 @Override
duke@1 1367 public String getMessage() {
jjg@12 1368 if (diag != null)
jjg@12 1369 return diag.getMessage(null);
jjg@12 1370 else
jjg@12 1371 return errmsg;
jjg@12 1372 }
jjg@12 1373
jjg@12 1374 public Object getDetailValue() {
jjg@12 1375 return (diag != null ? diag : errmsg);
duke@1 1376 }
duke@1 1377
duke@1 1378 @Override
duke@1 1379 public CompletionFailure initCause(Throwable cause) {
duke@1 1380 super.initCause(cause);
duke@1 1381 return this;
duke@1 1382 }
duke@1 1383
duke@1 1384 }
mcimadamore@121 1385
mcimadamore@121 1386 /**
mcimadamore@121 1387 * A visitor for symbols. A visitor is used to implement operations
mcimadamore@121 1388 * (or relations) on symbols. Most common operations on types are
mcimadamore@121 1389 * binary relations and this interface is designed for binary
mcimadamore@121 1390 * relations, that is, operations on the form
mcimadamore@121 1391 * Symbol&nbsp;&times;&nbsp;P&nbsp;&rarr;&nbsp;R.
mcimadamore@121 1392 * <!-- In plain text: Type x P -> R -->
mcimadamore@121 1393 *
mcimadamore@121 1394 * @param <R> the return type of the operation implemented by this
mcimadamore@121 1395 * visitor; use Void if no return type is needed.
mcimadamore@121 1396 * @param <P> the type of the second argument (the first being the
mcimadamore@121 1397 * symbol itself) of the operation implemented by this visitor; use
mcimadamore@121 1398 * Void if a second argument is not needed.
mcimadamore@121 1399 */
mcimadamore@121 1400 public interface Visitor<R,P> {
mcimadamore@121 1401 R visitClassSymbol(ClassSymbol s, P arg);
mcimadamore@121 1402 R visitMethodSymbol(MethodSymbol s, P arg);
mcimadamore@121 1403 R visitPackageSymbol(PackageSymbol s, P arg);
mcimadamore@121 1404 R visitOperatorSymbol(OperatorSymbol s, P arg);
mcimadamore@121 1405 R visitVarSymbol(VarSymbol s, P arg);
mcimadamore@121 1406 R visitTypeSymbol(TypeSymbol s, P arg);
mcimadamore@121 1407 R visitSymbol(Symbol s, P arg);
mcimadamore@121 1408 }
duke@1 1409 }

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