src/share/classes/com/sun/tools/javac/comp/MemberEnter.java

Mon, 07 Feb 2011 18:10:13 +0000

author
mcimadamore
date
Mon, 07 Feb 2011 18:10:13 +0000
changeset 858
96d4226bdd60
parent 857
3aa269645199
child 904
4baab658f357
permissions
-rw-r--r--

7007615: java_util/generics/phase2/NameClashTest02 fails since jdk7/pit/b123.
Summary: override clash algorithm is not implemented correctly
Reviewed-by: jjg

duke@1 1 /*
jjg@815 2 * Copyright (c) 2003, 2011, Oracle and/or its affiliates. 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
ohair@554 7 * published by the Free Software Foundation. Oracle designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
ohair@554 9 * by Oracle 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 *
ohair@554 21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
ohair@554 22 * or visit www.oracle.com if you need additional information or have any
ohair@554 23 * questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.comp;
duke@1 27
duke@1 28 import java.util.*;
duke@1 29 import java.util.Set;
duke@1 30 import javax.tools.JavaFileObject;
duke@1 31
duke@1 32 import com.sun.tools.javac.code.*;
duke@1 33 import com.sun.tools.javac.jvm.*;
duke@1 34 import com.sun.tools.javac.tree.*;
duke@1 35 import com.sun.tools.javac.util.*;
duke@1 36 import com.sun.tools.javac.util.List;
duke@1 37
duke@1 38 import com.sun.tools.javac.code.Type.*;
duke@1 39 import com.sun.tools.javac.code.Symbol.*;
duke@1 40 import com.sun.tools.javac.tree.JCTree.*;
duke@1 41
duke@1 42 import static com.sun.tools.javac.code.Flags.*;
duke@1 43 import static com.sun.tools.javac.code.Kinds.*;
duke@1 44 import static com.sun.tools.javac.code.TypeTags.*;
duke@1 45 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
duke@1 46
duke@1 47 /** This is the second phase of Enter, in which classes are completed
duke@1 48 * by entering their members into the class scope using
duke@1 49 * MemberEnter.complete(). See Enter for an overview.
duke@1 50 *
jjg@581 51 * <p><b>This is NOT part of any supported API.
jjg@581 52 * If you write code that depends on this, you do so at your own risk.
duke@1 53 * This code and its internal interfaces are subject to change or
duke@1 54 * deletion without notice.</b>
duke@1 55 */
duke@1 56 public class MemberEnter extends JCTree.Visitor implements Completer {
duke@1 57 protected static final Context.Key<MemberEnter> memberEnterKey =
duke@1 58 new Context.Key<MemberEnter>();
duke@1 59
duke@1 60 /** A switch to determine whether we check for package/class conflicts
duke@1 61 */
duke@1 62 final static boolean checkClash = true;
duke@1 63
jjg@113 64 private final Names names;
duke@1 65 private final Enter enter;
duke@1 66 private final Log log;
duke@1 67 private final Check chk;
duke@1 68 private final Attr attr;
duke@1 69 private final Symtab syms;
duke@1 70 private final TreeMaker make;
duke@1 71 private final ClassReader reader;
duke@1 72 private final Todo todo;
duke@1 73 private final Annotate annotate;
duke@1 74 private final Types types;
mcimadamore@89 75 private final JCDiagnostic.Factory diags;
duke@1 76 private final Target target;
mcimadamore@852 77 private final DeferredLintHandler deferredLintHandler;
duke@1 78
duke@1 79 private final boolean skipAnnotations;
duke@1 80
duke@1 81 public static MemberEnter instance(Context context) {
duke@1 82 MemberEnter instance = context.get(memberEnterKey);
duke@1 83 if (instance == null)
duke@1 84 instance = new MemberEnter(context);
duke@1 85 return instance;
duke@1 86 }
duke@1 87
duke@1 88 protected MemberEnter(Context context) {
duke@1 89 context.put(memberEnterKey, this);
jjg@113 90 names = Names.instance(context);
duke@1 91 enter = Enter.instance(context);
duke@1 92 log = Log.instance(context);
duke@1 93 chk = Check.instance(context);
duke@1 94 attr = Attr.instance(context);
duke@1 95 syms = Symtab.instance(context);
duke@1 96 make = TreeMaker.instance(context);
duke@1 97 reader = ClassReader.instance(context);
duke@1 98 todo = Todo.instance(context);
duke@1 99 annotate = Annotate.instance(context);
duke@1 100 types = Types.instance(context);
mcimadamore@89 101 diags = JCDiagnostic.Factory.instance(context);
duke@1 102 target = Target.instance(context);
mcimadamore@852 103 deferredLintHandler = DeferredLintHandler.instance(context);
jjg@308 104 Options options = Options.instance(context);
jjg@700 105 skipAnnotations = options.isSet("skipAnnotations");
duke@1 106 }
duke@1 107
duke@1 108 /** A queue for classes whose members still need to be entered into the
duke@1 109 * symbol table.
duke@1 110 */
duke@1 111 ListBuffer<Env<AttrContext>> halfcompleted = new ListBuffer<Env<AttrContext>>();
duke@1 112
duke@1 113 /** Set to true only when the first of a set of classes is
duke@1 114 * processed from the halfcompleted queue.
duke@1 115 */
duke@1 116 boolean isFirst = true;
duke@1 117
duke@1 118 /** A flag to disable completion from time to time during member
duke@1 119 * enter, as we only need to look up types. This avoids
duke@1 120 * unnecessarily deep recursion.
duke@1 121 */
duke@1 122 boolean completionEnabled = true;
duke@1 123
duke@1 124 /* ---------- Processing import clauses ----------------
duke@1 125 */
duke@1 126
duke@1 127 /** Import all classes of a class or package on demand.
duke@1 128 * @param pos Position to be used for error reporting.
duke@1 129 * @param tsym The class or package the members of which are imported.
duke@1 130 * @param toScope The (import) scope in which imported classes
duke@1 131 * are entered.
duke@1 132 */
duke@1 133 private void importAll(int pos,
duke@1 134 final TypeSymbol tsym,
duke@1 135 Env<AttrContext> env) {
duke@1 136 // Check that packages imported from exist (JLS ???).
duke@1 137 if (tsym.kind == PCK && tsym.members().elems == null && !tsym.exists()) {
duke@1 138 // If we can't find java.lang, exit immediately.
duke@1 139 if (((PackageSymbol)tsym).fullname.equals(names.java_lang)) {
mcimadamore@89 140 JCDiagnostic msg = diags.fragment("fatal.err.no.java.lang");
duke@1 141 throw new FatalError(msg);
duke@1 142 } else {
duke@1 143 log.error(pos, "doesnt.exist", tsym);
duke@1 144 }
duke@1 145 }
jjg@767 146 env.toplevel.starImportScope.importAll(tsym.members());
duke@1 147 }
duke@1 148
duke@1 149 /** Import all static members of a class or package on demand.
duke@1 150 * @param pos Position to be used for error reporting.
duke@1 151 * @param tsym The class or package the members of which are imported.
duke@1 152 * @param toScope The (import) scope in which imported classes
duke@1 153 * are entered.
duke@1 154 */
duke@1 155 private void importStaticAll(int pos,
duke@1 156 final TypeSymbol tsym,
duke@1 157 Env<AttrContext> env) {
duke@1 158 final JavaFileObject sourcefile = env.toplevel.sourcefile;
duke@1 159 final Scope toScope = env.toplevel.starImportScope;
duke@1 160 final PackageSymbol packge = env.toplevel.packge;
duke@1 161 final TypeSymbol origin = tsym;
duke@1 162
duke@1 163 // enter imported types immediately
duke@1 164 new Object() {
duke@1 165 Set<Symbol> processed = new HashSet<Symbol>();
duke@1 166 void importFrom(TypeSymbol tsym) {
duke@1 167 if (tsym == null || !processed.add(tsym))
duke@1 168 return;
duke@1 169
duke@1 170 // also import inherited names
duke@1 171 importFrom(types.supertype(tsym.type).tsym);
duke@1 172 for (Type t : types.interfaces(tsym.type))
duke@1 173 importFrom(t.tsym);
duke@1 174
duke@1 175 final Scope fromScope = tsym.members();
duke@1 176 for (Scope.Entry e = fromScope.elems; e != null; e = e.sibling) {
duke@1 177 Symbol sym = e.sym;
duke@1 178 if (sym.kind == TYP &&
duke@1 179 (sym.flags() & STATIC) != 0 &&
duke@1 180 staticImportAccessible(sym, packge) &&
duke@1 181 sym.isMemberOf(origin, types) &&
duke@1 182 !toScope.includes(sym))
duke@1 183 toScope.enter(sym, fromScope, origin.members());
duke@1 184 }
duke@1 185 }
duke@1 186 }.importFrom(tsym);
duke@1 187
duke@1 188 // enter non-types before annotations that might use them
duke@1 189 annotate.earlier(new Annotate.Annotator() {
duke@1 190 Set<Symbol> processed = new HashSet<Symbol>();
duke@1 191
duke@1 192 public String toString() {
duke@1 193 return "import static " + tsym + ".*" + " in " + sourcefile;
duke@1 194 }
duke@1 195 void importFrom(TypeSymbol tsym) {
duke@1 196 if (tsym == null || !processed.add(tsym))
duke@1 197 return;
duke@1 198
duke@1 199 // also import inherited names
duke@1 200 importFrom(types.supertype(tsym.type).tsym);
duke@1 201 for (Type t : types.interfaces(tsym.type))
duke@1 202 importFrom(t.tsym);
duke@1 203
duke@1 204 final Scope fromScope = tsym.members();
duke@1 205 for (Scope.Entry e = fromScope.elems; e != null; e = e.sibling) {
duke@1 206 Symbol sym = e.sym;
duke@1 207 if (sym.isStatic() && sym.kind != TYP &&
duke@1 208 staticImportAccessible(sym, packge) &&
duke@1 209 !toScope.includes(sym) &&
duke@1 210 sym.isMemberOf(origin, types)) {
duke@1 211 toScope.enter(sym, fromScope, origin.members());
duke@1 212 }
duke@1 213 }
duke@1 214 }
duke@1 215 public void enterAnnotation() {
duke@1 216 importFrom(tsym);
duke@1 217 }
duke@1 218 });
duke@1 219 }
duke@1 220
duke@1 221 // is the sym accessible everywhere in packge?
duke@1 222 boolean staticImportAccessible(Symbol sym, PackageSymbol packge) {
duke@1 223 int flags = (int)(sym.flags() & AccessFlags);
duke@1 224 switch (flags) {
duke@1 225 default:
duke@1 226 case PUBLIC:
duke@1 227 return true;
duke@1 228 case PRIVATE:
duke@1 229 return false;
duke@1 230 case 0:
duke@1 231 case PROTECTED:
duke@1 232 return sym.packge() == packge;
duke@1 233 }
duke@1 234 }
duke@1 235
duke@1 236 /** Import statics types of a given name. Non-types are handled in Attr.
duke@1 237 * @param pos Position to be used for error reporting.
duke@1 238 * @param tsym The class from which the name is imported.
duke@1 239 * @param name The (simple) name being imported.
duke@1 240 * @param env The environment containing the named import
duke@1 241 * scope to add to.
duke@1 242 */
duke@1 243 private void importNamedStatic(final DiagnosticPosition pos,
duke@1 244 final TypeSymbol tsym,
duke@1 245 final Name name,
duke@1 246 final Env<AttrContext> env) {
duke@1 247 if (tsym.kind != TYP) {
duke@1 248 log.error(pos, "static.imp.only.classes.and.interfaces");
duke@1 249 return;
duke@1 250 }
duke@1 251
duke@1 252 final Scope toScope = env.toplevel.namedImportScope;
duke@1 253 final PackageSymbol packge = env.toplevel.packge;
duke@1 254 final TypeSymbol origin = tsym;
duke@1 255
duke@1 256 // enter imported types immediately
duke@1 257 new Object() {
duke@1 258 Set<Symbol> processed = new HashSet<Symbol>();
duke@1 259 void importFrom(TypeSymbol tsym) {
duke@1 260 if (tsym == null || !processed.add(tsym))
duke@1 261 return;
duke@1 262
duke@1 263 // also import inherited names
duke@1 264 importFrom(types.supertype(tsym.type).tsym);
duke@1 265 for (Type t : types.interfaces(tsym.type))
duke@1 266 importFrom(t.tsym);
duke@1 267
duke@1 268 for (Scope.Entry e = tsym.members().lookup(name);
duke@1 269 e.scope != null;
duke@1 270 e = e.next()) {
duke@1 271 Symbol sym = e.sym;
duke@1 272 if (sym.isStatic() &&
duke@1 273 sym.kind == TYP &&
duke@1 274 staticImportAccessible(sym, packge) &&
duke@1 275 sym.isMemberOf(origin, types) &&
duke@1 276 chk.checkUniqueStaticImport(pos, sym, toScope))
duke@1 277 toScope.enter(sym, sym.owner.members(), origin.members());
duke@1 278 }
duke@1 279 }
duke@1 280 }.importFrom(tsym);
duke@1 281
duke@1 282 // enter non-types before annotations that might use them
duke@1 283 annotate.earlier(new Annotate.Annotator() {
duke@1 284 Set<Symbol> processed = new HashSet<Symbol>();
duke@1 285 boolean found = false;
duke@1 286
duke@1 287 public String toString() {
duke@1 288 return "import static " + tsym + "." + name;
duke@1 289 }
duke@1 290 void importFrom(TypeSymbol tsym) {
duke@1 291 if (tsym == null || !processed.add(tsym))
duke@1 292 return;
duke@1 293
duke@1 294 // also import inherited names
duke@1 295 importFrom(types.supertype(tsym.type).tsym);
duke@1 296 for (Type t : types.interfaces(tsym.type))
duke@1 297 importFrom(t.tsym);
duke@1 298
duke@1 299 for (Scope.Entry e = tsym.members().lookup(name);
duke@1 300 e.scope != null;
duke@1 301 e = e.next()) {
duke@1 302 Symbol sym = e.sym;
duke@1 303 if (sym.isStatic() &&
duke@1 304 staticImportAccessible(sym, packge) &&
duke@1 305 sym.isMemberOf(origin, types)) {
duke@1 306 found = true;
duke@1 307 if (sym.kind == MTH ||
duke@1 308 sym.kind != TYP && chk.checkUniqueStaticImport(pos, sym, toScope))
duke@1 309 toScope.enter(sym, sym.owner.members(), origin.members());
duke@1 310 }
duke@1 311 }
duke@1 312 }
duke@1 313 public void enterAnnotation() {
duke@1 314 JavaFileObject prev = log.useSource(env.toplevel.sourcefile);
duke@1 315 try {
duke@1 316 importFrom(tsym);
duke@1 317 if (!found) {
duke@1 318 log.error(pos, "cant.resolve.location",
mcimadamore@80 319 KindName.STATIC,
mcimadamore@80 320 name, List.<Type>nil(), List.<Type>nil(),
mcimadamore@89 321 Kinds.typeKindName(tsym.type),
duke@1 322 tsym.type);
duke@1 323 }
duke@1 324 } finally {
duke@1 325 log.useSource(prev);
duke@1 326 }
duke@1 327 }
duke@1 328 });
duke@1 329 }
duke@1 330 /** Import given class.
duke@1 331 * @param pos Position to be used for error reporting.
duke@1 332 * @param tsym The class to be imported.
duke@1 333 * @param env The environment containing the named import
duke@1 334 * scope to add to.
duke@1 335 */
duke@1 336 private void importNamed(DiagnosticPosition pos, Symbol tsym, Env<AttrContext> env) {
duke@1 337 if (tsym.kind == TYP &&
duke@1 338 chk.checkUniqueImport(pos, tsym, env.toplevel.namedImportScope))
duke@1 339 env.toplevel.namedImportScope.enter(tsym, tsym.owner.members());
duke@1 340 }
duke@1 341
duke@1 342 /** Construct method type from method signature.
duke@1 343 * @param typarams The method's type parameters.
duke@1 344 * @param params The method's value parameters.
duke@1 345 * @param res The method's result type,
duke@1 346 * null if it is a constructor.
duke@1 347 * @param thrown The method's thrown exceptions.
duke@1 348 * @param env The method's (local) environment.
duke@1 349 */
duke@1 350 Type signature(List<JCTypeParameter> typarams,
duke@1 351 List<JCVariableDecl> params,
duke@1 352 JCTree res,
duke@1 353 List<JCExpression> thrown,
duke@1 354 Env<AttrContext> env) {
duke@1 355
duke@1 356 // Enter and attribute type parameters.
duke@1 357 List<Type> tvars = enter.classEnter(typarams, env);
duke@1 358 attr.attribTypeVariables(typarams, env);
duke@1 359
duke@1 360 // Enter and attribute value parameters.
duke@1 361 ListBuffer<Type> argbuf = new ListBuffer<Type>();
duke@1 362 for (List<JCVariableDecl> l = params; l.nonEmpty(); l = l.tail) {
duke@1 363 memberEnter(l.head, env);
duke@1 364 argbuf.append(l.head.vartype.type);
duke@1 365 }
duke@1 366
duke@1 367 // Attribute result type, if one is given.
duke@1 368 Type restype = res == null ? syms.voidType : attr.attribType(res, env);
duke@1 369
duke@1 370 // Attribute thrown exceptions.
duke@1 371 ListBuffer<Type> thrownbuf = new ListBuffer<Type>();
duke@1 372 for (List<JCExpression> l = thrown; l.nonEmpty(); l = l.tail) {
duke@1 373 Type exc = attr.attribType(l.head, env);
duke@1 374 if (exc.tag != TYPEVAR)
duke@1 375 exc = chk.checkClassType(l.head.pos(), exc);
duke@1 376 thrownbuf.append(exc);
duke@1 377 }
duke@1 378 Type mtype = new MethodType(argbuf.toList(),
duke@1 379 restype,
duke@1 380 thrownbuf.toList(),
duke@1 381 syms.methodClass);
duke@1 382 return tvars.isEmpty() ? mtype : new ForAll(tvars, mtype);
duke@1 383 }
duke@1 384
duke@1 385 /* ********************************************************************
duke@1 386 * Visitor methods for member enter
duke@1 387 *********************************************************************/
duke@1 388
duke@1 389 /** Visitor argument: the current environment
duke@1 390 */
duke@1 391 protected Env<AttrContext> env;
duke@1 392
duke@1 393 /** Enter field and method definitions and process import
duke@1 394 * clauses, catching any completion failure exceptions.
duke@1 395 */
duke@1 396 protected void memberEnter(JCTree tree, Env<AttrContext> env) {
duke@1 397 Env<AttrContext> prevEnv = this.env;
duke@1 398 try {
duke@1 399 this.env = env;
duke@1 400 tree.accept(this);
duke@1 401 } catch (CompletionFailure ex) {
duke@1 402 chk.completionError(tree.pos(), ex);
duke@1 403 } finally {
duke@1 404 this.env = prevEnv;
duke@1 405 }
duke@1 406 }
duke@1 407
duke@1 408 /** Enter members from a list of trees.
duke@1 409 */
duke@1 410 void memberEnter(List<? extends JCTree> trees, Env<AttrContext> env) {
duke@1 411 for (List<? extends JCTree> l = trees; l.nonEmpty(); l = l.tail)
duke@1 412 memberEnter(l.head, env);
duke@1 413 }
duke@1 414
duke@1 415 /** Enter members for a class.
duke@1 416 */
duke@1 417 void finishClass(JCClassDecl tree, Env<AttrContext> env) {
duke@1 418 if ((tree.mods.flags & Flags.ENUM) != 0 &&
duke@1 419 (types.supertype(tree.sym.type).tsym.flags() & Flags.ENUM) == 0) {
duke@1 420 addEnumMembers(tree, env);
duke@1 421 }
duke@1 422 memberEnter(tree.defs, env);
duke@1 423 }
duke@1 424
duke@1 425 /** Add the implicit members for an enum type
duke@1 426 * to the symbol table.
duke@1 427 */
duke@1 428 private void addEnumMembers(JCClassDecl tree, Env<AttrContext> env) {
duke@1 429 JCExpression valuesType = make.Type(new ArrayType(tree.sym.type, syms.arrayClass));
duke@1 430
duke@1 431 // public static T[] values() { return ???; }
duke@1 432 JCMethodDecl values = make.
duke@1 433 MethodDef(make.Modifiers(Flags.PUBLIC|Flags.STATIC),
duke@1 434 names.values,
duke@1 435 valuesType,
duke@1 436 List.<JCTypeParameter>nil(),
duke@1 437 List.<JCVariableDecl>nil(),
duke@1 438 List.<JCExpression>nil(), // thrown
duke@1 439 null, //make.Block(0, Tree.emptyList.prepend(make.Return(make.Ident(names._null)))),
duke@1 440 null);
duke@1 441 memberEnter(values, env);
duke@1 442
duke@1 443 // public static T valueOf(String name) { return ???; }
duke@1 444 JCMethodDecl valueOf = make.
duke@1 445 MethodDef(make.Modifiers(Flags.PUBLIC|Flags.STATIC),
duke@1 446 names.valueOf,
duke@1 447 make.Type(tree.sym.type),
duke@1 448 List.<JCTypeParameter>nil(),
duke@1 449 List.of(make.VarDef(make.Modifiers(Flags.PARAMETER),
duke@1 450 names.fromString("name"),
duke@1 451 make.Type(syms.stringType), null)),
duke@1 452 List.<JCExpression>nil(), // thrown
duke@1 453 null, //make.Block(0, Tree.emptyList.prepend(make.Return(make.Ident(names._null)))),
duke@1 454 null);
duke@1 455 memberEnter(valueOf, env);
duke@1 456
duke@1 457 // the remaining members are for bootstrapping only
duke@1 458 if (!target.compilerBootstrap(tree.sym)) return;
duke@1 459
duke@1 460 // public final int ordinal() { return ???; }
duke@1 461 JCMethodDecl ordinal = make.at(tree.pos).
duke@1 462 MethodDef(make.Modifiers(Flags.PUBLIC|Flags.FINAL),
duke@1 463 names.ordinal,
duke@1 464 make.Type(syms.intType),
duke@1 465 List.<JCTypeParameter>nil(),
duke@1 466 List.<JCVariableDecl>nil(),
duke@1 467 List.<JCExpression>nil(),
duke@1 468 null,
duke@1 469 null);
duke@1 470 memberEnter(ordinal, env);
duke@1 471
duke@1 472 // public final String name() { return ???; }
duke@1 473 JCMethodDecl name = make.
duke@1 474 MethodDef(make.Modifiers(Flags.PUBLIC|Flags.FINAL),
duke@1 475 names._name,
duke@1 476 make.Type(syms.stringType),
duke@1 477 List.<JCTypeParameter>nil(),
duke@1 478 List.<JCVariableDecl>nil(),
duke@1 479 List.<JCExpression>nil(),
duke@1 480 null,
duke@1 481 null);
duke@1 482 memberEnter(name, env);
duke@1 483
duke@1 484 // public int compareTo(E other) { return ???; }
duke@1 485 MethodSymbol compareTo = new
duke@1 486 MethodSymbol(Flags.PUBLIC,
duke@1 487 names.compareTo,
duke@1 488 new MethodType(List.of(tree.sym.type),
duke@1 489 syms.intType,
duke@1 490 List.<Type>nil(),
duke@1 491 syms.methodClass),
duke@1 492 tree.sym);
duke@1 493 memberEnter(make.MethodDef(compareTo, null), env);
duke@1 494 }
duke@1 495
duke@1 496 public void visitTopLevel(JCCompilationUnit tree) {
duke@1 497 if (tree.starImportScope.elems != null) {
duke@1 498 // we must have already processed this toplevel
duke@1 499 return;
duke@1 500 }
duke@1 501
duke@1 502 // check that no class exists with same fully qualified name as
duke@1 503 // toplevel package
duke@1 504 if (checkClash && tree.pid != null) {
duke@1 505 Symbol p = tree.packge;
duke@1 506 while (p.owner != syms.rootPackage) {
duke@1 507 p.owner.complete(); // enter all class members of p
duke@1 508 if (syms.classes.get(p.getQualifiedName()) != null) {
duke@1 509 log.error(tree.pos,
duke@1 510 "pkg.clashes.with.class.of.same.name",
duke@1 511 p);
duke@1 512 }
duke@1 513 p = p.owner;
duke@1 514 }
duke@1 515 }
duke@1 516
duke@1 517 // process package annotations
duke@1 518 annotateLater(tree.packageAnnotations, env, tree.packge);
duke@1 519
duke@1 520 // Import-on-demand java.lang.
duke@1 521 importAll(tree.pos, reader.enterPackage(names.java_lang), env);
duke@1 522
duke@1 523 // Process all import clauses.
duke@1 524 memberEnter(tree.defs, env);
duke@1 525 }
duke@1 526
duke@1 527 // process the non-static imports and the static imports of types.
duke@1 528 public void visitImport(JCImport tree) {
duke@1 529 JCTree imp = tree.qualid;
duke@1 530 Name name = TreeInfo.name(imp);
duke@1 531 TypeSymbol p;
duke@1 532
duke@1 533 // Create a local environment pointing to this tree to disable
duke@1 534 // effects of other imports in Resolve.findGlobalType
duke@1 535 Env<AttrContext> localEnv = env.dup(tree);
duke@1 536
duke@1 537 // Attribute qualifying package or class.
duke@1 538 JCFieldAccess s = (JCFieldAccess) imp;
duke@1 539 p = attr.
duke@1 540 attribTree(s.selected,
duke@1 541 localEnv,
duke@1 542 tree.staticImport ? TYP : (TYP | PCK),
duke@1 543 Type.noType).tsym;
duke@1 544 if (name == names.asterisk) {
duke@1 545 // Import on demand.
duke@1 546 chk.checkCanonical(s.selected);
duke@1 547 if (tree.staticImport)
duke@1 548 importStaticAll(tree.pos, p, env);
duke@1 549 else
duke@1 550 importAll(tree.pos, p, env);
duke@1 551 } else {
duke@1 552 // Named type import.
duke@1 553 if (tree.staticImport) {
duke@1 554 importNamedStatic(tree.pos(), p, name, localEnv);
duke@1 555 chk.checkCanonical(s.selected);
duke@1 556 } else {
duke@1 557 TypeSymbol c = attribImportType(imp, localEnv).tsym;
duke@1 558 chk.checkCanonical(imp);
duke@1 559 importNamed(tree.pos(), c, env);
duke@1 560 }
duke@1 561 }
duke@1 562 }
duke@1 563
duke@1 564 public void visitMethodDef(JCMethodDecl tree) {
duke@1 565 Scope enclScope = enter.enterScope(env);
duke@1 566 MethodSymbol m = new MethodSymbol(0, tree.name, null, enclScope.owner);
duke@1 567 m.flags_field = chk.checkFlags(tree.pos(), tree.mods.flags, m, tree);
duke@1 568 tree.sym = m;
duke@1 569 Env<AttrContext> localEnv = methodEnv(tree, env);
duke@1 570
mcimadamore@852 571 DeferredLintHandler prevLintHandler =
mcimadamore@852 572 chk.setDeferredLintHandler(deferredLintHandler.setPos(tree.pos()));
mcimadamore@852 573 try {
mcimadamore@852 574 // Compute the method type
mcimadamore@852 575 m.type = signature(tree.typarams, tree.params,
mcimadamore@852 576 tree.restype, tree.thrown,
mcimadamore@852 577 localEnv);
mcimadamore@852 578 } finally {
mcimadamore@852 579 chk.setDeferredLintHandler(prevLintHandler);
mcimadamore@852 580 }
duke@1 581
duke@1 582 // Set m.params
duke@1 583 ListBuffer<VarSymbol> params = new ListBuffer<VarSymbol>();
duke@1 584 JCVariableDecl lastParam = null;
duke@1 585 for (List<JCVariableDecl> l = tree.params; l.nonEmpty(); l = l.tail) {
duke@1 586 JCVariableDecl param = lastParam = l.head;
jjg@816 587 params.append(Assert.checkNonNull(param.sym));
duke@1 588 }
duke@1 589 m.params = params.toList();
duke@1 590
duke@1 591 // mark the method varargs, if necessary
duke@1 592 if (lastParam != null && (lastParam.mods.flags & Flags.VARARGS) != 0)
duke@1 593 m.flags_field |= Flags.VARARGS;
duke@1 594
duke@1 595 localEnv.info.scope.leave();
duke@1 596 if (chk.checkUnique(tree.pos(), m, enclScope)) {
duke@1 597 enclScope.enter(m);
duke@1 598 }
duke@1 599 annotateLater(tree.mods.annotations, localEnv, m);
duke@1 600 if (tree.defaultValue != null)
duke@1 601 annotateDefaultValueLater(tree.defaultValue, localEnv, m);
duke@1 602 }
duke@1 603
duke@1 604 /** Create a fresh environment for method bodies.
duke@1 605 * @param tree The method definition.
duke@1 606 * @param env The environment current outside of the method definition.
duke@1 607 */
duke@1 608 Env<AttrContext> methodEnv(JCMethodDecl tree, Env<AttrContext> env) {
duke@1 609 Env<AttrContext> localEnv =
duke@1 610 env.dup(tree, env.info.dup(env.info.scope.dupUnshared()));
duke@1 611 localEnv.enclMethod = tree;
duke@1 612 localEnv.info.scope.owner = tree.sym;
duke@1 613 if ((tree.mods.flags & STATIC) != 0) localEnv.info.staticLevel++;
duke@1 614 return localEnv;
duke@1 615 }
duke@1 616
duke@1 617 public void visitVarDef(JCVariableDecl tree) {
duke@1 618 Env<AttrContext> localEnv = env;
duke@1 619 if ((tree.mods.flags & STATIC) != 0 ||
duke@1 620 (env.info.scope.owner.flags() & INTERFACE) != 0) {
duke@1 621 localEnv = env.dup(tree, env.info.dup());
duke@1 622 localEnv.info.staticLevel++;
duke@1 623 }
mcimadamore@852 624 DeferredLintHandler prevLintHandler =
mcimadamore@852 625 chk.setDeferredLintHandler(deferredLintHandler.setPos(tree.pos()));
mcimadamore@852 626 try {
mcimadamore@852 627 attr.attribType(tree.vartype, localEnv);
mcimadamore@852 628 } finally {
mcimadamore@852 629 chk.setDeferredLintHandler(prevLintHandler);
mcimadamore@852 630 }
mcimadamore@852 631
mcimadamore@795 632 if ((tree.mods.flags & VARARGS) != 0) {
mcimadamore@795 633 //if we are entering a varargs parameter, we need to replace its type
mcimadamore@795 634 //(a plain array type) with the more precise VarargsType --- we need
mcimadamore@795 635 //to do it this way because varargs is represented in the tree as a modifier
mcimadamore@795 636 //on the parameter declaration, and not as a distinct type of array node.
mcimadamore@795 637 ArrayType atype = (ArrayType)tree.vartype.type;
mcimadamore@795 638 tree.vartype.type = atype.makeVarargs();
mcimadamore@795 639 }
duke@1 640 Scope enclScope = enter.enterScope(env);
duke@1 641 VarSymbol v =
duke@1 642 new VarSymbol(0, tree.name, tree.vartype.type, enclScope.owner);
duke@1 643 v.flags_field = chk.checkFlags(tree.pos(), tree.mods.flags, v, tree);
duke@1 644 tree.sym = v;
duke@1 645 if (tree.init != null) {
duke@1 646 v.flags_field |= HASINIT;
mcimadamore@94 647 if ((v.flags_field & FINAL) != 0 && tree.init.getTag() != JCTree.NEWCLASS) {
mcimadamore@94 648 Env<AttrContext> initEnv = getInitEnv(tree, env);
mcimadamore@94 649 initEnv.info.enclVar = v;
jjg@841 650 v.setLazyConstValue(initEnv(tree, initEnv), attr, tree.init);
mcimadamore@94 651 }
duke@1 652 }
duke@1 653 if (chk.checkUnique(tree.pos(), v, enclScope)) {
duke@1 654 chk.checkTransparentVar(tree.pos(), v, enclScope);
duke@1 655 enclScope.enter(v);
duke@1 656 }
duke@1 657 annotateLater(tree.mods.annotations, localEnv, v);
duke@1 658 v.pos = tree.pos;
duke@1 659 }
duke@1 660
duke@1 661 /** Create a fresh environment for a variable's initializer.
duke@1 662 * If the variable is a field, the owner of the environment's scope
duke@1 663 * is be the variable itself, otherwise the owner is the method
duke@1 664 * enclosing the variable definition.
duke@1 665 *
duke@1 666 * @param tree The variable definition.
duke@1 667 * @param env The environment current outside of the variable definition.
duke@1 668 */
duke@1 669 Env<AttrContext> initEnv(JCVariableDecl tree, Env<AttrContext> env) {
duke@1 670 Env<AttrContext> localEnv = env.dupto(new AttrContextEnv(tree, env.info.dup()));
duke@1 671 if (tree.sym.owner.kind == TYP) {
duke@1 672 localEnv.info.scope = new Scope.DelegatedScope(env.info.scope);
duke@1 673 localEnv.info.scope.owner = tree.sym;
duke@1 674 }
duke@1 675 if ((tree.mods.flags & STATIC) != 0 ||
duke@1 676 (env.enclClass.sym.flags() & INTERFACE) != 0)
duke@1 677 localEnv.info.staticLevel++;
duke@1 678 return localEnv;
duke@1 679 }
duke@1 680
duke@1 681 /** Default member enter visitor method: do nothing
duke@1 682 */
duke@1 683 public void visitTree(JCTree tree) {
duke@1 684 }
duke@1 685
duke@1 686 public void visitErroneous(JCErroneous tree) {
jjg@711 687 if (tree.errs != null)
jjg@711 688 memberEnter(tree.errs, env);
duke@1 689 }
duke@1 690
duke@1 691 public Env<AttrContext> getMethodEnv(JCMethodDecl tree, Env<AttrContext> env) {
duke@1 692 Env<AttrContext> mEnv = methodEnv(tree, env);
duke@1 693 mEnv.info.lint = mEnv.info.lint.augment(tree.sym.attributes_field, tree.sym.flags());
duke@1 694 for (List<JCTypeParameter> l = tree.typarams; l.nonEmpty(); l = l.tail)
duke@1 695 mEnv.info.scope.enterIfAbsent(l.head.type.tsym);
duke@1 696 for (List<JCVariableDecl> l = tree.params; l.nonEmpty(); l = l.tail)
duke@1 697 mEnv.info.scope.enterIfAbsent(l.head.sym);
duke@1 698 return mEnv;
duke@1 699 }
duke@1 700
duke@1 701 public Env<AttrContext> getInitEnv(JCVariableDecl tree, Env<AttrContext> env) {
duke@1 702 Env<AttrContext> iEnv = initEnv(tree, env);
duke@1 703 return iEnv;
duke@1 704 }
duke@1 705
duke@1 706 /* ********************************************************************
duke@1 707 * Type completion
duke@1 708 *********************************************************************/
duke@1 709
duke@1 710 Type attribImportType(JCTree tree, Env<AttrContext> env) {
jjg@816 711 Assert.check(completionEnabled);
duke@1 712 try {
duke@1 713 // To prevent deep recursion, suppress completion of some
duke@1 714 // types.
duke@1 715 completionEnabled = false;
duke@1 716 return attr.attribType(tree, env);
duke@1 717 } finally {
duke@1 718 completionEnabled = true;
duke@1 719 }
duke@1 720 }
duke@1 721
duke@1 722 /* ********************************************************************
duke@1 723 * Annotation processing
duke@1 724 *********************************************************************/
duke@1 725
duke@1 726 /** Queue annotations for later processing. */
duke@1 727 void annotateLater(final List<JCAnnotation> annotations,
duke@1 728 final Env<AttrContext> localEnv,
duke@1 729 final Symbol s) {
duke@1 730 if (annotations.isEmpty()) return;
duke@1 731 if (s.kind != PCK) s.attributes_field = null; // mark it incomplete for now
duke@1 732 annotate.later(new Annotate.Annotator() {
duke@1 733 public String toString() {
duke@1 734 return "annotate " + annotations + " onto " + s + " in " + s.owner;
duke@1 735 }
duke@1 736 public void enterAnnotation() {
jjg@816 737 Assert.check(s.kind == PCK || s.attributes_field == null);
duke@1 738 JavaFileObject prev = log.useSource(localEnv.toplevel.sourcefile);
duke@1 739 try {
duke@1 740 if (s.attributes_field != null &&
duke@1 741 s.attributes_field.nonEmpty() &&
duke@1 742 annotations.nonEmpty())
duke@1 743 log.error(annotations.head.pos,
duke@1 744 "already.annotated",
mcimadamore@80 745 kindName(s), s);
duke@1 746 enterAnnotations(annotations, localEnv, s);
duke@1 747 } finally {
duke@1 748 log.useSource(prev);
duke@1 749 }
duke@1 750 }
duke@1 751 });
duke@1 752 }
duke@1 753
duke@1 754 /**
duke@1 755 * Check if a list of annotations contains a reference to
duke@1 756 * java.lang.Deprecated.
duke@1 757 **/
duke@1 758 private boolean hasDeprecatedAnnotation(List<JCAnnotation> annotations) {
duke@1 759 for (List<JCAnnotation> al = annotations; al.nonEmpty(); al = al.tail) {
duke@1 760 JCAnnotation a = al.head;
duke@1 761 if (a.annotationType.type == syms.deprecatedType && a.args.isEmpty())
duke@1 762 return true;
duke@1 763 }
duke@1 764 return false;
duke@1 765 }
duke@1 766
duke@1 767
duke@1 768 /** Enter a set of annotations. */
duke@1 769 private void enterAnnotations(List<JCAnnotation> annotations,
duke@1 770 Env<AttrContext> env,
duke@1 771 Symbol s) {
duke@1 772 ListBuffer<Attribute.Compound> buf =
duke@1 773 new ListBuffer<Attribute.Compound>();
duke@1 774 Set<TypeSymbol> annotated = new HashSet<TypeSymbol>();
duke@1 775 if (!skipAnnotations)
duke@1 776 for (List<JCAnnotation> al = annotations; al.nonEmpty(); al = al.tail) {
duke@1 777 JCAnnotation a = al.head;
duke@1 778 Attribute.Compound c = annotate.enterAnnotation(a,
duke@1 779 syms.annotationType,
duke@1 780 env);
duke@1 781 if (c == null) continue;
duke@1 782 buf.append(c);
duke@1 783 // Note: @Deprecated has no effect on local variables and parameters
duke@1 784 if (!c.type.isErroneous()
duke@1 785 && s.owner.kind != MTH
duke@1 786 && types.isSameType(c.type, syms.deprecatedType))
duke@1 787 s.flags_field |= Flags.DEPRECATED;
mcimadamore@857 788 // Internally to java.lang.invoke, a @PolymorphicSignature annotation
mcimadamore@674 789 // acts like a classfile attribute.
mcimadamore@674 790 if (!c.type.isErroneous() &&
mcimadamore@857 791 (types.isSameType(c.type, syms.polymorphicSignatureType) ||
mcimadamore@857 792 types.isSameType(c.type, syms.transientPolymorphicSignatureType))) {
mcimadamore@674 793 if (!target.hasMethodHandles()) {
mcimadamore@674 794 // Somebody is compiling JDK7 source code to a JDK6 target.
mcimadamore@822 795 // Make it an error, since it is unlikely but important.
mcimadamore@822 796 log.error(env.tree.pos(),
mcimadamore@674 797 "wrong.target.for.polymorphic.signature.definition",
mcimadamore@674 798 target.name);
mcimadamore@674 799 }
mcimadamore@674 800 // Pull the flag through for better diagnostics, even on a bad target.
jrose@571 801 s.flags_field |= Flags.POLYMORPHIC_SIGNATURE;
jrose@571 802 }
duke@1 803 if (!annotated.add(a.type.tsym))
duke@1 804 log.error(a.pos, "duplicate.annotation");
duke@1 805 }
duke@1 806 s.attributes_field = buf.toList();
duke@1 807 }
duke@1 808
duke@1 809 /** Queue processing of an attribute default value. */
duke@1 810 void annotateDefaultValueLater(final JCExpression defaultValue,
duke@1 811 final Env<AttrContext> localEnv,
duke@1 812 final MethodSymbol m) {
duke@1 813 annotate.later(new Annotate.Annotator() {
duke@1 814 public String toString() {
duke@1 815 return "annotate " + m.owner + "." +
duke@1 816 m + " default " + defaultValue;
duke@1 817 }
duke@1 818 public void enterAnnotation() {
duke@1 819 JavaFileObject prev = log.useSource(localEnv.toplevel.sourcefile);
duke@1 820 try {
duke@1 821 enterDefaultValue(defaultValue, localEnv, m);
duke@1 822 } finally {
duke@1 823 log.useSource(prev);
duke@1 824 }
duke@1 825 }
duke@1 826 });
duke@1 827 }
duke@1 828
duke@1 829 /** Enter a default value for an attribute method. */
duke@1 830 private void enterDefaultValue(final JCExpression defaultValue,
duke@1 831 final Env<AttrContext> localEnv,
duke@1 832 final MethodSymbol m) {
duke@1 833 m.defaultValue = annotate.enterAttributeValue(m.type.getReturnType(),
duke@1 834 defaultValue,
duke@1 835 localEnv);
duke@1 836 }
duke@1 837
duke@1 838 /* ********************************************************************
duke@1 839 * Source completer
duke@1 840 *********************************************************************/
duke@1 841
duke@1 842 /** Complete entering a class.
duke@1 843 * @param sym The symbol of the class to be completed.
duke@1 844 */
duke@1 845 public void complete(Symbol sym) throws CompletionFailure {
duke@1 846 // Suppress some (recursive) MemberEnter invocations
duke@1 847 if (!completionEnabled) {
duke@1 848 // Re-install same completer for next time around and return.
jjg@816 849 Assert.check((sym.flags() & Flags.COMPOUND) == 0);
duke@1 850 sym.completer = this;
duke@1 851 return;
duke@1 852 }
duke@1 853
duke@1 854 ClassSymbol c = (ClassSymbol)sym;
duke@1 855 ClassType ct = (ClassType)c.type;
duke@1 856 Env<AttrContext> env = enter.typeEnvs.get(c);
duke@1 857 JCClassDecl tree = (JCClassDecl)env.tree;
duke@1 858 boolean wasFirst = isFirst;
duke@1 859 isFirst = false;
duke@1 860
duke@1 861 JavaFileObject prev = log.useSource(env.toplevel.sourcefile);
duke@1 862 try {
duke@1 863 // Save class environment for later member enter (2) processing.
duke@1 864 halfcompleted.append(env);
duke@1 865
mcimadamore@92 866 // Mark class as not yet attributed.
mcimadamore@92 867 c.flags_field |= UNATTRIBUTED;
mcimadamore@92 868
duke@1 869 // If this is a toplevel-class, make sure any preceding import
duke@1 870 // clauses have been seen.
duke@1 871 if (c.owner.kind == PCK) {
duke@1 872 memberEnter(env.toplevel, env.enclosing(JCTree.TOPLEVEL));
duke@1 873 todo.append(env);
duke@1 874 }
duke@1 875
duke@1 876 if (c.owner.kind == TYP)
duke@1 877 c.owner.complete();
duke@1 878
duke@1 879 // create an environment for evaluating the base clauses
duke@1 880 Env<AttrContext> baseEnv = baseEnv(tree, env);
duke@1 881
duke@1 882 // Determine supertype.
duke@1 883 Type supertype =
duke@1 884 (tree.extending != null)
duke@1 885 ? attr.attribBase(tree.extending, baseEnv, true, false, true)
duke@1 886 : ((tree.mods.flags & Flags.ENUM) != 0 && !target.compilerBootstrap(c))
duke@1 887 ? attr.attribBase(enumBase(tree.pos, c), baseEnv,
duke@1 888 true, false, false)
duke@1 889 : (c.fullname == names.java_lang_Object)
duke@1 890 ? Type.noType
duke@1 891 : syms.objectType;
duke@1 892 ct.supertype_field = supertype;
duke@1 893
duke@1 894 // Determine interfaces.
duke@1 895 ListBuffer<Type> interfaces = new ListBuffer<Type>();
duke@1 896 Set<Type> interfaceSet = new HashSet<Type>();
duke@1 897 List<JCExpression> interfaceTrees = tree.implementing;
duke@1 898 if ((tree.mods.flags & Flags.ENUM) != 0 && target.compilerBootstrap(c)) {
duke@1 899 // add interface Comparable<T>
duke@1 900 interfaceTrees =
duke@1 901 interfaceTrees.prepend(make.Type(new ClassType(syms.comparableType.getEnclosingType(),
duke@1 902 List.of(c.type),
duke@1 903 syms.comparableType.tsym)));
duke@1 904 // add interface Serializable
duke@1 905 interfaceTrees =
duke@1 906 interfaceTrees.prepend(make.Type(syms.serializableType));
duke@1 907 }
duke@1 908 for (JCExpression iface : interfaceTrees) {
duke@1 909 Type i = attr.attribBase(iface, baseEnv, false, true, true);
duke@1 910 if (i.tag == CLASS) {
duke@1 911 interfaces.append(i);
duke@1 912 chk.checkNotRepeated(iface.pos(), types.erasure(i), interfaceSet);
duke@1 913 }
duke@1 914 }
duke@1 915 if ((c.flags_field & ANNOTATION) != 0)
duke@1 916 ct.interfaces_field = List.of(syms.annotationType);
duke@1 917 else
duke@1 918 ct.interfaces_field = interfaces.toList();
duke@1 919
duke@1 920 if (c.fullname == names.java_lang_Object) {
duke@1 921 if (tree.extending != null) {
duke@1 922 chk.checkNonCyclic(tree.extending.pos(),
duke@1 923 supertype);
duke@1 924 ct.supertype_field = Type.noType;
duke@1 925 }
duke@1 926 else if (tree.implementing.nonEmpty()) {
duke@1 927 chk.checkNonCyclic(tree.implementing.head.pos(),
duke@1 928 ct.interfaces_field.head);
duke@1 929 ct.interfaces_field = List.nil();
duke@1 930 }
duke@1 931 }
duke@1 932
duke@1 933 // Annotations.
duke@1 934 // In general, we cannot fully process annotations yet, but we
duke@1 935 // can attribute the annotation types and then check to see if the
duke@1 936 // @Deprecated annotation is present.
duke@1 937 attr.attribAnnotationTypes(tree.mods.annotations, baseEnv);
duke@1 938 if (hasDeprecatedAnnotation(tree.mods.annotations))
duke@1 939 c.flags_field |= DEPRECATED;
duke@1 940 annotateLater(tree.mods.annotations, baseEnv, c);
duke@1 941
mcimadamore@690 942 chk.checkNonCyclicDecl(tree);
mcimadamore@8 943
duke@1 944 attr.attribTypeVariables(tree.typarams, baseEnv);
duke@1 945
duke@1 946 // Add default constructor if needed.
duke@1 947 if ((c.flags() & INTERFACE) == 0 &&
duke@1 948 !TreeInfo.hasConstructors(tree.defs)) {
duke@1 949 List<Type> argtypes = List.nil();
duke@1 950 List<Type> typarams = List.nil();
duke@1 951 List<Type> thrown = List.nil();
duke@1 952 long ctorFlags = 0;
duke@1 953 boolean based = false;
jjg@113 954 if (c.name.isEmpty()) {
duke@1 955 JCNewClass nc = (JCNewClass)env.next.tree;
duke@1 956 if (nc.constructor != null) {
duke@1 957 Type superConstrType = types.memberType(c.type,
duke@1 958 nc.constructor);
duke@1 959 argtypes = superConstrType.getParameterTypes();
duke@1 960 typarams = superConstrType.getTypeArguments();
duke@1 961 ctorFlags = nc.constructor.flags() & VARARGS;
duke@1 962 if (nc.encl != null) {
duke@1 963 argtypes = argtypes.prepend(nc.encl.type);
duke@1 964 based = true;
duke@1 965 }
duke@1 966 thrown = superConstrType.getThrownTypes();
duke@1 967 }
duke@1 968 }
duke@1 969 JCTree constrDef = DefaultConstructor(make.at(tree.pos), c,
duke@1 970 typarams, argtypes, thrown,
duke@1 971 ctorFlags, based);
duke@1 972 tree.defs = tree.defs.prepend(constrDef);
duke@1 973 }
duke@1 974
duke@1 975 // If this is a class, enter symbols for this and super into
duke@1 976 // current scope.
duke@1 977 if ((c.flags_field & INTERFACE) == 0) {
duke@1 978 VarSymbol thisSym =
duke@1 979 new VarSymbol(FINAL | HASINIT, names._this, c.type, c);
duke@1 980 thisSym.pos = Position.FIRSTPOS;
duke@1 981 env.info.scope.enter(thisSym);
duke@1 982 if (ct.supertype_field.tag == CLASS) {
duke@1 983 VarSymbol superSym =
duke@1 984 new VarSymbol(FINAL | HASINIT, names._super,
duke@1 985 ct.supertype_field, c);
duke@1 986 superSym.pos = Position.FIRSTPOS;
duke@1 987 env.info.scope.enter(superSym);
duke@1 988 }
duke@1 989 }
duke@1 990
duke@1 991 // check that no package exists with same fully qualified name,
duke@1 992 // but admit classes in the unnamed package which have the same
duke@1 993 // name as a top-level package.
duke@1 994 if (checkClash &&
duke@1 995 c.owner.kind == PCK && c.owner != syms.unnamedPackage &&
duke@1 996 reader.packageExists(c.fullname))
duke@1 997 {
mcimadamore@829 998 log.error(tree.pos, "clash.with.pkg.of.same.name", Kinds.kindName(sym), c);
duke@1 999 }
duke@1 1000
duke@1 1001 } catch (CompletionFailure ex) {
duke@1 1002 chk.completionError(tree.pos(), ex);
duke@1 1003 } finally {
duke@1 1004 log.useSource(prev);
duke@1 1005 }
duke@1 1006
duke@1 1007 // Enter all member fields and methods of a set of half completed
duke@1 1008 // classes in a second phase.
duke@1 1009 if (wasFirst) {
duke@1 1010 try {
duke@1 1011 while (halfcompleted.nonEmpty()) {
duke@1 1012 finish(halfcompleted.next());
duke@1 1013 }
duke@1 1014 } finally {
duke@1 1015 isFirst = true;
duke@1 1016 }
duke@1 1017
duke@1 1018 // commit pending annotations
duke@1 1019 annotate.flush();
duke@1 1020 }
duke@1 1021 }
duke@1 1022
duke@1 1023 private Env<AttrContext> baseEnv(JCClassDecl tree, Env<AttrContext> env) {
mcimadamore@858 1024 Scope baseScope = new Scope(tree.sym);
mcimadamore@639 1025 //import already entered local classes into base scope
mcimadamore@639 1026 for (Scope.Entry e = env.outer.info.scope.elems ; e != null ; e = e.sibling) {
mcimadamore@639 1027 if (e.sym.isLocal()) {
mcimadamore@639 1028 baseScope.enter(e.sym);
mcimadamore@639 1029 }
mcimadamore@639 1030 }
mcimadamore@639 1031 //import current type-parameters into base scope
duke@1 1032 if (tree.typarams != null)
duke@1 1033 for (List<JCTypeParameter> typarams = tree.typarams;
duke@1 1034 typarams.nonEmpty();
duke@1 1035 typarams = typarams.tail)
mcimadamore@639 1036 baseScope.enter(typarams.head.type.tsym);
duke@1 1037 Env<AttrContext> outer = env.outer; // the base clause can't see members of this class
mcimadamore@639 1038 Env<AttrContext> localEnv = outer.dup(tree, outer.info.dup(baseScope));
duke@1 1039 localEnv.baseClause = true;
duke@1 1040 localEnv.outer = outer;
duke@1 1041 localEnv.info.isSelfCall = false;
duke@1 1042 return localEnv;
duke@1 1043 }
duke@1 1044
duke@1 1045 /** Enter member fields and methods of a class
duke@1 1046 * @param env the environment current for the class block.
duke@1 1047 */
duke@1 1048 private void finish(Env<AttrContext> env) {
duke@1 1049 JavaFileObject prev = log.useSource(env.toplevel.sourcefile);
duke@1 1050 try {
duke@1 1051 JCClassDecl tree = (JCClassDecl)env.tree;
duke@1 1052 finishClass(tree, env);
duke@1 1053 } finally {
duke@1 1054 log.useSource(prev);
duke@1 1055 }
duke@1 1056 }
duke@1 1057
duke@1 1058 /** Generate a base clause for an enum type.
duke@1 1059 * @param pos The position for trees and diagnostics, if any
duke@1 1060 * @param c The class symbol of the enum
duke@1 1061 */
duke@1 1062 private JCExpression enumBase(int pos, ClassSymbol c) {
duke@1 1063 JCExpression result = make.at(pos).
duke@1 1064 TypeApply(make.QualIdent(syms.enumSym),
duke@1 1065 List.<JCExpression>of(make.Type(c.type)));
duke@1 1066 return result;
duke@1 1067 }
duke@1 1068
duke@1 1069 /* ***************************************************************************
duke@1 1070 * tree building
duke@1 1071 ****************************************************************************/
duke@1 1072
duke@1 1073 /** Generate default constructor for given class. For classes different
duke@1 1074 * from java.lang.Object, this is:
duke@1 1075 *
duke@1 1076 * c(argtype_0 x_0, ..., argtype_n x_n) throws thrown {
duke@1 1077 * super(x_0, ..., x_n)
duke@1 1078 * }
duke@1 1079 *
duke@1 1080 * or, if based == true:
duke@1 1081 *
duke@1 1082 * c(argtype_0 x_0, ..., argtype_n x_n) throws thrown {
duke@1 1083 * x_0.super(x_1, ..., x_n)
duke@1 1084 * }
duke@1 1085 *
duke@1 1086 * @param make The tree factory.
duke@1 1087 * @param c The class owning the default constructor.
duke@1 1088 * @param argtypes The parameter types of the constructor.
duke@1 1089 * @param thrown The thrown exceptions of the constructor.
duke@1 1090 * @param based Is first parameter a this$n?
duke@1 1091 */
duke@1 1092 JCTree DefaultConstructor(TreeMaker make,
duke@1 1093 ClassSymbol c,
duke@1 1094 List<Type> typarams,
duke@1 1095 List<Type> argtypes,
duke@1 1096 List<Type> thrown,
duke@1 1097 long flags,
duke@1 1098 boolean based) {
duke@1 1099 List<JCVariableDecl> params = make.Params(argtypes, syms.noSymbol);
duke@1 1100 List<JCStatement> stats = List.nil();
duke@1 1101 if (c.type != syms.objectType)
duke@1 1102 stats = stats.prepend(SuperCall(make, typarams, params, based));
duke@1 1103 if ((c.flags() & ENUM) != 0 &&
duke@1 1104 (types.supertype(c.type).tsym == syms.enumSym ||
duke@1 1105 target.compilerBootstrap(c))) {
duke@1 1106 // constructors of true enums are private
duke@1 1107 flags = (flags & ~AccessFlags) | PRIVATE | GENERATEDCONSTR;
duke@1 1108 } else
duke@1 1109 flags |= (c.flags() & AccessFlags) | GENERATEDCONSTR;
jjg@113 1110 if (c.name.isEmpty()) flags |= ANONCONSTR;
duke@1 1111 JCTree result = make.MethodDef(
duke@1 1112 make.Modifiers(flags),
duke@1 1113 names.init,
duke@1 1114 null,
duke@1 1115 make.TypeParams(typarams),
duke@1 1116 params,
duke@1 1117 make.Types(thrown),
duke@1 1118 make.Block(0, stats),
duke@1 1119 null);
duke@1 1120 return result;
duke@1 1121 }
duke@1 1122
duke@1 1123 /** Generate call to superclass constructor. This is:
duke@1 1124 *
duke@1 1125 * super(id_0, ..., id_n)
duke@1 1126 *
duke@1 1127 * or, if based == true
duke@1 1128 *
duke@1 1129 * id_0.super(id_1,...,id_n)
duke@1 1130 *
duke@1 1131 * where id_0, ..., id_n are the names of the given parameters.
duke@1 1132 *
duke@1 1133 * @param make The tree factory
duke@1 1134 * @param params The parameters that need to be passed to super
duke@1 1135 * @param typarams The type parameters that need to be passed to super
duke@1 1136 * @param based Is first parameter a this$n?
duke@1 1137 */
duke@1 1138 JCExpressionStatement SuperCall(TreeMaker make,
duke@1 1139 List<Type> typarams,
duke@1 1140 List<JCVariableDecl> params,
duke@1 1141 boolean based) {
duke@1 1142 JCExpression meth;
duke@1 1143 if (based) {
duke@1 1144 meth = make.Select(make.Ident(params.head), names._super);
duke@1 1145 params = params.tail;
duke@1 1146 } else {
duke@1 1147 meth = make.Ident(names._super);
duke@1 1148 }
duke@1 1149 List<JCExpression> typeargs = typarams.nonEmpty() ? make.Types(typarams) : null;
duke@1 1150 return make.Exec(make.Apply(typeargs, meth, make.Idents(params)));
duke@1 1151 }
duke@1 1152 }

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