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

Tue, 15 Oct 2013 19:36:45 +0100

author
vromero
date
Tue, 15 Oct 2013 19:36:45 +0100
changeset 2117
70a301b35e71
parent 2047
5f915a0c9615
child 2193
d4cbb671de1c
permissions
-rw-r--r--

8025816: javac crash with method reference with a type variable as the site
Reviewed-by: jjg

duke@1 1 /*
jjg@1521 2 * Copyright (c) 1999, 2013, 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
mcimadamore@1114 28 import com.sun.tools.javac.api.Formattable.LocalizedString;
duke@1 29 import com.sun.tools.javac.code.*;
mcimadamore@1342 30 import com.sun.tools.javac.code.Symbol.*;
mcimadamore@1114 31 import com.sun.tools.javac.code.Type.*;
mcimadamore@1238 32 import com.sun.tools.javac.comp.Attr.ResultInfo;
mcimadamore@1238 33 import com.sun.tools.javac.comp.Check.CheckContext;
mcimadamore@1347 34 import com.sun.tools.javac.comp.DeferredAttr.AttrMode;
mcimadamore@1347 35 import com.sun.tools.javac.comp.DeferredAttr.DeferredAttrContext;
mcimadamore@1347 36 import com.sun.tools.javac.comp.DeferredAttr.DeferredType;
mcimadamore@1337 37 import com.sun.tools.javac.comp.Infer.InferenceContext;
mcimadamore@1550 38 import com.sun.tools.javac.comp.Infer.FreeTypeListener;
mcimadamore@1215 39 import com.sun.tools.javac.comp.Resolve.MethodResolutionContext.Candidate;
mcimadamore@1759 40 import com.sun.tools.javac.comp.Resolve.MethodResolutionDiagHelper.DiagnosticRewriter;
mcimadamore@1759 41 import com.sun.tools.javac.comp.Resolve.MethodResolutionDiagHelper.Template;
duke@1 42 import com.sun.tools.javac.jvm.*;
mcimadamore@1759 43 import com.sun.tools.javac.main.Option;
duke@1 44 import com.sun.tools.javac.tree.*;
mcimadamore@1114 45 import com.sun.tools.javac.tree.JCTree.*;
mcimadamore@1352 46 import com.sun.tools.javac.tree.JCTree.JCMemberReference.ReferenceKind;
mcimadamore@1510 47 import com.sun.tools.javac.tree.JCTree.JCPolyExpression.*;
mcimadamore@1114 48 import com.sun.tools.javac.util.*;
mcimadamore@1114 49 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticFlag;
mcimadamore@1114 50 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
mcimadamore@1114 51 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticType;
duke@1 52
mcimadamore@1114 53 import java.util.Arrays;
mcimadamore@1114 54 import java.util.Collection;
mcimadamore@1215 55 import java.util.EnumMap;
mcimadamore@1114 56 import java.util.EnumSet;
mcimadamore@1342 57 import java.util.Iterator;
mcimadamore@1394 58 import java.util.LinkedHashMap;
mcimadamore@1394 59 import java.util.LinkedHashSet;
mcimadamore@1114 60 import java.util.Map;
mcimadamore@1114 61
mcimadamore@1114 62 import javax.lang.model.element.ElementVisitor;
duke@1 63
duke@1 64 import static com.sun.tools.javac.code.Flags.*;
jjg@1127 65 import static com.sun.tools.javac.code.Flags.BLOCK;
duke@1 66 import static com.sun.tools.javac.code.Kinds.*;
jjg@1127 67 import static com.sun.tools.javac.code.Kinds.ERRONEOUS;
jjg@1374 68 import static com.sun.tools.javac.code.TypeTag.*;
mcimadamore@1114 69 import static com.sun.tools.javac.comp.Resolve.MethodResolutionPhase.*;
jjg@1127 70 import static com.sun.tools.javac.tree.JCTree.Tag.*;
mcimadamore@160 71
duke@1 72 /** Helper class for name resolution, used mostly by the attribution phase.
duke@1 73 *
jjg@581 74 * <p><b>This is NOT part of any supported API.
jjg@581 75 * If you write code that depends on this, you do so at your own risk.
duke@1 76 * This code and its internal interfaces are subject to change or
duke@1 77 * deletion without notice.</b>
duke@1 78 */
duke@1 79 public class Resolve {
duke@1 80 protected static final Context.Key<Resolve> resolveKey =
duke@1 81 new Context.Key<Resolve>();
duke@1 82
jjg@113 83 Names names;
duke@1 84 Log log;
duke@1 85 Symtab syms;
mcimadamore@1238 86 Attr attr;
mcimadamore@1347 87 DeferredAttr deferredAttr;
duke@1 88 Check chk;
duke@1 89 Infer infer;
duke@1 90 ClassReader reader;
duke@1 91 TreeInfo treeinfo;
duke@1 92 Types types;
mcimadamore@89 93 JCDiagnostic.Factory diags;
duke@1 94 public final boolean boxingEnabled; // = source.allowBoxing();
duke@1 95 public final boolean varargsEnabled; // = source.allowVarargs();
mcimadamore@674 96 public final boolean allowMethodHandles;
mcimadamore@1393 97 public final boolean allowDefaultMethods;
mcimadamore@1510 98 public final boolean allowStructuralMostSpecific;
duke@1 99 private final boolean debugResolve;
mcimadamore@1759 100 private final boolean compactMethodDiags;
mcimadamore@1114 101 final EnumSet<VerboseResolutionMode> verboseResolutionMode;
duke@1 102
mcimadamore@674 103 Scope polymorphicSignatureScope;
mcimadamore@674 104
mcimadamore@1215 105 protected Resolve(Context context) {
mcimadamore@1215 106 context.put(resolveKey, this);
mcimadamore@1215 107 syms = Symtab.instance(context);
mcimadamore@1215 108
mcimadamore@1215 109 varNotFound = new
mcimadamore@1215 110 SymbolNotFoundError(ABSENT_VAR);
mcimadamore@1215 111 methodNotFound = new
mcimadamore@1215 112 SymbolNotFoundError(ABSENT_MTH);
mcimadamore@1215 113 typeNotFound = new
mcimadamore@1215 114 SymbolNotFoundError(ABSENT_TYP);
mcimadamore@1215 115
mcimadamore@1215 116 names = Names.instance(context);
mcimadamore@1215 117 log = Log.instance(context);
mcimadamore@1238 118 attr = Attr.instance(context);
mcimadamore@1347 119 deferredAttr = DeferredAttr.instance(context);
mcimadamore@1215 120 chk = Check.instance(context);
mcimadamore@1215 121 infer = Infer.instance(context);
mcimadamore@1215 122 reader = ClassReader.instance(context);
mcimadamore@1215 123 treeinfo = TreeInfo.instance(context);
mcimadamore@1215 124 types = Types.instance(context);
mcimadamore@1215 125 diags = JCDiagnostic.Factory.instance(context);
mcimadamore@1215 126 Source source = Source.instance(context);
mcimadamore@1215 127 boxingEnabled = source.allowBoxing();
mcimadamore@1215 128 varargsEnabled = source.allowVarargs();
mcimadamore@1215 129 Options options = Options.instance(context);
mcimadamore@1215 130 debugResolve = options.isSet("debugresolve");
mcimadamore@1759 131 compactMethodDiags = options.isSet(Option.XDIAGS, "compact") ||
mcimadamore@1759 132 options.isUnset(Option.XDIAGS) && options.isUnset("rawDiagnostics");
mcimadamore@1215 133 verboseResolutionMode = VerboseResolutionMode.getVerboseResolutionMode(options);
mcimadamore@1215 134 Target target = Target.instance(context);
mcimadamore@1215 135 allowMethodHandles = target.hasMethodHandles();
mcimadamore@1393 136 allowDefaultMethods = source.allowDefaultMethods();
mcimadamore@1510 137 allowStructuralMostSpecific = source.allowStructuralMostSpecific();
mcimadamore@1215 138 polymorphicSignatureScope = new Scope(syms.noSymbol);
mcimadamore@1215 139
mcimadamore@1215 140 inapplicableMethodException = new InapplicableMethodException(diags);
mcimadamore@1215 141 }
mcimadamore@1215 142
mcimadamore@1215 143 /** error symbols, which are returned when resolution fails
mcimadamore@1215 144 */
mcimadamore@1215 145 private final SymbolNotFoundError varNotFound;
mcimadamore@1215 146 private final SymbolNotFoundError methodNotFound;
mcimadamore@1215 147 private final SymbolNotFoundError typeNotFound;
mcimadamore@1215 148
mcimadamore@1215 149 public static Resolve instance(Context context) {
mcimadamore@1215 150 Resolve instance = context.get(resolveKey);
mcimadamore@1215 151 if (instance == null)
mcimadamore@1215 152 instance = new Resolve(context);
mcimadamore@1215 153 return instance;
mcimadamore@1215 154 }
mcimadamore@1215 155
mcimadamore@1215 156 // <editor-fold defaultstate="collapsed" desc="Verbose resolution diagnostics support">
mcimadamore@1114 157 enum VerboseResolutionMode {
mcimadamore@1114 158 SUCCESS("success"),
mcimadamore@1114 159 FAILURE("failure"),
mcimadamore@1114 160 APPLICABLE("applicable"),
mcimadamore@1114 161 INAPPLICABLE("inapplicable"),
mcimadamore@1114 162 DEFERRED_INST("deferred-inference"),
mcimadamore@1114 163 PREDEF("predef"),
mcimadamore@1114 164 OBJECT_INIT("object-init"),
mcimadamore@1114 165 INTERNAL("internal");
mcimadamore@1114 166
vromero@1442 167 final String opt;
mcimadamore@1114 168
mcimadamore@1114 169 private VerboseResolutionMode(String opt) {
mcimadamore@1114 170 this.opt = opt;
mcimadamore@1114 171 }
mcimadamore@1114 172
mcimadamore@1114 173 static EnumSet<VerboseResolutionMode> getVerboseResolutionMode(Options opts) {
mcimadamore@1114 174 String s = opts.get("verboseResolution");
mcimadamore@1114 175 EnumSet<VerboseResolutionMode> res = EnumSet.noneOf(VerboseResolutionMode.class);
mcimadamore@1114 176 if (s == null) return res;
mcimadamore@1114 177 if (s.contains("all")) {
mcimadamore@1114 178 res = EnumSet.allOf(VerboseResolutionMode.class);
mcimadamore@1114 179 }
mcimadamore@1114 180 Collection<String> args = Arrays.asList(s.split(","));
mcimadamore@1114 181 for (VerboseResolutionMode mode : values()) {
mcimadamore@1114 182 if (args.contains(mode.opt)) {
mcimadamore@1114 183 res.add(mode);
mcimadamore@1114 184 } else if (args.contains("-" + mode.opt)) {
mcimadamore@1114 185 res.remove(mode);
mcimadamore@1114 186 }
mcimadamore@1114 187 }
mcimadamore@1114 188 return res;
mcimadamore@1114 189 }
mcimadamore@1114 190 }
mcimadamore@1114 191
mcimadamore@1215 192 void reportVerboseResolutionDiagnostic(DiagnosticPosition dpos, Name name, Type site,
mcimadamore@1215 193 List<Type> argtypes, List<Type> typeargtypes, Symbol bestSoFar) {
mcimadamore@1215 194 boolean success = bestSoFar.kind < ERRONEOUS;
mcimadamore@1215 195
mcimadamore@1215 196 if (success && !verboseResolutionMode.contains(VerboseResolutionMode.SUCCESS)) {
mcimadamore@1215 197 return;
mcimadamore@1215 198 } else if (!success && !verboseResolutionMode.contains(VerboseResolutionMode.FAILURE)) {
mcimadamore@1215 199 return;
mcimadamore@1215 200 }
mcimadamore@1215 201
mcimadamore@1215 202 if (bestSoFar.name == names.init &&
mcimadamore@1215 203 bestSoFar.owner == syms.objectType.tsym &&
mcimadamore@1215 204 !verboseResolutionMode.contains(VerboseResolutionMode.OBJECT_INIT)) {
mcimadamore@1215 205 return; //skip diags for Object constructor resolution
mcimadamore@1215 206 } else if (site == syms.predefClass.type &&
mcimadamore@1215 207 !verboseResolutionMode.contains(VerboseResolutionMode.PREDEF)) {
mcimadamore@1215 208 return; //skip spurious diags for predef symbols (i.e. operators)
mcimadamore@1215 209 } else if (currentResolutionContext.internalResolution &&
mcimadamore@1215 210 !verboseResolutionMode.contains(VerboseResolutionMode.INTERNAL)) {
mcimadamore@1215 211 return;
mcimadamore@1215 212 }
mcimadamore@1215 213
mcimadamore@1215 214 int pos = 0;
mcimadamore@1215 215 int mostSpecificPos = -1;
alundblad@2047 216 ListBuffer<JCDiagnostic> subDiags = new ListBuffer<>();
mcimadamore@1215 217 for (Candidate c : currentResolutionContext.candidates) {
mcimadamore@1215 218 if (currentResolutionContext.step != c.step ||
mcimadamore@1215 219 (c.isApplicable() && !verboseResolutionMode.contains(VerboseResolutionMode.APPLICABLE)) ||
mcimadamore@1215 220 (!c.isApplicable() && !verboseResolutionMode.contains(VerboseResolutionMode.INAPPLICABLE))) {
mcimadamore@1215 221 continue;
mcimadamore@1215 222 } else {
mcimadamore@1215 223 subDiags.append(c.isApplicable() ?
mcimadamore@1215 224 getVerboseApplicableCandidateDiag(pos, c.sym, c.mtype) :
mcimadamore@1215 225 getVerboseInapplicableCandidateDiag(pos, c.sym, c.details));
mcimadamore@1215 226 if (c.sym == bestSoFar)
mcimadamore@1215 227 mostSpecificPos = pos;
mcimadamore@1215 228 pos++;
mcimadamore@1215 229 }
mcimadamore@1215 230 }
mcimadamore@1215 231 String key = success ? "verbose.resolve.multi" : "verbose.resolve.multi.1";
mcimadamore@1347 232 List<Type> argtypes2 = Type.map(argtypes,
mcimadamore@1347 233 deferredAttr.new RecoveryDeferredTypeMap(AttrMode.SPECULATIVE, bestSoFar, currentResolutionContext.step));
mcimadamore@1215 234 JCDiagnostic main = diags.note(log.currentSource(), dpos, key, name,
mcimadamore@1215 235 site.tsym, mostSpecificPos, currentResolutionContext.step,
mcimadamore@1347 236 methodArguments(argtypes2),
mcimadamore@1347 237 methodArguments(typeargtypes));
mcimadamore@1215 238 JCDiagnostic d = new JCDiagnostic.MultilineDiagnostic(main, subDiags.toList());
mcimadamore@1215 239 log.report(d);
duke@1 240 }
duke@1 241
mcimadamore@1215 242 JCDiagnostic getVerboseApplicableCandidateDiag(int pos, Symbol sym, Type inst) {
mcimadamore@1215 243 JCDiagnostic subDiag = null;
jjg@1374 244 if (sym.type.hasTag(FORALL)) {
mcimadamore@1268 245 subDiag = diags.fragment("partial.inst.sig", inst);
mcimadamore@1215 246 }
duke@1 247
mcimadamore@1215 248 String key = subDiag == null ?
mcimadamore@1215 249 "applicable.method.found" :
mcimadamore@1215 250 "applicable.method.found.1";
duke@1 251
mcimadamore@1215 252 return diags.fragment(key, pos, sym, subDiag);
duke@1 253 }
duke@1 254
mcimadamore@1215 255 JCDiagnostic getVerboseInapplicableCandidateDiag(int pos, Symbol sym, JCDiagnostic subDiag) {
mcimadamore@1215 256 return diags.fragment("not.applicable.method.found", pos, sym, subDiag);
mcimadamore@1215 257 }
mcimadamore@1215 258 // </editor-fold>
duke@1 259
duke@1 260 /* ************************************************************************
duke@1 261 * Identifier resolution
duke@1 262 *************************************************************************/
duke@1 263
duke@1 264 /** An environment is "static" if its static level is greater than
duke@1 265 * the one of its outer environment
duke@1 266 */
ksrini@1346 267 protected static boolean isStatic(Env<AttrContext> env) {
duke@1 268 return env.info.staticLevel > env.outer.info.staticLevel;
duke@1 269 }
duke@1 270
duke@1 271 /** An environment is an "initializer" if it is a constructor or
duke@1 272 * an instance initializer.
duke@1 273 */
duke@1 274 static boolean isInitializer(Env<AttrContext> env) {
duke@1 275 Symbol owner = env.info.scope.owner;
duke@1 276 return owner.isConstructor() ||
duke@1 277 owner.owner.kind == TYP &&
duke@1 278 (owner.kind == VAR ||
duke@1 279 owner.kind == MTH && (owner.flags() & BLOCK) != 0) &&
duke@1 280 (owner.flags() & STATIC) == 0;
duke@1 281 }
duke@1 282
duke@1 283 /** Is class accessible in given evironment?
duke@1 284 * @param env The current environment.
duke@1 285 * @param c The class whose accessibility is checked.
duke@1 286 */
duke@1 287 public boolean isAccessible(Env<AttrContext> env, TypeSymbol c) {
mcimadamore@741 288 return isAccessible(env, c, false);
mcimadamore@741 289 }
mcimadamore@741 290
mcimadamore@741 291 public boolean isAccessible(Env<AttrContext> env, TypeSymbol c, boolean checkInner) {
mcimadamore@741 292 boolean isAccessible = false;
duke@1 293 switch ((short)(c.flags() & AccessFlags)) {
mcimadamore@741 294 case PRIVATE:
mcimadamore@741 295 isAccessible =
mcimadamore@741 296 env.enclClass.sym.outermostClass() ==
mcimadamore@741 297 c.owner.outermostClass();
mcimadamore@741 298 break;
mcimadamore@741 299 case 0:
mcimadamore@741 300 isAccessible =
mcimadamore@741 301 env.toplevel.packge == c.owner // fast special case
mcimadamore@741 302 ||
mcimadamore@741 303 env.toplevel.packge == c.packge()
mcimadamore@741 304 ||
mcimadamore@741 305 // Hack: this case is added since synthesized default constructors
mcimadamore@741 306 // of anonymous classes should be allowed to access
mcimadamore@741 307 // classes which would be inaccessible otherwise.
mcimadamore@741 308 env.enclMethod != null &&
mcimadamore@741 309 (env.enclMethod.mods.flags & ANONCONSTR) != 0;
mcimadamore@741 310 break;
mcimadamore@741 311 default: // error recovery
mcimadamore@741 312 case PUBLIC:
mcimadamore@741 313 isAccessible = true;
mcimadamore@741 314 break;
mcimadamore@741 315 case PROTECTED:
mcimadamore@741 316 isAccessible =
mcimadamore@741 317 env.toplevel.packge == c.owner // fast special case
mcimadamore@741 318 ||
mcimadamore@741 319 env.toplevel.packge == c.packge()
mcimadamore@741 320 ||
mcimadamore@741 321 isInnerSubClass(env.enclClass.sym, c.owner);
mcimadamore@741 322 break;
duke@1 323 }
mcimadamore@741 324 return (checkInner == false || c.type.getEnclosingType() == Type.noType) ?
mcimadamore@741 325 isAccessible :
jjg@789 326 isAccessible && isAccessible(env, c.type.getEnclosingType(), checkInner);
duke@1 327 }
duke@1 328 //where
duke@1 329 /** Is given class a subclass of given base class, or an inner class
duke@1 330 * of a subclass?
duke@1 331 * Return null if no such class exists.
duke@1 332 * @param c The class which is the subclass or is contained in it.
duke@1 333 * @param base The base class
duke@1 334 */
duke@1 335 private boolean isInnerSubClass(ClassSymbol c, Symbol base) {
duke@1 336 while (c != null && !c.isSubClass(base, types)) {
duke@1 337 c = c.owner.enclClass();
duke@1 338 }
duke@1 339 return c != null;
duke@1 340 }
duke@1 341
duke@1 342 boolean isAccessible(Env<AttrContext> env, Type t) {
mcimadamore@741 343 return isAccessible(env, t, false);
mcimadamore@741 344 }
mcimadamore@741 345
mcimadamore@741 346 boolean isAccessible(Env<AttrContext> env, Type t, boolean checkInner) {
jjg@1374 347 return (t.hasTag(ARRAY))
mcimadamore@1901 348 ? isAccessible(env, types.upperBound(types.elemtype(t)))
mcimadamore@741 349 : isAccessible(env, t.tsym, checkInner);
duke@1 350 }
duke@1 351
vromero@1790 352 /** Is symbol accessible as a member of given type in given environment?
duke@1 353 * @param env The current environment.
duke@1 354 * @param site The type of which the tested symbol is regarded
duke@1 355 * as a member.
duke@1 356 * @param sym The symbol.
duke@1 357 */
duke@1 358 public boolean isAccessible(Env<AttrContext> env, Type site, Symbol sym) {
mcimadamore@741 359 return isAccessible(env, site, sym, false);
mcimadamore@741 360 }
mcimadamore@741 361 public boolean isAccessible(Env<AttrContext> env, Type site, Symbol sym, boolean checkInner) {
duke@1 362 if (sym.name == names.init && sym.owner != site.tsym) return false;
duke@1 363 switch ((short)(sym.flags() & AccessFlags)) {
duke@1 364 case PRIVATE:
duke@1 365 return
duke@1 366 (env.enclClass.sym == sym.owner // fast special case
duke@1 367 ||
duke@1 368 env.enclClass.sym.outermostClass() ==
duke@1 369 sym.owner.outermostClass())
duke@1 370 &&
duke@1 371 sym.isInheritedIn(site.tsym, types);
duke@1 372 case 0:
duke@1 373 return
duke@1 374 (env.toplevel.packge == sym.owner.owner // fast special case
duke@1 375 ||
duke@1 376 env.toplevel.packge == sym.packge())
duke@1 377 &&
mcimadamore@741 378 isAccessible(env, site, checkInner)
duke@1 379 &&
mcimadamore@254 380 sym.isInheritedIn(site.tsym, types)
mcimadamore@254 381 &&
mcimadamore@254 382 notOverriddenIn(site, sym);
duke@1 383 case PROTECTED:
duke@1 384 return
duke@1 385 (env.toplevel.packge == sym.owner.owner // fast special case
duke@1 386 ||
duke@1 387 env.toplevel.packge == sym.packge()
duke@1 388 ||
duke@1 389 isProtectedAccessible(sym, env.enclClass.sym, site)
duke@1 390 ||
duke@1 391 // OK to select instance method or field from 'super' or type name
duke@1 392 // (but type names should be disallowed elsewhere!)
duke@1 393 env.info.selectSuper && (sym.flags() & STATIC) == 0 && sym.kind != TYP)
duke@1 394 &&
mcimadamore@741 395 isAccessible(env, site, checkInner)
duke@1 396 &&
mcimadamore@254 397 notOverriddenIn(site, sym);
duke@1 398 default: // this case includes erroneous combinations as well
mcimadamore@741 399 return isAccessible(env, site, checkInner) && notOverriddenIn(site, sym);
mcimadamore@254 400 }
mcimadamore@254 401 }
mcimadamore@254 402 //where
mcimadamore@254 403 /* `sym' is accessible only if not overridden by
mcimadamore@254 404 * another symbol which is a member of `site'
mcimadamore@254 405 * (because, if it is overridden, `sym' is not strictly
mcimadamore@674 406 * speaking a member of `site'). A polymorphic signature method
mcimadamore@674 407 * cannot be overridden (e.g. MH.invokeExact(Object[])).
mcimadamore@254 408 */
mcimadamore@254 409 private boolean notOverriddenIn(Type site, Symbol sym) {
mcimadamore@254 410 if (sym.kind != MTH || sym.isConstructor() || sym.isStatic())
mcimadamore@254 411 return true;
mcimadamore@254 412 else {
mcimadamore@254 413 Symbol s2 = ((MethodSymbol)sym).implementation(site.tsym, types, true);
mcimadamore@844 414 return (s2 == null || s2 == sym || sym.owner == s2.owner ||
mcimadamore@325 415 !types.isSubSignature(types.memberType(site, s2), types.memberType(site, sym)));
duke@1 416 }
duke@1 417 }
duke@1 418 //where
duke@1 419 /** Is given protected symbol accessible if it is selected from given site
duke@1 420 * and the selection takes place in given class?
duke@1 421 * @param sym The symbol with protected access
duke@1 422 * @param c The class where the access takes place
duke@1 423 * @site The type of the qualifier
duke@1 424 */
duke@1 425 private
duke@1 426 boolean isProtectedAccessible(Symbol sym, ClassSymbol c, Type site) {
vromero@2117 427 Type newSite = site.hasTag(TYPEVAR) ? site.getUpperBound() : site;
duke@1 428 while (c != null &&
duke@1 429 !(c.isSubClass(sym.owner, types) &&
duke@1 430 (c.flags() & INTERFACE) == 0 &&
duke@1 431 // In JLS 2e 6.6.2.1, the subclass restriction applies
duke@1 432 // only to instance fields and methods -- types are excluded
duke@1 433 // regardless of whether they are declared 'static' or not.
vromero@2117 434 ((sym.flags() & STATIC) != 0 || sym.kind == TYP || newSite.tsym.isSubClass(c, types))))
duke@1 435 c = c.owner.enclClass();
duke@1 436 return c != null;
duke@1 437 }
duke@1 438
mcimadamore@1415 439 /**
mcimadamore@1415 440 * Performs a recursive scan of a type looking for accessibility problems
mcimadamore@1415 441 * from current attribution environment
mcimadamore@1415 442 */
mcimadamore@1415 443 void checkAccessibleType(Env<AttrContext> env, Type t) {
mcimadamore@1415 444 accessibilityChecker.visit(t, env);
mcimadamore@1415 445 }
mcimadamore@1415 446
mcimadamore@1415 447 /**
mcimadamore@1415 448 * Accessibility type-visitor
mcimadamore@1415 449 */
mcimadamore@1415 450 Types.SimpleVisitor<Void, Env<AttrContext>> accessibilityChecker =
mcimadamore@1415 451 new Types.SimpleVisitor<Void, Env<AttrContext>>() {
mcimadamore@1415 452
mcimadamore@1415 453 void visit(List<Type> ts, Env<AttrContext> env) {
mcimadamore@1415 454 for (Type t : ts) {
mcimadamore@1415 455 visit(t, env);
mcimadamore@1415 456 }
mcimadamore@1415 457 }
mcimadamore@1415 458
mcimadamore@1415 459 public Void visitType(Type t, Env<AttrContext> env) {
mcimadamore@1415 460 return null;
mcimadamore@1415 461 }
mcimadamore@1415 462
mcimadamore@1415 463 @Override
mcimadamore@1415 464 public Void visitArrayType(ArrayType t, Env<AttrContext> env) {
mcimadamore@1415 465 visit(t.elemtype, env);
mcimadamore@1415 466 return null;
mcimadamore@1415 467 }
mcimadamore@1415 468
mcimadamore@1415 469 @Override
mcimadamore@1415 470 public Void visitClassType(ClassType t, Env<AttrContext> env) {
mcimadamore@1415 471 visit(t.getTypeArguments(), env);
mcimadamore@1415 472 if (!isAccessible(env, t, true)) {
mcimadamore@1415 473 accessBase(new AccessError(t.tsym), env.tree.pos(), env.enclClass.sym, t, t.tsym.name, true);
mcimadamore@1415 474 }
mcimadamore@1415 475 return null;
mcimadamore@1415 476 }
mcimadamore@1415 477
mcimadamore@1415 478 @Override
mcimadamore@1415 479 public Void visitWildcardType(WildcardType t, Env<AttrContext> env) {
mcimadamore@1415 480 visit(t.type, env);
mcimadamore@1415 481 return null;
mcimadamore@1415 482 }
mcimadamore@1415 483
mcimadamore@1415 484 @Override
mcimadamore@1415 485 public Void visitMethodType(MethodType t, Env<AttrContext> env) {
mcimadamore@1415 486 visit(t.getParameterTypes(), env);
mcimadamore@1415 487 visit(t.getReturnType(), env);
mcimadamore@1415 488 visit(t.getThrownTypes(), env);
mcimadamore@1415 489 return null;
mcimadamore@1415 490 }
mcimadamore@1415 491 };
mcimadamore@1415 492
duke@1 493 /** Try to instantiate the type of a method so that it fits
vromero@1790 494 * given type arguments and argument types. If successful, return
duke@1 495 * the method's instantiated type, else return null.
duke@1 496 * The instantiation will take into account an additional leading
duke@1 497 * formal parameter if the method is an instance method seen as a member
vromero@1790 498 * of an under determined site. In this case, we treat site as an additional
duke@1 499 * parameter and the parameters of the class containing the method as
duke@1 500 * additional type variables that get instantiated.
duke@1 501 *
duke@1 502 * @param env The current environment
duke@1 503 * @param site The type of which the method is a member.
duke@1 504 * @param m The method symbol.
duke@1 505 * @param argtypes The invocation's given value arguments.
duke@1 506 * @param typeargtypes The invocation's given type arguments.
duke@1 507 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 508 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 509 */
duke@1 510 Type rawInstantiate(Env<AttrContext> env,
duke@1 511 Type site,
duke@1 512 Symbol m,
mcimadamore@1268 513 ResultInfo resultInfo,
duke@1 514 List<Type> argtypes,
duke@1 515 List<Type> typeargtypes,
duke@1 516 boolean allowBoxing,
duke@1 517 boolean useVarargs,
mcimadamore@1394 518 Warner warn) throws Infer.InferenceException {
mcimadamore@1394 519
duke@1 520 Type mt = types.memberType(site, m);
duke@1 521 // tvars is the list of formal type variables for which type arguments
duke@1 522 // need to inferred.
mcimadamore@1268 523 List<Type> tvars = List.nil();
duke@1 524 if (typeargtypes == null) typeargtypes = List.nil();
jjg@1374 525 if (!mt.hasTag(FORALL) && typeargtypes.nonEmpty()) {
duke@1 526 // This is not a polymorphic method, but typeargs are supplied
jjh@972 527 // which is fine, see JLS 15.12.2.1
jjg@1374 528 } else if (mt.hasTag(FORALL) && typeargtypes.nonEmpty()) {
duke@1 529 ForAll pmt = (ForAll) mt;
duke@1 530 if (typeargtypes.length() != pmt.tvars.length())
mcimadamore@689 531 throw inapplicableMethodException.setMessage("arg.length.mismatch"); // not enough args
duke@1 532 // Check type arguments are within bounds
duke@1 533 List<Type> formals = pmt.tvars;
duke@1 534 List<Type> actuals = typeargtypes;
duke@1 535 while (formals.nonEmpty() && actuals.nonEmpty()) {
duke@1 536 List<Type> bounds = types.subst(types.getBounds((TypeVar)formals.head),
duke@1 537 pmt.tvars, typeargtypes);
duke@1 538 for (; bounds.nonEmpty(); bounds = bounds.tail)
duke@1 539 if (!types.isSubtypeUnchecked(actuals.head, bounds.head, warn))
mcimadamore@689 540 throw inapplicableMethodException.setMessage("explicit.param.do.not.conform.to.bounds",actuals.head, bounds);
duke@1 541 formals = formals.tail;
duke@1 542 actuals = actuals.tail;
duke@1 543 }
duke@1 544 mt = types.subst(pmt.qtype, pmt.tvars, typeargtypes);
jjg@1374 545 } else if (mt.hasTag(FORALL)) {
duke@1 546 ForAll pmt = (ForAll) mt;
duke@1 547 List<Type> tvars1 = types.newInstances(pmt.tvars);
duke@1 548 tvars = tvars.appendList(tvars1);
duke@1 549 mt = types.subst(pmt.qtype, pmt.tvars, tvars1);
duke@1 550 }
duke@1 551
duke@1 552 // find out whether we need to go the slow route via infer
mcimadamore@1239 553 boolean instNeeded = tvars.tail != null; /*inlined: tvars.nonEmpty()*/
duke@1 554 for (List<Type> l = argtypes;
duke@1 555 l.tail != null/*inlined: l.nonEmpty()*/ && !instNeeded;
duke@1 556 l = l.tail) {
jjg@1374 557 if (l.head.hasTag(FORALL)) instNeeded = true;
duke@1 558 }
duke@1 559
duke@1 560 if (instNeeded)
mcimadamore@1239 561 return infer.instantiateMethod(env,
mcimadamore@547 562 tvars,
duke@1 563 (MethodType)mt,
mcimadamore@1268 564 resultInfo,
mcimadamore@580 565 m,
duke@1 566 argtypes,
duke@1 567 allowBoxing,
duke@1 568 useVarargs,
mcimadamore@1347 569 currentResolutionContext,
duke@1 570 warn);
mcimadamore@689 571
vromero@2000 572 DeferredAttr.DeferredAttrContext dc = currentResolutionContext.deferredAttrContext(m, infer.emptyContext, resultInfo, warn);
vromero@2000 573 currentResolutionContext.methodCheck.argumentsAcceptable(env, dc,
mcimadamore@1479 574 argtypes, mt.getParameterTypes(), warn);
vromero@2000 575 dc.complete();
mcimadamore@689 576 return mt;
duke@1 577 }
duke@1 578
mcimadamore@1347 579 Type checkMethod(Env<AttrContext> env,
mcimadamore@1347 580 Type site,
mcimadamore@1347 581 Symbol m,
mcimadamore@1347 582 ResultInfo resultInfo,
mcimadamore@1347 583 List<Type> argtypes,
mcimadamore@1347 584 List<Type> typeargtypes,
mcimadamore@1347 585 Warner warn) {
mcimadamore@1347 586 MethodResolutionContext prevContext = currentResolutionContext;
mcimadamore@1347 587 try {
mcimadamore@1347 588 currentResolutionContext = new MethodResolutionContext();
mcimadamore@1347 589 currentResolutionContext.attrMode = DeferredAttr.AttrMode.CHECK;
mcimadamore@1897 590 if (env.tree.hasTag(JCTree.Tag.REFERENCE)) {
mcimadamore@1897 591 //method/constructor references need special check class
mcimadamore@1897 592 //to handle inference variables in 'argtypes' (might happen
mcimadamore@1897 593 //during an unsticking round)
mcimadamore@1897 594 currentResolutionContext.methodCheck =
mcimadamore@1897 595 new MethodReferenceCheck(resultInfo.checkContext.inferenceContext());
mcimadamore@1897 596 }
mcimadamore@1347 597 MethodResolutionPhase step = currentResolutionContext.step = env.info.pendingResolutionPhase;
mcimadamore@1347 598 return rawInstantiate(env, site, m, resultInfo, argtypes, typeargtypes,
mcimadamore@1674 599 step.isBoxingRequired(), step.isVarargsRequired(), warn);
mcimadamore@1347 600 }
mcimadamore@1347 601 finally {
mcimadamore@1347 602 currentResolutionContext = prevContext;
mcimadamore@1347 603 }
mcimadamore@1347 604 }
mcimadamore@1347 605
duke@1 606 /** Same but returns null instead throwing a NoInstanceException
duke@1 607 */
duke@1 608 Type instantiate(Env<AttrContext> env,
duke@1 609 Type site,
duke@1 610 Symbol m,
mcimadamore@1268 611 ResultInfo resultInfo,
duke@1 612 List<Type> argtypes,
duke@1 613 List<Type> typeargtypes,
duke@1 614 boolean allowBoxing,
duke@1 615 boolean useVarargs,
duke@1 616 Warner warn) {
duke@1 617 try {
mcimadamore@1268 618 return rawInstantiate(env, site, m, resultInfo, argtypes, typeargtypes,
mcimadamore@1674 619 allowBoxing, useVarargs, warn);
mcimadamore@689 620 } catch (InapplicableMethodException ex) {
duke@1 621 return null;
duke@1 622 }
duke@1 623 }
duke@1 624
mcimadamore@1479 625 /**
mcimadamore@1479 626 * This interface defines an entry point that should be used to perform a
mcimadamore@1479 627 * method check. A method check usually consist in determining as to whether
mcimadamore@1479 628 * a set of types (actuals) is compatible with another set of types (formals).
mcimadamore@1479 629 * Since the notion of compatibility can vary depending on the circumstances,
mcimadamore@1479 630 * this interfaces allows to easily add new pluggable method check routines.
duke@1 631 */
mcimadamore@1479 632 interface MethodCheck {
mcimadamore@1479 633 /**
mcimadamore@1479 634 * Main method check routine. A method check usually consist in determining
mcimadamore@1479 635 * as to whether a set of types (actuals) is compatible with another set of
mcimadamore@1479 636 * types (formals). If an incompatibility is found, an unchecked exception
mcimadamore@1479 637 * is assumed to be thrown.
mcimadamore@1479 638 */
mcimadamore@1479 639 void argumentsAcceptable(Env<AttrContext> env,
mcimadamore@1479 640 DeferredAttrContext deferredAttrContext,
mcimadamore@845 641 List<Type> argtypes,
duke@1 642 List<Type> formals,
mcimadamore@1479 643 Warner warn);
mcimadamore@1674 644
mcimadamore@1674 645 /**
mcimadamore@1674 646 * Retrieve the method check object that will be used during a
mcimadamore@1674 647 * most specific check.
mcimadamore@1674 648 */
mcimadamore@1674 649 MethodCheck mostSpecificCheck(List<Type> actuals, boolean strict);
mcimadamore@1479 650 }
mcimadamore@1479 651
mcimadamore@1479 652 /**
mcimadamore@1479 653 * Helper enum defining all method check diagnostics (used by resolveMethodCheck).
mcimadamore@1479 654 */
mcimadamore@1479 655 enum MethodCheckDiag {
mcimadamore@1479 656 /**
mcimadamore@1479 657 * Actuals and formals differs in length.
mcimadamore@1479 658 */
mcimadamore@1479 659 ARITY_MISMATCH("arg.length.mismatch", "infer.arg.length.mismatch"),
mcimadamore@1479 660 /**
mcimadamore@1479 661 * An actual is incompatible with a formal.
mcimadamore@1479 662 */
mcimadamore@1479 663 ARG_MISMATCH("no.conforming.assignment.exists", "infer.no.conforming.assignment.exists"),
mcimadamore@1479 664 /**
mcimadamore@1479 665 * An actual is incompatible with the varargs element type.
mcimadamore@1479 666 */
mcimadamore@1479 667 VARARG_MISMATCH("varargs.argument.mismatch", "infer.varargs.argument.mismatch"),
mcimadamore@1479 668 /**
mcimadamore@1479 669 * The varargs element type is inaccessible.
mcimadamore@1479 670 */
mcimadamore@1479 671 INACCESSIBLE_VARARGS("inaccessible.varargs.type", "inaccessible.varargs.type");
mcimadamore@1479 672
mcimadamore@1479 673 final String basicKey;
mcimadamore@1479 674 final String inferKey;
mcimadamore@1479 675
mcimadamore@1479 676 MethodCheckDiag(String basicKey, String inferKey) {
mcimadamore@1479 677 this.basicKey = basicKey;
mcimadamore@1479 678 this.inferKey = inferKey;
mcimadamore@689 679 }
mcimadamore@1759 680
mcimadamore@1759 681 String regex() {
mcimadamore@1759 682 return String.format("([a-z]*\\.)*(%s|%s)", basicKey, inferKey);
mcimadamore@1759 683 }
mcimadamore@689 684 }
mcimadamore@1186 685
mcimadamore@1186 686 /**
mcimadamore@1674 687 * Dummy method check object. All methods are deemed applicable, regardless
mcimadamore@1674 688 * of their formal parameter types.
mcimadamore@1674 689 */
mcimadamore@1674 690 MethodCheck nilMethodCheck = new MethodCheck() {
mcimadamore@1674 691 public void argumentsAcceptable(Env<AttrContext> env, DeferredAttrContext deferredAttrContext, List<Type> argtypes, List<Type> formals, Warner warn) {
mcimadamore@1674 692 //do nothing - method always applicable regardless of actuals
mcimadamore@1674 693 }
mcimadamore@1674 694
mcimadamore@1674 695 public MethodCheck mostSpecificCheck(List<Type> actuals, boolean strict) {
mcimadamore@1674 696 return this;
mcimadamore@1674 697 }
mcimadamore@1674 698 };
mcimadamore@1674 699
mcimadamore@1674 700 /**
mcimadamore@1674 701 * Base class for 'real' method checks. The class defines the logic for
mcimadamore@1674 702 * iterating through formals and actuals and provides and entry point
mcimadamore@1674 703 * that can be used by subclasses in order to define the actual check logic.
mcimadamore@1674 704 */
mcimadamore@1674 705 abstract class AbstractMethodCheck implements MethodCheck {
mcimadamore@1674 706 @Override
mcimadamore@1674 707 public void argumentsAcceptable(final Env<AttrContext> env,
mcimadamore@1674 708 DeferredAttrContext deferredAttrContext,
mcimadamore@1674 709 List<Type> argtypes,
mcimadamore@1674 710 List<Type> formals,
mcimadamore@1674 711 Warner warn) {
mcimadamore@1674 712 //should we expand formals?
mcimadamore@1674 713 boolean useVarargs = deferredAttrContext.phase.isVarargsRequired();
mcimadamore@1759 714 List<JCExpression> trees = TreeInfo.args(env.tree);
mcimadamore@1674 715
mcimadamore@1674 716 //inference context used during this method check
mcimadamore@1674 717 InferenceContext inferenceContext = deferredAttrContext.inferenceContext;
mcimadamore@1674 718
mcimadamore@1674 719 Type varargsFormal = useVarargs ? formals.last() : null;
mcimadamore@1674 720
mcimadamore@1674 721 if (varargsFormal == null &&
mcimadamore@1674 722 argtypes.size() != formals.size()) {
mcimadamore@1759 723 reportMC(env.tree, MethodCheckDiag.ARITY_MISMATCH, inferenceContext); // not enough args
mcimadamore@1674 724 }
mcimadamore@1674 725
mcimadamore@1674 726 while (argtypes.nonEmpty() && formals.head != varargsFormal) {
mcimadamore@1759 727 DiagnosticPosition pos = trees != null ? trees.head : null;
mcimadamore@1759 728 checkArg(pos, false, argtypes.head, formals.head, deferredAttrContext, warn);
mcimadamore@1674 729 argtypes = argtypes.tail;
mcimadamore@1674 730 formals = formals.tail;
mcimadamore@1759 731 trees = trees != null ? trees.tail : trees;
mcimadamore@1674 732 }
mcimadamore@1674 733
mcimadamore@1674 734 if (formals.head != varargsFormal) {
mcimadamore@1759 735 reportMC(env.tree, MethodCheckDiag.ARITY_MISMATCH, inferenceContext); // not enough args
mcimadamore@1674 736 }
mcimadamore@1674 737
mcimadamore@1674 738 if (useVarargs) {
mcimadamore@1674 739 //note: if applicability check is triggered by most specific test,
mcimadamore@1674 740 //the last argument of a varargs is _not_ an array type (see JLS 15.12.2.5)
mcimadamore@1674 741 final Type elt = types.elemtype(varargsFormal);
mcimadamore@1674 742 while (argtypes.nonEmpty()) {
mcimadamore@1759 743 DiagnosticPosition pos = trees != null ? trees.head : null;
mcimadamore@1759 744 checkArg(pos, true, argtypes.head, elt, deferredAttrContext, warn);
mcimadamore@1674 745 argtypes = argtypes.tail;
mcimadamore@1759 746 trees = trees != null ? trees.tail : trees;
mcimadamore@1674 747 }
mcimadamore@1674 748 }
mcimadamore@1674 749 }
mcimadamore@1674 750
mcimadamore@1674 751 /**
mcimadamore@1674 752 * Does the actual argument conforms to the corresponding formal?
mcimadamore@1674 753 */
mcimadamore@1759 754 abstract void checkArg(DiagnosticPosition pos, boolean varargs, Type actual, Type formal, DeferredAttrContext deferredAttrContext, Warner warn);
mcimadamore@1759 755
mcimadamore@1759 756 protected void reportMC(DiagnosticPosition pos, MethodCheckDiag diag, InferenceContext inferenceContext, Object... args) {
mcimadamore@1674 757 boolean inferDiag = inferenceContext != infer.emptyContext;
mcimadamore@1674 758 InapplicableMethodException ex = inferDiag ?
mcimadamore@1674 759 infer.inferenceException : inapplicableMethodException;
mcimadamore@1674 760 if (inferDiag && (!diag.inferKey.equals(diag.basicKey))) {
mcimadamore@1674 761 Object[] args2 = new Object[args.length + 1];
mcimadamore@1674 762 System.arraycopy(args, 0, args2, 1, args.length);
mcimadamore@1674 763 args2[0] = inferenceContext.inferenceVars();
mcimadamore@1674 764 args = args2;
mcimadamore@1674 765 }
mcimadamore@1759 766 String key = inferDiag ? diag.inferKey : diag.basicKey;
mcimadamore@1759 767 throw ex.setMessage(diags.create(DiagnosticType.FRAGMENT, log.currentSource(), pos, key, args));
mcimadamore@1674 768 }
mcimadamore@1674 769
mcimadamore@1674 770 public MethodCheck mostSpecificCheck(List<Type> actuals, boolean strict) {
mcimadamore@1674 771 return nilMethodCheck;
mcimadamore@1674 772 }
mcimadamore@1674 773 }
mcimadamore@1674 774
mcimadamore@1674 775 /**
mcimadamore@1674 776 * Arity-based method check. A method is applicable if the number of actuals
mcimadamore@1674 777 * supplied conforms to the method signature.
mcimadamore@1674 778 */
mcimadamore@1674 779 MethodCheck arityMethodCheck = new AbstractMethodCheck() {
mcimadamore@1674 780 @Override
mcimadamore@1759 781 void checkArg(DiagnosticPosition pos, boolean varargs, Type actual, Type formal, DeferredAttrContext deferredAttrContext, Warner warn) {
mcimadamore@1674 782 //do nothing - actual always compatible to formals
mcimadamore@1674 783 }
mcimadamore@1674 784 };
mcimadamore@1674 785
mcimadamore@1897 786 List<Type> dummyArgs(int length) {
alundblad@2047 787 ListBuffer<Type> buf = new ListBuffer<>();
mcimadamore@1897 788 for (int i = 0 ; i < length ; i++) {
mcimadamore@1897 789 buf.append(Type.noType);
mcimadamore@1897 790 }
mcimadamore@1897 791 return buf.toList();
mcimadamore@1897 792 }
mcimadamore@1897 793
mcimadamore@1674 794 /**
mcimadamore@1186 795 * Main method applicability routine. Given a list of actual types A,
mcimadamore@1186 796 * a list of formal types F, determines whether the types in A are
mcimadamore@1186 797 * compatible (by method invocation conversion) with the types in F.
mcimadamore@1186 798 *
mcimadamore@1186 799 * Since this routine is shared between overload resolution and method
mcimadamore@1347 800 * type-inference, a (possibly empty) inference context is used to convert
mcimadamore@1347 801 * formal types to the corresponding 'undet' form ahead of a compatibility
mcimadamore@1347 802 * check so that constraints can be propagated and collected.
mcimadamore@1186 803 *
mcimadamore@1347 804 * Moreover, if one or more types in A is a deferred type, this routine uses
mcimadamore@1347 805 * DeferredAttr in order to perform deferred attribution. If one or more actual
mcimadamore@1347 806 * deferred types are stuck, they are placed in a queue and revisited later
mcimadamore@1347 807 * after the remainder of the arguments have been seen. If this is not sufficient
mcimadamore@1347 808 * to 'unstuck' the argument, a cyclic inference error is called out.
mcimadamore@1186 809 *
mcimadamore@1186 810 * A method check handler (see above) is used in order to report errors.
mcimadamore@1186 811 */
mcimadamore@1674 812 MethodCheck resolveMethodCheck = new AbstractMethodCheck() {
mcimadamore@1674 813
mcimadamore@1674 814 @Override
mcimadamore@1759 815 void checkArg(DiagnosticPosition pos, boolean varargs, Type actual, Type formal, DeferredAttrContext deferredAttrContext, Warner warn) {
mcimadamore@1674 816 ResultInfo mresult = methodCheckResult(varargs, formal, deferredAttrContext, warn);
mcimadamore@1759 817 mresult.check(pos, actual);
mcimadamore@1674 818 }
mcimadamore@1674 819
mcimadamore@1479 820 @Override
mcimadamore@1479 821 public void argumentsAcceptable(final Env<AttrContext> env,
mcimadamore@1479 822 DeferredAttrContext deferredAttrContext,
mcimadamore@1479 823 List<Type> argtypes,
mcimadamore@1479 824 List<Type> formals,
mcimadamore@1479 825 Warner warn) {
mcimadamore@1674 826 super.argumentsAcceptable(env, deferredAttrContext, argtypes, formals, warn);
mcimadamore@1479 827 //should we expand formals?
mcimadamore@1674 828 if (deferredAttrContext.phase.isVarargsRequired()) {
mcimadamore@1674 829 //check varargs element type accessibility
mcimadamore@1674 830 varargsAccessible(env, types.elemtype(formals.last()),
mcimadamore@1674 831 deferredAttrContext.inferenceContext);
mcimadamore@1479 832 }
mcimadamore@1479 833 }
mcimadamore@1479 834
mcimadamore@1479 835 private void varargsAccessible(final Env<AttrContext> env, final Type t, final InferenceContext inferenceContext) {
mcimadamore@1479 836 if (inferenceContext.free(t)) {
mcimadamore@1479 837 inferenceContext.addFreeTypeListener(List.of(t), new FreeTypeListener() {
mcimadamore@1479 838 @Override
mcimadamore@1479 839 public void typesInferred(InferenceContext inferenceContext) {
mcimadamore@1550 840 varargsAccessible(env, inferenceContext.asInstType(t), inferenceContext);
mcimadamore@1479 841 }
mcimadamore@1479 842 });
mcimadamore@1479 843 } else {
mcimadamore@1479 844 if (!isAccessible(env, t)) {
mcimadamore@1479 845 Symbol location = env.enclClass.sym;
mcimadamore@1759 846 reportMC(env.tree, MethodCheckDiag.INACCESSIBLE_VARARGS, inferenceContext, t, Kinds.kindName(location), location);
mcimadamore@1479 847 }
mcimadamore@1479 848 }
mcimadamore@1479 849 }
mcimadamore@1479 850
mcimadamore@1479 851 private ResultInfo methodCheckResult(final boolean varargsCheck, Type to,
mcimadamore@1479 852 final DeferredAttr.DeferredAttrContext deferredAttrContext, Warner rsWarner) {
mcimadamore@1479 853 CheckContext checkContext = new MethodCheckContext(!deferredAttrContext.phase.isBoxingRequired(), deferredAttrContext, rsWarner) {
mcimadamore@1479 854 MethodCheckDiag methodDiag = varargsCheck ?
mcimadamore@1479 855 MethodCheckDiag.VARARG_MISMATCH : MethodCheckDiag.ARG_MISMATCH;
mcimadamore@1479 856
mcimadamore@1479 857 @Override
mcimadamore@1479 858 public void report(DiagnosticPosition pos, JCDiagnostic details) {
mcimadamore@1759 859 reportMC(pos, methodDiag, deferredAttrContext.inferenceContext, details);
mcimadamore@1479 860 }
mcimadamore@1479 861 };
mcimadamore@1479 862 return new MethodResultInfo(to, checkContext);
mcimadamore@1479 863 }
mcimadamore@1674 864
mcimadamore@1674 865 @Override
mcimadamore@1674 866 public MethodCheck mostSpecificCheck(List<Type> actuals, boolean strict) {
mcimadamore@1674 867 return new MostSpecificCheck(strict, actuals);
mcimadamore@1674 868 }
mcimadamore@1479 869 };
mcimadamore@689 870
mcimadamore@1897 871 class MethodReferenceCheck extends AbstractMethodCheck {
mcimadamore@1897 872
mcimadamore@1897 873 InferenceContext pendingInferenceContext;
mcimadamore@1897 874
mcimadamore@1897 875 MethodReferenceCheck(InferenceContext pendingInferenceContext) {
mcimadamore@1897 876 this.pendingInferenceContext = pendingInferenceContext;
mcimadamore@1897 877 }
mcimadamore@1897 878
mcimadamore@1897 879 @Override
mcimadamore@1897 880 void checkArg(DiagnosticPosition pos, boolean varargs, Type actual, Type formal, DeferredAttrContext deferredAttrContext, Warner warn) {
mcimadamore@1897 881 ResultInfo mresult = methodCheckResult(varargs, formal, deferredAttrContext, warn);
mcimadamore@1897 882 mresult.check(pos, actual);
mcimadamore@1897 883 }
mcimadamore@1897 884
mcimadamore@1897 885 private ResultInfo methodCheckResult(final boolean varargsCheck, Type to,
mcimadamore@1897 886 final DeferredAttr.DeferredAttrContext deferredAttrContext, Warner rsWarner) {
mcimadamore@1897 887 CheckContext checkContext = new MethodCheckContext(!deferredAttrContext.phase.isBoxingRequired(), deferredAttrContext, rsWarner) {
mcimadamore@1897 888 MethodCheckDiag methodDiag = varargsCheck ?
mcimadamore@1897 889 MethodCheckDiag.VARARG_MISMATCH : MethodCheckDiag.ARG_MISMATCH;
mcimadamore@1897 890
mcimadamore@1897 891 @Override
mcimadamore@1897 892 public boolean compatible(Type found, Type req, Warner warn) {
mcimadamore@1897 893 found = pendingInferenceContext.asFree(found);
mcimadamore@1897 894 req = infer.returnConstraintTarget(found, req);
mcimadamore@1897 895 return super.compatible(found, req, warn);
mcimadamore@1897 896 }
mcimadamore@1897 897
mcimadamore@1897 898 @Override
mcimadamore@1897 899 public void report(DiagnosticPosition pos, JCDiagnostic details) {
mcimadamore@1897 900 reportMC(pos, methodDiag, deferredAttrContext.inferenceContext, details);
mcimadamore@1897 901 }
mcimadamore@1897 902 };
mcimadamore@1897 903 return new MethodResultInfo(to, checkContext);
mcimadamore@1897 904 }
mcimadamore@1897 905
mcimadamore@1897 906 @Override
mcimadamore@1897 907 public MethodCheck mostSpecificCheck(List<Type> actuals, boolean strict) {
mcimadamore@1897 908 return new MostSpecificCheck(strict, actuals);
mcimadamore@1897 909 }
mcimadamore@1897 910 };
mcimadamore@1897 911
mcimadamore@1238 912 /**
mcimadamore@1238 913 * Check context to be used during method applicability checks. A method check
mcimadamore@1238 914 * context might contain inference variables.
mcimadamore@1238 915 */
mcimadamore@1238 916 abstract class MethodCheckContext implements CheckContext {
mcimadamore@689 917
mcimadamore@1479 918 boolean strict;
mcimadamore@1347 919 DeferredAttrContext deferredAttrContext;
mcimadamore@1238 920 Warner rsWarner;
mcimadamore@1238 921
mcimadamore@1479 922 public MethodCheckContext(boolean strict, DeferredAttrContext deferredAttrContext, Warner rsWarner) {
mcimadamore@1479 923 this.strict = strict;
mcimadamore@1479 924 this.deferredAttrContext = deferredAttrContext;
mcimadamore@1479 925 this.rsWarner = rsWarner;
mcimadamore@1238 926 }
mcimadamore@1238 927
mcimadamore@1479 928 public boolean compatible(Type found, Type req, Warner warn) {
mcimadamore@1479 929 return strict ?
mcimadamore@1550 930 types.isSubtypeUnchecked(found, deferredAttrContext.inferenceContext.asFree(req), warn) :
mcimadamore@1550 931 types.isConvertible(found, deferredAttrContext.inferenceContext.asFree(req), warn);
mcimadamore@1479 932 }
mcimadamore@1479 933
mcimadamore@1296 934 public void report(DiagnosticPosition pos, JCDiagnostic details) {
mcimadamore@1479 935 throw inapplicableMethodException.setMessage(details);
mcimadamore@1238 936 }
mcimadamore@1238 937
mcimadamore@1238 938 public Warner checkWarner(DiagnosticPosition pos, Type found, Type req) {
mcimadamore@1238 939 return rsWarner;
mcimadamore@1238 940 }
mcimadamore@1337 941
mcimadamore@1337 942 public InferenceContext inferenceContext() {
mcimadamore@1479 943 return deferredAttrContext.inferenceContext;
mcimadamore@1337 944 }
mcimadamore@1347 945
mcimadamore@1347 946 public DeferredAttrContext deferredAttrContext() {
mcimadamore@1347 947 return deferredAttrContext;
mcimadamore@1347 948 }
mcimadamore@1238 949 }
mcimadamore@1238 950
mcimadamore@1238 951 /**
mcimadamore@1479 952 * ResultInfo class to be used during method applicability checks. Check
mcimadamore@1479 953 * for deferred types goes through special path.
mcimadamore@1238 954 */
mcimadamore@1347 955 class MethodResultInfo extends ResultInfo {
mcimadamore@1347 956
mcimadamore@1479 957 public MethodResultInfo(Type pt, CheckContext checkContext) {
mcimadamore@1347 958 attr.super(VAL, pt, checkContext);
mcimadamore@1347 959 }
mcimadamore@1347 960
mcimadamore@1347 961 @Override
mcimadamore@1347 962 protected Type check(DiagnosticPosition pos, Type found) {
jjg@1374 963 if (found.hasTag(DEFERRED)) {
mcimadamore@1347 964 DeferredType dt = (DeferredType)found;
mcimadamore@1347 965 return dt.check(this);
mcimadamore@1347 966 } else {
mcimadamore@1898 967 return super.check(pos, chk.checkNonVoid(pos, types.capture(U(found.baseType()))));
mcimadamore@689 968 }
mcimadamore@1347 969 }
mcimadamore@1347 970
mcimadamore@1898 971 /**
mcimadamore@1898 972 * javac has a long-standing 'simplification' (see 6391995):
mcimadamore@1898 973 * given an actual argument type, the method check is performed
mcimadamore@1898 974 * on its upper bound. This leads to inconsistencies when an
mcimadamore@1898 975 * argument type is checked against itself. For example, given
mcimadamore@1898 976 * a type-variable T, it is not true that {@code U(T) <: T},
mcimadamore@1898 977 * so we need to guard against that.
mcimadamore@1898 978 */
mcimadamore@1898 979 private Type U(Type found) {
mcimadamore@1898 980 return found == pt ?
mcimadamore@1898 981 found : types.upperBound(found);
mcimadamore@1898 982 }
mcimadamore@1898 983
mcimadamore@1347 984 @Override
mcimadamore@1347 985 protected MethodResultInfo dup(Type newPt) {
mcimadamore@1479 986 return new MethodResultInfo(newPt, checkContext);
mcimadamore@1415 987 }
mcimadamore@1415 988
mcimadamore@1415 989 @Override
mcimadamore@1415 990 protected ResultInfo dup(CheckContext newContext) {
mcimadamore@1479 991 return new MethodResultInfo(pt, newContext);
mcimadamore@1347 992 }
mcimadamore@1238 993 }
mcimadamore@689 994
mcimadamore@1510 995 /**
mcimadamore@1510 996 * Most specific method applicability routine. Given a list of actual types A,
mcimadamore@1510 997 * a list of formal types F1, and a list of formal types F2, the routine determines
mcimadamore@1510 998 * as to whether the types in F1 can be considered more specific than those in F2 w.r.t.
mcimadamore@1510 999 * argument types A.
mcimadamore@1510 1000 */
mcimadamore@1510 1001 class MostSpecificCheck implements MethodCheck {
mcimadamore@1510 1002
mcimadamore@1510 1003 boolean strict;
mcimadamore@1510 1004 List<Type> actuals;
mcimadamore@1510 1005
mcimadamore@1510 1006 MostSpecificCheck(boolean strict, List<Type> actuals) {
mcimadamore@1510 1007 this.strict = strict;
mcimadamore@1510 1008 this.actuals = actuals;
mcimadamore@1510 1009 }
mcimadamore@1510 1010
mcimadamore@1510 1011 @Override
mcimadamore@1510 1012 public void argumentsAcceptable(final Env<AttrContext> env,
mcimadamore@1510 1013 DeferredAttrContext deferredAttrContext,
mcimadamore@1510 1014 List<Type> formals1,
mcimadamore@1510 1015 List<Type> formals2,
mcimadamore@1510 1016 Warner warn) {
mcimadamore@1510 1017 formals2 = adjustArgs(formals2, deferredAttrContext.msym, formals1.length(), deferredAttrContext.phase.isVarargsRequired());
mcimadamore@1510 1018 while (formals2.nonEmpty()) {
mcimadamore@1510 1019 ResultInfo mresult = methodCheckResult(formals2.head, deferredAttrContext, warn, actuals.head);
mcimadamore@1510 1020 mresult.check(null, formals1.head);
mcimadamore@1510 1021 formals1 = formals1.tail;
mcimadamore@1510 1022 formals2 = formals2.tail;
mcimadamore@1510 1023 actuals = actuals.isEmpty() ? actuals : actuals.tail;
mcimadamore@1510 1024 }
mcimadamore@1510 1025 }
mcimadamore@1510 1026
mcimadamore@1510 1027 /**
mcimadamore@1510 1028 * Create a method check context to be used during the most specific applicability check
mcimadamore@1510 1029 */
mcimadamore@1510 1030 ResultInfo methodCheckResult(Type to, DeferredAttr.DeferredAttrContext deferredAttrContext,
mcimadamore@1510 1031 Warner rsWarner, Type actual) {
mcimadamore@1510 1032 return attr.new ResultInfo(Kinds.VAL, to,
mcimadamore@1510 1033 new MostSpecificCheckContext(strict, deferredAttrContext, rsWarner, actual));
mcimadamore@1510 1034 }
mcimadamore@1510 1035
mcimadamore@1510 1036 /**
mcimadamore@1510 1037 * Subclass of method check context class that implements most specific
mcimadamore@1510 1038 * method conversion. If the actual type under analysis is a deferred type
mcimadamore@1510 1039 * a full blown structural analysis is carried out.
mcimadamore@1510 1040 */
mcimadamore@1510 1041 class MostSpecificCheckContext extends MethodCheckContext {
mcimadamore@1510 1042
mcimadamore@1510 1043 Type actual;
mcimadamore@1510 1044
mcimadamore@1510 1045 public MostSpecificCheckContext(boolean strict, DeferredAttrContext deferredAttrContext, Warner rsWarner, Type actual) {
mcimadamore@1510 1046 super(strict, deferredAttrContext, rsWarner);
mcimadamore@1510 1047 this.actual = actual;
mcimadamore@1510 1048 }
mcimadamore@1510 1049
mcimadamore@1510 1050 public boolean compatible(Type found, Type req, Warner warn) {
mcimadamore@1510 1051 if (!allowStructuralMostSpecific || actual == null) {
mcimadamore@1510 1052 return super.compatible(found, req, warn);
mcimadamore@1510 1053 } else {
mcimadamore@1510 1054 switch (actual.getTag()) {
mcimadamore@1510 1055 case DEFERRED:
mcimadamore@1510 1056 DeferredType dt = (DeferredType) actual;
mcimadamore@1510 1057 DeferredType.SpeculativeCache.Entry e = dt.speculativeCache.get(deferredAttrContext.msym, deferredAttrContext.phase);
mcimadamore@1510 1058 return (e == null || e.speculativeTree == deferredAttr.stuckTree)
vromero@2000 1059 ? super.compatible(found, req, warn) :
vromero@2000 1060 mostSpecific(found, req, e.speculativeTree, warn);
mcimadamore@1510 1061 default:
mcimadamore@1510 1062 return standaloneMostSpecific(found, req, actual, warn);
mcimadamore@1510 1063 }
mcimadamore@1510 1064 }
mcimadamore@1510 1065 }
mcimadamore@1510 1066
mcimadamore@1510 1067 private boolean mostSpecific(Type t, Type s, JCTree tree, Warner warn) {
mcimadamore@1510 1068 MostSpecificChecker msc = new MostSpecificChecker(t, s, warn);
mcimadamore@1510 1069 msc.scan(tree);
mcimadamore@1510 1070 return msc.result;
mcimadamore@1510 1071 }
mcimadamore@1510 1072
mcimadamore@1510 1073 boolean polyMostSpecific(Type t1, Type t2, Warner warn) {
mcimadamore@1510 1074 return (!t1.isPrimitive() && t2.isPrimitive())
mcimadamore@1510 1075 ? true : super.compatible(t1, t2, warn);
mcimadamore@1510 1076 }
mcimadamore@1510 1077
mcimadamore@1510 1078 boolean standaloneMostSpecific(Type t1, Type t2, Type exprType, Warner warn) {
mcimadamore@1510 1079 return (exprType.isPrimitive() == t1.isPrimitive()
mcimadamore@1510 1080 && exprType.isPrimitive() != t2.isPrimitive())
mcimadamore@1510 1081 ? true : super.compatible(t1, t2, warn);
mcimadamore@1510 1082 }
mcimadamore@1510 1083
mcimadamore@1510 1084 /**
mcimadamore@1510 1085 * Structural checker for most specific.
mcimadamore@1510 1086 */
mcimadamore@1510 1087 class MostSpecificChecker extends DeferredAttr.PolyScanner {
mcimadamore@1510 1088
mcimadamore@1510 1089 final Type t;
mcimadamore@1510 1090 final Type s;
mcimadamore@1510 1091 final Warner warn;
mcimadamore@1510 1092 boolean result;
mcimadamore@1510 1093
mcimadamore@1510 1094 MostSpecificChecker(Type t, Type s, Warner warn) {
mcimadamore@1510 1095 this.t = t;
mcimadamore@1510 1096 this.s = s;
mcimadamore@1510 1097 this.warn = warn;
mcimadamore@1510 1098 result = true;
mcimadamore@1510 1099 }
mcimadamore@1510 1100
mcimadamore@1510 1101 @Override
mcimadamore@1510 1102 void skip(JCTree tree) {
mcimadamore@1510 1103 result &= standaloneMostSpecific(t, s, tree.type, warn);
mcimadamore@1510 1104 }
mcimadamore@1510 1105
mcimadamore@1510 1106 @Override
mcimadamore@1510 1107 public void visitConditional(JCConditional tree) {
mcimadamore@1510 1108 if (tree.polyKind == PolyKind.STANDALONE) {
mcimadamore@1510 1109 result &= standaloneMostSpecific(t, s, tree.type, warn);
mcimadamore@1510 1110 } else {
mcimadamore@1510 1111 super.visitConditional(tree);
mcimadamore@1510 1112 }
mcimadamore@1510 1113 }
mcimadamore@1510 1114
mcimadamore@1510 1115 @Override
mcimadamore@1510 1116 public void visitApply(JCMethodInvocation tree) {
mcimadamore@1510 1117 result &= (tree.polyKind == PolyKind.STANDALONE)
mcimadamore@1510 1118 ? standaloneMostSpecific(t, s, tree.type, warn)
mcimadamore@1510 1119 : polyMostSpecific(t, s, warn);
mcimadamore@1510 1120 }
mcimadamore@1510 1121
mcimadamore@1510 1122 @Override
mcimadamore@1510 1123 public void visitNewClass(JCNewClass tree) {
mcimadamore@1510 1124 result &= (tree.polyKind == PolyKind.STANDALONE)
mcimadamore@1510 1125 ? standaloneMostSpecific(t, s, tree.type, warn)
mcimadamore@1510 1126 : polyMostSpecific(t, s, warn);
mcimadamore@1510 1127 }
mcimadamore@1510 1128
mcimadamore@1510 1129 @Override
mcimadamore@1510 1130 public void visitReference(JCMemberReference tree) {
mcimadamore@1510 1131 if (types.isFunctionalInterface(t.tsym) &&
vromero@2000 1132 types.isFunctionalInterface(s.tsym)) {
mcimadamore@1510 1133 Type desc_t = types.findDescriptorType(t);
mcimadamore@1510 1134 Type desc_s = types.findDescriptorType(s);
vromero@2000 1135 if (types.isSameTypes(desc_t.getParameterTypes(),
vromero@2000 1136 inferenceContext().asFree(desc_s.getParameterTypes()))) {
vromero@2000 1137 if (types.asSuper(t, s.tsym) != null ||
vromero@2000 1138 types.asSuper(s, t.tsym) != null) {
vromero@2000 1139 result &= MostSpecificCheckContext.super.compatible(t, s, warn);
vromero@2000 1140 } else if (!desc_s.getReturnType().hasTag(VOID)) {
mcimadamore@1510 1141 //perform structural comparison
mcimadamore@1510 1142 Type ret_t = desc_t.getReturnType();
mcimadamore@1510 1143 Type ret_s = desc_s.getReturnType();
mcimadamore@1510 1144 result &= ((tree.refPolyKind == PolyKind.STANDALONE)
mcimadamore@1609 1145 ? standaloneMostSpecific(ret_t, ret_s, tree.sym.type.getReturnType(), warn)
mcimadamore@1510 1146 : polyMostSpecific(ret_t, ret_s, warn));
mcimadamore@1510 1147 } else {
mcimadamore@1510 1148 return;
mcimadamore@1510 1149 }
mcimadamore@1510 1150 }
mcimadamore@1510 1151 } else {
vromero@2000 1152 result &= false;
mcimadamore@1510 1153 }
mcimadamore@1510 1154 }
mcimadamore@1510 1155
mcimadamore@1510 1156 @Override
mcimadamore@1510 1157 public void visitLambda(JCLambda tree) {
mcimadamore@1510 1158 if (types.isFunctionalInterface(t.tsym) &&
vromero@2000 1159 types.isFunctionalInterface(s.tsym)) {
mcimadamore@1510 1160 Type desc_t = types.findDescriptorType(t);
mcimadamore@1510 1161 Type desc_s = types.findDescriptorType(s);
vromero@2000 1162 if (types.isSameTypes(desc_t.getParameterTypes(),
vromero@2000 1163 inferenceContext().asFree(desc_s.getParameterTypes()))) {
vromero@2000 1164 if (types.asSuper(t, s.tsym) != null ||
vromero@2000 1165 types.asSuper(s, t.tsym) != null) {
vromero@2000 1166 result &= MostSpecificCheckContext.super.compatible(t, s, warn);
vromero@2000 1167 } else if (!desc_s.getReturnType().hasTag(VOID)) {
mcimadamore@1510 1168 //perform structural comparison
mcimadamore@1510 1169 Type ret_t = desc_t.getReturnType();
mcimadamore@1510 1170 Type ret_s = desc_s.getReturnType();
mcimadamore@1510 1171 scanLambdaBody(tree, ret_t, ret_s);
mcimadamore@1510 1172 } else {
mcimadamore@1510 1173 return;
mcimadamore@1510 1174 }
mcimadamore@1510 1175 }
mcimadamore@1510 1176 } else {
vromero@2000 1177 result &= false;
mcimadamore@1510 1178 }
mcimadamore@1510 1179 }
mcimadamore@1510 1180 //where
mcimadamore@1510 1181
mcimadamore@1510 1182 void scanLambdaBody(JCLambda lambda, final Type t, final Type s) {
mcimadamore@1510 1183 if (lambda.getBodyKind() == JCTree.JCLambda.BodyKind.EXPRESSION) {
mcimadamore@1510 1184 result &= MostSpecificCheckContext.this.mostSpecific(t, s, lambda.body, warn);
mcimadamore@1510 1185 } else {
mcimadamore@1510 1186 DeferredAttr.LambdaReturnScanner lambdaScanner =
mcimadamore@1510 1187 new DeferredAttr.LambdaReturnScanner() {
mcimadamore@1510 1188 @Override
mcimadamore@1510 1189 public void visitReturn(JCReturn tree) {
mcimadamore@1510 1190 if (tree.expr != null) {
mcimadamore@1510 1191 result &= MostSpecificCheckContext.this.mostSpecific(t, s, tree.expr, warn);
mcimadamore@1510 1192 }
mcimadamore@1510 1193 }
mcimadamore@1510 1194 };
mcimadamore@1510 1195 lambdaScanner.scan(lambda.body);
mcimadamore@1510 1196 }
mcimadamore@1510 1197 }
mcimadamore@1510 1198 }
mcimadamore@1510 1199 }
mcimadamore@1674 1200
mcimadamore@1674 1201 public MethodCheck mostSpecificCheck(List<Type> actuals, boolean strict) {
mcimadamore@1674 1202 Assert.error("Cannot get here!");
mcimadamore@1674 1203 return null;
mcimadamore@1674 1204 }
mcimadamore@1510 1205 }
mcimadamore@1510 1206
mcimadamore@1238 1207 public static class InapplicableMethodException extends RuntimeException {
mcimadamore@1238 1208 private static final long serialVersionUID = 0;
mcimadamore@1238 1209
mcimadamore@1238 1210 JCDiagnostic diagnostic;
mcimadamore@1238 1211 JCDiagnostic.Factory diags;
mcimadamore@1238 1212
mcimadamore@1238 1213 InapplicableMethodException(JCDiagnostic.Factory diags) {
mcimadamore@1238 1214 this.diagnostic = null;
mcimadamore@1238 1215 this.diags = diags;
mcimadamore@689 1216 }
mcimadamore@1238 1217 InapplicableMethodException setMessage() {
mcimadamore@1337 1218 return setMessage((JCDiagnostic)null);
mcimadamore@1238 1219 }
mcimadamore@1238 1220 InapplicableMethodException setMessage(String key) {
mcimadamore@1337 1221 return setMessage(key != null ? diags.fragment(key) : null);
mcimadamore@1238 1222 }
mcimadamore@1238 1223 InapplicableMethodException setMessage(String key, Object... args) {
mcimadamore@1337 1224 return setMessage(key != null ? diags.fragment(key, args) : null);
mcimadamore@1238 1225 }
mcimadamore@1238 1226 InapplicableMethodException setMessage(JCDiagnostic diag) {
mcimadamore@1238 1227 this.diagnostic = diag;
mcimadamore@1238 1228 return this;
mcimadamore@1238 1229 }
mcimadamore@1238 1230
mcimadamore@1238 1231 public JCDiagnostic getDiagnostic() {
mcimadamore@1238 1232 return diagnostic;
mcimadamore@1238 1233 }
mcimadamore@1238 1234 }
mcimadamore@1238 1235 private final InapplicableMethodException inapplicableMethodException;
duke@1 1236
duke@1 1237 /* ***************************************************************************
duke@1 1238 * Symbol lookup
duke@1 1239 * the following naming conventions for arguments are used
duke@1 1240 *
duke@1 1241 * env is the environment where the symbol was mentioned
duke@1 1242 * site is the type of which the symbol is a member
duke@1 1243 * name is the symbol's name
duke@1 1244 * if no arguments are given
duke@1 1245 * argtypes are the value arguments, if we search for a method
duke@1 1246 *
duke@1 1247 * If no symbol was found, a ResolveError detailing the problem is returned.
duke@1 1248 ****************************************************************************/
duke@1 1249
duke@1 1250 /** Find field. Synthetic fields are always skipped.
duke@1 1251 * @param env The current environment.
duke@1 1252 * @param site The original type from where the selection takes place.
duke@1 1253 * @param name The name of the field.
duke@1 1254 * @param c The class to search for the field. This is always
duke@1 1255 * a superclass or implemented interface of site's class.
duke@1 1256 */
duke@1 1257 Symbol findField(Env<AttrContext> env,
duke@1 1258 Type site,
duke@1 1259 Name name,
duke@1 1260 TypeSymbol c) {
jjg@1374 1261 while (c.type.hasTag(TYPEVAR))
mcimadamore@19 1262 c = c.type.getUpperBound().tsym;
duke@1 1263 Symbol bestSoFar = varNotFound;
duke@1 1264 Symbol sym;
duke@1 1265 Scope.Entry e = c.members().lookup(name);
duke@1 1266 while (e.scope != null) {
duke@1 1267 if (e.sym.kind == VAR && (e.sym.flags_field & SYNTHETIC) == 0) {
duke@1 1268 return isAccessible(env, site, e.sym)
duke@1 1269 ? e.sym : new AccessError(env, site, e.sym);
duke@1 1270 }
duke@1 1271 e = e.next();
duke@1 1272 }
duke@1 1273 Type st = types.supertype(c.type);
jjg@1374 1274 if (st != null && (st.hasTag(CLASS) || st.hasTag(TYPEVAR))) {
duke@1 1275 sym = findField(env, site, name, st.tsym);
duke@1 1276 if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1277 }
duke@1 1278 for (List<Type> l = types.interfaces(c.type);
duke@1 1279 bestSoFar.kind != AMBIGUOUS && l.nonEmpty();
duke@1 1280 l = l.tail) {
duke@1 1281 sym = findField(env, site, name, l.head.tsym);
mcimadamore@1809 1282 if (bestSoFar.exists() && sym.exists() &&
duke@1 1283 sym.owner != bestSoFar.owner)
duke@1 1284 bestSoFar = new AmbiguityError(bestSoFar, sym);
duke@1 1285 else if (sym.kind < bestSoFar.kind)
duke@1 1286 bestSoFar = sym;
duke@1 1287 }
duke@1 1288 return bestSoFar;
duke@1 1289 }
duke@1 1290
duke@1 1291 /** Resolve a field identifier, throw a fatal error if not found.
duke@1 1292 * @param pos The position to use for error reporting.
duke@1 1293 * @param env The environment current at the method invocation.
duke@1 1294 * @param site The type of the qualifying expression, in which
duke@1 1295 * identifier is searched.
duke@1 1296 * @param name The identifier's name.
duke@1 1297 */
duke@1 1298 public VarSymbol resolveInternalField(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 1299 Type site, Name name) {
duke@1 1300 Symbol sym = findField(env, site, name, site.tsym);
duke@1 1301 if (sym.kind == VAR) return (VarSymbol)sym;
duke@1 1302 else throw new FatalError(
mcimadamore@89 1303 diags.fragment("fatal.err.cant.locate.field",
duke@1 1304 name));
duke@1 1305 }
duke@1 1306
duke@1 1307 /** Find unqualified variable or field with given name.
duke@1 1308 * Synthetic fields always skipped.
duke@1 1309 * @param env The current environment.
duke@1 1310 * @param name The name of the variable or field.
duke@1 1311 */
duke@1 1312 Symbol findVar(Env<AttrContext> env, Name name) {
duke@1 1313 Symbol bestSoFar = varNotFound;
duke@1 1314 Symbol sym;
duke@1 1315 Env<AttrContext> env1 = env;
duke@1 1316 boolean staticOnly = false;
duke@1 1317 while (env1.outer != null) {
duke@1 1318 if (isStatic(env1)) staticOnly = true;
duke@1 1319 Scope.Entry e = env1.info.scope.lookup(name);
duke@1 1320 while (e.scope != null &&
duke@1 1321 (e.sym.kind != VAR ||
duke@1 1322 (e.sym.flags_field & SYNTHETIC) != 0))
duke@1 1323 e = e.next();
duke@1 1324 sym = (e.scope != null)
duke@1 1325 ? e.sym
duke@1 1326 : findField(
duke@1 1327 env1, env1.enclClass.sym.type, name, env1.enclClass.sym);
duke@1 1328 if (sym.exists()) {
duke@1 1329 if (staticOnly &&
duke@1 1330 sym.kind == VAR &&
duke@1 1331 sym.owner.kind == TYP &&
duke@1 1332 (sym.flags() & STATIC) == 0)
duke@1 1333 return new StaticError(sym);
duke@1 1334 else
duke@1 1335 return sym;
duke@1 1336 } else if (sym.kind < bestSoFar.kind) {
duke@1 1337 bestSoFar = sym;
duke@1 1338 }
duke@1 1339
duke@1 1340 if ((env1.enclClass.sym.flags() & STATIC) != 0) staticOnly = true;
duke@1 1341 env1 = env1.outer;
duke@1 1342 }
duke@1 1343
duke@1 1344 sym = findField(env, syms.predefClass.type, name, syms.predefClass);
duke@1 1345 if (sym.exists())
duke@1 1346 return sym;
duke@1 1347 if (bestSoFar.exists())
duke@1 1348 return bestSoFar;
duke@1 1349
mcimadamore@1945 1350 Symbol origin = null;
mcimadamore@1945 1351 for (Scope sc : new Scope[] { env.toplevel.namedImportScope, env.toplevel.starImportScope }) {
mcimadamore@1945 1352 Scope.Entry e = sc.lookup(name);
mcimadamore@1945 1353 for (; e.scope != null; e = e.next()) {
mcimadamore@1945 1354 sym = e.sym;
mcimadamore@1945 1355 if (sym.kind != VAR)
mcimadamore@1945 1356 continue;
mcimadamore@1945 1357 // invariant: sym.kind == VAR
mcimadamore@1945 1358 if (bestSoFar.kind < AMBIGUOUS && sym.owner != bestSoFar.owner)
mcimadamore@1945 1359 return new AmbiguityError(bestSoFar, sym);
mcimadamore@1945 1360 else if (bestSoFar.kind >= VAR) {
mcimadamore@1945 1361 origin = e.getOrigin().owner;
mcimadamore@1945 1362 bestSoFar = isAccessible(env, origin.type, sym)
mcimadamore@1945 1363 ? sym : new AccessError(env, origin.type, sym);
mcimadamore@1945 1364 }
duke@1 1365 }
mcimadamore@1945 1366 if (bestSoFar.exists()) break;
duke@1 1367 }
duke@1 1368 if (bestSoFar.kind == VAR && bestSoFar.owner.type != origin.type)
duke@1 1369 return bestSoFar.clone(origin);
duke@1 1370 else
duke@1 1371 return bestSoFar;
duke@1 1372 }
duke@1 1373
duke@1 1374 Warner noteWarner = new Warner();
duke@1 1375
duke@1 1376 /** Select the best method for a call site among two choices.
duke@1 1377 * @param env The current environment.
duke@1 1378 * @param site The original type from where the
duke@1 1379 * selection takes place.
duke@1 1380 * @param argtypes The invocation's value arguments,
duke@1 1381 * @param typeargtypes The invocation's type arguments,
duke@1 1382 * @param sym Proposed new best match.
duke@1 1383 * @param bestSoFar Previously found best match.
duke@1 1384 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 1385 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 1386 */
mcimadamore@689 1387 @SuppressWarnings("fallthrough")
duke@1 1388 Symbol selectBest(Env<AttrContext> env,
duke@1 1389 Type site,
duke@1 1390 List<Type> argtypes,
duke@1 1391 List<Type> typeargtypes,
duke@1 1392 Symbol sym,
duke@1 1393 Symbol bestSoFar,
duke@1 1394 boolean allowBoxing,
duke@1 1395 boolean useVarargs,
duke@1 1396 boolean operator) {
mcimadamore@1394 1397 if (sym.kind == ERR ||
mcimadamore@1599 1398 !sym.isInheritedIn(site.tsym, types)) {
mcimadamore@1394 1399 return bestSoFar;
mcimadamore@1599 1400 } else if (useVarargs && (sym.flags() & VARARGS) == 0) {
mcimadamore@1599 1401 return bestSoFar.kind >= ERRONEOUS ?
mcimadamore@1599 1402 new BadVarargsMethod((ResolveError)bestSoFar) :
mcimadamore@1599 1403 bestSoFar;
mcimadamore@1394 1404 }
jjg@816 1405 Assert.check(sym.kind < AMBIGUOUS);
duke@1 1406 try {
mcimadamore@1268 1407 Type mt = rawInstantiate(env, site, sym, null, argtypes, typeargtypes,
mcimadamore@1674 1408 allowBoxing, useVarargs, types.noWarnings);
mcimadamore@1779 1409 if (!operator || verboseResolutionMode.contains(VerboseResolutionMode.PREDEF))
mcimadamore@1215 1410 currentResolutionContext.addApplicableCandidate(sym, mt);
mcimadamore@689 1411 } catch (InapplicableMethodException ex) {
mcimadamore@1215 1412 if (!operator)
mcimadamore@1215 1413 currentResolutionContext.addInapplicableCandidate(sym, ex.getDiagnostic());
duke@1 1414 switch (bestSoFar.kind) {
mcimadamore@1394 1415 case ABSENT_MTH:
mcimadamore@1394 1416 return new InapplicableSymbolError(currentResolutionContext);
mcimadamore@1394 1417 case WRONG_MTH:
mcimadamore@1394 1418 if (operator) return bestSoFar;
mcimadamore@1394 1419 bestSoFar = new InapplicableSymbolsError(currentResolutionContext);
mcimadamore@1394 1420 default:
mcimadamore@1394 1421 return bestSoFar;
duke@1 1422 }
duke@1 1423 }
duke@1 1424 if (!isAccessible(env, site, sym)) {
duke@1 1425 return (bestSoFar.kind == ABSENT_MTH)
duke@1 1426 ? new AccessError(env, site, sym)
duke@1 1427 : bestSoFar;
mcimadamore@1215 1428 }
duke@1 1429 return (bestSoFar.kind > AMBIGUOUS)
duke@1 1430 ? sym
mcimadamore@1348 1431 : mostSpecific(argtypes, sym, bestSoFar, env, site,
duke@1 1432 allowBoxing && operator, useVarargs);
duke@1 1433 }
duke@1 1434
duke@1 1435 /* Return the most specific of the two methods for a call,
duke@1 1436 * given that both are accessible and applicable.
duke@1 1437 * @param m1 A new candidate for most specific.
duke@1 1438 * @param m2 The previous most specific candidate.
duke@1 1439 * @param env The current environment.
duke@1 1440 * @param site The original type from where the selection
duke@1 1441 * takes place.
duke@1 1442 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 1443 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 1444 */
mcimadamore@1348 1445 Symbol mostSpecific(List<Type> argtypes, Symbol m1,
duke@1 1446 Symbol m2,
duke@1 1447 Env<AttrContext> env,
mcimadamore@254 1448 final Type site,
duke@1 1449 boolean allowBoxing,
duke@1 1450 boolean useVarargs) {
duke@1 1451 switch (m2.kind) {
duke@1 1452 case MTH:
duke@1 1453 if (m1 == m2) return m1;
mcimadamore@1348 1454 boolean m1SignatureMoreSpecific =
mcimadamore@1348 1455 signatureMoreSpecific(argtypes, env, site, m1, m2, allowBoxing, useVarargs);
mcimadamore@1348 1456 boolean m2SignatureMoreSpecific =
mcimadamore@1348 1457 signatureMoreSpecific(argtypes, env, site, m2, m1, allowBoxing, useVarargs);
duke@1 1458 if (m1SignatureMoreSpecific && m2SignatureMoreSpecific) {
mcimadamore@775 1459 Type mt1 = types.memberType(site, m1);
mcimadamore@775 1460 Type mt2 = types.memberType(site, m2);
duke@1 1461 if (!types.overrideEquivalent(mt1, mt2))
mcimadamore@844 1462 return ambiguityError(m1, m2);
mcimadamore@844 1463
duke@1 1464 // same signature; select (a) the non-bridge method, or
duke@1 1465 // (b) the one that overrides the other, or (c) the concrete
duke@1 1466 // one, or (d) merge both abstract signatures
mcimadamore@844 1467 if ((m1.flags() & BRIDGE) != (m2.flags() & BRIDGE))
duke@1 1468 return ((m1.flags() & BRIDGE) != 0) ? m2 : m1;
mcimadamore@844 1469
duke@1 1470 // if one overrides or hides the other, use it
duke@1 1471 TypeSymbol m1Owner = (TypeSymbol)m1.owner;
duke@1 1472 TypeSymbol m2Owner = (TypeSymbol)m2.owner;
duke@1 1473 if (types.asSuper(m1Owner.type, m2Owner) != null &&
duke@1 1474 ((m1.owner.flags_field & INTERFACE) == 0 ||
duke@1 1475 (m2.owner.flags_field & INTERFACE) != 0) &&
duke@1 1476 m1.overrides(m2, m1Owner, types, false))
duke@1 1477 return m1;
duke@1 1478 if (types.asSuper(m2Owner.type, m1Owner) != null &&
duke@1 1479 ((m2.owner.flags_field & INTERFACE) == 0 ||
duke@1 1480 (m1.owner.flags_field & INTERFACE) != 0) &&
duke@1 1481 m2.overrides(m1, m2Owner, types, false))
duke@1 1482 return m2;
duke@1 1483 boolean m1Abstract = (m1.flags() & ABSTRACT) != 0;
duke@1 1484 boolean m2Abstract = (m2.flags() & ABSTRACT) != 0;
duke@1 1485 if (m1Abstract && !m2Abstract) return m2;
duke@1 1486 if (m2Abstract && !m1Abstract) return m1;
duke@1 1487 // both abstract or both concrete
mcimadamore@1480 1488 return ambiguityError(m1, m2);
duke@1 1489 }
duke@1 1490 if (m1SignatureMoreSpecific) return m1;
duke@1 1491 if (m2SignatureMoreSpecific) return m2;
mcimadamore@844 1492 return ambiguityError(m1, m2);
duke@1 1493 case AMBIGUOUS:
mcimadamore@1480 1494 //check if m1 is more specific than all ambiguous methods in m2
duke@1 1495 AmbiguityError e = (AmbiguityError)m2;
mcimadamore@1480 1496 for (Symbol s : e.ambiguousSyms) {
mcimadamore@1480 1497 if (mostSpecific(argtypes, m1, s, env, site, allowBoxing, useVarargs) != m1) {
mcimadamore@1480 1498 return e.addAmbiguousSymbol(m1);
mcimadamore@1480 1499 }
mcimadamore@1480 1500 }
mcimadamore@1480 1501 return m1;
duke@1 1502 default:
duke@1 1503 throw new AssertionError();
duke@1 1504 }
duke@1 1505 }
mcimadamore@775 1506 //where
mcimadamore@1348 1507 private boolean signatureMoreSpecific(List<Type> actuals, Env<AttrContext> env, Type site, Symbol m1, Symbol m2, boolean allowBoxing, boolean useVarargs) {
mcimadamore@1510 1508 noteWarner.clear();
mcimadamore@1510 1509 int maxLength = Math.max(
mcimadamore@1510 1510 Math.max(m1.type.getParameterTypes().length(), actuals.length()),
mcimadamore@1510 1511 m2.type.getParameterTypes().length());
mcimadamore@1674 1512 MethodResolutionContext prevResolutionContext = currentResolutionContext;
mcimadamore@1674 1513 try {
mcimadamore@1674 1514 currentResolutionContext = new MethodResolutionContext();
mcimadamore@1674 1515 currentResolutionContext.step = prevResolutionContext.step;
mcimadamore@1674 1516 currentResolutionContext.methodCheck =
mcimadamore@1674 1517 prevResolutionContext.methodCheck.mostSpecificCheck(actuals, !allowBoxing);
mcimadamore@1674 1518 Type mst = instantiate(env, site, m2, null,
mcimadamore@1674 1519 adjustArgs(types.lowerBounds(types.memberType(site, m1).getParameterTypes()), m1, maxLength, useVarargs), null,
mcimadamore@1674 1520 allowBoxing, useVarargs, noteWarner);
mcimadamore@1674 1521 return mst != null &&
mcimadamore@1674 1522 !noteWarner.hasLint(Lint.LintCategory.UNCHECKED);
mcimadamore@1674 1523 } finally {
mcimadamore@1674 1524 currentResolutionContext = prevResolutionContext;
mcimadamore@1674 1525 }
mcimadamore@1510 1526 }
vromero@2000 1527
vromero@2000 1528 List<Type> adjustArgs(List<Type> args, Symbol msym, int length, boolean allowVarargs) {
mcimadamore@1510 1529 if ((msym.flags() & VARARGS) != 0 && allowVarargs) {
mcimadamore@1510 1530 Type varargsElem = types.elemtype(args.last());
mcimadamore@1510 1531 if (varargsElem == null) {
mcimadamore@1510 1532 Assert.error("Bad varargs = " + args.last() + " " + msym);
mcimadamore@1510 1533 }
mcimadamore@1510 1534 List<Type> newArgs = args.reverse().tail.prepend(varargsElem).reverse();
mcimadamore@1510 1535 while (newArgs.length() < length) {
mcimadamore@1510 1536 newArgs = newArgs.append(newArgs.last());
mcimadamore@1510 1537 }
mcimadamore@1510 1538 return newArgs;
mcimadamore@1510 1539 } else {
mcimadamore@1510 1540 return args;
mcimadamore@1348 1541 }
mcimadamore@1348 1542 }
mcimadamore@1348 1543 //where
mcimadamore@1059 1544 Type mostSpecificReturnType(Type mt1, Type mt2) {
mcimadamore@1059 1545 Type rt1 = mt1.getReturnType();
mcimadamore@1059 1546 Type rt2 = mt2.getReturnType();
mcimadamore@1059 1547
jjg@1374 1548 if (mt1.hasTag(FORALL) && mt2.hasTag(FORALL)) {
mcimadamore@1059 1549 //if both are generic methods, adjust return type ahead of subtyping check
mcimadamore@1059 1550 rt1 = types.subst(rt1, mt1.getTypeArguments(), mt2.getTypeArguments());
mcimadamore@1059 1551 }
mcimadamore@1059 1552 //first use subtyping, then return type substitutability
mcimadamore@1059 1553 if (types.isSubtype(rt1, rt2)) {
mcimadamore@1059 1554 return mt1;
mcimadamore@1059 1555 } else if (types.isSubtype(rt2, rt1)) {
mcimadamore@1059 1556 return mt2;
mcimadamore@1059 1557 } else if (types.returnTypeSubstitutable(mt1, mt2)) {
mcimadamore@1059 1558 return mt1;
mcimadamore@1059 1559 } else if (types.returnTypeSubstitutable(mt2, mt1)) {
mcimadamore@1059 1560 return mt2;
mcimadamore@1059 1561 } else {
mcimadamore@1059 1562 return null;
mcimadamore@1059 1563 }
mcimadamore@1059 1564 }
mcimadamore@1059 1565 //where
mcimadamore@844 1566 Symbol ambiguityError(Symbol m1, Symbol m2) {
mcimadamore@844 1567 if (((m1.flags() | m2.flags()) & CLASH) != 0) {
mcimadamore@844 1568 return (m1.flags() & CLASH) == 0 ? m1 : m2;
mcimadamore@844 1569 } else {
mcimadamore@844 1570 return new AmbiguityError(m1, m2);
mcimadamore@844 1571 }
mcimadamore@844 1572 }
duke@1 1573
mcimadamore@1394 1574 Symbol findMethodInScope(Env<AttrContext> env,
mcimadamore@1393 1575 Type site,
mcimadamore@1393 1576 Name name,
mcimadamore@1393 1577 List<Type> argtypes,
mcimadamore@1393 1578 List<Type> typeargtypes,
mcimadamore@1393 1579 Scope sc,
mcimadamore@1393 1580 Symbol bestSoFar,
mcimadamore@1393 1581 boolean allowBoxing,
mcimadamore@1393 1582 boolean useVarargs,
mcimadamore@1393 1583 boolean operator,
mcimadamore@1393 1584 boolean abstractok) {
mcimadamore@1393 1585 for (Symbol s : sc.getElementsByName(name, new LookupFilter(abstractok))) {
mcimadamore@1393 1586 bestSoFar = selectBest(env, site, argtypes, typeargtypes, s,
mcimadamore@1393 1587 bestSoFar, allowBoxing, useVarargs, operator);
mcimadamore@1393 1588 }
mcimadamore@1393 1589 return bestSoFar;
mcimadamore@1393 1590 }
mcimadamore@1393 1591 //where
mcimadamore@1393 1592 class LookupFilter implements Filter<Symbol> {
mcimadamore@1393 1593
mcimadamore@1393 1594 boolean abstractOk;
mcimadamore@1393 1595
mcimadamore@1393 1596 LookupFilter(boolean abstractOk) {
mcimadamore@1393 1597 this.abstractOk = abstractOk;
mcimadamore@1393 1598 }
mcimadamore@1393 1599
mcimadamore@1393 1600 public boolean accepts(Symbol s) {
mcimadamore@1393 1601 long flags = s.flags();
mcimadamore@1393 1602 return s.kind == MTH &&
mcimadamore@1393 1603 (flags & SYNTHETIC) == 0 &&
mcimadamore@1393 1604 (abstractOk ||
mcimadamore@1393 1605 (flags & DEFAULT) != 0 ||
mcimadamore@1393 1606 (flags & ABSTRACT) == 0);
mcimadamore@1393 1607 }
mcimadamore@1393 1608 };
mcimadamore@1393 1609
duke@1 1610 /** Find best qualified method matching given name, type and value
duke@1 1611 * arguments.
duke@1 1612 * @param env The current environment.
duke@1 1613 * @param site The original type from where the selection
duke@1 1614 * takes place.
duke@1 1615 * @param name The method's name.
duke@1 1616 * @param argtypes The method's value arguments.
duke@1 1617 * @param typeargtypes The method's type arguments
duke@1 1618 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 1619 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 1620 */
duke@1 1621 Symbol findMethod(Env<AttrContext> env,
duke@1 1622 Type site,
duke@1 1623 Name name,
duke@1 1624 List<Type> argtypes,
duke@1 1625 List<Type> typeargtypes,
duke@1 1626 boolean allowBoxing,
duke@1 1627 boolean useVarargs,
duke@1 1628 boolean operator) {
jrose@571 1629 Symbol bestSoFar = methodNotFound;
mcimadamore@1114 1630 bestSoFar = findMethod(env,
duke@1 1631 site,
duke@1 1632 name,
duke@1 1633 argtypes,
duke@1 1634 typeargtypes,
duke@1 1635 site.tsym.type,
jrose@571 1636 bestSoFar,
duke@1 1637 allowBoxing,
duke@1 1638 useVarargs,
mcimadamore@1335 1639 operator);
mcimadamore@1114 1640 return bestSoFar;
duke@1 1641 }
duke@1 1642 // where
duke@1 1643 private Symbol findMethod(Env<AttrContext> env,
duke@1 1644 Type site,
duke@1 1645 Name name,
duke@1 1646 List<Type> argtypes,
duke@1 1647 List<Type> typeargtypes,
duke@1 1648 Type intype,
duke@1 1649 Symbol bestSoFar,
duke@1 1650 boolean allowBoxing,
duke@1 1651 boolean useVarargs,
mcimadamore@1335 1652 boolean operator) {
mcimadamore@1393 1653 @SuppressWarnings({"unchecked","rawtypes"})
mcimadamore@1393 1654 List<Type>[] itypes = (List<Type>[])new List[] { List.<Type>nil(), List.<Type>nil() };
mcimadamore@1393 1655 InterfaceLookupPhase iphase = InterfaceLookupPhase.ABSTRACT_OK;
mcimadamore@1335 1656 for (TypeSymbol s : superclasses(intype)) {
mcimadamore@1394 1657 bestSoFar = findMethodInScope(env, site, name, argtypes, typeargtypes,
mcimadamore@1335 1658 s.members(), bestSoFar, allowBoxing, useVarargs, operator, true);
mcimadamore@1393 1659 if (name == names.init) return bestSoFar;
mcimadamore@1393 1660 iphase = (iphase == null) ? null : iphase.update(s, this);
mcimadamore@1393 1661 if (iphase != null) {
mcimadamore@1335 1662 for (Type itype : types.interfaces(s.type)) {
mcimadamore@1393 1663 itypes[iphase.ordinal()] = types.union(types.closure(itype), itypes[iphase.ordinal()]);
duke@1 1664 }
duke@1 1665 }
mcimadamore@1335 1666 }
mcimadamore@1335 1667
mcimadamore@1335 1668 Symbol concrete = bestSoFar.kind < ERR &&
mcimadamore@1335 1669 (bestSoFar.flags() & ABSTRACT) == 0 ?
mcimadamore@1335 1670 bestSoFar : methodNotFound;
mcimadamore@1335 1671
mcimadamore@1393 1672 for (InterfaceLookupPhase iphase2 : InterfaceLookupPhase.values()) {
mcimadamore@1393 1673 if (iphase2 == InterfaceLookupPhase.DEFAULT_OK && !allowDefaultMethods) break;
mcimadamore@1335 1674 //keep searching for abstract methods
mcimadamore@1393 1675 for (Type itype : itypes[iphase2.ordinal()]) {
mcimadamore@1335 1676 if (!itype.isInterface()) continue; //skip j.l.Object (included by Types.closure())
mcimadamore@1393 1677 if (iphase2 == InterfaceLookupPhase.DEFAULT_OK &&
mcimadamore@1393 1678 (itype.tsym.flags() & DEFAULT) == 0) continue;
mcimadamore@1394 1679 bestSoFar = findMethodInScope(env, site, name, argtypes, typeargtypes,
mcimadamore@1393 1680 itype.tsym.members(), bestSoFar, allowBoxing, useVarargs, operator, true);
mcimadamore@1393 1681 if (concrete != bestSoFar &&
mcimadamore@1393 1682 concrete.kind < ERR && bestSoFar.kind < ERR &&
mcimadamore@1393 1683 types.isSubSignature(concrete.type, bestSoFar.type)) {
mcimadamore@1393 1684 //this is an hack - as javac does not do full membership checks
mcimadamore@1393 1685 //most specific ends up comparing abstract methods that might have
mcimadamore@1393 1686 //been implemented by some concrete method in a subclass and,
mcimadamore@1393 1687 //because of raw override, it is possible for an abstract method
mcimadamore@1393 1688 //to be more specific than the concrete method - so we need
mcimadamore@1393 1689 //to explicitly call that out (see CR 6178365)
mcimadamore@1393 1690 bestSoFar = concrete;
mcimadamore@1393 1691 }
duke@1 1692 }
duke@1 1693 }
duke@1 1694 return bestSoFar;
duke@1 1695 }
duke@1 1696
mcimadamore@1393 1697 enum InterfaceLookupPhase {
mcimadamore@1393 1698 ABSTRACT_OK() {
mcimadamore@1393 1699 @Override
mcimadamore@1393 1700 InterfaceLookupPhase update(Symbol s, Resolve rs) {
mcimadamore@1393 1701 //We should not look for abstract methods if receiver is a concrete class
mcimadamore@1393 1702 //(as concrete classes are expected to implement all abstracts coming
mcimadamore@1393 1703 //from superinterfaces)
mcimadamore@1393 1704 if ((s.flags() & (ABSTRACT | INTERFACE | ENUM)) != 0) {
mcimadamore@1393 1705 return this;
mcimadamore@1393 1706 } else if (rs.allowDefaultMethods) {
mcimadamore@1393 1707 return DEFAULT_OK;
mcimadamore@1393 1708 } else {
mcimadamore@1393 1709 return null;
mcimadamore@1393 1710 }
mcimadamore@1393 1711 }
mcimadamore@1393 1712 },
mcimadamore@1393 1713 DEFAULT_OK() {
mcimadamore@1393 1714 @Override
mcimadamore@1393 1715 InterfaceLookupPhase update(Symbol s, Resolve rs) {
mcimadamore@1393 1716 return this;
mcimadamore@1393 1717 }
mcimadamore@1393 1718 };
mcimadamore@1393 1719
mcimadamore@1393 1720 abstract InterfaceLookupPhase update(Symbol s, Resolve rs);
mcimadamore@1393 1721 }
mcimadamore@1393 1722
mcimadamore@1335 1723 /**
mcimadamore@1335 1724 * Return an Iterable object to scan the superclasses of a given type.
mcimadamore@1335 1725 * It's crucial that the scan is done lazily, as we don't want to accidentally
mcimadamore@1335 1726 * access more supertypes than strictly needed (as this could trigger completion
mcimadamore@1335 1727 * errors if some of the not-needed supertypes are missing/ill-formed).
mcimadamore@1335 1728 */
mcimadamore@1335 1729 Iterable<TypeSymbol> superclasses(final Type intype) {
mcimadamore@1335 1730 return new Iterable<TypeSymbol>() {
mcimadamore@1335 1731 public Iterator<TypeSymbol> iterator() {
mcimadamore@1335 1732 return new Iterator<TypeSymbol>() {
mcimadamore@1335 1733
mcimadamore@1335 1734 List<TypeSymbol> seen = List.nil();
mcimadamore@1342 1735 TypeSymbol currentSym = symbolFor(intype);
mcimadamore@1342 1736 TypeSymbol prevSym = null;
mcimadamore@1335 1737
mcimadamore@1335 1738 public boolean hasNext() {
mcimadamore@1342 1739 if (currentSym == syms.noSymbol) {
mcimadamore@1342 1740 currentSym = symbolFor(types.supertype(prevSym.type));
mcimadamore@1342 1741 }
mcimadamore@1335 1742 return currentSym != null;
mcimadamore@1335 1743 }
mcimadamore@1335 1744
mcimadamore@1335 1745 public TypeSymbol next() {
mcimadamore@1342 1746 prevSym = currentSym;
mcimadamore@1342 1747 currentSym = syms.noSymbol;
mcimadamore@1342 1748 Assert.check(prevSym != null || prevSym != syms.noSymbol);
mcimadamore@1335 1749 return prevSym;
mcimadamore@1335 1750 }
mcimadamore@1335 1751
mcimadamore@1335 1752 public void remove() {
mcimadamore@1342 1753 throw new UnsupportedOperationException();
mcimadamore@1335 1754 }
mcimadamore@1335 1755
mcimadamore@1342 1756 TypeSymbol symbolFor(Type t) {
jjg@1374 1757 if (!t.hasTag(CLASS) &&
jjg@1374 1758 !t.hasTag(TYPEVAR)) {
mcimadamore@1335 1759 return null;
mcimadamore@1335 1760 }
jjg@1374 1761 while (t.hasTag(TYPEVAR))
mcimadamore@1342 1762 t = t.getUpperBound();
mcimadamore@1342 1763 if (seen.contains(t.tsym)) {
mcimadamore@1335 1764 //degenerate case in which we have a circular
mcimadamore@1335 1765 //class hierarchy - because of ill-formed classfiles
mcimadamore@1335 1766 return null;
mcimadamore@1335 1767 }
mcimadamore@1342 1768 seen = seen.prepend(t.tsym);
mcimadamore@1342 1769 return t.tsym;
mcimadamore@1335 1770 }
mcimadamore@1335 1771 };
mcimadamore@1335 1772 }
mcimadamore@1335 1773 };
mcimadamore@1335 1774 }
mcimadamore@1335 1775
duke@1 1776 /** Find unqualified method matching given name, type and value arguments.
duke@1 1777 * @param env The current environment.
duke@1 1778 * @param name The method's name.
duke@1 1779 * @param argtypes The method's value arguments.
duke@1 1780 * @param typeargtypes The method's type arguments.
duke@1 1781 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 1782 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 1783 */
duke@1 1784 Symbol findFun(Env<AttrContext> env, Name name,
duke@1 1785 List<Type> argtypes, List<Type> typeargtypes,
duke@1 1786 boolean allowBoxing, boolean useVarargs) {
duke@1 1787 Symbol bestSoFar = methodNotFound;
duke@1 1788 Symbol sym;
duke@1 1789 Env<AttrContext> env1 = env;
duke@1 1790 boolean staticOnly = false;
duke@1 1791 while (env1.outer != null) {
duke@1 1792 if (isStatic(env1)) staticOnly = true;
duke@1 1793 sym = findMethod(
duke@1 1794 env1, env1.enclClass.sym.type, name, argtypes, typeargtypes,
duke@1 1795 allowBoxing, useVarargs, false);
duke@1 1796 if (sym.exists()) {
duke@1 1797 if (staticOnly &&
duke@1 1798 sym.kind == MTH &&
duke@1 1799 sym.owner.kind == TYP &&
duke@1 1800 (sym.flags() & STATIC) == 0) return new StaticError(sym);
duke@1 1801 else return sym;
duke@1 1802 } else if (sym.kind < bestSoFar.kind) {
duke@1 1803 bestSoFar = sym;
duke@1 1804 }
duke@1 1805 if ((env1.enclClass.sym.flags() & STATIC) != 0) staticOnly = true;
duke@1 1806 env1 = env1.outer;
duke@1 1807 }
duke@1 1808
duke@1 1809 sym = findMethod(env, syms.predefClass.type, name, argtypes,
duke@1 1810 typeargtypes, allowBoxing, useVarargs, false);
duke@1 1811 if (sym.exists())
duke@1 1812 return sym;
duke@1 1813
duke@1 1814 Scope.Entry e = env.toplevel.namedImportScope.lookup(name);
duke@1 1815 for (; e.scope != null; e = e.next()) {
duke@1 1816 sym = e.sym;
duke@1 1817 Type origin = e.getOrigin().owner.type;
duke@1 1818 if (sym.kind == MTH) {
duke@1 1819 if (e.sym.owner.type != origin)
duke@1 1820 sym = sym.clone(e.getOrigin().owner);
duke@1 1821 if (!isAccessible(env, origin, sym))
duke@1 1822 sym = new AccessError(env, origin, sym);
duke@1 1823 bestSoFar = selectBest(env, origin,
duke@1 1824 argtypes, typeargtypes,
duke@1 1825 sym, bestSoFar,
duke@1 1826 allowBoxing, useVarargs, false);
duke@1 1827 }
duke@1 1828 }
duke@1 1829 if (bestSoFar.exists())
duke@1 1830 return bestSoFar;
duke@1 1831
duke@1 1832 e = env.toplevel.starImportScope.lookup(name);
duke@1 1833 for (; e.scope != null; e = e.next()) {
duke@1 1834 sym = e.sym;
duke@1 1835 Type origin = e.getOrigin().owner.type;
duke@1 1836 if (sym.kind == MTH) {
duke@1 1837 if (e.sym.owner.type != origin)
duke@1 1838 sym = sym.clone(e.getOrigin().owner);
duke@1 1839 if (!isAccessible(env, origin, sym))
duke@1 1840 sym = new AccessError(env, origin, sym);
duke@1 1841 bestSoFar = selectBest(env, origin,
duke@1 1842 argtypes, typeargtypes,
duke@1 1843 sym, bestSoFar,
duke@1 1844 allowBoxing, useVarargs, false);
duke@1 1845 }
duke@1 1846 }
duke@1 1847 return bestSoFar;
duke@1 1848 }
duke@1 1849
duke@1 1850 /** Load toplevel or member class with given fully qualified name and
duke@1 1851 * verify that it is accessible.
duke@1 1852 * @param env The current environment.
duke@1 1853 * @param name The fully qualified name of the class to be loaded.
duke@1 1854 */
duke@1 1855 Symbol loadClass(Env<AttrContext> env, Name name) {
duke@1 1856 try {
duke@1 1857 ClassSymbol c = reader.loadClass(name);
duke@1 1858 return isAccessible(env, c) ? c : new AccessError(c);
duke@1 1859 } catch (ClassReader.BadClassFile err) {
duke@1 1860 throw err;
duke@1 1861 } catch (CompletionFailure ex) {
duke@1 1862 return typeNotFound;
duke@1 1863 }
duke@1 1864 }
duke@1 1865
emc@1970 1866
emc@1970 1867 /**
emc@1970 1868 * Find a type declared in a scope (not inherited). Return null
emc@1970 1869 * if none is found.
duke@1 1870 * @param env The current environment.
duke@1 1871 * @param site The original type from where the selection takes
duke@1 1872 * place.
duke@1 1873 * @param name The type's name.
duke@1 1874 * @param c The class to search for the member type. This is
duke@1 1875 * always a superclass or implemented interface of
duke@1 1876 * site's class.
duke@1 1877 */
emc@1970 1878 Symbol findImmediateMemberType(Env<AttrContext> env,
emc@1970 1879 Type site,
emc@1970 1880 Name name,
emc@1970 1881 TypeSymbol c) {
duke@1 1882 Scope.Entry e = c.members().lookup(name);
duke@1 1883 while (e.scope != null) {
duke@1 1884 if (e.sym.kind == TYP) {
duke@1 1885 return isAccessible(env, site, e.sym)
duke@1 1886 ? e.sym
duke@1 1887 : new AccessError(env, site, e.sym);
duke@1 1888 }
duke@1 1889 e = e.next();
duke@1 1890 }
emc@1970 1891 return typeNotFound;
emc@1970 1892 }
emc@1970 1893
emc@1970 1894 /** Find a member type inherited from a superclass or interface.
emc@1970 1895 * @param env The current environment.
emc@1970 1896 * @param site The original type from where the selection takes
emc@1970 1897 * place.
emc@1970 1898 * @param name The type's name.
emc@1970 1899 * @param c The class to search for the member type. This is
emc@1970 1900 * always a superclass or implemented interface of
emc@1970 1901 * site's class.
emc@1970 1902 */
emc@1970 1903 Symbol findInheritedMemberType(Env<AttrContext> env,
emc@1970 1904 Type site,
emc@1970 1905 Name name,
emc@1970 1906 TypeSymbol c) {
emc@1970 1907 Symbol bestSoFar = typeNotFound;
emc@1970 1908 Symbol sym;
duke@1 1909 Type st = types.supertype(c.type);
jjg@1374 1910 if (st != null && st.hasTag(CLASS)) {
duke@1 1911 sym = findMemberType(env, site, name, st.tsym);
duke@1 1912 if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1913 }
duke@1 1914 for (List<Type> l = types.interfaces(c.type);
duke@1 1915 bestSoFar.kind != AMBIGUOUS && l.nonEmpty();
duke@1 1916 l = l.tail) {
duke@1 1917 sym = findMemberType(env, site, name, l.head.tsym);
duke@1 1918 if (bestSoFar.kind < AMBIGUOUS && sym.kind < AMBIGUOUS &&
duke@1 1919 sym.owner != bestSoFar.owner)
duke@1 1920 bestSoFar = new AmbiguityError(bestSoFar, sym);
duke@1 1921 else if (sym.kind < bestSoFar.kind)
duke@1 1922 bestSoFar = sym;
duke@1 1923 }
duke@1 1924 return bestSoFar;
duke@1 1925 }
duke@1 1926
emc@1970 1927 /** Find qualified member type.
emc@1970 1928 * @param env The current environment.
emc@1970 1929 * @param site The original type from where the selection takes
emc@1970 1930 * place.
emc@1970 1931 * @param name The type's name.
emc@1970 1932 * @param c The class to search for the member type. This is
emc@1970 1933 * always a superclass or implemented interface of
emc@1970 1934 * site's class.
emc@1970 1935 */
emc@1970 1936 Symbol findMemberType(Env<AttrContext> env,
emc@1970 1937 Type site,
emc@1970 1938 Name name,
emc@1970 1939 TypeSymbol c) {
emc@1970 1940 Symbol sym = findImmediateMemberType(env, site, name, c);
emc@1970 1941
emc@1970 1942 if (sym != typeNotFound)
emc@1970 1943 return sym;
emc@1970 1944
emc@1970 1945 return findInheritedMemberType(env, site, name, c);
emc@1970 1946
emc@1970 1947 }
emc@1970 1948
duke@1 1949 /** Find a global type in given scope and load corresponding class.
duke@1 1950 * @param env The current environment.
duke@1 1951 * @param scope The scope in which to look for the type.
duke@1 1952 * @param name The type's name.
duke@1 1953 */
duke@1 1954 Symbol findGlobalType(Env<AttrContext> env, Scope scope, Name name) {
duke@1 1955 Symbol bestSoFar = typeNotFound;
duke@1 1956 for (Scope.Entry e = scope.lookup(name); e.scope != null; e = e.next()) {
duke@1 1957 Symbol sym = loadClass(env, e.sym.flatName());
duke@1 1958 if (bestSoFar.kind == TYP && sym.kind == TYP &&
duke@1 1959 bestSoFar != sym)
duke@1 1960 return new AmbiguityError(bestSoFar, sym);
duke@1 1961 else if (sym.kind < bestSoFar.kind)
duke@1 1962 bestSoFar = sym;
duke@1 1963 }
duke@1 1964 return bestSoFar;
duke@1 1965 }
duke@1 1966
emc@1970 1967 Symbol findTypeVar(Env<AttrContext> env, Name name, boolean staticOnly) {
emc@1970 1968 for (Scope.Entry e = env.info.scope.lookup(name);
emc@1970 1969 e.scope != null;
emc@1970 1970 e = e.next()) {
emc@1970 1971 if (e.sym.kind == TYP) {
emc@1970 1972 if (staticOnly &&
emc@1970 1973 e.sym.type.hasTag(TYPEVAR) &&
emc@1970 1974 e.sym.owner.kind == TYP)
emc@1970 1975 return new StaticError(e.sym);
emc@1970 1976 return e.sym;
emc@1970 1977 }
emc@1970 1978 }
emc@1970 1979 return typeNotFound;
emc@1970 1980 }
emc@1970 1981
duke@1 1982 /** Find an unqualified type symbol.
duke@1 1983 * @param env The current environment.
duke@1 1984 * @param name The type's name.
duke@1 1985 */
duke@1 1986 Symbol findType(Env<AttrContext> env, Name name) {
duke@1 1987 Symbol bestSoFar = typeNotFound;
duke@1 1988 Symbol sym;
duke@1 1989 boolean staticOnly = false;
duke@1 1990 for (Env<AttrContext> env1 = env; env1.outer != null; env1 = env1.outer) {
duke@1 1991 if (isStatic(env1)) staticOnly = true;
emc@1970 1992 // First, look for a type variable and the first member type
emc@1970 1993 final Symbol tyvar = findTypeVar(env1, name, staticOnly);
emc@1970 1994 sym = findImmediateMemberType(env1, env1.enclClass.sym.type,
emc@1970 1995 name, env1.enclClass.sym);
emc@1970 1996
emc@1970 1997 // Return the type variable if we have it, and have no
emc@1970 1998 // immediate member, OR the type variable is for a method.
emc@1970 1999 if (tyvar != typeNotFound) {
emc@1970 2000 if (sym == typeNotFound ||
emc@1970 2001 (tyvar.kind == TYP && tyvar.exists() &&
emc@1970 2002 tyvar.owner.kind == MTH))
emc@1970 2003 return tyvar;
duke@1 2004 }
duke@1 2005
emc@1970 2006 // If the environment is a class def, finish up,
emc@1970 2007 // otherwise, do the entire findMemberType
emc@1970 2008 if (sym == typeNotFound)
emc@1970 2009 sym = findInheritedMemberType(env1, env1.enclClass.sym.type,
emc@1970 2010 name, env1.enclClass.sym);
emc@1970 2011
duke@1 2012 if (staticOnly && sym.kind == TYP &&
jjg@1374 2013 sym.type.hasTag(CLASS) &&
jjg@1374 2014 sym.type.getEnclosingType().hasTag(CLASS) &&
duke@1 2015 env1.enclClass.sym.type.isParameterized() &&
duke@1 2016 sym.type.getEnclosingType().isParameterized())
duke@1 2017 return new StaticError(sym);
duke@1 2018 else if (sym.exists()) return sym;
duke@1 2019 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2020
duke@1 2021 JCClassDecl encl = env1.baseClause ? (JCClassDecl)env1.tree : env1.enclClass;
duke@1 2022 if ((encl.sym.flags() & STATIC) != 0)
duke@1 2023 staticOnly = true;
duke@1 2024 }
duke@1 2025
jjg@1127 2026 if (!env.tree.hasTag(IMPORT)) {
duke@1 2027 sym = findGlobalType(env, env.toplevel.namedImportScope, name);
duke@1 2028 if (sym.exists()) return sym;
duke@1 2029 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2030
duke@1 2031 sym = findGlobalType(env, env.toplevel.packge.members(), name);
duke@1 2032 if (sym.exists()) return sym;
duke@1 2033 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2034
duke@1 2035 sym = findGlobalType(env, env.toplevel.starImportScope, name);
duke@1 2036 if (sym.exists()) return sym;
duke@1 2037 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2038 }
duke@1 2039
duke@1 2040 return bestSoFar;
duke@1 2041 }
duke@1 2042
duke@1 2043 /** Find an unqualified identifier which matches a specified kind set.
duke@1 2044 * @param env The current environment.
jjg@1409 2045 * @param name The identifier's name.
duke@1 2046 * @param kind Indicates the possible symbol kinds
duke@1 2047 * (a subset of VAL, TYP, PCK).
duke@1 2048 */
duke@1 2049 Symbol findIdent(Env<AttrContext> env, Name name, int kind) {
duke@1 2050 Symbol bestSoFar = typeNotFound;
duke@1 2051 Symbol sym;
duke@1 2052
duke@1 2053 if ((kind & VAR) != 0) {
duke@1 2054 sym = findVar(env, name);
duke@1 2055 if (sym.exists()) return sym;
duke@1 2056 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2057 }
duke@1 2058
duke@1 2059 if ((kind & TYP) != 0) {
duke@1 2060 sym = findType(env, name);
ohrstrom@1460 2061 if (sym.kind==TYP) {
ohrstrom@1460 2062 reportDependence(env.enclClass.sym, sym);
ohrstrom@1460 2063 }
duke@1 2064 if (sym.exists()) return sym;
duke@1 2065 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2066 }
duke@1 2067
duke@1 2068 if ((kind & PCK) != 0) return reader.enterPackage(name);
duke@1 2069 else return bestSoFar;
duke@1 2070 }
duke@1 2071
ohrstrom@1460 2072 /** Report dependencies.
ohrstrom@1460 2073 * @param from The enclosing class sym
ohrstrom@1460 2074 * @param to The found identifier that the class depends on.
ohrstrom@1460 2075 */
ohrstrom@1460 2076 public void reportDependence(Symbol from, Symbol to) {
ohrstrom@1460 2077 // Override if you want to collect the reported dependencies.
ohrstrom@1460 2078 }
ohrstrom@1460 2079
duke@1 2080 /** Find an identifier in a package which matches a specified kind set.
duke@1 2081 * @param env The current environment.
duke@1 2082 * @param name The identifier's name.
duke@1 2083 * @param kind Indicates the possible symbol kinds
duke@1 2084 * (a nonempty subset of TYP, PCK).
duke@1 2085 */
duke@1 2086 Symbol findIdentInPackage(Env<AttrContext> env, TypeSymbol pck,
duke@1 2087 Name name, int kind) {
duke@1 2088 Name fullname = TypeSymbol.formFullName(name, pck);
duke@1 2089 Symbol bestSoFar = typeNotFound;
duke@1 2090 PackageSymbol pack = null;
duke@1 2091 if ((kind & PCK) != 0) {
duke@1 2092 pack = reader.enterPackage(fullname);
duke@1 2093 if (pack.exists()) return pack;
duke@1 2094 }
duke@1 2095 if ((kind & TYP) != 0) {
duke@1 2096 Symbol sym = loadClass(env, fullname);
duke@1 2097 if (sym.exists()) {
duke@1 2098 // don't allow programs to use flatnames
duke@1 2099 if (name == sym.name) return sym;
duke@1 2100 }
duke@1 2101 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2102 }
duke@1 2103 return (pack != null) ? pack : bestSoFar;
duke@1 2104 }
duke@1 2105
duke@1 2106 /** Find an identifier among the members of a given type `site'.
duke@1 2107 * @param env The current environment.
duke@1 2108 * @param site The type containing the symbol to be found.
duke@1 2109 * @param name The identifier's name.
duke@1 2110 * @param kind Indicates the possible symbol kinds
duke@1 2111 * (a subset of VAL, TYP).
duke@1 2112 */
duke@1 2113 Symbol findIdentInType(Env<AttrContext> env, Type site,
duke@1 2114 Name name, int kind) {
duke@1 2115 Symbol bestSoFar = typeNotFound;
duke@1 2116 Symbol sym;
duke@1 2117 if ((kind & VAR) != 0) {
duke@1 2118 sym = findField(env, site, name, site.tsym);
duke@1 2119 if (sym.exists()) return sym;
duke@1 2120 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2121 }
duke@1 2122
duke@1 2123 if ((kind & TYP) != 0) {
duke@1 2124 sym = findMemberType(env, site, name, site.tsym);
duke@1 2125 if (sym.exists()) return sym;
duke@1 2126 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 2127 }
duke@1 2128 return bestSoFar;
duke@1 2129 }
duke@1 2130
duke@1 2131 /* ***************************************************************************
duke@1 2132 * Access checking
duke@1 2133 * The following methods convert ResolveErrors to ErrorSymbols, issuing
duke@1 2134 * an error message in the process
duke@1 2135 ****************************************************************************/
duke@1 2136
duke@1 2137 /** If `sym' is a bad symbol: report error and return errSymbol
duke@1 2138 * else pass through unchanged,
duke@1 2139 * additional arguments duplicate what has been used in trying to find the
jjg@1326 2140 * symbol {@literal (--> flyweight pattern)}. This improves performance since we
duke@1 2141 * expect misses to happen frequently.
duke@1 2142 *
duke@1 2143 * @param sym The symbol that was found, or a ResolveError.
duke@1 2144 * @param pos The position to use for error reporting.
mcimadamore@1347 2145 * @param location The symbol the served as a context for this lookup
duke@1 2146 * @param site The original type from where the selection took place.
duke@1 2147 * @param name The symbol's name.
mcimadamore@1347 2148 * @param qualified Did we get here through a qualified expression resolution?
duke@1 2149 * @param argtypes The invocation's value arguments,
duke@1 2150 * if we looked for a method.
duke@1 2151 * @param typeargtypes The invocation's type arguments,
duke@1 2152 * if we looked for a method.
mcimadamore@1347 2153 * @param logResolveHelper helper class used to log resolve errors
duke@1 2154 */
mcimadamore@1347 2155 Symbol accessInternal(Symbol sym,
mcimadamore@1347 2156 DiagnosticPosition pos,
mcimadamore@1347 2157 Symbol location,
mcimadamore@1347 2158 Type site,
mcimadamore@1347 2159 Name name,
mcimadamore@1347 2160 boolean qualified,
mcimadamore@1347 2161 List<Type> argtypes,
mcimadamore@1347 2162 List<Type> typeargtypes,
mcimadamore@1347 2163 LogResolveHelper logResolveHelper) {
mcimadamore@1347 2164 if (sym.kind >= AMBIGUOUS) {
mcimadamore@1347 2165 ResolveError errSym = (ResolveError)sym;
mcimadamore@1347 2166 sym = errSym.access(name, qualified ? site.tsym : syms.noSymbol);
mcimadamore@1347 2167 argtypes = logResolveHelper.getArgumentTypes(errSym, sym, name, argtypes);
mcimadamore@1347 2168 if (logResolveHelper.resolveDiagnosticNeeded(site, argtypes, typeargtypes)) {
mcimadamore@1347 2169 logResolveError(errSym, pos, location, site, name, argtypes, typeargtypes);
mcimadamore@1347 2170 }
mcimadamore@1347 2171 }
mcimadamore@1347 2172 return sym;
mcimadamore@1347 2173 }
mcimadamore@1347 2174
mcimadamore@1347 2175 /**
mcimadamore@1347 2176 * Variant of the generalized access routine, to be used for generating method
mcimadamore@1347 2177 * resolution diagnostics
mcimadamore@1347 2178 */
mcimadamore@1347 2179 Symbol accessMethod(Symbol sym,
duke@1 2180 DiagnosticPosition pos,
mcimadamore@829 2181 Symbol location,
duke@1 2182 Type site,
duke@1 2183 Name name,
duke@1 2184 boolean qualified,
duke@1 2185 List<Type> argtypes,
duke@1 2186 List<Type> typeargtypes) {
mcimadamore@1347 2187 return accessInternal(sym, pos, location, site, name, qualified, argtypes, typeargtypes, methodLogResolveHelper);
duke@1 2188 }
duke@1 2189
mcimadamore@1347 2190 /** Same as original accessMethod(), but without location.
mcimadamore@829 2191 */
mcimadamore@1347 2192 Symbol accessMethod(Symbol sym,
mcimadamore@829 2193 DiagnosticPosition pos,
mcimadamore@829 2194 Type site,
mcimadamore@829 2195 Name name,
mcimadamore@829 2196 boolean qualified,
mcimadamore@829 2197 List<Type> argtypes,
mcimadamore@829 2198 List<Type> typeargtypes) {
mcimadamore@1347 2199 return accessMethod(sym, pos, site.tsym, site, name, qualified, argtypes, typeargtypes);
mcimadamore@829 2200 }
mcimadamore@829 2201
mcimadamore@1347 2202 /**
mcimadamore@1347 2203 * Variant of the generalized access routine, to be used for generating variable,
mcimadamore@1347 2204 * type resolution diagnostics
mcimadamore@829 2205 */
mcimadamore@1347 2206 Symbol accessBase(Symbol sym,
mcimadamore@829 2207 DiagnosticPosition pos,
mcimadamore@829 2208 Symbol location,
mcimadamore@829 2209 Type site,
mcimadamore@829 2210 Name name,
mcimadamore@829 2211 boolean qualified) {
mcimadamore@1347 2212 return accessInternal(sym, pos, location, site, name, qualified, List.<Type>nil(), null, basicLogResolveHelper);
mcimadamore@829 2213 }
mcimadamore@829 2214
mcimadamore@1347 2215 /** Same as original accessBase(), but without location.
duke@1 2216 */
mcimadamore@1347 2217 Symbol accessBase(Symbol sym,
duke@1 2218 DiagnosticPosition pos,
duke@1 2219 Type site,
duke@1 2220 Name name,
duke@1 2221 boolean qualified) {
mcimadamore@1347 2222 return accessBase(sym, pos, site.tsym, site, name, qualified);
duke@1 2223 }
duke@1 2224
mcimadamore@1347 2225 interface LogResolveHelper {
mcimadamore@1347 2226 boolean resolveDiagnosticNeeded(Type site, List<Type> argtypes, List<Type> typeargtypes);
mcimadamore@1347 2227 List<Type> getArgumentTypes(ResolveError errSym, Symbol accessedSym, Name name, List<Type> argtypes);
mcimadamore@1347 2228 }
mcimadamore@1347 2229
mcimadamore@1347 2230 LogResolveHelper basicLogResolveHelper = new LogResolveHelper() {
mcimadamore@1347 2231 public boolean resolveDiagnosticNeeded(Type site, List<Type> argtypes, List<Type> typeargtypes) {
mcimadamore@1347 2232 return !site.isErroneous();
mcimadamore@1347 2233 }
mcimadamore@1347 2234 public List<Type> getArgumentTypes(ResolveError errSym, Symbol accessedSym, Name name, List<Type> argtypes) {
mcimadamore@1347 2235 return argtypes;
mcimadamore@1347 2236 }
mcimadamore@1347 2237 };
mcimadamore@1347 2238
mcimadamore@1347 2239 LogResolveHelper methodLogResolveHelper = new LogResolveHelper() {
mcimadamore@1347 2240 public boolean resolveDiagnosticNeeded(Type site, List<Type> argtypes, List<Type> typeargtypes) {
mcimadamore@1347 2241 return !site.isErroneous() &&
mcimadamore@1347 2242 !Type.isErroneous(argtypes) &&
mcimadamore@1347 2243 (typeargtypes == null || !Type.isErroneous(typeargtypes));
mcimadamore@1347 2244 }
mcimadamore@1347 2245 public List<Type> getArgumentTypes(ResolveError errSym, Symbol accessedSym, Name name, List<Type> argtypes) {
mcimadamore@1415 2246 return (syms.operatorNames.contains(name)) ?
mcimadamore@1415 2247 argtypes :
vromero@2000 2248 Type.map(argtypes, new ResolveDeferredRecoveryMap(AttrMode.SPECULATIVE, accessedSym, currentResolutionContext.step));
mcimadamore@1347 2249 }
mcimadamore@1347 2250 };
mcimadamore@1347 2251
vromero@2000 2252 class ResolveDeferredRecoveryMap extends DeferredAttr.RecoveryDeferredTypeMap {
vromero@2000 2253
vromero@2000 2254 public ResolveDeferredRecoveryMap(AttrMode mode, Symbol msym, MethodResolutionPhase step) {
vromero@2000 2255 deferredAttr.super(mode, msym, step);
vromero@2000 2256 }
vromero@2000 2257
vromero@2000 2258 @Override
vromero@2000 2259 protected Type typeOf(DeferredType dt) {
vromero@2000 2260 Type res = super.typeOf(dt);
vromero@2000 2261 if (!res.isErroneous()) {
vromero@2000 2262 switch (TreeInfo.skipParens(dt.tree).getTag()) {
vromero@2000 2263 case LAMBDA:
vromero@2000 2264 case REFERENCE:
vromero@2000 2265 return dt;
vromero@2000 2266 case CONDEXPR:
vromero@2000 2267 return res == Type.recoveryType ?
vromero@2000 2268 dt : res;
vromero@2000 2269 }
vromero@2000 2270 }
vromero@2000 2271 return res;
vromero@2000 2272 }
vromero@2000 2273 }
vromero@2000 2274
duke@1 2275 /** Check that sym is not an abstract method.
duke@1 2276 */
duke@1 2277 void checkNonAbstract(DiagnosticPosition pos, Symbol sym) {
mcimadamore@1393 2278 if ((sym.flags() & ABSTRACT) != 0 && (sym.flags() & DEFAULT) == 0)
duke@1 2279 log.error(pos, "abstract.cant.be.accessed.directly",
duke@1 2280 kindName(sym), sym, sym.location());
duke@1 2281 }
duke@1 2282
duke@1 2283 /* ***************************************************************************
duke@1 2284 * Debugging
duke@1 2285 ****************************************************************************/
duke@1 2286
duke@1 2287 /** print all scopes starting with scope s and proceeding outwards.
duke@1 2288 * used for debugging.
duke@1 2289 */
duke@1 2290 public void printscopes(Scope s) {
duke@1 2291 while (s != null) {
duke@1 2292 if (s.owner != null)
duke@1 2293 System.err.print(s.owner + ": ");
duke@1 2294 for (Scope.Entry e = s.elems; e != null; e = e.sibling) {
duke@1 2295 if ((e.sym.flags() & ABSTRACT) != 0)
duke@1 2296 System.err.print("abstract ");
duke@1 2297 System.err.print(e.sym + " ");
duke@1 2298 }
duke@1 2299 System.err.println();
duke@1 2300 s = s.next;
duke@1 2301 }
duke@1 2302 }
duke@1 2303
duke@1 2304 void printscopes(Env<AttrContext> env) {
duke@1 2305 while (env.outer != null) {
duke@1 2306 System.err.println("------------------------------");
duke@1 2307 printscopes(env.info.scope);
duke@1 2308 env = env.outer;
duke@1 2309 }
duke@1 2310 }
duke@1 2311
duke@1 2312 public void printscopes(Type t) {
jjg@1374 2313 while (t.hasTag(CLASS)) {
duke@1 2314 printscopes(t.tsym.members());
duke@1 2315 t = types.supertype(t);
duke@1 2316 }
duke@1 2317 }
duke@1 2318
duke@1 2319 /* ***************************************************************************
duke@1 2320 * Name resolution
duke@1 2321 * Naming conventions are as for symbol lookup
duke@1 2322 * Unlike the find... methods these methods will report access errors
duke@1 2323 ****************************************************************************/
duke@1 2324
duke@1 2325 /** Resolve an unqualified (non-method) identifier.
duke@1 2326 * @param pos The position to use for error reporting.
duke@1 2327 * @param env The environment current at the identifier use.
duke@1 2328 * @param name The identifier's name.
duke@1 2329 * @param kind The set of admissible symbol kinds for the identifier.
duke@1 2330 */
duke@1 2331 Symbol resolveIdent(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 2332 Name name, int kind) {
mcimadamore@1347 2333 return accessBase(
duke@1 2334 findIdent(env, name, kind),
duke@1 2335 pos, env.enclClass.sym.type, name, false);
duke@1 2336 }
duke@1 2337
duke@1 2338 /** Resolve an unqualified method identifier.
duke@1 2339 * @param pos The position to use for error reporting.
duke@1 2340 * @param env The environment current at the method invocation.
duke@1 2341 * @param name The identifier's name.
duke@1 2342 * @param argtypes The types of the invocation's value arguments.
duke@1 2343 * @param typeargtypes The types of the invocation's type arguments.
duke@1 2344 */
duke@1 2345 Symbol resolveMethod(DiagnosticPosition pos,
duke@1 2346 Env<AttrContext> env,
duke@1 2347 Name name,
duke@1 2348 List<Type> argtypes,
duke@1 2349 List<Type> typeargtypes) {
mcimadamore@1674 2350 return lookupMethod(env, pos, env.enclClass.sym, resolveMethodCheck,
mcimadamore@1674 2351 new BasicLookupHelper(name, env.enclClass.sym.type, argtypes, typeargtypes) {
mcimadamore@1674 2352 @Override
mcimadamore@1875 2353 Symbol doLookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1674 2354 return findFun(env, name, argtypes, typeargtypes,
mcimadamore@1674 2355 phase.isBoxingRequired(),
mcimadamore@1674 2356 phase.isVarargsRequired());
mcimadamore@1674 2357 }});
mcimadamore@689 2358 }
mcimadamore@689 2359
duke@1 2360 /** Resolve a qualified method identifier
duke@1 2361 * @param pos The position to use for error reporting.
duke@1 2362 * @param env The environment current at the method invocation.
duke@1 2363 * @param site The type of the qualifying expression, in which
duke@1 2364 * identifier is searched.
duke@1 2365 * @param name The identifier's name.
duke@1 2366 * @param argtypes The types of the invocation's value arguments.
duke@1 2367 * @param typeargtypes The types of the invocation's type arguments.
duke@1 2368 */
duke@1 2369 Symbol resolveQualifiedMethod(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 2370 Type site, Name name, List<Type> argtypes,
duke@1 2371 List<Type> typeargtypes) {
mcimadamore@829 2372 return resolveQualifiedMethod(pos, env, site.tsym, site, name, argtypes, typeargtypes);
mcimadamore@829 2373 }
mcimadamore@829 2374 Symbol resolveQualifiedMethod(DiagnosticPosition pos, Env<AttrContext> env,
mcimadamore@829 2375 Symbol location, Type site, Name name, List<Type> argtypes,
mcimadamore@829 2376 List<Type> typeargtypes) {
mcimadamore@1215 2377 return resolveQualifiedMethod(new MethodResolutionContext(), pos, env, location, site, name, argtypes, typeargtypes);
mcimadamore@1215 2378 }
mcimadamore@1215 2379 private Symbol resolveQualifiedMethod(MethodResolutionContext resolveContext,
mcimadamore@1215 2380 DiagnosticPosition pos, Env<AttrContext> env,
mcimadamore@1215 2381 Symbol location, Type site, Name name, List<Type> argtypes,
mcimadamore@1215 2382 List<Type> typeargtypes) {
mcimadamore@1394 2383 return lookupMethod(env, pos, location, resolveContext, new BasicLookupHelper(name, site, argtypes, typeargtypes) {
mcimadamore@1394 2384 @Override
mcimadamore@1875 2385 Symbol doLookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1394 2386 return findMethod(env, site, name, argtypes, typeargtypes,
mcimadamore@1394 2387 phase.isBoxingRequired(),
mcimadamore@1394 2388 phase.isVarargsRequired(), false);
mcimadamore@1215 2389 }
mcimadamore@1394 2390 @Override
mcimadamore@1394 2391 Symbol access(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, Symbol sym) {
mcimadamore@1394 2392 if (sym.kind >= AMBIGUOUS) {
mcimadamore@1394 2393 sym = super.access(env, pos, location, sym);
mcimadamore@1394 2394 } else if (allowMethodHandles) {
mcimadamore@1394 2395 MethodSymbol msym = (MethodSymbol)sym;
vromero@1820 2396 if ((msym.flags() & SIGNATURE_POLYMORPHIC) != 0) {
mcimadamore@1394 2397 return findPolymorphicSignatureInstance(env, sym, argtypes);
mcimadamore@1394 2398 }
mcimadamore@1215 2399 }
mcimadamore@1394 2400 return sym;
mcimadamore@674 2401 }
mcimadamore@1394 2402 });
duke@1 2403 }
duke@1 2404
mcimadamore@674 2405 /** Find or create an implicit method of exactly the given type (after erasure).
mcimadamore@674 2406 * Searches in a side table, not the main scope of the site.
mcimadamore@674 2407 * This emulates the lookup process required by JSR 292 in JVM.
mcimadamore@674 2408 * @param env Attribution environment
mcimadamore@1239 2409 * @param spMethod signature polymorphic method - i.e. MH.invokeExact
mcimadamore@1239 2410 * @param argtypes The required argument types
mcimadamore@674 2411 */
mcimadamore@1239 2412 Symbol findPolymorphicSignatureInstance(Env<AttrContext> env,
mcimadamore@1415 2413 final Symbol spMethod,
mcimadamore@820 2414 List<Type> argtypes) {
mcimadamore@674 2415 Type mtype = infer.instantiatePolymorphicSignatureInstance(env,
mcimadamore@1347 2416 (MethodSymbol)spMethod, currentResolutionContext, argtypes);
mcimadamore@1239 2417 for (Symbol sym : polymorphicSignatureScope.getElementsByName(spMethod.name)) {
mcimadamore@1239 2418 if (types.isSameType(mtype, sym.type)) {
mcimadamore@1239 2419 return sym;
mcimadamore@674 2420 }
mcimadamore@674 2421 }
mcimadamore@1239 2422
mcimadamore@1239 2423 // create the desired method
mcimadamore@1239 2424 long flags = ABSTRACT | HYPOTHETICAL | spMethod.flags() & Flags.AccessFlags;
mcimadamore@1415 2425 Symbol msym = new MethodSymbol(flags, spMethod.name, mtype, spMethod.owner) {
mcimadamore@1415 2426 @Override
mcimadamore@1415 2427 public Symbol baseSymbol() {
mcimadamore@1415 2428 return spMethod;
mcimadamore@1415 2429 }
mcimadamore@1415 2430 };
mcimadamore@1239 2431 polymorphicSignatureScope.enter(msym);
mcimadamore@1239 2432 return msym;
mcimadamore@674 2433 }
mcimadamore@674 2434
duke@1 2435 /** Resolve a qualified method identifier, throw a fatal error if not
duke@1 2436 * found.
duke@1 2437 * @param pos The position to use for error reporting.
duke@1 2438 * @param env The environment current at the method invocation.
duke@1 2439 * @param site The type of the qualifying expression, in which
duke@1 2440 * identifier is searched.
duke@1 2441 * @param name The identifier's name.
duke@1 2442 * @param argtypes The types of the invocation's value arguments.
duke@1 2443 * @param typeargtypes The types of the invocation's type arguments.
duke@1 2444 */
duke@1 2445 public MethodSymbol resolveInternalMethod(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 2446 Type site, Name name,
duke@1 2447 List<Type> argtypes,
duke@1 2448 List<Type> typeargtypes) {
mcimadamore@1215 2449 MethodResolutionContext resolveContext = new MethodResolutionContext();
mcimadamore@1215 2450 resolveContext.internalResolution = true;
mcimadamore@1215 2451 Symbol sym = resolveQualifiedMethod(resolveContext, pos, env, site.tsym,
mcimadamore@1215 2452 site, name, argtypes, typeargtypes);
mcimadamore@1215 2453 if (sym.kind == MTH) return (MethodSymbol)sym;
mcimadamore@1215 2454 else throw new FatalError(
mcimadamore@1215 2455 diags.fragment("fatal.err.cant.locate.meth",
mcimadamore@1215 2456 name));
duke@1 2457 }
duke@1 2458
duke@1 2459 /** Resolve constructor.
duke@1 2460 * @param pos The position to use for error reporting.
duke@1 2461 * @param env The environment current at the constructor invocation.
duke@1 2462 * @param site The type of class for which a constructor is searched.
duke@1 2463 * @param argtypes The types of the constructor invocation's value
duke@1 2464 * arguments.
duke@1 2465 * @param typeargtypes The types of the constructor invocation's type
duke@1 2466 * arguments.
duke@1 2467 */
duke@1 2468 Symbol resolveConstructor(DiagnosticPosition pos,
duke@1 2469 Env<AttrContext> env,
duke@1 2470 Type site,
duke@1 2471 List<Type> argtypes,
duke@1 2472 List<Type> typeargtypes) {
mcimadamore@1215 2473 return resolveConstructor(new MethodResolutionContext(), pos, env, site, argtypes, typeargtypes);
mcimadamore@1215 2474 }
mcimadamore@1394 2475
mcimadamore@1215 2476 private Symbol resolveConstructor(MethodResolutionContext resolveContext,
mcimadamore@1394 2477 final DiagnosticPosition pos,
mcimadamore@1215 2478 Env<AttrContext> env,
mcimadamore@1215 2479 Type site,
mcimadamore@1215 2480 List<Type> argtypes,
mcimadamore@1215 2481 List<Type> typeargtypes) {
mcimadamore@1394 2482 return lookupMethod(env, pos, site.tsym, resolveContext, new BasicLookupHelper(names.init, site, argtypes, typeargtypes) {
mcimadamore@1394 2483 @Override
mcimadamore@1875 2484 Symbol doLookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1394 2485 return findConstructor(pos, env, site, argtypes, typeargtypes,
mcimadamore@1394 2486 phase.isBoxingRequired(),
mcimadamore@1394 2487 phase.isVarargsRequired());
mcimadamore@1215 2488 }
mcimadamore@1394 2489 });
mcimadamore@1394 2490 }
mcimadamore@1394 2491
mcimadamore@1394 2492 /** Resolve a constructor, throw a fatal error if not found.
mcimadamore@1394 2493 * @param pos The position to use for error reporting.
mcimadamore@1394 2494 * @param env The environment current at the method invocation.
mcimadamore@1394 2495 * @param site The type to be constructed.
mcimadamore@1394 2496 * @param argtypes The types of the invocation's value arguments.
mcimadamore@1394 2497 * @param typeargtypes The types of the invocation's type arguments.
mcimadamore@1394 2498 */
mcimadamore@1394 2499 public MethodSymbol resolveInternalConstructor(DiagnosticPosition pos, Env<AttrContext> env,
mcimadamore@1394 2500 Type site,
mcimadamore@1394 2501 List<Type> argtypes,
mcimadamore@1394 2502 List<Type> typeargtypes) {
mcimadamore@1394 2503 MethodResolutionContext resolveContext = new MethodResolutionContext();
mcimadamore@1394 2504 resolveContext.internalResolution = true;
mcimadamore@1394 2505 Symbol sym = resolveConstructor(resolveContext, pos, env, site, argtypes, typeargtypes);
mcimadamore@1394 2506 if (sym.kind == MTH) return (MethodSymbol)sym;
mcimadamore@1394 2507 else throw new FatalError(
mcimadamore@1394 2508 diags.fragment("fatal.err.cant.locate.ctor", site));
mcimadamore@1394 2509 }
mcimadamore@1394 2510
mcimadamore@1394 2511 Symbol findConstructor(DiagnosticPosition pos, Env<AttrContext> env,
mcimadamore@1394 2512 Type site, List<Type> argtypes,
mcimadamore@1394 2513 List<Type> typeargtypes,
mcimadamore@1394 2514 boolean allowBoxing,
mcimadamore@1394 2515 boolean useVarargs) {
mcimadamore@1394 2516 Symbol sym = findMethod(env, site,
mcimadamore@1394 2517 names.init, argtypes,
mcimadamore@1394 2518 typeargtypes, allowBoxing,
mcimadamore@1394 2519 useVarargs, false);
mcimadamore@1394 2520 chk.checkDeprecated(pos, env.info.scope.owner, sym);
mcimadamore@1394 2521 return sym;
duke@1 2522 }
duke@1 2523
mcimadamore@537 2524 /** Resolve constructor using diamond inference.
mcimadamore@537 2525 * @param pos The position to use for error reporting.
mcimadamore@537 2526 * @param env The environment current at the constructor invocation.
mcimadamore@537 2527 * @param site The type of class for which a constructor is searched.
mcimadamore@537 2528 * The scope of this class has been touched in attribution.
mcimadamore@537 2529 * @param argtypes The types of the constructor invocation's value
mcimadamore@537 2530 * arguments.
mcimadamore@537 2531 * @param typeargtypes The types of the constructor invocation's type
mcimadamore@537 2532 * arguments.
mcimadamore@537 2533 */
mcimadamore@537 2534 Symbol resolveDiamond(DiagnosticPosition pos,
mcimadamore@537 2535 Env<AttrContext> env,
mcimadamore@537 2536 Type site,
mcimadamore@537 2537 List<Type> argtypes,
mcimadamore@631 2538 List<Type> typeargtypes) {
mcimadamore@1674 2539 return lookupMethod(env, pos, site.tsym, resolveMethodCheck,
mcimadamore@1674 2540 new BasicLookupHelper(names.init, site, argtypes, typeargtypes) {
mcimadamore@1674 2541 @Override
mcimadamore@1875 2542 Symbol doLookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1674 2543 return findDiamond(env, site, argtypes, typeargtypes,
mcimadamore@1674 2544 phase.isBoxingRequired(),
mcimadamore@1674 2545 phase.isVarargsRequired());
mcimadamore@1674 2546 }
mcimadamore@1674 2547 @Override
mcimadamore@1674 2548 Symbol access(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, Symbol sym) {
mcimadamore@1674 2549 if (sym.kind >= AMBIGUOUS) {
vromero@2026 2550 if (sym.kind != WRONG_MTH && sym.kind != WRONG_MTHS) {
vromero@2003 2551 sym = super.access(env, pos, location, sym);
vromero@2003 2552 } else {
vromero@2003 2553 final JCDiagnostic details = sym.kind == WRONG_MTH ?
vromero@2003 2554 ((InapplicableSymbolError)sym).errCandidate().snd :
vromero@2003 2555 null;
vromero@2003 2556 sym = new InapplicableSymbolError(sym.kind, "diamondError", currentResolutionContext) {
vromero@2003 2557 @Override
vromero@2003 2558 JCDiagnostic getDiagnostic(DiagnosticType dkind, DiagnosticPosition pos,
vromero@2003 2559 Symbol location, Type site, Name name, List<Type> argtypes, List<Type> typeargtypes) {
vromero@2003 2560 String key = details == null ?
vromero@2003 2561 "cant.apply.diamond" :
vromero@2003 2562 "cant.apply.diamond.1";
vromero@2003 2563 return diags.create(dkind, log.currentSource(), pos, key,
vromero@2003 2564 diags.fragment("diamond", site.tsym), details);
vromero@2003 2565 }
vromero@2003 2566 };
vromero@2003 2567 sym = accessMethod(sym, pos, site, names.init, true, argtypes, typeargtypes);
vromero@2003 2568 env.info.pendingResolutionPhase = currentResolutionContext.step;
vromero@2003 2569 }
mcimadamore@1394 2570 }
mcimadamore@1674 2571 return sym;
mcimadamore@1674 2572 }});
mcimadamore@537 2573 }
mcimadamore@537 2574
mcimadamore@1217 2575 /** This method scans all the constructor symbol in a given class scope -
mcimadamore@1217 2576 * assuming that the original scope contains a constructor of the kind:
jjg@1326 2577 * {@code Foo(X x, Y y)}, where X,Y are class type-variables declared in Foo,
mcimadamore@1217 2578 * a method check is executed against the modified constructor type:
jjg@1326 2579 * {@code <X,Y>Foo<X,Y>(X x, Y y)}. This is crucial in order to enable diamond
mcimadamore@1217 2580 * inference. The inferred return type of the synthetic constructor IS
mcimadamore@1217 2581 * the inferred type for the diamond operator.
mcimadamore@1217 2582 */
mcimadamore@1217 2583 private Symbol findDiamond(Env<AttrContext> env,
mcimadamore@1217 2584 Type site,
mcimadamore@1217 2585 List<Type> argtypes,
mcimadamore@1217 2586 List<Type> typeargtypes,
mcimadamore@1217 2587 boolean allowBoxing,
mcimadamore@1217 2588 boolean useVarargs) {
mcimadamore@1217 2589 Symbol bestSoFar = methodNotFound;
mcimadamore@1217 2590 for (Scope.Entry e = site.tsym.members().lookup(names.init);
mcimadamore@1217 2591 e.scope != null;
mcimadamore@1217 2592 e = e.next()) {
mcimadamore@1341 2593 final Symbol sym = e.sym;
mcimadamore@1217 2594 //- System.out.println(" e " + e.sym);
mcimadamore@1341 2595 if (sym.kind == MTH &&
mcimadamore@1341 2596 (sym.flags_field & SYNTHETIC) == 0) {
jjg@1374 2597 List<Type> oldParams = e.sym.type.hasTag(FORALL) ?
mcimadamore@1341 2598 ((ForAll)sym.type).tvars :
mcimadamore@1217 2599 List.<Type>nil();
mcimadamore@1217 2600 Type constrType = new ForAll(site.tsym.type.getTypeArguments().appendList(oldParams),
mcimadamore@1341 2601 types.createMethodTypeWithReturn(sym.type.asMethodType(), site));
mcimadamore@1341 2602 MethodSymbol newConstr = new MethodSymbol(sym.flags(), names.init, constrType, site.tsym) {
mcimadamore@1341 2603 @Override
mcimadamore@1341 2604 public Symbol baseSymbol() {
mcimadamore@1341 2605 return sym;
mcimadamore@1341 2606 }
mcimadamore@1341 2607 };
mcimadamore@1217 2608 bestSoFar = selectBest(env, site, argtypes, typeargtypes,
mcimadamore@1341 2609 newConstr,
mcimadamore@1217 2610 bestSoFar,
mcimadamore@1217 2611 allowBoxing,
mcimadamore@1217 2612 useVarargs,
mcimadamore@1217 2613 false);
mcimadamore@1217 2614 }
mcimadamore@1217 2615 }
mcimadamore@1217 2616 return bestSoFar;
mcimadamore@1217 2617 }
mcimadamore@1217 2618
mcimadamore@1394 2619
mcimadamore@1394 2620
mcimadamore@1394 2621 /** Resolve operator.
mcimadamore@1394 2622 * @param pos The position to use for error reporting.
mcimadamore@1394 2623 * @param optag The tag of the operation tree.
mcimadamore@1394 2624 * @param env The environment current at the operation.
mcimadamore@1394 2625 * @param argtypes The types of the operands.
mcimadamore@1394 2626 */
mcimadamore@1394 2627 Symbol resolveOperator(DiagnosticPosition pos, JCTree.Tag optag,
mcimadamore@1394 2628 Env<AttrContext> env, List<Type> argtypes) {
mcimadamore@1394 2629 MethodResolutionContext prevResolutionContext = currentResolutionContext;
mcimadamore@1394 2630 try {
mcimadamore@1394 2631 currentResolutionContext = new MethodResolutionContext();
mcimadamore@1394 2632 Name name = treeinfo.operatorName(optag);
mcimadamore@1779 2633 return lookupMethod(env, pos, syms.predefClass, currentResolutionContext,
mcimadamore@1779 2634 new BasicLookupHelper(name, syms.predefClass.type, argtypes, null, BOX) {
mcimadamore@1779 2635 @Override
mcimadamore@1875 2636 Symbol doLookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1779 2637 return findMethod(env, site, name, argtypes, typeargtypes,
mcimadamore@1779 2638 phase.isBoxingRequired(),
mcimadamore@1779 2639 phase.isVarargsRequired(), true);
mcimadamore@1779 2640 }
mcimadamore@1779 2641 @Override
mcimadamore@1779 2642 Symbol access(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, Symbol sym) {
mcimadamore@1779 2643 return accessMethod(sym, pos, env.enclClass.sym.type, name,
mcimadamore@1394 2644 false, argtypes, null);
mcimadamore@1779 2645 }
mcimadamore@1779 2646 });
mcimadamore@1779 2647 } finally {
mcimadamore@1394 2648 currentResolutionContext = prevResolutionContext;
mcimadamore@1394 2649 }
mcimadamore@1394 2650 }
mcimadamore@1394 2651
mcimadamore@1394 2652 /** Resolve operator.
mcimadamore@1394 2653 * @param pos The position to use for error reporting.
mcimadamore@1394 2654 * @param optag The tag of the operation tree.
mcimadamore@1394 2655 * @param env The environment current at the operation.
mcimadamore@1394 2656 * @param arg The type of the operand.
mcimadamore@1394 2657 */
mcimadamore@1394 2658 Symbol resolveUnaryOperator(DiagnosticPosition pos, JCTree.Tag optag, Env<AttrContext> env, Type arg) {
mcimadamore@1394 2659 return resolveOperator(pos, optag, env, List.of(arg));
mcimadamore@1394 2660 }
mcimadamore@1394 2661
mcimadamore@1394 2662 /** Resolve binary operator.
mcimadamore@1394 2663 * @param pos The position to use for error reporting.
mcimadamore@1394 2664 * @param optag The tag of the operation tree.
mcimadamore@1394 2665 * @param env The environment current at the operation.
mcimadamore@1394 2666 * @param left The types of the left operand.
mcimadamore@1394 2667 * @param right The types of the right operand.
mcimadamore@1394 2668 */
mcimadamore@1394 2669 Symbol resolveBinaryOperator(DiagnosticPosition pos,
mcimadamore@1394 2670 JCTree.Tag optag,
mcimadamore@1394 2671 Env<AttrContext> env,
mcimadamore@1394 2672 Type left,
mcimadamore@1394 2673 Type right) {
mcimadamore@1394 2674 return resolveOperator(pos, optag, env, List.of(left, right));
mcimadamore@1394 2675 }
mcimadamore@1394 2676
mcimadamore@1352 2677 /**
mcimadamore@1352 2678 * Resolution of member references is typically done as a single
mcimadamore@1352 2679 * overload resolution step, where the argument types A are inferred from
mcimadamore@1352 2680 * the target functional descriptor.
mcimadamore@1352 2681 *
mcimadamore@1352 2682 * If the member reference is a method reference with a type qualifier,
mcimadamore@1352 2683 * a two-step lookup process is performed. The first step uses the
mcimadamore@1352 2684 * expected argument list A, while the second step discards the first
mcimadamore@1352 2685 * type from A (which is treated as a receiver type).
mcimadamore@1352 2686 *
mcimadamore@1352 2687 * There are two cases in which inference is performed: (i) if the member
mcimadamore@1352 2688 * reference is a constructor reference and the qualifier type is raw - in
mcimadamore@1352 2689 * which case diamond inference is used to infer a parameterization for the
mcimadamore@1352 2690 * type qualifier; (ii) if the member reference is an unbound reference
mcimadamore@1352 2691 * where the type qualifier is raw - in that case, during the unbound lookup
mcimadamore@1352 2692 * the receiver argument type is used to infer an instantiation for the raw
mcimadamore@1352 2693 * qualifier type.
mcimadamore@1352 2694 *
mcimadamore@1352 2695 * When a multi-step resolution process is exploited, it is an error
mcimadamore@1352 2696 * if two candidates are found (ambiguity).
mcimadamore@1352 2697 *
mcimadamore@1352 2698 * This routine returns a pair (T,S), where S is the member reference symbol,
mcimadamore@1352 2699 * and T is the type of the class in which S is defined. This is necessary as
mcimadamore@1352 2700 * the type T might be dynamically inferred (i.e. if constructor reference
mcimadamore@1352 2701 * has a raw qualifier).
mcimadamore@1352 2702 */
mcimadamore@1352 2703 Pair<Symbol, ReferenceLookupHelper> resolveMemberReference(DiagnosticPosition pos,
mcimadamore@1352 2704 Env<AttrContext> env,
mcimadamore@1352 2705 JCMemberReference referenceTree,
mcimadamore@1352 2706 Type site,
mcimadamore@1352 2707 Name name, List<Type> argtypes,
mcimadamore@1352 2708 List<Type> typeargtypes,
mcimadamore@1674 2709 boolean boxingAllowed,
mcimadamore@1897 2710 MethodCheck methodCheck,
mcimadamore@1897 2711 InferenceContext inferenceContext) {
mcimadamore@1394 2712 MethodResolutionPhase maxPhase = boxingAllowed ? VARARITY : BASIC;
mcimadamore@1496 2713
mcimadamore@1921 2714 site = types.capture(site);
mcimadamore@1921 2715
mcimadamore@1496 2716 ReferenceLookupHelper boundLookupHelper;
mcimadamore@1496 2717 if (!name.equals(names.init)) {
mcimadamore@1496 2718 //method reference
mcimadamore@1496 2719 boundLookupHelper =
mcimadamore@1496 2720 new MethodReferenceLookupHelper(referenceTree, name, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1496 2721 } else if (site.hasTag(ARRAY)) {
mcimadamore@1496 2722 //array constructor reference
mcimadamore@1496 2723 boundLookupHelper =
mcimadamore@1496 2724 new ArrayConstructorReferenceLookupHelper(referenceTree, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1496 2725 } else {
mcimadamore@1496 2726 //class constructor reference
mcimadamore@1496 2727 boundLookupHelper =
mcimadamore@1496 2728 new ConstructorReferenceLookupHelper(referenceTree, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1496 2729 }
mcimadamore@1496 2730
mcimadamore@1352 2731 //step 1 - bound lookup
mcimadamore@1352 2732 Env<AttrContext> boundEnv = env.dup(env.tree, env.info.dup());
mcimadamore@1674 2733 Symbol boundSym = lookupMethod(boundEnv, env.tree.pos(), site.tsym, methodCheck, boundLookupHelper);
mcimadamore@1352 2734
mcimadamore@1352 2735 //step 2 - unbound lookup
mcimadamore@1897 2736 ReferenceLookupHelper unboundLookupHelper = boundLookupHelper.unboundLookup(inferenceContext);
mcimadamore@1352 2737 Env<AttrContext> unboundEnv = env.dup(env.tree, env.info.dup());
mcimadamore@1674 2738 Symbol unboundSym = lookupMethod(unboundEnv, env.tree.pos(), site.tsym, methodCheck, unboundLookupHelper);
mcimadamore@1352 2739
mcimadamore@1352 2740 //merge results
mcimadamore@1352 2741 Pair<Symbol, ReferenceLookupHelper> res;
mcimadamore@1921 2742 Symbol bestSym = choose(boundSym, unboundSym);
mcimadamore@1921 2743 res = new Pair<Symbol, ReferenceLookupHelper>(bestSym,
mcimadamore@1921 2744 bestSym == unboundSym ? unboundLookupHelper : boundLookupHelper);
mcimadamore@1921 2745 env.info.pendingResolutionPhase = bestSym == unboundSym ?
mcimadamore@1921 2746 unboundEnv.info.pendingResolutionPhase :
mcimadamore@1921 2747 boundEnv.info.pendingResolutionPhase;
mcimadamore@1352 2748
mcimadamore@1352 2749 return res;
mcimadamore@1352 2750 }
mcimadamore@1921 2751 //where
mcimadamore@1921 2752 private Symbol choose(Symbol s1, Symbol s2) {
mcimadamore@1921 2753 if (lookupSuccess(s1) && lookupSuccess(s2)) {
mcimadamore@1921 2754 return ambiguityError(s1, s2);
mcimadamore@1921 2755 } else if (lookupSuccess(s1) ||
mcimadamore@1921 2756 (canIgnore(s2) && !canIgnore(s1))) {
mcimadamore@1921 2757 return s1;
mcimadamore@1921 2758 } else if (lookupSuccess(s2) ||
mcimadamore@1921 2759 (canIgnore(s1) && !canIgnore(s2))) {
mcimadamore@1921 2760 return s2;
mcimadamore@1921 2761 } else {
mcimadamore@1921 2762 return s1;
mcimadamore@1921 2763 }
mcimadamore@1921 2764 }
mcimadamore@1921 2765
mcimadamore@1921 2766 private boolean lookupSuccess(Symbol s) {
mcimadamore@1581 2767 return s.kind == MTH || s.kind == AMBIGUOUS;
mcimadamore@1581 2768 }
mcimadamore@1352 2769
mcimadamore@1921 2770 private boolean canIgnore(Symbol s) {
mcimadamore@1921 2771 switch (s.kind) {
mcimadamore@1921 2772 case ABSENT_MTH:
mcimadamore@1921 2773 return true;
mcimadamore@1921 2774 case WRONG_MTH:
mcimadamore@1921 2775 InapplicableSymbolError errSym =
mcimadamore@1921 2776 (InapplicableSymbolError)s;
mcimadamore@1921 2777 return new Template(MethodCheckDiag.ARITY_MISMATCH.regex())
mcimadamore@1921 2778 .matches(errSym.errCandidate().snd);
mcimadamore@1921 2779 case WRONG_MTHS:
mcimadamore@1921 2780 InapplicableSymbolsError errSyms =
mcimadamore@1921 2781 (InapplicableSymbolsError)s;
mcimadamore@1921 2782 return errSyms.filterCandidates(errSyms.mapCandidates()).isEmpty();
mcimadamore@1921 2783 default:
mcimadamore@1921 2784 return false;
mcimadamore@1921 2785 }
mcimadamore@1921 2786 }
mcimadamore@1921 2787
mcimadamore@1352 2788 /**
mcimadamore@1352 2789 * Helper for defining custom method-like lookup logic; a lookup helper
mcimadamore@1352 2790 * provides hooks for (i) the actual lookup logic and (ii) accessing the
mcimadamore@1352 2791 * lookup result (this step might result in compiler diagnostics to be generated)
mcimadamore@1352 2792 */
mcimadamore@1352 2793 abstract class LookupHelper {
mcimadamore@1352 2794
mcimadamore@1352 2795 /** name of the symbol to lookup */
mcimadamore@1352 2796 Name name;
mcimadamore@1352 2797
mcimadamore@1352 2798 /** location in which the lookup takes place */
mcimadamore@1352 2799 Type site;
mcimadamore@1352 2800
mcimadamore@1352 2801 /** actual types used during the lookup */
mcimadamore@1352 2802 List<Type> argtypes;
mcimadamore@1352 2803
mcimadamore@1352 2804 /** type arguments used during the lookup */
mcimadamore@1352 2805 List<Type> typeargtypes;
mcimadamore@1352 2806
mcimadamore@1394 2807 /** Max overload resolution phase handled by this helper */
mcimadamore@1394 2808 MethodResolutionPhase maxPhase;
mcimadamore@1394 2809
mcimadamore@1394 2810 LookupHelper(Name name, Type site, List<Type> argtypes, List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1352 2811 this.name = name;
mcimadamore@1352 2812 this.site = site;
mcimadamore@1352 2813 this.argtypes = argtypes;
mcimadamore@1352 2814 this.typeargtypes = typeargtypes;
mcimadamore@1394 2815 this.maxPhase = maxPhase;
mcimadamore@1394 2816 }
mcimadamore@1394 2817
mcimadamore@1394 2818 /**
mcimadamore@1394 2819 * Should lookup stop at given phase with given result
mcimadamore@1394 2820 */
mcimadamore@1394 2821 protected boolean shouldStop(Symbol sym, MethodResolutionPhase phase) {
mcimadamore@1394 2822 return phase.ordinal() > maxPhase.ordinal() ||
mcimadamore@1394 2823 sym.kind < ERRONEOUS || sym.kind == AMBIGUOUS;
mcimadamore@1352 2824 }
mcimadamore@1352 2825
mcimadamore@1352 2826 /**
mcimadamore@1352 2827 * Search for a symbol under a given overload resolution phase - this method
mcimadamore@1352 2828 * is usually called several times, once per each overload resolution phase
mcimadamore@1352 2829 */
mcimadamore@1352 2830 abstract Symbol lookup(Env<AttrContext> env, MethodResolutionPhase phase);
mcimadamore@1352 2831
mcimadamore@1352 2832 /**
mcimadamore@1875 2833 * Dump overload resolution info
mcimadamore@1875 2834 */
mcimadamore@1875 2835 void debug(DiagnosticPosition pos, Symbol sym) {
mcimadamore@1875 2836 //do nothing
mcimadamore@1875 2837 }
mcimadamore@1875 2838
mcimadamore@1875 2839 /**
mcimadamore@1352 2840 * Validate the result of the lookup
mcimadamore@1352 2841 */
mcimadamore@1394 2842 abstract Symbol access(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, Symbol sym);
mcimadamore@1394 2843 }
mcimadamore@1394 2844
mcimadamore@1394 2845 abstract class BasicLookupHelper extends LookupHelper {
mcimadamore@1394 2846
mcimadamore@1394 2847 BasicLookupHelper(Name name, Type site, List<Type> argtypes, List<Type> typeargtypes) {
mcimadamore@1779 2848 this(name, site, argtypes, typeargtypes, MethodResolutionPhase.VARARITY);
mcimadamore@1779 2849 }
mcimadamore@1779 2850
mcimadamore@1779 2851 BasicLookupHelper(Name name, Type site, List<Type> argtypes, List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1779 2852 super(name, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1394 2853 }
mcimadamore@1394 2854
mcimadamore@1394 2855 @Override
mcimadamore@1875 2856 final Symbol lookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1875 2857 Symbol sym = doLookup(env, phase);
mcimadamore@1480 2858 if (sym.kind == AMBIGUOUS) {
mcimadamore@1480 2859 AmbiguityError a_err = (AmbiguityError)sym;
mcimadamore@1480 2860 sym = a_err.mergeAbstracts(site);
mcimadamore@1480 2861 }
mcimadamore@1875 2862 return sym;
mcimadamore@1875 2863 }
mcimadamore@1875 2864
mcimadamore@1875 2865 abstract Symbol doLookup(Env<AttrContext> env, MethodResolutionPhase phase);
mcimadamore@1875 2866
mcimadamore@1875 2867 @Override
mcimadamore@1875 2868 Symbol access(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, Symbol sym) {
mcimadamore@1394 2869 if (sym.kind >= AMBIGUOUS) {
mcimadamore@1394 2870 //if nothing is found return the 'first' error
mcimadamore@1394 2871 sym = accessMethod(sym, pos, location, site, name, true, argtypes, typeargtypes);
mcimadamore@1394 2872 }
mcimadamore@1394 2873 return sym;
mcimadamore@1394 2874 }
mcimadamore@1875 2875
mcimadamore@1875 2876 @Override
mcimadamore@1875 2877 void debug(DiagnosticPosition pos, Symbol sym) {
mcimadamore@1875 2878 reportVerboseResolutionDiagnostic(pos, name, site, argtypes, typeargtypes, sym);
mcimadamore@1875 2879 }
mcimadamore@1352 2880 }
mcimadamore@1352 2881
mcimadamore@1352 2882 /**
mcimadamore@1352 2883 * Helper class for member reference lookup. A reference lookup helper
mcimadamore@1352 2884 * defines the basic logic for member reference lookup; a method gives
mcimadamore@1352 2885 * access to an 'unbound' helper used to perform an unbound member
mcimadamore@1352 2886 * reference lookup.
mcimadamore@1352 2887 */
mcimadamore@1352 2888 abstract class ReferenceLookupHelper extends LookupHelper {
mcimadamore@1352 2889
mcimadamore@1352 2890 /** The member reference tree */
mcimadamore@1352 2891 JCMemberReference referenceTree;
mcimadamore@1352 2892
mcimadamore@1352 2893 ReferenceLookupHelper(JCMemberReference referenceTree, Name name, Type site,
mcimadamore@1394 2894 List<Type> argtypes, List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1394 2895 super(name, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1352 2896 this.referenceTree = referenceTree;
mcimadamore@1394 2897
mcimadamore@1352 2898 }
mcimadamore@1352 2899
mcimadamore@1352 2900 /**
mcimadamore@1352 2901 * Returns an unbound version of this lookup helper. By default, this
mcimadamore@1352 2902 * method returns an dummy lookup helper.
mcimadamore@1352 2903 */
mcimadamore@1897 2904 ReferenceLookupHelper unboundLookup(InferenceContext inferenceContext) {
mcimadamore@1352 2905 //dummy loopkup helper that always return 'methodNotFound'
mcimadamore@1394 2906 return new ReferenceLookupHelper(referenceTree, name, site, argtypes, typeargtypes, maxPhase) {
mcimadamore@1352 2907 @Override
mcimadamore@1897 2908 ReferenceLookupHelper unboundLookup(InferenceContext inferenceContext) {
mcimadamore@1352 2909 return this;
mcimadamore@1352 2910 }
mcimadamore@1352 2911 @Override
mcimadamore@1394 2912 Symbol lookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1352 2913 return methodNotFound;
mcimadamore@1352 2914 }
mcimadamore@1352 2915 @Override
mcimadamore@1352 2916 ReferenceKind referenceKind(Symbol sym) {
mcimadamore@1352 2917 Assert.error();
mcimadamore@1352 2918 return null;
mcimadamore@1352 2919 }
mcimadamore@1352 2920 };
mcimadamore@1352 2921 }
mcimadamore@1352 2922
mcimadamore@1352 2923 /**
mcimadamore@1352 2924 * Get the kind of the member reference
mcimadamore@1352 2925 */
mcimadamore@1352 2926 abstract JCMemberReference.ReferenceKind referenceKind(Symbol sym);
mcimadamore@1352 2927
mcimadamore@1394 2928 Symbol access(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, Symbol sym) {
mcimadamore@1480 2929 if (sym.kind == AMBIGUOUS) {
mcimadamore@1480 2930 AmbiguityError a_err = (AmbiguityError)sym;
mcimadamore@1480 2931 sym = a_err.mergeAbstracts(site);
mcimadamore@1480 2932 }
mcimadamore@1394 2933 //skip error reporting
mcimadamore@1352 2934 return sym;
mcimadamore@1352 2935 }
mcimadamore@1352 2936 }
mcimadamore@1352 2937
mcimadamore@1352 2938 /**
mcimadamore@1352 2939 * Helper class for method reference lookup. The lookup logic is based
mcimadamore@1352 2940 * upon Resolve.findMethod; in certain cases, this helper class has a
mcimadamore@1352 2941 * corresponding unbound helper class (see UnboundMethodReferenceLookupHelper).
mcimadamore@1352 2942 * In such cases, non-static lookup results are thrown away.
mcimadamore@1352 2943 */
mcimadamore@1352 2944 class MethodReferenceLookupHelper extends ReferenceLookupHelper {
mcimadamore@1352 2945
mcimadamore@1352 2946 MethodReferenceLookupHelper(JCMemberReference referenceTree, Name name, Type site,
mcimadamore@1394 2947 List<Type> argtypes, List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1394 2948 super(referenceTree, name, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1352 2949 }
mcimadamore@1352 2950
mcimadamore@1610 2951 @Override
mcimadamore@1610 2952 final Symbol lookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1352 2953 return findMethod(env, site, name, argtypes, typeargtypes,
mcimadamore@1352 2954 phase.isBoxingRequired(), phase.isVarargsRequired(), syms.operatorNames.contains(name));
mcimadamore@1352 2955 }
mcimadamore@1352 2956
mcimadamore@1352 2957 @Override
mcimadamore@1897 2958 ReferenceLookupHelper unboundLookup(InferenceContext inferenceContext) {
mcimadamore@1352 2959 if (TreeInfo.isStaticSelector(referenceTree.expr, names) &&
mcimadamore@1352 2960 argtypes.nonEmpty() &&
mcimadamore@1897 2961 (argtypes.head.hasTag(NONE) ||
mcimadamore@1897 2962 types.isSubtypeUnchecked(inferenceContext.asFree(argtypes.head), site))) {
mcimadamore@1352 2963 return new UnboundMethodReferenceLookupHelper(referenceTree, name,
mcimadamore@1394 2964 site, argtypes, typeargtypes, maxPhase);
mcimadamore@1352 2965 } else {
mcimadamore@1897 2966 return super.unboundLookup(inferenceContext);
mcimadamore@1352 2967 }
mcimadamore@1352 2968 }
mcimadamore@1352 2969
mcimadamore@1352 2970 @Override
mcimadamore@1352 2971 ReferenceKind referenceKind(Symbol sym) {
mcimadamore@1352 2972 if (sym.isStatic()) {
mcimadamore@1435 2973 return ReferenceKind.STATIC;
mcimadamore@1352 2974 } else {
mcimadamore@1352 2975 Name selName = TreeInfo.name(referenceTree.getQualifierExpression());
mcimadamore@1352 2976 return selName != null && selName == names._super ?
mcimadamore@1352 2977 ReferenceKind.SUPER :
mcimadamore@1352 2978 ReferenceKind.BOUND;
mcimadamore@1352 2979 }
mcimadamore@1352 2980 }
mcimadamore@1352 2981 }
mcimadamore@1352 2982
mcimadamore@1352 2983 /**
mcimadamore@1352 2984 * Helper class for unbound method reference lookup. Essentially the same
mcimadamore@1352 2985 * as the basic method reference lookup helper; main difference is that static
mcimadamore@1352 2986 * lookup results are thrown away. If qualifier type is raw, an attempt to
mcimadamore@1352 2987 * infer a parameterized type is made using the first actual argument (that
mcimadamore@1352 2988 * would otherwise be ignored during the lookup).
mcimadamore@1352 2989 */
mcimadamore@1352 2990 class UnboundMethodReferenceLookupHelper extends MethodReferenceLookupHelper {
mcimadamore@1352 2991
mcimadamore@1352 2992 UnboundMethodReferenceLookupHelper(JCMemberReference referenceTree, Name name, Type site,
mcimadamore@1394 2993 List<Type> argtypes, List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1581 2994 super(referenceTree, name, site, argtypes.tail, typeargtypes, maxPhase);
mcimadamore@1674 2995 if (site.isRaw() && !argtypes.head.hasTag(NONE)) {
mcimadamore@1674 2996 Type asSuperSite = types.asSuper(argtypes.head, site.tsym);
mcimadamore@1581 2997 this.site = asSuperSite;
mcimadamore@1581 2998 }
mcimadamore@1352 2999 }
mcimadamore@1352 3000
mcimadamore@1352 3001 @Override
mcimadamore@1897 3002 ReferenceLookupHelper unboundLookup(InferenceContext inferenceContext) {
mcimadamore@1352 3003 return this;
mcimadamore@1352 3004 }
mcimadamore@1352 3005
mcimadamore@1352 3006 @Override
mcimadamore@1352 3007 ReferenceKind referenceKind(Symbol sym) {
mcimadamore@1352 3008 return ReferenceKind.UNBOUND;
mcimadamore@1352 3009 }
mcimadamore@1352 3010 }
mcimadamore@1352 3011
mcimadamore@1352 3012 /**
mcimadamore@1496 3013 * Helper class for array constructor lookup; an array constructor lookup
mcimadamore@1496 3014 * is simulated by looking up a method that returns the array type specified
mcimadamore@1496 3015 * as qualifier, and that accepts a single int parameter (size of the array).
mcimadamore@1496 3016 */
mcimadamore@1496 3017 class ArrayConstructorReferenceLookupHelper extends ReferenceLookupHelper {
mcimadamore@1496 3018
mcimadamore@1496 3019 ArrayConstructorReferenceLookupHelper(JCMemberReference referenceTree, Type site, List<Type> argtypes,
mcimadamore@1496 3020 List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1496 3021 super(referenceTree, names.init, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1496 3022 }
mcimadamore@1496 3023
mcimadamore@1496 3024 @Override
mcimadamore@1496 3025 protected Symbol lookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1496 3026 Scope sc = new Scope(syms.arrayClass);
mcimadamore@1496 3027 MethodSymbol arrayConstr = new MethodSymbol(PUBLIC, name, null, site.tsym);
vromero@1853 3028 arrayConstr.type = new MethodType(List.<Type>of(syms.intType), site, List.<Type>nil(), syms.methodClass);
mcimadamore@1496 3029 sc.enter(arrayConstr);
mcimadamore@1496 3030 return findMethodInScope(env, site, name, argtypes, typeargtypes, sc, methodNotFound, phase.isBoxingRequired(), phase.isVarargsRequired(), false, false);
mcimadamore@1496 3031 }
mcimadamore@1496 3032
mcimadamore@1496 3033 @Override
mcimadamore@1496 3034 ReferenceKind referenceKind(Symbol sym) {
mcimadamore@1496 3035 return ReferenceKind.ARRAY_CTOR;
mcimadamore@1496 3036 }
mcimadamore@1496 3037 }
mcimadamore@1496 3038
mcimadamore@1496 3039 /**
mcimadamore@1352 3040 * Helper class for constructor reference lookup. The lookup logic is based
mcimadamore@1352 3041 * upon either Resolve.findMethod or Resolve.findDiamond - depending on
mcimadamore@1352 3042 * whether the constructor reference needs diamond inference (this is the case
mcimadamore@1352 3043 * if the qualifier type is raw). A special erroneous symbol is returned
mcimadamore@1352 3044 * if the lookup returns the constructor of an inner class and there's no
mcimadamore@1352 3045 * enclosing instance in scope.
mcimadamore@1352 3046 */
mcimadamore@1352 3047 class ConstructorReferenceLookupHelper extends ReferenceLookupHelper {
mcimadamore@1352 3048
mcimadamore@1352 3049 boolean needsInference;
mcimadamore@1352 3050
mcimadamore@1352 3051 ConstructorReferenceLookupHelper(JCMemberReference referenceTree, Type site, List<Type> argtypes,
mcimadamore@1394 3052 List<Type> typeargtypes, MethodResolutionPhase maxPhase) {
mcimadamore@1394 3053 super(referenceTree, names.init, site, argtypes, typeargtypes, maxPhase);
mcimadamore@1352 3054 if (site.isRaw()) {
mcimadamore@1352 3055 this.site = new ClassType(site.getEnclosingType(), site.tsym.type.getTypeArguments(), site.tsym);
mcimadamore@1352 3056 needsInference = true;
mcimadamore@1352 3057 }
mcimadamore@1352 3058 }
mcimadamore@1352 3059
mcimadamore@1352 3060 @Override
mcimadamore@1394 3061 protected Symbol lookup(Env<AttrContext> env, MethodResolutionPhase phase) {
mcimadamore@1352 3062 Symbol sym = needsInference ?
mcimadamore@1352 3063 findDiamond(env, site, argtypes, typeargtypes, phase.isBoxingRequired(), phase.isVarargsRequired()) :
mcimadamore@1352 3064 findMethod(env, site, name, argtypes, typeargtypes,
mcimadamore@1352 3065 phase.isBoxingRequired(), phase.isVarargsRequired(), syms.operatorNames.contains(name));
mcimadamore@1352 3066 return sym.kind != MTH ||
jjg@1374 3067 site.getEnclosingType().hasTag(NONE) ||
mcimadamore@1352 3068 hasEnclosingInstance(env, site) ?
mcimadamore@1352 3069 sym : new InvalidSymbolError(Kinds.MISSING_ENCL, sym, null) {
mcimadamore@1352 3070 @Override
mcimadamore@1352 3071 JCDiagnostic getDiagnostic(DiagnosticType dkind, DiagnosticPosition pos, Symbol location, Type site, Name name, List<Type> argtypes, List<Type> typeargtypes) {
mcimadamore@1352 3072 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@1352 3073 "cant.access.inner.cls.constr", site.tsym.name, argtypes, site.getEnclosingType());
mcimadamore@1352 3074 }
mcimadamore@1352 3075 };
mcimadamore@1352 3076 }
mcimadamore@1352 3077
mcimadamore@1352 3078 @Override
mcimadamore@1352 3079 ReferenceKind referenceKind(Symbol sym) {
jjg@1374 3080 return site.getEnclosingType().hasTag(NONE) ?
mcimadamore@1352 3081 ReferenceKind.TOPLEVEL : ReferenceKind.IMPLICIT_INNER;
mcimadamore@1352 3082 }
mcimadamore@1352 3083 }
mcimadamore@1352 3084
mcimadamore@1352 3085 /**
mcimadamore@1394 3086 * Main overload resolution routine. On each overload resolution step, a
mcimadamore@1394 3087 * lookup helper class is used to perform the method/constructor lookup;
mcimadamore@1394 3088 * at the end of the lookup, the helper is used to validate the results
mcimadamore@1394 3089 * (this last step might trigger overload resolution diagnostics).
mcimadamore@1352 3090 */
mcimadamore@1674 3091 Symbol lookupMethod(Env<AttrContext> env, DiagnosticPosition pos, Symbol location, MethodCheck methodCheck, LookupHelper lookupHelper) {
mcimadamore@1674 3092 MethodResolutionContext resolveContext = new MethodResolutionContext();
mcimadamore@1674 3093 resolveContext.methodCheck = methodCheck;
mcimadamore@1674 3094 return lookupMethod(env, pos, location, resolveContext, lookupHelper);
mcimadamore@1394 3095 }
mcimadamore@1394 3096
mcimadamore@1394 3097 Symbol lookupMethod(Env<AttrContext> env, DiagnosticPosition pos, Symbol location,
mcimadamore@1394 3098 MethodResolutionContext resolveContext, LookupHelper lookupHelper) {
mcimadamore@1352 3099 MethodResolutionContext prevResolutionContext = currentResolutionContext;
mcimadamore@1352 3100 try {
mcimadamore@1394 3101 Symbol bestSoFar = methodNotFound;
mcimadamore@1394 3102 currentResolutionContext = resolveContext;
mcimadamore@1394 3103 for (MethodResolutionPhase phase : methodResolutionSteps) {
mcimadamore@1394 3104 if (!phase.isApplicable(boxingEnabled, varargsEnabled) ||
mcimadamore@1394 3105 lookupHelper.shouldStop(bestSoFar, phase)) break;
mcimadamore@1394 3106 MethodResolutionPhase prevPhase = currentResolutionContext.step;
mcimadamore@1394 3107 Symbol prevBest = bestSoFar;
mcimadamore@1394 3108 currentResolutionContext.step = phase;
mcimadamore@1875 3109 Symbol sym = lookupHelper.lookup(env, phase);
mcimadamore@1875 3110 lookupHelper.debug(pos, sym);
mcimadamore@1875 3111 bestSoFar = phase.mergeResults(bestSoFar, sym);
mcimadamore@1394 3112 env.info.pendingResolutionPhase = (prevBest == bestSoFar) ? prevPhase : phase;
mcimadamore@1352 3113 }
mcimadamore@1394 3114 return lookupHelper.access(env, pos, location, bestSoFar);
mcimadamore@1394 3115 } finally {
mcimadamore@1352 3116 currentResolutionContext = prevResolutionContext;
mcimadamore@1352 3117 }
mcimadamore@1352 3118 }
mcimadamore@1352 3119
duke@1 3120 /**
duke@1 3121 * Resolve `c.name' where name == this or name == super.
duke@1 3122 * @param pos The position to use for error reporting.
duke@1 3123 * @param env The environment current at the expression.
duke@1 3124 * @param c The qualifier.
duke@1 3125 * @param name The identifier's name.
duke@1 3126 */
duke@1 3127 Symbol resolveSelf(DiagnosticPosition pos,
duke@1 3128 Env<AttrContext> env,
duke@1 3129 TypeSymbol c,
duke@1 3130 Name name) {
duke@1 3131 Env<AttrContext> env1 = env;
duke@1 3132 boolean staticOnly = false;
duke@1 3133 while (env1.outer != null) {
duke@1 3134 if (isStatic(env1)) staticOnly = true;
duke@1 3135 if (env1.enclClass.sym == c) {
duke@1 3136 Symbol sym = env1.info.scope.lookup(name).sym;
duke@1 3137 if (sym != null) {
duke@1 3138 if (staticOnly) sym = new StaticError(sym);
mcimadamore@1347 3139 return accessBase(sym, pos, env.enclClass.sym.type,
duke@1 3140 name, true);
duke@1 3141 }
duke@1 3142 }
duke@1 3143 if ((env1.enclClass.sym.flags() & STATIC) != 0) staticOnly = true;
duke@1 3144 env1 = env1.outer;
duke@1 3145 }
mcimadamore@1393 3146 if (allowDefaultMethods && c.isInterface() &&
mcimadamore@1393 3147 name == names._super && !isStatic(env) &&
mcimadamore@1415 3148 types.isDirectSuperInterface(c, env.enclClass.sym)) {
mcimadamore@1393 3149 //this might be a default super call if one of the superinterfaces is 'c'
mcimadamore@1393 3150 for (Type t : pruneInterfaces(env.enclClass.type)) {
mcimadamore@1393 3151 if (t.tsym == c) {
mcimadamore@1393 3152 env.info.defaultSuperCallSite = t;
mcimadamore@1393 3153 return new VarSymbol(0, names._super,
mcimadamore@1393 3154 types.asSuper(env.enclClass.type, c), env.enclClass.sym);
mcimadamore@1393 3155 }
mcimadamore@1393 3156 }
mcimadamore@1393 3157 //find a direct superinterface that is a subtype of 'c'
mcimadamore@1393 3158 for (Type i : types.interfaces(env.enclClass.type)) {
mcimadamore@1393 3159 if (i.tsym.isSubClass(c, types) && i.tsym != c) {
mcimadamore@1393 3160 log.error(pos, "illegal.default.super.call", c,
mcimadamore@1393 3161 diags.fragment("redundant.supertype", c, i));
mcimadamore@1393 3162 return syms.errSymbol;
mcimadamore@1393 3163 }
mcimadamore@1393 3164 }
mcimadamore@1393 3165 Assert.error();
mcimadamore@1393 3166 }
duke@1 3167 log.error(pos, "not.encl.class", c);
duke@1 3168 return syms.errSymbol;
duke@1 3169 }
mcimadamore@1393 3170 //where
mcimadamore@1393 3171 private List<Type> pruneInterfaces(Type t) {
alundblad@2047 3172 ListBuffer<Type> result = new ListBuffer<>();
mcimadamore@1393 3173 for (Type t1 : types.interfaces(t)) {
mcimadamore@1393 3174 boolean shouldAdd = true;
mcimadamore@1393 3175 for (Type t2 : types.interfaces(t)) {
mcimadamore@1393 3176 if (t1 != t2 && types.isSubtypeNoCapture(t2, t1)) {
mcimadamore@1393 3177 shouldAdd = false;
mcimadamore@1393 3178 }
mcimadamore@1393 3179 }
mcimadamore@1393 3180 if (shouldAdd) {
mcimadamore@1393 3181 result.append(t1);
mcimadamore@1393 3182 }
mcimadamore@1393 3183 }
mcimadamore@1393 3184 return result.toList();
mcimadamore@1393 3185 }
mcimadamore@1393 3186
duke@1 3187
duke@1 3188 /**
duke@1 3189 * Resolve `c.this' for an enclosing class c that contains the
duke@1 3190 * named member.
duke@1 3191 * @param pos The position to use for error reporting.
duke@1 3192 * @param env The environment current at the expression.
duke@1 3193 * @param member The member that must be contained in the result.
duke@1 3194 */
duke@1 3195 Symbol resolveSelfContaining(DiagnosticPosition pos,
duke@1 3196 Env<AttrContext> env,
mcimadamore@901 3197 Symbol member,
mcimadamore@901 3198 boolean isSuperCall) {
mcimadamore@1352 3199 Symbol sym = resolveSelfContainingInternal(env, member, isSuperCall);
mcimadamore@1352 3200 if (sym == null) {
mcimadamore@1352 3201 log.error(pos, "encl.class.required", member);
mcimadamore@1352 3202 return syms.errSymbol;
mcimadamore@1352 3203 } else {
mcimadamore@1352 3204 return accessBase(sym, pos, env.enclClass.sym.type, sym.name, true);
mcimadamore@1352 3205 }
mcimadamore@1352 3206 }
mcimadamore@1352 3207
mcimadamore@1352 3208 boolean hasEnclosingInstance(Env<AttrContext> env, Type type) {
mcimadamore@1352 3209 Symbol encl = resolveSelfContainingInternal(env, type.tsym, false);
mcimadamore@1352 3210 return encl != null && encl.kind < ERRONEOUS;
mcimadamore@1352 3211 }
mcimadamore@1352 3212
mcimadamore@1352 3213 private Symbol resolveSelfContainingInternal(Env<AttrContext> env,
mcimadamore@1352 3214 Symbol member,
mcimadamore@1352 3215 boolean isSuperCall) {
duke@1 3216 Name name = names._this;
mcimadamore@901 3217 Env<AttrContext> env1 = isSuperCall ? env.outer : env;
duke@1 3218 boolean staticOnly = false;
mcimadamore@901 3219 if (env1 != null) {
mcimadamore@901 3220 while (env1 != null && env1.outer != null) {
mcimadamore@901 3221 if (isStatic(env1)) staticOnly = true;
mcimadamore@901 3222 if (env1.enclClass.sym.isSubClass(member.owner, types)) {
mcimadamore@901 3223 Symbol sym = env1.info.scope.lookup(name).sym;
mcimadamore@901 3224 if (sym != null) {
mcimadamore@901 3225 if (staticOnly) sym = new StaticError(sym);
mcimadamore@1352 3226 return sym;
mcimadamore@901 3227 }
duke@1 3228 }
mcimadamore@901 3229 if ((env1.enclClass.sym.flags() & STATIC) != 0)
mcimadamore@901 3230 staticOnly = true;
mcimadamore@901 3231 env1 = env1.outer;
duke@1 3232 }
duke@1 3233 }
mcimadamore@1352 3234 return null;
duke@1 3235 }
duke@1 3236
duke@1 3237 /**
duke@1 3238 * Resolve an appropriate implicit this instance for t's container.
jjh@972 3239 * JLS 8.8.5.1 and 15.9.2
duke@1 3240 */
duke@1 3241 Type resolveImplicitThis(DiagnosticPosition pos, Env<AttrContext> env, Type t) {
mcimadamore@901 3242 return resolveImplicitThis(pos, env, t, false);
mcimadamore@901 3243 }
mcimadamore@901 3244
mcimadamore@901 3245 Type resolveImplicitThis(DiagnosticPosition pos, Env<AttrContext> env, Type t, boolean isSuperCall) {
duke@1 3246 Type thisType = (((t.tsym.owner.kind & (MTH|VAR)) != 0)
duke@1 3247 ? resolveSelf(pos, env, t.getEnclosingType().tsym, names._this)
mcimadamore@901 3248 : resolveSelfContaining(pos, env, t.tsym, isSuperCall)).type;
duke@1 3249 if (env.info.isSelfCall && thisType.tsym == env.enclClass.sym)
duke@1 3250 log.error(pos, "cant.ref.before.ctor.called", "this");
duke@1 3251 return thisType;
duke@1 3252 }
duke@1 3253
duke@1 3254 /* ***************************************************************************
duke@1 3255 * ResolveError classes, indicating error situations when accessing symbols
duke@1 3256 ****************************************************************************/
duke@1 3257
mcimadamore@1221 3258 //used by TransTypes when checking target type of synthetic cast
mcimadamore@1221 3259 public void logAccessErrorInternal(Env<AttrContext> env, JCTree tree, Type type) {
mcimadamore@1221 3260 AccessError error = new AccessError(env, env.enclClass.type, type.tsym);
mcimadamore@1221 3261 logResolveError(error, tree.pos(), env.enclClass.sym, env.enclClass.type, null, null, null);
mcimadamore@302 3262 }
mcimadamore@302 3263 //where
mcimadamore@302 3264 private void logResolveError(ResolveError error,
mcimadamore@302 3265 DiagnosticPosition pos,
mcimadamore@829 3266 Symbol location,
mcimadamore@302 3267 Type site,
mcimadamore@302 3268 Name name,
mcimadamore@302 3269 List<Type> argtypes,
mcimadamore@302 3270 List<Type> typeargtypes) {
mcimadamore@302 3271 JCDiagnostic d = error.getDiagnostic(JCDiagnostic.DiagnosticType.ERROR,
mcimadamore@829 3272 pos, location, site, name, argtypes, typeargtypes);
jjg@643 3273 if (d != null) {
jjg@643 3274 d.setFlag(DiagnosticFlag.RESOLVE_ERROR);
mcimadamore@302 3275 log.report(d);
jjg@643 3276 }
duke@1 3277 }
duke@1 3278
mcimadamore@161 3279 private final LocalizedString noArgs = new LocalizedString("compiler.misc.no.args");
mcimadamore@161 3280
mcimadamore@161 3281 public Object methodArguments(List<Type> argtypes) {
mcimadamore@1348 3282 if (argtypes == null || argtypes.isEmpty()) {
mcimadamore@1348 3283 return noArgs;
mcimadamore@1348 3284 } else {
alundblad@2047 3285 ListBuffer<Object> diagArgs = new ListBuffer<>();
mcimadamore@1348 3286 for (Type t : argtypes) {
jjg@1374 3287 if (t.hasTag(DEFERRED)) {
mcimadamore@1348 3288 diagArgs.append(((DeferredAttr.DeferredType)t).tree);
mcimadamore@1348 3289 } else {
mcimadamore@1348 3290 diagArgs.append(t);
mcimadamore@1348 3291 }
mcimadamore@1348 3292 }
mcimadamore@1348 3293 return diagArgs;
mcimadamore@1348 3294 }
mcimadamore@161 3295 }
mcimadamore@161 3296
mcimadamore@302 3297 /**
mcimadamore@302 3298 * Root class for resolution errors. Subclass of ResolveError
mcimadamore@302 3299 * represent a different kinds of resolution error - as such they must
mcimadamore@302 3300 * specify how they map into concrete compiler diagnostics.
duke@1 3301 */
mcimadamore@1352 3302 abstract class ResolveError extends Symbol {
duke@1 3303
mcimadamore@302 3304 /** The name of the kind of error, for debugging only. */
mcimadamore@302 3305 final String debugName;
mcimadamore@302 3306
mcimadamore@302 3307 ResolveError(int kind, String debugName) {
duke@1 3308 super(kind, 0, null, null, null);
duke@1 3309 this.debugName = debugName;
duke@1 3310 }
duke@1 3311
mcimadamore@302 3312 @Override
duke@1 3313 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 3314 throw new AssertionError();
duke@1 3315 }
duke@1 3316
mcimadamore@302 3317 @Override
duke@1 3318 public String toString() {
mcimadamore@302 3319 return debugName;
duke@1 3320 }
duke@1 3321
mcimadamore@302 3322 @Override
mcimadamore@302 3323 public boolean exists() {
mcimadamore@302 3324 return false;
duke@1 3325 }
duke@1 3326
mcimadamore@302 3327 /**
mcimadamore@302 3328 * Create an external representation for this erroneous symbol to be
mcimadamore@302 3329 * used during attribution - by default this returns the symbol of a
mcimadamore@302 3330 * brand new error type which stores the original type found
mcimadamore@302 3331 * during resolution.
mcimadamore@302 3332 *
mcimadamore@302 3333 * @param name the name used during resolution
mcimadamore@302 3334 * @param location the location from which the symbol is accessed
duke@1 3335 */
mcimadamore@302 3336 protected Symbol access(Name name, TypeSymbol location) {
mcimadamore@302 3337 return types.createErrorType(name, location, syms.errSymbol.type).tsym;
duke@1 3338 }
duke@1 3339
mcimadamore@302 3340 /**
mcimadamore@302 3341 * Create a diagnostic representing this resolution error.
mcimadamore@302 3342 *
mcimadamore@302 3343 * @param dkind The kind of the diagnostic to be created (e.g error).
mcimadamore@302 3344 * @param pos The position to be used for error reporting.
mcimadamore@302 3345 * @param site The original type from where the selection took place.
mcimadamore@302 3346 * @param name The name of the symbol to be resolved.
mcimadamore@302 3347 * @param argtypes The invocation's value arguments,
mcimadamore@302 3348 * if we looked for a method.
mcimadamore@302 3349 * @param typeargtypes The invocation's type arguments,
mcimadamore@302 3350 * if we looked for a method.
mcimadamore@302 3351 */
mcimadamore@302 3352 abstract JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3353 DiagnosticPosition pos,
mcimadamore@829 3354 Symbol location,
mcimadamore@302 3355 Type site,
mcimadamore@302 3356 Name name,
mcimadamore@302 3357 List<Type> argtypes,
mcimadamore@302 3358 List<Type> typeargtypes);
duke@1 3359 }
duke@1 3360
mcimadamore@302 3361 /**
mcimadamore@302 3362 * This class is the root class of all resolution errors caused by
mcimadamore@302 3363 * an invalid symbol being found during resolution.
duke@1 3364 */
mcimadamore@302 3365 abstract class InvalidSymbolError extends ResolveError {
mcimadamore@302 3366
mcimadamore@302 3367 /** The invalid symbol found during resolution */
mcimadamore@302 3368 Symbol sym;
mcimadamore@302 3369
mcimadamore@302 3370 InvalidSymbolError(int kind, Symbol sym, String debugName) {
mcimadamore@302 3371 super(kind, debugName);
mcimadamore@302 3372 this.sym = sym;
mcimadamore@302 3373 }
mcimadamore@302 3374
mcimadamore@302 3375 @Override
mcimadamore@302 3376 public boolean exists() {
mcimadamore@302 3377 return true;
mcimadamore@302 3378 }
mcimadamore@302 3379
mcimadamore@302 3380 @Override
mcimadamore@302 3381 public String toString() {
mcimadamore@302 3382 return super.toString() + " wrongSym=" + sym;
mcimadamore@302 3383 }
mcimadamore@302 3384
mcimadamore@302 3385 @Override
mcimadamore@302 3386 public Symbol access(Name name, TypeSymbol location) {
mcimadamore@1480 3387 if ((sym.kind & ERRONEOUS) == 0 && (sym.kind & TYP) != 0)
mcimadamore@302 3388 return types.createErrorType(name, location, sym.type).tsym;
mcimadamore@302 3389 else
mcimadamore@302 3390 return sym;
mcimadamore@302 3391 }
mcimadamore@302 3392 }
mcimadamore@302 3393
mcimadamore@302 3394 /**
mcimadamore@302 3395 * InvalidSymbolError error class indicating that a symbol matching a
mcimadamore@302 3396 * given name does not exists in a given site.
mcimadamore@302 3397 */
mcimadamore@302 3398 class SymbolNotFoundError extends ResolveError {
mcimadamore@302 3399
mcimadamore@302 3400 SymbolNotFoundError(int kind) {
mcimadamore@302 3401 super(kind, "symbol not found error");
mcimadamore@302 3402 }
mcimadamore@302 3403
mcimadamore@302 3404 @Override
mcimadamore@302 3405 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3406 DiagnosticPosition pos,
mcimadamore@829 3407 Symbol location,
mcimadamore@302 3408 Type site,
mcimadamore@302 3409 Name name,
mcimadamore@302 3410 List<Type> argtypes,
mcimadamore@302 3411 List<Type> typeargtypes) {
mcimadamore@302 3412 argtypes = argtypes == null ? List.<Type>nil() : argtypes;
mcimadamore@302 3413 typeargtypes = typeargtypes == null ? List.<Type>nil() : typeargtypes;
mcimadamore@302 3414 if (name == names.error)
mcimadamore@302 3415 return null;
mcimadamore@302 3416
mcimadamore@1347 3417 if (syms.operatorNames.contains(name)) {
mcimadamore@829 3418 boolean isUnaryOp = argtypes.size() == 1;
mcimadamore@829 3419 String key = argtypes.size() == 1 ?
mcimadamore@829 3420 "operator.cant.be.applied" :
mcimadamore@829 3421 "operator.cant.be.applied.1";
mcimadamore@829 3422 Type first = argtypes.head;
mcimadamore@829 3423 Type second = !isUnaryOp ? argtypes.tail.head : null;
jjg@612 3424 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@829 3425 key, name, first, second);
mcimadamore@302 3426 }
mcimadamore@302 3427 boolean hasLocation = false;
mcimadamore@855 3428 if (location == null) {
mcimadamore@855 3429 location = site.tsym;
mcimadamore@855 3430 }
mcimadamore@829 3431 if (!location.name.isEmpty()) {
mcimadamore@829 3432 if (location.kind == PCK && !site.tsym.exists()) {
jjg@612 3433 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@829 3434 "doesnt.exist", location);
mcimadamore@302 3435 }
mcimadamore@829 3436 hasLocation = !location.name.equals(names._this) &&
mcimadamore@829 3437 !location.name.equals(names._super);
mcimadamore@302 3438 }
mcimadamore@1347 3439 boolean isConstructor = kind == ABSENT_MTH && name == names.init;
mcimadamore@302 3440 KindName kindname = isConstructor ? KindName.CONSTRUCTOR : absentKind(kind);
mcimadamore@302 3441 Name idname = isConstructor ? site.tsym.name : name;
mcimadamore@302 3442 String errKey = getErrorKey(kindname, typeargtypes.nonEmpty(), hasLocation);
mcimadamore@302 3443 if (hasLocation) {
jjg@612 3444 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 3445 errKey, kindname, idname, //symbol kindname, name
mcimadamore@1456 3446 typeargtypes, args(argtypes), //type parameters and arguments (if any)
mcimadamore@855 3447 getLocationDiag(location, site)); //location kindname, type
mcimadamore@302 3448 }
mcimadamore@302 3449 else {
jjg@612 3450 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 3451 errKey, kindname, idname, //symbol kindname, name
mcimadamore@1456 3452 typeargtypes, args(argtypes)); //type parameters and arguments (if any)
mcimadamore@302 3453 }
mcimadamore@302 3454 }
mcimadamore@302 3455 //where
mcimadamore@1456 3456 private Object args(List<Type> args) {
mcimadamore@1456 3457 return args.isEmpty() ? args : methodArguments(args);
mcimadamore@1456 3458 }
mcimadamore@1456 3459
mcimadamore@302 3460 private String getErrorKey(KindName kindname, boolean hasTypeArgs, boolean hasLocation) {
mcimadamore@302 3461 String key = "cant.resolve";
mcimadamore@302 3462 String suffix = hasLocation ? ".location" : "";
mcimadamore@302 3463 switch (kindname) {
mcimadamore@302 3464 case METHOD:
mcimadamore@302 3465 case CONSTRUCTOR: {
mcimadamore@302 3466 suffix += ".args";
mcimadamore@302 3467 suffix += hasTypeArgs ? ".params" : "";
mcimadamore@302 3468 }
mcimadamore@302 3469 }
mcimadamore@302 3470 return key + suffix;
mcimadamore@302 3471 }
mcimadamore@855 3472 private JCDiagnostic getLocationDiag(Symbol location, Type site) {
mcimadamore@855 3473 if (location.kind == VAR) {
mcimadamore@855 3474 return diags.fragment("location.1",
mcimadamore@829 3475 kindName(location),
mcimadamore@829 3476 location,
mcimadamore@855 3477 location.type);
mcimadamore@855 3478 } else {
mcimadamore@855 3479 return diags.fragment("location",
mcimadamore@855 3480 typeKindName(site),
mcimadamore@855 3481 site,
mcimadamore@855 3482 null);
mcimadamore@855 3483 }
mcimadamore@829 3484 }
mcimadamore@302 3485 }
mcimadamore@302 3486
mcimadamore@302 3487 /**
mcimadamore@302 3488 * InvalidSymbolError error class indicating that a given symbol
mcimadamore@302 3489 * (either a method, a constructor or an operand) is not applicable
mcimadamore@302 3490 * given an actual arguments/type argument list.
mcimadamore@302 3491 */
mcimadamore@1215 3492 class InapplicableSymbolError extends ResolveError {
mcimadamore@302 3493
mcimadamore@1352 3494 protected MethodResolutionContext resolveContext;
mcimadamore@1352 3495
mcimadamore@1352 3496 InapplicableSymbolError(MethodResolutionContext context) {
mcimadamore@1352 3497 this(WRONG_MTH, "inapplicable symbol error", context);
mcimadamore@302 3498 }
mcimadamore@302 3499
mcimadamore@1352 3500 protected InapplicableSymbolError(int kind, String debugName, MethodResolutionContext context) {
mcimadamore@1215 3501 super(kind, debugName);
mcimadamore@1352 3502 this.resolveContext = context;
mcimadamore@302 3503 }
mcimadamore@302 3504
mcimadamore@302 3505 @Override
mcimadamore@302 3506 public String toString() {
mcimadamore@1215 3507 return super.toString();
mcimadamore@1215 3508 }
mcimadamore@1215 3509
mcimadamore@1215 3510 @Override
mcimadamore@1215 3511 public boolean exists() {
mcimadamore@1215 3512 return true;
mcimadamore@302 3513 }
mcimadamore@302 3514
mcimadamore@302 3515 @Override
mcimadamore@302 3516 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3517 DiagnosticPosition pos,
mcimadamore@829 3518 Symbol location,
mcimadamore@302 3519 Type site,
mcimadamore@302 3520 Name name,
mcimadamore@302 3521 List<Type> argtypes,
mcimadamore@302 3522 List<Type> typeargtypes) {
mcimadamore@302 3523 if (name == names.error)
mcimadamore@302 3524 return null;
mcimadamore@302 3525
mcimadamore@1347 3526 if (syms.operatorNames.contains(name)) {
mcimadamore@853 3527 boolean isUnaryOp = argtypes.size() == 1;
mcimadamore@853 3528 String key = argtypes.size() == 1 ?
mcimadamore@853 3529 "operator.cant.be.applied" :
mcimadamore@853 3530 "operator.cant.be.applied.1";
mcimadamore@853 3531 Type first = argtypes.head;
mcimadamore@853 3532 Type second = !isUnaryOp ? argtypes.tail.head : null;
mcimadamore@853 3533 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@853 3534 key, name, first, second);
mcimadamore@302 3535 }
mcimadamore@302 3536 else {
mcimadamore@1900 3537 Pair<Symbol, JCDiagnostic> c = errCandidate();
mcimadamore@1759 3538 if (compactMethodDiags) {
mcimadamore@1759 3539 for (Map.Entry<Template, DiagnosticRewriter> _entry :
mcimadamore@1759 3540 MethodResolutionDiagHelper.rewriters.entrySet()) {
mcimadamore@1900 3541 if (_entry.getKey().matches(c.snd)) {
mcimadamore@1759 3542 JCDiagnostic simpleDiag =
mcimadamore@1759 3543 _entry.getValue().rewriteDiagnostic(diags, pos,
mcimadamore@1900 3544 log.currentSource(), dkind, c.snd);
mcimadamore@1759 3545 simpleDiag.setFlag(DiagnosticFlag.COMPRESSED);
mcimadamore@1759 3546 return simpleDiag;
mcimadamore@1759 3547 }
mcimadamore@1759 3548 }
mcimadamore@1759 3549 }
mcimadamore@1900 3550 Symbol ws = c.fst.asMemberOf(site, types);
jjg@612 3551 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@1352 3552 "cant.apply.symbol",
mcimadamore@302 3553 kindName(ws),
mcimadamore@302 3554 ws.name == names.init ? ws.owner.name : ws.name,
mcimadamore@302 3555 methodArguments(ws.type.getParameterTypes()),
mcimadamore@302 3556 methodArguments(argtypes),
mcimadamore@302 3557 kindName(ws.owner),
mcimadamore@302 3558 ws.owner.type,
mcimadamore@1900 3559 c.snd);
mcimadamore@302 3560 }
mcimadamore@302 3561 }
mcimadamore@302 3562
mcimadamore@302 3563 @Override
mcimadamore@302 3564 public Symbol access(Name name, TypeSymbol location) {
mcimadamore@302 3565 return types.createErrorType(name, location, syms.errSymbol.type).tsym;
mcimadamore@302 3566 }
mcimadamore@1215 3567
mcimadamore@1900 3568 protected Pair<Symbol, JCDiagnostic> errCandidate() {
mcimadamore@1394 3569 Candidate bestSoFar = null;
mcimadamore@1352 3570 for (Candidate c : resolveContext.candidates) {
mcimadamore@1394 3571 if (c.isApplicable()) continue;
mcimadamore@1394 3572 bestSoFar = c;
mcimadamore@1215 3573 }
mcimadamore@1394 3574 Assert.checkNonNull(bestSoFar);
mcimadamore@1900 3575 return new Pair<Symbol, JCDiagnostic>(bestSoFar.sym, bestSoFar.details);
mcimadamore@1215 3576 }
mcimadamore@302 3577 }
mcimadamore@302 3578
mcimadamore@302 3579 /**
mcimadamore@302 3580 * ResolveError error class indicating that a set of symbols
mcimadamore@302 3581 * (either methods, constructors or operands) is not applicable
mcimadamore@302 3582 * given an actual arguments/type argument list.
mcimadamore@302 3583 */
mcimadamore@1215 3584 class InapplicableSymbolsError extends InapplicableSymbolError {
mcimadamore@689 3585
mcimadamore@1352 3586 InapplicableSymbolsError(MethodResolutionContext context) {
mcimadamore@1352 3587 super(WRONG_MTHS, "inapplicable symbols", context);
mcimadamore@302 3588 }
mcimadamore@302 3589
mcimadamore@302 3590 @Override
mcimadamore@302 3591 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3592 DiagnosticPosition pos,
mcimadamore@829 3593 Symbol location,
mcimadamore@302 3594 Type site,
mcimadamore@302 3595 Name name,
mcimadamore@302 3596 List<Type> argtypes,
mcimadamore@302 3597 List<Type> typeargtypes) {
mcimadamore@1759 3598 Map<Symbol, JCDiagnostic> candidatesMap = mapCandidates();
mcimadamore@1921 3599 Map<Symbol, JCDiagnostic> filteredCandidates = compactMethodDiags ?
mcimadamore@1921 3600 filterCandidates(candidatesMap) :
mcimadamore@1921 3601 mapCandidates();
mcimadamore@1759 3602 if (filteredCandidates.isEmpty()) {
mcimadamore@1759 3603 filteredCandidates = candidatesMap;
mcimadamore@1759 3604 }
mcimadamore@1759 3605 boolean truncatedDiag = candidatesMap.size() != filteredCandidates.size();
mcimadamore@1759 3606 if (filteredCandidates.size() > 1) {
mcimadamore@689 3607 JCDiagnostic err = diags.create(dkind,
mcimadamore@1759 3608 null,
mcimadamore@1759 3609 truncatedDiag ?
mcimadamore@1759 3610 EnumSet.of(DiagnosticFlag.COMPRESSED) :
mcimadamore@1759 3611 EnumSet.noneOf(DiagnosticFlag.class),
mcimadamore@689 3612 log.currentSource(),
mcimadamore@689 3613 pos,
mcimadamore@689 3614 "cant.apply.symbols",
mcimadamore@689 3615 name == names.init ? KindName.CONSTRUCTOR : absentKind(kind),
mcimadamore@1394 3616 name == names.init ? site.tsym.name : name,
mcimadamore@1415 3617 methodArguments(argtypes));
mcimadamore@1759 3618 return new JCDiagnostic.MultilineDiagnostic(err, candidateDetails(filteredCandidates, site));
mcimadamore@1759 3619 } else if (filteredCandidates.size() == 1) {
mcimadamore@1900 3620 Map.Entry<Symbol, JCDiagnostic> _e =
mcimadamore@1900 3621 filteredCandidates.entrySet().iterator().next();
mcimadamore@1900 3622 final Pair<Symbol, JCDiagnostic> p = new Pair<Symbol, JCDiagnostic>(_e.getKey(), _e.getValue());
mcimadamore@1900 3623 JCDiagnostic d = new InapplicableSymbolError(resolveContext) {
mcimadamore@1900 3624 @Override
mcimadamore@1900 3625 protected Pair<Symbol, JCDiagnostic> errCandidate() {
mcimadamore@1900 3626 return p;
mcimadamore@1900 3627 }
mcimadamore@1900 3628 }.getDiagnostic(dkind, pos,
mcimadamore@1759 3629 location, site, name, argtypes, typeargtypes);
mcimadamore@1759 3630 if (truncatedDiag) {
mcimadamore@1759 3631 d.setFlag(DiagnosticFlag.COMPRESSED);
mcimadamore@1759 3632 }
mcimadamore@1759 3633 return d;
mcimadamore@689 3634 } else {
mcimadamore@689 3635 return new SymbolNotFoundError(ABSENT_MTH).getDiagnostic(dkind, pos,
mcimadamore@829 3636 location, site, name, argtypes, typeargtypes);
mcimadamore@689 3637 }
mcimadamore@689 3638 }
mcimadamore@689 3639 //where
mcimadamore@1759 3640 private Map<Symbol, JCDiagnostic> mapCandidates() {
mcimadamore@1759 3641 Map<Symbol, JCDiagnostic> candidates = new LinkedHashMap<Symbol, JCDiagnostic>();
mcimadamore@1759 3642 for (Candidate c : resolveContext.candidates) {
mcimadamore@1759 3643 if (c.isApplicable()) continue;
mcimadamore@1759 3644 candidates.put(c.sym, c.details);
mcimadamore@1759 3645 }
mcimadamore@1759 3646 return candidates;
mcimadamore@1215 3647 }
mcimadamore@1759 3648
mcimadamore@1759 3649 Map<Symbol, JCDiagnostic> filterCandidates(Map<Symbol, JCDiagnostic> candidatesMap) {
mcimadamore@1759 3650 Map<Symbol, JCDiagnostic> candidates = new LinkedHashMap<Symbol, JCDiagnostic>();
mcimadamore@1759 3651 for (Map.Entry<Symbol, JCDiagnostic> _entry : candidatesMap.entrySet()) {
mcimadamore@1759 3652 JCDiagnostic d = _entry.getValue();
mcimadamore@1921 3653 if (!new Template(MethodCheckDiag.ARITY_MISMATCH.regex()).matches(d)) {
mcimadamore@1759 3654 candidates.put(_entry.getKey(), d);
mcimadamore@1759 3655 }
mcimadamore@1759 3656 }
mcimadamore@1759 3657 return candidates;
mcimadamore@1759 3658 }
mcimadamore@1759 3659
mcimadamore@1759 3660 private List<JCDiagnostic> candidateDetails(Map<Symbol, JCDiagnostic> candidatesMap, Type site) {
mcimadamore@1759 3661 List<JCDiagnostic> details = List.nil();
mcimadamore@1759 3662 for (Map.Entry<Symbol, JCDiagnostic> _entry : candidatesMap.entrySet()) {
mcimadamore@1759 3663 Symbol sym = _entry.getKey();
mcimadamore@1759 3664 JCDiagnostic detailDiag = diags.fragment("inapplicable.method",
mcimadamore@1759 3665 Kinds.kindName(sym),
mcimadamore@1759 3666 sym.location(site, types),
mcimadamore@1759 3667 sym.asMemberOf(site, types),
mcimadamore@1759 3668 _entry.getValue());
mcimadamore@1759 3669 details = details.prepend(detailDiag);
mcimadamore@1759 3670 }
mcimadamore@1759 3671 //typically members are visited in reverse order (see Scope)
mcimadamore@1759 3672 //so we need to reverse the candidate list so that candidates
mcimadamore@1759 3673 //conform to source order
mcimadamore@1759 3674 return details;
mcimadamore@1759 3675 }
mcimadamore@302 3676 }
mcimadamore@302 3677
mcimadamore@302 3678 /**
mcimadamore@302 3679 * An InvalidSymbolError error class indicating that a symbol is not
mcimadamore@302 3680 * accessible from a given site
mcimadamore@302 3681 */
mcimadamore@302 3682 class AccessError extends InvalidSymbolError {
mcimadamore@302 3683
mcimadamore@302 3684 private Env<AttrContext> env;
mcimadamore@302 3685 private Type site;
duke@1 3686
duke@1 3687 AccessError(Symbol sym) {
duke@1 3688 this(null, null, sym);
duke@1 3689 }
duke@1 3690
duke@1 3691 AccessError(Env<AttrContext> env, Type site, Symbol sym) {
duke@1 3692 super(HIDDEN, sym, "access error");
duke@1 3693 this.env = env;
duke@1 3694 this.site = site;
duke@1 3695 if (debugResolve)
duke@1 3696 log.error("proc.messager", sym + " @ " + site + " is inaccessible.");
duke@1 3697 }
duke@1 3698
mcimadamore@302 3699 @Override
mcimadamore@302 3700 public boolean exists() {
mcimadamore@302 3701 return false;
mcimadamore@302 3702 }
duke@1 3703
mcimadamore@302 3704 @Override
mcimadamore@302 3705 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3706 DiagnosticPosition pos,
mcimadamore@829 3707 Symbol location,
mcimadamore@302 3708 Type site,
mcimadamore@302 3709 Name name,
mcimadamore@302 3710 List<Type> argtypes,
mcimadamore@302 3711 List<Type> typeargtypes) {
jjg@1374 3712 if (sym.owner.type.hasTag(ERROR))
mcimadamore@302 3713 return null;
mcimadamore@302 3714
mcimadamore@302 3715 if (sym.name == names.init && sym.owner != site.tsym) {
mcimadamore@302 3716 return new SymbolNotFoundError(ABSENT_MTH).getDiagnostic(dkind,
mcimadamore@829 3717 pos, location, site, name, argtypes, typeargtypes);
mcimadamore@302 3718 }
mcimadamore@302 3719 else if ((sym.flags() & PUBLIC) != 0
mcimadamore@302 3720 || (env != null && this.site != null
mcimadamore@302 3721 && !isAccessible(env, this.site))) {
jjg@612 3722 return diags.create(dkind, log.currentSource(),
mcimadamore@302 3723 pos, "not.def.access.class.intf.cant.access",
mcimadamore@302 3724 sym, sym.location());
mcimadamore@302 3725 }
mcimadamore@302 3726 else if ((sym.flags() & (PRIVATE | PROTECTED)) != 0) {
jjg@612 3727 return diags.create(dkind, log.currentSource(),
mcimadamore@302 3728 pos, "report.access", sym,
mcimadamore@302 3729 asFlagSet(sym.flags() & (PRIVATE | PROTECTED)),
mcimadamore@302 3730 sym.location());
mcimadamore@302 3731 }
mcimadamore@302 3732 else {
jjg@612 3733 return diags.create(dkind, log.currentSource(),
mcimadamore@302 3734 pos, "not.def.public.cant.access", sym, sym.location());
duke@1 3735 }
duke@1 3736 }
duke@1 3737 }
duke@1 3738
mcimadamore@302 3739 /**
mcimadamore@302 3740 * InvalidSymbolError error class indicating that an instance member
mcimadamore@302 3741 * has erroneously been accessed from a static context.
duke@1 3742 */
mcimadamore@302 3743 class StaticError extends InvalidSymbolError {
mcimadamore@302 3744
duke@1 3745 StaticError(Symbol sym) {
duke@1 3746 super(STATICERR, sym, "static error");
duke@1 3747 }
duke@1 3748
mcimadamore@302 3749 @Override
mcimadamore@302 3750 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3751 DiagnosticPosition pos,
mcimadamore@829 3752 Symbol location,
mcimadamore@302 3753 Type site,
mcimadamore@302 3754 Name name,
mcimadamore@302 3755 List<Type> argtypes,
mcimadamore@302 3756 List<Type> typeargtypes) {
jjg@1374 3757 Symbol errSym = ((sym.kind == TYP && sym.type.hasTag(CLASS))
mcimadamore@80 3758 ? types.erasure(sym.type).tsym
mcimadamore@80 3759 : sym);
jjg@612 3760 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 3761 "non-static.cant.be.ref", kindName(sym), errSym);
duke@1 3762 }
duke@1 3763 }
duke@1 3764
mcimadamore@302 3765 /**
mcimadamore@302 3766 * InvalidSymbolError error class indicating that a pair of symbols
mcimadamore@302 3767 * (either methods, constructors or operands) are ambiguous
mcimadamore@302 3768 * given an actual arguments/type argument list.
duke@1 3769 */
mcimadamore@1480 3770 class AmbiguityError extends ResolveError {
mcimadamore@302 3771
mcimadamore@302 3772 /** The other maximally specific symbol */
mcimadamore@1480 3773 List<Symbol> ambiguousSyms = List.nil();
mcimadamore@1480 3774
mcimadamore@1480 3775 @Override
mcimadamore@1480 3776 public boolean exists() {
mcimadamore@1480 3777 return true;
mcimadamore@1480 3778 }
duke@1 3779
duke@1 3780 AmbiguityError(Symbol sym1, Symbol sym2) {
mcimadamore@1480 3781 super(AMBIGUOUS, "ambiguity error");
mcimadamore@1480 3782 ambiguousSyms = flatten(sym2).appendList(flatten(sym1));
mcimadamore@1480 3783 }
mcimadamore@1480 3784
mcimadamore@1480 3785 private List<Symbol> flatten(Symbol sym) {
mcimadamore@1480 3786 if (sym.kind == AMBIGUOUS) {
mcimadamore@1480 3787 return ((AmbiguityError)sym).ambiguousSyms;
mcimadamore@1480 3788 } else {
mcimadamore@1480 3789 return List.of(sym);
mcimadamore@1480 3790 }
mcimadamore@1480 3791 }
mcimadamore@1480 3792
mcimadamore@1480 3793 AmbiguityError addAmbiguousSymbol(Symbol s) {
mcimadamore@1480 3794 ambiguousSyms = ambiguousSyms.prepend(s);
mcimadamore@1480 3795 return this;
duke@1 3796 }
duke@1 3797
mcimadamore@302 3798 @Override
mcimadamore@302 3799 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 3800 DiagnosticPosition pos,
mcimadamore@829 3801 Symbol location,
mcimadamore@302 3802 Type site,
mcimadamore@302 3803 Name name,
mcimadamore@302 3804 List<Type> argtypes,
mcimadamore@302 3805 List<Type> typeargtypes) {
mcimadamore@1480 3806 List<Symbol> diagSyms = ambiguousSyms.reverse();
mcimadamore@1480 3807 Symbol s1 = diagSyms.head;
mcimadamore@1480 3808 Symbol s2 = diagSyms.tail.head;
mcimadamore@1480 3809 Name sname = s1.name;
mcimadamore@1480 3810 if (sname == names.init) sname = s1.owner.name;
jjg@612 3811 return diags.create(dkind, log.currentSource(),
mcimadamore@302 3812 pos, "ref.ambiguous", sname,
mcimadamore@1480 3813 kindName(s1),
mcimadamore@1480 3814 s1,
mcimadamore@1480 3815 s1.location(site, types),
mcimadamore@1480 3816 kindName(s2),
mcimadamore@1480 3817 s2,
mcimadamore@1480 3818 s2.location(site, types));
mcimadamore@1480 3819 }
mcimadamore@1480 3820
mcimadamore@1480 3821 /**
mcimadamore@1480 3822 * If multiple applicable methods are found during overload and none of them
mcimadamore@1480 3823 * is more specific than the others, attempt to merge their signatures.
mcimadamore@1480 3824 */
mcimadamore@1480 3825 Symbol mergeAbstracts(Type site) {
mcimadamore@1875 3826 List<Symbol> ambiguousInOrder = ambiguousSyms.reverse();
mcimadamore@1875 3827 for (Symbol s : ambiguousInOrder) {
mcimadamore@1875 3828 Type mt = types.memberType(site, s);
mcimadamore@1875 3829 boolean found = true;
mcimadamore@1875 3830 List<Type> allThrown = mt.getThrownTypes();
mcimadamore@1875 3831 for (Symbol s2 : ambiguousInOrder) {
mcimadamore@1875 3832 Type mt2 = types.memberType(site, s2);
mcimadamore@1875 3833 if ((s2.flags() & ABSTRACT) == 0 ||
mcimadamore@1875 3834 !types.overrideEquivalent(mt, mt2) ||
mcimadamore@1875 3835 !types.isSameTypes(s.erasure(types).getParameterTypes(),
mcimadamore@1875 3836 s2.erasure(types).getParameterTypes())) {
mcimadamore@1875 3837 //ambiguity cannot be resolved
mcimadamore@1480 3838 return this;
mcimadamore@1480 3839 }
mcimadamore@1875 3840 Type mst = mostSpecificReturnType(mt, mt2);
mcimadamore@1875 3841 if (mst == null || mst != mt) {
mcimadamore@1875 3842 found = false;
mcimadamore@1875 3843 break;
mcimadamore@1875 3844 }
mcimadamore@1875 3845 allThrown = chk.intersect(allThrown, mt2.getThrownTypes());
mcimadamore@1875 3846 }
mcimadamore@1875 3847 if (found) {
mcimadamore@1875 3848 //all ambiguous methods were abstract and one method had
mcimadamore@1875 3849 //most specific return type then others
mcimadamore@1875 3850 return (allThrown == mt.getThrownTypes()) ?
mcimadamore@1875 3851 s : new MethodSymbol(
mcimadamore@1875 3852 s.flags(),
mcimadamore@1875 3853 s.name,
mcimadamore@1875 3854 types.createMethodTypeWithThrown(mt, allThrown),
mcimadamore@1875 3855 s.owner);
mcimadamore@1480 3856 }
mcimadamore@1480 3857 }
mcimadamore@1875 3858 return this;
mcimadamore@1480 3859 }
mcimadamore@1480 3860
mcimadamore@1480 3861 @Override
mcimadamore@1480 3862 protected Symbol access(Name name, TypeSymbol location) {
mcimadamore@1498 3863 Symbol firstAmbiguity = ambiguousSyms.last();
mcimadamore@1498 3864 return firstAmbiguity.kind == TYP ?
mcimadamore@1498 3865 types.createErrorType(name, location, firstAmbiguity.type).tsym :
mcimadamore@1498 3866 firstAmbiguity;
duke@1 3867 }
duke@1 3868 }
mcimadamore@160 3869
mcimadamore@1599 3870 class BadVarargsMethod extends ResolveError {
mcimadamore@1599 3871
mcimadamore@1599 3872 ResolveError delegatedError;
mcimadamore@1599 3873
mcimadamore@1599 3874 BadVarargsMethod(ResolveError delegatedError) {
mcimadamore@1599 3875 super(delegatedError.kind, "badVarargs");
mcimadamore@1599 3876 this.delegatedError = delegatedError;
mcimadamore@1599 3877 }
mcimadamore@1599 3878
mcimadamore@1599 3879 @Override
mcimadamore@1697 3880 public Symbol baseSymbol() {
mcimadamore@1697 3881 return delegatedError.baseSymbol();
mcimadamore@1697 3882 }
mcimadamore@1697 3883
mcimadamore@1697 3884 @Override
mcimadamore@1599 3885 protected Symbol access(Name name, TypeSymbol location) {
mcimadamore@1599 3886 return delegatedError.access(name, location);
mcimadamore@1599 3887 }
mcimadamore@1599 3888
mcimadamore@1599 3889 @Override
mcimadamore@1599 3890 public boolean exists() {
mcimadamore@1599 3891 return true;
mcimadamore@1599 3892 }
mcimadamore@1599 3893
mcimadamore@1599 3894 @Override
mcimadamore@1599 3895 JCDiagnostic getDiagnostic(DiagnosticType dkind, DiagnosticPosition pos, Symbol location, Type site, Name name, List<Type> argtypes, List<Type> typeargtypes) {
mcimadamore@1599 3896 return delegatedError.getDiagnostic(dkind, pos, location, site, name, argtypes, typeargtypes);
mcimadamore@1599 3897 }
mcimadamore@1599 3898 }
mcimadamore@1599 3899
mcimadamore@1759 3900 /**
mcimadamore@1759 3901 * Helper class for method resolution diagnostic simplification.
mcimadamore@1759 3902 * Certain resolution diagnostic are rewritten as simpler diagnostic
mcimadamore@1759 3903 * where the enclosing resolution diagnostic (i.e. 'inapplicable method')
mcimadamore@1759 3904 * is stripped away, as it doesn't carry additional info. The logic
mcimadamore@1759 3905 * for matching a given diagnostic is given in terms of a template
mcimadamore@1759 3906 * hierarchy: a diagnostic template can be specified programmatically,
mcimadamore@1759 3907 * so that only certain diagnostics are matched. Each templete is then
mcimadamore@1759 3908 * associated with a rewriter object that carries out the task of rewtiting
mcimadamore@1759 3909 * the diagnostic to a simpler one.
mcimadamore@1759 3910 */
mcimadamore@1759 3911 static class MethodResolutionDiagHelper {
mcimadamore@1759 3912
mcimadamore@1759 3913 /**
mcimadamore@1759 3914 * A diagnostic rewriter transforms a method resolution diagnostic
mcimadamore@1759 3915 * into a simpler one
mcimadamore@1759 3916 */
mcimadamore@1759 3917 interface DiagnosticRewriter {
mcimadamore@1759 3918 JCDiagnostic rewriteDiagnostic(JCDiagnostic.Factory diags,
mcimadamore@1759 3919 DiagnosticPosition preferedPos, DiagnosticSource preferredSource,
mcimadamore@1759 3920 DiagnosticType preferredKind, JCDiagnostic d);
mcimadamore@1759 3921 }
mcimadamore@1759 3922
mcimadamore@1759 3923 /**
mcimadamore@1759 3924 * A diagnostic template is made up of two ingredients: (i) a regular
mcimadamore@1759 3925 * expression for matching a diagnostic key and (ii) a list of sub-templates
mcimadamore@1759 3926 * for matching diagnostic arguments.
mcimadamore@1759 3927 */
mcimadamore@1759 3928 static class Template {
mcimadamore@1759 3929
mcimadamore@1759 3930 /** regex used to match diag key */
mcimadamore@1759 3931 String regex;
mcimadamore@1759 3932
mcimadamore@1759 3933 /** templates used to match diagnostic args */
mcimadamore@1759 3934 Template[] subTemplates;
mcimadamore@1759 3935
mcimadamore@1759 3936 Template(String key, Template... subTemplates) {
mcimadamore@1759 3937 this.regex = key;
mcimadamore@1759 3938 this.subTemplates = subTemplates;
mcimadamore@1759 3939 }
mcimadamore@1759 3940
mcimadamore@1759 3941 /**
mcimadamore@1759 3942 * Returns true if the regex matches the diagnostic key and if
mcimadamore@1759 3943 * all diagnostic arguments are matches by corresponding sub-templates.
mcimadamore@1759 3944 */
mcimadamore@1759 3945 boolean matches(Object o) {
mcimadamore@1759 3946 JCDiagnostic d = (JCDiagnostic)o;
mcimadamore@1759 3947 Object[] args = d.getArgs();
mcimadamore@1759 3948 if (!d.getCode().matches(regex) ||
mcimadamore@1759 3949 subTemplates.length != d.getArgs().length) {
mcimadamore@1759 3950 return false;
mcimadamore@1759 3951 }
mcimadamore@1759 3952 for (int i = 0; i < args.length ; i++) {
mcimadamore@1759 3953 if (!subTemplates[i].matches(args[i])) {
mcimadamore@1759 3954 return false;
mcimadamore@1759 3955 }
mcimadamore@1759 3956 }
mcimadamore@1759 3957 return true;
mcimadamore@1759 3958 }
mcimadamore@1759 3959 }
mcimadamore@1759 3960
mcimadamore@1759 3961 /** a dummy template that match any diagnostic argument */
mcimadamore@1759 3962 static final Template skip = new Template("") {
mcimadamore@1759 3963 @Override
mcimadamore@1759 3964 boolean matches(Object d) {
mcimadamore@1759 3965 return true;
mcimadamore@1759 3966 }
mcimadamore@1759 3967 };
mcimadamore@1759 3968
mcimadamore@1759 3969 /** rewriter map used for method resolution simplification */
mcimadamore@1759 3970 static final Map<Template, DiagnosticRewriter> rewriters =
mcimadamore@1759 3971 new LinkedHashMap<Template, DiagnosticRewriter>();
mcimadamore@1759 3972
mcimadamore@1759 3973 static {
mcimadamore@1759 3974 String argMismatchRegex = MethodCheckDiag.ARG_MISMATCH.regex();
mcimadamore@1759 3975 rewriters.put(new Template(argMismatchRegex, skip),
mcimadamore@1759 3976 new DiagnosticRewriter() {
mcimadamore@1759 3977 @Override
mcimadamore@1759 3978 public JCDiagnostic rewriteDiagnostic(JCDiagnostic.Factory diags,
mcimadamore@1759 3979 DiagnosticPosition preferedPos, DiagnosticSource preferredSource,
mcimadamore@1759 3980 DiagnosticType preferredKind, JCDiagnostic d) {
mcimadamore@1759 3981 JCDiagnostic cause = (JCDiagnostic)d.getArgs()[0];
mcimadamore@1759 3982 return diags.create(preferredKind, preferredSource, d.getDiagnosticPosition(),
mcimadamore@1759 3983 "prob.found.req", cause);
mcimadamore@1759 3984 }
mcimadamore@1759 3985 });
mcimadamore@1759 3986 }
mcimadamore@1759 3987 }
mcimadamore@1759 3988
mcimadamore@160 3989 enum MethodResolutionPhase {
mcimadamore@160 3990 BASIC(false, false),
mcimadamore@160 3991 BOX(true, false),
mcimadamore@1394 3992 VARARITY(true, true) {
mcimadamore@1394 3993 @Override
mcimadamore@1394 3994 public Symbol mergeResults(Symbol bestSoFar, Symbol sym) {
mcimadamore@1394 3995 switch (sym.kind) {
mcimadamore@1394 3996 case WRONG_MTH:
mcimadamore@1394 3997 return (bestSoFar.kind == WRONG_MTH || bestSoFar.kind == WRONG_MTHS) ?
mcimadamore@1394 3998 bestSoFar :
mcimadamore@1394 3999 sym;
mcimadamore@1394 4000 case ABSENT_MTH:
mcimadamore@1394 4001 return bestSoFar;
mcimadamore@1394 4002 default:
mcimadamore@1394 4003 return sym;
mcimadamore@1394 4004 }
mcimadamore@1394 4005 }
mcimadamore@1394 4006 };
mcimadamore@160 4007
vromero@1442 4008 final boolean isBoxingRequired;
vromero@1442 4009 final boolean isVarargsRequired;
mcimadamore@160 4010
mcimadamore@160 4011 MethodResolutionPhase(boolean isBoxingRequired, boolean isVarargsRequired) {
mcimadamore@160 4012 this.isBoxingRequired = isBoxingRequired;
mcimadamore@160 4013 this.isVarargsRequired = isVarargsRequired;
mcimadamore@160 4014 }
mcimadamore@160 4015
mcimadamore@160 4016 public boolean isBoxingRequired() {
mcimadamore@160 4017 return isBoxingRequired;
mcimadamore@160 4018 }
mcimadamore@160 4019
mcimadamore@160 4020 public boolean isVarargsRequired() {
mcimadamore@160 4021 return isVarargsRequired;
mcimadamore@160 4022 }
mcimadamore@160 4023
mcimadamore@160 4024 public boolean isApplicable(boolean boxingEnabled, boolean varargsEnabled) {
mcimadamore@160 4025 return (varargsEnabled || !isVarargsRequired) &&
mcimadamore@160 4026 (boxingEnabled || !isBoxingRequired);
mcimadamore@160 4027 }
mcimadamore@1394 4028
mcimadamore@1394 4029 public Symbol mergeResults(Symbol prev, Symbol sym) {
mcimadamore@1394 4030 return sym;
mcimadamore@1394 4031 }
mcimadamore@160 4032 }
mcimadamore@160 4033
mcimadamore@160 4034 final List<MethodResolutionPhase> methodResolutionSteps = List.of(BASIC, BOX, VARARITY);
mcimadamore@160 4035
mcimadamore@1215 4036 /**
mcimadamore@1215 4037 * A resolution context is used to keep track of intermediate results of
mcimadamore@1215 4038 * overload resolution, such as list of method that are not applicable
mcimadamore@1215 4039 * (used to generate more precise diagnostics) and so on. Resolution contexts
mcimadamore@1215 4040 * can be nested - this means that when each overload resolution routine should
mcimadamore@1215 4041 * work within the resolution context it created.
mcimadamore@1215 4042 */
mcimadamore@1215 4043 class MethodResolutionContext {
mcimadamore@689 4044
mcimadamore@1215 4045 private List<Candidate> candidates = List.nil();
mcimadamore@1114 4046
mcimadamore@1347 4047 MethodResolutionPhase step = null;
mcimadamore@1215 4048
mcimadamore@1674 4049 MethodCheck methodCheck = resolveMethodCheck;
mcimadamore@1674 4050
mcimadamore@1215 4051 private boolean internalResolution = false;
mcimadamore@1347 4052 private DeferredAttr.AttrMode attrMode = DeferredAttr.AttrMode.SPECULATIVE;
mcimadamore@1215 4053
mcimadamore@1215 4054 void addInapplicableCandidate(Symbol sym, JCDiagnostic details) {
mcimadamore@1215 4055 Candidate c = new Candidate(currentResolutionContext.step, sym, details, null);
mcimadamore@1352 4056 candidates = candidates.append(c);
mcimadamore@1215 4057 }
mcimadamore@1215 4058
mcimadamore@1215 4059 void addApplicableCandidate(Symbol sym, Type mtype) {
mcimadamore@1215 4060 Candidate c = new Candidate(currentResolutionContext.step, sym, null, mtype);
mcimadamore@1215 4061 candidates = candidates.append(c);
mcimadamore@1215 4062 }
mcimadamore@1215 4063
mcimadamore@1551 4064 DeferredAttrContext deferredAttrContext(Symbol sym, InferenceContext inferenceContext, ResultInfo pendingResult, Warner warn) {
mcimadamore@1551 4065 return deferredAttr.new DeferredAttrContext(attrMode, sym, step, inferenceContext, pendingResult != null ? pendingResult.checkContext.deferredAttrContext() : deferredAttr.emptyDeferredAttrContext, warn);
mcimadamore@1479 4066 }
mcimadamore@1479 4067
mcimadamore@1215 4068 /**
mcimadamore@1215 4069 * This class represents an overload resolution candidate. There are two
mcimadamore@1215 4070 * kinds of candidates: applicable methods and inapplicable methods;
mcimadamore@1215 4071 * applicable methods have a pointer to the instantiated method type,
mcimadamore@1215 4072 * while inapplicable candidates contain further details about the
mcimadamore@1215 4073 * reason why the method has been considered inapplicable.
mcimadamore@1215 4074 */
vromero@1588 4075 @SuppressWarnings("overrides")
mcimadamore@1215 4076 class Candidate {
mcimadamore@1215 4077
mcimadamore@1215 4078 final MethodResolutionPhase step;
mcimadamore@1215 4079 final Symbol sym;
mcimadamore@1215 4080 final JCDiagnostic details;
mcimadamore@1215 4081 final Type mtype;
mcimadamore@1215 4082
mcimadamore@1215 4083 private Candidate(MethodResolutionPhase step, Symbol sym, JCDiagnostic details, Type mtype) {
mcimadamore@1215 4084 this.step = step;
mcimadamore@1215 4085 this.sym = sym;
mcimadamore@1215 4086 this.details = details;
mcimadamore@1215 4087 this.mtype = mtype;
mcimadamore@1215 4088 }
mcimadamore@1215 4089
mcimadamore@1215 4090 @Override
mcimadamore@1215 4091 public boolean equals(Object o) {
mcimadamore@1215 4092 if (o instanceof Candidate) {
mcimadamore@1215 4093 Symbol s1 = this.sym;
mcimadamore@1215 4094 Symbol s2 = ((Candidate)o).sym;
mcimadamore@1215 4095 if ((s1 != s2 &&
mcimadamore@1352 4096 (s1.overrides(s2, s1.owner.type.tsym, types, false) ||
mcimadamore@1352 4097 (s2.overrides(s1, s2.owner.type.tsym, types, false)))) ||
mcimadamore@1352 4098 ((s1.isConstructor() || s2.isConstructor()) && s1.owner != s2.owner))
mcimadamore@1215 4099 return true;
mcimadamore@1215 4100 }
mcimadamore@1215 4101 return false;
mcimadamore@1215 4102 }
mcimadamore@1215 4103
mcimadamore@1215 4104 boolean isApplicable() {
mcimadamore@1215 4105 return mtype != null;
mcimadamore@1215 4106 }
mcimadamore@1215 4107 }
mcimadamore@1347 4108
mcimadamore@1347 4109 DeferredAttr.AttrMode attrMode() {
mcimadamore@1347 4110 return attrMode;
mcimadamore@1347 4111 }
mcimadamore@1347 4112
mcimadamore@1347 4113 boolean internal() {
mcimadamore@1347 4114 return internalResolution;
mcimadamore@1347 4115 }
mcimadamore@160 4116 }
mcimadamore@1215 4117
mcimadamore@1215 4118 MethodResolutionContext currentResolutionContext = null;
duke@1 4119 }

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