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

Mon, 06 Dec 2010 11:51:02 +0000

author
mcimadamore
date
Mon, 06 Dec 2010 11:51:02 +0000
changeset 775
536ee9f126b1
parent 741
58ceeff50af8
child 787
b1c98bfd4709
permissions
-rw-r--r--

5088429: varargs overloading problem
Summary: compiler implementation for overload resolution w/ varargs method does not match JLS
Reviewed-by: jjg

duke@1 1 /*
ohair@554 2 * Copyright (c) 1999, 2008, Oracle and/or its affiliates. All rights reserved.
duke@1 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@1 4 *
duke@1 5 * This code is free software; you can redistribute it and/or modify it
duke@1 6 * under the terms of the GNU General Public License version 2 only, as
ohair@554 7 * published by the Free Software Foundation. Oracle designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
ohair@554 9 * by Oracle in the LICENSE file that accompanied this code.
duke@1 10 *
duke@1 11 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@1 12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@1 13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@1 14 * version 2 for more details (a copy is included in the LICENSE file that
duke@1 15 * accompanied this code).
duke@1 16 *
duke@1 17 * You should have received a copy of the GNU General Public License version
duke@1 18 * 2 along with this work; if not, write to the Free Software Foundation,
duke@1 19 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@1 20 *
ohair@554 21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
ohair@554 22 * or visit www.oracle.com if you need additional information or have any
ohair@554 23 * questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.comp;
duke@1 27
duke@1 28 import com.sun.tools.javac.util.*;
duke@1 29 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
duke@1 30 import com.sun.tools.javac.code.*;
duke@1 31 import com.sun.tools.javac.jvm.*;
duke@1 32 import com.sun.tools.javac.tree.*;
mcimadamore@161 33 import com.sun.tools.javac.api.Formattable.LocalizedString;
mcimadamore@160 34 import static com.sun.tools.javac.comp.Resolve.MethodResolutionPhase.*;
duke@1 35
duke@1 36 import com.sun.tools.javac.code.Type.*;
duke@1 37 import com.sun.tools.javac.code.Symbol.*;
duke@1 38 import com.sun.tools.javac.tree.JCTree.*;
duke@1 39
duke@1 40 import static com.sun.tools.javac.code.Flags.*;
duke@1 41 import static com.sun.tools.javac.code.Kinds.*;
duke@1 42 import static com.sun.tools.javac.code.TypeTags.*;
jjg@643 43 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticFlag;
mcimadamore@631 44 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticType;
duke@1 45 import javax.lang.model.element.ElementVisitor;
duke@1 46
mcimadamore@160 47 import java.util.Map;
mcimadamore@160 48 import java.util.HashMap;
mcimadamore@160 49
duke@1 50 /** Helper class for name resolution, used mostly by the attribution phase.
duke@1 51 *
jjg@581 52 * <p><b>This is NOT part of any supported API.
jjg@581 53 * If you write code that depends on this, you do so at your own risk.
duke@1 54 * This code and its internal interfaces are subject to change or
duke@1 55 * deletion without notice.</b>
duke@1 56 */
duke@1 57 public class Resolve {
duke@1 58 protected static final Context.Key<Resolve> resolveKey =
duke@1 59 new Context.Key<Resolve>();
duke@1 60
jjg@113 61 Names names;
duke@1 62 Log log;
duke@1 63 Symtab syms;
duke@1 64 Check chk;
duke@1 65 Infer infer;
duke@1 66 ClassReader reader;
duke@1 67 TreeInfo treeinfo;
duke@1 68 Types types;
mcimadamore@89 69 JCDiagnostic.Factory diags;
duke@1 70 public final boolean boxingEnabled; // = source.allowBoxing();
duke@1 71 public final boolean varargsEnabled; // = source.allowVarargs();
mcimadamore@674 72 public final boolean allowMethodHandles;
mcimadamore@674 73 public final boolean allowInvokeDynamic;
mcimadamore@674 74 public final boolean allowTransitionalJSR292;
duke@1 75 private final boolean debugResolve;
duke@1 76
mcimadamore@674 77 Scope polymorphicSignatureScope;
mcimadamore@674 78
duke@1 79 public static Resolve instance(Context context) {
duke@1 80 Resolve instance = context.get(resolveKey);
duke@1 81 if (instance == null)
duke@1 82 instance = new Resolve(context);
duke@1 83 return instance;
duke@1 84 }
duke@1 85
duke@1 86 protected Resolve(Context context) {
duke@1 87 context.put(resolveKey, this);
duke@1 88 syms = Symtab.instance(context);
duke@1 89
duke@1 90 varNotFound = new
mcimadamore@302 91 SymbolNotFoundError(ABSENT_VAR);
duke@1 92 wrongMethod = new
mcimadamore@302 93 InapplicableSymbolError(syms.errSymbol);
duke@1 94 wrongMethods = new
mcimadamore@302 95 InapplicableSymbolsError(syms.errSymbol);
duke@1 96 methodNotFound = new
mcimadamore@302 97 SymbolNotFoundError(ABSENT_MTH);
duke@1 98 typeNotFound = new
mcimadamore@302 99 SymbolNotFoundError(ABSENT_TYP);
duke@1 100
jjg@113 101 names = Names.instance(context);
duke@1 102 log = Log.instance(context);
duke@1 103 chk = Check.instance(context);
duke@1 104 infer = Infer.instance(context);
duke@1 105 reader = ClassReader.instance(context);
duke@1 106 treeinfo = TreeInfo.instance(context);
duke@1 107 types = Types.instance(context);
mcimadamore@89 108 diags = JCDiagnostic.Factory.instance(context);
duke@1 109 Source source = Source.instance(context);
duke@1 110 boxingEnabled = source.allowBoxing();
duke@1 111 varargsEnabled = source.allowVarargs();
duke@1 112 Options options = Options.instance(context);
jjg@700 113 debugResolve = options.isSet("debugresolve");
jjg@700 114 allowTransitionalJSR292 = options.isSet("allowTransitionalJSR292");
mcimadamore@674 115 Target target = Target.instance(context);
mcimadamore@674 116 allowMethodHandles = allowTransitionalJSR292 ||
mcimadamore@674 117 target.hasMethodHandles();
mcimadamore@674 118 allowInvokeDynamic = (allowTransitionalJSR292 ||
mcimadamore@674 119 target.hasInvokedynamic()) &&
jjg@700 120 options.isSet("invokedynamic");
mcimadamore@674 121 polymorphicSignatureScope = new Scope(syms.noSymbol);
mcimadamore@689 122
mcimadamore@689 123 inapplicableMethodException = new InapplicableMethodException(diags);
duke@1 124 }
duke@1 125
duke@1 126 /** error symbols, which are returned when resolution fails
duke@1 127 */
mcimadamore@302 128 final SymbolNotFoundError varNotFound;
mcimadamore@302 129 final InapplicableSymbolError wrongMethod;
mcimadamore@302 130 final InapplicableSymbolsError wrongMethods;
mcimadamore@302 131 final SymbolNotFoundError methodNotFound;
mcimadamore@302 132 final SymbolNotFoundError typeNotFound;
duke@1 133
duke@1 134 /* ************************************************************************
duke@1 135 * Identifier resolution
duke@1 136 *************************************************************************/
duke@1 137
duke@1 138 /** An environment is "static" if its static level is greater than
duke@1 139 * the one of its outer environment
duke@1 140 */
duke@1 141 static boolean isStatic(Env<AttrContext> env) {
duke@1 142 return env.info.staticLevel > env.outer.info.staticLevel;
duke@1 143 }
duke@1 144
duke@1 145 /** An environment is an "initializer" if it is a constructor or
duke@1 146 * an instance initializer.
duke@1 147 */
duke@1 148 static boolean isInitializer(Env<AttrContext> env) {
duke@1 149 Symbol owner = env.info.scope.owner;
duke@1 150 return owner.isConstructor() ||
duke@1 151 owner.owner.kind == TYP &&
duke@1 152 (owner.kind == VAR ||
duke@1 153 owner.kind == MTH && (owner.flags() & BLOCK) != 0) &&
duke@1 154 (owner.flags() & STATIC) == 0;
duke@1 155 }
duke@1 156
duke@1 157 /** Is class accessible in given evironment?
duke@1 158 * @param env The current environment.
duke@1 159 * @param c The class whose accessibility is checked.
duke@1 160 */
duke@1 161 public boolean isAccessible(Env<AttrContext> env, TypeSymbol c) {
mcimadamore@741 162 return isAccessible(env, c, false);
mcimadamore@741 163 }
mcimadamore@741 164
mcimadamore@741 165 public boolean isAccessible(Env<AttrContext> env, TypeSymbol c, boolean checkInner) {
mcimadamore@741 166 boolean isAccessible = false;
duke@1 167 switch ((short)(c.flags() & AccessFlags)) {
mcimadamore@741 168 case PRIVATE:
mcimadamore@741 169 isAccessible =
mcimadamore@741 170 env.enclClass.sym.outermostClass() ==
mcimadamore@741 171 c.owner.outermostClass();
mcimadamore@741 172 break;
mcimadamore@741 173 case 0:
mcimadamore@741 174 isAccessible =
mcimadamore@741 175 env.toplevel.packge == c.owner // fast special case
mcimadamore@741 176 ||
mcimadamore@741 177 env.toplevel.packge == c.packge()
mcimadamore@741 178 ||
mcimadamore@741 179 // Hack: this case is added since synthesized default constructors
mcimadamore@741 180 // of anonymous classes should be allowed to access
mcimadamore@741 181 // classes which would be inaccessible otherwise.
mcimadamore@741 182 env.enclMethod != null &&
mcimadamore@741 183 (env.enclMethod.mods.flags & ANONCONSTR) != 0;
mcimadamore@741 184 break;
mcimadamore@741 185 default: // error recovery
mcimadamore@741 186 case PUBLIC:
mcimadamore@741 187 isAccessible = true;
mcimadamore@741 188 break;
mcimadamore@741 189 case PROTECTED:
mcimadamore@741 190 isAccessible =
mcimadamore@741 191 env.toplevel.packge == c.owner // fast special case
mcimadamore@741 192 ||
mcimadamore@741 193 env.toplevel.packge == c.packge()
mcimadamore@741 194 ||
mcimadamore@741 195 isInnerSubClass(env.enclClass.sym, c.owner);
mcimadamore@741 196 break;
duke@1 197 }
mcimadamore@741 198 return (checkInner == false || c.type.getEnclosingType() == Type.noType) ?
mcimadamore@741 199 isAccessible :
mcimadamore@741 200 isAccessible & isAccessible(env, c.type.getEnclosingType(), checkInner);
duke@1 201 }
duke@1 202 //where
duke@1 203 /** Is given class a subclass of given base class, or an inner class
duke@1 204 * of a subclass?
duke@1 205 * Return null if no such class exists.
duke@1 206 * @param c The class which is the subclass or is contained in it.
duke@1 207 * @param base The base class
duke@1 208 */
duke@1 209 private boolean isInnerSubClass(ClassSymbol c, Symbol base) {
duke@1 210 while (c != null && !c.isSubClass(base, types)) {
duke@1 211 c = c.owner.enclClass();
duke@1 212 }
duke@1 213 return c != null;
duke@1 214 }
duke@1 215
duke@1 216 boolean isAccessible(Env<AttrContext> env, Type t) {
mcimadamore@741 217 return isAccessible(env, t, false);
mcimadamore@741 218 }
mcimadamore@741 219
mcimadamore@741 220 boolean isAccessible(Env<AttrContext> env, Type t, boolean checkInner) {
duke@1 221 return (t.tag == ARRAY)
duke@1 222 ? isAccessible(env, types.elemtype(t))
mcimadamore@741 223 : isAccessible(env, t.tsym, checkInner);
duke@1 224 }
duke@1 225
duke@1 226 /** Is symbol accessible as a member of given type in given evironment?
duke@1 227 * @param env The current environment.
duke@1 228 * @param site The type of which the tested symbol is regarded
duke@1 229 * as a member.
duke@1 230 * @param sym The symbol.
duke@1 231 */
duke@1 232 public boolean isAccessible(Env<AttrContext> env, Type site, Symbol sym) {
mcimadamore@741 233 return isAccessible(env, site, sym, false);
mcimadamore@741 234 }
mcimadamore@741 235 public boolean isAccessible(Env<AttrContext> env, Type site, Symbol sym, boolean checkInner) {
duke@1 236 if (sym.name == names.init && sym.owner != site.tsym) return false;
duke@1 237 ClassSymbol sub;
duke@1 238 switch ((short)(sym.flags() & AccessFlags)) {
duke@1 239 case PRIVATE:
duke@1 240 return
duke@1 241 (env.enclClass.sym == sym.owner // fast special case
duke@1 242 ||
duke@1 243 env.enclClass.sym.outermostClass() ==
duke@1 244 sym.owner.outermostClass())
duke@1 245 &&
duke@1 246 sym.isInheritedIn(site.tsym, types);
duke@1 247 case 0:
duke@1 248 return
duke@1 249 (env.toplevel.packge == sym.owner.owner // fast special case
duke@1 250 ||
duke@1 251 env.toplevel.packge == sym.packge())
duke@1 252 &&
mcimadamore@741 253 isAccessible(env, site, checkInner)
duke@1 254 &&
mcimadamore@254 255 sym.isInheritedIn(site.tsym, types)
mcimadamore@254 256 &&
mcimadamore@254 257 notOverriddenIn(site, sym);
duke@1 258 case PROTECTED:
duke@1 259 return
duke@1 260 (env.toplevel.packge == sym.owner.owner // fast special case
duke@1 261 ||
duke@1 262 env.toplevel.packge == sym.packge()
duke@1 263 ||
duke@1 264 isProtectedAccessible(sym, env.enclClass.sym, site)
duke@1 265 ||
duke@1 266 // OK to select instance method or field from 'super' or type name
duke@1 267 // (but type names should be disallowed elsewhere!)
duke@1 268 env.info.selectSuper && (sym.flags() & STATIC) == 0 && sym.kind != TYP)
duke@1 269 &&
mcimadamore@741 270 isAccessible(env, site, checkInner)
duke@1 271 &&
mcimadamore@254 272 notOverriddenIn(site, sym);
duke@1 273 default: // this case includes erroneous combinations as well
mcimadamore@741 274 return isAccessible(env, site, checkInner) && notOverriddenIn(site, sym);
mcimadamore@254 275 }
mcimadamore@254 276 }
mcimadamore@254 277 //where
mcimadamore@254 278 /* `sym' is accessible only if not overridden by
mcimadamore@254 279 * another symbol which is a member of `site'
mcimadamore@254 280 * (because, if it is overridden, `sym' is not strictly
mcimadamore@674 281 * speaking a member of `site'). A polymorphic signature method
mcimadamore@674 282 * cannot be overridden (e.g. MH.invokeExact(Object[])).
mcimadamore@254 283 */
mcimadamore@254 284 private boolean notOverriddenIn(Type site, Symbol sym) {
mcimadamore@254 285 if (sym.kind != MTH || sym.isConstructor() || sym.isStatic())
mcimadamore@254 286 return true;
mcimadamore@254 287 else {
mcimadamore@254 288 Symbol s2 = ((MethodSymbol)sym).implementation(site.tsym, types, true);
mcimadamore@325 289 return (s2 == null || s2 == sym ||
mcimadamore@674 290 s2.isPolymorphicSignatureGeneric() ||
mcimadamore@325 291 !types.isSubSignature(types.memberType(site, s2), types.memberType(site, sym)));
duke@1 292 }
duke@1 293 }
duke@1 294 //where
duke@1 295 /** Is given protected symbol accessible if it is selected from given site
duke@1 296 * and the selection takes place in given class?
duke@1 297 * @param sym The symbol with protected access
duke@1 298 * @param c The class where the access takes place
duke@1 299 * @site The type of the qualifier
duke@1 300 */
duke@1 301 private
duke@1 302 boolean isProtectedAccessible(Symbol sym, ClassSymbol c, Type site) {
duke@1 303 while (c != null &&
duke@1 304 !(c.isSubClass(sym.owner, types) &&
duke@1 305 (c.flags() & INTERFACE) == 0 &&
duke@1 306 // In JLS 2e 6.6.2.1, the subclass restriction applies
duke@1 307 // only to instance fields and methods -- types are excluded
duke@1 308 // regardless of whether they are declared 'static' or not.
duke@1 309 ((sym.flags() & STATIC) != 0 || sym.kind == TYP || site.tsym.isSubClass(c, types))))
duke@1 310 c = c.owner.enclClass();
duke@1 311 return c != null;
duke@1 312 }
duke@1 313
duke@1 314 /** Try to instantiate the type of a method so that it fits
duke@1 315 * given type arguments and argument types. If succesful, return
duke@1 316 * the method's instantiated type, else return null.
duke@1 317 * The instantiation will take into account an additional leading
duke@1 318 * formal parameter if the method is an instance method seen as a member
duke@1 319 * of un underdetermined site In this case, we treat site as an additional
duke@1 320 * parameter and the parameters of the class containing the method as
duke@1 321 * additional type variables that get instantiated.
duke@1 322 *
duke@1 323 * @param env The current environment
duke@1 324 * @param site The type of which the method is a member.
duke@1 325 * @param m The method symbol.
duke@1 326 * @param argtypes The invocation's given value arguments.
duke@1 327 * @param typeargtypes The invocation's given type arguments.
duke@1 328 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 329 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 330 */
duke@1 331 Type rawInstantiate(Env<AttrContext> env,
duke@1 332 Type site,
duke@1 333 Symbol m,
duke@1 334 List<Type> argtypes,
duke@1 335 List<Type> typeargtypes,
duke@1 336 boolean allowBoxing,
duke@1 337 boolean useVarargs,
duke@1 338 Warner warn)
mcimadamore@299 339 throws Infer.InferenceException {
mcimadamore@674 340 boolean polymorphicSignature = (m.isPolymorphicSignatureGeneric() && allowMethodHandles) ||
mcimadamore@674 341 isTransitionalDynamicCallSite(site, m);
mcimadamore@689 342 if (useVarargs && (m.flags() & VARARGS) == 0)
mcimadamore@689 343 throw inapplicableMethodException.setMessage(null);
duke@1 344 Type mt = types.memberType(site, m);
duke@1 345
duke@1 346 // tvars is the list of formal type variables for which type arguments
duke@1 347 // need to inferred.
duke@1 348 List<Type> tvars = env.info.tvars;
duke@1 349 if (typeargtypes == null) typeargtypes = List.nil();
mcimadamore@674 350 if (allowTransitionalJSR292 && polymorphicSignature && typeargtypes.nonEmpty()) {
mcimadamore@674 351 //transitional 292 call sites might have wrong number of targs
mcimadamore@674 352 }
mcimadamore@674 353 else if (mt.tag != FORALL && typeargtypes.nonEmpty()) {
duke@1 354 // This is not a polymorphic method, but typeargs are supplied
duke@1 355 // which is fine, see JLS3 15.12.2.1
duke@1 356 } else if (mt.tag == FORALL && typeargtypes.nonEmpty()) {
duke@1 357 ForAll pmt = (ForAll) mt;
duke@1 358 if (typeargtypes.length() != pmt.tvars.length())
mcimadamore@689 359 throw inapplicableMethodException.setMessage("arg.length.mismatch"); // not enough args
duke@1 360 // Check type arguments are within bounds
duke@1 361 List<Type> formals = pmt.tvars;
duke@1 362 List<Type> actuals = typeargtypes;
duke@1 363 while (formals.nonEmpty() && actuals.nonEmpty()) {
duke@1 364 List<Type> bounds = types.subst(types.getBounds((TypeVar)formals.head),
duke@1 365 pmt.tvars, typeargtypes);
duke@1 366 for (; bounds.nonEmpty(); bounds = bounds.tail)
duke@1 367 if (!types.isSubtypeUnchecked(actuals.head, bounds.head, warn))
mcimadamore@689 368 throw inapplicableMethodException.setMessage("explicit.param.do.not.conform.to.bounds",actuals.head, bounds);
duke@1 369 formals = formals.tail;
duke@1 370 actuals = actuals.tail;
duke@1 371 }
duke@1 372 mt = types.subst(pmt.qtype, pmt.tvars, typeargtypes);
duke@1 373 } else if (mt.tag == FORALL) {
duke@1 374 ForAll pmt = (ForAll) mt;
duke@1 375 List<Type> tvars1 = types.newInstances(pmt.tvars);
duke@1 376 tvars = tvars.appendList(tvars1);
duke@1 377 mt = types.subst(pmt.qtype, pmt.tvars, tvars1);
duke@1 378 }
duke@1 379
duke@1 380 // find out whether we need to go the slow route via infer
mcimadamore@674 381 boolean instNeeded = tvars.tail != null || /*inlined: tvars.nonEmpty()*/
mcimadamore@674 382 polymorphicSignature;
duke@1 383 for (List<Type> l = argtypes;
duke@1 384 l.tail != null/*inlined: l.nonEmpty()*/ && !instNeeded;
duke@1 385 l = l.tail) {
duke@1 386 if (l.head.tag == FORALL) instNeeded = true;
duke@1 387 }
duke@1 388
duke@1 389 if (instNeeded)
mcimadamore@674 390 return polymorphicSignature ?
mcimadamore@674 391 infer.instantiatePolymorphicSignatureInstance(env, site, m.name, (MethodSymbol)m, argtypes, typeargtypes) :
mcimadamore@674 392 infer.instantiateMethod(env,
mcimadamore@547 393 tvars,
duke@1 394 (MethodType)mt,
mcimadamore@580 395 m,
duke@1 396 argtypes,
duke@1 397 allowBoxing,
duke@1 398 useVarargs,
duke@1 399 warn);
mcimadamore@689 400
mcimadamore@689 401 checkRawArgumentsAcceptable(argtypes, mt.getParameterTypes(),
mcimadamore@689 402 allowBoxing, useVarargs, warn);
mcimadamore@689 403 return mt;
duke@1 404 }
duke@1 405
mcimadamore@674 406 boolean isTransitionalDynamicCallSite(Type site, Symbol sym) {
mcimadamore@674 407 return allowTransitionalJSR292 && // old logic that doesn't use annotations
mcimadamore@674 408 !sym.isPolymorphicSignatureInstance() &&
mcimadamore@674 409 ((allowMethodHandles && site == syms.methodHandleType && // invokeExact, invokeGeneric, invoke
mcimadamore@674 410 (sym.name == names.invoke && sym.isPolymorphicSignatureGeneric())) ||
mcimadamore@674 411 (site == syms.invokeDynamicType && allowInvokeDynamic)); // InvokeDynamic.XYZ
mcimadamore@674 412 }
mcimadamore@674 413
duke@1 414 /** Same but returns null instead throwing a NoInstanceException
duke@1 415 */
duke@1 416 Type instantiate(Env<AttrContext> env,
duke@1 417 Type site,
duke@1 418 Symbol m,
duke@1 419 List<Type> argtypes,
duke@1 420 List<Type> typeargtypes,
duke@1 421 boolean allowBoxing,
duke@1 422 boolean useVarargs,
duke@1 423 Warner warn) {
duke@1 424 try {
duke@1 425 return rawInstantiate(env, site, m, argtypes, typeargtypes,
duke@1 426 allowBoxing, useVarargs, warn);
mcimadamore@689 427 } catch (InapplicableMethodException ex) {
duke@1 428 return null;
duke@1 429 }
duke@1 430 }
duke@1 431
duke@1 432 /** Check if a parameter list accepts a list of args.
duke@1 433 */
duke@1 434 boolean argumentsAcceptable(List<Type> argtypes,
duke@1 435 List<Type> formals,
duke@1 436 boolean allowBoxing,
duke@1 437 boolean useVarargs,
duke@1 438 Warner warn) {
mcimadamore@689 439 try {
mcimadamore@689 440 checkRawArgumentsAcceptable(argtypes, formals, allowBoxing, useVarargs, warn);
mcimadamore@689 441 return true;
mcimadamore@689 442 } catch (InapplicableMethodException ex) {
mcimadamore@689 443 return false;
mcimadamore@689 444 }
mcimadamore@689 445 }
mcimadamore@689 446 void checkRawArgumentsAcceptable(List<Type> argtypes,
mcimadamore@689 447 List<Type> formals,
mcimadamore@689 448 boolean allowBoxing,
mcimadamore@689 449 boolean useVarargs,
mcimadamore@689 450 Warner warn) {
duke@1 451 Type varargsFormal = useVarargs ? formals.last() : null;
mcimadamore@689 452 if (varargsFormal == null &&
mcimadamore@689 453 argtypes.size() != formals.size()) {
mcimadamore@689 454 throw inapplicableMethodException.setMessage("arg.length.mismatch"); // not enough args
mcimadamore@689 455 }
mcimadamore@689 456
duke@1 457 while (argtypes.nonEmpty() && formals.head != varargsFormal) {
duke@1 458 boolean works = allowBoxing
duke@1 459 ? types.isConvertible(argtypes.head, formals.head, warn)
duke@1 460 : types.isSubtypeUnchecked(argtypes.head, formals.head, warn);
mcimadamore@689 461 if (!works)
mcimadamore@689 462 throw inapplicableMethodException.setMessage("no.conforming.assignment.exists",
mcimadamore@689 463 argtypes.head,
mcimadamore@689 464 formals.head);
duke@1 465 argtypes = argtypes.tail;
duke@1 466 formals = formals.tail;
duke@1 467 }
mcimadamore@689 468
mcimadamore@689 469 if (formals.head != varargsFormal)
mcimadamore@689 470 throw inapplicableMethodException.setMessage("arg.length.mismatch"); // not enough args
mcimadamore@689 471
mcimadamore@689 472 if (useVarargs) {
mcimadamore@689 473 Type elt = types.elemtype(varargsFormal);
mcimadamore@689 474 while (argtypes.nonEmpty()) {
mcimadamore@689 475 if (!types.isConvertible(argtypes.head, elt, warn))
mcimadamore@689 476 throw inapplicableMethodException.setMessage("varargs.argument.mismatch",
mcimadamore@689 477 argtypes.head,
mcimadamore@689 478 elt);
mcimadamore@689 479 argtypes = argtypes.tail;
mcimadamore@689 480 }
duke@1 481 }
mcimadamore@689 482 return;
duke@1 483 }
mcimadamore@689 484 // where
mcimadamore@689 485 public static class InapplicableMethodException extends RuntimeException {
mcimadamore@689 486 private static final long serialVersionUID = 0;
mcimadamore@689 487
mcimadamore@689 488 JCDiagnostic diagnostic;
mcimadamore@689 489 JCDiagnostic.Factory diags;
mcimadamore@689 490
mcimadamore@689 491 InapplicableMethodException(JCDiagnostic.Factory diags) {
mcimadamore@689 492 this.diagnostic = null;
mcimadamore@689 493 this.diags = diags;
mcimadamore@689 494 }
mcimadamore@689 495 InapplicableMethodException setMessage(String key) {
mcimadamore@689 496 this.diagnostic = key != null ? diags.fragment(key) : null;
mcimadamore@689 497 return this;
mcimadamore@689 498 }
mcimadamore@689 499 InapplicableMethodException setMessage(String key, Object... args) {
mcimadamore@689 500 this.diagnostic = key != null ? diags.fragment(key, args) : null;
mcimadamore@689 501 return this;
mcimadamore@689 502 }
mcimadamore@689 503
mcimadamore@689 504 public JCDiagnostic getDiagnostic() {
mcimadamore@689 505 return diagnostic;
mcimadamore@689 506 }
mcimadamore@689 507 }
mcimadamore@689 508 private final InapplicableMethodException inapplicableMethodException;
duke@1 509
duke@1 510 /* ***************************************************************************
duke@1 511 * Symbol lookup
duke@1 512 * the following naming conventions for arguments are used
duke@1 513 *
duke@1 514 * env is the environment where the symbol was mentioned
duke@1 515 * site is the type of which the symbol is a member
duke@1 516 * name is the symbol's name
duke@1 517 * if no arguments are given
duke@1 518 * argtypes are the value arguments, if we search for a method
duke@1 519 *
duke@1 520 * If no symbol was found, a ResolveError detailing the problem is returned.
duke@1 521 ****************************************************************************/
duke@1 522
duke@1 523 /** Find field. Synthetic fields are always skipped.
duke@1 524 * @param env The current environment.
duke@1 525 * @param site The original type from where the selection takes place.
duke@1 526 * @param name The name of the field.
duke@1 527 * @param c The class to search for the field. This is always
duke@1 528 * a superclass or implemented interface of site's class.
duke@1 529 */
duke@1 530 Symbol findField(Env<AttrContext> env,
duke@1 531 Type site,
duke@1 532 Name name,
duke@1 533 TypeSymbol c) {
mcimadamore@19 534 while (c.type.tag == TYPEVAR)
mcimadamore@19 535 c = c.type.getUpperBound().tsym;
duke@1 536 Symbol bestSoFar = varNotFound;
duke@1 537 Symbol sym;
duke@1 538 Scope.Entry e = c.members().lookup(name);
duke@1 539 while (e.scope != null) {
duke@1 540 if (e.sym.kind == VAR && (e.sym.flags_field & SYNTHETIC) == 0) {
duke@1 541 return isAccessible(env, site, e.sym)
duke@1 542 ? e.sym : new AccessError(env, site, e.sym);
duke@1 543 }
duke@1 544 e = e.next();
duke@1 545 }
duke@1 546 Type st = types.supertype(c.type);
mcimadamore@19 547 if (st != null && (st.tag == CLASS || st.tag == TYPEVAR)) {
duke@1 548 sym = findField(env, site, name, st.tsym);
duke@1 549 if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 550 }
duke@1 551 for (List<Type> l = types.interfaces(c.type);
duke@1 552 bestSoFar.kind != AMBIGUOUS && l.nonEmpty();
duke@1 553 l = l.tail) {
duke@1 554 sym = findField(env, site, name, l.head.tsym);
duke@1 555 if (bestSoFar.kind < AMBIGUOUS && sym.kind < AMBIGUOUS &&
duke@1 556 sym.owner != bestSoFar.owner)
duke@1 557 bestSoFar = new AmbiguityError(bestSoFar, sym);
duke@1 558 else if (sym.kind < bestSoFar.kind)
duke@1 559 bestSoFar = sym;
duke@1 560 }
duke@1 561 return bestSoFar;
duke@1 562 }
duke@1 563
duke@1 564 /** Resolve a field identifier, throw a fatal error if not found.
duke@1 565 * @param pos The position to use for error reporting.
duke@1 566 * @param env The environment current at the method invocation.
duke@1 567 * @param site The type of the qualifying expression, in which
duke@1 568 * identifier is searched.
duke@1 569 * @param name The identifier's name.
duke@1 570 */
duke@1 571 public VarSymbol resolveInternalField(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 572 Type site, Name name) {
duke@1 573 Symbol sym = findField(env, site, name, site.tsym);
duke@1 574 if (sym.kind == VAR) return (VarSymbol)sym;
duke@1 575 else throw new FatalError(
mcimadamore@89 576 diags.fragment("fatal.err.cant.locate.field",
duke@1 577 name));
duke@1 578 }
duke@1 579
duke@1 580 /** Find unqualified variable or field with given name.
duke@1 581 * Synthetic fields always skipped.
duke@1 582 * @param env The current environment.
duke@1 583 * @param name The name of the variable or field.
duke@1 584 */
duke@1 585 Symbol findVar(Env<AttrContext> env, Name name) {
duke@1 586 Symbol bestSoFar = varNotFound;
duke@1 587 Symbol sym;
duke@1 588 Env<AttrContext> env1 = env;
duke@1 589 boolean staticOnly = false;
duke@1 590 while (env1.outer != null) {
duke@1 591 if (isStatic(env1)) staticOnly = true;
duke@1 592 Scope.Entry e = env1.info.scope.lookup(name);
duke@1 593 while (e.scope != null &&
duke@1 594 (e.sym.kind != VAR ||
duke@1 595 (e.sym.flags_field & SYNTHETIC) != 0))
duke@1 596 e = e.next();
duke@1 597 sym = (e.scope != null)
duke@1 598 ? e.sym
duke@1 599 : findField(
duke@1 600 env1, env1.enclClass.sym.type, name, env1.enclClass.sym);
duke@1 601 if (sym.exists()) {
duke@1 602 if (staticOnly &&
duke@1 603 sym.kind == VAR &&
duke@1 604 sym.owner.kind == TYP &&
duke@1 605 (sym.flags() & STATIC) == 0)
duke@1 606 return new StaticError(sym);
duke@1 607 else
duke@1 608 return sym;
duke@1 609 } else if (sym.kind < bestSoFar.kind) {
duke@1 610 bestSoFar = sym;
duke@1 611 }
duke@1 612
duke@1 613 if ((env1.enclClass.sym.flags() & STATIC) != 0) staticOnly = true;
duke@1 614 env1 = env1.outer;
duke@1 615 }
duke@1 616
duke@1 617 sym = findField(env, syms.predefClass.type, name, syms.predefClass);
duke@1 618 if (sym.exists())
duke@1 619 return sym;
duke@1 620 if (bestSoFar.exists())
duke@1 621 return bestSoFar;
duke@1 622
duke@1 623 Scope.Entry e = env.toplevel.namedImportScope.lookup(name);
duke@1 624 for (; e.scope != null; e = e.next()) {
duke@1 625 sym = e.sym;
duke@1 626 Type origin = e.getOrigin().owner.type;
duke@1 627 if (sym.kind == VAR) {
duke@1 628 if (e.sym.owner.type != origin)
duke@1 629 sym = sym.clone(e.getOrigin().owner);
duke@1 630 return isAccessible(env, origin, sym)
duke@1 631 ? sym : new AccessError(env, origin, sym);
duke@1 632 }
duke@1 633 }
duke@1 634
duke@1 635 Symbol origin = null;
duke@1 636 e = env.toplevel.starImportScope.lookup(name);
duke@1 637 for (; e.scope != null; e = e.next()) {
duke@1 638 sym = e.sym;
duke@1 639 if (sym.kind != VAR)
duke@1 640 continue;
duke@1 641 // invariant: sym.kind == VAR
duke@1 642 if (bestSoFar.kind < AMBIGUOUS && sym.owner != bestSoFar.owner)
duke@1 643 return new AmbiguityError(bestSoFar, sym);
duke@1 644 else if (bestSoFar.kind >= VAR) {
duke@1 645 origin = e.getOrigin().owner;
duke@1 646 bestSoFar = isAccessible(env, origin.type, sym)
duke@1 647 ? sym : new AccessError(env, origin.type, sym);
duke@1 648 }
duke@1 649 }
duke@1 650 if (bestSoFar.kind == VAR && bestSoFar.owner.type != origin.type)
duke@1 651 return bestSoFar.clone(origin);
duke@1 652 else
duke@1 653 return bestSoFar;
duke@1 654 }
duke@1 655
duke@1 656 Warner noteWarner = new Warner();
duke@1 657
duke@1 658 /** Select the best method for a call site among two choices.
duke@1 659 * @param env The current environment.
duke@1 660 * @param site The original type from where the
duke@1 661 * selection takes place.
duke@1 662 * @param argtypes The invocation's value arguments,
duke@1 663 * @param typeargtypes The invocation's type arguments,
duke@1 664 * @param sym Proposed new best match.
duke@1 665 * @param bestSoFar Previously found best match.
duke@1 666 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 667 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 668 */
mcimadamore@689 669 @SuppressWarnings("fallthrough")
duke@1 670 Symbol selectBest(Env<AttrContext> env,
duke@1 671 Type site,
duke@1 672 List<Type> argtypes,
duke@1 673 List<Type> typeargtypes,
duke@1 674 Symbol sym,
duke@1 675 Symbol bestSoFar,
duke@1 676 boolean allowBoxing,
duke@1 677 boolean useVarargs,
duke@1 678 boolean operator) {
duke@1 679 if (sym.kind == ERR) return bestSoFar;
mcimadamore@171 680 if (!sym.isInheritedIn(site.tsym, types)) return bestSoFar;
duke@1 681 assert sym.kind < AMBIGUOUS;
duke@1 682 try {
mcimadamore@689 683 rawInstantiate(env, site, sym, argtypes, typeargtypes,
mcimadamore@689 684 allowBoxing, useVarargs, Warner.noWarnings);
mcimadamore@689 685 } catch (InapplicableMethodException ex) {
duke@1 686 switch (bestSoFar.kind) {
duke@1 687 case ABSENT_MTH:
duke@1 688 return wrongMethod.setWrongSym(sym, ex.getDiagnostic());
duke@1 689 case WRONG_MTH:
mcimadamore@689 690 wrongMethods.addCandidate(currentStep, wrongMethod.sym, wrongMethod.explanation);
mcimadamore@689 691 case WRONG_MTHS:
mcimadamore@689 692 return wrongMethods.addCandidate(currentStep, sym, ex.getDiagnostic());
duke@1 693 default:
duke@1 694 return bestSoFar;
duke@1 695 }
duke@1 696 }
duke@1 697 if (!isAccessible(env, site, sym)) {
duke@1 698 return (bestSoFar.kind == ABSENT_MTH)
duke@1 699 ? new AccessError(env, site, sym)
duke@1 700 : bestSoFar;
mcimadamore@689 701 }
duke@1 702 return (bestSoFar.kind > AMBIGUOUS)
duke@1 703 ? sym
duke@1 704 : mostSpecific(sym, bestSoFar, env, site,
duke@1 705 allowBoxing && operator, useVarargs);
duke@1 706 }
duke@1 707
duke@1 708 /* Return the most specific of the two methods for a call,
duke@1 709 * given that both are accessible and applicable.
duke@1 710 * @param m1 A new candidate for most specific.
duke@1 711 * @param m2 The previous most specific candidate.
duke@1 712 * @param env The current environment.
duke@1 713 * @param site The original type from where the selection
duke@1 714 * takes place.
duke@1 715 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 716 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 717 */
duke@1 718 Symbol mostSpecific(Symbol m1,
duke@1 719 Symbol m2,
duke@1 720 Env<AttrContext> env,
mcimadamore@254 721 final Type site,
duke@1 722 boolean allowBoxing,
duke@1 723 boolean useVarargs) {
duke@1 724 switch (m2.kind) {
duke@1 725 case MTH:
duke@1 726 if (m1 == m2) return m1;
mcimadamore@775 727 boolean m1SignatureMoreSpecific = signatureMoreSpecific(env, site, m1, m2, allowBoxing, useVarargs);
mcimadamore@775 728 boolean m2SignatureMoreSpecific = signatureMoreSpecific(env, site, m2, m1, allowBoxing, useVarargs);
duke@1 729 if (m1SignatureMoreSpecific && m2SignatureMoreSpecific) {
mcimadamore@775 730 Type mt1 = types.memberType(site, m1);
mcimadamore@775 731 Type mt2 = types.memberType(site, m2);
duke@1 732 if (!types.overrideEquivalent(mt1, mt2))
duke@1 733 return new AmbiguityError(m1, m2);
duke@1 734 // same signature; select (a) the non-bridge method, or
duke@1 735 // (b) the one that overrides the other, or (c) the concrete
duke@1 736 // one, or (d) merge both abstract signatures
duke@1 737 if ((m1.flags() & BRIDGE) != (m2.flags() & BRIDGE)) {
duke@1 738 return ((m1.flags() & BRIDGE) != 0) ? m2 : m1;
duke@1 739 }
duke@1 740 // if one overrides or hides the other, use it
duke@1 741 TypeSymbol m1Owner = (TypeSymbol)m1.owner;
duke@1 742 TypeSymbol m2Owner = (TypeSymbol)m2.owner;
duke@1 743 if (types.asSuper(m1Owner.type, m2Owner) != null &&
duke@1 744 ((m1.owner.flags_field & INTERFACE) == 0 ||
duke@1 745 (m2.owner.flags_field & INTERFACE) != 0) &&
duke@1 746 m1.overrides(m2, m1Owner, types, false))
duke@1 747 return m1;
duke@1 748 if (types.asSuper(m2Owner.type, m1Owner) != null &&
duke@1 749 ((m2.owner.flags_field & INTERFACE) == 0 ||
duke@1 750 (m1.owner.flags_field & INTERFACE) != 0) &&
duke@1 751 m2.overrides(m1, m2Owner, types, false))
duke@1 752 return m2;
duke@1 753 boolean m1Abstract = (m1.flags() & ABSTRACT) != 0;
duke@1 754 boolean m2Abstract = (m2.flags() & ABSTRACT) != 0;
duke@1 755 if (m1Abstract && !m2Abstract) return m2;
duke@1 756 if (m2Abstract && !m1Abstract) return m1;
duke@1 757 // both abstract or both concrete
duke@1 758 if (!m1Abstract && !m2Abstract)
duke@1 759 return new AmbiguityError(m1, m2);
mcimadamore@156 760 // check that both signatures have the same erasure
mcimadamore@156 761 if (!types.isSameTypes(m1.erasure(types).getParameterTypes(),
mcimadamore@156 762 m2.erasure(types).getParameterTypes()))
duke@1 763 return new AmbiguityError(m1, m2);
duke@1 764 // both abstract, neither overridden; merge throws clause and result type
mcimadamore@254 765 Symbol mostSpecific;
jjg@110 766 Type result2 = mt2.getReturnType();
duke@1 767 if (mt2.tag == FORALL)
duke@1 768 result2 = types.subst(result2, ((ForAll)mt2).tvars, ((ForAll)mt1).tvars);
duke@1 769 if (types.isSubtype(mt1.getReturnType(), result2)) {
mcimadamore@254 770 mostSpecific = m1;
duke@1 771 } else if (types.isSubtype(result2, mt1.getReturnType())) {
mcimadamore@254 772 mostSpecific = m2;
duke@1 773 } else {
duke@1 774 // Theoretically, this can't happen, but it is possible
duke@1 775 // due to error recovery or mixing incompatible class files
duke@1 776 return new AmbiguityError(m1, m2);
duke@1 777 }
mcimadamore@254 778 MethodSymbol result = new MethodSymbol(
mcimadamore@254 779 mostSpecific.flags(),
mcimadamore@254 780 mostSpecific.name,
mcimadamore@254 781 null,
mcimadamore@254 782 mostSpecific.owner) {
mcimadamore@254 783 @Override
mcimadamore@254 784 public MethodSymbol implementation(TypeSymbol origin, Types types, boolean checkResult) {
mcimadamore@254 785 if (origin == site.tsym)
mcimadamore@254 786 return this;
mcimadamore@254 787 else
mcimadamore@254 788 return super.implementation(origin, types, checkResult);
mcimadamore@254 789 }
mcimadamore@254 790 };
mcimadamore@254 791 result.type = (Type)mostSpecific.type.clone();
duke@1 792 result.type.setThrown(chk.intersect(mt1.getThrownTypes(),
duke@1 793 mt2.getThrownTypes()));
duke@1 794 return result;
duke@1 795 }
duke@1 796 if (m1SignatureMoreSpecific) return m1;
duke@1 797 if (m2SignatureMoreSpecific) return m2;
duke@1 798 return new AmbiguityError(m1, m2);
duke@1 799 case AMBIGUOUS:
duke@1 800 AmbiguityError e = (AmbiguityError)m2;
mcimadamore@302 801 Symbol err1 = mostSpecific(m1, e.sym, env, site, allowBoxing, useVarargs);
duke@1 802 Symbol err2 = mostSpecific(m1, e.sym2, env, site, allowBoxing, useVarargs);
duke@1 803 if (err1 == err2) return err1;
mcimadamore@302 804 if (err1 == e.sym && err2 == e.sym2) return m2;
duke@1 805 if (err1 instanceof AmbiguityError &&
duke@1 806 err2 instanceof AmbiguityError &&
mcimadamore@302 807 ((AmbiguityError)err1).sym == ((AmbiguityError)err2).sym)
duke@1 808 return new AmbiguityError(m1, m2);
duke@1 809 else
duke@1 810 return new AmbiguityError(err1, err2);
duke@1 811 default:
duke@1 812 throw new AssertionError();
duke@1 813 }
duke@1 814 }
mcimadamore@775 815 //where
mcimadamore@775 816 private boolean signatureMoreSpecific(Env<AttrContext> env, Type site, Symbol m1, Symbol m2, boolean allowBoxing, boolean useVarargs) {
mcimadamore@775 817 Type mtype1 = types.memberType(site, adjustVarargs(m1, m2, useVarargs));
mcimadamore@775 818 noteWarner.unchecked = false;
mcimadamore@775 819 return (instantiate(env, site, adjustVarargs(m2, m1, useVarargs), types.lowerBoundArgtypes(mtype1), null,
mcimadamore@775 820 allowBoxing, false, noteWarner) != null ||
mcimadamore@775 821 useVarargs && instantiate(env, site, adjustVarargs(m2, m1, useVarargs), types.lowerBoundArgtypes(mtype1), null,
mcimadamore@775 822 allowBoxing, true, noteWarner) != null) &&
mcimadamore@775 823 !noteWarner.unchecked;
mcimadamore@775 824 }
mcimadamore@775 825 //where
mcimadamore@775 826 private Symbol adjustVarargs(Symbol to, Symbol from, boolean useVarargs) {
mcimadamore@775 827 List<Type> fromArgs = from.type.getParameterTypes();
mcimadamore@775 828 List<Type> toArgs = to.type.getParameterTypes();
mcimadamore@775 829 if (useVarargs &&
mcimadamore@775 830 toArgs.length() < fromArgs.length() &&
mcimadamore@775 831 (from.flags() & VARARGS) != 0 &&
mcimadamore@775 832 (to.flags() & VARARGS) != 0) {
mcimadamore@775 833 //if we are checking a varargs method 'from' against another varargs
mcimadamore@775 834 //method 'to' (where arity of 'to' < arity of 'from') then expand signature
mcimadamore@775 835 //of 'to' to 'fit' arity of 'from' (this means adding fake formals to 'to'
mcimadamore@775 836 //until 'to' signature has the same arity as 'from')
mcimadamore@775 837 ListBuffer<Type> args = ListBuffer.lb();
mcimadamore@775 838 Type varargsTypeFrom = fromArgs.last();
mcimadamore@775 839 Type varargsTypeTo = toArgs.last();
mcimadamore@775 840 while (fromArgs.head != varargsTypeFrom) {
mcimadamore@775 841 args.append(toArgs.head == varargsTypeTo ? types.elemtype(varargsTypeTo) : toArgs.head);
mcimadamore@775 842 fromArgs = fromArgs.tail;
mcimadamore@775 843 toArgs = toArgs.head == varargsTypeTo ?
mcimadamore@775 844 toArgs :
mcimadamore@775 845 toArgs.tail;
mcimadamore@775 846 }
mcimadamore@775 847 args.append(varargsTypeTo);
mcimadamore@775 848 MethodSymbol msym = new MethodSymbol(to.flags_field,
mcimadamore@775 849 to.name,
mcimadamore@775 850 (Type)to.type.clone(), //see: 6990136
mcimadamore@775 851 to.owner);
mcimadamore@775 852 MethodType mtype = msym.type.asMethodType();
mcimadamore@775 853 mtype.argtypes = args.toList();
mcimadamore@775 854 return msym;
mcimadamore@775 855 } else {
mcimadamore@775 856 return to;
mcimadamore@775 857 }
mcimadamore@775 858 }
duke@1 859
duke@1 860 /** Find best qualified method matching given name, type and value
duke@1 861 * arguments.
duke@1 862 * @param env The current environment.
duke@1 863 * @param site The original type from where the selection
duke@1 864 * takes place.
duke@1 865 * @param name The method's name.
duke@1 866 * @param argtypes The method's value arguments.
duke@1 867 * @param typeargtypes The method's type arguments
duke@1 868 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 869 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 870 */
duke@1 871 Symbol findMethod(Env<AttrContext> env,
duke@1 872 Type site,
duke@1 873 Name name,
duke@1 874 List<Type> argtypes,
duke@1 875 List<Type> typeargtypes,
duke@1 876 boolean allowBoxing,
duke@1 877 boolean useVarargs,
duke@1 878 boolean operator) {
jrose@571 879 Symbol bestSoFar = methodNotFound;
duke@1 880 return findMethod(env,
duke@1 881 site,
duke@1 882 name,
duke@1 883 argtypes,
duke@1 884 typeargtypes,
duke@1 885 site.tsym.type,
duke@1 886 true,
jrose@571 887 bestSoFar,
duke@1 888 allowBoxing,
duke@1 889 useVarargs,
duke@1 890 operator);
duke@1 891 }
duke@1 892 // where
duke@1 893 private Symbol findMethod(Env<AttrContext> env,
duke@1 894 Type site,
duke@1 895 Name name,
duke@1 896 List<Type> argtypes,
duke@1 897 List<Type> typeargtypes,
duke@1 898 Type intype,
duke@1 899 boolean abstractok,
duke@1 900 Symbol bestSoFar,
duke@1 901 boolean allowBoxing,
duke@1 902 boolean useVarargs,
duke@1 903 boolean operator) {
mcimadamore@19 904 for (Type ct = intype; ct.tag == CLASS || ct.tag == TYPEVAR; ct = types.supertype(ct)) {
mcimadamore@19 905 while (ct.tag == TYPEVAR)
mcimadamore@19 906 ct = ct.getUpperBound();
duke@1 907 ClassSymbol c = (ClassSymbol)ct.tsym;
mcimadamore@135 908 if ((c.flags() & (ABSTRACT | INTERFACE | ENUM)) == 0)
duke@1 909 abstractok = false;
duke@1 910 for (Scope.Entry e = c.members().lookup(name);
duke@1 911 e.scope != null;
duke@1 912 e = e.next()) {
duke@1 913 //- System.out.println(" e " + e.sym);
duke@1 914 if (e.sym.kind == MTH &&
duke@1 915 (e.sym.flags_field & SYNTHETIC) == 0) {
duke@1 916 bestSoFar = selectBest(env, site, argtypes, typeargtypes,
duke@1 917 e.sym, bestSoFar,
duke@1 918 allowBoxing,
duke@1 919 useVarargs,
duke@1 920 operator);
duke@1 921 }
duke@1 922 }
mcimadamore@537 923 if (name == names.init)
mcimadamore@537 924 break;
duke@1 925 //- System.out.println(" - " + bestSoFar);
duke@1 926 if (abstractok) {
duke@1 927 Symbol concrete = methodNotFound;
duke@1 928 if ((bestSoFar.flags() & ABSTRACT) == 0)
duke@1 929 concrete = bestSoFar;
duke@1 930 for (List<Type> l = types.interfaces(c.type);
duke@1 931 l.nonEmpty();
duke@1 932 l = l.tail) {
duke@1 933 bestSoFar = findMethod(env, site, name, argtypes,
duke@1 934 typeargtypes,
duke@1 935 l.head, abstractok, bestSoFar,
duke@1 936 allowBoxing, useVarargs, operator);
duke@1 937 }
duke@1 938 if (concrete != bestSoFar &&
duke@1 939 concrete.kind < ERR && bestSoFar.kind < ERR &&
duke@1 940 types.isSubSignature(concrete.type, bestSoFar.type))
duke@1 941 bestSoFar = concrete;
duke@1 942 }
duke@1 943 }
duke@1 944 return bestSoFar;
duke@1 945 }
duke@1 946
duke@1 947 /** Find unqualified method matching given name, type and value arguments.
duke@1 948 * @param env The current environment.
duke@1 949 * @param name The method's name.
duke@1 950 * @param argtypes The method's value arguments.
duke@1 951 * @param typeargtypes The method's type arguments.
duke@1 952 * @param allowBoxing Allow boxing conversions of arguments.
duke@1 953 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 954 */
duke@1 955 Symbol findFun(Env<AttrContext> env, Name name,
duke@1 956 List<Type> argtypes, List<Type> typeargtypes,
duke@1 957 boolean allowBoxing, boolean useVarargs) {
duke@1 958 Symbol bestSoFar = methodNotFound;
duke@1 959 Symbol sym;
duke@1 960 Env<AttrContext> env1 = env;
duke@1 961 boolean staticOnly = false;
duke@1 962 while (env1.outer != null) {
duke@1 963 if (isStatic(env1)) staticOnly = true;
duke@1 964 sym = findMethod(
duke@1 965 env1, env1.enclClass.sym.type, name, argtypes, typeargtypes,
duke@1 966 allowBoxing, useVarargs, false);
duke@1 967 if (sym.exists()) {
duke@1 968 if (staticOnly &&
duke@1 969 sym.kind == MTH &&
duke@1 970 sym.owner.kind == TYP &&
duke@1 971 (sym.flags() & STATIC) == 0) return new StaticError(sym);
duke@1 972 else return sym;
duke@1 973 } else if (sym.kind < bestSoFar.kind) {
duke@1 974 bestSoFar = sym;
duke@1 975 }
duke@1 976 if ((env1.enclClass.sym.flags() & STATIC) != 0) staticOnly = true;
duke@1 977 env1 = env1.outer;
duke@1 978 }
duke@1 979
duke@1 980 sym = findMethod(env, syms.predefClass.type, name, argtypes,
duke@1 981 typeargtypes, allowBoxing, useVarargs, false);
duke@1 982 if (sym.exists())
duke@1 983 return sym;
duke@1 984
duke@1 985 Scope.Entry e = env.toplevel.namedImportScope.lookup(name);
duke@1 986 for (; e.scope != null; e = e.next()) {
duke@1 987 sym = e.sym;
duke@1 988 Type origin = e.getOrigin().owner.type;
duke@1 989 if (sym.kind == MTH) {
duke@1 990 if (e.sym.owner.type != origin)
duke@1 991 sym = sym.clone(e.getOrigin().owner);
duke@1 992 if (!isAccessible(env, origin, sym))
duke@1 993 sym = new AccessError(env, origin, sym);
duke@1 994 bestSoFar = selectBest(env, origin,
duke@1 995 argtypes, typeargtypes,
duke@1 996 sym, bestSoFar,
duke@1 997 allowBoxing, useVarargs, false);
duke@1 998 }
duke@1 999 }
duke@1 1000 if (bestSoFar.exists())
duke@1 1001 return bestSoFar;
duke@1 1002
duke@1 1003 e = env.toplevel.starImportScope.lookup(name);
duke@1 1004 for (; e.scope != null; e = e.next()) {
duke@1 1005 sym = e.sym;
duke@1 1006 Type origin = e.getOrigin().owner.type;
duke@1 1007 if (sym.kind == MTH) {
duke@1 1008 if (e.sym.owner.type != origin)
duke@1 1009 sym = sym.clone(e.getOrigin().owner);
duke@1 1010 if (!isAccessible(env, origin, sym))
duke@1 1011 sym = new AccessError(env, origin, sym);
duke@1 1012 bestSoFar = selectBest(env, origin,
duke@1 1013 argtypes, typeargtypes,
duke@1 1014 sym, bestSoFar,
duke@1 1015 allowBoxing, useVarargs, false);
duke@1 1016 }
duke@1 1017 }
duke@1 1018 return bestSoFar;
duke@1 1019 }
duke@1 1020
duke@1 1021 /** Load toplevel or member class with given fully qualified name and
duke@1 1022 * verify that it is accessible.
duke@1 1023 * @param env The current environment.
duke@1 1024 * @param name The fully qualified name of the class to be loaded.
duke@1 1025 */
duke@1 1026 Symbol loadClass(Env<AttrContext> env, Name name) {
duke@1 1027 try {
duke@1 1028 ClassSymbol c = reader.loadClass(name);
duke@1 1029 return isAccessible(env, c) ? c : new AccessError(c);
duke@1 1030 } catch (ClassReader.BadClassFile err) {
duke@1 1031 throw err;
duke@1 1032 } catch (CompletionFailure ex) {
duke@1 1033 return typeNotFound;
duke@1 1034 }
duke@1 1035 }
duke@1 1036
duke@1 1037 /** Find qualified member type.
duke@1 1038 * @param env The current environment.
duke@1 1039 * @param site The original type from where the selection takes
duke@1 1040 * place.
duke@1 1041 * @param name The type's name.
duke@1 1042 * @param c The class to search for the member type. This is
duke@1 1043 * always a superclass or implemented interface of
duke@1 1044 * site's class.
duke@1 1045 */
duke@1 1046 Symbol findMemberType(Env<AttrContext> env,
duke@1 1047 Type site,
duke@1 1048 Name name,
duke@1 1049 TypeSymbol c) {
duke@1 1050 Symbol bestSoFar = typeNotFound;
duke@1 1051 Symbol sym;
duke@1 1052 Scope.Entry e = c.members().lookup(name);
duke@1 1053 while (e.scope != null) {
duke@1 1054 if (e.sym.kind == TYP) {
duke@1 1055 return isAccessible(env, site, e.sym)
duke@1 1056 ? e.sym
duke@1 1057 : new AccessError(env, site, e.sym);
duke@1 1058 }
duke@1 1059 e = e.next();
duke@1 1060 }
duke@1 1061 Type st = types.supertype(c.type);
duke@1 1062 if (st != null && st.tag == CLASS) {
duke@1 1063 sym = findMemberType(env, site, name, st.tsym);
duke@1 1064 if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1065 }
duke@1 1066 for (List<Type> l = types.interfaces(c.type);
duke@1 1067 bestSoFar.kind != AMBIGUOUS && l.nonEmpty();
duke@1 1068 l = l.tail) {
duke@1 1069 sym = findMemberType(env, site, name, l.head.tsym);
duke@1 1070 if (bestSoFar.kind < AMBIGUOUS && sym.kind < AMBIGUOUS &&
duke@1 1071 sym.owner != bestSoFar.owner)
duke@1 1072 bestSoFar = new AmbiguityError(bestSoFar, sym);
duke@1 1073 else if (sym.kind < bestSoFar.kind)
duke@1 1074 bestSoFar = sym;
duke@1 1075 }
duke@1 1076 return bestSoFar;
duke@1 1077 }
duke@1 1078
duke@1 1079 /** Find a global type in given scope and load corresponding class.
duke@1 1080 * @param env The current environment.
duke@1 1081 * @param scope The scope in which to look for the type.
duke@1 1082 * @param name The type's name.
duke@1 1083 */
duke@1 1084 Symbol findGlobalType(Env<AttrContext> env, Scope scope, Name name) {
duke@1 1085 Symbol bestSoFar = typeNotFound;
duke@1 1086 for (Scope.Entry e = scope.lookup(name); e.scope != null; e = e.next()) {
duke@1 1087 Symbol sym = loadClass(env, e.sym.flatName());
duke@1 1088 if (bestSoFar.kind == TYP && sym.kind == TYP &&
duke@1 1089 bestSoFar != sym)
duke@1 1090 return new AmbiguityError(bestSoFar, sym);
duke@1 1091 else if (sym.kind < bestSoFar.kind)
duke@1 1092 bestSoFar = sym;
duke@1 1093 }
duke@1 1094 return bestSoFar;
duke@1 1095 }
duke@1 1096
duke@1 1097 /** Find an unqualified type symbol.
duke@1 1098 * @param env The current environment.
duke@1 1099 * @param name The type's name.
duke@1 1100 */
duke@1 1101 Symbol findType(Env<AttrContext> env, Name name) {
duke@1 1102 Symbol bestSoFar = typeNotFound;
duke@1 1103 Symbol sym;
duke@1 1104 boolean staticOnly = false;
duke@1 1105 for (Env<AttrContext> env1 = env; env1.outer != null; env1 = env1.outer) {
duke@1 1106 if (isStatic(env1)) staticOnly = true;
duke@1 1107 for (Scope.Entry e = env1.info.scope.lookup(name);
duke@1 1108 e.scope != null;
duke@1 1109 e = e.next()) {
duke@1 1110 if (e.sym.kind == TYP) {
duke@1 1111 if (staticOnly &&
duke@1 1112 e.sym.type.tag == TYPEVAR &&
duke@1 1113 e.sym.owner.kind == TYP) return new StaticError(e.sym);
duke@1 1114 return e.sym;
duke@1 1115 }
duke@1 1116 }
duke@1 1117
duke@1 1118 sym = findMemberType(env1, env1.enclClass.sym.type, name,
duke@1 1119 env1.enclClass.sym);
duke@1 1120 if (staticOnly && sym.kind == TYP &&
duke@1 1121 sym.type.tag == CLASS &&
duke@1 1122 sym.type.getEnclosingType().tag == CLASS &&
duke@1 1123 env1.enclClass.sym.type.isParameterized() &&
duke@1 1124 sym.type.getEnclosingType().isParameterized())
duke@1 1125 return new StaticError(sym);
duke@1 1126 else if (sym.exists()) return sym;
duke@1 1127 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1128
duke@1 1129 JCClassDecl encl = env1.baseClause ? (JCClassDecl)env1.tree : env1.enclClass;
duke@1 1130 if ((encl.sym.flags() & STATIC) != 0)
duke@1 1131 staticOnly = true;
duke@1 1132 }
duke@1 1133
duke@1 1134 if (env.tree.getTag() != JCTree.IMPORT) {
duke@1 1135 sym = findGlobalType(env, env.toplevel.namedImportScope, name);
duke@1 1136 if (sym.exists()) return sym;
duke@1 1137 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1138
duke@1 1139 sym = findGlobalType(env, env.toplevel.packge.members(), name);
duke@1 1140 if (sym.exists()) return sym;
duke@1 1141 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1142
duke@1 1143 sym = findGlobalType(env, env.toplevel.starImportScope, name);
duke@1 1144 if (sym.exists()) return sym;
duke@1 1145 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1146 }
duke@1 1147
duke@1 1148 return bestSoFar;
duke@1 1149 }
duke@1 1150
duke@1 1151 /** Find an unqualified identifier which matches a specified kind set.
duke@1 1152 * @param env The current environment.
duke@1 1153 * @param name The indentifier's name.
duke@1 1154 * @param kind Indicates the possible symbol kinds
duke@1 1155 * (a subset of VAL, TYP, PCK).
duke@1 1156 */
duke@1 1157 Symbol findIdent(Env<AttrContext> env, Name name, int kind) {
duke@1 1158 Symbol bestSoFar = typeNotFound;
duke@1 1159 Symbol sym;
duke@1 1160
duke@1 1161 if ((kind & VAR) != 0) {
duke@1 1162 sym = findVar(env, name);
duke@1 1163 if (sym.exists()) return sym;
duke@1 1164 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1165 }
duke@1 1166
duke@1 1167 if ((kind & TYP) != 0) {
duke@1 1168 sym = findType(env, name);
duke@1 1169 if (sym.exists()) return sym;
duke@1 1170 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1171 }
duke@1 1172
duke@1 1173 if ((kind & PCK) != 0) return reader.enterPackage(name);
duke@1 1174 else return bestSoFar;
duke@1 1175 }
duke@1 1176
duke@1 1177 /** Find an identifier in a package which matches a specified kind set.
duke@1 1178 * @param env The current environment.
duke@1 1179 * @param name The identifier's name.
duke@1 1180 * @param kind Indicates the possible symbol kinds
duke@1 1181 * (a nonempty subset of TYP, PCK).
duke@1 1182 */
duke@1 1183 Symbol findIdentInPackage(Env<AttrContext> env, TypeSymbol pck,
duke@1 1184 Name name, int kind) {
duke@1 1185 Name fullname = TypeSymbol.formFullName(name, pck);
duke@1 1186 Symbol bestSoFar = typeNotFound;
duke@1 1187 PackageSymbol pack = null;
duke@1 1188 if ((kind & PCK) != 0) {
duke@1 1189 pack = reader.enterPackage(fullname);
duke@1 1190 if (pack.exists()) return pack;
duke@1 1191 }
duke@1 1192 if ((kind & TYP) != 0) {
duke@1 1193 Symbol sym = loadClass(env, fullname);
duke@1 1194 if (sym.exists()) {
duke@1 1195 // don't allow programs to use flatnames
duke@1 1196 if (name == sym.name) return sym;
duke@1 1197 }
duke@1 1198 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1199 }
duke@1 1200 return (pack != null) ? pack : bestSoFar;
duke@1 1201 }
duke@1 1202
duke@1 1203 /** Find an identifier among the members of a given type `site'.
duke@1 1204 * @param env The current environment.
duke@1 1205 * @param site The type containing the symbol to be found.
duke@1 1206 * @param name The identifier's name.
duke@1 1207 * @param kind Indicates the possible symbol kinds
duke@1 1208 * (a subset of VAL, TYP).
duke@1 1209 */
duke@1 1210 Symbol findIdentInType(Env<AttrContext> env, Type site,
duke@1 1211 Name name, int kind) {
duke@1 1212 Symbol bestSoFar = typeNotFound;
duke@1 1213 Symbol sym;
duke@1 1214 if ((kind & VAR) != 0) {
duke@1 1215 sym = findField(env, site, name, site.tsym);
duke@1 1216 if (sym.exists()) return sym;
duke@1 1217 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1218 }
duke@1 1219
duke@1 1220 if ((kind & TYP) != 0) {
duke@1 1221 sym = findMemberType(env, site, name, site.tsym);
duke@1 1222 if (sym.exists()) return sym;
duke@1 1223 else if (sym.kind < bestSoFar.kind) bestSoFar = sym;
duke@1 1224 }
duke@1 1225 return bestSoFar;
duke@1 1226 }
duke@1 1227
duke@1 1228 /* ***************************************************************************
duke@1 1229 * Access checking
duke@1 1230 * The following methods convert ResolveErrors to ErrorSymbols, issuing
duke@1 1231 * an error message in the process
duke@1 1232 ****************************************************************************/
duke@1 1233
duke@1 1234 /** If `sym' is a bad symbol: report error and return errSymbol
duke@1 1235 * else pass through unchanged,
duke@1 1236 * additional arguments duplicate what has been used in trying to find the
duke@1 1237 * symbol (--> flyweight pattern). This improves performance since we
duke@1 1238 * expect misses to happen frequently.
duke@1 1239 *
duke@1 1240 * @param sym The symbol that was found, or a ResolveError.
duke@1 1241 * @param pos The position to use for error reporting.
duke@1 1242 * @param site The original type from where the selection took place.
duke@1 1243 * @param name The symbol's name.
duke@1 1244 * @param argtypes The invocation's value arguments,
duke@1 1245 * if we looked for a method.
duke@1 1246 * @param typeargtypes The invocation's type arguments,
duke@1 1247 * if we looked for a method.
duke@1 1248 */
duke@1 1249 Symbol access(Symbol sym,
duke@1 1250 DiagnosticPosition pos,
duke@1 1251 Type site,
duke@1 1252 Name name,
duke@1 1253 boolean qualified,
duke@1 1254 List<Type> argtypes,
duke@1 1255 List<Type> typeargtypes) {
duke@1 1256 if (sym.kind >= AMBIGUOUS) {
mcimadamore@302 1257 ResolveError errSym = (ResolveError)sym;
duke@1 1258 if (!site.isErroneous() &&
duke@1 1259 !Type.isErroneous(argtypes) &&
duke@1 1260 (typeargtypes==null || !Type.isErroneous(typeargtypes)))
mcimadamore@302 1261 logResolveError(errSym, pos, site, name, argtypes, typeargtypes);
mcimadamore@302 1262 sym = errSym.access(name, qualified ? site.tsym : syms.noSymbol);
duke@1 1263 }
duke@1 1264 return sym;
duke@1 1265 }
duke@1 1266
duke@1 1267 /** Same as above, but without type arguments and arguments.
duke@1 1268 */
duke@1 1269 Symbol access(Symbol sym,
duke@1 1270 DiagnosticPosition pos,
duke@1 1271 Type site,
duke@1 1272 Name name,
duke@1 1273 boolean qualified) {
duke@1 1274 if (sym.kind >= AMBIGUOUS)
duke@1 1275 return access(sym, pos, site, name, qualified, List.<Type>nil(), null);
duke@1 1276 else
duke@1 1277 return sym;
duke@1 1278 }
duke@1 1279
duke@1 1280 /** Check that sym is not an abstract method.
duke@1 1281 */
duke@1 1282 void checkNonAbstract(DiagnosticPosition pos, Symbol sym) {
duke@1 1283 if ((sym.flags() & ABSTRACT) != 0)
duke@1 1284 log.error(pos, "abstract.cant.be.accessed.directly",
duke@1 1285 kindName(sym), sym, sym.location());
duke@1 1286 }
duke@1 1287
duke@1 1288 /* ***************************************************************************
duke@1 1289 * Debugging
duke@1 1290 ****************************************************************************/
duke@1 1291
duke@1 1292 /** print all scopes starting with scope s and proceeding outwards.
duke@1 1293 * used for debugging.
duke@1 1294 */
duke@1 1295 public void printscopes(Scope s) {
duke@1 1296 while (s != null) {
duke@1 1297 if (s.owner != null)
duke@1 1298 System.err.print(s.owner + ": ");
duke@1 1299 for (Scope.Entry e = s.elems; e != null; e = e.sibling) {
duke@1 1300 if ((e.sym.flags() & ABSTRACT) != 0)
duke@1 1301 System.err.print("abstract ");
duke@1 1302 System.err.print(e.sym + " ");
duke@1 1303 }
duke@1 1304 System.err.println();
duke@1 1305 s = s.next;
duke@1 1306 }
duke@1 1307 }
duke@1 1308
duke@1 1309 void printscopes(Env<AttrContext> env) {
duke@1 1310 while (env.outer != null) {
duke@1 1311 System.err.println("------------------------------");
duke@1 1312 printscopes(env.info.scope);
duke@1 1313 env = env.outer;
duke@1 1314 }
duke@1 1315 }
duke@1 1316
duke@1 1317 public void printscopes(Type t) {
duke@1 1318 while (t.tag == CLASS) {
duke@1 1319 printscopes(t.tsym.members());
duke@1 1320 t = types.supertype(t);
duke@1 1321 }
duke@1 1322 }
duke@1 1323
duke@1 1324 /* ***************************************************************************
duke@1 1325 * Name resolution
duke@1 1326 * Naming conventions are as for symbol lookup
duke@1 1327 * Unlike the find... methods these methods will report access errors
duke@1 1328 ****************************************************************************/
duke@1 1329
duke@1 1330 /** Resolve an unqualified (non-method) identifier.
duke@1 1331 * @param pos The position to use for error reporting.
duke@1 1332 * @param env The environment current at the identifier use.
duke@1 1333 * @param name The identifier's name.
duke@1 1334 * @param kind The set of admissible symbol kinds for the identifier.
duke@1 1335 */
duke@1 1336 Symbol resolveIdent(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 1337 Name name, int kind) {
duke@1 1338 return access(
duke@1 1339 findIdent(env, name, kind),
duke@1 1340 pos, env.enclClass.sym.type, name, false);
duke@1 1341 }
duke@1 1342
duke@1 1343 /** Resolve an unqualified method identifier.
duke@1 1344 * @param pos The position to use for error reporting.
duke@1 1345 * @param env The environment current at the method invocation.
duke@1 1346 * @param name The identifier's name.
duke@1 1347 * @param argtypes The types of the invocation's value arguments.
duke@1 1348 * @param typeargtypes The types of the invocation's type arguments.
duke@1 1349 */
duke@1 1350 Symbol resolveMethod(DiagnosticPosition pos,
duke@1 1351 Env<AttrContext> env,
duke@1 1352 Name name,
duke@1 1353 List<Type> argtypes,
duke@1 1354 List<Type> typeargtypes) {
mcimadamore@689 1355 Symbol sym = startResolution();
mcimadamore@160 1356 List<MethodResolutionPhase> steps = methodResolutionSteps;
mcimadamore@160 1357 while (steps.nonEmpty() &&
mcimadamore@160 1358 steps.head.isApplicable(boxingEnabled, varargsEnabled) &&
mcimadamore@160 1359 sym.kind >= ERRONEOUS) {
mcimadamore@689 1360 currentStep = steps.head;
mcimadamore@160 1361 sym = findFun(env, name, argtypes, typeargtypes,
mcimadamore@160 1362 steps.head.isBoxingRequired,
mcimadamore@160 1363 env.info.varArgs = steps.head.isVarargsRequired);
mcimadamore@160 1364 methodResolutionCache.put(steps.head, sym);
mcimadamore@160 1365 steps = steps.tail;
duke@1 1366 }
mcimadamore@160 1367 if (sym.kind >= AMBIGUOUS) {//if nothing is found return the 'first' error
mcimadamore@160 1368 MethodResolutionPhase errPhase =
mcimadamore@160 1369 firstErroneousResolutionPhase();
mcimadamore@160 1370 sym = access(methodResolutionCache.get(errPhase),
mcimadamore@160 1371 pos, env.enclClass.sym.type, name, false, argtypes, typeargtypes);
mcimadamore@160 1372 env.info.varArgs = errPhase.isVarargsRequired;
duke@1 1373 }
duke@1 1374 return sym;
duke@1 1375 }
duke@1 1376
mcimadamore@689 1377 private Symbol startResolution() {
mcimadamore@689 1378 wrongMethod.clear();
mcimadamore@689 1379 wrongMethods.clear();
mcimadamore@689 1380 return methodNotFound;
mcimadamore@689 1381 }
mcimadamore@689 1382
duke@1 1383 /** Resolve a qualified method identifier
duke@1 1384 * @param pos The position to use for error reporting.
duke@1 1385 * @param env The environment current at the method invocation.
duke@1 1386 * @param site The type of the qualifying expression, in which
duke@1 1387 * identifier is searched.
duke@1 1388 * @param name The identifier's name.
duke@1 1389 * @param argtypes The types of the invocation's value arguments.
duke@1 1390 * @param typeargtypes The types of the invocation's type arguments.
duke@1 1391 */
duke@1 1392 Symbol resolveQualifiedMethod(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 1393 Type site, Name name, List<Type> argtypes,
duke@1 1394 List<Type> typeargtypes) {
mcimadamore@689 1395 Symbol sym = startResolution();
mcimadamore@160 1396 List<MethodResolutionPhase> steps = methodResolutionSteps;
mcimadamore@160 1397 while (steps.nonEmpty() &&
mcimadamore@160 1398 steps.head.isApplicable(boxingEnabled, varargsEnabled) &&
mcimadamore@160 1399 sym.kind >= ERRONEOUS) {
mcimadamore@689 1400 currentStep = steps.head;
mcimadamore@160 1401 sym = findMethod(env, site, name, argtypes, typeargtypes,
mcimadamore@160 1402 steps.head.isBoxingRequired(),
mcimadamore@160 1403 env.info.varArgs = steps.head.isVarargsRequired(), false);
mcimadamore@160 1404 methodResolutionCache.put(steps.head, sym);
mcimadamore@160 1405 steps = steps.tail;
duke@1 1406 }
mcimadamore@674 1407 if (sym.kind >= AMBIGUOUS) {
mcimadamore@674 1408 if (site.tsym.isPolymorphicSignatureGeneric() ||
mcimadamore@674 1409 isTransitionalDynamicCallSite(site, sym)) {
mcimadamore@674 1410 //polymorphic receiver - synthesize new method symbol
mcimadamore@674 1411 env.info.varArgs = false;
mcimadamore@674 1412 sym = findPolymorphicSignatureInstance(env,
mcimadamore@674 1413 site, name, null, argtypes, typeargtypes);
mcimadamore@674 1414 }
mcimadamore@674 1415 else {
mcimadamore@674 1416 //if nothing is found return the 'first' error
mcimadamore@674 1417 MethodResolutionPhase errPhase =
mcimadamore@674 1418 firstErroneousResolutionPhase();
mcimadamore@674 1419 sym = access(methodResolutionCache.get(errPhase),
mcimadamore@674 1420 pos, site, name, true, argtypes, typeargtypes);
mcimadamore@674 1421 env.info.varArgs = errPhase.isVarargsRequired;
mcimadamore@674 1422 }
mcimadamore@674 1423 } else if (allowMethodHandles && sym.isPolymorphicSignatureGeneric()) {
mcimadamore@674 1424 //non-instantiated polymorphic signature - synthesize new method symbol
mcimadamore@674 1425 env.info.varArgs = false;
mcimadamore@674 1426 sym = findPolymorphicSignatureInstance(env,
mcimadamore@674 1427 site, name, (MethodSymbol)sym, argtypes, typeargtypes);
duke@1 1428 }
duke@1 1429 return sym;
duke@1 1430 }
duke@1 1431
mcimadamore@674 1432 /** Find or create an implicit method of exactly the given type (after erasure).
mcimadamore@674 1433 * Searches in a side table, not the main scope of the site.
mcimadamore@674 1434 * This emulates the lookup process required by JSR 292 in JVM.
mcimadamore@674 1435 * @param env Attribution environment
mcimadamore@674 1436 * @param site The original type from where the selection takes place.
mcimadamore@674 1437 * @param name The method's name.
mcimadamore@674 1438 * @param spMethod A template for the implicit method, or null.
mcimadamore@674 1439 * @param argtypes The required argument types.
mcimadamore@674 1440 * @param typeargtypes The required type arguments.
mcimadamore@674 1441 */
mcimadamore@674 1442 Symbol findPolymorphicSignatureInstance(Env<AttrContext> env, Type site,
mcimadamore@674 1443 Name name,
mcimadamore@674 1444 MethodSymbol spMethod, // sig. poly. method or null if none
mcimadamore@674 1445 List<Type> argtypes,
mcimadamore@674 1446 List<Type> typeargtypes) {
mcimadamore@674 1447 if (typeargtypes.nonEmpty() && (site.tsym.isPolymorphicSignatureGeneric() ||
mcimadamore@674 1448 (spMethod != null && spMethod.isPolymorphicSignatureGeneric()))) {
mcimadamore@674 1449 log.warning(env.tree.pos(), "type.parameter.on.polymorphic.signature");
mcimadamore@674 1450 }
mcimadamore@674 1451
mcimadamore@674 1452 Type mtype = infer.instantiatePolymorphicSignatureInstance(env,
mcimadamore@674 1453 site, name, spMethod, argtypes, typeargtypes);
mcimadamore@674 1454 long flags = ABSTRACT | HYPOTHETICAL | POLYMORPHIC_SIGNATURE |
mcimadamore@674 1455 (spMethod != null ?
mcimadamore@674 1456 spMethod.flags() & Flags.AccessFlags :
mcimadamore@674 1457 Flags.PUBLIC | Flags.STATIC);
mcimadamore@674 1458 Symbol m = null;
mcimadamore@674 1459 for (Scope.Entry e = polymorphicSignatureScope.lookup(name);
mcimadamore@674 1460 e.scope != null;
mcimadamore@674 1461 e = e.next()) {
mcimadamore@674 1462 Symbol sym = e.sym;
mcimadamore@674 1463 if (types.isSameType(mtype, sym.type) &&
mcimadamore@674 1464 (sym.flags() & Flags.STATIC) == (flags & Flags.STATIC) &&
mcimadamore@674 1465 types.isSameType(sym.owner.type, site)) {
mcimadamore@674 1466 m = sym;
mcimadamore@674 1467 break;
mcimadamore@674 1468 }
mcimadamore@674 1469 }
mcimadamore@674 1470 if (m == null) {
mcimadamore@674 1471 // create the desired method
mcimadamore@674 1472 m = new MethodSymbol(flags, name, mtype, site.tsym);
mcimadamore@674 1473 polymorphicSignatureScope.enter(m);
mcimadamore@674 1474 }
mcimadamore@674 1475 return m;
mcimadamore@674 1476 }
mcimadamore@674 1477
duke@1 1478 /** Resolve a qualified method identifier, throw a fatal error if not
duke@1 1479 * found.
duke@1 1480 * @param pos The position to use for error reporting.
duke@1 1481 * @param env The environment current at the method invocation.
duke@1 1482 * @param site The type of the qualifying expression, in which
duke@1 1483 * identifier is searched.
duke@1 1484 * @param name The identifier's name.
duke@1 1485 * @param argtypes The types of the invocation's value arguments.
duke@1 1486 * @param typeargtypes The types of the invocation's type arguments.
duke@1 1487 */
duke@1 1488 public MethodSymbol resolveInternalMethod(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 1489 Type site, Name name,
duke@1 1490 List<Type> argtypes,
duke@1 1491 List<Type> typeargtypes) {
duke@1 1492 Symbol sym = resolveQualifiedMethod(
duke@1 1493 pos, env, site, name, argtypes, typeargtypes);
duke@1 1494 if (sym.kind == MTH) return (MethodSymbol)sym;
duke@1 1495 else throw new FatalError(
mcimadamore@89 1496 diags.fragment("fatal.err.cant.locate.meth",
duke@1 1497 name));
duke@1 1498 }
duke@1 1499
duke@1 1500 /** Resolve constructor.
duke@1 1501 * @param pos The position to use for error reporting.
duke@1 1502 * @param env The environment current at the constructor invocation.
duke@1 1503 * @param site The type of class for which a constructor is searched.
duke@1 1504 * @param argtypes The types of the constructor invocation's value
duke@1 1505 * arguments.
duke@1 1506 * @param typeargtypes The types of the constructor invocation's type
duke@1 1507 * arguments.
duke@1 1508 */
duke@1 1509 Symbol resolveConstructor(DiagnosticPosition pos,
duke@1 1510 Env<AttrContext> env,
duke@1 1511 Type site,
duke@1 1512 List<Type> argtypes,
duke@1 1513 List<Type> typeargtypes) {
mcimadamore@689 1514 Symbol sym = startResolution();
mcimadamore@160 1515 List<MethodResolutionPhase> steps = methodResolutionSteps;
mcimadamore@160 1516 while (steps.nonEmpty() &&
mcimadamore@160 1517 steps.head.isApplicable(boxingEnabled, varargsEnabled) &&
mcimadamore@160 1518 sym.kind >= ERRONEOUS) {
mcimadamore@689 1519 currentStep = steps.head;
mcimadamore@160 1520 sym = resolveConstructor(pos, env, site, argtypes, typeargtypes,
mcimadamore@160 1521 steps.head.isBoxingRequired(),
mcimadamore@160 1522 env.info.varArgs = steps.head.isVarargsRequired());
mcimadamore@160 1523 methodResolutionCache.put(steps.head, sym);
mcimadamore@160 1524 steps = steps.tail;
duke@1 1525 }
mcimadamore@160 1526 if (sym.kind >= AMBIGUOUS) {//if nothing is found return the 'first' error
mcimadamore@160 1527 MethodResolutionPhase errPhase = firstErroneousResolutionPhase();
mcimadamore@160 1528 sym = access(methodResolutionCache.get(errPhase),
mcimadamore@160 1529 pos, site, names.init, true, argtypes, typeargtypes);
mcimadamore@160 1530 env.info.varArgs = errPhase.isVarargsRequired();
duke@1 1531 }
duke@1 1532 return sym;
duke@1 1533 }
duke@1 1534
mcimadamore@537 1535 /** Resolve constructor using diamond inference.
mcimadamore@537 1536 * @param pos The position to use for error reporting.
mcimadamore@537 1537 * @param env The environment current at the constructor invocation.
mcimadamore@537 1538 * @param site The type of class for which a constructor is searched.
mcimadamore@537 1539 * The scope of this class has been touched in attribution.
mcimadamore@537 1540 * @param argtypes The types of the constructor invocation's value
mcimadamore@537 1541 * arguments.
mcimadamore@537 1542 * @param typeargtypes The types of the constructor invocation's type
mcimadamore@537 1543 * arguments.
mcimadamore@537 1544 */
mcimadamore@537 1545 Symbol resolveDiamond(DiagnosticPosition pos,
mcimadamore@537 1546 Env<AttrContext> env,
mcimadamore@537 1547 Type site,
mcimadamore@537 1548 List<Type> argtypes,
mcimadamore@631 1549 List<Type> typeargtypes) {
mcimadamore@689 1550 Symbol sym = startResolution();
mcimadamore@537 1551 List<MethodResolutionPhase> steps = methodResolutionSteps;
mcimadamore@537 1552 while (steps.nonEmpty() &&
mcimadamore@537 1553 steps.head.isApplicable(boxingEnabled, varargsEnabled) &&
mcimadamore@537 1554 sym.kind >= ERRONEOUS) {
mcimadamore@689 1555 currentStep = steps.head;
mcimadamore@537 1556 sym = resolveConstructor(pos, env, site, argtypes, typeargtypes,
mcimadamore@537 1557 steps.head.isBoxingRequired(),
mcimadamore@537 1558 env.info.varArgs = steps.head.isVarargsRequired());
mcimadamore@537 1559 methodResolutionCache.put(steps.head, sym);
mcimadamore@537 1560 steps = steps.tail;
mcimadamore@537 1561 }
mcimadamore@631 1562 if (sym.kind >= AMBIGUOUS) {
mcimadamore@689 1563 final JCDiagnostic details = sym.kind == WRONG_MTH ?
mcimadamore@689 1564 ((InapplicableSymbolError)sym).explanation :
mcimadamore@689 1565 null;
mcimadamore@631 1566 Symbol errSym = new ResolveError(WRONG_MTH, "diamond error") {
mcimadamore@631 1567 @Override
mcimadamore@631 1568 JCDiagnostic getDiagnostic(DiagnosticType dkind, DiagnosticPosition pos, Type site, Name name, List<Type> argtypes, List<Type> typeargtypes) {
mcimadamore@631 1569 String key = details == null ?
mcimadamore@631 1570 "cant.apply.diamond" :
mcimadamore@631 1571 "cant.apply.diamond.1";
mcimadamore@631 1572 return diags.create(dkind, log.currentSource(), pos, key, diags.fragment("diamond", site.tsym), details);
mcimadamore@631 1573 }
mcimadamore@631 1574 };
mcimadamore@631 1575 MethodResolutionPhase errPhase = firstErroneousResolutionPhase();
mcimadamore@631 1576 sym = access(errSym, pos, site, names.init, true, argtypes, typeargtypes);
mcimadamore@631 1577 env.info.varArgs = errPhase.isVarargsRequired();
mcimadamore@537 1578 }
mcimadamore@537 1579 return sym;
mcimadamore@537 1580 }
mcimadamore@537 1581
duke@1 1582 /** Resolve constructor.
duke@1 1583 * @param pos The position to use for error reporting.
duke@1 1584 * @param env The environment current at the constructor invocation.
duke@1 1585 * @param site The type of class for which a constructor is searched.
duke@1 1586 * @param argtypes The types of the constructor invocation's value
duke@1 1587 * arguments.
duke@1 1588 * @param typeargtypes The types of the constructor invocation's type
duke@1 1589 * arguments.
duke@1 1590 * @param allowBoxing Allow boxing and varargs conversions.
duke@1 1591 * @param useVarargs Box trailing arguments into an array for varargs.
duke@1 1592 */
duke@1 1593 Symbol resolveConstructor(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 1594 Type site, List<Type> argtypes,
duke@1 1595 List<Type> typeargtypes,
duke@1 1596 boolean allowBoxing,
duke@1 1597 boolean useVarargs) {
duke@1 1598 Symbol sym = findMethod(env, site,
duke@1 1599 names.init, argtypes,
duke@1 1600 typeargtypes, allowBoxing,
duke@1 1601 useVarargs, false);
duke@1 1602 if ((sym.flags() & DEPRECATED) != 0 &&
duke@1 1603 (env.info.scope.owner.flags() & DEPRECATED) == 0 &&
duke@1 1604 env.info.scope.owner.outermostClass() != sym.outermostClass())
duke@1 1605 chk.warnDeprecated(pos, sym);
duke@1 1606 return sym;
duke@1 1607 }
duke@1 1608
duke@1 1609 /** Resolve a constructor, throw a fatal error if not found.
duke@1 1610 * @param pos The position to use for error reporting.
duke@1 1611 * @param env The environment current at the method invocation.
duke@1 1612 * @param site The type to be constructed.
duke@1 1613 * @param argtypes The types of the invocation's value arguments.
duke@1 1614 * @param typeargtypes The types of the invocation's type arguments.
duke@1 1615 */
duke@1 1616 public MethodSymbol resolveInternalConstructor(DiagnosticPosition pos, Env<AttrContext> env,
duke@1 1617 Type site,
duke@1 1618 List<Type> argtypes,
duke@1 1619 List<Type> typeargtypes) {
duke@1 1620 Symbol sym = resolveConstructor(
duke@1 1621 pos, env, site, argtypes, typeargtypes);
duke@1 1622 if (sym.kind == MTH) return (MethodSymbol)sym;
duke@1 1623 else throw new FatalError(
mcimadamore@89 1624 diags.fragment("fatal.err.cant.locate.ctor", site));
duke@1 1625 }
duke@1 1626
duke@1 1627 /** Resolve operator.
duke@1 1628 * @param pos The position to use for error reporting.
duke@1 1629 * @param optag The tag of the operation tree.
duke@1 1630 * @param env The environment current at the operation.
duke@1 1631 * @param argtypes The types of the operands.
duke@1 1632 */
duke@1 1633 Symbol resolveOperator(DiagnosticPosition pos, int optag,
duke@1 1634 Env<AttrContext> env, List<Type> argtypes) {
duke@1 1635 Name name = treeinfo.operatorName(optag);
duke@1 1636 Symbol sym = findMethod(env, syms.predefClass.type, name, argtypes,
duke@1 1637 null, false, false, true);
duke@1 1638 if (boxingEnabled && sym.kind >= WRONG_MTHS)
duke@1 1639 sym = findMethod(env, syms.predefClass.type, name, argtypes,
duke@1 1640 null, true, false, true);
duke@1 1641 return access(sym, pos, env.enclClass.sym.type, name,
duke@1 1642 false, argtypes, null);
duke@1 1643 }
duke@1 1644
duke@1 1645 /** Resolve operator.
duke@1 1646 * @param pos The position to use for error reporting.
duke@1 1647 * @param optag The tag of the operation tree.
duke@1 1648 * @param env The environment current at the operation.
duke@1 1649 * @param arg The type of the operand.
duke@1 1650 */
duke@1 1651 Symbol resolveUnaryOperator(DiagnosticPosition pos, int optag, Env<AttrContext> env, Type arg) {
duke@1 1652 return resolveOperator(pos, optag, env, List.of(arg));
duke@1 1653 }
duke@1 1654
duke@1 1655 /** Resolve binary operator.
duke@1 1656 * @param pos The position to use for error reporting.
duke@1 1657 * @param optag The tag of the operation tree.
duke@1 1658 * @param env The environment current at the operation.
duke@1 1659 * @param left The types of the left operand.
duke@1 1660 * @param right The types of the right operand.
duke@1 1661 */
duke@1 1662 Symbol resolveBinaryOperator(DiagnosticPosition pos,
duke@1 1663 int optag,
duke@1 1664 Env<AttrContext> env,
duke@1 1665 Type left,
duke@1 1666 Type right) {
duke@1 1667 return resolveOperator(pos, optag, env, List.of(left, right));
duke@1 1668 }
duke@1 1669
duke@1 1670 /**
duke@1 1671 * Resolve `c.name' where name == this or name == super.
duke@1 1672 * @param pos The position to use for error reporting.
duke@1 1673 * @param env The environment current at the expression.
duke@1 1674 * @param c The qualifier.
duke@1 1675 * @param name The identifier's name.
duke@1 1676 */
duke@1 1677 Symbol resolveSelf(DiagnosticPosition pos,
duke@1 1678 Env<AttrContext> env,
duke@1 1679 TypeSymbol c,
duke@1 1680 Name name) {
duke@1 1681 Env<AttrContext> env1 = env;
duke@1 1682 boolean staticOnly = false;
duke@1 1683 while (env1.outer != null) {
duke@1 1684 if (isStatic(env1)) staticOnly = true;
duke@1 1685 if (env1.enclClass.sym == c) {
duke@1 1686 Symbol sym = env1.info.scope.lookup(name).sym;
duke@1 1687 if (sym != null) {
duke@1 1688 if (staticOnly) sym = new StaticError(sym);
duke@1 1689 return access(sym, pos, env.enclClass.sym.type,
duke@1 1690 name, true);
duke@1 1691 }
duke@1 1692 }
duke@1 1693 if ((env1.enclClass.sym.flags() & STATIC) != 0) staticOnly = true;
duke@1 1694 env1 = env1.outer;
duke@1 1695 }
duke@1 1696 log.error(pos, "not.encl.class", c);
duke@1 1697 return syms.errSymbol;
duke@1 1698 }
duke@1 1699
duke@1 1700 /**
duke@1 1701 * Resolve `c.this' for an enclosing class c that contains the
duke@1 1702 * named member.
duke@1 1703 * @param pos The position to use for error reporting.
duke@1 1704 * @param env The environment current at the expression.
duke@1 1705 * @param member The member that must be contained in the result.
duke@1 1706 */
duke@1 1707 Symbol resolveSelfContaining(DiagnosticPosition pos,
duke@1 1708 Env<AttrContext> env,
duke@1 1709 Symbol member) {
duke@1 1710 Name name = names._this;
duke@1 1711 Env<AttrContext> env1 = env;
duke@1 1712 boolean staticOnly = false;
duke@1 1713 while (env1.outer != null) {
duke@1 1714 if (isStatic(env1)) staticOnly = true;
duke@1 1715 if (env1.enclClass.sym.isSubClass(member.owner, types) &&
duke@1 1716 isAccessible(env, env1.enclClass.sym.type, member)) {
duke@1 1717 Symbol sym = env1.info.scope.lookup(name).sym;
duke@1 1718 if (sym != null) {
duke@1 1719 if (staticOnly) sym = new StaticError(sym);
duke@1 1720 return access(sym, pos, env.enclClass.sym.type,
duke@1 1721 name, true);
duke@1 1722 }
duke@1 1723 }
duke@1 1724 if ((env1.enclClass.sym.flags() & STATIC) != 0)
duke@1 1725 staticOnly = true;
duke@1 1726 env1 = env1.outer;
duke@1 1727 }
duke@1 1728 log.error(pos, "encl.class.required", member);
duke@1 1729 return syms.errSymbol;
duke@1 1730 }
duke@1 1731
duke@1 1732 /**
duke@1 1733 * Resolve an appropriate implicit this instance for t's container.
duke@1 1734 * JLS2 8.8.5.1 and 15.9.2
duke@1 1735 */
duke@1 1736 Type resolveImplicitThis(DiagnosticPosition pos, Env<AttrContext> env, Type t) {
duke@1 1737 Type thisType = (((t.tsym.owner.kind & (MTH|VAR)) != 0)
duke@1 1738 ? resolveSelf(pos, env, t.getEnclosingType().tsym, names._this)
duke@1 1739 : resolveSelfContaining(pos, env, t.tsym)).type;
duke@1 1740 if (env.info.isSelfCall && thisType.tsym == env.enclClass.sym)
duke@1 1741 log.error(pos, "cant.ref.before.ctor.called", "this");
duke@1 1742 return thisType;
duke@1 1743 }
duke@1 1744
duke@1 1745 /* ***************************************************************************
duke@1 1746 * ResolveError classes, indicating error situations when accessing symbols
duke@1 1747 ****************************************************************************/
duke@1 1748
duke@1 1749 public void logAccessError(Env<AttrContext> env, JCTree tree, Type type) {
duke@1 1750 AccessError error = new AccessError(env, type.getEnclosingType(), type.tsym);
mcimadamore@302 1751 logResolveError(error, tree.pos(), type.getEnclosingType(), null, null, null);
mcimadamore@302 1752 }
mcimadamore@302 1753 //where
mcimadamore@302 1754 private void logResolveError(ResolveError error,
mcimadamore@302 1755 DiagnosticPosition pos,
mcimadamore@302 1756 Type site,
mcimadamore@302 1757 Name name,
mcimadamore@302 1758 List<Type> argtypes,
mcimadamore@302 1759 List<Type> typeargtypes) {
mcimadamore@302 1760 JCDiagnostic d = error.getDiagnostic(JCDiagnostic.DiagnosticType.ERROR,
mcimadamore@302 1761 pos, site, name, argtypes, typeargtypes);
jjg@643 1762 if (d != null) {
jjg@643 1763 d.setFlag(DiagnosticFlag.RESOLVE_ERROR);
mcimadamore@302 1764 log.report(d);
jjg@643 1765 }
duke@1 1766 }
duke@1 1767
mcimadamore@161 1768 private final LocalizedString noArgs = new LocalizedString("compiler.misc.no.args");
mcimadamore@161 1769
mcimadamore@161 1770 public Object methodArguments(List<Type> argtypes) {
mcimadamore@161 1771 return argtypes.isEmpty() ? noArgs : argtypes;
mcimadamore@161 1772 }
mcimadamore@161 1773
mcimadamore@302 1774 /**
mcimadamore@302 1775 * Root class for resolution errors. Subclass of ResolveError
mcimadamore@302 1776 * represent a different kinds of resolution error - as such they must
mcimadamore@302 1777 * specify how they map into concrete compiler diagnostics.
duke@1 1778 */
mcimadamore@302 1779 private abstract class ResolveError extends Symbol {
duke@1 1780
mcimadamore@302 1781 /** The name of the kind of error, for debugging only. */
mcimadamore@302 1782 final String debugName;
mcimadamore@302 1783
mcimadamore@302 1784 ResolveError(int kind, String debugName) {
duke@1 1785 super(kind, 0, null, null, null);
duke@1 1786 this.debugName = debugName;
duke@1 1787 }
duke@1 1788
mcimadamore@302 1789 @Override
duke@1 1790 public <R, P> R accept(ElementVisitor<R, P> v, P p) {
duke@1 1791 throw new AssertionError();
duke@1 1792 }
duke@1 1793
mcimadamore@302 1794 @Override
duke@1 1795 public String toString() {
mcimadamore@302 1796 return debugName;
duke@1 1797 }
duke@1 1798
mcimadamore@302 1799 @Override
mcimadamore@302 1800 public boolean exists() {
mcimadamore@302 1801 return false;
duke@1 1802 }
duke@1 1803
mcimadamore@302 1804 /**
mcimadamore@302 1805 * Create an external representation for this erroneous symbol to be
mcimadamore@302 1806 * used during attribution - by default this returns the symbol of a
mcimadamore@302 1807 * brand new error type which stores the original type found
mcimadamore@302 1808 * during resolution.
mcimadamore@302 1809 *
mcimadamore@302 1810 * @param name the name used during resolution
mcimadamore@302 1811 * @param location the location from which the symbol is accessed
duke@1 1812 */
mcimadamore@302 1813 protected Symbol access(Name name, TypeSymbol location) {
mcimadamore@302 1814 return types.createErrorType(name, location, syms.errSymbol.type).tsym;
duke@1 1815 }
duke@1 1816
mcimadamore@302 1817 /**
mcimadamore@302 1818 * Create a diagnostic representing this resolution error.
mcimadamore@302 1819 *
mcimadamore@302 1820 * @param dkind The kind of the diagnostic to be created (e.g error).
mcimadamore@302 1821 * @param pos The position to be used for error reporting.
mcimadamore@302 1822 * @param site The original type from where the selection took place.
mcimadamore@302 1823 * @param name The name of the symbol to be resolved.
mcimadamore@302 1824 * @param argtypes The invocation's value arguments,
mcimadamore@302 1825 * if we looked for a method.
mcimadamore@302 1826 * @param typeargtypes The invocation's type arguments,
mcimadamore@302 1827 * if we looked for a method.
mcimadamore@302 1828 */
mcimadamore@302 1829 abstract JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 1830 DiagnosticPosition pos,
mcimadamore@302 1831 Type site,
mcimadamore@302 1832 Name name,
mcimadamore@302 1833 List<Type> argtypes,
mcimadamore@302 1834 List<Type> typeargtypes);
duke@1 1835
mcimadamore@302 1836 /**
mcimadamore@302 1837 * A name designates an operator if it consists
mcimadamore@302 1838 * of a non-empty sequence of operator symbols +-~!/*%&|^<>=
mcimadamore@80 1839 */
mcimadamore@80 1840 boolean isOperator(Name name) {
mcimadamore@80 1841 int i = 0;
jjg@113 1842 while (i < name.getByteLength() &&
jjg@113 1843 "+-~!*/%&|^<>=".indexOf(name.getByteAt(i)) >= 0) i++;
jjg@113 1844 return i > 0 && i == name.getByteLength();
mcimadamore@80 1845 }
duke@1 1846 }
duke@1 1847
mcimadamore@302 1848 /**
mcimadamore@302 1849 * This class is the root class of all resolution errors caused by
mcimadamore@302 1850 * an invalid symbol being found during resolution.
duke@1 1851 */
mcimadamore@302 1852 abstract class InvalidSymbolError extends ResolveError {
mcimadamore@302 1853
mcimadamore@302 1854 /** The invalid symbol found during resolution */
mcimadamore@302 1855 Symbol sym;
mcimadamore@302 1856
mcimadamore@302 1857 InvalidSymbolError(int kind, Symbol sym, String debugName) {
mcimadamore@302 1858 super(kind, debugName);
mcimadamore@302 1859 this.sym = sym;
mcimadamore@302 1860 }
mcimadamore@302 1861
mcimadamore@302 1862 @Override
mcimadamore@302 1863 public boolean exists() {
mcimadamore@302 1864 return true;
mcimadamore@302 1865 }
mcimadamore@302 1866
mcimadamore@302 1867 @Override
mcimadamore@302 1868 public String toString() {
mcimadamore@302 1869 return super.toString() + " wrongSym=" + sym;
mcimadamore@302 1870 }
mcimadamore@302 1871
mcimadamore@302 1872 @Override
mcimadamore@302 1873 public Symbol access(Name name, TypeSymbol location) {
mcimadamore@302 1874 if (sym.kind >= AMBIGUOUS)
mcimadamore@302 1875 return ((ResolveError)sym).access(name, location);
mcimadamore@302 1876 else if ((sym.kind & ERRONEOUS) == 0 && (sym.kind & TYP) != 0)
mcimadamore@302 1877 return types.createErrorType(name, location, sym.type).tsym;
mcimadamore@302 1878 else
mcimadamore@302 1879 return sym;
mcimadamore@302 1880 }
mcimadamore@302 1881 }
mcimadamore@302 1882
mcimadamore@302 1883 /**
mcimadamore@302 1884 * InvalidSymbolError error class indicating that a symbol matching a
mcimadamore@302 1885 * given name does not exists in a given site.
mcimadamore@302 1886 */
mcimadamore@302 1887 class SymbolNotFoundError extends ResolveError {
mcimadamore@302 1888
mcimadamore@302 1889 SymbolNotFoundError(int kind) {
mcimadamore@302 1890 super(kind, "symbol not found error");
mcimadamore@302 1891 }
mcimadamore@302 1892
mcimadamore@302 1893 @Override
mcimadamore@302 1894 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 1895 DiagnosticPosition pos,
mcimadamore@302 1896 Type site,
mcimadamore@302 1897 Name name,
mcimadamore@302 1898 List<Type> argtypes,
mcimadamore@302 1899 List<Type> typeargtypes) {
mcimadamore@302 1900 argtypes = argtypes == null ? List.<Type>nil() : argtypes;
mcimadamore@302 1901 typeargtypes = typeargtypes == null ? List.<Type>nil() : typeargtypes;
mcimadamore@302 1902 if (name == names.error)
mcimadamore@302 1903 return null;
mcimadamore@302 1904
mcimadamore@302 1905 if (isOperator(name)) {
jjg@612 1906 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 1907 "operator.cant.be.applied", name, argtypes);
mcimadamore@302 1908 }
mcimadamore@302 1909 boolean hasLocation = false;
mcimadamore@302 1910 if (!site.tsym.name.isEmpty()) {
mcimadamore@302 1911 if (site.tsym.kind == PCK && !site.tsym.exists()) {
jjg@612 1912 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 1913 "doesnt.exist", site.tsym);
mcimadamore@302 1914 }
mcimadamore@302 1915 hasLocation = true;
mcimadamore@302 1916 }
mcimadamore@302 1917 boolean isConstructor = kind == ABSENT_MTH &&
mcimadamore@302 1918 name == names.table.names.init;
mcimadamore@302 1919 KindName kindname = isConstructor ? KindName.CONSTRUCTOR : absentKind(kind);
mcimadamore@302 1920 Name idname = isConstructor ? site.tsym.name : name;
mcimadamore@302 1921 String errKey = getErrorKey(kindname, typeargtypes.nonEmpty(), hasLocation);
mcimadamore@302 1922 if (hasLocation) {
jjg@612 1923 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 1924 errKey, kindname, idname, //symbol kindname, name
mcimadamore@302 1925 typeargtypes, argtypes, //type parameters and arguments (if any)
mcimadamore@302 1926 typeKindName(site), site); //location kindname, type
mcimadamore@302 1927 }
mcimadamore@302 1928 else {
jjg@612 1929 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 1930 errKey, kindname, idname, //symbol kindname, name
mcimadamore@302 1931 typeargtypes, argtypes); //type parameters and arguments (if any)
mcimadamore@302 1932 }
mcimadamore@302 1933 }
mcimadamore@302 1934 //where
mcimadamore@302 1935 private String getErrorKey(KindName kindname, boolean hasTypeArgs, boolean hasLocation) {
mcimadamore@302 1936 String key = "cant.resolve";
mcimadamore@302 1937 String suffix = hasLocation ? ".location" : "";
mcimadamore@302 1938 switch (kindname) {
mcimadamore@302 1939 case METHOD:
mcimadamore@302 1940 case CONSTRUCTOR: {
mcimadamore@302 1941 suffix += ".args";
mcimadamore@302 1942 suffix += hasTypeArgs ? ".params" : "";
mcimadamore@302 1943 }
mcimadamore@302 1944 }
mcimadamore@302 1945 return key + suffix;
mcimadamore@302 1946 }
mcimadamore@302 1947 }
mcimadamore@302 1948
mcimadamore@302 1949 /**
mcimadamore@302 1950 * InvalidSymbolError error class indicating that a given symbol
mcimadamore@302 1951 * (either a method, a constructor or an operand) is not applicable
mcimadamore@302 1952 * given an actual arguments/type argument list.
mcimadamore@302 1953 */
mcimadamore@302 1954 class InapplicableSymbolError extends InvalidSymbolError {
mcimadamore@302 1955
mcimadamore@302 1956 /** An auxiliary explanation set in case of instantiation errors. */
mcimadamore@302 1957 JCDiagnostic explanation;
mcimadamore@302 1958
mcimadamore@302 1959 InapplicableSymbolError(Symbol sym) {
mcimadamore@302 1960 super(WRONG_MTH, sym, "inapplicable symbol error");
mcimadamore@302 1961 }
mcimadamore@302 1962
mcimadamore@302 1963 /** Update sym and explanation and return this.
mcimadamore@302 1964 */
mcimadamore@302 1965 InapplicableSymbolError setWrongSym(Symbol sym, JCDiagnostic explanation) {
mcimadamore@302 1966 this.sym = sym;
mcimadamore@689 1967 if (this.sym == sym && explanation != null)
mcimadamore@689 1968 this.explanation = explanation; //update the details
mcimadamore@302 1969 return this;
mcimadamore@302 1970 }
mcimadamore@302 1971
mcimadamore@302 1972 /** Update sym and return this.
mcimadamore@302 1973 */
mcimadamore@302 1974 InapplicableSymbolError setWrongSym(Symbol sym) {
mcimadamore@302 1975 this.sym = sym;
mcimadamore@302 1976 return this;
mcimadamore@302 1977 }
mcimadamore@302 1978
mcimadamore@302 1979 @Override
mcimadamore@302 1980 public String toString() {
mcimadamore@302 1981 return super.toString() + " explanation=" + explanation;
mcimadamore@302 1982 }
mcimadamore@302 1983
mcimadamore@302 1984 @Override
mcimadamore@302 1985 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 1986 DiagnosticPosition pos,
mcimadamore@302 1987 Type site,
mcimadamore@302 1988 Name name,
mcimadamore@302 1989 List<Type> argtypes,
mcimadamore@302 1990 List<Type> typeargtypes) {
mcimadamore@302 1991 if (name == names.error)
mcimadamore@302 1992 return null;
mcimadamore@302 1993
mcimadamore@302 1994 if (isOperator(name)) {
jjg@612 1995 return diags.create(dkind, log.currentSource(),
mcimadamore@302 1996 pos, "operator.cant.be.applied", name, argtypes);
mcimadamore@302 1997 }
mcimadamore@302 1998 else {
mcimadamore@302 1999 Symbol ws = sym.asMemberOf(site, types);
jjg@612 2000 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 2001 "cant.apply.symbol" + (explanation != null ? ".1" : ""),
mcimadamore@302 2002 kindName(ws),
mcimadamore@302 2003 ws.name == names.init ? ws.owner.name : ws.name,
mcimadamore@302 2004 methodArguments(ws.type.getParameterTypes()),
mcimadamore@302 2005 methodArguments(argtypes),
mcimadamore@302 2006 kindName(ws.owner),
mcimadamore@302 2007 ws.owner.type,
mcimadamore@302 2008 explanation);
mcimadamore@302 2009 }
mcimadamore@302 2010 }
mcimadamore@302 2011
mcimadamore@689 2012 void clear() {
mcimadamore@689 2013 explanation = null;
mcimadamore@689 2014 }
mcimadamore@689 2015
mcimadamore@302 2016 @Override
mcimadamore@302 2017 public Symbol access(Name name, TypeSymbol location) {
mcimadamore@302 2018 return types.createErrorType(name, location, syms.errSymbol.type).tsym;
mcimadamore@302 2019 }
mcimadamore@302 2020 }
mcimadamore@302 2021
mcimadamore@302 2022 /**
mcimadamore@302 2023 * ResolveError error class indicating that a set of symbols
mcimadamore@302 2024 * (either methods, constructors or operands) is not applicable
mcimadamore@302 2025 * given an actual arguments/type argument list.
mcimadamore@302 2026 */
mcimadamore@302 2027 class InapplicableSymbolsError extends ResolveError {
mcimadamore@689 2028
mcimadamore@689 2029 private List<Candidate> candidates = List.nil();
mcimadamore@689 2030
mcimadamore@302 2031 InapplicableSymbolsError(Symbol sym) {
mcimadamore@302 2032 super(WRONG_MTHS, "inapplicable symbols");
mcimadamore@302 2033 }
mcimadamore@302 2034
mcimadamore@302 2035 @Override
mcimadamore@302 2036 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 2037 DiagnosticPosition pos,
mcimadamore@302 2038 Type site,
mcimadamore@302 2039 Name name,
mcimadamore@302 2040 List<Type> argtypes,
mcimadamore@302 2041 List<Type> typeargtypes) {
mcimadamore@689 2042 if (candidates.nonEmpty()) {
mcimadamore@689 2043 JCDiagnostic err = diags.create(dkind,
mcimadamore@689 2044 log.currentSource(),
mcimadamore@689 2045 pos,
mcimadamore@689 2046 "cant.apply.symbols",
mcimadamore@689 2047 name == names.init ? KindName.CONSTRUCTOR : absentKind(kind),
mcimadamore@689 2048 getName(),
mcimadamore@689 2049 argtypes);
mcimadamore@689 2050 return new JCDiagnostic.MultilineDiagnostic(err, candidateDetails(site));
mcimadamore@689 2051 } else {
mcimadamore@689 2052 return new SymbolNotFoundError(ABSENT_MTH).getDiagnostic(dkind, pos,
mcimadamore@302 2053 site, name, argtypes, typeargtypes);
mcimadamore@689 2054 }
mcimadamore@689 2055 }
mcimadamore@689 2056
mcimadamore@689 2057 //where
mcimadamore@689 2058 List<JCDiagnostic> candidateDetails(Type site) {
mcimadamore@689 2059 List<JCDiagnostic> details = List.nil();
mcimadamore@689 2060 for (Candidate c : candidates)
mcimadamore@689 2061 details = details.prepend(c.getDiagnostic(site));
mcimadamore@689 2062 return details.reverse();
mcimadamore@689 2063 }
mcimadamore@689 2064
mcimadamore@689 2065 Symbol addCandidate(MethodResolutionPhase currentStep, Symbol sym, JCDiagnostic details) {
mcimadamore@689 2066 Candidate c = new Candidate(currentStep, sym, details);
mcimadamore@689 2067 if (c.isValid() && !candidates.contains(c))
mcimadamore@689 2068 candidates = candidates.append(c);
mcimadamore@689 2069 return this;
mcimadamore@689 2070 }
mcimadamore@689 2071
mcimadamore@689 2072 void clear() {
mcimadamore@689 2073 candidates = List.nil();
mcimadamore@689 2074 }
mcimadamore@689 2075
mcimadamore@689 2076 private Name getName() {
mcimadamore@689 2077 Symbol sym = candidates.head.sym;
mcimadamore@689 2078 return sym.name == names.init ?
mcimadamore@689 2079 sym.owner.name :
mcimadamore@689 2080 sym.name;
mcimadamore@689 2081 }
mcimadamore@689 2082
mcimadamore@689 2083 private class Candidate {
mcimadamore@689 2084
mcimadamore@689 2085 final MethodResolutionPhase step;
mcimadamore@689 2086 final Symbol sym;
mcimadamore@689 2087 final JCDiagnostic details;
mcimadamore@689 2088
mcimadamore@689 2089 private Candidate(MethodResolutionPhase step, Symbol sym, JCDiagnostic details) {
mcimadamore@689 2090 this.step = step;
mcimadamore@689 2091 this.sym = sym;
mcimadamore@689 2092 this.details = details;
mcimadamore@689 2093 }
mcimadamore@689 2094
mcimadamore@689 2095 JCDiagnostic getDiagnostic(Type site) {
mcimadamore@689 2096 return diags.fragment("inapplicable.method",
mcimadamore@689 2097 Kinds.kindName(sym),
mcimadamore@689 2098 sym.location(site, types),
mcimadamore@689 2099 sym.asMemberOf(site, types),
mcimadamore@689 2100 details);
mcimadamore@689 2101 }
mcimadamore@689 2102
mcimadamore@689 2103 @Override
mcimadamore@689 2104 public boolean equals(Object o) {
mcimadamore@689 2105 if (o instanceof Candidate) {
mcimadamore@689 2106 Symbol s1 = this.sym;
mcimadamore@689 2107 Symbol s2 = ((Candidate)o).sym;
mcimadamore@689 2108 if ((s1 != s2 &&
mcimadamore@689 2109 (s1.overrides(s2, s1.owner.type.tsym, types, false) ||
mcimadamore@689 2110 (s2.overrides(s1, s2.owner.type.tsym, types, false)))) ||
mcimadamore@689 2111 ((s1.isConstructor() || s2.isConstructor()) && s1.owner != s2.owner))
mcimadamore@689 2112 return true;
mcimadamore@689 2113 }
mcimadamore@689 2114 return false;
mcimadamore@689 2115 }
mcimadamore@689 2116
mcimadamore@689 2117 boolean isValid() {
mcimadamore@689 2118 return (((sym.flags() & VARARGS) != 0 && step == VARARITY) ||
mcimadamore@689 2119 (sym.flags() & VARARGS) == 0 && step == (boxingEnabled ? BOX : BASIC));
mcimadamore@689 2120 }
mcimadamore@302 2121 }
mcimadamore@302 2122 }
mcimadamore@302 2123
mcimadamore@302 2124 /**
mcimadamore@302 2125 * An InvalidSymbolError error class indicating that a symbol is not
mcimadamore@302 2126 * accessible from a given site
mcimadamore@302 2127 */
mcimadamore@302 2128 class AccessError extends InvalidSymbolError {
mcimadamore@302 2129
mcimadamore@302 2130 private Env<AttrContext> env;
mcimadamore@302 2131 private Type site;
duke@1 2132
duke@1 2133 AccessError(Symbol sym) {
duke@1 2134 this(null, null, sym);
duke@1 2135 }
duke@1 2136
duke@1 2137 AccessError(Env<AttrContext> env, Type site, Symbol sym) {
duke@1 2138 super(HIDDEN, sym, "access error");
duke@1 2139 this.env = env;
duke@1 2140 this.site = site;
duke@1 2141 if (debugResolve)
duke@1 2142 log.error("proc.messager", sym + " @ " + site + " is inaccessible.");
duke@1 2143 }
duke@1 2144
mcimadamore@302 2145 @Override
mcimadamore@302 2146 public boolean exists() {
mcimadamore@302 2147 return false;
mcimadamore@302 2148 }
duke@1 2149
mcimadamore@302 2150 @Override
mcimadamore@302 2151 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 2152 DiagnosticPosition pos,
mcimadamore@302 2153 Type site,
mcimadamore@302 2154 Name name,
mcimadamore@302 2155 List<Type> argtypes,
mcimadamore@302 2156 List<Type> typeargtypes) {
mcimadamore@302 2157 if (sym.owner.type.tag == ERROR)
mcimadamore@302 2158 return null;
mcimadamore@302 2159
mcimadamore@302 2160 if (sym.name == names.init && sym.owner != site.tsym) {
mcimadamore@302 2161 return new SymbolNotFoundError(ABSENT_MTH).getDiagnostic(dkind,
mcimadamore@302 2162 pos, site, name, argtypes, typeargtypes);
mcimadamore@302 2163 }
mcimadamore@302 2164 else if ((sym.flags() & PUBLIC) != 0
mcimadamore@302 2165 || (env != null && this.site != null
mcimadamore@302 2166 && !isAccessible(env, this.site))) {
jjg@612 2167 return diags.create(dkind, log.currentSource(),
mcimadamore@302 2168 pos, "not.def.access.class.intf.cant.access",
mcimadamore@302 2169 sym, sym.location());
mcimadamore@302 2170 }
mcimadamore@302 2171 else if ((sym.flags() & (PRIVATE | PROTECTED)) != 0) {
jjg@612 2172 return diags.create(dkind, log.currentSource(),
mcimadamore@302 2173 pos, "report.access", sym,
mcimadamore@302 2174 asFlagSet(sym.flags() & (PRIVATE | PROTECTED)),
mcimadamore@302 2175 sym.location());
mcimadamore@302 2176 }
mcimadamore@302 2177 else {
jjg@612 2178 return diags.create(dkind, log.currentSource(),
mcimadamore@302 2179 pos, "not.def.public.cant.access", sym, sym.location());
duke@1 2180 }
duke@1 2181 }
duke@1 2182 }
duke@1 2183
mcimadamore@302 2184 /**
mcimadamore@302 2185 * InvalidSymbolError error class indicating that an instance member
mcimadamore@302 2186 * has erroneously been accessed from a static context.
duke@1 2187 */
mcimadamore@302 2188 class StaticError extends InvalidSymbolError {
mcimadamore@302 2189
duke@1 2190 StaticError(Symbol sym) {
duke@1 2191 super(STATICERR, sym, "static error");
duke@1 2192 }
duke@1 2193
mcimadamore@302 2194 @Override
mcimadamore@302 2195 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 2196 DiagnosticPosition pos,
mcimadamore@302 2197 Type site,
mcimadamore@302 2198 Name name,
mcimadamore@302 2199 List<Type> argtypes,
mcimadamore@302 2200 List<Type> typeargtypes) {
mcimadamore@80 2201 Symbol errSym = ((sym.kind == TYP && sym.type.tag == CLASS)
mcimadamore@80 2202 ? types.erasure(sym.type).tsym
mcimadamore@80 2203 : sym);
jjg@612 2204 return diags.create(dkind, log.currentSource(), pos,
mcimadamore@302 2205 "non-static.cant.be.ref", kindName(sym), errSym);
duke@1 2206 }
duke@1 2207 }
duke@1 2208
mcimadamore@302 2209 /**
mcimadamore@302 2210 * InvalidSymbolError error class indicating that a pair of symbols
mcimadamore@302 2211 * (either methods, constructors or operands) are ambiguous
mcimadamore@302 2212 * given an actual arguments/type argument list.
duke@1 2213 */
mcimadamore@302 2214 class AmbiguityError extends InvalidSymbolError {
mcimadamore@302 2215
mcimadamore@302 2216 /** The other maximally specific symbol */
duke@1 2217 Symbol sym2;
duke@1 2218
duke@1 2219 AmbiguityError(Symbol sym1, Symbol sym2) {
duke@1 2220 super(AMBIGUOUS, sym1, "ambiguity error");
duke@1 2221 this.sym2 = sym2;
duke@1 2222 }
duke@1 2223
mcimadamore@302 2224 @Override
mcimadamore@302 2225 JCDiagnostic getDiagnostic(JCDiagnostic.DiagnosticType dkind,
mcimadamore@302 2226 DiagnosticPosition pos,
mcimadamore@302 2227 Type site,
mcimadamore@302 2228 Name name,
mcimadamore@302 2229 List<Type> argtypes,
mcimadamore@302 2230 List<Type> typeargtypes) {
duke@1 2231 AmbiguityError pair = this;
duke@1 2232 while (true) {
mcimadamore@302 2233 if (pair.sym.kind == AMBIGUOUS)
mcimadamore@302 2234 pair = (AmbiguityError)pair.sym;
duke@1 2235 else if (pair.sym2.kind == AMBIGUOUS)
duke@1 2236 pair = (AmbiguityError)pair.sym2;
duke@1 2237 else break;
duke@1 2238 }
mcimadamore@302 2239 Name sname = pair.sym.name;
mcimadamore@302 2240 if (sname == names.init) sname = pair.sym.owner.name;
jjg@612 2241 return diags.create(dkind, log.currentSource(),
mcimadamore@302 2242 pos, "ref.ambiguous", sname,
mcimadamore@302 2243 kindName(pair.sym),
mcimadamore@302 2244 pair.sym,
mcimadamore@302 2245 pair.sym.location(site, types),
duke@1 2246 kindName(pair.sym2),
duke@1 2247 pair.sym2,
duke@1 2248 pair.sym2.location(site, types));
duke@1 2249 }
duke@1 2250 }
mcimadamore@160 2251
mcimadamore@160 2252 enum MethodResolutionPhase {
mcimadamore@160 2253 BASIC(false, false),
mcimadamore@160 2254 BOX(true, false),
mcimadamore@160 2255 VARARITY(true, true);
mcimadamore@160 2256
mcimadamore@160 2257 boolean isBoxingRequired;
mcimadamore@160 2258 boolean isVarargsRequired;
mcimadamore@160 2259
mcimadamore@160 2260 MethodResolutionPhase(boolean isBoxingRequired, boolean isVarargsRequired) {
mcimadamore@160 2261 this.isBoxingRequired = isBoxingRequired;
mcimadamore@160 2262 this.isVarargsRequired = isVarargsRequired;
mcimadamore@160 2263 }
mcimadamore@160 2264
mcimadamore@160 2265 public boolean isBoxingRequired() {
mcimadamore@160 2266 return isBoxingRequired;
mcimadamore@160 2267 }
mcimadamore@160 2268
mcimadamore@160 2269 public boolean isVarargsRequired() {
mcimadamore@160 2270 return isVarargsRequired;
mcimadamore@160 2271 }
mcimadamore@160 2272
mcimadamore@160 2273 public boolean isApplicable(boolean boxingEnabled, boolean varargsEnabled) {
mcimadamore@160 2274 return (varargsEnabled || !isVarargsRequired) &&
mcimadamore@160 2275 (boxingEnabled || !isBoxingRequired);
mcimadamore@160 2276 }
mcimadamore@160 2277 }
mcimadamore@160 2278
mcimadamore@160 2279 private Map<MethodResolutionPhase, Symbol> methodResolutionCache =
mcimadamore@160 2280 new HashMap<MethodResolutionPhase, Symbol>(MethodResolutionPhase.values().length);
mcimadamore@160 2281
mcimadamore@160 2282 final List<MethodResolutionPhase> methodResolutionSteps = List.of(BASIC, BOX, VARARITY);
mcimadamore@160 2283
mcimadamore@689 2284 private MethodResolutionPhase currentStep = null;
mcimadamore@689 2285
mcimadamore@160 2286 private MethodResolutionPhase firstErroneousResolutionPhase() {
mcimadamore@160 2287 MethodResolutionPhase bestSoFar = BASIC;
mcimadamore@160 2288 Symbol sym = methodNotFound;
mcimadamore@160 2289 List<MethodResolutionPhase> steps = methodResolutionSteps;
mcimadamore@160 2290 while (steps.nonEmpty() &&
mcimadamore@160 2291 steps.head.isApplicable(boxingEnabled, varargsEnabled) &&
mcimadamore@160 2292 sym.kind >= WRONG_MTHS) {
mcimadamore@160 2293 sym = methodResolutionCache.get(steps.head);
mcimadamore@160 2294 bestSoFar = steps.head;
mcimadamore@160 2295 steps = steps.tail;
mcimadamore@160 2296 }
mcimadamore@160 2297 return bestSoFar;
mcimadamore@160 2298 }
duke@1 2299 }

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