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

Fri, 31 Aug 2012 10:37:46 +0100

author
jfranck
date
Fri, 31 Aug 2012 10:37:46 +0100
changeset 1313
873ddd9f4900
parent 1296
cddc2c894cc6
child 1326
30c36e23f154
permissions
-rw-r--r--

7151010: Add compiler support for repeating annotations
Reviewed-by: jjg, mcimadamore

duke@1 1 /*
mcimadamore@1198 2 * Copyright (c) 1999, 2012, Oracle and/or its affiliates. All rights reserved.
duke@1 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@1 4 *
duke@1 5 * This code is free software; you can redistribute it and/or modify it
duke@1 6 * under the terms of the GNU General Public License version 2 only, as
ohair@554 7 * published by the Free Software Foundation. Oracle designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
ohair@554 9 * by Oracle in the LICENSE file that accompanied this code.
duke@1 10 *
duke@1 11 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@1 12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@1 13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@1 14 * version 2 for more details (a copy is included in the LICENSE file that
duke@1 15 * accompanied this code).
duke@1 16 *
duke@1 17 * You should have received a copy of the GNU General Public License version
duke@1 18 * 2 along with this work; if not, write to the Free Software Foundation,
duke@1 19 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@1 20 *
ohair@554 21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
ohair@554 22 * or visit www.oracle.com if you need additional information or have any
ohair@554 23 * questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.comp;
duke@1 27
duke@1 28 import java.util.*;
duke@1 29 import java.util.Set;
duke@1 30
duke@1 31 import com.sun.tools.javac.code.*;
duke@1 32 import com.sun.tools.javac.jvm.*;
duke@1 33 import com.sun.tools.javac.tree.*;
duke@1 34 import com.sun.tools.javac.util.*;
duke@1 35 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
duke@1 36 import com.sun.tools.javac.util.List;
duke@1 37
duke@1 38 import com.sun.tools.javac.tree.JCTree.*;
duke@1 39 import com.sun.tools.javac.code.Lint;
duke@1 40 import com.sun.tools.javac.code.Lint.LintCategory;
duke@1 41 import com.sun.tools.javac.code.Type.*;
duke@1 42 import com.sun.tools.javac.code.Symbol.*;
duke@1 43
duke@1 44 import static com.sun.tools.javac.code.Flags.*;
jjg@1127 45 import static com.sun.tools.javac.code.Flags.ANNOTATION;
jjg@1127 46 import static com.sun.tools.javac.code.Flags.SYNCHRONIZED;
duke@1 47 import static com.sun.tools.javac.code.Kinds.*;
duke@1 48 import static com.sun.tools.javac.code.TypeTags.*;
jjg@1127 49 import static com.sun.tools.javac.code.TypeTags.WILDCARD;
duke@1 50
jjg@1127 51 import static com.sun.tools.javac.tree.JCTree.Tag.*;
jjg@700 52
duke@1 53 /** Type checking helper class for the attribution phase.
duke@1 54 *
jjg@581 55 * <p><b>This is NOT part of any supported API.
jjg@581 56 * If you write code that depends on this, you do so at your own risk.
duke@1 57 * This code and its internal interfaces are subject to change or
duke@1 58 * deletion without notice.</b>
duke@1 59 */
duke@1 60 public class Check {
duke@1 61 protected static final Context.Key<Check> checkKey =
duke@1 62 new Context.Key<Check>();
duke@1 63
jjg@113 64 private final Names names;
duke@1 65 private final Log log;
mcimadamore@1219 66 private final Resolve rs;
duke@1 67 private final Symtab syms;
mcimadamore@690 68 private final Enter enter;
duke@1 69 private final Infer infer;
duke@1 70 private final Types types;
mcimadamore@89 71 private final JCDiagnostic.Factory diags;
mcimadamore@359 72 private boolean warnOnSyntheticConflicts;
jjg@576 73 private boolean suppressAbortOnBadClassFile;
mcimadamore@852 74 private boolean enableSunApiLintControl;
duke@1 75 private final TreeInfo treeinfo;
duke@1 76
duke@1 77 // The set of lint options currently in effect. It is initialized
duke@1 78 // from the context, and then is set/reset as needed by Attr as it
duke@1 79 // visits all the various parts of the trees during attribution.
duke@1 80 private Lint lint;
duke@1 81
mcimadamore@795 82 // The method being analyzed in Attr - it is set/reset as needed by
mcimadamore@795 83 // Attr as it visits new method declarations.
mcimadamore@795 84 private MethodSymbol method;
mcimadamore@795 85
duke@1 86 public static Check instance(Context context) {
duke@1 87 Check instance = context.get(checkKey);
duke@1 88 if (instance == null)
duke@1 89 instance = new Check(context);
duke@1 90 return instance;
duke@1 91 }
duke@1 92
duke@1 93 protected Check(Context context) {
duke@1 94 context.put(checkKey, this);
duke@1 95
jjg@113 96 names = Names.instance(context);
duke@1 97 log = Log.instance(context);
mcimadamore@1219 98 rs = Resolve.instance(context);
duke@1 99 syms = Symtab.instance(context);
mcimadamore@690 100 enter = Enter.instance(context);
duke@1 101 infer = Infer.instance(context);
duke@1 102 this.types = Types.instance(context);
mcimadamore@89 103 diags = JCDiagnostic.Factory.instance(context);
duke@1 104 Options options = Options.instance(context);
duke@1 105 lint = Lint.instance(context);
duke@1 106 treeinfo = TreeInfo.instance(context);
duke@1 107
duke@1 108 Source source = Source.instance(context);
duke@1 109 allowGenerics = source.allowGenerics();
mcimadamore@1219 110 allowVarargs = source.allowVarargs();
duke@1 111 allowAnnotations = source.allowAnnotations();
jjg@398 112 allowCovariantReturns = source.allowCovariantReturns();
mcimadamore@795 113 allowSimplifiedVarargs = source.allowSimplifiedVarargs();
jjg@1157 114 complexInference = options.isSet("complexinference");
jjg@700 115 warnOnSyntheticConflicts = options.isSet("warnOnSyntheticConflicts");
jjg@700 116 suppressAbortOnBadClassFile = options.isSet("suppressAbortOnBadClassFile");
mcimadamore@852 117 enableSunApiLintControl = options.isSet("enableSunApiLintControl");
duke@1 118
jjg@398 119 Target target = Target.instance(context);
jjg@398 120 syntheticNameChar = target.syntheticNameChar();
jjg@398 121
duke@1 122 boolean verboseDeprecated = lint.isEnabled(LintCategory.DEPRECATION);
duke@1 123 boolean verboseUnchecked = lint.isEnabled(LintCategory.UNCHECKED);
jjg@377 124 boolean verboseSunApi = lint.isEnabled(LintCategory.SUNAPI);
jjg@60 125 boolean enforceMandatoryWarnings = source.enforceMandatoryWarnings();
duke@1 126
jjg@60 127 deprecationHandler = new MandatoryWarningHandler(log, verboseDeprecated,
jjg@612 128 enforceMandatoryWarnings, "deprecated", LintCategory.DEPRECATION);
jjg@60 129 uncheckedHandler = new MandatoryWarningHandler(log, verboseUnchecked,
jjg@612 130 enforceMandatoryWarnings, "unchecked", LintCategory.UNCHECKED);
jjg@377 131 sunApiHandler = new MandatoryWarningHandler(log, verboseSunApi,
jjg@612 132 enforceMandatoryWarnings, "sunapi", null);
mcimadamore@852 133
mcimadamore@852 134 deferredLintHandler = DeferredLintHandler.immediateHandler;
duke@1 135 }
duke@1 136
duke@1 137 /** Switch: generics enabled?
duke@1 138 */
duke@1 139 boolean allowGenerics;
duke@1 140
mcimadamore@1219 141 /** Switch: varargs enabled?
mcimadamore@1219 142 */
mcimadamore@1219 143 boolean allowVarargs;
mcimadamore@1219 144
duke@1 145 /** Switch: annotations enabled?
duke@1 146 */
duke@1 147 boolean allowAnnotations;
duke@1 148
jjg@398 149 /** Switch: covariant returns enabled?
jjg@398 150 */
jjg@398 151 boolean allowCovariantReturns;
jjg@398 152
mcimadamore@795 153 /** Switch: simplified varargs enabled?
mcimadamore@795 154 */
mcimadamore@795 155 boolean allowSimplifiedVarargs;
mcimadamore@795 156
duke@1 157 /** Switch: -complexinference option set?
duke@1 158 */
duke@1 159 boolean complexInference;
duke@1 160
jjg@398 161 /** Character for synthetic names
jjg@398 162 */
jjg@398 163 char syntheticNameChar;
jjg@398 164
duke@1 165 /** A table mapping flat names of all compiled classes in this run to their
duke@1 166 * symbols; maintained from outside.
duke@1 167 */
duke@1 168 public Map<Name,ClassSymbol> compiled = new HashMap<Name, ClassSymbol>();
duke@1 169
duke@1 170 /** A handler for messages about deprecated usage.
duke@1 171 */
duke@1 172 private MandatoryWarningHandler deprecationHandler;
duke@1 173
duke@1 174 /** A handler for messages about unchecked or unsafe usage.
duke@1 175 */
duke@1 176 private MandatoryWarningHandler uncheckedHandler;
duke@1 177
jjg@582 178 /** A handler for messages about using proprietary API.
jjg@377 179 */
jjg@377 180 private MandatoryWarningHandler sunApiHandler;
duke@1 181
mcimadamore@852 182 /** A handler for deferred lint warnings.
mcimadamore@852 183 */
mcimadamore@852 184 private DeferredLintHandler deferredLintHandler;
mcimadamore@852 185
duke@1 186 /* *************************************************************************
duke@1 187 * Errors and Warnings
duke@1 188 **************************************************************************/
duke@1 189
duke@1 190 Lint setLint(Lint newLint) {
duke@1 191 Lint prev = lint;
duke@1 192 lint = newLint;
duke@1 193 return prev;
duke@1 194 }
duke@1 195
mcimadamore@852 196 DeferredLintHandler setDeferredLintHandler(DeferredLintHandler newDeferredLintHandler) {
mcimadamore@852 197 DeferredLintHandler prev = deferredLintHandler;
mcimadamore@852 198 deferredLintHandler = newDeferredLintHandler;
mcimadamore@852 199 return prev;
mcimadamore@852 200 }
mcimadamore@852 201
mcimadamore@795 202 MethodSymbol setMethod(MethodSymbol newMethod) {
mcimadamore@795 203 MethodSymbol prev = method;
mcimadamore@795 204 method = newMethod;
mcimadamore@795 205 return prev;
mcimadamore@795 206 }
mcimadamore@795 207
duke@1 208 /** Warn about deprecated symbol.
duke@1 209 * @param pos Position to be used for error reporting.
duke@1 210 * @param sym The deprecated symbol.
duke@1 211 */
duke@1 212 void warnDeprecated(DiagnosticPosition pos, Symbol sym) {
duke@1 213 if (!lint.isSuppressed(LintCategory.DEPRECATION))
duke@1 214 deprecationHandler.report(pos, "has.been.deprecated", sym, sym.location());
duke@1 215 }
duke@1 216
duke@1 217 /** Warn about unchecked operation.
duke@1 218 * @param pos Position to be used for error reporting.
duke@1 219 * @param msg A string describing the problem.
duke@1 220 */
duke@1 221 public void warnUnchecked(DiagnosticPosition pos, String msg, Object... args) {
duke@1 222 if (!lint.isSuppressed(LintCategory.UNCHECKED))
duke@1 223 uncheckedHandler.report(pos, msg, args);
duke@1 224 }
duke@1 225
mcimadamore@580 226 /** Warn about unsafe vararg method decl.
mcimadamore@580 227 * @param pos Position to be used for error reporting.
mcimadamore@580 228 * @param sym The deprecated symbol.
mcimadamore@580 229 */
mcimadamore@795 230 void warnUnsafeVararg(DiagnosticPosition pos, String key, Object... args) {
mcimadamore@795 231 if (lint.isEnabled(LintCategory.VARARGS) && allowSimplifiedVarargs)
mcimadamore@795 232 log.warning(LintCategory.VARARGS, pos, key, args);
mcimadamore@580 233 }
mcimadamore@580 234
jjg@582 235 /** Warn about using proprietary API.
jjg@377 236 * @param pos Position to be used for error reporting.
jjg@377 237 * @param msg A string describing the problem.
jjg@377 238 */
jjg@377 239 public void warnSunApi(DiagnosticPosition pos, String msg, Object... args) {
jjg@377 240 if (!lint.isSuppressed(LintCategory.SUNAPI))
jjg@377 241 sunApiHandler.report(pos, msg, args);
jjg@377 242 }
jjg@377 243
jjg@505 244 public void warnStatic(DiagnosticPosition pos, String msg, Object... args) {
jjg@505 245 if (lint.isEnabled(LintCategory.STATIC))
jjg@612 246 log.warning(LintCategory.STATIC, pos, msg, args);
jjg@505 247 }
jjg@505 248
duke@1 249 /**
duke@1 250 * Report any deferred diagnostics.
duke@1 251 */
duke@1 252 public void reportDeferredDiagnostics() {
duke@1 253 deprecationHandler.reportDeferredDiagnostic();
duke@1 254 uncheckedHandler.reportDeferredDiagnostic();
jjg@377 255 sunApiHandler.reportDeferredDiagnostic();
duke@1 256 }
duke@1 257
duke@1 258
duke@1 259 /** Report a failure to complete a class.
duke@1 260 * @param pos Position to be used for error reporting.
duke@1 261 * @param ex The failure to report.
duke@1 262 */
duke@1 263 public Type completionError(DiagnosticPosition pos, CompletionFailure ex) {
jjg@12 264 log.error(pos, "cant.access", ex.sym, ex.getDetailValue());
jjg@576 265 if (ex instanceof ClassReader.BadClassFile
jjg@576 266 && !suppressAbortOnBadClassFile) throw new Abort();
duke@1 267 else return syms.errType;
duke@1 268 }
duke@1 269
duke@1 270 /** Report an error that wrong type tag was found.
duke@1 271 * @param pos Position to be used for error reporting.
duke@1 272 * @param required An internationalized string describing the type tag
duke@1 273 * required.
duke@1 274 * @param found The type that was found.
duke@1 275 */
duke@1 276 Type typeTagError(DiagnosticPosition pos, Object required, Object found) {
jrose@267 277 // this error used to be raised by the parser,
jrose@267 278 // but has been delayed to this point:
jrose@267 279 if (found instanceof Type && ((Type)found).tag == VOID) {
jrose@267 280 log.error(pos, "illegal.start.of.type");
jrose@267 281 return syms.errType;
jrose@267 282 }
duke@1 283 log.error(pos, "type.found.req", found, required);
jjg@110 284 return types.createErrorType(found instanceof Type ? (Type)found : syms.errType);
duke@1 285 }
duke@1 286
duke@1 287 /** Report an error that symbol cannot be referenced before super
duke@1 288 * has been called.
duke@1 289 * @param pos Position to be used for error reporting.
duke@1 290 * @param sym The referenced symbol.
duke@1 291 */
duke@1 292 void earlyRefError(DiagnosticPosition pos, Symbol sym) {
duke@1 293 log.error(pos, "cant.ref.before.ctor.called", sym);
duke@1 294 }
duke@1 295
duke@1 296 /** Report duplicate declaration error.
duke@1 297 */
duke@1 298 void duplicateError(DiagnosticPosition pos, Symbol sym) {
duke@1 299 if (!sym.type.isErroneous()) {
mcimadamore@1085 300 Symbol location = sym.location();
mcimadamore@1085 301 if (location.kind == MTH &&
mcimadamore@1085 302 ((MethodSymbol)location).isStaticOrInstanceInit()) {
mcimadamore@1085 303 log.error(pos, "already.defined.in.clinit", kindName(sym), sym,
mcimadamore@1085 304 kindName(sym.location()), kindName(sym.location().enclClass()),
mcimadamore@1085 305 sym.location().enclClass());
mcimadamore@1085 306 } else {
mcimadamore@1085 307 log.error(pos, "already.defined", kindName(sym), sym,
mcimadamore@1085 308 kindName(sym.location()), sym.location());
mcimadamore@1085 309 }
duke@1 310 }
duke@1 311 }
duke@1 312
duke@1 313 /** Report array/varargs duplicate declaration
duke@1 314 */
duke@1 315 void varargsDuplicateError(DiagnosticPosition pos, Symbol sym1, Symbol sym2) {
duke@1 316 if (!sym1.type.isErroneous() && !sym2.type.isErroneous()) {
duke@1 317 log.error(pos, "array.and.varargs", sym1, sym2, sym2.location());
duke@1 318 }
duke@1 319 }
duke@1 320
duke@1 321 /* ************************************************************************
duke@1 322 * duplicate declaration checking
duke@1 323 *************************************************************************/
duke@1 324
duke@1 325 /** Check that variable does not hide variable with same name in
duke@1 326 * immediately enclosing local scope.
duke@1 327 * @param pos Position for error reporting.
duke@1 328 * @param v The symbol.
duke@1 329 * @param s The scope.
duke@1 330 */
duke@1 331 void checkTransparentVar(DiagnosticPosition pos, VarSymbol v, Scope s) {
duke@1 332 if (s.next != null) {
duke@1 333 for (Scope.Entry e = s.next.lookup(v.name);
duke@1 334 e.scope != null && e.sym.owner == v.owner;
duke@1 335 e = e.next()) {
duke@1 336 if (e.sym.kind == VAR &&
duke@1 337 (e.sym.owner.kind & (VAR | MTH)) != 0 &&
duke@1 338 v.name != names.error) {
duke@1 339 duplicateError(pos, e.sym);
duke@1 340 return;
duke@1 341 }
duke@1 342 }
duke@1 343 }
duke@1 344 }
duke@1 345
duke@1 346 /** Check that a class or interface does not hide a class or
duke@1 347 * interface with same name in immediately enclosing local scope.
duke@1 348 * @param pos Position for error reporting.
duke@1 349 * @param c The symbol.
duke@1 350 * @param s The scope.
duke@1 351 */
duke@1 352 void checkTransparentClass(DiagnosticPosition pos, ClassSymbol c, Scope s) {
duke@1 353 if (s.next != null) {
duke@1 354 for (Scope.Entry e = s.next.lookup(c.name);
duke@1 355 e.scope != null && e.sym.owner == c.owner;
duke@1 356 e = e.next()) {
mcimadamore@639 357 if (e.sym.kind == TYP && e.sym.type.tag != TYPEVAR &&
duke@1 358 (e.sym.owner.kind & (VAR | MTH)) != 0 &&
duke@1 359 c.name != names.error) {
duke@1 360 duplicateError(pos, e.sym);
duke@1 361 return;
duke@1 362 }
duke@1 363 }
duke@1 364 }
duke@1 365 }
duke@1 366
duke@1 367 /** Check that class does not have the same name as one of
duke@1 368 * its enclosing classes, or as a class defined in its enclosing scope.
duke@1 369 * return true if class is unique in its enclosing scope.
duke@1 370 * @param pos Position for error reporting.
duke@1 371 * @param name The class name.
duke@1 372 * @param s The enclosing scope.
duke@1 373 */
duke@1 374 boolean checkUniqueClassName(DiagnosticPosition pos, Name name, Scope s) {
duke@1 375 for (Scope.Entry e = s.lookup(name); e.scope == s; e = e.next()) {
duke@1 376 if (e.sym.kind == TYP && e.sym.name != names.error) {
duke@1 377 duplicateError(pos, e.sym);
duke@1 378 return false;
duke@1 379 }
duke@1 380 }
duke@1 381 for (Symbol sym = s.owner; sym != null; sym = sym.owner) {
duke@1 382 if (sym.kind == TYP && sym.name == name && sym.name != names.error) {
duke@1 383 duplicateError(pos, sym);
duke@1 384 return true;
duke@1 385 }
duke@1 386 }
duke@1 387 return true;
duke@1 388 }
duke@1 389
duke@1 390 /* *************************************************************************
duke@1 391 * Class name generation
duke@1 392 **************************************************************************/
duke@1 393
duke@1 394 /** Return name of local class.
duke@1 395 * This is of the form <enclClass> $ n <classname>
duke@1 396 * where
duke@1 397 * enclClass is the flat name of the enclosing class,
duke@1 398 * classname is the simple name of the local class
duke@1 399 */
duke@1 400 Name localClassName(ClassSymbol c) {
duke@1 401 for (int i=1; ; i++) {
duke@1 402 Name flatname = names.
duke@1 403 fromString("" + c.owner.enclClass().flatname +
jjg@398 404 syntheticNameChar + i +
duke@1 405 c.name);
duke@1 406 if (compiled.get(flatname) == null) return flatname;
duke@1 407 }
duke@1 408 }
duke@1 409
duke@1 410 /* *************************************************************************
duke@1 411 * Type Checking
duke@1 412 **************************************************************************/
duke@1 413
mcimadamore@1238 414 /**
mcimadamore@1238 415 * A check context is an object that can be used to perform compatibility
mcimadamore@1238 416 * checks - depending on the check context, meaning of 'compatibility' might
mcimadamore@1238 417 * vary significantly.
mcimadamore@1238 418 */
mcimadamore@1238 419 interface CheckContext {
mcimadamore@1238 420 /**
mcimadamore@1238 421 * Is type 'found' compatible with type 'req' in given context
mcimadamore@1238 422 */
mcimadamore@1238 423 boolean compatible(Type found, Type req, Warner warn);
mcimadamore@1238 424 /**
mcimadamore@1238 425 * Report a check error
mcimadamore@1238 426 */
mcimadamore@1296 427 void report(DiagnosticPosition pos, JCDiagnostic details);
mcimadamore@1238 428 /**
mcimadamore@1238 429 * Obtain a warner for this check context
mcimadamore@1238 430 */
mcimadamore@1238 431 public Warner checkWarner(DiagnosticPosition pos, Type found, Type req);
mcimadamore@1238 432 }
mcimadamore@1238 433
mcimadamore@1238 434 /**
mcimadamore@1238 435 * This class represent a check context that is nested within another check
mcimadamore@1238 436 * context - useful to check sub-expressions. The default behavior simply
mcimadamore@1238 437 * redirects all method calls to the enclosing check context leveraging
mcimadamore@1238 438 * the forwarding pattern.
mcimadamore@1238 439 */
mcimadamore@1238 440 static class NestedCheckContext implements CheckContext {
mcimadamore@1238 441 CheckContext enclosingContext;
mcimadamore@1238 442
mcimadamore@1238 443 NestedCheckContext(CheckContext enclosingContext) {
mcimadamore@1238 444 this.enclosingContext = enclosingContext;
mcimadamore@1238 445 }
mcimadamore@1238 446
mcimadamore@1238 447 public boolean compatible(Type found, Type req, Warner warn) {
mcimadamore@1238 448 return enclosingContext.compatible(found, req, warn);
mcimadamore@1238 449 }
mcimadamore@1238 450
mcimadamore@1296 451 public void report(DiagnosticPosition pos, JCDiagnostic details) {
mcimadamore@1296 452 enclosingContext.report(pos, details);
mcimadamore@1238 453 }
mcimadamore@1238 454
mcimadamore@1238 455 public Warner checkWarner(DiagnosticPosition pos, Type found, Type req) {
mcimadamore@1238 456 return enclosingContext.checkWarner(pos, found, req);
mcimadamore@1238 457 }
mcimadamore@1238 458 }
mcimadamore@1238 459
mcimadamore@1238 460 /**
mcimadamore@1238 461 * Check context to be used when evaluating assignment/return statements
mcimadamore@1238 462 */
mcimadamore@1238 463 CheckContext basicHandler = new CheckContext() {
mcimadamore@1296 464 public void report(DiagnosticPosition pos, JCDiagnostic details) {
mcimadamore@1296 465 log.error(pos, "prob.found.req", details);
mcimadamore@1238 466 }
mcimadamore@1238 467 public boolean compatible(Type found, Type req, Warner warn) {
mcimadamore@1238 468 return types.isAssignable(found, req, warn);
mcimadamore@1238 469 }
mcimadamore@1238 470
mcimadamore@1238 471 public Warner checkWarner(DiagnosticPosition pos, Type found, Type req) {
mcimadamore@1238 472 return convertWarner(pos, found, req);
mcimadamore@1238 473 }
mcimadamore@1238 474 };
mcimadamore@1238 475
duke@1 476 /** Check that a given type is assignable to a given proto-type.
duke@1 477 * If it is, return the type, otherwise return errType.
duke@1 478 * @param pos Position to be used for error reporting.
duke@1 479 * @param found The type that was found.
duke@1 480 * @param req The type that was required.
duke@1 481 */
duke@1 482 Type checkType(DiagnosticPosition pos, Type found, Type req) {
mcimadamore@1238 483 return checkType(pos, found, req, basicHandler);
darcy@609 484 }
darcy@609 485
mcimadamore@1238 486 Type checkType(final DiagnosticPosition pos, Type found, Type req, CheckContext checkContext) {
duke@1 487 if (req.tag == ERROR)
duke@1 488 return req;
duke@1 489 if (req.tag == NONE)
duke@1 490 return found;
mcimadamore@1238 491 if (checkContext.compatible(found, req, checkContext.checkWarner(pos, found, req))) {
duke@1 492 return found;
mcimadamore@1238 493 } else {
mcimadamore@1238 494 if (found.tag <= DOUBLE && req.tag <= DOUBLE) {
mcimadamore@1296 495 checkContext.report(pos, diags.fragment("possible.loss.of.precision", found, req));
mcimadamore@1238 496 return types.createErrorType(found);
mcimadamore@1238 497 }
mcimadamore@1296 498 checkContext.report(pos, diags.fragment("inconvertible.types", found, req));
jjg@110 499 return types.createErrorType(found);
duke@1 500 }
duke@1 501 }
duke@1 502
duke@1 503 /** Check that a given type can be cast to a given target type.
duke@1 504 * Return the result of the cast.
duke@1 505 * @param pos Position to be used for error reporting.
duke@1 506 * @param found The type that is being cast.
duke@1 507 * @param req The target type of the cast.
duke@1 508 */
duke@1 509 Type checkCastable(DiagnosticPosition pos, Type found, Type req) {
mcimadamore@1238 510 return checkCastable(pos, found, req, basicHandler);
mcimadamore@1238 511 }
mcimadamore@1238 512 Type checkCastable(DiagnosticPosition pos, Type found, Type req, CheckContext checkContext) {
mcimadamore@1268 513 if (types.isCastable(found, req, castWarner(pos, found, req))) {
duke@1 514 return req;
duke@1 515 } else {
mcimadamore@1296 516 checkContext.report(pos, diags.fragment("inconvertible.types", found, req));
mcimadamore@1238 517 return types.createErrorType(found);
duke@1 518 }
duke@1 519 }
mcimadamore@1237 520
mcimadamore@1237 521 /** Check for redundant casts (i.e. where source type is a subtype of target type)
mcimadamore@1237 522 * The problem should only be reported for non-292 cast
mcimadamore@1237 523 */
mcimadamore@1237 524 public void checkRedundantCast(Env<AttrContext> env, JCTypeCast tree) {
mcimadamore@1237 525 if (!tree.type.isErroneous() &&
mcimadamore@1237 526 (env.info.lint == null || env.info.lint.isEnabled(Lint.LintCategory.CAST))
mcimadamore@1237 527 && types.isSameType(tree.expr.type, tree.clazz.type)
mcimadamore@1237 528 && !is292targetTypeCast(tree)) {
mcimadamore@1237 529 log.warning(Lint.LintCategory.CAST,
mcimadamore@1237 530 tree.pos(), "redundant.cast", tree.expr.type);
mcimadamore@1237 531 }
mcimadamore@1237 532 }
mcimadamore@1237 533 //where
mcimadamore@1237 534 private boolean is292targetTypeCast(JCTypeCast tree) {
mcimadamore@1237 535 boolean is292targetTypeCast = false;
mcimadamore@1237 536 JCExpression expr = TreeInfo.skipParens(tree.expr);
mcimadamore@1237 537 if (expr.hasTag(APPLY)) {
mcimadamore@1237 538 JCMethodInvocation apply = (JCMethodInvocation)expr;
mcimadamore@1237 539 Symbol sym = TreeInfo.symbol(apply.meth);
mcimadamore@1237 540 is292targetTypeCast = sym != null &&
mcimadamore@1237 541 sym.kind == MTH &&
mcimadamore@1239 542 (sym.flags() & HYPOTHETICAL) != 0;
mcimadamore@1237 543 }
mcimadamore@1237 544 return is292targetTypeCast;
mcimadamore@1237 545 }
mcimadamore@1237 546
mcimadamore@1237 547
mcimadamore@1237 548
duke@1 549 //where
duke@1 550 /** Is type a type variable, or a (possibly multi-dimensional) array of
duke@1 551 * type variables?
duke@1 552 */
duke@1 553 boolean isTypeVar(Type t) {
duke@1 554 return t.tag == TYPEVAR || t.tag == ARRAY && isTypeVar(types.elemtype(t));
duke@1 555 }
duke@1 556
duke@1 557 /** Check that a type is within some bounds.
duke@1 558 *
duke@1 559 * Used in TypeApply to verify that, e.g., X in V<X> is a valid
duke@1 560 * type argument.
duke@1 561 * @param pos Position to be used for error reporting.
duke@1 562 * @param a The type that should be bounded by bs.
duke@1 563 * @param bs The bound.
duke@1 564 */
mcimadamore@1216 565 private boolean checkExtends(Type a, Type bound) {
mcimadamore@154 566 if (a.isUnbound()) {
mcimadamore@821 567 return true;
mcimadamore@154 568 } else if (a.tag != WILDCARD) {
mcimadamore@154 569 a = types.upperBound(a);
mcimadamore@1216 570 return types.isSubtype(a, bound);
mcimadamore@154 571 } else if (a.isExtendsBound()) {
mcimadamore@1216 572 return types.isCastable(bound, types.upperBound(a), Warner.noWarnings);
mcimadamore@154 573 } else if (a.isSuperBound()) {
mcimadamore@1216 574 return !types.notSoftSubtype(types.lowerBound(a), bound);
mcimadamore@154 575 }
mcimadamore@821 576 return true;
mcimadamore@154 577 }
duke@1 578
duke@1 579 /** Check that type is different from 'void'.
duke@1 580 * @param pos Position to be used for error reporting.
duke@1 581 * @param t The type to be checked.
duke@1 582 */
duke@1 583 Type checkNonVoid(DiagnosticPosition pos, Type t) {
duke@1 584 if (t.tag == VOID) {
duke@1 585 log.error(pos, "void.not.allowed.here");
jjg@110 586 return types.createErrorType(t);
duke@1 587 } else {
duke@1 588 return t;
duke@1 589 }
duke@1 590 }
duke@1 591
duke@1 592 /** Check that type is a class or interface type.
duke@1 593 * @param pos Position to be used for error reporting.
duke@1 594 * @param t The type to be checked.
duke@1 595 */
duke@1 596 Type checkClassType(DiagnosticPosition pos, Type t) {
duke@1 597 if (t.tag != CLASS && t.tag != ERROR)
duke@1 598 return typeTagError(pos,
mcimadamore@89 599 diags.fragment("type.req.class"),
duke@1 600 (t.tag == TYPEVAR)
mcimadamore@89 601 ? diags.fragment("type.parameter", t)
duke@1 602 : t);
duke@1 603 else
duke@1 604 return t;
duke@1 605 }
duke@1 606
duke@1 607 /** Check that type is a class or interface type.
duke@1 608 * @param pos Position to be used for error reporting.
duke@1 609 * @param t The type to be checked.
duke@1 610 * @param noBounds True if type bounds are illegal here.
duke@1 611 */
duke@1 612 Type checkClassType(DiagnosticPosition pos, Type t, boolean noBounds) {
duke@1 613 t = checkClassType(pos, t);
duke@1 614 if (noBounds && t.isParameterized()) {
duke@1 615 List<Type> args = t.getTypeArguments();
duke@1 616 while (args.nonEmpty()) {
duke@1 617 if (args.head.tag == WILDCARD)
duke@1 618 return typeTagError(pos,
jjg@598 619 diags.fragment("type.req.exact"),
duke@1 620 args.head);
duke@1 621 args = args.tail;
duke@1 622 }
duke@1 623 }
duke@1 624 return t;
duke@1 625 }
duke@1 626
duke@1 627 /** Check that type is a reifiable class, interface or array type.
duke@1 628 * @param pos Position to be used for error reporting.
duke@1 629 * @param t The type to be checked.
duke@1 630 */
duke@1 631 Type checkReifiableReferenceType(DiagnosticPosition pos, Type t) {
duke@1 632 if (t.tag != CLASS && t.tag != ARRAY && t.tag != ERROR) {
duke@1 633 return typeTagError(pos,
mcimadamore@89 634 diags.fragment("type.req.class.array"),
duke@1 635 t);
duke@1 636 } else if (!types.isReifiable(t)) {
duke@1 637 log.error(pos, "illegal.generic.type.for.instof");
jjg@110 638 return types.createErrorType(t);
duke@1 639 } else {
duke@1 640 return t;
duke@1 641 }
duke@1 642 }
duke@1 643
duke@1 644 /** Check that type is a reference type, i.e. a class, interface or array type
duke@1 645 * or a type variable.
duke@1 646 * @param pos Position to be used for error reporting.
duke@1 647 * @param t The type to be checked.
duke@1 648 */
duke@1 649 Type checkRefType(DiagnosticPosition pos, Type t) {
duke@1 650 switch (t.tag) {
duke@1 651 case CLASS:
duke@1 652 case ARRAY:
duke@1 653 case TYPEVAR:
duke@1 654 case WILDCARD:
duke@1 655 case ERROR:
duke@1 656 return t;
duke@1 657 default:
duke@1 658 return typeTagError(pos,
mcimadamore@89 659 diags.fragment("type.req.ref"),
duke@1 660 t);
duke@1 661 }
duke@1 662 }
duke@1 663
jrose@267 664 /** Check that each type is a reference type, i.e. a class, interface or array type
jrose@267 665 * or a type variable.
jrose@267 666 * @param trees Original trees, used for error reporting.
jrose@267 667 * @param types The types to be checked.
jrose@267 668 */
jrose@267 669 List<Type> checkRefTypes(List<JCExpression> trees, List<Type> types) {
jrose@267 670 List<JCExpression> tl = trees;
jrose@267 671 for (List<Type> l = types; l.nonEmpty(); l = l.tail) {
jrose@267 672 l.head = checkRefType(tl.head.pos(), l.head);
jrose@267 673 tl = tl.tail;
jrose@267 674 }
jrose@267 675 return types;
jrose@267 676 }
jrose@267 677
duke@1 678 /** Check that type is a null or reference type.
duke@1 679 * @param pos Position to be used for error reporting.
duke@1 680 * @param t The type to be checked.
duke@1 681 */
duke@1 682 Type checkNullOrRefType(DiagnosticPosition pos, Type t) {
duke@1 683 switch (t.tag) {
duke@1 684 case CLASS:
duke@1 685 case ARRAY:
duke@1 686 case TYPEVAR:
duke@1 687 case WILDCARD:
duke@1 688 case BOT:
duke@1 689 case ERROR:
duke@1 690 return t;
duke@1 691 default:
duke@1 692 return typeTagError(pos,
mcimadamore@89 693 diags.fragment("type.req.ref"),
duke@1 694 t);
duke@1 695 }
duke@1 696 }
duke@1 697
duke@1 698 /** Check that flag set does not contain elements of two conflicting sets. s
duke@1 699 * Return true if it doesn't.
duke@1 700 * @param pos Position to be used for error reporting.
duke@1 701 * @param flags The set of flags to be checked.
duke@1 702 * @param set1 Conflicting flags set #1.
duke@1 703 * @param set2 Conflicting flags set #2.
duke@1 704 */
duke@1 705 boolean checkDisjoint(DiagnosticPosition pos, long flags, long set1, long set2) {
duke@1 706 if ((flags & set1) != 0 && (flags & set2) != 0) {
duke@1 707 log.error(pos,
duke@1 708 "illegal.combination.of.modifiers",
mcimadamore@80 709 asFlagSet(TreeInfo.firstFlag(flags & set1)),
mcimadamore@80 710 asFlagSet(TreeInfo.firstFlag(flags & set2)));
duke@1 711 return false;
duke@1 712 } else
duke@1 713 return true;
duke@1 714 }
duke@1 715
mcimadamore@914 716 /** Check that usage of diamond operator is correct (i.e. diamond should not
mcimadamore@914 717 * be used with non-generic classes or in anonymous class creation expressions)
mcimadamore@537 718 */
mcimadamore@914 719 Type checkDiamond(JCNewClass tree, Type t) {
mcimadamore@914 720 if (!TreeInfo.isDiamond(tree) ||
mcimadamore@914 721 t.isErroneous()) {
mcimadamore@914 722 return checkClassType(tree.clazz.pos(), t, true);
mcimadamore@914 723 } else if (tree.def != null) {
mcimadamore@914 724 log.error(tree.clazz.pos(),
mcimadamore@914 725 "cant.apply.diamond.1",
mcimadamore@914 726 t, diags.fragment("diamond.and.anon.class", t));
mcimadamore@914 727 return types.createErrorType(t);
mcimadamore@948 728 } else if (t.tsym.type.getTypeArguments().isEmpty()) {
mcimadamore@914 729 log.error(tree.clazz.pos(),
mcimadamore@914 730 "cant.apply.diamond.1",
mcimadamore@914 731 t, diags.fragment("diamond.non.generic", t));
mcimadamore@914 732 return types.createErrorType(t);
mcimadamore@993 733 } else if (tree.typeargs != null &&
mcimadamore@993 734 tree.typeargs.nonEmpty()) {
mcimadamore@993 735 log.error(tree.clazz.pos(),
mcimadamore@993 736 "cant.apply.diamond.1",
mcimadamore@993 737 t, diags.fragment("diamond.and.explicit.params", t));
mcimadamore@993 738 return types.createErrorType(t);
mcimadamore@914 739 } else {
mcimadamore@914 740 return t;
mcimadamore@537 741 }
mcimadamore@537 742 }
mcimadamore@537 743
mcimadamore@795 744 void checkVarargsMethodDecl(Env<AttrContext> env, JCMethodDecl tree) {
mcimadamore@580 745 MethodSymbol m = tree.sym;
mcimadamore@795 746 if (!allowSimplifiedVarargs) return;
mcimadamore@795 747 boolean hasTrustMeAnno = m.attribute(syms.trustMeType.tsym) != null;
mcimadamore@795 748 Type varargElemType = null;
mcimadamore@580 749 if (m.isVarArgs()) {
mcimadamore@795 750 varargElemType = types.elemtype(tree.params.last().type);
mcimadamore@795 751 }
mcimadamore@795 752 if (hasTrustMeAnno && !isTrustMeAllowedOnMethod(m)) {
mcimadamore@795 753 if (varargElemType != null) {
mcimadamore@795 754 log.error(tree,
mcimadamore@795 755 "varargs.invalid.trustme.anno",
mcimadamore@795 756 syms.trustMeType.tsym,
mcimadamore@795 757 diags.fragment("varargs.trustme.on.virtual.varargs", m));
mcimadamore@795 758 } else {
mcimadamore@795 759 log.error(tree,
mcimadamore@795 760 "varargs.invalid.trustme.anno",
mcimadamore@795 761 syms.trustMeType.tsym,
mcimadamore@795 762 diags.fragment("varargs.trustme.on.non.varargs.meth", m));
mcimadamore@580 763 }
mcimadamore@795 764 } else if (hasTrustMeAnno && varargElemType != null &&
mcimadamore@795 765 types.isReifiable(varargElemType)) {
mcimadamore@795 766 warnUnsafeVararg(tree,
mcimadamore@795 767 "varargs.redundant.trustme.anno",
mcimadamore@795 768 syms.trustMeType.tsym,
mcimadamore@795 769 diags.fragment("varargs.trustme.on.reifiable.varargs", varargElemType));
mcimadamore@795 770 }
mcimadamore@795 771 else if (!hasTrustMeAnno && varargElemType != null &&
mcimadamore@795 772 !types.isReifiable(varargElemType)) {
mcimadamore@795 773 warnUnchecked(tree.params.head.pos(), "unchecked.varargs.non.reifiable.type", varargElemType);
mcimadamore@580 774 }
mcimadamore@580 775 }
mcimadamore@795 776 //where
mcimadamore@795 777 private boolean isTrustMeAllowedOnMethod(Symbol s) {
mcimadamore@795 778 return (s.flags() & VARARGS) != 0 &&
mcimadamore@795 779 (s.isConstructor() ||
mcimadamore@795 780 (s.flags() & (STATIC | FINAL)) != 0);
mcimadamore@795 781 }
mcimadamore@580 782
mcimadamore@1219 783 Type checkMethod(Type owntype,
mcimadamore@1219 784 Symbol sym,
mcimadamore@1219 785 Env<AttrContext> env,
mcimadamore@1219 786 final List<JCExpression> argtrees,
mcimadamore@1219 787 List<Type> argtypes,
mcimadamore@1226 788 boolean useVarargs,
mcimadamore@1226 789 boolean unchecked) {
mcimadamore@1219 790 // System.out.println("call : " + env.tree);
mcimadamore@1219 791 // System.out.println("method : " + owntype);
mcimadamore@1219 792 // System.out.println("actuals: " + argtypes);
mcimadamore@1219 793 List<Type> formals = owntype.getParameterTypes();
mcimadamore@1219 794 Type last = useVarargs ? formals.last() : null;
mcimadamore@1219 795 if (sym.name==names.init &&
mcimadamore@1219 796 sym.owner == syms.enumSym)
mcimadamore@1219 797 formals = formals.tail.tail;
mcimadamore@1219 798 List<JCExpression> args = argtrees;
mcimadamore@1219 799 while (formals.head != last) {
mcimadamore@1219 800 JCTree arg = args.head;
mcimadamore@1219 801 Warner warn = convertWarner(arg.pos(), arg.type, formals.head);
mcimadamore@1219 802 assertConvertible(arg, arg.type, formals.head, warn);
mcimadamore@1219 803 args = args.tail;
mcimadamore@1219 804 formals = formals.tail;
mcimadamore@580 805 }
mcimadamore@1219 806 if (useVarargs) {
mcimadamore@1219 807 Type varArg = types.elemtype(last);
mcimadamore@1219 808 while (args.tail != null) {
mcimadamore@1219 809 JCTree arg = args.head;
mcimadamore@1219 810 Warner warn = convertWarner(arg.pos(), arg.type, varArg);
mcimadamore@1219 811 assertConvertible(arg, arg.type, varArg, warn);
mcimadamore@1219 812 args = args.tail;
mcimadamore@1219 813 }
mcimadamore@1219 814 } else if ((sym.flags() & VARARGS) != 0 && allowVarargs) {
mcimadamore@1219 815 // non-varargs call to varargs method
mcimadamore@1219 816 Type varParam = owntype.getParameterTypes().last();
mcimadamore@1219 817 Type lastArg = argtypes.last();
mcimadamore@1219 818 if (types.isSubtypeUnchecked(lastArg, types.elemtype(varParam)) &&
mcimadamore@1219 819 !types.isSameType(types.erasure(varParam), types.erasure(lastArg)))
mcimadamore@1219 820 log.warning(argtrees.last().pos(), "inexact.non-varargs.call",
mcimadamore@1219 821 types.elemtype(varParam), varParam);
mcimadamore@1219 822 }
mcimadamore@1226 823 if (unchecked) {
mcimadamore@1219 824 warnUnchecked(env.tree.pos(),
mcimadamore@1219 825 "unchecked.meth.invocation.applied",
mcimadamore@1219 826 kindName(sym),
mcimadamore@1219 827 sym.name,
mcimadamore@1219 828 rs.methodArguments(sym.type.getParameterTypes()),
mcimadamore@1219 829 rs.methodArguments(argtypes),
mcimadamore@1219 830 kindName(sym.location()),
mcimadamore@1219 831 sym.location());
mcimadamore@1219 832 owntype = new MethodType(owntype.getParameterTypes(),
mcimadamore@1219 833 types.erasure(owntype.getReturnType()),
mcimadamore@1219 834 types.erasure(owntype.getThrownTypes()),
mcimadamore@1219 835 syms.methodClass);
mcimadamore@1219 836 }
mcimadamore@1219 837 if (useVarargs) {
mcimadamore@1219 838 JCTree tree = env.tree;
mcimadamore@1219 839 Type argtype = owntype.getParameterTypes().last();
mcimadamore@1219 840 if (!types.isReifiable(argtype) &&
mcimadamore@1219 841 (!allowSimplifiedVarargs ||
mcimadamore@1219 842 sym.attribute(syms.trustMeType.tsym) == null ||
mcimadamore@1219 843 !isTrustMeAllowedOnMethod(sym))) {
mcimadamore@1219 844 warnUnchecked(env.tree.pos(),
mcimadamore@1219 845 "unchecked.generic.array.creation",
mcimadamore@1219 846 argtype);
mcimadamore@1219 847 }
mcimadamore@1219 848 Type elemtype = types.elemtype(argtype);
mcimadamore@1219 849 switch (tree.getTag()) {
mcimadamore@1219 850 case APPLY:
mcimadamore@1219 851 ((JCMethodInvocation) tree).varargsElement = elemtype;
mcimadamore@1219 852 break;
mcimadamore@1219 853 case NEWCLASS:
mcimadamore@1219 854 ((JCNewClass) tree).varargsElement = elemtype;
mcimadamore@1219 855 break;
mcimadamore@1219 856 default:
mcimadamore@1219 857 throw new AssertionError(""+tree);
mcimadamore@1219 858 }
mcimadamore@1219 859 }
mcimadamore@1219 860 return owntype;
mcimadamore@547 861 }
mcimadamore@1219 862 //where
mcimadamore@1219 863 private void assertConvertible(JCTree tree, Type actual, Type formal, Warner warn) {
mcimadamore@1219 864 if (types.isConvertible(actual, formal, warn))
mcimadamore@1219 865 return;
mcimadamore@1219 866
mcimadamore@1219 867 if (formal.isCompound()
mcimadamore@1219 868 && types.isSubtype(actual, types.supertype(formal))
mcimadamore@1219 869 && types.isSubtypeUnchecked(actual, types.interfaces(formal), warn))
mcimadamore@1219 870 return;
mcimadamore@1219 871 }
mcimadamore@547 872
mcimadamore@821 873 /**
mcimadamore@821 874 * Check that type 't' is a valid instantiation of a generic class
mcimadamore@821 875 * (see JLS 4.5)
mcimadamore@821 876 *
mcimadamore@821 877 * @param t class type to be checked
mcimadamore@821 878 * @return true if 't' is well-formed
mcimadamore@821 879 */
mcimadamore@821 880 public boolean checkValidGenericType(Type t) {
mcimadamore@821 881 return firstIncompatibleTypeArg(t) == null;
mcimadamore@821 882 }
mcimadamore@821 883 //WHERE
mcimadamore@821 884 private Type firstIncompatibleTypeArg(Type type) {
mcimadamore@821 885 List<Type> formals = type.tsym.type.allparams();
mcimadamore@821 886 List<Type> actuals = type.allparams();
mcimadamore@821 887 List<Type> args = type.getTypeArguments();
mcimadamore@821 888 List<Type> forms = type.tsym.type.getTypeArguments();
mcimadamore@1216 889 ListBuffer<Type> bounds_buf = new ListBuffer<Type>();
mcimadamore@821 890
mcimadamore@821 891 // For matching pairs of actual argument types `a' and
mcimadamore@821 892 // formal type parameters with declared bound `b' ...
mcimadamore@821 893 while (args.nonEmpty() && forms.nonEmpty()) {
mcimadamore@821 894 // exact type arguments needs to know their
mcimadamore@821 895 // bounds (for upper and lower bound
mcimadamore@1216 896 // calculations). So we create new bounds where
mcimadamore@1216 897 // type-parameters are replaced with actuals argument types.
mcimadamore@1216 898 bounds_buf.append(types.subst(forms.head.getUpperBound(), formals, actuals));
mcimadamore@821 899 args = args.tail;
mcimadamore@821 900 forms = forms.tail;
mcimadamore@821 901 }
mcimadamore@821 902
mcimadamore@821 903 args = type.getTypeArguments();
mcimadamore@821 904 List<Type> tvars_cap = types.substBounds(formals,
mcimadamore@821 905 formals,
mcimadamore@821 906 types.capture(type).allparams());
mcimadamore@821 907 while (args.nonEmpty() && tvars_cap.nonEmpty()) {
mcimadamore@821 908 // Let the actual arguments know their bound
mcimadamore@821 909 args.head.withTypeVar((TypeVar)tvars_cap.head);
mcimadamore@821 910 args = args.tail;
mcimadamore@821 911 tvars_cap = tvars_cap.tail;
mcimadamore@821 912 }
mcimadamore@821 913
mcimadamore@821 914 args = type.getTypeArguments();
mcimadamore@1216 915 List<Type> bounds = bounds_buf.toList();
mcimadamore@821 916
mcimadamore@1216 917 while (args.nonEmpty() && bounds.nonEmpty()) {
mcimadamore@1216 918 Type actual = args.head;
mcimadamore@854 919 if (!isTypeArgErroneous(actual) &&
mcimadamore@1216 920 !bounds.head.isErroneous() &&
mcimadamore@1216 921 !checkExtends(actual, bounds.head)) {
mcimadamore@821 922 return args.head;
mcimadamore@821 923 }
mcimadamore@821 924 args = args.tail;
mcimadamore@1216 925 bounds = bounds.tail;
mcimadamore@821 926 }
mcimadamore@821 927
mcimadamore@821 928 args = type.getTypeArguments();
mcimadamore@1216 929 bounds = bounds_buf.toList();
mcimadamore@821 930
mcimadamore@821 931 for (Type arg : types.capture(type).getTypeArguments()) {
mcimadamore@828 932 if (arg.tag == TYPEVAR &&
mcimadamore@828 933 arg.getUpperBound().isErroneous() &&
mcimadamore@1216 934 !bounds.head.isErroneous() &&
mcimadamore@854 935 !isTypeArgErroneous(args.head)) {
mcimadamore@821 936 return args.head;
mcimadamore@821 937 }
mcimadamore@1216 938 bounds = bounds.tail;
mcimadamore@854 939 args = args.tail;
mcimadamore@821 940 }
mcimadamore@821 941
mcimadamore@821 942 return null;
mcimadamore@821 943 }
mcimadamore@854 944 //where
mcimadamore@854 945 boolean isTypeArgErroneous(Type t) {
mcimadamore@854 946 return isTypeArgErroneous.visit(t);
mcimadamore@854 947 }
mcimadamore@854 948
mcimadamore@854 949 Types.UnaryVisitor<Boolean> isTypeArgErroneous = new Types.UnaryVisitor<Boolean>() {
mcimadamore@854 950 public Boolean visitType(Type t, Void s) {
mcimadamore@854 951 return t.isErroneous();
mcimadamore@854 952 }
mcimadamore@854 953 @Override
mcimadamore@854 954 public Boolean visitTypeVar(TypeVar t, Void s) {
mcimadamore@854 955 return visit(t.getUpperBound());
mcimadamore@854 956 }
mcimadamore@854 957 @Override
mcimadamore@854 958 public Boolean visitCapturedType(CapturedType t, Void s) {
mcimadamore@854 959 return visit(t.getUpperBound()) ||
mcimadamore@854 960 visit(t.getLowerBound());
mcimadamore@854 961 }
mcimadamore@854 962 @Override
mcimadamore@854 963 public Boolean visitWildcardType(WildcardType t, Void s) {
mcimadamore@854 964 return visit(t.type);
mcimadamore@854 965 }
mcimadamore@854 966 };
mcimadamore@821 967
duke@1 968 /** Check that given modifiers are legal for given symbol and
duke@1 969 * return modifiers together with any implicit modififiers for that symbol.
duke@1 970 * Warning: we can't use flags() here since this method
duke@1 971 * is called during class enter, when flags() would cause a premature
duke@1 972 * completion.
duke@1 973 * @param pos Position to be used for error reporting.
duke@1 974 * @param flags The set of modifiers given in a definition.
duke@1 975 * @param sym The defined symbol.
duke@1 976 */
duke@1 977 long checkFlags(DiagnosticPosition pos, long flags, Symbol sym, JCTree tree) {
duke@1 978 long mask;
duke@1 979 long implicit = 0;
duke@1 980 switch (sym.kind) {
duke@1 981 case VAR:
duke@1 982 if (sym.owner.kind != TYP)
duke@1 983 mask = LocalVarFlags;
duke@1 984 else if ((sym.owner.flags_field & INTERFACE) != 0)
duke@1 985 mask = implicit = InterfaceVarFlags;
duke@1 986 else
duke@1 987 mask = VarFlags;
duke@1 988 break;
duke@1 989 case MTH:
duke@1 990 if (sym.name == names.init) {
duke@1 991 if ((sym.owner.flags_field & ENUM) != 0) {
duke@1 992 // enum constructors cannot be declared public or
duke@1 993 // protected and must be implicitly or explicitly
duke@1 994 // private
duke@1 995 implicit = PRIVATE;
duke@1 996 mask = PRIVATE;
duke@1 997 } else
duke@1 998 mask = ConstructorFlags;
duke@1 999 } else if ((sym.owner.flags_field & INTERFACE) != 0)
duke@1 1000 mask = implicit = InterfaceMethodFlags;
duke@1 1001 else {
duke@1 1002 mask = MethodFlags;
duke@1 1003 }
duke@1 1004 // Imply STRICTFP if owner has STRICTFP set.
duke@1 1005 if (((flags|implicit) & Flags.ABSTRACT) == 0)
duke@1 1006 implicit |= sym.owner.flags_field & STRICTFP;
duke@1 1007 break;
duke@1 1008 case TYP:
duke@1 1009 if (sym.isLocal()) {
duke@1 1010 mask = LocalClassFlags;
jjg@113 1011 if (sym.name.isEmpty()) { // Anonymous class
duke@1 1012 // Anonymous classes in static methods are themselves static;
duke@1 1013 // that's why we admit STATIC here.
duke@1 1014 mask |= STATIC;
duke@1 1015 // JLS: Anonymous classes are final.
duke@1 1016 implicit |= FINAL;
duke@1 1017 }
duke@1 1018 if ((sym.owner.flags_field & STATIC) == 0 &&
duke@1 1019 (flags & ENUM) != 0)
duke@1 1020 log.error(pos, "enums.must.be.static");
duke@1 1021 } else if (sym.owner.kind == TYP) {
duke@1 1022 mask = MemberClassFlags;
duke@1 1023 if (sym.owner.owner.kind == PCK ||
duke@1 1024 (sym.owner.flags_field & STATIC) != 0)
duke@1 1025 mask |= STATIC;
duke@1 1026 else if ((flags & ENUM) != 0)
duke@1 1027 log.error(pos, "enums.must.be.static");
duke@1 1028 // Nested interfaces and enums are always STATIC (Spec ???)
duke@1 1029 if ((flags & (INTERFACE | ENUM)) != 0 ) implicit = STATIC;
duke@1 1030 } else {
duke@1 1031 mask = ClassFlags;
duke@1 1032 }
duke@1 1033 // Interfaces are always ABSTRACT
duke@1 1034 if ((flags & INTERFACE) != 0) implicit |= ABSTRACT;
duke@1 1035
duke@1 1036 if ((flags & ENUM) != 0) {
duke@1 1037 // enums can't be declared abstract or final
duke@1 1038 mask &= ~(ABSTRACT | FINAL);
duke@1 1039 implicit |= implicitEnumFinalFlag(tree);
duke@1 1040 }
duke@1 1041 // Imply STRICTFP if owner has STRICTFP set.
duke@1 1042 implicit |= sym.owner.flags_field & STRICTFP;
duke@1 1043 break;
duke@1 1044 default:
duke@1 1045 throw new AssertionError();
duke@1 1046 }
duke@1 1047 long illegal = flags & StandardFlags & ~mask;
duke@1 1048 if (illegal != 0) {
duke@1 1049 if ((illegal & INTERFACE) != 0) {
duke@1 1050 log.error(pos, "intf.not.allowed.here");
duke@1 1051 mask |= INTERFACE;
duke@1 1052 }
duke@1 1053 else {
duke@1 1054 log.error(pos,
mcimadamore@80 1055 "mod.not.allowed.here", asFlagSet(illegal));
duke@1 1056 }
duke@1 1057 }
duke@1 1058 else if ((sym.kind == TYP ||
duke@1 1059 // ISSUE: Disallowing abstract&private is no longer appropriate
duke@1 1060 // in the presence of inner classes. Should it be deleted here?
duke@1 1061 checkDisjoint(pos, flags,
duke@1 1062 ABSTRACT,
duke@1 1063 PRIVATE | STATIC))
duke@1 1064 &&
duke@1 1065 checkDisjoint(pos, flags,
duke@1 1066 ABSTRACT | INTERFACE,
duke@1 1067 FINAL | NATIVE | SYNCHRONIZED)
duke@1 1068 &&
duke@1 1069 checkDisjoint(pos, flags,
duke@1 1070 PUBLIC,
duke@1 1071 PRIVATE | PROTECTED)
duke@1 1072 &&
duke@1 1073 checkDisjoint(pos, flags,
duke@1 1074 PRIVATE,
duke@1 1075 PUBLIC | PROTECTED)
duke@1 1076 &&
duke@1 1077 checkDisjoint(pos, flags,
duke@1 1078 FINAL,
duke@1 1079 VOLATILE)
duke@1 1080 &&
duke@1 1081 (sym.kind == TYP ||
duke@1 1082 checkDisjoint(pos, flags,
duke@1 1083 ABSTRACT | NATIVE,
duke@1 1084 STRICTFP))) {
duke@1 1085 // skip
duke@1 1086 }
duke@1 1087 return flags & (mask | ~StandardFlags) | implicit;
duke@1 1088 }
duke@1 1089
duke@1 1090
duke@1 1091 /** Determine if this enum should be implicitly final.
duke@1 1092 *
duke@1 1093 * If the enum has no specialized enum contants, it is final.
duke@1 1094 *
duke@1 1095 * If the enum does have specialized enum contants, it is
duke@1 1096 * <i>not</i> final.
duke@1 1097 */
duke@1 1098 private long implicitEnumFinalFlag(JCTree tree) {
jjg@1127 1099 if (!tree.hasTag(CLASSDEF)) return 0;
duke@1 1100 class SpecialTreeVisitor extends JCTree.Visitor {
duke@1 1101 boolean specialized;
duke@1 1102 SpecialTreeVisitor() {
duke@1 1103 this.specialized = false;
duke@1 1104 };
duke@1 1105
jjg@398 1106 @Override
duke@1 1107 public void visitTree(JCTree tree) { /* no-op */ }
duke@1 1108
jjg@398 1109 @Override
duke@1 1110 public void visitVarDef(JCVariableDecl tree) {
duke@1 1111 if ((tree.mods.flags & ENUM) != 0) {
duke@1 1112 if (tree.init instanceof JCNewClass &&
duke@1 1113 ((JCNewClass) tree.init).def != null) {
duke@1 1114 specialized = true;
duke@1 1115 }
duke@1 1116 }
duke@1 1117 }
duke@1 1118 }
duke@1 1119
duke@1 1120 SpecialTreeVisitor sts = new SpecialTreeVisitor();
duke@1 1121 JCClassDecl cdef = (JCClassDecl) tree;
duke@1 1122 for (JCTree defs: cdef.defs) {
duke@1 1123 defs.accept(sts);
duke@1 1124 if (sts.specialized) return 0;
duke@1 1125 }
duke@1 1126 return FINAL;
duke@1 1127 }
duke@1 1128
duke@1 1129 /* *************************************************************************
duke@1 1130 * Type Validation
duke@1 1131 **************************************************************************/
duke@1 1132
duke@1 1133 /** Validate a type expression. That is,
duke@1 1134 * check that all type arguments of a parametric type are within
duke@1 1135 * their bounds. This must be done in a second phase after type attributon
duke@1 1136 * since a class might have a subclass as type parameter bound. E.g:
duke@1 1137 *
duke@1 1138 * class B<A extends C> { ... }
duke@1 1139 * class C extends B<C> { ... }
duke@1 1140 *
duke@1 1141 * and we can't make sure that the bound is already attributed because
duke@1 1142 * of possible cycles.
mcimadamore@638 1143 *
mcimadamore@638 1144 * Visitor method: Validate a type expression, if it is not null, catching
duke@1 1145 * and reporting any completion failures.
duke@1 1146 */
mcimadamore@122 1147 void validate(JCTree tree, Env<AttrContext> env) {
mcimadamore@638 1148 validate(tree, env, true);
duke@1 1149 }
mcimadamore@638 1150 void validate(JCTree tree, Env<AttrContext> env, boolean checkRaw) {
mcimadamore@638 1151 new Validator(env).validateTree(tree, checkRaw, true);
mcimadamore@122 1152 }
duke@1 1153
duke@1 1154 /** Visitor method: Validate a list of type expressions.
duke@1 1155 */
mcimadamore@122 1156 void validate(List<? extends JCTree> trees, Env<AttrContext> env) {
duke@1 1157 for (List<? extends JCTree> l = trees; l.nonEmpty(); l = l.tail)
mcimadamore@122 1158 validate(l.head, env);
duke@1 1159 }
duke@1 1160
duke@1 1161 /** A visitor class for type validation.
duke@1 1162 */
duke@1 1163 class Validator extends JCTree.Visitor {
duke@1 1164
mcimadamore@638 1165 boolean isOuter;
mcimadamore@638 1166 Env<AttrContext> env;
mcimadamore@638 1167
mcimadamore@638 1168 Validator(Env<AttrContext> env) {
mcimadamore@638 1169 this.env = env;
mcimadamore@638 1170 }
mcimadamore@638 1171
jjg@398 1172 @Override
duke@1 1173 public void visitTypeArray(JCArrayTypeTree tree) {
mcimadamore@638 1174 tree.elemtype.accept(this);
duke@1 1175 }
duke@1 1176
jjg@398 1177 @Override
duke@1 1178 public void visitTypeApply(JCTypeApply tree) {
duke@1 1179 if (tree.type.tag == CLASS) {
duke@1 1180 List<JCExpression> args = tree.arguments;
mcimadamore@158 1181 List<Type> forms = tree.type.tsym.type.getTypeArguments();
mcimadamore@821 1182
mcimadamore@821 1183 Type incompatibleArg = firstIncompatibleTypeArg(tree.type);
mcimadamore@821 1184 if (incompatibleArg != null) {
mcimadamore@821 1185 for (JCTree arg : tree.arguments) {
mcimadamore@821 1186 if (arg.type == incompatibleArg) {
mcimadamore@829 1187 log.error(arg, "not.within.bounds", incompatibleArg, forms.head);
mcimadamore@821 1188 }
mcimadamore@829 1189 forms = forms.tail;
mcimadamore@829 1190 }
mcimadamore@829 1191 }
mcimadamore@829 1192
mcimadamore@829 1193 forms = tree.type.tsym.type.getTypeArguments();
duke@1 1194
mcimadamore@638 1195 boolean is_java_lang_Class = tree.type.tsym.flatName() == names.java_lang_Class;
mcimadamore@638 1196
duke@1 1197 // For matching pairs of actual argument types `a' and
duke@1 1198 // formal type parameters with declared bound `b' ...
duke@1 1199 while (args.nonEmpty() && forms.nonEmpty()) {
mcimadamore@638 1200 validateTree(args.head,
mcimadamore@638 1201 !(isOuter && is_java_lang_Class),
mcimadamore@638 1202 false);
duke@1 1203 args = args.tail;
duke@1 1204 forms = forms.tail;
duke@1 1205 }
duke@1 1206
duke@1 1207 // Check that this type is either fully parameterized, or
duke@1 1208 // not parameterized at all.
duke@1 1209 if (tree.type.getEnclosingType().isRaw())
duke@1 1210 log.error(tree.pos(), "improperly.formed.type.inner.raw.param");
jjg@1127 1211 if (tree.clazz.hasTag(SELECT))
duke@1 1212 visitSelectInternal((JCFieldAccess)tree.clazz);
duke@1 1213 }
duke@1 1214 }
duke@1 1215
jjg@398 1216 @Override
duke@1 1217 public void visitTypeParameter(JCTypeParameter tree) {
mcimadamore@638 1218 validateTrees(tree.bounds, true, isOuter);
duke@1 1219 checkClassBounds(tree.pos(), tree.type);
duke@1 1220 }
duke@1 1221
duke@1 1222 @Override
duke@1 1223 public void visitWildcard(JCWildcard tree) {
duke@1 1224 if (tree.inner != null)
mcimadamore@638 1225 validateTree(tree.inner, true, isOuter);
duke@1 1226 }
duke@1 1227
jjg@398 1228 @Override
duke@1 1229 public void visitSelect(JCFieldAccess tree) {
duke@1 1230 if (tree.type.tag == CLASS) {
duke@1 1231 visitSelectInternal(tree);
duke@1 1232
duke@1 1233 // Check that this type is either fully parameterized, or
duke@1 1234 // not parameterized at all.
duke@1 1235 if (tree.selected.type.isParameterized() && tree.type.tsym.type.getTypeArguments().nonEmpty())
duke@1 1236 log.error(tree.pos(), "improperly.formed.type.param.missing");
duke@1 1237 }
duke@1 1238 }
mcimadamore@852 1239
duke@1 1240 public void visitSelectInternal(JCFieldAccess tree) {
mcimadamore@122 1241 if (tree.type.tsym.isStatic() &&
duke@1 1242 tree.selected.type.isParameterized()) {
duke@1 1243 // The enclosing type is not a class, so we are
duke@1 1244 // looking at a static member type. However, the
duke@1 1245 // qualifying expression is parameterized.
duke@1 1246 log.error(tree.pos(), "cant.select.static.class.from.param.type");
duke@1 1247 } else {
duke@1 1248 // otherwise validate the rest of the expression
mcimadamore@122 1249 tree.selected.accept(this);
duke@1 1250 }
duke@1 1251 }
duke@1 1252
duke@1 1253 /** Default visitor method: do nothing.
duke@1 1254 */
jjg@398 1255 @Override
duke@1 1256 public void visitTree(JCTree tree) {
duke@1 1257 }
mcimadamore@122 1258
mcimadamore@638 1259 public void validateTree(JCTree tree, boolean checkRaw, boolean isOuter) {
mcimadamore@638 1260 try {
mcimadamore@638 1261 if (tree != null) {
mcimadamore@638 1262 this.isOuter = isOuter;
mcimadamore@638 1263 tree.accept(this);
mcimadamore@638 1264 if (checkRaw)
mcimadamore@638 1265 checkRaw(tree, env);
mcimadamore@638 1266 }
mcimadamore@638 1267 } catch (CompletionFailure ex) {
mcimadamore@638 1268 completionError(tree.pos(), ex);
mcimadamore@638 1269 }
mcimadamore@638 1270 }
mcimadamore@638 1271
mcimadamore@638 1272 public void validateTrees(List<? extends JCTree> trees, boolean checkRaw, boolean isOuter) {
mcimadamore@638 1273 for (List<? extends JCTree> l = trees; l.nonEmpty(); l = l.tail)
mcimadamore@638 1274 validateTree(l.head, checkRaw, isOuter);
mcimadamore@638 1275 }
mcimadamore@638 1276
mcimadamore@638 1277 void checkRaw(JCTree tree, Env<AttrContext> env) {
mcimadamore@795 1278 if (lint.isEnabled(LintCategory.RAW) &&
mcimadamore@638 1279 tree.type.tag == CLASS &&
mcimadamore@638 1280 !TreeInfo.isDiamond(tree) &&
mcimadamore@1103 1281 !withinAnonConstr(env) &&
mcimadamore@638 1282 tree.type.isRaw()) {
mcimadamore@795 1283 log.warning(LintCategory.RAW,
mcimadamore@638 1284 tree.pos(), "raw.class.use", tree.type, tree.type.tsym.type);
mcimadamore@638 1285 }
mcimadamore@638 1286 }
mcimadamore@1103 1287
mcimadamore@1103 1288 boolean withinAnonConstr(Env<AttrContext> env) {
mcimadamore@1103 1289 return env.enclClass.name.isEmpty() &&
mcimadamore@1103 1290 env.enclMethod != null && env.enclMethod.name == names.init;
mcimadamore@1103 1291 }
duke@1 1292 }
duke@1 1293
duke@1 1294 /* *************************************************************************
duke@1 1295 * Exception checking
duke@1 1296 **************************************************************************/
duke@1 1297
duke@1 1298 /* The following methods treat classes as sets that contain
duke@1 1299 * the class itself and all their subclasses
duke@1 1300 */
duke@1 1301
duke@1 1302 /** Is given type a subtype of some of the types in given list?
duke@1 1303 */
duke@1 1304 boolean subset(Type t, List<Type> ts) {
duke@1 1305 for (List<Type> l = ts; l.nonEmpty(); l = l.tail)
duke@1 1306 if (types.isSubtype(t, l.head)) return true;
duke@1 1307 return false;
duke@1 1308 }
duke@1 1309
duke@1 1310 /** Is given type a subtype or supertype of
duke@1 1311 * some of the types in given list?
duke@1 1312 */
duke@1 1313 boolean intersects(Type t, List<Type> ts) {
duke@1 1314 for (List<Type> l = ts; l.nonEmpty(); l = l.tail)
duke@1 1315 if (types.isSubtype(t, l.head) || types.isSubtype(l.head, t)) return true;
duke@1 1316 return false;
duke@1 1317 }
duke@1 1318
duke@1 1319 /** Add type set to given type list, unless it is a subclass of some class
duke@1 1320 * in the list.
duke@1 1321 */
duke@1 1322 List<Type> incl(Type t, List<Type> ts) {
duke@1 1323 return subset(t, ts) ? ts : excl(t, ts).prepend(t);
duke@1 1324 }
duke@1 1325
duke@1 1326 /** Remove type set from type set list.
duke@1 1327 */
duke@1 1328 List<Type> excl(Type t, List<Type> ts) {
duke@1 1329 if (ts.isEmpty()) {
duke@1 1330 return ts;
duke@1 1331 } else {
duke@1 1332 List<Type> ts1 = excl(t, ts.tail);
duke@1 1333 if (types.isSubtype(ts.head, t)) return ts1;
duke@1 1334 else if (ts1 == ts.tail) return ts;
duke@1 1335 else return ts1.prepend(ts.head);
duke@1 1336 }
duke@1 1337 }
duke@1 1338
duke@1 1339 /** Form the union of two type set lists.
duke@1 1340 */
duke@1 1341 List<Type> union(List<Type> ts1, List<Type> ts2) {
duke@1 1342 List<Type> ts = ts1;
duke@1 1343 for (List<Type> l = ts2; l.nonEmpty(); l = l.tail)
duke@1 1344 ts = incl(l.head, ts);
duke@1 1345 return ts;
duke@1 1346 }
duke@1 1347
duke@1 1348 /** Form the difference of two type lists.
duke@1 1349 */
duke@1 1350 List<Type> diff(List<Type> ts1, List<Type> ts2) {
duke@1 1351 List<Type> ts = ts1;
duke@1 1352 for (List<Type> l = ts2; l.nonEmpty(); l = l.tail)
duke@1 1353 ts = excl(l.head, ts);
duke@1 1354 return ts;
duke@1 1355 }
duke@1 1356
duke@1 1357 /** Form the intersection of two type lists.
duke@1 1358 */
duke@1 1359 public List<Type> intersect(List<Type> ts1, List<Type> ts2) {
duke@1 1360 List<Type> ts = List.nil();
duke@1 1361 for (List<Type> l = ts1; l.nonEmpty(); l = l.tail)
duke@1 1362 if (subset(l.head, ts2)) ts = incl(l.head, ts);
duke@1 1363 for (List<Type> l = ts2; l.nonEmpty(); l = l.tail)
duke@1 1364 if (subset(l.head, ts1)) ts = incl(l.head, ts);
duke@1 1365 return ts;
duke@1 1366 }
duke@1 1367
duke@1 1368 /** Is exc an exception symbol that need not be declared?
duke@1 1369 */
duke@1 1370 boolean isUnchecked(ClassSymbol exc) {
duke@1 1371 return
duke@1 1372 exc.kind == ERR ||
duke@1 1373 exc.isSubClass(syms.errorType.tsym, types) ||
duke@1 1374 exc.isSubClass(syms.runtimeExceptionType.tsym, types);
duke@1 1375 }
duke@1 1376
duke@1 1377 /** Is exc an exception type that need not be declared?
duke@1 1378 */
duke@1 1379 boolean isUnchecked(Type exc) {
duke@1 1380 return
duke@1 1381 (exc.tag == TYPEVAR) ? isUnchecked(types.supertype(exc)) :
duke@1 1382 (exc.tag == CLASS) ? isUnchecked((ClassSymbol)exc.tsym) :
duke@1 1383 exc.tag == BOT;
duke@1 1384 }
duke@1 1385
duke@1 1386 /** Same, but handling completion failures.
duke@1 1387 */
duke@1 1388 boolean isUnchecked(DiagnosticPosition pos, Type exc) {
duke@1 1389 try {
duke@1 1390 return isUnchecked(exc);
duke@1 1391 } catch (CompletionFailure ex) {
duke@1 1392 completionError(pos, ex);
duke@1 1393 return true;
duke@1 1394 }
duke@1 1395 }
duke@1 1396
duke@1 1397 /** Is exc handled by given exception list?
duke@1 1398 */
duke@1 1399 boolean isHandled(Type exc, List<Type> handled) {
duke@1 1400 return isUnchecked(exc) || subset(exc, handled);
duke@1 1401 }
duke@1 1402
duke@1 1403 /** Return all exceptions in thrown list that are not in handled list.
duke@1 1404 * @param thrown The list of thrown exceptions.
duke@1 1405 * @param handled The list of handled exceptions.
duke@1 1406 */
mcimadamore@362 1407 List<Type> unhandled(List<Type> thrown, List<Type> handled) {
duke@1 1408 List<Type> unhandled = List.nil();
duke@1 1409 for (List<Type> l = thrown; l.nonEmpty(); l = l.tail)
duke@1 1410 if (!isHandled(l.head, handled)) unhandled = unhandled.prepend(l.head);
duke@1 1411 return unhandled;
duke@1 1412 }
duke@1 1413
duke@1 1414 /* *************************************************************************
duke@1 1415 * Overriding/Implementation checking
duke@1 1416 **************************************************************************/
duke@1 1417
duke@1 1418 /** The level of access protection given by a flag set,
duke@1 1419 * where PRIVATE is highest and PUBLIC is lowest.
duke@1 1420 */
duke@1 1421 static int protection(long flags) {
duke@1 1422 switch ((short)(flags & AccessFlags)) {
duke@1 1423 case PRIVATE: return 3;
duke@1 1424 case PROTECTED: return 1;
duke@1 1425 default:
duke@1 1426 case PUBLIC: return 0;
duke@1 1427 case 0: return 2;
duke@1 1428 }
duke@1 1429 }
duke@1 1430
duke@1 1431 /** A customized "cannot override" error message.
duke@1 1432 * @param m The overriding method.
duke@1 1433 * @param other The overridden method.
duke@1 1434 * @return An internationalized string.
duke@1 1435 */
mcimadamore@89 1436 Object cannotOverride(MethodSymbol m, MethodSymbol other) {
duke@1 1437 String key;
duke@1 1438 if ((other.owner.flags() & INTERFACE) == 0)
duke@1 1439 key = "cant.override";
duke@1 1440 else if ((m.owner.flags() & INTERFACE) == 0)
duke@1 1441 key = "cant.implement";
duke@1 1442 else
duke@1 1443 key = "clashes.with";
mcimadamore@89 1444 return diags.fragment(key, m, m.location(), other, other.location());
duke@1 1445 }
duke@1 1446
duke@1 1447 /** A customized "override" warning message.
duke@1 1448 * @param m The overriding method.
duke@1 1449 * @param other The overridden method.
duke@1 1450 * @return An internationalized string.
duke@1 1451 */
mcimadamore@89 1452 Object uncheckedOverrides(MethodSymbol m, MethodSymbol other) {
duke@1 1453 String key;
duke@1 1454 if ((other.owner.flags() & INTERFACE) == 0)
duke@1 1455 key = "unchecked.override";
duke@1 1456 else if ((m.owner.flags() & INTERFACE) == 0)
duke@1 1457 key = "unchecked.implement";
duke@1 1458 else
duke@1 1459 key = "unchecked.clash.with";
mcimadamore@89 1460 return diags.fragment(key, m, m.location(), other, other.location());
duke@1 1461 }
duke@1 1462
duke@1 1463 /** A customized "override" warning message.
duke@1 1464 * @param m The overriding method.
duke@1 1465 * @param other The overridden method.
duke@1 1466 * @return An internationalized string.
duke@1 1467 */
mcimadamore@89 1468 Object varargsOverrides(MethodSymbol m, MethodSymbol other) {
duke@1 1469 String key;
duke@1 1470 if ((other.owner.flags() & INTERFACE) == 0)
duke@1 1471 key = "varargs.override";
duke@1 1472 else if ((m.owner.flags() & INTERFACE) == 0)
duke@1 1473 key = "varargs.implement";
duke@1 1474 else
duke@1 1475 key = "varargs.clash.with";
mcimadamore@89 1476 return diags.fragment(key, m, m.location(), other, other.location());
duke@1 1477 }
duke@1 1478
duke@1 1479 /** Check that this method conforms with overridden method 'other'.
duke@1 1480 * where `origin' is the class where checking started.
duke@1 1481 * Complications:
duke@1 1482 * (1) Do not check overriding of synthetic methods
duke@1 1483 * (reason: they might be final).
duke@1 1484 * todo: check whether this is still necessary.
duke@1 1485 * (2) Admit the case where an interface proxy throws fewer exceptions
duke@1 1486 * than the method it implements. Augment the proxy methods with the
duke@1 1487 * undeclared exceptions in this case.
duke@1 1488 * (3) When generics are enabled, admit the case where an interface proxy
duke@1 1489 * has a result type
duke@1 1490 * extended by the result type of the method it implements.
duke@1 1491 * Change the proxies result type to the smaller type in this case.
duke@1 1492 *
duke@1 1493 * @param tree The tree from which positions
duke@1 1494 * are extracted for errors.
duke@1 1495 * @param m The overriding method.
duke@1 1496 * @param other The overridden method.
duke@1 1497 * @param origin The class of which the overriding method
duke@1 1498 * is a member.
duke@1 1499 */
duke@1 1500 void checkOverride(JCTree tree,
duke@1 1501 MethodSymbol m,
duke@1 1502 MethodSymbol other,
duke@1 1503 ClassSymbol origin) {
duke@1 1504 // Don't check overriding of synthetic methods or by bridge methods.
duke@1 1505 if ((m.flags() & (SYNTHETIC|BRIDGE)) != 0 || (other.flags() & SYNTHETIC) != 0) {
duke@1 1506 return;
duke@1 1507 }
duke@1 1508
duke@1 1509 // Error if static method overrides instance method (JLS 8.4.6.2).
duke@1 1510 if ((m.flags() & STATIC) != 0 &&
duke@1 1511 (other.flags() & STATIC) == 0) {
duke@1 1512 log.error(TreeInfo.diagnosticPositionFor(m, tree), "override.static",
duke@1 1513 cannotOverride(m, other));
duke@1 1514 return;
duke@1 1515 }
duke@1 1516
duke@1 1517 // Error if instance method overrides static or final
duke@1 1518 // method (JLS 8.4.6.1).
duke@1 1519 if ((other.flags() & FINAL) != 0 ||
duke@1 1520 (m.flags() & STATIC) == 0 &&
duke@1 1521 (other.flags() & STATIC) != 0) {
duke@1 1522 log.error(TreeInfo.diagnosticPositionFor(m, tree), "override.meth",
duke@1 1523 cannotOverride(m, other),
mcimadamore@80 1524 asFlagSet(other.flags() & (FINAL | STATIC)));
duke@1 1525 return;
duke@1 1526 }
duke@1 1527
duke@1 1528 if ((m.owner.flags() & ANNOTATION) != 0) {
duke@1 1529 // handled in validateAnnotationMethod
duke@1 1530 return;
duke@1 1531 }
duke@1 1532
duke@1 1533 // Error if overriding method has weaker access (JLS 8.4.6.3).
duke@1 1534 if ((origin.flags() & INTERFACE) == 0 &&
duke@1 1535 protection(m.flags()) > protection(other.flags())) {
duke@1 1536 log.error(TreeInfo.diagnosticPositionFor(m, tree), "override.weaker.access",
duke@1 1537 cannotOverride(m, other),
mcimadamore@80 1538 other.flags() == 0 ?
mcimadamore@80 1539 Flag.PACKAGE :
mcimadamore@80 1540 asFlagSet(other.flags() & AccessFlags));
duke@1 1541 return;
duke@1 1542 }
duke@1 1543
duke@1 1544 Type mt = types.memberType(origin.type, m);
duke@1 1545 Type ot = types.memberType(origin.type, other);
duke@1 1546 // Error if overriding result type is different
duke@1 1547 // (or, in the case of generics mode, not a subtype) of
duke@1 1548 // overridden result type. We have to rename any type parameters
duke@1 1549 // before comparing types.
duke@1 1550 List<Type> mtvars = mt.getTypeArguments();
duke@1 1551 List<Type> otvars = ot.getTypeArguments();
duke@1 1552 Type mtres = mt.getReturnType();
duke@1 1553 Type otres = types.subst(ot.getReturnType(), otvars, mtvars);
duke@1 1554
mcimadamore@795 1555 overrideWarner.clear();
duke@1 1556 boolean resultTypesOK =
tbell@202 1557 types.returnTypeSubstitutable(mt, ot, otres, overrideWarner);
duke@1 1558 if (!resultTypesOK) {
jjg@398 1559 if (!allowCovariantReturns &&
duke@1 1560 m.owner != origin &&
duke@1 1561 m.owner.isSubClass(other.owner, types)) {
duke@1 1562 // allow limited interoperability with covariant returns
duke@1 1563 } else {
mcimadamore@362 1564 log.error(TreeInfo.diagnosticPositionFor(m, tree),
mcimadamore@362 1565 "override.incompatible.ret",
mcimadamore@362 1566 cannotOverride(m, other),
duke@1 1567 mtres, otres);
duke@1 1568 return;
duke@1 1569 }
mcimadamore@795 1570 } else if (overrideWarner.hasNonSilentLint(LintCategory.UNCHECKED)) {
duke@1 1571 warnUnchecked(TreeInfo.diagnosticPositionFor(m, tree),
mcimadamore@362 1572 "override.unchecked.ret",
mcimadamore@362 1573 uncheckedOverrides(m, other),
mcimadamore@362 1574 mtres, otres);
duke@1 1575 }
duke@1 1576
duke@1 1577 // Error if overriding method throws an exception not reported
duke@1 1578 // by overridden method.
duke@1 1579 List<Type> otthrown = types.subst(ot.getThrownTypes(), otvars, mtvars);
mcimadamore@362 1580 List<Type> unhandledErased = unhandled(mt.getThrownTypes(), types.erasure(otthrown));
mcimadamore@362 1581 List<Type> unhandledUnerased = unhandled(mt.getThrownTypes(), otthrown);
mcimadamore@362 1582 if (unhandledErased.nonEmpty()) {
duke@1 1583 log.error(TreeInfo.diagnosticPositionFor(m, tree),
duke@1 1584 "override.meth.doesnt.throw",
duke@1 1585 cannotOverride(m, other),
mcimadamore@362 1586 unhandledUnerased.head);
mcimadamore@362 1587 return;
mcimadamore@362 1588 }
mcimadamore@362 1589 else if (unhandledUnerased.nonEmpty()) {
mcimadamore@362 1590 warnUnchecked(TreeInfo.diagnosticPositionFor(m, tree),
mcimadamore@362 1591 "override.unchecked.thrown",
mcimadamore@362 1592 cannotOverride(m, other),
mcimadamore@362 1593 unhandledUnerased.head);
duke@1 1594 return;
duke@1 1595 }
duke@1 1596
duke@1 1597 // Optional warning if varargs don't agree
duke@1 1598 if ((((m.flags() ^ other.flags()) & Flags.VARARGS) != 0)
mcimadamore@795 1599 && lint.isEnabled(LintCategory.OVERRIDES)) {
duke@1 1600 log.warning(TreeInfo.diagnosticPositionFor(m, tree),
duke@1 1601 ((m.flags() & Flags.VARARGS) != 0)
duke@1 1602 ? "override.varargs.missing"
duke@1 1603 : "override.varargs.extra",
duke@1 1604 varargsOverrides(m, other));
duke@1 1605 }
duke@1 1606
duke@1 1607 // Warn if instance method overrides bridge method (compiler spec ??)
duke@1 1608 if ((other.flags() & BRIDGE) != 0) {
duke@1 1609 log.warning(TreeInfo.diagnosticPositionFor(m, tree), "override.bridge",
duke@1 1610 uncheckedOverrides(m, other));
duke@1 1611 }
duke@1 1612
duke@1 1613 // Warn if a deprecated method overridden by a non-deprecated one.
mcimadamore@852 1614 if (!isDeprecatedOverrideIgnorable(other, origin)) {
mcimadamore@852 1615 checkDeprecated(TreeInfo.diagnosticPositionFor(m, tree), m, other);
duke@1 1616 }
duke@1 1617 }
duke@1 1618 // where
duke@1 1619 private boolean isDeprecatedOverrideIgnorable(MethodSymbol m, ClassSymbol origin) {
duke@1 1620 // If the method, m, is defined in an interface, then ignore the issue if the method
duke@1 1621 // is only inherited via a supertype and also implemented in the supertype,
duke@1 1622 // because in that case, we will rediscover the issue when examining the method
duke@1 1623 // in the supertype.
duke@1 1624 // If the method, m, is not defined in an interface, then the only time we need to
duke@1 1625 // address the issue is when the method is the supertype implemementation: any other
duke@1 1626 // case, we will have dealt with when examining the supertype classes
duke@1 1627 ClassSymbol mc = m.enclClass();
duke@1 1628 Type st = types.supertype(origin.type);
duke@1 1629 if (st.tag != CLASS)
duke@1 1630 return true;
duke@1 1631 MethodSymbol stimpl = m.implementation((ClassSymbol)st.tsym, types, false);
duke@1 1632
duke@1 1633 if (mc != null && ((mc.flags() & INTERFACE) != 0)) {
duke@1 1634 List<Type> intfs = types.interfaces(origin.type);
duke@1 1635 return (intfs.contains(mc.type) ? false : (stimpl != null));
duke@1 1636 }
duke@1 1637 else
duke@1 1638 return (stimpl != m);
duke@1 1639 }
duke@1 1640
duke@1 1641
duke@1 1642 // used to check if there were any unchecked conversions
duke@1 1643 Warner overrideWarner = new Warner();
duke@1 1644
duke@1 1645 /** Check that a class does not inherit two concrete methods
duke@1 1646 * with the same signature.
duke@1 1647 * @param pos Position to be used for error reporting.
duke@1 1648 * @param site The class type to be checked.
duke@1 1649 */
duke@1 1650 public void checkCompatibleConcretes(DiagnosticPosition pos, Type site) {
duke@1 1651 Type sup = types.supertype(site);
duke@1 1652 if (sup.tag != CLASS) return;
duke@1 1653
duke@1 1654 for (Type t1 = sup;
duke@1 1655 t1.tsym.type.isParameterized();
duke@1 1656 t1 = types.supertype(t1)) {
duke@1 1657 for (Scope.Entry e1 = t1.tsym.members().elems;
duke@1 1658 e1 != null;
duke@1 1659 e1 = e1.sibling) {
duke@1 1660 Symbol s1 = e1.sym;
duke@1 1661 if (s1.kind != MTH ||
duke@1 1662 (s1.flags() & (STATIC|SYNTHETIC|BRIDGE)) != 0 ||
duke@1 1663 !s1.isInheritedIn(site.tsym, types) ||
duke@1 1664 ((MethodSymbol)s1).implementation(site.tsym,
duke@1 1665 types,
duke@1 1666 true) != s1)
duke@1 1667 continue;
duke@1 1668 Type st1 = types.memberType(t1, s1);
duke@1 1669 int s1ArgsLength = st1.getParameterTypes().length();
duke@1 1670 if (st1 == s1.type) continue;
duke@1 1671
duke@1 1672 for (Type t2 = sup;
duke@1 1673 t2.tag == CLASS;
duke@1 1674 t2 = types.supertype(t2)) {
mcimadamore@24 1675 for (Scope.Entry e2 = t2.tsym.members().lookup(s1.name);
duke@1 1676 e2.scope != null;
duke@1 1677 e2 = e2.next()) {
duke@1 1678 Symbol s2 = e2.sym;
duke@1 1679 if (s2 == s1 ||
duke@1 1680 s2.kind != MTH ||
duke@1 1681 (s2.flags() & (STATIC|SYNTHETIC|BRIDGE)) != 0 ||
duke@1 1682 s2.type.getParameterTypes().length() != s1ArgsLength ||
duke@1 1683 !s2.isInheritedIn(site.tsym, types) ||
duke@1 1684 ((MethodSymbol)s2).implementation(site.tsym,
duke@1 1685 types,
duke@1 1686 true) != s2)
duke@1 1687 continue;
duke@1 1688 Type st2 = types.memberType(t2, s2);
duke@1 1689 if (types.overrideEquivalent(st1, st2))
duke@1 1690 log.error(pos, "concrete.inheritance.conflict",
duke@1 1691 s1, t1, s2, t2, sup);
duke@1 1692 }
duke@1 1693 }
duke@1 1694 }
duke@1 1695 }
duke@1 1696 }
duke@1 1697
duke@1 1698 /** Check that classes (or interfaces) do not each define an abstract
duke@1 1699 * method with same name and arguments but incompatible return types.
duke@1 1700 * @param pos Position to be used for error reporting.
duke@1 1701 * @param t1 The first argument type.
duke@1 1702 * @param t2 The second argument type.
duke@1 1703 */
duke@1 1704 public boolean checkCompatibleAbstracts(DiagnosticPosition pos,
duke@1 1705 Type t1,
duke@1 1706 Type t2) {
duke@1 1707 return checkCompatibleAbstracts(pos, t1, t2,
duke@1 1708 types.makeCompoundType(t1, t2));
duke@1 1709 }
duke@1 1710
duke@1 1711 public boolean checkCompatibleAbstracts(DiagnosticPosition pos,
duke@1 1712 Type t1,
duke@1 1713 Type t2,
duke@1 1714 Type site) {
mcimadamore@746 1715 return firstIncompatibility(pos, t1, t2, site) == null;
duke@1 1716 }
duke@1 1717
duke@1 1718 /** Return the first method which is defined with same args
duke@1 1719 * but different return types in two given interfaces, or null if none
duke@1 1720 * exists.
duke@1 1721 * @param t1 The first type.
duke@1 1722 * @param t2 The second type.
duke@1 1723 * @param site The most derived type.
duke@1 1724 * @returns symbol from t2 that conflicts with one in t1.
duke@1 1725 */
mcimadamore@746 1726 private Symbol firstIncompatibility(DiagnosticPosition pos, Type t1, Type t2, Type site) {
duke@1 1727 Map<TypeSymbol,Type> interfaces1 = new HashMap<TypeSymbol,Type>();
duke@1 1728 closure(t1, interfaces1);
duke@1 1729 Map<TypeSymbol,Type> interfaces2;
duke@1 1730 if (t1 == t2)
duke@1 1731 interfaces2 = interfaces1;
duke@1 1732 else
duke@1 1733 closure(t2, interfaces1, interfaces2 = new HashMap<TypeSymbol,Type>());
duke@1 1734
duke@1 1735 for (Type t3 : interfaces1.values()) {
duke@1 1736 for (Type t4 : interfaces2.values()) {
mcimadamore@746 1737 Symbol s = firstDirectIncompatibility(pos, t3, t4, site);
duke@1 1738 if (s != null) return s;
duke@1 1739 }
duke@1 1740 }
duke@1 1741 return null;
duke@1 1742 }
duke@1 1743
duke@1 1744 /** Compute all the supertypes of t, indexed by type symbol. */
duke@1 1745 private void closure(Type t, Map<TypeSymbol,Type> typeMap) {
duke@1 1746 if (t.tag != CLASS) return;
duke@1 1747 if (typeMap.put(t.tsym, t) == null) {
duke@1 1748 closure(types.supertype(t), typeMap);
duke@1 1749 for (Type i : types.interfaces(t))
duke@1 1750 closure(i, typeMap);
duke@1 1751 }
duke@1 1752 }
duke@1 1753
duke@1 1754 /** Compute all the supertypes of t, indexed by type symbol (except thise in typesSkip). */
duke@1 1755 private void closure(Type t, Map<TypeSymbol,Type> typesSkip, Map<TypeSymbol,Type> typeMap) {
duke@1 1756 if (t.tag != CLASS) return;
duke@1 1757 if (typesSkip.get(t.tsym) != null) return;
duke@1 1758 if (typeMap.put(t.tsym, t) == null) {
duke@1 1759 closure(types.supertype(t), typesSkip, typeMap);
duke@1 1760 for (Type i : types.interfaces(t))
duke@1 1761 closure(i, typesSkip, typeMap);
duke@1 1762 }
duke@1 1763 }
duke@1 1764
duke@1 1765 /** Return the first method in t2 that conflicts with a method from t1. */
mcimadamore@746 1766 private Symbol firstDirectIncompatibility(DiagnosticPosition pos, Type t1, Type t2, Type site) {
duke@1 1767 for (Scope.Entry e1 = t1.tsym.members().elems; e1 != null; e1 = e1.sibling) {
duke@1 1768 Symbol s1 = e1.sym;
duke@1 1769 Type st1 = null;
duke@1 1770 if (s1.kind != MTH || !s1.isInheritedIn(site.tsym, types)) continue;
duke@1 1771 Symbol impl = ((MethodSymbol)s1).implementation(site.tsym, types, false);
duke@1 1772 if (impl != null && (impl.flags() & ABSTRACT) == 0) continue;
duke@1 1773 for (Scope.Entry e2 = t2.tsym.members().lookup(s1.name); e2.scope != null; e2 = e2.next()) {
duke@1 1774 Symbol s2 = e2.sym;
duke@1 1775 if (s1 == s2) continue;
duke@1 1776 if (s2.kind != MTH || !s2.isInheritedIn(site.tsym, types)) continue;
duke@1 1777 if (st1 == null) st1 = types.memberType(t1, s1);
duke@1 1778 Type st2 = types.memberType(t2, s2);
duke@1 1779 if (types.overrideEquivalent(st1, st2)) {
duke@1 1780 List<Type> tvars1 = st1.getTypeArguments();
duke@1 1781 List<Type> tvars2 = st2.getTypeArguments();
duke@1 1782 Type rt1 = st1.getReturnType();
duke@1 1783 Type rt2 = types.subst(st2.getReturnType(), tvars2, tvars1);
duke@1 1784 boolean compat =
duke@1 1785 types.isSameType(rt1, rt2) ||
duke@1 1786 rt1.tag >= CLASS && rt2.tag >= CLASS &&
duke@1 1787 (types.covariantReturnType(rt1, rt2, Warner.noWarnings) ||
mcimadamore@59 1788 types.covariantReturnType(rt2, rt1, Warner.noWarnings)) ||
mcimadamore@59 1789 checkCommonOverriderIn(s1,s2,site);
mcimadamore@746 1790 if (!compat) {
mcimadamore@746 1791 log.error(pos, "types.incompatible.diff.ret",
mcimadamore@746 1792 t1, t2, s2.name +
mcimadamore@746 1793 "(" + types.memberType(t2, s2).getParameterTypes() + ")");
mcimadamore@746 1794 return s2;
mcimadamore@746 1795 }
mcimadamore@889 1796 } else if (checkNameClash((ClassSymbol)site.tsym, s1, s2) &&
mcimadamore@889 1797 !checkCommonOverriderIn(s1, s2, site)) {
mcimadamore@746 1798 log.error(pos,
mcimadamore@746 1799 "name.clash.same.erasure.no.override",
mcimadamore@746 1800 s1, s1.location(),
mcimadamore@746 1801 s2, s2.location());
mcimadamore@746 1802 return s2;
duke@1 1803 }
duke@1 1804 }
duke@1 1805 }
duke@1 1806 return null;
duke@1 1807 }
mcimadamore@59 1808 //WHERE
mcimadamore@59 1809 boolean checkCommonOverriderIn(Symbol s1, Symbol s2, Type site) {
mcimadamore@59 1810 Map<TypeSymbol,Type> supertypes = new HashMap<TypeSymbol,Type>();
mcimadamore@59 1811 Type st1 = types.memberType(site, s1);
mcimadamore@59 1812 Type st2 = types.memberType(site, s2);
mcimadamore@59 1813 closure(site, supertypes);
mcimadamore@59 1814 for (Type t : supertypes.values()) {
mcimadamore@59 1815 for (Scope.Entry e = t.tsym.members().lookup(s1.name); e.scope != null; e = e.next()) {
mcimadamore@59 1816 Symbol s3 = e.sym;
mcimadamore@59 1817 if (s3 == s1 || s3 == s2 || s3.kind != MTH || (s3.flags() & (BRIDGE|SYNTHETIC)) != 0) continue;
mcimadamore@59 1818 Type st3 = types.memberType(site,s3);
mcimadamore@59 1819 if (types.overrideEquivalent(st3, st1) && types.overrideEquivalent(st3, st2)) {
mcimadamore@59 1820 if (s3.owner == site.tsym) {
mcimadamore@59 1821 return true;
mcimadamore@59 1822 }
mcimadamore@59 1823 List<Type> tvars1 = st1.getTypeArguments();
mcimadamore@59 1824 List<Type> tvars2 = st2.getTypeArguments();
mcimadamore@59 1825 List<Type> tvars3 = st3.getTypeArguments();
mcimadamore@59 1826 Type rt1 = st1.getReturnType();
mcimadamore@59 1827 Type rt2 = st2.getReturnType();
mcimadamore@59 1828 Type rt13 = types.subst(st3.getReturnType(), tvars3, tvars1);
mcimadamore@59 1829 Type rt23 = types.subst(st3.getReturnType(), tvars3, tvars2);
mcimadamore@59 1830 boolean compat =
mcimadamore@59 1831 rt13.tag >= CLASS && rt23.tag >= CLASS &&
mcimadamore@59 1832 (types.covariantReturnType(rt13, rt1, Warner.noWarnings) &&
mcimadamore@59 1833 types.covariantReturnType(rt23, rt2, Warner.noWarnings));
mcimadamore@59 1834 if (compat)
mcimadamore@59 1835 return true;
mcimadamore@59 1836 }
mcimadamore@59 1837 }
mcimadamore@59 1838 }
mcimadamore@59 1839 return false;
mcimadamore@59 1840 }
duke@1 1841
duke@1 1842 /** Check that a given method conforms with any method it overrides.
duke@1 1843 * @param tree The tree from which positions are extracted
duke@1 1844 * for errors.
duke@1 1845 * @param m The overriding method.
duke@1 1846 */
duke@1 1847 void checkOverride(JCTree tree, MethodSymbol m) {
duke@1 1848 ClassSymbol origin = (ClassSymbol)m.owner;
duke@1 1849 if ((origin.flags() & ENUM) != 0 && names.finalize.equals(m.name))
duke@1 1850 if (m.overrides(syms.enumFinalFinalize, origin, types, false)) {
duke@1 1851 log.error(tree.pos(), "enum.no.finalize");
duke@1 1852 return;
duke@1 1853 }
mcimadamore@746 1854 for (Type t = origin.type; t.tag == CLASS;
duke@1 1855 t = types.supertype(t)) {
mcimadamore@746 1856 if (t != origin.type) {
mcimadamore@746 1857 checkOverride(tree, t, origin, m);
mcimadamore@746 1858 }
mcimadamore@746 1859 for (Type t2 : types.interfaces(t)) {
mcimadamore@746 1860 checkOverride(tree, t2, origin, m);
duke@1 1861 }
duke@1 1862 }
duke@1 1863 }
duke@1 1864
mcimadamore@746 1865 void checkOverride(JCTree tree, Type site, ClassSymbol origin, MethodSymbol m) {
mcimadamore@746 1866 TypeSymbol c = site.tsym;
mcimadamore@746 1867 Scope.Entry e = c.members().lookup(m.name);
mcimadamore@746 1868 while (e.scope != null) {
mcimadamore@746 1869 if (m.overrides(e.sym, origin, types, false)) {
mcimadamore@746 1870 if ((e.sym.flags() & ABSTRACT) == 0) {
mcimadamore@746 1871 checkOverride(tree, m, (MethodSymbol)e.sym, origin);
mcimadamore@746 1872 }
mcimadamore@746 1873 }
mcimadamore@746 1874 e = e.next();
mcimadamore@746 1875 }
mcimadamore@746 1876 }
mcimadamore@746 1877
mcimadamore@746 1878 private boolean checkNameClash(ClassSymbol origin, Symbol s1, Symbol s2) {
mcimadamore@858 1879 ClashFilter cf = new ClashFilter(origin.type);
mcimadamore@858 1880 return (cf.accepts(s1) &&
mcimadamore@858 1881 cf.accepts(s2) &&
mcimadamore@858 1882 types.hasSameArgs(s1.erasure(types), s2.erasure(types)));
mcimadamore@746 1883 }
mcimadamore@746 1884
mcimadamore@746 1885
duke@1 1886 /** Check that all abstract members of given class have definitions.
duke@1 1887 * @param pos Position to be used for error reporting.
duke@1 1888 * @param c The class.
duke@1 1889 */
duke@1 1890 void checkAllDefined(DiagnosticPosition pos, ClassSymbol c) {
duke@1 1891 try {
duke@1 1892 MethodSymbol undef = firstUndef(c, c);
duke@1 1893 if (undef != null) {
duke@1 1894 if ((c.flags() & ENUM) != 0 &&
duke@1 1895 types.supertype(c.type).tsym == syms.enumSym &&
duke@1 1896 (c.flags() & FINAL) == 0) {
duke@1 1897 // add the ABSTRACT flag to an enum
duke@1 1898 c.flags_field |= ABSTRACT;
duke@1 1899 } else {
duke@1 1900 MethodSymbol undef1 =
duke@1 1901 new MethodSymbol(undef.flags(), undef.name,
duke@1 1902 types.memberType(c.type, undef), undef.owner);
duke@1 1903 log.error(pos, "does.not.override.abstract",
duke@1 1904 c, undef1, undef1.location());
duke@1 1905 }
duke@1 1906 }
duke@1 1907 } catch (CompletionFailure ex) {
duke@1 1908 completionError(pos, ex);
duke@1 1909 }
duke@1 1910 }
duke@1 1911 //where
duke@1 1912 /** Return first abstract member of class `c' that is not defined
duke@1 1913 * in `impl', null if there is none.
duke@1 1914 */
duke@1 1915 private MethodSymbol firstUndef(ClassSymbol impl, ClassSymbol c) {
duke@1 1916 MethodSymbol undef = null;
duke@1 1917 // Do not bother to search in classes that are not abstract,
duke@1 1918 // since they cannot have abstract members.
duke@1 1919 if (c == impl || (c.flags() & (ABSTRACT | INTERFACE)) != 0) {
duke@1 1920 Scope s = c.members();
duke@1 1921 for (Scope.Entry e = s.elems;
duke@1 1922 undef == null && e != null;
duke@1 1923 e = e.sibling) {
duke@1 1924 if (e.sym.kind == MTH &&
duke@1 1925 (e.sym.flags() & (ABSTRACT|IPROXY)) == ABSTRACT) {
duke@1 1926 MethodSymbol absmeth = (MethodSymbol)e.sym;
duke@1 1927 MethodSymbol implmeth = absmeth.implementation(impl, types, true);
duke@1 1928 if (implmeth == null || implmeth == absmeth)
duke@1 1929 undef = absmeth;
duke@1 1930 }
duke@1 1931 }
duke@1 1932 if (undef == null) {
duke@1 1933 Type st = types.supertype(c.type);
duke@1 1934 if (st.tag == CLASS)
duke@1 1935 undef = firstUndef(impl, (ClassSymbol)st.tsym);
duke@1 1936 }
duke@1 1937 for (List<Type> l = types.interfaces(c.type);
duke@1 1938 undef == null && l.nonEmpty();
duke@1 1939 l = l.tail) {
duke@1 1940 undef = firstUndef(impl, (ClassSymbol)l.head.tsym);
duke@1 1941 }
duke@1 1942 }
duke@1 1943 return undef;
duke@1 1944 }
duke@1 1945
mcimadamore@690 1946 void checkNonCyclicDecl(JCClassDecl tree) {
mcimadamore@690 1947 CycleChecker cc = new CycleChecker();
mcimadamore@690 1948 cc.scan(tree);
mcimadamore@690 1949 if (!cc.errorFound && !cc.partialCheck) {
mcimadamore@690 1950 tree.sym.flags_field |= ACYCLIC;
mcimadamore@690 1951 }
mcimadamore@690 1952 }
mcimadamore@690 1953
mcimadamore@690 1954 class CycleChecker extends TreeScanner {
mcimadamore@690 1955
mcimadamore@690 1956 List<Symbol> seenClasses = List.nil();
mcimadamore@690 1957 boolean errorFound = false;
mcimadamore@690 1958 boolean partialCheck = false;
mcimadamore@690 1959
mcimadamore@690 1960 private void checkSymbol(DiagnosticPosition pos, Symbol sym) {
mcimadamore@690 1961 if (sym != null && sym.kind == TYP) {
mcimadamore@690 1962 Env<AttrContext> classEnv = enter.getEnv((TypeSymbol)sym);
mcimadamore@690 1963 if (classEnv != null) {
mcimadamore@690 1964 DiagnosticSource prevSource = log.currentSource();
mcimadamore@690 1965 try {
mcimadamore@690 1966 log.useSource(classEnv.toplevel.sourcefile);
mcimadamore@690 1967 scan(classEnv.tree);
mcimadamore@690 1968 }
mcimadamore@690 1969 finally {
mcimadamore@690 1970 log.useSource(prevSource.getFile());
mcimadamore@690 1971 }
mcimadamore@690 1972 } else if (sym.kind == TYP) {
mcimadamore@690 1973 checkClass(pos, sym, List.<JCTree>nil());
mcimadamore@690 1974 }
mcimadamore@690 1975 } else {
mcimadamore@690 1976 //not completed yet
mcimadamore@690 1977 partialCheck = true;
mcimadamore@690 1978 }
mcimadamore@690 1979 }
mcimadamore@690 1980
mcimadamore@690 1981 @Override
mcimadamore@690 1982 public void visitSelect(JCFieldAccess tree) {
mcimadamore@690 1983 super.visitSelect(tree);
mcimadamore@690 1984 checkSymbol(tree.pos(), tree.sym);
mcimadamore@690 1985 }
mcimadamore@690 1986
mcimadamore@690 1987 @Override
mcimadamore@690 1988 public void visitIdent(JCIdent tree) {
mcimadamore@690 1989 checkSymbol(tree.pos(), tree.sym);
mcimadamore@690 1990 }
mcimadamore@690 1991
mcimadamore@690 1992 @Override
mcimadamore@690 1993 public void visitTypeApply(JCTypeApply tree) {
mcimadamore@690 1994 scan(tree.clazz);
mcimadamore@690 1995 }
mcimadamore@690 1996
mcimadamore@690 1997 @Override
mcimadamore@690 1998 public void visitTypeArray(JCArrayTypeTree tree) {
mcimadamore@690 1999 scan(tree.elemtype);
mcimadamore@690 2000 }
mcimadamore@690 2001
mcimadamore@690 2002 @Override
mcimadamore@690 2003 public void visitClassDef(JCClassDecl tree) {
mcimadamore@690 2004 List<JCTree> supertypes = List.nil();
mcimadamore@690 2005 if (tree.getExtendsClause() != null) {
mcimadamore@690 2006 supertypes = supertypes.prepend(tree.getExtendsClause());
mcimadamore@690 2007 }
mcimadamore@690 2008 if (tree.getImplementsClause() != null) {
mcimadamore@690 2009 for (JCTree intf : tree.getImplementsClause()) {
mcimadamore@690 2010 supertypes = supertypes.prepend(intf);
mcimadamore@690 2011 }
mcimadamore@690 2012 }
mcimadamore@690 2013 checkClass(tree.pos(), tree.sym, supertypes);
mcimadamore@690 2014 }
mcimadamore@690 2015
mcimadamore@690 2016 void checkClass(DiagnosticPosition pos, Symbol c, List<JCTree> supertypes) {
mcimadamore@690 2017 if ((c.flags_field & ACYCLIC) != 0)
mcimadamore@690 2018 return;
mcimadamore@690 2019 if (seenClasses.contains(c)) {
mcimadamore@690 2020 errorFound = true;
mcimadamore@690 2021 noteCyclic(pos, (ClassSymbol)c);
mcimadamore@690 2022 } else if (!c.type.isErroneous()) {
mcimadamore@690 2023 try {
mcimadamore@690 2024 seenClasses = seenClasses.prepend(c);
mcimadamore@690 2025 if (c.type.tag == CLASS) {
mcimadamore@690 2026 if (supertypes.nonEmpty()) {
mcimadamore@690 2027 scan(supertypes);
mcimadamore@690 2028 }
mcimadamore@690 2029 else {
mcimadamore@690 2030 ClassType ct = (ClassType)c.type;
mcimadamore@690 2031 if (ct.supertype_field == null ||
mcimadamore@690 2032 ct.interfaces_field == null) {
mcimadamore@690 2033 //not completed yet
mcimadamore@690 2034 partialCheck = true;
mcimadamore@690 2035 return;
mcimadamore@690 2036 }
mcimadamore@690 2037 checkSymbol(pos, ct.supertype_field.tsym);
mcimadamore@690 2038 for (Type intf : ct.interfaces_field) {
mcimadamore@690 2039 checkSymbol(pos, intf.tsym);
mcimadamore@690 2040 }
mcimadamore@690 2041 }
mcimadamore@690 2042 if (c.owner.kind == TYP) {
mcimadamore@690 2043 checkSymbol(pos, c.owner);
mcimadamore@690 2044 }
mcimadamore@690 2045 }
mcimadamore@690 2046 } finally {
mcimadamore@690 2047 seenClasses = seenClasses.tail;
mcimadamore@690 2048 }
mcimadamore@690 2049 }
mcimadamore@690 2050 }
mcimadamore@690 2051 }
mcimadamore@690 2052
duke@1 2053 /** Check for cyclic references. Issue an error if the
duke@1 2054 * symbol of the type referred to has a LOCKED flag set.
duke@1 2055 *
duke@1 2056 * @param pos Position to be used for error reporting.
duke@1 2057 * @param t The type referred to.
duke@1 2058 */
duke@1 2059 void checkNonCyclic(DiagnosticPosition pos, Type t) {
duke@1 2060 checkNonCyclicInternal(pos, t);
duke@1 2061 }
duke@1 2062
duke@1 2063
duke@1 2064 void checkNonCyclic(DiagnosticPosition pos, TypeVar t) {
mcimadamore@236 2065 checkNonCyclic1(pos, t, List.<TypeVar>nil());
duke@1 2066 }
duke@1 2067
mcimadamore@236 2068 private void checkNonCyclic1(DiagnosticPosition pos, Type t, List<TypeVar> seen) {
duke@1 2069 final TypeVar tv;
mcimadamore@42 2070 if (t.tag == TYPEVAR && (t.tsym.flags() & UNATTRIBUTED) != 0)
mcimadamore@42 2071 return;
duke@1 2072 if (seen.contains(t)) {
duke@1 2073 tv = (TypeVar)t;
jjg@110 2074 tv.bound = types.createErrorType(t);
duke@1 2075 log.error(pos, "cyclic.inheritance", t);
duke@1 2076 } else if (t.tag == TYPEVAR) {
duke@1 2077 tv = (TypeVar)t;
mcimadamore@236 2078 seen = seen.prepend(tv);
duke@1 2079 for (Type b : types.getBounds(tv))
duke@1 2080 checkNonCyclic1(pos, b, seen);
duke@1 2081 }
duke@1 2082 }
duke@1 2083
duke@1 2084 /** Check for cyclic references. Issue an error if the
duke@1 2085 * symbol of the type referred to has a LOCKED flag set.
duke@1 2086 *
duke@1 2087 * @param pos Position to be used for error reporting.
duke@1 2088 * @param t The type referred to.
duke@1 2089 * @returns True if the check completed on all attributed classes
duke@1 2090 */
duke@1 2091 private boolean checkNonCyclicInternal(DiagnosticPosition pos, Type t) {
duke@1 2092 boolean complete = true; // was the check complete?
duke@1 2093 //- System.err.println("checkNonCyclicInternal("+t+");");//DEBUG
duke@1 2094 Symbol c = t.tsym;
duke@1 2095 if ((c.flags_field & ACYCLIC) != 0) return true;
duke@1 2096
duke@1 2097 if ((c.flags_field & LOCKED) != 0) {
duke@1 2098 noteCyclic(pos, (ClassSymbol)c);
duke@1 2099 } else if (!c.type.isErroneous()) {
duke@1 2100 try {
duke@1 2101 c.flags_field |= LOCKED;
duke@1 2102 if (c.type.tag == CLASS) {
duke@1 2103 ClassType clazz = (ClassType)c.type;
duke@1 2104 if (clazz.interfaces_field != null)
duke@1 2105 for (List<Type> l=clazz.interfaces_field; l.nonEmpty(); l=l.tail)
duke@1 2106 complete &= checkNonCyclicInternal(pos, l.head);
duke@1 2107 if (clazz.supertype_field != null) {
duke@1 2108 Type st = clazz.supertype_field;
duke@1 2109 if (st != null && st.tag == CLASS)
duke@1 2110 complete &= checkNonCyclicInternal(pos, st);
duke@1 2111 }
duke@1 2112 if (c.owner.kind == TYP)
duke@1 2113 complete &= checkNonCyclicInternal(pos, c.owner.type);
duke@1 2114 }
duke@1 2115 } finally {
duke@1 2116 c.flags_field &= ~LOCKED;
duke@1 2117 }
duke@1 2118 }
duke@1 2119 if (complete)
duke@1 2120 complete = ((c.flags_field & UNATTRIBUTED) == 0) && c.completer == null;
duke@1 2121 if (complete) c.flags_field |= ACYCLIC;
duke@1 2122 return complete;
duke@1 2123 }
duke@1 2124
duke@1 2125 /** Note that we found an inheritance cycle. */
duke@1 2126 private void noteCyclic(DiagnosticPosition pos, ClassSymbol c) {
duke@1 2127 log.error(pos, "cyclic.inheritance", c);
duke@1 2128 for (List<Type> l=types.interfaces(c.type); l.nonEmpty(); l=l.tail)
jjg@110 2129 l.head = types.createErrorType((ClassSymbol)l.head.tsym, Type.noType);
duke@1 2130 Type st = types.supertype(c.type);
duke@1 2131 if (st.tag == CLASS)
jjg@110 2132 ((ClassType)c.type).supertype_field = types.createErrorType((ClassSymbol)st.tsym, Type.noType);
jjg@110 2133 c.type = types.createErrorType(c, c.type);
duke@1 2134 c.flags_field |= ACYCLIC;
duke@1 2135 }
duke@1 2136
duke@1 2137 /** Check that all methods which implement some
duke@1 2138 * method conform to the method they implement.
duke@1 2139 * @param tree The class definition whose members are checked.
duke@1 2140 */
duke@1 2141 void checkImplementations(JCClassDecl tree) {
duke@1 2142 checkImplementations(tree, tree.sym);
duke@1 2143 }
duke@1 2144 //where
duke@1 2145 /** Check that all methods which implement some
duke@1 2146 * method in `ic' conform to the method they implement.
duke@1 2147 */
duke@1 2148 void checkImplementations(JCClassDecl tree, ClassSymbol ic) {
duke@1 2149 ClassSymbol origin = tree.sym;
duke@1 2150 for (List<Type> l = types.closure(ic.type); l.nonEmpty(); l = l.tail) {
duke@1 2151 ClassSymbol lc = (ClassSymbol)l.head.tsym;
duke@1 2152 if ((allowGenerics || origin != lc) && (lc.flags() & ABSTRACT) != 0) {
duke@1 2153 for (Scope.Entry e=lc.members().elems; e != null; e=e.sibling) {
duke@1 2154 if (e.sym.kind == MTH &&
duke@1 2155 (e.sym.flags() & (STATIC|ABSTRACT)) == ABSTRACT) {
duke@1 2156 MethodSymbol absmeth = (MethodSymbol)e.sym;
duke@1 2157 MethodSymbol implmeth = absmeth.implementation(origin, types, false);
duke@1 2158 if (implmeth != null && implmeth != absmeth &&
duke@1 2159 (implmeth.owner.flags() & INTERFACE) ==
duke@1 2160 (origin.flags() & INTERFACE)) {
duke@1 2161 // don't check if implmeth is in a class, yet
duke@1 2162 // origin is an interface. This case arises only
duke@1 2163 // if implmeth is declared in Object. The reason is
duke@1 2164 // that interfaces really don't inherit from
duke@1 2165 // Object it's just that the compiler represents
duke@1 2166 // things that way.
duke@1 2167 checkOverride(tree, implmeth, absmeth, origin);
duke@1 2168 }
duke@1 2169 }
duke@1 2170 }
duke@1 2171 }
duke@1 2172 }
duke@1 2173 }
duke@1 2174
duke@1 2175 /** Check that all abstract methods implemented by a class are
duke@1 2176 * mutually compatible.
duke@1 2177 * @param pos Position to be used for error reporting.
duke@1 2178 * @param c The class whose interfaces are checked.
duke@1 2179 */
duke@1 2180 void checkCompatibleSupertypes(DiagnosticPosition pos, Type c) {
duke@1 2181 List<Type> supertypes = types.interfaces(c);
duke@1 2182 Type supertype = types.supertype(c);
duke@1 2183 if (supertype.tag == CLASS &&
duke@1 2184 (supertype.tsym.flags() & ABSTRACT) != 0)
duke@1 2185 supertypes = supertypes.prepend(supertype);
duke@1 2186 for (List<Type> l = supertypes; l.nonEmpty(); l = l.tail) {
duke@1 2187 if (allowGenerics && !l.head.getTypeArguments().isEmpty() &&
duke@1 2188 !checkCompatibleAbstracts(pos, l.head, l.head, c))
duke@1 2189 return;
duke@1 2190 for (List<Type> m = supertypes; m != l; m = m.tail)
duke@1 2191 if (!checkCompatibleAbstracts(pos, l.head, m.head, c))
duke@1 2192 return;
duke@1 2193 }
duke@1 2194 checkCompatibleConcretes(pos, c);
duke@1 2195 }
duke@1 2196
mcimadamore@359 2197 void checkConflicts(DiagnosticPosition pos, Symbol sym, TypeSymbol c) {
mcimadamore@359 2198 for (Type ct = c.type; ct != Type.noType ; ct = types.supertype(ct)) {
mcimadamore@359 2199 for (Scope.Entry e = ct.tsym.members().lookup(sym.name); e.scope == ct.tsym.members(); e = e.next()) {
mcimadamore@359 2200 // VM allows methods and variables with differing types
mcimadamore@359 2201 if (sym.kind == e.sym.kind &&
mcimadamore@359 2202 types.isSameType(types.erasure(sym.type), types.erasure(e.sym.type)) &&
mcimadamore@359 2203 sym != e.sym &&
mcimadamore@359 2204 (sym.flags() & Flags.SYNTHETIC) != (e.sym.flags() & Flags.SYNTHETIC) &&
mcimadamore@608 2205 (sym.flags() & IPROXY) == 0 && (e.sym.flags() & IPROXY) == 0 &&
mcimadamore@359 2206 (sym.flags() & BRIDGE) == 0 && (e.sym.flags() & BRIDGE) == 0) {
mcimadamore@359 2207 syntheticError(pos, (e.sym.flags() & SYNTHETIC) == 0 ? e.sym : sym);
mcimadamore@359 2208 return;
mcimadamore@359 2209 }
mcimadamore@359 2210 }
mcimadamore@359 2211 }
mcimadamore@359 2212 }
mcimadamore@359 2213
mcimadamore@780 2214 /** Check that all non-override equivalent methods accessible from 'site'
mcimadamore@780 2215 * are mutually compatible (JLS 8.4.8/9.4.1).
mcimadamore@780 2216 *
mcimadamore@780 2217 * @param pos Position to be used for error reporting.
mcimadamore@780 2218 * @param site The class whose methods are checked.
mcimadamore@780 2219 * @param sym The method symbol to be checked.
mcimadamore@780 2220 */
mcimadamore@858 2221 void checkOverrideClashes(DiagnosticPosition pos, Type site, MethodSymbol sym) {
mcimadamore@858 2222 ClashFilter cf = new ClashFilter(site);
mcimadamore@1198 2223 //for each method m1 that is overridden (directly or indirectly)
mcimadamore@1198 2224 //by method 'sym' in 'site'...
mcimadamore@1198 2225 for (Symbol m1 : types.membersClosure(site, false).getElementsByName(sym.name, cf)) {
mcimadamore@1198 2226 if (!sym.overrides(m1, site.tsym, types, false)) continue;
mcimadamore@1198 2227 //...check each method m2 that is a member of 'site'
mcimadamore@1198 2228 for (Symbol m2 : types.membersClosure(site, false).getElementsByName(sym.name, cf)) {
mcimadamore@1198 2229 if (m2 == m1) continue;
mcimadamore@858 2230 //if (i) the signature of 'sym' is not a subsignature of m1 (seen as
mcimadamore@858 2231 //a member of 'site') and (ii) m1 has the same erasure as m2, issue an error
mcimadamore@1198 2232 if (!types.isSubSignature(sym.type, types.memberType(site, m2), false) &&
mcimadamore@1198 2233 types.hasSameArgs(m2.erasure(types), m1.erasure(types))) {
mcimadamore@858 2234 sym.flags_field |= CLASH;
mcimadamore@1198 2235 String key = m1 == sym ?
mcimadamore@858 2236 "name.clash.same.erasure.no.override" :
mcimadamore@858 2237 "name.clash.same.erasure.no.override.1";
mcimadamore@858 2238 log.error(pos,
mcimadamore@858 2239 key,
mcimadamore@858 2240 sym, sym.location(),
mcimadamore@1198 2241 m2, m2.location(),
mcimadamore@1198 2242 m1, m1.location());
mcimadamore@858 2243 return;
mcimadamore@858 2244 }
mcimadamore@780 2245 }
mcimadamore@780 2246 }
mcimadamore@780 2247 }
mcimadamore@780 2248
mcimadamore@877 2249
mcimadamore@877 2250
mcimadamore@858 2251 /** Check that all static methods accessible from 'site' are
mcimadamore@858 2252 * mutually compatible (JLS 8.4.8).
mcimadamore@858 2253 *
mcimadamore@858 2254 * @param pos Position to be used for error reporting.
mcimadamore@858 2255 * @param site The class whose methods are checked.
mcimadamore@858 2256 * @param sym The method symbol to be checked.
mcimadamore@780 2257 */
mcimadamore@858 2258 void checkHideClashes(DiagnosticPosition pos, Type site, MethodSymbol sym) {
mcimadamore@780 2259 ClashFilter cf = new ClashFilter(site);
mcimadamore@858 2260 //for each method m1 that is a member of 'site'...
mcimadamore@1015 2261 for (Symbol s : types.membersClosure(site, true).getElementsByName(sym.name, cf)) {
mcimadamore@858 2262 //if (i) the signature of 'sym' is not a subsignature of m1 (seen as
mcimadamore@858 2263 //a member of 'site') and (ii) 'sym' has the same erasure as m1, issue an error
mcimadamore@907 2264 if (!types.isSubSignature(sym.type, types.memberType(site, s), false) &&
mcimadamore@877 2265 types.hasSameArgs(s.erasure(types), sym.erasure(types))) {
mcimadamore@780 2266 log.error(pos,
mcimadamore@858 2267 "name.clash.same.erasure.no.hide",
mcimadamore@858 2268 sym, sym.location(),
mcimadamore@877 2269 s, s.location());
mcimadamore@858 2270 return;
mcimadamore@858 2271 }
mcimadamore@858 2272 }
mcimadamore@858 2273 }
mcimadamore@780 2274
mcimadamore@858 2275 //where
mcimadamore@858 2276 private class ClashFilter implements Filter<Symbol> {
mcimadamore@780 2277
mcimadamore@858 2278 Type site;
mcimadamore@780 2279
mcimadamore@858 2280 ClashFilter(Type site) {
mcimadamore@858 2281 this.site = site;
mcimadamore@858 2282 }
mcimadamore@858 2283
mcimadamore@858 2284 boolean shouldSkip(Symbol s) {
mcimadamore@858 2285 return (s.flags() & CLASH) != 0 &&
mcimadamore@858 2286 s.owner == site.tsym;
mcimadamore@858 2287 }
mcimadamore@858 2288
mcimadamore@858 2289 public boolean accepts(Symbol s) {
mcimadamore@858 2290 return s.kind == MTH &&
mcimadamore@858 2291 (s.flags() & SYNTHETIC) == 0 &&
mcimadamore@858 2292 !shouldSkip(s) &&
mcimadamore@858 2293 s.isInheritedIn(site.tsym, types) &&
mcimadamore@858 2294 !s.isConstructor();
mcimadamore@858 2295 }
mcimadamore@858 2296 }
mcimadamore@780 2297
mcimadamore@359 2298 /** Report a conflict between a user symbol and a synthetic symbol.
mcimadamore@359 2299 */
mcimadamore@359 2300 private void syntheticError(DiagnosticPosition pos, Symbol sym) {
mcimadamore@359 2301 if (!sym.type.isErroneous()) {
mcimadamore@359 2302 if (warnOnSyntheticConflicts) {
mcimadamore@359 2303 log.warning(pos, "synthetic.name.conflict", sym, sym.location());
mcimadamore@359 2304 }
mcimadamore@359 2305 else {
mcimadamore@359 2306 log.error(pos, "synthetic.name.conflict", sym, sym.location());
mcimadamore@359 2307 }
mcimadamore@359 2308 }
mcimadamore@359 2309 }
mcimadamore@359 2310
duke@1 2311 /** Check that class c does not implement directly or indirectly
duke@1 2312 * the same parameterized interface with two different argument lists.
duke@1 2313 * @param pos Position to be used for error reporting.
duke@1 2314 * @param type The type whose interfaces are checked.
duke@1 2315 */
duke@1 2316 void checkClassBounds(DiagnosticPosition pos, Type type) {
duke@1 2317 checkClassBounds(pos, new HashMap<TypeSymbol,Type>(), type);
duke@1 2318 }
duke@1 2319 //where
duke@1 2320 /** Enter all interfaces of type `type' into the hash table `seensofar'
duke@1 2321 * with their class symbol as key and their type as value. Make
duke@1 2322 * sure no class is entered with two different types.
duke@1 2323 */
duke@1 2324 void checkClassBounds(DiagnosticPosition pos,
duke@1 2325 Map<TypeSymbol,Type> seensofar,
duke@1 2326 Type type) {
duke@1 2327 if (type.isErroneous()) return;
duke@1 2328 for (List<Type> l = types.interfaces(type); l.nonEmpty(); l = l.tail) {
duke@1 2329 Type it = l.head;
duke@1 2330 Type oldit = seensofar.put(it.tsym, it);
duke@1 2331 if (oldit != null) {
duke@1 2332 List<Type> oldparams = oldit.allparams();
duke@1 2333 List<Type> newparams = it.allparams();
duke@1 2334 if (!types.containsTypeEquivalent(oldparams, newparams))
duke@1 2335 log.error(pos, "cant.inherit.diff.arg",
duke@1 2336 it.tsym, Type.toString(oldparams),
duke@1 2337 Type.toString(newparams));
duke@1 2338 }
duke@1 2339 checkClassBounds(pos, seensofar, it);
duke@1 2340 }
duke@1 2341 Type st = types.supertype(type);
duke@1 2342 if (st != null) checkClassBounds(pos, seensofar, st);
duke@1 2343 }
duke@1 2344
duke@1 2345 /** Enter interface into into set.
duke@1 2346 * If it existed already, issue a "repeated interface" error.
duke@1 2347 */
duke@1 2348 void checkNotRepeated(DiagnosticPosition pos, Type it, Set<Type> its) {
duke@1 2349 if (its.contains(it))
duke@1 2350 log.error(pos, "repeated.interface");
duke@1 2351 else {
duke@1 2352 its.add(it);
duke@1 2353 }
duke@1 2354 }
duke@1 2355
duke@1 2356 /* *************************************************************************
duke@1 2357 * Check annotations
duke@1 2358 **************************************************************************/
duke@1 2359
mcimadamore@629 2360 /**
mcimadamore@634 2361 * Recursively validate annotations values
mcimadamore@629 2362 */
mcimadamore@634 2363 void validateAnnotationTree(JCTree tree) {
mcimadamore@634 2364 class AnnotationValidator extends TreeScanner {
mcimadamore@629 2365 @Override
mcimadamore@629 2366 public void visitAnnotation(JCAnnotation tree) {
jjg@1017 2367 if (!tree.type.isErroneous()) {
jjg@1017 2368 super.visitAnnotation(tree);
jjg@1017 2369 validateAnnotation(tree);
jjg@1017 2370 }
mcimadamore@629 2371 }
mcimadamore@629 2372 }
mcimadamore@634 2373 tree.accept(new AnnotationValidator());
mcimadamore@629 2374 }
mcimadamore@629 2375
duke@1 2376 /** Annotation types are restricted to primitives, String, an
duke@1 2377 * enum, an annotation, Class, Class<?>, Class<? extends
duke@1 2378 * Anything>, arrays of the preceding.
duke@1 2379 */
duke@1 2380 void validateAnnotationType(JCTree restype) {
duke@1 2381 // restype may be null if an error occurred, so don't bother validating it
duke@1 2382 if (restype != null) {
duke@1 2383 validateAnnotationType(restype.pos(), restype.type);
duke@1 2384 }
duke@1 2385 }
duke@1 2386
duke@1 2387 void validateAnnotationType(DiagnosticPosition pos, Type type) {
duke@1 2388 if (type.isPrimitive()) return;
duke@1 2389 if (types.isSameType(type, syms.stringType)) return;
duke@1 2390 if ((type.tsym.flags() & Flags.ENUM) != 0) return;
duke@1 2391 if ((type.tsym.flags() & Flags.ANNOTATION) != 0) return;
duke@1 2392 if (types.lowerBound(type).tsym == syms.classType.tsym) return;
duke@1 2393 if (types.isArray(type) && !types.isArray(types.elemtype(type))) {
duke@1 2394 validateAnnotationType(pos, types.elemtype(type));
duke@1 2395 return;
duke@1 2396 }
duke@1 2397 log.error(pos, "invalid.annotation.member.type");
duke@1 2398 }
duke@1 2399
duke@1 2400 /**
duke@1 2401 * "It is also a compile-time error if any method declared in an
duke@1 2402 * annotation type has a signature that is override-equivalent to
duke@1 2403 * that of any public or protected method declared in class Object
duke@1 2404 * or in the interface annotation.Annotation."
duke@1 2405 *
jjh@972 2406 * @jls 9.6 Annotation Types
duke@1 2407 */
duke@1 2408 void validateAnnotationMethod(DiagnosticPosition pos, MethodSymbol m) {
duke@1 2409 for (Type sup = syms.annotationType; sup.tag == CLASS; sup = types.supertype(sup)) {
duke@1 2410 Scope s = sup.tsym.members();
duke@1 2411 for (Scope.Entry e = s.lookup(m.name); e.scope != null; e = e.next()) {
duke@1 2412 if (e.sym.kind == MTH &&
duke@1 2413 (e.sym.flags() & (PUBLIC | PROTECTED)) != 0 &&
duke@1 2414 types.overrideEquivalent(m.type, e.sym.type))
duke@1 2415 log.error(pos, "intf.annotation.member.clash", e.sym, sup);
duke@1 2416 }
duke@1 2417 }
duke@1 2418 }
duke@1 2419
duke@1 2420 /** Check the annotations of a symbol.
duke@1 2421 */
duke@1 2422 public void validateAnnotations(List<JCAnnotation> annotations, Symbol s) {
duke@1 2423 for (JCAnnotation a : annotations)
duke@1 2424 validateAnnotation(a, s);
duke@1 2425 }
duke@1 2426
duke@1 2427 /** Check an annotation of a symbol.
duke@1 2428 */
jfranck@1313 2429 private void validateAnnotation(JCAnnotation a, Symbol s) {
mcimadamore@634 2430 validateAnnotationTree(a);
duke@1 2431
duke@1 2432 if (!annotationApplicable(a, s))
duke@1 2433 log.error(a.pos(), "annotation.type.not.applicable");
duke@1 2434
duke@1 2435 if (a.annotationType.type.tsym == syms.overrideType.tsym) {
duke@1 2436 if (!isOverrider(s))
duke@1 2437 log.error(a.pos(), "method.does.not.override.superclass");
duke@1 2438 }
duke@1 2439 }
duke@1 2440
jfranck@1313 2441 /**
jfranck@1313 2442 * Validate the proposed container 'containedBy' on the
jfranck@1313 2443 * annotation type symbol 's'. Report errors at position
jfranck@1313 2444 * 'pos'.
jfranck@1313 2445 *
jfranck@1313 2446 * @param s The (annotation)type declaration annotated with a @ContainedBy
jfranck@1313 2447 * @param containerAnno the @ContainedBy on 's'
jfranck@1313 2448 * @param pos where to report errors
jfranck@1313 2449 */
jfranck@1313 2450 public void validateContainedBy(TypeSymbol s, Attribute.Compound containedBy, DiagnosticPosition pos) {
jfranck@1313 2451 Assert.check(types.isSameType(containedBy.type, syms.containedByType));
jfranck@1313 2452
jfranck@1313 2453 Type t = null;
jfranck@1313 2454 List<Pair<MethodSymbol,Attribute>> l = containedBy.values;
jfranck@1313 2455 if (!l.isEmpty()) {
jfranck@1313 2456 Assert.check(l.head.fst.name == names.value);
jfranck@1313 2457 t = ((Attribute.Class)l.head.snd).getValue();
jfranck@1313 2458 }
jfranck@1313 2459
jfranck@1313 2460 if (t == null) {
jfranck@1313 2461 log.error(pos, "invalid.container.wrong.containedby", s, containedBy);
jfranck@1313 2462 return;
jfranck@1313 2463 }
jfranck@1313 2464
jfranck@1313 2465 validateHasContainerFor(t.tsym, s, pos);
jfranck@1313 2466 validateRetention(t.tsym, s, pos);
jfranck@1313 2467 validateDocumented(t.tsym, s, pos);
jfranck@1313 2468 validateInherited(t.tsym, s, pos);
jfranck@1313 2469 validateTarget(t.tsym, s, pos);
jfranck@1313 2470 }
jfranck@1313 2471
jfranck@1313 2472 /**
jfranck@1313 2473 * Validate the proposed container 'containerFor' on the
jfranck@1313 2474 * annotation type symbol 's'. Report errors at position
jfranck@1313 2475 * 'pos'.
jfranck@1313 2476 *
jfranck@1313 2477 * @param s The (annotation)type declaration annotated with a @ContainerFor
jfranck@1313 2478 * @param containerFor the @ContainedFor on 's'
jfranck@1313 2479 * @param pos where to report errors
jfranck@1313 2480 */
jfranck@1313 2481 public void validateContainerFor(TypeSymbol s, Attribute.Compound containerFor, DiagnosticPosition pos) {
jfranck@1313 2482 Assert.check(types.isSameType(containerFor.type, syms.containerForType));
jfranck@1313 2483
jfranck@1313 2484 Type t = null;
jfranck@1313 2485 List<Pair<MethodSymbol,Attribute>> l = containerFor.values;
jfranck@1313 2486 if (!l.isEmpty()) {
jfranck@1313 2487 Assert.check(l.head.fst.name == names.value);
jfranck@1313 2488 t = ((Attribute.Class)l.head.snd).getValue();
jfranck@1313 2489 }
jfranck@1313 2490
jfranck@1313 2491 if (t == null) {
jfranck@1313 2492 log.error(pos, "invalid.container.wrong.containerfor", s, containerFor);
jfranck@1313 2493 return;
jfranck@1313 2494 }
jfranck@1313 2495
jfranck@1313 2496 validateHasContainedBy(t.tsym, s, pos);
jfranck@1313 2497 }
jfranck@1313 2498
jfranck@1313 2499 private void validateHasContainedBy(TypeSymbol container, TypeSymbol contained, DiagnosticPosition pos) {
jfranck@1313 2500 Attribute.Compound containedBy = container.attribute(syms.containedByType.tsym);
jfranck@1313 2501
jfranck@1313 2502 if (containedBy == null) {
jfranck@1313 2503 log.error(pos, "invalid.container.no.containedby", container, syms.containedByType.tsym);
jfranck@1313 2504 return;
jfranck@1313 2505 }
jfranck@1313 2506
jfranck@1313 2507 Type t = null;
jfranck@1313 2508 List<Pair<MethodSymbol,Attribute>> l = containedBy.values;
jfranck@1313 2509 if (!l.isEmpty()) {
jfranck@1313 2510 Assert.check(l.head.fst.name == names.value);
jfranck@1313 2511 t = ((Attribute.Class)l.head.snd).getValue();
jfranck@1313 2512 }
jfranck@1313 2513
jfranck@1313 2514 if (t == null) {
jfranck@1313 2515 log.error(pos, "invalid.container.wrong.containedby", container, contained);
jfranck@1313 2516 return;
jfranck@1313 2517 }
jfranck@1313 2518
jfranck@1313 2519 if (!types.isSameType(t, contained.type))
jfranck@1313 2520 log.error(pos, "invalid.container.wrong.containedby", t.tsym, contained);
jfranck@1313 2521 }
jfranck@1313 2522
jfranck@1313 2523 private void validateHasContainerFor(TypeSymbol container, TypeSymbol contained, DiagnosticPosition pos) {
jfranck@1313 2524 Attribute.Compound containerFor = container.attribute(syms.containerForType.tsym);
jfranck@1313 2525
jfranck@1313 2526 if (containerFor == null) {
jfranck@1313 2527 log.error(pos, "invalid.container.no.containerfor", container, syms.containerForType.tsym);
jfranck@1313 2528 return;
jfranck@1313 2529 }
jfranck@1313 2530
jfranck@1313 2531 Type t = null;
jfranck@1313 2532 List<Pair<MethodSymbol,Attribute>> l = containerFor.values;
jfranck@1313 2533 if (!l.isEmpty()) {
jfranck@1313 2534 Assert.check(l.head.fst.name == names.value);
jfranck@1313 2535 t = ((Attribute.Class)l.head.snd).getValue();
jfranck@1313 2536 }
jfranck@1313 2537
jfranck@1313 2538 if (t == null) {
jfranck@1313 2539 log.error(pos, "invalid.container.wrong.containerfor", container, contained);
jfranck@1313 2540 return;
jfranck@1313 2541 }
jfranck@1313 2542
jfranck@1313 2543 if (!types.isSameType(t, contained.type))
jfranck@1313 2544 log.error(pos, "invalid.container.wrong.containerfor", t.tsym, contained);
jfranck@1313 2545 }
jfranck@1313 2546
jfranck@1313 2547 private void validateRetention(Symbol container, Symbol contained, DiagnosticPosition pos) {
jfranck@1313 2548 Attribute.RetentionPolicy containerRetention = types.getRetention(container);
jfranck@1313 2549 Attribute.RetentionPolicy containedRetention = types.getRetention(contained);
jfranck@1313 2550
jfranck@1313 2551 boolean error = false;
jfranck@1313 2552 switch (containedRetention) {
jfranck@1313 2553 case RUNTIME:
jfranck@1313 2554 if (containerRetention != Attribute.RetentionPolicy.RUNTIME) {
jfranck@1313 2555 error = true;
jfranck@1313 2556 }
jfranck@1313 2557 break;
jfranck@1313 2558 case CLASS:
jfranck@1313 2559 if (containerRetention == Attribute.RetentionPolicy.SOURCE) {
jfranck@1313 2560 error = true;
jfranck@1313 2561 }
jfranck@1313 2562 }
jfranck@1313 2563 if (error ) {
jfranck@1313 2564 log.error(pos, "invalid.containedby.annotation.retention",
jfranck@1313 2565 container, containerRetention,
jfranck@1313 2566 contained, containedRetention);
jfranck@1313 2567 }
jfranck@1313 2568 }
jfranck@1313 2569
jfranck@1313 2570 private void validateDocumented(Symbol container, Symbol contained, DiagnosticPosition pos) {
jfranck@1313 2571 if (contained.attribute(syms.documentedType.tsym) != null) {
jfranck@1313 2572 if (container.attribute(syms.documentedType.tsym) == null) {
jfranck@1313 2573 log.error(pos, "invalid.containedby.annotation.not.documented", container, contained);
jfranck@1313 2574 }
jfranck@1313 2575 }
jfranck@1313 2576 }
jfranck@1313 2577
jfranck@1313 2578 private void validateInherited(Symbol container, Symbol contained, DiagnosticPosition pos) {
jfranck@1313 2579 if (contained.attribute(syms.inheritedType.tsym) != null) {
jfranck@1313 2580 if (container.attribute(syms.inheritedType.tsym) == null) {
jfranck@1313 2581 log.error(pos, "invalid.containedby.annotation.not.inherited", container, contained);
jfranck@1313 2582 }
jfranck@1313 2583 }
jfranck@1313 2584 }
jfranck@1313 2585
jfranck@1313 2586 private void validateTarget(Symbol container, Symbol contained, DiagnosticPosition pos) {
jfranck@1313 2587 Attribute.Array containedTarget = getAttributeTargetAttribute(contained);
jfranck@1313 2588
jfranck@1313 2589 // If contained has no Target, we are done
jfranck@1313 2590 if (containedTarget == null) {
jfranck@1313 2591 return;
jfranck@1313 2592 }
jfranck@1313 2593
jfranck@1313 2594 // If contained has Target m1, container must have a Target
jfranck@1313 2595 // annotation, m2, and m2 must be a subset of m1. (This is
jfranck@1313 2596 // trivially true if contained has no target as per above).
jfranck@1313 2597
jfranck@1313 2598 // contained has target, but container has not, error
jfranck@1313 2599 Attribute.Array containerTarget = getAttributeTargetAttribute(container);
jfranck@1313 2600 if (containerTarget == null) {
jfranck@1313 2601 log.error(pos, "invalid.containedby.annotation.incompatible.target", container, contained);
jfranck@1313 2602 return;
jfranck@1313 2603 }
jfranck@1313 2604
jfranck@1313 2605 Set<Name> containerTargets = new HashSet<Name>();
jfranck@1313 2606 for (Attribute app : containerTarget.values) {
jfranck@1313 2607 if (!(app instanceof Attribute.Enum)) {
jfranck@1313 2608 continue; // recovery
jfranck@1313 2609 }
jfranck@1313 2610 Attribute.Enum e = (Attribute.Enum)app;
jfranck@1313 2611 containerTargets.add(e.value.name);
jfranck@1313 2612 }
jfranck@1313 2613
jfranck@1313 2614 Set<Name> containedTargets = new HashSet<Name>();
jfranck@1313 2615 for (Attribute app : containedTarget.values) {
jfranck@1313 2616 if (!(app instanceof Attribute.Enum)) {
jfranck@1313 2617 continue; // recovery
jfranck@1313 2618 }
jfranck@1313 2619 Attribute.Enum e = (Attribute.Enum)app;
jfranck@1313 2620 containedTargets.add(e.value.name);
jfranck@1313 2621 }
jfranck@1313 2622
jfranck@1313 2623 if (!isTargetSubset(containedTargets, containerTargets)) {
jfranck@1313 2624 log.error(pos, "invalid.containedby.annotation.incompatible.target", container, contained);
jfranck@1313 2625 }
jfranck@1313 2626 }
jfranck@1313 2627
jfranck@1313 2628 /** Checks that t is a subset of s, with respect to ElementType
jfranck@1313 2629 * semantics, specifically {ANNOTATION_TYPE} is a subset of {TYPE}
jfranck@1313 2630 */
jfranck@1313 2631 private boolean isTargetSubset(Set<Name> s, Set<Name> t) {
jfranck@1313 2632 // Check that all elements in t are present in s
jfranck@1313 2633 for (Name n2 : t) {
jfranck@1313 2634 boolean currentElementOk = false;
jfranck@1313 2635 for (Name n1 : s) {
jfranck@1313 2636 if (n1 == n2) {
jfranck@1313 2637 currentElementOk = true;
jfranck@1313 2638 break;
jfranck@1313 2639 } else if (n1 == names.TYPE && n2 == names.ANNOTATION_TYPE) {
jfranck@1313 2640 currentElementOk = true;
jfranck@1313 2641 break;
jfranck@1313 2642 }
jfranck@1313 2643 }
jfranck@1313 2644 if (!currentElementOk)
jfranck@1313 2645 return false;
jfranck@1313 2646 }
jfranck@1313 2647 return true;
jfranck@1313 2648 }
jfranck@1313 2649
duke@1 2650 /** Is s a method symbol that overrides a method in a superclass? */
duke@1 2651 boolean isOverrider(Symbol s) {
duke@1 2652 if (s.kind != MTH || s.isStatic())
duke@1 2653 return false;
duke@1 2654 MethodSymbol m = (MethodSymbol)s;
duke@1 2655 TypeSymbol owner = (TypeSymbol)m.owner;
duke@1 2656 for (Type sup : types.closure(owner.type)) {
duke@1 2657 if (sup == owner.type)
duke@1 2658 continue; // skip "this"
duke@1 2659 Scope scope = sup.tsym.members();
duke@1 2660 for (Scope.Entry e = scope.lookup(m.name); e.scope != null; e = e.next()) {
duke@1 2661 if (!e.sym.isStatic() && m.overrides(e.sym, owner, types, true))
duke@1 2662 return true;
duke@1 2663 }
duke@1 2664 }
duke@1 2665 return false;
duke@1 2666 }
duke@1 2667
duke@1 2668 /** Is the annotation applicable to the symbol? */
duke@1 2669 boolean annotationApplicable(JCAnnotation a, Symbol s) {
jfranck@1313 2670 Attribute.Array arr = getAttributeTargetAttribute(a.annotationType.type.tsym);
jfranck@1313 2671 if (arr == null) {
jfranck@1313 2672 return true;
jfranck@1313 2673 }
duke@1 2674 for (Attribute app : arr.values) {
duke@1 2675 if (!(app instanceof Attribute.Enum)) return true; // recovery
duke@1 2676 Attribute.Enum e = (Attribute.Enum) app;
duke@1 2677 if (e.value.name == names.TYPE)
duke@1 2678 { if (s.kind == TYP) return true; }
duke@1 2679 else if (e.value.name == names.FIELD)
duke@1 2680 { if (s.kind == VAR && s.owner.kind != MTH) return true; }
duke@1 2681 else if (e.value.name == names.METHOD)
duke@1 2682 { if (s.kind == MTH && !s.isConstructor()) return true; }
duke@1 2683 else if (e.value.name == names.PARAMETER)
duke@1 2684 { if (s.kind == VAR &&
duke@1 2685 s.owner.kind == MTH &&
duke@1 2686 (s.flags() & PARAMETER) != 0)
duke@1 2687 return true;
duke@1 2688 }
duke@1 2689 else if (e.value.name == names.CONSTRUCTOR)
duke@1 2690 { if (s.kind == MTH && s.isConstructor()) return true; }
duke@1 2691 else if (e.value.name == names.LOCAL_VARIABLE)
duke@1 2692 { if (s.kind == VAR && s.owner.kind == MTH &&
duke@1 2693 (s.flags() & PARAMETER) == 0)
duke@1 2694 return true;
duke@1 2695 }
duke@1 2696 else if (e.value.name == names.ANNOTATION_TYPE)
duke@1 2697 { if (s.kind == TYP && (s.flags() & ANNOTATION) != 0)
duke@1 2698 return true;
duke@1 2699 }
duke@1 2700 else if (e.value.name == names.PACKAGE)
duke@1 2701 { if (s.kind == PCK) return true; }
jjg@308 2702 else if (e.value.name == names.TYPE_USE)
jjg@308 2703 { if (s.kind == TYP ||
jjg@308 2704 s.kind == VAR ||
jjg@308 2705 (s.kind == MTH && !s.isConstructor() &&
jjg@308 2706 s.type.getReturnType().tag != VOID))
jjg@308 2707 return true;
jjg@308 2708 }
duke@1 2709 else
duke@1 2710 return true; // recovery
duke@1 2711 }
duke@1 2712 return false;
duke@1 2713 }
duke@1 2714
jfranck@1313 2715
jfranck@1313 2716 Attribute.Array getAttributeTargetAttribute(Symbol s) {
jfranck@1313 2717 Attribute.Compound atTarget =
jfranck@1313 2718 s.attribute(syms.annotationTargetType.tsym);
jfranck@1313 2719 if (atTarget == null) return null; // ok, is applicable
jfranck@1313 2720 Attribute atValue = atTarget.member(names.value);
jfranck@1313 2721 if (!(atValue instanceof Attribute.Array)) return null; // error recovery
jfranck@1313 2722 return (Attribute.Array) atValue;
jfranck@1313 2723 }
jfranck@1313 2724
duke@1 2725 /** Check an annotation value.
duke@1 2726 */
duke@1 2727 public void validateAnnotation(JCAnnotation a) {
mcimadamore@632 2728 // collect an inventory of the members (sorted alphabetically)
mcimadamore@632 2729 Set<MethodSymbol> members = new TreeSet<MethodSymbol>(new Comparator<Symbol>() {
mcimadamore@632 2730 public int compare(Symbol t, Symbol t1) {
mcimadamore@632 2731 return t.name.compareTo(t1.name);
mcimadamore@632 2732 }
mcimadamore@632 2733 });
duke@1 2734 for (Scope.Entry e = a.annotationType.type.tsym.members().elems;
duke@1 2735 e != null;
duke@1 2736 e = e.sibling)
duke@1 2737 if (e.sym.kind == MTH)
duke@1 2738 members.add((MethodSymbol) e.sym);
duke@1 2739
duke@1 2740 // count them off as they're annotated
duke@1 2741 for (JCTree arg : a.args) {
jjg@1127 2742 if (!arg.hasTag(ASSIGN)) continue; // recovery
duke@1 2743 JCAssign assign = (JCAssign) arg;
duke@1 2744 Symbol m = TreeInfo.symbol(assign.lhs);
duke@1 2745 if (m == null || m.type.isErroneous()) continue;
duke@1 2746 if (!members.remove(m))
jjg@479 2747 log.error(assign.lhs.pos(), "duplicate.annotation.member.value",
duke@1 2748 m.name, a.type);
duke@1 2749 }
duke@1 2750
duke@1 2751 // all the remaining ones better have default values
mcimadamore@632 2752 ListBuffer<Name> missingDefaults = ListBuffer.lb();
mcimadamore@632 2753 for (MethodSymbol m : members) {
mcimadamore@632 2754 if (m.defaultValue == null && !m.type.isErroneous()) {
mcimadamore@632 2755 missingDefaults.append(m.name);
mcimadamore@632 2756 }
mcimadamore@632 2757 }
mcimadamore@632 2758 if (missingDefaults.nonEmpty()) {
mcimadamore@632 2759 String key = (missingDefaults.size() > 1)
mcimadamore@632 2760 ? "annotation.missing.default.value.1"
mcimadamore@632 2761 : "annotation.missing.default.value";
mcimadamore@632 2762 log.error(a.pos(), key, a.type, missingDefaults);
mcimadamore@632 2763 }
duke@1 2764
duke@1 2765 // special case: java.lang.annotation.Target must not have
duke@1 2766 // repeated values in its value member
duke@1 2767 if (a.annotationType.type.tsym != syms.annotationTargetType.tsym ||
duke@1 2768 a.args.tail == null)
duke@1 2769 return;
duke@1 2770
jjg@1127 2771 if (!a.args.head.hasTag(ASSIGN)) return; // error recovery
duke@1 2772 JCAssign assign = (JCAssign) a.args.head;
duke@1 2773 Symbol m = TreeInfo.symbol(assign.lhs);
duke@1 2774 if (m.name != names.value) return;
duke@1 2775 JCTree rhs = assign.rhs;
jjg@1127 2776 if (!rhs.hasTag(NEWARRAY)) return;
duke@1 2777 JCNewArray na = (JCNewArray) rhs;
duke@1 2778 Set<Symbol> targets = new HashSet<Symbol>();
duke@1 2779 for (JCTree elem : na.elems) {
duke@1 2780 if (!targets.add(TreeInfo.symbol(elem))) {
duke@1 2781 log.error(elem.pos(), "repeated.annotation.target");
duke@1 2782 }
duke@1 2783 }
duke@1 2784 }
duke@1 2785
duke@1 2786 void checkDeprecatedAnnotation(DiagnosticPosition pos, Symbol s) {
duke@1 2787 if (allowAnnotations &&
mcimadamore@795 2788 lint.isEnabled(LintCategory.DEP_ANN) &&
duke@1 2789 (s.flags() & DEPRECATED) != 0 &&
duke@1 2790 !syms.deprecatedType.isErroneous() &&
duke@1 2791 s.attribute(syms.deprecatedType.tsym) == null) {
mcimadamore@795 2792 log.warning(LintCategory.DEP_ANN,
jjg@612 2793 pos, "missing.deprecated.annotation");
duke@1 2794 }
duke@1 2795 }
duke@1 2796
mcimadamore@852 2797 void checkDeprecated(final DiagnosticPosition pos, final Symbol other, final Symbol s) {
mcimadamore@852 2798 if ((s.flags() & DEPRECATED) != 0 &&
mcimadamore@852 2799 (other.flags() & DEPRECATED) == 0 &&
mcimadamore@852 2800 s.outermostClass() != other.outermostClass()) {
mcimadamore@852 2801 deferredLintHandler.report(new DeferredLintHandler.LintLogger() {
mcimadamore@852 2802 @Override
mcimadamore@852 2803 public void report() {
mcimadamore@852 2804 warnDeprecated(pos, s);
mcimadamore@852 2805 }
mcimadamore@852 2806 });
jjg@1157 2807 }
mcimadamore@852 2808 }
mcimadamore@852 2809
mcimadamore@852 2810 void checkSunAPI(final DiagnosticPosition pos, final Symbol s) {
mcimadamore@852 2811 if ((s.flags() & PROPRIETARY) != 0) {
mcimadamore@852 2812 deferredLintHandler.report(new DeferredLintHandler.LintLogger() {
mcimadamore@852 2813 public void report() {
mcimadamore@852 2814 if (enableSunApiLintControl)
mcimadamore@852 2815 warnSunApi(pos, "sun.proprietary", s);
mcimadamore@852 2816 else
mcimadamore@1218 2817 log.mandatoryWarning(pos, "sun.proprietary", s);
mcimadamore@852 2818 }
mcimadamore@852 2819 });
mcimadamore@852 2820 }
mcimadamore@852 2821 }
mcimadamore@852 2822
duke@1 2823 /* *************************************************************************
duke@1 2824 * Check for recursive annotation elements.
duke@1 2825 **************************************************************************/
duke@1 2826
duke@1 2827 /** Check for cycles in the graph of annotation elements.
duke@1 2828 */
duke@1 2829 void checkNonCyclicElements(JCClassDecl tree) {
duke@1 2830 if ((tree.sym.flags_field & ANNOTATION) == 0) return;
jjg@816 2831 Assert.check((tree.sym.flags_field & LOCKED) == 0);
duke@1 2832 try {
duke@1 2833 tree.sym.flags_field |= LOCKED;
duke@1 2834 for (JCTree def : tree.defs) {
jjg@1127 2835 if (!def.hasTag(METHODDEF)) continue;
duke@1 2836 JCMethodDecl meth = (JCMethodDecl)def;
duke@1 2837 checkAnnotationResType(meth.pos(), meth.restype.type);
duke@1 2838 }
duke@1 2839 } finally {
duke@1 2840 tree.sym.flags_field &= ~LOCKED;
duke@1 2841 tree.sym.flags_field |= ACYCLIC_ANN;
duke@1 2842 }
duke@1 2843 }
duke@1 2844
duke@1 2845 void checkNonCyclicElementsInternal(DiagnosticPosition pos, TypeSymbol tsym) {
duke@1 2846 if ((tsym.flags_field & ACYCLIC_ANN) != 0)
duke@1 2847 return;
duke@1 2848 if ((tsym.flags_field & LOCKED) != 0) {
duke@1 2849 log.error(pos, "cyclic.annotation.element");
duke@1 2850 return;
duke@1 2851 }
duke@1 2852 try {
duke@1 2853 tsym.flags_field |= LOCKED;
duke@1 2854 for (Scope.Entry e = tsym.members().elems; e != null; e = e.sibling) {
duke@1 2855 Symbol s = e.sym;
duke@1 2856 if (s.kind != Kinds.MTH)
duke@1 2857 continue;
duke@1 2858 checkAnnotationResType(pos, ((MethodSymbol)s).type.getReturnType());
duke@1 2859 }
duke@1 2860 } finally {
duke@1 2861 tsym.flags_field &= ~LOCKED;
duke@1 2862 tsym.flags_field |= ACYCLIC_ANN;
duke@1 2863 }
duke@1 2864 }
duke@1 2865
duke@1 2866 void checkAnnotationResType(DiagnosticPosition pos, Type type) {
duke@1 2867 switch (type.tag) {
duke@1 2868 case TypeTags.CLASS:
duke@1 2869 if ((type.tsym.flags() & ANNOTATION) != 0)
duke@1 2870 checkNonCyclicElementsInternal(pos, type.tsym);
duke@1 2871 break;
duke@1 2872 case TypeTags.ARRAY:
duke@1 2873 checkAnnotationResType(pos, types.elemtype(type));
duke@1 2874 break;
duke@1 2875 default:
duke@1 2876 break; // int etc
duke@1 2877 }
duke@1 2878 }
duke@1 2879
duke@1 2880 /* *************************************************************************
duke@1 2881 * Check for cycles in the constructor call graph.
duke@1 2882 **************************************************************************/
duke@1 2883
duke@1 2884 /** Check for cycles in the graph of constructors calling other
duke@1 2885 * constructors.
duke@1 2886 */
duke@1 2887 void checkCyclicConstructors(JCClassDecl tree) {
duke@1 2888 Map<Symbol,Symbol> callMap = new HashMap<Symbol, Symbol>();
duke@1 2889
duke@1 2890 // enter each constructor this-call into the map
duke@1 2891 for (List<JCTree> l = tree.defs; l.nonEmpty(); l = l.tail) {
duke@1 2892 JCMethodInvocation app = TreeInfo.firstConstructorCall(l.head);
duke@1 2893 if (app == null) continue;
duke@1 2894 JCMethodDecl meth = (JCMethodDecl) l.head;
duke@1 2895 if (TreeInfo.name(app.meth) == names._this) {
duke@1 2896 callMap.put(meth.sym, TreeInfo.symbol(app.meth));
duke@1 2897 } else {
duke@1 2898 meth.sym.flags_field |= ACYCLIC;
duke@1 2899 }
duke@1 2900 }
duke@1 2901
duke@1 2902 // Check for cycles in the map
duke@1 2903 Symbol[] ctors = new Symbol[0];
duke@1 2904 ctors = callMap.keySet().toArray(ctors);
duke@1 2905 for (Symbol caller : ctors) {
duke@1 2906 checkCyclicConstructor(tree, caller, callMap);
duke@1 2907 }
duke@1 2908 }
duke@1 2909
duke@1 2910 /** Look in the map to see if the given constructor is part of a
duke@1 2911 * call cycle.
duke@1 2912 */
duke@1 2913 private void checkCyclicConstructor(JCClassDecl tree, Symbol ctor,
duke@1 2914 Map<Symbol,Symbol> callMap) {
duke@1 2915 if (ctor != null && (ctor.flags_field & ACYCLIC) == 0) {
duke@1 2916 if ((ctor.flags_field & LOCKED) != 0) {
duke@1 2917 log.error(TreeInfo.diagnosticPositionFor(ctor, tree),
duke@1 2918 "recursive.ctor.invocation");
duke@1 2919 } else {
duke@1 2920 ctor.flags_field |= LOCKED;
duke@1 2921 checkCyclicConstructor(tree, callMap.remove(ctor), callMap);
duke@1 2922 ctor.flags_field &= ~LOCKED;
duke@1 2923 }
duke@1 2924 ctor.flags_field |= ACYCLIC;
duke@1 2925 }
duke@1 2926 }
duke@1 2927
duke@1 2928 /* *************************************************************************
duke@1 2929 * Miscellaneous
duke@1 2930 **************************************************************************/
duke@1 2931
duke@1 2932 /**
duke@1 2933 * Return the opcode of the operator but emit an error if it is an
duke@1 2934 * error.
duke@1 2935 * @param pos position for error reporting.
duke@1 2936 * @param operator an operator
duke@1 2937 * @param tag a tree tag
duke@1 2938 * @param left type of left hand side
duke@1 2939 * @param right type of right hand side
duke@1 2940 */
duke@1 2941 int checkOperator(DiagnosticPosition pos,
duke@1 2942 OperatorSymbol operator,
jjg@1127 2943 JCTree.Tag tag,
duke@1 2944 Type left,
duke@1 2945 Type right) {
duke@1 2946 if (operator.opcode == ByteCodes.error) {
duke@1 2947 log.error(pos,
mcimadamore@853 2948 "operator.cant.be.applied.1",
duke@1 2949 treeinfo.operatorName(tag),
mcimadamore@853 2950 left, right);
duke@1 2951 }
duke@1 2952 return operator.opcode;
duke@1 2953 }
duke@1 2954
duke@1 2955
duke@1 2956 /**
duke@1 2957 * Check for division by integer constant zero
duke@1 2958 * @param pos Position for error reporting.
duke@1 2959 * @param operator The operator for the expression
duke@1 2960 * @param operand The right hand operand for the expression
duke@1 2961 */
duke@1 2962 void checkDivZero(DiagnosticPosition pos, Symbol operator, Type operand) {
duke@1 2963 if (operand.constValue() != null
mcimadamore@795 2964 && lint.isEnabled(LintCategory.DIVZERO)
duke@1 2965 && operand.tag <= LONG
duke@1 2966 && ((Number) (operand.constValue())).longValue() == 0) {
duke@1 2967 int opc = ((OperatorSymbol)operator).opcode;
duke@1 2968 if (opc == ByteCodes.idiv || opc == ByteCodes.imod
duke@1 2969 || opc == ByteCodes.ldiv || opc == ByteCodes.lmod) {
mcimadamore@795 2970 log.warning(LintCategory.DIVZERO, pos, "div.zero");
duke@1 2971 }
duke@1 2972 }
duke@1 2973 }
duke@1 2974
duke@1 2975 /**
duke@1 2976 * Check for empty statements after if
duke@1 2977 */
duke@1 2978 void checkEmptyIf(JCIf tree) {
jjg@1127 2979 if (tree.thenpart.hasTag(SKIP) && tree.elsepart == null &&
jjg@1127 2980 lint.isEnabled(LintCategory.EMPTY))
mcimadamore@795 2981 log.warning(LintCategory.EMPTY, tree.thenpart.pos(), "empty.if");
duke@1 2982 }
duke@1 2983
duke@1 2984 /** Check that symbol is unique in given scope.
duke@1 2985 * @param pos Position for error reporting.
duke@1 2986 * @param sym The symbol.
duke@1 2987 * @param s The scope.
duke@1 2988 */
duke@1 2989 boolean checkUnique(DiagnosticPosition pos, Symbol sym, Scope s) {
duke@1 2990 if (sym.type.isErroneous())
duke@1 2991 return true;
duke@1 2992 if (sym.owner.name == names.any) return false;
duke@1 2993 for (Scope.Entry e = s.lookup(sym.name); e.scope == s; e = e.next()) {
duke@1 2994 if (sym != e.sym &&
mcimadamore@858 2995 (e.sym.flags() & CLASH) == 0 &&
mcimadamore@858 2996 sym.kind == e.sym.kind &&
mcimadamore@858 2997 sym.name != names.error &&
mcimadamore@858 2998 (sym.kind != MTH || types.hasSameArgs(types.erasure(sym.type), types.erasure(e.sym.type)))) {
mcimadamore@844 2999 if ((sym.flags() & VARARGS) != (e.sym.flags() & VARARGS)) {
duke@1 3000 varargsDuplicateError(pos, sym, e.sym);
mcimadamore@844 3001 return true;
mcimadamore@907 3002 } else if (sym.kind == MTH && !types.hasSameArgs(sym.type, e.sym.type, false)) {
mcimadamore@252 3003 duplicateErasureError(pos, sym, e.sym);
mcimadamore@844 3004 sym.flags_field |= CLASH;
mcimadamore@844 3005 return true;
mcimadamore@844 3006 } else {
duke@1 3007 duplicateError(pos, e.sym);
mcimadamore@844 3008 return false;
mcimadamore@844 3009 }
duke@1 3010 }
duke@1 3011 }
duke@1 3012 return true;
duke@1 3013 }
mcimadamore@844 3014
mcimadamore@858 3015 /** Report duplicate declaration error.
mcimadamore@858 3016 */
mcimadamore@858 3017 void duplicateErasureError(DiagnosticPosition pos, Symbol sym1, Symbol sym2) {
mcimadamore@858 3018 if (!sym1.type.isErroneous() && !sym2.type.isErroneous()) {
mcimadamore@858 3019 log.error(pos, "name.clash.same.erasure", sym1, sym2);
mcimadamore@844 3020 }
mcimadamore@858 3021 }
duke@1 3022
duke@1 3023 /** Check that single-type import is not already imported or top-level defined,
duke@1 3024 * but make an exception for two single-type imports which denote the same type.
duke@1 3025 * @param pos Position for error reporting.
duke@1 3026 * @param sym The symbol.
duke@1 3027 * @param s The scope
duke@1 3028 */
duke@1 3029 boolean checkUniqueImport(DiagnosticPosition pos, Symbol sym, Scope s) {
duke@1 3030 return checkUniqueImport(pos, sym, s, false);
duke@1 3031 }
duke@1 3032
duke@1 3033 /** Check that static single-type import is not already imported or top-level defined,
duke@1 3034 * but make an exception for two single-type imports which denote the same type.
duke@1 3035 * @param pos Position for error reporting.
duke@1 3036 * @param sym The symbol.
duke@1 3037 * @param s The scope
duke@1 3038 * @param staticImport Whether or not this was a static import
duke@1 3039 */
duke@1 3040 boolean checkUniqueStaticImport(DiagnosticPosition pos, Symbol sym, Scope s) {
duke@1 3041 return checkUniqueImport(pos, sym, s, true);
duke@1 3042 }
duke@1 3043
duke@1 3044 /** Check that single-type import is not already imported or top-level defined,
duke@1 3045 * but make an exception for two single-type imports which denote the same type.
duke@1 3046 * @param pos Position for error reporting.
duke@1 3047 * @param sym The symbol.
duke@1 3048 * @param s The scope.
duke@1 3049 * @param staticImport Whether or not this was a static import
duke@1 3050 */
duke@1 3051 private boolean checkUniqueImport(DiagnosticPosition pos, Symbol sym, Scope s, boolean staticImport) {
duke@1 3052 for (Scope.Entry e = s.lookup(sym.name); e.scope != null; e = e.next()) {
duke@1 3053 // is encountered class entered via a class declaration?
duke@1 3054 boolean isClassDecl = e.scope == s;
duke@1 3055 if ((isClassDecl || sym != e.sym) &&
duke@1 3056 sym.kind == e.sym.kind &&
duke@1 3057 sym.name != names.error) {
duke@1 3058 if (!e.sym.type.isErroneous()) {
duke@1 3059 String what = e.sym.toString();
duke@1 3060 if (!isClassDecl) {
duke@1 3061 if (staticImport)
duke@1 3062 log.error(pos, "already.defined.static.single.import", what);
duke@1 3063 else
duke@1 3064 log.error(pos, "already.defined.single.import", what);
duke@1 3065 }
duke@1 3066 else if (sym != e.sym)
duke@1 3067 log.error(pos, "already.defined.this.unit", what);
duke@1 3068 }
duke@1 3069 return false;
duke@1 3070 }
duke@1 3071 }
duke@1 3072 return true;
duke@1 3073 }
duke@1 3074
duke@1 3075 /** Check that a qualified name is in canonical form (for import decls).
duke@1 3076 */
duke@1 3077 public void checkCanonical(JCTree tree) {
duke@1 3078 if (!isCanonical(tree))
duke@1 3079 log.error(tree.pos(), "import.requires.canonical",
duke@1 3080 TreeInfo.symbol(tree));
duke@1 3081 }
duke@1 3082 // where
duke@1 3083 private boolean isCanonical(JCTree tree) {
jjg@1127 3084 while (tree.hasTag(SELECT)) {
duke@1 3085 JCFieldAccess s = (JCFieldAccess) tree;
duke@1 3086 if (s.sym.owner != TreeInfo.symbol(s.selected))
duke@1 3087 return false;
duke@1 3088 tree = s.selected;
duke@1 3089 }
duke@1 3090 return true;
duke@1 3091 }
duke@1 3092
duke@1 3093 private class ConversionWarner extends Warner {
mcimadamore@795 3094 final String uncheckedKey;
duke@1 3095 final Type found;
duke@1 3096 final Type expected;
mcimadamore@795 3097 public ConversionWarner(DiagnosticPosition pos, String uncheckedKey, Type found, Type expected) {
duke@1 3098 super(pos);
mcimadamore@795 3099 this.uncheckedKey = uncheckedKey;
duke@1 3100 this.found = found;
duke@1 3101 this.expected = expected;
duke@1 3102 }
duke@1 3103
jjg@398 3104 @Override
mcimadamore@795 3105 public void warn(LintCategory lint) {
duke@1 3106 boolean warned = this.warned;
mcimadamore@795 3107 super.warn(lint);
duke@1 3108 if (warned) return; // suppress redundant diagnostics
mcimadamore@795 3109 switch (lint) {
mcimadamore@795 3110 case UNCHECKED:
mcimadamore@795 3111 Check.this.warnUnchecked(pos(), "prob.found.req", diags.fragment(uncheckedKey), found, expected);
mcimadamore@795 3112 break;
mcimadamore@795 3113 case VARARGS:
mcimadamore@795 3114 if (method != null &&
mcimadamore@795 3115 method.attribute(syms.trustMeType.tsym) != null &&
mcimadamore@795 3116 isTrustMeAllowedOnMethod(method) &&
mcimadamore@795 3117 !types.isReifiable(method.type.getParameterTypes().last())) {
mcimadamore@795 3118 Check.this.warnUnsafeVararg(pos(), "varargs.unsafe.use.varargs.param", method.params.last());
mcimadamore@795 3119 }
mcimadamore@795 3120 break;
mcimadamore@795 3121 default:
mcimadamore@795 3122 throw new AssertionError("Unexpected lint: " + lint);
mcimadamore@795 3123 }
duke@1 3124 }
duke@1 3125 }
duke@1 3126
duke@1 3127 public Warner castWarner(DiagnosticPosition pos, Type found, Type expected) {
duke@1 3128 return new ConversionWarner(pos, "unchecked.cast.to.type", found, expected);
duke@1 3129 }
duke@1 3130
duke@1 3131 public Warner convertWarner(DiagnosticPosition pos, Type found, Type expected) {
duke@1 3132 return new ConversionWarner(pos, "unchecked.assign", found, expected);
duke@1 3133 }
duke@1 3134 }

mercurial