Mon, 10 Jun 2013 15:57:32 +0100
8013576: Add stat support to LambdaToMethod
Summary: LambdaToMethod should emit info to help diagnose/test lambda metafactory problems
Reviewed-by: jjg, vromero
duke@1 | 1 | /* |
jjg@1492 | 2 | * Copyright (c) 1999, 2013, Oracle and/or its affiliates. All rights reserved. |
duke@1 | 3 | * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
duke@1 | 4 | * |
duke@1 | 5 | * This code is free software; you can redistribute it and/or modify it |
duke@1 | 6 | * under the terms of the GNU General Public License version 2 only, as |
ohair@554 | 7 | * published by the Free Software Foundation. Oracle designates this |
duke@1 | 8 | * particular file as subject to the "Classpath" exception as provided |
ohair@554 | 9 | * by Oracle in the LICENSE file that accompanied this code. |
duke@1 | 10 | * |
duke@1 | 11 | * This code is distributed in the hope that it will be useful, but WITHOUT |
duke@1 | 12 | * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
duke@1 | 13 | * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
duke@1 | 14 | * version 2 for more details (a copy is included in the LICENSE file that |
duke@1 | 15 | * accompanied this code). |
duke@1 | 16 | * |
duke@1 | 17 | * You should have received a copy of the GNU General Public License version |
duke@1 | 18 | * 2 along with this work; if not, write to the Free Software Foundation, |
duke@1 | 19 | * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
duke@1 | 20 | * |
ohair@554 | 21 | * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
ohair@554 | 22 | * or visit www.oracle.com if you need additional information or have any |
ohair@554 | 23 | * questions. |
duke@1 | 24 | */ |
duke@1 | 25 | |
duke@1 | 26 | package com.sun.tools.javac.comp; |
duke@1 | 27 | |
jjg@1357 | 28 | import java.util.*; |
jjg@1357 | 29 | |
jjg@1357 | 30 | import javax.lang.model.element.ElementKind; |
jjg@1521 | 31 | import javax.lang.model.type.TypeKind; |
jjg@1357 | 32 | import javax.tools.JavaFileObject; |
duke@1 | 33 | |
duke@1 | 34 | import com.sun.source.tree.IdentifierTree; |
mcimadamore@1352 | 35 | import com.sun.source.tree.MemberReferenceTree.ReferenceMode; |
duke@1 | 36 | import com.sun.source.tree.MemberSelectTree; |
duke@1 | 37 | import com.sun.source.tree.TreeVisitor; |
duke@1 | 38 | import com.sun.source.util.SimpleTreeVisitor; |
jjg@1357 | 39 | import com.sun.tools.javac.code.*; |
jjg@1357 | 40 | import com.sun.tools.javac.code.Lint.LintCategory; |
jjg@1357 | 41 | import com.sun.tools.javac.code.Symbol.*; |
jjg@1357 | 42 | import com.sun.tools.javac.code.Type.*; |
jjg@1357 | 43 | import com.sun.tools.javac.comp.Check.CheckContext; |
jjg@1357 | 44 | import com.sun.tools.javac.comp.DeferredAttr.AttrMode; |
jjg@1357 | 45 | import com.sun.tools.javac.comp.Infer.InferenceContext; |
mcimadamore@1550 | 46 | import com.sun.tools.javac.comp.Infer.FreeTypeListener; |
jjg@1357 | 47 | import com.sun.tools.javac.jvm.*; |
jjg@1357 | 48 | import com.sun.tools.javac.tree.*; |
jjg@1357 | 49 | import com.sun.tools.javac.tree.JCTree.*; |
mcimadamore@1510 | 50 | import com.sun.tools.javac.tree.JCTree.JCPolyExpression.*; |
jjg@1357 | 51 | import com.sun.tools.javac.util.*; |
jjg@1357 | 52 | import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition; |
jjg@1357 | 53 | import com.sun.tools.javac.util.List; |
duke@1 | 54 | import static com.sun.tools.javac.code.Flags.*; |
jjg@1127 | 55 | import static com.sun.tools.javac.code.Flags.ANNOTATION; |
jjg@1127 | 56 | import static com.sun.tools.javac.code.Flags.BLOCK; |
duke@1 | 57 | import static com.sun.tools.javac.code.Kinds.*; |
jjg@1127 | 58 | import static com.sun.tools.javac.code.Kinds.ERRONEOUS; |
jjg@1374 | 59 | import static com.sun.tools.javac.code.TypeTag.*; |
jjg@1374 | 60 | import static com.sun.tools.javac.code.TypeTag.WILDCARD; |
jjg@1127 | 61 | import static com.sun.tools.javac.tree.JCTree.Tag.*; |
duke@1 | 62 | |
duke@1 | 63 | /** This is the main context-dependent analysis phase in GJC. It |
duke@1 | 64 | * encompasses name resolution, type checking and constant folding as |
duke@1 | 65 | * subtasks. Some subtasks involve auxiliary classes. |
duke@1 | 66 | * @see Check |
duke@1 | 67 | * @see Resolve |
duke@1 | 68 | * @see ConstFold |
duke@1 | 69 | * @see Infer |
duke@1 | 70 | * |
jjg@581 | 71 | * <p><b>This is NOT part of any supported API. |
jjg@581 | 72 | * If you write code that depends on this, you do so at your own risk. |
duke@1 | 73 | * This code and its internal interfaces are subject to change or |
duke@1 | 74 | * deletion without notice.</b> |
duke@1 | 75 | */ |
duke@1 | 76 | public class Attr extends JCTree.Visitor { |
duke@1 | 77 | protected static final Context.Key<Attr> attrKey = |
duke@1 | 78 | new Context.Key<Attr>(); |
duke@1 | 79 | |
jjg@113 | 80 | final Names names; |
duke@1 | 81 | final Log log; |
duke@1 | 82 | final Symtab syms; |
duke@1 | 83 | final Resolve rs; |
mcimadamore@537 | 84 | final Infer infer; |
mcimadamore@1347 | 85 | final DeferredAttr deferredAttr; |
duke@1 | 86 | final Check chk; |
mcimadamore@1348 | 87 | final Flow flow; |
duke@1 | 88 | final MemberEnter memberEnter; |
duke@1 | 89 | final TreeMaker make; |
duke@1 | 90 | final ConstFold cfolder; |
duke@1 | 91 | final Enter enter; |
duke@1 | 92 | final Target target; |
duke@1 | 93 | final Types types; |
mcimadamore@89 | 94 | final JCDiagnostic.Factory diags; |
duke@1 | 95 | final Annotate annotate; |
mcimadamore@852 | 96 | final DeferredLintHandler deferredLintHandler; |
duke@1 | 97 | |
duke@1 | 98 | public static Attr instance(Context context) { |
duke@1 | 99 | Attr instance = context.get(attrKey); |
duke@1 | 100 | if (instance == null) |
duke@1 | 101 | instance = new Attr(context); |
duke@1 | 102 | return instance; |
duke@1 | 103 | } |
duke@1 | 104 | |
duke@1 | 105 | protected Attr(Context context) { |
duke@1 | 106 | context.put(attrKey, this); |
duke@1 | 107 | |
jjg@113 | 108 | names = Names.instance(context); |
duke@1 | 109 | log = Log.instance(context); |
duke@1 | 110 | syms = Symtab.instance(context); |
duke@1 | 111 | rs = Resolve.instance(context); |
duke@1 | 112 | chk = Check.instance(context); |
mcimadamore@1348 | 113 | flow = Flow.instance(context); |
duke@1 | 114 | memberEnter = MemberEnter.instance(context); |
duke@1 | 115 | make = TreeMaker.instance(context); |
duke@1 | 116 | enter = Enter.instance(context); |
mcimadamore@537 | 117 | infer = Infer.instance(context); |
mcimadamore@1347 | 118 | deferredAttr = DeferredAttr.instance(context); |
duke@1 | 119 | cfolder = ConstFold.instance(context); |
duke@1 | 120 | target = Target.instance(context); |
duke@1 | 121 | types = Types.instance(context); |
mcimadamore@89 | 122 | diags = JCDiagnostic.Factory.instance(context); |
duke@1 | 123 | annotate = Annotate.instance(context); |
mcimadamore@852 | 124 | deferredLintHandler = DeferredLintHandler.instance(context); |
duke@1 | 125 | |
duke@1 | 126 | Options options = Options.instance(context); |
duke@1 | 127 | |
duke@1 | 128 | Source source = Source.instance(context); |
duke@1 | 129 | allowGenerics = source.allowGenerics(); |
duke@1 | 130 | allowVarargs = source.allowVarargs(); |
duke@1 | 131 | allowEnums = source.allowEnums(); |
duke@1 | 132 | allowBoxing = source.allowBoxing(); |
duke@1 | 133 | allowCovariantReturns = source.allowCovariantReturns(); |
duke@1 | 134 | allowAnonOuterThis = source.allowAnonOuterThis(); |
darcy@430 | 135 | allowStringsInSwitch = source.allowStringsInSwitch(); |
mcimadamore@1415 | 136 | allowPoly = source.allowPoly(); |
mcimadamore@1348 | 137 | allowLambda = source.allowLambda(); |
mcimadamore@1393 | 138 | allowDefaultMethods = source.allowDefaultMethods(); |
darcy@430 | 139 | sourceName = source.name; |
jjg@700 | 140 | relax = (options.isSet("-retrofit") || |
jjg@700 | 141 | options.isSet("-relax")); |
mcimadamore@731 | 142 | findDiamonds = options.get("findDiamond") != null && |
mcimadamore@731 | 143 | source.allowDiamond(); |
jjg@700 | 144 | useBeforeDeclarationWarning = options.isSet("useBeforeDeclarationWarning"); |
mcimadamore@1348 | 145 | identifyLambdaCandidate = options.getBoolean("identifyLambdaCandidate", false); |
mcimadamore@1238 | 146 | |
mcimadamore@1238 | 147 | statInfo = new ResultInfo(NIL, Type.noType); |
mcimadamore@1238 | 148 | varInfo = new ResultInfo(VAR, Type.noType); |
mcimadamore@1238 | 149 | unknownExprInfo = new ResultInfo(VAL, Type.noType); |
mcimadamore@1238 | 150 | unknownTypeInfo = new ResultInfo(TYP, Type.noType); |
mcimadamore@1697 | 151 | unknownTypeExprInfo = new ResultInfo(Kinds.TYP | Kinds.VAL, Type.noType); |
mcimadamore@1348 | 152 | recoveryInfo = new RecoveryInfo(deferredAttr.emptyDeferredAttrContext); |
duke@1 | 153 | } |
duke@1 | 154 | |
duke@1 | 155 | /** Switch: relax some constraints for retrofit mode. |
duke@1 | 156 | */ |
duke@1 | 157 | boolean relax; |
duke@1 | 158 | |
mcimadamore@1347 | 159 | /** Switch: support target-typing inference |
mcimadamore@1347 | 160 | */ |
mcimadamore@1347 | 161 | boolean allowPoly; |
mcimadamore@1347 | 162 | |
duke@1 | 163 | /** Switch: support generics? |
duke@1 | 164 | */ |
duke@1 | 165 | boolean allowGenerics; |
duke@1 | 166 | |
duke@1 | 167 | /** Switch: allow variable-arity methods. |
duke@1 | 168 | */ |
duke@1 | 169 | boolean allowVarargs; |
duke@1 | 170 | |
duke@1 | 171 | /** Switch: support enums? |
duke@1 | 172 | */ |
duke@1 | 173 | boolean allowEnums; |
duke@1 | 174 | |
duke@1 | 175 | /** Switch: support boxing and unboxing? |
duke@1 | 176 | */ |
duke@1 | 177 | boolean allowBoxing; |
duke@1 | 178 | |
duke@1 | 179 | /** Switch: support covariant result types? |
duke@1 | 180 | */ |
duke@1 | 181 | boolean allowCovariantReturns; |
duke@1 | 182 | |
mcimadamore@1415 | 183 | /** Switch: support lambda expressions ? |
mcimadamore@1415 | 184 | */ |
mcimadamore@1415 | 185 | boolean allowLambda; |
mcimadamore@1415 | 186 | |
mcimadamore@1393 | 187 | /** Switch: support default methods ? |
mcimadamore@1393 | 188 | */ |
mcimadamore@1393 | 189 | boolean allowDefaultMethods; |
mcimadamore@1393 | 190 | |
duke@1 | 191 | /** Switch: allow references to surrounding object from anonymous |
duke@1 | 192 | * objects during constructor call? |
duke@1 | 193 | */ |
duke@1 | 194 | boolean allowAnonOuterThis; |
duke@1 | 195 | |
mcimadamore@731 | 196 | /** Switch: generates a warning if diamond can be safely applied |
mcimadamore@731 | 197 | * to a given new expression |
mcimadamore@731 | 198 | */ |
mcimadamore@731 | 199 | boolean findDiamonds; |
mcimadamore@731 | 200 | |
mcimadamore@731 | 201 | /** |
mcimadamore@731 | 202 | * Internally enables/disables diamond finder feature |
mcimadamore@731 | 203 | */ |
mcimadamore@731 | 204 | static final boolean allowDiamondFinder = true; |
mcimadamore@731 | 205 | |
duke@1 | 206 | /** |
duke@1 | 207 | * Switch: warn about use of variable before declaration? |
duke@1 | 208 | * RFE: 6425594 |
duke@1 | 209 | */ |
duke@1 | 210 | boolean useBeforeDeclarationWarning; |
duke@1 | 211 | |
jjg@377 | 212 | /** |
mcimadamore@1348 | 213 | * Switch: generate warnings whenever an anonymous inner class that is convertible |
mcimadamore@1348 | 214 | * to a lambda expression is found |
mcimadamore@1348 | 215 | */ |
mcimadamore@1348 | 216 | boolean identifyLambdaCandidate; |
mcimadamore@1348 | 217 | |
mcimadamore@1348 | 218 | /** |
darcy@430 | 219 | * Switch: allow strings in switch? |
darcy@430 | 220 | */ |
darcy@430 | 221 | boolean allowStringsInSwitch; |
darcy@430 | 222 | |
darcy@430 | 223 | /** |
darcy@430 | 224 | * Switch: name of source level; used for error reporting. |
darcy@430 | 225 | */ |
darcy@430 | 226 | String sourceName; |
darcy@430 | 227 | |
duke@1 | 228 | /** Check kind and type of given tree against protokind and prototype. |
duke@1 | 229 | * If check succeeds, store type in tree and return it. |
duke@1 | 230 | * If check fails, store errType in tree and return it. |
duke@1 | 231 | * No checks are performed if the prototype is a method type. |
jjg@110 | 232 | * It is not necessary in this case since we know that kind and type |
duke@1 | 233 | * are correct. |
duke@1 | 234 | * |
duke@1 | 235 | * @param tree The tree whose kind and type is checked |
duke@1 | 236 | * @param ownkind The computed kind of the tree |
mcimadamore@1220 | 237 | * @param resultInfo The expected result of the tree |
duke@1 | 238 | */ |
mcimadamore@1347 | 239 | Type check(final JCTree tree, final Type found, final int ownkind, final ResultInfo resultInfo) { |
mcimadamore@1347 | 240 | InferenceContext inferenceContext = resultInfo.checkContext.inferenceContext(); |
mcimadamore@1347 | 241 | Type owntype = found; |
jjg@1374 | 242 | if (!owntype.hasTag(ERROR) && !resultInfo.pt.hasTag(METHOD) && !resultInfo.pt.hasTag(FORALL)) { |
mcimadamore@1347 | 243 | if (inferenceContext.free(found)) { |
mcimadamore@1347 | 244 | inferenceContext.addFreeTypeListener(List.of(found, resultInfo.pt), new FreeTypeListener() { |
mcimadamore@1347 | 245 | @Override |
mcimadamore@1347 | 246 | public void typesInferred(InferenceContext inferenceContext) { |
mcimadamore@1347 | 247 | ResultInfo pendingResult = |
mcimadamore@1550 | 248 | resultInfo.dup(inferenceContext.asInstType(resultInfo.pt)); |
mcimadamore@1550 | 249 | check(tree, inferenceContext.asInstType(found), ownkind, pendingResult); |
mcimadamore@1347 | 250 | } |
mcimadamore@1347 | 251 | }); |
mcimadamore@1347 | 252 | return tree.type = resultInfo.pt; |
duke@1 | 253 | } else { |
mcimadamore@1347 | 254 | if ((ownkind & ~resultInfo.pkind) == 0) { |
mcimadamore@1347 | 255 | owntype = resultInfo.check(tree, owntype); |
mcimadamore@1347 | 256 | } else { |
mcimadamore@1347 | 257 | log.error(tree.pos(), "unexpected.type", |
mcimadamore@1347 | 258 | kindNames(resultInfo.pkind), |
mcimadamore@1347 | 259 | kindName(ownkind)); |
mcimadamore@1347 | 260 | owntype = types.createErrorType(owntype); |
mcimadamore@1347 | 261 | } |
duke@1 | 262 | } |
duke@1 | 263 | } |
duke@1 | 264 | tree.type = owntype; |
duke@1 | 265 | return owntype; |
duke@1 | 266 | } |
duke@1 | 267 | |
duke@1 | 268 | /** Is given blank final variable assignable, i.e. in a scope where it |
duke@1 | 269 | * may be assigned to even though it is final? |
duke@1 | 270 | * @param v The blank final variable. |
duke@1 | 271 | * @param env The current environment. |
duke@1 | 272 | */ |
duke@1 | 273 | boolean isAssignableAsBlankFinal(VarSymbol v, Env<AttrContext> env) { |
mcimadamore@1297 | 274 | Symbol owner = owner(env); |
duke@1 | 275 | // owner refers to the innermost variable, method or |
duke@1 | 276 | // initializer block declaration at this point. |
duke@1 | 277 | return |
duke@1 | 278 | v.owner == owner |
duke@1 | 279 | || |
duke@1 | 280 | ((owner.name == names.init || // i.e. we are in a constructor |
duke@1 | 281 | owner.kind == VAR || // i.e. we are in a variable initializer |
duke@1 | 282 | (owner.flags() & BLOCK) != 0) // i.e. we are in an initializer block |
duke@1 | 283 | && |
duke@1 | 284 | v.owner == owner.owner |
duke@1 | 285 | && |
duke@1 | 286 | ((v.flags() & STATIC) != 0) == Resolve.isStatic(env)); |
duke@1 | 287 | } |
duke@1 | 288 | |
mcimadamore@1297 | 289 | /** |
mcimadamore@1297 | 290 | * Return the innermost enclosing owner symbol in a given attribution context |
mcimadamore@1297 | 291 | */ |
mcimadamore@1297 | 292 | Symbol owner(Env<AttrContext> env) { |
mcimadamore@1297 | 293 | while (true) { |
mcimadamore@1297 | 294 | switch (env.tree.getTag()) { |
mcimadamore@1297 | 295 | case VARDEF: |
mcimadamore@1297 | 296 | //a field can be owner |
mcimadamore@1297 | 297 | VarSymbol vsym = ((JCVariableDecl)env.tree).sym; |
mcimadamore@1297 | 298 | if (vsym.owner.kind == TYP) { |
mcimadamore@1297 | 299 | return vsym; |
mcimadamore@1297 | 300 | } |
mcimadamore@1297 | 301 | break; |
mcimadamore@1297 | 302 | case METHODDEF: |
mcimadamore@1297 | 303 | //method def is always an owner |
mcimadamore@1297 | 304 | return ((JCMethodDecl)env.tree).sym; |
mcimadamore@1297 | 305 | case CLASSDEF: |
mcimadamore@1297 | 306 | //class def is always an owner |
mcimadamore@1297 | 307 | return ((JCClassDecl)env.tree).sym; |
mcimadamore@1348 | 308 | case LAMBDA: |
mcimadamore@1348 | 309 | //a lambda is an owner - return a fresh synthetic method symbol |
mcimadamore@1348 | 310 | return new MethodSymbol(0, names.empty, null, syms.methodClass); |
mcimadamore@1297 | 311 | case BLOCK: |
mcimadamore@1297 | 312 | //static/instance init blocks are owner |
mcimadamore@1297 | 313 | Symbol blockSym = env.info.scope.owner; |
mcimadamore@1297 | 314 | if ((blockSym.flags() & BLOCK) != 0) { |
mcimadamore@1297 | 315 | return blockSym; |
mcimadamore@1297 | 316 | } |
mcimadamore@1297 | 317 | break; |
mcimadamore@1297 | 318 | case TOPLEVEL: |
mcimadamore@1297 | 319 | //toplevel is always an owner (for pkge decls) |
mcimadamore@1297 | 320 | return env.info.scope.owner; |
mcimadamore@1297 | 321 | } |
mcimadamore@1297 | 322 | Assert.checkNonNull(env.next); |
mcimadamore@1297 | 323 | env = env.next; |
mcimadamore@1297 | 324 | } |
mcimadamore@1297 | 325 | } |
mcimadamore@1297 | 326 | |
duke@1 | 327 | /** Check that variable can be assigned to. |
duke@1 | 328 | * @param pos The current source code position. |
duke@1 | 329 | * @param v The assigned varaible |
duke@1 | 330 | * @param base If the variable is referred to in a Select, the part |
duke@1 | 331 | * to the left of the `.', null otherwise. |
duke@1 | 332 | * @param env The current environment. |
duke@1 | 333 | */ |
duke@1 | 334 | void checkAssignable(DiagnosticPosition pos, VarSymbol v, JCTree base, Env<AttrContext> env) { |
duke@1 | 335 | if ((v.flags() & FINAL) != 0 && |
duke@1 | 336 | ((v.flags() & HASINIT) != 0 |
duke@1 | 337 | || |
duke@1 | 338 | !((base == null || |
jjg@1127 | 339 | (base.hasTag(IDENT) && TreeInfo.name(base) == names._this)) && |
duke@1 | 340 | isAssignableAsBlankFinal(v, env)))) { |
darcy@609 | 341 | if (v.isResourceVariable()) { //TWR resource |
mcimadamore@743 | 342 | log.error(pos, "try.resource.may.not.be.assigned", v); |
darcy@609 | 343 | } else { |
darcy@609 | 344 | log.error(pos, "cant.assign.val.to.final.var", v); |
darcy@609 | 345 | } |
duke@1 | 346 | } |
duke@1 | 347 | } |
duke@1 | 348 | |
duke@1 | 349 | /** Does tree represent a static reference to an identifier? |
duke@1 | 350 | * It is assumed that tree is either a SELECT or an IDENT. |
duke@1 | 351 | * We have to weed out selects from non-type names here. |
duke@1 | 352 | * @param tree The candidate tree. |
duke@1 | 353 | */ |
duke@1 | 354 | boolean isStaticReference(JCTree tree) { |
jjg@1127 | 355 | if (tree.hasTag(SELECT)) { |
duke@1 | 356 | Symbol lsym = TreeInfo.symbol(((JCFieldAccess) tree).selected); |
duke@1 | 357 | if (lsym == null || lsym.kind != TYP) { |
duke@1 | 358 | return false; |
duke@1 | 359 | } |
duke@1 | 360 | } |
duke@1 | 361 | return true; |
duke@1 | 362 | } |
duke@1 | 363 | |
duke@1 | 364 | /** Is this symbol a type? |
duke@1 | 365 | */ |
duke@1 | 366 | static boolean isType(Symbol sym) { |
duke@1 | 367 | return sym != null && sym.kind == TYP; |
duke@1 | 368 | } |
duke@1 | 369 | |
duke@1 | 370 | /** The current `this' symbol. |
duke@1 | 371 | * @param env The current environment. |
duke@1 | 372 | */ |
duke@1 | 373 | Symbol thisSym(DiagnosticPosition pos, Env<AttrContext> env) { |
duke@1 | 374 | return rs.resolveSelf(pos, env, env.enclClass.sym, names._this); |
duke@1 | 375 | } |
duke@1 | 376 | |
duke@1 | 377 | /** Attribute a parsed identifier. |
duke@1 | 378 | * @param tree Parsed identifier name |
duke@1 | 379 | * @param topLevel The toplevel to use |
duke@1 | 380 | */ |
duke@1 | 381 | public Symbol attribIdent(JCTree tree, JCCompilationUnit topLevel) { |
duke@1 | 382 | Env<AttrContext> localEnv = enter.topLevelEnv(topLevel); |
duke@1 | 383 | localEnv.enclClass = make.ClassDef(make.Modifiers(0), |
duke@1 | 384 | syms.errSymbol.name, |
duke@1 | 385 | null, null, null, null); |
duke@1 | 386 | localEnv.enclClass.sym = syms.errSymbol; |
duke@1 | 387 | return tree.accept(identAttributer, localEnv); |
duke@1 | 388 | } |
duke@1 | 389 | // where |
duke@1 | 390 | private TreeVisitor<Symbol,Env<AttrContext>> identAttributer = new IdentAttributer(); |
duke@1 | 391 | private class IdentAttributer extends SimpleTreeVisitor<Symbol,Env<AttrContext>> { |
duke@1 | 392 | @Override |
duke@1 | 393 | public Symbol visitMemberSelect(MemberSelectTree node, Env<AttrContext> env) { |
duke@1 | 394 | Symbol site = visit(node.getExpression(), env); |
duke@1 | 395 | if (site.kind == ERR) |
duke@1 | 396 | return site; |
duke@1 | 397 | Name name = (Name)node.getIdentifier(); |
duke@1 | 398 | if (site.kind == PCK) { |
duke@1 | 399 | env.toplevel.packge = (PackageSymbol)site; |
duke@1 | 400 | return rs.findIdentInPackage(env, (TypeSymbol)site, name, TYP | PCK); |
duke@1 | 401 | } else { |
duke@1 | 402 | env.enclClass.sym = (ClassSymbol)site; |
duke@1 | 403 | return rs.findMemberType(env, site.asType(), name, (TypeSymbol)site); |
duke@1 | 404 | } |
duke@1 | 405 | } |
duke@1 | 406 | |
duke@1 | 407 | @Override |
duke@1 | 408 | public Symbol visitIdentifier(IdentifierTree node, Env<AttrContext> env) { |
duke@1 | 409 | return rs.findIdent(env, (Name)node.getName(), TYP | PCK); |
duke@1 | 410 | } |
duke@1 | 411 | } |
duke@1 | 412 | |
duke@1 | 413 | public Type coerce(Type etype, Type ttype) { |
duke@1 | 414 | return cfolder.coerce(etype, ttype); |
duke@1 | 415 | } |
duke@1 | 416 | |
duke@1 | 417 | public Type attribType(JCTree node, TypeSymbol sym) { |
duke@1 | 418 | Env<AttrContext> env = enter.typeEnvs.get(sym); |
duke@1 | 419 | Env<AttrContext> localEnv = env.dup(node, env.info.dup()); |
mcimadamore@1220 | 420 | return attribTree(node, localEnv, unknownTypeInfo); |
mcimadamore@1220 | 421 | } |
mcimadamore@1220 | 422 | |
mcimadamore@1220 | 423 | public Type attribImportQualifier(JCImport tree, Env<AttrContext> env) { |
mcimadamore@1220 | 424 | // Attribute qualifying package or class. |
mcimadamore@1220 | 425 | JCFieldAccess s = (JCFieldAccess)tree.qualid; |
mcimadamore@1220 | 426 | return attribTree(s.selected, |
mcimadamore@1220 | 427 | env, |
mcimadamore@1220 | 428 | new ResultInfo(tree.staticImport ? TYP : (TYP | PCK), |
mcimadamore@1220 | 429 | Type.noType)); |
duke@1 | 430 | } |
duke@1 | 431 | |
duke@1 | 432 | public Env<AttrContext> attribExprToTree(JCTree expr, Env<AttrContext> env, JCTree tree) { |
duke@1 | 433 | breakTree = tree; |
mcimadamore@303 | 434 | JavaFileObject prev = log.useSource(env.toplevel.sourcefile); |
duke@1 | 435 | try { |
duke@1 | 436 | attribExpr(expr, env); |
duke@1 | 437 | } catch (BreakAttr b) { |
duke@1 | 438 | return b.env; |
sundar@669 | 439 | } catch (AssertionError ae) { |
sundar@669 | 440 | if (ae.getCause() instanceof BreakAttr) { |
sundar@669 | 441 | return ((BreakAttr)(ae.getCause())).env; |
sundar@669 | 442 | } else { |
sundar@669 | 443 | throw ae; |
sundar@669 | 444 | } |
duke@1 | 445 | } finally { |
duke@1 | 446 | breakTree = null; |
duke@1 | 447 | log.useSource(prev); |
duke@1 | 448 | } |
duke@1 | 449 | return env; |
duke@1 | 450 | } |
duke@1 | 451 | |
duke@1 | 452 | public Env<AttrContext> attribStatToTree(JCTree stmt, Env<AttrContext> env, JCTree tree) { |
duke@1 | 453 | breakTree = tree; |
mcimadamore@303 | 454 | JavaFileObject prev = log.useSource(env.toplevel.sourcefile); |
duke@1 | 455 | try { |
duke@1 | 456 | attribStat(stmt, env); |
duke@1 | 457 | } catch (BreakAttr b) { |
duke@1 | 458 | return b.env; |
sundar@669 | 459 | } catch (AssertionError ae) { |
sundar@669 | 460 | if (ae.getCause() instanceof BreakAttr) { |
sundar@669 | 461 | return ((BreakAttr)(ae.getCause())).env; |
sundar@669 | 462 | } else { |
sundar@669 | 463 | throw ae; |
sundar@669 | 464 | } |
duke@1 | 465 | } finally { |
duke@1 | 466 | breakTree = null; |
duke@1 | 467 | log.useSource(prev); |
duke@1 | 468 | } |
duke@1 | 469 | return env; |
duke@1 | 470 | } |
duke@1 | 471 | |
duke@1 | 472 | private JCTree breakTree = null; |
duke@1 | 473 | |
duke@1 | 474 | private static class BreakAttr extends RuntimeException { |
duke@1 | 475 | static final long serialVersionUID = -6924771130405446405L; |
duke@1 | 476 | private Env<AttrContext> env; |
duke@1 | 477 | private BreakAttr(Env<AttrContext> env) { |
mcimadamore@1347 | 478 | this.env = copyEnv(env); |
mcimadamore@1347 | 479 | } |
mcimadamore@1347 | 480 | |
mcimadamore@1347 | 481 | private Env<AttrContext> copyEnv(Env<AttrContext> env) { |
mcimadamore@1347 | 482 | Env<AttrContext> newEnv = |
mcimadamore@1347 | 483 | env.dup(env.tree, env.info.dup(copyScope(env.info.scope))); |
mcimadamore@1347 | 484 | if (newEnv.outer != null) { |
mcimadamore@1347 | 485 | newEnv.outer = copyEnv(newEnv.outer); |
mcimadamore@1347 | 486 | } |
mcimadamore@1347 | 487 | return newEnv; |
mcimadamore@1347 | 488 | } |
mcimadamore@1347 | 489 | |
mcimadamore@1347 | 490 | private Scope copyScope(Scope sc) { |
mcimadamore@1347 | 491 | Scope newScope = new Scope(sc.owner); |
mcimadamore@1347 | 492 | List<Symbol> elemsList = List.nil(); |
mcimadamore@1347 | 493 | while (sc != null) { |
mcimadamore@1347 | 494 | for (Scope.Entry e = sc.elems ; e != null ; e = e.sibling) { |
mcimadamore@1347 | 495 | elemsList = elemsList.prepend(e.sym); |
mcimadamore@1347 | 496 | } |
mcimadamore@1347 | 497 | sc = sc.next; |
mcimadamore@1347 | 498 | } |
mcimadamore@1347 | 499 | for (Symbol s : elemsList) { |
mcimadamore@1347 | 500 | newScope.enter(s); |
mcimadamore@1347 | 501 | } |
mcimadamore@1347 | 502 | return newScope; |
duke@1 | 503 | } |
duke@1 | 504 | } |
duke@1 | 505 | |
mcimadamore@1238 | 506 | class ResultInfo { |
mcimadamore@1347 | 507 | final int pkind; |
mcimadamore@1347 | 508 | final Type pt; |
mcimadamore@1347 | 509 | final CheckContext checkContext; |
mcimadamore@1220 | 510 | |
mcimadamore@1220 | 511 | ResultInfo(int pkind, Type pt) { |
mcimadamore@1238 | 512 | this(pkind, pt, chk.basicHandler); |
mcimadamore@1238 | 513 | } |
mcimadamore@1238 | 514 | |
mcimadamore@1238 | 515 | protected ResultInfo(int pkind, Type pt, CheckContext checkContext) { |
mcimadamore@1220 | 516 | this.pkind = pkind; |
mcimadamore@1220 | 517 | this.pt = pt; |
mcimadamore@1238 | 518 | this.checkContext = checkContext; |
mcimadamore@1238 | 519 | } |
mcimadamore@1238 | 520 | |
mcimadamore@1347 | 521 | protected Type check(final DiagnosticPosition pos, final Type found) { |
mcimadamore@1238 | 522 | return chk.checkType(pos, found, pt, checkContext); |
mcimadamore@1220 | 523 | } |
mcimadamore@1347 | 524 | |
mcimadamore@1347 | 525 | protected ResultInfo dup(Type newPt) { |
mcimadamore@1347 | 526 | return new ResultInfo(pkind, newPt, checkContext); |
mcimadamore@1347 | 527 | } |
mcimadamore@1415 | 528 | |
mcimadamore@1415 | 529 | protected ResultInfo dup(CheckContext newContext) { |
mcimadamore@1415 | 530 | return new ResultInfo(pkind, pt, newContext); |
mcimadamore@1415 | 531 | } |
mcimadamore@1220 | 532 | } |
mcimadamore@1220 | 533 | |
mcimadamore@1348 | 534 | class RecoveryInfo extends ResultInfo { |
mcimadamore@1348 | 535 | |
mcimadamore@1348 | 536 | public RecoveryInfo(final DeferredAttr.DeferredAttrContext deferredAttrContext) { |
mcimadamore@1348 | 537 | super(Kinds.VAL, Type.recoveryType, new Check.NestedCheckContext(chk.basicHandler) { |
mcimadamore@1348 | 538 | @Override |
mcimadamore@1348 | 539 | public DeferredAttr.DeferredAttrContext deferredAttrContext() { |
mcimadamore@1348 | 540 | return deferredAttrContext; |
mcimadamore@1348 | 541 | } |
mcimadamore@1348 | 542 | @Override |
mcimadamore@1348 | 543 | public boolean compatible(Type found, Type req, Warner warn) { |
mcimadamore@1348 | 544 | return true; |
mcimadamore@1348 | 545 | } |
mcimadamore@1348 | 546 | @Override |
mcimadamore@1348 | 547 | public void report(DiagnosticPosition pos, JCDiagnostic details) { |
mcimadamore@1415 | 548 | chk.basicHandler.report(pos, details); |
mcimadamore@1348 | 549 | } |
mcimadamore@1348 | 550 | }); |
mcimadamore@1348 | 551 | } |
mcimadamore@1348 | 552 | |
mcimadamore@1348 | 553 | @Override |
mcimadamore@1348 | 554 | protected Type check(DiagnosticPosition pos, Type found) { |
mcimadamore@1348 | 555 | return chk.checkNonVoid(pos, super.check(pos, found)); |
mcimadamore@1348 | 556 | } |
mcimadamore@1348 | 557 | } |
mcimadamore@1348 | 558 | |
mcimadamore@1347 | 559 | final ResultInfo statInfo; |
mcimadamore@1347 | 560 | final ResultInfo varInfo; |
mcimadamore@1347 | 561 | final ResultInfo unknownExprInfo; |
mcimadamore@1347 | 562 | final ResultInfo unknownTypeInfo; |
mcimadamore@1697 | 563 | final ResultInfo unknownTypeExprInfo; |
mcimadamore@1348 | 564 | final ResultInfo recoveryInfo; |
mcimadamore@1220 | 565 | |
mcimadamore@1220 | 566 | Type pt() { |
mcimadamore@1220 | 567 | return resultInfo.pt; |
mcimadamore@1220 | 568 | } |
mcimadamore@1220 | 569 | |
mcimadamore@1220 | 570 | int pkind() { |
mcimadamore@1220 | 571 | return resultInfo.pkind; |
mcimadamore@1220 | 572 | } |
duke@1 | 573 | |
duke@1 | 574 | /* ************************************************************************ |
duke@1 | 575 | * Visitor methods |
duke@1 | 576 | *************************************************************************/ |
duke@1 | 577 | |
duke@1 | 578 | /** Visitor argument: the current environment. |
duke@1 | 579 | */ |
duke@1 | 580 | Env<AttrContext> env; |
duke@1 | 581 | |
mcimadamore@1220 | 582 | /** Visitor argument: the currently expected attribution result. |
duke@1 | 583 | */ |
mcimadamore@1220 | 584 | ResultInfo resultInfo; |
duke@1 | 585 | |
duke@1 | 586 | /** Visitor result: the computed type. |
duke@1 | 587 | */ |
duke@1 | 588 | Type result; |
duke@1 | 589 | |
duke@1 | 590 | /** Visitor method: attribute a tree, catching any completion failure |
duke@1 | 591 | * exceptions. Return the tree's type. |
duke@1 | 592 | * |
duke@1 | 593 | * @param tree The tree to be visited. |
duke@1 | 594 | * @param env The environment visitor argument. |
mcimadamore@1220 | 595 | * @param resultInfo The result info visitor argument. |
duke@1 | 596 | */ |
mcimadamore@1347 | 597 | Type attribTree(JCTree tree, Env<AttrContext> env, ResultInfo resultInfo) { |
duke@1 | 598 | Env<AttrContext> prevEnv = this.env; |
mcimadamore@1220 | 599 | ResultInfo prevResult = this.resultInfo; |
duke@1 | 600 | try { |
duke@1 | 601 | this.env = env; |
mcimadamore@1220 | 602 | this.resultInfo = resultInfo; |
duke@1 | 603 | tree.accept(this); |
mcimadamore@1415 | 604 | if (tree == breakTree && |
mcimadamore@1415 | 605 | resultInfo.checkContext.deferredAttrContext().mode == AttrMode.CHECK) { |
duke@1 | 606 | throw new BreakAttr(env); |
mcimadamore@1415 | 607 | } |
duke@1 | 608 | return result; |
duke@1 | 609 | } catch (CompletionFailure ex) { |
duke@1 | 610 | tree.type = syms.errType; |
duke@1 | 611 | return chk.completionError(tree.pos(), ex); |
duke@1 | 612 | } finally { |
duke@1 | 613 | this.env = prevEnv; |
mcimadamore@1220 | 614 | this.resultInfo = prevResult; |
duke@1 | 615 | } |
duke@1 | 616 | } |
duke@1 | 617 | |
duke@1 | 618 | /** Derived visitor method: attribute an expression tree. |
duke@1 | 619 | */ |
duke@1 | 620 | public Type attribExpr(JCTree tree, Env<AttrContext> env, Type pt) { |
jjg@1374 | 621 | return attribTree(tree, env, new ResultInfo(VAL, !pt.hasTag(ERROR) ? pt : Type.noType)); |
darcy@609 | 622 | } |
darcy@609 | 623 | |
duke@1 | 624 | /** Derived visitor method: attribute an expression tree with |
duke@1 | 625 | * no constraints on the computed type. |
duke@1 | 626 | */ |
jjg@1409 | 627 | public Type attribExpr(JCTree tree, Env<AttrContext> env) { |
mcimadamore@1220 | 628 | return attribTree(tree, env, unknownExprInfo); |
duke@1 | 629 | } |
duke@1 | 630 | |
duke@1 | 631 | /** Derived visitor method: attribute a type tree. |
duke@1 | 632 | */ |
jjg@1409 | 633 | public Type attribType(JCTree tree, Env<AttrContext> env) { |
mcimadamore@537 | 634 | Type result = attribType(tree, env, Type.noType); |
mcimadamore@537 | 635 | return result; |
mcimadamore@537 | 636 | } |
mcimadamore@537 | 637 | |
mcimadamore@537 | 638 | /** Derived visitor method: attribute a type tree. |
mcimadamore@537 | 639 | */ |
mcimadamore@537 | 640 | Type attribType(JCTree tree, Env<AttrContext> env, Type pt) { |
mcimadamore@1220 | 641 | Type result = attribTree(tree, env, new ResultInfo(TYP, pt)); |
duke@1 | 642 | return result; |
duke@1 | 643 | } |
duke@1 | 644 | |
duke@1 | 645 | /** Derived visitor method: attribute a statement or definition tree. |
duke@1 | 646 | */ |
duke@1 | 647 | public Type attribStat(JCTree tree, Env<AttrContext> env) { |
mcimadamore@1220 | 648 | return attribTree(tree, env, statInfo); |
duke@1 | 649 | } |
duke@1 | 650 | |
duke@1 | 651 | /** Attribute a list of expressions, returning a list of types. |
duke@1 | 652 | */ |
duke@1 | 653 | List<Type> attribExprs(List<JCExpression> trees, Env<AttrContext> env, Type pt) { |
duke@1 | 654 | ListBuffer<Type> ts = new ListBuffer<Type>(); |
duke@1 | 655 | for (List<JCExpression> l = trees; l.nonEmpty(); l = l.tail) |
duke@1 | 656 | ts.append(attribExpr(l.head, env, pt)); |
duke@1 | 657 | return ts.toList(); |
duke@1 | 658 | } |
duke@1 | 659 | |
duke@1 | 660 | /** Attribute a list of statements, returning nothing. |
duke@1 | 661 | */ |
duke@1 | 662 | <T extends JCTree> void attribStats(List<T> trees, Env<AttrContext> env) { |
duke@1 | 663 | for (List<T> l = trees; l.nonEmpty(); l = l.tail) |
duke@1 | 664 | attribStat(l.head, env); |
duke@1 | 665 | } |
duke@1 | 666 | |
duke@1 | 667 | /** Attribute the arguments in a method call, returning a list of types. |
duke@1 | 668 | */ |
duke@1 | 669 | List<Type> attribArgs(List<JCExpression> trees, Env<AttrContext> env) { |
duke@1 | 670 | ListBuffer<Type> argtypes = new ListBuffer<Type>(); |
mcimadamore@1347 | 671 | for (JCExpression arg : trees) { |
mcimadamore@1697 | 672 | Type argtype = allowPoly && deferredAttr.isDeferred(env, arg) ? |
mcimadamore@1347 | 673 | deferredAttr.new DeferredType(arg, env) : |
mcimadamore@1347 | 674 | chk.checkNonVoid(arg, attribExpr(arg, env, Infer.anyPoly)); |
mcimadamore@1347 | 675 | argtypes.append(argtype); |
mcimadamore@1347 | 676 | } |
duke@1 | 677 | return argtypes.toList(); |
duke@1 | 678 | } |
duke@1 | 679 | |
duke@1 | 680 | /** Attribute a type argument list, returning a list of types. |
jrose@267 | 681 | * Caller is responsible for calling checkRefTypes. |
duke@1 | 682 | */ |
jrose@267 | 683 | List<Type> attribAnyTypes(List<JCExpression> trees, Env<AttrContext> env) { |
duke@1 | 684 | ListBuffer<Type> argtypes = new ListBuffer<Type>(); |
duke@1 | 685 | for (List<JCExpression> l = trees; l.nonEmpty(); l = l.tail) |
jrose@267 | 686 | argtypes.append(attribType(l.head, env)); |
duke@1 | 687 | return argtypes.toList(); |
duke@1 | 688 | } |
duke@1 | 689 | |
jrose@267 | 690 | /** Attribute a type argument list, returning a list of types. |
jrose@267 | 691 | * Check that all the types are references. |
jrose@267 | 692 | */ |
jrose@267 | 693 | List<Type> attribTypes(List<JCExpression> trees, Env<AttrContext> env) { |
jrose@267 | 694 | List<Type> types = attribAnyTypes(trees, env); |
jrose@267 | 695 | return chk.checkRefTypes(trees, types); |
jrose@267 | 696 | } |
duke@1 | 697 | |
duke@1 | 698 | /** |
duke@1 | 699 | * Attribute type variables (of generic classes or methods). |
duke@1 | 700 | * Compound types are attributed later in attribBounds. |
duke@1 | 701 | * @param typarams the type variables to enter |
duke@1 | 702 | * @param env the current environment |
duke@1 | 703 | */ |
duke@1 | 704 | void attribTypeVariables(List<JCTypeParameter> typarams, Env<AttrContext> env) { |
duke@1 | 705 | for (JCTypeParameter tvar : typarams) { |
duke@1 | 706 | TypeVar a = (TypeVar)tvar.type; |
mcimadamore@42 | 707 | a.tsym.flags_field |= UNATTRIBUTED; |
mcimadamore@42 | 708 | a.bound = Type.noType; |
duke@1 | 709 | if (!tvar.bounds.isEmpty()) { |
duke@1 | 710 | List<Type> bounds = List.of(attribType(tvar.bounds.head, env)); |
duke@1 | 711 | for (JCExpression bound : tvar.bounds.tail) |
duke@1 | 712 | bounds = bounds.prepend(attribType(bound, env)); |
duke@1 | 713 | types.setBounds(a, bounds.reverse()); |
duke@1 | 714 | } else { |
duke@1 | 715 | // if no bounds are given, assume a single bound of |
duke@1 | 716 | // java.lang.Object. |
duke@1 | 717 | types.setBounds(a, List.of(syms.objectType)); |
duke@1 | 718 | } |
mcimadamore@42 | 719 | a.tsym.flags_field &= ~UNATTRIBUTED; |
duke@1 | 720 | } |
mcimadamore@1436 | 721 | for (JCTypeParameter tvar : typarams) { |
duke@1 | 722 | chk.checkNonCyclic(tvar.pos(), (TypeVar)tvar.type); |
duke@1 | 723 | } |
duke@1 | 724 | } |
duke@1 | 725 | |
duke@1 | 726 | /** |
duke@1 | 727 | * Attribute the type references in a list of annotations. |
duke@1 | 728 | */ |
duke@1 | 729 | void attribAnnotationTypes(List<JCAnnotation> annotations, |
duke@1 | 730 | Env<AttrContext> env) { |
duke@1 | 731 | for (List<JCAnnotation> al = annotations; al.nonEmpty(); al = al.tail) { |
duke@1 | 732 | JCAnnotation a = al.head; |
duke@1 | 733 | attribType(a.annotationType, env); |
duke@1 | 734 | } |
duke@1 | 735 | } |
duke@1 | 736 | |
jjg@841 | 737 | /** |
jjg@841 | 738 | * Attribute a "lazy constant value". |
jjg@841 | 739 | * @param env The env for the const value |
jjg@841 | 740 | * @param initializer The initializer for the const value |
jjg@841 | 741 | * @param type The expected type, or null |
jjg@1358 | 742 | * @see VarSymbol#setLazyConstValue |
jjg@841 | 743 | */ |
jjg@841 | 744 | public Object attribLazyConstantValue(Env<AttrContext> env, |
jjg@841 | 745 | JCTree.JCExpression initializer, |
jjg@841 | 746 | Type type) { |
jjg@841 | 747 | |
jjg@841 | 748 | // in case no lint value has been set up for this env, scan up |
jjg@841 | 749 | // env stack looking for smallest enclosing env for which it is set. |
jjg@841 | 750 | Env<AttrContext> lintEnv = env; |
jjg@841 | 751 | while (lintEnv.info.lint == null) |
jjg@841 | 752 | lintEnv = lintEnv.next; |
jjg@841 | 753 | |
jjg@841 | 754 | // Having found the enclosing lint value, we can initialize the lint value for this class |
jjg@1078 | 755 | // ... but ... |
jjg@1078 | 756 | // There's a problem with evaluating annotations in the right order, such that |
jjg@1078 | 757 | // env.info.enclVar.attributes_field might not yet have been evaluated, and so might be |
jjg@1078 | 758 | // null. In that case, calling augment will throw an NPE. To avoid this, for now we |
jjg@1078 | 759 | // revert to the jdk 6 behavior and ignore the (unevaluated) attributes. |
jjg@1802 | 760 | if (env.info.enclVar.annotationsPendingCompletion()) { |
jjg@1078 | 761 | env.info.lint = lintEnv.info.lint; |
jfranck@1313 | 762 | } else { |
jjg@1802 | 763 | env.info.lint = lintEnv.info.lint.augment(env.info.enclVar); |
jfranck@1313 | 764 | } |
jjg@841 | 765 | |
jjg@841 | 766 | Lint prevLint = chk.setLint(env.info.lint); |
jjg@841 | 767 | JavaFileObject prevSource = log.useSource(env.toplevel.sourcefile); |
jjg@841 | 768 | |
jjg@841 | 769 | try { |
jjg@1755 | 770 | // Use null as symbol to not attach the type annotation to any symbol. |
jjg@1755 | 771 | // The initializer will later also be visited and then we'll attach |
jjg@1755 | 772 | // to the symbol. |
jjg@1755 | 773 | // This prevents having multiple type annotations, just because of |
jjg@1755 | 774 | // lazy constant value evaluation. |
jjg@1755 | 775 | memberEnter.typeAnnotate(initializer, env, null); |
jjg@1563 | 776 | annotate.flush(); |
jjg@841 | 777 | Type itype = attribExpr(initializer, env, type); |
jjg@841 | 778 | if (itype.constValue() != null) |
jjg@841 | 779 | return coerce(itype, type).constValue(); |
jjg@841 | 780 | else |
jjg@841 | 781 | return null; |
jjg@841 | 782 | } finally { |
jjg@841 | 783 | env.info.lint = prevLint; |
jjg@841 | 784 | log.useSource(prevSource); |
jjg@841 | 785 | } |
jjg@841 | 786 | } |
jjg@841 | 787 | |
duke@1 | 788 | /** Attribute type reference in an `extends' or `implements' clause. |
mcimadamore@537 | 789 | * Supertypes of anonymous inner classes are usually already attributed. |
duke@1 | 790 | * |
duke@1 | 791 | * @param tree The tree making up the type reference. |
duke@1 | 792 | * @param env The environment current at the reference. |
duke@1 | 793 | * @param classExpected true if only a class is expected here. |
duke@1 | 794 | * @param interfaceExpected true if only an interface is expected here. |
duke@1 | 795 | */ |
duke@1 | 796 | Type attribBase(JCTree tree, |
duke@1 | 797 | Env<AttrContext> env, |
duke@1 | 798 | boolean classExpected, |
duke@1 | 799 | boolean interfaceExpected, |
duke@1 | 800 | boolean checkExtensible) { |
mcimadamore@537 | 801 | Type t = tree.type != null ? |
mcimadamore@537 | 802 | tree.type : |
mcimadamore@537 | 803 | attribType(tree, env); |
duke@1 | 804 | return checkBase(t, tree, env, classExpected, interfaceExpected, checkExtensible); |
duke@1 | 805 | } |
duke@1 | 806 | Type checkBase(Type t, |
duke@1 | 807 | JCTree tree, |
duke@1 | 808 | Env<AttrContext> env, |
duke@1 | 809 | boolean classExpected, |
duke@1 | 810 | boolean interfaceExpected, |
duke@1 | 811 | boolean checkExtensible) { |
jjg@664 | 812 | if (t.isErroneous()) |
jjg@664 | 813 | return t; |
jjg@1374 | 814 | if (t.hasTag(TYPEVAR) && !classExpected && !interfaceExpected) { |
duke@1 | 815 | // check that type variable is already visible |
duke@1 | 816 | if (t.getUpperBound() == null) { |
duke@1 | 817 | log.error(tree.pos(), "illegal.forward.ref"); |
jjg@110 | 818 | return types.createErrorType(t); |
duke@1 | 819 | } |
duke@1 | 820 | } else { |
duke@1 | 821 | t = chk.checkClassType(tree.pos(), t, checkExtensible|!allowGenerics); |
duke@1 | 822 | } |
duke@1 | 823 | if (interfaceExpected && (t.tsym.flags() & INTERFACE) == 0) { |
duke@1 | 824 | log.error(tree.pos(), "intf.expected.here"); |
duke@1 | 825 | // return errType is necessary since otherwise there might |
duke@1 | 826 | // be undetected cycles which cause attribution to loop |
jjg@110 | 827 | return types.createErrorType(t); |
duke@1 | 828 | } else if (checkExtensible && |
duke@1 | 829 | classExpected && |
duke@1 | 830 | (t.tsym.flags() & INTERFACE) != 0) { |
jjg@664 | 831 | log.error(tree.pos(), "no.intf.expected.here"); |
jjg@110 | 832 | return types.createErrorType(t); |
duke@1 | 833 | } |
duke@1 | 834 | if (checkExtensible && |
duke@1 | 835 | ((t.tsym.flags() & FINAL) != 0)) { |
duke@1 | 836 | log.error(tree.pos(), |
duke@1 | 837 | "cant.inherit.from.final", t.tsym); |
duke@1 | 838 | } |
duke@1 | 839 | chk.checkNonCyclic(tree.pos(), t); |
duke@1 | 840 | return t; |
duke@1 | 841 | } |
duke@1 | 842 | |
mcimadamore@1269 | 843 | Type attribIdentAsEnumType(Env<AttrContext> env, JCIdent id) { |
mcimadamore@1269 | 844 | Assert.check((env.enclClass.sym.flags() & ENUM) != 0); |
mcimadamore@1269 | 845 | id.type = env.info.scope.owner.type; |
mcimadamore@1269 | 846 | id.sym = env.info.scope.owner; |
mcimadamore@1269 | 847 | return id.type; |
mcimadamore@1269 | 848 | } |
mcimadamore@1269 | 849 | |
duke@1 | 850 | public void visitClassDef(JCClassDecl tree) { |
duke@1 | 851 | // Local classes have not been entered yet, so we need to do it now: |
duke@1 | 852 | if ((env.info.scope.owner.kind & (VAR | MTH)) != 0) |
duke@1 | 853 | enter.classEnter(tree, env); |
duke@1 | 854 | |
duke@1 | 855 | ClassSymbol c = tree.sym; |
duke@1 | 856 | if (c == null) { |
duke@1 | 857 | // exit in case something drastic went wrong during enter. |
duke@1 | 858 | result = null; |
duke@1 | 859 | } else { |
duke@1 | 860 | // make sure class has been completed: |
duke@1 | 861 | c.complete(); |
duke@1 | 862 | |
duke@1 | 863 | // If this class appears as an anonymous class |
duke@1 | 864 | // in a superclass constructor call where |
duke@1 | 865 | // no explicit outer instance is given, |
duke@1 | 866 | // disable implicit outer instance from being passed. |
duke@1 | 867 | // (This would be an illegal access to "this before super"). |
duke@1 | 868 | if (env.info.isSelfCall && |
jjg@1127 | 869 | env.tree.hasTag(NEWCLASS) && |
duke@1 | 870 | ((JCNewClass) env.tree).encl == null) |
duke@1 | 871 | { |
duke@1 | 872 | c.flags_field |= NOOUTERTHIS; |
duke@1 | 873 | } |
duke@1 | 874 | attribClass(tree.pos(), c); |
duke@1 | 875 | result = tree.type = c.type; |
duke@1 | 876 | } |
duke@1 | 877 | } |
duke@1 | 878 | |
duke@1 | 879 | public void visitMethodDef(JCMethodDecl tree) { |
duke@1 | 880 | MethodSymbol m = tree.sym; |
mcimadamore@1366 | 881 | boolean isDefaultMethod = (m.flags() & DEFAULT) != 0; |
duke@1 | 882 | |
jjg@1802 | 883 | Lint lint = env.info.lint.augment(m); |
duke@1 | 884 | Lint prevLint = chk.setLint(lint); |
mcimadamore@795 | 885 | MethodSymbol prevMethod = chk.setMethod(m); |
duke@1 | 886 | try { |
mcimadamore@852 | 887 | deferredLintHandler.flush(tree.pos()); |
duke@1 | 888 | chk.checkDeprecatedAnnotation(tree.pos(), m); |
duke@1 | 889 | |
jjg@1521 | 890 | |
mcimadamore@1436 | 891 | // Create a new environment with local scope |
mcimadamore@1436 | 892 | // for attributing the method. |
mcimadamore@1436 | 893 | Env<AttrContext> localEnv = memberEnter.methodEnv(tree, env); |
mcimadamore@1436 | 894 | localEnv.info.lint = lint; |
mcimadamore@1436 | 895 | |
mcimadamore@1436 | 896 | attribStats(tree.typarams, localEnv); |
duke@1 | 897 | |
duke@1 | 898 | // If we override any other methods, check that we do so properly. |
duke@1 | 899 | // JLS ??? |
mcimadamore@858 | 900 | if (m.isStatic()) { |
mcimadamore@858 | 901 | chk.checkHideClashes(tree.pos(), env.enclClass.type, m); |
mcimadamore@858 | 902 | } else { |
mcimadamore@858 | 903 | chk.checkOverrideClashes(tree.pos(), env.enclClass.type, m); |
mcimadamore@858 | 904 | } |
duke@1 | 905 | chk.checkOverride(tree, m); |
duke@1 | 906 | |
mcimadamore@1415 | 907 | if (isDefaultMethod && types.overridesObjectMethod(m.enclClass(), m)) { |
mcimadamore@1393 | 908 | log.error(tree, "default.overrides.object.member", m.name, Kinds.kindName(m.location()), m.location()); |
mcimadamore@1393 | 909 | } |
mcimadamore@1393 | 910 | |
duke@1 | 911 | // Enter all type parameters into the local method scope. |
duke@1 | 912 | for (List<JCTypeParameter> l = tree.typarams; l.nonEmpty(); l = l.tail) |
duke@1 | 913 | localEnv.info.scope.enterIfAbsent(l.head.type.tsym); |
duke@1 | 914 | |
duke@1 | 915 | ClassSymbol owner = env.enclClass.sym; |
duke@1 | 916 | if ((owner.flags() & ANNOTATION) != 0 && |
duke@1 | 917 | tree.params.nonEmpty()) |
duke@1 | 918 | log.error(tree.params.head.pos(), |
duke@1 | 919 | "intf.annotation.members.cant.have.params"); |
duke@1 | 920 | |
duke@1 | 921 | // Attribute all value parameters. |
duke@1 | 922 | for (List<JCVariableDecl> l = tree.params; l.nonEmpty(); l = l.tail) { |
duke@1 | 923 | attribStat(l.head, localEnv); |
duke@1 | 924 | } |
duke@1 | 925 | |
mcimadamore@795 | 926 | chk.checkVarargsMethodDecl(localEnv, tree); |
mcimadamore@580 | 927 | |
duke@1 | 928 | // Check that type parameters are well-formed. |
mcimadamore@122 | 929 | chk.validate(tree.typarams, localEnv); |
duke@1 | 930 | |
duke@1 | 931 | // Check that result type is well-formed. |
mcimadamore@122 | 932 | chk.validate(tree.restype, localEnv); |
mcimadamore@629 | 933 | |
jjg@1521 | 934 | // Check that receiver type is well-formed. |
jjg@1521 | 935 | if (tree.recvparam != null) { |
jjg@1521 | 936 | // Use a new environment to check the receiver parameter. |
jjg@1521 | 937 | // Otherwise I get "might not have been initialized" errors. |
jjg@1521 | 938 | // Is there a better way? |
jjg@1521 | 939 | Env<AttrContext> newEnv = memberEnter.methodEnv(tree, env); |
jjg@1521 | 940 | attribType(tree.recvparam, newEnv); |
jjg@1521 | 941 | chk.validate(tree.recvparam, newEnv); |
jjg@1521 | 942 | } |
jjg@1521 | 943 | |
mcimadamore@629 | 944 | // annotation method checks |
mcimadamore@629 | 945 | if ((owner.flags() & ANNOTATION) != 0) { |
mcimadamore@629 | 946 | // annotation method cannot have throws clause |
mcimadamore@629 | 947 | if (tree.thrown.nonEmpty()) { |
mcimadamore@629 | 948 | log.error(tree.thrown.head.pos(), |
mcimadamore@629 | 949 | "throws.not.allowed.in.intf.annotation"); |
mcimadamore@629 | 950 | } |
mcimadamore@629 | 951 | // annotation method cannot declare type-parameters |
mcimadamore@629 | 952 | if (tree.typarams.nonEmpty()) { |
mcimadamore@629 | 953 | log.error(tree.typarams.head.pos(), |
mcimadamore@629 | 954 | "intf.annotation.members.cant.have.type.params"); |
mcimadamore@629 | 955 | } |
mcimadamore@629 | 956 | // validate annotation method's return type (could be an annotation type) |
duke@1 | 957 | chk.validateAnnotationType(tree.restype); |
mcimadamore@629 | 958 | // ensure that annotation method does not clash with members of Object/Annotation |
duke@1 | 959 | chk.validateAnnotationMethod(tree.pos(), m); |
duke@1 | 960 | |
mcimadamore@634 | 961 | if (tree.defaultValue != null) { |
mcimadamore@634 | 962 | // if default value is an annotation, check it is a well-formed |
mcimadamore@634 | 963 | // annotation value (e.g. no duplicate values, no missing values, etc.) |
mcimadamore@634 | 964 | chk.validateAnnotationTree(tree.defaultValue); |
mcimadamore@634 | 965 | } |
mcimadamore@629 | 966 | } |
mcimadamore@629 | 967 | |
duke@1 | 968 | for (List<JCExpression> l = tree.thrown; l.nonEmpty(); l = l.tail) |
duke@1 | 969 | chk.checkType(l.head.pos(), l.head.type, syms.throwableType); |
duke@1 | 970 | |
duke@1 | 971 | if (tree.body == null) { |
duke@1 | 972 | // Empty bodies are only allowed for |
duke@1 | 973 | // abstract, native, or interface methods, or for methods |
duke@1 | 974 | // in a retrofit signature class. |
mcimadamore@1513 | 975 | if (isDefaultMethod || (tree.sym.flags() & (ABSTRACT | NATIVE)) == 0 && |
duke@1 | 976 | !relax) |
duke@1 | 977 | log.error(tree.pos(), "missing.meth.body.or.decl.abstract"); |
duke@1 | 978 | if (tree.defaultValue != null) { |
duke@1 | 979 | if ((owner.flags() & ANNOTATION) == 0) |
duke@1 | 980 | log.error(tree.pos(), |
duke@1 | 981 | "default.allowed.in.intf.annotation.member"); |
duke@1 | 982 | } |
mcimadamore@1393 | 983 | } else if ((tree.sym.flags() & ABSTRACT) != 0 && !isDefaultMethod) { |
mcimadamore@1393 | 984 | if ((owner.flags() & INTERFACE) != 0) { |
mcimadamore@1393 | 985 | log.error(tree.body.pos(), "intf.meth.cant.have.body"); |
mcimadamore@1393 | 986 | } else { |
mcimadamore@1393 | 987 | log.error(tree.pos(), "abstract.meth.cant.have.body"); |
mcimadamore@1393 | 988 | } |
duke@1 | 989 | } else if ((tree.mods.flags & NATIVE) != 0) { |
duke@1 | 990 | log.error(tree.pos(), "native.meth.cant.have.body"); |
duke@1 | 991 | } else { |
duke@1 | 992 | // Add an implicit super() call unless an explicit call to |
duke@1 | 993 | // super(...) or this(...) is given |
duke@1 | 994 | // or we are compiling class java.lang.Object. |
duke@1 | 995 | if (tree.name == names.init && owner.type != syms.objectType) { |
duke@1 | 996 | JCBlock body = tree.body; |
duke@1 | 997 | if (body.stats.isEmpty() || |
duke@1 | 998 | !TreeInfo.isSelfCall(body.stats.head)) { |
duke@1 | 999 | body.stats = body.stats. |
duke@1 | 1000 | prepend(memberEnter.SuperCall(make.at(body.pos), |
duke@1 | 1001 | List.<Type>nil(), |
duke@1 | 1002 | List.<JCVariableDecl>nil(), |
duke@1 | 1003 | false)); |
duke@1 | 1004 | } else if ((env.enclClass.sym.flags() & ENUM) != 0 && |
duke@1 | 1005 | (tree.mods.flags & GENERATEDCONSTR) == 0 && |
duke@1 | 1006 | TreeInfo.isSuperCall(body.stats.head)) { |
duke@1 | 1007 | // enum constructors are not allowed to call super |
duke@1 | 1008 | // directly, so make sure there aren't any super calls |
duke@1 | 1009 | // in enum constructors, except in the compiler |
duke@1 | 1010 | // generated one. |
duke@1 | 1011 | log.error(tree.body.stats.head.pos(), |
duke@1 | 1012 | "call.to.super.not.allowed.in.enum.ctor", |
duke@1 | 1013 | env.enclClass.sym); |
duke@1 | 1014 | } |
duke@1 | 1015 | } |
duke@1 | 1016 | |
jjg@1521 | 1017 | // Attribute all type annotations in the body |
jjg@1521 | 1018 | memberEnter.typeAnnotate(tree.body, localEnv, m); |
jjg@1521 | 1019 | annotate.flush(); |
jjg@1521 | 1020 | |
duke@1 | 1021 | // Attribute method body. |
duke@1 | 1022 | attribStat(tree.body, localEnv); |
duke@1 | 1023 | } |
jjg@1521 | 1024 | |
duke@1 | 1025 | localEnv.info.scope.leave(); |
duke@1 | 1026 | result = tree.type = m.type; |
duke@1 | 1027 | chk.validateAnnotations(tree.mods.annotations, m); |
duke@1 | 1028 | } |
duke@1 | 1029 | finally { |
duke@1 | 1030 | chk.setLint(prevLint); |
mcimadamore@795 | 1031 | chk.setMethod(prevMethod); |
duke@1 | 1032 | } |
duke@1 | 1033 | } |
duke@1 | 1034 | |
duke@1 | 1035 | public void visitVarDef(JCVariableDecl tree) { |
duke@1 | 1036 | // Local variables have not been entered yet, so we need to do it now: |
duke@1 | 1037 | if (env.info.scope.owner.kind == MTH) { |
duke@1 | 1038 | if (tree.sym != null) { |
duke@1 | 1039 | // parameters have already been entered |
duke@1 | 1040 | env.info.scope.enter(tree.sym); |
duke@1 | 1041 | } else { |
duke@1 | 1042 | memberEnter.memberEnter(tree, env); |
duke@1 | 1043 | annotate.flush(); |
duke@1 | 1044 | } |
jjg@1521 | 1045 | } else { |
jjg@1521 | 1046 | if (tree.init != null) { |
jjg@1521 | 1047 | // Field initializer expression need to be entered. |
jjg@1521 | 1048 | memberEnter.typeAnnotate(tree.init, env, tree.sym); |
jjg@1521 | 1049 | annotate.flush(); |
jjg@1521 | 1050 | } |
duke@1 | 1051 | } |
duke@1 | 1052 | |
duke@1 | 1053 | VarSymbol v = tree.sym; |
jjg@1802 | 1054 | Lint lint = env.info.lint.augment(v); |
duke@1 | 1055 | Lint prevLint = chk.setLint(lint); |
duke@1 | 1056 | |
mcimadamore@165 | 1057 | // Check that the variable's declared type is well-formed. |
mcimadamore@1761 | 1058 | boolean isImplicitLambdaParameter = env.tree.hasTag(LAMBDA) && |
mcimadamore@1761 | 1059 | ((JCLambda)env.tree).paramKind == JCLambda.ParameterKind.IMPLICIT && |
mcimadamore@1761 | 1060 | (tree.sym.flags() & PARAMETER) != 0; |
mcimadamore@1761 | 1061 | chk.validate(tree.vartype, env, !isImplicitLambdaParameter); |
mcimadamore@852 | 1062 | deferredLintHandler.flush(tree.pos()); |
mcimadamore@165 | 1063 | |
duke@1 | 1064 | try { |
duke@1 | 1065 | chk.checkDeprecatedAnnotation(tree.pos(), v); |
duke@1 | 1066 | |
duke@1 | 1067 | if (tree.init != null) { |
mcimadamore@1348 | 1068 | if ((v.flags_field & FINAL) != 0 && |
mcimadamore@1348 | 1069 | !tree.init.hasTag(NEWCLASS) && |
mcimadamore@1352 | 1070 | !tree.init.hasTag(LAMBDA) && |
mcimadamore@1352 | 1071 | !tree.init.hasTag(REFERENCE)) { |
duke@1 | 1072 | // In this case, `v' is final. Ensure that it's initializer is |
duke@1 | 1073 | // evaluated. |
duke@1 | 1074 | v.getConstValue(); // ensure initializer is evaluated |
duke@1 | 1075 | } else { |
duke@1 | 1076 | // Attribute initializer in a new environment |
duke@1 | 1077 | // with the declared variable as owner. |
duke@1 | 1078 | // Check that initializer conforms to variable's declared type. |
duke@1 | 1079 | Env<AttrContext> initEnv = memberEnter.initEnv(tree, env); |
duke@1 | 1080 | initEnv.info.lint = lint; |
duke@1 | 1081 | // In order to catch self-references, we set the variable's |
duke@1 | 1082 | // declaration position to maximal possible value, effectively |
duke@1 | 1083 | // marking the variable as undefined. |
mcimadamore@94 | 1084 | initEnv.info.enclVar = v; |
duke@1 | 1085 | attribExpr(tree.init, initEnv, v.type); |
duke@1 | 1086 | } |
duke@1 | 1087 | } |
duke@1 | 1088 | result = tree.type = v.type; |
duke@1 | 1089 | chk.validateAnnotations(tree.mods.annotations, v); |
duke@1 | 1090 | } |
duke@1 | 1091 | finally { |
duke@1 | 1092 | chk.setLint(prevLint); |
duke@1 | 1093 | } |
duke@1 | 1094 | } |
duke@1 | 1095 | |
duke@1 | 1096 | public void visitSkip(JCSkip tree) { |
duke@1 | 1097 | result = null; |
duke@1 | 1098 | } |
duke@1 | 1099 | |
duke@1 | 1100 | public void visitBlock(JCBlock tree) { |
duke@1 | 1101 | if (env.info.scope.owner.kind == TYP) { |
duke@1 | 1102 | // Block is a static or instance initializer; |
duke@1 | 1103 | // let the owner of the environment be a freshly |
duke@1 | 1104 | // created BLOCK-method. |
duke@1 | 1105 | Env<AttrContext> localEnv = |
duke@1 | 1106 | env.dup(tree, env.info.dup(env.info.scope.dupUnshared())); |
duke@1 | 1107 | localEnv.info.scope.owner = |
vromero@1555 | 1108 | new MethodSymbol(tree.flags | BLOCK | |
vromero@1555 | 1109 | env.info.scope.owner.flags() & STRICTFP, names.empty, null, |
vromero@1555 | 1110 | env.info.scope.owner); |
duke@1 | 1111 | if ((tree.flags & STATIC) != 0) localEnv.info.staticLevel++; |
jjg@1521 | 1112 | |
jjg@1521 | 1113 | // Attribute all type annotations in the block |
jjg@1521 | 1114 | memberEnter.typeAnnotate(tree, localEnv, localEnv.info.scope.owner); |
jjg@1521 | 1115 | annotate.flush(); |
jjg@1521 | 1116 | |
jjg@1755 | 1117 | { |
jjg@1755 | 1118 | // Store init and clinit type annotations with the ClassSymbol |
jjg@1755 | 1119 | // to allow output in Gen.normalizeDefs. |
jjg@1755 | 1120 | ClassSymbol cs = (ClassSymbol)env.info.scope.owner; |
jjg@1755 | 1121 | List<Attribute.TypeCompound> tas = localEnv.info.scope.owner.getRawTypeAttributes(); |
jjg@1755 | 1122 | if ((tree.flags & STATIC) != 0) { |
jjg@1802 | 1123 | cs.appendClassInitTypeAttributes(tas); |
jjg@1755 | 1124 | } else { |
jjg@1802 | 1125 | cs.appendInitTypeAttributes(tas); |
jjg@1755 | 1126 | } |
jjg@1755 | 1127 | } |
jjg@1755 | 1128 | |
duke@1 | 1129 | attribStats(tree.stats, localEnv); |
duke@1 | 1130 | } else { |
duke@1 | 1131 | // Create a new local environment with a local scope. |
duke@1 | 1132 | Env<AttrContext> localEnv = |
duke@1 | 1133 | env.dup(tree, env.info.dup(env.info.scope.dup())); |
mcimadamore@1347 | 1134 | try { |
mcimadamore@1347 | 1135 | attribStats(tree.stats, localEnv); |
mcimadamore@1347 | 1136 | } finally { |
mcimadamore@1347 | 1137 | localEnv.info.scope.leave(); |
mcimadamore@1347 | 1138 | } |
duke@1 | 1139 | } |
duke@1 | 1140 | result = null; |
duke@1 | 1141 | } |
duke@1 | 1142 | |
duke@1 | 1143 | public void visitDoLoop(JCDoWhileLoop tree) { |
duke@1 | 1144 | attribStat(tree.body, env.dup(tree)); |
duke@1 | 1145 | attribExpr(tree.cond, env, syms.booleanType); |
duke@1 | 1146 | result = null; |
duke@1 | 1147 | } |
duke@1 | 1148 | |
duke@1 | 1149 | public void visitWhileLoop(JCWhileLoop tree) { |
duke@1 | 1150 | attribExpr(tree.cond, env, syms.booleanType); |
duke@1 | 1151 | attribStat(tree.body, env.dup(tree)); |
duke@1 | 1152 | result = null; |
duke@1 | 1153 | } |
duke@1 | 1154 | |
duke@1 | 1155 | public void visitForLoop(JCForLoop tree) { |
duke@1 | 1156 | Env<AttrContext> loopEnv = |
duke@1 | 1157 | env.dup(env.tree, env.info.dup(env.info.scope.dup())); |
mcimadamore@1347 | 1158 | try { |
mcimadamore@1347 | 1159 | attribStats(tree.init, loopEnv); |
mcimadamore@1347 | 1160 | if (tree.cond != null) attribExpr(tree.cond, loopEnv, syms.booleanType); |
mcimadamore@1347 | 1161 | loopEnv.tree = tree; // before, we were not in loop! |
mcimadamore@1347 | 1162 | attribStats(tree.step, loopEnv); |
mcimadamore@1347 | 1163 | attribStat(tree.body, loopEnv); |
mcimadamore@1347 | 1164 | result = null; |
mcimadamore@1347 | 1165 | } |
mcimadamore@1347 | 1166 | finally { |
mcimadamore@1347 | 1167 | loopEnv.info.scope.leave(); |
mcimadamore@1347 | 1168 | } |
duke@1 | 1169 | } |
duke@1 | 1170 | |
duke@1 | 1171 | public void visitForeachLoop(JCEnhancedForLoop tree) { |
duke@1 | 1172 | Env<AttrContext> loopEnv = |
duke@1 | 1173 | env.dup(env.tree, env.info.dup(env.info.scope.dup())); |
mcimadamore@1347 | 1174 | try { |
mcimadamore@1810 | 1175 | //the Formal Parameter of a for-each loop is not in the scope when |
mcimadamore@1810 | 1176 | //attributing the for-each expression; we mimick this by attributing |
mcimadamore@1810 | 1177 | //the for-each expression first (against original scope). |
mcimadamore@1810 | 1178 | Type exprType = types.upperBound(attribExpr(tree.expr, loopEnv)); |
mcimadamore@1347 | 1179 | attribStat(tree.var, loopEnv); |
mcimadamore@1347 | 1180 | chk.checkNonVoid(tree.pos(), exprType); |
mcimadamore@1347 | 1181 | Type elemtype = types.elemtype(exprType); // perhaps expr is an array? |
mcimadamore@1347 | 1182 | if (elemtype == null) { |
mcimadamore@1347 | 1183 | // or perhaps expr implements Iterable<T>? |
mcimadamore@1347 | 1184 | Type base = types.asSuper(exprType, syms.iterableType.tsym); |
mcimadamore@1347 | 1185 | if (base == null) { |
mcimadamore@1347 | 1186 | log.error(tree.expr.pos(), |
mcimadamore@1347 | 1187 | "foreach.not.applicable.to.type", |
mcimadamore@1347 | 1188 | exprType, |
mcimadamore@1347 | 1189 | diags.fragment("type.req.array.or.iterable")); |
mcimadamore@1347 | 1190 | elemtype = types.createErrorType(exprType); |
mcimadamore@1347 | 1191 | } else { |
mcimadamore@1347 | 1192 | List<Type> iterableParams = base.allparams(); |
mcimadamore@1347 | 1193 | elemtype = iterableParams.isEmpty() |
mcimadamore@1347 | 1194 | ? syms.objectType |
mcimadamore@1347 | 1195 | : types.upperBound(iterableParams.head); |
mcimadamore@1347 | 1196 | } |
duke@1 | 1197 | } |
mcimadamore@1347 | 1198 | chk.checkType(tree.expr.pos(), elemtype, tree.var.sym.type); |
mcimadamore@1347 | 1199 | loopEnv.tree = tree; // before, we were not in loop! |
mcimadamore@1347 | 1200 | attribStat(tree.body, loopEnv); |
mcimadamore@1347 | 1201 | result = null; |
duke@1 | 1202 | } |
mcimadamore@1347 | 1203 | finally { |
mcimadamore@1347 | 1204 | loopEnv.info.scope.leave(); |
mcimadamore@1347 | 1205 | } |
duke@1 | 1206 | } |
duke@1 | 1207 | |
duke@1 | 1208 | public void visitLabelled(JCLabeledStatement tree) { |
duke@1 | 1209 | // Check that label is not used in an enclosing statement |
duke@1 | 1210 | Env<AttrContext> env1 = env; |
jjg@1127 | 1211 | while (env1 != null && !env1.tree.hasTag(CLASSDEF)) { |
jjg@1127 | 1212 | if (env1.tree.hasTag(LABELLED) && |
duke@1 | 1213 | ((JCLabeledStatement) env1.tree).label == tree.label) { |
duke@1 | 1214 | log.error(tree.pos(), "label.already.in.use", |
duke@1 | 1215 | tree.label); |
duke@1 | 1216 | break; |
duke@1 | 1217 | } |
duke@1 | 1218 | env1 = env1.next; |
duke@1 | 1219 | } |
duke@1 | 1220 | |
duke@1 | 1221 | attribStat(tree.body, env.dup(tree)); |
duke@1 | 1222 | result = null; |
duke@1 | 1223 | } |
duke@1 | 1224 | |
duke@1 | 1225 | public void visitSwitch(JCSwitch tree) { |
duke@1 | 1226 | Type seltype = attribExpr(tree.selector, env); |
duke@1 | 1227 | |
duke@1 | 1228 | Env<AttrContext> switchEnv = |
duke@1 | 1229 | env.dup(tree, env.info.dup(env.info.scope.dup())); |
duke@1 | 1230 | |
mcimadamore@1347 | 1231 | try { |
mcimadamore@1347 | 1232 | |
mcimadamore@1347 | 1233 | boolean enumSwitch = |
mcimadamore@1347 | 1234 | allowEnums && |
mcimadamore@1347 | 1235 | (seltype.tsym.flags() & Flags.ENUM) != 0; |
mcimadamore@1347 | 1236 | boolean stringSwitch = false; |
mcimadamore@1347 | 1237 | if (types.isSameType(seltype, syms.stringType)) { |
mcimadamore@1347 | 1238 | if (allowStringsInSwitch) { |
mcimadamore@1347 | 1239 | stringSwitch = true; |
mcimadamore@1347 | 1240 | } else { |
mcimadamore@1347 | 1241 | log.error(tree.selector.pos(), "string.switch.not.supported.in.source", sourceName); |
mcimadamore@1347 | 1242 | } |
darcy@430 | 1243 | } |
mcimadamore@1347 | 1244 | if (!enumSwitch && !stringSwitch) |
mcimadamore@1347 | 1245 | seltype = chk.checkType(tree.selector.pos(), seltype, syms.intType); |
mcimadamore@1347 | 1246 | |
mcimadamore@1347 | 1247 | // Attribute all cases and |
mcimadamore@1347 | 1248 | // check that there are no duplicate case labels or default clauses. |
mcimadamore@1347 | 1249 | Set<Object> labels = new HashSet<Object>(); // The set of case labels. |
mcimadamore@1347 | 1250 | boolean hasDefault = false; // Is there a default label? |
mcimadamore@1347 | 1251 | for (List<JCCase> l = tree.cases; l.nonEmpty(); l = l.tail) { |
mcimadamore@1347 | 1252 | JCCase c = l.head; |
mcimadamore@1347 | 1253 | Env<AttrContext> caseEnv = |
mcimadamore@1347 | 1254 | switchEnv.dup(c, env.info.dup(switchEnv.info.scope.dup())); |
mcimadamore@1347 | 1255 | try { |
mcimadamore@1347 | 1256 | if (c.pat != null) { |
mcimadamore@1347 | 1257 | if (enumSwitch) { |
mcimadamore@1347 | 1258 | Symbol sym = enumConstant(c.pat, seltype); |
mcimadamore@1347 | 1259 | if (sym == null) { |
mcimadamore@1347 | 1260 | log.error(c.pat.pos(), "enum.label.must.be.unqualified.enum"); |
mcimadamore@1347 | 1261 | } else if (!labels.add(sym)) { |
mcimadamore@1347 | 1262 | log.error(c.pos(), "duplicate.case.label"); |
mcimadamore@1347 | 1263 | } |
mcimadamore@1347 | 1264 | } else { |
mcimadamore@1347 | 1265 | Type pattype = attribExpr(c.pat, switchEnv, seltype); |
jjg@1374 | 1266 | if (!pattype.hasTag(ERROR)) { |
mcimadamore@1347 | 1267 | if (pattype.constValue() == null) { |
mcimadamore@1347 | 1268 | log.error(c.pat.pos(), |
mcimadamore@1347 | 1269 | (stringSwitch ? "string.const.req" : "const.expr.req")); |
mcimadamore@1347 | 1270 | } else if (labels.contains(pattype.constValue())) { |
mcimadamore@1347 | 1271 | log.error(c.pos(), "duplicate.case.label"); |
mcimadamore@1347 | 1272 | } else { |
mcimadamore@1347 | 1273 | labels.add(pattype.constValue()); |
mcimadamore@1347 | 1274 | } |
mcimadamore@1347 | 1275 | } |
mcimadamore@1347 | 1276 | } |
mcimadamore@1347 | 1277 | } else if (hasDefault) { |
mcimadamore@1347 | 1278 | log.error(c.pos(), "duplicate.default.label"); |
mcimadamore@1347 | 1279 | } else { |
mcimadamore@1347 | 1280 | hasDefault = true; |
mcimadamore@1347 | 1281 | } |
mcimadamore@1347 | 1282 | attribStats(c.stats, caseEnv); |
mcimadamore@1347 | 1283 | } finally { |
mcimadamore@1347 | 1284 | caseEnv.info.scope.leave(); |
mcimadamore@1347 | 1285 | addVars(c.stats, switchEnv.info.scope); |
mcimadamore@1347 | 1286 | } |
mcimadamore@1347 | 1287 | } |
mcimadamore@1347 | 1288 | |
mcimadamore@1347 | 1289 | result = null; |
darcy@430 | 1290 | } |
mcimadamore@1347 | 1291 | finally { |
mcimadamore@1347 | 1292 | switchEnv.info.scope.leave(); |
duke@1 | 1293 | } |
duke@1 | 1294 | } |
duke@1 | 1295 | // where |
duke@1 | 1296 | /** Add any variables defined in stats to the switch scope. */ |
duke@1 | 1297 | private static void addVars(List<JCStatement> stats, Scope switchScope) { |
duke@1 | 1298 | for (;stats.nonEmpty(); stats = stats.tail) { |
duke@1 | 1299 | JCTree stat = stats.head; |
jjg@1127 | 1300 | if (stat.hasTag(VARDEF)) |
duke@1 | 1301 | switchScope.enter(((JCVariableDecl) stat).sym); |
duke@1 | 1302 | } |
duke@1 | 1303 | } |
duke@1 | 1304 | // where |
duke@1 | 1305 | /** Return the selected enumeration constant symbol, or null. */ |
duke@1 | 1306 | private Symbol enumConstant(JCTree tree, Type enumType) { |
jjg@1127 | 1307 | if (!tree.hasTag(IDENT)) { |
duke@1 | 1308 | log.error(tree.pos(), "enum.label.must.be.unqualified.enum"); |
duke@1 | 1309 | return syms.errSymbol; |
duke@1 | 1310 | } |
duke@1 | 1311 | JCIdent ident = (JCIdent)tree; |
duke@1 | 1312 | Name name = ident.name; |
duke@1 | 1313 | for (Scope.Entry e = enumType.tsym.members().lookup(name); |
duke@1 | 1314 | e.scope != null; e = e.next()) { |
duke@1 | 1315 | if (e.sym.kind == VAR) { |
duke@1 | 1316 | Symbol s = ident.sym = e.sym; |
duke@1 | 1317 | ((VarSymbol)s).getConstValue(); // ensure initializer is evaluated |
duke@1 | 1318 | ident.type = s.type; |
duke@1 | 1319 | return ((s.flags_field & Flags.ENUM) == 0) |
duke@1 | 1320 | ? null : s; |
duke@1 | 1321 | } |
duke@1 | 1322 | } |
duke@1 | 1323 | return null; |
duke@1 | 1324 | } |
duke@1 | 1325 | |
duke@1 | 1326 | public void visitSynchronized(JCSynchronized tree) { |
duke@1 | 1327 | chk.checkRefType(tree.pos(), attribExpr(tree.lock, env)); |
duke@1 | 1328 | attribStat(tree.body, env); |
duke@1 | 1329 | result = null; |
duke@1 | 1330 | } |
duke@1 | 1331 | |
duke@1 | 1332 | public void visitTry(JCTry tree) { |
darcy@609 | 1333 | // Create a new local environment with a local |
darcy@609 | 1334 | Env<AttrContext> localEnv = env.dup(tree, env.info.dup(env.info.scope.dup())); |
mcimadamore@1347 | 1335 | try { |
mcimadamore@1347 | 1336 | boolean isTryWithResource = tree.resources.nonEmpty(); |
mcimadamore@1347 | 1337 | // Create a nested environment for attributing the try block if needed |
mcimadamore@1347 | 1338 | Env<AttrContext> tryEnv = isTryWithResource ? |
mcimadamore@1347 | 1339 | env.dup(tree, localEnv.info.dup(localEnv.info.scope.dup())) : |
mcimadamore@1347 | 1340 | localEnv; |
mcimadamore@1347 | 1341 | try { |
mcimadamore@1347 | 1342 | // Attribute resource declarations |
mcimadamore@1347 | 1343 | for (JCTree resource : tree.resources) { |
mcimadamore@1347 | 1344 | CheckContext twrContext = new Check.NestedCheckContext(resultInfo.checkContext) { |
mcimadamore@1347 | 1345 | @Override |
mcimadamore@1347 | 1346 | public void report(DiagnosticPosition pos, JCDiagnostic details) { |
mcimadamore@1347 | 1347 | chk.basicHandler.report(pos, diags.fragment("try.not.applicable.to.type", details)); |
mcimadamore@1347 | 1348 | } |
mcimadamore@1347 | 1349 | }; |
mcimadamore@1347 | 1350 | ResultInfo twrResult = new ResultInfo(VAL, syms.autoCloseableType, twrContext); |
mcimadamore@1347 | 1351 | if (resource.hasTag(VARDEF)) { |
mcimadamore@1347 | 1352 | attribStat(resource, tryEnv); |
mcimadamore@1347 | 1353 | twrResult.check(resource, resource.type); |
mcimadamore@1347 | 1354 | |
mcimadamore@1347 | 1355 | //check that resource type cannot throw InterruptedException |
mcimadamore@1347 | 1356 | checkAutoCloseable(resource.pos(), localEnv, resource.type); |
mcimadamore@1347 | 1357 | |
jlahoda@1734 | 1358 | VarSymbol var = ((JCVariableDecl) resource).sym; |
mcimadamore@1347 | 1359 | var.setData(ElementKind.RESOURCE_VARIABLE); |
mcimadamore@1347 | 1360 | } else { |
mcimadamore@1347 | 1361 | attribTree(resource, tryEnv, twrResult); |
mcimadamore@1347 | 1362 | } |
mcimadamore@1238 | 1363 | } |
mcimadamore@1347 | 1364 | // Attribute body |
mcimadamore@1347 | 1365 | attribStat(tree.body, tryEnv); |
mcimadamore@1347 | 1366 | } finally { |
mcimadamore@1347 | 1367 | if (isTryWithResource) |
mcimadamore@1347 | 1368 | tryEnv.info.scope.leave(); |
darcy@609 | 1369 | } |
mcimadamore@1347 | 1370 | |
mcimadamore@1347 | 1371 | // Attribute catch clauses |
mcimadamore@1347 | 1372 | for (List<JCCatch> l = tree.catchers; l.nonEmpty(); l = l.tail) { |
mcimadamore@1347 | 1373 | JCCatch c = l.head; |
mcimadamore@1347 | 1374 | Env<AttrContext> catchEnv = |
mcimadamore@1347 | 1375 | localEnv.dup(c, localEnv.info.dup(localEnv.info.scope.dup())); |
mcimadamore@1347 | 1376 | try { |
mcimadamore@1347 | 1377 | Type ctype = attribStat(c.param, catchEnv); |
mcimadamore@1347 | 1378 | if (TreeInfo.isMultiCatch(c)) { |
mcimadamore@1347 | 1379 | //multi-catch parameter is implicitly marked as final |
mcimadamore@1347 | 1380 | c.param.sym.flags_field |= FINAL | UNION; |
mcimadamore@1347 | 1381 | } |
mcimadamore@1347 | 1382 | if (c.param.sym.kind == Kinds.VAR) { |
mcimadamore@1347 | 1383 | c.param.sym.setData(ElementKind.EXCEPTION_PARAMETER); |
mcimadamore@1347 | 1384 | } |
mcimadamore@1347 | 1385 | chk.checkType(c.param.vartype.pos(), |
mcimadamore@1347 | 1386 | chk.checkClassType(c.param.vartype.pos(), ctype), |
mcimadamore@1347 | 1387 | syms.throwableType); |
mcimadamore@1347 | 1388 | attribStat(c.body, catchEnv); |
mcimadamore@1347 | 1389 | } finally { |
mcimadamore@1347 | 1390 | catchEnv.info.scope.leave(); |
mcimadamore@1347 | 1391 | } |
mcimadamore@1347 | 1392 | } |
mcimadamore@1347 | 1393 | |
mcimadamore@1347 | 1394 | // Attribute finalizer |
mcimadamore@1347 | 1395 | if (tree.finalizer != null) attribStat(tree.finalizer, localEnv); |
mcimadamore@1347 | 1396 | result = null; |
darcy@609 | 1397 | } |
mcimadamore@1347 | 1398 | finally { |
mcimadamore@1347 | 1399 | localEnv.info.scope.leave(); |
duke@1 | 1400 | } |
duke@1 | 1401 | } |
duke@1 | 1402 | |
mcimadamore@951 | 1403 | void checkAutoCloseable(DiagnosticPosition pos, Env<AttrContext> env, Type resource) { |
mcimadamore@951 | 1404 | if (!resource.isErroneous() && |
darcy@1207 | 1405 | types.asSuper(resource, syms.autoCloseableType.tsym) != null && |
darcy@1207 | 1406 | !types.isSameType(resource, syms.autoCloseableType)) { // Don't emit warning for AutoCloseable itself |
mcimadamore@951 | 1407 | Symbol close = syms.noSymbol; |
jjg@1406 | 1408 | Log.DiagnosticHandler discardHandler = new Log.DiscardDiagnosticHandler(log); |
mcimadamore@951 | 1409 | try { |
mcimadamore@951 | 1410 | close = rs.resolveQualifiedMethod(pos, |
mcimadamore@951 | 1411 | env, |
mcimadamore@951 | 1412 | resource, |
mcimadamore@951 | 1413 | names.close, |
mcimadamore@951 | 1414 | List.<Type>nil(), |
mcimadamore@951 | 1415 | List.<Type>nil()); |
mcimadamore@951 | 1416 | } |
mcimadamore@951 | 1417 | finally { |
jjg@1406 | 1418 | log.popDiagnosticHandler(discardHandler); |
mcimadamore@951 | 1419 | } |
mcimadamore@951 | 1420 | if (close.kind == MTH && |
mcimadamore@951 | 1421 | close.overrides(syms.autoCloseableClose, resource.tsym, types, true) && |
mcimadamore@951 | 1422 | chk.isHandled(syms.interruptedExceptionType, types.memberType(resource, close).getThrownTypes()) && |
mcimadamore@951 | 1423 | env.info.lint.isEnabled(LintCategory.TRY)) { |
mcimadamore@951 | 1424 | log.warning(LintCategory.TRY, pos, "try.resource.throws.interrupted.exc", resource); |
mcimadamore@951 | 1425 | } |
mcimadamore@951 | 1426 | } |
mcimadamore@951 | 1427 | } |
mcimadamore@951 | 1428 | |
duke@1 | 1429 | public void visitConditional(JCConditional tree) { |
mcimadamore@1347 | 1430 | Type condtype = attribExpr(tree.cond, env, syms.booleanType); |
mcimadamore@1347 | 1431 | |
mcimadamore@1510 | 1432 | tree.polyKind = (!allowPoly || |
jjg@1374 | 1433 | pt().hasTag(NONE) && pt() != Type.recoveryType || |
mcimadamore@1510 | 1434 | isBooleanOrNumeric(env, tree)) ? |
mcimadamore@1510 | 1435 | PolyKind.STANDALONE : PolyKind.POLY; |
mcimadamore@1510 | 1436 | |
mcimadamore@1510 | 1437 | if (tree.polyKind == PolyKind.POLY && resultInfo.pt.hasTag(VOID)) { |
mcimadamore@1347 | 1438 | //cannot get here (i.e. it means we are returning from void method - which is already an error) |
mcimadamore@1415 | 1439 | resultInfo.checkContext.report(tree, diags.fragment("conditional.target.cant.be.void")); |
mcimadamore@1347 | 1440 | result = tree.type = types.createErrorType(resultInfo.pt); |
mcimadamore@1347 | 1441 | return; |
mcimadamore@1347 | 1442 | } |
mcimadamore@1347 | 1443 | |
mcimadamore@1510 | 1444 | ResultInfo condInfo = tree.polyKind == PolyKind.STANDALONE ? |
mcimadamore@1347 | 1445 | unknownExprInfo : |
mcimadamore@1415 | 1446 | resultInfo.dup(new Check.NestedCheckContext(resultInfo.checkContext) { |
mcimadamore@1347 | 1447 | //this will use enclosing check context to check compatibility of |
mcimadamore@1347 | 1448 | //subexpression against target type; if we are in a method check context, |
mcimadamore@1347 | 1449 | //depending on whether boxing is allowed, we could have incompatibilities |
mcimadamore@1347 | 1450 | @Override |
mcimadamore@1347 | 1451 | public void report(DiagnosticPosition pos, JCDiagnostic details) { |
mcimadamore@1347 | 1452 | enclosingContext.report(pos, diags.fragment("incompatible.type.in.conditional", details)); |
mcimadamore@1347 | 1453 | } |
mcimadamore@1347 | 1454 | }); |
mcimadamore@1347 | 1455 | |
mcimadamore@1347 | 1456 | Type truetype = attribTree(tree.truepart, env, condInfo); |
mcimadamore@1347 | 1457 | Type falsetype = attribTree(tree.falsepart, env, condInfo); |
mcimadamore@1347 | 1458 | |
mcimadamore@1510 | 1459 | Type owntype = (tree.polyKind == PolyKind.STANDALONE) ? condType(tree, truetype, falsetype) : pt(); |
mcimadamore@1347 | 1460 | if (condtype.constValue() != null && |
mcimadamore@1347 | 1461 | truetype.constValue() != null && |
mcimadamore@1456 | 1462 | falsetype.constValue() != null && |
mcimadamore@1456 | 1463 | !owntype.hasTag(NONE)) { |
mcimadamore@1347 | 1464 | //constant folding |
mcimadamore@1347 | 1465 | owntype = cfolder.coerce(condtype.isTrue() ? truetype : falsetype, owntype); |
mcimadamore@1347 | 1466 | } |
mcimadamore@1347 | 1467 | result = check(tree, owntype, VAL, resultInfo); |
duke@1 | 1468 | } |
duke@1 | 1469 | //where |
mcimadamore@1347 | 1470 | private boolean isBooleanOrNumeric(Env<AttrContext> env, JCExpression tree) { |
mcimadamore@1347 | 1471 | switch (tree.getTag()) { |
jjg@1374 | 1472 | case LITERAL: return ((JCLiteral)tree).typetag.isSubRangeOf(DOUBLE) || |
mcimadamore@1415 | 1473 | ((JCLiteral)tree).typetag == BOOLEAN || |
mcimadamore@1415 | 1474 | ((JCLiteral)tree).typetag == BOT; |
mcimadamore@1347 | 1475 | case LAMBDA: case REFERENCE: return false; |
mcimadamore@1347 | 1476 | case PARENS: return isBooleanOrNumeric(env, ((JCParens)tree).expr); |
mcimadamore@1347 | 1477 | case CONDEXPR: |
mcimadamore@1347 | 1478 | JCConditional condTree = (JCConditional)tree; |
mcimadamore@1347 | 1479 | return isBooleanOrNumeric(env, condTree.truepart) && |
mcimadamore@1347 | 1480 | isBooleanOrNumeric(env, condTree.falsepart); |
mcimadamore@1510 | 1481 | case APPLY: |
mcimadamore@1510 | 1482 | JCMethodInvocation speculativeMethodTree = |
mcimadamore@1510 | 1483 | (JCMethodInvocation)deferredAttr.attribSpeculative(tree, env, unknownExprInfo); |
mcimadamore@1510 | 1484 | Type owntype = TreeInfo.symbol(speculativeMethodTree.meth).type.getReturnType(); |
mcimadamore@1510 | 1485 | return types.unboxedTypeOrType(owntype).isPrimitive(); |
mcimadamore@1510 | 1486 | case NEWCLASS: |
mcimadamore@1510 | 1487 | JCExpression className = |
mcimadamore@1510 | 1488 | removeClassParams.translate(((JCNewClass)tree).clazz); |
mcimadamore@1510 | 1489 | JCExpression speculativeNewClassTree = |
mcimadamore@1510 | 1490 | (JCExpression)deferredAttr.attribSpeculative(className, env, unknownTypeInfo); |
mcimadamore@1510 | 1491 | return types.unboxedTypeOrType(speculativeNewClassTree.type).isPrimitive(); |
mcimadamore@1347 | 1492 | default: |
mcimadamore@1347 | 1493 | Type speculativeType = deferredAttr.attribSpeculative(tree, env, unknownExprInfo).type; |
mcimadamore@1347 | 1494 | speculativeType = types.unboxedTypeOrType(speculativeType); |
jjg@1374 | 1495 | return speculativeType.isPrimitive(); |
mcimadamore@1347 | 1496 | } |
mcimadamore@1347 | 1497 | } |
mcimadamore@1510 | 1498 | //where |
mcimadamore@1510 | 1499 | TreeTranslator removeClassParams = new TreeTranslator() { |
mcimadamore@1510 | 1500 | @Override |
mcimadamore@1510 | 1501 | public void visitTypeApply(JCTypeApply tree) { |
mcimadamore@1510 | 1502 | result = translate(tree.clazz); |
mcimadamore@1510 | 1503 | } |
mcimadamore@1510 | 1504 | }; |
mcimadamore@1347 | 1505 | |
duke@1 | 1506 | /** Compute the type of a conditional expression, after |
mcimadamore@1347 | 1507 | * checking that it exists. See JLS 15.25. Does not take into |
duke@1 | 1508 | * account the special case where condition and both arms |
duke@1 | 1509 | * are constants. |
duke@1 | 1510 | * |
duke@1 | 1511 | * @param pos The source position to be used for error |
duke@1 | 1512 | * diagnostics. |
duke@1 | 1513 | * @param thentype The type of the expression's then-part. |
duke@1 | 1514 | * @param elsetype The type of the expression's else-part. |
duke@1 | 1515 | */ |
mcimadamore@1347 | 1516 | private Type condType(DiagnosticPosition pos, |
duke@1 | 1517 | Type thentype, Type elsetype) { |
duke@1 | 1518 | // If same type, that is the result |
duke@1 | 1519 | if (types.isSameType(thentype, elsetype)) |
duke@1 | 1520 | return thentype.baseType(); |
duke@1 | 1521 | |
duke@1 | 1522 | Type thenUnboxed = (!allowBoxing || thentype.isPrimitive()) |
duke@1 | 1523 | ? thentype : types.unboxedType(thentype); |
duke@1 | 1524 | Type elseUnboxed = (!allowBoxing || elsetype.isPrimitive()) |
duke@1 | 1525 | ? elsetype : types.unboxedType(elsetype); |
duke@1 | 1526 | |
duke@1 | 1527 | // Otherwise, if both arms can be converted to a numeric |
duke@1 | 1528 | // type, return the least numeric type that fits both arms |
duke@1 | 1529 | // (i.e. return larger of the two, or return int if one |
duke@1 | 1530 | // arm is short, the other is char). |
duke@1 | 1531 | if (thenUnboxed.isPrimitive() && elseUnboxed.isPrimitive()) { |
duke@1 | 1532 | // If one arm has an integer subrange type (i.e., byte, |
duke@1 | 1533 | // short, or char), and the other is an integer constant |
duke@1 | 1534 | // that fits into the subrange, return the subrange type. |
jjg@1374 | 1535 | if (thenUnboxed.getTag().isStrictSubRangeOf(INT) && elseUnboxed.hasTag(INT) && |
duke@1 | 1536 | types.isAssignable(elseUnboxed, thenUnboxed)) |
duke@1 | 1537 | return thenUnboxed.baseType(); |
jjg@1374 | 1538 | if (elseUnboxed.getTag().isStrictSubRangeOf(INT) && thenUnboxed.hasTag(INT) && |
duke@1 | 1539 | types.isAssignable(thenUnboxed, elseUnboxed)) |
duke@1 | 1540 | return elseUnboxed.baseType(); |
duke@1 | 1541 | |
jjg@1374 | 1542 | for (TypeTag tag : TypeTag.values()) { |
jjg@1374 | 1543 | if (tag.ordinal() >= TypeTag.getTypeTagCount()) break; |
jjg@1374 | 1544 | Type candidate = syms.typeOfTag[tag.ordinal()]; |
jjg@1374 | 1545 | if (candidate != null && |
jjg@1374 | 1546 | candidate.isPrimitive() && |
jjg@1374 | 1547 | types.isSubtype(thenUnboxed, candidate) && |
duke@1 | 1548 | types.isSubtype(elseUnboxed, candidate)) |
duke@1 | 1549 | return candidate; |
duke@1 | 1550 | } |
duke@1 | 1551 | } |
duke@1 | 1552 | |
duke@1 | 1553 | // Those were all the cases that could result in a primitive |
duke@1 | 1554 | if (allowBoxing) { |
duke@1 | 1555 | if (thentype.isPrimitive()) |
duke@1 | 1556 | thentype = types.boxedClass(thentype).type; |
duke@1 | 1557 | if (elsetype.isPrimitive()) |
duke@1 | 1558 | elsetype = types.boxedClass(elsetype).type; |
duke@1 | 1559 | } |
duke@1 | 1560 | |
duke@1 | 1561 | if (types.isSubtype(thentype, elsetype)) |
duke@1 | 1562 | return elsetype.baseType(); |
duke@1 | 1563 | if (types.isSubtype(elsetype, thentype)) |
duke@1 | 1564 | return thentype.baseType(); |
duke@1 | 1565 | |
jjg@1374 | 1566 | if (!allowBoxing || thentype.hasTag(VOID) || elsetype.hasTag(VOID)) { |
duke@1 | 1567 | log.error(pos, "neither.conditional.subtype", |
duke@1 | 1568 | thentype, elsetype); |
duke@1 | 1569 | return thentype.baseType(); |
duke@1 | 1570 | } |
duke@1 | 1571 | |
duke@1 | 1572 | // both are known to be reference types. The result is |
duke@1 | 1573 | // lub(thentype,elsetype). This cannot fail, as it will |
duke@1 | 1574 | // always be possible to infer "Object" if nothing better. |
duke@1 | 1575 | return types.lub(thentype.baseType(), elsetype.baseType()); |
duke@1 | 1576 | } |
duke@1 | 1577 | |
duke@1 | 1578 | public void visitIf(JCIf tree) { |
duke@1 | 1579 | attribExpr(tree.cond, env, syms.booleanType); |
duke@1 | 1580 | attribStat(tree.thenpart, env); |
duke@1 | 1581 | if (tree.elsepart != null) |
duke@1 | 1582 | attribStat(tree.elsepart, env); |
duke@1 | 1583 | chk.checkEmptyIf(tree); |
duke@1 | 1584 | result = null; |
duke@1 | 1585 | } |
duke@1 | 1586 | |
duke@1 | 1587 | public void visitExec(JCExpressionStatement tree) { |
mcimadamore@674 | 1588 | //a fresh environment is required for 292 inference to work properly --- |
mcimadamore@674 | 1589 | //see Infer.instantiatePolymorphicSignatureInstance() |
mcimadamore@674 | 1590 | Env<AttrContext> localEnv = env.dup(tree); |
mcimadamore@674 | 1591 | attribExpr(tree.expr, localEnv); |
duke@1 | 1592 | result = null; |
duke@1 | 1593 | } |
duke@1 | 1594 | |
duke@1 | 1595 | public void visitBreak(JCBreak tree) { |
duke@1 | 1596 | tree.target = findJumpTarget(tree.pos(), tree.getTag(), tree.label, env); |
duke@1 | 1597 | result = null; |
duke@1 | 1598 | } |
duke@1 | 1599 | |
duke@1 | 1600 | public void visitContinue(JCContinue tree) { |
duke@1 | 1601 | tree.target = findJumpTarget(tree.pos(), tree.getTag(), tree.label, env); |
duke@1 | 1602 | result = null; |
duke@1 | 1603 | } |
duke@1 | 1604 | //where |
duke@1 | 1605 | /** Return the target of a break or continue statement, if it exists, |
duke@1 | 1606 | * report an error if not. |
duke@1 | 1607 | * Note: The target of a labelled break or continue is the |
duke@1 | 1608 | * (non-labelled) statement tree referred to by the label, |
duke@1 | 1609 | * not the tree representing the labelled statement itself. |
duke@1 | 1610 | * |
duke@1 | 1611 | * @param pos The position to be used for error diagnostics |
duke@1 | 1612 | * @param tag The tag of the jump statement. This is either |
duke@1 | 1613 | * Tree.BREAK or Tree.CONTINUE. |
duke@1 | 1614 | * @param label The label of the jump statement, or null if no |
duke@1 | 1615 | * label is given. |
duke@1 | 1616 | * @param env The environment current at the jump statement. |
duke@1 | 1617 | */ |
duke@1 | 1618 | private JCTree findJumpTarget(DiagnosticPosition pos, |
jjg@1127 | 1619 | JCTree.Tag tag, |
duke@1 | 1620 | Name label, |
duke@1 | 1621 | Env<AttrContext> env) { |
duke@1 | 1622 | // Search environments outwards from the point of jump. |
duke@1 | 1623 | Env<AttrContext> env1 = env; |
duke@1 | 1624 | LOOP: |
duke@1 | 1625 | while (env1 != null) { |
duke@1 | 1626 | switch (env1.tree.getTag()) { |
mcimadamore@1348 | 1627 | case LABELLED: |
mcimadamore@1348 | 1628 | JCLabeledStatement labelled = (JCLabeledStatement)env1.tree; |
mcimadamore@1348 | 1629 | if (label == labelled.label) { |
mcimadamore@1348 | 1630 | // If jump is a continue, check that target is a loop. |
mcimadamore@1348 | 1631 | if (tag == CONTINUE) { |
mcimadamore@1348 | 1632 | if (!labelled.body.hasTag(DOLOOP) && |
mcimadamore@1348 | 1633 | !labelled.body.hasTag(WHILELOOP) && |
mcimadamore@1348 | 1634 | !labelled.body.hasTag(FORLOOP) && |
mcimadamore@1348 | 1635 | !labelled.body.hasTag(FOREACHLOOP)) |
mcimadamore@1348 | 1636 | log.error(pos, "not.loop.label", label); |
mcimadamore@1348 | 1637 | // Found labelled statement target, now go inwards |
mcimadamore@1348 | 1638 | // to next non-labelled tree. |
mcimadamore@1348 | 1639 | return TreeInfo.referencedStatement(labelled); |
mcimadamore@1348 | 1640 | } else { |
mcimadamore@1348 | 1641 | return labelled; |
mcimadamore@1348 | 1642 | } |
duke@1 | 1643 | } |
mcimadamore@1348 | 1644 | break; |
mcimadamore@1348 | 1645 | case DOLOOP: |
mcimadamore@1348 | 1646 | case WHILELOOP: |
mcimadamore@1348 | 1647 | case FORLOOP: |
mcimadamore@1348 | 1648 | case FOREACHLOOP: |
mcimadamore@1348 | 1649 | if (label == null) return env1.tree; |
mcimadamore@1348 | 1650 | break; |
mcimadamore@1348 | 1651 | case SWITCH: |
mcimadamore@1348 | 1652 | if (label == null && tag == BREAK) return env1.tree; |
mcimadamore@1348 | 1653 | break; |
mcimadamore@1348 | 1654 | case LAMBDA: |
mcimadamore@1348 | 1655 | case METHODDEF: |
mcimadamore@1348 | 1656 | case CLASSDEF: |
mcimadamore@1348 | 1657 | break LOOP; |
mcimadamore@1348 | 1658 | default: |
duke@1 | 1659 | } |
duke@1 | 1660 | env1 = env1.next; |
duke@1 | 1661 | } |
duke@1 | 1662 | if (label != null) |
duke@1 | 1663 | log.error(pos, "undef.label", label); |
jjg@1127 | 1664 | else if (tag == CONTINUE) |
duke@1 | 1665 | log.error(pos, "cont.outside.loop"); |
duke@1 | 1666 | else |
duke@1 | 1667 | log.error(pos, "break.outside.switch.loop"); |
duke@1 | 1668 | return null; |
duke@1 | 1669 | } |
duke@1 | 1670 | |
duke@1 | 1671 | public void visitReturn(JCReturn tree) { |
duke@1 | 1672 | // Check that there is an enclosing method which is |
duke@1 | 1673 | // nested within than the enclosing class. |
mcimadamore@1347 | 1674 | if (env.info.returnResult == null) { |
duke@1 | 1675 | log.error(tree.pos(), "ret.outside.meth"); |
duke@1 | 1676 | } else { |
duke@1 | 1677 | // Attribute return expression, if it exists, and check that |
duke@1 | 1678 | // it conforms to result type of enclosing method. |
mcimadamore@1347 | 1679 | if (tree.expr != null) { |
jjg@1374 | 1680 | if (env.info.returnResult.pt.hasTag(VOID)) { |
mcimadamore@1415 | 1681 | env.info.returnResult.checkContext.report(tree.expr.pos(), |
mcimadamore@1415 | 1682 | diags.fragment("unexpected.ret.val")); |
mcimadamore@1347 | 1683 | } |
mcimadamore@1347 | 1684 | attribTree(tree.expr, env, env.info.returnResult); |
jjg@1374 | 1685 | } else if (!env.info.returnResult.pt.hasTag(VOID)) { |
mcimadamore@1415 | 1686 | env.info.returnResult.checkContext.report(tree.pos(), |
mcimadamore@1415 | 1687 | diags.fragment("missing.ret.val")); |
duke@1 | 1688 | } |
duke@1 | 1689 | } |
duke@1 | 1690 | result = null; |
duke@1 | 1691 | } |
duke@1 | 1692 | |
duke@1 | 1693 | public void visitThrow(JCThrow tree) { |
mcimadamore@1415 | 1694 | Type owntype = attribExpr(tree.expr, env, allowPoly ? Type.noType : syms.throwableType); |
mcimadamore@1415 | 1695 | if (allowPoly) { |
mcimadamore@1415 | 1696 | chk.checkType(tree, owntype, syms.throwableType); |
mcimadamore@1415 | 1697 | } |
duke@1 | 1698 | result = null; |
duke@1 | 1699 | } |
duke@1 | 1700 | |
duke@1 | 1701 | public void visitAssert(JCAssert tree) { |
duke@1 | 1702 | attribExpr(tree.cond, env, syms.booleanType); |
duke@1 | 1703 | if (tree.detail != null) { |
duke@1 | 1704 | chk.checkNonVoid(tree.detail.pos(), attribExpr(tree.detail, env)); |
duke@1 | 1705 | } |
duke@1 | 1706 | result = null; |
duke@1 | 1707 | } |
duke@1 | 1708 | |
duke@1 | 1709 | /** Visitor method for method invocations. |
duke@1 | 1710 | * NOTE: The method part of an application will have in its type field |
duke@1 | 1711 | * the return type of the method, not the method's type itself! |
duke@1 | 1712 | */ |
duke@1 | 1713 | public void visitApply(JCMethodInvocation tree) { |
duke@1 | 1714 | // The local environment of a method application is |
duke@1 | 1715 | // a new environment nested in the current one. |
duke@1 | 1716 | Env<AttrContext> localEnv = env.dup(tree, env.info.dup()); |
duke@1 | 1717 | |
duke@1 | 1718 | // The types of the actual method arguments. |
duke@1 | 1719 | List<Type> argtypes; |
duke@1 | 1720 | |
duke@1 | 1721 | // The types of the actual method type arguments. |
duke@1 | 1722 | List<Type> typeargtypes = null; |
duke@1 | 1723 | |
duke@1 | 1724 | Name methName = TreeInfo.name(tree.meth); |
duke@1 | 1725 | |
duke@1 | 1726 | boolean isConstructorCall = |
duke@1 | 1727 | methName == names._this || methName == names._super; |
duke@1 | 1728 | |
duke@1 | 1729 | if (isConstructorCall) { |
duke@1 | 1730 | // We are seeing a ...this(...) or ...super(...) call. |
duke@1 | 1731 | // Check that this is the first statement in a constructor. |
duke@1 | 1732 | if (checkFirstConstructorStat(tree, env)) { |
duke@1 | 1733 | |
duke@1 | 1734 | // Record the fact |
duke@1 | 1735 | // that this is a constructor call (using isSelfCall). |
duke@1 | 1736 | localEnv.info.isSelfCall = true; |
duke@1 | 1737 | |
duke@1 | 1738 | // Attribute arguments, yielding list of argument types. |
duke@1 | 1739 | argtypes = attribArgs(tree.args, localEnv); |
duke@1 | 1740 | typeargtypes = attribTypes(tree.typeargs, localEnv); |
duke@1 | 1741 | |
duke@1 | 1742 | // Variable `site' points to the class in which the called |
duke@1 | 1743 | // constructor is defined. |
duke@1 | 1744 | Type site = env.enclClass.sym.type; |
duke@1 | 1745 | if (methName == names._super) { |
duke@1 | 1746 | if (site == syms.objectType) { |
duke@1 | 1747 | log.error(tree.meth.pos(), "no.superclass", site); |
jjg@110 | 1748 | site = types.createErrorType(syms.objectType); |
duke@1 | 1749 | } else { |
duke@1 | 1750 | site = types.supertype(site); |
duke@1 | 1751 | } |
duke@1 | 1752 | } |
duke@1 | 1753 | |
jjg@1374 | 1754 | if (site.hasTag(CLASS)) { |
mcimadamore@361 | 1755 | Type encl = site.getEnclosingType(); |
jjg@1374 | 1756 | while (encl != null && encl.hasTag(TYPEVAR)) |
mcimadamore@361 | 1757 | encl = encl.getUpperBound(); |
jjg@1374 | 1758 | if (encl.hasTag(CLASS)) { |
duke@1 | 1759 | // we are calling a nested class |
duke@1 | 1760 | |
jjg@1127 | 1761 | if (tree.meth.hasTag(SELECT)) { |
duke@1 | 1762 | JCTree qualifier = ((JCFieldAccess) tree.meth).selected; |
duke@1 | 1763 | |
duke@1 | 1764 | // We are seeing a prefixed call, of the form |
duke@1 | 1765 | // <expr>.super(...). |
duke@1 | 1766 | // Check that the prefix expression conforms |
duke@1 | 1767 | // to the outer instance type of the class. |
duke@1 | 1768 | chk.checkRefType(qualifier.pos(), |
duke@1 | 1769 | attribExpr(qualifier, localEnv, |
mcimadamore@361 | 1770 | encl)); |
duke@1 | 1771 | } else if (methName == names._super) { |
duke@1 | 1772 | // qualifier omitted; check for existence |
duke@1 | 1773 | // of an appropriate implicit qualifier. |
duke@1 | 1774 | rs.resolveImplicitThis(tree.meth.pos(), |
mcimadamore@901 | 1775 | localEnv, site, true); |
duke@1 | 1776 | } |
jjg@1127 | 1777 | } else if (tree.meth.hasTag(SELECT)) { |
duke@1 | 1778 | log.error(tree.meth.pos(), "illegal.qual.not.icls", |
duke@1 | 1779 | site.tsym); |
duke@1 | 1780 | } |
duke@1 | 1781 | |
duke@1 | 1782 | // if we're calling a java.lang.Enum constructor, |
duke@1 | 1783 | // prefix the implicit String and int parameters |
duke@1 | 1784 | if (site.tsym == syms.enumSym && allowEnums) |
duke@1 | 1785 | argtypes = argtypes.prepend(syms.intType).prepend(syms.stringType); |
duke@1 | 1786 | |
duke@1 | 1787 | // Resolve the called constructor under the assumption |
duke@1 | 1788 | // that we are referring to a superclass instance of the |
duke@1 | 1789 | // current instance (JLS ???). |
duke@1 | 1790 | boolean selectSuperPrev = localEnv.info.selectSuper; |
duke@1 | 1791 | localEnv.info.selectSuper = true; |
mcimadamore@1347 | 1792 | localEnv.info.pendingResolutionPhase = null; |
duke@1 | 1793 | Symbol sym = rs.resolveConstructor( |
duke@1 | 1794 | tree.meth.pos(), localEnv, site, argtypes, typeargtypes); |
duke@1 | 1795 | localEnv.info.selectSuper = selectSuperPrev; |
duke@1 | 1796 | |
duke@1 | 1797 | // Set method symbol to resolved constructor... |
duke@1 | 1798 | TreeInfo.setSymbol(tree.meth, sym); |
duke@1 | 1799 | |
duke@1 | 1800 | // ...and check that it is legal in the current context. |
duke@1 | 1801 | // (this will also set the tree's type) |
mcimadamore@1268 | 1802 | Type mpt = newMethodTemplate(resultInfo.pt, argtypes, typeargtypes); |
mcimadamore@1347 | 1803 | checkId(tree.meth, site, sym, localEnv, new ResultInfo(MTH, mpt)); |
duke@1 | 1804 | } |
duke@1 | 1805 | // Otherwise, `site' is an error type and we do nothing |
duke@1 | 1806 | } |
duke@1 | 1807 | result = tree.type = syms.voidType; |
duke@1 | 1808 | } else { |
duke@1 | 1809 | // Otherwise, we are seeing a regular method call. |
duke@1 | 1810 | // Attribute the arguments, yielding list of argument types, ... |
duke@1 | 1811 | argtypes = attribArgs(tree.args, localEnv); |
jrose@267 | 1812 | typeargtypes = attribAnyTypes(tree.typeargs, localEnv); |
duke@1 | 1813 | |
duke@1 | 1814 | // ... and attribute the method using as a prototype a methodtype |
duke@1 | 1815 | // whose formal argument types is exactly the list of actual |
duke@1 | 1816 | // arguments (this will also set the method symbol). |
mcimadamore@1268 | 1817 | Type mpt = newMethodTemplate(resultInfo.pt, argtypes, typeargtypes); |
mcimadamore@1347 | 1818 | localEnv.info.pendingResolutionPhase = null; |
mcimadamore@1347 | 1819 | Type mtype = attribTree(tree.meth, localEnv, new ResultInfo(VAL, mpt, resultInfo.checkContext)); |
duke@1 | 1820 | |
duke@1 | 1821 | // Compute the result type. |
duke@1 | 1822 | Type restype = mtype.getReturnType(); |
jjg@1374 | 1823 | if (restype.hasTag(WILDCARD)) |
mcimadamore@689 | 1824 | throw new AssertionError(mtype); |
duke@1 | 1825 | |
mcimadamore@1352 | 1826 | Type qualifier = (tree.meth.hasTag(SELECT)) |
duke@1 | 1827 | ? ((JCFieldAccess) tree.meth).selected.type |
duke@1 | 1828 | : env.enclClass.sym.type; |
mcimadamore@1352 | 1829 | restype = adjustMethodReturnType(qualifier, methName, argtypes, restype); |
duke@1 | 1830 | |
mcimadamore@820 | 1831 | chk.checkRefTypes(tree.typeargs, typeargtypes); |
jrose@267 | 1832 | |
duke@1 | 1833 | // Check that value of resulting type is admissible in the |
duke@1 | 1834 | // current context. Also, capture the return type |
mcimadamore@1220 | 1835 | result = check(tree, capture(restype), VAL, resultInfo); |
duke@1 | 1836 | } |
mcimadamore@122 | 1837 | chk.validate(tree.typeargs, localEnv); |
duke@1 | 1838 | } |
duke@1 | 1839 | //where |
mcimadamore@1352 | 1840 | Type adjustMethodReturnType(Type qualifierType, Name methodName, List<Type> argtypes, Type restype) { |
mcimadamore@1352 | 1841 | if (allowCovariantReturns && |
mcimadamore@1352 | 1842 | methodName == names.clone && |
mcimadamore@1352 | 1843 | types.isArray(qualifierType)) { |
mcimadamore@1352 | 1844 | // as a special case, array.clone() has a result that is |
mcimadamore@1352 | 1845 | // the same as static type of the array being cloned |
mcimadamore@1352 | 1846 | return qualifierType; |
mcimadamore@1352 | 1847 | } else if (allowGenerics && |
mcimadamore@1352 | 1848 | methodName == names.getClass && |
mcimadamore@1352 | 1849 | argtypes.isEmpty()) { |
mcimadamore@1352 | 1850 | // as a special case, x.getClass() has type Class<? extends |X|> |
mcimadamore@1352 | 1851 | return new ClassType(restype.getEnclosingType(), |
mcimadamore@1352 | 1852 | List.<Type>of(new WildcardType(types.erasure(qualifierType), |
mcimadamore@1352 | 1853 | BoundKind.EXTENDS, |
mcimadamore@1352 | 1854 | syms.boundClass)), |
mcimadamore@1352 | 1855 | restype.tsym); |
mcimadamore@1352 | 1856 | } else { |
mcimadamore@1352 | 1857 | return restype; |
mcimadamore@1352 | 1858 | } |
mcimadamore@1352 | 1859 | } |
mcimadamore@1352 | 1860 | |
duke@1 | 1861 | /** Check that given application node appears as first statement |
duke@1 | 1862 | * in a constructor call. |
duke@1 | 1863 | * @param tree The application node |
duke@1 | 1864 | * @param env The environment current at the application. |
duke@1 | 1865 | */ |
duke@1 | 1866 | boolean checkFirstConstructorStat(JCMethodInvocation tree, Env<AttrContext> env) { |
duke@1 | 1867 | JCMethodDecl enclMethod = env.enclMethod; |
duke@1 | 1868 | if (enclMethod != null && enclMethod.name == names.init) { |
duke@1 | 1869 | JCBlock body = enclMethod.body; |
jjg@1127 | 1870 | if (body.stats.head.hasTag(EXEC) && |
duke@1 | 1871 | ((JCExpressionStatement) body.stats.head).expr == tree) |
duke@1 | 1872 | return true; |
duke@1 | 1873 | } |
duke@1 | 1874 | log.error(tree.pos(),"call.must.be.first.stmt.in.ctor", |
duke@1 | 1875 | TreeInfo.name(tree.meth)); |
duke@1 | 1876 | return false; |
duke@1 | 1877 | } |
duke@1 | 1878 | |
duke@1 | 1879 | /** Obtain a method type with given argument types. |
duke@1 | 1880 | */ |
mcimadamore@1268 | 1881 | Type newMethodTemplate(Type restype, List<Type> argtypes, List<Type> typeargtypes) { |
mcimadamore@1347 | 1882 | MethodType mt = new MethodType(argtypes, restype, List.<Type>nil(), syms.methodClass); |
duke@1 | 1883 | return (typeargtypes == null) ? mt : (Type)new ForAll(typeargtypes, mt); |
duke@1 | 1884 | } |
duke@1 | 1885 | |
mcimadamore@1347 | 1886 | public void visitNewClass(final JCNewClass tree) { |
jjg@110 | 1887 | Type owntype = types.createErrorType(tree.type); |
duke@1 | 1888 | |
duke@1 | 1889 | // The local environment of a class creation is |
duke@1 | 1890 | // a new environment nested in the current one. |
duke@1 | 1891 | Env<AttrContext> localEnv = env.dup(tree, env.info.dup()); |
duke@1 | 1892 | |
duke@1 | 1893 | // The anonymous inner class definition of the new expression, |
duke@1 | 1894 | // if one is defined by it. |
duke@1 | 1895 | JCClassDecl cdef = tree.def; |
duke@1 | 1896 | |
duke@1 | 1897 | // If enclosing class is given, attribute it, and |
duke@1 | 1898 | // complete class name to be fully qualified |
duke@1 | 1899 | JCExpression clazz = tree.clazz; // Class field following new |
jjg@1521 | 1900 | JCExpression clazzid; // Identifier in class field |
jjg@1521 | 1901 | JCAnnotatedType annoclazzid; // Annotated type enclosing clazzid |
jjg@1521 | 1902 | annoclazzid = null; |
jjg@1521 | 1903 | |
jjg@1521 | 1904 | if (clazz.hasTag(TYPEAPPLY)) { |
jjg@1521 | 1905 | clazzid = ((JCTypeApply) clazz).clazz; |
jjg@1521 | 1906 | if (clazzid.hasTag(ANNOTATED_TYPE)) { |
jjg@1521 | 1907 | annoclazzid = (JCAnnotatedType) clazzid; |
jjg@1521 | 1908 | clazzid = annoclazzid.underlyingType; |
jjg@1521 | 1909 | } |
jjg@1521 | 1910 | } else { |
jjg@1521 | 1911 | if (clazz.hasTag(ANNOTATED_TYPE)) { |
jjg@1521 | 1912 | annoclazzid = (JCAnnotatedType) clazz; |
jjg@1521 | 1913 | clazzid = annoclazzid.underlyingType; |
jjg@1521 | 1914 | } else { |
jjg@1521 | 1915 | clazzid = clazz; |
jjg@1521 | 1916 | } |
jjg@1521 | 1917 | } |
duke@1 | 1918 | |
duke@1 | 1919 | JCExpression clazzid1 = clazzid; // The same in fully qualified form |
duke@1 | 1920 | |
duke@1 | 1921 | if (tree.encl != null) { |
duke@1 | 1922 | // We are seeing a qualified new, of the form |
duke@1 | 1923 | // <expr>.new C <...> (...) ... |
duke@1 | 1924 | // In this case, we let clazz stand for the name of the |
duke@1 | 1925 | // allocated class C prefixed with the type of the qualifier |
duke@1 | 1926 | // expression, so that we can |
duke@1 | 1927 | // resolve it with standard techniques later. I.e., if |
duke@1 | 1928 | // <expr> has type T, then <expr>.new C <...> (...) |
duke@1 | 1929 | // yields a clazz T.C. |
duke@1 | 1930 | Type encltype = chk.checkRefType(tree.encl.pos(), |
duke@1 | 1931 | attribExpr(tree.encl, env)); |
jjg@1521 | 1932 | // TODO 308: in <expr>.new C, do we also want to add the type annotations |
jjg@1521 | 1933 | // from expr to the combined type, or not? Yes, do this. |
duke@1 | 1934 | clazzid1 = make.at(clazz.pos).Select(make.Type(encltype), |
duke@1 | 1935 | ((JCIdent) clazzid).name); |
jjg@1521 | 1936 | |
jjg@1521 | 1937 | if (clazz.hasTag(ANNOTATED_TYPE)) { |
jjg@1521 | 1938 | JCAnnotatedType annoType = (JCAnnotatedType) clazz; |
jjg@1521 | 1939 | List<JCAnnotation> annos = annoType.annotations; |
jjg@1521 | 1940 | |
jjg@1521 | 1941 | if (annoType.underlyingType.hasTag(TYPEAPPLY)) { |
jjg@1521 | 1942 | clazzid1 = make.at(tree.pos). |
jjg@1521 | 1943 | TypeApply(clazzid1, |
jjg@1521 | 1944 | ((JCTypeApply) clazz).arguments); |
jjg@1521 | 1945 | } |
jjg@1521 | 1946 | |
jjg@1521 | 1947 | clazzid1 = make.at(tree.pos). |
jjg@1521 | 1948 | AnnotatedType(annos, clazzid1); |
jjg@1521 | 1949 | } else if (clazz.hasTag(TYPEAPPLY)) { |
jjg@1521 | 1950 | clazzid1 = make.at(tree.pos). |
duke@1 | 1951 | TypeApply(clazzid1, |
duke@1 | 1952 | ((JCTypeApply) clazz).arguments); |
jjg@1521 | 1953 | } |
jjg@1521 | 1954 | |
jjg@1521 | 1955 | clazz = clazzid1; |
duke@1 | 1956 | } |
duke@1 | 1957 | |
duke@1 | 1958 | // Attribute clazz expression and store |
duke@1 | 1959 | // symbol + type back into the attributed tree. |
mcimadamore@1269 | 1960 | Type clazztype = TreeInfo.isEnumInit(env.tree) ? |
mcimadamore@1269 | 1961 | attribIdentAsEnumType(env, (JCIdent)clazz) : |
mcimadamore@1269 | 1962 | attribType(clazz, env); |
mcimadamore@1269 | 1963 | |
mcimadamore@914 | 1964 | clazztype = chk.checkDiamond(tree, clazztype); |
mcimadamore@122 | 1965 | chk.validate(clazz, localEnv); |
duke@1 | 1966 | if (tree.encl != null) { |
duke@1 | 1967 | // We have to work in this case to store |
duke@1 | 1968 | // symbol + type back into the attributed tree. |
duke@1 | 1969 | tree.clazz.type = clazztype; |
duke@1 | 1970 | TreeInfo.setSymbol(clazzid, TreeInfo.symbol(clazzid1)); |
duke@1 | 1971 | clazzid.type = ((JCIdent) clazzid).sym.type; |
jjg@1521 | 1972 | if (annoclazzid != null) { |
jjg@1521 | 1973 | annoclazzid.type = clazzid.type; |
jjg@1521 | 1974 | } |
duke@1 | 1975 | if (!clazztype.isErroneous()) { |
duke@1 | 1976 | if (cdef != null && clazztype.tsym.isInterface()) { |
duke@1 | 1977 | log.error(tree.encl.pos(), "anon.class.impl.intf.no.qual.for.new"); |
duke@1 | 1978 | } else if (clazztype.tsym.isStatic()) { |
duke@1 | 1979 | log.error(tree.encl.pos(), "qualified.new.of.static.class", clazztype.tsym); |
duke@1 | 1980 | } |
duke@1 | 1981 | } |
duke@1 | 1982 | } else if (!clazztype.tsym.isInterface() && |
jjg@1374 | 1983 | clazztype.getEnclosingType().hasTag(CLASS)) { |
duke@1 | 1984 | // Check for the existence of an apropos outer instance |
duke@1 | 1985 | rs.resolveImplicitThis(tree.pos(), env, clazztype); |
duke@1 | 1986 | } |
duke@1 | 1987 | |
duke@1 | 1988 | // Attribute constructor arguments. |
duke@1 | 1989 | List<Type> argtypes = attribArgs(tree.args, localEnv); |
duke@1 | 1990 | List<Type> typeargtypes = attribTypes(tree.typeargs, localEnv); |
duke@1 | 1991 | |
duke@1 | 1992 | // If we have made no mistakes in the class type... |
jjg@1374 | 1993 | if (clazztype.hasTag(CLASS)) { |
duke@1 | 1994 | // Enums may not be instantiated except implicitly |
duke@1 | 1995 | if (allowEnums && |
duke@1 | 1996 | (clazztype.tsym.flags_field&Flags.ENUM) != 0 && |
jjg@1127 | 1997 | (!env.tree.hasTag(VARDEF) || |
duke@1 | 1998 | (((JCVariableDecl) env.tree).mods.flags&Flags.ENUM) == 0 || |
duke@1 | 1999 | ((JCVariableDecl) env.tree).init != tree)) |
duke@1 | 2000 | log.error(tree.pos(), "enum.cant.be.instantiated"); |
duke@1 | 2001 | // Check that class is not abstract |
duke@1 | 2002 | if (cdef == null && |
duke@1 | 2003 | (clazztype.tsym.flags() & (ABSTRACT | INTERFACE)) != 0) { |
duke@1 | 2004 | log.error(tree.pos(), "abstract.cant.be.instantiated", |
duke@1 | 2005 | clazztype.tsym); |
duke@1 | 2006 | } else if (cdef != null && clazztype.tsym.isInterface()) { |
duke@1 | 2007 | // Check that no constructor arguments are given to |
duke@1 | 2008 | // anonymous classes implementing an interface |
duke@1 | 2009 | if (!argtypes.isEmpty()) |
duke@1 | 2010 | log.error(tree.args.head.pos(), "anon.class.impl.intf.no.args"); |
duke@1 | 2011 | |
duke@1 | 2012 | if (!typeargtypes.isEmpty()) |
duke@1 | 2013 | log.error(tree.typeargs.head.pos(), "anon.class.impl.intf.no.typeargs"); |
duke@1 | 2014 | |
duke@1 | 2015 | // Error recovery: pretend no arguments were supplied. |
duke@1 | 2016 | argtypes = List.nil(); |
duke@1 | 2017 | typeargtypes = List.nil(); |
mcimadamore@1347 | 2018 | } else if (TreeInfo.isDiamond(tree)) { |
mcimadamore@1347 | 2019 | ClassType site = new ClassType(clazztype.getEnclosingType(), |
mcimadamore@1347 | 2020 | clazztype.tsym.type.getTypeArguments(), |
mcimadamore@1347 | 2021 | clazztype.tsym); |
mcimadamore@1347 | 2022 | |
mcimadamore@1347 | 2023 | Env<AttrContext> diamondEnv = localEnv.dup(tree); |
mcimadamore@1347 | 2024 | diamondEnv.info.selectSuper = cdef != null; |
mcimadamore@1347 | 2025 | diamondEnv.info.pendingResolutionPhase = null; |
mcimadamore@1347 | 2026 | |
mcimadamore@1347 | 2027 | //if the type of the instance creation expression is a class type |
mcimadamore@1347 | 2028 | //apply method resolution inference (JLS 15.12.2.7). The return type |
mcimadamore@1347 | 2029 | //of the resolved constructor will be a partially instantiated type |
mcimadamore@1347 | 2030 | Symbol constructor = rs.resolveDiamond(tree.pos(), |
mcimadamore@1347 | 2031 | diamondEnv, |
mcimadamore@1347 | 2032 | site, |
mcimadamore@1347 | 2033 | argtypes, |
mcimadamore@1347 | 2034 | typeargtypes); |
mcimadamore@1347 | 2035 | tree.constructor = constructor.baseSymbol(); |
mcimadamore@1347 | 2036 | |
mcimadamore@1347 | 2037 | final TypeSymbol csym = clazztype.tsym; |
mcimadamore@1347 | 2038 | ResultInfo diamondResult = new ResultInfo(MTH, newMethodTemplate(resultInfo.pt, argtypes, typeargtypes), new Check.NestedCheckContext(resultInfo.checkContext) { |
mcimadamore@1347 | 2039 | @Override |
mcimadamore@1347 | 2040 | public void report(DiagnosticPosition _unused, JCDiagnostic details) { |
mcimadamore@1347 | 2041 | enclosingContext.report(tree.clazz, |
mcimadamore@1347 | 2042 | diags.fragment("cant.apply.diamond.1", diags.fragment("diamond", csym), details)); |
mcimadamore@1347 | 2043 | } |
mcimadamore@1347 | 2044 | }); |
mcimadamore@1347 | 2045 | Type constructorType = tree.constructorType = types.createErrorType(clazztype); |
mcimadamore@1347 | 2046 | constructorType = checkId(tree, site, |
mcimadamore@1347 | 2047 | constructor, |
mcimadamore@1347 | 2048 | diamondEnv, |
mcimadamore@1347 | 2049 | diamondResult); |
mcimadamore@1347 | 2050 | |
mcimadamore@1347 | 2051 | tree.clazz.type = types.createErrorType(clazztype); |
mcimadamore@1347 | 2052 | if (!constructorType.isErroneous()) { |
mcimadamore@1347 | 2053 | tree.clazz.type = clazztype = constructorType.getReturnType(); |
mcimadamore@1347 | 2054 | tree.constructorType = types.createMethodTypeWithReturn(constructorType, syms.voidType); |
mcimadamore@1347 | 2055 | } |
mcimadamore@1347 | 2056 | clazztype = chk.checkClassType(tree.clazz, tree.clazz.type, true); |
duke@1 | 2057 | } |
duke@1 | 2058 | |
duke@1 | 2059 | // Resolve the called constructor under the assumption |
duke@1 | 2060 | // that we are referring to a superclass instance of the |
duke@1 | 2061 | // current instance (JLS ???). |
mcimadamore@1347 | 2062 | else { |
mcimadamore@1010 | 2063 | //the following code alters some of the fields in the current |
mcimadamore@1010 | 2064 | //AttrContext - hence, the current context must be dup'ed in |
mcimadamore@1010 | 2065 | //order to avoid downstream failures |
mcimadamore@1010 | 2066 | Env<AttrContext> rsEnv = localEnv.dup(tree); |
mcimadamore@1010 | 2067 | rsEnv.info.selectSuper = cdef != null; |
mcimadamore@1347 | 2068 | rsEnv.info.pendingResolutionPhase = null; |
duke@1 | 2069 | tree.constructor = rs.resolveConstructor( |
mcimadamore@1010 | 2070 | tree.pos(), rsEnv, clazztype, argtypes, typeargtypes); |
mcimadamore@1341 | 2071 | if (cdef == null) { //do not check twice! |
mcimadamore@1341 | 2072 | tree.constructorType = checkId(tree, |
mcimadamore@1341 | 2073 | clazztype, |
mcimadamore@1341 | 2074 | tree.constructor, |
mcimadamore@1341 | 2075 | rsEnv, |
mcimadamore@1347 | 2076 | new ResultInfo(MTH, newMethodTemplate(syms.voidType, argtypes, typeargtypes))); |
mcimadamore@1347 | 2077 | if (rsEnv.info.lastResolveVarargs()) |
mcimadamore@1341 | 2078 | Assert.check(tree.constructorType.isErroneous() || tree.varargsElement != null); |
mcimadamore@1341 | 2079 | } |
mcimadamore@1347 | 2080 | findDiamondIfNeeded(localEnv, tree, clazztype); |
duke@1 | 2081 | } |
duke@1 | 2082 | |
duke@1 | 2083 | if (cdef != null) { |
duke@1 | 2084 | // We are seeing an anonymous class instance creation. |
duke@1 | 2085 | // In this case, the class instance creation |
duke@1 | 2086 | // expression |
duke@1 | 2087 | // |
duke@1 | 2088 | // E.new <typeargs1>C<typargs2>(args) { ... } |
duke@1 | 2089 | // |
duke@1 | 2090 | // is represented internally as |
duke@1 | 2091 | // |
duke@1 | 2092 | // E . new <typeargs1>C<typargs2>(args) ( class <empty-name> { ... } ) . |
duke@1 | 2093 | // |
duke@1 | 2094 | // This expression is then *transformed* as follows: |
duke@1 | 2095 | // |
duke@1 | 2096 | // (1) add a STATIC flag to the class definition |
duke@1 | 2097 | // if the current environment is static |
duke@1 | 2098 | // (2) add an extends or implements clause |
duke@1 | 2099 | // (3) add a constructor. |
duke@1 | 2100 | // |
duke@1 | 2101 | // For instance, if C is a class, and ET is the type of E, |
duke@1 | 2102 | // the expression |
duke@1 | 2103 | // |
duke@1 | 2104 | // E.new <typeargs1>C<typargs2>(args) { ... } |
duke@1 | 2105 | // |
duke@1 | 2106 | // is translated to (where X is a fresh name and typarams is the |
duke@1 | 2107 | // parameter list of the super constructor): |
duke@1 | 2108 | // |
duke@1 | 2109 | // new <typeargs1>X(<*nullchk*>E, args) where |
duke@1 | 2110 | // X extends C<typargs2> { |
duke@1 | 2111 | // <typarams> X(ET e, args) { |
duke@1 | 2112 | // e.<typeargs1>super(args) |
duke@1 | 2113 | // } |
duke@1 | 2114 | // ... |
duke@1 | 2115 | // } |
duke@1 | 2116 | if (Resolve.isStatic(env)) cdef.mods.flags |= STATIC; |
mcimadamore@536 | 2117 | |
duke@1 | 2118 | if (clazztype.tsym.isInterface()) { |
duke@1 | 2119 | cdef.implementing = List.of(clazz); |
duke@1 | 2120 | } else { |
duke@1 | 2121 | cdef.extending = clazz; |
duke@1 | 2122 | } |
duke@1 | 2123 | |
duke@1 | 2124 | attribStat(cdef, localEnv); |
duke@1 | 2125 | |
mcimadamore@1348 | 2126 | checkLambdaCandidate(tree, cdef.sym, clazztype); |
mcimadamore@1348 | 2127 | |
duke@1 | 2128 | // If an outer instance is given, |
duke@1 | 2129 | // prefix it to the constructor arguments |
duke@1 | 2130 | // and delete it from the new expression |
duke@1 | 2131 | if (tree.encl != null && !clazztype.tsym.isInterface()) { |
duke@1 | 2132 | tree.args = tree.args.prepend(makeNullCheck(tree.encl)); |
duke@1 | 2133 | argtypes = argtypes.prepend(tree.encl.type); |
duke@1 | 2134 | tree.encl = null; |
duke@1 | 2135 | } |
duke@1 | 2136 | |
duke@1 | 2137 | // Reassign clazztype and recompute constructor. |
duke@1 | 2138 | clazztype = cdef.sym.type; |
mcimadamore@1341 | 2139 | Symbol sym = tree.constructor = rs.resolveConstructor( |
mcimadamore@1341 | 2140 | tree.pos(), localEnv, clazztype, argtypes, typeargtypes); |
mcimadamore@1341 | 2141 | Assert.check(sym.kind < AMBIGUOUS); |
duke@1 | 2142 | tree.constructor = sym; |
mcimadamore@1341 | 2143 | tree.constructorType = checkId(tree, |
mcimadamore@1341 | 2144 | clazztype, |
mcimadamore@1341 | 2145 | tree.constructor, |
mcimadamore@1341 | 2146 | localEnv, |
mcimadamore@1347 | 2147 | new ResultInfo(VAL, newMethodTemplate(syms.voidType, argtypes, typeargtypes))); |
jjg@1755 | 2148 | } else { |
jjg@1755 | 2149 | if (tree.clazz.hasTag(ANNOTATED_TYPE)) { |
jjg@1755 | 2150 | checkForDeclarationAnnotations(((JCAnnotatedType) tree.clazz).annotations, |
jjg@1755 | 2151 | tree.clazz.type.tsym); |
jjg@1755 | 2152 | } |
duke@1 | 2153 | } |
duke@1 | 2154 | |
duke@1 | 2155 | if (tree.constructor != null && tree.constructor.kind == MTH) |
duke@1 | 2156 | owntype = clazztype; |
duke@1 | 2157 | } |
mcimadamore@1220 | 2158 | result = check(tree, owntype, VAL, resultInfo); |
mcimadamore@122 | 2159 | chk.validate(tree.typeargs, localEnv); |
duke@1 | 2160 | } |
mcimadamore@1347 | 2161 | //where |
mcimadamore@1347 | 2162 | void findDiamondIfNeeded(Env<AttrContext> env, JCNewClass tree, Type clazztype) { |
mcimadamore@1347 | 2163 | if (tree.def == null && |
mcimadamore@1347 | 2164 | !clazztype.isErroneous() && |
mcimadamore@1347 | 2165 | clazztype.getTypeArguments().nonEmpty() && |
mcimadamore@1347 | 2166 | findDiamonds) { |
mcimadamore@1347 | 2167 | JCTypeApply ta = (JCTypeApply)tree.clazz; |
mcimadamore@1347 | 2168 | List<JCExpression> prevTypeargs = ta.arguments; |
mcimadamore@1347 | 2169 | try { |
mcimadamore@1347 | 2170 | //create a 'fake' diamond AST node by removing type-argument trees |
mcimadamore@1347 | 2171 | ta.arguments = List.nil(); |
mcimadamore@1347 | 2172 | ResultInfo findDiamondResult = new ResultInfo(VAL, |
mcimadamore@1347 | 2173 | resultInfo.checkContext.inferenceContext().free(resultInfo.pt) ? Type.noType : pt()); |
mcimadamore@1347 | 2174 | Type inferred = deferredAttr.attribSpeculative(tree, env, findDiamondResult).type; |
mcimadamore@1618 | 2175 | Type polyPt = allowPoly ? |
mcimadamore@1618 | 2176 | syms.objectType : |
mcimadamore@1618 | 2177 | clazztype; |
mcimadamore@1347 | 2178 | if (!inferred.isErroneous() && |
mcimadamore@1618 | 2179 | types.isAssignable(inferred, pt().hasTag(NONE) ? polyPt : pt(), types.noWarnings)) { |
mcimadamore@1347 | 2180 | String key = types.isSameType(clazztype, inferred) ? |
mcimadamore@1347 | 2181 | "diamond.redundant.args" : |
mcimadamore@1347 | 2182 | "diamond.redundant.args.1"; |
mcimadamore@1347 | 2183 | log.warning(tree.clazz.pos(), key, clazztype, inferred); |
mcimadamore@1347 | 2184 | } |
mcimadamore@1347 | 2185 | } finally { |
mcimadamore@1347 | 2186 | ta.arguments = prevTypeargs; |
mcimadamore@1347 | 2187 | } |
mcimadamore@1347 | 2188 | } |
mcimadamore@537 | 2189 | } |
mcimadamore@950 | 2190 | |
mcimadamore@1348 | 2191 | private void checkLambdaCandidate(JCNewClass tree, ClassSymbol csym, Type clazztype) { |
mcimadamore@1348 | 2192 | if (allowLambda && |
mcimadamore@1348 | 2193 | identifyLambdaCandidate && |
jjg@1374 | 2194 | clazztype.hasTag(CLASS) && |
jjg@1374 | 2195 | !pt().hasTag(NONE) && |
mcimadamore@1348 | 2196 | types.isFunctionalInterface(clazztype.tsym)) { |
mcimadamore@1348 | 2197 | Symbol descriptor = types.findDescriptorSymbol(clazztype.tsym); |
mcimadamore@1348 | 2198 | int count = 0; |
mcimadamore@1348 | 2199 | boolean found = false; |
mcimadamore@1348 | 2200 | for (Symbol sym : csym.members().getElements()) { |
mcimadamore@1348 | 2201 | if ((sym.flags() & SYNTHETIC) != 0 || |
mcimadamore@1348 | 2202 | sym.isConstructor()) continue; |
mcimadamore@1348 | 2203 | count++; |
mcimadamore@1348 | 2204 | if (sym.kind != MTH || |
mcimadamore@1348 | 2205 | !sym.name.equals(descriptor.name)) continue; |
mcimadamore@1348 | 2206 | Type mtype = types.memberType(clazztype, sym); |
mcimadamore@1348 | 2207 | if (types.overrideEquivalent(mtype, types.memberType(clazztype, descriptor))) { |
mcimadamore@1348 | 2208 | found = true; |
mcimadamore@1348 | 2209 | } |
mcimadamore@1348 | 2210 | } |
mcimadamore@1348 | 2211 | if (found && count == 1) { |
mcimadamore@1348 | 2212 | log.note(tree.def, "potential.lambda.found"); |
mcimadamore@1348 | 2213 | } |
mcimadamore@1348 | 2214 | } |
mcimadamore@1348 | 2215 | } |
mcimadamore@1348 | 2216 | |
jjg@1755 | 2217 | private void checkForDeclarationAnnotations(List<? extends JCAnnotation> annotations, |
jjg@1755 | 2218 | Symbol sym) { |
jjg@1755 | 2219 | // Ensure that no declaration annotations are present. |
jjg@1755 | 2220 | // Note that a tree type might be an AnnotatedType with |
jjg@1755 | 2221 | // empty annotations, if only declaration annotations were given. |
jjg@1755 | 2222 | // This method will raise an error for such a type. |
jjg@1755 | 2223 | for (JCAnnotation ai : annotations) { |
jjg@1755 | 2224 | if (TypeAnnotations.annotationType(syms, names, ai.attribute, sym) == TypeAnnotations.AnnotationType.DECLARATION) { |
jjg@1755 | 2225 | log.error(ai.pos(), "annotation.type.not.applicable"); |
jjg@1755 | 2226 | } |
jjg@1755 | 2227 | } |
jjg@1755 | 2228 | } |
jjg@1755 | 2229 | |
jjg@1755 | 2230 | |
duke@1 | 2231 | /** Make an attributed null check tree. |
duke@1 | 2232 | */ |
duke@1 | 2233 | public JCExpression makeNullCheck(JCExpression arg) { |
duke@1 | 2234 | // optimization: X.this is never null; skip null check |
duke@1 | 2235 | Name name = TreeInfo.name(arg); |
duke@1 | 2236 | if (name == names._this || name == names._super) return arg; |
duke@1 | 2237 | |
jjg@1127 | 2238 | JCTree.Tag optag = NULLCHK; |
duke@1 | 2239 | JCUnary tree = make.at(arg.pos).Unary(optag, arg); |
duke@1 | 2240 | tree.operator = syms.nullcheck; |
duke@1 | 2241 | tree.type = arg.type; |
duke@1 | 2242 | return tree; |
duke@1 | 2243 | } |
duke@1 | 2244 | |
duke@1 | 2245 | public void visitNewArray(JCNewArray tree) { |
jjg@110 | 2246 | Type owntype = types.createErrorType(tree.type); |
mcimadamore@1347 | 2247 | Env<AttrContext> localEnv = env.dup(tree); |
duke@1 | 2248 | Type elemtype; |
duke@1 | 2249 | if (tree.elemtype != null) { |
mcimadamore@1347 | 2250 | elemtype = attribType(tree.elemtype, localEnv); |
mcimadamore@1347 | 2251 | chk.validate(tree.elemtype, localEnv); |
duke@1 | 2252 | owntype = elemtype; |
duke@1 | 2253 | for (List<JCExpression> l = tree.dims; l.nonEmpty(); l = l.tail) { |
mcimadamore@1347 | 2254 | attribExpr(l.head, localEnv, syms.intType); |
duke@1 | 2255 | owntype = new ArrayType(owntype, syms.arrayClass); |
duke@1 | 2256 | } |
jjg@1755 | 2257 | if (tree.elemtype.hasTag(ANNOTATED_TYPE)) { |
jjg@1755 | 2258 | checkForDeclarationAnnotations(((JCAnnotatedType) tree.elemtype).annotations, |
jjg@1755 | 2259 | tree.elemtype.type.tsym); |
jjg@1755 | 2260 | } |
duke@1 | 2261 | } else { |
duke@1 | 2262 | // we are seeing an untyped aggregate { ... } |
duke@1 | 2263 | // this is allowed only if the prototype is an array |
jjg@1374 | 2264 | if (pt().hasTag(ARRAY)) { |
mcimadamore@1220 | 2265 | elemtype = types.elemtype(pt()); |
duke@1 | 2266 | } else { |
jjg@1374 | 2267 | if (!pt().hasTag(ERROR)) { |
duke@1 | 2268 | log.error(tree.pos(), "illegal.initializer.for.type", |
mcimadamore@1220 | 2269 | pt()); |
duke@1 | 2270 | } |
mcimadamore@1220 | 2271 | elemtype = types.createErrorType(pt()); |
duke@1 | 2272 | } |
duke@1 | 2273 | } |
duke@1 | 2274 | if (tree.elems != null) { |
mcimadamore@1347 | 2275 | attribExprs(tree.elems, localEnv, elemtype); |
duke@1 | 2276 | owntype = new ArrayType(elemtype, syms.arrayClass); |
duke@1 | 2277 | } |
duke@1 | 2278 | if (!types.isReifiable(elemtype)) |
duke@1 | 2279 | log.error(tree.pos(), "generic.array.creation"); |
mcimadamore@1220 | 2280 | result = check(tree, owntype, VAL, resultInfo); |
duke@1 | 2281 | } |
duke@1 | 2282 | |
mcimadamore@1348 | 2283 | /* |
mcimadamore@1348 | 2284 | * A lambda expression can only be attributed when a target-type is available. |
mcimadamore@1348 | 2285 | * In addition, if the target-type is that of a functional interface whose |
mcimadamore@1348 | 2286 | * descriptor contains inference variables in argument position the lambda expression |
mcimadamore@1348 | 2287 | * is 'stuck' (see DeferredAttr). |
mcimadamore@1348 | 2288 | */ |
mcimadamore@1144 | 2289 | @Override |
mcimadamore@1348 | 2290 | public void visitLambda(final JCLambda that) { |
jjg@1374 | 2291 | if (pt().isErroneous() || (pt().hasTag(NONE) && pt() != Type.recoveryType)) { |
jjg@1374 | 2292 | if (pt().hasTag(NONE)) { |
mcimadamore@1348 | 2293 | //lambda only allowed in assignment or method invocation/cast context |
mcimadamore@1348 | 2294 | log.error(that.pos(), "unexpected.lambda"); |
mcimadamore@1348 | 2295 | } |
mcimadamore@1348 | 2296 | result = that.type = types.createErrorType(pt()); |
mcimadamore@1348 | 2297 | return; |
mcimadamore@1348 | 2298 | } |
mcimadamore@1348 | 2299 | //create an environment for attribution of the lambda expression |
mcimadamore@1348 | 2300 | final Env<AttrContext> localEnv = lambdaEnv(that, env); |
mcimadamore@1415 | 2301 | boolean needsRecovery = |
mcimadamore@1348 | 2302 | resultInfo.checkContext.deferredAttrContext().mode == DeferredAttr.AttrMode.CHECK; |
mcimadamore@1348 | 2303 | try { |
mcimadamore@1510 | 2304 | Type target = pt(); |
mcimadamore@1348 | 2305 | List<Type> explicitParamTypes = null; |
mcimadamore@1510 | 2306 | if (that.paramKind == JCLambda.ParameterKind.EXPLICIT) { |
mcimadamore@1348 | 2307 | //attribute lambda parameters |
mcimadamore@1348 | 2308 | attribStats(that.params, localEnv); |
mcimadamore@1348 | 2309 | explicitParamTypes = TreeInfo.types(that.params); |
mcimadamore@1510 | 2310 | target = infer.instantiateFunctionalInterface(that, target, explicitParamTypes, resultInfo.checkContext); |
mcimadamore@1348 | 2311 | } |
mcimadamore@1348 | 2312 | |
mcimadamore@1415 | 2313 | Type lambdaType; |
mcimadamore@1415 | 2314 | if (pt() != Type.recoveryType) { |
mcimadamore@1678 | 2315 | target = targetChecker.visit(target, that); |
mcimadamore@1415 | 2316 | lambdaType = types.findDescriptorType(target); |
mcimadamore@1415 | 2317 | chk.checkFunctionalInterface(that, target); |
mcimadamore@1415 | 2318 | } else { |
mcimadamore@1415 | 2319 | target = Type.recoveryType; |
mcimadamore@1415 | 2320 | lambdaType = fallbackDescriptorType(that); |
mcimadamore@1415 | 2321 | } |
mcimadamore@1348 | 2322 | |
mcimadamore@1678 | 2323 | setFunctionalInfo(that, pt(), lambdaType, target, resultInfo.checkContext.inferenceContext()); |
mcimadamore@1510 | 2324 | |
mcimadamore@1434 | 2325 | if (lambdaType.hasTag(FORALL)) { |
mcimadamore@1434 | 2326 | //lambda expression target desc cannot be a generic method |
mcimadamore@1434 | 2327 | resultInfo.checkContext.report(that, diags.fragment("invalid.generic.lambda.target", |
mcimadamore@1434 | 2328 | lambdaType, kindName(target.tsym), target.tsym)); |
mcimadamore@1434 | 2329 | result = that.type = types.createErrorType(pt()); |
mcimadamore@1434 | 2330 | return; |
mcimadamore@1434 | 2331 | } |
mcimadamore@1434 | 2332 | |
mcimadamore@1510 | 2333 | if (that.paramKind == JCLambda.ParameterKind.IMPLICIT) { |
mcimadamore@1348 | 2334 | //add param type info in the AST |
mcimadamore@1348 | 2335 | List<Type> actuals = lambdaType.getParameterTypes(); |
mcimadamore@1348 | 2336 | List<JCVariableDecl> params = that.params; |
mcimadamore@1348 | 2337 | |
mcimadamore@1348 | 2338 | boolean arityMismatch = false; |
mcimadamore@1348 | 2339 | |
mcimadamore@1348 | 2340 | while (params.nonEmpty()) { |
mcimadamore@1348 | 2341 | if (actuals.isEmpty()) { |
mcimadamore@1348 | 2342 | //not enough actuals to perform lambda parameter inference |
mcimadamore@1348 | 2343 | arityMismatch = true; |
mcimadamore@1348 | 2344 | } |
mcimadamore@1348 | 2345 | //reset previously set info |
mcimadamore@1348 | 2346 | Type argType = arityMismatch ? |
mcimadamore@1348 | 2347 | syms.errType : |
mcimadamore@1348 | 2348 | actuals.head; |
mcimadamore@1761 | 2349 | params.head.vartype = make.at(params.head).Type(argType); |
mcimadamore@1348 | 2350 | params.head.sym = null; |
mcimadamore@1348 | 2351 | actuals = actuals.isEmpty() ? |
mcimadamore@1348 | 2352 | actuals : |
mcimadamore@1348 | 2353 | actuals.tail; |
mcimadamore@1348 | 2354 | params = params.tail; |
mcimadamore@1348 | 2355 | } |
mcimadamore@1348 | 2356 | |
mcimadamore@1348 | 2357 | //attribute lambda parameters |
mcimadamore@1348 | 2358 | attribStats(that.params, localEnv); |
mcimadamore@1348 | 2359 | |
mcimadamore@1348 | 2360 | if (arityMismatch) { |
mcimadamore@1348 | 2361 | resultInfo.checkContext.report(that, diags.fragment("incompatible.arg.types.in.lambda")); |
mcimadamore@1348 | 2362 | result = that.type = types.createErrorType(target); |
mcimadamore@1348 | 2363 | return; |
mcimadamore@1348 | 2364 | } |
mcimadamore@1348 | 2365 | } |
mcimadamore@1348 | 2366 | |
mcimadamore@1348 | 2367 | //from this point on, no recovery is needed; if we are in assignment context |
mcimadamore@1348 | 2368 | //we will be able to attribute the whole lambda body, regardless of errors; |
mcimadamore@1348 | 2369 | //if we are in a 'check' method context, and the lambda is not compatible |
mcimadamore@1348 | 2370 | //with the target-type, it will be recovered anyway in Attr.checkId |
mcimadamore@1348 | 2371 | needsRecovery = false; |
mcimadamore@1348 | 2372 | |
mcimadamore@1433 | 2373 | FunctionalReturnContext funcContext = that.getBodyKind() == JCLambda.BodyKind.EXPRESSION ? |
mcimadamore@1433 | 2374 | new ExpressionLambdaReturnContext((JCExpression)that.getBody(), resultInfo.checkContext) : |
mcimadamore@1433 | 2375 | new FunctionalReturnContext(resultInfo.checkContext); |
mcimadamore@1433 | 2376 | |
mcimadamore@1348 | 2377 | ResultInfo bodyResultInfo = lambdaType.getReturnType() == Type.recoveryType ? |
mcimadamore@1348 | 2378 | recoveryInfo : |
mcimadamore@1433 | 2379 | new ResultInfo(VAL, lambdaType.getReturnType(), funcContext); |
mcimadamore@1348 | 2380 | localEnv.info.returnResult = bodyResultInfo; |
mcimadamore@1348 | 2381 | |
mcimadamore@1677 | 2382 | Log.DeferredDiagnosticHandler lambdaDeferredHandler = new Log.DeferredDiagnosticHandler(log); |
mcimadamore@1677 | 2383 | try { |
mcimadamore@1677 | 2384 | if (that.getBodyKind() == JCLambda.BodyKind.EXPRESSION) { |
mcimadamore@1677 | 2385 | attribTree(that.getBody(), localEnv, bodyResultInfo); |
mcimadamore@1677 | 2386 | } else { |
mcimadamore@1677 | 2387 | JCBlock body = (JCBlock)that.body; |
mcimadamore@1677 | 2388 | attribStats(body.stats, localEnv); |
mcimadamore@1677 | 2389 | } |
mcimadamore@1677 | 2390 | |
mcimadamore@1677 | 2391 | if (resultInfo.checkContext.deferredAttrContext().mode == AttrMode.SPECULATIVE) { |
mcimadamore@1677 | 2392 | //check for errors in lambda body |
mcimadamore@1677 | 2393 | for (JCDiagnostic deferredDiag : lambdaDeferredHandler.getDiagnostics()) { |
mcimadamore@1677 | 2394 | if (deferredDiag.getKind() == JCDiagnostic.Kind.ERROR) { |
mcimadamore@1677 | 2395 | resultInfo.checkContext |
mcimadamore@1759 | 2396 | .report(that, diags.fragment("bad.arg.types.in.lambda", TreeInfo.types(that.params), |
mcimadamore@1759 | 2397 | deferredDiag)); //hidden diag parameter |
mcimadamore@1677 | 2398 | //we mark the lambda as erroneous - this is crucial in the recovery step |
mcimadamore@1677 | 2399 | //as parameter-dependent type error won't be reported in that stage, |
mcimadamore@1677 | 2400 | //meaning that a lambda will be deemed erroeneous only if there is |
mcimadamore@1677 | 2401 | //a target-independent error (which will cause method diagnostic |
mcimadamore@1677 | 2402 | //to be skipped). |
mcimadamore@1677 | 2403 | result = that.type = types.createErrorType(target); |
mcimadamore@1677 | 2404 | return; |
mcimadamore@1677 | 2405 | } |
mcimadamore@1677 | 2406 | } |
mcimadamore@1677 | 2407 | } |
mcimadamore@1677 | 2408 | } finally { |
mcimadamore@1677 | 2409 | lambdaDeferredHandler.reportDeferredDiagnostics(); |
mcimadamore@1677 | 2410 | log.popDiagnosticHandler(lambdaDeferredHandler); |
mcimadamore@1348 | 2411 | } |
mcimadamore@1348 | 2412 | |
mcimadamore@1348 | 2413 | result = check(that, target, VAL, resultInfo); |
mcimadamore@1348 | 2414 | |
mcimadamore@1348 | 2415 | boolean isSpeculativeRound = |
mcimadamore@1348 | 2416 | resultInfo.checkContext.deferredAttrContext().mode == DeferredAttr.AttrMode.SPECULATIVE; |
mcimadamore@1348 | 2417 | |
mcimadamore@1348 | 2418 | postAttr(that); |
mcimadamore@1348 | 2419 | flow.analyzeLambda(env, that, make, isSpeculativeRound); |
mcimadamore@1348 | 2420 | |
mcimadamore@1348 | 2421 | checkLambdaCompatible(that, lambdaType, resultInfo.checkContext, isSpeculativeRound); |
mcimadamore@1348 | 2422 | |
mcimadamore@1348 | 2423 | if (!isSpeculativeRound) { |
mcimadamore@1415 | 2424 | checkAccessibleTypes(that, localEnv, resultInfo.checkContext.inferenceContext(), lambdaType, target); |
mcimadamore@1348 | 2425 | } |
mcimadamore@1348 | 2426 | result = check(that, target, VAL, resultInfo); |
mcimadamore@1348 | 2427 | } catch (Types.FunctionDescriptorLookupError ex) { |
mcimadamore@1348 | 2428 | JCDiagnostic cause = ex.getDiagnostic(); |
mcimadamore@1348 | 2429 | resultInfo.checkContext.report(that, cause); |
mcimadamore@1348 | 2430 | result = that.type = types.createErrorType(pt()); |
mcimadamore@1348 | 2431 | return; |
mcimadamore@1348 | 2432 | } finally { |
mcimadamore@1348 | 2433 | localEnv.info.scope.leave(); |
mcimadamore@1348 | 2434 | if (needsRecovery) { |
mcimadamore@1348 | 2435 | attribTree(that, env, recoveryInfo); |
mcimadamore@1348 | 2436 | } |
mcimadamore@1348 | 2437 | } |
mcimadamore@1144 | 2438 | } |
mcimadamore@1678 | 2439 | //where |
mcimadamore@1678 | 2440 | Types.MapVisitor<DiagnosticPosition> targetChecker = new Types.MapVisitor<DiagnosticPosition>() { |
mcimadamore@1678 | 2441 | |
mcimadamore@1678 | 2442 | @Override |
mcimadamore@1678 | 2443 | public Type visitClassType(ClassType t, DiagnosticPosition pos) { |
mcimadamore@1678 | 2444 | return t.isCompound() ? |
mcimadamore@1678 | 2445 | visitIntersectionClassType((IntersectionClassType)t, pos) : t; |
mcimadamore@1678 | 2446 | } |
mcimadamore@1678 | 2447 | |
mcimadamore@1678 | 2448 | public Type visitIntersectionClassType(IntersectionClassType ict, DiagnosticPosition pos) { |
mcimadamore@1678 | 2449 | Symbol desc = types.findDescriptorSymbol(makeNotionalInterface(ict)); |
mcimadamore@1678 | 2450 | Type target = null; |
mcimadamore@1678 | 2451 | for (Type bound : ict.getExplicitComponents()) { |
mcimadamore@1678 | 2452 | TypeSymbol boundSym = bound.tsym; |
mcimadamore@1678 | 2453 | if (types.isFunctionalInterface(boundSym) && |
mcimadamore@1678 | 2454 | types.findDescriptorSymbol(boundSym) == desc) { |
mcimadamore@1678 | 2455 | target = bound; |
mcimadamore@1678 | 2456 | } else if (!boundSym.isInterface() || (boundSym.flags() & ANNOTATION) != 0) { |
mcimadamore@1678 | 2457 | //bound must be an interface |
mcimadamore@1678 | 2458 | reportIntersectionError(pos, "not.an.intf.component", boundSym); |
mcimadamore@1678 | 2459 | } |
mcimadamore@1436 | 2460 | } |
mcimadamore@1678 | 2461 | return target != null ? |
mcimadamore@1678 | 2462 | target : |
mcimadamore@1678 | 2463 | ict.getExplicitComponents().head; //error recovery |
mcimadamore@1436 | 2464 | } |
mcimadamore@1678 | 2465 | |
mcimadamore@1678 | 2466 | private TypeSymbol makeNotionalInterface(IntersectionClassType ict) { |
mcimadamore@1678 | 2467 | ListBuffer<Type> targs = ListBuffer.lb(); |
mcimadamore@1678 | 2468 | ListBuffer<Type> supertypes = ListBuffer.lb(); |
mcimadamore@1678 | 2469 | for (Type i : ict.interfaces_field) { |
mcimadamore@1678 | 2470 | if (i.isParameterized()) { |
mcimadamore@1678 | 2471 | targs.appendList(i.tsym.type.allparams()); |
mcimadamore@1678 | 2472 | } |
mcimadamore@1678 | 2473 | supertypes.append(i.tsym.type); |
mcimadamore@1678 | 2474 | } |
mcimadamore@1678 | 2475 | IntersectionClassType notionalIntf = |
mcimadamore@1678 | 2476 | (IntersectionClassType)types.makeCompoundType(supertypes.toList()); |
mcimadamore@1678 | 2477 | notionalIntf.allparams_field = targs.toList(); |
mcimadamore@1678 | 2478 | notionalIntf.tsym.flags_field |= INTERFACE; |
mcimadamore@1678 | 2479 | return notionalIntf.tsym; |
mcimadamore@1678 | 2480 | } |
mcimadamore@1678 | 2481 | |
mcimadamore@1678 | 2482 | private void reportIntersectionError(DiagnosticPosition pos, String key, Object... args) { |
mcimadamore@1678 | 2483 | resultInfo.checkContext.report(pos, diags.fragment("bad.intersection.target.for.functional.expr", |
mcimadamore@1678 | 2484 | diags.fragment(key, args))); |
mcimadamore@1678 | 2485 | } |
mcimadamore@1678 | 2486 | }; |
mcimadamore@1678 | 2487 | |
mcimadamore@1348 | 2488 | private Type fallbackDescriptorType(JCExpression tree) { |
mcimadamore@1348 | 2489 | switch (tree.getTag()) { |
mcimadamore@1348 | 2490 | case LAMBDA: |
mcimadamore@1348 | 2491 | JCLambda lambda = (JCLambda)tree; |
mcimadamore@1348 | 2492 | List<Type> argtypes = List.nil(); |
mcimadamore@1348 | 2493 | for (JCVariableDecl param : lambda.params) { |
mcimadamore@1348 | 2494 | argtypes = param.vartype != null ? |
mcimadamore@1348 | 2495 | argtypes.append(param.vartype.type) : |
mcimadamore@1348 | 2496 | argtypes.append(syms.errType); |
mcimadamore@1348 | 2497 | } |
mcimadamore@1694 | 2498 | return new MethodType(argtypes, Type.recoveryType, |
mcimadamore@1694 | 2499 | List.of(syms.throwableType), syms.methodClass); |
mcimadamore@1348 | 2500 | case REFERENCE: |
mcimadamore@1694 | 2501 | return new MethodType(List.<Type>nil(), Type.recoveryType, |
mcimadamore@1694 | 2502 | List.of(syms.throwableType), syms.methodClass); |
mcimadamore@1348 | 2503 | default: |
mcimadamore@1348 | 2504 | Assert.error("Cannot get here!"); |
mcimadamore@1348 | 2505 | } |
mcimadamore@1348 | 2506 | return null; |
mcimadamore@1348 | 2507 | } |
mcimadamore@1348 | 2508 | |
mcimadamore@1694 | 2509 | private void checkAccessibleTypes(final DiagnosticPosition pos, final Env<AttrContext> env, |
mcimadamore@1694 | 2510 | final InferenceContext inferenceContext, final Type... ts) { |
mcimadamore@1415 | 2511 | checkAccessibleTypes(pos, env, inferenceContext, List.from(ts)); |
mcimadamore@1415 | 2512 | } |
mcimadamore@1415 | 2513 | |
mcimadamore@1694 | 2514 | private void checkAccessibleTypes(final DiagnosticPosition pos, final Env<AttrContext> env, |
mcimadamore@1694 | 2515 | final InferenceContext inferenceContext, final List<Type> ts) { |
mcimadamore@1415 | 2516 | if (inferenceContext.free(ts)) { |
mcimadamore@1415 | 2517 | inferenceContext.addFreeTypeListener(ts, new FreeTypeListener() { |
mcimadamore@1348 | 2518 | @Override |
mcimadamore@1348 | 2519 | public void typesInferred(InferenceContext inferenceContext) { |
mcimadamore@1550 | 2520 | checkAccessibleTypes(pos, env, inferenceContext, inferenceContext.asInstTypes(ts)); |
mcimadamore@1348 | 2521 | } |
mcimadamore@1348 | 2522 | }); |
mcimadamore@1348 | 2523 | } else { |
mcimadamore@1415 | 2524 | for (Type t : ts) { |
mcimadamore@1415 | 2525 | rs.checkAccessibleType(env, t); |
mcimadamore@1415 | 2526 | } |
mcimadamore@1348 | 2527 | } |
mcimadamore@1348 | 2528 | } |
mcimadamore@1348 | 2529 | |
mcimadamore@1348 | 2530 | /** |
mcimadamore@1348 | 2531 | * Lambda/method reference have a special check context that ensures |
mcimadamore@1348 | 2532 | * that i.e. a lambda return type is compatible with the expected |
mcimadamore@1348 | 2533 | * type according to both the inherited context and the assignment |
mcimadamore@1348 | 2534 | * context. |
mcimadamore@1348 | 2535 | */ |
mcimadamore@1433 | 2536 | class FunctionalReturnContext extends Check.NestedCheckContext { |
mcimadamore@1433 | 2537 | |
mcimadamore@1433 | 2538 | FunctionalReturnContext(CheckContext enclosingContext) { |
mcimadamore@1348 | 2539 | super(enclosingContext); |
mcimadamore@1348 | 2540 | } |
mcimadamore@1348 | 2541 | |
mcimadamore@1348 | 2542 | @Override |
mcimadamore@1348 | 2543 | public boolean compatible(Type found, Type req, Warner warn) { |
mcimadamore@1348 | 2544 | //return type must be compatible in both current context and assignment context |
mcimadamore@1550 | 2545 | return chk.basicHandler.compatible(found, inferenceContext().asFree(req), warn); |
mcimadamore@1348 | 2546 | } |
mcimadamore@1510 | 2547 | |
mcimadamore@1348 | 2548 | @Override |
mcimadamore@1348 | 2549 | public void report(DiagnosticPosition pos, JCDiagnostic details) { |
mcimadamore@1348 | 2550 | enclosingContext.report(pos, diags.fragment("incompatible.ret.type.in.lambda", details)); |
mcimadamore@1348 | 2551 | } |
mcimadamore@1348 | 2552 | } |
mcimadamore@1348 | 2553 | |
mcimadamore@1433 | 2554 | class ExpressionLambdaReturnContext extends FunctionalReturnContext { |
mcimadamore@1433 | 2555 | |
mcimadamore@1433 | 2556 | JCExpression expr; |
mcimadamore@1433 | 2557 | |
mcimadamore@1433 | 2558 | ExpressionLambdaReturnContext(JCExpression expr, CheckContext enclosingContext) { |
mcimadamore@1433 | 2559 | super(enclosingContext); |
mcimadamore@1433 | 2560 | this.expr = expr; |
mcimadamore@1433 | 2561 | } |
mcimadamore@1433 | 2562 | |
mcimadamore@1433 | 2563 | @Override |
mcimadamore@1433 | 2564 | public boolean compatible(Type found, Type req, Warner warn) { |
mcimadamore@1433 | 2565 | //a void return is compatible with an expression statement lambda |
mcimadamore@1433 | 2566 | return TreeInfo.isExpressionStatement(expr) && req.hasTag(VOID) || |
mcimadamore@1433 | 2567 | super.compatible(found, req, warn); |
mcimadamore@1433 | 2568 | } |
mcimadamore@1433 | 2569 | } |
mcimadamore@1433 | 2570 | |
mcimadamore@1348 | 2571 | /** |
mcimadamore@1348 | 2572 | * Lambda compatibility. Check that given return types, thrown types, parameter types |
mcimadamore@1348 | 2573 | * are compatible with the expected functional interface descriptor. This means that: |
mcimadamore@1348 | 2574 | * (i) parameter types must be identical to those of the target descriptor; (ii) return |
mcimadamore@1348 | 2575 | * types must be compatible with the return type of the expected descriptor; |
mcimadamore@1348 | 2576 | * (iii) thrown types must be 'included' in the thrown types list of the expected |
mcimadamore@1348 | 2577 | * descriptor. |
mcimadamore@1348 | 2578 | */ |
mcimadamore@1348 | 2579 | private void checkLambdaCompatible(JCLambda tree, Type descriptor, CheckContext checkContext, boolean speculativeAttr) { |
mcimadamore@1550 | 2580 | Type returnType = checkContext.inferenceContext().asFree(descriptor.getReturnType()); |
mcimadamore@1348 | 2581 | |
mcimadamore@1348 | 2582 | //return values have already been checked - but if lambda has no return |
mcimadamore@1348 | 2583 | //values, we must ensure that void/value compatibility is correct; |
mcimadamore@1348 | 2584 | //this amounts at checking that, if a lambda body can complete normally, |
mcimadamore@1348 | 2585 | //the descriptor's return type must be void |
mcimadamore@1348 | 2586 | if (tree.getBodyKind() == JCLambda.BodyKind.STATEMENT && tree.canCompleteNormally && |
jjg@1374 | 2587 | !returnType.hasTag(VOID) && returnType != Type.recoveryType) { |
mcimadamore@1348 | 2588 | checkContext.report(tree, diags.fragment("incompatible.ret.type.in.lambda", |
mcimadamore@1348 | 2589 | diags.fragment("missing.ret.val", returnType))); |
mcimadamore@1348 | 2590 | } |
mcimadamore@1348 | 2591 | |
mcimadamore@1550 | 2592 | List<Type> argTypes = checkContext.inferenceContext().asFree(descriptor.getParameterTypes()); |
mcimadamore@1348 | 2593 | if (!types.isSameTypes(argTypes, TreeInfo.types(tree.params))) { |
mcimadamore@1348 | 2594 | checkContext.report(tree, diags.fragment("incompatible.arg.types.in.lambda")); |
mcimadamore@1348 | 2595 | } |
mcimadamore@1348 | 2596 | |
mcimadamore@1348 | 2597 | if (!speculativeAttr) { |
mcimadamore@1550 | 2598 | List<Type> thrownTypes = checkContext.inferenceContext().asFree(descriptor.getThrownTypes()); |
mcimadamore@1348 | 2599 | if (chk.unhandled(tree.inferredThrownTypes == null ? List.<Type>nil() : tree.inferredThrownTypes, thrownTypes).nonEmpty()) { |
mcimadamore@1348 | 2600 | log.error(tree, "incompatible.thrown.types.in.lambda", tree.inferredThrownTypes); |
mcimadamore@1348 | 2601 | } |
mcimadamore@1348 | 2602 | } |
mcimadamore@1348 | 2603 | } |
mcimadamore@1348 | 2604 | |
mcimadamore@1348 | 2605 | private Env<AttrContext> lambdaEnv(JCLambda that, Env<AttrContext> env) { |
mcimadamore@1348 | 2606 | Env<AttrContext> lambdaEnv; |
mcimadamore@1348 | 2607 | Symbol owner = env.info.scope.owner; |
mcimadamore@1348 | 2608 | if (owner.kind == VAR && owner.owner.kind == TYP) { |
mcimadamore@1348 | 2609 | //field initializer |
mcimadamore@1348 | 2610 | lambdaEnv = env.dup(that, env.info.dup(env.info.scope.dupUnshared())); |
mcimadamore@1348 | 2611 | lambdaEnv.info.scope.owner = |
mcimadamore@1813 | 2612 | new MethodSymbol((owner.flags() & STATIC) | BLOCK, names.empty, null, |
mcimadamore@1348 | 2613 | env.info.scope.owner); |
mcimadamore@1348 | 2614 | } else { |
mcimadamore@1348 | 2615 | lambdaEnv = env.dup(that, env.info.dup(env.info.scope.dup())); |
mcimadamore@1348 | 2616 | } |
mcimadamore@1348 | 2617 | return lambdaEnv; |
mcimadamore@1348 | 2618 | } |
mcimadamore@1145 | 2619 | |
mcimadamore@1352 | 2620 | @Override |
mcimadamore@1352 | 2621 | public void visitReference(final JCMemberReference that) { |
jjg@1374 | 2622 | if (pt().isErroneous() || (pt().hasTag(NONE) && pt() != Type.recoveryType)) { |
jjg@1374 | 2623 | if (pt().hasTag(NONE)) { |
mcimadamore@1352 | 2624 | //method reference only allowed in assignment or method invocation/cast context |
mcimadamore@1352 | 2625 | log.error(that.pos(), "unexpected.mref"); |
mcimadamore@1352 | 2626 | } |
mcimadamore@1352 | 2627 | result = that.type = types.createErrorType(pt()); |
mcimadamore@1352 | 2628 | return; |
mcimadamore@1352 | 2629 | } |
mcimadamore@1352 | 2630 | final Env<AttrContext> localEnv = env.dup(that); |
mcimadamore@1352 | 2631 | try { |
mcimadamore@1352 | 2632 | //attribute member reference qualifier - if this is a constructor |
mcimadamore@1352 | 2633 | //reference, the expected kind must be a type |
mcimadamore@1581 | 2634 | Type exprType = attribTree(that.expr, env, memberReferenceQualifierResult(that)); |
mcimadamore@1352 | 2635 | |
mcimadamore@1352 | 2636 | if (that.getMode() == JCMemberReference.ReferenceMode.NEW) { |
mcimadamore@1352 | 2637 | exprType = chk.checkConstructorRefType(that.expr, exprType); |
mcimadamore@1352 | 2638 | } |
mcimadamore@1352 | 2639 | |
mcimadamore@1352 | 2640 | if (exprType.isErroneous()) { |
mcimadamore@1352 | 2641 | //if the qualifier expression contains problems, |
jjg@1563 | 2642 | //give up attribution of method reference |
mcimadamore@1352 | 2643 | result = that.type = exprType; |
mcimadamore@1352 | 2644 | return; |
mcimadamore@1352 | 2645 | } |
mcimadamore@1352 | 2646 | |
mcimadamore@1760 | 2647 | if (TreeInfo.isStaticSelector(that.expr, names)) { |
mcimadamore@1760 | 2648 | //if the qualifier is a type, validate it; raw warning check is |
mcimadamore@1760 | 2649 | //omitted as we don't know at this stage as to whether this is a |
mcimadamore@1760 | 2650 | //raw selector (because of inference) |
mcimadamore@1760 | 2651 | chk.validate(that.expr, env, false); |
mcimadamore@1352 | 2652 | } |
mcimadamore@1352 | 2653 | |
mcimadamore@1352 | 2654 | //attrib type-arguments |
mcimadamore@1435 | 2655 | List<Type> typeargtypes = List.nil(); |
mcimadamore@1352 | 2656 | if (that.typeargs != null) { |
mcimadamore@1352 | 2657 | typeargtypes = attribTypes(that.typeargs, localEnv); |
mcimadamore@1352 | 2658 | } |
mcimadamore@1352 | 2659 | |
mcimadamore@1415 | 2660 | Type target; |
mcimadamore@1415 | 2661 | Type desc; |
mcimadamore@1415 | 2662 | if (pt() != Type.recoveryType) { |
mcimadamore@1678 | 2663 | target = targetChecker.visit(pt(), that); |
mcimadamore@1415 | 2664 | desc = types.findDescriptorType(target); |
mcimadamore@1415 | 2665 | chk.checkFunctionalInterface(that, target); |
mcimadamore@1415 | 2666 | } else { |
mcimadamore@1415 | 2667 | target = Type.recoveryType; |
mcimadamore@1415 | 2668 | desc = fallbackDescriptorType(that); |
mcimadamore@1415 | 2669 | } |
mcimadamore@1352 | 2670 | |
mcimadamore@1678 | 2671 | setFunctionalInfo(that, pt(), desc, target, resultInfo.checkContext.inferenceContext()); |
mcimadamore@1352 | 2672 | List<Type> argtypes = desc.getParameterTypes(); |
mcimadamore@1352 | 2673 | |
mcimadamore@1674 | 2674 | Pair<Symbol, Resolve.ReferenceLookupHelper> refResult = |
mcimadamore@1674 | 2675 | rs.resolveMemberReference(that.pos(), localEnv, that, |
mcimadamore@1674 | 2676 | that.expr.type, that.name, argtypes, typeargtypes, true, rs.resolveMethodCheck); |
mcimadamore@1352 | 2677 | |
mcimadamore@1352 | 2678 | Symbol refSym = refResult.fst; |
mcimadamore@1352 | 2679 | Resolve.ReferenceLookupHelper lookupHelper = refResult.snd; |
mcimadamore@1352 | 2680 | |
mcimadamore@1352 | 2681 | if (refSym.kind != MTH) { |
mcimadamore@1352 | 2682 | boolean targetError; |
mcimadamore@1352 | 2683 | switch (refSym.kind) { |
mcimadamore@1352 | 2684 | case ABSENT_MTH: |
mcimadamore@1352 | 2685 | targetError = false; |
mcimadamore@1352 | 2686 | break; |
mcimadamore@1352 | 2687 | case WRONG_MTH: |
mcimadamore@1352 | 2688 | case WRONG_MTHS: |
mcimadamore@1352 | 2689 | case AMBIGUOUS: |
mcimadamore@1352 | 2690 | case HIDDEN: |
mcimadamore@1352 | 2691 | case STATICERR: |
mcimadamore@1352 | 2692 | case MISSING_ENCL: |
mcimadamore@1352 | 2693 | targetError = true; |
mcimadamore@1352 | 2694 | break; |
mcimadamore@1352 | 2695 | default: |
mcimadamore@1352 | 2696 | Assert.error("unexpected result kind " + refSym.kind); |
mcimadamore@1352 | 2697 | targetError = false; |
mcimadamore@1352 | 2698 | } |
mcimadamore@1352 | 2699 | |
mcimadamore@1352 | 2700 | JCDiagnostic detailsDiag = ((Resolve.ResolveError)refSym).getDiagnostic(JCDiagnostic.DiagnosticType.FRAGMENT, |
mcimadamore@1352 | 2701 | that, exprType.tsym, exprType, that.name, argtypes, typeargtypes); |
mcimadamore@1352 | 2702 | |
mcimadamore@1352 | 2703 | JCDiagnostic.DiagnosticType diagKind = targetError ? |
mcimadamore@1352 | 2704 | JCDiagnostic.DiagnosticType.FRAGMENT : JCDiagnostic.DiagnosticType.ERROR; |
mcimadamore@1352 | 2705 | |
mcimadamore@1352 | 2706 | JCDiagnostic diag = diags.create(diagKind, log.currentSource(), that, |
mcimadamore@1352 | 2707 | "invalid.mref", Kinds.kindName(that.getMode()), detailsDiag); |
mcimadamore@1352 | 2708 | |
mcimadamore@1415 | 2709 | if (targetError && target == Type.recoveryType) { |
mcimadamore@1415 | 2710 | //a target error doesn't make sense during recovery stage |
mcimadamore@1415 | 2711 | //as we don't know what actual parameter types are |
mcimadamore@1415 | 2712 | result = that.type = target; |
mcimadamore@1415 | 2713 | return; |
mcimadamore@1352 | 2714 | } else { |
mcimadamore@1415 | 2715 | if (targetError) { |
mcimadamore@1415 | 2716 | resultInfo.checkContext.report(that, diag); |
mcimadamore@1415 | 2717 | } else { |
mcimadamore@1415 | 2718 | log.report(diag); |
mcimadamore@1415 | 2719 | } |
mcimadamore@1415 | 2720 | result = that.type = types.createErrorType(target); |
mcimadamore@1415 | 2721 | return; |
mcimadamore@1352 | 2722 | } |
mcimadamore@1352 | 2723 | } |
mcimadamore@1352 | 2724 | |
mcimadamore@1580 | 2725 | that.sym = refSym.baseSymbol(); |
mcimadamore@1580 | 2726 | that.kind = lookupHelper.referenceKind(that.sym); |
mcimadamore@1615 | 2727 | that.ownerAccessible = rs.isAccessible(localEnv, that.sym.enclClass()); |
mcimadamore@1580 | 2728 | |
mcimadamore@1610 | 2729 | if (desc.getReturnType() == Type.recoveryType) { |
mcimadamore@1610 | 2730 | // stop here |
mcimadamore@1610 | 2731 | result = that.type = target; |
mcimadamore@1610 | 2732 | return; |
mcimadamore@1610 | 2733 | } |
mcimadamore@1610 | 2734 | |
mcimadamore@1435 | 2735 | if (resultInfo.checkContext.deferredAttrContext().mode == AttrMode.CHECK) { |
mcimadamore@1610 | 2736 | |
mcimadamore@1760 | 2737 | if (that.getMode() == ReferenceMode.INVOKE && |
mcimadamore@1760 | 2738 | TreeInfo.isStaticSelector(that.expr, names) && |
mcimadamore@1760 | 2739 | that.kind.isUnbound() && |
mcimadamore@1760 | 2740 | !desc.getParameterTypes().head.isParameterized()) { |
mcimadamore@1760 | 2741 | chk.checkRaw(that.expr, localEnv); |
mcimadamore@1760 | 2742 | } |
mcimadamore@1760 | 2743 | |
mcimadamore@1610 | 2744 | if (!that.kind.isUnbound() && |
mcimadamore@1610 | 2745 | that.getMode() == ReferenceMode.INVOKE && |
mcimadamore@1610 | 2746 | TreeInfo.isStaticSelector(that.expr, names) && |
mcimadamore@1610 | 2747 | !that.sym.isStatic()) { |
mcimadamore@1610 | 2748 | log.error(that.expr.pos(), "invalid.mref", Kinds.kindName(that.getMode()), |
mcimadamore@1610 | 2749 | diags.fragment("non-static.cant.be.ref", Kinds.kindName(refSym), refSym)); |
mcimadamore@1610 | 2750 | result = that.type = types.createErrorType(target); |
mcimadamore@1610 | 2751 | return; |
mcimadamore@1610 | 2752 | } |
mcimadamore@1610 | 2753 | |
mcimadamore@1610 | 2754 | if (that.kind.isUnbound() && |
mcimadamore@1610 | 2755 | that.getMode() == ReferenceMode.INVOKE && |
mcimadamore@1610 | 2756 | TreeInfo.isStaticSelector(that.expr, names) && |
mcimadamore@1610 | 2757 | that.sym.isStatic()) { |
mcimadamore@1610 | 2758 | log.error(that.expr.pos(), "invalid.mref", Kinds.kindName(that.getMode()), |
mcimadamore@1610 | 2759 | diags.fragment("static.method.in.unbound.lookup", Kinds.kindName(refSym), refSym)); |
mcimadamore@1610 | 2760 | result = that.type = types.createErrorType(target); |
mcimadamore@1610 | 2761 | return; |
mcimadamore@1610 | 2762 | } |
mcimadamore@1610 | 2763 | |
mcimadamore@1580 | 2764 | if (that.sym.isStatic() && TreeInfo.isStaticSelector(that.expr, names) && |
mcimadamore@1435 | 2765 | exprType.getTypeArguments().nonEmpty()) { |
mcimadamore@1435 | 2766 | //static ref with class type-args |
mcimadamore@1435 | 2767 | log.error(that.expr.pos(), "invalid.mref", Kinds.kindName(that.getMode()), |
mcimadamore@1435 | 2768 | diags.fragment("static.mref.with.targs")); |
mcimadamore@1435 | 2769 | result = that.type = types.createErrorType(target); |
mcimadamore@1435 | 2770 | return; |
mcimadamore@1435 | 2771 | } |
mcimadamore@1435 | 2772 | |
mcimadamore@1580 | 2773 | if (that.sym.isStatic() && !TreeInfo.isStaticSelector(that.expr, names) && |
mcimadamore@1580 | 2774 | !that.kind.isUnbound()) { |
mcimadamore@1435 | 2775 | //no static bound mrefs |
mcimadamore@1435 | 2776 | log.error(that.expr.pos(), "invalid.mref", Kinds.kindName(that.getMode()), |
mcimadamore@1435 | 2777 | diags.fragment("static.bound.mref")); |
mcimadamore@1435 | 2778 | result = that.type = types.createErrorType(target); |
mcimadamore@1435 | 2779 | return; |
mcimadamore@1435 | 2780 | } |
mcimadamore@1580 | 2781 | |
mcimadamore@1580 | 2782 | if (!refSym.isStatic() && that.kind == JCMemberReference.ReferenceKind.SUPER) { |
mcimadamore@1580 | 2783 | // Check that super-qualified symbols are not abstract (JLS) |
mcimadamore@1580 | 2784 | rs.checkNonAbstract(that.pos(), that.sym); |
mcimadamore@1580 | 2785 | } |
mcimadamore@1435 | 2786 | } |
mcimadamore@1435 | 2787 | |
mcimadamore@1352 | 2788 | that.sym = refSym.baseSymbol(); |
mcimadamore@1352 | 2789 | that.kind = lookupHelper.referenceKind(that.sym); |
mcimadamore@1352 | 2790 | |
mcimadamore@1352 | 2791 | ResultInfo checkInfo = |
mcimadamore@1352 | 2792 | resultInfo.dup(newMethodTemplate( |
jjg@1374 | 2793 | desc.getReturnType().hasTag(VOID) ? Type.noType : desc.getReturnType(), |
mcimadamore@1352 | 2794 | lookupHelper.argtypes, |
mcimadamore@1352 | 2795 | typeargtypes)); |
mcimadamore@1352 | 2796 | |
mcimadamore@1352 | 2797 | Type refType = checkId(that, lookupHelper.site, refSym, localEnv, checkInfo); |
mcimadamore@1352 | 2798 | |
mcimadamore@1352 | 2799 | if (!refType.isErroneous()) { |
mcimadamore@1352 | 2800 | refType = types.createMethodTypeWithReturn(refType, |
mcimadamore@1352 | 2801 | adjustMethodReturnType(lookupHelper.site, that.name, checkInfo.pt.getParameterTypes(), refType.getReturnType())); |
mcimadamore@1352 | 2802 | } |
mcimadamore@1352 | 2803 | |
mcimadamore@1352 | 2804 | //go ahead with standard method reference compatibility check - note that param check |
mcimadamore@1352 | 2805 | //is a no-op (as this has been taken care during method applicability) |
mcimadamore@1352 | 2806 | boolean isSpeculativeRound = |
mcimadamore@1352 | 2807 | resultInfo.checkContext.deferredAttrContext().mode == DeferredAttr.AttrMode.SPECULATIVE; |
mcimadamore@1352 | 2808 | checkReferenceCompatible(that, desc, refType, resultInfo.checkContext, isSpeculativeRound); |
mcimadamore@1352 | 2809 | if (!isSpeculativeRound) { |
mcimadamore@1415 | 2810 | checkAccessibleTypes(that, localEnv, resultInfo.checkContext.inferenceContext(), desc, target); |
mcimadamore@1352 | 2811 | } |
mcimadamore@1352 | 2812 | result = check(that, target, VAL, resultInfo); |
mcimadamore@1352 | 2813 | } catch (Types.FunctionDescriptorLookupError ex) { |
mcimadamore@1352 | 2814 | JCDiagnostic cause = ex.getDiagnostic(); |
mcimadamore@1352 | 2815 | resultInfo.checkContext.report(that, cause); |
mcimadamore@1352 | 2816 | result = that.type = types.createErrorType(pt()); |
mcimadamore@1352 | 2817 | return; |
mcimadamore@1352 | 2818 | } |
mcimadamore@1352 | 2819 | } |
mcimadamore@1581 | 2820 | //where |
mcimadamore@1581 | 2821 | ResultInfo memberReferenceQualifierResult(JCMemberReference tree) { |
mcimadamore@1581 | 2822 | //if this is a constructor reference, the expected kind must be a type |
mcimadamore@1581 | 2823 | return new ResultInfo(tree.getMode() == ReferenceMode.INVOKE ? VAL | TYP : TYP, Type.noType); |
mcimadamore@1581 | 2824 | } |
mcimadamore@1581 | 2825 | |
mcimadamore@1352 | 2826 | |
mcimadamore@1352 | 2827 | @SuppressWarnings("fallthrough") |
mcimadamore@1352 | 2828 | void checkReferenceCompatible(JCMemberReference tree, Type descriptor, Type refType, CheckContext checkContext, boolean speculativeAttr) { |
mcimadamore@1550 | 2829 | Type returnType = checkContext.inferenceContext().asFree(descriptor.getReturnType()); |
mcimadamore@1352 | 2830 | |
mcimadamore@1352 | 2831 | Type resType; |
mcimadamore@1352 | 2832 | switch (tree.getMode()) { |
mcimadamore@1352 | 2833 | case NEW: |
mcimadamore@1352 | 2834 | if (!tree.expr.type.isRaw()) { |
mcimadamore@1352 | 2835 | resType = tree.expr.type; |
mcimadamore@1352 | 2836 | break; |
mcimadamore@1352 | 2837 | } |
mcimadamore@1352 | 2838 | default: |
mcimadamore@1352 | 2839 | resType = refType.getReturnType(); |
mcimadamore@1352 | 2840 | } |
mcimadamore@1352 | 2841 | |
mcimadamore@1352 | 2842 | Type incompatibleReturnType = resType; |
mcimadamore@1352 | 2843 | |
jjg@1374 | 2844 | if (returnType.hasTag(VOID)) { |
mcimadamore@1352 | 2845 | incompatibleReturnType = null; |
mcimadamore@1352 | 2846 | } |
mcimadamore@1352 | 2847 | |
jjg@1374 | 2848 | if (!returnType.hasTag(VOID) && !resType.hasTag(VOID)) { |
mcimadamore@1352 | 2849 | if (resType.isErroneous() || |
mcimadamore@1433 | 2850 | new FunctionalReturnContext(checkContext).compatible(resType, returnType, types.noWarnings)) { |
mcimadamore@1352 | 2851 | incompatibleReturnType = null; |
mcimadamore@1352 | 2852 | } |
mcimadamore@1352 | 2853 | } |
mcimadamore@1352 | 2854 | |
mcimadamore@1352 | 2855 | if (incompatibleReturnType != null) { |
mcimadamore@1352 | 2856 | checkContext.report(tree, diags.fragment("incompatible.ret.type.in.mref", |
mcimadamore@1352 | 2857 | diags.fragment("inconvertible.types", resType, descriptor.getReturnType()))); |
mcimadamore@1352 | 2858 | } |
mcimadamore@1352 | 2859 | |
mcimadamore@1352 | 2860 | if (!speculativeAttr) { |
mcimadamore@1550 | 2861 | List<Type> thrownTypes = checkContext.inferenceContext().asFree(descriptor.getThrownTypes()); |
mcimadamore@1352 | 2862 | if (chk.unhandled(refType.getThrownTypes(), thrownTypes).nonEmpty()) { |
mcimadamore@1352 | 2863 | log.error(tree, "incompatible.thrown.types.in.mref", refType.getThrownTypes()); |
mcimadamore@1352 | 2864 | } |
mcimadamore@1352 | 2865 | } |
mcimadamore@1352 | 2866 | } |
mcimadamore@1352 | 2867 | |
mcimadamore@1510 | 2868 | /** |
mcimadamore@1510 | 2869 | * Set functional type info on the underlying AST. Note: as the target descriptor |
mcimadamore@1510 | 2870 | * might contain inference variables, we might need to register an hook in the |
mcimadamore@1510 | 2871 | * current inference context. |
mcimadamore@1510 | 2872 | */ |
mcimadamore@1678 | 2873 | private void setFunctionalInfo(final JCFunctionalExpression fExpr, final Type pt, |
mcimadamore@1678 | 2874 | final Type descriptorType, final Type primaryTarget, InferenceContext inferenceContext) { |
mcimadamore@1510 | 2875 | if (inferenceContext.free(descriptorType)) { |
mcimadamore@1510 | 2876 | inferenceContext.addFreeTypeListener(List.of(pt, descriptorType), new FreeTypeListener() { |
mcimadamore@1510 | 2877 | public void typesInferred(InferenceContext inferenceContext) { |
mcimadamore@1678 | 2878 | setFunctionalInfo(fExpr, pt, inferenceContext.asInstType(descriptorType), |
mcimadamore@1678 | 2879 | inferenceContext.asInstType(primaryTarget), inferenceContext); |
mcimadamore@1510 | 2880 | } |
mcimadamore@1510 | 2881 | }); |
mcimadamore@1510 | 2882 | } else { |
mcimadamore@1510 | 2883 | ListBuffer<TypeSymbol> targets = ListBuffer.lb(); |
mcimadamore@1510 | 2884 | if (pt.hasTag(CLASS)) { |
mcimadamore@1510 | 2885 | if (pt.isCompound()) { |
mcimadamore@1678 | 2886 | targets.append(primaryTarget.tsym); //this goes first |
mcimadamore@1510 | 2887 | for (Type t : ((IntersectionClassType)pt()).interfaces_field) { |
mcimadamore@1678 | 2888 | if (t != primaryTarget) { |
mcimadamore@1678 | 2889 | targets.append(t.tsym); |
mcimadamore@1678 | 2890 | } |
mcimadamore@1510 | 2891 | } |
mcimadamore@1510 | 2892 | } else { |
mcimadamore@1510 | 2893 | targets.append(pt.tsym); |
mcimadamore@1510 | 2894 | } |
mcimadamore@1510 | 2895 | } |
mcimadamore@1510 | 2896 | fExpr.targets = targets.toList(); |
mcimadamore@1510 | 2897 | fExpr.descriptorType = descriptorType; |
mcimadamore@1510 | 2898 | } |
mcimadamore@1510 | 2899 | } |
mcimadamore@1510 | 2900 | |
duke@1 | 2901 | public void visitParens(JCParens tree) { |
mcimadamore@1220 | 2902 | Type owntype = attribTree(tree.expr, env, resultInfo); |
mcimadamore@1220 | 2903 | result = check(tree, owntype, pkind(), resultInfo); |
duke@1 | 2904 | Symbol sym = TreeInfo.symbol(tree); |
duke@1 | 2905 | if (sym != null && (sym.kind&(TYP|PCK)) != 0) |
duke@1 | 2906 | log.error(tree.pos(), "illegal.start.of.type"); |
duke@1 | 2907 | } |
duke@1 | 2908 | |
duke@1 | 2909 | public void visitAssign(JCAssign tree) { |
mcimadamore@1220 | 2910 | Type owntype = attribTree(tree.lhs, env.dup(tree), varInfo); |
duke@1 | 2911 | Type capturedType = capture(owntype); |
duke@1 | 2912 | attribExpr(tree.rhs, env, owntype); |
mcimadamore@1220 | 2913 | result = check(tree, capturedType, VAL, resultInfo); |
duke@1 | 2914 | } |
duke@1 | 2915 | |
duke@1 | 2916 | public void visitAssignop(JCAssignOp tree) { |
duke@1 | 2917 | // Attribute arguments. |
mcimadamore@1220 | 2918 | Type owntype = attribTree(tree.lhs, env, varInfo); |
duke@1 | 2919 | Type operand = attribExpr(tree.rhs, env); |
duke@1 | 2920 | // Find operator. |
duke@1 | 2921 | Symbol operator = tree.operator = rs.resolveBinaryOperator( |
jjg@1127 | 2922 | tree.pos(), tree.getTag().noAssignOp(), env, |
duke@1 | 2923 | owntype, operand); |
duke@1 | 2924 | |
mcimadamore@853 | 2925 | if (operator.kind == MTH && |
mcimadamore@853 | 2926 | !owntype.isErroneous() && |
mcimadamore@853 | 2927 | !operand.isErroneous()) { |
duke@1 | 2928 | chk.checkOperator(tree.pos(), |
duke@1 | 2929 | (OperatorSymbol)operator, |
jjg@1127 | 2930 | tree.getTag().noAssignOp(), |
duke@1 | 2931 | owntype, |
duke@1 | 2932 | operand); |
jjg@9 | 2933 | chk.checkDivZero(tree.rhs.pos(), operator, operand); |
jjg@9 | 2934 | chk.checkCastable(tree.rhs.pos(), |
jjg@9 | 2935 | operator.type.getReturnType(), |
jjg@9 | 2936 | owntype); |
duke@1 | 2937 | } |
mcimadamore@1220 | 2938 | result = check(tree, owntype, VAL, resultInfo); |
duke@1 | 2939 | } |
duke@1 | 2940 | |
duke@1 | 2941 | public void visitUnary(JCUnary tree) { |
duke@1 | 2942 | // Attribute arguments. |
jjg@1127 | 2943 | Type argtype = (tree.getTag().isIncOrDecUnaryOp()) |
mcimadamore@1220 | 2944 | ? attribTree(tree.arg, env, varInfo) |
duke@1 | 2945 | : chk.checkNonVoid(tree.arg.pos(), attribExpr(tree.arg, env)); |
duke@1 | 2946 | |
duke@1 | 2947 | // Find operator. |
duke@1 | 2948 | Symbol operator = tree.operator = |
duke@1 | 2949 | rs.resolveUnaryOperator(tree.pos(), tree.getTag(), env, argtype); |
duke@1 | 2950 | |
jjg@110 | 2951 | Type owntype = types.createErrorType(tree.type); |
mcimadamore@853 | 2952 | if (operator.kind == MTH && |
mcimadamore@853 | 2953 | !argtype.isErroneous()) { |
jjg@1127 | 2954 | owntype = (tree.getTag().isIncOrDecUnaryOp()) |
duke@1 | 2955 | ? tree.arg.type |
duke@1 | 2956 | : operator.type.getReturnType(); |
duke@1 | 2957 | int opc = ((OperatorSymbol)operator).opcode; |
duke@1 | 2958 | |
duke@1 | 2959 | // If the argument is constant, fold it. |
duke@1 | 2960 | if (argtype.constValue() != null) { |
duke@1 | 2961 | Type ctype = cfolder.fold1(opc, argtype); |
duke@1 | 2962 | if (ctype != null) { |
duke@1 | 2963 | owntype = cfolder.coerce(ctype, owntype); |
duke@1 | 2964 | |
duke@1 | 2965 | // Remove constant types from arguments to |
duke@1 | 2966 | // conserve space. The parser will fold concatenations |
duke@1 | 2967 | // of string literals; the code here also |
duke@1 | 2968 | // gets rid of intermediate results when some of the |
duke@1 | 2969 | // operands are constant identifiers. |
duke@1 | 2970 | if (tree.arg.type.tsym == syms.stringType.tsym) { |
duke@1 | 2971 | tree.arg.type = syms.stringType; |
duke@1 | 2972 | } |
duke@1 | 2973 | } |
duke@1 | 2974 | } |
duke@1 | 2975 | } |
mcimadamore@1220 | 2976 | result = check(tree, owntype, VAL, resultInfo); |
duke@1 | 2977 | } |
duke@1 | 2978 | |
duke@1 | 2979 | public void visitBinary(JCBinary tree) { |
duke@1 | 2980 | // Attribute arguments. |
duke@1 | 2981 | Type left = chk.checkNonVoid(tree.lhs.pos(), attribExpr(tree.lhs, env)); |
duke@1 | 2982 | Type right = chk.checkNonVoid(tree.lhs.pos(), attribExpr(tree.rhs, env)); |
duke@1 | 2983 | |
duke@1 | 2984 | // Find operator. |
duke@1 | 2985 | Symbol operator = tree.operator = |
duke@1 | 2986 | rs.resolveBinaryOperator(tree.pos(), tree.getTag(), env, left, right); |
duke@1 | 2987 | |
jjg@110 | 2988 | Type owntype = types.createErrorType(tree.type); |
mcimadamore@853 | 2989 | if (operator.kind == MTH && |
mcimadamore@853 | 2990 | !left.isErroneous() && |
mcimadamore@853 | 2991 | !right.isErroneous()) { |
duke@1 | 2992 | owntype = operator.type.getReturnType(); |
duke@1 | 2993 | int opc = chk.checkOperator(tree.lhs.pos(), |
duke@1 | 2994 | (OperatorSymbol)operator, |
duke@1 | 2995 | tree.getTag(), |
duke@1 | 2996 | left, |
duke@1 | 2997 | right); |
duke@1 | 2998 | |
duke@1 | 2999 | // If both arguments are constants, fold them. |
duke@1 | 3000 | if (left.constValue() != null && right.constValue() != null) { |
duke@1 | 3001 | Type ctype = cfolder.fold2(opc, left, right); |
duke@1 | 3002 | if (ctype != null) { |
duke@1 | 3003 | owntype = cfolder.coerce(ctype, owntype); |
duke@1 | 3004 | |
duke@1 | 3005 | // Remove constant types from arguments to |
duke@1 | 3006 | // conserve space. The parser will fold concatenations |
duke@1 | 3007 | // of string literals; the code here also |
duke@1 | 3008 | // gets rid of intermediate results when some of the |
duke@1 | 3009 | // operands are constant identifiers. |
duke@1 | 3010 | if (tree.lhs.type.tsym == syms.stringType.tsym) { |
duke@1 | 3011 | tree.lhs.type = syms.stringType; |
duke@1 | 3012 | } |
duke@1 | 3013 | if (tree.rhs.type.tsym == syms.stringType.tsym) { |
duke@1 | 3014 | tree.rhs.type = syms.stringType; |
duke@1 | 3015 | } |
duke@1 | 3016 | } |
duke@1 | 3017 | } |
duke@1 | 3018 | |
duke@1 | 3019 | // Check that argument types of a reference ==, != are |
duke@1 | 3020 | // castable to each other, (JLS???). |
duke@1 | 3021 | if ((opc == ByteCodes.if_acmpeq || opc == ByteCodes.if_acmpne)) { |
duke@1 | 3022 | if (!types.isCastable(left, right, new Warner(tree.pos()))) { |
duke@1 | 3023 | log.error(tree.pos(), "incomparable.types", left, right); |
duke@1 | 3024 | } |
duke@1 | 3025 | } |
duke@1 | 3026 | |
duke@1 | 3027 | chk.checkDivZero(tree.rhs.pos(), operator, right); |
duke@1 | 3028 | } |
mcimadamore@1220 | 3029 | result = check(tree, owntype, VAL, resultInfo); |
duke@1 | 3030 | } |
duke@1 | 3031 | |
mcimadamore@1347 | 3032 | public void visitTypeCast(final JCTypeCast tree) { |
duke@1 | 3033 | Type clazztype = attribType(tree.clazz, env); |
mcimadamore@638 | 3034 | chk.validate(tree.clazz, env, false); |
mcimadamore@674 | 3035 | //a fresh environment is required for 292 inference to work properly --- |
mcimadamore@674 | 3036 | //see Infer.instantiatePolymorphicSignatureInstance() |
mcimadamore@674 | 3037 | Env<AttrContext> localEnv = env.dup(tree); |
mcimadamore@1347 | 3038 | //should we propagate the target type? |
mcimadamore@1347 | 3039 | final ResultInfo castInfo; |
mcimadamore@1697 | 3040 | JCExpression expr = TreeInfo.skipParens(tree.expr); |
mcimadamore@1697 | 3041 | boolean isPoly = expr.hasTag(LAMBDA) || expr.hasTag(REFERENCE); |
mcimadamore@1347 | 3042 | if (isPoly) { |
mcimadamore@1347 | 3043 | //expression is a poly - we need to propagate target type info |
mcimadamore@1347 | 3044 | castInfo = new ResultInfo(VAL, clazztype, new Check.NestedCheckContext(resultInfo.checkContext) { |
mcimadamore@1347 | 3045 | @Override |
mcimadamore@1347 | 3046 | public boolean compatible(Type found, Type req, Warner warn) { |
mcimadamore@1347 | 3047 | return types.isCastable(found, req, warn); |
mcimadamore@1347 | 3048 | } |
mcimadamore@1347 | 3049 | }); |
mcimadamore@1347 | 3050 | } else { |
mcimadamore@1347 | 3051 | //standalone cast - target-type info is not propagated |
mcimadamore@1347 | 3052 | castInfo = unknownExprInfo; |
mcimadamore@1347 | 3053 | } |
mcimadamore@1347 | 3054 | Type exprtype = attribTree(tree.expr, localEnv, castInfo); |
mcimadamore@1347 | 3055 | Type owntype = isPoly ? clazztype : chk.checkCastable(tree.expr.pos(), exprtype, clazztype); |
duke@1 | 3056 | if (exprtype.constValue() != null) |
duke@1 | 3057 | owntype = cfolder.coerce(exprtype, owntype); |
mcimadamore@1220 | 3058 | result = check(tree, capture(owntype), VAL, resultInfo); |
mcimadamore@1347 | 3059 | if (!isPoly) |
mcimadamore@1347 | 3060 | chk.checkRedundantCast(localEnv, tree); |
duke@1 | 3061 | } |
duke@1 | 3062 | |
duke@1 | 3063 | public void visitTypeTest(JCInstanceOf tree) { |
duke@1 | 3064 | Type exprtype = chk.checkNullOrRefType( |
duke@1 | 3065 | tree.expr.pos(), attribExpr(tree.expr, env)); |
duke@1 | 3066 | Type clazztype = chk.checkReifiableReferenceType( |
duke@1 | 3067 | tree.clazz.pos(), attribType(tree.clazz, env)); |
mcimadamore@638 | 3068 | chk.validate(tree.clazz, env, false); |
duke@1 | 3069 | chk.checkCastable(tree.expr.pos(), exprtype, clazztype); |
mcimadamore@1220 | 3070 | result = check(tree, syms.booleanType, VAL, resultInfo); |
duke@1 | 3071 | } |
duke@1 | 3072 | |
duke@1 | 3073 | public void visitIndexed(JCArrayAccess tree) { |
jjg@110 | 3074 | Type owntype = types.createErrorType(tree.type); |
duke@1 | 3075 | Type atype = attribExpr(tree.indexed, env); |
duke@1 | 3076 | attribExpr(tree.index, env, syms.intType); |
duke@1 | 3077 | if (types.isArray(atype)) |
duke@1 | 3078 | owntype = types.elemtype(atype); |
jjg@1374 | 3079 | else if (!atype.hasTag(ERROR)) |
duke@1 | 3080 | log.error(tree.pos(), "array.req.but.found", atype); |
mcimadamore@1220 | 3081 | if ((pkind() & VAR) == 0) owntype = capture(owntype); |
mcimadamore@1220 | 3082 | result = check(tree, owntype, VAR, resultInfo); |
duke@1 | 3083 | } |
duke@1 | 3084 | |
duke@1 | 3085 | public void visitIdent(JCIdent tree) { |
duke@1 | 3086 | Symbol sym; |
duke@1 | 3087 | |
duke@1 | 3088 | // Find symbol |
jjg@1374 | 3089 | if (pt().hasTag(METHOD) || pt().hasTag(FORALL)) { |
duke@1 | 3090 | // If we are looking for a method, the prototype `pt' will be a |
duke@1 | 3091 | // method type with the type of the call's arguments as parameters. |
mcimadamore@1347 | 3092 | env.info.pendingResolutionPhase = null; |
mcimadamore@1220 | 3093 | sym = rs.resolveMethod(tree.pos(), env, tree.name, pt().getParameterTypes(), pt().getTypeArguments()); |
duke@1 | 3094 | } else if (tree.sym != null && tree.sym.kind != VAR) { |
duke@1 | 3095 | sym = tree.sym; |
duke@1 | 3096 | } else { |
mcimadamore@1220 | 3097 | sym = rs.resolveIdent(tree.pos(), env, tree.name, pkind()); |
duke@1 | 3098 | } |
duke@1 | 3099 | tree.sym = sym; |
duke@1 | 3100 | |
duke@1 | 3101 | // (1) Also find the environment current for the class where |
duke@1 | 3102 | // sym is defined (`symEnv'). |
duke@1 | 3103 | // Only for pre-tiger versions (1.4 and earlier): |
duke@1 | 3104 | // (2) Also determine whether we access symbol out of an anonymous |
duke@1 | 3105 | // class in a this or super call. This is illegal for instance |
duke@1 | 3106 | // members since such classes don't carry a this$n link. |
duke@1 | 3107 | // (`noOuterThisPath'). |
duke@1 | 3108 | Env<AttrContext> symEnv = env; |
duke@1 | 3109 | boolean noOuterThisPath = false; |
duke@1 | 3110 | if (env.enclClass.sym.owner.kind != PCK && // we are in an inner class |
duke@1 | 3111 | (sym.kind & (VAR | MTH | TYP)) != 0 && |
duke@1 | 3112 | sym.owner.kind == TYP && |
duke@1 | 3113 | tree.name != names._this && tree.name != names._super) { |
duke@1 | 3114 | |
duke@1 | 3115 | // Find environment in which identifier is defined. |
duke@1 | 3116 | while (symEnv.outer != null && |
duke@1 | 3117 | !sym.isMemberOf(symEnv.enclClass.sym, types)) { |
duke@1 | 3118 | if ((symEnv.enclClass.sym.flags() & NOOUTERTHIS) != 0) |
duke@1 | 3119 | noOuterThisPath = !allowAnonOuterThis; |
duke@1 | 3120 | symEnv = symEnv.outer; |
duke@1 | 3121 | } |
duke@1 | 3122 | } |
duke@1 | 3123 | |
duke@1 | 3124 | // If symbol is a variable, ... |
duke@1 | 3125 | if (sym.kind == VAR) { |
duke@1 | 3126 | VarSymbol v = (VarSymbol)sym; |
duke@1 | 3127 | |
duke@1 | 3128 | // ..., evaluate its initializer, if it has one, and check for |
duke@1 | 3129 | // illegal forward reference. |
duke@1 | 3130 | checkInit(tree, env, v, false); |
duke@1 | 3131 | |
duke@1 | 3132 | // If we are expecting a variable (as opposed to a value), check |
duke@1 | 3133 | // that the variable is assignable in the current environment. |
mcimadamore@1220 | 3134 | if (pkind() == VAR) |
duke@1 | 3135 | checkAssignable(tree.pos(), v, null, env); |
duke@1 | 3136 | } |
duke@1 | 3137 | |
duke@1 | 3138 | // In a constructor body, |
duke@1 | 3139 | // if symbol is a field or instance method, check that it is |
duke@1 | 3140 | // not accessed before the supertype constructor is called. |
duke@1 | 3141 | if ((symEnv.info.isSelfCall || noOuterThisPath) && |
duke@1 | 3142 | (sym.kind & (VAR | MTH)) != 0 && |
duke@1 | 3143 | sym.owner.kind == TYP && |
duke@1 | 3144 | (sym.flags() & STATIC) == 0) { |
duke@1 | 3145 | chk.earlyRefError(tree.pos(), sym.kind == VAR ? sym : thisSym(tree.pos(), env)); |
duke@1 | 3146 | } |
duke@1 | 3147 | Env<AttrContext> env1 = env; |
mcimadamore@28 | 3148 | if (sym.kind != ERR && sym.kind != TYP && sym.owner != null && sym.owner != env1.enclClass.sym) { |
duke@1 | 3149 | // If the found symbol is inaccessible, then it is |
duke@1 | 3150 | // accessed through an enclosing instance. Locate this |
duke@1 | 3151 | // enclosing instance: |
duke@1 | 3152 | while (env1.outer != null && !rs.isAccessible(env, env1.enclClass.sym.type, sym)) |
duke@1 | 3153 | env1 = env1.outer; |
duke@1 | 3154 | } |
mcimadamore@1347 | 3155 | result = checkId(tree, env1.enclClass.sym.type, sym, env, resultInfo); |
duke@1 | 3156 | } |
duke@1 | 3157 | |
duke@1 | 3158 | public void visitSelect(JCFieldAccess tree) { |
duke@1 | 3159 | // Determine the expected kind of the qualifier expression. |
duke@1 | 3160 | int skind = 0; |
duke@1 | 3161 | if (tree.name == names._this || tree.name == names._super || |
duke@1 | 3162 | tree.name == names._class) |
duke@1 | 3163 | { |
duke@1 | 3164 | skind = TYP; |
duke@1 | 3165 | } else { |
mcimadamore@1220 | 3166 | if ((pkind() & PCK) != 0) skind = skind | PCK; |
mcimadamore@1220 | 3167 | if ((pkind() & TYP) != 0) skind = skind | TYP | PCK; |
mcimadamore@1220 | 3168 | if ((pkind() & (VAL | MTH)) != 0) skind = skind | VAL | TYP; |
duke@1 | 3169 | } |
duke@1 | 3170 | |
duke@1 | 3171 | // Attribute the qualifier expression, and determine its symbol (if any). |
mcimadamore@1220 | 3172 | Type site = attribTree(tree.selected, env, new ResultInfo(skind, Infer.anyPoly)); |
mcimadamore@1220 | 3173 | if ((pkind() & (PCK | TYP)) == 0) |
duke@1 | 3174 | site = capture(site); // Capture field access |
duke@1 | 3175 | |
duke@1 | 3176 | // don't allow T.class T[].class, etc |
duke@1 | 3177 | if (skind == TYP) { |
duke@1 | 3178 | Type elt = site; |
jjg@1374 | 3179 | while (elt.hasTag(ARRAY)) |
duke@1 | 3180 | elt = ((ArrayType)elt).elemtype; |
jjg@1374 | 3181 | if (elt.hasTag(TYPEVAR)) { |
duke@1 | 3182 | log.error(tree.pos(), "type.var.cant.be.deref"); |
jjg@110 | 3183 | result = types.createErrorType(tree.type); |
duke@1 | 3184 | return; |
duke@1 | 3185 | } |
duke@1 | 3186 | } |
duke@1 | 3187 | |
duke@1 | 3188 | // If qualifier symbol is a type or `super', assert `selectSuper' |
duke@1 | 3189 | // for the selection. This is relevant for determining whether |
duke@1 | 3190 | // protected symbols are accessible. |
duke@1 | 3191 | Symbol sitesym = TreeInfo.symbol(tree.selected); |
duke@1 | 3192 | boolean selectSuperPrev = env.info.selectSuper; |
duke@1 | 3193 | env.info.selectSuper = |
duke@1 | 3194 | sitesym != null && |
duke@1 | 3195 | sitesym.name == names._super; |
duke@1 | 3196 | |
duke@1 | 3197 | // Determine the symbol represented by the selection. |
mcimadamore@1347 | 3198 | env.info.pendingResolutionPhase = null; |
mcimadamore@1220 | 3199 | Symbol sym = selectSym(tree, sitesym, site, env, resultInfo); |
mcimadamore@1220 | 3200 | if (sym.exists() && !isType(sym) && (pkind() & (PCK | TYP)) != 0) { |
duke@1 | 3201 | site = capture(site); |
mcimadamore@1220 | 3202 | sym = selectSym(tree, sitesym, site, env, resultInfo); |
duke@1 | 3203 | } |
mcimadamore@1347 | 3204 | boolean varArgs = env.info.lastResolveVarargs(); |
duke@1 | 3205 | tree.sym = sym; |
duke@1 | 3206 | |
jjg@1374 | 3207 | if (site.hasTag(TYPEVAR) && !isType(sym) && sym.kind != ERR) { |
jjg@1374 | 3208 | while (site.hasTag(TYPEVAR)) site = site.getUpperBound(); |
mcimadamore@27 | 3209 | site = capture(site); |
mcimadamore@27 | 3210 | } |
duke@1 | 3211 | |
duke@1 | 3212 | // If that symbol is a variable, ... |
duke@1 | 3213 | if (sym.kind == VAR) { |
duke@1 | 3214 | VarSymbol v = (VarSymbol)sym; |
duke@1 | 3215 | |
duke@1 | 3216 | // ..., evaluate its initializer, if it has one, and check for |
duke@1 | 3217 | // illegal forward reference. |
duke@1 | 3218 | checkInit(tree, env, v, true); |
duke@1 | 3219 | |
duke@1 | 3220 | // If we are expecting a variable (as opposed to a value), check |
duke@1 | 3221 | // that the variable is assignable in the current environment. |
mcimadamore@1220 | 3222 | if (pkind() == VAR) |
duke@1 | 3223 | checkAssignable(tree.pos(), v, tree.selected, env); |
duke@1 | 3224 | } |
duke@1 | 3225 | |
darcy@609 | 3226 | if (sitesym != null && |
darcy@609 | 3227 | sitesym.kind == VAR && |
darcy@609 | 3228 | ((VarSymbol)sitesym).isResourceVariable() && |
darcy@609 | 3229 | sym.kind == MTH && |
mcimadamore@954 | 3230 | sym.name.equals(names.close) && |
darcy@609 | 3231 | sym.overrides(syms.autoCloseableClose, sitesym.type.tsym, types, true) && |
mcimadamore@795 | 3232 | env.info.lint.isEnabled(LintCategory.TRY)) { |
mcimadamore@795 | 3233 | log.warning(LintCategory.TRY, tree, "try.explicit.close.call"); |
darcy@609 | 3234 | } |
darcy@609 | 3235 | |
duke@1 | 3236 | // Disallow selecting a type from an expression |
duke@1 | 3237 | if (isType(sym) && (sitesym==null || (sitesym.kind&(TYP|PCK)) == 0)) { |
mcimadamore@1220 | 3238 | tree.type = check(tree.selected, pt(), |
mcimadamore@1220 | 3239 | sitesym == null ? VAL : sitesym.kind, new ResultInfo(TYP|PCK, pt())); |
duke@1 | 3240 | } |
duke@1 | 3241 | |
duke@1 | 3242 | if (isType(sitesym)) { |
duke@1 | 3243 | if (sym.name == names._this) { |
duke@1 | 3244 | // If `C' is the currently compiled class, check that |
duke@1 | 3245 | // C.this' does not appear in a call to a super(...) |
duke@1 | 3246 | if (env.info.isSelfCall && |
duke@1 | 3247 | site.tsym == env.enclClass.sym) { |
duke@1 | 3248 | chk.earlyRefError(tree.pos(), sym); |
duke@1 | 3249 | } |
duke@1 | 3250 | } else { |
duke@1 | 3251 | // Check if type-qualified fields or methods are static (JLS) |
duke@1 | 3252 | if ((sym.flags() & STATIC) == 0 && |
mcimadamore@1352 | 3253 | !env.next.tree.hasTag(REFERENCE) && |
duke@1 | 3254 | sym.name != names._super && |
duke@1 | 3255 | (sym.kind == VAR || sym.kind == MTH)) { |
mcimadamore@1347 | 3256 | rs.accessBase(rs.new StaticError(sym), |
duke@1 | 3257 | tree.pos(), site, sym.name, true); |
duke@1 | 3258 | } |
duke@1 | 3259 | } |
jjg@505 | 3260 | } else if (sym.kind != ERR && (sym.flags() & STATIC) != 0 && sym.name != names._class) { |
jjg@505 | 3261 | // If the qualified item is not a type and the selected item is static, report |
jjg@505 | 3262 | // a warning. Make allowance for the class of an array type e.g. Object[].class) |
jjg@505 | 3263 | chk.warnStatic(tree, "static.not.qualified.by.type", Kinds.kindName(sym.kind), sym.owner); |
duke@1 | 3264 | } |
duke@1 | 3265 | |
duke@1 | 3266 | // If we are selecting an instance member via a `super', ... |
duke@1 | 3267 | if (env.info.selectSuper && (sym.flags() & STATIC) == 0) { |
duke@1 | 3268 | |
duke@1 | 3269 | // Check that super-qualified symbols are not abstract (JLS) |
duke@1 | 3270 | rs.checkNonAbstract(tree.pos(), sym); |
duke@1 | 3271 | |
duke@1 | 3272 | if (site.isRaw()) { |
duke@1 | 3273 | // Determine argument types for site. |
duke@1 | 3274 | Type site1 = types.asSuper(env.enclClass.sym.type, site.tsym); |
duke@1 | 3275 | if (site1 != null) site = site1; |
duke@1 | 3276 | } |
duke@1 | 3277 | } |
duke@1 | 3278 | |
duke@1 | 3279 | env.info.selectSuper = selectSuperPrev; |
mcimadamore@1347 | 3280 | result = checkId(tree, site, sym, env, resultInfo); |
duke@1 | 3281 | } |
duke@1 | 3282 | //where |
duke@1 | 3283 | /** Determine symbol referenced by a Select expression, |
duke@1 | 3284 | * |
duke@1 | 3285 | * @param tree The select tree. |
duke@1 | 3286 | * @param site The type of the selected expression, |
duke@1 | 3287 | * @param env The current environment. |
mcimadamore@1220 | 3288 | * @param resultInfo The current result. |
duke@1 | 3289 | */ |
duke@1 | 3290 | private Symbol selectSym(JCFieldAccess tree, |
mcimadamore@829 | 3291 | Symbol location, |
duke@1 | 3292 | Type site, |
duke@1 | 3293 | Env<AttrContext> env, |
mcimadamore@1220 | 3294 | ResultInfo resultInfo) { |
duke@1 | 3295 | DiagnosticPosition pos = tree.pos(); |
duke@1 | 3296 | Name name = tree.name; |
jjg@1374 | 3297 | switch (site.getTag()) { |
duke@1 | 3298 | case PACKAGE: |
mcimadamore@1347 | 3299 | return rs.accessBase( |
mcimadamore@1220 | 3300 | rs.findIdentInPackage(env, site.tsym, name, resultInfo.pkind), |
mcimadamore@829 | 3301 | pos, location, site, name, true); |
duke@1 | 3302 | case ARRAY: |
duke@1 | 3303 | case CLASS: |
jjg@1374 | 3304 | if (resultInfo.pt.hasTag(METHOD) || resultInfo.pt.hasTag(FORALL)) { |
duke@1 | 3305 | return rs.resolveQualifiedMethod( |
mcimadamore@1220 | 3306 | pos, env, location, site, name, resultInfo.pt.getParameterTypes(), resultInfo.pt.getTypeArguments()); |
duke@1 | 3307 | } else if (name == names._this || name == names._super) { |
duke@1 | 3308 | return rs.resolveSelf(pos, env, site.tsym, name); |
duke@1 | 3309 | } else if (name == names._class) { |
duke@1 | 3310 | // In this case, we have already made sure in |
duke@1 | 3311 | // visitSelect that qualifier expression is a type. |
duke@1 | 3312 | Type t = syms.classType; |
duke@1 | 3313 | List<Type> typeargs = allowGenerics |
duke@1 | 3314 | ? List.of(types.erasure(site)) |
duke@1 | 3315 | : List.<Type>nil(); |
duke@1 | 3316 | t = new ClassType(t.getEnclosingType(), typeargs, t.tsym); |
duke@1 | 3317 | return new VarSymbol( |
duke@1 | 3318 | STATIC | PUBLIC | FINAL, names._class, t, site.tsym); |
duke@1 | 3319 | } else { |
duke@1 | 3320 | // We are seeing a plain identifier as selector. |
mcimadamore@1220 | 3321 | Symbol sym = rs.findIdentInType(env, site, name, resultInfo.pkind); |
mcimadamore@1220 | 3322 | if ((resultInfo.pkind & ERRONEOUS) == 0) |
mcimadamore@1347 | 3323 | sym = rs.accessBase(sym, pos, location, site, name, true); |
duke@1 | 3324 | return sym; |
duke@1 | 3325 | } |
duke@1 | 3326 | case WILDCARD: |
duke@1 | 3327 | throw new AssertionError(tree); |
duke@1 | 3328 | case TYPEVAR: |
duke@1 | 3329 | // Normally, site.getUpperBound() shouldn't be null. |
duke@1 | 3330 | // It should only happen during memberEnter/attribBase |
mcimadamore@829 | 3331 | // when determining the super type which *must* beac |
duke@1 | 3332 | // done before attributing the type variables. In |
duke@1 | 3333 | // other words, we are seeing this illegal program: |
duke@1 | 3334 | // class B<T> extends A<T.foo> {} |
duke@1 | 3335 | Symbol sym = (site.getUpperBound() != null) |
mcimadamore@1220 | 3336 | ? selectSym(tree, location, capture(site.getUpperBound()), env, resultInfo) |
duke@1 | 3337 | : null; |
mcimadamore@361 | 3338 | if (sym == null) { |
duke@1 | 3339 | log.error(pos, "type.var.cant.be.deref"); |
duke@1 | 3340 | return syms.errSymbol; |
duke@1 | 3341 | } else { |
mcimadamore@155 | 3342 | Symbol sym2 = (sym.flags() & Flags.PRIVATE) != 0 ? |
mcimadamore@155 | 3343 | rs.new AccessError(env, site, sym) : |
mcimadamore@155 | 3344 | sym; |
mcimadamore@1347 | 3345 | rs.accessBase(sym2, pos, location, site, name, true); |
duke@1 | 3346 | return sym; |
duke@1 | 3347 | } |
duke@1 | 3348 | case ERROR: |
duke@1 | 3349 | // preserve identifier names through errors |
jjg@110 | 3350 | return types.createErrorType(name, site.tsym, site).tsym; |
duke@1 | 3351 | default: |
duke@1 | 3352 | // The qualifier expression is of a primitive type -- only |
duke@1 | 3353 | // .class is allowed for these. |
duke@1 | 3354 | if (name == names._class) { |
duke@1 | 3355 | // In this case, we have already made sure in Select that |
duke@1 | 3356 | // qualifier expression is a type. |
duke@1 | 3357 | Type t = syms.classType; |
duke@1 | 3358 | Type arg = types.boxedClass(site).type; |
duke@1 | 3359 | t = new ClassType(t.getEnclosingType(), List.of(arg), t.tsym); |
duke@1 | 3360 | return new VarSymbol( |
duke@1 | 3361 | STATIC | PUBLIC | FINAL, names._class, t, site.tsym); |
duke@1 | 3362 | } else { |
duke@1 | 3363 | log.error(pos, "cant.deref", site); |
duke@1 | 3364 | return syms.errSymbol; |
duke@1 | 3365 | } |
duke@1 | 3366 | } |
duke@1 | 3367 | } |
duke@1 | 3368 | |
duke@1 | 3369 | /** Determine type of identifier or select expression and check that |
duke@1 | 3370 | * (1) the referenced symbol is not deprecated |
duke@1 | 3371 | * (2) the symbol's type is safe (@see checkSafe) |
duke@1 | 3372 | * (3) if symbol is a variable, check that its type and kind are |
duke@1 | 3373 | * compatible with the prototype and protokind. |
duke@1 | 3374 | * (4) if symbol is an instance field of a raw type, |
duke@1 | 3375 | * which is being assigned to, issue an unchecked warning if its |
duke@1 | 3376 | * type changes under erasure. |
duke@1 | 3377 | * (5) if symbol is an instance method of a raw type, issue an |
duke@1 | 3378 | * unchecked warning if its argument types change under erasure. |
duke@1 | 3379 | * If checks succeed: |
duke@1 | 3380 | * If symbol is a constant, return its constant type |
duke@1 | 3381 | * else if symbol is a method, return its result type |
duke@1 | 3382 | * otherwise return its type. |
duke@1 | 3383 | * Otherwise return errType. |
duke@1 | 3384 | * |
duke@1 | 3385 | * @param tree The syntax tree representing the identifier |
duke@1 | 3386 | * @param site If this is a select, the type of the selected |
duke@1 | 3387 | * expression, otherwise the type of the current class. |
duke@1 | 3388 | * @param sym The symbol representing the identifier. |
duke@1 | 3389 | * @param env The current environment. |
mcimadamore@1220 | 3390 | * @param resultInfo The expected result |
duke@1 | 3391 | */ |
duke@1 | 3392 | Type checkId(JCTree tree, |
duke@1 | 3393 | Type site, |
duke@1 | 3394 | Symbol sym, |
duke@1 | 3395 | Env<AttrContext> env, |
mcimadamore@1347 | 3396 | ResultInfo resultInfo) { |
mcimadamore@1415 | 3397 | return (resultInfo.pt.hasTag(FORALL) || resultInfo.pt.hasTag(METHOD)) ? |
mcimadamore@1415 | 3398 | checkMethodId(tree, site, sym, env, resultInfo) : |
mcimadamore@1415 | 3399 | checkIdInternal(tree, site, sym, resultInfo.pt, env, resultInfo); |
mcimadamore@1415 | 3400 | } |
mcimadamore@1415 | 3401 | |
mcimadamore@1415 | 3402 | Type checkMethodId(JCTree tree, |
mcimadamore@1415 | 3403 | Type site, |
mcimadamore@1415 | 3404 | Symbol sym, |
mcimadamore@1415 | 3405 | Env<AttrContext> env, |
mcimadamore@1415 | 3406 | ResultInfo resultInfo) { |
mcimadamore@1415 | 3407 | boolean isPolymorhicSignature = |
mcimadamore@1415 | 3408 | sym.kind == MTH && ((MethodSymbol)sym.baseSymbol()).isSignaturePolymorphic(types); |
mcimadamore@1415 | 3409 | return isPolymorhicSignature ? |
mcimadamore@1415 | 3410 | checkSigPolyMethodId(tree, site, sym, env, resultInfo) : |
mcimadamore@1415 | 3411 | checkMethodIdInternal(tree, site, sym, env, resultInfo); |
mcimadamore@1415 | 3412 | } |
mcimadamore@1415 | 3413 | |
mcimadamore@1415 | 3414 | Type checkSigPolyMethodId(JCTree tree, |
mcimadamore@1415 | 3415 | Type site, |
mcimadamore@1415 | 3416 | Symbol sym, |
mcimadamore@1415 | 3417 | Env<AttrContext> env, |
mcimadamore@1415 | 3418 | ResultInfo resultInfo) { |
mcimadamore@1415 | 3419 | //recover original symbol for signature polymorphic methods |
mcimadamore@1415 | 3420 | checkMethodIdInternal(tree, site, sym.baseSymbol(), env, resultInfo); |
mcimadamore@1415 | 3421 | env.info.pendingResolutionPhase = Resolve.MethodResolutionPhase.BASIC; |
mcimadamore@1415 | 3422 | return sym.type; |
mcimadamore@1415 | 3423 | } |
mcimadamore@1415 | 3424 | |
mcimadamore@1415 | 3425 | Type checkMethodIdInternal(JCTree tree, |
mcimadamore@1415 | 3426 | Type site, |
mcimadamore@1415 | 3427 | Symbol sym, |
mcimadamore@1415 | 3428 | Env<AttrContext> env, |
mcimadamore@1415 | 3429 | ResultInfo resultInfo) { |
mcimadamore@1415 | 3430 | Type pt = resultInfo.pt.map(deferredAttr.new RecoveryDeferredTypeMap(AttrMode.SPECULATIVE, sym, env.info.pendingResolutionPhase)); |
mcimadamore@1415 | 3431 | Type owntype = checkIdInternal(tree, site, sym, pt, env, resultInfo); |
mcimadamore@1415 | 3432 | resultInfo.pt.map(deferredAttr.new RecoveryDeferredTypeMap(AttrMode.CHECK, sym, env.info.pendingResolutionPhase)); |
mcimadamore@1415 | 3433 | return owntype; |
mcimadamore@1415 | 3434 | } |
mcimadamore@1415 | 3435 | |
mcimadamore@1415 | 3436 | Type checkIdInternal(JCTree tree, |
mcimadamore@1415 | 3437 | Type site, |
mcimadamore@1415 | 3438 | Symbol sym, |
mcimadamore@1415 | 3439 | Type pt, |
mcimadamore@1415 | 3440 | Env<AttrContext> env, |
mcimadamore@1415 | 3441 | ResultInfo resultInfo) { |
mcimadamore@1347 | 3442 | if (pt.isErroneous()) { |
mcimadamore@1347 | 3443 | return types.createErrorType(site); |
mcimadamore@1347 | 3444 | } |
duke@1 | 3445 | Type owntype; // The computed type of this identifier occurrence. |
duke@1 | 3446 | switch (sym.kind) { |
duke@1 | 3447 | case TYP: |
duke@1 | 3448 | // For types, the computed type equals the symbol's type, |
duke@1 | 3449 | // except for two situations: |
duke@1 | 3450 | owntype = sym.type; |
jjg@1374 | 3451 | if (owntype.hasTag(CLASS)) { |
ohrstrom@1384 | 3452 | chk.checkForBadAuxiliaryClassAccess(tree.pos(), env, (ClassSymbol)sym); |
duke@1 | 3453 | Type ownOuter = owntype.getEnclosingType(); |
duke@1 | 3454 | |
duke@1 | 3455 | // (a) If the symbol's type is parameterized, erase it |
duke@1 | 3456 | // because no type parameters were given. |
duke@1 | 3457 | // We recover generic outer type later in visitTypeApply. |
duke@1 | 3458 | if (owntype.tsym.type.getTypeArguments().nonEmpty()) { |
duke@1 | 3459 | owntype = types.erasure(owntype); |
duke@1 | 3460 | } |
duke@1 | 3461 | |
duke@1 | 3462 | // (b) If the symbol's type is an inner class, then |
duke@1 | 3463 | // we have to interpret its outer type as a superclass |
duke@1 | 3464 | // of the site type. Example: |
duke@1 | 3465 | // |
duke@1 | 3466 | // class Tree<A> { class Visitor { ... } } |
duke@1 | 3467 | // class PointTree extends Tree<Point> { ... } |
duke@1 | 3468 | // ...PointTree.Visitor... |
duke@1 | 3469 | // |
duke@1 | 3470 | // Then the type of the last expression above is |
duke@1 | 3471 | // Tree<Point>.Visitor. |
jjg@1374 | 3472 | else if (ownOuter.hasTag(CLASS) && site != ownOuter) { |
duke@1 | 3473 | Type normOuter = site; |
jjg@1521 | 3474 | if (normOuter.hasTag(CLASS)) { |
duke@1 | 3475 | normOuter = types.asEnclosingSuper(site, ownOuter.tsym); |
jjg@1644 | 3476 | if (site.isAnnotated()) { |
jjg@1521 | 3477 | // Propagate any type annotations. |
jjg@1521 | 3478 | // TODO: should asEnclosingSuper do this? |
jjg@1521 | 3479 | // Note that the type annotations in site will be updated |
jjg@1521 | 3480 | // by annotateType. Therefore, modify site instead |
jjg@1521 | 3481 | // of creating a new AnnotatedType. |
jjg@1521 | 3482 | ((AnnotatedType)site).underlyingType = normOuter; |
jjg@1521 | 3483 | normOuter = site; |
jjg@1521 | 3484 | } |
jjg@1521 | 3485 | } |
duke@1 | 3486 | if (normOuter == null) // perhaps from an import |
duke@1 | 3487 | normOuter = types.erasure(ownOuter); |
duke@1 | 3488 | if (normOuter != ownOuter) |
duke@1 | 3489 | owntype = new ClassType( |
duke@1 | 3490 | normOuter, List.<Type>nil(), owntype.tsym); |
duke@1 | 3491 | } |
duke@1 | 3492 | } |
duke@1 | 3493 | break; |
duke@1 | 3494 | case VAR: |
duke@1 | 3495 | VarSymbol v = (VarSymbol)sym; |
duke@1 | 3496 | // Test (4): if symbol is an instance field of a raw type, |
duke@1 | 3497 | // which is being assigned to, issue an unchecked warning if |
duke@1 | 3498 | // its type changes under erasure. |
duke@1 | 3499 | if (allowGenerics && |
mcimadamore@1220 | 3500 | resultInfo.pkind == VAR && |
duke@1 | 3501 | v.owner.kind == TYP && |
duke@1 | 3502 | (v.flags() & STATIC) == 0 && |
jjg@1374 | 3503 | (site.hasTag(CLASS) || site.hasTag(TYPEVAR))) { |
duke@1 | 3504 | Type s = types.asOuterSuper(site, v.owner); |
duke@1 | 3505 | if (s != null && |
duke@1 | 3506 | s.isRaw() && |
duke@1 | 3507 | !types.isSameType(v.type, v.erasure(types))) { |
duke@1 | 3508 | chk.warnUnchecked(tree.pos(), |
duke@1 | 3509 | "unchecked.assign.to.var", |
duke@1 | 3510 | v, s); |
duke@1 | 3511 | } |
duke@1 | 3512 | } |
duke@1 | 3513 | // The computed type of a variable is the type of the |
duke@1 | 3514 | // variable symbol, taken as a member of the site type. |
duke@1 | 3515 | owntype = (sym.owner.kind == TYP && |
duke@1 | 3516 | sym.name != names._this && sym.name != names._super) |
duke@1 | 3517 | ? types.memberType(site, sym) |
duke@1 | 3518 | : sym.type; |
duke@1 | 3519 | |
duke@1 | 3520 | // If the variable is a constant, record constant value in |
duke@1 | 3521 | // computed type. |
duke@1 | 3522 | if (v.getConstValue() != null && isStaticReference(tree)) |
duke@1 | 3523 | owntype = owntype.constType(v.getConstValue()); |
duke@1 | 3524 | |
mcimadamore@1220 | 3525 | if (resultInfo.pkind == VAL) { |
duke@1 | 3526 | owntype = capture(owntype); // capture "names as expressions" |
duke@1 | 3527 | } |
duke@1 | 3528 | break; |
duke@1 | 3529 | case MTH: { |
mcimadamore@1268 | 3530 | owntype = checkMethod(site, sym, |
mcimadamore@1268 | 3531 | new ResultInfo(VAL, resultInfo.pt.getReturnType(), resultInfo.checkContext), |
mcimadamore@1341 | 3532 | env, TreeInfo.args(env.tree), resultInfo.pt.getParameterTypes(), |
mcimadamore@1347 | 3533 | resultInfo.pt.getTypeArguments()); |
duke@1 | 3534 | break; |
duke@1 | 3535 | } |
duke@1 | 3536 | case PCK: case ERR: |
duke@1 | 3537 | owntype = sym.type; |
duke@1 | 3538 | break; |
duke@1 | 3539 | default: |
duke@1 | 3540 | throw new AssertionError("unexpected kind: " + sym.kind + |
duke@1 | 3541 | " in tree " + tree); |
duke@1 | 3542 | } |
duke@1 | 3543 | |
duke@1 | 3544 | // Test (1): emit a `deprecation' warning if symbol is deprecated. |
duke@1 | 3545 | // (for constructors, the error was given when the constructor was |
duke@1 | 3546 | // resolved) |
mcimadamore@852 | 3547 | |
mcimadamore@852 | 3548 | if (sym.name != names.init) { |
mcimadamore@852 | 3549 | chk.checkDeprecated(tree.pos(), env.info.scope.owner, sym); |
mcimadamore@852 | 3550 | chk.checkSunAPI(tree.pos(), sym); |
jjg@1569 | 3551 | chk.checkProfile(tree.pos(), sym); |
jjg@377 | 3552 | } |
duke@1 | 3553 | |
duke@1 | 3554 | // Test (3): if symbol is a variable, check that its type and |
duke@1 | 3555 | // kind are compatible with the prototype and protokind. |
mcimadamore@1220 | 3556 | return check(tree, owntype, sym.kind, resultInfo); |
duke@1 | 3557 | } |
duke@1 | 3558 | |
duke@1 | 3559 | /** Check that variable is initialized and evaluate the variable's |
duke@1 | 3560 | * initializer, if not yet done. Also check that variable is not |
duke@1 | 3561 | * referenced before it is defined. |
duke@1 | 3562 | * @param tree The tree making up the variable reference. |
duke@1 | 3563 | * @param env The current environment. |
duke@1 | 3564 | * @param v The variable's symbol. |
duke@1 | 3565 | */ |
duke@1 | 3566 | private void checkInit(JCTree tree, |
duke@1 | 3567 | Env<AttrContext> env, |
duke@1 | 3568 | VarSymbol v, |
duke@1 | 3569 | boolean onlyWarning) { |
duke@1 | 3570 | // System.err.println(v + " " + ((v.flags() & STATIC) != 0) + " " + |
duke@1 | 3571 | // tree.pos + " " + v.pos + " " + |
duke@1 | 3572 | // Resolve.isStatic(env));//DEBUG |
duke@1 | 3573 | |
duke@1 | 3574 | // A forward reference is diagnosed if the declaration position |
duke@1 | 3575 | // of the variable is greater than the current tree position |
duke@1 | 3576 | // and the tree and variable definition occur in the same class |
duke@1 | 3577 | // definition. Note that writes don't count as references. |
duke@1 | 3578 | // This check applies only to class and instance |
duke@1 | 3579 | // variables. Local variables follow different scope rules, |
duke@1 | 3580 | // and are subject to definite assignment checking. |
mcimadamore@94 | 3581 | if ((env.info.enclVar == v || v.pos > tree.pos) && |
duke@1 | 3582 | v.owner.kind == TYP && |
mcimadamore@1297 | 3583 | canOwnInitializer(owner(env)) && |
duke@1 | 3584 | v.owner == env.info.scope.owner.enclClass() && |
duke@1 | 3585 | ((v.flags() & STATIC) != 0) == Resolve.isStatic(env) && |
jjg@1127 | 3586 | (!env.tree.hasTag(ASSIGN) || |
duke@1 | 3587 | TreeInfo.skipParens(((JCAssign) env.tree).lhs) != tree)) { |
mcimadamore@94 | 3588 | String suffix = (env.info.enclVar == v) ? |
mcimadamore@94 | 3589 | "self.ref" : "forward.ref"; |
mcimadamore@18 | 3590 | if (!onlyWarning || isStaticEnumField(v)) { |
mcimadamore@94 | 3591 | log.error(tree.pos(), "illegal." + suffix); |
duke@1 | 3592 | } else if (useBeforeDeclarationWarning) { |
mcimadamore@94 | 3593 | log.warning(tree.pos(), suffix, v); |
duke@1 | 3594 | } |
duke@1 | 3595 | } |
duke@1 | 3596 | |
duke@1 | 3597 | v.getConstValue(); // ensure initializer is evaluated |
duke@1 | 3598 | |
duke@1 | 3599 | checkEnumInitializer(tree, env, v); |
duke@1 | 3600 | } |
duke@1 | 3601 | |
duke@1 | 3602 | /** |
duke@1 | 3603 | * Check for illegal references to static members of enum. In |
duke@1 | 3604 | * an enum type, constructors and initializers may not |
duke@1 | 3605 | * reference its static members unless they are constant. |
duke@1 | 3606 | * |
duke@1 | 3607 | * @param tree The tree making up the variable reference. |
duke@1 | 3608 | * @param env The current environment. |
duke@1 | 3609 | * @param v The variable's symbol. |
jjh@972 | 3610 | * @jls section 8.9 Enums |
duke@1 | 3611 | */ |
duke@1 | 3612 | private void checkEnumInitializer(JCTree tree, Env<AttrContext> env, VarSymbol v) { |
jjh@972 | 3613 | // JLS: |
duke@1 | 3614 | // |
duke@1 | 3615 | // "It is a compile-time error to reference a static field |
duke@1 | 3616 | // of an enum type that is not a compile-time constant |
duke@1 | 3617 | // (15.28) from constructors, instance initializer blocks, |
duke@1 | 3618 | // or instance variable initializer expressions of that |
duke@1 | 3619 | // type. It is a compile-time error for the constructors, |
duke@1 | 3620 | // instance initializer blocks, or instance variable |
duke@1 | 3621 | // initializer expressions of an enum constant e to refer |
duke@1 | 3622 | // to itself or to an enum constant of the same type that |
duke@1 | 3623 | // is declared to the right of e." |
mcimadamore@18 | 3624 | if (isStaticEnumField(v)) { |
duke@1 | 3625 | ClassSymbol enclClass = env.info.scope.owner.enclClass(); |
duke@1 | 3626 | |
duke@1 | 3627 | if (enclClass == null || enclClass.owner == null) |
duke@1 | 3628 | return; |
duke@1 | 3629 | |
duke@1 | 3630 | // See if the enclosing class is the enum (or a |
duke@1 | 3631 | // subclass thereof) declaring v. If not, this |
duke@1 | 3632 | // reference is OK. |
duke@1 | 3633 | if (v.owner != enclClass && !types.isSubtype(enclClass.type, v.owner.type)) |
duke@1 | 3634 | return; |
duke@1 | 3635 | |
duke@1 | 3636 | // If the reference isn't from an initializer, then |
duke@1 | 3637 | // the reference is OK. |
duke@1 | 3638 | if (!Resolve.isInitializer(env)) |
duke@1 | 3639 | return; |
duke@1 | 3640 | |
duke@1 | 3641 | log.error(tree.pos(), "illegal.enum.static.ref"); |
duke@1 | 3642 | } |
duke@1 | 3643 | } |
duke@1 | 3644 | |
mcimadamore@18 | 3645 | /** Is the given symbol a static, non-constant field of an Enum? |
mcimadamore@18 | 3646 | * Note: enum literals should not be regarded as such |
mcimadamore@18 | 3647 | */ |
mcimadamore@18 | 3648 | private boolean isStaticEnumField(VarSymbol v) { |
mcimadamore@18 | 3649 | return Flags.isEnum(v.owner) && |
mcimadamore@18 | 3650 | Flags.isStatic(v) && |
mcimadamore@18 | 3651 | !Flags.isConstant(v) && |
mcimadamore@18 | 3652 | v.name != names._class; |
duke@1 | 3653 | } |
duke@1 | 3654 | |
duke@1 | 3655 | /** Can the given symbol be the owner of code which forms part |
duke@1 | 3656 | * if class initialization? This is the case if the symbol is |
duke@1 | 3657 | * a type or field, or if the symbol is the synthetic method. |
duke@1 | 3658 | * owning a block. |
duke@1 | 3659 | */ |
duke@1 | 3660 | private boolean canOwnInitializer(Symbol sym) { |
duke@1 | 3661 | return |
duke@1 | 3662 | (sym.kind & (VAR | TYP)) != 0 || |
duke@1 | 3663 | (sym.kind == MTH && (sym.flags() & BLOCK) != 0); |
duke@1 | 3664 | } |
duke@1 | 3665 | |
duke@1 | 3666 | Warner noteWarner = new Warner(); |
duke@1 | 3667 | |
duke@1 | 3668 | /** |
mcimadamore@1219 | 3669 | * Check that method arguments conform to its instantiation. |
duke@1 | 3670 | **/ |
duke@1 | 3671 | public Type checkMethod(Type site, |
duke@1 | 3672 | Symbol sym, |
mcimadamore@1268 | 3673 | ResultInfo resultInfo, |
mcimadamore@1268 | 3674 | Env<AttrContext> env, |
mcimadamore@1268 | 3675 | final List<JCExpression> argtrees, |
mcimadamore@1268 | 3676 | List<Type> argtypes, |
mcimadamore@1347 | 3677 | List<Type> typeargtypes) { |
duke@1 | 3678 | // Test (5): if symbol is an instance method of a raw type, issue |
duke@1 | 3679 | // an unchecked warning if its argument types change under erasure. |
duke@1 | 3680 | if (allowGenerics && |
duke@1 | 3681 | (sym.flags() & STATIC) == 0 && |
jjg@1374 | 3682 | (site.hasTag(CLASS) || site.hasTag(TYPEVAR))) { |
duke@1 | 3683 | Type s = types.asOuterSuper(site, sym.owner); |
duke@1 | 3684 | if (s != null && s.isRaw() && |
duke@1 | 3685 | !types.isSameTypes(sym.type.getParameterTypes(), |
duke@1 | 3686 | sym.erasure(types).getParameterTypes())) { |
duke@1 | 3687 | chk.warnUnchecked(env.tree.pos(), |
duke@1 | 3688 | "unchecked.call.mbr.of.raw.type", |
duke@1 | 3689 | sym, s); |
duke@1 | 3690 | } |
duke@1 | 3691 | } |
duke@1 | 3692 | |
mcimadamore@1415 | 3693 | if (env.info.defaultSuperCallSite != null) { |
mcimadamore@1415 | 3694 | for (Type sup : types.interfaces(env.enclClass.type).prepend(types.supertype((env.enclClass.type)))) { |
mcimadamore@1415 | 3695 | if (!sup.tsym.isSubClass(sym.enclClass(), types) || |
mcimadamore@1415 | 3696 | types.isSameType(sup, env.info.defaultSuperCallSite)) continue; |
mcimadamore@1415 | 3697 | List<MethodSymbol> icand_sup = |
mcimadamore@1415 | 3698 | types.interfaceCandidates(sup, (MethodSymbol)sym); |
mcimadamore@1415 | 3699 | if (icand_sup.nonEmpty() && |
mcimadamore@1415 | 3700 | icand_sup.head != sym && |
mcimadamore@1415 | 3701 | icand_sup.head.overrides(sym, icand_sup.head.enclClass(), types, true)) { |
mcimadamore@1415 | 3702 | log.error(env.tree.pos(), "illegal.default.super.call", env.info.defaultSuperCallSite, |
mcimadamore@1415 | 3703 | diags.fragment("overridden.default", sym, sup)); |
mcimadamore@1415 | 3704 | break; |
mcimadamore@1393 | 3705 | } |
mcimadamore@1393 | 3706 | } |
mcimadamore@1415 | 3707 | env.info.defaultSuperCallSite = null; |
mcimadamore@1393 | 3708 | } |
mcimadamore@1393 | 3709 | |
mcimadamore@1617 | 3710 | if (sym.isStatic() && site.isInterface() && env.tree.hasTag(APPLY)) { |
mcimadamore@1513 | 3711 | JCMethodInvocation app = (JCMethodInvocation)env.tree; |
mcimadamore@1513 | 3712 | if (app.meth.hasTag(SELECT) && |
mcimadamore@1513 | 3713 | !TreeInfo.isStaticSelector(((JCFieldAccess)app.meth).selected, names)) { |
mcimadamore@1513 | 3714 | log.error(env.tree.pos(), "illegal.static.intf.meth.call", site); |
mcimadamore@1513 | 3715 | } |
mcimadamore@1513 | 3716 | } |
mcimadamore@1513 | 3717 | |
duke@1 | 3718 | // Compute the identifier's instantiated type. |
duke@1 | 3719 | // For methods, we need to compute the instance type by |
duke@1 | 3720 | // Resolve.instantiate from the symbol's type as well as |
duke@1 | 3721 | // any type arguments and value arguments. |
mcimadamore@795 | 3722 | noteWarner.clear(); |
mcimadamore@1296 | 3723 | try { |
mcimadamore@1347 | 3724 | Type owntype = rs.checkMethod( |
mcimadamore@1296 | 3725 | env, |
mcimadamore@1296 | 3726 | site, |
mcimadamore@1296 | 3727 | sym, |
mcimadamore@1296 | 3728 | resultInfo, |
mcimadamore@1296 | 3729 | argtypes, |
mcimadamore@1296 | 3730 | typeargtypes, |
mcimadamore@1296 | 3731 | noteWarner); |
mcimadamore@1296 | 3732 | |
mcimadamore@1812 | 3733 | DeferredAttr.DeferredTypeMap checkDeferredMap = |
mcimadamore@1812 | 3734 | deferredAttr.new DeferredTypeMap(DeferredAttr.AttrMode.CHECK, sym, env.info.pendingResolutionPhase); |
mcimadamore@1812 | 3735 | |
mcimadamore@1812 | 3736 | argtypes = Type.map(argtypes, checkDeferredMap); |
mcimadamore@1812 | 3737 | |
mcimadamore@1812 | 3738 | if (noteWarner.hasNonSilentLint(LintCategory.UNCHECKED)) { |
mcimadamore@1812 | 3739 | chk.warnUnchecked(env.tree.pos(), |
mcimadamore@1812 | 3740 | "unchecked.meth.invocation.applied", |
mcimadamore@1812 | 3741 | kindName(sym), |
mcimadamore@1812 | 3742 | sym.name, |
mcimadamore@1812 | 3743 | rs.methodArguments(sym.type.getParameterTypes()), |
mcimadamore@1812 | 3744 | rs.methodArguments(Type.map(argtypes, checkDeferredMap)), |
mcimadamore@1812 | 3745 | kindName(sym.location()), |
mcimadamore@1812 | 3746 | sym.location()); |
mcimadamore@1812 | 3747 | owntype = new MethodType(owntype.getParameterTypes(), |
mcimadamore@1812 | 3748 | types.erasure(owntype.getReturnType()), |
mcimadamore@1812 | 3749 | types.erasure(owntype.getThrownTypes()), |
mcimadamore@1812 | 3750 | syms.methodClass); |
mcimadamore@1812 | 3751 | } |
mcimadamore@1812 | 3752 | |
mcimadamore@1347 | 3753 | return chk.checkMethod(owntype, sym, env, argtrees, argtypes, env.info.lastResolveVarargs(), |
mcimadamore@1812 | 3754 | resultInfo.checkContext.inferenceContext()); |
mcimadamore@1296 | 3755 | } catch (Infer.InferenceException ex) { |
mcimadamore@1296 | 3756 | //invalid target type - propagate exception outwards or report error |
mcimadamore@1296 | 3757 | //depending on the current check context |
mcimadamore@1296 | 3758 | resultInfo.checkContext.report(env.tree.pos(), ex.getDiagnostic()); |
mcimadamore@1296 | 3759 | return types.createErrorType(site); |
mcimadamore@1296 | 3760 | } catch (Resolve.InapplicableMethodException ex) { |
mcimadamore@1347 | 3761 | Assert.error(ex.getDiagnostic().getMessage(Locale.getDefault())); |
mcimadamore@1296 | 3762 | return null; |
mcimadamore@1296 | 3763 | } |
mcimadamore@1219 | 3764 | } |
mcimadamore@1219 | 3765 | |
duke@1 | 3766 | public void visitLiteral(JCLiteral tree) { |
duke@1 | 3767 | result = check( |
mcimadamore@1220 | 3768 | tree, litType(tree.typetag).constType(tree.value), VAL, resultInfo); |
duke@1 | 3769 | } |
duke@1 | 3770 | //where |
duke@1 | 3771 | /** Return the type of a literal with given type tag. |
duke@1 | 3772 | */ |
jjg@1374 | 3773 | Type litType(TypeTag tag) { |
jjg@1374 | 3774 | return (tag == CLASS) ? syms.stringType : syms.typeOfTag[tag.ordinal()]; |
duke@1 | 3775 | } |
duke@1 | 3776 | |
duke@1 | 3777 | public void visitTypeIdent(JCPrimitiveTypeTree tree) { |
jjg@1374 | 3778 | result = check(tree, syms.typeOfTag[tree.typetag.ordinal()], TYP, resultInfo); |
duke@1 | 3779 | } |
duke@1 | 3780 | |
duke@1 | 3781 | public void visitTypeArray(JCArrayTypeTree tree) { |
duke@1 | 3782 | Type etype = attribType(tree.elemtype, env); |
duke@1 | 3783 | Type type = new ArrayType(etype, syms.arrayClass); |
mcimadamore@1220 | 3784 | result = check(tree, type, TYP, resultInfo); |
duke@1 | 3785 | } |
duke@1 | 3786 | |
duke@1 | 3787 | /** Visitor method for parameterized types. |
duke@1 | 3788 | * Bound checking is left until later, since types are attributed |
duke@1 | 3789 | * before supertype structure is completely known |
duke@1 | 3790 | */ |
duke@1 | 3791 | public void visitTypeApply(JCTypeApply tree) { |
jjg@110 | 3792 | Type owntype = types.createErrorType(tree.type); |
duke@1 | 3793 | |
duke@1 | 3794 | // Attribute functor part of application and make sure it's a class. |
duke@1 | 3795 | Type clazztype = chk.checkClassType(tree.clazz.pos(), attribType(tree.clazz, env)); |
duke@1 | 3796 | |
duke@1 | 3797 | // Attribute type parameters |
duke@1 | 3798 | List<Type> actuals = attribTypes(tree.arguments, env); |
duke@1 | 3799 | |
jjg@1374 | 3800 | if (clazztype.hasTag(CLASS)) { |
duke@1 | 3801 | List<Type> formals = clazztype.tsym.type.getTypeArguments(); |
mcimadamore@1060 | 3802 | if (actuals.isEmpty()) //diamond |
mcimadamore@1060 | 3803 | actuals = formals; |
mcimadamore@1060 | 3804 | |
mcimadamore@1060 | 3805 | if (actuals.length() == formals.length()) { |
duke@1 | 3806 | List<Type> a = actuals; |
duke@1 | 3807 | List<Type> f = formals; |
duke@1 | 3808 | while (a.nonEmpty()) { |
duke@1 | 3809 | a.head = a.head.withTypeVar(f.head); |
duke@1 | 3810 | a = a.tail; |
duke@1 | 3811 | f = f.tail; |
duke@1 | 3812 | } |
duke@1 | 3813 | // Compute the proper generic outer |
duke@1 | 3814 | Type clazzOuter = clazztype.getEnclosingType(); |
jjg@1374 | 3815 | if (clazzOuter.hasTag(CLASS)) { |
duke@1 | 3816 | Type site; |
jjg@308 | 3817 | JCExpression clazz = TreeInfo.typeIn(tree.clazz); |
jjg@1127 | 3818 | if (clazz.hasTag(IDENT)) { |
duke@1 | 3819 | site = env.enclClass.sym.type; |
jjg@1127 | 3820 | } else if (clazz.hasTag(SELECT)) { |
jjg@308 | 3821 | site = ((JCFieldAccess) clazz).selected.type; |
duke@1 | 3822 | } else throw new AssertionError(""+tree); |
jjg@1374 | 3823 | if (clazzOuter.hasTag(CLASS) && site != clazzOuter) { |
jjg@1374 | 3824 | if (site.hasTag(CLASS)) |
duke@1 | 3825 | site = types.asOuterSuper(site, clazzOuter.tsym); |
duke@1 | 3826 | if (site == null) |
duke@1 | 3827 | site = types.erasure(clazzOuter); |
duke@1 | 3828 | clazzOuter = site; |
duke@1 | 3829 | } |
duke@1 | 3830 | } |
mcimadamore@536 | 3831 | owntype = new ClassType(clazzOuter, actuals, clazztype.tsym); |
jjg@1755 | 3832 | if (clazztype.isAnnotated()) { |
jjg@1755 | 3833 | // Use the same AnnotatedType, because it will have |
jjg@1755 | 3834 | // its annotations set later. |
jjg@1755 | 3835 | ((AnnotatedType)clazztype).underlyingType = owntype; |
jjg@1755 | 3836 | owntype = clazztype; |
jjg@1755 | 3837 | } |
duke@1 | 3838 | } else { |
duke@1 | 3839 | if (formals.length() != 0) { |
duke@1 | 3840 | log.error(tree.pos(), "wrong.number.type.args", |
duke@1 | 3841 | Integer.toString(formals.length())); |
duke@1 | 3842 | } else { |
duke@1 | 3843 | log.error(tree.pos(), "type.doesnt.take.params", clazztype.tsym); |
duke@1 | 3844 | } |
jjg@110 | 3845 | owntype = types.createErrorType(tree.type); |
duke@1 | 3846 | } |
duke@1 | 3847 | } |
mcimadamore@1220 | 3848 | result = check(tree, owntype, TYP, resultInfo); |
duke@1 | 3849 | } |
duke@1 | 3850 | |
darcy@969 | 3851 | public void visitTypeUnion(JCTypeUnion tree) { |
mcimadamore@774 | 3852 | ListBuffer<Type> multicatchTypes = ListBuffer.lb(); |
jjg@988 | 3853 | ListBuffer<Type> all_multicatchTypes = null; // lazy, only if needed |
mcimadamore@774 | 3854 | for (JCExpression typeTree : tree.alternatives) { |
mcimadamore@774 | 3855 | Type ctype = attribType(typeTree, env); |
mcimadamore@774 | 3856 | ctype = chk.checkType(typeTree.pos(), |
mcimadamore@774 | 3857 | chk.checkClassType(typeTree.pos(), ctype), |
mcimadamore@774 | 3858 | syms.throwableType); |
mcimadamore@949 | 3859 | if (!ctype.isErroneous()) { |
darcy@969 | 3860 | //check that alternatives of a union type are pairwise |
mcimadamore@949 | 3861 | //unrelated w.r.t. subtyping |
mcimadamore@949 | 3862 | if (chk.intersects(ctype, multicatchTypes.toList())) { |
mcimadamore@949 | 3863 | for (Type t : multicatchTypes) { |
mcimadamore@949 | 3864 | boolean sub = types.isSubtype(ctype, t); |
mcimadamore@949 | 3865 | boolean sup = types.isSubtype(t, ctype); |
mcimadamore@949 | 3866 | if (sub || sup) { |
mcimadamore@949 | 3867 | //assume 'a' <: 'b' |
mcimadamore@949 | 3868 | Type a = sub ? ctype : t; |
mcimadamore@949 | 3869 | Type b = sub ? t : ctype; |
mcimadamore@949 | 3870 | log.error(typeTree.pos(), "multicatch.types.must.be.disjoint", a, b); |
mcimadamore@949 | 3871 | } |
mcimadamore@949 | 3872 | } |
mcimadamore@949 | 3873 | } |
mcimadamore@949 | 3874 | multicatchTypes.append(ctype); |
jjg@988 | 3875 | if (all_multicatchTypes != null) |
jjg@988 | 3876 | all_multicatchTypes.append(ctype); |
jjg@988 | 3877 | } else { |
jjg@988 | 3878 | if (all_multicatchTypes == null) { |
jjg@988 | 3879 | all_multicatchTypes = ListBuffer.lb(); |
jjg@988 | 3880 | all_multicatchTypes.appendList(multicatchTypes); |
jjg@988 | 3881 | } |
jjg@988 | 3882 | all_multicatchTypes.append(ctype); |
mcimadamore@949 | 3883 | } |
mcimadamore@774 | 3884 | } |
mcimadamore@1220 | 3885 | Type t = check(tree, types.lub(multicatchTypes.toList()), TYP, resultInfo); |
jjg@1374 | 3886 | if (t.hasTag(CLASS)) { |
jjg@988 | 3887 | List<Type> alternatives = |
jjg@988 | 3888 | ((all_multicatchTypes == null) ? multicatchTypes : all_multicatchTypes).toList(); |
jjg@988 | 3889 | t = new UnionClassType((ClassType) t, alternatives); |
jjg@988 | 3890 | } |
jjg@988 | 3891 | tree.type = result = t; |
mcimadamore@550 | 3892 | } |
mcimadamore@550 | 3893 | |
mcimadamore@1436 | 3894 | public void visitTypeIntersection(JCTypeIntersection tree) { |
mcimadamore@1436 | 3895 | attribTypes(tree.bounds, env); |
mcimadamore@1436 | 3896 | tree.type = result = checkIntersection(tree, tree.bounds); |
mcimadamore@1436 | 3897 | } |
mcimadamore@1436 | 3898 | |
jjg@1521 | 3899 | public void visitTypeParameter(JCTypeParameter tree) { |
jjg@1521 | 3900 | TypeVar typeVar = (TypeVar) tree.type; |
jjg@1521 | 3901 | |
jjg@1521 | 3902 | if (tree.annotations != null && tree.annotations.nonEmpty()) { |
jjg@1521 | 3903 | AnnotatedType antype = new AnnotatedType(typeVar); |
jjg@1521 | 3904 | annotateType(antype, tree.annotations); |
jjg@1521 | 3905 | tree.type = antype; |
jjg@1521 | 3906 | } |
jjg@1521 | 3907 | |
mcimadamore@1436 | 3908 | if (!typeVar.bound.isErroneous()) { |
mcimadamore@1436 | 3909 | //fixup type-parameter bound computed in 'attribTypeVariables' |
mcimadamore@1436 | 3910 | typeVar.bound = checkIntersection(tree, tree.bounds); |
mcimadamore@1436 | 3911 | } |
mcimadamore@1436 | 3912 | } |
mcimadamore@1436 | 3913 | |
mcimadamore@1436 | 3914 | Type checkIntersection(JCTree tree, List<JCExpression> bounds) { |
duke@1 | 3915 | Set<Type> boundSet = new HashSet<Type>(); |
mcimadamore@1436 | 3916 | if (bounds.nonEmpty()) { |
duke@1 | 3917 | // accept class or interface or typevar as first bound. |
mcimadamore@1436 | 3918 | bounds.head.type = checkBase(bounds.head.type, bounds.head, env, false, false, false); |
mcimadamore@1436 | 3919 | boundSet.add(types.erasure(bounds.head.type)); |
mcimadamore@1436 | 3920 | if (bounds.head.type.isErroneous()) { |
mcimadamore@1436 | 3921 | return bounds.head.type; |
mcimadamore@159 | 3922 | } |
mcimadamore@1436 | 3923 | else if (bounds.head.type.hasTag(TYPEVAR)) { |
duke@1 | 3924 | // if first bound was a typevar, do not accept further bounds. |
mcimadamore@1436 | 3925 | if (bounds.tail.nonEmpty()) { |
mcimadamore@1436 | 3926 | log.error(bounds.tail.head.pos(), |
duke@1 | 3927 | "type.var.may.not.be.followed.by.other.bounds"); |
mcimadamore@1436 | 3928 | return bounds.head.type; |
duke@1 | 3929 | } |
duke@1 | 3930 | } else { |
duke@1 | 3931 | // if first bound was a class or interface, accept only interfaces |
duke@1 | 3932 | // as further bounds. |
mcimadamore@1436 | 3933 | for (JCExpression bound : bounds.tail) { |
mcimadamore@1436 | 3934 | bound.type = checkBase(bound.type, bound, env, false, true, false); |
mcimadamore@1436 | 3935 | if (bound.type.isErroneous()) { |
mcimadamore@1436 | 3936 | bounds = List.of(bound); |
mcimadamore@1436 | 3937 | } |
mcimadamore@1436 | 3938 | else if (bound.type.hasTag(CLASS)) { |
mcimadamore@1436 | 3939 | chk.checkNotRepeated(bound.pos(), types.erasure(bound.type), boundSet); |
mcimadamore@1436 | 3940 | } |
duke@1 | 3941 | } |
duke@1 | 3942 | } |
duke@1 | 3943 | } |
mcimadamore@1436 | 3944 | |
mcimadamore@1436 | 3945 | if (bounds.length() == 0) { |
mcimadamore@1436 | 3946 | return syms.objectType; |
mcimadamore@1436 | 3947 | } else if (bounds.length() == 1) { |
mcimadamore@1436 | 3948 | return bounds.head.type; |
mcimadamore@1436 | 3949 | } else { |
mcimadamore@1436 | 3950 | Type owntype = types.makeCompoundType(TreeInfo.types(bounds)); |
mcimadamore@1436 | 3951 | if (tree.hasTag(TYPEINTERSECTION)) { |
mcimadamore@1436 | 3952 | ((IntersectionClassType)owntype).intersectionKind = |
mcimadamore@1436 | 3953 | IntersectionClassType.IntersectionKind.EXPLICIT; |
mcimadamore@1436 | 3954 | } |
duke@1 | 3955 | // ... the variable's bound is a class type flagged COMPOUND |
duke@1 | 3956 | // (see comment for TypeVar.bound). |
duke@1 | 3957 | // In this case, generate a class tree that represents the |
duke@1 | 3958 | // bound class, ... |
jjg@904 | 3959 | JCExpression extending; |
duke@1 | 3960 | List<JCExpression> implementing; |
mcimadamore@1436 | 3961 | if (!bounds.head.type.isInterface()) { |
mcimadamore@1436 | 3962 | extending = bounds.head; |
mcimadamore@1436 | 3963 | implementing = bounds.tail; |
duke@1 | 3964 | } else { |
duke@1 | 3965 | extending = null; |
mcimadamore@1436 | 3966 | implementing = bounds; |
duke@1 | 3967 | } |
mcimadamore@1436 | 3968 | JCClassDecl cd = make.at(tree).ClassDef( |
duke@1 | 3969 | make.Modifiers(PUBLIC | ABSTRACT), |
mcimadamore@1436 | 3970 | names.empty, List.<JCTypeParameter>nil(), |
duke@1 | 3971 | extending, implementing, List.<JCTree>nil()); |
duke@1 | 3972 | |
mcimadamore@1436 | 3973 | ClassSymbol c = (ClassSymbol)owntype.tsym; |
jjg@816 | 3974 | Assert.check((c.flags() & COMPOUND) != 0); |
duke@1 | 3975 | cd.sym = c; |
duke@1 | 3976 | c.sourcefile = env.toplevel.sourcefile; |
duke@1 | 3977 | |
duke@1 | 3978 | // ... and attribute the bound class |
duke@1 | 3979 | c.flags_field |= UNATTRIBUTED; |
duke@1 | 3980 | Env<AttrContext> cenv = enter.classEnv(cd, env); |
duke@1 | 3981 | enter.typeEnvs.put(c, cenv); |
mcimadamore@1436 | 3982 | attribClass(c); |
mcimadamore@1436 | 3983 | return owntype; |
duke@1 | 3984 | } |
duke@1 | 3985 | } |
duke@1 | 3986 | |
duke@1 | 3987 | public void visitWildcard(JCWildcard tree) { |
duke@1 | 3988 | //- System.err.println("visitWildcard("+tree+");");//DEBUG |
duke@1 | 3989 | Type type = (tree.kind.kind == BoundKind.UNBOUND) |
duke@1 | 3990 | ? syms.objectType |
duke@1 | 3991 | : attribType(tree.inner, env); |
duke@1 | 3992 | result = check(tree, new WildcardType(chk.checkRefType(tree.pos(), type), |
duke@1 | 3993 | tree.kind.kind, |
duke@1 | 3994 | syms.boundClass), |
mcimadamore@1220 | 3995 | TYP, resultInfo); |
duke@1 | 3996 | } |
duke@1 | 3997 | |
duke@1 | 3998 | public void visitAnnotation(JCAnnotation tree) { |
mcimadamore@1220 | 3999 | log.error(tree.pos(), "annotation.not.valid.for.type", pt()); |
duke@1 | 4000 | result = tree.type = syms.errType; |
duke@1 | 4001 | } |
duke@1 | 4002 | |
jjg@1521 | 4003 | public void visitAnnotatedType(JCAnnotatedType tree) { |
jjg@1521 | 4004 | Type underlyingType = attribType(tree.getUnderlyingType(), env); |
jjg@1521 | 4005 | this.attribAnnotationTypes(tree.annotations, env); |
jjg@1521 | 4006 | AnnotatedType antype = new AnnotatedType(underlyingType); |
jjg@1521 | 4007 | annotateType(antype, tree.annotations); |
jjg@1521 | 4008 | result = tree.type = antype; |
jjg@1521 | 4009 | } |
jjg@1521 | 4010 | |
jjg@1521 | 4011 | /** |
jjg@1521 | 4012 | * Apply the annotations to the particular type. |
jjg@1521 | 4013 | */ |
jjg@1521 | 4014 | public void annotateType(final AnnotatedType type, final List<JCAnnotation> annotations) { |
jjg@1521 | 4015 | if (annotations.isEmpty()) |
jjg@1521 | 4016 | return; |
jjg@1521 | 4017 | annotate.typeAnnotation(new Annotate.Annotator() { |
jjg@1521 | 4018 | @Override |
jjg@1521 | 4019 | public String toString() { |
jjg@1521 | 4020 | return "annotate " + annotations + " onto " + type; |
jjg@1521 | 4021 | } |
jjg@1521 | 4022 | @Override |
jjg@1521 | 4023 | public void enterAnnotation() { |
jjg@1521 | 4024 | List<Attribute.TypeCompound> compounds = fromAnnotations(annotations); |
jjg@1521 | 4025 | type.typeAnnotations = compounds; |
jjg@1521 | 4026 | } |
jjg@1521 | 4027 | }); |
jjg@1521 | 4028 | } |
jjg@1521 | 4029 | |
jjg@1521 | 4030 | private static List<Attribute.TypeCompound> fromAnnotations(List<JCAnnotation> annotations) { |
jjg@1521 | 4031 | if (annotations.isEmpty()) |
jjg@1521 | 4032 | return List.nil(); |
jjg@1521 | 4033 | |
jjg@1521 | 4034 | ListBuffer<Attribute.TypeCompound> buf = ListBuffer.lb(); |
jjg@1521 | 4035 | for (JCAnnotation anno : annotations) { |
jjg@1755 | 4036 | if (anno.attribute != null) { |
jjg@1755 | 4037 | // TODO: this null-check is only needed for an obscure |
jjg@1755 | 4038 | // ordering issue, where annotate.flush is called when |
jjg@1755 | 4039 | // the attribute is not set yet. For an example failure |
jjg@1755 | 4040 | // try the referenceinfos/NestedTypes.java test. |
jjg@1755 | 4041 | // Any better solutions? |
jjg@1755 | 4042 | buf.append((Attribute.TypeCompound) anno.attribute); |
jjg@1755 | 4043 | } |
jjg@1521 | 4044 | } |
jjg@1521 | 4045 | return buf.toList(); |
jjg@1521 | 4046 | } |
jjg@1521 | 4047 | |
duke@1 | 4048 | public void visitErroneous(JCErroneous tree) { |
duke@1 | 4049 | if (tree.errs != null) |
duke@1 | 4050 | for (JCTree err : tree.errs) |
mcimadamore@1220 | 4051 | attribTree(err, env, new ResultInfo(ERR, pt())); |
duke@1 | 4052 | result = tree.type = syms.errType; |
duke@1 | 4053 | } |
duke@1 | 4054 | |
duke@1 | 4055 | /** Default visitor method for all other trees. |
duke@1 | 4056 | */ |
duke@1 | 4057 | public void visitTree(JCTree tree) { |
duke@1 | 4058 | throw new AssertionError(); |
duke@1 | 4059 | } |
duke@1 | 4060 | |
jjg@931 | 4061 | /** |
jjg@931 | 4062 | * Attribute an env for either a top level tree or class declaration. |
jjg@931 | 4063 | */ |
jjg@931 | 4064 | public void attrib(Env<AttrContext> env) { |
jjg@1127 | 4065 | if (env.tree.hasTag(TOPLEVEL)) |
jjg@931 | 4066 | attribTopLevel(env); |
jjg@931 | 4067 | else |
jjg@931 | 4068 | attribClass(env.tree.pos(), env.enclClass.sym); |
jjg@931 | 4069 | } |
jjg@931 | 4070 | |
jjg@931 | 4071 | /** |
jjg@931 | 4072 | * Attribute a top level tree. These trees are encountered when the |
jjg@931 | 4073 | * package declaration has annotations. |
jjg@931 | 4074 | */ |
jjg@931 | 4075 | public void attribTopLevel(Env<AttrContext> env) { |
jjg@931 | 4076 | JCCompilationUnit toplevel = env.toplevel; |
jjg@931 | 4077 | try { |
jjg@931 | 4078 | annotate.flush(); |
jjg@931 | 4079 | chk.validateAnnotations(toplevel.packageAnnotations, toplevel.packge); |
jjg@931 | 4080 | } catch (CompletionFailure ex) { |
jjg@931 | 4081 | chk.completionError(toplevel.pos(), ex); |
jjg@931 | 4082 | } |
jjg@931 | 4083 | } |
jjg@931 | 4084 | |
duke@1 | 4085 | /** Main method: attribute class definition associated with given class symbol. |
duke@1 | 4086 | * reporting completion failures at the given position. |
duke@1 | 4087 | * @param pos The source position at which completion errors are to be |
duke@1 | 4088 | * reported. |
duke@1 | 4089 | * @param c The class symbol whose definition will be attributed. |
duke@1 | 4090 | */ |
duke@1 | 4091 | public void attribClass(DiagnosticPosition pos, ClassSymbol c) { |
duke@1 | 4092 | try { |
duke@1 | 4093 | annotate.flush(); |
duke@1 | 4094 | attribClass(c); |
duke@1 | 4095 | } catch (CompletionFailure ex) { |
duke@1 | 4096 | chk.completionError(pos, ex); |
duke@1 | 4097 | } |
duke@1 | 4098 | } |
duke@1 | 4099 | |
duke@1 | 4100 | /** Attribute class definition associated with given class symbol. |
duke@1 | 4101 | * @param c The class symbol whose definition will be attributed. |
duke@1 | 4102 | */ |
duke@1 | 4103 | void attribClass(ClassSymbol c) throws CompletionFailure { |
jjg@1374 | 4104 | if (c.type.hasTag(ERROR)) return; |
duke@1 | 4105 | |
duke@1 | 4106 | // Check for cycles in the inheritance graph, which can arise from |
duke@1 | 4107 | // ill-formed class files. |
duke@1 | 4108 | chk.checkNonCyclic(null, c.type); |
duke@1 | 4109 | |
duke@1 | 4110 | Type st = types.supertype(c.type); |
duke@1 | 4111 | if ((c.flags_field & Flags.COMPOUND) == 0) { |
duke@1 | 4112 | // First, attribute superclass. |
jjg@1374 | 4113 | if (st.hasTag(CLASS)) |
duke@1 | 4114 | attribClass((ClassSymbol)st.tsym); |
duke@1 | 4115 | |
duke@1 | 4116 | // Next attribute owner, if it is a class. |
jjg@1374 | 4117 | if (c.owner.kind == TYP && c.owner.type.hasTag(CLASS)) |
duke@1 | 4118 | attribClass((ClassSymbol)c.owner); |
duke@1 | 4119 | } |
duke@1 | 4120 | |
duke@1 | 4121 | // The previous operations might have attributed the current class |
duke@1 | 4122 | // if there was a cycle. So we test first whether the class is still |
duke@1 | 4123 | // UNATTRIBUTED. |
duke@1 | 4124 | if ((c.flags_field & UNATTRIBUTED) != 0) { |
duke@1 | 4125 | c.flags_field &= ~UNATTRIBUTED; |
duke@1 | 4126 | |
duke@1 | 4127 | // Get environment current at the point of class definition. |
duke@1 | 4128 | Env<AttrContext> env = enter.typeEnvs.get(c); |
duke@1 | 4129 | |
duke@1 | 4130 | // The info.lint field in the envs stored in enter.typeEnvs is deliberately uninitialized, |
duke@1 | 4131 | // because the annotations were not available at the time the env was created. Therefore, |
duke@1 | 4132 | // we look up the environment chain for the first enclosing environment for which the |
duke@1 | 4133 | // lint value is set. Typically, this is the parent env, but might be further if there |
duke@1 | 4134 | // are any envs created as a result of TypeParameter nodes. |
duke@1 | 4135 | Env<AttrContext> lintEnv = env; |
duke@1 | 4136 | while (lintEnv.info.lint == null) |
duke@1 | 4137 | lintEnv = lintEnv.next; |
duke@1 | 4138 | |
duke@1 | 4139 | // Having found the enclosing lint value, we can initialize the lint value for this class |
jjg@1802 | 4140 | env.info.lint = lintEnv.info.lint.augment(c); |
duke@1 | 4141 | |
duke@1 | 4142 | Lint prevLint = chk.setLint(env.info.lint); |
duke@1 | 4143 | JavaFileObject prev = log.useSource(c.sourcefile); |
mcimadamore@1347 | 4144 | ResultInfo prevReturnRes = env.info.returnResult; |
duke@1 | 4145 | |
duke@1 | 4146 | try { |
mcimadamore@1347 | 4147 | env.info.returnResult = null; |
duke@1 | 4148 | // java.lang.Enum may not be subclassed by a non-enum |
duke@1 | 4149 | if (st.tsym == syms.enumSym && |
duke@1 | 4150 | ((c.flags_field & (Flags.ENUM|Flags.COMPOUND)) == 0)) |
duke@1 | 4151 | log.error(env.tree.pos(), "enum.no.subclassing"); |
duke@1 | 4152 | |
duke@1 | 4153 | // Enums may not be extended by source-level classes |
duke@1 | 4154 | if (st.tsym != null && |
duke@1 | 4155 | ((st.tsym.flags_field & Flags.ENUM) != 0) && |
darcy@1646 | 4156 | ((c.flags_field & (Flags.ENUM | Flags.COMPOUND)) == 0)) { |
duke@1 | 4157 | log.error(env.tree.pos(), "enum.types.not.extensible"); |
duke@1 | 4158 | } |
duke@1 | 4159 | attribClassBody(env, c); |
duke@1 | 4160 | |
duke@1 | 4161 | chk.checkDeprecatedAnnotation(env.tree.pos(), c); |
vromero@1620 | 4162 | chk.checkClassOverrideEqualsAndHashIfNeeded(env.tree.pos(), c); |
duke@1 | 4163 | } finally { |
mcimadamore@1347 | 4164 | env.info.returnResult = prevReturnRes; |
duke@1 | 4165 | log.useSource(prev); |
duke@1 | 4166 | chk.setLint(prevLint); |
duke@1 | 4167 | } |
duke@1 | 4168 | |
duke@1 | 4169 | } |
duke@1 | 4170 | } |
duke@1 | 4171 | |
duke@1 | 4172 | public void visitImport(JCImport tree) { |
duke@1 | 4173 | // nothing to do |
duke@1 | 4174 | } |
duke@1 | 4175 | |
duke@1 | 4176 | /** Finish the attribution of a class. */ |
duke@1 | 4177 | private void attribClassBody(Env<AttrContext> env, ClassSymbol c) { |
duke@1 | 4178 | JCClassDecl tree = (JCClassDecl)env.tree; |
jjg@816 | 4179 | Assert.check(c == tree.sym); |
duke@1 | 4180 | |
duke@1 | 4181 | // Validate annotations |
duke@1 | 4182 | chk.validateAnnotations(tree.mods.annotations, c); |
duke@1 | 4183 | |
duke@1 | 4184 | // Validate type parameters, supertype and interfaces. |
mcimadamore@1436 | 4185 | attribStats(tree.typarams, env); |
mcimadamore@537 | 4186 | if (!c.isAnonymous()) { |
mcimadamore@537 | 4187 | //already checked if anonymous |
mcimadamore@537 | 4188 | chk.validate(tree.typarams, env); |
mcimadamore@537 | 4189 | chk.validate(tree.extending, env); |
mcimadamore@537 | 4190 | chk.validate(tree.implementing, env); |
mcimadamore@537 | 4191 | } |
duke@1 | 4192 | |
duke@1 | 4193 | // If this is a non-abstract class, check that it has no abstract |
duke@1 | 4194 | // methods or unimplemented methods of an implemented interface. |
duke@1 | 4195 | if ((c.flags() & (ABSTRACT | INTERFACE)) == 0) { |
duke@1 | 4196 | if (!relax) |
duke@1 | 4197 | chk.checkAllDefined(tree.pos(), c); |
duke@1 | 4198 | } |
duke@1 | 4199 | |
duke@1 | 4200 | if ((c.flags() & ANNOTATION) != 0) { |
duke@1 | 4201 | if (tree.implementing.nonEmpty()) |
duke@1 | 4202 | log.error(tree.implementing.head.pos(), |
duke@1 | 4203 | "cant.extend.intf.annotation"); |
duke@1 | 4204 | if (tree.typarams.nonEmpty()) |
duke@1 | 4205 | log.error(tree.typarams.head.pos(), |
duke@1 | 4206 | "intf.annotation.cant.have.type.params"); |
jfranck@1313 | 4207 | |
jjg@1492 | 4208 | // If this annotation has a @Repeatable, validate |
jjg@1492 | 4209 | Attribute.Compound repeatable = c.attribute(syms.repeatableType.tsym); |
jjg@1492 | 4210 | if (repeatable != null) { |
jjg@1492 | 4211 | // get diagnostic position for error reporting |
jjg@1492 | 4212 | DiagnosticPosition cbPos = getDiagnosticPosition(tree, repeatable.type); |
jfranck@1313 | 4213 | Assert.checkNonNull(cbPos); |
jfranck@1313 | 4214 | |
jjg@1492 | 4215 | chk.validateRepeatable(c, repeatable, cbPos); |
jfranck@1313 | 4216 | } |
duke@1 | 4217 | } else { |
duke@1 | 4218 | // Check that all extended classes and interfaces |
duke@1 | 4219 | // are compatible (i.e. no two define methods with same arguments |
duke@1 | 4220 | // yet different return types). (JLS 8.4.6.3) |
duke@1 | 4221 | chk.checkCompatibleSupertypes(tree.pos(), c.type); |
mcimadamore@1393 | 4222 | if (allowDefaultMethods) { |
mcimadamore@1393 | 4223 | chk.checkDefaultMethodClashes(tree.pos(), c.type); |
mcimadamore@1393 | 4224 | } |
duke@1 | 4225 | } |
duke@1 | 4226 | |
duke@1 | 4227 | // Check that class does not import the same parameterized interface |
duke@1 | 4228 | // with two different argument lists. |
duke@1 | 4229 | chk.checkClassBounds(tree.pos(), c.type); |
duke@1 | 4230 | |
duke@1 | 4231 | tree.type = c.type; |
duke@1 | 4232 | |
jjg@816 | 4233 | for (List<JCTypeParameter> l = tree.typarams; |
jjg@816 | 4234 | l.nonEmpty(); l = l.tail) { |
jjg@816 | 4235 | Assert.checkNonNull(env.info.scope.lookup(l.head.name).scope); |
duke@1 | 4236 | } |
duke@1 | 4237 | |
duke@1 | 4238 | // Check that a generic class doesn't extend Throwable |
duke@1 | 4239 | if (!c.type.allparams().isEmpty() && types.isSubtype(c.type, syms.throwableType)) |
duke@1 | 4240 | log.error(tree.extending.pos(), "generic.throwable"); |
duke@1 | 4241 | |
duke@1 | 4242 | // Check that all methods which implement some |
duke@1 | 4243 | // method conform to the method they implement. |
duke@1 | 4244 | chk.checkImplementations(tree); |
duke@1 | 4245 | |
mcimadamore@951 | 4246 | //check that a resource implementing AutoCloseable cannot throw InterruptedException |
mcimadamore@951 | 4247 | checkAutoCloseable(tree.pos(), env, c.type); |
mcimadamore@951 | 4248 | |
duke@1 | 4249 | for (List<JCTree> l = tree.defs; l.nonEmpty(); l = l.tail) { |
duke@1 | 4250 | // Attribute declaration |
duke@1 | 4251 | attribStat(l.head, env); |
duke@1 | 4252 | // Check that declarations in inner classes are not static (JLS 8.1.2) |
duke@1 | 4253 | // Make an exception for static constants. |
duke@1 | 4254 | if (c.owner.kind != PCK && |
duke@1 | 4255 | ((c.flags() & STATIC) == 0 || c.name == names.empty) && |
duke@1 | 4256 | (TreeInfo.flags(l.head) & (STATIC | INTERFACE)) != 0) { |
duke@1 | 4257 | Symbol sym = null; |
jjg@1127 | 4258 | if (l.head.hasTag(VARDEF)) sym = ((JCVariableDecl) l.head).sym; |
duke@1 | 4259 | if (sym == null || |
duke@1 | 4260 | sym.kind != VAR || |
duke@1 | 4261 | ((VarSymbol) sym).getConstValue() == null) |
mcimadamore@855 | 4262 | log.error(l.head.pos(), "icls.cant.have.static.decl", c); |
duke@1 | 4263 | } |
duke@1 | 4264 | } |
duke@1 | 4265 | |
duke@1 | 4266 | // Check for cycles among non-initial constructors. |
duke@1 | 4267 | chk.checkCyclicConstructors(tree); |
duke@1 | 4268 | |
duke@1 | 4269 | // Check for cycles among annotation elements. |
duke@1 | 4270 | chk.checkNonCyclicElements(tree); |
duke@1 | 4271 | |
duke@1 | 4272 | // Check for proper use of serialVersionUID |
mcimadamore@795 | 4273 | if (env.info.lint.isEnabled(LintCategory.SERIAL) && |
duke@1 | 4274 | isSerializable(c) && |
duke@1 | 4275 | (c.flags() & Flags.ENUM) == 0 && |
duke@1 | 4276 | (c.flags() & ABSTRACT) == 0) { |
duke@1 | 4277 | checkSerialVersionUID(tree, c); |
duke@1 | 4278 | } |
jjg@1521 | 4279 | |
jjg@1521 | 4280 | // Correctly organize the postions of the type annotations |
jjg@1521 | 4281 | TypeAnnotations.organizeTypeAnnotationsBodies(this.syms, this.names, this.log, tree); |
jjg@1521 | 4282 | |
jjg@1521 | 4283 | // Check type annotations applicability rules |
jjg@1521 | 4284 | validateTypeAnnotations(tree); |
duke@1 | 4285 | } |
duke@1 | 4286 | // where |
jfranck@1313 | 4287 | /** get a diagnostic position for an attribute of Type t, or null if attribute missing */ |
jfranck@1313 | 4288 | private DiagnosticPosition getDiagnosticPosition(JCClassDecl tree, Type t) { |
jfranck@1313 | 4289 | for(List<JCAnnotation> al = tree.mods.annotations; !al.isEmpty(); al = al.tail) { |
jfranck@1313 | 4290 | if (types.isSameType(al.head.annotationType.type, t)) |
jfranck@1313 | 4291 | return al.head.pos(); |
jfranck@1313 | 4292 | } |
jfranck@1313 | 4293 | |
jfranck@1313 | 4294 | return null; |
jfranck@1313 | 4295 | } |
jfranck@1313 | 4296 | |
duke@1 | 4297 | /** check if a class is a subtype of Serializable, if that is available. */ |
duke@1 | 4298 | private boolean isSerializable(ClassSymbol c) { |
duke@1 | 4299 | try { |
duke@1 | 4300 | syms.serializableType.complete(); |
duke@1 | 4301 | } |
duke@1 | 4302 | catch (CompletionFailure e) { |
duke@1 | 4303 | return false; |
duke@1 | 4304 | } |
duke@1 | 4305 | return types.isSubtype(c.type, syms.serializableType); |
duke@1 | 4306 | } |
duke@1 | 4307 | |
duke@1 | 4308 | /** Check that an appropriate serialVersionUID member is defined. */ |
duke@1 | 4309 | private void checkSerialVersionUID(JCClassDecl tree, ClassSymbol c) { |
duke@1 | 4310 | |
duke@1 | 4311 | // check for presence of serialVersionUID |
duke@1 | 4312 | Scope.Entry e = c.members().lookup(names.serialVersionUID); |
duke@1 | 4313 | while (e.scope != null && e.sym.kind != VAR) e = e.next(); |
duke@1 | 4314 | if (e.scope == null) { |
mcimadamore@795 | 4315 | log.warning(LintCategory.SERIAL, |
jjg@612 | 4316 | tree.pos(), "missing.SVUID", c); |
duke@1 | 4317 | return; |
duke@1 | 4318 | } |
duke@1 | 4319 | |
duke@1 | 4320 | // check that it is static final |
duke@1 | 4321 | VarSymbol svuid = (VarSymbol)e.sym; |
duke@1 | 4322 | if ((svuid.flags() & (STATIC | FINAL)) != |
duke@1 | 4323 | (STATIC | FINAL)) |
mcimadamore@795 | 4324 | log.warning(LintCategory.SERIAL, |
jjg@612 | 4325 | TreeInfo.diagnosticPositionFor(svuid, tree), "improper.SVUID", c); |
duke@1 | 4326 | |
duke@1 | 4327 | // check that it is long |
jjg@1374 | 4328 | else if (!svuid.type.hasTag(LONG)) |
mcimadamore@795 | 4329 | log.warning(LintCategory.SERIAL, |
jjg@612 | 4330 | TreeInfo.diagnosticPositionFor(svuid, tree), "long.SVUID", c); |
duke@1 | 4331 | |
duke@1 | 4332 | // check constant |
duke@1 | 4333 | else if (svuid.getConstValue() == null) |
mcimadamore@795 | 4334 | log.warning(LintCategory.SERIAL, |
jjg@612 | 4335 | TreeInfo.diagnosticPositionFor(svuid, tree), "constant.SVUID", c); |
duke@1 | 4336 | } |
duke@1 | 4337 | |
duke@1 | 4338 | private Type capture(Type type) { |
mcimadamore@1562 | 4339 | //do not capture free types |
mcimadamore@1562 | 4340 | return resultInfo.checkContext.inferenceContext().free(type) ? |
mcimadamore@1562 | 4341 | type : types.capture(type); |
duke@1 | 4342 | } |
jjg@308 | 4343 | |
jjg@1521 | 4344 | private void validateTypeAnnotations(JCTree tree) { |
jjg@1521 | 4345 | tree.accept(typeAnnotationsValidator); |
jjg@1521 | 4346 | } |
jjg@1521 | 4347 | //where |
jjg@1755 | 4348 | private final JCTree.Visitor typeAnnotationsValidator = new TreeScanner() { |
jjg@1755 | 4349 | |
jjg@1755 | 4350 | private boolean checkAllAnnotations = false; |
jjg@1755 | 4351 | |
jjg@1521 | 4352 | public void visitAnnotation(JCAnnotation tree) { |
jjg@1755 | 4353 | if (tree.hasTag(TYPE_ANNOTATION) || checkAllAnnotations) { |
jjg@1521 | 4354 | chk.validateTypeAnnotation(tree, false); |
jjg@1521 | 4355 | } |
jjg@1521 | 4356 | super.visitAnnotation(tree); |
jjg@1521 | 4357 | } |
jjg@1521 | 4358 | public void visitTypeParameter(JCTypeParameter tree) { |
jjg@1521 | 4359 | chk.validateTypeAnnotations(tree.annotations, true); |
jjg@1521 | 4360 | scan(tree.bounds); |
jjg@1521 | 4361 | // Don't call super. |
jjg@1521 | 4362 | // This is needed because above we call validateTypeAnnotation with |
jjg@1521 | 4363 | // false, which would forbid annotations on type parameters. |
jjg@1521 | 4364 | // super.visitTypeParameter(tree); |
jjg@1521 | 4365 | } |
jjg@1521 | 4366 | public void visitMethodDef(JCMethodDecl tree) { |
jjg@1755 | 4367 | if (tree.recvparam != null && |
jjg@1755 | 4368 | tree.recvparam.vartype.type.getKind() != TypeKind.ERROR) { |
jjg@1755 | 4369 | checkForDeclarationAnnotations(tree.recvparam.mods.annotations, |
jjg@1755 | 4370 | tree.recvparam.vartype.type.tsym); |
jjg@1521 | 4371 | } |
jjg@1521 | 4372 | if (tree.restype != null && tree.restype.type != null) { |
jjg@1521 | 4373 | validateAnnotatedType(tree.restype, tree.restype.type); |
jjg@1521 | 4374 | } |
jjg@1521 | 4375 | super.visitMethodDef(tree); |
jjg@1521 | 4376 | } |
jjg@1521 | 4377 | public void visitVarDef(final JCVariableDecl tree) { |
jjg@1521 | 4378 | if (tree.sym != null && tree.sym.type != null) |
jjg@1521 | 4379 | validateAnnotatedType(tree, tree.sym.type); |
jjg@1521 | 4380 | super.visitVarDef(tree); |
jjg@1521 | 4381 | } |
jjg@1521 | 4382 | public void visitTypeCast(JCTypeCast tree) { |
jjg@1521 | 4383 | if (tree.clazz != null && tree.clazz.type != null) |
jjg@1521 | 4384 | validateAnnotatedType(tree.clazz, tree.clazz.type); |
jjg@1521 | 4385 | super.visitTypeCast(tree); |
jjg@1521 | 4386 | } |
jjg@1521 | 4387 | public void visitTypeTest(JCInstanceOf tree) { |
jjg@1521 | 4388 | if (tree.clazz != null && tree.clazz.type != null) |
jjg@1521 | 4389 | validateAnnotatedType(tree.clazz, tree.clazz.type); |
jjg@1521 | 4390 | super.visitTypeTest(tree); |
jjg@1521 | 4391 | } |
jjg@1755 | 4392 | public void visitNewClass(JCNewClass tree) { |
jjg@1755 | 4393 | if (tree.clazz.hasTag(ANNOTATED_TYPE)) { |
jjg@1755 | 4394 | boolean prevCheck = this.checkAllAnnotations; |
jjg@1755 | 4395 | try { |
jjg@1755 | 4396 | this.checkAllAnnotations = true; |
jjg@1755 | 4397 | scan(((JCAnnotatedType)tree.clazz).annotations); |
jjg@1755 | 4398 | } finally { |
jjg@1755 | 4399 | this.checkAllAnnotations = prevCheck; |
jjg@1755 | 4400 | } |
jjg@1755 | 4401 | } |
jjg@1755 | 4402 | super.visitNewClass(tree); |
jjg@1755 | 4403 | } |
jjg@1755 | 4404 | public void visitNewArray(JCNewArray tree) { |
jjg@1755 | 4405 | if (tree.elemtype != null && tree.elemtype.hasTag(ANNOTATED_TYPE)) { |
jjg@1755 | 4406 | boolean prevCheck = this.checkAllAnnotations; |
jjg@1755 | 4407 | try { |
jjg@1755 | 4408 | this.checkAllAnnotations = true; |
jjg@1755 | 4409 | scan(((JCAnnotatedType)tree.elemtype).annotations); |
jjg@1755 | 4410 | } finally { |
jjg@1755 | 4411 | this.checkAllAnnotations = prevCheck; |
jjg@1755 | 4412 | } |
jjg@1755 | 4413 | } |
jjg@1755 | 4414 | super.visitNewArray(tree); |
jjg@1755 | 4415 | } |
jjg@1521 | 4416 | |
jjg@1521 | 4417 | /* I would want to model this after |
jjg@1521 | 4418 | * com.sun.tools.javac.comp.Check.Validator.visitSelectInternal(JCFieldAccess) |
jjg@1521 | 4419 | * and override visitSelect and visitTypeApply. |
jjg@1521 | 4420 | * However, we only set the annotated type in the top-level type |
jjg@1521 | 4421 | * of the symbol. |
jjg@1521 | 4422 | * Therefore, we need to override each individual location where a type |
jjg@1521 | 4423 | * can occur. |
jjg@1521 | 4424 | */ |
jjg@1521 | 4425 | private void validateAnnotatedType(final JCTree errtree, final Type type) { |
jjg@1521 | 4426 | if (type.getEnclosingType() != null && |
jjg@1521 | 4427 | type != type.getEnclosingType()) { |
jjg@1521 | 4428 | validateEnclosingAnnotatedType(errtree, type.getEnclosingType()); |
jjg@1521 | 4429 | } |
jjg@1521 | 4430 | for (Type targ : type.getTypeArguments()) { |
jjg@1521 | 4431 | validateAnnotatedType(errtree, targ); |
jjg@1521 | 4432 | } |
jjg@1521 | 4433 | } |
jjg@1521 | 4434 | private void validateEnclosingAnnotatedType(final JCTree errtree, final Type type) { |
jjg@1521 | 4435 | validateAnnotatedType(errtree, type); |
jjg@1521 | 4436 | if (type.tsym != null && |
jjg@1521 | 4437 | type.tsym.isStatic() && |
jjg@1645 | 4438 | type.getAnnotationMirrors().nonEmpty()) { |
jjg@1521 | 4439 | // Enclosing static classes cannot have type annotations. |
jjg@1521 | 4440 | log.error(errtree.pos(), "cant.annotate.static.class"); |
jjg@1521 | 4441 | } |
jjg@1521 | 4442 | } |
jjg@1521 | 4443 | }; |
jjg@1521 | 4444 | |
mcimadamore@676 | 4445 | // <editor-fold desc="post-attribution visitor"> |
mcimadamore@676 | 4446 | |
mcimadamore@676 | 4447 | /** |
mcimadamore@676 | 4448 | * Handle missing types/symbols in an AST. This routine is useful when |
mcimadamore@676 | 4449 | * the compiler has encountered some errors (which might have ended up |
mcimadamore@676 | 4450 | * terminating attribution abruptly); if the compiler is used in fail-over |
mcimadamore@676 | 4451 | * mode (e.g. by an IDE) and the AST contains semantic errors, this routine |
mcimadamore@676 | 4452 | * prevents NPE to be progagated during subsequent compilation steps. |
mcimadamore@676 | 4453 | */ |
mcimadamore@1348 | 4454 | public void postAttr(JCTree tree) { |
mcimadamore@1348 | 4455 | new PostAttrAnalyzer().scan(tree); |
mcimadamore@676 | 4456 | } |
mcimadamore@676 | 4457 | |
mcimadamore@676 | 4458 | class PostAttrAnalyzer extends TreeScanner { |
mcimadamore@676 | 4459 | |
mcimadamore@676 | 4460 | private void initTypeIfNeeded(JCTree that) { |
mcimadamore@676 | 4461 | if (that.type == null) { |
mcimadamore@676 | 4462 | that.type = syms.unknownType; |
mcimadamore@676 | 4463 | } |
mcimadamore@676 | 4464 | } |
mcimadamore@676 | 4465 | |
mcimadamore@676 | 4466 | @Override |
mcimadamore@676 | 4467 | public void scan(JCTree tree) { |
mcimadamore@676 | 4468 | if (tree == null) return; |
mcimadamore@676 | 4469 | if (tree instanceof JCExpression) { |
mcimadamore@676 | 4470 | initTypeIfNeeded(tree); |
mcimadamore@676 | 4471 | } |
mcimadamore@676 | 4472 | super.scan(tree); |
mcimadamore@676 | 4473 | } |
mcimadamore@676 | 4474 | |
mcimadamore@676 | 4475 | @Override |
mcimadamore@676 | 4476 | public void visitIdent(JCIdent that) { |
mcimadamore@676 | 4477 | if (that.sym == null) { |
mcimadamore@676 | 4478 | that.sym = syms.unknownSymbol; |
mcimadamore@676 | 4479 | } |
mcimadamore@676 | 4480 | } |
mcimadamore@676 | 4481 | |
mcimadamore@676 | 4482 | @Override |
mcimadamore@676 | 4483 | public void visitSelect(JCFieldAccess that) { |
mcimadamore@676 | 4484 | if (that.sym == null) { |
mcimadamore@676 | 4485 | that.sym = syms.unknownSymbol; |
mcimadamore@676 | 4486 | } |
mcimadamore@676 | 4487 | super.visitSelect(that); |
mcimadamore@676 | 4488 | } |
mcimadamore@676 | 4489 | |
mcimadamore@676 | 4490 | @Override |
mcimadamore@676 | 4491 | public void visitClassDef(JCClassDecl that) { |
mcimadamore@676 | 4492 | initTypeIfNeeded(that); |
mcimadamore@676 | 4493 | if (that.sym == null) { |
mcimadamore@676 | 4494 | that.sym = new ClassSymbol(0, that.name, that.type, syms.noSymbol); |
mcimadamore@676 | 4495 | } |
mcimadamore@676 | 4496 | super.visitClassDef(that); |
mcimadamore@676 | 4497 | } |
mcimadamore@676 | 4498 | |
mcimadamore@676 | 4499 | @Override |
mcimadamore@676 | 4500 | public void visitMethodDef(JCMethodDecl that) { |
mcimadamore@676 | 4501 | initTypeIfNeeded(that); |
mcimadamore@676 | 4502 | if (that.sym == null) { |
mcimadamore@676 | 4503 | that.sym = new MethodSymbol(0, that.name, that.type, syms.noSymbol); |
mcimadamore@676 | 4504 | } |
mcimadamore@676 | 4505 | super.visitMethodDef(that); |
mcimadamore@676 | 4506 | } |
mcimadamore@676 | 4507 | |
mcimadamore@676 | 4508 | @Override |
mcimadamore@676 | 4509 | public void visitVarDef(JCVariableDecl that) { |
mcimadamore@676 | 4510 | initTypeIfNeeded(that); |
mcimadamore@676 | 4511 | if (that.sym == null) { |
mcimadamore@676 | 4512 | that.sym = new VarSymbol(0, that.name, that.type, syms.noSymbol); |
mcimadamore@676 | 4513 | that.sym.adr = 0; |
mcimadamore@676 | 4514 | } |
mcimadamore@676 | 4515 | super.visitVarDef(that); |
mcimadamore@676 | 4516 | } |
mcimadamore@676 | 4517 | |
mcimadamore@676 | 4518 | @Override |
mcimadamore@676 | 4519 | public void visitNewClass(JCNewClass that) { |
mcimadamore@676 | 4520 | if (that.constructor == null) { |
mcimadamore@676 | 4521 | that.constructor = new MethodSymbol(0, names.init, syms.unknownType, syms.noSymbol); |
mcimadamore@676 | 4522 | } |
mcimadamore@676 | 4523 | if (that.constructorType == null) { |
mcimadamore@676 | 4524 | that.constructorType = syms.unknownType; |
mcimadamore@676 | 4525 | } |
mcimadamore@676 | 4526 | super.visitNewClass(that); |
mcimadamore@676 | 4527 | } |
mcimadamore@676 | 4528 | |
mcimadamore@676 | 4529 | @Override |
jjg@1049 | 4530 | public void visitAssignop(JCAssignOp that) { |
jjg@1049 | 4531 | if (that.operator == null) |
jjg@1049 | 4532 | that.operator = new OperatorSymbol(names.empty, syms.unknownType, -1, syms.noSymbol); |
jjg@1049 | 4533 | super.visitAssignop(that); |
jjg@1049 | 4534 | } |
jjg@1049 | 4535 | |
jjg@1049 | 4536 | @Override |
mcimadamore@676 | 4537 | public void visitBinary(JCBinary that) { |
mcimadamore@676 | 4538 | if (that.operator == null) |
mcimadamore@676 | 4539 | that.operator = new OperatorSymbol(names.empty, syms.unknownType, -1, syms.noSymbol); |
mcimadamore@676 | 4540 | super.visitBinary(that); |
mcimadamore@676 | 4541 | } |
mcimadamore@676 | 4542 | |
mcimadamore@676 | 4543 | @Override |
mcimadamore@676 | 4544 | public void visitUnary(JCUnary that) { |
mcimadamore@676 | 4545 | if (that.operator == null) |
mcimadamore@676 | 4546 | that.operator = new OperatorSymbol(names.empty, syms.unknownType, -1, syms.noSymbol); |
mcimadamore@676 | 4547 | super.visitUnary(that); |
mcimadamore@676 | 4548 | } |
mcimadamore@1352 | 4549 | |
mcimadamore@1352 | 4550 | @Override |
mcimadamore@1510 | 4551 | public void visitLambda(JCLambda that) { |
mcimadamore@1510 | 4552 | super.visitLambda(that); |
mcimadamore@1510 | 4553 | if (that.descriptorType == null) { |
mcimadamore@1510 | 4554 | that.descriptorType = syms.unknownType; |
mcimadamore@1510 | 4555 | } |
mcimadamore@1510 | 4556 | if (that.targets == null) { |
mcimadamore@1510 | 4557 | that.targets = List.nil(); |
mcimadamore@1510 | 4558 | } |
mcimadamore@1510 | 4559 | } |
mcimadamore@1510 | 4560 | |
mcimadamore@1510 | 4561 | @Override |
mcimadamore@1352 | 4562 | public void visitReference(JCMemberReference that) { |
mcimadamore@1352 | 4563 | super.visitReference(that); |
mcimadamore@1352 | 4564 | if (that.sym == null) { |
mcimadamore@1352 | 4565 | that.sym = new MethodSymbol(0, names.empty, syms.unknownType, syms.noSymbol); |
mcimadamore@1352 | 4566 | } |
mcimadamore@1510 | 4567 | if (that.descriptorType == null) { |
mcimadamore@1510 | 4568 | that.descriptorType = syms.unknownType; |
mcimadamore@1510 | 4569 | } |
mcimadamore@1510 | 4570 | if (that.targets == null) { |
mcimadamore@1510 | 4571 | that.targets = List.nil(); |
mcimadamore@1510 | 4572 | } |
mcimadamore@1352 | 4573 | } |
mcimadamore@676 | 4574 | } |
mcimadamore@676 | 4575 | // </editor-fold> |
duke@1 | 4576 | } |