src/share/classes/com/sun/tools/javac/jvm/ClassReader.java

Tue, 08 Nov 2011 17:06:58 -0800

author
jjg
date
Tue, 08 Nov 2011 17:06:58 -0800
changeset 1136
ae361e7f435a
parent 992
dc3d9ef880a1
child 1157
3809292620c9
permissions
-rw-r--r--

7108669: cleanup Log methods for direct printing to streams
Reviewed-by: mcimadamore

duke@1 1 /*
jjg@815 2 * Copyright (c) 1999, 2011, Oracle and/or its affiliates. All rights reserved.
duke@1 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@1 4 *
duke@1 5 * This code is free software; you can redistribute it and/or modify it
duke@1 6 * under the terms of the GNU General Public License version 2 only, as
ohair@554 7 * published by the Free Software Foundation. Oracle designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
ohair@554 9 * by Oracle in the LICENSE file that accompanied this code.
duke@1 10 *
duke@1 11 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@1 12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@1 13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@1 14 * version 2 for more details (a copy is included in the LICENSE file that
duke@1 15 * accompanied this code).
duke@1 16 *
duke@1 17 * You should have received a copy of the GNU General Public License version
duke@1 18 * 2 along with this work; if not, write to the Free Software Foundation,
duke@1 19 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@1 20 *
ohair@554 21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
ohair@554 22 * or visit www.oracle.com if you need additional information or have any
ohair@554 23 * questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.jvm;
duke@1 27
duke@1 28 import java.io.*;
duke@1 29 import java.net.URI;
jjg@400 30 import java.net.URISyntaxException;
duke@1 31 import java.nio.CharBuffer;
jjg@428 32 import java.util.Arrays;
duke@1 33 import java.util.EnumSet;
duke@1 34 import java.util.HashMap;
jjg@776 35 import java.util.HashSet;
duke@1 36 import java.util.Map;
duke@1 37 import java.util.Set;
duke@1 38 import javax.lang.model.SourceVersion;
duke@1 39 import javax.tools.JavaFileObject;
duke@1 40 import javax.tools.JavaFileManager;
jjg@256 41 import javax.tools.JavaFileManager.Location;
duke@1 42 import javax.tools.StandardJavaFileManager;
duke@1 43
jjg@256 44 import static javax.tools.StandardLocation.*;
jjg@256 45
duke@1 46 import com.sun.tools.javac.comp.Annotate;
duke@1 47 import com.sun.tools.javac.code.*;
jjg@776 48 import com.sun.tools.javac.code.Lint.LintCategory;
duke@1 49 import com.sun.tools.javac.code.Type.*;
duke@1 50 import com.sun.tools.javac.code.Symbol.*;
duke@1 51 import com.sun.tools.javac.code.Symtab;
jjg@50 52 import com.sun.tools.javac.file.BaseFileObject;
duke@1 53 import com.sun.tools.javac.util.*;
jjg@776 54 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
duke@1 55
duke@1 56 import static com.sun.tools.javac.code.Flags.*;
duke@1 57 import static com.sun.tools.javac.code.Kinds.*;
duke@1 58 import static com.sun.tools.javac.code.TypeTags.*;
jjg@256 59 import static com.sun.tools.javac.jvm.ClassFile.*;
jjg@256 60 import static com.sun.tools.javac.jvm.ClassFile.Version.*;
duke@1 61
jjg@700 62 import static com.sun.tools.javac.main.OptionName.*;
jjg@700 63
duke@1 64 /** This class provides operations to read a classfile into an internal
duke@1 65 * representation. The internal representation is anchored in a
duke@1 66 * ClassSymbol which contains in its scope symbol representations
duke@1 67 * for all other definitions in the classfile. Top-level Classes themselves
duke@1 68 * appear as members of the scopes of PackageSymbols.
duke@1 69 *
jjg@581 70 * <p><b>This is NOT part of any supported API.
jjg@581 71 * If you write code that depends on this, you do so at your own risk.
duke@1 72 * This code and its internal interfaces are subject to change or
duke@1 73 * deletion without notice.</b>
duke@1 74 */
jjg@256 75 public class ClassReader implements Completer {
duke@1 76 /** The context key for the class reader. */
duke@1 77 protected static final Context.Key<ClassReader> classReaderKey =
duke@1 78 new Context.Key<ClassReader>();
duke@1 79
ksrini@804 80 public static final int INITIAL_BUFFER_SIZE = 0x0fff0;
ksrini@804 81
duke@1 82 Annotate annotate;
duke@1 83
duke@1 84 /** Switch: verbose output.
duke@1 85 */
duke@1 86 boolean verbose;
duke@1 87
duke@1 88 /** Switch: check class file for correct minor version, unrecognized
duke@1 89 * attributes.
duke@1 90 */
duke@1 91 boolean checkClassFile;
duke@1 92
duke@1 93 /** Switch: read constant pool and code sections. This switch is initially
duke@1 94 * set to false but can be turned on from outside.
duke@1 95 */
duke@1 96 public boolean readAllOfClassFile = false;
duke@1 97
duke@1 98 /** Switch: read GJ signature information.
duke@1 99 */
duke@1 100 boolean allowGenerics;
duke@1 101
duke@1 102 /** Switch: read varargs attribute.
duke@1 103 */
duke@1 104 boolean allowVarargs;
duke@1 105
duke@1 106 /** Switch: allow annotations.
duke@1 107 */
duke@1 108 boolean allowAnnotations;
duke@1 109
mcimadamore@795 110 /** Switch: allow simplified varargs.
mcimadamore@795 111 */
mcimadamore@795 112 boolean allowSimplifiedVarargs;
mcimadamore@795 113
mcimadamore@795 114 /** Lint option: warn about classfile issues
jjg@776 115 */
jjg@776 116 boolean lintClassfile;
jjg@776 117
mcimadamore@795 118
duke@1 119 /** Switch: preserve parameter names from the variable table.
duke@1 120 */
duke@1 121 public boolean saveParameterNames;
duke@1 122
duke@1 123 /**
duke@1 124 * Switch: cache completion failures unless -XDdev is used
duke@1 125 */
duke@1 126 private boolean cacheCompletionFailure;
duke@1 127
duke@1 128 /**
duke@1 129 * Switch: prefer source files instead of newer when both source
duke@1 130 * and class are available
duke@1 131 **/
duke@1 132 public boolean preferSource;
duke@1 133
duke@1 134 /** The log to use for verbose output
duke@1 135 */
duke@1 136 final Log log;
duke@1 137
duke@1 138 /** The symbol table. */
duke@1 139 Symtab syms;
duke@1 140
duke@1 141 Types types;
duke@1 142
duke@1 143 /** The name table. */
jjg@113 144 final Names names;
duke@1 145
duke@1 146 /** Force a completion failure on this name
duke@1 147 */
duke@1 148 final Name completionFailureName;
duke@1 149
duke@1 150 /** Access to files
duke@1 151 */
duke@1 152 private final JavaFileManager fileManager;
duke@1 153
jjg@12 154 /** Factory for diagnostics
jjg@12 155 */
jjg@12 156 JCDiagnostic.Factory diagFactory;
jjg@12 157
duke@1 158 /** Can be reassigned from outside:
duke@1 159 * the completer to be used for ".java" files. If this remains unassigned
duke@1 160 * ".java" files will not be loaded.
duke@1 161 */
duke@1 162 public SourceCompleter sourceCompleter = null;
duke@1 163
duke@1 164 /** A hashtable containing the encountered top-level and member classes,
duke@1 165 * indexed by flat names. The table does not contain local classes.
duke@1 166 */
duke@1 167 private Map<Name,ClassSymbol> classes;
duke@1 168
duke@1 169 /** A hashtable containing the encountered packages.
duke@1 170 */
duke@1 171 private Map<Name, PackageSymbol> packages;
duke@1 172
duke@1 173 /** The current scope where type variables are entered.
duke@1 174 */
duke@1 175 protected Scope typevars;
duke@1 176
duke@1 177 /** The path name of the class file currently being read.
duke@1 178 */
duke@1 179 protected JavaFileObject currentClassFile = null;
duke@1 180
duke@1 181 /** The class or method currently being read.
duke@1 182 */
duke@1 183 protected Symbol currentOwner = null;
duke@1 184
duke@1 185 /** The buffer containing the currently read class file.
duke@1 186 */
ksrini@804 187 byte[] buf = new byte[INITIAL_BUFFER_SIZE];
duke@1 188
duke@1 189 /** The current input pointer.
duke@1 190 */
duke@1 191 int bp;
duke@1 192
duke@1 193 /** The objects of the constant pool.
duke@1 194 */
duke@1 195 Object[] poolObj;
duke@1 196
duke@1 197 /** For every constant pool entry, an index into buf where the
duke@1 198 * defining section of the entry is found.
duke@1 199 */
duke@1 200 int[] poolIdx;
duke@1 201
jjg@256 202 /** The major version number of the class file being read. */
jjg@256 203 int majorVersion;
jjg@256 204 /** The minor version number of the class file being read. */
jjg@256 205 int minorVersion;
jjg@256 206
jjg@428 207 /** A table to hold the constant pool indices for method parameter
jjg@428 208 * names, as given in LocalVariableTable attributes.
jjg@428 209 */
jjg@428 210 int[] parameterNameIndices;
jjg@428 211
jjg@428 212 /**
jjg@428 213 * Whether or not any parameter names have been found.
jjg@428 214 */
jjg@428 215 boolean haveParameterNameIndices;
jjg@428 216
jjg@776 217 /**
jjg@776 218 * The set of attribute names for which warnings have been generated for the current class
jjg@776 219 */
jjg@776 220 Set<Name> warnedAttrs = new HashSet<Name>();
jjg@776 221
duke@1 222 /** Get the ClassReader instance for this invocation. */
duke@1 223 public static ClassReader instance(Context context) {
duke@1 224 ClassReader instance = context.get(classReaderKey);
duke@1 225 if (instance == null)
duke@1 226 instance = new ClassReader(context, true);
duke@1 227 return instance;
duke@1 228 }
duke@1 229
duke@1 230 /** Initialize classes and packages, treating this as the definitive classreader. */
duke@1 231 public void init(Symtab syms) {
duke@1 232 init(syms, true);
duke@1 233 }
duke@1 234
duke@1 235 /** Initialize classes and packages, optionally treating this as
duke@1 236 * the definitive classreader.
duke@1 237 */
duke@1 238 private void init(Symtab syms, boolean definitive) {
duke@1 239 if (classes != null) return;
duke@1 240
duke@1 241 if (definitive) {
jjg@816 242 Assert.check(packages == null || packages == syms.packages);
duke@1 243 packages = syms.packages;
jjg@816 244 Assert.check(classes == null || classes == syms.classes);
duke@1 245 classes = syms.classes;
duke@1 246 } else {
duke@1 247 packages = new HashMap<Name, PackageSymbol>();
duke@1 248 classes = new HashMap<Name, ClassSymbol>();
duke@1 249 }
duke@1 250
duke@1 251 packages.put(names.empty, syms.rootPackage);
duke@1 252 syms.rootPackage.completer = this;
duke@1 253 syms.unnamedPackage.completer = this;
duke@1 254 }
duke@1 255
duke@1 256 /** Construct a new class reader, optionally treated as the
duke@1 257 * definitive classreader for this invocation.
duke@1 258 */
duke@1 259 protected ClassReader(Context context, boolean definitive) {
duke@1 260 if (definitive) context.put(classReaderKey, this);
duke@1 261
jjg@113 262 names = Names.instance(context);
duke@1 263 syms = Symtab.instance(context);
duke@1 264 types = Types.instance(context);
duke@1 265 fileManager = context.get(JavaFileManager.class);
duke@1 266 if (fileManager == null)
duke@1 267 throw new AssertionError("FileManager initialization error");
jjg@12 268 diagFactory = JCDiagnostic.Factory.instance(context);
duke@1 269
duke@1 270 init(syms, definitive);
duke@1 271 log = Log.instance(context);
duke@1 272
duke@1 273 Options options = Options.instance(context);
duke@1 274 annotate = Annotate.instance(context);
jjg@700 275 verbose = options.isSet(VERBOSE);
jjg@700 276 checkClassFile = options.isSet("-checkclassfile");
duke@1 277 Source source = Source.instance(context);
duke@1 278 allowGenerics = source.allowGenerics();
duke@1 279 allowVarargs = source.allowVarargs();
duke@1 280 allowAnnotations = source.allowAnnotations();
mcimadamore@795 281 allowSimplifiedVarargs = source.allowSimplifiedVarargs();
jjg@700 282 saveParameterNames = options.isSet("save-parameter-names");
jjg@700 283 cacheCompletionFailure = options.isUnset("dev");
duke@1 284 preferSource = "source".equals(options.get("-Xprefer"));
duke@1 285
duke@1 286 completionFailureName =
jjg@700 287 options.isSet("failcomplete")
duke@1 288 ? names.fromString(options.get("failcomplete"))
duke@1 289 : null;
duke@1 290
duke@1 291 typevars = new Scope(syms.noSymbol);
jjg@256 292
jjg@776 293 lintClassfile = Lint.instance(context).isEnabled(LintCategory.CLASSFILE);
jjg@776 294
jjg@256 295 initAttributeReaders();
duke@1 296 }
duke@1 297
duke@1 298 /** Add member to class unless it is synthetic.
duke@1 299 */
duke@1 300 private void enterMember(ClassSymbol c, Symbol sym) {
duke@1 301 if ((sym.flags_field & (SYNTHETIC|BRIDGE)) != SYNTHETIC)
duke@1 302 c.members_field.enter(sym);
duke@1 303 }
duke@1 304
duke@1 305 /************************************************************************
duke@1 306 * Error Diagnoses
duke@1 307 ***********************************************************************/
duke@1 308
jjg@12 309
jjg@12 310 public class BadClassFile extends CompletionFailure {
duke@1 311 private static final long serialVersionUID = 0;
duke@1 312
jjg@12 313 public BadClassFile(TypeSymbol sym, JavaFileObject file, JCDiagnostic diag) {
jjg@12 314 super(sym, createBadClassFileDiagnostic(file, diag));
duke@1 315 }
duke@1 316 }
jjg@12 317 // where
jjg@12 318 private JCDiagnostic createBadClassFileDiagnostic(JavaFileObject file, JCDiagnostic diag) {
jjg@12 319 String key = (file.getKind() == JavaFileObject.Kind.SOURCE
jjg@12 320 ? "bad.source.file.header" : "bad.class.file.header");
jjg@12 321 return diagFactory.fragment(key, file, diag);
jjg@12 322 }
duke@1 323
duke@1 324 public BadClassFile badClassFile(String key, Object... args) {
duke@1 325 return new BadClassFile (
duke@1 326 currentOwner.enclClass(),
duke@1 327 currentClassFile,
jjg@12 328 diagFactory.fragment(key, args));
duke@1 329 }
duke@1 330
duke@1 331 /************************************************************************
duke@1 332 * Buffer Access
duke@1 333 ***********************************************************************/
duke@1 334
duke@1 335 /** Read a character.
duke@1 336 */
duke@1 337 char nextChar() {
duke@1 338 return (char)(((buf[bp++] & 0xFF) << 8) + (buf[bp++] & 0xFF));
duke@1 339 }
duke@1 340
jjg@308 341 /** Read a byte.
jjg@308 342 */
jjg@308 343 byte nextByte() {
jjg@308 344 return buf[bp++];
jjg@308 345 }
jjg@308 346
duke@1 347 /** Read an integer.
duke@1 348 */
duke@1 349 int nextInt() {
duke@1 350 return
duke@1 351 ((buf[bp++] & 0xFF) << 24) +
duke@1 352 ((buf[bp++] & 0xFF) << 16) +
duke@1 353 ((buf[bp++] & 0xFF) << 8) +
duke@1 354 (buf[bp++] & 0xFF);
duke@1 355 }
duke@1 356
duke@1 357 /** Extract a character at position bp from buf.
duke@1 358 */
duke@1 359 char getChar(int bp) {
duke@1 360 return
duke@1 361 (char)(((buf[bp] & 0xFF) << 8) + (buf[bp+1] & 0xFF));
duke@1 362 }
duke@1 363
duke@1 364 /** Extract an integer at position bp from buf.
duke@1 365 */
duke@1 366 int getInt(int bp) {
duke@1 367 return
duke@1 368 ((buf[bp] & 0xFF) << 24) +
duke@1 369 ((buf[bp+1] & 0xFF) << 16) +
duke@1 370 ((buf[bp+2] & 0xFF) << 8) +
duke@1 371 (buf[bp+3] & 0xFF);
duke@1 372 }
duke@1 373
duke@1 374
duke@1 375 /** Extract a long integer at position bp from buf.
duke@1 376 */
duke@1 377 long getLong(int bp) {
duke@1 378 DataInputStream bufin =
duke@1 379 new DataInputStream(new ByteArrayInputStream(buf, bp, 8));
duke@1 380 try {
duke@1 381 return bufin.readLong();
duke@1 382 } catch (IOException e) {
duke@1 383 throw new AssertionError(e);
duke@1 384 }
duke@1 385 }
duke@1 386
duke@1 387 /** Extract a float at position bp from buf.
duke@1 388 */
duke@1 389 float getFloat(int bp) {
duke@1 390 DataInputStream bufin =
duke@1 391 new DataInputStream(new ByteArrayInputStream(buf, bp, 4));
duke@1 392 try {
duke@1 393 return bufin.readFloat();
duke@1 394 } catch (IOException e) {
duke@1 395 throw new AssertionError(e);
duke@1 396 }
duke@1 397 }
duke@1 398
duke@1 399 /** Extract a double at position bp from buf.
duke@1 400 */
duke@1 401 double getDouble(int bp) {
duke@1 402 DataInputStream bufin =
duke@1 403 new DataInputStream(new ByteArrayInputStream(buf, bp, 8));
duke@1 404 try {
duke@1 405 return bufin.readDouble();
duke@1 406 } catch (IOException e) {
duke@1 407 throw new AssertionError(e);
duke@1 408 }
duke@1 409 }
duke@1 410
duke@1 411 /************************************************************************
duke@1 412 * Constant Pool Access
duke@1 413 ***********************************************************************/
duke@1 414
duke@1 415 /** Index all constant pool entries, writing their start addresses into
duke@1 416 * poolIdx.
duke@1 417 */
duke@1 418 void indexPool() {
duke@1 419 poolIdx = new int[nextChar()];
duke@1 420 poolObj = new Object[poolIdx.length];
duke@1 421 int i = 1;
duke@1 422 while (i < poolIdx.length) {
duke@1 423 poolIdx[i++] = bp;
duke@1 424 byte tag = buf[bp++];
duke@1 425 switch (tag) {
duke@1 426 case CONSTANT_Utf8: case CONSTANT_Unicode: {
duke@1 427 int len = nextChar();
duke@1 428 bp = bp + len;
duke@1 429 break;
duke@1 430 }
duke@1 431 case CONSTANT_Class:
duke@1 432 case CONSTANT_String:
ksrini@826 433 case CONSTANT_MethodType:
duke@1 434 bp = bp + 2;
duke@1 435 break;
ksrini@826 436 case CONSTANT_MethodHandle:
ksrini@826 437 bp = bp + 3;
ksrini@826 438 break;
duke@1 439 case CONSTANT_Fieldref:
duke@1 440 case CONSTANT_Methodref:
duke@1 441 case CONSTANT_InterfaceMethodref:
duke@1 442 case CONSTANT_NameandType:
duke@1 443 case CONSTANT_Integer:
duke@1 444 case CONSTANT_Float:
ksrini@826 445 case CONSTANT_InvokeDynamic:
duke@1 446 bp = bp + 4;
duke@1 447 break;
duke@1 448 case CONSTANT_Long:
duke@1 449 case CONSTANT_Double:
duke@1 450 bp = bp + 8;
duke@1 451 i++;
duke@1 452 break;
duke@1 453 default:
duke@1 454 throw badClassFile("bad.const.pool.tag.at",
duke@1 455 Byte.toString(tag),
duke@1 456 Integer.toString(bp -1));
duke@1 457 }
duke@1 458 }
duke@1 459 }
duke@1 460
duke@1 461 /** Read constant pool entry at start address i, use pool as a cache.
duke@1 462 */
duke@1 463 Object readPool(int i) {
duke@1 464 Object result = poolObj[i];
duke@1 465 if (result != null) return result;
duke@1 466
duke@1 467 int index = poolIdx[i];
duke@1 468 if (index == 0) return null;
duke@1 469
duke@1 470 byte tag = buf[index];
duke@1 471 switch (tag) {
duke@1 472 case CONSTANT_Utf8:
duke@1 473 poolObj[i] = names.fromUtf(buf, index + 3, getChar(index + 1));
duke@1 474 break;
duke@1 475 case CONSTANT_Unicode:
duke@1 476 throw badClassFile("unicode.str.not.supported");
duke@1 477 case CONSTANT_Class:
duke@1 478 poolObj[i] = readClassOrType(getChar(index + 1));
duke@1 479 break;
duke@1 480 case CONSTANT_String:
duke@1 481 // FIXME: (footprint) do not use toString here
duke@1 482 poolObj[i] = readName(getChar(index + 1)).toString();
duke@1 483 break;
duke@1 484 case CONSTANT_Fieldref: {
duke@1 485 ClassSymbol owner = readClassSymbol(getChar(index + 1));
duke@1 486 NameAndType nt = (NameAndType)readPool(getChar(index + 3));
duke@1 487 poolObj[i] = new VarSymbol(0, nt.name, nt.type, owner);
duke@1 488 break;
duke@1 489 }
duke@1 490 case CONSTANT_Methodref:
duke@1 491 case CONSTANT_InterfaceMethodref: {
duke@1 492 ClassSymbol owner = readClassSymbol(getChar(index + 1));
duke@1 493 NameAndType nt = (NameAndType)readPool(getChar(index + 3));
duke@1 494 poolObj[i] = new MethodSymbol(0, nt.name, nt.type, owner);
duke@1 495 break;
duke@1 496 }
duke@1 497 case CONSTANT_NameandType:
duke@1 498 poolObj[i] = new NameAndType(
duke@1 499 readName(getChar(index + 1)),
duke@1 500 readType(getChar(index + 3)));
duke@1 501 break;
duke@1 502 case CONSTANT_Integer:
duke@1 503 poolObj[i] = getInt(index + 1);
duke@1 504 break;
duke@1 505 case CONSTANT_Float:
duke@1 506 poolObj[i] = new Float(getFloat(index + 1));
duke@1 507 break;
duke@1 508 case CONSTANT_Long:
duke@1 509 poolObj[i] = new Long(getLong(index + 1));
duke@1 510 break;
duke@1 511 case CONSTANT_Double:
duke@1 512 poolObj[i] = new Double(getDouble(index + 1));
duke@1 513 break;
ksrini@826 514 case CONSTANT_MethodHandle:
ksrini@826 515 skipBytes(4);
ksrini@826 516 break;
ksrini@826 517 case CONSTANT_MethodType:
ksrini@826 518 skipBytes(3);
ksrini@826 519 break;
ksrini@826 520 case CONSTANT_InvokeDynamic:
ksrini@826 521 skipBytes(5);
ksrini@826 522 break;
duke@1 523 default:
duke@1 524 throw badClassFile("bad.const.pool.tag", Byte.toString(tag));
duke@1 525 }
duke@1 526 return poolObj[i];
duke@1 527 }
duke@1 528
duke@1 529 /** Read signature and convert to type.
duke@1 530 */
duke@1 531 Type readType(int i) {
duke@1 532 int index = poolIdx[i];
duke@1 533 return sigToType(buf, index + 3, getChar(index + 1));
duke@1 534 }
duke@1 535
duke@1 536 /** If name is an array type or class signature, return the
duke@1 537 * corresponding type; otherwise return a ClassSymbol with given name.
duke@1 538 */
duke@1 539 Object readClassOrType(int i) {
duke@1 540 int index = poolIdx[i];
duke@1 541 int len = getChar(index + 1);
duke@1 542 int start = index + 3;
jjg@816 543 Assert.check(buf[start] == '[' || buf[start + len - 1] != ';');
duke@1 544 // by the above assertion, the following test can be
duke@1 545 // simplified to (buf[start] == '[')
duke@1 546 return (buf[start] == '[' || buf[start + len - 1] == ';')
duke@1 547 ? (Object)sigToType(buf, start, len)
duke@1 548 : (Object)enterClass(names.fromUtf(internalize(buf, start,
duke@1 549 len)));
duke@1 550 }
duke@1 551
duke@1 552 /** Read signature and convert to type parameters.
duke@1 553 */
duke@1 554 List<Type> readTypeParams(int i) {
duke@1 555 int index = poolIdx[i];
duke@1 556 return sigToTypeParams(buf, index + 3, getChar(index + 1));
duke@1 557 }
duke@1 558
duke@1 559 /** Read class entry.
duke@1 560 */
duke@1 561 ClassSymbol readClassSymbol(int i) {
duke@1 562 return (ClassSymbol) (readPool(i));
duke@1 563 }
duke@1 564
duke@1 565 /** Read name.
duke@1 566 */
duke@1 567 Name readName(int i) {
duke@1 568 return (Name) (readPool(i));
duke@1 569 }
duke@1 570
duke@1 571 /************************************************************************
duke@1 572 * Reading Types
duke@1 573 ***********************************************************************/
duke@1 574
duke@1 575 /** The unread portion of the currently read type is
duke@1 576 * signature[sigp..siglimit-1].
duke@1 577 */
duke@1 578 byte[] signature;
duke@1 579 int sigp;
duke@1 580 int siglimit;
duke@1 581 boolean sigEnterPhase = false;
duke@1 582
duke@1 583 /** Convert signature to type, where signature is a byte array segment.
duke@1 584 */
duke@1 585 Type sigToType(byte[] sig, int offset, int len) {
duke@1 586 signature = sig;
duke@1 587 sigp = offset;
duke@1 588 siglimit = offset + len;
duke@1 589 return sigToType();
duke@1 590 }
duke@1 591
duke@1 592 /** Convert signature to type, where signature is implicit.
duke@1 593 */
duke@1 594 Type sigToType() {
duke@1 595 switch ((char) signature[sigp]) {
duke@1 596 case 'T':
duke@1 597 sigp++;
duke@1 598 int start = sigp;
duke@1 599 while (signature[sigp] != ';') sigp++;
duke@1 600 sigp++;
duke@1 601 return sigEnterPhase
duke@1 602 ? Type.noType
duke@1 603 : findTypeVar(names.fromUtf(signature, start, sigp - 1 - start));
duke@1 604 case '+': {
duke@1 605 sigp++;
duke@1 606 Type t = sigToType();
duke@1 607 return new WildcardType(t, BoundKind.EXTENDS,
duke@1 608 syms.boundClass);
duke@1 609 }
duke@1 610 case '*':
duke@1 611 sigp++;
duke@1 612 return new WildcardType(syms.objectType, BoundKind.UNBOUND,
duke@1 613 syms.boundClass);
duke@1 614 case '-': {
duke@1 615 sigp++;
duke@1 616 Type t = sigToType();
duke@1 617 return new WildcardType(t, BoundKind.SUPER,
duke@1 618 syms.boundClass);
duke@1 619 }
duke@1 620 case 'B':
duke@1 621 sigp++;
duke@1 622 return syms.byteType;
duke@1 623 case 'C':
duke@1 624 sigp++;
duke@1 625 return syms.charType;
duke@1 626 case 'D':
duke@1 627 sigp++;
duke@1 628 return syms.doubleType;
duke@1 629 case 'F':
duke@1 630 sigp++;
duke@1 631 return syms.floatType;
duke@1 632 case 'I':
duke@1 633 sigp++;
duke@1 634 return syms.intType;
duke@1 635 case 'J':
duke@1 636 sigp++;
duke@1 637 return syms.longType;
duke@1 638 case 'L':
duke@1 639 {
duke@1 640 // int oldsigp = sigp;
duke@1 641 Type t = classSigToType();
duke@1 642 if (sigp < siglimit && signature[sigp] == '.')
duke@1 643 throw badClassFile("deprecated inner class signature syntax " +
duke@1 644 "(please recompile from source)");
duke@1 645 /*
duke@1 646 System.err.println(" decoded " +
duke@1 647 new String(signature, oldsigp, sigp-oldsigp) +
duke@1 648 " => " + t + " outer " + t.outer());
duke@1 649 */
duke@1 650 return t;
duke@1 651 }
duke@1 652 case 'S':
duke@1 653 sigp++;
duke@1 654 return syms.shortType;
duke@1 655 case 'V':
duke@1 656 sigp++;
duke@1 657 return syms.voidType;
duke@1 658 case 'Z':
duke@1 659 sigp++;
duke@1 660 return syms.booleanType;
duke@1 661 case '[':
duke@1 662 sigp++;
duke@1 663 return new ArrayType(sigToType(), syms.arrayClass);
duke@1 664 case '(':
duke@1 665 sigp++;
duke@1 666 List<Type> argtypes = sigToTypes(')');
duke@1 667 Type restype = sigToType();
duke@1 668 List<Type> thrown = List.nil();
duke@1 669 while (signature[sigp] == '^') {
duke@1 670 sigp++;
duke@1 671 thrown = thrown.prepend(sigToType());
duke@1 672 }
duke@1 673 return new MethodType(argtypes,
duke@1 674 restype,
duke@1 675 thrown.reverse(),
duke@1 676 syms.methodClass);
duke@1 677 case '<':
duke@1 678 typevars = typevars.dup(currentOwner);
duke@1 679 Type poly = new ForAll(sigToTypeParams(), sigToType());
duke@1 680 typevars = typevars.leave();
duke@1 681 return poly;
duke@1 682 default:
duke@1 683 throw badClassFile("bad.signature",
duke@1 684 Convert.utf2string(signature, sigp, 10));
duke@1 685 }
duke@1 686 }
duke@1 687
duke@1 688 byte[] signatureBuffer = new byte[0];
duke@1 689 int sbp = 0;
duke@1 690 /** Convert class signature to type, where signature is implicit.
duke@1 691 */
duke@1 692 Type classSigToType() {
duke@1 693 if (signature[sigp] != 'L')
duke@1 694 throw badClassFile("bad.class.signature",
duke@1 695 Convert.utf2string(signature, sigp, 10));
duke@1 696 sigp++;
duke@1 697 Type outer = Type.noType;
duke@1 698 int startSbp = sbp;
duke@1 699
duke@1 700 while (true) {
duke@1 701 final byte c = signature[sigp++];
duke@1 702 switch (c) {
duke@1 703
duke@1 704 case ';': { // end
duke@1 705 ClassSymbol t = enterClass(names.fromUtf(signatureBuffer,
duke@1 706 startSbp,
duke@1 707 sbp - startSbp));
duke@1 708 if (outer == Type.noType)
duke@1 709 outer = t.erasure(types);
duke@1 710 else
duke@1 711 outer = new ClassType(outer, List.<Type>nil(), t);
duke@1 712 sbp = startSbp;
duke@1 713 return outer;
duke@1 714 }
duke@1 715
duke@1 716 case '<': // generic arguments
duke@1 717 ClassSymbol t = enterClass(names.fromUtf(signatureBuffer,
duke@1 718 startSbp,
duke@1 719 sbp - startSbp));
duke@1 720 outer = new ClassType(outer, sigToTypes('>'), t) {
duke@1 721 boolean completed = false;
jjg@256 722 @Override
duke@1 723 public Type getEnclosingType() {
duke@1 724 if (!completed) {
duke@1 725 completed = true;
duke@1 726 tsym.complete();
duke@1 727 Type enclosingType = tsym.type.getEnclosingType();
duke@1 728 if (enclosingType != Type.noType) {
duke@1 729 List<Type> typeArgs =
duke@1 730 super.getEnclosingType().allparams();
duke@1 731 List<Type> typeParams =
duke@1 732 enclosingType.allparams();
duke@1 733 if (typeParams.length() != typeArgs.length()) {
duke@1 734 // no "rare" types
duke@1 735 super.setEnclosingType(types.erasure(enclosingType));
duke@1 736 } else {
duke@1 737 super.setEnclosingType(types.subst(enclosingType,
duke@1 738 typeParams,
duke@1 739 typeArgs));
duke@1 740 }
duke@1 741 } else {
duke@1 742 super.setEnclosingType(Type.noType);
duke@1 743 }
duke@1 744 }
duke@1 745 return super.getEnclosingType();
duke@1 746 }
jjg@256 747 @Override
duke@1 748 public void setEnclosingType(Type outer) {
duke@1 749 throw new UnsupportedOperationException();
duke@1 750 }
duke@1 751 };
duke@1 752 switch (signature[sigp++]) {
duke@1 753 case ';':
duke@1 754 if (sigp < signature.length && signature[sigp] == '.') {
duke@1 755 // support old-style GJC signatures
duke@1 756 // The signature produced was
duke@1 757 // Lfoo/Outer<Lfoo/X;>;.Lfoo/Outer$Inner<Lfoo/Y;>;
duke@1 758 // rather than say
duke@1 759 // Lfoo/Outer<Lfoo/X;>.Inner<Lfoo/Y;>;
duke@1 760 // so we skip past ".Lfoo/Outer$"
duke@1 761 sigp += (sbp - startSbp) + // "foo/Outer"
duke@1 762 3; // ".L" and "$"
duke@1 763 signatureBuffer[sbp++] = (byte)'$';
duke@1 764 break;
duke@1 765 } else {
duke@1 766 sbp = startSbp;
duke@1 767 return outer;
duke@1 768 }
duke@1 769 case '.':
duke@1 770 signatureBuffer[sbp++] = (byte)'$';
duke@1 771 break;
duke@1 772 default:
duke@1 773 throw new AssertionError(signature[sigp-1]);
duke@1 774 }
duke@1 775 continue;
duke@1 776
duke@1 777 case '.':
duke@1 778 signatureBuffer[sbp++] = (byte)'$';
duke@1 779 continue;
duke@1 780 case '/':
duke@1 781 signatureBuffer[sbp++] = (byte)'.';
duke@1 782 continue;
duke@1 783 default:
duke@1 784 signatureBuffer[sbp++] = c;
duke@1 785 continue;
duke@1 786 }
duke@1 787 }
duke@1 788 }
duke@1 789
duke@1 790 /** Convert (implicit) signature to list of types
duke@1 791 * until `terminator' is encountered.
duke@1 792 */
duke@1 793 List<Type> sigToTypes(char terminator) {
duke@1 794 List<Type> head = List.of(null);
duke@1 795 List<Type> tail = head;
duke@1 796 while (signature[sigp] != terminator)
duke@1 797 tail = tail.setTail(List.of(sigToType()));
duke@1 798 sigp++;
duke@1 799 return head.tail;
duke@1 800 }
duke@1 801
duke@1 802 /** Convert signature to type parameters, where signature is a byte
duke@1 803 * array segment.
duke@1 804 */
duke@1 805 List<Type> sigToTypeParams(byte[] sig, int offset, int len) {
duke@1 806 signature = sig;
duke@1 807 sigp = offset;
duke@1 808 siglimit = offset + len;
duke@1 809 return sigToTypeParams();
duke@1 810 }
duke@1 811
duke@1 812 /** Convert signature to type parameters, where signature is implicit.
duke@1 813 */
duke@1 814 List<Type> sigToTypeParams() {
duke@1 815 List<Type> tvars = List.nil();
duke@1 816 if (signature[sigp] == '<') {
duke@1 817 sigp++;
duke@1 818 int start = sigp;
duke@1 819 sigEnterPhase = true;
duke@1 820 while (signature[sigp] != '>')
duke@1 821 tvars = tvars.prepend(sigToTypeParam());
duke@1 822 sigEnterPhase = false;
duke@1 823 sigp = start;
duke@1 824 while (signature[sigp] != '>')
duke@1 825 sigToTypeParam();
duke@1 826 sigp++;
duke@1 827 }
duke@1 828 return tvars.reverse();
duke@1 829 }
duke@1 830
duke@1 831 /** Convert (implicit) signature to type parameter.
duke@1 832 */
duke@1 833 Type sigToTypeParam() {
duke@1 834 int start = sigp;
duke@1 835 while (signature[sigp] != ':') sigp++;
duke@1 836 Name name = names.fromUtf(signature, start, sigp - start);
duke@1 837 TypeVar tvar;
duke@1 838 if (sigEnterPhase) {
duke@1 839 tvar = new TypeVar(name, currentOwner, syms.botType);
duke@1 840 typevars.enter(tvar.tsym);
duke@1 841 } else {
duke@1 842 tvar = (TypeVar)findTypeVar(name);
duke@1 843 }
duke@1 844 List<Type> bounds = List.nil();
duke@1 845 Type st = null;
duke@1 846 if (signature[sigp] == ':' && signature[sigp+1] == ':') {
duke@1 847 sigp++;
duke@1 848 st = syms.objectType;
duke@1 849 }
duke@1 850 while (signature[sigp] == ':') {
duke@1 851 sigp++;
duke@1 852 bounds = bounds.prepend(sigToType());
duke@1 853 }
duke@1 854 if (!sigEnterPhase) {
duke@1 855 types.setBounds(tvar, bounds.reverse(), st);
duke@1 856 }
duke@1 857 return tvar;
duke@1 858 }
duke@1 859
duke@1 860 /** Find type variable with given name in `typevars' scope.
duke@1 861 */
duke@1 862 Type findTypeVar(Name name) {
duke@1 863 Scope.Entry e = typevars.lookup(name);
duke@1 864 if (e.scope != null) {
duke@1 865 return e.sym.type;
duke@1 866 } else {
duke@1 867 if (readingClassAttr) {
duke@1 868 // While reading the class attribute, the supertypes
duke@1 869 // might refer to a type variable from an enclosing element
duke@1 870 // (method or class).
duke@1 871 // If the type variable is defined in the enclosing class,
duke@1 872 // we can actually find it in
duke@1 873 // currentOwner.owner.type.getTypeArguments()
duke@1 874 // However, until we have read the enclosing method attribute
duke@1 875 // we don't know for sure if this owner is correct. It could
duke@1 876 // be a method and there is no way to tell before reading the
duke@1 877 // enclosing method attribute.
duke@1 878 TypeVar t = new TypeVar(name, currentOwner, syms.botType);
duke@1 879 missingTypeVariables = missingTypeVariables.prepend(t);
duke@1 880 // System.err.println("Missing type var " + name);
duke@1 881 return t;
duke@1 882 }
duke@1 883 throw badClassFile("undecl.type.var", name);
duke@1 884 }
duke@1 885 }
duke@1 886
duke@1 887 /************************************************************************
duke@1 888 * Reading Attributes
duke@1 889 ***********************************************************************/
duke@1 890
jjg@256 891 protected enum AttributeKind { CLASS, MEMBER };
jjg@256 892 protected abstract class AttributeReader {
jjg@784 893 AttributeReader(Name name, ClassFile.Version version, Set<AttributeKind> kinds) {
jjg@256 894 this.name = name;
jjg@256 895 this.version = version;
jjg@256 896 this.kinds = kinds;
jjg@256 897 }
jjg@256 898
jjg@256 899 boolean accepts(AttributeKind kind) {
jjg@776 900 if (kinds.contains(kind)) {
jjg@776 901 if (majorVersion > version.major || (majorVersion == version.major && minorVersion >= version.minor))
jjg@776 902 return true;
jjg@776 903
jjg@776 904 if (lintClassfile && !warnedAttrs.contains(name)) {
jjg@776 905 JavaFileObject prev = log.useSource(currentClassFile);
jjg@776 906 try {
jjg@776 907 log.warning(LintCategory.CLASSFILE, (DiagnosticPosition) null, "future.attr",
jjg@776 908 name, version.major, version.minor, majorVersion, minorVersion);
jjg@776 909 } finally {
jjg@776 910 log.useSource(prev);
jjg@776 911 }
jjg@776 912 warnedAttrs.add(name);
jjg@776 913 }
jjg@776 914 }
jjg@776 915 return false;
jjg@256 916 }
jjg@256 917
jjg@256 918 abstract void read(Symbol sym, int attrLen);
jjg@256 919
jjg@256 920 final Name name;
jjg@784 921 final ClassFile.Version version;
jjg@256 922 final Set<AttributeKind> kinds;
jjg@256 923 }
jjg@256 924
jjg@256 925 protected Set<AttributeKind> CLASS_ATTRIBUTE =
jjg@256 926 EnumSet.of(AttributeKind.CLASS);
jjg@256 927 protected Set<AttributeKind> MEMBER_ATTRIBUTE =
jjg@256 928 EnumSet.of(AttributeKind.MEMBER);
jjg@256 929 protected Set<AttributeKind> CLASS_OR_MEMBER_ATTRIBUTE =
jjg@256 930 EnumSet.of(AttributeKind.CLASS, AttributeKind.MEMBER);
jjg@256 931
jjg@256 932 protected Map<Name, AttributeReader> attributeReaders = new HashMap<Name, AttributeReader>();
jjg@256 933
jjg@776 934 private void initAttributeReaders() {
jjg@256 935 AttributeReader[] readers = {
jjg@256 936 // v45.3 attributes
jjg@256 937
jjg@256 938 new AttributeReader(names.Code, V45_3, MEMBER_ATTRIBUTE) {
jjg@256 939 void read(Symbol sym, int attrLen) {
jjg@256 940 if (readAllOfClassFile || saveParameterNames)
jjg@256 941 ((MethodSymbol)sym).code = readCode(sym);
jjg@256 942 else
jjg@256 943 bp = bp + attrLen;
jjg@256 944 }
jjg@256 945 },
jjg@256 946
jjg@256 947 new AttributeReader(names.ConstantValue, V45_3, MEMBER_ATTRIBUTE) {
jjg@256 948 void read(Symbol sym, int attrLen) {
jjg@256 949 Object v = readPool(nextChar());
jjg@256 950 // Ignore ConstantValue attribute if field not final.
jjg@256 951 if ((sym.flags() & FINAL) != 0)
jjg@256 952 ((VarSymbol) sym).setData(v);
jjg@256 953 }
jjg@256 954 },
jjg@256 955
jjg@256 956 new AttributeReader(names.Deprecated, V45_3, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 957 void read(Symbol sym, int attrLen) {
jjg@256 958 sym.flags_field |= DEPRECATED;
jjg@256 959 }
jjg@256 960 },
jjg@256 961
jjg@256 962 new AttributeReader(names.Exceptions, V45_3, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 963 void read(Symbol sym, int attrLen) {
jjg@256 964 int nexceptions = nextChar();
jjg@256 965 List<Type> thrown = List.nil();
jjg@256 966 for (int j = 0; j < nexceptions; j++)
jjg@256 967 thrown = thrown.prepend(readClassSymbol(nextChar()).type);
jjg@256 968 if (sym.type.getThrownTypes().isEmpty())
jjg@256 969 sym.type.asMethodType().thrown = thrown.reverse();
jjg@256 970 }
jjg@256 971 },
jjg@256 972
jjg@256 973 new AttributeReader(names.InnerClasses, V45_3, CLASS_ATTRIBUTE) {
jjg@256 974 void read(Symbol sym, int attrLen) {
jjg@256 975 ClassSymbol c = (ClassSymbol) sym;
jjg@256 976 readInnerClasses(c);
jjg@256 977 }
jjg@256 978 },
jjg@256 979
jjg@256 980 new AttributeReader(names.LocalVariableTable, V45_3, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 981 void read(Symbol sym, int attrLen) {
jjg@256 982 int newbp = bp + attrLen;
jjg@256 983 if (saveParameterNames) {
jjg@428 984 // Pick up parameter names from the variable table.
jjg@428 985 // Parameter names are not explicitly identified as such,
jjg@428 986 // but all parameter name entries in the LocalVariableTable
jjg@428 987 // have a start_pc of 0. Therefore, we record the name
jjg@428 988 // indicies of all slots with a start_pc of zero in the
jjg@428 989 // parameterNameIndicies array.
jjg@428 990 // Note that this implicitly honors the JVMS spec that
jjg@428 991 // there may be more than one LocalVariableTable, and that
jjg@428 992 // there is no specified ordering for the entries.
jjg@256 993 int numEntries = nextChar();
jjg@428 994 for (int i = 0; i < numEntries; i++) {
jjg@256 995 int start_pc = nextChar();
jjg@256 996 int length = nextChar();
jjg@256 997 int nameIndex = nextChar();
jjg@256 998 int sigIndex = nextChar();
jjg@256 999 int register = nextChar();
jjg@428 1000 if (start_pc == 0) {
jjg@428 1001 // ensure array large enough
jjg@428 1002 if (register >= parameterNameIndices.length) {
jjg@428 1003 int newSize = Math.max(register, parameterNameIndices.length + 8);
jjg@428 1004 parameterNameIndices =
jjg@428 1005 Arrays.copyOf(parameterNameIndices, newSize);
jjg@256 1006 }
jjg@428 1007 parameterNameIndices[register] = nameIndex;
jjg@428 1008 haveParameterNameIndices = true;
jjg@256 1009 }
jjg@256 1010 }
jjg@256 1011 }
jjg@256 1012 bp = newbp;
jjg@256 1013 }
jjg@256 1014 },
jjg@256 1015
jjg@256 1016 new AttributeReader(names.SourceFile, V45_3, CLASS_ATTRIBUTE) {
jjg@256 1017 void read(Symbol sym, int attrLen) {
jjg@256 1018 ClassSymbol c = (ClassSymbol) sym;
jjg@256 1019 Name n = readName(nextChar());
jjg@256 1020 c.sourcefile = new SourceFileObject(n, c.flatname);
jjg@256 1021 }
jjg@256 1022 },
jjg@256 1023
jjg@256 1024 new AttributeReader(names.Synthetic, V45_3, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1025 void read(Symbol sym, int attrLen) {
jjg@256 1026 // bridge methods are visible when generics not enabled
jjg@256 1027 if (allowGenerics || (sym.flags_field & BRIDGE) == 0)
jjg@256 1028 sym.flags_field |= SYNTHETIC;
jjg@256 1029 }
jjg@256 1030 },
jjg@256 1031
jjg@256 1032 // standard v49 attributes
jjg@256 1033
jjg@256 1034 new AttributeReader(names.EnclosingMethod, V49, CLASS_ATTRIBUTE) {
jjg@256 1035 void read(Symbol sym, int attrLen) {
jjg@256 1036 int newbp = bp + attrLen;
jjg@256 1037 readEnclosingMethodAttr(sym);
jjg@256 1038 bp = newbp;
jjg@256 1039 }
jjg@256 1040 },
jjg@256 1041
jjg@256 1042 new AttributeReader(names.Signature, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1043 @Override
jjg@256 1044 boolean accepts(AttributeKind kind) {
jjg@256 1045 return super.accepts(kind) && allowGenerics;
jjg@256 1046 }
jjg@256 1047
jjg@256 1048 void read(Symbol sym, int attrLen) {
jjg@256 1049 if (sym.kind == TYP) {
jjg@256 1050 ClassSymbol c = (ClassSymbol) sym;
jjg@256 1051 readingClassAttr = true;
jjg@256 1052 try {
jjg@256 1053 ClassType ct1 = (ClassType)c.type;
jjg@816 1054 Assert.check(c == currentOwner);
jjg@256 1055 ct1.typarams_field = readTypeParams(nextChar());
jjg@256 1056 ct1.supertype_field = sigToType();
jjg@256 1057 ListBuffer<Type> is = new ListBuffer<Type>();
jjg@256 1058 while (sigp != siglimit) is.append(sigToType());
jjg@256 1059 ct1.interfaces_field = is.toList();
jjg@256 1060 } finally {
jjg@256 1061 readingClassAttr = false;
jjg@256 1062 }
jjg@256 1063 } else {
jjg@256 1064 List<Type> thrown = sym.type.getThrownTypes();
jjg@256 1065 sym.type = readType(nextChar());
jjg@256 1066 //- System.err.println(" # " + sym.type);
jjg@256 1067 if (sym.kind == MTH && sym.type.getThrownTypes().isEmpty())
jjg@256 1068 sym.type.asMethodType().thrown = thrown;
jjg@256 1069
jjg@256 1070 }
jjg@256 1071 }
jjg@256 1072 },
jjg@256 1073
jjg@256 1074 // v49 annotation attributes
jjg@256 1075
jjg@256 1076 new AttributeReader(names.AnnotationDefault, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1077 void read(Symbol sym, int attrLen) {
jjg@256 1078 attachAnnotationDefault(sym);
jjg@256 1079 }
jjg@256 1080 },
jjg@256 1081
jjg@256 1082 new AttributeReader(names.RuntimeInvisibleAnnotations, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1083 void read(Symbol sym, int attrLen) {
jjg@256 1084 attachAnnotations(sym);
jjg@256 1085 }
jjg@256 1086 },
jjg@256 1087
jjg@256 1088 new AttributeReader(names.RuntimeInvisibleParameterAnnotations, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1089 void read(Symbol sym, int attrLen) {
jjg@256 1090 attachParameterAnnotations(sym);
jjg@256 1091 }
jjg@256 1092 },
jjg@256 1093
jjg@256 1094 new AttributeReader(names.RuntimeVisibleAnnotations, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1095 void read(Symbol sym, int attrLen) {
jjg@256 1096 attachAnnotations(sym);
jjg@256 1097 }
jjg@256 1098 },
jjg@256 1099
jjg@256 1100 new AttributeReader(names.RuntimeVisibleParameterAnnotations, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1101 void read(Symbol sym, int attrLen) {
jjg@256 1102 attachParameterAnnotations(sym);
jjg@256 1103 }
jjg@256 1104 },
jjg@256 1105
jjg@256 1106 // additional "legacy" v49 attributes, superceded by flags
jjg@256 1107
jjg@256 1108 new AttributeReader(names.Annotation, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1109 void read(Symbol sym, int attrLen) {
jjg@256 1110 if (allowAnnotations)
jjg@256 1111 sym.flags_field |= ANNOTATION;
jjg@256 1112 }
jjg@256 1113 },
jjg@256 1114
jjg@256 1115 new AttributeReader(names.Bridge, V49, MEMBER_ATTRIBUTE) {
jjg@256 1116 void read(Symbol sym, int attrLen) {
jjg@256 1117 sym.flags_field |= BRIDGE;
jjg@256 1118 if (!allowGenerics)
jjg@256 1119 sym.flags_field &= ~SYNTHETIC;
jjg@256 1120 }
jjg@256 1121 },
jjg@256 1122
jjg@256 1123 new AttributeReader(names.Enum, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1124 void read(Symbol sym, int attrLen) {
jjg@256 1125 sym.flags_field |= ENUM;
jjg@256 1126 }
jjg@256 1127 },
jjg@256 1128
jjg@256 1129 new AttributeReader(names.Varargs, V49, CLASS_OR_MEMBER_ATTRIBUTE) {
jjg@256 1130 void read(Symbol sym, int attrLen) {
jjg@256 1131 if (allowVarargs)
jjg@256 1132 sym.flags_field |= VARARGS;
jjg@256 1133 }
jjg@308 1134 },
jjg@308 1135
jjg@256 1136 // The following attributes for a Code attribute are not currently handled
jjg@256 1137 // StackMapTable
jjg@256 1138 // SourceDebugExtension
jjg@256 1139 // LineNumberTable
jjg@256 1140 // LocalVariableTypeTable
jjg@256 1141 };
jjg@256 1142
jjg@256 1143 for (AttributeReader r: readers)
jjg@256 1144 attributeReaders.put(r.name, r);
jjg@256 1145 }
jjg@256 1146
duke@1 1147 /** Report unrecognized attribute.
duke@1 1148 */
duke@1 1149 void unrecognized(Name attrName) {
duke@1 1150 if (checkClassFile)
duke@1 1151 printCCF("ccf.unrecognized.attribute", attrName);
duke@1 1152 }
duke@1 1153
jjg@256 1154
duke@1 1155
duke@1 1156 void readEnclosingMethodAttr(Symbol sym) {
duke@1 1157 // sym is a nested class with an "Enclosing Method" attribute
duke@1 1158 // remove sym from it's current owners scope and place it in
duke@1 1159 // the scope specified by the attribute
duke@1 1160 sym.owner.members().remove(sym);
duke@1 1161 ClassSymbol self = (ClassSymbol)sym;
duke@1 1162 ClassSymbol c = readClassSymbol(nextChar());
duke@1 1163 NameAndType nt = (NameAndType)readPool(nextChar());
duke@1 1164
jjg@952 1165 if (c.members_field == null)
jjg@952 1166 throw badClassFile("bad.enclosing.class", self, c);
jjg@952 1167
duke@1 1168 MethodSymbol m = findMethod(nt, c.members_field, self.flags());
duke@1 1169 if (nt != null && m == null)
duke@1 1170 throw badClassFile("bad.enclosing.method", self);
duke@1 1171
duke@1 1172 self.name = simpleBinaryName(self.flatname, c.flatname) ;
duke@1 1173 self.owner = m != null ? m : c;
jjg@113 1174 if (self.name.isEmpty())
darcy@515 1175 self.fullname = names.empty;
duke@1 1176 else
duke@1 1177 self.fullname = ClassSymbol.formFullName(self.name, self.owner);
duke@1 1178
duke@1 1179 if (m != null) {
duke@1 1180 ((ClassType)sym.type).setEnclosingType(m.type);
duke@1 1181 } else if ((self.flags_field & STATIC) == 0) {
duke@1 1182 ((ClassType)sym.type).setEnclosingType(c.type);
duke@1 1183 } else {
duke@1 1184 ((ClassType)sym.type).setEnclosingType(Type.noType);
duke@1 1185 }
duke@1 1186 enterTypevars(self);
duke@1 1187 if (!missingTypeVariables.isEmpty()) {
duke@1 1188 ListBuffer<Type> typeVars = new ListBuffer<Type>();
duke@1 1189 for (Type typevar : missingTypeVariables) {
duke@1 1190 typeVars.append(findTypeVar(typevar.tsym.name));
duke@1 1191 }
duke@1 1192 foundTypeVariables = typeVars.toList();
duke@1 1193 } else {
duke@1 1194 foundTypeVariables = List.nil();
duke@1 1195 }
duke@1 1196 }
duke@1 1197
duke@1 1198 // See java.lang.Class
duke@1 1199 private Name simpleBinaryName(Name self, Name enclosing) {
duke@1 1200 String simpleBinaryName = self.toString().substring(enclosing.toString().length());
duke@1 1201 if (simpleBinaryName.length() < 1 || simpleBinaryName.charAt(0) != '$')
duke@1 1202 throw badClassFile("bad.enclosing.method", self);
duke@1 1203 int index = 1;
duke@1 1204 while (index < simpleBinaryName.length() &&
duke@1 1205 isAsciiDigit(simpleBinaryName.charAt(index)))
duke@1 1206 index++;
duke@1 1207 return names.fromString(simpleBinaryName.substring(index));
duke@1 1208 }
duke@1 1209
duke@1 1210 private MethodSymbol findMethod(NameAndType nt, Scope scope, long flags) {
duke@1 1211 if (nt == null)
duke@1 1212 return null;
duke@1 1213
duke@1 1214 MethodType type = nt.type.asMethodType();
duke@1 1215
duke@1 1216 for (Scope.Entry e = scope.lookup(nt.name); e.scope != null; e = e.next())
duke@1 1217 if (e.sym.kind == MTH && isSameBinaryType(e.sym.type.asMethodType(), type))
duke@1 1218 return (MethodSymbol)e.sym;
duke@1 1219
duke@1 1220 if (nt.name != names.init)
duke@1 1221 // not a constructor
duke@1 1222 return null;
duke@1 1223 if ((flags & INTERFACE) != 0)
duke@1 1224 // no enclosing instance
duke@1 1225 return null;
duke@1 1226 if (nt.type.getParameterTypes().isEmpty())
duke@1 1227 // no parameters
duke@1 1228 return null;
duke@1 1229
duke@1 1230 // A constructor of an inner class.
duke@1 1231 // Remove the first argument (the enclosing instance)
duke@1 1232 nt.type = new MethodType(nt.type.getParameterTypes().tail,
duke@1 1233 nt.type.getReturnType(),
duke@1 1234 nt.type.getThrownTypes(),
duke@1 1235 syms.methodClass);
duke@1 1236 // Try searching again
duke@1 1237 return findMethod(nt, scope, flags);
duke@1 1238 }
duke@1 1239
duke@1 1240 /** Similar to Types.isSameType but avoids completion */
duke@1 1241 private boolean isSameBinaryType(MethodType mt1, MethodType mt2) {
duke@1 1242 List<Type> types1 = types.erasure(mt1.getParameterTypes())
duke@1 1243 .prepend(types.erasure(mt1.getReturnType()));
duke@1 1244 List<Type> types2 = mt2.getParameterTypes().prepend(mt2.getReturnType());
duke@1 1245 while (!types1.isEmpty() && !types2.isEmpty()) {
duke@1 1246 if (types1.head.tsym != types2.head.tsym)
duke@1 1247 return false;
duke@1 1248 types1 = types1.tail;
duke@1 1249 types2 = types2.tail;
duke@1 1250 }
duke@1 1251 return types1.isEmpty() && types2.isEmpty();
duke@1 1252 }
duke@1 1253
duke@1 1254 /**
duke@1 1255 * Character.isDigit answers <tt>true</tt> to some non-ascii
duke@1 1256 * digits. This one does not. <b>copied from java.lang.Class</b>
duke@1 1257 */
duke@1 1258 private static boolean isAsciiDigit(char c) {
duke@1 1259 return '0' <= c && c <= '9';
duke@1 1260 }
duke@1 1261
duke@1 1262 /** Read member attributes.
duke@1 1263 */
duke@1 1264 void readMemberAttrs(Symbol sym) {
jjg@256 1265 readAttrs(sym, AttributeKind.MEMBER);
jjg@256 1266 }
jjg@256 1267
jjg@256 1268 void readAttrs(Symbol sym, AttributeKind kind) {
duke@1 1269 char ac = nextChar();
duke@1 1270 for (int i = 0; i < ac; i++) {
duke@1 1271 Name attrName = readName(nextChar());
duke@1 1272 int attrLen = nextInt();
jjg@256 1273 AttributeReader r = attributeReaders.get(attrName);
jjg@256 1274 if (r != null && r.accepts(kind))
jjg@256 1275 r.read(sym, attrLen);
jjg@256 1276 else {
jjg@256 1277 unrecognized(attrName);
jjg@256 1278 bp = bp + attrLen;
jjg@256 1279 }
duke@1 1280 }
duke@1 1281 }
duke@1 1282
duke@1 1283 private boolean readingClassAttr = false;
duke@1 1284 private List<Type> missingTypeVariables = List.nil();
duke@1 1285 private List<Type> foundTypeVariables = List.nil();
duke@1 1286
duke@1 1287 /** Read class attributes.
duke@1 1288 */
duke@1 1289 void readClassAttrs(ClassSymbol c) {
jjg@256 1290 readAttrs(c, AttributeKind.CLASS);
duke@1 1291 }
duke@1 1292
duke@1 1293 /** Read code block.
duke@1 1294 */
duke@1 1295 Code readCode(Symbol owner) {
duke@1 1296 nextChar(); // max_stack
duke@1 1297 nextChar(); // max_locals
duke@1 1298 final int code_length = nextInt();
duke@1 1299 bp += code_length;
duke@1 1300 final char exception_table_length = nextChar();
duke@1 1301 bp += exception_table_length * 8;
duke@1 1302 readMemberAttrs(owner);
duke@1 1303 return null;
duke@1 1304 }
duke@1 1305
duke@1 1306 /************************************************************************
duke@1 1307 * Reading Java-language annotations
duke@1 1308 ***********************************************************************/
duke@1 1309
duke@1 1310 /** Attach annotations.
duke@1 1311 */
duke@1 1312 void attachAnnotations(final Symbol sym) {
duke@1 1313 int numAttributes = nextChar();
duke@1 1314 if (numAttributes != 0) {
duke@1 1315 ListBuffer<CompoundAnnotationProxy> proxies =
duke@1 1316 new ListBuffer<CompoundAnnotationProxy>();
duke@1 1317 for (int i = 0; i<numAttributes; i++) {
duke@1 1318 CompoundAnnotationProxy proxy = readCompoundAnnotation();
duke@1 1319 if (proxy.type.tsym == syms.proprietaryType.tsym)
duke@1 1320 sym.flags_field |= PROPRIETARY;
duke@1 1321 else
duke@1 1322 proxies.append(proxy);
mcimadamore@857 1323 if (majorVersion >= V51.major &&
ksrini@957 1324 proxy.type.tsym == syms.polymorphicSignatureType.tsym) {
mcimadamore@674 1325 sym.flags_field |= POLYMORPHIC_SIGNATURE;
mcimadamore@674 1326 }
duke@1 1327 }
duke@1 1328 annotate.later(new AnnotationCompleter(sym, proxies.toList()));
duke@1 1329 }
duke@1 1330 }
duke@1 1331
duke@1 1332 /** Attach parameter annotations.
duke@1 1333 */
duke@1 1334 void attachParameterAnnotations(final Symbol method) {
duke@1 1335 final MethodSymbol meth = (MethodSymbol)method;
duke@1 1336 int numParameters = buf[bp++] & 0xFF;
duke@1 1337 List<VarSymbol> parameters = meth.params();
duke@1 1338 int pnum = 0;
duke@1 1339 while (parameters.tail != null) {
duke@1 1340 attachAnnotations(parameters.head);
duke@1 1341 parameters = parameters.tail;
duke@1 1342 pnum++;
duke@1 1343 }
duke@1 1344 if (pnum != numParameters) {
duke@1 1345 throw badClassFile("bad.runtime.invisible.param.annotations", meth);
duke@1 1346 }
duke@1 1347 }
duke@1 1348
duke@1 1349 /** Attach the default value for an annotation element.
duke@1 1350 */
duke@1 1351 void attachAnnotationDefault(final Symbol sym) {
duke@1 1352 final MethodSymbol meth = (MethodSymbol)sym; // only on methods
duke@1 1353 final Attribute value = readAttributeValue();
duke@1 1354 annotate.later(new AnnotationDefaultCompleter(meth, value));
duke@1 1355 }
duke@1 1356
duke@1 1357 Type readTypeOrClassSymbol(int i) {
duke@1 1358 // support preliminary jsr175-format class files
duke@1 1359 if (buf[poolIdx[i]] == CONSTANT_Class)
duke@1 1360 return readClassSymbol(i).type;
duke@1 1361 return readType(i);
duke@1 1362 }
duke@1 1363 Type readEnumType(int i) {
duke@1 1364 // support preliminary jsr175-format class files
duke@1 1365 int index = poolIdx[i];
duke@1 1366 int length = getChar(index + 1);
duke@1 1367 if (buf[index + length + 2] != ';')
duke@1 1368 return enterClass(readName(i)).type;
duke@1 1369 return readType(i);
duke@1 1370 }
duke@1 1371
duke@1 1372 CompoundAnnotationProxy readCompoundAnnotation() {
duke@1 1373 Type t = readTypeOrClassSymbol(nextChar());
duke@1 1374 int numFields = nextChar();
duke@1 1375 ListBuffer<Pair<Name,Attribute>> pairs =
duke@1 1376 new ListBuffer<Pair<Name,Attribute>>();
duke@1 1377 for (int i=0; i<numFields; i++) {
duke@1 1378 Name name = readName(nextChar());
duke@1 1379 Attribute value = readAttributeValue();
duke@1 1380 pairs.append(new Pair<Name,Attribute>(name, value));
duke@1 1381 }
duke@1 1382 return new CompoundAnnotationProxy(t, pairs.toList());
duke@1 1383 }
duke@1 1384
duke@1 1385 Attribute readAttributeValue() {
duke@1 1386 char c = (char) buf[bp++];
duke@1 1387 switch (c) {
duke@1 1388 case 'B':
duke@1 1389 return new Attribute.Constant(syms.byteType, readPool(nextChar()));
duke@1 1390 case 'C':
duke@1 1391 return new Attribute.Constant(syms.charType, readPool(nextChar()));
duke@1 1392 case 'D':
duke@1 1393 return new Attribute.Constant(syms.doubleType, readPool(nextChar()));
duke@1 1394 case 'F':
duke@1 1395 return new Attribute.Constant(syms.floatType, readPool(nextChar()));
duke@1 1396 case 'I':
duke@1 1397 return new Attribute.Constant(syms.intType, readPool(nextChar()));
duke@1 1398 case 'J':
duke@1 1399 return new Attribute.Constant(syms.longType, readPool(nextChar()));
duke@1 1400 case 'S':
duke@1 1401 return new Attribute.Constant(syms.shortType, readPool(nextChar()));
duke@1 1402 case 'Z':
duke@1 1403 return new Attribute.Constant(syms.booleanType, readPool(nextChar()));
duke@1 1404 case 's':
duke@1 1405 return new Attribute.Constant(syms.stringType, readPool(nextChar()).toString());
duke@1 1406 case 'e':
duke@1 1407 return new EnumAttributeProxy(readEnumType(nextChar()), readName(nextChar()));
duke@1 1408 case 'c':
duke@1 1409 return new Attribute.Class(types, readTypeOrClassSymbol(nextChar()));
duke@1 1410 case '[': {
duke@1 1411 int n = nextChar();
duke@1 1412 ListBuffer<Attribute> l = new ListBuffer<Attribute>();
duke@1 1413 for (int i=0; i<n; i++)
duke@1 1414 l.append(readAttributeValue());
duke@1 1415 return new ArrayAttributeProxy(l.toList());
duke@1 1416 }
duke@1 1417 case '@':
duke@1 1418 return readCompoundAnnotation();
duke@1 1419 default:
duke@1 1420 throw new AssertionError("unknown annotation tag '" + c + "'");
duke@1 1421 }
duke@1 1422 }
duke@1 1423
duke@1 1424 interface ProxyVisitor extends Attribute.Visitor {
duke@1 1425 void visitEnumAttributeProxy(EnumAttributeProxy proxy);
duke@1 1426 void visitArrayAttributeProxy(ArrayAttributeProxy proxy);
duke@1 1427 void visitCompoundAnnotationProxy(CompoundAnnotationProxy proxy);
duke@1 1428 }
duke@1 1429
duke@1 1430 static class EnumAttributeProxy extends Attribute {
duke@1 1431 Type enumType;
duke@1 1432 Name enumerator;
duke@1 1433 public EnumAttributeProxy(Type enumType, Name enumerator) {
duke@1 1434 super(null);
duke@1 1435 this.enumType = enumType;
duke@1 1436 this.enumerator = enumerator;
duke@1 1437 }
duke@1 1438 public void accept(Visitor v) { ((ProxyVisitor)v).visitEnumAttributeProxy(this); }
jjg@256 1439 @Override
duke@1 1440 public String toString() {
duke@1 1441 return "/*proxy enum*/" + enumType + "." + enumerator;
duke@1 1442 }
duke@1 1443 }
duke@1 1444
duke@1 1445 static class ArrayAttributeProxy extends Attribute {
duke@1 1446 List<Attribute> values;
duke@1 1447 ArrayAttributeProxy(List<Attribute> values) {
duke@1 1448 super(null);
duke@1 1449 this.values = values;
duke@1 1450 }
duke@1 1451 public void accept(Visitor v) { ((ProxyVisitor)v).visitArrayAttributeProxy(this); }
jjg@256 1452 @Override
duke@1 1453 public String toString() {
duke@1 1454 return "{" + values + "}";
duke@1 1455 }
duke@1 1456 }
duke@1 1457
duke@1 1458 /** A temporary proxy representing a compound attribute.
duke@1 1459 */
duke@1 1460 static class CompoundAnnotationProxy extends Attribute {
duke@1 1461 final List<Pair<Name,Attribute>> values;
duke@1 1462 public CompoundAnnotationProxy(Type type,
duke@1 1463 List<Pair<Name,Attribute>> values) {
duke@1 1464 super(type);
duke@1 1465 this.values = values;
duke@1 1466 }
duke@1 1467 public void accept(Visitor v) { ((ProxyVisitor)v).visitCompoundAnnotationProxy(this); }
jjg@256 1468 @Override
duke@1 1469 public String toString() {
jjg@776 1470 StringBuilder buf = new StringBuilder();
duke@1 1471 buf.append("@");
duke@1 1472 buf.append(type.tsym.getQualifiedName());
duke@1 1473 buf.append("/*proxy*/{");
duke@1 1474 boolean first = true;
duke@1 1475 for (List<Pair<Name,Attribute>> v = values;
duke@1 1476 v.nonEmpty(); v = v.tail) {
duke@1 1477 Pair<Name,Attribute> value = v.head;
duke@1 1478 if (!first) buf.append(",");
duke@1 1479 first = false;
duke@1 1480 buf.append(value.fst);
duke@1 1481 buf.append("=");
duke@1 1482 buf.append(value.snd);
duke@1 1483 }
duke@1 1484 buf.append("}");
duke@1 1485 return buf.toString();
duke@1 1486 }
duke@1 1487 }
duke@1 1488
jjg@308 1489 /** A temporary proxy representing a type annotation.
jjg@308 1490 */
jjg@308 1491 static class TypeAnnotationProxy {
jjg@308 1492 final CompoundAnnotationProxy compound;
jjg@308 1493 final TypeAnnotationPosition position;
jjg@308 1494 public TypeAnnotationProxy(CompoundAnnotationProxy compound,
jjg@308 1495 TypeAnnotationPosition position) {
jjg@308 1496 this.compound = compound;
jjg@308 1497 this.position = position;
jjg@308 1498 }
jjg@308 1499 }
jjg@308 1500
duke@1 1501 class AnnotationDeproxy implements ProxyVisitor {
duke@1 1502 private ClassSymbol requestingOwner = currentOwner.kind == MTH
duke@1 1503 ? currentOwner.enclClass() : (ClassSymbol)currentOwner;
duke@1 1504
duke@1 1505 List<Attribute.Compound> deproxyCompoundList(List<CompoundAnnotationProxy> pl) {
duke@1 1506 // also must fill in types!!!!
duke@1 1507 ListBuffer<Attribute.Compound> buf =
duke@1 1508 new ListBuffer<Attribute.Compound>();
duke@1 1509 for (List<CompoundAnnotationProxy> l = pl; l.nonEmpty(); l=l.tail) {
duke@1 1510 buf.append(deproxyCompound(l.head));
duke@1 1511 }
duke@1 1512 return buf.toList();
duke@1 1513 }
duke@1 1514
duke@1 1515 Attribute.Compound deproxyCompound(CompoundAnnotationProxy a) {
duke@1 1516 ListBuffer<Pair<Symbol.MethodSymbol,Attribute>> buf =
duke@1 1517 new ListBuffer<Pair<Symbol.MethodSymbol,Attribute>>();
duke@1 1518 for (List<Pair<Name,Attribute>> l = a.values;
duke@1 1519 l.nonEmpty();
duke@1 1520 l = l.tail) {
duke@1 1521 MethodSymbol meth = findAccessMethod(a.type, l.head.fst);
duke@1 1522 buf.append(new Pair<Symbol.MethodSymbol,Attribute>
duke@1 1523 (meth, deproxy(meth.type.getReturnType(), l.head.snd)));
duke@1 1524 }
duke@1 1525 return new Attribute.Compound(a.type, buf.toList());
duke@1 1526 }
duke@1 1527
duke@1 1528 MethodSymbol findAccessMethod(Type container, Name name) {
duke@1 1529 CompletionFailure failure = null;
duke@1 1530 try {
duke@1 1531 for (Scope.Entry e = container.tsym.members().lookup(name);
duke@1 1532 e.scope != null;
duke@1 1533 e = e.next()) {
duke@1 1534 Symbol sym = e.sym;
duke@1 1535 if (sym.kind == MTH && sym.type.getParameterTypes().length() == 0)
duke@1 1536 return (MethodSymbol) sym;
duke@1 1537 }
duke@1 1538 } catch (CompletionFailure ex) {
duke@1 1539 failure = ex;
duke@1 1540 }
duke@1 1541 // The method wasn't found: emit a warning and recover
duke@1 1542 JavaFileObject prevSource = log.useSource(requestingOwner.classfile);
duke@1 1543 try {
duke@1 1544 if (failure == null) {
duke@1 1545 log.warning("annotation.method.not.found",
duke@1 1546 container,
duke@1 1547 name);
duke@1 1548 } else {
duke@1 1549 log.warning("annotation.method.not.found.reason",
duke@1 1550 container,
duke@1 1551 name,
mcimadamore@80 1552 failure.getDetailValue());//diagnostic, if present
duke@1 1553 }
duke@1 1554 } finally {
duke@1 1555 log.useSource(prevSource);
duke@1 1556 }
duke@1 1557 // Construct a new method type and symbol. Use bottom
duke@1 1558 // type (typeof null) as return type because this type is
duke@1 1559 // a subtype of all reference types and can be converted
duke@1 1560 // to primitive types by unboxing.
duke@1 1561 MethodType mt = new MethodType(List.<Type>nil(),
duke@1 1562 syms.botType,
duke@1 1563 List.<Type>nil(),
duke@1 1564 syms.methodClass);
duke@1 1565 return new MethodSymbol(PUBLIC | ABSTRACT, name, mt, container.tsym);
duke@1 1566 }
duke@1 1567
duke@1 1568 Attribute result;
duke@1 1569 Type type;
duke@1 1570 Attribute deproxy(Type t, Attribute a) {
duke@1 1571 Type oldType = type;
duke@1 1572 try {
duke@1 1573 type = t;
duke@1 1574 a.accept(this);
duke@1 1575 return result;
duke@1 1576 } finally {
duke@1 1577 type = oldType;
duke@1 1578 }
duke@1 1579 }
duke@1 1580
duke@1 1581 // implement Attribute.Visitor below
duke@1 1582
duke@1 1583 public void visitConstant(Attribute.Constant value) {
duke@1 1584 // assert value.type == type;
duke@1 1585 result = value;
duke@1 1586 }
duke@1 1587
duke@1 1588 public void visitClass(Attribute.Class clazz) {
duke@1 1589 result = clazz;
duke@1 1590 }
duke@1 1591
duke@1 1592 public void visitEnum(Attribute.Enum e) {
duke@1 1593 throw new AssertionError(); // shouldn't happen
duke@1 1594 }
duke@1 1595
duke@1 1596 public void visitCompound(Attribute.Compound compound) {
duke@1 1597 throw new AssertionError(); // shouldn't happen
duke@1 1598 }
duke@1 1599
duke@1 1600 public void visitArray(Attribute.Array array) {
duke@1 1601 throw new AssertionError(); // shouldn't happen
duke@1 1602 }
duke@1 1603
duke@1 1604 public void visitError(Attribute.Error e) {
duke@1 1605 throw new AssertionError(); // shouldn't happen
duke@1 1606 }
duke@1 1607
duke@1 1608 public void visitEnumAttributeProxy(EnumAttributeProxy proxy) {
duke@1 1609 // type.tsym.flatName() should == proxy.enumFlatName
duke@1 1610 TypeSymbol enumTypeSym = proxy.enumType.tsym;
duke@1 1611 VarSymbol enumerator = null;
mcimadamore@992 1612 CompletionFailure failure = null;
mcimadamore@992 1613 try {
mcimadamore@992 1614 for (Scope.Entry e = enumTypeSym.members().lookup(proxy.enumerator);
mcimadamore@992 1615 e.scope != null;
mcimadamore@992 1616 e = e.next()) {
mcimadamore@992 1617 if (e.sym.kind == VAR) {
mcimadamore@992 1618 enumerator = (VarSymbol)e.sym;
mcimadamore@992 1619 break;
mcimadamore@992 1620 }
duke@1 1621 }
duke@1 1622 }
mcimadamore@992 1623 catch (CompletionFailure ex) {
mcimadamore@992 1624 failure = ex;
mcimadamore@992 1625 }
duke@1 1626 if (enumerator == null) {
mcimadamore@992 1627 if (failure != null) {
mcimadamore@992 1628 log.warning("unknown.enum.constant.reason",
mcimadamore@992 1629 currentClassFile, enumTypeSym, proxy.enumerator,
mcimadamore@992 1630 failure.getDiagnostic());
mcimadamore@992 1631 } else {
mcimadamore@992 1632 log.warning("unknown.enum.constant",
mcimadamore@992 1633 currentClassFile, enumTypeSym, proxy.enumerator);
mcimadamore@992 1634 }
mcimadamore@992 1635 result = new Attribute.Enum(enumTypeSym.type,
mcimadamore@992 1636 new VarSymbol(0, proxy.enumerator, syms.botType, enumTypeSym));
duke@1 1637 } else {
duke@1 1638 result = new Attribute.Enum(enumTypeSym.type, enumerator);
duke@1 1639 }
duke@1 1640 }
duke@1 1641
duke@1 1642 public void visitArrayAttributeProxy(ArrayAttributeProxy proxy) {
duke@1 1643 int length = proxy.values.length();
duke@1 1644 Attribute[] ats = new Attribute[length];
duke@1 1645 Type elemtype = types.elemtype(type);
duke@1 1646 int i = 0;
duke@1 1647 for (List<Attribute> p = proxy.values; p.nonEmpty(); p = p.tail) {
duke@1 1648 ats[i++] = deproxy(elemtype, p.head);
duke@1 1649 }
duke@1 1650 result = new Attribute.Array(type, ats);
duke@1 1651 }
duke@1 1652
duke@1 1653 public void visitCompoundAnnotationProxy(CompoundAnnotationProxy proxy) {
duke@1 1654 result = deproxyCompound(proxy);
duke@1 1655 }
duke@1 1656 }
duke@1 1657
duke@1 1658 class AnnotationDefaultCompleter extends AnnotationDeproxy implements Annotate.Annotator {
duke@1 1659 final MethodSymbol sym;
duke@1 1660 final Attribute value;
duke@1 1661 final JavaFileObject classFile = currentClassFile;
jjg@256 1662 @Override
duke@1 1663 public String toString() {
duke@1 1664 return " ClassReader store default for " + sym.owner + "." + sym + " is " + value;
duke@1 1665 }
duke@1 1666 AnnotationDefaultCompleter(MethodSymbol sym, Attribute value) {
duke@1 1667 this.sym = sym;
duke@1 1668 this.value = value;
duke@1 1669 }
duke@1 1670 // implement Annotate.Annotator.enterAnnotation()
duke@1 1671 public void enterAnnotation() {
duke@1 1672 JavaFileObject previousClassFile = currentClassFile;
duke@1 1673 try {
duke@1 1674 currentClassFile = classFile;
duke@1 1675 sym.defaultValue = deproxy(sym.type.getReturnType(), value);
duke@1 1676 } finally {
duke@1 1677 currentClassFile = previousClassFile;
duke@1 1678 }
duke@1 1679 }
duke@1 1680 }
duke@1 1681
duke@1 1682 class AnnotationCompleter extends AnnotationDeproxy implements Annotate.Annotator {
duke@1 1683 final Symbol sym;
duke@1 1684 final List<CompoundAnnotationProxy> l;
duke@1 1685 final JavaFileObject classFile;
jjg@256 1686 @Override
duke@1 1687 public String toString() {
duke@1 1688 return " ClassReader annotate " + sym.owner + "." + sym + " with " + l;
duke@1 1689 }
duke@1 1690 AnnotationCompleter(Symbol sym, List<CompoundAnnotationProxy> l) {
duke@1 1691 this.sym = sym;
duke@1 1692 this.l = l;
duke@1 1693 this.classFile = currentClassFile;
duke@1 1694 }
duke@1 1695 // implement Annotate.Annotator.enterAnnotation()
duke@1 1696 public void enterAnnotation() {
duke@1 1697 JavaFileObject previousClassFile = currentClassFile;
duke@1 1698 try {
duke@1 1699 currentClassFile = classFile;
duke@1 1700 List<Attribute.Compound> newList = deproxyCompoundList(l);
duke@1 1701 sym.attributes_field = ((sym.attributes_field == null)
duke@1 1702 ? newList
duke@1 1703 : newList.prependList(sym.attributes_field));
duke@1 1704 } finally {
duke@1 1705 currentClassFile = previousClassFile;
duke@1 1706 }
duke@1 1707 }
duke@1 1708 }
duke@1 1709
duke@1 1710
duke@1 1711 /************************************************************************
duke@1 1712 * Reading Symbols
duke@1 1713 ***********************************************************************/
duke@1 1714
duke@1 1715 /** Read a field.
duke@1 1716 */
duke@1 1717 VarSymbol readField() {
duke@1 1718 long flags = adjustFieldFlags(nextChar());
duke@1 1719 Name name = readName(nextChar());
duke@1 1720 Type type = readType(nextChar());
duke@1 1721 VarSymbol v = new VarSymbol(flags, name, type, currentOwner);
duke@1 1722 readMemberAttrs(v);
duke@1 1723 return v;
duke@1 1724 }
duke@1 1725
duke@1 1726 /** Read a method.
duke@1 1727 */
duke@1 1728 MethodSymbol readMethod() {
duke@1 1729 long flags = adjustMethodFlags(nextChar());
duke@1 1730 Name name = readName(nextChar());
duke@1 1731 Type type = readType(nextChar());
duke@1 1732 if (name == names.init && currentOwner.hasOuterInstance()) {
duke@1 1733 // Sometimes anonymous classes don't have an outer
duke@1 1734 // instance, however, there is no reliable way to tell so
duke@1 1735 // we never strip this$n
jjg@113 1736 if (!currentOwner.name.isEmpty())
mcimadamore@795 1737 type = new MethodType(adjustMethodParams(flags, type.getParameterTypes()),
duke@1 1738 type.getReturnType(),
duke@1 1739 type.getThrownTypes(),
duke@1 1740 syms.methodClass);
duke@1 1741 }
duke@1 1742 MethodSymbol m = new MethodSymbol(flags, name, type, currentOwner);
jjg@428 1743 if (saveParameterNames)
jjg@428 1744 initParameterNames(m);
duke@1 1745 Symbol prevOwner = currentOwner;
duke@1 1746 currentOwner = m;
duke@1 1747 try {
duke@1 1748 readMemberAttrs(m);
duke@1 1749 } finally {
duke@1 1750 currentOwner = prevOwner;
duke@1 1751 }
jjg@428 1752 if (saveParameterNames)
jjg@428 1753 setParameterNames(m, type);
duke@1 1754 return m;
duke@1 1755 }
duke@1 1756
mcimadamore@795 1757 private List<Type> adjustMethodParams(long flags, List<Type> args) {
mcimadamore@795 1758 boolean isVarargs = (flags & VARARGS) != 0;
mcimadamore@795 1759 if (isVarargs) {
mcimadamore@795 1760 Type varargsElem = args.last();
mcimadamore@795 1761 ListBuffer<Type> adjustedArgs = ListBuffer.lb();
mcimadamore@795 1762 for (Type t : args) {
mcimadamore@795 1763 adjustedArgs.append(t != varargsElem ?
mcimadamore@795 1764 t :
mcimadamore@795 1765 ((ArrayType)t).makeVarargs());
mcimadamore@795 1766 }
mcimadamore@795 1767 args = adjustedArgs.toList();
mcimadamore@795 1768 }
mcimadamore@795 1769 return args.tail;
mcimadamore@795 1770 }
mcimadamore@795 1771
jjg@428 1772 /**
jjg@428 1773 * Init the parameter names array.
jjg@428 1774 * Parameter names are currently inferred from the names in the
jjg@428 1775 * LocalVariableTable attributes of a Code attribute.
jjg@428 1776 * (Note: this means parameter names are currently not available for
jjg@428 1777 * methods without a Code attribute.)
jjg@428 1778 * This method initializes an array in which to store the name indexes
jjg@428 1779 * of parameter names found in LocalVariableTable attributes. It is
jjg@428 1780 * slightly supersized to allow for additional slots with a start_pc of 0.
jjg@428 1781 */
jjg@428 1782 void initParameterNames(MethodSymbol sym) {
jjg@428 1783 // make allowance for synthetic parameters.
jjg@428 1784 final int excessSlots = 4;
jjg@428 1785 int expectedParameterSlots =
jjg@428 1786 Code.width(sym.type.getParameterTypes()) + excessSlots;
jjg@428 1787 if (parameterNameIndices == null
jjg@428 1788 || parameterNameIndices.length < expectedParameterSlots) {
jjg@428 1789 parameterNameIndices = new int[expectedParameterSlots];
jjg@428 1790 } else
jjg@428 1791 Arrays.fill(parameterNameIndices, 0);
jjg@428 1792 haveParameterNameIndices = false;
jjg@428 1793 }
jjg@428 1794
jjg@428 1795 /**
jjg@428 1796 * Set the parameter names for a symbol from the name index in the
jjg@428 1797 * parameterNameIndicies array. The type of the symbol may have changed
jjg@428 1798 * while reading the method attributes (see the Signature attribute).
jjg@428 1799 * This may be because of generic information or because anonymous
jjg@428 1800 * synthetic parameters were added. The original type (as read from
jjg@428 1801 * the method descriptor) is used to help guess the existence of
jjg@428 1802 * anonymous synthetic parameters.
jjg@428 1803 * On completion, sym.savedParameter names will either be null (if
jjg@428 1804 * no parameter names were found in the class file) or will be set to a
jjg@428 1805 * list of names, one per entry in sym.type.getParameterTypes, with
jjg@428 1806 * any missing names represented by the empty name.
jjg@428 1807 */
jjg@428 1808 void setParameterNames(MethodSymbol sym, Type jvmType) {
jjg@428 1809 // if no names were found in the class file, there's nothing more to do
jjg@428 1810 if (!haveParameterNameIndices)
jjg@428 1811 return;
jjg@428 1812
jjg@428 1813 int firstParam = ((sym.flags() & STATIC) == 0) ? 1 : 0;
jjg@428 1814 // the code in readMethod may have skipped the first parameter when
jjg@428 1815 // setting up the MethodType. If so, we make a corresponding allowance
jjg@428 1816 // here for the position of the first parameter. Note that this
jjg@428 1817 // assumes the skipped parameter has a width of 1 -- i.e. it is not
jjg@428 1818 // a double width type (long or double.)
jjg@428 1819 if (sym.name == names.init && currentOwner.hasOuterInstance()) {
jjg@428 1820 // Sometimes anonymous classes don't have an outer
jjg@428 1821 // instance, however, there is no reliable way to tell so
jjg@428 1822 // we never strip this$n
jjg@428 1823 if (!currentOwner.name.isEmpty())
jjg@428 1824 firstParam += 1;
jjg@428 1825 }
jjg@428 1826
jjg@428 1827 if (sym.type != jvmType) {
jjg@428 1828 // reading the method attributes has caused the symbol's type to
jjg@428 1829 // be changed. (i.e. the Signature attribute.) This may happen if
jjg@428 1830 // there are hidden (synthetic) parameters in the descriptor, but
jjg@428 1831 // not in the Signature. The position of these hidden parameters
jjg@428 1832 // is unspecified; for now, assume they are at the beginning, and
jjg@428 1833 // so skip over them. The primary case for this is two hidden
jjg@428 1834 // parameters passed into Enum constructors.
jjg@428 1835 int skip = Code.width(jvmType.getParameterTypes())
jjg@428 1836 - Code.width(sym.type.getParameterTypes());
jjg@428 1837 firstParam += skip;
jjg@428 1838 }
jjg@428 1839 List<Name> paramNames = List.nil();
jjg@428 1840 int index = firstParam;
jjg@428 1841 for (Type t: sym.type.getParameterTypes()) {
jjg@428 1842 int nameIdx = (index < parameterNameIndices.length
jjg@428 1843 ? parameterNameIndices[index] : 0);
jjg@428 1844 Name name = nameIdx == 0 ? names.empty : readName(nameIdx);
jjg@428 1845 paramNames = paramNames.prepend(name);
jjg@428 1846 index += Code.width(t);
jjg@428 1847 }
jjg@428 1848 sym.savedParameterNames = paramNames.reverse();
jjg@428 1849 }
jjg@428 1850
ksrini@826 1851 /**
ksrini@826 1852 * skip n bytes
ksrini@826 1853 */
ksrini@826 1854 void skipBytes(int n) {
ksrini@826 1855 bp = bp + n;
ksrini@826 1856 }
ksrini@826 1857
duke@1 1858 /** Skip a field or method
duke@1 1859 */
duke@1 1860 void skipMember() {
duke@1 1861 bp = bp + 6;
duke@1 1862 char ac = nextChar();
duke@1 1863 for (int i = 0; i < ac; i++) {
duke@1 1864 bp = bp + 2;
duke@1 1865 int attrLen = nextInt();
duke@1 1866 bp = bp + attrLen;
duke@1 1867 }
duke@1 1868 }
duke@1 1869
duke@1 1870 /** Enter type variables of this classtype and all enclosing ones in
duke@1 1871 * `typevars'.
duke@1 1872 */
duke@1 1873 protected void enterTypevars(Type t) {
duke@1 1874 if (t.getEnclosingType() != null && t.getEnclosingType().tag == CLASS)
duke@1 1875 enterTypevars(t.getEnclosingType());
duke@1 1876 for (List<Type> xs = t.getTypeArguments(); xs.nonEmpty(); xs = xs.tail)
duke@1 1877 typevars.enter(xs.head.tsym);
duke@1 1878 }
duke@1 1879
duke@1 1880 protected void enterTypevars(Symbol sym) {
duke@1 1881 if (sym.owner.kind == MTH) {
duke@1 1882 enterTypevars(sym.owner);
duke@1 1883 enterTypevars(sym.owner.owner);
duke@1 1884 }
duke@1 1885 enterTypevars(sym.type);
duke@1 1886 }
duke@1 1887
duke@1 1888 /** Read contents of a given class symbol `c'. Both external and internal
duke@1 1889 * versions of an inner class are read.
duke@1 1890 */
duke@1 1891 void readClass(ClassSymbol c) {
duke@1 1892 ClassType ct = (ClassType)c.type;
duke@1 1893
duke@1 1894 // allocate scope for members
mcimadamore@858 1895 c.members_field = new Scope(c);
duke@1 1896
duke@1 1897 // prepare type variable table
duke@1 1898 typevars = typevars.dup(currentOwner);
jjg@256 1899 if (ct.getEnclosingType().tag == CLASS)
jjg@256 1900 enterTypevars(ct.getEnclosingType());
duke@1 1901
duke@1 1902 // read flags, or skip if this is an inner class
duke@1 1903 long flags = adjustClassFlags(nextChar());
duke@1 1904 if (c.owner.kind == PCK) c.flags_field = flags;
duke@1 1905
duke@1 1906 // read own class name and check that it matches
duke@1 1907 ClassSymbol self = readClassSymbol(nextChar());
duke@1 1908 if (c != self)
duke@1 1909 throw badClassFile("class.file.wrong.class",
duke@1 1910 self.flatname);
duke@1 1911
duke@1 1912 // class attributes must be read before class
duke@1 1913 // skip ahead to read class attributes
duke@1 1914 int startbp = bp;
duke@1 1915 nextChar();
duke@1 1916 char interfaceCount = nextChar();
duke@1 1917 bp += interfaceCount * 2;
duke@1 1918 char fieldCount = nextChar();
duke@1 1919 for (int i = 0; i < fieldCount; i++) skipMember();
duke@1 1920 char methodCount = nextChar();
duke@1 1921 for (int i = 0; i < methodCount; i++) skipMember();
duke@1 1922 readClassAttrs(c);
duke@1 1923
duke@1 1924 if (readAllOfClassFile) {
duke@1 1925 for (int i = 1; i < poolObj.length; i++) readPool(i);
duke@1 1926 c.pool = new Pool(poolObj.length, poolObj);
duke@1 1927 }
duke@1 1928
duke@1 1929 // reset and read rest of classinfo
duke@1 1930 bp = startbp;
duke@1 1931 int n = nextChar();
duke@1 1932 if (ct.supertype_field == null)
duke@1 1933 ct.supertype_field = (n == 0)
duke@1 1934 ? Type.noType
duke@1 1935 : readClassSymbol(n).erasure(types);
duke@1 1936 n = nextChar();
duke@1 1937 List<Type> is = List.nil();
duke@1 1938 for (int i = 0; i < n; i++) {
duke@1 1939 Type _inter = readClassSymbol(nextChar()).erasure(types);
duke@1 1940 is = is.prepend(_inter);
duke@1 1941 }
duke@1 1942 if (ct.interfaces_field == null)
duke@1 1943 ct.interfaces_field = is.reverse();
duke@1 1944
jjg@816 1945 Assert.check(fieldCount == nextChar());
duke@1 1946 for (int i = 0; i < fieldCount; i++) enterMember(c, readField());
jjg@816 1947 Assert.check(methodCount == nextChar());
duke@1 1948 for (int i = 0; i < methodCount; i++) enterMember(c, readMethod());
duke@1 1949
duke@1 1950 typevars = typevars.leave();
duke@1 1951 }
duke@1 1952
duke@1 1953 /** Read inner class info. For each inner/outer pair allocate a
duke@1 1954 * member class.
duke@1 1955 */
duke@1 1956 void readInnerClasses(ClassSymbol c) {
duke@1 1957 int n = nextChar();
duke@1 1958 for (int i = 0; i < n; i++) {
duke@1 1959 nextChar(); // skip inner class symbol
duke@1 1960 ClassSymbol outer = readClassSymbol(nextChar());
duke@1 1961 Name name = readName(nextChar());
duke@1 1962 if (name == null) name = names.empty;
duke@1 1963 long flags = adjustClassFlags(nextChar());
duke@1 1964 if (outer != null) { // we have a member class
duke@1 1965 if (name == names.empty)
duke@1 1966 name = names.one;
duke@1 1967 ClassSymbol member = enterClass(name, outer);
duke@1 1968 if ((flags & STATIC) == 0) {
duke@1 1969 ((ClassType)member.type).setEnclosingType(outer.type);
duke@1 1970 if (member.erasure_field != null)
duke@1 1971 ((ClassType)member.erasure_field).setEnclosingType(types.erasure(outer.type));
duke@1 1972 }
duke@1 1973 if (c == outer) {
duke@1 1974 member.flags_field = flags;
duke@1 1975 enterMember(c, member);
duke@1 1976 }
duke@1 1977 }
duke@1 1978 }
duke@1 1979 }
duke@1 1980
duke@1 1981 /** Read a class file.
duke@1 1982 */
duke@1 1983 private void readClassFile(ClassSymbol c) throws IOException {
duke@1 1984 int magic = nextInt();
duke@1 1985 if (magic != JAVA_MAGIC)
duke@1 1986 throw badClassFile("illegal.start.of.class.file");
duke@1 1987
jjg@256 1988 minorVersion = nextChar();
jjg@256 1989 majorVersion = nextChar();
duke@1 1990 int maxMajor = Target.MAX().majorVersion;
duke@1 1991 int maxMinor = Target.MAX().minorVersion;
duke@1 1992 if (majorVersion > maxMajor ||
duke@1 1993 majorVersion * 1000 + minorVersion <
duke@1 1994 Target.MIN().majorVersion * 1000 + Target.MIN().minorVersion)
duke@1 1995 {
duke@1 1996 if (majorVersion == (maxMajor + 1))
duke@1 1997 log.warning("big.major.version",
duke@1 1998 currentClassFile,
duke@1 1999 majorVersion,
duke@1 2000 maxMajor);
duke@1 2001 else
duke@1 2002 throw badClassFile("wrong.version",
duke@1 2003 Integer.toString(majorVersion),
duke@1 2004 Integer.toString(minorVersion),
duke@1 2005 Integer.toString(maxMajor),
duke@1 2006 Integer.toString(maxMinor));
duke@1 2007 }
duke@1 2008 else if (checkClassFile &&
duke@1 2009 majorVersion == maxMajor &&
duke@1 2010 minorVersion > maxMinor)
duke@1 2011 {
duke@1 2012 printCCF("found.later.version",
duke@1 2013 Integer.toString(minorVersion));
duke@1 2014 }
duke@1 2015 indexPool();
duke@1 2016 if (signatureBuffer.length < bp) {
duke@1 2017 int ns = Integer.highestOneBit(bp) << 1;
duke@1 2018 signatureBuffer = new byte[ns];
duke@1 2019 }
duke@1 2020 readClass(c);
duke@1 2021 }
duke@1 2022
duke@1 2023 /************************************************************************
duke@1 2024 * Adjusting flags
duke@1 2025 ***********************************************************************/
duke@1 2026
duke@1 2027 long adjustFieldFlags(long flags) {
duke@1 2028 return flags;
duke@1 2029 }
duke@1 2030 long adjustMethodFlags(long flags) {
duke@1 2031 if ((flags & ACC_BRIDGE) != 0) {
duke@1 2032 flags &= ~ACC_BRIDGE;
duke@1 2033 flags |= BRIDGE;
duke@1 2034 if (!allowGenerics)
duke@1 2035 flags &= ~SYNTHETIC;
duke@1 2036 }
duke@1 2037 if ((flags & ACC_VARARGS) != 0) {
duke@1 2038 flags &= ~ACC_VARARGS;
duke@1 2039 flags |= VARARGS;
duke@1 2040 }
duke@1 2041 return flags;
duke@1 2042 }
duke@1 2043 long adjustClassFlags(long flags) {
duke@1 2044 return flags & ~ACC_SUPER; // SUPER and SYNCHRONIZED bits overloaded
duke@1 2045 }
duke@1 2046
duke@1 2047 /************************************************************************
duke@1 2048 * Loading Classes
duke@1 2049 ***********************************************************************/
duke@1 2050
duke@1 2051 /** Define a new class given its name and owner.
duke@1 2052 */
duke@1 2053 public ClassSymbol defineClass(Name name, Symbol owner) {
duke@1 2054 ClassSymbol c = new ClassSymbol(0, name, owner);
duke@1 2055 if (owner.kind == PCK)
jjg@816 2056 Assert.checkNull(classes.get(c.flatname), c);
duke@1 2057 c.completer = this;
duke@1 2058 return c;
duke@1 2059 }
duke@1 2060
duke@1 2061 /** Create a new toplevel or member class symbol with given name
duke@1 2062 * and owner and enter in `classes' unless already there.
duke@1 2063 */
duke@1 2064 public ClassSymbol enterClass(Name name, TypeSymbol owner) {
duke@1 2065 Name flatname = TypeSymbol.formFlatName(name, owner);
duke@1 2066 ClassSymbol c = classes.get(flatname);
duke@1 2067 if (c == null) {
duke@1 2068 c = defineClass(name, owner);
duke@1 2069 classes.put(flatname, c);
duke@1 2070 } else if ((c.name != name || c.owner != owner) && owner.kind == TYP && c.owner.kind == PCK) {
duke@1 2071 // reassign fields of classes that might have been loaded with
duke@1 2072 // their flat names.
duke@1 2073 c.owner.members().remove(c);
duke@1 2074 c.name = name;
duke@1 2075 c.owner = owner;
duke@1 2076 c.fullname = ClassSymbol.formFullName(name, owner);
duke@1 2077 }
duke@1 2078 return c;
duke@1 2079 }
duke@1 2080
duke@1 2081 /**
duke@1 2082 * Creates a new toplevel class symbol with given flat name and
duke@1 2083 * given class (or source) file.
duke@1 2084 *
duke@1 2085 * @param flatName a fully qualified binary class name
duke@1 2086 * @param classFile the class file or compilation unit defining
duke@1 2087 * the class (may be {@code null})
duke@1 2088 * @return a newly created class symbol
duke@1 2089 * @throws AssertionError if the class symbol already exists
duke@1 2090 */
duke@1 2091 public ClassSymbol enterClass(Name flatName, JavaFileObject classFile) {
duke@1 2092 ClassSymbol cs = classes.get(flatName);
duke@1 2093 if (cs != null) {
duke@1 2094 String msg = Log.format("%s: completer = %s; class file = %s; source file = %s",
duke@1 2095 cs.fullname,
duke@1 2096 cs.completer,
duke@1 2097 cs.classfile,
duke@1 2098 cs.sourcefile);
duke@1 2099 throw new AssertionError(msg);
duke@1 2100 }
duke@1 2101 Name packageName = Convert.packagePart(flatName);
duke@1 2102 PackageSymbol owner = packageName.isEmpty()
duke@1 2103 ? syms.unnamedPackage
duke@1 2104 : enterPackage(packageName);
duke@1 2105 cs = defineClass(Convert.shortName(flatName), owner);
duke@1 2106 cs.classfile = classFile;
duke@1 2107 classes.put(flatName, cs);
duke@1 2108 return cs;
duke@1 2109 }
duke@1 2110
duke@1 2111 /** Create a new member or toplevel class symbol with given flat name
duke@1 2112 * and enter in `classes' unless already there.
duke@1 2113 */
duke@1 2114 public ClassSymbol enterClass(Name flatname) {
duke@1 2115 ClassSymbol c = classes.get(flatname);
duke@1 2116 if (c == null)
duke@1 2117 return enterClass(flatname, (JavaFileObject)null);
duke@1 2118 else
duke@1 2119 return c;
duke@1 2120 }
duke@1 2121
duke@1 2122 private boolean suppressFlush = false;
duke@1 2123
duke@1 2124 /** Completion for classes to be loaded. Before a class is loaded
duke@1 2125 * we make sure its enclosing class (if any) is loaded.
duke@1 2126 */
duke@1 2127 public void complete(Symbol sym) throws CompletionFailure {
duke@1 2128 if (sym.kind == TYP) {
duke@1 2129 ClassSymbol c = (ClassSymbol)sym;
duke@1 2130 c.members_field = new Scope.ErrorScope(c); // make sure it's always defined
jjg@256 2131 boolean saveSuppressFlush = suppressFlush;
jjg@256 2132 suppressFlush = true;
duke@1 2133 try {
duke@1 2134 completeOwners(c.owner);
duke@1 2135 completeEnclosing(c);
duke@1 2136 } finally {
jjg@256 2137 suppressFlush = saveSuppressFlush;
duke@1 2138 }
duke@1 2139 fillIn(c);
duke@1 2140 } else if (sym.kind == PCK) {
duke@1 2141 PackageSymbol p = (PackageSymbol)sym;
duke@1 2142 try {
duke@1 2143 fillIn(p);
duke@1 2144 } catch (IOException ex) {
duke@1 2145 throw new CompletionFailure(sym, ex.getLocalizedMessage()).initCause(ex);
duke@1 2146 }
duke@1 2147 }
duke@1 2148 if (!filling && !suppressFlush)
duke@1 2149 annotate.flush(); // finish attaching annotations
duke@1 2150 }
duke@1 2151
duke@1 2152 /** complete up through the enclosing package. */
duke@1 2153 private void completeOwners(Symbol o) {
duke@1 2154 if (o.kind != PCK) completeOwners(o.owner);
duke@1 2155 o.complete();
duke@1 2156 }
duke@1 2157
duke@1 2158 /**
duke@1 2159 * Tries to complete lexically enclosing classes if c looks like a
duke@1 2160 * nested class. This is similar to completeOwners but handles
duke@1 2161 * the situation when a nested class is accessed directly as it is
duke@1 2162 * possible with the Tree API or javax.lang.model.*.
duke@1 2163 */
duke@1 2164 private void completeEnclosing(ClassSymbol c) {
duke@1 2165 if (c.owner.kind == PCK) {
duke@1 2166 Symbol owner = c.owner;
duke@1 2167 for (Name name : Convert.enclosingCandidates(Convert.shortName(c.name))) {
duke@1 2168 Symbol encl = owner.members().lookup(name).sym;
duke@1 2169 if (encl == null)
duke@1 2170 encl = classes.get(TypeSymbol.formFlatName(name, owner));
duke@1 2171 if (encl != null)
duke@1 2172 encl.complete();
duke@1 2173 }
duke@1 2174 }
duke@1 2175 }
duke@1 2176
duke@1 2177 /** We can only read a single class file at a time; this
duke@1 2178 * flag keeps track of when we are currently reading a class
duke@1 2179 * file.
duke@1 2180 */
duke@1 2181 private boolean filling = false;
duke@1 2182
duke@1 2183 /** Fill in definition of class `c' from corresponding class or
duke@1 2184 * source file.
duke@1 2185 */
duke@1 2186 private void fillIn(ClassSymbol c) {
duke@1 2187 if (completionFailureName == c.fullname) {
duke@1 2188 throw new CompletionFailure(c, "user-selected completion failure by class name");
duke@1 2189 }
duke@1 2190 currentOwner = c;
jjg@776 2191 warnedAttrs.clear();
duke@1 2192 JavaFileObject classfile = c.classfile;
duke@1 2193 if (classfile != null) {
duke@1 2194 JavaFileObject previousClassFile = currentClassFile;
duke@1 2195 try {
jjg@816 2196 if (filling) {
jjg@816 2197 Assert.error("Filling " + classfile.toUri() + " during " + previousClassFile);
jjg@816 2198 }
duke@1 2199 currentClassFile = classfile;
duke@1 2200 if (verbose) {
jjg@909 2201 log.printVerbose("loading", currentClassFile.toString());
duke@1 2202 }
duke@1 2203 if (classfile.getKind() == JavaFileObject.Kind.CLASS) {
duke@1 2204 filling = true;
duke@1 2205 try {
duke@1 2206 bp = 0;
duke@1 2207 buf = readInputStream(buf, classfile.openInputStream());
duke@1 2208 readClassFile(c);
duke@1 2209 if (!missingTypeVariables.isEmpty() && !foundTypeVariables.isEmpty()) {
duke@1 2210 List<Type> missing = missingTypeVariables;
duke@1 2211 List<Type> found = foundTypeVariables;
duke@1 2212 missingTypeVariables = List.nil();
duke@1 2213 foundTypeVariables = List.nil();
duke@1 2214 filling = false;
duke@1 2215 ClassType ct = (ClassType)currentOwner.type;
duke@1 2216 ct.supertype_field =
duke@1 2217 types.subst(ct.supertype_field, missing, found);
duke@1 2218 ct.interfaces_field =
duke@1 2219 types.subst(ct.interfaces_field, missing, found);
duke@1 2220 } else if (missingTypeVariables.isEmpty() !=
duke@1 2221 foundTypeVariables.isEmpty()) {
duke@1 2222 Name name = missingTypeVariables.head.tsym.name;
duke@1 2223 throw badClassFile("undecl.type.var", name);
duke@1 2224 }
duke@1 2225 } finally {
duke@1 2226 missingTypeVariables = List.nil();
duke@1 2227 foundTypeVariables = List.nil();
duke@1 2228 filling = false;
duke@1 2229 }
duke@1 2230 } else {
duke@1 2231 if (sourceCompleter != null) {
duke@1 2232 sourceCompleter.complete(c);
duke@1 2233 } else {
duke@1 2234 throw new IllegalStateException("Source completer required to read "
duke@1 2235 + classfile.toUri());
duke@1 2236 }
duke@1 2237 }
duke@1 2238 return;
duke@1 2239 } catch (IOException ex) {
duke@1 2240 throw badClassFile("unable.to.access.file", ex.getMessage());
duke@1 2241 } finally {
duke@1 2242 currentClassFile = previousClassFile;
duke@1 2243 }
duke@1 2244 } else {
jjg@12 2245 JCDiagnostic diag =
jjg@12 2246 diagFactory.fragment("class.file.not.found", c.flatname);
duke@1 2247 throw
jjg@12 2248 newCompletionFailure(c, diag);
duke@1 2249 }
duke@1 2250 }
duke@1 2251 // where
duke@1 2252 private static byte[] readInputStream(byte[] buf, InputStream s) throws IOException {
duke@1 2253 try {
duke@1 2254 buf = ensureCapacity(buf, s.available());
duke@1 2255 int r = s.read(buf);
duke@1 2256 int bp = 0;
duke@1 2257 while (r != -1) {
duke@1 2258 bp += r;
duke@1 2259 buf = ensureCapacity(buf, bp);
duke@1 2260 r = s.read(buf, bp, buf.length - bp);
duke@1 2261 }
duke@1 2262 return buf;
duke@1 2263 } finally {
duke@1 2264 try {
duke@1 2265 s.close();
duke@1 2266 } catch (IOException e) {
duke@1 2267 /* Ignore any errors, as this stream may have already
duke@1 2268 * thrown a related exception which is the one that
duke@1 2269 * should be reported.
duke@1 2270 */
duke@1 2271 }
duke@1 2272 }
duke@1 2273 }
ksrini@804 2274 /*
ksrini@804 2275 * ensureCapacity will increase the buffer as needed, taking note that
ksrini@804 2276 * the new buffer will always be greater than the needed and never
ksrini@804 2277 * exactly equal to the needed size or bp. If equal then the read (above)
ksrini@804 2278 * will infinitely loop as buf.length - bp == 0.
ksrini@804 2279 */
duke@1 2280 private static byte[] ensureCapacity(byte[] buf, int needed) {
ksrini@804 2281 if (buf.length <= needed) {
duke@1 2282 byte[] old = buf;
duke@1 2283 buf = new byte[Integer.highestOneBit(needed) << 1];
duke@1 2284 System.arraycopy(old, 0, buf, 0, old.length);
duke@1 2285 }
duke@1 2286 return buf;
duke@1 2287 }
duke@1 2288 /** Static factory for CompletionFailure objects.
duke@1 2289 * In practice, only one can be used at a time, so we share one
duke@1 2290 * to reduce the expense of allocating new exception objects.
duke@1 2291 */
jjg@12 2292 private CompletionFailure newCompletionFailure(TypeSymbol c,
jjg@12 2293 JCDiagnostic diag) {
duke@1 2294 if (!cacheCompletionFailure) {
duke@1 2295 // log.warning("proc.messager",
duke@1 2296 // Log.getLocalizedString("class.file.not.found", c.flatname));
duke@1 2297 // c.debug.printStackTrace();
jjg@12 2298 return new CompletionFailure(c, diag);
duke@1 2299 } else {
duke@1 2300 CompletionFailure result = cachedCompletionFailure;
duke@1 2301 result.sym = c;
jjg@12 2302 result.diag = diag;
duke@1 2303 return result;
duke@1 2304 }
duke@1 2305 }
duke@1 2306 private CompletionFailure cachedCompletionFailure =
jjg@12 2307 new CompletionFailure(null, (JCDiagnostic) null);
duke@1 2308 {
duke@1 2309 cachedCompletionFailure.setStackTrace(new StackTraceElement[0]);
duke@1 2310 }
duke@1 2311
duke@1 2312 /** Load a toplevel class with given fully qualified name
duke@1 2313 * The class is entered into `classes' only if load was successful.
duke@1 2314 */
duke@1 2315 public ClassSymbol loadClass(Name flatname) throws CompletionFailure {
duke@1 2316 boolean absent = classes.get(flatname) == null;
duke@1 2317 ClassSymbol c = enterClass(flatname);
duke@1 2318 if (c.members_field == null && c.completer != null) {
duke@1 2319 try {
duke@1 2320 c.complete();
duke@1 2321 } catch (CompletionFailure ex) {
duke@1 2322 if (absent) classes.remove(flatname);
duke@1 2323 throw ex;
duke@1 2324 }
duke@1 2325 }
duke@1 2326 return c;
duke@1 2327 }
duke@1 2328
duke@1 2329 /************************************************************************
duke@1 2330 * Loading Packages
duke@1 2331 ***********************************************************************/
duke@1 2332
duke@1 2333 /** Check to see if a package exists, given its fully qualified name.
duke@1 2334 */
duke@1 2335 public boolean packageExists(Name fullname) {
duke@1 2336 return enterPackage(fullname).exists();
duke@1 2337 }
duke@1 2338
duke@1 2339 /** Make a package, given its fully qualified name.
duke@1 2340 */
duke@1 2341 public PackageSymbol enterPackage(Name fullname) {
duke@1 2342 PackageSymbol p = packages.get(fullname);
duke@1 2343 if (p == null) {
jjg@816 2344 Assert.check(!fullname.isEmpty(), "rootPackage missing!");
duke@1 2345 p = new PackageSymbol(
duke@1 2346 Convert.shortName(fullname),
duke@1 2347 enterPackage(Convert.packagePart(fullname)));
duke@1 2348 p.completer = this;
duke@1 2349 packages.put(fullname, p);
duke@1 2350 }
duke@1 2351 return p;
duke@1 2352 }
duke@1 2353
duke@1 2354 /** Make a package, given its unqualified name and enclosing package.
duke@1 2355 */
duke@1 2356 public PackageSymbol enterPackage(Name name, PackageSymbol owner) {
duke@1 2357 return enterPackage(TypeSymbol.formFullName(name, owner));
duke@1 2358 }
duke@1 2359
duke@1 2360 /** Include class corresponding to given class file in package,
duke@1 2361 * unless (1) we already have one the same kind (.class or .java), or
duke@1 2362 * (2) we have one of the other kind, and the given class file
duke@1 2363 * is older.
duke@1 2364 */
duke@1 2365 protected void includeClassFile(PackageSymbol p, JavaFileObject file) {
duke@1 2366 if ((p.flags_field & EXISTS) == 0)
duke@1 2367 for (Symbol q = p; q != null && q.kind == PCK; q = q.owner)
duke@1 2368 q.flags_field |= EXISTS;
duke@1 2369 JavaFileObject.Kind kind = file.getKind();
duke@1 2370 int seen;
duke@1 2371 if (kind == JavaFileObject.Kind.CLASS)
duke@1 2372 seen = CLASS_SEEN;
duke@1 2373 else
duke@1 2374 seen = SOURCE_SEEN;
duke@1 2375 String binaryName = fileManager.inferBinaryName(currentLoc, file);
duke@1 2376 int lastDot = binaryName.lastIndexOf(".");
duke@1 2377 Name classname = names.fromString(binaryName.substring(lastDot + 1));
duke@1 2378 boolean isPkgInfo = classname == names.package_info;
duke@1 2379 ClassSymbol c = isPkgInfo
duke@1 2380 ? p.package_info
duke@1 2381 : (ClassSymbol) p.members_field.lookup(classname).sym;
duke@1 2382 if (c == null) {
duke@1 2383 c = enterClass(classname, p);
duke@1 2384 if (c.classfile == null) // only update the file if's it's newly created
duke@1 2385 c.classfile = file;
duke@1 2386 if (isPkgInfo) {
duke@1 2387 p.package_info = c;
duke@1 2388 } else {
duke@1 2389 if (c.owner == p) // it might be an inner class
duke@1 2390 p.members_field.enter(c);
duke@1 2391 }
duke@1 2392 } else if (c.classfile != null && (c.flags_field & seen) == 0) {
duke@1 2393 // if c.classfile == null, we are currently compiling this class
duke@1 2394 // and no further action is necessary.
duke@1 2395 // if (c.flags_field & seen) != 0, we have already encountered
duke@1 2396 // a file of the same kind; again no further action is necessary.
duke@1 2397 if ((c.flags_field & (CLASS_SEEN | SOURCE_SEEN)) != 0)
duke@1 2398 c.classfile = preferredFileObject(file, c.classfile);
duke@1 2399 }
duke@1 2400 c.flags_field |= seen;
duke@1 2401 }
duke@1 2402
duke@1 2403 /** Implement policy to choose to derive information from a source
duke@1 2404 * file or a class file when both are present. May be overridden
duke@1 2405 * by subclasses.
duke@1 2406 */
duke@1 2407 protected JavaFileObject preferredFileObject(JavaFileObject a,
duke@1 2408 JavaFileObject b) {
duke@1 2409
duke@1 2410 if (preferSource)
duke@1 2411 return (a.getKind() == JavaFileObject.Kind.SOURCE) ? a : b;
duke@1 2412 else {
duke@1 2413 long adate = a.getLastModified();
duke@1 2414 long bdate = b.getLastModified();
duke@1 2415 // 6449326: policy for bad lastModifiedTime in ClassReader
duke@1 2416 //assert adate >= 0 && bdate >= 0;
duke@1 2417 return (adate > bdate) ? a : b;
duke@1 2418 }
duke@1 2419 }
duke@1 2420
duke@1 2421 /**
duke@1 2422 * specifies types of files to be read when filling in a package symbol
duke@1 2423 */
duke@1 2424 protected EnumSet<JavaFileObject.Kind> getPackageFileKinds() {
duke@1 2425 return EnumSet.of(JavaFileObject.Kind.CLASS, JavaFileObject.Kind.SOURCE);
duke@1 2426 }
duke@1 2427
duke@1 2428 /**
duke@1 2429 * this is used to support javadoc
duke@1 2430 */
duke@1 2431 protected void extraFileActions(PackageSymbol pack, JavaFileObject fe) {
duke@1 2432 }
duke@1 2433
duke@1 2434 protected Location currentLoc; // FIXME
duke@1 2435
duke@1 2436 private boolean verbosePath = true;
duke@1 2437
duke@1 2438 /** Load directory of package into members scope.
duke@1 2439 */
duke@1 2440 private void fillIn(PackageSymbol p) throws IOException {
duke@1 2441 if (p.members_field == null) p.members_field = new Scope(p);
duke@1 2442 String packageName = p.fullname.toString();
duke@1 2443
duke@1 2444 Set<JavaFileObject.Kind> kinds = getPackageFileKinds();
duke@1 2445
duke@1 2446 fillIn(p, PLATFORM_CLASS_PATH,
duke@1 2447 fileManager.list(PLATFORM_CLASS_PATH,
duke@1 2448 packageName,
duke@1 2449 EnumSet.of(JavaFileObject.Kind.CLASS),
duke@1 2450 false));
duke@1 2451
duke@1 2452 Set<JavaFileObject.Kind> classKinds = EnumSet.copyOf(kinds);
duke@1 2453 classKinds.remove(JavaFileObject.Kind.SOURCE);
duke@1 2454 boolean wantClassFiles = !classKinds.isEmpty();
duke@1 2455
duke@1 2456 Set<JavaFileObject.Kind> sourceKinds = EnumSet.copyOf(kinds);
duke@1 2457 sourceKinds.remove(JavaFileObject.Kind.CLASS);
duke@1 2458 boolean wantSourceFiles = !sourceKinds.isEmpty();
duke@1 2459
duke@1 2460 boolean haveSourcePath = fileManager.hasLocation(SOURCE_PATH);
duke@1 2461
duke@1 2462 if (verbose && verbosePath) {
duke@1 2463 if (fileManager instanceof StandardJavaFileManager) {
duke@1 2464 StandardJavaFileManager fm = (StandardJavaFileManager)fileManager;
duke@1 2465 if (haveSourcePath && wantSourceFiles) {
duke@1 2466 List<File> path = List.nil();
duke@1 2467 for (File file : fm.getLocation(SOURCE_PATH)) {
duke@1 2468 path = path.prepend(file);
duke@1 2469 }
jjg@909 2470 log.printVerbose("sourcepath", path.reverse().toString());
duke@1 2471 } else if (wantSourceFiles) {
duke@1 2472 List<File> path = List.nil();
duke@1 2473 for (File file : fm.getLocation(CLASS_PATH)) {
duke@1 2474 path = path.prepend(file);
duke@1 2475 }
jjg@909 2476 log.printVerbose("sourcepath", path.reverse().toString());
duke@1 2477 }
duke@1 2478 if (wantClassFiles) {
duke@1 2479 List<File> path = List.nil();
duke@1 2480 for (File file : fm.getLocation(PLATFORM_CLASS_PATH)) {
duke@1 2481 path = path.prepend(file);
duke@1 2482 }
duke@1 2483 for (File file : fm.getLocation(CLASS_PATH)) {
duke@1 2484 path = path.prepend(file);
duke@1 2485 }
jjg@909 2486 log.printVerbose("classpath", path.reverse().toString());
duke@1 2487 }
duke@1 2488 }
duke@1 2489 }
duke@1 2490
duke@1 2491 if (wantSourceFiles && !haveSourcePath) {
duke@1 2492 fillIn(p, CLASS_PATH,
duke@1 2493 fileManager.list(CLASS_PATH,
duke@1 2494 packageName,
duke@1 2495 kinds,
duke@1 2496 false));
duke@1 2497 } else {
duke@1 2498 if (wantClassFiles)
duke@1 2499 fillIn(p, CLASS_PATH,
duke@1 2500 fileManager.list(CLASS_PATH,
duke@1 2501 packageName,
duke@1 2502 classKinds,
duke@1 2503 false));
duke@1 2504 if (wantSourceFiles)
duke@1 2505 fillIn(p, SOURCE_PATH,
duke@1 2506 fileManager.list(SOURCE_PATH,
duke@1 2507 packageName,
duke@1 2508 sourceKinds,
duke@1 2509 false));
duke@1 2510 }
duke@1 2511 verbosePath = false;
duke@1 2512 }
duke@1 2513 // where
duke@1 2514 private void fillIn(PackageSymbol p,
duke@1 2515 Location location,
duke@1 2516 Iterable<JavaFileObject> files)
duke@1 2517 {
duke@1 2518 currentLoc = location;
duke@1 2519 for (JavaFileObject fo : files) {
duke@1 2520 switch (fo.getKind()) {
duke@1 2521 case CLASS:
duke@1 2522 case SOURCE: {
duke@1 2523 // TODO pass binaryName to includeClassFile
duke@1 2524 String binaryName = fileManager.inferBinaryName(currentLoc, fo);
duke@1 2525 String simpleName = binaryName.substring(binaryName.lastIndexOf(".") + 1);
duke@1 2526 if (SourceVersion.isIdentifier(simpleName) ||
duke@1 2527 simpleName.equals("package-info"))
duke@1 2528 includeClassFile(p, fo);
duke@1 2529 break;
duke@1 2530 }
duke@1 2531 default:
duke@1 2532 extraFileActions(p, fo);
duke@1 2533 }
duke@1 2534 }
duke@1 2535 }
duke@1 2536
duke@1 2537 /** Output for "-checkclassfile" option.
duke@1 2538 * @param key The key to look up the correct internationalized string.
duke@1 2539 * @param arg An argument for substitution into the output string.
duke@1 2540 */
duke@1 2541 private void printCCF(String key, Object arg) {
jjg@1136 2542 log.printLines(key, arg);
duke@1 2543 }
duke@1 2544
duke@1 2545
duke@1 2546 public interface SourceCompleter {
duke@1 2547 void complete(ClassSymbol sym)
duke@1 2548 throws CompletionFailure;
duke@1 2549 }
duke@1 2550
duke@1 2551 /**
duke@1 2552 * A subclass of JavaFileObject for the sourcefile attribute found in a classfile.
duke@1 2553 * The attribute is only the last component of the original filename, so is unlikely
duke@1 2554 * to be valid as is, so operations other than those to access the name throw
duke@1 2555 * UnsupportedOperationException
duke@1 2556 */
duke@1 2557 private static class SourceFileObject extends BaseFileObject {
duke@1 2558
duke@1 2559 /** The file's name.
duke@1 2560 */
duke@1 2561 private Name name;
jjg@57 2562 private Name flatname;
duke@1 2563
jjg@57 2564 public SourceFileObject(Name name, Name flatname) {
jjg@57 2565 super(null); // no file manager; never referenced for this file object
duke@1 2566 this.name = name;
jjg@57 2567 this.flatname = flatname;
duke@1 2568 }
duke@1 2569
jjg@415 2570 @Override
jjg@415 2571 public URI toUri() {
jjg@415 2572 try {
jjg@415 2573 return new URI(null, name.toString(), null);
jjg@415 2574 } catch (URISyntaxException e) {
jjg@415 2575 throw new CannotCreateUriError(name.toString(), e);
jjg@415 2576 }
jjg@415 2577 }
jjg@415 2578
jjg@415 2579 @Override
jjg@415 2580 public String getName() {
jjg@415 2581 return name.toString();
jjg@415 2582 }
jjg@415 2583
jjg@415 2584 @Override
jjg@415 2585 public String getShortName() {
jjg@415 2586 return getName();
jjg@415 2587 }
jjg@415 2588
jjg@415 2589 @Override
jjg@415 2590 public JavaFileObject.Kind getKind() {
jjg@415 2591 return getKind(getName());
jjg@415 2592 }
jjg@415 2593
jjg@415 2594 @Override
duke@1 2595 public InputStream openInputStream() {
duke@1 2596 throw new UnsupportedOperationException();
duke@1 2597 }
duke@1 2598
jjg@415 2599 @Override
duke@1 2600 public OutputStream openOutputStream() {
duke@1 2601 throw new UnsupportedOperationException();
duke@1 2602 }
duke@1 2603
jjg@415 2604 @Override
jjg@415 2605 public CharBuffer getCharContent(boolean ignoreEncodingErrors) {
duke@1 2606 throw new UnsupportedOperationException();
duke@1 2607 }
duke@1 2608
jjg@415 2609 @Override
jjg@415 2610 public Reader openReader(boolean ignoreEncodingErrors) {
jjg@415 2611 throw new UnsupportedOperationException();
jjg@415 2612 }
jjg@415 2613
jjg@415 2614 @Override
duke@1 2615 public Writer openWriter() {
duke@1 2616 throw new UnsupportedOperationException();
duke@1 2617 }
duke@1 2618
jjg@415 2619 @Override
duke@1 2620 public long getLastModified() {
duke@1 2621 throw new UnsupportedOperationException();
duke@1 2622 }
duke@1 2623
jjg@415 2624 @Override
duke@1 2625 public boolean delete() {
duke@1 2626 throw new UnsupportedOperationException();
duke@1 2627 }
duke@1 2628
jjg@415 2629 @Override
jjg@415 2630 protected String inferBinaryName(Iterable<? extends File> path) {
jjg@415 2631 return flatname.toString();
jjg@415 2632 }
jjg@415 2633
jjg@415 2634 @Override
jjg@415 2635 public boolean isNameCompatible(String simpleName, JavaFileObject.Kind kind) {
jjg@415 2636 return true; // fail-safe mode
duke@1 2637 }
duke@1 2638
jjg@424 2639 /**
jjg@424 2640 * Check if two file objects are equal.
jjg@424 2641 * SourceFileObjects are just placeholder objects for the value of a
jjg@424 2642 * SourceFile attribute, and do not directly represent specific files.
jjg@424 2643 * Two SourceFileObjects are equal if their names are equal.
jjg@424 2644 */
duke@1 2645 @Override
duke@1 2646 public boolean equals(Object other) {
jjg@424 2647 if (this == other)
jjg@424 2648 return true;
jjg@424 2649
duke@1 2650 if (!(other instanceof SourceFileObject))
duke@1 2651 return false;
jjg@424 2652
duke@1 2653 SourceFileObject o = (SourceFileObject) other;
duke@1 2654 return name.equals(o.name);
duke@1 2655 }
duke@1 2656
duke@1 2657 @Override
duke@1 2658 public int hashCode() {
duke@1 2659 return name.hashCode();
duke@1 2660 }
duke@1 2661 }
duke@1 2662 }

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