src/share/classes/sun/rmi/rmic/iiop/StubGenerator.java

Thu, 25 Jun 2015 13:56:20 +0100

author
msheppar
date
Thu, 25 Jun 2015 13:56:20 +0100
changeset 1052
da53c079df5d
parent 512
81d694b1ab2f
child 1410
9c913ea7e4a1
permissions
-rw-r--r--

8076383: Better CORBA exception handling
Reviewed-by: rriggs, coffeys, skoivu, ahgross

duke@1 1 /*
msheppar@512 2 * Copyright (c) 1998, 2013, Oracle and/or its affiliates. All rights reserved.
duke@1 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@1 4 *
duke@1 5 * This code is free software; you can redistribute it and/or modify it
duke@1 6 * under the terms of the GNU General Public License version 2 only, as
ohair@158 7 * published by the Free Software Foundation. Oracle designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
ohair@158 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@158 21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
ohair@158 22 * or visit www.oracle.com if you need additional information or have any
ohair@158 23 * questions.
duke@1 24 */
duke@1 25
duke@1 26 /*
duke@1 27 * Licensed Materials - Property of IBM
duke@1 28 * RMI-IIOP v1.0
duke@1 29 * Copyright IBM Corp. 1998 1999 All Rights Reserved
duke@1 30 *
duke@1 31 */
duke@1 32
duke@1 33 package sun.rmi.rmic.iiop;
duke@1 34
duke@1 35 import java.io.File;
duke@1 36 import java.io.IOException;
msheppar@512 37 import java.io.SerializablePermission;
msheppar@512 38 import java.security.AccessController;
msheppar@512 39 import java.security.PrivilegedAction;
duke@1 40 import java.util.Vector;
duke@1 41 import java.util.Hashtable;
duke@1 42 import java.util.Enumeration;
duke@1 43 import sun.tools.java.Identifier;
duke@1 44 import sun.tools.java.ClassNotFound;
duke@1 45 import sun.tools.java.ClassDefinition;
duke@1 46 import sun.tools.java.ClassDeclaration;
duke@1 47 import sun.tools.java.CompilerError;
duke@1 48 import sun.rmi.rmic.IndentingWriter;
duke@1 49 import java.util.HashSet;
duke@1 50 import java.util.Arrays;
duke@1 51 import com.sun.corba.se.impl.util.Utility;
duke@1 52 import com.sun.corba.se.impl.util.PackagePrefixChecker;
duke@1 53 import sun.rmi.rmic.Main;
duke@1 54
msheppar@512 55
duke@1 56 /**
duke@1 57 * An IIOP stub/tie generator for rmic.
duke@1 58 *
duke@1 59 * @author Bryan Atsatt
duke@1 60 * @author Anil Vijendran
duke@1 61 * @author M. Mortazavi
duke@1 62 */
duke@1 63
duke@1 64 public class StubGenerator extends sun.rmi.rmic.iiop.Generator {
duke@1 65
duke@1 66 private static final String DEFAULT_STUB_CLASS = "javax.rmi.CORBA.Stub";
duke@1 67 private static final String DEFAULT_TIE_CLASS = "org.omg.CORBA_2_3.portable.ObjectImpl";
duke@1 68 private static final String DEFAULT_POA_TIE_CLASS = "org.omg.PortableServer.Servant";
duke@1 69
duke@1 70 protected boolean reverseIDs = false;
duke@1 71 protected boolean localStubs = true;
duke@1 72 protected boolean standardPackage = false;
duke@1 73 protected boolean useHash = true;
duke@1 74 protected String stubBaseClass = DEFAULT_STUB_CLASS;
duke@1 75 protected String tieBaseClass = DEFAULT_TIE_CLASS;
duke@1 76 protected HashSet namesInUse = new HashSet();
duke@1 77 protected Hashtable classesInUse = new Hashtable();
duke@1 78 protected Hashtable imports = new Hashtable();
duke@1 79 protected int importCount = 0;
duke@1 80 protected String currentPackage = null;
duke@1 81 protected String currentClass = null;
duke@1 82 protected boolean castArray = false;
duke@1 83 protected Hashtable transactionalObjects = new Hashtable() ;
duke@1 84 protected boolean POATie = false ;
msheppar@512 85 protected boolean emitPermissionCheck = false;
duke@1 86
duke@1 87 /**
duke@1 88 * Default constructor for Main to use.
duke@1 89 */
duke@1 90 public StubGenerator() {
duke@1 91 }
duke@1 92
duke@1 93 /**
duke@1 94 * Overridden in order to set the standardPackage flag.
duke@1 95 */
duke@1 96 public void generate(
duke@1 97 sun.rmi.rmic.BatchEnvironment env,
duke@1 98 ClassDefinition cdef, File destDir) {
duke@1 99 ((sun.rmi.rmic.iiop.BatchEnvironment)env).
duke@1 100 setStandardPackage(standardPackage);
duke@1 101 super.generate(env, cdef, destDir);
duke@1 102 }
duke@1 103
duke@1 104 /**
duke@1 105 * Return true if a new instance should be created for each
duke@1 106 * class on the command line. Subclasses which return true
duke@1 107 * should override newInstance() to return an appropriately
duke@1 108 * constructed instance.
duke@1 109 */
duke@1 110 protected boolean requireNewInstance() {
duke@1 111 return false;
duke@1 112 }
duke@1 113
duke@1 114 /**
duke@1 115 * Return true if non-conforming types should be parsed.
duke@1 116 * @param stack The context stack.
duke@1 117 */
duke@1 118 protected boolean parseNonConforming(ContextStack stack) {
duke@1 119
duke@1 120 // We let the environment setting decide so that
duke@1 121 // another generator (e.g. IDLGenerator) can change
duke@1 122 // it and we will just go with the flow...
duke@1 123
duke@1 124 return stack.getEnv().getParseNonConforming();
duke@1 125 }
duke@1 126
duke@1 127 /**
duke@1 128 * Create and return a top-level type.
duke@1 129 * @param cdef The top-level class definition.
duke@1 130 * @param stack The context stack.
duke@1 131 * @return The compound type or null if is non-conforming.
duke@1 132 */
duke@1 133 protected CompoundType getTopType(ClassDefinition cdef, ContextStack stack) {
duke@1 134
duke@1 135 CompoundType result = null;
duke@1 136
duke@1 137 // Do we have an interface?
duke@1 138
duke@1 139 if (cdef.isInterface()) {
duke@1 140
duke@1 141 // Yes, so first try Abstract...
duke@1 142
duke@1 143 result = AbstractType.forAbstract(cdef,stack,true);
duke@1 144
duke@1 145 if (result == null) {
duke@1 146
duke@1 147 // Then try Remote...
duke@1 148
duke@1 149 result = RemoteType.forRemote(cdef,stack,false);
duke@1 150 }
duke@1 151 } else {
duke@1 152
duke@1 153 // Not an interface, so try Implementation...
duke@1 154
duke@1 155 result = ImplementationType.forImplementation(cdef,stack,false);
duke@1 156 }
duke@1 157
duke@1 158 return result;
duke@1 159 }
duke@1 160
duke@1 161 /**
duke@1 162 * Examine and consume command line arguments.
duke@1 163 * @param argv The command line arguments. Ignore null
duke@1 164 * and unknown arguments. Set each consumed argument to null.
duke@1 165 * @param error Report any errors using the main.error() methods.
duke@1 166 * @return true if no errors, false otherwise.
duke@1 167 */
duke@1 168 public boolean parseArgs(String argv[], Main main) {
duke@1 169 Object marker = new Object() ;
duke@1 170
duke@1 171 // Reset any cached options...
duke@1 172
duke@1 173 reverseIDs = false;
duke@1 174 localStubs = true;
duke@1 175 useHash = true;
duke@1 176 stubBaseClass = DEFAULT_STUB_CLASS;
duke@1 177 // tieBaseClass = DEFAULT_TIE_CLASS;
duke@1 178 transactionalObjects = new Hashtable() ;
duke@1 179
duke@1 180 // Parse options...
duke@1 181
duke@1 182 boolean result = super.parseArgs(argv,main);
duke@1 183 if (result) {
duke@1 184 for (int i = 0; i < argv.length; i++) {
duke@1 185 if (argv[i] != null) {
duke@1 186 String arg = argv[i].toLowerCase();
duke@1 187 if (arg.equals("-iiop")) {
duke@1 188 argv[i] = null;
duke@1 189 } else if (arg.equals("-xreverseids")) {
duke@1 190 reverseIDs = true;
duke@1 191 argv[i] = null;
duke@1 192 } else if (arg.equals("-nolocalstubs")) {
duke@1 193 localStubs = false;
duke@1 194 argv[i] = null;
duke@1 195 } else if (arg.equals("-xnohash")) {
duke@1 196 useHash = false;
duke@1 197 argv[i] = null;
duke@1 198 } else if (argv[i].equals("-standardPackage")) {
duke@1 199 standardPackage = true;
duke@1 200 argv[i] = null;
msheppar@512 201 } else if (argv[i].equals("-emitPermissionCheck")) {
msheppar@512 202 emitPermissionCheck = true;
msheppar@512 203 argv[i] = null;
duke@1 204 } else if (arg.equals("-xstubbase")) {
duke@1 205 argv[i] = null;
duke@1 206 if (++i < argv.length && argv[i] != null && !argv[i].startsWith("-")) {
duke@1 207 stubBaseClass = argv[i];
duke@1 208 argv[i] = null;
duke@1 209 } else {
duke@1 210 main.error("rmic.option.requires.argument", "-Xstubbase");
duke@1 211 result = false;
duke@1 212 }
duke@1 213 } else if (arg.equals("-xtiebase")) {
duke@1 214 argv[i] = null;
duke@1 215 if (++i < argv.length && argv[i] != null && !argv[i].startsWith("-")) {
duke@1 216 tieBaseClass = argv[i];
duke@1 217 argv[i] = null;
duke@1 218 } else {
duke@1 219 main.error("rmic.option.requires.argument", "-Xtiebase");
duke@1 220 result = false;
duke@1 221 }
duke@1 222 } else if (arg.equals("-transactional" )) {
duke@1 223 // Scan for the next non-flag argument.
duke@1 224 // Assume that it is a class name and add it
duke@1 225 // to the list of transactional classes.
duke@1 226 for ( int ctr=i+1; ctr<argv.length; ctr++ ) {
duke@1 227 if (argv[ctr].charAt(1) != '-') {
duke@1 228 transactionalObjects.put( argv[ctr], marker ) ;
duke@1 229 break ;
duke@1 230 }
duke@1 231 }
duke@1 232 argv[i] = null;
duke@1 233 } else if (arg.equals( "-poa" )) {
duke@1 234 POATie = true ;
duke@1 235 argv[i] = null;
duke@1 236 }
duke@1 237 }
duke@1 238 }
duke@1 239 }
duke@1 240 if(POATie){
duke@1 241 tieBaseClass = DEFAULT_POA_TIE_CLASS;
duke@1 242 } else {
duke@1 243 tieBaseClass = DEFAULT_TIE_CLASS;
duke@1 244 }
duke@1 245 return result;
duke@1 246 }
duke@1 247
duke@1 248 /**
duke@1 249 * Return an array containing all the file names and types that need to be
duke@1 250 * generated for the given top-level type. The file names must NOT have an
duke@1 251 * extension (e.g. ".java").
duke@1 252 * @param topType The type returned by getTopType().
duke@1 253 * @param alreadyChecked A set of Types which have already been checked.
duke@1 254 * Intended to be passed to topType.collectMatching(filter,alreadyChecked).
duke@1 255 */
duke@1 256 protected OutputType[] getOutputTypesFor(CompoundType topType,
duke@1 257 HashSet alreadyChecked) {
duke@1 258
duke@1 259 // We want to generate stubs for all remote and implementation types,
duke@1 260 // so collect them up.
duke@1 261 //
duke@1 262 // We use the form of collectMatching which allows us to pass in a set of
duke@1 263 // types which have previously been checked. By doing so, we ensure that if
duke@1 264 // the command line contains Hello and HelloImpl, we will only generate
duke@1 265 // output for Hello once...
duke@1 266
duke@1 267 int filter = TYPE_REMOTE | TYPE_IMPLEMENTATION;
duke@1 268 Type[] genTypes = topType.collectMatching(filter,alreadyChecked);
duke@1 269 int count = genTypes.length;
duke@1 270 Vector list = new Vector(count+5);
duke@1 271 BatchEnvironment theEnv = topType.getEnv();
duke@1 272
duke@1 273 // Now walk all types...
duke@1 274
duke@1 275 for (int i = 0; i < genTypes.length; i++) {
duke@1 276
duke@1 277 Type type = genTypes[i];
duke@1 278 String typeName = type.getName();
duke@1 279 boolean createStub = true;
duke@1 280
duke@1 281 // Is it an implementation type?
duke@1 282
duke@1 283 if (type instanceof ImplementationType) {
duke@1 284
duke@1 285 // Yes, so add a tie for it...
duke@1 286
duke@1 287 list.addElement(new OutputType(Utility.tieNameForCompiler(typeName), type));
duke@1 288
duke@1 289 // Does it have more than 1 remote interface? If so, we
duke@1 290 // want to create a stub for it...
duke@1 291
duke@1 292 int remoteInterfaceCount = 0;
duke@1 293 InterfaceType[] interfaces = ((CompoundType)type).getInterfaces();
duke@1 294 for (int j = 0; j < interfaces.length; j++) {
duke@1 295 if (interfaces[j].isType(TYPE_REMOTE) &&
duke@1 296 !interfaces[j].isType(TYPE_ABSTRACT)) {
duke@1 297 remoteInterfaceCount++;
duke@1 298 }
duke@1 299 }
duke@1 300
duke@1 301 if (remoteInterfaceCount <= 1) {
duke@1 302
duke@1 303 // No, so do not create a stub for this type...
duke@1 304
duke@1 305 createStub = false;
duke@1 306 }
duke@1 307 }
duke@1 308
duke@1 309 // Is it an abstract interface type?
duke@1 310
duke@1 311 if (type instanceof AbstractType) {
duke@1 312
duke@1 313 // Do not create a stub for this type...
duke@1 314
duke@1 315 createStub = false; // d11141
duke@1 316 }
duke@1 317
duke@1 318 if (createStub) {
duke@1 319
duke@1 320 // Add a stub for the type...
duke@1 321
duke@1 322 list.addElement(new OutputType(Utility.stubNameForCompiler(typeName), type));
duke@1 323 }
duke@1 324 }
duke@1 325
duke@1 326 // Copy list into array..
duke@1 327
duke@1 328 OutputType[] outputTypes = new OutputType[list.size()];
duke@1 329 list.copyInto(outputTypes);
duke@1 330 return outputTypes;
duke@1 331 }
duke@1 332
duke@1 333 /**
duke@1 334 * Return the file name extension for the given file name (e.g. ".java").
duke@1 335 * All files generated with the ".java" extension will be compiled. To
duke@1 336 * change this behavior for ".java" files, override the compileJavaSourceFile
duke@1 337 * method to return false.
duke@1 338 * @param outputType One of the items returned by getOutputTypesFor(...)
duke@1 339 */
duke@1 340 protected String getFileNameExtensionFor(OutputType outputType) {
duke@1 341 return SOURCE_FILE_EXTENSION;
duke@1 342 }
duke@1 343
duke@1 344 /**
duke@1 345 * Write the output for the given OutputFileName into the output stream.
duke@1 346 * @param name One of the items returned by getOutputTypesFor(...)
duke@1 347 * @param alreadyChecked A set of Types which have already been checked.
duke@1 348 * Intended to be passed to Type.collectMatching(filter,alreadyChecked).
duke@1 349 * @param writer The output stream.
duke@1 350 */
duke@1 351 protected void writeOutputFor( OutputType outputType,
duke@1 352 HashSet alreadyChecked,
duke@1 353 IndentingWriter writer) throws IOException {
duke@1 354
duke@1 355 String fileName = outputType.getName();
duke@1 356 CompoundType theType = (CompoundType) outputType.getType();
duke@1 357
duke@1 358 // Are we doing a Stub or Tie?
duke@1 359
duke@1 360 if (fileName.endsWith(Utility.RMI_STUB_SUFFIX)) {
duke@1 361
duke@1 362 // Stub.
duke@1 363
duke@1 364 writeStub(outputType,writer);
duke@1 365
duke@1 366 } else {
duke@1 367
duke@1 368 // Tie
duke@1 369
duke@1 370 writeTie(outputType,writer);
duke@1 371 }
duke@1 372 }
duke@1 373
duke@1 374 /**
duke@1 375 * Write a stub for the specified type.
duke@1 376 */
duke@1 377 protected void writeStub(OutputType outputType,
duke@1 378 IndentingWriter p) throws IOException {
duke@1 379
duke@1 380 CompoundType theType = (CompoundType) outputType.getType();
duke@1 381 RemoteType[] remoteInterfaces = getDirectRemoteInterfaces(theType);
duke@1 382
duke@1 383 // Write comment.
duke@1 384
duke@1 385 p.pln("// Stub class generated by rmic, do not edit.");
duke@1 386 p.pln("// Contents subject to change without notice.");
duke@1 387 p.pln();
duke@1 388
duke@1 389 // Set our standard classes...
duke@1 390
duke@1 391 setStandardClassesInUse(theType,true);
duke@1 392
duke@1 393 // Add classes for this type...
duke@1 394
duke@1 395 addClassesInUse(theType,remoteInterfaces);
duke@1 396
duke@1 397 // Write package and import statements...
duke@1 398
duke@1 399 writePackageAndImports(p);
duke@1 400
msheppar@512 401 // generate
msheppar@512 402 // import java.security.AccessController;
msheppar@512 403 // import java.security.PrivilegedAction;
msheppar@512 404 // import java.io.SerializablePermission;
msheppar@512 405 if (emitPermissionCheck) {
msheppar@512 406 p.pln("import java.security.AccessController;");
msheppar@512 407 p.pln("import java.security.PrivilegedAction;");
msheppar@512 408 p.pln("import java.io.SerializablePermission;");
msheppar@512 409 p.pln();
msheppar@512 410 p.pln();
msheppar@512 411 }
msheppar@512 412
duke@1 413 // Declare the stub class; implement all remote interfaces.
duke@1 414
duke@1 415 p.p("public class " + currentClass);
msheppar@512 416
duke@1 417 p.p(" extends " + getName(stubBaseClass));
duke@1 418 p.p(" implements ");
duke@1 419 if (remoteInterfaces.length > 0) {
duke@1 420 for(int i = 0; i < remoteInterfaces.length; i++) {
duke@1 421 if (i > 0) {
duke@1 422 p.pln(",");
duke@1 423 }
duke@1 424 String objName = testUtil(getName(remoteInterfaces[i]), theType);
duke@1 425 p.p(objName);
duke@1 426 }
duke@1 427 }
duke@1 428
duke@1 429 // Add java.rmi.Remote if this type does not implement it.
duke@1 430 // This allows stubs for Abstract interfaces to be treated
duke@1 431 // uniformly...
duke@1 432
duke@1 433 if (!implementsRemote(theType)) {
duke@1 434 p.pln(",");
duke@1 435 p.p(getName("java.rmi.Remote"));
duke@1 436 }
duke@1 437
duke@1 438 p.plnI(" {");
duke@1 439 p.pln();
duke@1 440
duke@1 441 // Write the ids...
duke@1 442
duke@1 443 writeIds( p, theType, false );
duke@1 444 p.pln();
duke@1 445
msheppar@512 446 if (emitPermissionCheck) {
msheppar@512 447
msheppar@512 448 // produce the following generated code for example
msheppar@1052 449 //
msheppar@1052 450 // private transient boolean _instantiated = false;
msheppar@1052 451 //
msheppar@512 452 // private static Void checkPermission() {
msheppar@512 453 // SecurityManager sm = System.getSecurityManager();
msheppar@512 454 // if (sm != null) {
msheppar@512 455 // sm.checkPermission(new SerializablePermission(
msheppar@512 456 // "enableSubclassImplementation")); // testing
msheppar@512 457 // }
msheppar@512 458 // return null;
msheppar@512 459 // }
msheppar@512 460 //
msheppar@512 461 // private _XXXXX_Stub(Void ignore) {
msheppar@512 462 // }
msheppar@512 463 //
msheppar@512 464 // public _XXXXX_Stub() {
msheppar@512 465 // this(checkPermission());
msheppar@1052 466 // _instantiated = true;
msheppar@1052 467 // }
msheppar@1052 468 //
msheppar@1052 469 // private void readObject(java.io.ObjectInputStream s) throws IOException, ClassNotFoundException {
msheppar@1052 470 // checkPermission();
msheppar@1052 471 // s.defaultReadObject();
msheppar@1052 472 // _instantiated = true;
msheppar@512 473 // }
msheppar@512 474 //
msheppar@512 475 // where XXXXX is the name of the remote interface
msheppar@512 476
msheppar@512 477 p.pln();
msheppar@1052 478 p.plnI("private transient boolean _instantiated = false;");
msheppar@1052 479 p.pln();
msheppar@1052 480 p.pO();
msheppar@512 481 p.plnI("private static Void checkPermission() {");
msheppar@512 482 p.plnI("SecurityManager sm = System.getSecurityManager();");
msheppar@512 483 p.pln("if (sm != null) {");
msheppar@512 484 p.pI();
msheppar@512 485 p.plnI("sm.checkPermission(new SerializablePermission(");
msheppar@512 486 p.plnI("\"enableSubclassImplementation\"));");
msheppar@512 487 p.pO();
msheppar@512 488 p.pO();
msheppar@512 489 p.pOln("}");
msheppar@512 490 p.pln("return null;");
msheppar@512 491 p.pO();
msheppar@512 492 p.pOln("}");
msheppar@512 493 p.pln();
msheppar@512 494 p.pO();
msheppar@512 495
msheppar@512 496 p.pI();
msheppar@1052 497 p.plnI("private " + currentClass + "(Void ignore) { }");
msheppar@512 498 p.pln();
msheppar@1052 499 p.pO();
msheppar@1052 500
msheppar@1052 501 p.plnI("public " + currentClass + "() {");
msheppar@512 502 p.pln("this(checkPermission());");
msheppar@1052 503 p.pln("_instantiated = true;");
msheppar@512 504 p.pOln("}");
msheppar@512 505 p.pln();
msheppar@1052 506 p.plnI("private void readObject(java.io.ObjectInputStream s) throws IOException, ClassNotFoundException {");
msheppar@1052 507 p.plnI("checkPermission();");
msheppar@1052 508 p.pO();
msheppar@1052 509 p.pln("s.defaultReadObject();");
msheppar@1052 510 p.pln("_instantiated = true;");
msheppar@1052 511 p.pOln("}");
msheppar@1052 512 p.pln();
msheppar@1052 513 //p.pO();
msheppar@512 514 }
msheppar@512 515
msheppar@512 516 if (!emitPermissionCheck) {
msheppar@512 517 p.pI();
msheppar@512 518 }
msheppar@512 519
duke@1 520 // Write the _ids() method...
duke@1 521
duke@1 522 p.plnI("public String[] _ids() { ");
coffeys@370 523 p.pln("return (String[]) _type_ids.clone();");
duke@1 524 p.pOln("}");
duke@1 525
duke@1 526 // Get all the methods and write each stub method...
duke@1 527
duke@1 528 CompoundType.Method[] remoteMethods = theType.getMethods();
duke@1 529 int methodCount = remoteMethods.length;
duke@1 530 if (methodCount > 0) {
duke@1 531 boolean writeHeader = true;
duke@1 532 for(int i = 0; i < methodCount; i++) {
duke@1 533 if (!remoteMethods[i].isConstructor()) {
duke@1 534 if (writeHeader) {
duke@1 535 writeHeader = false;
duke@1 536 }
duke@1 537 p.pln();
duke@1 538 writeStubMethod(p, remoteMethods[i], theType);
duke@1 539 }
duke@1 540 }
duke@1 541 }
duke@1 542
duke@1 543 // Write the cast array hack...
duke@1 544
duke@1 545 writeCastArray(p);
duke@1 546
duke@1 547 p.pOln("}"); // end stub class
duke@1 548 }
duke@1 549
duke@1 550 void addClassInUse(String qualifiedName) {
duke@1 551 String unqualifiedName = qualifiedName;
duke@1 552 String packageName = null;
duke@1 553 int index = qualifiedName.lastIndexOf('.');
duke@1 554 if (index > 0) {
duke@1 555 unqualifiedName = qualifiedName.substring(index+1);
duke@1 556 packageName = qualifiedName.substring(0,index);
duke@1 557 }
duke@1 558 addClassInUse(unqualifiedName,qualifiedName,packageName);
duke@1 559 }
duke@1 560
duke@1 561 void addClassInUse(Type type) {
duke@1 562 if (!type.isPrimitive()) {
duke@1 563 Identifier id = type.getIdentifier();
duke@1 564 String name = IDLNames.replace(id.getName().toString(),". ",".");
duke@1 565 String packageName = type.getPackageName();
duke@1 566 String qualifiedName;
duke@1 567 if (packageName != null) {
duke@1 568 qualifiedName = packageName+"."+name;
duke@1 569 } else {
duke@1 570 qualifiedName = name;
duke@1 571 }
duke@1 572 addClassInUse(name,qualifiedName,packageName);
duke@1 573 }
duke@1 574 }
duke@1 575
duke@1 576 void addClassInUse(Type[] types) {
duke@1 577 for (int i = 0; i < types.length; i++) {
duke@1 578 addClassInUse(types[i]);
duke@1 579 }
duke@1 580 }
duke@1 581
duke@1 582 void addStubInUse(Type type) {
duke@1 583 if (type.getIdentifier() != idCorbaObject &&
duke@1 584 type.isType(TYPE_CORBA_OBJECT)) {
duke@1 585 String stubName = getStubNameFor(type,false);
duke@1 586 String packageName = type.getPackageName();
duke@1 587 String fullName;
duke@1 588 if (packageName == null) {
duke@1 589 fullName = stubName;
duke@1 590 } else {
duke@1 591 fullName = packageName + "." + stubName;
duke@1 592 }
duke@1 593 addClassInUse(stubName,fullName,packageName);
duke@1 594 }
duke@1 595 if (type.isType(TYPE_REMOTE) ||
duke@1 596 type.isType(TYPE_JAVA_RMI_REMOTE)) {
duke@1 597 addClassInUse("javax.rmi.PortableRemoteObject");
duke@1 598 }
duke@1 599 }
duke@1 600
duke@1 601 String getStubNameFor(Type type, boolean qualified) {
duke@1 602 String stubName;
duke@1 603 String className;
duke@1 604 if (qualified) {
duke@1 605 className = type.getQualifiedName();
duke@1 606 } else {
duke@1 607 className = type.getName();
duke@1 608 }
duke@1 609 if (((CompoundType)type).isCORBAObject()) {
duke@1 610 stubName = Utility.idlStubName(className);
duke@1 611 } else {
duke@1 612 stubName = Utility.stubNameForCompiler(className);
duke@1 613 }
duke@1 614 return stubName;
duke@1 615 }
duke@1 616
duke@1 617 void addStubInUse(Type[] types) {
duke@1 618 for (int i = 0; i < types.length; i++) {
duke@1 619 addStubInUse(types[i]);
duke@1 620 }
duke@1 621 }
duke@1 622
duke@1 623 private static final String NO_IMPORT = new String();
duke@1 624
duke@1 625 void addClassInUse(String unqualifiedName, String qualifiedName, String packageName) {
duke@1 626
duke@1 627 // Have we already got an entry for this qualifiedName?
duke@1 628
duke@1 629 String currentName = (String)classesInUse.get(qualifiedName);
duke@1 630
duke@1 631 if (currentName == null) {
duke@1 632
duke@1 633 // No, never seen it before. Grab any existing import
duke@1 634 // name and then decide what to do...
duke@1 635
duke@1 636 String importName = (String) imports.get(unqualifiedName);
duke@1 637 String nameToUse = null;
duke@1 638
duke@1 639 if (packageName == null) {
duke@1 640
duke@1 641 // Default package, so doesn't matter which name to use...
duke@1 642
duke@1 643 nameToUse = unqualifiedName;
duke@1 644
duke@1 645 } else if (packageName.equals("java.lang")) {
duke@1 646
duke@1 647 // java.lang.*, so use unqualified name...
duke@1 648
duke@1 649 nameToUse = unqualifiedName;
duke@1 650
duke@1 651 // unless you want to be able to import things from the right place :--)
duke@1 652
duke@1 653 if(nameToUse.endsWith("_Stub")) nameToUse = Util.packagePrefix()+qualifiedName;
duke@1 654
duke@1 655 } else if (currentPackage != null && packageName.equals(currentPackage)) {
duke@1 656
duke@1 657 // Class in currentPackage, so use unqualified name...
duke@1 658
duke@1 659 nameToUse = unqualifiedName;
duke@1 660
duke@1 661 // Do we already have a previous import under this
duke@1 662 // unqualified name?
duke@1 663
duke@1 664 if (importName != null) {
duke@1 665
duke@1 666 // Yes, so we use qualifiedName...
duke@1 667
duke@1 668 nameToUse = qualifiedName;
duke@1 669
duke@1 670 }
duke@1 671
duke@1 672 } else if (importName != null) {
duke@1 673
duke@1 674 // It is in some package for which we normally
duke@1 675 // would import, but we have a previous import
duke@1 676 // under this unqualified name. We must use
duke@1 677 // the qualified name...
duke@1 678
duke@1 679 nameToUse = qualifiedName;
duke@1 680
duke@1 681 /*
duke@1 682 // Is the currentPackage the default package?
duke@1 683
duke@1 684 if (currentPackage == null) {
duke@1 685
duke@1 686 // Yes, so undo the import so that all
duke@1 687 // uses for this name will be qualified...
duke@1 688
duke@1 689 String old = (String)imports.remove(unqualifiedName);
duke@1 690 classesInUse.put(old,old);
duke@1 691 importCount--;
duke@1 692
duke@1 693 // Note that this name is in use but should
duke@1 694 // not be imported...
duke@1 695
duke@1 696 imports.put(nameToUse,NO_IMPORT);
duke@1 697 }
duke@1 698 */
duke@1 699 } else if (qualifiedName.equals("org.omg.CORBA.Object")) {
duke@1 700
duke@1 701 // Always qualify this quy to avoid confusion...
duke@1 702
duke@1 703 nameToUse = qualifiedName;
duke@1 704
duke@1 705 } else {
duke@1 706
duke@1 707 // Default to using unqualified name, and add
duke@1 708 // this guy to the imports...
duke@1 709
duke@1 710 // Check for nested class in which case we use
duke@1 711 // the fully qualified name instead of imports
duke@1 712 if (unqualifiedName.indexOf('.') != -1) {
duke@1 713 nameToUse = qualifiedName;
duke@1 714 } else {
duke@1 715 nameToUse = unqualifiedName;
duke@1 716 imports.put(unqualifiedName,qualifiedName);
duke@1 717 importCount++;
duke@1 718 }
duke@1 719 }
duke@1 720
duke@1 721 // Now add the name...
duke@1 722
duke@1 723 classesInUse.put(qualifiedName,nameToUse);
duke@1 724 }
duke@1 725 }
duke@1 726
duke@1 727 String getName(Type type) {
duke@1 728 if (type.isPrimitive()) {
duke@1 729 return type.getName() + type.getArrayBrackets();
duke@1 730 }
duke@1 731 Identifier id = type.getIdentifier();
duke@1 732 String name = IDLNames.replace(id.toString(),". ",".");
duke@1 733 return getName(name) + type.getArrayBrackets();
duke@1 734 }
duke@1 735
duke@1 736 // Added for Bug 4818753
duke@1 737 String getExceptionName(Type type) {
duke@1 738 Identifier id = type.getIdentifier();
duke@1 739 return IDLNames.replace(id.toString(),". ",".");
duke@1 740 }
duke@1 741
duke@1 742 String getName(String qualifiedName) {
duke@1 743 return (String)classesInUse.get(qualifiedName);
duke@1 744 }
duke@1 745
duke@1 746 String getName(Identifier id) {
duke@1 747 return getName(id.toString());
duke@1 748 }
duke@1 749
duke@1 750 String getStubName(Type type) {
duke@1 751 String stubName = getStubNameFor(type,true);
duke@1 752 return getName(stubName);
duke@1 753 }
duke@1 754
duke@1 755 void setStandardClassesInUse(CompoundType type,
duke@1 756 boolean stub) throws IOException {
duke@1 757
duke@1 758 // Reset our state...
duke@1 759
duke@1 760 currentPackage = type.getPackageName();
duke@1 761 imports.clear();
duke@1 762 classesInUse.clear();
duke@1 763 namesInUse.clear();
duke@1 764 importCount = 0;
duke@1 765 castArray = false;
duke@1 766
duke@1 767 // Add the top-level type...
duke@1 768
duke@1 769 addClassInUse(type);
duke@1 770
duke@1 771 // Set current class name...
duke@1 772
duke@1 773 if (stub) {
duke@1 774 currentClass = Utility.stubNameForCompiler(type.getName());
duke@1 775 } else {
duke@1 776 currentClass = Utility.tieNameForCompiler(type.getName());
duke@1 777 }
duke@1 778
duke@1 779 // Add current class...
duke@1 780
duke@1 781 if (currentPackage == null) {
duke@1 782 addClassInUse(currentClass,currentClass,currentPackage);
duke@1 783 } else {
duke@1 784 addClassInUse(currentClass,(currentPackage+"."+currentClass),currentPackage);
duke@1 785 }
duke@1 786
duke@1 787 // Add standard classes...
duke@1 788
duke@1 789 addClassInUse("javax.rmi.CORBA.Util");
duke@1 790 addClassInUse(idRemote.toString());
duke@1 791 addClassInUse(idRemoteException.toString());
duke@1 792 addClassInUse(idOutputStream.toString());
duke@1 793 addClassInUse(idInputStream.toString());
duke@1 794 addClassInUse(idSystemException.toString());
duke@1 795 addClassInUse(idJavaIoSerializable.toString());
duke@1 796 addClassInUse(idCorbaORB.toString());
duke@1 797 addClassInUse(idReplyHandler.toString());
duke@1 798
duke@1 799 // Add stub/tie specific imports...
duke@1 800
duke@1 801 if (stub) {
duke@1 802 addClassInUse(stubBaseClass);
duke@1 803 addClassInUse("java.rmi.UnexpectedException");
duke@1 804 addClassInUse(idRemarshalException.toString());
duke@1 805 addClassInUse(idApplicationException.toString());
duke@1 806 if (localStubs) {
duke@1 807 addClassInUse("org.omg.CORBA.portable.ServantObject");
duke@1 808 }
duke@1 809 } else {
duke@1 810 addClassInUse(type);
duke@1 811 addClassInUse(tieBaseClass);
duke@1 812 addClassInUse(idTieInterface.toString());
duke@1 813 addClassInUse(idBadMethodException.toString());
duke@1 814 addClassInUse(idPortableUnknownException.toString());
duke@1 815 addClassInUse(idJavaLangThrowable.toString());
duke@1 816 }
duke@1 817 }
duke@1 818
duke@1 819 void addClassesInUse(CompoundType type, RemoteType[] interfaces) {
duke@1 820
duke@1 821 // Walk all methods and add types in use...
duke@1 822
duke@1 823 CompoundType.Method[] methods = type.getMethods();
duke@1 824 for (int i = 0; i < methods.length; i++) {
duke@1 825 addClassInUse(methods[i].getReturnType());
duke@1 826 addStubInUse(methods[i].getReturnType());
duke@1 827 addClassInUse(methods[i].getArguments());
duke@1 828 addStubInUse(methods[i].getArguments());
duke@1 829 addClassInUse(methods[i].getExceptions());
duke@1 830 // bug 4473859: Also include narrower subtypes for use
duke@1 831 addClassInUse(methods[i].getImplExceptions());
duke@1 832 }
duke@1 833
duke@1 834 // If this is a stub, add all interfaces...
duke@1 835
duke@1 836 if (interfaces != null) {
duke@1 837 addClassInUse(interfaces);
duke@1 838 }
duke@1 839 }
duke@1 840
duke@1 841 void writePackageAndImports(IndentingWriter p) throws IOException {
duke@1 842
duke@1 843 // Write package declaration...
duke@1 844
duke@1 845 if (currentPackage != null) {
duke@1 846 p.pln("package " +
duke@1 847 Util.correctPackageName(
duke@1 848 currentPackage, false, standardPackage)
duke@1 849 + ";");
duke@1 850 p.pln();
duke@1 851 }
duke@1 852
duke@1 853 // Get imports into an array and sort them...
duke@1 854
duke@1 855 String[] names = new String[importCount];
duke@1 856 int index = 0;
duke@1 857 for (Enumeration e = imports.elements() ; e.hasMoreElements() ;) {
duke@1 858 String it = (String) e.nextElement();
duke@1 859 if (it != NO_IMPORT) {
duke@1 860 names[index++] = it;
duke@1 861 }
duke@1 862 }
duke@1 863
duke@1 864 Arrays.sort(names,new StringComparator());
duke@1 865
duke@1 866 // Now dump them out...
duke@1 867
duke@1 868 for (int i = 0; i < importCount; i++) {
duke@1 869 if(
duke@1 870 Util.isOffendingPackage(names[i])
duke@1 871 && names[i].endsWith("_Stub")
duke@1 872 && String.valueOf(names[i].charAt(names[i].lastIndexOf(".")+1)).equals("_")
duke@1 873 ){
duke@1 874 p.pln("import " + PackagePrefixChecker.packagePrefix()+names[i]+";");
duke@1 875 } else{
duke@1 876 p.pln("import " + names[i] + ";");
duke@1 877 }
duke@1 878 }
duke@1 879 p.pln();
duke@1 880
duke@1 881 // Include offending packages . . .
duke@1 882 if ( currentPackage!=null && Util.isOffendingPackage(currentPackage) ){
duke@1 883 p.pln("import " + currentPackage +".* ;");
duke@1 884 }
duke@1 885 p.pln();
duke@1 886
duke@1 887 }
duke@1 888
duke@1 889 boolean implementsRemote(CompoundType theType) {
duke@1 890 boolean result = theType.isType(TYPE_REMOTE) && !theType.isType(TYPE_ABSTRACT);
duke@1 891
duke@1 892 // If theType is not remote, look at all the interfaces
duke@1 893 // until we find one that is...
duke@1 894
duke@1 895 if (!result) {
duke@1 896 InterfaceType[] interfaces = theType.getInterfaces();
duke@1 897 for (int i = 0; i < interfaces.length; i++) {
duke@1 898 result = implementsRemote(interfaces[i]);
duke@1 899 if (result) {
duke@1 900 break;
duke@1 901 }
duke@1 902 }
duke@1 903 }
duke@1 904
duke@1 905 return result;
duke@1 906 }
duke@1 907
duke@1 908 void writeStubMethod ( IndentingWriter p,
duke@1 909 CompoundType.Method method,
duke@1 910 CompoundType theType) throws IOException {
duke@1 911
duke@1 912 // Wtite the method declaration and opening brace...
duke@1 913 String methodName = method.getName();
duke@1 914 String methodIDLName = method.getIDLName();
duke@1 915
duke@1 916 Type paramTypes[] = method.getArguments();
duke@1 917 String paramNames[] = method.getArgumentNames();
duke@1 918 Type returnType = method.getReturnType();
duke@1 919 ValueType[] exceptions = getStubExceptions(method,false);
msheppar@1052 920 boolean hasIOException = false;
duke@1 921
duke@1 922 addNamesInUse(method);
duke@1 923 addNameInUse("_type_ids");
duke@1 924
duke@1 925 String objName = testUtil(getName(returnType), returnType);
duke@1 926 p.p("public " + objName + " " + methodName + "(");
duke@1 927 for(int i = 0; i < paramTypes.length; i++) {
duke@1 928 if (i > 0)
duke@1 929 p.p(", ");
duke@1 930 p.p(getName(paramTypes[i]) + " " + paramNames[i]);
duke@1 931 }
duke@1 932
duke@1 933 p.p(")");
duke@1 934 if (exceptions.length > 0) {
duke@1 935 p.p(" throws ");
duke@1 936 for(int i = 0; i < exceptions.length; i++) {
duke@1 937 if (i > 0) {
duke@1 938 p.p(", ");
duke@1 939 }
duke@1 940 // Added for Bug 4818753
duke@1 941 p.p(getExceptionName(exceptions[i]));
duke@1 942 }
duke@1 943 }
duke@1 944
duke@1 945 p.plnI(" {");
duke@1 946
duke@1 947 // Now create the method body...
msheppar@1052 948 if (emitPermissionCheck) {
msheppar@1052 949 p.pln("if ((System.getSecurityManager() != null) && (!_instantiated)) {");
msheppar@1052 950 p.plnI(" throw new java.io.IOError(new java.io.IOException(\"InvalidObject \"));");
msheppar@1052 951 p.pOln("}");
msheppar@1052 952 p.pln();
msheppar@1052 953 }
msheppar@1052 954
duke@1 955
duke@1 956 if (localStubs) {
duke@1 957 writeLocalStubMethodBody(p,method,theType);
duke@1 958 } else {
duke@1 959 writeNonLocalStubMethodBody(p,method,theType);
duke@1 960 }
duke@1 961
duke@1 962 // Close out the method...
duke@1 963
duke@1 964 p.pOln("}");
duke@1 965 }
duke@1 966
duke@1 967
duke@1 968 void writeLocalStubMethodBody (IndentingWriter p,
duke@1 969 CompoundType.Method method,
duke@1 970 CompoundType theType) throws IOException {
duke@1 971
duke@1 972 String objName;
duke@1 973 String paramNames[] = method.getArgumentNames();
duke@1 974 Type returnType = method.getReturnType();
duke@1 975 ValueType[] exceptions = getStubExceptions(method,false);
duke@1 976 String methodName = method.getName();
duke@1 977 String methodIDLName = method.getIDLName();
duke@1 978
duke@1 979 p.plnI("if (!Util.isLocal(this)) {");
duke@1 980 writeNonLocalStubMethodBody(p,method,theType);
duke@1 981 p.pOlnI("} else {");
duke@1 982 String so = getVariableName("so");
duke@1 983
duke@1 984 p.pln("ServantObject "+so+" = _servant_preinvoke(\""+methodIDLName+"\","+getName(theType)+".class);");
duke@1 985 p.plnI("if ("+so+" == null) {");
duke@1 986 if (!returnType.isType(TYPE_VOID)) {
duke@1 987 p.p("return ");
duke@1 988 }
duke@1 989 p.p(methodName+"(");
duke@1 990 for (int i = 0; i < paramNames.length; i++) {
duke@1 991 if (i > 0)
duke@1 992 p.p(", ");
duke@1 993 p.p(paramNames[i]);
duke@1 994 }
duke@1 995 p.pln(");");
duke@1 996 if (returnType.isType(TYPE_VOID)) {
duke@1 997 p.pln( "return ;" ) ;
duke@1 998 }
duke@1 999
duke@1 1000 p.pOln("}");
duke@1 1001 p.plnI("try {");
duke@1 1002
duke@1 1003 // Generate code to copy required arguments, and
duke@1 1004 // get back the names by which all arguments are known...
duke@1 1005
duke@1 1006 String[] argNames = writeCopyArguments(method,p);
duke@1 1007
duke@1 1008 // Now write the method...
duke@1 1009
duke@1 1010 boolean copyReturn = mustCopy(returnType);
duke@1 1011 String resultName = null;
duke@1 1012 if (!returnType.isType(TYPE_VOID)) {
duke@1 1013 if (copyReturn) {
duke@1 1014 resultName = getVariableName("result");
duke@1 1015 objName = testUtil(getName(returnType), returnType);
duke@1 1016 p.p(objName+" "+resultName + " = ");
duke@1 1017 } else {
duke@1 1018 p.p("return ");
duke@1 1019 }
duke@1 1020 }
duke@1 1021 objName = testUtil(getName(theType), theType);
duke@1 1022 p.p("(("+objName+")"+so+".servant)."+methodName+"(");
duke@1 1023
duke@1 1024 for (int i = 0; i < argNames.length; i++) {
duke@1 1025 if (i > 0)
duke@1 1026 p.p(", ");
duke@1 1027 p.p(argNames[i]);
duke@1 1028 }
duke@1 1029
duke@1 1030 if (copyReturn) {
duke@1 1031 p.pln(");");
duke@1 1032 objName = testUtil(getName(returnType), returnType);
duke@1 1033 p.pln("return ("+objName+")Util.copyObject("+resultName+",_orb());");
duke@1 1034 } else {
duke@1 1035 p.pln(");");
duke@1 1036 }
duke@1 1037
duke@1 1038 String e1 = getVariableName("ex");
duke@1 1039 String e2 = getVariableName("exCopy");
duke@1 1040 p.pOlnI("} catch (Throwable "+e1+") {");
duke@1 1041
duke@1 1042 p.pln("Throwable "+e2+" = (Throwable)Util.copyObject("+e1+",_orb());");
duke@1 1043 for(int i = 0; i < exceptions.length; i++) {
duke@1 1044 if (exceptions[i].getIdentifier() != idRemoteException &&
duke@1 1045 exceptions[i].isType(TYPE_VALUE)) {
duke@1 1046 // Added for Bug 4818753
duke@1 1047 p.plnI("if ("+e2+" instanceof "+getExceptionName(exceptions[i])+") {");
duke@1 1048 p.pln("throw ("+getExceptionName(exceptions[i])+")"+e2+";");
duke@1 1049 p.pOln("}");
duke@1 1050 }
duke@1 1051 }
duke@1 1052
duke@1 1053 p.pln("throw Util.wrapException("+e2+");");
duke@1 1054 p.pOlnI("} finally {");
duke@1 1055 p.pln("_servant_postinvoke("+so+");");
duke@1 1056 p.pOln("}");
duke@1 1057 p.pOln("}");
duke@1 1058 }
duke@1 1059
duke@1 1060
duke@1 1061 void writeNonLocalStubMethodBody ( IndentingWriter p,
duke@1 1062 CompoundType.Method method,
duke@1 1063 CompoundType theType) throws IOException {
duke@1 1064
duke@1 1065 String methodName = method.getName();
duke@1 1066 String methodIDLName = method.getIDLName();
duke@1 1067
duke@1 1068 Type paramTypes[] = method.getArguments();
duke@1 1069 String paramNames[] = method.getArgumentNames();
duke@1 1070 Type returnType = method.getReturnType();
duke@1 1071 ValueType[] exceptions = getStubExceptions(method,true);
duke@1 1072
duke@1 1073 String in = getVariableName("in");
duke@1 1074 String out = getVariableName("out");
duke@1 1075 String ex = getVariableName("ex");
duke@1 1076
duke@1 1077 // Decide if we need to use the new streams for
duke@1 1078 // any of the read calls...
duke@1 1079
duke@1 1080 boolean needNewReadStreamClass = false;
duke@1 1081 for (int i = 0; i < exceptions.length; i++) {
duke@1 1082 if (exceptions[i].getIdentifier() != idRemoteException &&
duke@1 1083 exceptions[i].isType(TYPE_VALUE) &&
duke@1 1084 needNewReadStreamClass(exceptions[i])) {
duke@1 1085 needNewReadStreamClass = true;
duke@1 1086 break;
duke@1 1087 }
duke@1 1088 }
duke@1 1089 if (!needNewReadStreamClass) {
duke@1 1090 for (int i = 0; i < paramTypes.length; i++) {
duke@1 1091 if (needNewReadStreamClass(paramTypes[i])) {
duke@1 1092 needNewReadStreamClass = true;
duke@1 1093 break;
duke@1 1094 }
duke@1 1095 }
duke@1 1096 }
duke@1 1097 if (!needNewReadStreamClass) {
duke@1 1098 needNewReadStreamClass = needNewReadStreamClass(returnType);
duke@1 1099 }
duke@1 1100
duke@1 1101 // Decide if we need to use the new streams for
duke@1 1102 // any of the write calls...
duke@1 1103
duke@1 1104 boolean needNewWriteStreamClass = false;
duke@1 1105 for (int i = 0; i < paramTypes.length; i++) {
duke@1 1106 if (needNewWriteStreamClass(paramTypes[i])) {
duke@1 1107 needNewWriteStreamClass = true;
duke@1 1108 break;
duke@1 1109 }
duke@1 1110 }
duke@1 1111
duke@1 1112 // Now write the method, inserting casts where needed...
duke@1 1113
duke@1 1114 p.plnI("try {");
duke@1 1115 if (needNewReadStreamClass) {
duke@1 1116 p.pln(idExtInputStream + " "+in+" = null;");
duke@1 1117 } else {
duke@1 1118 p.pln(idInputStream + " "+in+" = null;");
duke@1 1119 }
duke@1 1120 p.plnI("try {");
duke@1 1121
duke@1 1122 String argStream = "null";
duke@1 1123
duke@1 1124 if (needNewWriteStreamClass) {
duke@1 1125 p.plnI(idExtOutputStream + " "+out+" = ");
duke@1 1126 p.pln("(" + idExtOutputStream + ")");
duke@1 1127 p.pln("_request(\"" + methodIDLName + "\", true);");
duke@1 1128 p.pO();
duke@1 1129 } else {
duke@1 1130 p.pln("OutputStream "+out+" = _request(\"" + methodIDLName + "\", true);");
duke@1 1131 }
duke@1 1132
duke@1 1133 if (paramTypes.length > 0) {
duke@1 1134 writeMarshalArguments(p, out, paramTypes, paramNames);
duke@1 1135 p.pln();
duke@1 1136 }
duke@1 1137 argStream = out;
duke@1 1138
duke@1 1139 if (returnType.isType(TYPE_VOID)) {
duke@1 1140 p.pln("_invoke(" + argStream + ");" );
duke@1 1141 } else {
duke@1 1142 if (needNewReadStreamClass) {
duke@1 1143 p.plnI(in+" = (" + idExtInputStream + ")_invoke(" + argStream + ");");
duke@1 1144 p.pO();
duke@1 1145 } else {
duke@1 1146 p.pln(in+" = _invoke(" + argStream + ");");
duke@1 1147 }
duke@1 1148 p.p("return ");
duke@1 1149 writeUnmarshalArgument(p, in, returnType, null);
duke@1 1150 p.pln();
duke@1 1151 }
duke@1 1152
duke@1 1153 // Handle ApplicationException...
duke@1 1154
duke@1 1155 p.pOlnI("} catch ("+getName(idApplicationException)+" "+ex+") {");
duke@1 1156 if (needNewReadStreamClass) {
duke@1 1157 p.pln(in + " = (" + idExtInputStream + ") "+ex+".getInputStream();");
duke@1 1158 } else {
duke@1 1159 p.pln(in + " = "+ex+".getInputStream();");
duke@1 1160 }
duke@1 1161
duke@1 1162 boolean idRead = false;
duke@1 1163 boolean idAllocated = false;
duke@1 1164 for(int i = 0; i < exceptions.length; i++) {
duke@1 1165 if (exceptions[i].getIdentifier() != idRemoteException) {
duke@1 1166
duke@1 1167 // Is this our special-case IDLEntity exception?
duke@1 1168
duke@1 1169 if (exceptions[i].isIDLEntityException() && !exceptions[i].isCORBAUserException()) {
duke@1 1170
duke@1 1171 // Yes.
duke@1 1172
duke@1 1173 if (!idAllocated && !idRead) {
duke@1 1174 p.pln("String $_id = "+ex+".getId();");
duke@1 1175 idAllocated = true;
duke@1 1176 }
duke@1 1177
duke@1 1178 String helperName = IDLNames.replace(exceptions[i].getQualifiedIDLName(false),"::",".");
duke@1 1179 helperName += "Helper";
duke@1 1180 p.plnI("if ($_id.equals("+helperName+".id())) {");
duke@1 1181 p.pln("throw "+helperName+".read("+in+");");
duke@1 1182
duke@1 1183 } else {
duke@1 1184
duke@1 1185 // No.
duke@1 1186
duke@1 1187 if (!idAllocated && !idRead) {
duke@1 1188 p.pln("String $_id = "+in+".read_string();");
duke@1 1189 idAllocated = true;
duke@1 1190 idRead = true;
duke@1 1191 } else if (idAllocated && !idRead) {
duke@1 1192 p.pln("$_id = "+in+".read_string();");
duke@1 1193 idRead = true;
duke@1 1194 }
duke@1 1195 p.plnI("if ($_id.equals(\""+getExceptionRepositoryID(exceptions[i])+"\")) {");
duke@1 1196 // Added for Bug 4818753
duke@1 1197 p.pln("throw ("+getExceptionName(exceptions[i])+") "+in+".read_value(" + getExceptionName(exceptions[i]) + ".class);");
duke@1 1198 }
duke@1 1199 p.pOln("}");
duke@1 1200 }
duke@1 1201 }
duke@1 1202 if (!idAllocated && !idRead) {
duke@1 1203 p.pln("String $_id = "+in+".read_string();");
duke@1 1204 idAllocated = true;
duke@1 1205 idRead = true;
duke@1 1206 } else if (idAllocated && !idRead) {
duke@1 1207 p.pln("$_id = "+in+".read_string();");
duke@1 1208 idRead = true;
duke@1 1209 }
duke@1 1210 p.pln("throw new UnexpectedException($_id);");
duke@1 1211
duke@1 1212 // Handle RemarshalException...
duke@1 1213
duke@1 1214 p.pOlnI("} catch ("+getName(idRemarshalException)+" "+ex+") {");
duke@1 1215 if (!returnType.isType(TYPE_VOID)) {
duke@1 1216 p.p("return ");
duke@1 1217 }
duke@1 1218 p.p(methodName + "(");
duke@1 1219 for(int i = 0; i < paramTypes.length; i++) {
duke@1 1220 if (i > 0) {
duke@1 1221 p.p(",");
duke@1 1222 }
duke@1 1223 p.p(paramNames[i]);
duke@1 1224 }
duke@1 1225 p.pln(");");
duke@1 1226
duke@1 1227 // Ensure that we release the reply...
duke@1 1228
duke@1 1229 p.pOlnI("} finally {");
duke@1 1230 p.pln("_releaseReply("+in+");");
duke@1 1231
duke@1 1232 p.pOln("}");
duke@1 1233
duke@1 1234 // Handle SystemException...
duke@1 1235
duke@1 1236 p.pOlnI("} catch (SystemException "+ex+") {");
duke@1 1237 p.pln("throw Util.mapSystemException("+ex+");");
duke@1 1238 p.pOln("}");
duke@1 1239
duke@1 1240 // returnResult(p,returnType);
duke@1 1241 }
duke@1 1242
duke@1 1243 void allocateResult (IndentingWriter p,
duke@1 1244 Type returnType) throws IOException {
duke@1 1245 if (!returnType.isType(TYPE_VOID)) {
duke@1 1246 String objName = testUtil(getName(returnType), returnType);
duke@1 1247 p.p(objName + " result = ");
duke@1 1248 }
duke@1 1249 }
duke@1 1250
duke@1 1251 int getTypeCode(Type type) {
duke@1 1252
duke@1 1253 int typeCode = type.getTypeCode();
duke@1 1254
duke@1 1255 // Handle late-breaking special case for
duke@1 1256 // abstract IDL entities...
duke@1 1257
duke@1 1258 if ((type instanceof CompoundType) &&
duke@1 1259 ((CompoundType)type).isAbstractBase()) {
duke@1 1260 typeCode = TYPE_ABSTRACT;
duke@1 1261 }
duke@1 1262
duke@1 1263 return typeCode;
duke@1 1264 }
duke@1 1265
duke@1 1266
duke@1 1267 /**
duke@1 1268 * Write a snippet of Java code to marshal a value named "name" of
duke@1 1269 * type "type" to the java.io.ObjectOutput stream named "stream".
duke@1 1270 */
duke@1 1271 void writeMarshalArgument(IndentingWriter p,
duke@1 1272 String streamName,
duke@1 1273 Type type, String name) throws IOException {
duke@1 1274
duke@1 1275 int typeCode = getTypeCode(type);
duke@1 1276
duke@1 1277 switch (typeCode) {
duke@1 1278 case TYPE_BOOLEAN:
duke@1 1279 p.p(streamName + ".write_boolean(" + name + ");");
duke@1 1280 break;
duke@1 1281 case TYPE_BYTE:
duke@1 1282 p.p(streamName + ".write_octet(" + name + ");");
duke@1 1283 break;
duke@1 1284 case TYPE_CHAR:
duke@1 1285 p.p(streamName + ".write_wchar(" + name + ");");
duke@1 1286 break;
duke@1 1287 case TYPE_SHORT:
duke@1 1288 p.p(streamName + ".write_short(" + name + ");");
duke@1 1289 break;
duke@1 1290 case TYPE_INT:
duke@1 1291 p.p(streamName + ".write_long(" + name + ");");
duke@1 1292 break;
duke@1 1293 case TYPE_LONG:
duke@1 1294 p.p(streamName + ".write_longlong(" + name + ");");
duke@1 1295 break;
duke@1 1296 case TYPE_FLOAT:
duke@1 1297 p.p(streamName + ".write_float(" + name + ");");
duke@1 1298 break;
duke@1 1299 case TYPE_DOUBLE:
duke@1 1300 p.p(streamName + ".write_double(" + name + ");");
duke@1 1301 break;
duke@1 1302 case TYPE_STRING:
duke@1 1303 p.p(streamName + ".write_value(" + name + "," + getName(type) + ".class);");
duke@1 1304 break;
duke@1 1305 case TYPE_ANY:
duke@1 1306 p.p("Util.writeAny("+ streamName + "," + name + ");");
duke@1 1307 break;
duke@1 1308 case TYPE_CORBA_OBJECT:
duke@1 1309 p.p(streamName + ".write_Object(" + name + ");");
duke@1 1310 break;
duke@1 1311 case TYPE_REMOTE:
duke@1 1312 p.p("Util.writeRemoteObject("+ streamName + "," + name + ");");
duke@1 1313 break;
duke@1 1314 case TYPE_ABSTRACT:
duke@1 1315 p.p("Util.writeAbstractObject("+ streamName + "," + name + ");");
duke@1 1316 break;
duke@1 1317 case TYPE_NC_INTERFACE:
duke@1 1318 p.p(streamName + ".write_value((Serializable)" + name + "," + getName(type) + ".class);");
duke@1 1319 break;
duke@1 1320 case TYPE_VALUE:
duke@1 1321 p.p(streamName + ".write_value(" + name + "," + getName(type) + ".class);");
duke@1 1322 break;
duke@1 1323 case TYPE_IMPLEMENTATION:
duke@1 1324 p.p(streamName + ".write_value((Serializable)" + name + "," + getName(type) + ".class);");
duke@1 1325 break;
duke@1 1326 case TYPE_NC_CLASS:
duke@1 1327 p.p(streamName + ".write_value((Serializable)" + name + "," + getName(type) + ".class);");
duke@1 1328 break;
duke@1 1329 case TYPE_ARRAY:
duke@1 1330 castArray = true;
duke@1 1331 p.p(streamName + ".write_value(cast_array(" + name + ")," + getName(type) + ".class);");
duke@1 1332 break;
duke@1 1333 case TYPE_JAVA_RMI_REMOTE:
duke@1 1334 p.p("Util.writeRemoteObject("+ streamName + "," + name + ");");
duke@1 1335 break;
duke@1 1336 default:
duke@1 1337 throw new Error("unexpected type code: " + typeCode);
duke@1 1338 }
duke@1 1339 }
duke@1 1340
duke@1 1341 /**
duke@1 1342 * Write a snippet of Java code to unmarshal a value of type "type"
duke@1 1343 * from the java.io.ObjectInput stream named "stream" into a variable
duke@1 1344 * named "name" (if "name" is null, the value in unmarshalled and
duke@1 1345 * discarded).
duke@1 1346 */
duke@1 1347 void writeUnmarshalArgument(IndentingWriter p,
duke@1 1348 String streamName,
duke@1 1349 Type type,
duke@1 1350 String name) throws IOException {
duke@1 1351
duke@1 1352 int typeCode = getTypeCode(type);
duke@1 1353
duke@1 1354 if (name != null) {
duke@1 1355 p.p(name + " = ");
duke@1 1356 }
duke@1 1357
duke@1 1358 switch (typeCode) {
duke@1 1359 case TYPE_BOOLEAN:
duke@1 1360 p.p(streamName + ".read_boolean();");
duke@1 1361 break;
duke@1 1362 case TYPE_BYTE:
duke@1 1363 p.p(streamName + ".read_octet();");
duke@1 1364 break;
duke@1 1365 case TYPE_CHAR:
duke@1 1366 p.p(streamName + ".read_wchar();");
duke@1 1367 break;
duke@1 1368 case TYPE_SHORT:
duke@1 1369 p.p(streamName + ".read_short();");
duke@1 1370 break;
duke@1 1371 case TYPE_INT:
duke@1 1372 p.p(streamName + ".read_long();");
duke@1 1373 break;
duke@1 1374 case TYPE_LONG:
duke@1 1375 p.p(streamName + ".read_longlong();");
duke@1 1376 break;
duke@1 1377 case TYPE_FLOAT:
duke@1 1378 p.p(streamName + ".read_float();");
duke@1 1379 break;
duke@1 1380 case TYPE_DOUBLE:
duke@1 1381 p.p(streamName + ".read_double();");
duke@1 1382 break;
duke@1 1383 case TYPE_STRING:
duke@1 1384 p.p("(String) " + streamName + ".read_value(" + getName(type) + ".class);");
duke@1 1385 break;
duke@1 1386 case TYPE_ANY:
duke@1 1387 if (type.getIdentifier() != idJavaLangObject) {
duke@1 1388 p.p("(" + getName(type) + ") ");
duke@1 1389 }
duke@1 1390 p.p("Util.readAny(" + streamName + ");");
duke@1 1391 break;
duke@1 1392 case TYPE_CORBA_OBJECT:
duke@1 1393 if (type.getIdentifier() == idCorbaObject) {
duke@1 1394 p.p("(" + getName(type) + ") " + streamName + ".read_Object();");
duke@1 1395 } else {
duke@1 1396 p.p("(" + getName(type) + ") " + streamName + ".read_Object(" + getStubName(type) + ".class);");
duke@1 1397 }
duke@1 1398 break;
duke@1 1399 case TYPE_REMOTE:
duke@1 1400 String objName = testUtil(getName(type), type);
duke@1 1401 p.p("(" + objName + ") " +
duke@1 1402 "PortableRemoteObject.narrow(" + streamName + ".read_Object(), " + objName + ".class);");
duke@1 1403 break;
duke@1 1404 case TYPE_ABSTRACT:
duke@1 1405 p.p("(" + getName(type) + ") " + streamName + ".read_abstract_interface();");
duke@1 1406 break;
duke@1 1407 case TYPE_NC_INTERFACE:
duke@1 1408 p.p("(" + getName(type) + ") " + streamName + ".read_value(" + getName(type) + ".class);");
duke@1 1409 break;
duke@1 1410 case TYPE_VALUE:
duke@1 1411 p.p("(" + getName(type) + ") " + streamName + ".read_value(" + getName(type) + ".class);");
duke@1 1412 break;
duke@1 1413 case TYPE_IMPLEMENTATION:
duke@1 1414 p.p("(" + getName(type) + ") " + streamName + ".read_value(" + getName(type) + ".class);");
duke@1 1415 break;
duke@1 1416 case TYPE_NC_CLASS:
duke@1 1417 p.p("(" + getName(type) + ") " + streamName + ".read_value(" + getName(type) + ".class);");
duke@1 1418 break;
duke@1 1419 case TYPE_ARRAY:
duke@1 1420 p.p("(" + getName(type) + ") " + streamName + ".read_value(" + getName(type) + ".class);");
duke@1 1421 break;
duke@1 1422 case TYPE_JAVA_RMI_REMOTE:
duke@1 1423 p.p("(" + getName(type) + ") " +
duke@1 1424 "PortableRemoteObject.narrow(" + streamName + ".read_Object(), " + getName(type) + ".class);");
duke@1 1425 // p.p("(" + getName(type) + ") " + streamName + ".read_Object(" + getStubName(type) + ".class);");
duke@1 1426 break;
duke@1 1427 default:
duke@1 1428 throw new Error("unexpected type code: " + typeCode);
duke@1 1429 }
duke@1 1430 }
duke@1 1431
duke@1 1432 /**
duke@1 1433 * Get a list of all the RepositoryIDs for interfaces
duke@1 1434 * implemented directly or indirectly by theType. In the
duke@1 1435 * case of an ImplementationType which implements 2 or
duke@1 1436 * more remote interfaces, this list will begin with the
duke@1 1437 * Identifier for the implementation (see section 5.9 in
duke@1 1438 * the Java -> IDL mapping). Ensures that the most derived
duke@1 1439 * type is first in the list because the IOR is generated
duke@1 1440 * using that entry in the _ids array.
duke@1 1441 */
duke@1 1442 String[] getAllRemoteRepIDs (CompoundType theType) {
duke@1 1443
duke@1 1444 String[] result;
duke@1 1445
duke@1 1446 // Collect up all the (inherited) remote interfaces
duke@1 1447 // (ignores all the 'special' interfaces: Remote,
duke@1 1448 // Serializable, Externalizable)...
duke@1 1449
duke@1 1450 Type[] types = collectAllRemoteInterfaces(theType);
duke@1 1451
duke@1 1452 int length = types.length;
duke@1 1453 boolean haveImpl = theType instanceof ImplementationType;
duke@1 1454 InterfaceType[] interfaces = theType.getInterfaces();
duke@1 1455 int remoteCount = countRemote(interfaces,false);
duke@1 1456 int offset = 0;
duke@1 1457
duke@1 1458 // Do we have an implementation type that implements
duke@1 1459 // more than one remote interface?
duke@1 1460
duke@1 1461 if (haveImpl && remoteCount > 1) {
duke@1 1462
duke@1 1463 // Yes, so we need to insert it at the beginning...
duke@1 1464
duke@1 1465 result = new String[length + 1];
duke@1 1466 result[0] = getRepositoryID(theType);
duke@1 1467 offset = 1;
duke@1 1468
duke@1 1469 } else {
duke@1 1470
duke@1 1471 // No.
duke@1 1472
duke@1 1473 result = new String[length];
duke@1 1474
duke@1 1475 // Here we need to ensure that the most derived
duke@1 1476 // interface ends up being first in the list. If
duke@1 1477 // there is only one, we're done.
duke@1 1478
duke@1 1479 if (length > 1) {
duke@1 1480
duke@1 1481 // First, decide what the most derived type is...
duke@1 1482
duke@1 1483 String mostDerived = null;
duke@1 1484
duke@1 1485 if (haveImpl) {
duke@1 1486
duke@1 1487 // If we get here, we know that there is only one
duke@1 1488 // direct remote interface, so just find it...
duke@1 1489
duke@1 1490 for (int i = 0; i < interfaces.length; i++) {
duke@1 1491 if (interfaces[i].isType(TYPE_REMOTE)) {
duke@1 1492 mostDerived = interfaces[i].getRepositoryID();
duke@1 1493 break;
duke@1 1494 }
duke@1 1495 }
duke@1 1496 } else {
duke@1 1497
duke@1 1498 // If we get here we know that theType is a RemoteType
duke@1 1499 // so just use its id...
duke@1 1500
duke@1 1501 mostDerived = theType.getRepositoryID();
duke@1 1502 }
duke@1 1503
duke@1 1504 // Now search types list and make sure mostDerived is
duke@1 1505 // at index zero...
duke@1 1506
duke@1 1507 for (int i = 0; i < length; i++) {
duke@1 1508 if (types[i].getRepositoryID() == mostDerived) {
duke@1 1509
duke@1 1510 // Found it. Swap it if we need to...
duke@1 1511
duke@1 1512 if (i > 0) {
duke@1 1513 Type temp = types[0];
duke@1 1514 types[0] = types[i];
duke@1 1515 types[i] = temp;
duke@1 1516 }
duke@1 1517
duke@1 1518 break;
duke@1 1519 }
duke@1 1520 }
duke@1 1521 }
duke@1 1522 }
duke@1 1523
duke@1 1524 // Now copy contents of the types array...
duke@1 1525
duke@1 1526 for (int i = 0; i < types.length; i++) {
duke@1 1527 result[offset++] = getRepositoryID(types[i]);
duke@1 1528 }
duke@1 1529
duke@1 1530 // If we're supposed to, reverse the array. This
duke@1 1531 // is only done when the -testReverseIDs flag is
duke@1 1532 // passed, and that should ONLY be done for test
duke@1 1533 // cases. This is an undocumented feature.
duke@1 1534
duke@1 1535 if (reverseIDs) {
duke@1 1536 int start = 0;
duke@1 1537 int end = result.length -1;
duke@1 1538 while (start < end) {
duke@1 1539 String temp = result[start];
duke@1 1540 result[start++] = result[end];
duke@1 1541 result[end--] = temp;
duke@1 1542 }
duke@1 1543 }
duke@1 1544
duke@1 1545 return result;
duke@1 1546 }
duke@1 1547
duke@1 1548 /**
duke@1 1549 * Collect all the inherited remote interfaces.
duke@1 1550 */
duke@1 1551 Type[] collectAllRemoteInterfaces (CompoundType theType) {
duke@1 1552 Vector list = new Vector();
duke@1 1553
duke@1 1554 // Collect up all the Remote interfaces, and get an instance
duke@1 1555 // for java.rmi.Remote...
duke@1 1556
duke@1 1557 addRemoteInterfaces(list,theType);
duke@1 1558
duke@1 1559 // Create and return our results...
duke@1 1560
duke@1 1561 Type[] result = new Type[list.size()];
duke@1 1562 list.copyInto(result);
duke@1 1563
duke@1 1564 return result;
duke@1 1565 }
duke@1 1566
duke@1 1567 /**
duke@1 1568 * Add all the inherited remote interfaces to list.
duke@1 1569 */
duke@1 1570 void addRemoteInterfaces(Vector list, CompoundType theType) {
duke@1 1571
duke@1 1572 if (theType != null) {
duke@1 1573 if (theType.isInterface() && !list.contains(theType)) {
duke@1 1574 list.addElement(theType);
duke@1 1575 }
duke@1 1576
duke@1 1577 InterfaceType[] interfaces = theType.getInterfaces();
duke@1 1578 for (int i = 0; i < interfaces.length; i++) {
duke@1 1579
duke@1 1580 if (interfaces[i].isType(TYPE_REMOTE)) {
duke@1 1581 addRemoteInterfaces(list,interfaces[i]);
duke@1 1582 }
duke@1 1583 }
duke@1 1584
duke@1 1585 addRemoteInterfaces(list,theType.getSuperclass());
duke@1 1586 }
duke@1 1587 }
duke@1 1588
duke@1 1589 /**
duke@1 1590 * Get a list of all the remote interfaces which this stub
duke@1 1591 * should declare.
duke@1 1592 */
duke@1 1593 RemoteType[] getDirectRemoteInterfaces (CompoundType theType) {
duke@1 1594
duke@1 1595 RemoteType[] result;
duke@1 1596 InterfaceType[] interfaces = theType.getInterfaces();
duke@1 1597
duke@1 1598 // First, get a list of all the interfaces...
duke@1 1599
duke@1 1600 InterfaceType[] list;
duke@1 1601
duke@1 1602 // Because we can be passed either an ImplementationType
duke@1 1603 // (which has interfaces) or a RemoteType (which is an
duke@1 1604 // interface and may have interfaces) we must handle each
duke@1 1605 // separately...
duke@1 1606
duke@1 1607 // Do we have an implementation type?
duke@1 1608
duke@1 1609 if (theType instanceof ImplementationType) {
duke@1 1610
duke@1 1611 // Yes, so list is exactly what this type
duke@1 1612 // implements and is correct already.
duke@1 1613
duke@1 1614 list = interfaces;
duke@1 1615
duke@1 1616 } else {
duke@1 1617
duke@1 1618 // No, so list is just theType...
duke@1 1619
duke@1 1620 list = new InterfaceType[1];
duke@1 1621 list[0] = (InterfaceType) theType;
duke@1 1622 }
duke@1 1623
duke@1 1624 // Ok, now count up the remote interfaces, allocate
duke@1 1625 // our result and fill it in...
duke@1 1626
duke@1 1627 int remoteCount = countRemote(list,false);
duke@1 1628
duke@1 1629 if (remoteCount == 0) {
duke@1 1630 throw new CompilerError("iiop.StubGenerator: No remote interfaces!");
duke@1 1631 }
duke@1 1632
duke@1 1633 result = new RemoteType[remoteCount];
duke@1 1634 int offset = 0;
duke@1 1635 for (int i = 0; i < list.length; i++) {
duke@1 1636 if (list[i].isType(TYPE_REMOTE)) {
duke@1 1637 result[offset++] = (RemoteType)list[i];
duke@1 1638 }
duke@1 1639 }
duke@1 1640
duke@1 1641 return result;
duke@1 1642 }
duke@1 1643
duke@1 1644 int countRemote (Type[] list, boolean includeAbstract) {
duke@1 1645 int remoteCount = 0;
duke@1 1646 for (int i = 0; i < list.length; i++) {
duke@1 1647 if (list[i].isType(TYPE_REMOTE) &&
duke@1 1648 (includeAbstract || !list[i].isType(TYPE_ABSTRACT))) {
duke@1 1649 remoteCount++;
duke@1 1650 }
duke@1 1651 }
duke@1 1652
duke@1 1653 return remoteCount;
duke@1 1654 }
duke@1 1655
duke@1 1656 void writeCastArray(IndentingWriter p) throws IOException {
duke@1 1657 if (castArray) {
duke@1 1658 p.pln();
duke@1 1659 p.pln("// This method is required as a work-around for");
duke@1 1660 p.pln("// a bug in the JDK 1.1.6 verifier.");
duke@1 1661 p.pln();
duke@1 1662 p.plnI("private "+getName(idJavaIoSerializable)+" cast_array(Object obj) {");
duke@1 1663 p.pln("return ("+getName(idJavaIoSerializable)+")obj;");
duke@1 1664 p.pOln("}");
duke@1 1665 }
duke@1 1666 }
duke@1 1667 void writeIds(IndentingWriter p, CompoundType theType, boolean isTie
duke@1 1668 ) throws IOException {
duke@1 1669 p.plnI("private static final String[] _type_ids = {");
duke@1 1670
duke@1 1671 String[] ids = getAllRemoteRepIDs(theType);
duke@1 1672
duke@1 1673 if (ids.length >0 ) {
duke@1 1674 for(int i = 0; i < ids.length; i++) {
duke@1 1675 if (i > 0)
duke@1 1676 p.pln(", ");
duke@1 1677 p.p("\"" + ids[i] + "\"");
duke@1 1678 }
duke@1 1679 } else {
duke@1 1680 // Must be an implementation which only implements Remote...
duke@1 1681 p.pln("\"\"");
duke@1 1682 }
duke@1 1683 String qname = theType.getQualifiedName() ;
duke@1 1684 boolean isTransactional = isTie && transactionalObjects.containsKey( qname ) ;
duke@1 1685 // Add TransactionalObject if needed.
duke@1 1686 if (isTransactional) {
duke@1 1687 // Have already written an id.
duke@1 1688 p.pln( ", " ) ;
duke@1 1689 p.pln( "\"IDL:omg.org/CosTransactions/TransactionalObject:1.0\"" ) ;
duke@1 1690 } else if (ids.length > 0) {
duke@1 1691 p.pln();
duke@1 1692 }
duke@1 1693 p.pOln("};");
duke@1 1694 }
duke@1 1695
duke@1 1696
duke@1 1697 /**
duke@1 1698 * Write the Tie for the remote class to a stream.
duke@1 1699 */
duke@1 1700 protected void writeTie(OutputType outputType,
duke@1 1701 IndentingWriter p) throws IOException
duke@1 1702 {
duke@1 1703 CompoundType theType = (CompoundType) outputType.getType();
duke@1 1704 RemoteType[] remoteInterfaces = null;
duke@1 1705
duke@1 1706 // Write comment...
duke@1 1707 p.pln("// Tie class generated by rmic, do not edit.");
duke@1 1708 p.pln("// Contents subject to change without notice.");
duke@1 1709 p.pln();
duke@1 1710
duke@1 1711 // Set our standard classes...
duke@1 1712 setStandardClassesInUse(theType,false);
duke@1 1713
duke@1 1714 // Add classes for this type...
duke@1 1715 addClassesInUse(theType,remoteInterfaces);
duke@1 1716
duke@1 1717 // Write package and import statements...
duke@1 1718 writePackageAndImports(p);
duke@1 1719
duke@1 1720 // Declare the tie class.
duke@1 1721 p.p("public class " + currentClass + " extends " +
duke@1 1722 getName(tieBaseClass) + " implements Tie");
duke@1 1723
duke@1 1724 // Add java.rmi.Remote if this type does not implement it.
duke@1 1725 // This allows stubs for Abstract interfaces to be treated
duke@1 1726 // uniformly...
duke@1 1727 if (!implementsRemote(theType)) {
duke@1 1728 p.pln(",");
duke@1 1729 p.p(getName("java.rmi.Remote"));
duke@1 1730 }
duke@1 1731
duke@1 1732 p.plnI(" {");
duke@1 1733
duke@1 1734 // Write data members...
duke@1 1735 p.pln();
alanb@402 1736 p.pln("volatile private " + getName(theType) + " target = null;");
duke@1 1737 p.pln();
duke@1 1738
duke@1 1739 // Write the ids...
duke@1 1740 writeIds( p, theType, true ) ;
duke@1 1741
duke@1 1742 // Write setTarget method...
duke@1 1743 p.pln();
duke@1 1744 p.plnI("public void setTarget(Remote target) {");
duke@1 1745 p.pln("this.target = (" + getName(theType) + ") target;");
duke@1 1746 p.pOln("}");
duke@1 1747
duke@1 1748 // Write getTarget method...
duke@1 1749 p.pln();
duke@1 1750 p.plnI("public Remote getTarget() {");
duke@1 1751 p.pln("return target;");
duke@1 1752 p.pOln("}");
duke@1 1753
duke@1 1754 // Write thisObject method...
duke@1 1755 p.pln();
duke@1 1756 write_tie_thisObject_method(p,idCorbaObject);
duke@1 1757
duke@1 1758 // Write deactivate method...
duke@1 1759 p.pln();
duke@1 1760 write_tie_deactivate_method(p);
duke@1 1761
duke@1 1762 // Write get orb method...
duke@1 1763 p.pln();
duke@1 1764 p.plnI("public ORB orb() {");
duke@1 1765 p.pln("return _orb();");
duke@1 1766 p.pOln("}");
duke@1 1767
duke@1 1768 // Write set orb method...
duke@1 1769 p.pln();
duke@1 1770 write_tie_orb_method(p);
duke@1 1771
duke@1 1772 // Write the _ids() method...
duke@1 1773 p.pln();
duke@1 1774 write_tie__ids_method(p);
duke@1 1775
duke@1 1776 // Get all the methods...
duke@1 1777 CompoundType.Method[] remoteMethods = theType.getMethods();
duke@1 1778
duke@1 1779 // Register all the argument names used, plus our
duke@1 1780 // data member names...
duke@1 1781
duke@1 1782 addNamesInUse(remoteMethods);
duke@1 1783 addNameInUse("target");
duke@1 1784 addNameInUse("_type_ids");
duke@1 1785
duke@1 1786 // Write the _invoke method...
duke@1 1787 p.pln();
duke@1 1788
duke@1 1789 String in = getVariableName("in");
duke@1 1790 String _in = getVariableName("_in");
duke@1 1791 String ex = getVariableName("ex");
duke@1 1792 String method = getVariableName("method");
duke@1 1793 String reply = getVariableName("reply");
duke@1 1794
duke@1 1795 p.plnI("public OutputStream _invoke(String "+method+", InputStream "+_in+", " +
duke@1 1796 "ResponseHandler "+reply+") throws SystemException {");
duke@1 1797
duke@1 1798 if (remoteMethods.length > 0) {
duke@1 1799 p.plnI("try {");
alanb@402 1800 p.pln(getName(theType) + " target = this.target;");
alanb@402 1801 p.plnI("if (target == null) {");
alanb@402 1802 p.pln("throw new java.io.IOException();");
alanb@402 1803 p.pOln("}");
duke@1 1804 p.plnI(idExtInputStream + " "+in+" = ");
duke@1 1805 p.pln("(" + idExtInputStream + ") "+_in+";");
duke@1 1806 p.pO();
duke@1 1807
duke@1 1808 // See if we should use a hash table style
duke@1 1809 // comparison...
duke@1 1810
duke@1 1811 StaticStringsHash hash = getStringsHash(remoteMethods);
duke@1 1812
duke@1 1813 if (hash != null) {
duke@1 1814 p.plnI("switch ("+method+"."+hash.method+") {");
duke@1 1815 for (int i = 0; i < hash.buckets.length; i++) {
duke@1 1816 p.plnI("case "+hash.keys[i]+": ");
duke@1 1817 for (int j = 0; j < hash.buckets[i].length; j++) {
duke@1 1818 CompoundType.Method current = remoteMethods[hash.buckets[i][j]];
duke@1 1819 if (j > 0) {
duke@1 1820 p.pO("} else ");
duke@1 1821 }
duke@1 1822 p.plnI("if ("+method+".equals(\""+ current.getIDLName() +"\")) {");
duke@1 1823 writeTieMethod(p, theType,current);
duke@1 1824 }
duke@1 1825 p.pOln("}");
duke@1 1826 p.pO();
duke@1 1827 }
duke@1 1828 } else {
duke@1 1829 for(int i = 0; i < remoteMethods.length; i++) {
duke@1 1830 CompoundType.Method current = remoteMethods[i];
duke@1 1831 if (i > 0) {
duke@1 1832 p.pO("} else ");
duke@1 1833 }
duke@1 1834
duke@1 1835 p.plnI("if ("+method+".equals(\""+ current.getIDLName() +"\")) {");
duke@1 1836 writeTieMethod(p, theType, current);
duke@1 1837 }
duke@1 1838 }
duke@1 1839
duke@1 1840 if (hash != null) {
duke@1 1841 p.pI();
duke@1 1842 // p.plnI("default:");
duke@1 1843 } else {
duke@1 1844 // p.pOlnI("} else {");
duke@1 1845 }
duke@1 1846 // p.pln("throw new "+getName(idBadMethodException)+"();");
duke@1 1847
duke@1 1848 if (hash != null) {
duke@1 1849 p.pO();
duke@1 1850 }
duke@1 1851 p.pOln("}");
duke@1 1852 p.pln("throw new "+getName(idBadMethodException)+"();");
duke@1 1853
duke@1 1854 p.pOlnI("} catch ("+getName(idSystemException)+" "+ex+") {");
duke@1 1855 p.pln("throw "+ex+";");
duke@1 1856
duke@1 1857 p.pOlnI("} catch ("+getName(idJavaLangThrowable)+" "+ex+") {");
duke@1 1858 p.pln("throw new " + getName(idPortableUnknownException) + "("+ex+");");
duke@1 1859 p.pOln("}");
duke@1 1860 } else {
duke@1 1861 // No methods...
duke@1 1862
duke@1 1863 p.pln("throw new " + getName(idBadMethodException) + "();");
duke@1 1864 }
duke@1 1865
duke@1 1866 p.pOln("}"); // end invoke
duke@1 1867
duke@1 1868 // Write the cast array hack...
duke@1 1869
duke@1 1870 writeCastArray(p);
duke@1 1871
duke@1 1872 // End tie class...
duke@1 1873 p.pOln("}");
duke@1 1874 }
duke@1 1875 public void catchWrongPolicy(IndentingWriter p) throws IOException {
duke@1 1876 p.pln("");
duke@1 1877 }
duke@1 1878 public void catchServantNotActive(IndentingWriter p) throws IOException {
duke@1 1879 p.pln("");
duke@1 1880 }
duke@1 1881 public void catchObjectNotActive(IndentingWriter p) throws IOException {
duke@1 1882 p.pln("");
duke@1 1883 }
duke@1 1884
duke@1 1885 public void write_tie_thisObject_method(IndentingWriter p,
duke@1 1886 Identifier idCorbaObject)
duke@1 1887 throws IOException
duke@1 1888 {
duke@1 1889 if(POATie){
duke@1 1890 p.plnI("public " + idCorbaObject + " thisObject() {");
duke@1 1891 /*
duke@1 1892 p.pln("org.omg.CORBA.Object objref = null;");
duke@1 1893 p.pln("try{");
duke@1 1894 p.pln("objref = _poa().servant_to_reference(this);");
duke@1 1895 p.pln("}catch (org.omg.PortableServer.POAPackage.WrongPolicy exception){");
duke@1 1896 catchWrongPolicy(p);
duke@1 1897 p.pln("}catch (org.omg.PortableServer.POAPackage.ServantNotActive exception){");
duke@1 1898 catchServantNotActive(p);
duke@1 1899 p.pln("}");
duke@1 1900 p.pln("return objref;");
duke@1 1901 */
duke@1 1902 p.pln("return _this_object();");
duke@1 1903 p.pOln("}");
duke@1 1904 } else {
duke@1 1905 p.plnI("public " + idCorbaObject + " thisObject() {");
duke@1 1906 p.pln("return this;");
duke@1 1907 p.pOln("}");
duke@1 1908 }
duke@1 1909 }
duke@1 1910
duke@1 1911 public void write_tie_deactivate_method(IndentingWriter p)
duke@1 1912 throws IOException
duke@1 1913 {
duke@1 1914 if(POATie){
duke@1 1915 p.plnI("public void deactivate() {");
duke@1 1916 p.pln("try{");
duke@1 1917 p.pln("_poa().deactivate_object(_poa().servant_to_id(this));");
duke@1 1918 p.pln("}catch (org.omg.PortableServer.POAPackage.WrongPolicy exception){");
duke@1 1919 catchWrongPolicy(p);
duke@1 1920 p.pln("}catch (org.omg.PortableServer.POAPackage.ObjectNotActive exception){");
duke@1 1921 catchObjectNotActive(p);
duke@1 1922 p.pln("}catch (org.omg.PortableServer.POAPackage.ServantNotActive exception){");
duke@1 1923 catchServantNotActive(p);
duke@1 1924 p.pln("}");
duke@1 1925 p.pOln("}");
duke@1 1926 } else {
duke@1 1927 p.plnI("public void deactivate() {");
duke@1 1928 p.pln("_orb().disconnect(this);");
duke@1 1929 p.pln("_set_delegate(null);");
duke@1 1930 p.pln("target = null;");
duke@1 1931 p.pOln("}");
duke@1 1932 }
duke@1 1933 }
duke@1 1934
duke@1 1935 public void write_tie_orb_method(IndentingWriter p)
duke@1 1936 throws IOException
duke@1 1937 {
duke@1 1938 if(POATie){
duke@1 1939 p.plnI("public void orb(ORB orb) {");
duke@1 1940 /*
duke@1 1941 p.pln("try{");
duke@1 1942 p.pln("orb.connect(_poa().servant_to_reference(this));");
duke@1 1943 p.pln("}catch (org.omg.PortableServer.POAPackage.WrongPolicy exception){");
duke@1 1944 catchWrongPolicy(p);
duke@1 1945 p.pln("}catch (org.omg.PortableServer.POAPackage.ServantNotActive exception){");
duke@1 1946 catchServantNotActive(p);
duke@1 1947 p.pln("}");
duke@1 1948 */
duke@1 1949 p.pln("try {");
duke@1 1950 p.pln(" ((org.omg.CORBA_2_3.ORB)orb).set_delegate(this);");
duke@1 1951 p.pln("}");
duke@1 1952 p.pln("catch(ClassCastException e) {");
duke@1 1953 p.pln(" throw new org.omg.CORBA.BAD_PARAM");
duke@1 1954 p.pln(" (\"POA Servant requires an instance of org.omg.CORBA_2_3.ORB\");");
duke@1 1955 p.pln("}");
duke@1 1956 p.pOln("}");
duke@1 1957 } else {
duke@1 1958 p.plnI("public void orb(ORB orb) {");
duke@1 1959 p.pln("orb.connect(this);");
duke@1 1960 p.pOln("}");
duke@1 1961 }
duke@1 1962 }
duke@1 1963
duke@1 1964 public void write_tie__ids_method(IndentingWriter p)
duke@1 1965 throws IOException
duke@1 1966 {
duke@1 1967 if(POATie){
duke@1 1968 p.plnI("public String[] _all_interfaces(org.omg.PortableServer.POA poa, byte[] objectId){");
coffeys@370 1969 p.pln("return (String[]) _type_ids.clone();");
duke@1 1970 p.pOln("}");
duke@1 1971 } else {
duke@1 1972 p.plnI("public String[] _ids() { ");
coffeys@370 1973 p.pln("return (String[]) _type_ids.clone();");
duke@1 1974 p.pOln("}");
duke@1 1975 }
duke@1 1976 }
duke@1 1977
duke@1 1978
duke@1 1979 StaticStringsHash getStringsHash (CompoundType.Method[] methods) {
duke@1 1980 if (useHash && methods.length > 1) {
duke@1 1981 String[] methodNames = new String[methods.length];
duke@1 1982 for (int i = 0; i < methodNames.length; i++) {
duke@1 1983 methodNames[i] = methods[i].getIDLName();
duke@1 1984 }
duke@1 1985 return new StaticStringsHash(methodNames);
duke@1 1986 }
duke@1 1987 return null;
duke@1 1988 }
duke@1 1989
duke@1 1990 static boolean needNewReadStreamClass(Type type) {
duke@1 1991 if (type.isType(TYPE_ABSTRACT)) {
duke@1 1992 return true;
duke@1 1993 }
duke@1 1994 // Handle late-breaking special case for
duke@1 1995 // abstract IDL entities...
duke@1 1996 if ((type instanceof CompoundType) &&
duke@1 1997 ((CompoundType)type).isAbstractBase()) {
duke@1 1998 return true;
duke@1 1999 }
duke@1 2000 return needNewWriteStreamClass(type);
duke@1 2001 }
duke@1 2002
duke@1 2003 static boolean needNewWriteStreamClass(Type type) {
duke@1 2004 switch (type.getTypeCode()) {
duke@1 2005 case TYPE_VOID:
duke@1 2006 case TYPE_BOOLEAN:
duke@1 2007 case TYPE_BYTE:
duke@1 2008 case TYPE_CHAR:
duke@1 2009 case TYPE_SHORT:
duke@1 2010 case TYPE_INT:
duke@1 2011 case TYPE_LONG:
duke@1 2012 case TYPE_FLOAT:
duke@1 2013 case TYPE_DOUBLE: return false;
duke@1 2014
duke@1 2015 case TYPE_STRING: return true;
duke@1 2016 case TYPE_ANY: return false;
duke@1 2017 case TYPE_CORBA_OBJECT: return false;
duke@1 2018 case TYPE_REMOTE: return false;
duke@1 2019 case TYPE_ABSTRACT: return false;
duke@1 2020 case TYPE_NC_INTERFACE: return true;
duke@1 2021 case TYPE_VALUE: return true;
duke@1 2022 case TYPE_IMPLEMENTATION: return true;
duke@1 2023 case TYPE_NC_CLASS: return true;
duke@1 2024 case TYPE_ARRAY: return true;
duke@1 2025 case TYPE_JAVA_RMI_REMOTE: return false;
duke@1 2026
duke@1 2027 default: throw new Error("unexpected type code: " + type.getTypeCode());
duke@1 2028 }
duke@1 2029 }
duke@1 2030
duke@1 2031 /*
duke@1 2032 * Decide which arguments need to be copied and write
duke@1 2033 * the copy code. Returns an array of argument names to
duke@1 2034 * use to refer to either the copy or the original.
duke@1 2035 */
duke@1 2036 String[] writeCopyArguments(CompoundType.Method method,
duke@1 2037 IndentingWriter p) throws IOException {
duke@1 2038
duke@1 2039 Type[] args = method.getArguments();
duke@1 2040 String[] origNames = method.getArgumentNames();
duke@1 2041
duke@1 2042 // Copy the current parameter names to a result array...
duke@1 2043
duke@1 2044 String[] result = new String[origNames.length];
duke@1 2045 for (int i = 0; i < result.length; i++) {
duke@1 2046 result[i] = origNames[i];
duke@1 2047 }
duke@1 2048
duke@1 2049 // Decide which arguments must be copied, if any. If
duke@1 2050 // any of the arguments are types for which a 'real' copy
duke@1 2051 // will be done, rather than just an autoConnect, set
duke@1 2052 // realCopy = true. Note that abstract types may only
duke@1 2053 // need autoConnect, but we cannot know that at compile
duke@1 2054 // time...
duke@1 2055
duke@1 2056 boolean realCopy = false;
duke@1 2057 boolean[] copyArg = new boolean[args.length];
duke@1 2058 int copyCount = 0;
duke@1 2059 int firstCopiedArg = 0; // Only used in single copy case. It is only the first arg that
duke@1 2060 // needs copying IF copyCount == 1.
duke@1 2061
duke@1 2062 for (int i = 0; i < args.length; i++) {
duke@1 2063 if (mustCopy(args[i])) {
duke@1 2064 copyArg[i] = true;
duke@1 2065 copyCount++;
duke@1 2066 firstCopiedArg = i;
duke@1 2067 if (args[i].getTypeCode() != TYPE_REMOTE &&
duke@1 2068 args[i].getTypeCode() != TYPE_IMPLEMENTATION) {
duke@1 2069 realCopy = true;
duke@1 2070 }
duke@1 2071 } else {
duke@1 2072 copyArg[i] = false;
duke@1 2073 }
duke@1 2074 }
duke@1 2075
duke@1 2076 // Do we have any types which must be copied?
duke@1 2077 if (copyCount > 0) {
duke@1 2078 // Yes. Are we only doing the copy to ensure
duke@1 2079 // that autoConnect occurs?
duke@1 2080 if (realCopy) {
duke@1 2081 // Nope. We need to go back thru the list and
duke@1 2082 // mark any strings so that they will be copied
duke@1 2083 // to preserve any shared references...
duke@1 2084 for (int i = 0; i < args.length; i++) {
duke@1 2085 if (args[i].getTypeCode() == TYPE_STRING) {
duke@1 2086 copyArg[i] = true;
duke@1 2087 copyCount++;
duke@1 2088 }
duke@1 2089 }
duke@1 2090 }
duke@1 2091
duke@1 2092 // We're ready to generate code. Do we have more than
duke@1 2093 // one to copy?
duke@1 2094 if (copyCount > 1) {
duke@1 2095 // Generate a call to copyObjects...
duke@1 2096 String arrayName = getVariableName("copies");
duke@1 2097 p.p("Object[] " + arrayName + " = Util.copyObjects(new Object[]{");
duke@1 2098 boolean first = true;
duke@1 2099 for (int i = 0; i < args.length; i++) {
duke@1 2100 if (copyArg[i]) {
duke@1 2101 if (!first) {
duke@1 2102 p.p(",");
duke@1 2103 }
duke@1 2104 first = false;
duke@1 2105 p.p(origNames[i]);
duke@1 2106 }
duke@1 2107 }
duke@1 2108 p.pln("},_orb());");
duke@1 2109
duke@1 2110 // For each of the types which was copied, create
duke@1 2111 // a local temporary for it, updating the result
duke@1 2112 // array with the new local parameter name...
duke@1 2113 int copyIndex = 0 ;
duke@1 2114 for (int i = 0; i < args.length; i++) {
duke@1 2115 if (copyArg[i]) {
duke@1 2116 result[i] = getVariableName(result[i]+"Copy");
duke@1 2117 p.pln( getName(args[i]) + " " + result[i] + " = (" + getName(args[i]) + ") " +
duke@1 2118 arrayName + "[" + copyIndex++ +"];");
duke@1 2119 }
duke@1 2120 }
duke@1 2121 } else {
duke@1 2122 // Generate a call to copyObject, updating the result
duke@1 2123 // with the new local parameter name...
duke@1 2124 result[firstCopiedArg] = getVariableName(result[firstCopiedArg]+"Copy");
duke@1 2125 p.pln( getName(args[firstCopiedArg]) + " " + result[firstCopiedArg] + " = (" +
duke@1 2126 getName(args[firstCopiedArg]) + ") Util.copyObject(" +
duke@1 2127 origNames[firstCopiedArg] + ",_orb());");
duke@1 2128 }
duke@1 2129 }
duke@1 2130
duke@1 2131 return result;
duke@1 2132 }
duke@1 2133
duke@1 2134 static final String SINGLE_SLASH = "\\";
duke@1 2135 static final String DOUBLE_SLASH = SINGLE_SLASH + SINGLE_SLASH;
duke@1 2136
duke@1 2137 String getRepositoryID(Type type) {
duke@1 2138 return IDLNames.replace(type.getRepositoryID(), SINGLE_SLASH, DOUBLE_SLASH);
duke@1 2139 }
duke@1 2140
duke@1 2141 String getExceptionRepositoryID(Type type) {
duke@1 2142 ClassType theType = (ClassType) type;
duke@1 2143 return IDLNames.getIDLRepositoryID(theType.getQualifiedIDLExceptionName(false));
duke@1 2144 }
duke@1 2145
duke@1 2146 String getVariableName(String proposed) {
duke@1 2147 while (namesInUse.contains(proposed)) {
duke@1 2148 proposed = "$" + proposed;
duke@1 2149 }
duke@1 2150
duke@1 2151 return proposed;
duke@1 2152 }
duke@1 2153
duke@1 2154 void addNamesInUse(CompoundType.Method[] methods) {
duke@1 2155 for (int i = 0; i < methods.length; i++) {
duke@1 2156 addNamesInUse(methods[i]);
duke@1 2157 }
duke@1 2158 }
duke@1 2159
duke@1 2160 void addNamesInUse(CompoundType.Method method) {
duke@1 2161 String paramNames[] = method.getArgumentNames();
duke@1 2162 for (int i = 0; i < paramNames.length; i++) {
duke@1 2163 addNameInUse(paramNames[i]);
duke@1 2164 }
duke@1 2165 }
duke@1 2166
duke@1 2167 void addNameInUse(String name) {
duke@1 2168 namesInUse.add(name);
duke@1 2169 }
duke@1 2170
duke@1 2171 static boolean mustCopy(Type type) {
duke@1 2172 switch (type.getTypeCode()) {
duke@1 2173 case TYPE_VOID:
duke@1 2174 case TYPE_BOOLEAN:
duke@1 2175 case TYPE_BYTE:
duke@1 2176 case TYPE_CHAR:
duke@1 2177 case TYPE_SHORT:
duke@1 2178 case TYPE_INT:
duke@1 2179 case TYPE_LONG:
duke@1 2180 case TYPE_FLOAT:
duke@1 2181 case TYPE_DOUBLE:
duke@1 2182 case TYPE_STRING: return false;
duke@1 2183
duke@1 2184 case TYPE_ANY: return true;
duke@1 2185
duke@1 2186 case TYPE_CORBA_OBJECT: return false;
duke@1 2187
duke@1 2188 case TYPE_REMOTE:
duke@1 2189 case TYPE_ABSTRACT:
duke@1 2190 case TYPE_NC_INTERFACE:
duke@1 2191 case TYPE_VALUE:
duke@1 2192 case TYPE_IMPLEMENTATION:
duke@1 2193 case TYPE_NC_CLASS:
duke@1 2194 case TYPE_ARRAY:
duke@1 2195 case TYPE_JAVA_RMI_REMOTE: return true;
duke@1 2196
duke@1 2197 default: throw new Error("unexpected type code: " + type.getTypeCode());
duke@1 2198 }
duke@1 2199 }
duke@1 2200
duke@1 2201 ValueType[] getStubExceptions (CompoundType.Method method, boolean sort) {
duke@1 2202
duke@1 2203 ValueType[] list = method.getFilteredStubExceptions(method.getExceptions());
duke@1 2204
duke@1 2205 // Sort the list so that all org.omg.CORBA.UserException
duke@1 2206 // subtypes are at the beginning of the list. This ensures
duke@1 2207 // that the stub will not call read_string() before calling
duke@1 2208 // XXHelper.read().
duke@1 2209
duke@1 2210 if (sort) {
duke@1 2211 Arrays.sort(list,new UserExceptionComparator());
duke@1 2212 }
duke@1 2213
duke@1 2214 return list;
duke@1 2215 }
duke@1 2216
duke@1 2217 ValueType[] getTieExceptions (CompoundType.Method method) {
duke@1 2218 return method.getUniqueCatchList(method.getImplExceptions());
duke@1 2219 }
duke@1 2220
duke@1 2221 void writeTieMethod(IndentingWriter p, CompoundType type,
duke@1 2222 CompoundType.Method method) throws IOException {
duke@1 2223 String methodName = method.getName();
duke@1 2224 Type paramTypes[] = method.getArguments();
duke@1 2225 String paramNames[] = method.getArgumentNames();
duke@1 2226 Type returnType = method.getReturnType();
duke@1 2227 ValueType[] exceptions = getTieExceptions(method);
duke@1 2228 String in = getVariableName("in");
duke@1 2229 String ex = getVariableName("ex");
duke@1 2230 String out = getVariableName("out");
duke@1 2231 String reply = getVariableName("reply");
duke@1 2232
duke@1 2233 for (int i = 0; i < paramTypes.length; i++) {
duke@1 2234 p.p(getName(paramTypes[i])+" "+paramNames[i]+" = ");
duke@1 2235 writeUnmarshalArgument(p, in, paramTypes[i], null);
duke@1 2236 p.pln();
duke@1 2237 }
duke@1 2238
duke@1 2239 boolean handleExceptions = exceptions != null;
duke@1 2240 boolean doReturn = !returnType.isType(TYPE_VOID);
duke@1 2241
duke@1 2242 if (handleExceptions && doReturn) {
duke@1 2243 String objName = testUtil(getName(returnType), returnType);
duke@1 2244 p.pln(objName+" result;");
duke@1 2245 }
duke@1 2246
duke@1 2247 if (handleExceptions)
duke@1 2248 p.plnI("try {");
duke@1 2249
duke@1 2250 if (doReturn) {
duke@1 2251 if (handleExceptions) {
duke@1 2252 p.p("result = ");
duke@1 2253 } else {
duke@1 2254 p.p(getName(returnType)+" result = ");
duke@1 2255 }
duke@1 2256 }
duke@1 2257
duke@1 2258 p.p("target."+methodName+"(");
duke@1 2259 for(int i = 0; i < paramNames.length; i++) {
duke@1 2260 if (i > 0)
duke@1 2261 p.p(", ");
duke@1 2262 p.p(paramNames[i]);
duke@1 2263 }
duke@1 2264 p.pln(");");
duke@1 2265
duke@1 2266 if (handleExceptions) {
duke@1 2267 for(int i = 0; i < exceptions.length; i++) {
duke@1 2268 p.pOlnI("} catch ("+getName(exceptions[i])+" "+ex+") {");
duke@1 2269
duke@1 2270 // Is this our IDLEntity Exception special case?
duke@1 2271
duke@1 2272 if (exceptions[i].isIDLEntityException() && !exceptions[i].isCORBAUserException()) {
duke@1 2273
duke@1 2274 // Yes...
duke@1 2275
duke@1 2276 String helperName = IDLNames.replace(exceptions[i].getQualifiedIDLName(false),"::",".");
duke@1 2277 helperName += "Helper";
duke@1 2278 p.pln(idOutputStream+" "+out +" = "+reply+".createExceptionReply();");
duke@1 2279 p.pln(helperName+".write("+out+","+ex+");");
duke@1 2280
duke@1 2281 } else {
duke@1 2282
duke@1 2283 // No...
duke@1 2284
duke@1 2285 p.pln("String id = \"" + getExceptionRepositoryID(exceptions[i]) + "\";");
duke@1 2286 p.plnI(idExtOutputStream + " "+out+" = ");
duke@1 2287 p.pln("(" + idExtOutputStream + ") "+reply+".createExceptionReply();");
duke@1 2288 p.pOln(out+".write_string(id);");
duke@1 2289 p.pln(out+".write_value("+ex+"," + getName(exceptions[i]) + ".class);");
duke@1 2290 }
duke@1 2291
duke@1 2292 p.pln("return "+out+";");
duke@1 2293 }
duke@1 2294 p.pOln("}");
duke@1 2295 }
duke@1 2296
duke@1 2297 if (needNewWriteStreamClass(returnType)) {
duke@1 2298 p.plnI(idExtOutputStream + " "+out+" = ");
duke@1 2299 p.pln("(" + idExtOutputStream + ") "+reply+".createReply();");
duke@1 2300 p.pO();
duke@1 2301 } else {
duke@1 2302 p.pln("OutputStream "+out+" = "+reply+".createReply();");
duke@1 2303 }
duke@1 2304
duke@1 2305 if (doReturn) {
duke@1 2306 writeMarshalArgument(p, out, returnType, "result");
duke@1 2307 p.pln();
duke@1 2308 }
duke@1 2309
duke@1 2310 p.pln("return "+out+";");
duke@1 2311 }
duke@1 2312
duke@1 2313
duke@1 2314 /**
duke@1 2315 * Write Java statements to marshal a series of values in order as
duke@1 2316 * named in the "names" array, with types as specified in the "types"
duke@1 2317 * array", to the java.io.ObjectOutput stream named "stream".
duke@1 2318 */
duke@1 2319 void writeMarshalArguments(IndentingWriter p,
duke@1 2320 String streamName,
duke@1 2321 Type[] types, String[] names)
duke@1 2322 throws IOException
duke@1 2323 {
duke@1 2324 if (types.length != names.length) {
duke@1 2325 throw new Error("paramter type and name arrays different sizes");
duke@1 2326 }
duke@1 2327
duke@1 2328 for (int i = 0; i < types.length; i++) {
duke@1 2329 writeMarshalArgument(p, streamName, types[i], names[i]);
duke@1 2330 if (i != types.length -1) {
duke@1 2331 p.pln();
duke@1 2332 }
duke@1 2333 }
duke@1 2334 }
duke@1 2335
duke@1 2336 /**
duke@1 2337 * Added for IASRI 4987274. Remote classes named "Util" were
duke@1 2338 * getting confused with javax.rmi.CORBA.Util and the
duke@1 2339 * unqualifiedName "Util".
duke@1 2340 */
duke@1 2341 String testUtil(String objectName, Type ttype) {
duke@1 2342 if (objectName.equals("Util")) {
duke@1 2343 String correctedName = (String)ttype.getPackageName() + "." + objectName;
duke@1 2344 return correctedName;
duke@1 2345 } else {
duke@1 2346 return objectName;
duke@1 2347 }
duke@1 2348 }
duke@1 2349 }
duke@1 2350
duke@1 2351 class StringComparator implements java.util.Comparator {
duke@1 2352 public int compare(Object o1, Object o2) {
duke@1 2353 String s1 = (String)o1;
duke@1 2354 String s2 = (String)o2;
duke@1 2355 return s1.compareTo(s2);
duke@1 2356 }
duke@1 2357 }
duke@1 2358
duke@1 2359
duke@1 2360 class UserExceptionComparator implements java.util.Comparator {
duke@1 2361 public int compare(Object o1, Object o2) {
duke@1 2362 ValueType v1 = (ValueType)o1;
duke@1 2363 ValueType v2 = (ValueType)o2;
duke@1 2364 int result = 0;
duke@1 2365 if (isUserException(v1)) {
duke@1 2366 if (!isUserException(v2)) {
duke@1 2367 result = -1;
duke@1 2368 }
duke@1 2369 } else if (isUserException(v2)) {
duke@1 2370 if (!isUserException(v1)) {
duke@1 2371 result = 1;
duke@1 2372 }
duke@1 2373 }
duke@1 2374 return result;
duke@1 2375 }
duke@1 2376
duke@1 2377 final boolean isUserException(ValueType it) {
duke@1 2378 return it.isIDLEntityException() && !it.isCORBAUserException();
duke@1 2379 }
duke@1 2380 }

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