src/share/classes/com/sun/tools/javac/tree/JCTree.java

Thu, 04 Feb 2010 10:14:28 -0800

author
jjg
date
Thu, 04 Feb 2010 10:14:28 -0800
changeset 489
4b4e282a3146
parent 308
03944ee4fac4
child 550
a6f2911a7c55
permissions
-rw-r--r--

6923080: TreeScanner.visitNewClass should scan tree.typeargs
Reviewed-by: darcy

duke@1 1 /*
xdono@229 2 * Copyright 1999-2009 Sun Microsystems, Inc. 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
duke@1 7 * published by the Free Software Foundation. Sun designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
duke@1 9 * by Sun 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 *
duke@1 21 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
duke@1 22 * CA 95054 USA or visit www.sun.com if you need additional information or
duke@1 23 * have any questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.tree;
duke@1 27
duke@1 28 import java.util.*;
duke@1 29
duke@1 30 import java.io.IOException;
duke@1 31 import java.io.StringWriter;
duke@1 32 import javax.lang.model.element.Modifier;
duke@1 33 import javax.lang.model.type.TypeKind;
duke@1 34 import javax.tools.JavaFileObject;
duke@1 35
duke@1 36 import com.sun.tools.javac.util.*;
duke@1 37 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
duke@1 38 import com.sun.tools.javac.util.List;
duke@1 39 import com.sun.tools.javac.code.*;
duke@1 40 import com.sun.tools.javac.code.Scope;
duke@1 41 import com.sun.tools.javac.code.Symbol.*;
duke@1 42 import com.sun.source.tree.*;
duke@1 43
duke@1 44 import static com.sun.tools.javac.code.BoundKind.*;
duke@1 45
duke@1 46 /**
duke@1 47 * Root class for abstract syntax tree nodes. It provides definitions
duke@1 48 * for specific tree nodes as subclasses nested inside.
duke@1 49 *
duke@1 50 * <p>Each subclass is highly standardized. It generally contains
duke@1 51 * only tree fields for the syntactic subcomponents of the node. Some
duke@1 52 * classes that represent identifier uses or definitions also define a
duke@1 53 * Symbol field that denotes the represented identifier. Classes for
duke@1 54 * non-local jumps also carry the jump target as a field. The root
duke@1 55 * class Tree itself defines fields for the tree's type and position.
duke@1 56 * No other fields are kept in a tree node; instead parameters are
duke@1 57 * passed to methods accessing the node.
duke@1 58 *
duke@1 59 * <p>Except for the methods defined by com.sun.source, the only
duke@1 60 * method defined in subclasses is `visit' which applies a given
duke@1 61 * visitor to the tree. The actual tree processing is done by visitor
duke@1 62 * classes in other packages. The abstract class Visitor, as well as
duke@1 63 * an Factory interface for trees, are defined as inner classes in
duke@1 64 * Tree.
duke@1 65 *
duke@1 66 * <p>To avoid ambiguities with the Tree API in com.sun.source all sub
duke@1 67 * classes should, by convention, start with JC (javac).
duke@1 68 *
duke@1 69 * <p><b>This is NOT part of any API supported by Sun Microsystems.
duke@1 70 * If you write code that depends on this, you do so at your own risk.
duke@1 71 * This code and its internal interfaces are subject to change or
duke@1 72 * deletion without notice.</b>
duke@1 73 *
duke@1 74 * @see TreeMaker
duke@1 75 * @see TreeInfo
duke@1 76 * @see TreeTranslator
duke@1 77 * @see Pretty
duke@1 78 */
duke@1 79 public abstract class JCTree implements Tree, Cloneable, DiagnosticPosition {
duke@1 80
duke@1 81 /* Tree tag values, identifying kinds of trees */
duke@1 82
duke@1 83 /** Toplevel nodes, of type TopLevel, representing entire source files.
duke@1 84 */
duke@1 85 public static final int TOPLEVEL = 1;
duke@1 86
duke@1 87 /** Import clauses, of type Import.
duke@1 88 */
duke@1 89 public static final int IMPORT = TOPLEVEL + 1;
duke@1 90
duke@1 91 /** Class definitions, of type ClassDef.
duke@1 92 */
duke@1 93 public static final int CLASSDEF = IMPORT + 1;
duke@1 94
duke@1 95 /** Method definitions, of type MethodDef.
duke@1 96 */
duke@1 97 public static final int METHODDEF = CLASSDEF + 1;
duke@1 98
duke@1 99 /** Variable definitions, of type VarDef.
duke@1 100 */
duke@1 101 public static final int VARDEF = METHODDEF + 1;
duke@1 102
duke@1 103 /** The no-op statement ";", of type Skip
duke@1 104 */
duke@1 105 public static final int SKIP = VARDEF + 1;
duke@1 106
duke@1 107 /** Blocks, of type Block.
duke@1 108 */
duke@1 109 public static final int BLOCK = SKIP + 1;
duke@1 110
duke@1 111 /** Do-while loops, of type DoLoop.
duke@1 112 */
duke@1 113 public static final int DOLOOP = BLOCK + 1;
duke@1 114
duke@1 115 /** While-loops, of type WhileLoop.
duke@1 116 */
duke@1 117 public static final int WHILELOOP = DOLOOP + 1;
duke@1 118
duke@1 119 /** For-loops, of type ForLoop.
duke@1 120 */
duke@1 121 public static final int FORLOOP = WHILELOOP + 1;
duke@1 122
duke@1 123 /** Foreach-loops, of type ForeachLoop.
duke@1 124 */
duke@1 125 public static final int FOREACHLOOP = FORLOOP + 1;
duke@1 126
duke@1 127 /** Labelled statements, of type Labelled.
duke@1 128 */
duke@1 129 public static final int LABELLED = FOREACHLOOP + 1;
duke@1 130
duke@1 131 /** Switch statements, of type Switch.
duke@1 132 */
duke@1 133 public static final int SWITCH = LABELLED + 1;
duke@1 134
duke@1 135 /** Case parts in switch statements, of type Case.
duke@1 136 */
duke@1 137 public static final int CASE = SWITCH + 1;
duke@1 138
duke@1 139 /** Synchronized statements, of type Synchonized.
duke@1 140 */
duke@1 141 public static final int SYNCHRONIZED = CASE + 1;
duke@1 142
duke@1 143 /** Try statements, of type Try.
duke@1 144 */
duke@1 145 public static final int TRY = SYNCHRONIZED + 1;
duke@1 146
duke@1 147 /** Catch clauses in try statements, of type Catch.
duke@1 148 */
duke@1 149 public static final int CATCH = TRY + 1;
duke@1 150
duke@1 151 /** Conditional expressions, of type Conditional.
duke@1 152 */
duke@1 153 public static final int CONDEXPR = CATCH + 1;
duke@1 154
duke@1 155 /** Conditional statements, of type If.
duke@1 156 */
duke@1 157 public static final int IF = CONDEXPR + 1;
duke@1 158
duke@1 159 /** Expression statements, of type Exec.
duke@1 160 */
duke@1 161 public static final int EXEC = IF + 1;
duke@1 162
duke@1 163 /** Break statements, of type Break.
duke@1 164 */
duke@1 165 public static final int BREAK = EXEC + 1;
duke@1 166
duke@1 167 /** Continue statements, of type Continue.
duke@1 168 */
duke@1 169 public static final int CONTINUE = BREAK + 1;
duke@1 170
duke@1 171 /** Return statements, of type Return.
duke@1 172 */
duke@1 173 public static final int RETURN = CONTINUE + 1;
duke@1 174
duke@1 175 /** Throw statements, of type Throw.
duke@1 176 */
duke@1 177 public static final int THROW = RETURN + 1;
duke@1 178
duke@1 179 /** Assert statements, of type Assert.
duke@1 180 */
duke@1 181 public static final int ASSERT = THROW + 1;
duke@1 182
duke@1 183 /** Method invocation expressions, of type Apply.
duke@1 184 */
duke@1 185 public static final int APPLY = ASSERT + 1;
duke@1 186
duke@1 187 /** Class instance creation expressions, of type NewClass.
duke@1 188 */
duke@1 189 public static final int NEWCLASS = APPLY + 1;
duke@1 190
duke@1 191 /** Array creation expressions, of type NewArray.
duke@1 192 */
duke@1 193 public static final int NEWARRAY = NEWCLASS + 1;
duke@1 194
duke@1 195 /** Parenthesized subexpressions, of type Parens.
duke@1 196 */
duke@1 197 public static final int PARENS = NEWARRAY + 1;
duke@1 198
duke@1 199 /** Assignment expressions, of type Assign.
duke@1 200 */
duke@1 201 public static final int ASSIGN = PARENS + 1;
duke@1 202
duke@1 203 /** Type cast expressions, of type TypeCast.
duke@1 204 */
duke@1 205 public static final int TYPECAST = ASSIGN + 1;
duke@1 206
duke@1 207 /** Type test expressions, of type TypeTest.
duke@1 208 */
duke@1 209 public static final int TYPETEST = TYPECAST + 1;
duke@1 210
duke@1 211 /** Indexed array expressions, of type Indexed.
duke@1 212 */
duke@1 213 public static final int INDEXED = TYPETEST + 1;
duke@1 214
duke@1 215 /** Selections, of type Select.
duke@1 216 */
duke@1 217 public static final int SELECT = INDEXED + 1;
duke@1 218
duke@1 219 /** Simple identifiers, of type Ident.
duke@1 220 */
duke@1 221 public static final int IDENT = SELECT + 1;
duke@1 222
duke@1 223 /** Literals, of type Literal.
duke@1 224 */
duke@1 225 public static final int LITERAL = IDENT + 1;
duke@1 226
duke@1 227 /** Basic type identifiers, of type TypeIdent.
duke@1 228 */
duke@1 229 public static final int TYPEIDENT = LITERAL + 1;
duke@1 230
duke@1 231 /** Array types, of type TypeArray.
duke@1 232 */
duke@1 233 public static final int TYPEARRAY = TYPEIDENT + 1;
duke@1 234
duke@1 235 /** Parameterized types, of type TypeApply.
duke@1 236 */
duke@1 237 public static final int TYPEAPPLY = TYPEARRAY + 1;
duke@1 238
duke@1 239 /** Formal type parameters, of type TypeParameter.
duke@1 240 */
duke@1 241 public static final int TYPEPARAMETER = TYPEAPPLY + 1;
duke@1 242
duke@1 243 /** Type argument.
duke@1 244 */
duke@1 245 public static final int WILDCARD = TYPEPARAMETER + 1;
duke@1 246
duke@1 247 /** Bound kind: extends, super, exact, or unbound
duke@1 248 */
duke@1 249 public static final int TYPEBOUNDKIND = WILDCARD + 1;
duke@1 250
duke@1 251 /** metadata: Annotation.
duke@1 252 */
duke@1 253 public static final int ANNOTATION = TYPEBOUNDKIND + 1;
duke@1 254
duke@1 255 /** metadata: Modifiers
duke@1 256 */
duke@1 257 public static final int MODIFIERS = ANNOTATION + 1;
duke@1 258
jjg@308 259 public static final int ANNOTATED_TYPE = MODIFIERS + 1;
jjg@308 260
duke@1 261 /** Error trees, of type Erroneous.
duke@1 262 */
jjg@308 263 public static final int ERRONEOUS = ANNOTATED_TYPE + 1;
duke@1 264
duke@1 265 /** Unary operators, of type Unary.
duke@1 266 */
duke@1 267 public static final int POS = ERRONEOUS + 1; // +
duke@1 268 public static final int NEG = POS + 1; // -
duke@1 269 public static final int NOT = NEG + 1; // !
duke@1 270 public static final int COMPL = NOT + 1; // ~
duke@1 271 public static final int PREINC = COMPL + 1; // ++ _
duke@1 272 public static final int PREDEC = PREINC + 1; // -- _
duke@1 273 public static final int POSTINC = PREDEC + 1; // _ ++
duke@1 274 public static final int POSTDEC = POSTINC + 1; // _ --
duke@1 275
duke@1 276 /** unary operator for null reference checks, only used internally.
duke@1 277 */
duke@1 278 public static final int NULLCHK = POSTDEC + 1;
duke@1 279
duke@1 280 /** Binary operators, of type Binary.
duke@1 281 */
duke@1 282 public static final int OR = NULLCHK + 1; // ||
duke@1 283 public static final int AND = OR + 1; // &&
duke@1 284 public static final int BITOR = AND + 1; // |
duke@1 285 public static final int BITXOR = BITOR + 1; // ^
duke@1 286 public static final int BITAND = BITXOR + 1; // &
duke@1 287 public static final int EQ = BITAND + 1; // ==
duke@1 288 public static final int NE = EQ + 1; // !=
duke@1 289 public static final int LT = NE + 1; // <
duke@1 290 public static final int GT = LT + 1; // >
duke@1 291 public static final int LE = GT + 1; // <=
duke@1 292 public static final int GE = LE + 1; // >=
duke@1 293 public static final int SL = GE + 1; // <<
duke@1 294 public static final int SR = SL + 1; // >>
duke@1 295 public static final int USR = SR + 1; // >>>
duke@1 296 public static final int PLUS = USR + 1; // +
duke@1 297 public static final int MINUS = PLUS + 1; // -
duke@1 298 public static final int MUL = MINUS + 1; // *
duke@1 299 public static final int DIV = MUL + 1; // /
duke@1 300 public static final int MOD = DIV + 1; // %
duke@1 301
duke@1 302 /** Assignment operators, of type Assignop.
duke@1 303 */
duke@1 304 public static final int BITOR_ASG = MOD + 1; // |=
duke@1 305 public static final int BITXOR_ASG = BITOR_ASG + 1; // ^=
duke@1 306 public static final int BITAND_ASG = BITXOR_ASG + 1; // &=
duke@1 307
duke@1 308 public static final int SL_ASG = SL + BITOR_ASG - BITOR; // <<=
duke@1 309 public static final int SR_ASG = SL_ASG + 1; // >>=
duke@1 310 public static final int USR_ASG = SR_ASG + 1; // >>>=
duke@1 311 public static final int PLUS_ASG = USR_ASG + 1; // +=
duke@1 312 public static final int MINUS_ASG = PLUS_ASG + 1; // -=
duke@1 313 public static final int MUL_ASG = MINUS_ASG + 1; // *=
duke@1 314 public static final int DIV_ASG = MUL_ASG + 1; // /=
duke@1 315 public static final int MOD_ASG = DIV_ASG + 1; // %=
duke@1 316
duke@1 317 /** A synthetic let expression, of type LetExpr.
duke@1 318 */
duke@1 319 public static final int LETEXPR = MOD_ASG + 1; // ala scheme
duke@1 320
duke@1 321
duke@1 322 /** The offset between assignment operators and normal operators.
duke@1 323 */
duke@1 324 public static final int ASGOffset = BITOR_ASG - BITOR;
duke@1 325
duke@1 326 /* The (encoded) position in the source file. @see util.Position.
duke@1 327 */
duke@1 328 public int pos;
duke@1 329
duke@1 330 /* The type of this node.
duke@1 331 */
duke@1 332 public Type type;
duke@1 333
duke@1 334 /* The tag of this node -- one of the constants declared above.
duke@1 335 */
duke@1 336 public abstract int getTag();
duke@1 337
duke@1 338 /** Convert a tree to a pretty-printed string. */
duke@1 339 public String toString() {
duke@1 340 StringWriter s = new StringWriter();
duke@1 341 try {
duke@1 342 new Pretty(s, false).printExpr(this);
duke@1 343 }
duke@1 344 catch (IOException e) {
duke@1 345 // should never happen, because StringWriter is defined
duke@1 346 // never to throw any IOExceptions
duke@1 347 throw new AssertionError(e);
duke@1 348 }
duke@1 349 return s.toString();
duke@1 350 }
duke@1 351
duke@1 352 /** Set position field and return this tree.
duke@1 353 */
duke@1 354 public JCTree setPos(int pos) {
duke@1 355 this.pos = pos;
duke@1 356 return this;
duke@1 357 }
duke@1 358
duke@1 359 /** Set type field and return this tree.
duke@1 360 */
duke@1 361 public JCTree setType(Type type) {
duke@1 362 this.type = type;
duke@1 363 return this;
duke@1 364 }
duke@1 365
duke@1 366 /** Visit this tree with a given visitor.
duke@1 367 */
duke@1 368 public abstract void accept(Visitor v);
duke@1 369
duke@1 370 public abstract <R,D> R accept(TreeVisitor<R,D> v, D d);
duke@1 371
duke@1 372 /** Return a shallow copy of this tree.
duke@1 373 */
duke@1 374 public Object clone() {
duke@1 375 try {
duke@1 376 return super.clone();
duke@1 377 } catch(CloneNotSupportedException e) {
duke@1 378 throw new RuntimeException(e);
duke@1 379 }
duke@1 380 }
duke@1 381
duke@1 382 /** Get a default position for this tree node.
duke@1 383 */
duke@1 384 public DiagnosticPosition pos() {
duke@1 385 return this;
duke@1 386 }
duke@1 387
duke@1 388 // for default DiagnosticPosition
duke@1 389 public JCTree getTree() {
duke@1 390 return this;
duke@1 391 }
duke@1 392
duke@1 393 // for default DiagnosticPosition
duke@1 394 public int getStartPosition() {
duke@1 395 return TreeInfo.getStartPos(this);
duke@1 396 }
duke@1 397
duke@1 398 // for default DiagnosticPosition
duke@1 399 public int getPreferredPosition() {
duke@1 400 return pos;
duke@1 401 }
duke@1 402
duke@1 403 // for default DiagnosticPosition
duke@1 404 public int getEndPosition(Map<JCTree, Integer> endPosTable) {
duke@1 405 return TreeInfo.getEndPos(this, endPosTable);
duke@1 406 }
duke@1 407
duke@1 408 /**
duke@1 409 * Everything in one source file is kept in a TopLevel structure.
duke@1 410 * @param pid The tree representing the package clause.
duke@1 411 * @param sourcefile The source file name.
duke@1 412 * @param defs All definitions in this file (ClassDef, Import, and Skip)
duke@1 413 * @param packge The package it belongs to.
duke@1 414 * @param namedImportScope A scope for all named imports.
duke@1 415 * @param starImportScope A scope for all import-on-demands.
duke@1 416 * @param lineMap Line starting positions, defined only
duke@1 417 * if option -g is set.
duke@1 418 * @param docComments A hashtable that stores all documentation comments
duke@1 419 * indexed by the tree nodes they refer to.
duke@1 420 * defined only if option -s is set.
duke@1 421 * @param endPositions A hashtable that stores ending positions of source
duke@1 422 * ranges indexed by the tree nodes they belong to.
duke@1 423 * Defined only if option -Xjcov is set.
duke@1 424 */
duke@1 425 public static class JCCompilationUnit extends JCTree implements CompilationUnitTree {
duke@1 426 public List<JCAnnotation> packageAnnotations;
duke@1 427 public JCExpression pid;
duke@1 428 public List<JCTree> defs;
duke@1 429 public JavaFileObject sourcefile;
duke@1 430 public PackageSymbol packge;
duke@1 431 public Scope namedImportScope;
duke@1 432 public Scope starImportScope;
duke@1 433 public long flags;
duke@1 434 public Position.LineMap lineMap = null;
duke@1 435 public Map<JCTree, String> docComments = null;
duke@1 436 public Map<JCTree, Integer> endPositions = null;
duke@1 437 protected JCCompilationUnit(List<JCAnnotation> packageAnnotations,
duke@1 438 JCExpression pid,
duke@1 439 List<JCTree> defs,
duke@1 440 JavaFileObject sourcefile,
duke@1 441 PackageSymbol packge,
duke@1 442 Scope namedImportScope,
duke@1 443 Scope starImportScope) {
duke@1 444 this.packageAnnotations = packageAnnotations;
duke@1 445 this.pid = pid;
duke@1 446 this.defs = defs;
duke@1 447 this.sourcefile = sourcefile;
duke@1 448 this.packge = packge;
duke@1 449 this.namedImportScope = namedImportScope;
duke@1 450 this.starImportScope = starImportScope;
duke@1 451 }
duke@1 452 @Override
duke@1 453 public void accept(Visitor v) { v.visitTopLevel(this); }
duke@1 454
duke@1 455 public Kind getKind() { return Kind.COMPILATION_UNIT; }
duke@1 456 public List<JCAnnotation> getPackageAnnotations() {
duke@1 457 return packageAnnotations;
duke@1 458 }
duke@1 459 public List<JCImport> getImports() {
duke@1 460 ListBuffer<JCImport> imports = new ListBuffer<JCImport>();
duke@1 461 for (JCTree tree : defs) {
duke@1 462 if (tree.getTag() == IMPORT)
duke@1 463 imports.append((JCImport)tree);
duke@1 464 else
duke@1 465 break;
duke@1 466 }
duke@1 467 return imports.toList();
duke@1 468 }
duke@1 469 public JCExpression getPackageName() { return pid; }
duke@1 470 public JavaFileObject getSourceFile() {
duke@1 471 return sourcefile;
duke@1 472 }
duke@1 473 public Position.LineMap getLineMap() {
duke@1 474 return lineMap;
duke@1 475 }
duke@1 476 public List<JCTree> getTypeDecls() {
duke@1 477 List<JCTree> typeDefs;
duke@1 478 for (typeDefs = defs; !typeDefs.isEmpty(); typeDefs = typeDefs.tail)
duke@1 479 if (typeDefs.head.getTag() != IMPORT)
duke@1 480 break;
duke@1 481 return typeDefs;
duke@1 482 }
duke@1 483 @Override
duke@1 484 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 485 return v.visitCompilationUnit(this, d);
duke@1 486 }
duke@1 487
duke@1 488 @Override
duke@1 489 public int getTag() {
duke@1 490 return TOPLEVEL;
duke@1 491 }
duke@1 492 }
duke@1 493
duke@1 494 /**
duke@1 495 * An import clause.
duke@1 496 * @param qualid The imported class(es).
duke@1 497 */
duke@1 498 public static class JCImport extends JCTree implements ImportTree {
duke@1 499 public boolean staticImport;
duke@1 500 public JCTree qualid;
duke@1 501 protected JCImport(JCTree qualid, boolean importStatic) {
duke@1 502 this.qualid = qualid;
duke@1 503 this.staticImport = importStatic;
duke@1 504 }
duke@1 505 @Override
duke@1 506 public void accept(Visitor v) { v.visitImport(this); }
duke@1 507
duke@1 508 public boolean isStatic() { return staticImport; }
duke@1 509 public JCTree getQualifiedIdentifier() { return qualid; }
duke@1 510
duke@1 511 public Kind getKind() { return Kind.IMPORT; }
duke@1 512 @Override
duke@1 513 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 514 return v.visitImport(this, d);
duke@1 515 }
duke@1 516
duke@1 517 @Override
duke@1 518 public int getTag() {
duke@1 519 return IMPORT;
duke@1 520 }
duke@1 521 }
duke@1 522
duke@1 523 public static abstract class JCStatement extends JCTree implements StatementTree {
duke@1 524 @Override
duke@1 525 public JCStatement setType(Type type) {
duke@1 526 super.setType(type);
duke@1 527 return this;
duke@1 528 }
duke@1 529 @Override
duke@1 530 public JCStatement setPos(int pos) {
duke@1 531 super.setPos(pos);
duke@1 532 return this;
duke@1 533 }
duke@1 534 }
duke@1 535
duke@1 536 public static abstract class JCExpression extends JCTree implements ExpressionTree {
duke@1 537 @Override
duke@1 538 public JCExpression setType(Type type) {
duke@1 539 super.setType(type);
duke@1 540 return this;
duke@1 541 }
duke@1 542 @Override
duke@1 543 public JCExpression setPos(int pos) {
duke@1 544 super.setPos(pos);
duke@1 545 return this;
duke@1 546 }
duke@1 547 }
duke@1 548
duke@1 549 /**
duke@1 550 * A class definition.
duke@1 551 * @param modifiers the modifiers
duke@1 552 * @param name the name of the class
duke@1 553 * @param typarams formal class parameters
duke@1 554 * @param extending the classes this class extends
duke@1 555 * @param implementing the interfaces implemented by this class
duke@1 556 * @param defs all variables and methods defined in this class
duke@1 557 * @param sym the symbol
duke@1 558 */
duke@1 559 public static class JCClassDecl extends JCStatement implements ClassTree {
duke@1 560 public JCModifiers mods;
duke@1 561 public Name name;
duke@1 562 public List<JCTypeParameter> typarams;
duke@1 563 public JCTree extending;
duke@1 564 public List<JCExpression> implementing;
duke@1 565 public List<JCTree> defs;
duke@1 566 public ClassSymbol sym;
duke@1 567 protected JCClassDecl(JCModifiers mods,
duke@1 568 Name name,
duke@1 569 List<JCTypeParameter> typarams,
duke@1 570 JCTree extending,
duke@1 571 List<JCExpression> implementing,
duke@1 572 List<JCTree> defs,
duke@1 573 ClassSymbol sym)
duke@1 574 {
duke@1 575 this.mods = mods;
duke@1 576 this.name = name;
duke@1 577 this.typarams = typarams;
duke@1 578 this.extending = extending;
duke@1 579 this.implementing = implementing;
duke@1 580 this.defs = defs;
duke@1 581 this.sym = sym;
duke@1 582 }
duke@1 583 @Override
duke@1 584 public void accept(Visitor v) { v.visitClassDef(this); }
duke@1 585
duke@1 586 public Kind getKind() { return Kind.CLASS; }
duke@1 587 public JCModifiers getModifiers() { return mods; }
duke@1 588 public Name getSimpleName() { return name; }
duke@1 589 public List<JCTypeParameter> getTypeParameters() {
duke@1 590 return typarams;
duke@1 591 }
duke@1 592 public JCTree getExtendsClause() { return extending; }
duke@1 593 public List<JCExpression> getImplementsClause() {
duke@1 594 return implementing;
duke@1 595 }
duke@1 596 public List<JCTree> getMembers() {
duke@1 597 return defs;
duke@1 598 }
duke@1 599 @Override
duke@1 600 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 601 return v.visitClass(this, d);
duke@1 602 }
duke@1 603
duke@1 604 @Override
duke@1 605 public int getTag() {
duke@1 606 return CLASSDEF;
duke@1 607 }
duke@1 608 }
duke@1 609
duke@1 610 /**
duke@1 611 * A method definition.
duke@1 612 * @param modifiers method modifiers
duke@1 613 * @param name method name
duke@1 614 * @param restype type of method return value
duke@1 615 * @param typarams type parameters
duke@1 616 * @param params value parameters
duke@1 617 * @param thrown exceptions thrown by this method
duke@1 618 * @param stats statements in the method
duke@1 619 * @param sym method symbol
duke@1 620 */
duke@1 621 public static class JCMethodDecl extends JCTree implements MethodTree {
duke@1 622 public JCModifiers mods;
duke@1 623 public Name name;
duke@1 624 public JCExpression restype;
duke@1 625 public List<JCTypeParameter> typarams;
duke@1 626 public List<JCVariableDecl> params;
jjg@308 627 public List<JCTypeAnnotation> receiverAnnotations;
duke@1 628 public List<JCExpression> thrown;
duke@1 629 public JCBlock body;
duke@1 630 public JCExpression defaultValue; // for annotation types
duke@1 631 public MethodSymbol sym;
duke@1 632 protected JCMethodDecl(JCModifiers mods,
duke@1 633 Name name,
duke@1 634 JCExpression restype,
duke@1 635 List<JCTypeParameter> typarams,
duke@1 636 List<JCVariableDecl> params,
jjg@308 637 List<JCTypeAnnotation> receiver,
duke@1 638 List<JCExpression> thrown,
duke@1 639 JCBlock body,
duke@1 640 JCExpression defaultValue,
duke@1 641 MethodSymbol sym)
duke@1 642 {
duke@1 643 this.mods = mods;
duke@1 644 this.name = name;
duke@1 645 this.restype = restype;
duke@1 646 this.typarams = typarams;
duke@1 647 this.params = params;
jjg@308 648 this.receiverAnnotations = (receiver != null ? receiver : List.<JCTypeAnnotation>nil());
duke@1 649 this.thrown = thrown;
duke@1 650 this.body = body;
duke@1 651 this.defaultValue = defaultValue;
duke@1 652 this.sym = sym;
duke@1 653 }
duke@1 654 @Override
duke@1 655 public void accept(Visitor v) { v.visitMethodDef(this); }
duke@1 656
duke@1 657 public Kind getKind() { return Kind.METHOD; }
duke@1 658 public JCModifiers getModifiers() { return mods; }
duke@1 659 public Name getName() { return name; }
duke@1 660 public JCTree getReturnType() { return restype; }
duke@1 661 public List<JCTypeParameter> getTypeParameters() {
duke@1 662 return typarams;
duke@1 663 }
duke@1 664 public List<JCVariableDecl> getParameters() {
duke@1 665 return params;
duke@1 666 }
jjg@308 667 public List<JCTypeAnnotation> getReceiverAnnotations() { return receiverAnnotations; }
duke@1 668 public List<JCExpression> getThrows() {
duke@1 669 return thrown;
duke@1 670 }
duke@1 671 public JCBlock getBody() { return body; }
duke@1 672 public JCTree getDefaultValue() { // for annotation types
duke@1 673 return defaultValue;
duke@1 674 }
duke@1 675 @Override
duke@1 676 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 677 return v.visitMethod(this, d);
duke@1 678 }
duke@1 679
duke@1 680 @Override
duke@1 681 public int getTag() {
duke@1 682 return METHODDEF;
duke@1 683 }
duke@1 684 }
duke@1 685
duke@1 686 /**
duke@1 687 * A variable definition.
duke@1 688 * @param modifiers variable modifiers
duke@1 689 * @param name variable name
duke@1 690 * @param vartype type of the variable
duke@1 691 * @param init variables initial value
duke@1 692 * @param sym symbol
duke@1 693 */
duke@1 694 public static class JCVariableDecl extends JCStatement implements VariableTree {
duke@1 695 public JCModifiers mods;
duke@1 696 public Name name;
duke@1 697 public JCExpression vartype;
duke@1 698 public JCExpression init;
duke@1 699 public VarSymbol sym;
duke@1 700 protected JCVariableDecl(JCModifiers mods,
duke@1 701 Name name,
duke@1 702 JCExpression vartype,
duke@1 703 JCExpression init,
duke@1 704 VarSymbol sym) {
duke@1 705 this.mods = mods;
duke@1 706 this.name = name;
duke@1 707 this.vartype = vartype;
duke@1 708 this.init = init;
duke@1 709 this.sym = sym;
duke@1 710 }
duke@1 711 @Override
duke@1 712 public void accept(Visitor v) { v.visitVarDef(this); }
duke@1 713
duke@1 714 public Kind getKind() { return Kind.VARIABLE; }
duke@1 715 public JCModifiers getModifiers() { return mods; }
duke@1 716 public Name getName() { return name; }
duke@1 717 public JCTree getType() { return vartype; }
duke@1 718 public JCExpression getInitializer() {
duke@1 719 return init;
duke@1 720 }
duke@1 721 @Override
duke@1 722 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 723 return v.visitVariable(this, d);
duke@1 724 }
duke@1 725
duke@1 726 @Override
duke@1 727 public int getTag() {
duke@1 728 return VARDEF;
duke@1 729 }
duke@1 730 }
duke@1 731
duke@1 732 /**
duke@1 733 * A no-op statement ";".
duke@1 734 */
duke@1 735 public static class JCSkip extends JCStatement implements EmptyStatementTree {
duke@1 736 protected JCSkip() {
duke@1 737 }
duke@1 738 @Override
duke@1 739 public void accept(Visitor v) { v.visitSkip(this); }
duke@1 740
duke@1 741 public Kind getKind() { return Kind.EMPTY_STATEMENT; }
duke@1 742 @Override
duke@1 743 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 744 return v.visitEmptyStatement(this, d);
duke@1 745 }
duke@1 746
duke@1 747 @Override
duke@1 748 public int getTag() {
duke@1 749 return SKIP;
duke@1 750 }
duke@1 751 }
duke@1 752
duke@1 753 /**
duke@1 754 * A statement block.
duke@1 755 * @param stats statements
duke@1 756 * @param flags flags
duke@1 757 */
duke@1 758 public static class JCBlock extends JCStatement implements BlockTree {
duke@1 759 public long flags;
duke@1 760 public List<JCStatement> stats;
duke@1 761 /** Position of closing brace, optional. */
duke@1 762 public int endpos = Position.NOPOS;
duke@1 763 protected JCBlock(long flags, List<JCStatement> stats) {
duke@1 764 this.stats = stats;
duke@1 765 this.flags = flags;
duke@1 766 }
duke@1 767 @Override
duke@1 768 public void accept(Visitor v) { v.visitBlock(this); }
duke@1 769
duke@1 770 public Kind getKind() { return Kind.BLOCK; }
duke@1 771 public List<JCStatement> getStatements() {
duke@1 772 return stats;
duke@1 773 }
duke@1 774 public boolean isStatic() { return (flags & Flags.STATIC) != 0; }
duke@1 775 @Override
duke@1 776 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 777 return v.visitBlock(this, d);
duke@1 778 }
duke@1 779
duke@1 780 @Override
duke@1 781 public int getTag() {
duke@1 782 return BLOCK;
duke@1 783 }
duke@1 784 }
duke@1 785
duke@1 786 /**
duke@1 787 * A do loop
duke@1 788 */
duke@1 789 public static class JCDoWhileLoop extends JCStatement implements DoWhileLoopTree {
duke@1 790 public JCStatement body;
duke@1 791 public JCExpression cond;
duke@1 792 protected JCDoWhileLoop(JCStatement body, JCExpression cond) {
duke@1 793 this.body = body;
duke@1 794 this.cond = cond;
duke@1 795 }
duke@1 796 @Override
duke@1 797 public void accept(Visitor v) { v.visitDoLoop(this); }
duke@1 798
duke@1 799 public Kind getKind() { return Kind.DO_WHILE_LOOP; }
duke@1 800 public JCExpression getCondition() { return cond; }
duke@1 801 public JCStatement getStatement() { return body; }
duke@1 802 @Override
duke@1 803 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 804 return v.visitDoWhileLoop(this, d);
duke@1 805 }
duke@1 806
duke@1 807 @Override
duke@1 808 public int getTag() {
duke@1 809 return DOLOOP;
duke@1 810 }
duke@1 811 }
duke@1 812
duke@1 813 /**
duke@1 814 * A while loop
duke@1 815 */
duke@1 816 public static class JCWhileLoop extends JCStatement implements WhileLoopTree {
duke@1 817 public JCExpression cond;
duke@1 818 public JCStatement body;
duke@1 819 protected JCWhileLoop(JCExpression cond, JCStatement body) {
duke@1 820 this.cond = cond;
duke@1 821 this.body = body;
duke@1 822 }
duke@1 823 @Override
duke@1 824 public void accept(Visitor v) { v.visitWhileLoop(this); }
duke@1 825
duke@1 826 public Kind getKind() { return Kind.WHILE_LOOP; }
duke@1 827 public JCExpression getCondition() { return cond; }
duke@1 828 public JCStatement getStatement() { return body; }
duke@1 829 @Override
duke@1 830 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 831 return v.visitWhileLoop(this, d);
duke@1 832 }
duke@1 833
duke@1 834 @Override
duke@1 835 public int getTag() {
duke@1 836 return WHILELOOP;
duke@1 837 }
duke@1 838 }
duke@1 839
duke@1 840 /**
duke@1 841 * A for loop.
duke@1 842 */
duke@1 843 public static class JCForLoop extends JCStatement implements ForLoopTree {
duke@1 844 public List<JCStatement> init;
duke@1 845 public JCExpression cond;
duke@1 846 public List<JCExpressionStatement> step;
duke@1 847 public JCStatement body;
duke@1 848 protected JCForLoop(List<JCStatement> init,
duke@1 849 JCExpression cond,
duke@1 850 List<JCExpressionStatement> update,
duke@1 851 JCStatement body)
duke@1 852 {
duke@1 853 this.init = init;
duke@1 854 this.cond = cond;
duke@1 855 this.step = update;
duke@1 856 this.body = body;
duke@1 857 }
duke@1 858 @Override
duke@1 859 public void accept(Visitor v) { v.visitForLoop(this); }
duke@1 860
duke@1 861 public Kind getKind() { return Kind.FOR_LOOP; }
duke@1 862 public JCExpression getCondition() { return cond; }
duke@1 863 public JCStatement getStatement() { return body; }
duke@1 864 public List<JCStatement> getInitializer() {
duke@1 865 return init;
duke@1 866 }
duke@1 867 public List<JCExpressionStatement> getUpdate() {
duke@1 868 return step;
duke@1 869 }
duke@1 870 @Override
duke@1 871 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 872 return v.visitForLoop(this, d);
duke@1 873 }
duke@1 874
duke@1 875 @Override
duke@1 876 public int getTag() {
duke@1 877 return FORLOOP;
duke@1 878 }
duke@1 879 }
duke@1 880
duke@1 881 /**
duke@1 882 * The enhanced for loop.
duke@1 883 */
duke@1 884 public static class JCEnhancedForLoop extends JCStatement implements EnhancedForLoopTree {
duke@1 885 public JCVariableDecl var;
duke@1 886 public JCExpression expr;
duke@1 887 public JCStatement body;
duke@1 888 protected JCEnhancedForLoop(JCVariableDecl var, JCExpression expr, JCStatement body) {
duke@1 889 this.var = var;
duke@1 890 this.expr = expr;
duke@1 891 this.body = body;
duke@1 892 }
duke@1 893 @Override
duke@1 894 public void accept(Visitor v) { v.visitForeachLoop(this); }
duke@1 895
duke@1 896 public Kind getKind() { return Kind.ENHANCED_FOR_LOOP; }
duke@1 897 public JCVariableDecl getVariable() { return var; }
duke@1 898 public JCExpression getExpression() { return expr; }
duke@1 899 public JCStatement getStatement() { return body; }
duke@1 900 @Override
duke@1 901 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 902 return v.visitEnhancedForLoop(this, d);
duke@1 903 }
duke@1 904 @Override
duke@1 905 public int getTag() {
duke@1 906 return FOREACHLOOP;
duke@1 907 }
duke@1 908 }
duke@1 909
duke@1 910 /**
duke@1 911 * A labelled expression or statement.
duke@1 912 */
duke@1 913 public static class JCLabeledStatement extends JCStatement implements LabeledStatementTree {
duke@1 914 public Name label;
duke@1 915 public JCStatement body;
duke@1 916 protected JCLabeledStatement(Name label, JCStatement body) {
duke@1 917 this.label = label;
duke@1 918 this.body = body;
duke@1 919 }
duke@1 920 @Override
duke@1 921 public void accept(Visitor v) { v.visitLabelled(this); }
duke@1 922 public Kind getKind() { return Kind.LABELED_STATEMENT; }
duke@1 923 public Name getLabel() { return label; }
duke@1 924 public JCStatement getStatement() { return body; }
duke@1 925 @Override
duke@1 926 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 927 return v.visitLabeledStatement(this, d);
duke@1 928 }
duke@1 929 @Override
duke@1 930 public int getTag() {
duke@1 931 return LABELLED;
duke@1 932 }
duke@1 933 }
duke@1 934
duke@1 935 /**
duke@1 936 * A "switch ( ) { }" construction.
duke@1 937 */
duke@1 938 public static class JCSwitch extends JCStatement implements SwitchTree {
duke@1 939 public JCExpression selector;
duke@1 940 public List<JCCase> cases;
duke@1 941 protected JCSwitch(JCExpression selector, List<JCCase> cases) {
duke@1 942 this.selector = selector;
duke@1 943 this.cases = cases;
duke@1 944 }
duke@1 945 @Override
duke@1 946 public void accept(Visitor v) { v.visitSwitch(this); }
duke@1 947
duke@1 948 public Kind getKind() { return Kind.SWITCH; }
duke@1 949 public JCExpression getExpression() { return selector; }
duke@1 950 public List<JCCase> getCases() { return cases; }
duke@1 951 @Override
duke@1 952 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 953 return v.visitSwitch(this, d);
duke@1 954 }
duke@1 955 @Override
duke@1 956 public int getTag() {
duke@1 957 return SWITCH;
duke@1 958 }
duke@1 959 }
duke@1 960
duke@1 961 /**
duke@1 962 * A "case :" of a switch.
duke@1 963 */
duke@1 964 public static class JCCase extends JCStatement implements CaseTree {
duke@1 965 public JCExpression pat;
duke@1 966 public List<JCStatement> stats;
duke@1 967 protected JCCase(JCExpression pat, List<JCStatement> stats) {
duke@1 968 this.pat = pat;
duke@1 969 this.stats = stats;
duke@1 970 }
duke@1 971 @Override
duke@1 972 public void accept(Visitor v) { v.visitCase(this); }
duke@1 973
duke@1 974 public Kind getKind() { return Kind.CASE; }
duke@1 975 public JCExpression getExpression() { return pat; }
duke@1 976 public List<JCStatement> getStatements() { return stats; }
duke@1 977 @Override
duke@1 978 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 979 return v.visitCase(this, d);
duke@1 980 }
duke@1 981 @Override
duke@1 982 public int getTag() {
duke@1 983 return CASE;
duke@1 984 }
duke@1 985 }
duke@1 986
duke@1 987 /**
duke@1 988 * A synchronized block.
duke@1 989 */
duke@1 990 public static class JCSynchronized extends JCStatement implements SynchronizedTree {
duke@1 991 public JCExpression lock;
duke@1 992 public JCBlock body;
duke@1 993 protected JCSynchronized(JCExpression lock, JCBlock body) {
duke@1 994 this.lock = lock;
duke@1 995 this.body = body;
duke@1 996 }
duke@1 997 @Override
duke@1 998 public void accept(Visitor v) { v.visitSynchronized(this); }
duke@1 999
duke@1 1000 public Kind getKind() { return Kind.SYNCHRONIZED; }
duke@1 1001 public JCExpression getExpression() { return lock; }
duke@1 1002 public JCBlock getBlock() { return body; }
duke@1 1003 @Override
duke@1 1004 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1005 return v.visitSynchronized(this, d);
duke@1 1006 }
duke@1 1007 @Override
duke@1 1008 public int getTag() {
duke@1 1009 return SYNCHRONIZED;
duke@1 1010 }
duke@1 1011 }
duke@1 1012
duke@1 1013 /**
duke@1 1014 * A "try { } catch ( ) { } finally { }" block.
duke@1 1015 */
duke@1 1016 public static class JCTry extends JCStatement implements TryTree {
duke@1 1017 public JCBlock body;
duke@1 1018 public List<JCCatch> catchers;
duke@1 1019 public JCBlock finalizer;
duke@1 1020 protected JCTry(JCBlock body, List<JCCatch> catchers, JCBlock finalizer) {
duke@1 1021 this.body = body;
duke@1 1022 this.catchers = catchers;
duke@1 1023 this.finalizer = finalizer;
duke@1 1024 }
duke@1 1025 @Override
duke@1 1026 public void accept(Visitor v) { v.visitTry(this); }
duke@1 1027
duke@1 1028 public Kind getKind() { return Kind.TRY; }
duke@1 1029 public JCBlock getBlock() { return body; }
duke@1 1030 public List<JCCatch> getCatches() {
duke@1 1031 return catchers;
duke@1 1032 }
duke@1 1033 public JCBlock getFinallyBlock() { return finalizer; }
duke@1 1034 @Override
duke@1 1035 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1036 return v.visitTry(this, d);
duke@1 1037 }
duke@1 1038 @Override
duke@1 1039 public int getTag() {
duke@1 1040 return TRY;
duke@1 1041 }
duke@1 1042 }
duke@1 1043
duke@1 1044 /**
duke@1 1045 * A catch block.
duke@1 1046 */
duke@1 1047 public static class JCCatch extends JCTree implements CatchTree {
duke@1 1048 public JCVariableDecl param;
duke@1 1049 public JCBlock body;
duke@1 1050 protected JCCatch(JCVariableDecl param, JCBlock body) {
duke@1 1051 this.param = param;
duke@1 1052 this.body = body;
duke@1 1053 }
duke@1 1054 @Override
duke@1 1055 public void accept(Visitor v) { v.visitCatch(this); }
duke@1 1056
duke@1 1057 public Kind getKind() { return Kind.CATCH; }
duke@1 1058 public JCVariableDecl getParameter() { return param; }
duke@1 1059 public JCBlock getBlock() { return body; }
duke@1 1060 @Override
duke@1 1061 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1062 return v.visitCatch(this, d);
duke@1 1063 }
duke@1 1064 @Override
duke@1 1065 public int getTag() {
duke@1 1066 return CATCH;
duke@1 1067 }
duke@1 1068 }
duke@1 1069
duke@1 1070 /**
duke@1 1071 * A ( ) ? ( ) : ( ) conditional expression
duke@1 1072 */
duke@1 1073 public static class JCConditional extends JCExpression implements ConditionalExpressionTree {
duke@1 1074 public JCExpression cond;
duke@1 1075 public JCExpression truepart;
duke@1 1076 public JCExpression falsepart;
duke@1 1077 protected JCConditional(JCExpression cond,
duke@1 1078 JCExpression truepart,
duke@1 1079 JCExpression falsepart)
duke@1 1080 {
duke@1 1081 this.cond = cond;
duke@1 1082 this.truepart = truepart;
duke@1 1083 this.falsepart = falsepart;
duke@1 1084 }
duke@1 1085 @Override
duke@1 1086 public void accept(Visitor v) { v.visitConditional(this); }
duke@1 1087
duke@1 1088 public Kind getKind() { return Kind.CONDITIONAL_EXPRESSION; }
duke@1 1089 public JCExpression getCondition() { return cond; }
duke@1 1090 public JCExpression getTrueExpression() { return truepart; }
duke@1 1091 public JCExpression getFalseExpression() { return falsepart; }
duke@1 1092 @Override
duke@1 1093 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1094 return v.visitConditionalExpression(this, d);
duke@1 1095 }
duke@1 1096 @Override
duke@1 1097 public int getTag() {
duke@1 1098 return CONDEXPR;
duke@1 1099 }
duke@1 1100 }
duke@1 1101
duke@1 1102 /**
duke@1 1103 * An "if ( ) { } else { }" block
duke@1 1104 */
duke@1 1105 public static class JCIf extends JCStatement implements IfTree {
duke@1 1106 public JCExpression cond;
duke@1 1107 public JCStatement thenpart;
duke@1 1108 public JCStatement elsepart;
duke@1 1109 protected JCIf(JCExpression cond,
duke@1 1110 JCStatement thenpart,
duke@1 1111 JCStatement elsepart)
duke@1 1112 {
duke@1 1113 this.cond = cond;
duke@1 1114 this.thenpart = thenpart;
duke@1 1115 this.elsepart = elsepart;
duke@1 1116 }
duke@1 1117 @Override
duke@1 1118 public void accept(Visitor v) { v.visitIf(this); }
duke@1 1119
duke@1 1120 public Kind getKind() { return Kind.IF; }
duke@1 1121 public JCExpression getCondition() { return cond; }
duke@1 1122 public JCStatement getThenStatement() { return thenpart; }
duke@1 1123 public JCStatement getElseStatement() { return elsepart; }
duke@1 1124 @Override
duke@1 1125 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1126 return v.visitIf(this, d);
duke@1 1127 }
duke@1 1128 @Override
duke@1 1129 public int getTag() {
duke@1 1130 return IF;
duke@1 1131 }
duke@1 1132 }
duke@1 1133
duke@1 1134 /**
duke@1 1135 * an expression statement
duke@1 1136 * @param expr expression structure
duke@1 1137 */
duke@1 1138 public static class JCExpressionStatement extends JCStatement implements ExpressionStatementTree {
duke@1 1139 public JCExpression expr;
duke@1 1140 protected JCExpressionStatement(JCExpression expr)
duke@1 1141 {
duke@1 1142 this.expr = expr;
duke@1 1143 }
duke@1 1144 @Override
duke@1 1145 public void accept(Visitor v) { v.visitExec(this); }
duke@1 1146
duke@1 1147 public Kind getKind() { return Kind.EXPRESSION_STATEMENT; }
duke@1 1148 public JCExpression getExpression() { return expr; }
duke@1 1149 @Override
duke@1 1150 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1151 return v.visitExpressionStatement(this, d);
duke@1 1152 }
duke@1 1153 @Override
duke@1 1154 public int getTag() {
duke@1 1155 return EXEC;
duke@1 1156 }
duke@1 1157 }
duke@1 1158
duke@1 1159 /**
duke@1 1160 * A break from a loop or switch.
duke@1 1161 */
duke@1 1162 public static class JCBreak extends JCStatement implements BreakTree {
duke@1 1163 public Name label;
duke@1 1164 public JCTree target;
duke@1 1165 protected JCBreak(Name label, JCTree target) {
duke@1 1166 this.label = label;
duke@1 1167 this.target = target;
duke@1 1168 }
duke@1 1169 @Override
duke@1 1170 public void accept(Visitor v) { v.visitBreak(this); }
duke@1 1171
duke@1 1172 public Kind getKind() { return Kind.BREAK; }
duke@1 1173 public Name getLabel() { return label; }
duke@1 1174 @Override
duke@1 1175 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1176 return v.visitBreak(this, d);
duke@1 1177 }
duke@1 1178 @Override
duke@1 1179 public int getTag() {
duke@1 1180 return BREAK;
duke@1 1181 }
duke@1 1182 }
duke@1 1183
duke@1 1184 /**
duke@1 1185 * A continue of a loop.
duke@1 1186 */
duke@1 1187 public static class JCContinue extends JCStatement implements ContinueTree {
duke@1 1188 public Name label;
duke@1 1189 public JCTree target;
duke@1 1190 protected JCContinue(Name label, JCTree target) {
duke@1 1191 this.label = label;
duke@1 1192 this.target = target;
duke@1 1193 }
duke@1 1194 @Override
duke@1 1195 public void accept(Visitor v) { v.visitContinue(this); }
duke@1 1196
duke@1 1197 public Kind getKind() { return Kind.CONTINUE; }
duke@1 1198 public Name getLabel() { return label; }
duke@1 1199 @Override
duke@1 1200 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1201 return v.visitContinue(this, d);
duke@1 1202 }
duke@1 1203 @Override
duke@1 1204 public int getTag() {
duke@1 1205 return CONTINUE;
duke@1 1206 }
duke@1 1207 }
duke@1 1208
duke@1 1209 /**
duke@1 1210 * A return statement.
duke@1 1211 */
duke@1 1212 public static class JCReturn extends JCStatement implements ReturnTree {
duke@1 1213 public JCExpression expr;
duke@1 1214 protected JCReturn(JCExpression expr) {
duke@1 1215 this.expr = expr;
duke@1 1216 }
duke@1 1217 @Override
duke@1 1218 public void accept(Visitor v) { v.visitReturn(this); }
duke@1 1219
duke@1 1220 public Kind getKind() { return Kind.RETURN; }
duke@1 1221 public JCExpression getExpression() { return expr; }
duke@1 1222 @Override
duke@1 1223 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1224 return v.visitReturn(this, d);
duke@1 1225 }
duke@1 1226 @Override
duke@1 1227 public int getTag() {
duke@1 1228 return RETURN;
duke@1 1229 }
duke@1 1230 }
duke@1 1231
duke@1 1232 /**
duke@1 1233 * A throw statement.
duke@1 1234 */
duke@1 1235 public static class JCThrow extends JCStatement implements ThrowTree {
duke@1 1236 public JCExpression expr;
duke@1 1237 protected JCThrow(JCTree expr) {
duke@1 1238 this.expr = (JCExpression)expr;
duke@1 1239 }
duke@1 1240 @Override
duke@1 1241 public void accept(Visitor v) { v.visitThrow(this); }
duke@1 1242
duke@1 1243 public Kind getKind() { return Kind.THROW; }
duke@1 1244 public JCExpression getExpression() { return expr; }
duke@1 1245 @Override
duke@1 1246 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1247 return v.visitThrow(this, d);
duke@1 1248 }
duke@1 1249 @Override
duke@1 1250 public int getTag() {
duke@1 1251 return THROW;
duke@1 1252 }
duke@1 1253 }
duke@1 1254
duke@1 1255 /**
duke@1 1256 * An assert statement.
duke@1 1257 */
duke@1 1258 public static class JCAssert extends JCStatement implements AssertTree {
duke@1 1259 public JCExpression cond;
duke@1 1260 public JCExpression detail;
duke@1 1261 protected JCAssert(JCExpression cond, JCExpression detail) {
duke@1 1262 this.cond = cond;
duke@1 1263 this.detail = detail;
duke@1 1264 }
duke@1 1265 @Override
duke@1 1266 public void accept(Visitor v) { v.visitAssert(this); }
duke@1 1267
duke@1 1268 public Kind getKind() { return Kind.ASSERT; }
duke@1 1269 public JCExpression getCondition() { return cond; }
duke@1 1270 public JCExpression getDetail() { return detail; }
duke@1 1271 @Override
duke@1 1272 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1273 return v.visitAssert(this, d);
duke@1 1274 }
duke@1 1275 @Override
duke@1 1276 public int getTag() {
duke@1 1277 return ASSERT;
duke@1 1278 }
duke@1 1279 }
duke@1 1280
duke@1 1281 /**
duke@1 1282 * A method invocation
duke@1 1283 */
duke@1 1284 public static class JCMethodInvocation extends JCExpression implements MethodInvocationTree {
duke@1 1285 public List<JCExpression> typeargs;
duke@1 1286 public JCExpression meth;
duke@1 1287 public List<JCExpression> args;
duke@1 1288 public Type varargsElement;
duke@1 1289 protected JCMethodInvocation(List<JCExpression> typeargs,
duke@1 1290 JCExpression meth,
duke@1 1291 List<JCExpression> args)
duke@1 1292 {
duke@1 1293 this.typeargs = (typeargs == null) ? List.<JCExpression>nil()
duke@1 1294 : typeargs;
duke@1 1295 this.meth = meth;
duke@1 1296 this.args = args;
duke@1 1297 }
duke@1 1298 @Override
duke@1 1299 public void accept(Visitor v) { v.visitApply(this); }
duke@1 1300
duke@1 1301 public Kind getKind() { return Kind.METHOD_INVOCATION; }
duke@1 1302 public List<JCExpression> getTypeArguments() {
duke@1 1303 return typeargs;
duke@1 1304 }
duke@1 1305 public JCExpression getMethodSelect() { return meth; }
duke@1 1306 public List<JCExpression> getArguments() {
duke@1 1307 return args;
duke@1 1308 }
duke@1 1309 @Override
duke@1 1310 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1311 return v.visitMethodInvocation(this, d);
duke@1 1312 }
duke@1 1313 @Override
duke@1 1314 public JCMethodInvocation setType(Type type) {
duke@1 1315 super.setType(type);
duke@1 1316 return this;
duke@1 1317 }
duke@1 1318 @Override
duke@1 1319 public int getTag() {
duke@1 1320 return(APPLY);
duke@1 1321 }
duke@1 1322 }
duke@1 1323
duke@1 1324 /**
duke@1 1325 * A new(...) operation.
duke@1 1326 */
duke@1 1327 public static class JCNewClass extends JCExpression implements NewClassTree {
duke@1 1328 public JCExpression encl;
duke@1 1329 public List<JCExpression> typeargs;
duke@1 1330 public JCExpression clazz;
duke@1 1331 public List<JCExpression> args;
duke@1 1332 public JCClassDecl def;
duke@1 1333 public Symbol constructor;
duke@1 1334 public Type varargsElement;
mcimadamore@186 1335 public Type constructorType;
duke@1 1336 protected JCNewClass(JCExpression encl,
duke@1 1337 List<JCExpression> typeargs,
duke@1 1338 JCExpression clazz,
duke@1 1339 List<JCExpression> args,
duke@1 1340 JCClassDecl def)
duke@1 1341 {
duke@1 1342 this.encl = encl;
duke@1 1343 this.typeargs = (typeargs == null) ? List.<JCExpression>nil()
duke@1 1344 : typeargs;
duke@1 1345 this.clazz = clazz;
duke@1 1346 this.args = args;
duke@1 1347 this.def = def;
duke@1 1348 }
duke@1 1349 @Override
duke@1 1350 public void accept(Visitor v) { v.visitNewClass(this); }
duke@1 1351
duke@1 1352 public Kind getKind() { return Kind.NEW_CLASS; }
duke@1 1353 public JCExpression getEnclosingExpression() { // expr.new C< ... > ( ... )
duke@1 1354 return encl;
duke@1 1355 }
duke@1 1356 public List<JCExpression> getTypeArguments() {
duke@1 1357 return typeargs;
duke@1 1358 }
duke@1 1359 public JCExpression getIdentifier() { return clazz; }
duke@1 1360 public List<JCExpression> getArguments() {
duke@1 1361 return args;
duke@1 1362 }
duke@1 1363 public JCClassDecl getClassBody() { return def; }
duke@1 1364 @Override
duke@1 1365 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1366 return v.visitNewClass(this, d);
duke@1 1367 }
duke@1 1368 @Override
duke@1 1369 public int getTag() {
duke@1 1370 return NEWCLASS;
duke@1 1371 }
duke@1 1372 }
duke@1 1373
duke@1 1374 /**
duke@1 1375 * A new[...] operation.
duke@1 1376 */
duke@1 1377 public static class JCNewArray extends JCExpression implements NewArrayTree {
duke@1 1378 public JCExpression elemtype;
duke@1 1379 public List<JCExpression> dims;
jjg@308 1380 public List<JCTypeAnnotation> annotations;
jjg@308 1381 public List<List<JCTypeAnnotation>> dimAnnotations;
duke@1 1382 public List<JCExpression> elems;
duke@1 1383 protected JCNewArray(JCExpression elemtype,
duke@1 1384 List<JCExpression> dims,
duke@1 1385 List<JCExpression> elems)
duke@1 1386 {
duke@1 1387 this.elemtype = elemtype;
duke@1 1388 this.dims = dims;
jjg@308 1389 this.annotations = List.nil();
jjg@308 1390 this.dimAnnotations = List.nil();
duke@1 1391 this.elems = elems;
duke@1 1392 }
duke@1 1393 @Override
duke@1 1394 public void accept(Visitor v) { v.visitNewArray(this); }
duke@1 1395
duke@1 1396 public Kind getKind() { return Kind.NEW_ARRAY; }
duke@1 1397 public JCExpression getType() { return elemtype; }
duke@1 1398 public List<JCExpression> getDimensions() {
duke@1 1399 return dims;
duke@1 1400 }
duke@1 1401 public List<JCExpression> getInitializers() {
duke@1 1402 return elems;
duke@1 1403 }
duke@1 1404 @Override
duke@1 1405 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1406 return v.visitNewArray(this, d);
duke@1 1407 }
duke@1 1408 @Override
duke@1 1409 public int getTag() {
duke@1 1410 return NEWARRAY;
duke@1 1411 }
duke@1 1412 }
duke@1 1413
duke@1 1414 /**
duke@1 1415 * A parenthesized subexpression ( ... )
duke@1 1416 */
duke@1 1417 public static class JCParens extends JCExpression implements ParenthesizedTree {
duke@1 1418 public JCExpression expr;
duke@1 1419 protected JCParens(JCExpression expr) {
duke@1 1420 this.expr = expr;
duke@1 1421 }
duke@1 1422 @Override
duke@1 1423 public void accept(Visitor v) { v.visitParens(this); }
duke@1 1424
duke@1 1425 public Kind getKind() { return Kind.PARENTHESIZED; }
duke@1 1426 public JCExpression getExpression() { return expr; }
duke@1 1427 @Override
duke@1 1428 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1429 return v.visitParenthesized(this, d);
duke@1 1430 }
duke@1 1431 @Override
duke@1 1432 public int getTag() {
duke@1 1433 return PARENS;
duke@1 1434 }
duke@1 1435 }
duke@1 1436
duke@1 1437 /**
duke@1 1438 * A assignment with "=".
duke@1 1439 */
duke@1 1440 public static class JCAssign extends JCExpression implements AssignmentTree {
duke@1 1441 public JCExpression lhs;
duke@1 1442 public JCExpression rhs;
duke@1 1443 protected JCAssign(JCExpression lhs, JCExpression rhs) {
duke@1 1444 this.lhs = lhs;
duke@1 1445 this.rhs = rhs;
duke@1 1446 }
duke@1 1447 @Override
duke@1 1448 public void accept(Visitor v) { v.visitAssign(this); }
duke@1 1449
duke@1 1450 public Kind getKind() { return Kind.ASSIGNMENT; }
duke@1 1451 public JCExpression getVariable() { return lhs; }
duke@1 1452 public JCExpression getExpression() { return rhs; }
duke@1 1453 @Override
duke@1 1454 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1455 return v.visitAssignment(this, d);
duke@1 1456 }
duke@1 1457 @Override
duke@1 1458 public int getTag() {
duke@1 1459 return ASSIGN;
duke@1 1460 }
duke@1 1461 }
duke@1 1462
duke@1 1463 /**
duke@1 1464 * An assignment with "+=", "|=" ...
duke@1 1465 */
duke@1 1466 public static class JCAssignOp extends JCExpression implements CompoundAssignmentTree {
duke@1 1467 private int opcode;
duke@1 1468 public JCExpression lhs;
duke@1 1469 public JCExpression rhs;
duke@1 1470 public Symbol operator;
duke@1 1471 protected JCAssignOp(int opcode, JCTree lhs, JCTree rhs, Symbol operator) {
duke@1 1472 this.opcode = opcode;
duke@1 1473 this.lhs = (JCExpression)lhs;
duke@1 1474 this.rhs = (JCExpression)rhs;
duke@1 1475 this.operator = operator;
duke@1 1476 }
duke@1 1477 @Override
duke@1 1478 public void accept(Visitor v) { v.visitAssignop(this); }
duke@1 1479
duke@1 1480 public Kind getKind() { return TreeInfo.tagToKind(getTag()); }
duke@1 1481 public JCExpression getVariable() { return lhs; }
duke@1 1482 public JCExpression getExpression() { return rhs; }
duke@1 1483 public Symbol getOperator() {
duke@1 1484 return operator;
duke@1 1485 }
duke@1 1486 @Override
duke@1 1487 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1488 return v.visitCompoundAssignment(this, d);
duke@1 1489 }
duke@1 1490 @Override
duke@1 1491 public int getTag() {
duke@1 1492 return opcode;
duke@1 1493 }
duke@1 1494 }
duke@1 1495
duke@1 1496 /**
duke@1 1497 * A unary operation.
duke@1 1498 */
duke@1 1499 public static class JCUnary extends JCExpression implements UnaryTree {
duke@1 1500 private int opcode;
duke@1 1501 public JCExpression arg;
duke@1 1502 public Symbol operator;
duke@1 1503 protected JCUnary(int opcode, JCExpression arg) {
duke@1 1504 this.opcode = opcode;
duke@1 1505 this.arg = arg;
duke@1 1506 }
duke@1 1507 @Override
duke@1 1508 public void accept(Visitor v) { v.visitUnary(this); }
duke@1 1509
duke@1 1510 public Kind getKind() { return TreeInfo.tagToKind(getTag()); }
duke@1 1511 public JCExpression getExpression() { return arg; }
duke@1 1512 public Symbol getOperator() {
duke@1 1513 return operator;
duke@1 1514 }
duke@1 1515 @Override
duke@1 1516 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1517 return v.visitUnary(this, d);
duke@1 1518 }
duke@1 1519 @Override
duke@1 1520 public int getTag() {
duke@1 1521 return opcode;
duke@1 1522 }
duke@1 1523
duke@1 1524 public void setTag(int tag) {
duke@1 1525 opcode = tag;
duke@1 1526 }
duke@1 1527 }
duke@1 1528
duke@1 1529 /**
duke@1 1530 * A binary operation.
duke@1 1531 */
duke@1 1532 public static class JCBinary extends JCExpression implements BinaryTree {
duke@1 1533 private int opcode;
duke@1 1534 public JCExpression lhs;
duke@1 1535 public JCExpression rhs;
duke@1 1536 public Symbol operator;
duke@1 1537 protected JCBinary(int opcode,
duke@1 1538 JCExpression lhs,
duke@1 1539 JCExpression rhs,
duke@1 1540 Symbol operator) {
duke@1 1541 this.opcode = opcode;
duke@1 1542 this.lhs = lhs;
duke@1 1543 this.rhs = rhs;
duke@1 1544 this.operator = operator;
duke@1 1545 }
duke@1 1546 @Override
duke@1 1547 public void accept(Visitor v) { v.visitBinary(this); }
duke@1 1548
duke@1 1549 public Kind getKind() { return TreeInfo.tagToKind(getTag()); }
duke@1 1550 public JCExpression getLeftOperand() { return lhs; }
duke@1 1551 public JCExpression getRightOperand() { return rhs; }
duke@1 1552 public Symbol getOperator() {
duke@1 1553 return operator;
duke@1 1554 }
duke@1 1555 @Override
duke@1 1556 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1557 return v.visitBinary(this, d);
duke@1 1558 }
duke@1 1559 @Override
duke@1 1560 public int getTag() {
duke@1 1561 return opcode;
duke@1 1562 }
duke@1 1563 }
duke@1 1564
duke@1 1565 /**
duke@1 1566 * A type cast.
duke@1 1567 */
duke@1 1568 public static class JCTypeCast extends JCExpression implements TypeCastTree {
duke@1 1569 public JCTree clazz;
duke@1 1570 public JCExpression expr;
duke@1 1571 protected JCTypeCast(JCTree clazz, JCExpression expr) {
duke@1 1572 this.clazz = clazz;
duke@1 1573 this.expr = expr;
duke@1 1574 }
duke@1 1575 @Override
duke@1 1576 public void accept(Visitor v) { v.visitTypeCast(this); }
duke@1 1577
duke@1 1578 public Kind getKind() { return Kind.TYPE_CAST; }
duke@1 1579 public JCTree getType() { return clazz; }
duke@1 1580 public JCExpression getExpression() { return expr; }
duke@1 1581 @Override
duke@1 1582 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1583 return v.visitTypeCast(this, d);
duke@1 1584 }
duke@1 1585 @Override
duke@1 1586 public int getTag() {
duke@1 1587 return TYPECAST;
duke@1 1588 }
duke@1 1589 }
duke@1 1590
duke@1 1591 /**
duke@1 1592 * A type test.
duke@1 1593 */
duke@1 1594 public static class JCInstanceOf extends JCExpression implements InstanceOfTree {
duke@1 1595 public JCExpression expr;
duke@1 1596 public JCTree clazz;
duke@1 1597 protected JCInstanceOf(JCExpression expr, JCTree clazz) {
duke@1 1598 this.expr = expr;
duke@1 1599 this.clazz = clazz;
duke@1 1600 }
duke@1 1601 @Override
duke@1 1602 public void accept(Visitor v) { v.visitTypeTest(this); }
duke@1 1603
duke@1 1604 public Kind getKind() { return Kind.INSTANCE_OF; }
duke@1 1605 public JCTree getType() { return clazz; }
duke@1 1606 public JCExpression getExpression() { return expr; }
duke@1 1607 @Override
duke@1 1608 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1609 return v.visitInstanceOf(this, d);
duke@1 1610 }
duke@1 1611 @Override
duke@1 1612 public int getTag() {
duke@1 1613 return TYPETEST;
duke@1 1614 }
duke@1 1615 }
duke@1 1616
duke@1 1617 /**
duke@1 1618 * An array selection
duke@1 1619 */
duke@1 1620 public static class JCArrayAccess extends JCExpression implements ArrayAccessTree {
duke@1 1621 public JCExpression indexed;
duke@1 1622 public JCExpression index;
duke@1 1623 protected JCArrayAccess(JCExpression indexed, JCExpression index) {
duke@1 1624 this.indexed = indexed;
duke@1 1625 this.index = index;
duke@1 1626 }
duke@1 1627 @Override
duke@1 1628 public void accept(Visitor v) { v.visitIndexed(this); }
duke@1 1629
duke@1 1630 public Kind getKind() { return Kind.ARRAY_ACCESS; }
duke@1 1631 public JCExpression getExpression() { return indexed; }
duke@1 1632 public JCExpression getIndex() { return index; }
duke@1 1633 @Override
duke@1 1634 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1635 return v.visitArrayAccess(this, d);
duke@1 1636 }
duke@1 1637 @Override
duke@1 1638 public int getTag() {
duke@1 1639 return INDEXED;
duke@1 1640 }
duke@1 1641 }
duke@1 1642
duke@1 1643 /**
duke@1 1644 * Selects through packages and classes
duke@1 1645 * @param selected selected Tree hierarchie
duke@1 1646 * @param selector name of field to select thru
duke@1 1647 * @param sym symbol of the selected class
duke@1 1648 */
duke@1 1649 public static class JCFieldAccess extends JCExpression implements MemberSelectTree {
duke@1 1650 public JCExpression selected;
duke@1 1651 public Name name;
duke@1 1652 public Symbol sym;
duke@1 1653 protected JCFieldAccess(JCExpression selected, Name name, Symbol sym) {
duke@1 1654 this.selected = selected;
duke@1 1655 this.name = name;
duke@1 1656 this.sym = sym;
duke@1 1657 }
duke@1 1658 @Override
duke@1 1659 public void accept(Visitor v) { v.visitSelect(this); }
duke@1 1660
duke@1 1661 public Kind getKind() { return Kind.MEMBER_SELECT; }
duke@1 1662 public JCExpression getExpression() { return selected; }
duke@1 1663 @Override
duke@1 1664 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1665 return v.visitMemberSelect(this, d);
duke@1 1666 }
duke@1 1667 public Name getIdentifier() { return name; }
duke@1 1668 @Override
duke@1 1669 public int getTag() {
duke@1 1670 return SELECT;
duke@1 1671 }
duke@1 1672 }
duke@1 1673
duke@1 1674 /**
duke@1 1675 * An identifier
duke@1 1676 * @param idname the name
duke@1 1677 * @param sym the symbol
duke@1 1678 */
duke@1 1679 public static class JCIdent extends JCExpression implements IdentifierTree {
duke@1 1680 public Name name;
duke@1 1681 public Symbol sym;
duke@1 1682 protected JCIdent(Name name, Symbol sym) {
duke@1 1683 this.name = name;
duke@1 1684 this.sym = sym;
duke@1 1685 }
duke@1 1686 @Override
duke@1 1687 public void accept(Visitor v) { v.visitIdent(this); }
duke@1 1688
duke@1 1689 public Kind getKind() { return Kind.IDENTIFIER; }
duke@1 1690 public Name getName() { return name; }
duke@1 1691 @Override
duke@1 1692 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1693 return v.visitIdentifier(this, d);
duke@1 1694 }
duke@1 1695 public int getTag() {
duke@1 1696 return IDENT;
duke@1 1697 }
duke@1 1698 }
duke@1 1699
duke@1 1700 /**
duke@1 1701 * A constant value given literally.
duke@1 1702 * @param value value representation
duke@1 1703 */
duke@1 1704 public static class JCLiteral extends JCExpression implements LiteralTree {
duke@1 1705 public int typetag;
duke@1 1706 public Object value;
duke@1 1707 protected JCLiteral(int typetag, Object value) {
duke@1 1708 this.typetag = typetag;
duke@1 1709 this.value = value;
duke@1 1710 }
duke@1 1711 @Override
duke@1 1712 public void accept(Visitor v) { v.visitLiteral(this); }
duke@1 1713
duke@1 1714 public Kind getKind() {
duke@1 1715 switch (typetag) {
duke@1 1716 case TypeTags.INT:
duke@1 1717 return Kind.INT_LITERAL;
duke@1 1718 case TypeTags.LONG:
duke@1 1719 return Kind.LONG_LITERAL;
duke@1 1720 case TypeTags.FLOAT:
duke@1 1721 return Kind.FLOAT_LITERAL;
duke@1 1722 case TypeTags.DOUBLE:
duke@1 1723 return Kind.DOUBLE_LITERAL;
duke@1 1724 case TypeTags.BOOLEAN:
duke@1 1725 return Kind.BOOLEAN_LITERAL;
duke@1 1726 case TypeTags.CHAR:
duke@1 1727 return Kind.CHAR_LITERAL;
duke@1 1728 case TypeTags.CLASS:
duke@1 1729 return Kind.STRING_LITERAL;
duke@1 1730 case TypeTags.BOT:
duke@1 1731 return Kind.NULL_LITERAL;
duke@1 1732 default:
duke@1 1733 throw new AssertionError("unknown literal kind " + this);
duke@1 1734 }
duke@1 1735 }
duke@1 1736 public Object getValue() {
duke@1 1737 switch (typetag) {
duke@1 1738 case TypeTags.BOOLEAN:
duke@1 1739 int bi = (Integer) value;
duke@1 1740 return (bi != 0);
duke@1 1741 case TypeTags.CHAR:
duke@1 1742 int ci = (Integer) value;
duke@1 1743 char c = (char) ci;
duke@1 1744 if (c != ci)
duke@1 1745 throw new AssertionError("bad value for char literal");
duke@1 1746 return c;
duke@1 1747 default:
duke@1 1748 return value;
duke@1 1749 }
duke@1 1750 }
duke@1 1751 @Override
duke@1 1752 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1753 return v.visitLiteral(this, d);
duke@1 1754 }
duke@1 1755 @Override
duke@1 1756 public JCLiteral setType(Type type) {
duke@1 1757 super.setType(type);
duke@1 1758 return this;
duke@1 1759 }
duke@1 1760 @Override
duke@1 1761 public int getTag() {
duke@1 1762 return LITERAL;
duke@1 1763 }
duke@1 1764 }
duke@1 1765
duke@1 1766 /**
duke@1 1767 * Identifies a basic type.
duke@1 1768 * @param tag the basic type id
duke@1 1769 * @see TypeTags
duke@1 1770 */
duke@1 1771 public static class JCPrimitiveTypeTree extends JCExpression implements PrimitiveTypeTree {
duke@1 1772 public int typetag;
duke@1 1773 protected JCPrimitiveTypeTree(int typetag) {
duke@1 1774 this.typetag = typetag;
duke@1 1775 }
duke@1 1776 @Override
duke@1 1777 public void accept(Visitor v) { v.visitTypeIdent(this); }
duke@1 1778
duke@1 1779 public Kind getKind() { return Kind.PRIMITIVE_TYPE; }
duke@1 1780 public TypeKind getPrimitiveTypeKind() {
duke@1 1781 switch (typetag) {
duke@1 1782 case TypeTags.BOOLEAN:
duke@1 1783 return TypeKind.BOOLEAN;
duke@1 1784 case TypeTags.BYTE:
duke@1 1785 return TypeKind.BYTE;
duke@1 1786 case TypeTags.SHORT:
duke@1 1787 return TypeKind.SHORT;
duke@1 1788 case TypeTags.INT:
duke@1 1789 return TypeKind.INT;
duke@1 1790 case TypeTags.LONG:
duke@1 1791 return TypeKind.LONG;
duke@1 1792 case TypeTags.CHAR:
duke@1 1793 return TypeKind.CHAR;
duke@1 1794 case TypeTags.FLOAT:
duke@1 1795 return TypeKind.FLOAT;
duke@1 1796 case TypeTags.DOUBLE:
duke@1 1797 return TypeKind.DOUBLE;
duke@1 1798 case TypeTags.VOID:
duke@1 1799 return TypeKind.VOID;
duke@1 1800 default:
duke@1 1801 throw new AssertionError("unknown primitive type " + this);
duke@1 1802 }
duke@1 1803 }
duke@1 1804 @Override
duke@1 1805 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1806 return v.visitPrimitiveType(this, d);
duke@1 1807 }
duke@1 1808 @Override
duke@1 1809 public int getTag() {
duke@1 1810 return TYPEIDENT;
duke@1 1811 }
duke@1 1812 }
duke@1 1813
duke@1 1814 /**
duke@1 1815 * An array type, A[]
duke@1 1816 */
duke@1 1817 public static class JCArrayTypeTree extends JCExpression implements ArrayTypeTree {
duke@1 1818 public JCExpression elemtype;
duke@1 1819 protected JCArrayTypeTree(JCExpression elemtype) {
duke@1 1820 this.elemtype = elemtype;
duke@1 1821 }
duke@1 1822 @Override
duke@1 1823 public void accept(Visitor v) { v.visitTypeArray(this); }
duke@1 1824
duke@1 1825 public Kind getKind() { return Kind.ARRAY_TYPE; }
duke@1 1826 public JCTree getType() { return elemtype; }
duke@1 1827 @Override
duke@1 1828 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1829 return v.visitArrayType(this, d);
duke@1 1830 }
duke@1 1831 @Override
duke@1 1832 public int getTag() {
duke@1 1833 return TYPEARRAY;
duke@1 1834 }
duke@1 1835 }
duke@1 1836
duke@1 1837 /**
duke@1 1838 * A parameterized type, T<...>
duke@1 1839 */
duke@1 1840 public static class JCTypeApply extends JCExpression implements ParameterizedTypeTree {
duke@1 1841 public JCExpression clazz;
duke@1 1842 public List<JCExpression> arguments;
duke@1 1843 protected JCTypeApply(JCExpression clazz, List<JCExpression> arguments) {
duke@1 1844 this.clazz = clazz;
duke@1 1845 this.arguments = arguments;
duke@1 1846 }
duke@1 1847 @Override
duke@1 1848 public void accept(Visitor v) { v.visitTypeApply(this); }
duke@1 1849
duke@1 1850 public Kind getKind() { return Kind.PARAMETERIZED_TYPE; }
duke@1 1851 public JCTree getType() { return clazz; }
duke@1 1852 public List<JCExpression> getTypeArguments() {
duke@1 1853 return arguments;
duke@1 1854 }
duke@1 1855 @Override
duke@1 1856 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1857 return v.visitParameterizedType(this, d);
duke@1 1858 }
duke@1 1859 @Override
duke@1 1860 public int getTag() {
duke@1 1861 return TYPEAPPLY;
duke@1 1862 }
duke@1 1863 }
duke@1 1864
duke@1 1865 /**
duke@1 1866 * A formal class parameter.
duke@1 1867 * @param name name
duke@1 1868 * @param bounds bounds
duke@1 1869 */
duke@1 1870 public static class JCTypeParameter extends JCTree implements TypeParameterTree {
duke@1 1871 public Name name;
duke@1 1872 public List<JCExpression> bounds;
jjg@308 1873 public List<JCTypeAnnotation> annotations;
jjg@308 1874 protected JCTypeParameter(Name name, List<JCExpression> bounds, List<JCTypeAnnotation> annotations) {
duke@1 1875 this.name = name;
duke@1 1876 this.bounds = bounds;
jjg@308 1877 this.annotations = annotations;
duke@1 1878 }
duke@1 1879 @Override
duke@1 1880 public void accept(Visitor v) { v.visitTypeParameter(this); }
duke@1 1881
duke@1 1882 public Kind getKind() { return Kind.TYPE_PARAMETER; }
duke@1 1883 public Name getName() { return name; }
duke@1 1884 public List<JCExpression> getBounds() {
duke@1 1885 return bounds;
duke@1 1886 }
jjg@308 1887 public List<JCTypeAnnotation> getAnnotations() {
jjg@308 1888 return annotations;
jjg@308 1889 }
duke@1 1890 @Override
duke@1 1891 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1892 return v.visitTypeParameter(this, d);
duke@1 1893 }
duke@1 1894 @Override
duke@1 1895 public int getTag() {
duke@1 1896 return TYPEPARAMETER;
duke@1 1897 }
duke@1 1898 }
duke@1 1899
duke@1 1900 public static class JCWildcard extends JCExpression implements WildcardTree {
duke@1 1901 public TypeBoundKind kind;
duke@1 1902 public JCTree inner;
duke@1 1903 protected JCWildcard(TypeBoundKind kind, JCTree inner) {
duke@1 1904 kind.getClass(); // null-check
duke@1 1905 this.kind = kind;
duke@1 1906 this.inner = inner;
duke@1 1907 }
duke@1 1908 @Override
duke@1 1909 public void accept(Visitor v) { v.visitWildcard(this); }
duke@1 1910
duke@1 1911 public Kind getKind() {
duke@1 1912 switch (kind.kind) {
duke@1 1913 case UNBOUND:
duke@1 1914 return Kind.UNBOUNDED_WILDCARD;
duke@1 1915 case EXTENDS:
duke@1 1916 return Kind.EXTENDS_WILDCARD;
duke@1 1917 case SUPER:
duke@1 1918 return Kind.SUPER_WILDCARD;
duke@1 1919 default:
duke@1 1920 throw new AssertionError("Unknown wildcard bound " + kind);
duke@1 1921 }
duke@1 1922 }
duke@1 1923 public JCTree getBound() { return inner; }
duke@1 1924 @Override
duke@1 1925 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1926 return v.visitWildcard(this, d);
duke@1 1927 }
duke@1 1928 @Override
duke@1 1929 public int getTag() {
duke@1 1930 return WILDCARD;
duke@1 1931 }
duke@1 1932 }
duke@1 1933
duke@1 1934 public static class TypeBoundKind extends JCTree {
duke@1 1935 public BoundKind kind;
duke@1 1936 protected TypeBoundKind(BoundKind kind) {
duke@1 1937 this.kind = kind;
duke@1 1938 }
duke@1 1939 @Override
duke@1 1940 public void accept(Visitor v) { v.visitTypeBoundKind(this); }
duke@1 1941
duke@1 1942 public Kind getKind() {
duke@1 1943 throw new AssertionError("TypeBoundKind is not part of a public API");
duke@1 1944 }
duke@1 1945 @Override
duke@1 1946 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1947 throw new AssertionError("TypeBoundKind is not part of a public API");
duke@1 1948 }
duke@1 1949 @Override
duke@1 1950 public int getTag() {
duke@1 1951 return TYPEBOUNDKIND;
duke@1 1952 }
duke@1 1953 }
duke@1 1954
duke@1 1955 public static class JCAnnotation extends JCExpression implements AnnotationTree {
duke@1 1956 public JCTree annotationType;
duke@1 1957 public List<JCExpression> args;
duke@1 1958 protected JCAnnotation(JCTree annotationType, List<JCExpression> args) {
duke@1 1959 this.annotationType = annotationType;
duke@1 1960 this.args = args;
duke@1 1961 }
duke@1 1962 @Override
duke@1 1963 public void accept(Visitor v) { v.visitAnnotation(this); }
duke@1 1964
duke@1 1965 public Kind getKind() { return Kind.ANNOTATION; }
duke@1 1966 public JCTree getAnnotationType() { return annotationType; }
duke@1 1967 public List<JCExpression> getArguments() {
duke@1 1968 return args;
duke@1 1969 }
duke@1 1970 @Override
duke@1 1971 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 1972 return v.visitAnnotation(this, d);
duke@1 1973 }
duke@1 1974 @Override
duke@1 1975 public int getTag() {
duke@1 1976 return ANNOTATION;
duke@1 1977 }
duke@1 1978 }
duke@1 1979
jjg@308 1980 public static class JCTypeAnnotation extends JCAnnotation {
jjg@308 1981 public TypeAnnotationPosition annotation_position;
jjg@308 1982 public Attribute.TypeCompound attribute_field;
jjg@308 1983
jjg@308 1984 protected JCTypeAnnotation(JCTree annotationType, List<JCExpression> args) {
jjg@308 1985 super(annotationType, args);
jjg@308 1986 this.annotation_position = new TypeAnnotationPosition();
jjg@308 1987 }
jjg@308 1988 }
jjg@308 1989
duke@1 1990 public static class JCModifiers extends JCTree implements com.sun.source.tree.ModifiersTree {
duke@1 1991 public long flags;
duke@1 1992 public List<JCAnnotation> annotations;
duke@1 1993 protected JCModifiers(long flags, List<JCAnnotation> annotations) {
duke@1 1994 this.flags = flags;
duke@1 1995 this.annotations = annotations;
duke@1 1996 }
duke@1 1997 @Override
duke@1 1998 public void accept(Visitor v) { v.visitModifiers(this); }
duke@1 1999
duke@1 2000 public Kind getKind() { return Kind.MODIFIERS; }
duke@1 2001 public Set<Modifier> getFlags() {
duke@1 2002 return Flags.asModifierSet(flags);
duke@1 2003 }
duke@1 2004 public List<JCAnnotation> getAnnotations() {
duke@1 2005 return annotations;
duke@1 2006 }
duke@1 2007 @Override
duke@1 2008 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 2009 return v.visitModifiers(this, d);
duke@1 2010 }
duke@1 2011 @Override
duke@1 2012 public int getTag() {
duke@1 2013 return MODIFIERS;
duke@1 2014 }
duke@1 2015 }
duke@1 2016
jjg@308 2017 public static class JCAnnotatedType extends JCExpression implements com.sun.source.tree.AnnotatedTypeTree {
jjg@308 2018 public List<JCTypeAnnotation> annotations;
jjg@308 2019 public JCExpression underlyingType;
jjg@308 2020 protected JCAnnotatedType(List<JCTypeAnnotation> annotations, JCExpression underlyingType) {
jjg@308 2021 this.annotations = annotations;
jjg@308 2022 this.underlyingType = underlyingType;
jjg@308 2023 }
jjg@308 2024 @Override
jjg@308 2025 public void accept(Visitor v) { v.visitAnnotatedType(this); }
jjg@308 2026
jjg@308 2027 public Kind getKind() { return Kind.ANNOTATED_TYPE; }
jjg@308 2028 public List<JCTypeAnnotation> getAnnotations() {
jjg@308 2029 return annotations;
jjg@308 2030 }
jjg@308 2031 public JCExpression getUnderlyingType() {
jjg@308 2032 return underlyingType;
jjg@308 2033 }
jjg@308 2034 @Override
jjg@308 2035 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
jjg@308 2036 return v.visitAnnotatedType(this, d);
jjg@308 2037 }
jjg@308 2038 @Override
jjg@308 2039 public int getTag() {
jjg@308 2040 return ANNOTATED_TYPE;
jjg@308 2041 }
jjg@308 2042 }
jjg@308 2043
duke@1 2044 public static class JCErroneous extends JCExpression
duke@1 2045 implements com.sun.source.tree.ErroneousTree {
duke@1 2046 public List<? extends JCTree> errs;
duke@1 2047 protected JCErroneous(List<? extends JCTree> errs) {
duke@1 2048 this.errs = errs;
duke@1 2049 }
duke@1 2050 @Override
duke@1 2051 public void accept(Visitor v) { v.visitErroneous(this); }
duke@1 2052
duke@1 2053 public Kind getKind() { return Kind.ERRONEOUS; }
duke@1 2054
duke@1 2055 public List<? extends JCTree> getErrorTrees() {
duke@1 2056 return errs;
duke@1 2057 }
duke@1 2058
duke@1 2059 @Override
duke@1 2060 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 2061 return v.visitErroneous(this, d);
duke@1 2062 }
duke@1 2063 @Override
duke@1 2064 public int getTag() {
duke@1 2065 return ERRONEOUS;
duke@1 2066 }
duke@1 2067 }
duke@1 2068
duke@1 2069 /** (let int x = 3; in x+2) */
duke@1 2070 public static class LetExpr extends JCExpression {
duke@1 2071 public List<JCVariableDecl> defs;
duke@1 2072 public JCTree expr;
duke@1 2073 protected LetExpr(List<JCVariableDecl> defs, JCTree expr) {
duke@1 2074 this.defs = defs;
duke@1 2075 this.expr = expr;
duke@1 2076 }
duke@1 2077 @Override
duke@1 2078 public void accept(Visitor v) { v.visitLetExpr(this); }
duke@1 2079
duke@1 2080 public Kind getKind() {
duke@1 2081 throw new AssertionError("LetExpr is not part of a public API");
duke@1 2082 }
duke@1 2083 @Override
duke@1 2084 public <R,D> R accept(TreeVisitor<R,D> v, D d) {
duke@1 2085 throw new AssertionError("LetExpr is not part of a public API");
duke@1 2086 }
duke@1 2087 @Override
duke@1 2088 public int getTag() {
duke@1 2089 return LETEXPR;
duke@1 2090 }
duke@1 2091 }
duke@1 2092
duke@1 2093 /** An interface for tree factories
duke@1 2094 */
duke@1 2095 public interface Factory {
duke@1 2096 JCCompilationUnit TopLevel(List<JCAnnotation> packageAnnotations,
duke@1 2097 JCExpression pid,
duke@1 2098 List<JCTree> defs);
duke@1 2099 JCImport Import(JCTree qualid, boolean staticImport);
duke@1 2100 JCClassDecl ClassDef(JCModifiers mods,
duke@1 2101 Name name,
duke@1 2102 List<JCTypeParameter> typarams,
duke@1 2103 JCTree extending,
duke@1 2104 List<JCExpression> implementing,
duke@1 2105 List<JCTree> defs);
duke@1 2106 JCMethodDecl MethodDef(JCModifiers mods,
duke@1 2107 Name name,
duke@1 2108 JCExpression restype,
duke@1 2109 List<JCTypeParameter> typarams,
duke@1 2110 List<JCVariableDecl> params,
jjg@308 2111 List<JCTypeAnnotation> receiver,
duke@1 2112 List<JCExpression> thrown,
duke@1 2113 JCBlock body,
duke@1 2114 JCExpression defaultValue);
duke@1 2115 JCVariableDecl VarDef(JCModifiers mods,
duke@1 2116 Name name,
duke@1 2117 JCExpression vartype,
duke@1 2118 JCExpression init);
duke@1 2119 JCSkip Skip();
duke@1 2120 JCBlock Block(long flags, List<JCStatement> stats);
duke@1 2121 JCDoWhileLoop DoLoop(JCStatement body, JCExpression cond);
duke@1 2122 JCWhileLoop WhileLoop(JCExpression cond, JCStatement body);
duke@1 2123 JCForLoop ForLoop(List<JCStatement> init,
duke@1 2124 JCExpression cond,
duke@1 2125 List<JCExpressionStatement> step,
duke@1 2126 JCStatement body);
duke@1 2127 JCEnhancedForLoop ForeachLoop(JCVariableDecl var, JCExpression expr, JCStatement body);
duke@1 2128 JCLabeledStatement Labelled(Name label, JCStatement body);
duke@1 2129 JCSwitch Switch(JCExpression selector, List<JCCase> cases);
duke@1 2130 JCCase Case(JCExpression pat, List<JCStatement> stats);
duke@1 2131 JCSynchronized Synchronized(JCExpression lock, JCBlock body);
duke@1 2132 JCTry Try(JCBlock body, List<JCCatch> catchers, JCBlock finalizer);
duke@1 2133 JCCatch Catch(JCVariableDecl param, JCBlock body);
duke@1 2134 JCConditional Conditional(JCExpression cond,
duke@1 2135 JCExpression thenpart,
duke@1 2136 JCExpression elsepart);
duke@1 2137 JCIf If(JCExpression cond, JCStatement thenpart, JCStatement elsepart);
duke@1 2138 JCExpressionStatement Exec(JCExpression expr);
duke@1 2139 JCBreak Break(Name label);
duke@1 2140 JCContinue Continue(Name label);
duke@1 2141 JCReturn Return(JCExpression expr);
duke@1 2142 JCThrow Throw(JCTree expr);
duke@1 2143 JCAssert Assert(JCExpression cond, JCExpression detail);
duke@1 2144 JCMethodInvocation Apply(List<JCExpression> typeargs,
duke@1 2145 JCExpression fn,
duke@1 2146 List<JCExpression> args);
duke@1 2147 JCNewClass NewClass(JCExpression encl,
duke@1 2148 List<JCExpression> typeargs,
duke@1 2149 JCExpression clazz,
duke@1 2150 List<JCExpression> args,
duke@1 2151 JCClassDecl def);
duke@1 2152 JCNewArray NewArray(JCExpression elemtype,
duke@1 2153 List<JCExpression> dims,
duke@1 2154 List<JCExpression> elems);
duke@1 2155 JCParens Parens(JCExpression expr);
duke@1 2156 JCAssign Assign(JCExpression lhs, JCExpression rhs);
duke@1 2157 JCAssignOp Assignop(int opcode, JCTree lhs, JCTree rhs);
duke@1 2158 JCUnary Unary(int opcode, JCExpression arg);
duke@1 2159 JCBinary Binary(int opcode, JCExpression lhs, JCExpression rhs);
duke@1 2160 JCTypeCast TypeCast(JCTree expr, JCExpression type);
duke@1 2161 JCInstanceOf TypeTest(JCExpression expr, JCTree clazz);
duke@1 2162 JCArrayAccess Indexed(JCExpression indexed, JCExpression index);
duke@1 2163 JCFieldAccess Select(JCExpression selected, Name selector);
duke@1 2164 JCIdent Ident(Name idname);
duke@1 2165 JCLiteral Literal(int tag, Object value);
duke@1 2166 JCPrimitiveTypeTree TypeIdent(int typetag);
duke@1 2167 JCArrayTypeTree TypeArray(JCExpression elemtype);
duke@1 2168 JCTypeApply TypeApply(JCExpression clazz, List<JCExpression> arguments);
duke@1 2169 JCTypeParameter TypeParameter(Name name, List<JCExpression> bounds);
duke@1 2170 JCWildcard Wildcard(TypeBoundKind kind, JCTree type);
duke@1 2171 TypeBoundKind TypeBoundKind(BoundKind kind);
duke@1 2172 JCAnnotation Annotation(JCTree annotationType, List<JCExpression> args);
duke@1 2173 JCModifiers Modifiers(long flags, List<JCAnnotation> annotations);
duke@1 2174 JCErroneous Erroneous(List<? extends JCTree> errs);
duke@1 2175 LetExpr LetExpr(List<JCVariableDecl> defs, JCTree expr);
duke@1 2176 }
duke@1 2177
duke@1 2178 /** A generic visitor class for trees.
duke@1 2179 */
duke@1 2180 public static abstract class Visitor {
duke@1 2181 public void visitTopLevel(JCCompilationUnit that) { visitTree(that); }
duke@1 2182 public void visitImport(JCImport that) { visitTree(that); }
duke@1 2183 public void visitClassDef(JCClassDecl that) { visitTree(that); }
duke@1 2184 public void visitMethodDef(JCMethodDecl that) { visitTree(that); }
duke@1 2185 public void visitVarDef(JCVariableDecl that) { visitTree(that); }
duke@1 2186 public void visitSkip(JCSkip that) { visitTree(that); }
duke@1 2187 public void visitBlock(JCBlock that) { visitTree(that); }
duke@1 2188 public void visitDoLoop(JCDoWhileLoop that) { visitTree(that); }
duke@1 2189 public void visitWhileLoop(JCWhileLoop that) { visitTree(that); }
duke@1 2190 public void visitForLoop(JCForLoop that) { visitTree(that); }
duke@1 2191 public void visitForeachLoop(JCEnhancedForLoop that) { visitTree(that); }
duke@1 2192 public void visitLabelled(JCLabeledStatement that) { visitTree(that); }
duke@1 2193 public void visitSwitch(JCSwitch that) { visitTree(that); }
duke@1 2194 public void visitCase(JCCase that) { visitTree(that); }
duke@1 2195 public void visitSynchronized(JCSynchronized that) { visitTree(that); }
duke@1 2196 public void visitTry(JCTry that) { visitTree(that); }
duke@1 2197 public void visitCatch(JCCatch that) { visitTree(that); }
duke@1 2198 public void visitConditional(JCConditional that) { visitTree(that); }
duke@1 2199 public void visitIf(JCIf that) { visitTree(that); }
duke@1 2200 public void visitExec(JCExpressionStatement that) { visitTree(that); }
duke@1 2201 public void visitBreak(JCBreak that) { visitTree(that); }
duke@1 2202 public void visitContinue(JCContinue that) { visitTree(that); }
duke@1 2203 public void visitReturn(JCReturn that) { visitTree(that); }
duke@1 2204 public void visitThrow(JCThrow that) { visitTree(that); }
duke@1 2205 public void visitAssert(JCAssert that) { visitTree(that); }
duke@1 2206 public void visitApply(JCMethodInvocation that) { visitTree(that); }
duke@1 2207 public void visitNewClass(JCNewClass that) { visitTree(that); }
duke@1 2208 public void visitNewArray(JCNewArray that) { visitTree(that); }
duke@1 2209 public void visitParens(JCParens that) { visitTree(that); }
duke@1 2210 public void visitAssign(JCAssign that) { visitTree(that); }
duke@1 2211 public void visitAssignop(JCAssignOp that) { visitTree(that); }
duke@1 2212 public void visitUnary(JCUnary that) { visitTree(that); }
duke@1 2213 public void visitBinary(JCBinary that) { visitTree(that); }
duke@1 2214 public void visitTypeCast(JCTypeCast that) { visitTree(that); }
duke@1 2215 public void visitTypeTest(JCInstanceOf that) { visitTree(that); }
duke@1 2216 public void visitIndexed(JCArrayAccess that) { visitTree(that); }
duke@1 2217 public void visitSelect(JCFieldAccess that) { visitTree(that); }
duke@1 2218 public void visitIdent(JCIdent that) { visitTree(that); }
duke@1 2219 public void visitLiteral(JCLiteral that) { visitTree(that); }
duke@1 2220 public void visitTypeIdent(JCPrimitiveTypeTree that) { visitTree(that); }
duke@1 2221 public void visitTypeArray(JCArrayTypeTree that) { visitTree(that); }
duke@1 2222 public void visitTypeApply(JCTypeApply that) { visitTree(that); }
duke@1 2223 public void visitTypeParameter(JCTypeParameter that) { visitTree(that); }
duke@1 2224 public void visitWildcard(JCWildcard that) { visitTree(that); }
duke@1 2225 public void visitTypeBoundKind(TypeBoundKind that) { visitTree(that); }
duke@1 2226 public void visitAnnotation(JCAnnotation that) { visitTree(that); }
duke@1 2227 public void visitModifiers(JCModifiers that) { visitTree(that); }
jjg@308 2228 public void visitAnnotatedType(JCAnnotatedType that) { visitTree(that); }
duke@1 2229 public void visitErroneous(JCErroneous that) { visitTree(that); }
duke@1 2230 public void visitLetExpr(LetExpr that) { visitTree(that); }
duke@1 2231
duke@1 2232 public void visitTree(JCTree that) { assert false; }
duke@1 2233 }
duke@1 2234
duke@1 2235 }

mercurial