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

Mon, 03 Jun 2013 17:09:26 -0700

author
jjg
date
Mon, 03 Jun 2013 17:09:26 -0700
changeset 1796
242bcad5be74
parent 1734
8dd528992c15
child 1802
8fb68f73d4b1
permissions
-rw-r--r--

8006615: [doclint] move remaining messages into resource bundle
Reviewed-by: mcimadamore, vromero

duke@1 1 /*
jjg@1521 2 * Copyright (c) 1999, 2013, Oracle and/or its affiliates. All rights reserved.
duke@1 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@1 4 *
duke@1 5 * This code is free software; you can redistribute it and/or modify it
duke@1 6 * under the terms of the GNU General Public License version 2 only, as
ohair@554 7 * published by the Free Software Foundation. Oracle designates this
duke@1 8 * particular file as subject to the "Classpath" exception as provided
ohair@554 9 * by Oracle in the LICENSE file that accompanied this code.
duke@1 10 *
duke@1 11 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@1 12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@1 13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@1 14 * version 2 for more details (a copy is included in the LICENSE file that
duke@1 15 * accompanied this code).
duke@1 16 *
duke@1 17 * You should have received a copy of the GNU General Public License version
duke@1 18 * 2 along with this work; if not, write to the Free Software Foundation,
duke@1 19 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@1 20 *
ohair@554 21 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
ohair@554 22 * or visit www.oracle.com if you need additional information or have any
ohair@554 23 * questions.
duke@1 24 */
duke@1 25
duke@1 26 package com.sun.tools.javac.tree;
duke@1 27
jjg@1280 28
jjg@1455 29
duke@1 30 import com.sun.source.tree.Tree;
jjg@1280 31 import com.sun.tools.javac.code.*;
duke@1 32 import com.sun.tools.javac.comp.AttrContext;
duke@1 33 import com.sun.tools.javac.comp.Env;
jjg@1280 34 import com.sun.tools.javac.tree.JCTree.*;
mcimadamore@1510 35 import com.sun.tools.javac.tree.JCTree.JCPolyExpression.*;
duke@1 36 import com.sun.tools.javac.util.*;
duke@1 37 import com.sun.tools.javac.util.JCDiagnostic.DiagnosticPosition;
duke@1 38 import static com.sun.tools.javac.code.Flags.*;
jjg@1374 39 import static com.sun.tools.javac.code.TypeTag.BOT;
jjg@1127 40 import static com.sun.tools.javac.tree.JCTree.Tag.*;
jjg@1127 41 import static com.sun.tools.javac.tree.JCTree.Tag.BLOCK;
jjg@1127 42 import static com.sun.tools.javac.tree.JCTree.Tag.SYNCHRONIZED;
duke@1 43
duke@1 44 /** Utility class containing inspector methods for trees.
duke@1 45 *
jjg@581 46 * <p><b>This is NOT part of any supported API.
jjg@581 47 * If you write code that depends on this, you do so at your own risk.
duke@1 48 * This code and its internal interfaces are subject to change or
duke@1 49 * deletion without notice.</b>
duke@1 50 */
duke@1 51 public class TreeInfo {
duke@1 52 protected static final Context.Key<TreeInfo> treeInfoKey =
duke@1 53 new Context.Key<TreeInfo>();
duke@1 54
duke@1 55 public static TreeInfo instance(Context context) {
duke@1 56 TreeInfo instance = context.get(treeInfoKey);
duke@1 57 if (instance == null)
duke@1 58 instance = new TreeInfo(context);
duke@1 59 return instance;
duke@1 60 }
duke@1 61
duke@1 62 /** The names of all operators.
duke@1 63 */
jjg@1127 64 private Name[] opname = new Name[Tag.getNumberOfOperators()];
jjg@1127 65
jjg@1127 66 private void setOpname(Tag tag, String name, Names names) {
jjg@1127 67 setOpname(tag, names.fromString(name));
jjg@1127 68 }
jjg@1127 69 private void setOpname(Tag tag, Name name) {
jjg@1127 70 opname[tag.operatorIndex()] = name;
jjg@1127 71 }
duke@1 72
duke@1 73 private TreeInfo(Context context) {
duke@1 74 context.put(treeInfoKey, this);
duke@1 75
jjg@113 76 Names names = Names.instance(context);
jjg@1127 77 setOpname(POS, "+", names);
jjg@1127 78 setOpname(NEG, names.hyphen);
jjg@1127 79 setOpname(NOT, "!", names);
jjg@1127 80 setOpname(COMPL, "~", names);
jjg@1127 81 setOpname(PREINC, "++", names);
jjg@1127 82 setOpname(PREDEC, "--", names);
jjg@1127 83 setOpname(POSTINC, "++", names);
jjg@1127 84 setOpname(POSTDEC, "--", names);
jjg@1127 85 setOpname(NULLCHK, "<*nullchk*>", names);
jjg@1127 86 setOpname(OR, "||", names);
jjg@1127 87 setOpname(AND, "&&", names);
jjg@1127 88 setOpname(EQ, "==", names);
jjg@1127 89 setOpname(NE, "!=", names);
jjg@1127 90 setOpname(LT, "<", names);
jjg@1127 91 setOpname(GT, ">", names);
jjg@1127 92 setOpname(LE, "<=", names);
jjg@1127 93 setOpname(GE, ">=", names);
jjg@1127 94 setOpname(BITOR, "|", names);
jjg@1127 95 setOpname(BITXOR, "^", names);
jjg@1127 96 setOpname(BITAND, "&", names);
jjg@1127 97 setOpname(SL, "<<", names);
jjg@1127 98 setOpname(SR, ">>", names);
jjg@1127 99 setOpname(USR, ">>>", names);
jjg@1127 100 setOpname(PLUS, "+", names);
jjg@1127 101 setOpname(MINUS, names.hyphen);
jjg@1127 102 setOpname(MUL, names.asterisk);
jjg@1127 103 setOpname(DIV, names.slash);
jjg@1127 104 setOpname(MOD, "%", names);
duke@1 105 }
duke@1 106
mcimadamore@1219 107 public static List<JCExpression> args(JCTree t) {
mcimadamore@1219 108 switch (t.getTag()) {
mcimadamore@1219 109 case APPLY:
mcimadamore@1219 110 return ((JCMethodInvocation)t).args;
mcimadamore@1219 111 case NEWCLASS:
mcimadamore@1219 112 return ((JCNewClass)t).args;
mcimadamore@1219 113 default:
mcimadamore@1219 114 return null;
mcimadamore@1219 115 }
mcimadamore@1219 116 }
duke@1 117
duke@1 118 /** Return name of operator with given tree tag.
duke@1 119 */
jjg@1127 120 public Name operatorName(JCTree.Tag tag) {
jjg@1127 121 return opname[tag.operatorIndex()];
duke@1 122 }
duke@1 123
duke@1 124 /** Is tree a constructor declaration?
duke@1 125 */
duke@1 126 public static boolean isConstructor(JCTree tree) {
jjg@1127 127 if (tree.hasTag(METHODDEF)) {
duke@1 128 Name name = ((JCMethodDecl) tree).name;
jjg@113 129 return name == name.table.names.init;
duke@1 130 } else {
duke@1 131 return false;
duke@1 132 }
duke@1 133 }
duke@1 134
duke@1 135 /** Is there a constructor declaration in the given list of trees?
duke@1 136 */
duke@1 137 public static boolean hasConstructors(List<JCTree> trees) {
duke@1 138 for (List<JCTree> l = trees; l.nonEmpty(); l = l.tail)
duke@1 139 if (isConstructor(l.head)) return true;
duke@1 140 return false;
duke@1 141 }
duke@1 142
mcimadamore@550 143 public static boolean isMultiCatch(JCCatch catchClause) {
jjg@1127 144 return catchClause.param.vartype.hasTag(TYPEUNION);
mcimadamore@550 145 }
mcimadamore@550 146
duke@1 147 /** Is statement an initializer for a synthetic field?
duke@1 148 */
duke@1 149 public static boolean isSyntheticInit(JCTree stat) {
jjg@1127 150 if (stat.hasTag(EXEC)) {
duke@1 151 JCExpressionStatement exec = (JCExpressionStatement)stat;
jjg@1127 152 if (exec.expr.hasTag(ASSIGN)) {
duke@1 153 JCAssign assign = (JCAssign)exec.expr;
jjg@1127 154 if (assign.lhs.hasTag(SELECT)) {
duke@1 155 JCFieldAccess select = (JCFieldAccess)assign.lhs;
duke@1 156 if (select.sym != null &&
duke@1 157 (select.sym.flags() & SYNTHETIC) != 0) {
duke@1 158 Name selected = name(select.selected);
jjg@113 159 if (selected != null && selected == selected.table.names._this)
duke@1 160 return true;
duke@1 161 }
duke@1 162 }
duke@1 163 }
duke@1 164 }
duke@1 165 return false;
duke@1 166 }
duke@1 167
duke@1 168 /** If the expression is a method call, return the method name, null
duke@1 169 * otherwise. */
duke@1 170 public static Name calledMethodName(JCTree tree) {
jjg@1127 171 if (tree.hasTag(EXEC)) {
duke@1 172 JCExpressionStatement exec = (JCExpressionStatement)tree;
jjg@1127 173 if (exec.expr.hasTag(APPLY)) {
duke@1 174 Name mname = TreeInfo.name(((JCMethodInvocation) exec.expr).meth);
duke@1 175 return mname;
duke@1 176 }
duke@1 177 }
duke@1 178 return null;
duke@1 179 }
duke@1 180
duke@1 181 /** Is this a call to this or super?
duke@1 182 */
duke@1 183 public static boolean isSelfCall(JCTree tree) {
duke@1 184 Name name = calledMethodName(tree);
duke@1 185 if (name != null) {
jjg@113 186 Names names = name.table.names;
duke@1 187 return name==names._this || name==names._super;
duke@1 188 } else {
duke@1 189 return false;
duke@1 190 }
duke@1 191 }
duke@1 192
duke@1 193 /** Is this a call to super?
duke@1 194 */
duke@1 195 public static boolean isSuperCall(JCTree tree) {
duke@1 196 Name name = calledMethodName(tree);
duke@1 197 if (name != null) {
jjg@113 198 Names names = name.table.names;
duke@1 199 return name==names._super;
duke@1 200 } else {
duke@1 201 return false;
duke@1 202 }
duke@1 203 }
duke@1 204
duke@1 205 /** Is this a constructor whose first (non-synthetic) statement is not
duke@1 206 * of the form this(...)?
duke@1 207 */
duke@1 208 public static boolean isInitialConstructor(JCTree tree) {
duke@1 209 JCMethodInvocation app = firstConstructorCall(tree);
duke@1 210 if (app == null) return false;
duke@1 211 Name meth = name(app.meth);
jjg@113 212 return meth == null || meth != meth.table.names._this;
duke@1 213 }
duke@1 214
duke@1 215 /** Return the first call in a constructor definition. */
duke@1 216 public static JCMethodInvocation firstConstructorCall(JCTree tree) {
jjg@1127 217 if (!tree.hasTag(METHODDEF)) return null;
duke@1 218 JCMethodDecl md = (JCMethodDecl) tree;
jjg@113 219 Names names = md.name.table.names;
duke@1 220 if (md.name != names.init) return null;
duke@1 221 if (md.body == null) return null;
duke@1 222 List<JCStatement> stats = md.body.stats;
duke@1 223 // Synthetic initializations can appear before the super call.
duke@1 224 while (stats.nonEmpty() && isSyntheticInit(stats.head))
duke@1 225 stats = stats.tail;
duke@1 226 if (stats.isEmpty()) return null;
jjg@1127 227 if (!stats.head.hasTag(EXEC)) return null;
duke@1 228 JCExpressionStatement exec = (JCExpressionStatement) stats.head;
jjg@1127 229 if (!exec.expr.hasTag(APPLY)) return null;
duke@1 230 return (JCMethodInvocation)exec.expr;
duke@1 231 }
duke@1 232
mcimadamore@537 233 /** Return true if a tree represents a diamond new expr. */
mcimadamore@537 234 public static boolean isDiamond(JCTree tree) {
mcimadamore@537 235 switch(tree.getTag()) {
jjg@1127 236 case TYPEAPPLY: return ((JCTypeApply)tree).getTypeArguments().isEmpty();
jjg@1127 237 case NEWCLASS: return isDiamond(((JCNewClass)tree).clazz);
jjg@1563 238 case ANNOTATED_TYPE: return isDiamond(((JCAnnotatedType)tree).underlyingType);
mcimadamore@537 239 default: return false;
mcimadamore@537 240 }
mcimadamore@537 241 }
mcimadamore@537 242
mcimadamore@1269 243 public static boolean isEnumInit(JCTree tree) {
mcimadamore@1269 244 switch (tree.getTag()) {
mcimadamore@1269 245 case VARDEF:
mcimadamore@1269 246 return (((JCVariableDecl)tree).mods.flags & ENUM) != 0;
mcimadamore@1269 247 default:
mcimadamore@1269 248 return false;
mcimadamore@1269 249 }
mcimadamore@1269 250 }
mcimadamore@1269 251
mcimadamore@1510 252 /** set 'polyKind' on given tree */
mcimadamore@1510 253 public static void setPolyKind(JCTree tree, PolyKind pkind) {
mcimadamore@1510 254 switch (tree.getTag()) {
mcimadamore@1510 255 case APPLY:
mcimadamore@1510 256 ((JCMethodInvocation)tree).polyKind = pkind;
mcimadamore@1510 257 break;
mcimadamore@1510 258 case NEWCLASS:
mcimadamore@1510 259 ((JCNewClass)tree).polyKind = pkind;
mcimadamore@1510 260 break;
mcimadamore@1510 261 case REFERENCE:
mcimadamore@1510 262 ((JCMemberReference)tree).refPolyKind = pkind;
mcimadamore@1510 263 break;
mcimadamore@1510 264 default:
mcimadamore@1510 265 throw new AssertionError("Unexpected tree: " + tree);
mcimadamore@1510 266 }
mcimadamore@1510 267 }
mcimadamore@1510 268
mcimadamore@1510 269 /** set 'varargsElement' on given tree */
mcimadamore@1510 270 public static void setVarargsElement(JCTree tree, Type varargsElement) {
mcimadamore@1510 271 switch (tree.getTag()) {
mcimadamore@1510 272 case APPLY:
mcimadamore@1510 273 ((JCMethodInvocation)tree).varargsElement = varargsElement;
mcimadamore@1510 274 break;
mcimadamore@1510 275 case NEWCLASS:
mcimadamore@1510 276 ((JCNewClass)tree).varargsElement = varargsElement;
mcimadamore@1510 277 break;
mcimadamore@1510 278 case REFERENCE:
mcimadamore@1510 279 ((JCMemberReference)tree).varargsElement = varargsElement;
mcimadamore@1510 280 break;
mcimadamore@1510 281 default:
mcimadamore@1510 282 throw new AssertionError("Unexpected tree: " + tree);
mcimadamore@1510 283 }
mcimadamore@1348 284 }
mcimadamore@1433 285
mcimadamore@1433 286 /** Return true if the tree corresponds to an expression statement */
mcimadamore@1433 287 public static boolean isExpressionStatement(JCExpression tree) {
mcimadamore@1433 288 switch(tree.getTag()) {
mcimadamore@1433 289 case PREINC: case PREDEC:
mcimadamore@1433 290 case POSTINC: case POSTDEC:
mcimadamore@1433 291 case ASSIGN:
mcimadamore@1433 292 case BITOR_ASG: case BITXOR_ASG: case BITAND_ASG:
mcimadamore@1433 293 case SL_ASG: case SR_ASG: case USR_ASG:
mcimadamore@1433 294 case PLUS_ASG: case MINUS_ASG:
mcimadamore@1433 295 case MUL_ASG: case DIV_ASG: case MOD_ASG:
mcimadamore@1433 296 case APPLY: case NEWCLASS:
mcimadamore@1433 297 case ERRONEOUS:
mcimadamore@1433 298 return true;
mcimadamore@1433 299 default:
mcimadamore@1433 300 return false;
mcimadamore@1433 301 }
mcimadamore@1433 302 }
mcimadamore@1433 303
mcimadamore@1143 304 /**
mcimadamore@1143 305 * Return true if the AST corresponds to a static select of the kind A.B
mcimadamore@1143 306 */
mcimadamore@1143 307 public static boolean isStaticSelector(JCTree base, Names names) {
mcimadamore@1143 308 if (base == null)
mcimadamore@1143 309 return false;
mcimadamore@1143 310 switch (base.getTag()) {
mcimadamore@1143 311 case IDENT:
mcimadamore@1143 312 JCIdent id = (JCIdent)base;
mcimadamore@1143 313 return id.name != names._this &&
mcimadamore@1143 314 id.name != names._super &&
mcimadamore@1143 315 isStaticSym(base);
mcimadamore@1143 316 case SELECT:
mcimadamore@1143 317 return isStaticSym(base) &&
mcimadamore@1143 318 isStaticSelector(((JCFieldAccess)base).selected, names);
mcimadamore@1143 319 case TYPEAPPLY:
mcimadamore@1352 320 case TYPEARRAY:
mcimadamore@1143 321 return true;
jjg@1563 322 case ANNOTATED_TYPE:
jjg@1563 323 return isStaticSelector(((JCAnnotatedType)base).underlyingType, names);
mcimadamore@1143 324 default:
mcimadamore@1143 325 return false;
mcimadamore@1143 326 }
mcimadamore@1143 327 }
mcimadamore@1143 328 //where
mcimadamore@1143 329 private static boolean isStaticSym(JCTree tree) {
mcimadamore@1143 330 Symbol sym = symbol(tree);
mcimadamore@1143 331 return (sym.kind == Kinds.TYP ||
mcimadamore@1143 332 sym.kind == Kinds.PCK);
mcimadamore@1143 333 }
mcimadamore@1143 334
duke@1 335 /** Return true if a tree represents the null literal. */
duke@1 336 public static boolean isNull(JCTree tree) {
jjg@1127 337 if (!tree.hasTag(LITERAL))
duke@1 338 return false;
duke@1 339 JCLiteral lit = (JCLiteral) tree;
jjg@1374 340 return (lit.typetag == BOT);
duke@1 341 }
duke@1 342
jjg@1280 343 public static String getCommentText(Env<?> env, JCTree tree) {
jjg@1280 344 DocCommentTable docComments = (tree.hasTag(JCTree.Tag.TOPLEVEL))
jjg@1280 345 ? ((JCCompilationUnit) tree).docComments
jjg@1280 346 : env.toplevel.docComments;
jjg@1281 347 return (docComments == null) ? null : docComments.getCommentText(tree);
jjg@1280 348 }
jjg@1280 349
jjg@1455 350 public static DCTree.DCDocComment getCommentTree(Env<?> env, JCTree tree) {
jjg@1455 351 DocCommentTable docComments = (tree.hasTag(JCTree.Tag.TOPLEVEL))
jjg@1455 352 ? ((JCCompilationUnit) tree).docComments
jjg@1455 353 : env.toplevel.docComments;
jjg@1455 354 return (docComments == null) ? null : docComments.getCommentTree(tree);
jjg@1455 355 }
jjg@1455 356
duke@1 357 /** The position of the first statement in a block, or the position of
duke@1 358 * the block itself if it is empty.
duke@1 359 */
duke@1 360 public static int firstStatPos(JCTree tree) {
jjg@1127 361 if (tree.hasTag(BLOCK) && ((JCBlock) tree).stats.nonEmpty())
duke@1 362 return ((JCBlock) tree).stats.head.pos;
duke@1 363 else
duke@1 364 return tree.pos;
duke@1 365 }
duke@1 366
duke@1 367 /** The end position of given tree, if it is a block with
duke@1 368 * defined endpos.
duke@1 369 */
duke@1 370 public static int endPos(JCTree tree) {
jjg@1127 371 if (tree.hasTag(BLOCK) && ((JCBlock) tree).endpos != Position.NOPOS)
duke@1 372 return ((JCBlock) tree).endpos;
jjg@1127 373 else if (tree.hasTag(SYNCHRONIZED))
duke@1 374 return endPos(((JCSynchronized) tree).body);
jjg@1127 375 else if (tree.hasTag(TRY)) {
duke@1 376 JCTry t = (JCTry) tree;
sundar@1300 377 return endPos((t.finalizer != null) ? t.finalizer
sundar@1300 378 : (t.catchers.nonEmpty() ? t.catchers.last().body : t.body));
duke@1 379 } else
duke@1 380 return tree.pos;
duke@1 381 }
duke@1 382
duke@1 383
duke@1 384 /** Get the start position for a tree node. The start position is
duke@1 385 * defined to be the position of the first character of the first
duke@1 386 * token of the node's source text.
duke@1 387 * @param tree The tree node
duke@1 388 */
duke@1 389 public static int getStartPos(JCTree tree) {
duke@1 390 if (tree == null)
duke@1 391 return Position.NOPOS;
duke@1 392
duke@1 393 switch(tree.getTag()) {
jjg@1127 394 case APPLY:
jjg@1127 395 return getStartPos(((JCMethodInvocation) tree).meth);
jjg@1127 396 case ASSIGN:
jjg@1127 397 return getStartPos(((JCAssign) tree).lhs);
jjg@1127 398 case BITOR_ASG: case BITXOR_ASG: case BITAND_ASG:
jjg@1127 399 case SL_ASG: case SR_ASG: case USR_ASG:
jjg@1127 400 case PLUS_ASG: case MINUS_ASG: case MUL_ASG:
jjg@1127 401 case DIV_ASG: case MOD_ASG:
jjg@1127 402 return getStartPos(((JCAssignOp) tree).lhs);
jjg@1127 403 case OR: case AND: case BITOR:
jjg@1127 404 case BITXOR: case BITAND: case EQ:
jjg@1127 405 case NE: case LT: case GT:
jjg@1127 406 case LE: case GE: case SL:
jjg@1127 407 case SR: case USR: case PLUS:
jjg@1127 408 case MINUS: case MUL: case DIV:
jjg@1127 409 case MOD:
jjg@1127 410 return getStartPos(((JCBinary) tree).lhs);
jjg@1127 411 case CLASSDEF: {
jjg@1127 412 JCClassDecl node = (JCClassDecl)tree;
jjg@1127 413 if (node.mods.pos != Position.NOPOS)
jjg@1127 414 return node.mods.pos;
jjg@1127 415 break;
duke@1 416 }
jjg@1127 417 case CONDEXPR:
jjg@1127 418 return getStartPos(((JCConditional) tree).cond);
jjg@1127 419 case EXEC:
jjg@1127 420 return getStartPos(((JCExpressionStatement) tree).expr);
jjg@1127 421 case INDEXED:
jjg@1127 422 return getStartPos(((JCArrayAccess) tree).indexed);
jjg@1127 423 case METHODDEF: {
jjg@1127 424 JCMethodDecl node = (JCMethodDecl)tree;
jjg@1127 425 if (node.mods.pos != Position.NOPOS)
jjg@1127 426 return node.mods.pos;
jjg@1127 427 if (node.typarams.nonEmpty()) // List.nil() used for no typarams
jjg@1127 428 return getStartPos(node.typarams.head);
jjg@1127 429 return node.restype == null ? node.pos : getStartPos(node.restype);
jjg@1127 430 }
jjg@1127 431 case SELECT:
jjg@1127 432 return getStartPos(((JCFieldAccess) tree).selected);
jjg@1127 433 case TYPEAPPLY:
jjg@1127 434 return getStartPos(((JCTypeApply) tree).clazz);
jjg@1127 435 case TYPEARRAY:
jjg@1127 436 return getStartPos(((JCArrayTypeTree) tree).elemtype);
jjg@1127 437 case TYPETEST:
jjg@1127 438 return getStartPos(((JCInstanceOf) tree).expr);
jjg@1127 439 case POSTINC:
jjg@1127 440 case POSTDEC:
jjg@1127 441 return getStartPos(((JCUnary) tree).arg);
jjg@1521 442 case ANNOTATED_TYPE: {
jjg@1521 443 JCAnnotatedType node = (JCAnnotatedType) tree;
jjg@1521 444 if (node.annotations.nonEmpty()) {
jjg@1521 445 if (node.underlyingType.hasTag(TYPEARRAY) ||
jjg@1521 446 node.underlyingType.hasTag(SELECT)) {
jjg@1521 447 return getStartPos(node.underlyingType);
jjg@1521 448 } else {
jjg@1521 449 return getStartPos(node.annotations.head);
jjg@1521 450 }
jjg@1521 451 } else {
jjg@1521 452 return getStartPos(node.underlyingType);
jjg@1521 453 }
jjg@1521 454 }
jjg@1127 455 case NEWCLASS: {
jjg@1127 456 JCNewClass node = (JCNewClass)tree;
jjg@1127 457 if (node.encl != null)
jjg@1127 458 return getStartPos(node.encl);
jjg@1127 459 break;
jjg@1127 460 }
jjg@1127 461 case VARDEF: {
jjg@1127 462 JCVariableDecl node = (JCVariableDecl)tree;
jjg@1127 463 if (node.mods.pos != Position.NOPOS) {
jjg@1127 464 return node.mods.pos;
mcimadamore@1348 465 } else if (node.vartype == null) {
mcimadamore@1348 466 //if there's no type (partially typed lambda parameter)
mcimadamore@1348 467 //simply return node position
mcimadamore@1348 468 return node.pos;
jjg@1127 469 } else {
jjg@1127 470 return getStartPos(node.vartype);
jjg@1127 471 }
jjg@1127 472 }
jjg@1127 473 case ERRONEOUS: {
jjg@1127 474 JCErroneous node = (JCErroneous)tree;
jjg@1127 475 if (node.errs != null && node.errs.nonEmpty())
jjg@1127 476 return getStartPos(node.errs.head);
jjg@1127 477 }
duke@1 478 }
duke@1 479 return tree.pos;
duke@1 480 }
duke@1 481
duke@1 482 /** The end position of given tree, given a table of end positions generated by the parser
duke@1 483 */
ksrini@1138 484 public static int getEndPos(JCTree tree, EndPosTable endPosTable) {
duke@1 485 if (tree == null)
duke@1 486 return Position.NOPOS;
duke@1 487
ksrini@1138 488 if (endPosTable == null) {
duke@1 489 // fall back on limited info in the tree
duke@1 490 return endPos(tree);
duke@1 491 }
duke@1 492
ksrini@1138 493 int mapPos = endPosTable.getEndPos(tree);
ksrini@1138 494 if (mapPos != Position.NOPOS)
duke@1 495 return mapPos;
duke@1 496
duke@1 497 switch(tree.getTag()) {
jjg@1127 498 case BITOR_ASG: case BITXOR_ASG: case BITAND_ASG:
jjg@1127 499 case SL_ASG: case SR_ASG: case USR_ASG:
jjg@1127 500 case PLUS_ASG: case MINUS_ASG: case MUL_ASG:
jjg@1127 501 case DIV_ASG: case MOD_ASG:
ksrini@1138 502 return getEndPos(((JCAssignOp) tree).rhs, endPosTable);
jjg@1127 503 case OR: case AND: case BITOR:
jjg@1127 504 case BITXOR: case BITAND: case EQ:
jjg@1127 505 case NE: case LT: case GT:
jjg@1127 506 case LE: case GE: case SL:
jjg@1127 507 case SR: case USR: case PLUS:
jjg@1127 508 case MINUS: case MUL: case DIV:
jjg@1127 509 case MOD:
ksrini@1138 510 return getEndPos(((JCBinary) tree).rhs, endPosTable);
jjg@1127 511 case CASE:
ksrini@1138 512 return getEndPos(((JCCase) tree).stats.last(), endPosTable);
jjg@1127 513 case CATCH:
ksrini@1138 514 return getEndPos(((JCCatch) tree).body, endPosTable);
jjg@1127 515 case CONDEXPR:
ksrini@1138 516 return getEndPos(((JCConditional) tree).falsepart, endPosTable);
jjg@1127 517 case FORLOOP:
ksrini@1138 518 return getEndPos(((JCForLoop) tree).body, endPosTable);
jjg@1127 519 case FOREACHLOOP:
ksrini@1138 520 return getEndPos(((JCEnhancedForLoop) tree).body, endPosTable);
jjg@1127 521 case IF: {
jjg@1127 522 JCIf node = (JCIf)tree;
jjg@1127 523 if (node.elsepart == null) {
ksrini@1138 524 return getEndPos(node.thenpart, endPosTable);
jjg@1127 525 } else {
ksrini@1138 526 return getEndPos(node.elsepart, endPosTable);
jjg@1127 527 }
duke@1 528 }
jjg@1127 529 case LABELLED:
ksrini@1138 530 return getEndPos(((JCLabeledStatement) tree).body, endPosTable);
jjg@1127 531 case MODIFIERS:
ksrini@1138 532 return getEndPos(((JCModifiers) tree).annotations.last(), endPosTable);
jjg@1127 533 case SYNCHRONIZED:
ksrini@1138 534 return getEndPos(((JCSynchronized) tree).body, endPosTable);
jjg@1127 535 case TOPLEVEL:
ksrini@1138 536 return getEndPos(((JCCompilationUnit) tree).defs.last(), endPosTable);
jjg@1127 537 case TRY: {
jjg@1127 538 JCTry node = (JCTry)tree;
jjg@1127 539 if (node.finalizer != null) {
ksrini@1138 540 return getEndPos(node.finalizer, endPosTable);
jjg@1127 541 } else if (!node.catchers.isEmpty()) {
ksrini@1138 542 return getEndPos(node.catchers.last(), endPosTable);
jjg@1127 543 } else {
ksrini@1138 544 return getEndPos(node.body, endPosTable);
jjg@1127 545 }
duke@1 546 }
jjg@1127 547 case WILDCARD:
ksrini@1138 548 return getEndPos(((JCWildcard) tree).inner, endPosTable);
jjg@1127 549 case TYPECAST:
ksrini@1138 550 return getEndPos(((JCTypeCast) tree).expr, endPosTable);
jjg@1127 551 case TYPETEST:
ksrini@1138 552 return getEndPos(((JCInstanceOf) tree).clazz, endPosTable);
jjg@1127 553 case POS:
jjg@1127 554 case NEG:
jjg@1127 555 case NOT:
jjg@1127 556 case COMPL:
jjg@1127 557 case PREINC:
jjg@1127 558 case PREDEC:
ksrini@1138 559 return getEndPos(((JCUnary) tree).arg, endPosTable);
jjg@1127 560 case WHILELOOP:
ksrini@1138 561 return getEndPos(((JCWhileLoop) tree).body, endPosTable);
jjg@1521 562 case ANNOTATED_TYPE:
jjg@1521 563 return getEndPos(((JCAnnotatedType) tree).underlyingType, endPosTable);
jjg@1127 564 case ERRONEOUS: {
jjg@1127 565 JCErroneous node = (JCErroneous)tree;
jjg@1127 566 if (node.errs != null && node.errs.nonEmpty())
ksrini@1138 567 return getEndPos(node.errs.last(), endPosTable);
jjg@1127 568 }
duke@1 569 }
duke@1 570 return Position.NOPOS;
duke@1 571 }
duke@1 572
duke@1 573
duke@1 574 /** A DiagnosticPosition with the preferred position set to the
duke@1 575 * end position of given tree, if it is a block with
duke@1 576 * defined endpos.
duke@1 577 */
duke@1 578 public static DiagnosticPosition diagEndPos(final JCTree tree) {
duke@1 579 final int endPos = TreeInfo.endPos(tree);
duke@1 580 return new DiagnosticPosition() {
duke@1 581 public JCTree getTree() { return tree; }
duke@1 582 public int getStartPosition() { return TreeInfo.getStartPos(tree); }
duke@1 583 public int getPreferredPosition() { return endPos; }
ksrini@1138 584 public int getEndPosition(EndPosTable endPosTable) {
duke@1 585 return TreeInfo.getEndPos(tree, endPosTable);
duke@1 586 }
duke@1 587 };
duke@1 588 }
duke@1 589
duke@1 590 /** The position of the finalizer of given try/synchronized statement.
duke@1 591 */
duke@1 592 public static int finalizerPos(JCTree tree) {
jjg@1127 593 if (tree.hasTag(TRY)) {
duke@1 594 JCTry t = (JCTry) tree;
jjg@816 595 Assert.checkNonNull(t.finalizer);
duke@1 596 return firstStatPos(t.finalizer);
jjg@1127 597 } else if (tree.hasTag(SYNCHRONIZED)) {
duke@1 598 return endPos(((JCSynchronized) tree).body);
duke@1 599 } else {
duke@1 600 throw new AssertionError();
duke@1 601 }
duke@1 602 }
duke@1 603
duke@1 604 /** Find the position for reporting an error about a symbol, where
duke@1 605 * that symbol is defined somewhere in the given tree. */
duke@1 606 public static int positionFor(final Symbol sym, final JCTree tree) {
duke@1 607 JCTree decl = declarationFor(sym, tree);
duke@1 608 return ((decl != null) ? decl : tree).pos;
duke@1 609 }
duke@1 610
duke@1 611 /** Find the position for reporting an error about a symbol, where
duke@1 612 * that symbol is defined somewhere in the given tree. */
duke@1 613 public static DiagnosticPosition diagnosticPositionFor(final Symbol sym, final JCTree tree) {
duke@1 614 JCTree decl = declarationFor(sym, tree);
duke@1 615 return ((decl != null) ? decl : tree).pos();
duke@1 616 }
duke@1 617
duke@1 618 /** Find the declaration for a symbol, where
duke@1 619 * that symbol is defined somewhere in the given tree. */
duke@1 620 public static JCTree declarationFor(final Symbol sym, final JCTree tree) {
duke@1 621 class DeclScanner extends TreeScanner {
duke@1 622 JCTree result = null;
duke@1 623 public void scan(JCTree tree) {
duke@1 624 if (tree!=null && result==null)
duke@1 625 tree.accept(this);
duke@1 626 }
duke@1 627 public void visitTopLevel(JCCompilationUnit that) {
duke@1 628 if (that.packge == sym) result = that;
duke@1 629 else super.visitTopLevel(that);
duke@1 630 }
duke@1 631 public void visitClassDef(JCClassDecl that) {
duke@1 632 if (that.sym == sym) result = that;
duke@1 633 else super.visitClassDef(that);
duke@1 634 }
duke@1 635 public void visitMethodDef(JCMethodDecl that) {
duke@1 636 if (that.sym == sym) result = that;
duke@1 637 else super.visitMethodDef(that);
duke@1 638 }
duke@1 639 public void visitVarDef(JCVariableDecl that) {
duke@1 640 if (that.sym == sym) result = that;
duke@1 641 else super.visitVarDef(that);
duke@1 642 }
sundar@668 643 public void visitTypeParameter(JCTypeParameter that) {
jjh@771 644 if (that.type != null && that.type.tsym == sym) result = that;
sundar@668 645 else super.visitTypeParameter(that);
sundar@668 646 }
duke@1 647 }
duke@1 648 DeclScanner s = new DeclScanner();
duke@1 649 tree.accept(s);
duke@1 650 return s.result;
duke@1 651 }
duke@1 652
duke@1 653 public static Env<AttrContext> scopeFor(JCTree node, JCCompilationUnit unit) {
duke@1 654 return scopeFor(pathFor(node, unit));
duke@1 655 }
duke@1 656
duke@1 657 public static Env<AttrContext> scopeFor(List<JCTree> path) {
duke@1 658 // TODO: not implemented yet
duke@1 659 throw new UnsupportedOperationException("not implemented yet");
duke@1 660 }
duke@1 661
duke@1 662 public static List<JCTree> pathFor(final JCTree node, final JCCompilationUnit unit) {
duke@1 663 class Result extends Error {
duke@1 664 static final long serialVersionUID = -5942088234594905625L;
duke@1 665 List<JCTree> path;
duke@1 666 Result(List<JCTree> path) {
duke@1 667 this.path = path;
duke@1 668 }
duke@1 669 }
duke@1 670 class PathFinder extends TreeScanner {
duke@1 671 List<JCTree> path = List.nil();
duke@1 672 public void scan(JCTree tree) {
duke@1 673 if (tree != null) {
duke@1 674 path = path.prepend(tree);
duke@1 675 if (tree == node)
duke@1 676 throw new Result(path);
duke@1 677 super.scan(tree);
duke@1 678 path = path.tail;
duke@1 679 }
duke@1 680 }
duke@1 681 }
duke@1 682 try {
duke@1 683 new PathFinder().scan(unit);
duke@1 684 } catch (Result result) {
duke@1 685 return result.path;
duke@1 686 }
duke@1 687 return List.nil();
duke@1 688 }
duke@1 689
duke@1 690 /** Return the statement referenced by a label.
duke@1 691 * If the label refers to a loop or switch, return that switch
duke@1 692 * otherwise return the labelled statement itself
duke@1 693 */
duke@1 694 public static JCTree referencedStatement(JCLabeledStatement tree) {
duke@1 695 JCTree t = tree;
duke@1 696 do t = ((JCLabeledStatement) t).body;
jjg@1127 697 while (t.hasTag(LABELLED));
duke@1 698 switch (t.getTag()) {
jjg@1127 699 case DOLOOP: case WHILELOOP: case FORLOOP: case FOREACHLOOP: case SWITCH:
duke@1 700 return t;
duke@1 701 default:
duke@1 702 return tree;
duke@1 703 }
duke@1 704 }
duke@1 705
duke@1 706 /** Skip parens and return the enclosed expression
duke@1 707 */
duke@1 708 public static JCExpression skipParens(JCExpression tree) {
jjg@1127 709 while (tree.hasTag(PARENS)) {
duke@1 710 tree = ((JCParens) tree).expr;
duke@1 711 }
duke@1 712 return tree;
duke@1 713 }
duke@1 714
duke@1 715 /** Skip parens and return the enclosed expression
duke@1 716 */
duke@1 717 public static JCTree skipParens(JCTree tree) {
jjg@1127 718 if (tree.hasTag(PARENS))
duke@1 719 return skipParens((JCParens)tree);
duke@1 720 else
duke@1 721 return tree;
duke@1 722 }
duke@1 723
duke@1 724 /** Return the types of a list of trees.
duke@1 725 */
duke@1 726 public static List<Type> types(List<? extends JCTree> trees) {
duke@1 727 ListBuffer<Type> ts = new ListBuffer<Type>();
duke@1 728 for (List<? extends JCTree> l = trees; l.nonEmpty(); l = l.tail)
duke@1 729 ts.append(l.head.type);
duke@1 730 return ts.toList();
duke@1 731 }
duke@1 732
duke@1 733 /** If this tree is an identifier or a field or a parameterized type,
duke@1 734 * return its name, otherwise return null.
duke@1 735 */
duke@1 736 public static Name name(JCTree tree) {
duke@1 737 switch (tree.getTag()) {
jjg@1127 738 case IDENT:
duke@1 739 return ((JCIdent) tree).name;
jjg@1127 740 case SELECT:
duke@1 741 return ((JCFieldAccess) tree).name;
jjg@1127 742 case TYPEAPPLY:
duke@1 743 return name(((JCTypeApply) tree).clazz);
duke@1 744 default:
duke@1 745 return null;
duke@1 746 }
duke@1 747 }
duke@1 748
duke@1 749 /** If this tree is a qualified identifier, its return fully qualified name,
duke@1 750 * otherwise return null.
duke@1 751 */
duke@1 752 public static Name fullName(JCTree tree) {
duke@1 753 tree = skipParens(tree);
duke@1 754 switch (tree.getTag()) {
jjg@1127 755 case IDENT:
duke@1 756 return ((JCIdent) tree).name;
jjg@1127 757 case SELECT:
duke@1 758 Name sname = fullName(((JCFieldAccess) tree).selected);
duke@1 759 return sname == null ? null : sname.append('.', name(tree));
duke@1 760 default:
duke@1 761 return null;
duke@1 762 }
duke@1 763 }
duke@1 764
duke@1 765 public static Symbol symbolFor(JCTree node) {
jlahoda@1734 766 Symbol sym = symbolForImpl(node);
jlahoda@1734 767
jlahoda@1734 768 return sym != null ? sym.baseSymbol() : null;
jlahoda@1734 769 }
jlahoda@1734 770
jlahoda@1734 771 private static Symbol symbolForImpl(JCTree node) {
duke@1 772 node = skipParens(node);
duke@1 773 switch (node.getTag()) {
jlahoda@1734 774 case TOPLEVEL:
jlahoda@1734 775 return ((JCCompilationUnit) node).packge;
jjg@1127 776 case CLASSDEF:
duke@1 777 return ((JCClassDecl) node).sym;
jjg@1127 778 case METHODDEF:
duke@1 779 return ((JCMethodDecl) node).sym;
jjg@1127 780 case VARDEF:
duke@1 781 return ((JCVariableDecl) node).sym;
jlahoda@1734 782 case IDENT:
jlahoda@1734 783 return ((JCIdent) node).sym;
jlahoda@1734 784 case SELECT:
jlahoda@1734 785 return ((JCFieldAccess) node).sym;
jlahoda@1734 786 case REFERENCE:
jlahoda@1734 787 return ((JCMemberReference) node).sym;
jlahoda@1734 788 case NEWCLASS:
jlahoda@1734 789 return ((JCNewClass) node).constructor;
jlahoda@1734 790 case APPLY:
jlahoda@1734 791 return symbolFor(((JCMethodInvocation) node).meth);
jlahoda@1734 792 case TYPEAPPLY:
jlahoda@1734 793 return symbolFor(((JCTypeApply) node).clazz);
jlahoda@1734 794 case ANNOTATION:
jlahoda@1734 795 case TYPE_ANNOTATION:
jlahoda@1734 796 case TYPEPARAMETER:
jlahoda@1734 797 if (node.type != null)
jlahoda@1734 798 return node.type.tsym;
jlahoda@1734 799 return null;
duke@1 800 default:
duke@1 801 return null;
duke@1 802 }
duke@1 803 }
duke@1 804
jjg@672 805 public static boolean isDeclaration(JCTree node) {
jjg@672 806 node = skipParens(node);
jjg@672 807 switch (node.getTag()) {
jjg@1127 808 case CLASSDEF:
jjg@1127 809 case METHODDEF:
jjg@1127 810 case VARDEF:
jjg@672 811 return true;
jjg@672 812 default:
jjg@672 813 return false;
jjg@672 814 }
jjg@672 815 }
jjg@672 816
duke@1 817 /** If this tree is an identifier or a field, return its symbol,
duke@1 818 * otherwise return null.
duke@1 819 */
duke@1 820 public static Symbol symbol(JCTree tree) {
duke@1 821 tree = skipParens(tree);
duke@1 822 switch (tree.getTag()) {
jjg@1127 823 case IDENT:
duke@1 824 return ((JCIdent) tree).sym;
jjg@1127 825 case SELECT:
duke@1 826 return ((JCFieldAccess) tree).sym;
jjg@1127 827 case TYPEAPPLY:
duke@1 828 return symbol(((JCTypeApply) tree).clazz);
jjg@1521 829 case ANNOTATED_TYPE:
jjg@1521 830 return symbol(((JCAnnotatedType) tree).underlyingType);
duke@1 831 default:
duke@1 832 return null;
duke@1 833 }
duke@1 834 }
duke@1 835
duke@1 836 /** Return true if this is a nonstatic selection. */
duke@1 837 public static boolean nonstaticSelect(JCTree tree) {
duke@1 838 tree = skipParens(tree);
jjg@1127 839 if (!tree.hasTag(SELECT)) return false;
duke@1 840 JCFieldAccess s = (JCFieldAccess) tree;
duke@1 841 Symbol e = symbol(s.selected);
duke@1 842 return e == null || (e.kind != Kinds.PCK && e.kind != Kinds.TYP);
duke@1 843 }
duke@1 844
duke@1 845 /** If this tree is an identifier or a field, set its symbol, otherwise skip.
duke@1 846 */
duke@1 847 public static void setSymbol(JCTree tree, Symbol sym) {
duke@1 848 tree = skipParens(tree);
duke@1 849 switch (tree.getTag()) {
jjg@1127 850 case IDENT:
duke@1 851 ((JCIdent) tree).sym = sym; break;
jjg@1127 852 case SELECT:
duke@1 853 ((JCFieldAccess) tree).sym = sym; break;
duke@1 854 default:
duke@1 855 }
duke@1 856 }
duke@1 857
duke@1 858 /** If this tree is a declaration or a block, return its flags field,
duke@1 859 * otherwise return 0.
duke@1 860 */
duke@1 861 public static long flags(JCTree tree) {
duke@1 862 switch (tree.getTag()) {
jjg@1127 863 case VARDEF:
duke@1 864 return ((JCVariableDecl) tree).mods.flags;
jjg@1127 865 case METHODDEF:
duke@1 866 return ((JCMethodDecl) tree).mods.flags;
jjg@1127 867 case CLASSDEF:
duke@1 868 return ((JCClassDecl) tree).mods.flags;
jjg@1127 869 case BLOCK:
duke@1 870 return ((JCBlock) tree).flags;
duke@1 871 default:
duke@1 872 return 0;
duke@1 873 }
duke@1 874 }
duke@1 875
duke@1 876 /** Return first (smallest) flag in `flags':
duke@1 877 * pre: flags != 0
duke@1 878 */
duke@1 879 public static long firstFlag(long flags) {
mcimadamore@1366 880 long flag = 1;
mcimadamore@1366 881 while ((flag & flags & ExtendedStandardFlags) == 0)
duke@1 882 flag = flag << 1;
duke@1 883 return flag;
duke@1 884 }
duke@1 885
duke@1 886 /** Return flags as a string, separated by " ".
duke@1 887 */
duke@1 888 public static String flagNames(long flags) {
mcimadamore@1366 889 return Flags.toString(flags & ExtendedStandardFlags).trim();
duke@1 890 }
duke@1 891
duke@1 892 /** Operator precedences values.
duke@1 893 */
duke@1 894 public static final int
duke@1 895 notExpression = -1, // not an expression
duke@1 896 noPrec = 0, // no enclosing expression
duke@1 897 assignPrec = 1,
duke@1 898 assignopPrec = 2,
duke@1 899 condPrec = 3,
duke@1 900 orPrec = 4,
duke@1 901 andPrec = 5,
duke@1 902 bitorPrec = 6,
duke@1 903 bitxorPrec = 7,
duke@1 904 bitandPrec = 8,
duke@1 905 eqPrec = 9,
duke@1 906 ordPrec = 10,
duke@1 907 shiftPrec = 11,
duke@1 908 addPrec = 12,
duke@1 909 mulPrec = 13,
duke@1 910 prefixPrec = 14,
duke@1 911 postfixPrec = 15,
duke@1 912 precCount = 16;
duke@1 913
duke@1 914
duke@1 915 /** Map operators to their precedence levels.
duke@1 916 */
jjg@1127 917 public static int opPrec(JCTree.Tag op) {
duke@1 918 switch(op) {
jjg@1127 919 case POS:
jjg@1127 920 case NEG:
jjg@1127 921 case NOT:
jjg@1127 922 case COMPL:
jjg@1127 923 case PREINC:
jjg@1127 924 case PREDEC: return prefixPrec;
jjg@1127 925 case POSTINC:
jjg@1127 926 case POSTDEC:
jjg@1127 927 case NULLCHK: return postfixPrec;
jjg@1127 928 case ASSIGN: return assignPrec;
jjg@1127 929 case BITOR_ASG:
jjg@1127 930 case BITXOR_ASG:
jjg@1127 931 case BITAND_ASG:
jjg@1127 932 case SL_ASG:
jjg@1127 933 case SR_ASG:
jjg@1127 934 case USR_ASG:
jjg@1127 935 case PLUS_ASG:
jjg@1127 936 case MINUS_ASG:
jjg@1127 937 case MUL_ASG:
jjg@1127 938 case DIV_ASG:
jjg@1127 939 case MOD_ASG: return assignopPrec;
jjg@1127 940 case OR: return orPrec;
jjg@1127 941 case AND: return andPrec;
jjg@1127 942 case EQ:
jjg@1127 943 case NE: return eqPrec;
jjg@1127 944 case LT:
jjg@1127 945 case GT:
jjg@1127 946 case LE:
jjg@1127 947 case GE: return ordPrec;
jjg@1127 948 case BITOR: return bitorPrec;
jjg@1127 949 case BITXOR: return bitxorPrec;
jjg@1127 950 case BITAND: return bitandPrec;
jjg@1127 951 case SL:
jjg@1127 952 case SR:
jjg@1127 953 case USR: return shiftPrec;
jjg@1127 954 case PLUS:
jjg@1127 955 case MINUS: return addPrec;
jjg@1127 956 case MUL:
jjg@1127 957 case DIV:
jjg@1127 958 case MOD: return mulPrec;
jjg@1127 959 case TYPETEST: return ordPrec;
duke@1 960 default: throw new AssertionError();
duke@1 961 }
duke@1 962 }
duke@1 963
jjg@1127 964 static Tree.Kind tagToKind(JCTree.Tag tag) {
duke@1 965 switch (tag) {
duke@1 966 // Postfix expressions
jjg@1127 967 case POSTINC: // _ ++
duke@1 968 return Tree.Kind.POSTFIX_INCREMENT;
jjg@1127 969 case POSTDEC: // _ --
duke@1 970 return Tree.Kind.POSTFIX_DECREMENT;
duke@1 971
duke@1 972 // Unary operators
jjg@1127 973 case PREINC: // ++ _
duke@1 974 return Tree.Kind.PREFIX_INCREMENT;
jjg@1127 975 case PREDEC: // -- _
duke@1 976 return Tree.Kind.PREFIX_DECREMENT;
jjg@1127 977 case POS: // +
duke@1 978 return Tree.Kind.UNARY_PLUS;
jjg@1127 979 case NEG: // -
duke@1 980 return Tree.Kind.UNARY_MINUS;
jjg@1127 981 case COMPL: // ~
duke@1 982 return Tree.Kind.BITWISE_COMPLEMENT;
jjg@1127 983 case NOT: // !
duke@1 984 return Tree.Kind.LOGICAL_COMPLEMENT;
duke@1 985
duke@1 986 // Binary operators
duke@1 987
duke@1 988 // Multiplicative operators
jjg@1127 989 case MUL: // *
duke@1 990 return Tree.Kind.MULTIPLY;
jjg@1127 991 case DIV: // /
duke@1 992 return Tree.Kind.DIVIDE;
jjg@1127 993 case MOD: // %
duke@1 994 return Tree.Kind.REMAINDER;
duke@1 995
duke@1 996 // Additive operators
jjg@1127 997 case PLUS: // +
duke@1 998 return Tree.Kind.PLUS;
jjg@1127 999 case MINUS: // -
duke@1 1000 return Tree.Kind.MINUS;
duke@1 1001
duke@1 1002 // Shift operators
jjg@1127 1003 case SL: // <<
duke@1 1004 return Tree.Kind.LEFT_SHIFT;
jjg@1127 1005 case SR: // >>
duke@1 1006 return Tree.Kind.RIGHT_SHIFT;
jjg@1127 1007 case USR: // >>>
duke@1 1008 return Tree.Kind.UNSIGNED_RIGHT_SHIFT;
duke@1 1009
duke@1 1010 // Relational operators
jjg@1127 1011 case LT: // <
duke@1 1012 return Tree.Kind.LESS_THAN;
jjg@1127 1013 case GT: // >
duke@1 1014 return Tree.Kind.GREATER_THAN;
jjg@1127 1015 case LE: // <=
duke@1 1016 return Tree.Kind.LESS_THAN_EQUAL;
jjg@1127 1017 case GE: // >=
duke@1 1018 return Tree.Kind.GREATER_THAN_EQUAL;
duke@1 1019
duke@1 1020 // Equality operators
jjg@1127 1021 case EQ: // ==
duke@1 1022 return Tree.Kind.EQUAL_TO;
jjg@1127 1023 case NE: // !=
duke@1 1024 return Tree.Kind.NOT_EQUAL_TO;
duke@1 1025
duke@1 1026 // Bitwise and logical operators
jjg@1127 1027 case BITAND: // &
duke@1 1028 return Tree.Kind.AND;
jjg@1127 1029 case BITXOR: // ^
duke@1 1030 return Tree.Kind.XOR;
jjg@1127 1031 case BITOR: // |
duke@1 1032 return Tree.Kind.OR;
duke@1 1033
duke@1 1034 // Conditional operators
jjg@1127 1035 case AND: // &&
duke@1 1036 return Tree.Kind.CONDITIONAL_AND;
jjg@1127 1037 case OR: // ||
duke@1 1038 return Tree.Kind.CONDITIONAL_OR;
duke@1 1039
duke@1 1040 // Assignment operators
jjg@1127 1041 case MUL_ASG: // *=
duke@1 1042 return Tree.Kind.MULTIPLY_ASSIGNMENT;
jjg@1127 1043 case DIV_ASG: // /=
duke@1 1044 return Tree.Kind.DIVIDE_ASSIGNMENT;
jjg@1127 1045 case MOD_ASG: // %=
duke@1 1046 return Tree.Kind.REMAINDER_ASSIGNMENT;
jjg@1127 1047 case PLUS_ASG: // +=
duke@1 1048 return Tree.Kind.PLUS_ASSIGNMENT;
jjg@1127 1049 case MINUS_ASG: // -=
duke@1 1050 return Tree.Kind.MINUS_ASSIGNMENT;
jjg@1127 1051 case SL_ASG: // <<=
duke@1 1052 return Tree.Kind.LEFT_SHIFT_ASSIGNMENT;
jjg@1127 1053 case SR_ASG: // >>=
duke@1 1054 return Tree.Kind.RIGHT_SHIFT_ASSIGNMENT;
jjg@1127 1055 case USR_ASG: // >>>=
duke@1 1056 return Tree.Kind.UNSIGNED_RIGHT_SHIFT_ASSIGNMENT;
jjg@1127 1057 case BITAND_ASG: // &=
duke@1 1058 return Tree.Kind.AND_ASSIGNMENT;
jjg@1127 1059 case BITXOR_ASG: // ^=
duke@1 1060 return Tree.Kind.XOR_ASSIGNMENT;
jjg@1127 1061 case BITOR_ASG: // |=
duke@1 1062 return Tree.Kind.OR_ASSIGNMENT;
duke@1 1063
duke@1 1064 // Null check (implementation detail), for example, __.getClass()
jjg@1127 1065 case NULLCHK:
duke@1 1066 return Tree.Kind.OTHER;
duke@1 1067
jjg@1521 1068 case ANNOTATION:
jjg@1521 1069 return Tree.Kind.ANNOTATION;
jjg@1521 1070 case TYPE_ANNOTATION:
jjg@1521 1071 return Tree.Kind.TYPE_ANNOTATION;
jjg@1521 1072
duke@1 1073 default:
duke@1 1074 return null;
duke@1 1075 }
duke@1 1076 }
jjg@308 1077
jjg@308 1078 /**
jjg@1521 1079 * Returns the underlying type of the tree if it is an annotated type,
jjg@1521 1080 * or the tree itself otherwise.
jjg@308 1081 */
jjg@308 1082 public static JCExpression typeIn(JCExpression tree) {
jjg@308 1083 switch (tree.getTag()) {
jjg@1521 1084 case ANNOTATED_TYPE:
jjg@1521 1085 return ((JCAnnotatedType)tree).underlyingType;
jjg@1127 1086 case IDENT: /* simple names */
jjg@1127 1087 case TYPEIDENT: /* primitive name */
jjg@1127 1088 case SELECT: /* qualified name */
jjg@1127 1089 case TYPEARRAY: /* array types */
jjg@1127 1090 case WILDCARD: /* wild cards */
jjg@1127 1091 case TYPEPARAMETER: /* type parameters */
jjg@1127 1092 case TYPEAPPLY: /* parameterized types */
jjg@1521 1093 case ERRONEOUS: /* error tree TODO: needed for BadCast JSR308 test case. Better way? */
jjg@308 1094 return tree;
jjg@308 1095 default:
jjg@308 1096 throw new AssertionError("Unexpected type tree: " + tree);
jjg@308 1097 }
jjg@308 1098 }
jjg@470 1099
jjg@1521 1100 /* Return the inner-most type of a type tree.
jjg@1521 1101 * For an array that contains an annotated type, return that annotated type.
jjg@1521 1102 * TODO: currently only used by Pretty. Describe behavior better.
jjg@1521 1103 */
jjg@470 1104 public static JCTree innermostType(JCTree type) {
jjg@1521 1105 JCTree lastAnnotatedType = null;
jjg@1521 1106 JCTree cur = type;
jjg@1521 1107 loop: while (true) {
jjg@1521 1108 switch (cur.getTag()) {
jjg@1521 1109 case TYPEARRAY:
jjg@1521 1110 lastAnnotatedType = null;
jjg@1521 1111 cur = ((JCArrayTypeTree)cur).elemtype;
jjg@1521 1112 break;
jjg@1521 1113 case WILDCARD:
jjg@1521 1114 lastAnnotatedType = null;
jjg@1521 1115 cur = ((JCWildcard)cur).inner;
jjg@1521 1116 break;
jjg@1521 1117 case ANNOTATED_TYPE:
jjg@1521 1118 lastAnnotatedType = cur;
jjg@1521 1119 cur = ((JCAnnotatedType)cur).underlyingType;
jjg@1521 1120 break;
jjg@1521 1121 default:
jjg@1521 1122 break loop;
jjg@1521 1123 }
jjg@1521 1124 }
jjg@1521 1125 if (lastAnnotatedType!=null) {
jjg@1521 1126 return lastAnnotatedType;
jjg@1521 1127 } else {
jjg@1521 1128 return cur;
jjg@470 1129 }
jjg@470 1130 }
jjg@1521 1131
jjg@1521 1132 private static class TypeAnnotationFinder extends TreeScanner {
jjg@1521 1133 public boolean foundTypeAnno = false;
jjg@1521 1134 public void visitAnnotation(JCAnnotation tree) {
jjg@1521 1135 foundTypeAnno = foundTypeAnno || tree.hasTag(TYPE_ANNOTATION);
jjg@1521 1136 }
jjg@1521 1137 }
jjg@1521 1138
jjg@1521 1139 public static boolean containsTypeAnnotation(JCTree e) {
jjg@1521 1140 TypeAnnotationFinder finder = new TypeAnnotationFinder();
jjg@1521 1141 finder.scan(e);
jjg@1521 1142 return finder.foundTypeAnno;
jjg@1521 1143 }
duke@1 1144 }

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