src/share/classes/com/sun/tools/javac/code/Type.java

Mon, 12 Aug 2013 17:25:07 +0100

author
mcimadamore
date
Mon, 12 Aug 2013 17:25:07 +0100
changeset 1945
f7f271bd74a2
parent 1905
f65a807714ba
child 1946
af80273f630a
permissions
-rw-r--r--

6537020: JCK tests: a compile-time error should be given in case of ambiguously imported fields (types, methods)
Summary: Hiding check does not support interface multiple inheritance
Reviewed-by: jjg

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.code;
duke@1 27
jjg@1645 28 import java.lang.annotation.Annotation;
jjg@988 29 import java.util.Collections;
mcimadamore@1338 30 import java.util.EnumMap;
mcimadamore@1338 31 import java.util.EnumSet;
mcimadamore@1338 32 import java.util.Map;
mcimadamore@1338 33 import java.util.Set;
mcimadamore@1342 34
duke@1 35 import javax.lang.model.type.*;
duke@1 36
jjg@1357 37 import com.sun.tools.javac.code.Symbol.*;
jjg@1755 38 import com.sun.tools.javac.model.JavacAnnoConstructs;
jjg@1357 39 import com.sun.tools.javac.util.*;
mcimadamore@1342 40 import static com.sun.tools.javac.code.BoundKind.*;
duke@1 41 import static com.sun.tools.javac.code.Flags.*;
duke@1 42 import static com.sun.tools.javac.code.Kinds.*;
jjg@1374 43 import static com.sun.tools.javac.code.TypeTag.*;
duke@1 44
duke@1 45 /** This class represents Java types. The class itself defines the behavior of
duke@1 46 * the following types:
duke@1 47 * <pre>
duke@1 48 * base types (tags: BYTE, CHAR, SHORT, INT, LONG, FLOAT, DOUBLE, BOOLEAN),
duke@1 49 * type `void' (tag: VOID),
duke@1 50 * the bottom type (tag: BOT),
duke@1 51 * the missing type (tag: NONE).
duke@1 52 * </pre>
duke@1 53 * <p>The behavior of the following types is defined in subclasses, which are
duke@1 54 * all static inner classes of this class:
duke@1 55 * <pre>
duke@1 56 * class types (tag: CLASS, class: ClassType),
duke@1 57 * array types (tag: ARRAY, class: ArrayType),
duke@1 58 * method types (tag: METHOD, class: MethodType),
duke@1 59 * package types (tag: PACKAGE, class: PackageType),
duke@1 60 * type variables (tag: TYPEVAR, class: TypeVar),
duke@1 61 * type arguments (tag: WILDCARD, class: WildcardType),
mcimadamore@1268 62 * generic method types (tag: FORALL, class: ForAll),
duke@1 63 * the error type (tag: ERROR, class: ErrorType).
duke@1 64 * </pre>
duke@1 65 *
jjg@581 66 * <p><b>This is NOT part of any supported API.
jjg@581 67 * If you write code that depends on this, you do so at your own risk.
duke@1 68 * This code and its internal interfaces are subject to change or
duke@1 69 * deletion without notice.</b>
duke@1 70 *
jjg@1374 71 * @see TypeTag
duke@1 72 */
vromero@1853 73 public abstract class Type implements TypeMirror {
duke@1 74
duke@1 75 /** Constant type: no type at all. */
vromero@1853 76 public static final JCNoType noType = new JCNoType();
duke@1 77
mcimadamore@1347 78 /** Constant type: special type to be used during recovery of deferred expressions. */
vromero@1853 79 public static final JCNoType recoveryType = new JCNoType();
mcimadamore@1347 80
mcimadamore@1889 81 /** Constant type: special type to be used for marking stuck trees. */
mcimadamore@1889 82 public static final JCNoType stuckType = new JCNoType();
mcimadamore@1889 83
duke@1 84 /** If this switch is turned on, the names of type variables
duke@1 85 * and anonymous classes are printed with hashcodes appended.
duke@1 86 */
duke@1 87 public static boolean moreInfo = false;
duke@1 88
jjg@1521 89 /** The defining class / interface / package / type variable.
duke@1 90 */
duke@1 91 public TypeSymbol tsym;
duke@1 92
duke@1 93 /**
jjg@1374 94 * Checks if the current type tag is equal to the given tag.
jjg@1374 95 * @return true if tag is equal to the current type tag.
jjg@1374 96 */
jjg@1374 97 public boolean hasTag(TypeTag tag) {
vromero@1853 98 return tag == getTag();
jjg@1374 99 }
jjg@1374 100
jjg@1374 101 /**
jjg@1374 102 * Returns the current type tag.
jjg@1374 103 * @return the value of the current type tag.
jjg@1374 104 */
vromero@1853 105 public abstract TypeTag getTag();
jjg@1374 106
jjg@1374 107 public boolean isNumeric() {
vromero@1853 108 return false;
jjg@1374 109 }
jjg@1374 110
jjg@1374 111 public boolean isPrimitive() {
vromero@1853 112 return false;
jjg@1374 113 }
jjg@1374 114
jjg@1374 115 public boolean isPrimitiveOrVoid() {
vromero@1853 116 return false;
jjg@1374 117 }
jjg@1374 118
jjg@1374 119 public boolean isReference() {
vromero@1853 120 return false;
jjg@1374 121 }
jjg@1374 122
jjg@1374 123 public boolean isNullOrReference() {
vromero@1853 124 return false;
jjg@1374 125 }
jjg@1374 126
jjg@1374 127 public boolean isPartial() {
vromero@1853 128 return false;
jjg@1374 129 }
jjg@1374 130
jjg@1374 131 /**
duke@1 132 * The constant value of this type, null if this type does not
duke@1 133 * have a constant value attribute. Only primitive types and
duke@1 134 * strings (ClassType) can have a constant value attribute.
duke@1 135 * @return the constant value attribute of this type
duke@1 136 */
duke@1 137 public Object constValue() {
duke@1 138 return null;
duke@1 139 }
duke@1 140
vromero@1853 141 /** Is this a constant type whose value is false?
vromero@1853 142 */
vromero@1853 143 public boolean isFalse() {
vromero@1853 144 return false;
vromero@1853 145 }
vromero@1853 146
vromero@1853 147 /** Is this a constant type whose value is true?
vromero@1853 148 */
vromero@1853 149 public boolean isTrue() {
vromero@1853 150 return false;
vromero@1853 151 }
vromero@1853 152
jjg@904 153 /**
jjg@904 154 * Get the representation of this type used for modelling purposes.
jjg@904 155 * By default, this is itself. For ErrorType, a different value
jjg@1521 156 * may be provided.
jjg@904 157 */
jjg@904 158 public Type getModelType() {
jjg@904 159 return this;
jjg@904 160 }
jjg@904 161
jjg@904 162 public static List<Type> getModelTypes(List<Type> ts) {
vromero@1853 163 ListBuffer<Type> lb = new ListBuffer<>();
jjg@904 164 for (Type t: ts)
jjg@904 165 lb.append(t.getModelType());
jjg@904 166 return lb.toList();
jjg@904 167 }
jjg@904 168
duke@1 169 public <R,S> R accept(Type.Visitor<R,S> v, S s) { return v.visitType(this, s); }
duke@1 170
duke@1 171 /** Define a type given its tag and type symbol
duke@1 172 */
vromero@1853 173 public Type(TypeSymbol tsym) {
duke@1 174 this.tsym = tsym;
duke@1 175 }
duke@1 176
duke@1 177 /** An abstract class for mappings from types to types
duke@1 178 */
duke@1 179 public static abstract class Mapping {
duke@1 180 private String name;
duke@1 181 public Mapping(String name) {
duke@1 182 this.name = name;
duke@1 183 }
duke@1 184 public abstract Type apply(Type t);
duke@1 185 public String toString() {
duke@1 186 return name;
duke@1 187 }
duke@1 188 }
duke@1 189
duke@1 190 /** map a type function over all immediate descendants of this type
duke@1 191 */
duke@1 192 public Type map(Mapping f) {
duke@1 193 return this;
duke@1 194 }
duke@1 195
duke@1 196 /** map a type function over a list of types
duke@1 197 */
duke@1 198 public static List<Type> map(List<Type> ts, Mapping f) {
duke@1 199 if (ts.nonEmpty()) {
duke@1 200 List<Type> tail1 = map(ts.tail, f);
duke@1 201 Type t = f.apply(ts.head);
duke@1 202 if (tail1 != ts.tail || t != ts.head)
duke@1 203 return tail1.prepend(t);
duke@1 204 }
duke@1 205 return ts;
duke@1 206 }
duke@1 207
duke@1 208 /** Define a constant type, of the same kind as this type
duke@1 209 * and with given constant value
duke@1 210 */
duke@1 211 public Type constType(Object constValue) {
vromero@1853 212 throw new AssertionError();
duke@1 213 }
duke@1 214
duke@1 215 /**
duke@1 216 * If this is a constant type, return its underlying type.
duke@1 217 * Otherwise, return the type itself.
duke@1 218 */
duke@1 219 public Type baseType() {
duke@1 220 return this;
duke@1 221 }
duke@1 222
jjg@1644 223 public boolean isAnnotated() {
jjg@1644 224 return false;
jjg@1644 225 }
jjg@1644 226
jjg@1521 227 /**
jjg@1521 228 * If this is an annotated type, return the underlying type.
jjg@1521 229 * Otherwise, return the type itself.
jjg@1521 230 */
jjg@1521 231 public Type unannotatedType() {
jjg@1521 232 return this;
jjg@1521 233 }
jjg@1521 234
jjg@1645 235 @Override
jjg@1645 236 public List<? extends Attribute.TypeCompound> getAnnotationMirrors() {
jjg@1645 237 return List.nil();
jjg@1645 238 }
jjg@1645 239
jjg@1645 240 @Override
jjg@1645 241 public <A extends Annotation> A getAnnotation(Class<A> annotationType) {
jjg@1645 242 return null;
jjg@1645 243 }
jjg@1645 244
jjg@1645 245 @Override
jjg@1645 246 public <A extends Annotation> A[] getAnnotationsByType(Class<A> annotationType) {
jjg@1645 247 @SuppressWarnings("unchecked")
jjg@1645 248 A[] tmp = (A[]) java.lang.reflect.Array.newInstance(annotationType, 0);
jjg@1645 249 return tmp;
jjg@1645 250 }
jjg@1645 251
duke@1 252 /** Return the base types of a list of types.
duke@1 253 */
duke@1 254 public static List<Type> baseTypes(List<Type> ts) {
duke@1 255 if (ts.nonEmpty()) {
duke@1 256 Type t = ts.head.baseType();
duke@1 257 List<Type> baseTypes = baseTypes(ts.tail);
duke@1 258 if (t != ts.head || baseTypes != ts.tail)
duke@1 259 return baseTypes.prepend(t);
duke@1 260 }
duke@1 261 return ts;
duke@1 262 }
duke@1 263
duke@1 264 /** The Java source which this type represents.
duke@1 265 */
duke@1 266 public String toString() {
duke@1 267 String s = (tsym == null || tsym.name == null)
duke@1 268 ? "<none>"
duke@1 269 : tsym.name.toString();
vromero@1853 270 if (moreInfo && hasTag(TYPEVAR)) {
vromero@1853 271 s = s + hashCode();
vromero@1853 272 }
duke@1 273 return s;
duke@1 274 }
duke@1 275
duke@1 276 /**
duke@1 277 * The Java source which this type list represents. A List is
duke@1 278 * represented as a comma-spearated listing of the elements in
duke@1 279 * that list.
duke@1 280 */
duke@1 281 public static String toString(List<Type> ts) {
duke@1 282 if (ts.isEmpty()) {
duke@1 283 return "";
duke@1 284 } else {
jjg@904 285 StringBuilder buf = new StringBuilder();
duke@1 286 buf.append(ts.head.toString());
duke@1 287 for (List<Type> l = ts.tail; l.nonEmpty(); l = l.tail)
duke@1 288 buf.append(",").append(l.head.toString());
duke@1 289 return buf.toString();
duke@1 290 }
duke@1 291 }
duke@1 292
duke@1 293 /**
duke@1 294 * The constant value of this type, converted to String
duke@1 295 */
duke@1 296 public String stringValue() {
jjg@816 297 Object cv = Assert.checkNonNull(constValue());
vromero@1853 298 return cv.toString();
duke@1 299 }
duke@1 300
duke@1 301 /**
duke@1 302 * This method is analogous to isSameType, but weaker, since we
duke@1 303 * never complete classes. Where isSameType would complete a
duke@1 304 * class, equals assumes that the two types are different.
duke@1 305 */
vromero@1452 306 @Override
duke@1 307 public boolean equals(Object t) {
duke@1 308 return super.equals(t);
duke@1 309 }
duke@1 310
vromero@1452 311 @Override
duke@1 312 public int hashCode() {
duke@1 313 return super.hashCode();
duke@1 314 }
duke@1 315
duke@1 316 public String argtypes(boolean varargs) {
duke@1 317 List<Type> args = getParameterTypes();
duke@1 318 if (!varargs) return args.toString();
jjg@789 319 StringBuilder buf = new StringBuilder();
duke@1 320 while (args.tail.nonEmpty()) {
duke@1 321 buf.append(args.head);
duke@1 322 args = args.tail;
duke@1 323 buf.append(',');
duke@1 324 }
vromero@1853 325 if (args.head.unannotatedType().hasTag(ARRAY)) {
jjg@1521 326 buf.append(((ArrayType)args.head.unannotatedType()).elemtype);
jjg@1645 327 if (args.head.getAnnotationMirrors().nonEmpty()) {
jjg@1645 328 buf.append(args.head.getAnnotationMirrors());
jjg@1521 329 }
duke@1 330 buf.append("...");
duke@1 331 } else {
duke@1 332 buf.append(args.head);
duke@1 333 }
duke@1 334 return buf.toString();
duke@1 335 }
duke@1 336
duke@1 337 /** Access methods.
duke@1 338 */
duke@1 339 public List<Type> getTypeArguments() { return List.nil(); }
jjg@1521 340 public Type getEnclosingType() { return null; }
duke@1 341 public List<Type> getParameterTypes() { return List.nil(); }
duke@1 342 public Type getReturnType() { return null; }
jjg@1521 343 public Type getReceiverType() { return null; }
duke@1 344 public List<Type> getThrownTypes() { return List.nil(); }
duke@1 345 public Type getUpperBound() { return null; }
duke@1 346 public Type getLowerBound() { return null; }
duke@1 347
duke@1 348 /** Navigation methods, these will work for classes, type variables,
duke@1 349 * foralls, but will return null for arrays and methods.
duke@1 350 */
duke@1 351
duke@1 352 /** Return all parameters of this type and all its outer types in order
duke@1 353 * outer (first) to inner (last).
duke@1 354 */
duke@1 355 public List<Type> allparams() { return List.nil(); }
duke@1 356
duke@1 357 /** Does this type contain "error" elements?
duke@1 358 */
duke@1 359 public boolean isErroneous() {
duke@1 360 return false;
duke@1 361 }
duke@1 362
duke@1 363 public static boolean isErroneous(List<Type> ts) {
duke@1 364 for (List<Type> l = ts; l.nonEmpty(); l = l.tail)
duke@1 365 if (l.head.isErroneous()) return true;
duke@1 366 return false;
duke@1 367 }
duke@1 368
duke@1 369 /** Is this type parameterized?
duke@1 370 * A class type is parameterized if it has some parameters.
duke@1 371 * An array type is parameterized if its element type is parameterized.
duke@1 372 * All other types are not parameterized.
duke@1 373 */
duke@1 374 public boolean isParameterized() {
duke@1 375 return false;
duke@1 376 }
duke@1 377
duke@1 378 /** Is this type a raw type?
duke@1 379 * A class type is a raw type if it misses some of its parameters.
duke@1 380 * An array type is a raw type if its element type is raw.
duke@1 381 * All other types are not raw.
duke@1 382 * Type validation will ensure that the only raw types
duke@1 383 * in a program are types that miss all their type variables.
duke@1 384 */
duke@1 385 public boolean isRaw() {
duke@1 386 return false;
duke@1 387 }
duke@1 388
duke@1 389 public boolean isCompound() {
duke@1 390 return tsym.completer == null
duke@1 391 // Compound types can't have a completer. Calling
duke@1 392 // flags() will complete the symbol causing the
duke@1 393 // compiler to load classes unnecessarily. This led
duke@1 394 // to regression 6180021.
duke@1 395 && (tsym.flags() & COMPOUND) != 0;
duke@1 396 }
duke@1 397
duke@1 398 public boolean isInterface() {
duke@1 399 return (tsym.flags() & INTERFACE) != 0;
duke@1 400 }
duke@1 401
mcimadamore@640 402 public boolean isFinal() {
mcimadamore@640 403 return (tsym.flags() & FINAL) != 0;
mcimadamore@640 404 }
mcimadamore@640 405
duke@1 406 /**
duke@1 407 * Does this type contain occurrences of type t?
duke@1 408 */
duke@1 409 public boolean contains(Type t) {
duke@1 410 return t == this;
duke@1 411 }
duke@1 412
duke@1 413 public static boolean contains(List<Type> ts, Type t) {
duke@1 414 for (List<Type> l = ts;
duke@1 415 l.tail != null /*inlined: l.nonEmpty()*/;
duke@1 416 l = l.tail)
duke@1 417 if (l.head.contains(t)) return true;
duke@1 418 return false;
duke@1 419 }
duke@1 420
mcimadamore@635 421 /** Does this type contain an occurrence of some type in 'ts'?
duke@1 422 */
mcimadamore@635 423 public boolean containsAny(List<Type> ts) {
mcimadamore@635 424 for (Type t : ts)
mcimadamore@635 425 if (this.contains(t)) return true;
mcimadamore@635 426 return false;
mcimadamore@635 427 }
mcimadamore@635 428
mcimadamore@635 429 public static boolean containsAny(List<Type> ts1, List<Type> ts2) {
mcimadamore@635 430 for (Type t : ts1)
mcimadamore@635 431 if (t.containsAny(ts2)) return true;
duke@1 432 return false;
duke@1 433 }
duke@1 434
mcimadamore@828 435 public static List<Type> filter(List<Type> ts, Filter<Type> tf) {
mcimadamore@828 436 ListBuffer<Type> buf = ListBuffer.lb();
mcimadamore@828 437 for (Type t : ts) {
mcimadamore@828 438 if (tf.accepts(t)) {
mcimadamore@828 439 buf.append(t);
mcimadamore@828 440 }
mcimadamore@828 441 }
mcimadamore@828 442 return buf.toList();
mcimadamore@828 443 }
mcimadamore@828 444
duke@1 445 public boolean isSuperBound() { return false; }
duke@1 446 public boolean isExtendsBound() { return false; }
duke@1 447 public boolean isUnbound() { return false; }
duke@1 448 public Type withTypeVar(Type t) { return this; }
duke@1 449
duke@1 450 /** The underlying method type of this type.
duke@1 451 */
duke@1 452 public MethodType asMethodType() { throw new AssertionError(); }
duke@1 453
duke@1 454 /** Complete loading all classes in this type.
duke@1 455 */
duke@1 456 public void complete() {}
duke@1 457
duke@1 458 public TypeSymbol asElement() {
duke@1 459 return tsym;
duke@1 460 }
duke@1 461
vromero@1853 462 @Override
duke@1 463 public TypeKind getKind() {
vromero@1853 464 return TypeKind.OTHER;
duke@1 465 }
duke@1 466
vromero@1853 467 @Override
duke@1 468 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
vromero@1853 469 throw new AssertionError();
vromero@1853 470 }
vromero@1853 471
vromero@1853 472 public static class JCPrimitiveType extends Type
vromero@1853 473 implements javax.lang.model.type.PrimitiveType {
vromero@1853 474
vromero@1853 475 TypeTag tag;
vromero@1853 476
vromero@1853 477 public JCPrimitiveType(TypeTag tag, TypeSymbol tsym) {
vromero@1853 478 super(tsym);
vromero@1853 479 this.tag = tag;
vromero@1853 480 Assert.check(tag.isPrimitive);
vromero@1853 481 }
vromero@1853 482
vromero@1853 483 @Override
vromero@1853 484 public boolean isNumeric() {
vromero@1853 485 return tag != BOOLEAN;
vromero@1853 486 }
vromero@1853 487
vromero@1853 488 @Override
vromero@1853 489 public boolean isPrimitive() {
vromero@1853 490 return true;
vromero@1853 491 }
vromero@1853 492
vromero@1853 493 @Override
vromero@1853 494 public TypeTag getTag() {
vromero@1853 495 return tag;
vromero@1853 496 }
vromero@1853 497
vromero@1853 498 @Override
vromero@1853 499 public boolean isPrimitiveOrVoid() {
vromero@1853 500 return true;
vromero@1853 501 }
vromero@1853 502
vromero@1853 503 /** Define a constant type, of the same kind as this type
vromero@1853 504 * and with given constant value
vromero@1853 505 */
vromero@1853 506 @Override
vromero@1853 507 public Type constType(Object constValue) {
vromero@1853 508 final Object value = constValue;
vromero@1853 509 return new JCPrimitiveType(tag, tsym) {
vromero@1853 510 @Override
vromero@1853 511 public Object constValue() {
vromero@1853 512 return value;
vromero@1853 513 }
vromero@1853 514 @Override
vromero@1853 515 public Type baseType() {
vromero@1853 516 return tsym.type;
vromero@1853 517 }
vromero@1853 518 };
vromero@1853 519 }
vromero@1853 520
vromero@1853 521 /**
vromero@1853 522 * The constant value of this type, converted to String
vromero@1853 523 */
vromero@1853 524 @Override
vromero@1853 525 public String stringValue() {
vromero@1853 526 Object cv = Assert.checkNonNull(constValue());
vromero@1853 527 if (tag == BOOLEAN) {
vromero@1853 528 return ((Integer) cv).intValue() == 0 ? "false" : "true";
vromero@1853 529 }
vromero@1853 530 else if (tag == CHAR) {
vromero@1853 531 return String.valueOf((char) ((Integer) cv).intValue());
vromero@1853 532 }
vromero@1853 533 else {
vromero@1853 534 return cv.toString();
vromero@1853 535 }
vromero@1853 536 }
vromero@1853 537
vromero@1853 538 /** Is this a constant type whose value is false?
vromero@1853 539 */
vromero@1853 540 @Override
vromero@1853 541 public boolean isFalse() {
vromero@1853 542 return
vromero@1853 543 tag == BOOLEAN &&
vromero@1853 544 constValue() != null &&
vromero@1853 545 ((Integer)constValue()).intValue() == 0;
vromero@1853 546 }
vromero@1853 547
vromero@1853 548 /** Is this a constant type whose value is true?
vromero@1853 549 */
vromero@1853 550 @Override
vromero@1853 551 public boolean isTrue() {
vromero@1853 552 return
vromero@1853 553 tag == BOOLEAN &&
vromero@1853 554 constValue() != null &&
vromero@1853 555 ((Integer)constValue()).intValue() != 0;
vromero@1853 556 }
vromero@1853 557
vromero@1853 558 @Override
vromero@1853 559 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 560 return v.visitPrimitive(this, p);
vromero@1853 561 }
vromero@1853 562
vromero@1853 563 @Override
vromero@1853 564 public TypeKind getKind() {
vromero@1853 565 switch (tag) {
vromero@1853 566 case BYTE: return TypeKind.BYTE;
vromero@1853 567 case CHAR: return TypeKind.CHAR;
vromero@1853 568 case SHORT: return TypeKind.SHORT;
vromero@1853 569 case INT: return TypeKind.INT;
vromero@1853 570 case LONG: return TypeKind.LONG;
vromero@1853 571 case FLOAT: return TypeKind.FLOAT;
vromero@1853 572 case DOUBLE: return TypeKind.DOUBLE;
vromero@1853 573 case BOOLEAN: return TypeKind.BOOLEAN;
vromero@1853 574 }
duke@1 575 throw new AssertionError();
vromero@1853 576 }
vromero@1853 577
duke@1 578 }
duke@1 579
duke@1 580 public static class WildcardType extends Type
duke@1 581 implements javax.lang.model.type.WildcardType {
duke@1 582
duke@1 583 public Type type;
duke@1 584 public BoundKind kind;
duke@1 585 public TypeVar bound;
duke@1 586
duke@1 587 @Override
duke@1 588 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 589 return v.visitWildcardType(this, s);
duke@1 590 }
duke@1 591
duke@1 592 public WildcardType(Type type, BoundKind kind, TypeSymbol tsym) {
vromero@1853 593 super(tsym);
jjg@816 594 this.type = Assert.checkNonNull(type);
duke@1 595 this.kind = kind;
duke@1 596 }
duke@1 597 public WildcardType(WildcardType t, TypeVar bound) {
duke@1 598 this(t.type, t.kind, t.tsym, bound);
duke@1 599 }
duke@1 600
duke@1 601 public WildcardType(Type type, BoundKind kind, TypeSymbol tsym, TypeVar bound) {
duke@1 602 this(type, kind, tsym);
duke@1 603 this.bound = bound;
duke@1 604 }
duke@1 605
vromero@1853 606 @Override
vromero@1853 607 public TypeTag getTag() {
vromero@1853 608 return WILDCARD;
vromero@1853 609 }
vromero@1853 610
vromero@1853 611 @Override
mcimadamore@635 612 public boolean contains(Type t) {
mcimadamore@635 613 return kind != UNBOUND && type.contains(t);
mcimadamore@635 614 }
mcimadamore@635 615
duke@1 616 public boolean isSuperBound() {
duke@1 617 return kind == SUPER ||
duke@1 618 kind == UNBOUND;
duke@1 619 }
duke@1 620 public boolean isExtendsBound() {
duke@1 621 return kind == EXTENDS ||
duke@1 622 kind == UNBOUND;
duke@1 623 }
duke@1 624 public boolean isUnbound() {
duke@1 625 return kind == UNBOUND;
duke@1 626 }
duke@1 627
vromero@1853 628 @Override
vromero@1853 629 public boolean isReference() {
vromero@1853 630 return true;
vromero@1853 631 }
vromero@1853 632
vromero@1853 633 @Override
vromero@1853 634 public boolean isNullOrReference() {
vromero@1853 635 return true;
vromero@1853 636 }
vromero@1853 637
vromero@1853 638 @Override
duke@1 639 public Type withTypeVar(Type t) {
duke@1 640 //-System.err.println(this+".withTypeVar("+t+");");//DEBUG
duke@1 641 if (bound == t)
duke@1 642 return this;
duke@1 643 bound = (TypeVar)t;
duke@1 644 return this;
duke@1 645 }
duke@1 646
duke@1 647 boolean isPrintingBound = false;
duke@1 648 public String toString() {
jjg@904 649 StringBuilder s = new StringBuilder();
duke@1 650 s.append(kind.toString());
duke@1 651 if (kind != UNBOUND)
duke@1 652 s.append(type);
duke@1 653 if (moreInfo && bound != null && !isPrintingBound)
duke@1 654 try {
duke@1 655 isPrintingBound = true;
duke@1 656 s.append("{:").append(bound.bound).append(":}");
duke@1 657 } finally {
duke@1 658 isPrintingBound = false;
duke@1 659 }
duke@1 660 return s.toString();
duke@1 661 }
duke@1 662
duke@1 663 public Type map(Mapping f) {
duke@1 664 //- System.err.println(" (" + this + ").map(" + f + ")");//DEBUG
duke@1 665 Type t = type;
duke@1 666 if (t != null)
duke@1 667 t = f.apply(t);
duke@1 668 if (t == type)
duke@1 669 return this;
duke@1 670 else
duke@1 671 return new WildcardType(t, kind, tsym, bound);
duke@1 672 }
duke@1 673
duke@1 674 public Type getExtendsBound() {
duke@1 675 if (kind == EXTENDS)
duke@1 676 return type;
duke@1 677 else
duke@1 678 return null;
duke@1 679 }
duke@1 680
duke@1 681 public Type getSuperBound() {
duke@1 682 if (kind == SUPER)
duke@1 683 return type;
duke@1 684 else
duke@1 685 return null;
duke@1 686 }
duke@1 687
duke@1 688 public TypeKind getKind() {
duke@1 689 return TypeKind.WILDCARD;
duke@1 690 }
duke@1 691
duke@1 692 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 693 return v.visitWildcard(this, p);
duke@1 694 }
duke@1 695 }
duke@1 696
duke@1 697 public static class ClassType extends Type implements DeclaredType {
duke@1 698
duke@1 699 /** The enclosing type of this type. If this is the type of an inner
duke@1 700 * class, outer_field refers to the type of its enclosing
jjg@1521 701 * instance class, in all other cases it refers to noType.
duke@1 702 */
duke@1 703 private Type outer_field;
duke@1 704
duke@1 705 /** The type parameters of this type (to be set once class is loaded).
duke@1 706 */
duke@1 707 public List<Type> typarams_field;
duke@1 708
duke@1 709 /** A cache variable for the type parameters of this type,
duke@1 710 * appended to all parameters of its enclosing class.
duke@1 711 * @see #allparams
duke@1 712 */
duke@1 713 public List<Type> allparams_field;
duke@1 714
duke@1 715 /** The supertype of this class (to be set once class is loaded).
duke@1 716 */
duke@1 717 public Type supertype_field;
duke@1 718
duke@1 719 /** The interfaces of this class (to be set once class is loaded).
duke@1 720 */
duke@1 721 public List<Type> interfaces_field;
duke@1 722
jjg@904 723 /** All the interfaces of this class, including missing ones.
jjg@904 724 */
jjg@904 725 public List<Type> all_interfaces_field;
jjg@904 726
duke@1 727 public ClassType(Type outer, List<Type> typarams, TypeSymbol tsym) {
vromero@1853 728 super(tsym);
duke@1 729 this.outer_field = outer;
duke@1 730 this.typarams_field = typarams;
duke@1 731 this.allparams_field = null;
duke@1 732 this.supertype_field = null;
duke@1 733 this.interfaces_field = null;
duke@1 734 /*
duke@1 735 // this can happen during error recovery
duke@1 736 assert
duke@1 737 outer.isParameterized() ?
duke@1 738 typarams.length() == tsym.type.typarams().length() :
duke@1 739 outer.isRaw() ?
duke@1 740 typarams.length() == 0 :
duke@1 741 true;
duke@1 742 */
duke@1 743 }
duke@1 744
duke@1 745 @Override
vromero@1853 746 public TypeTag getTag() {
vromero@1853 747 return CLASS;
vromero@1853 748 }
vromero@1853 749
vromero@1853 750 @Override
duke@1 751 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 752 return v.visitClassType(this, s);
duke@1 753 }
duke@1 754
duke@1 755 public Type constType(Object constValue) {
duke@1 756 final Object value = constValue;
duke@1 757 return new ClassType(getEnclosingType(), typarams_field, tsym) {
duke@1 758 @Override
duke@1 759 public Object constValue() {
duke@1 760 return value;
duke@1 761 }
duke@1 762 @Override
duke@1 763 public Type baseType() {
duke@1 764 return tsym.type;
duke@1 765 }
duke@1 766 };
duke@1 767 }
duke@1 768
duke@1 769 /** The Java source which this type represents.
duke@1 770 */
duke@1 771 public String toString() {
jjg@904 772 StringBuilder buf = new StringBuilder();
vromero@1853 773 if (getEnclosingType().hasTag(CLASS) && tsym.owner.kind == TYP) {
duke@1 774 buf.append(getEnclosingType().toString());
duke@1 775 buf.append(".");
duke@1 776 buf.append(className(tsym, false));
duke@1 777 } else {
duke@1 778 buf.append(className(tsym, true));
duke@1 779 }
duke@1 780 if (getTypeArguments().nonEmpty()) {
duke@1 781 buf.append('<');
duke@1 782 buf.append(getTypeArguments().toString());
duke@1 783 buf.append(">");
duke@1 784 }
duke@1 785 return buf.toString();
duke@1 786 }
duke@1 787 //where
duke@1 788 private String className(Symbol sym, boolean longform) {
jjg@113 789 if (sym.name.isEmpty() && (sym.flags() & COMPOUND) != 0) {
jjg@904 790 StringBuilder s = new StringBuilder(supertype_field.toString());
duke@1 791 for (List<Type> is=interfaces_field; is.nonEmpty(); is = is.tail) {
duke@1 792 s.append("&");
duke@1 793 s.append(is.head.toString());
duke@1 794 }
duke@1 795 return s.toString();
jjg@113 796 } else if (sym.name.isEmpty()) {
duke@1 797 String s;
jjg@1755 798 ClassType norm = (ClassType) tsym.type.unannotatedType();
duke@1 799 if (norm == null) {
duke@1 800 s = Log.getLocalizedString("anonymous.class", (Object)null);
duke@1 801 } else if (norm.interfaces_field != null && norm.interfaces_field.nonEmpty()) {
duke@1 802 s = Log.getLocalizedString("anonymous.class",
duke@1 803 norm.interfaces_field.head);
duke@1 804 } else {
duke@1 805 s = Log.getLocalizedString("anonymous.class",
duke@1 806 norm.supertype_field);
duke@1 807 }
duke@1 808 if (moreInfo)
duke@1 809 s += String.valueOf(sym.hashCode());
duke@1 810 return s;
duke@1 811 } else if (longform) {
duke@1 812 return sym.getQualifiedName().toString();
duke@1 813 } else {
duke@1 814 return sym.name.toString();
duke@1 815 }
duke@1 816 }
duke@1 817
duke@1 818 public List<Type> getTypeArguments() {
duke@1 819 if (typarams_field == null) {
duke@1 820 complete();
duke@1 821 if (typarams_field == null)
duke@1 822 typarams_field = List.nil();
duke@1 823 }
duke@1 824 return typarams_field;
duke@1 825 }
duke@1 826
mcimadamore@30 827 public boolean hasErasedSupertypes() {
mcimadamore@30 828 return isRaw();
mcimadamore@30 829 }
mcimadamore@30 830
duke@1 831 public Type getEnclosingType() {
duke@1 832 return outer_field;
duke@1 833 }
duke@1 834
duke@1 835 public void setEnclosingType(Type outer) {
duke@1 836 outer_field = outer;
duke@1 837 }
duke@1 838
duke@1 839 public List<Type> allparams() {
duke@1 840 if (allparams_field == null) {
duke@1 841 allparams_field = getTypeArguments().prependList(getEnclosingType().allparams());
duke@1 842 }
duke@1 843 return allparams_field;
duke@1 844 }
duke@1 845
duke@1 846 public boolean isErroneous() {
duke@1 847 return
duke@1 848 getEnclosingType().isErroneous() ||
duke@1 849 isErroneous(getTypeArguments()) ||
jjg@1755 850 this != tsym.type.unannotatedType() && tsym.type.isErroneous();
duke@1 851 }
duke@1 852
duke@1 853 public boolean isParameterized() {
duke@1 854 return allparams().tail != null;
duke@1 855 // optimization, was: allparams().nonEmpty();
duke@1 856 }
duke@1 857
vromero@1853 858 @Override
vromero@1853 859 public boolean isReference() {
vromero@1853 860 return true;
vromero@1853 861 }
vromero@1853 862
vromero@1853 863 @Override
vromero@1853 864 public boolean isNullOrReference() {
vromero@1853 865 return true;
vromero@1853 866 }
vromero@1853 867
duke@1 868 /** A cache for the rank. */
duke@1 869 int rank_field = -1;
duke@1 870
duke@1 871 /** A class type is raw if it misses some
duke@1 872 * of its type parameter sections.
duke@1 873 * After validation, this is equivalent to:
jjg@1326 874 * {@code allparams.isEmpty() && tsym.type.allparams.nonEmpty(); }
duke@1 875 */
duke@1 876 public boolean isRaw() {
duke@1 877 return
duke@1 878 this != tsym.type && // necessary, but not sufficient condition
duke@1 879 tsym.type.allparams().nonEmpty() &&
duke@1 880 allparams().isEmpty();
duke@1 881 }
duke@1 882
duke@1 883 public Type map(Mapping f) {
duke@1 884 Type outer = getEnclosingType();
duke@1 885 Type outer1 = f.apply(outer);
duke@1 886 List<Type> typarams = getTypeArguments();
duke@1 887 List<Type> typarams1 = map(typarams, f);
duke@1 888 if (outer1 == outer && typarams1 == typarams) return this;
duke@1 889 else return new ClassType(outer1, typarams1, tsym);
duke@1 890 }
duke@1 891
duke@1 892 public boolean contains(Type elem) {
duke@1 893 return
duke@1 894 elem == this
duke@1 895 || (isParameterized()
mcimadamore@635 896 && (getEnclosingType().contains(elem) || contains(getTypeArguments(), elem)))
mcimadamore@635 897 || (isCompound()
mcimadamore@635 898 && (supertype_field.contains(elem) || contains(interfaces_field, elem)));
duke@1 899 }
duke@1 900
duke@1 901 public void complete() {
duke@1 902 if (tsym.completer != null) tsym.complete();
duke@1 903 }
duke@1 904
duke@1 905 public TypeKind getKind() {
duke@1 906 return TypeKind.DECLARED;
duke@1 907 }
duke@1 908
duke@1 909 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 910 return v.visitDeclared(this, p);
duke@1 911 }
duke@1 912 }
duke@1 913
mcimadamore@30 914 public static class ErasedClassType extends ClassType {
mcimadamore@30 915 public ErasedClassType(Type outer, TypeSymbol tsym) {
mcimadamore@30 916 super(outer, List.<Type>nil(), tsym);
mcimadamore@30 917 }
mcimadamore@30 918
mcimadamore@30 919 @Override
mcimadamore@30 920 public boolean hasErasedSupertypes() {
mcimadamore@30 921 return true;
mcimadamore@30 922 }
mcimadamore@30 923 }
mcimadamore@30 924
jjg@988 925 // a clone of a ClassType that knows about the alternatives of a union type.
jjg@988 926 public static class UnionClassType extends ClassType implements UnionType {
jjg@988 927 final List<? extends Type> alternatives_field;
jjg@988 928
jjg@988 929 public UnionClassType(ClassType ct, List<? extends Type> alternatives) {
jjg@988 930 super(ct.outer_field, ct.typarams_field, ct.tsym);
jjg@988 931 allparams_field = ct.allparams_field;
jjg@988 932 supertype_field = ct.supertype_field;
jjg@988 933 interfaces_field = ct.interfaces_field;
jjg@988 934 all_interfaces_field = ct.interfaces_field;
jjg@988 935 alternatives_field = alternatives;
jjg@988 936 }
jjg@988 937
jjg@988 938 public Type getLub() {
jjg@988 939 return tsym.type;
jjg@988 940 }
jjg@988 941
jjg@988 942 public java.util.List<? extends TypeMirror> getAlternatives() {
jjg@988 943 return Collections.unmodifiableList(alternatives_field);
jjg@988 944 }
jjg@988 945
jjg@988 946 @Override
jjg@988 947 public TypeKind getKind() {
jjg@988 948 return TypeKind.UNION;
jjg@988 949 }
jjg@988 950
jjg@988 951 @Override
jjg@988 952 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
jjg@988 953 return v.visitUnion(this, p);
jjg@988 954 }
jjg@988 955 }
jjg@988 956
mcimadamore@1436 957 // a clone of a ClassType that knows about the bounds of an intersection type.
mcimadamore@1436 958 public static class IntersectionClassType extends ClassType implements IntersectionType {
mcimadamore@1436 959
mcimadamore@1436 960 public boolean allInterfaces;
mcimadamore@1436 961
mcimadamore@1436 962 public enum IntersectionKind {
mcimadamore@1436 963 EXPLICIT,
mcimadamore@1436 964 IMPLICT;
mcimadamore@1436 965 }
mcimadamore@1436 966
mcimadamore@1436 967 public IntersectionKind intersectionKind;
mcimadamore@1436 968
mcimadamore@1436 969 public IntersectionClassType(List<Type> bounds, ClassSymbol csym, boolean allInterfaces) {
mcimadamore@1436 970 super(Type.noType, List.<Type>nil(), csym);
mcimadamore@1436 971 this.allInterfaces = allInterfaces;
mcimadamore@1436 972 Assert.check((csym.flags() & COMPOUND) != 0);
mcimadamore@1436 973 supertype_field = bounds.head;
mcimadamore@1436 974 interfaces_field = bounds.tail;
mcimadamore@1436 975 Assert.check(supertype_field.tsym.completer != null ||
mcimadamore@1436 976 !supertype_field.isInterface(), supertype_field);
mcimadamore@1436 977 }
mcimadamore@1436 978
mcimadamore@1436 979 public java.util.List<? extends TypeMirror> getBounds() {
mcimadamore@1436 980 return Collections.unmodifiableList(getComponents());
mcimadamore@1436 981 }
mcimadamore@1436 982
mcimadamore@1436 983 public List<Type> getComponents() {
mcimadamore@1436 984 return interfaces_field.prepend(supertype_field);
mcimadamore@1436 985 }
mcimadamore@1436 986
mcimadamore@1678 987 public List<Type> getExplicitComponents() {
mcimadamore@1678 988 return allInterfaces ?
mcimadamore@1678 989 interfaces_field :
mcimadamore@1678 990 getComponents();
mcimadamore@1678 991 }
mcimadamore@1678 992
mcimadamore@1436 993 @Override
mcimadamore@1436 994 public TypeKind getKind() {
mcimadamore@1436 995 return TypeKind.INTERSECTION;
mcimadamore@1436 996 }
mcimadamore@1436 997
mcimadamore@1436 998 @Override
mcimadamore@1436 999 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
mcimadamore@1436 1000 return intersectionKind == IntersectionKind.EXPLICIT ?
mcimadamore@1436 1001 v.visitIntersection(this, p) :
mcimadamore@1436 1002 v.visitDeclared(this, p);
mcimadamore@1436 1003 }
mcimadamore@1436 1004 }
mcimadamore@1436 1005
duke@1 1006 public static class ArrayType extends Type
duke@1 1007 implements javax.lang.model.type.ArrayType {
duke@1 1008
duke@1 1009 public Type elemtype;
duke@1 1010
duke@1 1011 public ArrayType(Type elemtype, TypeSymbol arrayClass) {
vromero@1853 1012 super(arrayClass);
duke@1 1013 this.elemtype = elemtype;
duke@1 1014 }
duke@1 1015
duke@1 1016 @Override
vromero@1853 1017 public TypeTag getTag() {
vromero@1853 1018 return ARRAY;
vromero@1853 1019 }
vromero@1853 1020
duke@1 1021 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1022 return v.visitArrayType(this, s);
duke@1 1023 }
duke@1 1024
duke@1 1025 public String toString() {
duke@1 1026 return elemtype + "[]";
duke@1 1027 }
duke@1 1028
duke@1 1029 public boolean equals(Object obj) {
duke@1 1030 return
duke@1 1031 this == obj ||
duke@1 1032 (obj instanceof ArrayType &&
duke@1 1033 this.elemtype.equals(((ArrayType)obj).elemtype));
duke@1 1034 }
duke@1 1035
duke@1 1036 public int hashCode() {
jjg@1374 1037 return (ARRAY.ordinal() << 5) + elemtype.hashCode();
duke@1 1038 }
duke@1 1039
mcimadamore@795 1040 public boolean isVarargs() {
mcimadamore@795 1041 return false;
mcimadamore@795 1042 }
mcimadamore@795 1043
duke@1 1044 public List<Type> allparams() { return elemtype.allparams(); }
duke@1 1045
duke@1 1046 public boolean isErroneous() {
duke@1 1047 return elemtype.isErroneous();
duke@1 1048 }
duke@1 1049
duke@1 1050 public boolean isParameterized() {
duke@1 1051 return elemtype.isParameterized();
duke@1 1052 }
duke@1 1053
vromero@1853 1054 @Override
vromero@1853 1055 public boolean isReference() {
vromero@1853 1056 return true;
vromero@1853 1057 }
vromero@1853 1058
vromero@1853 1059 @Override
vromero@1853 1060 public boolean isNullOrReference() {
vromero@1853 1061 return true;
vromero@1853 1062 }
vromero@1853 1063
duke@1 1064 public boolean isRaw() {
duke@1 1065 return elemtype.isRaw();
duke@1 1066 }
duke@1 1067
mcimadamore@795 1068 public ArrayType makeVarargs() {
mcimadamore@795 1069 return new ArrayType(elemtype, tsym) {
mcimadamore@795 1070 @Override
mcimadamore@795 1071 public boolean isVarargs() {
mcimadamore@795 1072 return true;
mcimadamore@795 1073 }
mcimadamore@795 1074 };
mcimadamore@795 1075 }
mcimadamore@795 1076
duke@1 1077 public Type map(Mapping f) {
duke@1 1078 Type elemtype1 = f.apply(elemtype);
duke@1 1079 if (elemtype1 == elemtype) return this;
duke@1 1080 else return new ArrayType(elemtype1, tsym);
duke@1 1081 }
duke@1 1082
duke@1 1083 public boolean contains(Type elem) {
duke@1 1084 return elem == this || elemtype.contains(elem);
duke@1 1085 }
duke@1 1086
duke@1 1087 public void complete() {
duke@1 1088 elemtype.complete();
duke@1 1089 }
duke@1 1090
duke@1 1091 public Type getComponentType() {
duke@1 1092 return elemtype;
duke@1 1093 }
duke@1 1094
duke@1 1095 public TypeKind getKind() {
duke@1 1096 return TypeKind.ARRAY;
duke@1 1097 }
duke@1 1098
duke@1 1099 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1100 return v.visitArray(this, p);
duke@1 1101 }
duke@1 1102 }
duke@1 1103
dlsmith@880 1104 public static class MethodType extends Type implements ExecutableType {
duke@1 1105
duke@1 1106 public List<Type> argtypes;
duke@1 1107 public Type restype;
duke@1 1108 public List<Type> thrown;
duke@1 1109
jjg@1521 1110 /** The type annotations on the method receiver.
jjg@1521 1111 */
jjg@1521 1112 public Type recvtype;
jjg@1521 1113
duke@1 1114 public MethodType(List<Type> argtypes,
duke@1 1115 Type restype,
duke@1 1116 List<Type> thrown,
duke@1 1117 TypeSymbol methodClass) {
vromero@1853 1118 super(methodClass);
duke@1 1119 this.argtypes = argtypes;
duke@1 1120 this.restype = restype;
duke@1 1121 this.thrown = thrown;
duke@1 1122 }
duke@1 1123
duke@1 1124 @Override
vromero@1853 1125 public TypeTag getTag() {
vromero@1853 1126 return METHOD;
vromero@1853 1127 }
vromero@1853 1128
duke@1 1129 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1130 return v.visitMethodType(this, s);
duke@1 1131 }
duke@1 1132
duke@1 1133 /** The Java source which this type represents.
duke@1 1134 *
duke@1 1135 * XXX 06/09/99 iris This isn't correct Java syntax, but it probably
duke@1 1136 * should be.
duke@1 1137 */
duke@1 1138 public String toString() {
duke@1 1139 return "(" + argtypes + ")" + restype;
duke@1 1140 }
duke@1 1141
duke@1 1142 public List<Type> getParameterTypes() { return argtypes; }
duke@1 1143 public Type getReturnType() { return restype; }
jjg@1521 1144 public Type getReceiverType() { return recvtype; }
duke@1 1145 public List<Type> getThrownTypes() { return thrown; }
duke@1 1146
duke@1 1147 public boolean isErroneous() {
duke@1 1148 return
duke@1 1149 isErroneous(argtypes) ||
duke@1 1150 restype != null && restype.isErroneous();
duke@1 1151 }
duke@1 1152
duke@1 1153 public Type map(Mapping f) {
duke@1 1154 List<Type> argtypes1 = map(argtypes, f);
duke@1 1155 Type restype1 = f.apply(restype);
duke@1 1156 List<Type> thrown1 = map(thrown, f);
duke@1 1157 if (argtypes1 == argtypes &&
duke@1 1158 restype1 == restype &&
duke@1 1159 thrown1 == thrown) return this;
duke@1 1160 else return new MethodType(argtypes1, restype1, thrown1, tsym);
duke@1 1161 }
duke@1 1162
duke@1 1163 public boolean contains(Type elem) {
duke@1 1164 return elem == this || contains(argtypes, elem) || restype.contains(elem);
duke@1 1165 }
duke@1 1166
duke@1 1167 public MethodType asMethodType() { return this; }
duke@1 1168
duke@1 1169 public void complete() {
duke@1 1170 for (List<Type> l = argtypes; l.nonEmpty(); l = l.tail)
duke@1 1171 l.head.complete();
duke@1 1172 restype.complete();
jjg@1521 1173 recvtype.complete();
duke@1 1174 for (List<Type> l = thrown; l.nonEmpty(); l = l.tail)
duke@1 1175 l.head.complete();
duke@1 1176 }
duke@1 1177
duke@1 1178 public List<TypeVar> getTypeVariables() {
duke@1 1179 return List.nil();
duke@1 1180 }
duke@1 1181
duke@1 1182 public TypeSymbol asElement() {
duke@1 1183 return null;
duke@1 1184 }
duke@1 1185
duke@1 1186 public TypeKind getKind() {
duke@1 1187 return TypeKind.EXECUTABLE;
duke@1 1188 }
duke@1 1189
duke@1 1190 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1191 return v.visitExecutable(this, p);
duke@1 1192 }
duke@1 1193 }
duke@1 1194
duke@1 1195 public static class PackageType extends Type implements NoType {
duke@1 1196
duke@1 1197 PackageType(TypeSymbol tsym) {
vromero@1853 1198 super(tsym);
vromero@1853 1199 }
vromero@1853 1200
vromero@1853 1201 @Override
vromero@1853 1202 public TypeTag getTag() {
vromero@1853 1203 return PACKAGE;
duke@1 1204 }
duke@1 1205
duke@1 1206 @Override
duke@1 1207 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1208 return v.visitPackageType(this, s);
duke@1 1209 }
duke@1 1210
duke@1 1211 public String toString() {
duke@1 1212 return tsym.getQualifiedName().toString();
duke@1 1213 }
duke@1 1214
duke@1 1215 public TypeKind getKind() {
duke@1 1216 return TypeKind.PACKAGE;
duke@1 1217 }
duke@1 1218
duke@1 1219 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1220 return v.visitNoType(this, p);
duke@1 1221 }
duke@1 1222 }
duke@1 1223
duke@1 1224 public static class TypeVar extends Type implements TypeVariable {
duke@1 1225
jjg@789 1226 /** The upper bound of this type variable; set from outside.
duke@1 1227 * Must be nonempty once it is set.
duke@1 1228 * For a bound, `bound' is the bound type itself.
duke@1 1229 * Multiple bounds are expressed as a single class type which has the
duke@1 1230 * individual bounds as superclass, respectively interfaces.
duke@1 1231 * The class type then has as `tsym' a compiler generated class `c',
duke@1 1232 * which has a flag COMPOUND and whose owner is the type variable
duke@1 1233 * itself. Furthermore, the erasure_field of the class
duke@1 1234 * points to the first class or interface bound.
duke@1 1235 */
duke@1 1236 public Type bound = null;
jjg@789 1237
jjg@789 1238 /** The lower bound of this type variable.
jjg@789 1239 * TypeVars don't normally have a lower bound, so it is normally set
jjg@789 1240 * to syms.botType.
jjg@789 1241 * Subtypes, such as CapturedType, may provide a different value.
jjg@789 1242 */
duke@1 1243 public Type lower;
duke@1 1244
duke@1 1245 public TypeVar(Name name, Symbol owner, Type lower) {
vromero@1853 1246 super(null);
jfranck@1689 1247 tsym = new TypeVariableSymbol(0, name, this, owner);
duke@1 1248 this.lower = lower;
duke@1 1249 }
duke@1 1250
duke@1 1251 public TypeVar(TypeSymbol tsym, Type bound, Type lower) {
vromero@1853 1252 super(tsym);
duke@1 1253 this.bound = bound;
duke@1 1254 this.lower = lower;
duke@1 1255 }
duke@1 1256
duke@1 1257 @Override
vromero@1853 1258 public TypeTag getTag() {
vromero@1853 1259 return TYPEVAR;
vromero@1853 1260 }
vromero@1853 1261
vromero@1853 1262 @Override
duke@1 1263 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1264 return v.visitTypeVar(this, s);
duke@1 1265 }
duke@1 1266
jjg@789 1267 @Override
jjg@1521 1268 public Type getUpperBound() {
vromero@1853 1269 if ((bound == null || bound.hasTag(NONE)) && this != tsym.type) {
jjg@1521 1270 bound = tsym.type.getUpperBound();
vromero@1853 1271 }
jjg@1521 1272 return bound;
jjg@1521 1273 }
duke@1 1274
duke@1 1275 int rank_field = -1;
duke@1 1276
jjg@789 1277 @Override
duke@1 1278 public Type getLowerBound() {
duke@1 1279 return lower;
duke@1 1280 }
duke@1 1281
duke@1 1282 public TypeKind getKind() {
duke@1 1283 return TypeKind.TYPEVAR;
duke@1 1284 }
duke@1 1285
mcimadamore@79 1286 public boolean isCaptured() {
mcimadamore@79 1287 return false;
mcimadamore@79 1288 }
mcimadamore@79 1289
vromero@1853 1290 @Override
vromero@1853 1291 public boolean isReference() {
vromero@1853 1292 return true;
vromero@1853 1293 }
vromero@1853 1294
vromero@1853 1295 @Override
vromero@1853 1296 public boolean isNullOrReference() {
vromero@1853 1297 return true;
vromero@1853 1298 }
vromero@1853 1299
vromero@1853 1300 @Override
duke@1 1301 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1302 return v.visitTypeVariable(this, p);
duke@1 1303 }
duke@1 1304 }
duke@1 1305
duke@1 1306 /** A captured type variable comes from wildcards which can have
duke@1 1307 * both upper and lower bound. CapturedType extends TypeVar with
duke@1 1308 * a lower bound.
duke@1 1309 */
duke@1 1310 public static class CapturedType extends TypeVar {
duke@1 1311
duke@1 1312 public WildcardType wildcard;
duke@1 1313
duke@1 1314 public CapturedType(Name name,
duke@1 1315 Symbol owner,
duke@1 1316 Type upper,
duke@1 1317 Type lower,
duke@1 1318 WildcardType wildcard) {
duke@1 1319 super(name, owner, lower);
jjg@816 1320 this.lower = Assert.checkNonNull(lower);
duke@1 1321 this.bound = upper;
duke@1 1322 this.wildcard = wildcard;
duke@1 1323 }
duke@1 1324
duke@1 1325 @Override
duke@1 1326 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1327 return v.visitCapturedType(this, s);
duke@1 1328 }
duke@1 1329
duke@1 1330 @Override
mcimadamore@79 1331 public boolean isCaptured() {
mcimadamore@79 1332 return true;
mcimadamore@79 1333 }
mcimadamore@79 1334
mcimadamore@79 1335 @Override
duke@1 1336 public String toString() {
duke@1 1337 return "capture#"
mcimadamore@288 1338 + (hashCode() & 0xFFFFFFFFL) % Printer.PRIME
duke@1 1339 + " of "
duke@1 1340 + wildcard;
duke@1 1341 }
duke@1 1342 }
duke@1 1343
duke@1 1344 public static abstract class DelegatedType extends Type {
duke@1 1345 public Type qtype;
vromero@1853 1346 public TypeTag tag;
jjg@1374 1347 public DelegatedType(TypeTag tag, Type qtype) {
vromero@1853 1348 super(qtype.tsym);
vromero@1853 1349 this.tag = tag;
duke@1 1350 this.qtype = qtype;
duke@1 1351 }
vromero@1853 1352 public TypeTag getTag() { return tag; }
duke@1 1353 public String toString() { return qtype.toString(); }
duke@1 1354 public List<Type> getTypeArguments() { return qtype.getTypeArguments(); }
duke@1 1355 public Type getEnclosingType() { return qtype.getEnclosingType(); }
duke@1 1356 public List<Type> getParameterTypes() { return qtype.getParameterTypes(); }
duke@1 1357 public Type getReturnType() { return qtype.getReturnType(); }
jjg@1521 1358 public Type getReceiverType() { return qtype.getReceiverType(); }
duke@1 1359 public List<Type> getThrownTypes() { return qtype.getThrownTypes(); }
duke@1 1360 public List<Type> allparams() { return qtype.allparams(); }
duke@1 1361 public Type getUpperBound() { return qtype.getUpperBound(); }
duke@1 1362 public boolean isErroneous() { return qtype.isErroneous(); }
duke@1 1363 }
duke@1 1364
mcimadamore@1268 1365 /**
mcimadamore@1268 1366 * The type of a generic method type. It consists of a method type and
mcimadamore@1268 1367 * a list of method type-parameters that are used within the method
mcimadamore@1268 1368 * type.
mcimadamore@1268 1369 */
dlsmith@880 1370 public static class ForAll extends DelegatedType implements ExecutableType {
duke@1 1371 public List<Type> tvars;
duke@1 1372
duke@1 1373 public ForAll(List<Type> tvars, Type qtype) {
mcimadamore@1268 1374 super(FORALL, (MethodType)qtype);
duke@1 1375 this.tvars = tvars;
duke@1 1376 }
duke@1 1377
duke@1 1378 @Override
duke@1 1379 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1380 return v.visitForAll(this, s);
duke@1 1381 }
duke@1 1382
duke@1 1383 public String toString() {
duke@1 1384 return "<" + tvars + ">" + qtype;
duke@1 1385 }
duke@1 1386
duke@1 1387 public List<Type> getTypeArguments() { return tvars; }
duke@1 1388
duke@1 1389 public boolean isErroneous() {
duke@1 1390 return qtype.isErroneous();
duke@1 1391 }
duke@1 1392
duke@1 1393 public Type map(Mapping f) {
duke@1 1394 return f.apply(qtype);
duke@1 1395 }
duke@1 1396
duke@1 1397 public boolean contains(Type elem) {
duke@1 1398 return qtype.contains(elem);
duke@1 1399 }
duke@1 1400
duke@1 1401 public MethodType asMethodType() {
mcimadamore@1268 1402 return (MethodType)qtype;
duke@1 1403 }
duke@1 1404
duke@1 1405 public void complete() {
duke@1 1406 for (List<Type> l = tvars; l.nonEmpty(); l = l.tail) {
duke@1 1407 ((TypeVar)l.head).bound.complete();
duke@1 1408 }
duke@1 1409 qtype.complete();
duke@1 1410 }
duke@1 1411
duke@1 1412 public List<TypeVar> getTypeVariables() {
duke@1 1413 return List.convert(TypeVar.class, getTypeArguments());
duke@1 1414 }
duke@1 1415
duke@1 1416 public TypeKind getKind() {
duke@1 1417 return TypeKind.EXECUTABLE;
duke@1 1418 }
duke@1 1419
duke@1 1420 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1421 return v.visitExecutable(this, p);
duke@1 1422 }
duke@1 1423 }
duke@1 1424
mcimadamore@1338 1425 /** A class for inference variables, for use during method/diamond type
mcimadamore@1338 1426 * inference. An inference variable has upper/lower bounds and a set
mcimadamore@1338 1427 * of equality constraints. Such bounds are set during subtyping, type-containment,
mcimadamore@1338 1428 * type-equality checks, when the types being tested contain inference variables.
mcimadamore@1338 1429 * A change listener can be attached to an inference variable, to receive notifications
mcimadamore@1338 1430 * whenever the bounds of an inference variable change.
duke@1 1431 */
duke@1 1432 public static class UndetVar extends DelegatedType {
mcimadamore@1338 1433
mcimadamore@1338 1434 /** Inference variable change listener. The listener method is called
mcimadamore@1338 1435 * whenever a change to the inference variable's bounds occurs
mcimadamore@1338 1436 */
mcimadamore@1338 1437 public interface UndetVarListener {
mcimadamore@1338 1438 /** called when some inference variable bounds (of given kinds ibs) change */
mcimadamore@1338 1439 void varChanged(UndetVar uv, Set<InferenceBound> ibs);
mcimadamore@1338 1440 }
mcimadamore@1338 1441
mcimadamore@1338 1442 /**
mcimadamore@1338 1443 * Inference variable bound kinds
mcimadamore@1338 1444 */
mcimadamore@1338 1445 public enum InferenceBound {
mcimadamore@1338 1446 /** upper bounds */
mcimadamore@1338 1447 UPPER,
mcimadamore@1338 1448 /** lower bounds */
mcimadamore@1338 1449 LOWER,
mcimadamore@1338 1450 /** equality constraints */
mcimadamore@1338 1451 EQ;
mcimadamore@1338 1452 }
mcimadamore@1338 1453
mcimadamore@1338 1454 /** inference variable bounds */
mcimadamore@1898 1455 protected Map<InferenceBound, List<Type>> bounds;
mcimadamore@1338 1456
mcimadamore@1338 1457 /** inference variable's inferred type (set from Infer.java) */
duke@1 1458 public Type inst = null;
duke@1 1459
mcimadamore@1550 1460 /** number of declared (upper) bounds */
mcimadamore@1550 1461 public int declaredCount;
mcimadamore@1550 1462
mcimadamore@1338 1463 /** inference variable's change listener */
mcimadamore@1338 1464 public UndetVarListener listener = null;
mcimadamore@1338 1465
duke@1 1466 @Override
duke@1 1467 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1468 return v.visitUndetVar(this, s);
duke@1 1469 }
duke@1 1470
mcimadamore@1338 1471 public UndetVar(TypeVar origin, Types types) {
duke@1 1472 super(UNDETVAR, origin);
mcimadamore@1338 1473 bounds = new EnumMap<InferenceBound, List<Type>>(InferenceBound.class);
mcimadamore@1550 1474 List<Type> declaredBounds = types.getBounds(origin);
mcimadamore@1550 1475 declaredCount = declaredBounds.length();
mcimadamore@1550 1476 bounds.put(InferenceBound.UPPER, declaredBounds);
mcimadamore@1338 1477 bounds.put(InferenceBound.LOWER, List.<Type>nil());
mcimadamore@1338 1478 bounds.put(InferenceBound.EQ, List.<Type>nil());
duke@1 1479 }
duke@1 1480
duke@1 1481 public String toString() {
duke@1 1482 if (inst != null) return inst.toString();
duke@1 1483 else return qtype + "?";
duke@1 1484 }
duke@1 1485
vromero@1853 1486 @Override
vromero@1853 1487 public boolean isPartial() {
vromero@1853 1488 return true;
vromero@1853 1489 }
vromero@1853 1490
vromero@1853 1491 @Override
duke@1 1492 public Type baseType() {
duke@1 1493 if (inst != null) return inst.baseType();
duke@1 1494 else return this;
duke@1 1495 }
mcimadamore@1338 1496
mcimadamore@1338 1497 /** get all bounds of a given kind */
mcimadamore@1550 1498 public List<Type> getBounds(InferenceBound... ibs) {
mcimadamore@1550 1499 ListBuffer<Type> buf = ListBuffer.lb();
mcimadamore@1550 1500 for (InferenceBound ib : ibs) {
mcimadamore@1550 1501 buf.appendList(bounds.get(ib));
mcimadamore@1550 1502 }
mcimadamore@1550 1503 return buf.toList();
mcimadamore@1550 1504 }
mcimadamore@1550 1505
mcimadamore@1550 1506 /** get the list of declared (upper) bounds */
mcimadamore@1550 1507 public List<Type> getDeclaredBounds() {
mcimadamore@1550 1508 ListBuffer<Type> buf = ListBuffer.lb();
mcimadamore@1550 1509 int count = 0;
mcimadamore@1550 1510 for (Type b : getBounds(InferenceBound.UPPER)) {
mcimadamore@1550 1511 if (count++ == declaredCount) break;
mcimadamore@1550 1512 buf.append(b);
mcimadamore@1550 1513 }
mcimadamore@1550 1514 return buf.toList();
mcimadamore@1338 1515 }
mcimadamore@1338 1516
mcimadamore@1891 1517 /** internal method used to override an undetvar bounds */
mcimadamore@1891 1518 public void setBounds(InferenceBound ib, List<Type> newBounds) {
mcimadamore@1891 1519 bounds.put(ib, newBounds);
mcimadamore@1891 1520 }
mcimadamore@1891 1521
mcimadamore@1338 1522 /** add a bound of a given kind - this might trigger listener notification */
mcimadamore@1898 1523 public final void addBound(InferenceBound ib, Type bound, Types types) {
mcimadamore@1898 1524 addBound(ib, bound, types, false);
mcimadamore@1898 1525 }
mcimadamore@1898 1526
mcimadamore@1898 1527 protected void addBound(InferenceBound ib, Type bound, Types types, boolean update) {
mcimadamore@1905 1528 Type bound2 = toTypeVarMap.apply(bound);
mcimadamore@1338 1529 List<Type> prevBounds = bounds.get(ib);
mcimadamore@1338 1530 for (Type b : prevBounds) {
mcimadamore@1550 1531 //check for redundancy - use strict version of isSameType on tvars
mcimadamore@1550 1532 //(as the standard version will lead to false positives w.r.t. clones ivars)
mcimadamore@1628 1533 if (types.isSameType(b, bound2, true) || bound == qtype) return;
mcimadamore@1338 1534 }
mcimadamore@1550 1535 bounds.put(ib, prevBounds.prepend(bound2));
mcimadamore@1338 1536 notifyChange(EnumSet.of(ib));
mcimadamore@1338 1537 }
mcimadamore@1550 1538 //where
mcimadamore@1905 1539 Type.Mapping toTypeVarMap = new Mapping("toTypeVarMap") {
mcimadamore@1550 1540 @Override
mcimadamore@1550 1541 public Type apply(Type t) {
mcimadamore@1550 1542 if (t.hasTag(UNDETVAR)) {
mcimadamore@1550 1543 UndetVar uv = (UndetVar)t;
mcimadamore@1891 1544 return uv.inst != null ? uv.inst : uv.qtype;
mcimadamore@1550 1545 } else {
mcimadamore@1550 1546 return t.map(this);
mcimadamore@1550 1547 }
mcimadamore@1550 1548 }
mcimadamore@1550 1549 };
mcimadamore@1338 1550
mcimadamore@1338 1551 /** replace types in all bounds - this might trigger listener notification */
mcimadamore@1338 1552 public void substBounds(List<Type> from, List<Type> to, Types types) {
mcimadamore@1550 1553 List<Type> instVars = from.diff(to);
mcimadamore@1550 1554 //if set of instantiated ivars is empty, there's nothing to do!
mcimadamore@1550 1555 if (instVars.isEmpty()) return;
mcimadamore@1550 1556 final EnumSet<InferenceBound> boundsChanged = EnumSet.noneOf(InferenceBound.class);
mcimadamore@1550 1557 UndetVarListener prevListener = listener;
mcimadamore@1550 1558 try {
mcimadamore@1550 1559 //setup new listener for keeping track of changed bounds
mcimadamore@1550 1560 listener = new UndetVarListener() {
mcimadamore@1550 1561 public void varChanged(UndetVar uv, Set<InferenceBound> ibs) {
mcimadamore@1550 1562 boundsChanged.addAll(ibs);
mcimadamore@1550 1563 }
mcimadamore@1550 1564 };
mcimadamore@1550 1565 for (Map.Entry<InferenceBound, List<Type>> _entry : bounds.entrySet()) {
mcimadamore@1550 1566 InferenceBound ib = _entry.getKey();
mcimadamore@1550 1567 List<Type> prevBounds = _entry.getValue();
mcimadamore@1550 1568 ListBuffer<Type> newBounds = ListBuffer.lb();
mcimadamore@1550 1569 ListBuffer<Type> deps = ListBuffer.lb();
mcimadamore@1550 1570 //step 1 - re-add bounds that are not dependent on ivars
mcimadamore@1550 1571 for (Type t : prevBounds) {
mcimadamore@1550 1572 if (!t.containsAny(instVars)) {
mcimadamore@1550 1573 newBounds.append(t);
mcimadamore@1550 1574 } else {
mcimadamore@1550 1575 deps.append(t);
mcimadamore@1550 1576 }
mcimadamore@1550 1577 }
mcimadamore@1550 1578 //step 2 - replace bounds
mcimadamore@1550 1579 bounds.put(ib, newBounds.toList());
mcimadamore@1550 1580 //step 3 - for each dependency, add new replaced bound
mcimadamore@1550 1581 for (Type dep : deps) {
mcimadamore@1898 1582 addBound(ib, types.subst(dep, from, to), types, true);
mcimadamore@1550 1583 }
mcimadamore@1338 1584 }
mcimadamore@1550 1585 } finally {
mcimadamore@1550 1586 listener = prevListener;
mcimadamore@1550 1587 if (!boundsChanged.isEmpty()) {
mcimadamore@1550 1588 notifyChange(boundsChanged);
mcimadamore@1550 1589 }
mcimadamore@1338 1590 }
mcimadamore@1338 1591 }
mcimadamore@1338 1592
mcimadamore@1338 1593 private void notifyChange(EnumSet<InferenceBound> ibs) {
mcimadamore@1338 1594 if (listener != null) {
mcimadamore@1338 1595 listener.varChanged(this, ibs);
mcimadamore@1338 1596 }
mcimadamore@1338 1597 }
mcimadamore@1898 1598
mcimadamore@1898 1599 public boolean isCaptured() {
mcimadamore@1898 1600 return false;
mcimadamore@1898 1601 }
mcimadamore@1898 1602 }
mcimadamore@1898 1603
mcimadamore@1898 1604 /**
mcimadamore@1898 1605 * This class is used to represent synthetic captured inference variables
mcimadamore@1898 1606 * that can be generated during nested generic method calls. The only difference
mcimadamore@1898 1607 * between these inference variables and ordinary ones is that captured inference
mcimadamore@1898 1608 * variables cannot get new bounds through incorporation.
mcimadamore@1898 1609 */
mcimadamore@1898 1610 public static class CapturedUndetVar extends UndetVar {
mcimadamore@1898 1611
mcimadamore@1898 1612 public CapturedUndetVar(CapturedType origin, Types types) {
mcimadamore@1898 1613 super(origin, types);
mcimadamore@1898 1614 if (!origin.lower.hasTag(BOT)) {
mcimadamore@1898 1615 bounds.put(InferenceBound.LOWER, List.of(origin.lower));
mcimadamore@1898 1616 }
mcimadamore@1898 1617 }
mcimadamore@1898 1618
mcimadamore@1898 1619 @Override
mcimadamore@1898 1620 public void addBound(InferenceBound ib, Type bound, Types types, boolean update) {
mcimadamore@1898 1621 if (update) {
mcimadamore@1898 1622 //only change bounds if request comes from substBounds
mcimadamore@1898 1623 super.addBound(ib, bound, types, update);
mcimadamore@1898 1624 }
mcimadamore@1898 1625 }
mcimadamore@1898 1626
mcimadamore@1898 1627 @Override
mcimadamore@1898 1628 public boolean isCaptured() {
mcimadamore@1898 1629 return true;
mcimadamore@1898 1630 }
duke@1 1631 }
duke@1 1632
vromero@1853 1633 /** Represents NONE.
duke@1 1634 */
vromero@1853 1635 public static class JCNoType extends Type implements NoType {
vromero@1853 1636 public JCNoType() {
vromero@1853 1637 super(null);
vromero@1853 1638 }
vromero@1853 1639
vromero@1853 1640 @Override
vromero@1853 1641 public TypeTag getTag() {
vromero@1853 1642 return NONE;
duke@1 1643 }
duke@1 1644
duke@1 1645 @Override
duke@1 1646 public TypeKind getKind() {
vromero@1853 1647 return TypeKind.NONE;
duke@1 1648 }
duke@1 1649
duke@1 1650 @Override
duke@1 1651 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1652 return v.visitNoType(this, p);
duke@1 1653 }
duke@1 1654 }
duke@1 1655
vromero@1853 1656 /** Represents VOID.
vromero@1853 1657 */
vromero@1853 1658 public static class JCVoidType extends Type implements NoType {
vromero@1853 1659
vromero@1853 1660 public JCVoidType() {
vromero@1853 1661 super(null);
vromero@1853 1662 }
vromero@1853 1663
vromero@1853 1664 @Override
vromero@1853 1665 public TypeTag getTag() {
vromero@1853 1666 return VOID;
vromero@1853 1667 }
vromero@1853 1668
vromero@1853 1669 @Override
vromero@1853 1670 public TypeKind getKind() {
vromero@1853 1671 return TypeKind.VOID;
vromero@1853 1672 }
vromero@1853 1673
vromero@1853 1674 @Override
vromero@1853 1675 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
vromero@1853 1676 return v.visitNoType(this, p);
vromero@1853 1677 }
vromero@1853 1678
vromero@1853 1679 @Override
vromero@1853 1680 public boolean isPrimitiveOrVoid() {
vromero@1853 1681 return true;
vromero@1853 1682 }
vromero@1853 1683 }
vromero@1853 1684
duke@1 1685 static class BottomType extends Type implements NullType {
duke@1 1686 public BottomType() {
vromero@1853 1687 super(null);
vromero@1853 1688 }
vromero@1853 1689
vromero@1853 1690 @Override
vromero@1853 1691 public TypeTag getTag() {
vromero@1853 1692 return BOT;
duke@1 1693 }
duke@1 1694
duke@1 1695 @Override
duke@1 1696 public TypeKind getKind() {
duke@1 1697 return TypeKind.NULL;
duke@1 1698 }
duke@1 1699
duke@1 1700 @Override
duke@1 1701 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1702 return v.visitNull(this, p);
duke@1 1703 }
duke@1 1704
duke@1 1705 @Override
duke@1 1706 public Type constType(Object value) {
duke@1 1707 return this;
duke@1 1708 }
duke@1 1709
duke@1 1710 @Override
duke@1 1711 public String stringValue() {
duke@1 1712 return "null";
duke@1 1713 }
vromero@1853 1714
vromero@1853 1715 @Override
vromero@1853 1716 public boolean isNullOrReference() {
vromero@1853 1717 return true;
vromero@1853 1718 }
vromero@1853 1719
duke@1 1720 }
duke@1 1721
duke@1 1722 public static class ErrorType extends ClassType
duke@1 1723 implements javax.lang.model.type.ErrorType {
duke@1 1724
jjg@110 1725 private Type originalType = null;
jjg@110 1726
jjg@110 1727 public ErrorType(Type originalType, TypeSymbol tsym) {
duke@1 1728 super(noType, List.<Type>nil(), null);
jjg@110 1729 this.tsym = tsym;
jjg@110 1730 this.originalType = (originalType == null ? noType : originalType);
duke@1 1731 }
duke@1 1732
jjg@110 1733 public ErrorType(ClassSymbol c, Type originalType) {
jjg@110 1734 this(originalType, c);
duke@1 1735 c.type = this;
duke@1 1736 c.kind = ERR;
duke@1 1737 c.members_field = new Scope.ErrorScope(c);
duke@1 1738 }
duke@1 1739
vromero@1853 1740 @Override
vromero@1853 1741 public TypeTag getTag() {
vromero@1853 1742 return ERROR;
vromero@1853 1743 }
vromero@1853 1744
vromero@1853 1745 @Override
vromero@1853 1746 public boolean isPartial() {
vromero@1853 1747 return true;
vromero@1853 1748 }
vromero@1853 1749
vromero@1853 1750 @Override
vromero@1853 1751 public boolean isReference() {
vromero@1853 1752 return true;
vromero@1853 1753 }
vromero@1853 1754
vromero@1853 1755 @Override
vromero@1853 1756 public boolean isNullOrReference() {
vromero@1853 1757 return true;
vromero@1853 1758 }
vromero@1853 1759
jjg@110 1760 public ErrorType(Name name, TypeSymbol container, Type originalType) {
jjg@110 1761 this(new ClassSymbol(PUBLIC|STATIC|ACYCLIC, name, null, container), originalType);
duke@1 1762 }
duke@1 1763
duke@1 1764 @Override
duke@1 1765 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
duke@1 1766 return v.visitErrorType(this, s);
duke@1 1767 }
duke@1 1768
duke@1 1769 public Type constType(Object constValue) { return this; }
jjg@1521 1770 public Type getEnclosingType() { return this; }
duke@1 1771 public Type getReturnType() { return this; }
duke@1 1772 public Type asSub(Symbol sym) { return this; }
duke@1 1773 public Type map(Mapping f) { return this; }
duke@1 1774
duke@1 1775 public boolean isGenType(Type t) { return true; }
duke@1 1776 public boolean isErroneous() { return true; }
duke@1 1777 public boolean isCompound() { return false; }
duke@1 1778 public boolean isInterface() { return false; }
duke@1 1779
duke@1 1780 public List<Type> allparams() { return List.nil(); }
duke@1 1781 public List<Type> getTypeArguments() { return List.nil(); }
duke@1 1782
duke@1 1783 public TypeKind getKind() {
duke@1 1784 return TypeKind.ERROR;
duke@1 1785 }
duke@1 1786
jjg@110 1787 public Type getOriginalType() {
jjg@110 1788 return originalType;
jjg@110 1789 }
jjg@110 1790
duke@1 1791 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
duke@1 1792 return v.visitError(this, p);
duke@1 1793 }
duke@1 1794 }
duke@1 1795
jjg@1521 1796 public static class AnnotatedType extends Type
jjg@1644 1797 implements
jjg@1644 1798 javax.lang.model.type.ArrayType,
jjg@1644 1799 javax.lang.model.type.DeclaredType,
jjg@1644 1800 javax.lang.model.type.PrimitiveType,
jjg@1644 1801 javax.lang.model.type.TypeVariable,
jjg@1644 1802 javax.lang.model.type.WildcardType {
jjg@1521 1803 /** The type annotations on this type.
jjg@1521 1804 */
jjg@1521 1805 public List<Attribute.TypeCompound> typeAnnotations;
jjg@1521 1806
jjg@1521 1807 /** The underlying type that is annotated.
jjg@1521 1808 */
jjg@1521 1809 public Type underlyingType;
jjg@1521 1810
jjg@1521 1811 public AnnotatedType(Type underlyingType) {
vromero@1853 1812 super(underlyingType.tsym);
jjg@1521 1813 this.typeAnnotations = List.nil();
jjg@1521 1814 this.underlyingType = underlyingType;
jjg@1644 1815 Assert.check(!underlyingType.isAnnotated(),
jjg@1521 1816 "Can't annotate already annotated type: " + underlyingType);
jjg@1521 1817 }
jjg@1521 1818
jjg@1521 1819 public AnnotatedType(List<Attribute.TypeCompound> typeAnnotations,
jjg@1521 1820 Type underlyingType) {
vromero@1853 1821 super(underlyingType.tsym);
jjg@1521 1822 this.typeAnnotations = typeAnnotations;
jjg@1521 1823 this.underlyingType = underlyingType;
jjg@1644 1824 Assert.check(!underlyingType.isAnnotated(),
jjg@1521 1825 "Can't annotate already annotated type: " + underlyingType +
jjg@1521 1826 "; adding: " + typeAnnotations);
jjg@1521 1827 }
jjg@1521 1828
jjg@1521 1829 @Override
vromero@1853 1830 public TypeTag getTag() {
vromero@1853 1831 return underlyingType.getTag();
vromero@1853 1832 }
vromero@1853 1833
vromero@1853 1834 @Override
jjg@1644 1835 public boolean isAnnotated() {
jjg@1644 1836 return true;
jjg@1644 1837 }
jjg@1644 1838
jjg@1644 1839 @Override
jjg@1645 1840 public List<? extends Attribute.TypeCompound> getAnnotationMirrors() {
jjg@1645 1841 return typeAnnotations;
jjg@1521 1842 }
jjg@1521 1843
jjg@1521 1844 @Override
jjg@1645 1845 public <A extends Annotation> A getAnnotation(Class<A> annotationType) {
jjg@1645 1846 return JavacAnnoConstructs.getAnnotation(this, annotationType);
jjg@1645 1847 }
jjg@1645 1848
jjg@1645 1849 @Override
jjg@1645 1850 public <A extends Annotation> A[] getAnnotationsByType(Class<A> annotationType) {
jjg@1645 1851 return JavacAnnoConstructs.getAnnotationsByType(this, annotationType);
jjg@1645 1852 }
jjg@1645 1853
jjg@1645 1854 @Override
jjg@1645 1855 public TypeKind getKind() {
jjg@1645 1856 return underlyingType.getKind();
jjg@1521 1857 }
jjg@1521 1858
jjg@1521 1859 @Override
jjg@1521 1860 public Type unannotatedType() {
jjg@1521 1861 return underlyingType;
jjg@1521 1862 }
jjg@1521 1863
jjg@1521 1864 @Override
jjg@1521 1865 public <R,S> R accept(Type.Visitor<R,S> v, S s) {
jjg@1521 1866 return v.visitAnnotatedType(this, s);
jjg@1521 1867 }
jjg@1521 1868
jjg@1521 1869 @Override
jjg@1521 1870 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
jjg@1644 1871 return underlyingType.accept(v, p);
jjg@1521 1872 }
jjg@1521 1873
jjg@1521 1874 @Override
jjg@1521 1875 public Type map(Mapping f) {
jjg@1521 1876 underlyingType.map(f);
jjg@1521 1877 return this;
jjg@1521 1878 }
jjg@1521 1879
jjg@1521 1880 @Override
jjg@1521 1881 public Type constType(Object constValue) { return underlyingType.constType(constValue); }
jjg@1521 1882 @Override
jjg@1521 1883 public Type getEnclosingType() { return underlyingType.getEnclosingType(); }
jjg@1521 1884
jjg@1521 1885 @Override
jjg@1521 1886 public Type getReturnType() { return underlyingType.getReturnType(); }
jjg@1521 1887 @Override
jjg@1521 1888 public List<Type> getTypeArguments() { return underlyingType.getTypeArguments(); }
jjg@1521 1889 @Override
jjg@1521 1890 public List<Type> getParameterTypes() { return underlyingType.getParameterTypes(); }
jjg@1521 1891 @Override
jjg@1521 1892 public Type getReceiverType() { return underlyingType.getReceiverType(); }
jjg@1521 1893 @Override
jjg@1521 1894 public List<Type> getThrownTypes() { return underlyingType.getThrownTypes(); }
jjg@1521 1895 @Override
jjg@1521 1896 public Type getUpperBound() { return underlyingType.getUpperBound(); }
jjg@1521 1897 @Override
jjg@1521 1898 public Type getLowerBound() { return underlyingType.getLowerBound(); }
jjg@1521 1899
jjg@1521 1900 @Override
jjg@1521 1901 public boolean isErroneous() { return underlyingType.isErroneous(); }
jjg@1521 1902 @Override
jjg@1521 1903 public boolean isCompound() { return underlyingType.isCompound(); }
jjg@1521 1904 @Override
jjg@1521 1905 public boolean isInterface() { return underlyingType.isInterface(); }
jjg@1521 1906 @Override
jjg@1521 1907 public List<Type> allparams() { return underlyingType.allparams(); }
jjg@1521 1908 @Override
vromero@1853 1909 public boolean isPrimitive() { return underlyingType.isPrimitive(); }
vromero@1853 1910 @Override
vromero@1853 1911 public boolean isPrimitiveOrVoid() { return underlyingType.isPrimitiveOrVoid(); }
vromero@1853 1912 @Override
jjg@1521 1913 public boolean isNumeric() { return underlyingType.isNumeric(); }
jjg@1521 1914 @Override
jjg@1521 1915 public boolean isReference() { return underlyingType.isReference(); }
jjg@1521 1916 @Override
vromero@1853 1917 public boolean isNullOrReference() { return underlyingType.isNullOrReference(); }
vromero@1853 1918 @Override
vromero@1853 1919 public boolean isPartial() { return underlyingType.isPartial(); }
vromero@1853 1920 @Override
jjg@1521 1921 public boolean isParameterized() { return underlyingType.isParameterized(); }
jjg@1521 1922 @Override
jjg@1521 1923 public boolean isRaw() { return underlyingType.isRaw(); }
jjg@1521 1924 @Override
jjg@1521 1925 public boolean isFinal() { return underlyingType.isFinal(); }
jjg@1521 1926 @Override
jjg@1521 1927 public boolean isSuperBound() { return underlyingType.isSuperBound(); }
jjg@1521 1928 @Override
jjg@1521 1929 public boolean isExtendsBound() { return underlyingType.isExtendsBound(); }
jjg@1521 1930 @Override
jjg@1521 1931 public boolean isUnbound() { return underlyingType.isUnbound(); }
jjg@1521 1932
jjg@1521 1933 @Override
jjg@1521 1934 public String toString() {
jjg@1755 1935 // This method is only used for internal debugging output.
jjg@1755 1936 // See
jjg@1755 1937 // com.sun.tools.javac.code.Printer.visitAnnotatedType(AnnotatedType, Locale)
jjg@1755 1938 // for the user-visible logic.
jjg@1521 1939 if (typeAnnotations != null &&
jjg@1521 1940 !typeAnnotations.isEmpty()) {
jjg@1521 1941 return "(" + typeAnnotations.toString() + " :: " + underlyingType.toString() + ")";
jjg@1521 1942 } else {
jjg@1521 1943 return "({} :: " + underlyingType.toString() +")";
jjg@1521 1944 }
jjg@1521 1945 }
jjg@1521 1946
jjg@1521 1947 @Override
jjg@1521 1948 public boolean contains(Type t) { return underlyingType.contains(t); }
jjg@1521 1949
jjg@1521 1950 @Override
jjg@1755 1951 public Type withTypeVar(Type t) {
jjg@1755 1952 // Don't create a new AnnotatedType, as 'this' will
jjg@1755 1953 // get its annotations set later.
jjg@1755 1954 underlyingType = underlyingType.withTypeVar(t);
jjg@1755 1955 return this;
jjg@1755 1956 }
jjg@1521 1957
jjg@1521 1958 // TODO: attach annotations?
jjg@1521 1959 @Override
jjg@1521 1960 public TypeSymbol asElement() { return underlyingType.asElement(); }
jjg@1521 1961
jjg@1521 1962 // TODO: attach annotations?
jjg@1521 1963 @Override
jjg@1521 1964 public MethodType asMethodType() { return underlyingType.asMethodType(); }
jjg@1521 1965
jjg@1521 1966 @Override
jjg@1521 1967 public void complete() { underlyingType.complete(); }
jjg@1521 1968
jjg@1521 1969 @Override
jjg@1521 1970 public TypeMirror getComponentType() { return ((ArrayType)underlyingType).getComponentType(); }
jjg@1521 1971
jjg@1521 1972 // The result is an ArrayType, but only in the model sense, not the Type sense.
jjg@1521 1973 public AnnotatedType makeVarargs() {
jjg@1521 1974 AnnotatedType atype = new AnnotatedType(((ArrayType)underlyingType).makeVarargs());
jjg@1521 1975 atype.typeAnnotations = this.typeAnnotations;
jjg@1521 1976 return atype;
jjg@1521 1977 }
jjg@1521 1978
jjg@1521 1979 @Override
jjg@1521 1980 public TypeMirror getExtendsBound() { return ((WildcardType)underlyingType).getExtendsBound(); }
jjg@1521 1981 @Override
jjg@1521 1982 public TypeMirror getSuperBound() { return ((WildcardType)underlyingType).getSuperBound(); }
jjg@1521 1983 }
jjg@1521 1984
vromero@1853 1985 public static class UnknownType extends Type {
vromero@1853 1986
vromero@1853 1987 public UnknownType() {
vromero@1853 1988 super(null);
vromero@1853 1989 }
vromero@1853 1990
vromero@1853 1991 @Override
vromero@1853 1992 public TypeTag getTag() {
vromero@1853 1993 return UNKNOWN;
vromero@1853 1994 }
vromero@1853 1995
vromero@1853 1996 @Override
vromero@1853 1997 public <R, P> R accept(TypeVisitor<R, P> v, P p) {
vromero@1853 1998 return v.visitUnknown(this, p);
vromero@1853 1999 }
vromero@1853 2000
vromero@1853 2001 @Override
vromero@1853 2002 public boolean isPartial() {
vromero@1853 2003 return true;
vromero@1853 2004 }
vromero@1853 2005 }
vromero@1853 2006
duke@1 2007 /**
duke@1 2008 * A visitor for types. A visitor is used to implement operations
duke@1 2009 * (or relations) on types. Most common operations on types are
duke@1 2010 * binary relations and this interface is designed for binary
jjg@1521 2011 * relations, that is, operations of the form
duke@1 2012 * Type&nbsp;&times;&nbsp;S&nbsp;&rarr;&nbsp;R.
duke@1 2013 * <!-- In plain text: Type x S -> R -->
duke@1 2014 *
duke@1 2015 * @param <R> the return type of the operation implemented by this
duke@1 2016 * visitor; use Void if no return type is needed.
duke@1 2017 * @param <S> the type of the second argument (the first being the
duke@1 2018 * type itself) of the operation implemented by this visitor; use
duke@1 2019 * Void if a second argument is not needed.
duke@1 2020 */
duke@1 2021 public interface Visitor<R,S> {
duke@1 2022 R visitClassType(ClassType t, S s);
duke@1 2023 R visitWildcardType(WildcardType t, S s);
duke@1 2024 R visitArrayType(ArrayType t, S s);
duke@1 2025 R visitMethodType(MethodType t, S s);
duke@1 2026 R visitPackageType(PackageType t, S s);
duke@1 2027 R visitTypeVar(TypeVar t, S s);
duke@1 2028 R visitCapturedType(CapturedType t, S s);
duke@1 2029 R visitForAll(ForAll t, S s);
duke@1 2030 R visitUndetVar(UndetVar t, S s);
duke@1 2031 R visitErrorType(ErrorType t, S s);
jjg@1521 2032 R visitAnnotatedType(AnnotatedType t, S s);
duke@1 2033 R visitType(Type t, S s);
duke@1 2034 }
duke@1 2035 }

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