src/share/classes/com/sun/tools/doclets/internal/toolkit/util/ClassUseMapper.java

Tue, 09 Oct 2012 19:10:00 -0700

author
jjg
date
Tue, 09 Oct 2012 19:10:00 -0700
changeset 1357
c75be5bc5283
parent 554
9d9f26857129
child 1359
25e14ad23cef
permissions
-rw-r--r--

8000663: clean up langtools imports
Reviewed-by: darcy

duke@1 1 /*
jjg@1357 2 * Copyright (c) 1998, 2012, 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.doclets.internal.toolkit.util;
duke@1 27
jjg@1357 28 import java.util.*;
jjg@1357 29
duke@1 30 import com.sun.javadoc.*;
duke@1 31
duke@1 32 /**
duke@1 33 * Map all class uses for a given class.
duke@1 34 *
duke@1 35 * This code is not part of an API.
duke@1 36 * It is implementation that is subject to change.
duke@1 37 * Do not use it as an API
duke@1 38 *
duke@1 39 * @since 1.2
duke@1 40 * @author Robert G. Field
duke@1 41 */
duke@1 42 public class ClassUseMapper {
duke@1 43
duke@1 44 private final ClassTree classtree;
duke@1 45
duke@1 46 /**
duke@1 47 * Mapping of ClassDocs to set of PackageDoc used by that class.
duke@1 48 * Entries may be null.
duke@1 49 */
jjg@74 50 public Map<String,Set<PackageDoc>> classToPackage = new HashMap<String,Set<PackageDoc>>();
duke@1 51
duke@1 52 /**
duke@1 53 * Mapping of Annotations to set of PackageDoc that use the annotation.
duke@1 54 */
jjg@74 55 public Map<String,List<PackageDoc>> classToPackageAnnotations = new HashMap<String,List<PackageDoc>>();
duke@1 56
duke@1 57 /**
duke@1 58 * Mapping of ClassDocs to set of ClassDoc used by that class.
duke@1 59 * Entries may be null.
duke@1 60 */
jjg@74 61 public Map<String,Set<ClassDoc>> classToClass = new HashMap<String,Set<ClassDoc>>();
duke@1 62
duke@1 63 /**
duke@1 64 * Mapping of ClassDocs to list of ClassDoc which are direct or
duke@1 65 * indirect subclasses of that class.
duke@1 66 * Entries may be null.
duke@1 67 */
jjg@74 68 public Map<String,List<ClassDoc>> classToSubclass = new HashMap<String,List<ClassDoc>>();
duke@1 69
duke@1 70 /**
duke@1 71 * Mapping of ClassDocs to list of ClassDoc which are direct or
duke@1 72 * indirect subinterfaces of that interface.
duke@1 73 * Entries may be null.
duke@1 74 */
jjg@74 75 public Map<String,List<ClassDoc>> classToSubinterface = new HashMap<String,List<ClassDoc>>();
duke@1 76
duke@1 77 /**
duke@1 78 * Mapping of ClassDocs to list of ClassDoc which implement
duke@1 79 * this interface.
duke@1 80 * Entries may be null.
duke@1 81 */
jjg@74 82 public Map<String,List<ClassDoc>> classToImplementingClass = new HashMap<String,List<ClassDoc>>();
duke@1 83
duke@1 84 /**
duke@1 85 * Mapping of ClassDocs to list of FieldDoc declared as that class.
duke@1 86 * Entries may be null.
duke@1 87 */
jjg@74 88 public Map<String,List<FieldDoc>> classToField = new HashMap<String,List<FieldDoc>>();
duke@1 89
duke@1 90 /**
duke@1 91 * Mapping of ClassDocs to list of MethodDoc returning that class.
duke@1 92 * Entries may be null.
duke@1 93 */
jjg@74 94 public Map<String,List<MethodDoc>> classToMethodReturn = new HashMap<String,List<MethodDoc>>();
duke@1 95
duke@1 96 /**
duke@1 97 * Mapping of ClassDocs to list of MethodDoc having that class
duke@1 98 * as an arg.
duke@1 99 * Entries may be null.
duke@1 100 */
jjg@74 101 public Map<String,List<ExecutableMemberDoc>> classToMethodArgs = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 102
duke@1 103 /**
duke@1 104 * Mapping of ClassDocs to list of MethodDoc which throws that class.
duke@1 105 * Entries may be null.
duke@1 106 */
jjg@74 107 public Map<String,List<ExecutableMemberDoc>> classToMethodThrows = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 108
duke@1 109 /**
duke@1 110 * Mapping of ClassDocs to list of ConstructorDoc having that class
duke@1 111 * as an arg.
duke@1 112 * Entries may be null.
duke@1 113 */
jjg@74 114 public Map<String,List<ExecutableMemberDoc>> classToConstructorArgs = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 115
duke@1 116 /**
duke@1 117 * Mapping of ClassDocs to list of ConstructorDoc which throws that class.
duke@1 118 * Entries may be null.
duke@1 119 */
jjg@74 120 public Map<String,List<ExecutableMemberDoc>> classToConstructorThrows = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 121
duke@1 122 /**
duke@1 123 * The mapping of AnnotationTypeDocs to constructors that use them.
duke@1 124 */
jjg@74 125 public Map<String,List<ConstructorDoc>> classToConstructorAnnotations = new HashMap<String,List<ConstructorDoc>>();
duke@1 126
duke@1 127 /**
duke@1 128 * The mapping of AnnotationTypeDocs to Constructor parameters that use them.
duke@1 129 */
jjg@74 130 public Map<String,List<ExecutableMemberDoc>> classToConstructorParamAnnotation = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 131
duke@1 132 /**
duke@1 133 * The mapping of ClassDocs to Constructor arguments that use them as type parameters.
duke@1 134 */
jjg@74 135 public Map<String,List<ExecutableMemberDoc>> classToConstructorDocArgTypeParam = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 136
duke@1 137 /**
duke@1 138 * The mapping of ClassDocs to ClassDocs that use them as type parameters.
duke@1 139 */
jjg@74 140 public Map<String,List<ClassDoc>> classToClassTypeParam = new HashMap<String,List<ClassDoc>>();
duke@1 141
duke@1 142 /**
duke@1 143 * The mapping of AnnotationTypeDocs to ClassDocs that use them.
duke@1 144 */
jjg@74 145 public Map<String,List<ClassDoc>> classToClassAnnotations = new HashMap<String,List<ClassDoc>>();
duke@1 146
duke@1 147 /**
duke@1 148 * The mapping of ClassDocs to ExecutableMemberDocs that use them as type parameters.
duke@1 149 */
jjg@74 150 public Map<String,List<MethodDoc>> classToExecMemberDocTypeParam = new HashMap<String,List<MethodDoc>>();
duke@1 151
duke@1 152 /**
duke@1 153 * The mapping of ClassDocs to ExecutableMemberDocs arguments that use them as type parameters.
duke@1 154 */
jjg@74 155 public Map<String,List<ExecutableMemberDoc>> classToExecMemberDocArgTypeParam = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 156
duke@1 157 /**
duke@1 158 * The mapping of AnnotationTypeDocs to ExecutableMemberDocs that use them.
duke@1 159 */
jjg@74 160 public Map<String,List<MethodDoc>> classToExecMemberDocAnnotations = new HashMap<String,List<MethodDoc>>();
duke@1 161
duke@1 162 /**
duke@1 163 * The mapping of ClassDocs to ExecutableMemberDocs that have return type
duke@1 164 * with type parameters of that class.
duke@1 165 */
jjg@74 166 public Map<String,List<MethodDoc>> classToExecMemberDocReturnTypeParam = new HashMap<String,List<MethodDoc>>();
duke@1 167
duke@1 168 /**
duke@1 169 * The mapping of AnnotationTypeDocs to MethodDoc parameters that use them.
duke@1 170 */
jjg@74 171 public Map<String,List<ExecutableMemberDoc>> classToExecMemberDocParamAnnotation = new HashMap<String,List<ExecutableMemberDoc>>();
duke@1 172
duke@1 173 /**
duke@1 174 * The mapping of ClassDocs to FieldDocs that use them as type parameters.
duke@1 175 */
jjg@74 176 public Map<String,List<FieldDoc>> classToFieldDocTypeParam = new HashMap<String,List<FieldDoc>>();
duke@1 177
duke@1 178 /**
duke@1 179 * The mapping of AnnotationTypeDocs to FieldDocs that use them.
duke@1 180 */
jjg@74 181 public Map<String,List<FieldDoc>> annotationToFieldDoc = new HashMap<String,List<FieldDoc>>();
duke@1 182
duke@1 183
duke@1 184 public ClassUseMapper(RootDoc root, ClassTree classtree) {
duke@1 185 this.classtree = classtree;
duke@1 186
duke@1 187 // Map subclassing, subinterfacing implementing, ...
mcimadamore@184 188 for (Iterator<ClassDoc> it = classtree.baseclasses().iterator(); it.hasNext();) {
mcimadamore@184 189 subclasses(it.next());
duke@1 190 }
mcimadamore@184 191 for (Iterator<ClassDoc> it = classtree.baseinterfaces().iterator(); it.hasNext();) {
duke@1 192 // does subinterfacing as side-effect
mcimadamore@184 193 implementingClasses(it.next());
duke@1 194 }
duke@1 195 // Map methods, fields, constructors using a class.
duke@1 196 ClassDoc[] classes = root.classes();
duke@1 197 for (int i = 0; i < classes.length; i++) {
duke@1 198 PackageDoc pkg = classes[i].containingPackage();
duke@1 199 mapAnnotations(classToPackageAnnotations, pkg, pkg);
duke@1 200 ClassDoc cd = classes[i];
duke@1 201 mapTypeParameters(classToClassTypeParam, cd, cd);
duke@1 202 mapAnnotations(classToClassAnnotations, cd, cd);
duke@1 203 FieldDoc[] fields = cd.fields();
duke@1 204 for (int j = 0; j < fields.length; j++) {
duke@1 205 FieldDoc fd = fields[j];
duke@1 206 mapTypeParameters(classToFieldDocTypeParam, fd, fd);
duke@1 207 mapAnnotations(annotationToFieldDoc, fd, fd);
duke@1 208 if (! fd.type().isPrimitive()) {
duke@1 209 add(classToField, fd.type().asClassDoc(), fd);
duke@1 210 }
duke@1 211 }
duke@1 212 ConstructorDoc[] cons = cd.constructors();
duke@1 213 for (int j = 0; j < cons.length; j++) {
duke@1 214 mapAnnotations(classToConstructorAnnotations, cons[j], cons[j]);
duke@1 215 mapExecutable(cons[j]);
duke@1 216 }
duke@1 217 MethodDoc[] meths = cd.methods();
duke@1 218 for (int j = 0; j < meths.length; j++) {
duke@1 219 MethodDoc md = meths[j];
duke@1 220 mapExecutable(md);
duke@1 221 mapTypeParameters(classToExecMemberDocTypeParam, md, md);
duke@1 222 mapAnnotations(classToExecMemberDocAnnotations, md, md);
duke@1 223 if (! (md.returnType().isPrimitive() || md.returnType() instanceof TypeVariable)) {
duke@1 224 mapTypeParameters(classToExecMemberDocReturnTypeParam,
duke@1 225 md.returnType(), md);
duke@1 226 add(classToMethodReturn, md.returnType().asClassDoc(), md);
duke@1 227 }
duke@1 228 }
duke@1 229 }
duke@1 230 }
duke@1 231
duke@1 232 /**
duke@1 233 * Return all subclasses of a class AND fill-in classToSubclass map.
duke@1 234 */
jjg@74 235 private Collection<ClassDoc> subclasses(ClassDoc cd) {
jjg@74 236 Collection<ClassDoc> ret = classToSubclass.get(cd.qualifiedName());
duke@1 237 if (ret == null) {
jjg@74 238 ret = new TreeSet<ClassDoc>();
jjg@74 239 List<ClassDoc> subs = classtree.subclasses(cd);
duke@1 240 if (subs != null) {
duke@1 241 ret.addAll(subs);
jjg@74 242 for (Iterator<ClassDoc> it = subs.iterator(); it.hasNext();) {
jjg@74 243 ret.addAll(subclasses(it.next()));
duke@1 244 }
duke@1 245 }
duke@1 246 addAll(classToSubclass, cd, ret);
duke@1 247 }
duke@1 248 return ret;
duke@1 249 }
duke@1 250
duke@1 251 /**
duke@1 252 * Return all subinterfaces of an interface AND fill-in classToSubinterface map.
duke@1 253 */
jjg@74 254 private Collection<ClassDoc> subinterfaces(ClassDoc cd) {
jjg@74 255 Collection<ClassDoc> ret = classToSubinterface.get(cd.qualifiedName());
duke@1 256 if (ret == null) {
jjg@74 257 ret = new TreeSet<ClassDoc>();
jjg@74 258 List<ClassDoc> subs = classtree.subinterfaces(cd);
duke@1 259 if (subs != null) {
duke@1 260 ret.addAll(subs);
jjg@74 261 for (Iterator<ClassDoc> it = subs.iterator(); it.hasNext();) {
jjg@74 262 ret.addAll(subinterfaces(it.next()));
duke@1 263 }
duke@1 264 }
duke@1 265 addAll(classToSubinterface, cd, ret);
duke@1 266 }
duke@1 267 return ret;
duke@1 268 }
duke@1 269
duke@1 270 /**
duke@1 271 * Return all implementing classes of an interface (including
duke@1 272 * all subclasses of implementing classes and all classes
duke@1 273 * implementing subinterfaces) AND fill-in both classToImplementingClass
duke@1 274 * and classToSubinterface maps.
duke@1 275 */
jjg@74 276 private Collection<ClassDoc> implementingClasses(ClassDoc cd) {
jjg@74 277 Collection<ClassDoc> ret = classToImplementingClass.get(cd.qualifiedName());
duke@1 278 if (ret == null) {
jjg@74 279 ret = new TreeSet<ClassDoc>();
jjg@74 280 List<ClassDoc> impl = classtree.implementingclasses(cd);
duke@1 281 if (impl != null) {
duke@1 282 ret.addAll(impl);
mcimadamore@184 283 for (Iterator<ClassDoc> it = impl.iterator(); it.hasNext();) {
mcimadamore@184 284 ret.addAll(subclasses(it.next()));
duke@1 285 }
duke@1 286 }
mcimadamore@184 287 for (Iterator<ClassDoc> it = subinterfaces(cd).iterator(); it.hasNext();) {
mcimadamore@184 288 ret.addAll(implementingClasses(it.next()));
duke@1 289 }
duke@1 290 addAll(classToImplementingClass, cd, ret);
duke@1 291 }
duke@1 292 return ret;
duke@1 293 }
duke@1 294
duke@1 295 /**
duke@1 296 * Determine classes used by a method or constructor, so they can be
duke@1 297 * inverse mapped.
duke@1 298 */
duke@1 299 private void mapExecutable(ExecutableMemberDoc em) {
duke@1 300 Parameter[] params = em.parameters();
duke@1 301 boolean isConstructor = em.isConstructor();
jjg@74 302 List<Type> classArgs = new ArrayList<Type>();
duke@1 303 for (int k = 0; k < params.length; k++) {
duke@1 304 Type pcd = params[k].type();
duke@1 305 // primitives don't get mapped, also avoid dups
duke@1 306 if ((! params[k].type().isPrimitive()) &&
duke@1 307 ! classArgs.contains(pcd) &&
duke@1 308 ! (pcd instanceof TypeVariable)) {
duke@1 309 add(isConstructor? classToConstructorArgs :classToMethodArgs,
duke@1 310 pcd.asClassDoc(), em);
duke@1 311 classArgs.add(pcd);
duke@1 312 mapTypeParameters(isConstructor?
duke@1 313 classToConstructorDocArgTypeParam : classToExecMemberDocArgTypeParam,
duke@1 314 pcd, em);
duke@1 315 }
duke@1 316 mapAnnotations(
duke@1 317 isConstructor ?
duke@1 318 classToConstructorParamAnnotation :
duke@1 319 classToExecMemberDocParamAnnotation,
duke@1 320 params[k], em);
duke@1 321 }
duke@1 322 ClassDoc[] thr = em.thrownExceptions();
duke@1 323 for (int k = 0; k < thr.length; k++) {
duke@1 324 add(isConstructor? classToConstructorThrows : classToMethodThrows,
duke@1 325 thr[k], em);
duke@1 326 }
duke@1 327 }
duke@1 328
jjg@74 329 private <T> List<T> refList(Map<String,List<T>> map, ClassDoc cd) {
jjg@74 330 List<T> list = map.get(cd.qualifiedName());
duke@1 331 if (list == null) {
mcimadamore@184 332 List<T> l = new ArrayList<T>();
jjg@74 333 list = l;
duke@1 334 map.put(cd.qualifiedName(), list);
duke@1 335 }
duke@1 336 return list;
duke@1 337 }
duke@1 338
jjg@74 339 private Set<PackageDoc> packageSet(ClassDoc cd) {
jjg@74 340 Set<PackageDoc> pkgSet = classToPackage.get(cd.qualifiedName());
duke@1 341 if (pkgSet == null) {
jjg@74 342 pkgSet = new TreeSet<PackageDoc>();
duke@1 343 classToPackage.put(cd.qualifiedName(), pkgSet);
duke@1 344 }
duke@1 345 return pkgSet;
duke@1 346 }
duke@1 347
jjg@74 348 private Set<ClassDoc> classSet(ClassDoc cd) {
jjg@74 349 Set<ClassDoc> clsSet = classToClass.get(cd.qualifiedName());
duke@1 350 if (clsSet == null) {
mcimadamore@184 351 Set<ClassDoc> s = new TreeSet<ClassDoc>();
jjg@74 352 clsSet = s;
duke@1 353 classToClass.put(cd.qualifiedName(), clsSet);
duke@1 354 }
duke@1 355 return clsSet;
duke@1 356 }
duke@1 357
jjg@74 358 private <T extends ProgramElementDoc> void add(Map<String,List<T>> map, ClassDoc cd, T ref) {
duke@1 359 // add to specified map
duke@1 360 refList(map, cd).add(ref);
duke@1 361
duke@1 362 // add ref's package to package map and class map
duke@1 363 packageSet(cd).add(ref.containingPackage());
duke@1 364
duke@1 365 classSet(cd).add(ref instanceof MemberDoc?
duke@1 366 ((MemberDoc)ref).containingClass() :
jjg@74 367 (ClassDoc)ref);
duke@1 368 }
duke@1 369
jjg@74 370 private void addAll(Map<String,List<ClassDoc>> map, ClassDoc cd, Collection<ClassDoc> refs) {
duke@1 371 if (refs == null) {
duke@1 372 return;
duke@1 373 }
duke@1 374 // add to specified map
duke@1 375 refList(map, cd).addAll(refs);
duke@1 376
jjg@74 377 Set<PackageDoc> pkgSet = packageSet(cd);
jjg@74 378 Set<ClassDoc> clsSet = classSet(cd);
duke@1 379 // add ref's package to package map and class map
jjg@74 380 for (Iterator<ClassDoc> it = refs.iterator(); it.hasNext();) {
jjg@74 381 ClassDoc cls = it.next();
jjg@74 382 pkgSet.add(cls.containingPackage());
jjg@74 383 clsSet.add(cls);
duke@1 384
duke@1 385 }
duke@1 386 }
duke@1 387
duke@1 388 /**
duke@1 389 * Map the ClassDocs to the ProgramElementDocs that use them as
duke@1 390 * type parameters.
duke@1 391 *
duke@1 392 * @param map the map the insert the information into.
duke@1 393 * @param doc the doc whose type parameters are being checked.
duke@1 394 * @param holder the holder that owns the type parameters.
duke@1 395 */
jjg@74 396 private <T extends ProgramElementDoc> void mapTypeParameters(Map<String,List<T>> map, Object doc,
jjg@74 397 T holder) {
duke@1 398 TypeVariable[] typeVariables;
duke@1 399 if (doc instanceof ClassDoc) {
duke@1 400 typeVariables = ((ClassDoc) doc).typeParameters();
duke@1 401 } else if (doc instanceof WildcardType) {
duke@1 402 Type[] extendsBounds = ((WildcardType) doc).extendsBounds();
duke@1 403 for (int k = 0; k < extendsBounds.length; k++) {
duke@1 404 addTypeParameterToMap(map, extendsBounds[k], holder);
duke@1 405 }
duke@1 406 Type[] superBounds = ((WildcardType) doc).superBounds();
duke@1 407 for (int k = 0; k < superBounds.length; k++) {
duke@1 408 addTypeParameterToMap(map, superBounds[k], holder);
duke@1 409 }
duke@1 410 return;
duke@1 411 } else if (doc instanceof ParameterizedType) {
duke@1 412 Type[] typeArguments = ((ParameterizedType) doc).typeArguments();
duke@1 413 for (int k = 0; k < typeArguments.length; k++) {
duke@1 414 addTypeParameterToMap(map, typeArguments[k], holder);
duke@1 415 }
duke@1 416 return;
duke@1 417 } else if (doc instanceof ExecutableMemberDoc) {
duke@1 418 typeVariables = ((ExecutableMemberDoc) doc).typeParameters();
duke@1 419 } else if (doc instanceof FieldDoc) {
duke@1 420 Type fieldType = ((FieldDoc) doc).type();
duke@1 421 mapTypeParameters(map, fieldType, holder);
duke@1 422 return;
duke@1 423 } else {
duke@1 424 return;
duke@1 425 }
duke@1 426 for (int i = 0; i < typeVariables.length; i++) {
duke@1 427 Type[] bounds = typeVariables[i].bounds();
duke@1 428 for (int j = 0; j < bounds.length; j++) {
duke@1 429 addTypeParameterToMap(map, bounds[j], holder);
duke@1 430 }
duke@1 431 }
duke@1 432 }
duke@1 433
duke@1 434 /**
duke@1 435 * Map the AnnotationType to the ProgramElementDocs that use them as
duke@1 436 * type parameters.
duke@1 437 *
duke@1 438 * @param map the map the insert the information into.
duke@1 439 * @param doc the doc whose type parameters are being checked.
duke@1 440 * @param holder the holder that owns the type parameters.
duke@1 441 */
jjg@74 442 private <T extends ProgramElementDoc> void mapAnnotations(Map<String,List<T>> map, Object doc,
jjg@74 443 T holder) {
duke@1 444 AnnotationDesc[] annotations;
duke@1 445 boolean isPackage = false;
duke@1 446 if (doc instanceof ProgramElementDoc) {
duke@1 447 annotations = ((ProgramElementDoc) doc).annotations();
duke@1 448 } else if (doc instanceof PackageDoc) {
duke@1 449 annotations = ((PackageDoc) doc).annotations();
duke@1 450 isPackage = true;
duke@1 451 } else if (doc instanceof Parameter) {
duke@1 452 annotations = ((Parameter) doc).annotations();
duke@1 453 } else {
duke@1 454 throw new DocletAbortException();
duke@1 455 }
duke@1 456 for (int i = 0; i < annotations.length; i++) {
duke@1 457 AnnotationTypeDoc annotationDoc = annotations[i].annotationType();
duke@1 458 if (isPackage)
duke@1 459 refList(map, annotationDoc).add(holder);
duke@1 460 else
jjg@74 461 add(map, annotationDoc, holder);
duke@1 462 }
duke@1 463 }
duke@1 464
jjg@74 465
jjg@74 466 /**
jjg@74 467 * Map the AnnotationType to the ProgramElementDocs that use them as
jjg@74 468 * type parameters.
jjg@74 469 *
jjg@74 470 * @param map the map the insert the information into.
jjg@74 471 * @param doc the doc whose type parameters are being checked.
jjg@74 472 * @param holder the holder that owns the type parameters.
jjg@74 473 */
jjg@74 474 private <T extends PackageDoc> void mapAnnotations(Map<String,List<T>> map, PackageDoc doc,
jjg@74 475 T holder) {
jjg@74 476 AnnotationDesc[] annotations;
jjg@74 477 annotations = doc.annotations();
jjg@74 478 for (int i = 0; i < annotations.length; i++) {
jjg@74 479 AnnotationTypeDoc annotationDoc = annotations[i].annotationType();
jjg@74 480 refList(map, annotationDoc).add(holder);
jjg@74 481 }
jjg@74 482 }
jjg@74 483
jjg@74 484 private <T extends ProgramElementDoc> void addTypeParameterToMap(Map<String,List<T>> map, Type type,
jjg@74 485 T holder) {
duke@1 486 if (type instanceof ClassDoc) {
duke@1 487 add(map, (ClassDoc) type, holder);
duke@1 488 } else if (type instanceof ParameterizedType) {
duke@1 489 add(map, ((ParameterizedType) type).asClassDoc(), holder);
duke@1 490 }
duke@1 491 mapTypeParameters(map, type, holder);
duke@1 492 }
duke@1 493 }

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