1 // © 2016 and later: Unicode, Inc. and others.
2 // License & terms of use: http://www.unicode.org/copyright.html
3 /**
4 *******************************************************************************
5 * Copyright (C) 2001-2014, International Business Machines Corporation.
6 * All Rights Reserved.
7 *******************************************************************************
8 */
9
10 #include "unicode/utypes.h"
11 #include "unicode/localpointer.h"
12
13 #if !UCONFIG_NO_SERVICE
14
15 #include "serv.h"
16 #include "umutex.h"
17
18 #undef SERVICE_REFCOUNT
19
20 // in case we use the refcount stuff
21
22 U_NAMESPACE_BEGIN
23
24 /*
25 ******************************************************************
26 */
27
28 const UChar ICUServiceKey::PREFIX_DELIMITER = 0x002F; /* '/' */
29
ICUServiceKey(const UnicodeString & id)30 ICUServiceKey::ICUServiceKey(const UnicodeString& id)
31 : _id(id) {
32 }
33
~ICUServiceKey()34 ICUServiceKey::~ICUServiceKey()
35 {
36 }
37
38 const UnicodeString&
getID() const39 ICUServiceKey::getID() const
40 {
41 return _id;
42 }
43
44 UnicodeString&
canonicalID(UnicodeString & result) const45 ICUServiceKey::canonicalID(UnicodeString& result) const
46 {
47 return result.append(_id);
48 }
49
50 UnicodeString&
currentID(UnicodeString & result) const51 ICUServiceKey::currentID(UnicodeString& result) const
52 {
53 return canonicalID(result);
54 }
55
56 UnicodeString&
currentDescriptor(UnicodeString & result) const57 ICUServiceKey::currentDescriptor(UnicodeString& result) const
58 {
59 prefix(result);
60 result.append(PREFIX_DELIMITER);
61 return currentID(result);
62 }
63
64 UBool
fallback()65 ICUServiceKey::fallback()
66 {
67 return false;
68 }
69
70 UBool
isFallbackOf(const UnicodeString & id) const71 ICUServiceKey::isFallbackOf(const UnicodeString& id) const
72 {
73 return id == _id;
74 }
75
76 UnicodeString&
prefix(UnicodeString & result) const77 ICUServiceKey::prefix(UnicodeString& result) const
78 {
79 return result;
80 }
81
82 UnicodeString&
parsePrefix(UnicodeString & result)83 ICUServiceKey::parsePrefix(UnicodeString& result)
84 {
85 int32_t n = result.indexOf(PREFIX_DELIMITER);
86 if (n < 0) {
87 n = 0;
88 }
89 result.remove(n);
90 return result;
91 }
92
93 UnicodeString&
parseSuffix(UnicodeString & result)94 ICUServiceKey::parseSuffix(UnicodeString& result)
95 {
96 int32_t n = result.indexOf(PREFIX_DELIMITER);
97 if (n >= 0) {
98 result.remove(0, n+1);
99 }
100 return result;
101 }
102
103 #ifdef SERVICE_DEBUG
104 UnicodeString&
debug(UnicodeString & result) const105 ICUServiceKey::debug(UnicodeString& result) const
106 {
107 debugClass(result);
108 result.append((UnicodeString)" id: ");
109 result.append(_id);
110 return result;
111 }
112
113 UnicodeString&
debugClass(UnicodeString & result) const114 ICUServiceKey::debugClass(UnicodeString& result) const
115 {
116 return result.append((UnicodeString)"ICUServiceKey");
117 }
118 #endif
119
UOBJECT_DEFINE_RTTI_IMPLEMENTATION(ICUServiceKey)120 UOBJECT_DEFINE_RTTI_IMPLEMENTATION(ICUServiceKey)
121
122 /*
123 ******************************************************************
124 */
125
126 ICUServiceFactory::~ICUServiceFactory() {}
127
SimpleFactory(UObject * instanceToAdopt,const UnicodeString & id,UBool visible)128 SimpleFactory::SimpleFactory(UObject* instanceToAdopt, const UnicodeString& id, UBool visible)
129 : _instance(instanceToAdopt), _id(id), _visible(visible)
130 {
131 }
132
~SimpleFactory()133 SimpleFactory::~SimpleFactory()
134 {
135 delete _instance;
136 }
137
138 UObject*
create(const ICUServiceKey & key,const ICUService * service,UErrorCode & status) const139 SimpleFactory::create(const ICUServiceKey& key, const ICUService* service, UErrorCode& status) const
140 {
141 if (U_SUCCESS(status)) {
142 UnicodeString temp;
143 if (_id == key.currentID(temp)) {
144 return service->cloneInstance(_instance);
145 }
146 }
147 return NULL;
148 }
149
150 void
updateVisibleIDs(Hashtable & result,UErrorCode & status) const151 SimpleFactory::updateVisibleIDs(Hashtable& result, UErrorCode& status) const
152 {
153 if (_visible) {
154 result.put(_id, (void*)this, status); // cast away const
155 } else {
156 result.remove(_id);
157 }
158 }
159
160 UnicodeString&
getDisplayName(const UnicodeString & id,const Locale &,UnicodeString & result) const161 SimpleFactory::getDisplayName(const UnicodeString& id, const Locale& /* locale */, UnicodeString& result) const
162 {
163 if (_visible && _id == id) {
164 result = _id;
165 } else {
166 result.setToBogus();
167 }
168 return result;
169 }
170
171 #ifdef SERVICE_DEBUG
172 UnicodeString&
debug(UnicodeString & toAppendTo) const173 SimpleFactory::debug(UnicodeString& toAppendTo) const
174 {
175 debugClass(toAppendTo);
176 toAppendTo.append((UnicodeString)" id: ");
177 toAppendTo.append(_id);
178 toAppendTo.append((UnicodeString)", visible: ");
179 toAppendTo.append(_visible ? (UnicodeString)"T" : (UnicodeString)"F");
180 return toAppendTo;
181 }
182
183 UnicodeString&
debugClass(UnicodeString & toAppendTo) const184 SimpleFactory::debugClass(UnicodeString& toAppendTo) const
185 {
186 return toAppendTo.append((UnicodeString)"SimpleFactory");
187 }
188 #endif
189
UOBJECT_DEFINE_RTTI_IMPLEMENTATION(SimpleFactory)190 UOBJECT_DEFINE_RTTI_IMPLEMENTATION(SimpleFactory)
191
192 /*
193 ******************************************************************
194 */
195
196 ServiceListener::~ServiceListener() {}
197
198 UOBJECT_DEFINE_RTTI_IMPLEMENTATION(ServiceListener)
199
200 /*
201 ******************************************************************
202 */
203
204 // Record the actual id for this service in the cache, so we can return it
205 // even if we succeed later with a different id.
206 class CacheEntry : public UMemory {
207 private:
208 int32_t refcount;
209
210 public:
211 UnicodeString actualDescriptor;
212 UObject* service;
213
214 /**
215 * Releases a reference to the shared resource.
216 */
~CacheEntry()217 ~CacheEntry() {
218 delete service;
219 }
220
CacheEntry(const UnicodeString & _actualDescriptor,UObject * _service)221 CacheEntry(const UnicodeString& _actualDescriptor, UObject* _service)
222 : refcount(1), actualDescriptor(_actualDescriptor), service(_service) {
223 }
224
225 /**
226 * Instantiation creates an initial reference, so don't call this
227 * unless you're creating a new pointer to this. Management of
228 * that pointer will have to know how to deal with refcounts.
229 * Return true if the resource has not already been released.
230 */
ref()231 CacheEntry* ref() {
232 ++refcount;
233 return this;
234 }
235
236 /**
237 * Destructions removes a reference, so don't call this unless
238 * you're removing pointer to this somewhere. Management of that
239 * pointer will have to know how to deal with refcounts. Once
240 * the refcount drops to zero, the resource is released. Return
241 * false if the resource has been released.
242 */
unref()243 CacheEntry* unref() {
244 if ((--refcount) == 0) {
245 delete this;
246 return NULL;
247 }
248 return this;
249 }
250
251 /**
252 * Return true if there is at least one reference to this and the
253 * resource has not been released.
254 */
isShared() const255 UBool isShared() const {
256 return refcount > 1;
257 }
258 };
259
260 // Deleter for serviceCache
261 U_CDECL_BEGIN
262 static void U_CALLCONV
cacheDeleter(void * obj)263 cacheDeleter(void* obj) {
264 U_NAMESPACE_USE ((CacheEntry*)obj)->unref();
265 }
266
267 U_CDECL_END
268
269 /*
270 ******************************************************************
271 */
272
273 class DNCache : public UMemory {
274 public:
275 Hashtable cache;
276 const Locale locale;
277
DNCache(const Locale & _locale)278 DNCache(const Locale& _locale)
279 : cache(), locale(_locale)
280 {
281 // cache.setKeyDeleter(uprv_deleteUObject);
282 }
283 };
284
285
286 /*
287 ******************************************************************
288 */
289
290 StringPair*
create(const UnicodeString & displayName,const UnicodeString & id,UErrorCode & status)291 StringPair::create(const UnicodeString& displayName,
292 const UnicodeString& id,
293 UErrorCode& status)
294 {
295 if (U_SUCCESS(status)) {
296 StringPair* sp = new StringPair(displayName, id);
297 if (sp == NULL || sp->isBogus()) {
298 status = U_MEMORY_ALLOCATION_ERROR;
299 delete sp;
300 return NULL;
301 }
302 return sp;
303 }
304 return NULL;
305 }
306
307 UBool
isBogus() const308 StringPair::isBogus() const {
309 return displayName.isBogus() || id.isBogus();
310 }
311
StringPair(const UnicodeString & _displayName,const UnicodeString & _id)312 StringPair::StringPair(const UnicodeString& _displayName,
313 const UnicodeString& _id)
314 : displayName(_displayName)
315 , id(_id)
316 {
317 }
318
319 U_CDECL_BEGIN
320 static void U_CALLCONV
userv_deleteStringPair(void * obj)321 userv_deleteStringPair(void *obj) {
322 U_NAMESPACE_USE delete (StringPair*) obj;
323 }
324 U_CDECL_END
325
326 /*
327 ******************************************************************
328 */
329
330 static UMutex lock;
331
ICUService()332 ICUService::ICUService()
333 : name()
334 , timestamp(0)
335 , factories(NULL)
336 , serviceCache(NULL)
337 , idCache(NULL)
338 , dnCache(NULL)
339 {
340 }
341
ICUService(const UnicodeString & newName)342 ICUService::ICUService(const UnicodeString& newName)
343 : name(newName)
344 , timestamp(0)
345 , factories(NULL)
346 , serviceCache(NULL)
347 , idCache(NULL)
348 , dnCache(NULL)
349 {
350 }
351
~ICUService()352 ICUService::~ICUService()
353 {
354 {
355 Mutex mutex(&lock);
356 clearCaches();
357 delete factories;
358 factories = NULL;
359 }
360 }
361
362 UObject*
get(const UnicodeString & descriptor,UErrorCode & status) const363 ICUService::get(const UnicodeString& descriptor, UErrorCode& status) const
364 {
365 return get(descriptor, NULL, status);
366 }
367
368 UObject*
get(const UnicodeString & descriptor,UnicodeString * actualReturn,UErrorCode & status) const369 ICUService::get(const UnicodeString& descriptor, UnicodeString* actualReturn, UErrorCode& status) const
370 {
371 UObject* result = NULL;
372 ICUServiceKey* key = createKey(&descriptor, status);
373 if (key) {
374 result = getKey(*key, actualReturn, status);
375 delete key;
376 }
377 return result;
378 }
379
380 UObject*
getKey(ICUServiceKey & key,UErrorCode & status) const381 ICUService::getKey(ICUServiceKey& key, UErrorCode& status) const
382 {
383 return getKey(key, NULL, status);
384 }
385
386 // this is a vector that subclasses of ICUService can override to further customize the result object
387 // before returning it. All other public get functions should call this one.
388
389 UObject*
getKey(ICUServiceKey & key,UnicodeString * actualReturn,UErrorCode & status) const390 ICUService::getKey(ICUServiceKey& key, UnicodeString* actualReturn, UErrorCode& status) const
391 {
392 return getKey(key, actualReturn, NULL, status);
393 }
394
395 // make it possible to call reentrantly on systems that don't have reentrant mutexes.
396 // we can use this simple approach since we know the situation where we're calling
397 // reentrantly even without knowing the thread.
398 class XMutex : public UMemory {
399 public:
XMutex(UMutex * mutex,UBool reentering)400 inline XMutex(UMutex *mutex, UBool reentering)
401 : fMutex(mutex)
402 , fActive(!reentering)
403 {
404 if (fActive) umtx_lock(fMutex);
405 }
~XMutex()406 inline ~XMutex() {
407 if (fActive) umtx_unlock(fMutex);
408 }
409
410 private:
411 UMutex *fMutex;
412 UBool fActive;
413 };
414
415 // called only by factories, treat as private
416 UObject*
getKey(ICUServiceKey & key,UnicodeString * actualReturn,const ICUServiceFactory * factory,UErrorCode & status) const417 ICUService::getKey(ICUServiceKey& key, UnicodeString* actualReturn, const ICUServiceFactory* factory, UErrorCode& status) const
418 {
419 if (U_FAILURE(status)) {
420 return NULL;
421 }
422
423 if (isDefault()) {
424 return handleDefault(key, actualReturn, status);
425 }
426
427 ICUService* ncthis = (ICUService*)this; // cast away semantic const
428
429 CacheEntry* result = NULL;
430 {
431 // The factory list can't be modified until we're done,
432 // otherwise we might update the cache with an invalid result.
433 // The cache has to stay in synch with the factory list.
434 // ICU doesn't have monitors so we can't use rw locks, so
435 // we single-thread everything using this service, for now.
436
437 // if factory is not null, we're calling from within the mutex,
438 // and since some unix machines don't have reentrant mutexes we
439 // need to make sure not to try to lock it again.
440 XMutex mutex(&lock, factory != NULL);
441
442 if (serviceCache == NULL) {
443 ncthis->serviceCache = new Hashtable(status);
444 if (ncthis->serviceCache == NULL) {
445 status = U_MEMORY_ALLOCATION_ERROR;
446 return NULL;
447 }
448 if (U_FAILURE(status)) {
449 delete serviceCache;
450 return NULL;
451 }
452 serviceCache->setValueDeleter(cacheDeleter);
453 }
454
455 UnicodeString currentDescriptor;
456 LocalPointer<UVector> cacheDescriptorList;
457 UBool putInCache = false;
458
459 int32_t startIndex = 0;
460 int32_t limit = factories->size();
461 UBool cacheResult = true;
462
463 if (factory != NULL) {
464 for (int32_t i = 0; i < limit; ++i) {
465 if (factory == (const ICUServiceFactory*)factories->elementAt(i)) {
466 startIndex = i + 1;
467 break;
468 }
469 }
470 if (startIndex == 0) {
471 // throw new InternalError("Factory " + factory + "not registered with service: " + this);
472 status = U_ILLEGAL_ARGUMENT_ERROR;
473 return NULL;
474 }
475 cacheResult = false;
476 }
477
478 do {
479 currentDescriptor.remove();
480 key.currentDescriptor(currentDescriptor);
481 result = (CacheEntry*)serviceCache->get(currentDescriptor);
482 if (result != NULL) {
483 break;
484 }
485
486 // first test of cache failed, so we'll have to update
487 // the cache if we eventually succeed-- that is, if we're
488 // going to update the cache at all.
489 putInCache = true;
490
491 int32_t index = startIndex;
492 while (index < limit) {
493 ICUServiceFactory* f = (ICUServiceFactory*)factories->elementAt(index++);
494 LocalPointer<UObject> service(f->create(key, this, status));
495 if (U_FAILURE(status)) {
496 return NULL;
497 }
498 if (service.isValid()) {
499 result = new CacheEntry(currentDescriptor, service.getAlias());
500 if (result == NULL) {
501 status = U_MEMORY_ALLOCATION_ERROR;
502 return NULL;
503 }
504 service.orphan(); // result now owns service.
505
506 goto outerEnd;
507 }
508 }
509
510 // prepare to load the cache with all additional ids that
511 // will resolve to result, assuming we'll succeed. We
512 // don't want to keep querying on an id that's going to
513 // fallback to the one that succeeded, we want to hit the
514 // cache the first time next goaround.
515 if (cacheDescriptorList.isNull()) {
516 cacheDescriptorList.adoptInsteadAndCheckErrorCode(new UVector(uprv_deleteUObject, NULL, 5, status), status);
517 if (U_FAILURE(status)) {
518 return NULL;
519 }
520 }
521
522 LocalPointer<UnicodeString> idToCache(new UnicodeString(currentDescriptor), status);
523 if (U_FAILURE(status)) {
524 return NULL;
525 }
526 if (idToCache->isBogus()) {
527 status = U_MEMORY_ALLOCATION_ERROR;
528 return NULL;
529 }
530 cacheDescriptorList->adoptElement(idToCache.orphan(), status);
531 if (U_FAILURE(status)) {
532 return NULL;
533 }
534 } while (key.fallback());
535 outerEnd:
536
537 if (result != NULL) {
538 if (putInCache && cacheResult) {
539 serviceCache->put(result->actualDescriptor, result, status);
540 if (U_FAILURE(status)) {
541 return NULL;
542 }
543
544 if (cacheDescriptorList.isValid()) {
545 for (int32_t i = cacheDescriptorList->size(); --i >= 0;) {
546 UnicodeString* desc = (UnicodeString*)cacheDescriptorList->elementAt(i);
547
548 serviceCache->put(*desc, result, status);
549 if (U_FAILURE(status)) {
550 return NULL;
551 }
552
553 result->ref();
554 cacheDescriptorList->removeElementAt(i);
555 }
556 }
557 }
558
559 if (actualReturn != NULL) {
560 // strip null prefix
561 if (result->actualDescriptor.indexOf((UChar)0x2f) == 0) { // U+002f=slash (/)
562 actualReturn->remove();
563 actualReturn->append(result->actualDescriptor,
564 1,
565 result->actualDescriptor.length() - 1);
566 } else {
567 *actualReturn = result->actualDescriptor;
568 }
569
570 if (actualReturn->isBogus()) {
571 status = U_MEMORY_ALLOCATION_ERROR;
572 delete result;
573 return NULL;
574 }
575 }
576
577 UObject* service = cloneInstance(result->service);
578 if (putInCache && !cacheResult) {
579 delete result;
580 }
581 return service;
582 }
583 }
584
585 return handleDefault(key, actualReturn, status);
586 }
587
588 UObject*
handleDefault(const ICUServiceKey &,UnicodeString *,UErrorCode &) const589 ICUService::handleDefault(const ICUServiceKey& /* key */, UnicodeString* /* actualIDReturn */, UErrorCode& /* status */) const
590 {
591 return NULL;
592 }
593
594 UVector&
getVisibleIDs(UVector & result,UErrorCode & status) const595 ICUService::getVisibleIDs(UVector& result, UErrorCode& status) const {
596 return getVisibleIDs(result, NULL, status);
597 }
598
599 UVector&
getVisibleIDs(UVector & result,const UnicodeString * matchID,UErrorCode & status) const600 ICUService::getVisibleIDs(UVector& result, const UnicodeString* matchID, UErrorCode& status) const
601 {
602 result.removeAllElements();
603
604 if (U_FAILURE(status)) {
605 return result;
606 }
607 UObjectDeleter *savedDeleter = result.setDeleter(uprv_deleteUObject);
608
609 {
610 Mutex mutex(&lock);
611 const Hashtable* map = getVisibleIDMap(status);
612 if (map != NULL) {
613 ICUServiceKey* fallbackKey = createKey(matchID, status);
614
615 for (int32_t pos = UHASH_FIRST; U_SUCCESS(status); ) {
616 const UHashElement* e = map->nextElement(pos);
617 if (e == NULL) {
618 break;
619 }
620
621 const UnicodeString* id = (const UnicodeString*)e->key.pointer;
622 if (fallbackKey != NULL) {
623 if (!fallbackKey->isFallbackOf(*id)) {
624 continue;
625 }
626 }
627
628 LocalPointer<UnicodeString> idClone(id->clone(), status);
629 result.adoptElement(idClone.orphan(), status);
630 }
631 delete fallbackKey;
632 }
633 }
634 if (U_FAILURE(status)) {
635 result.removeAllElements();
636 }
637 result.setDeleter(savedDeleter);
638 return result;
639 }
640
641 const Hashtable*
getVisibleIDMap(UErrorCode & status) const642 ICUService::getVisibleIDMap(UErrorCode& status) const {
643 if (U_FAILURE(status)) return NULL;
644
645 // must only be called when lock is already held
646
647 ICUService* ncthis = (ICUService*)this; // cast away semantic const
648 if (idCache == NULL) {
649 ncthis->idCache = new Hashtable(status);
650 if (idCache == NULL) {
651 status = U_MEMORY_ALLOCATION_ERROR;
652 } else if (factories != NULL) {
653 for (int32_t pos = factories->size(); --pos >= 0;) {
654 ICUServiceFactory* f = (ICUServiceFactory*)factories->elementAt(pos);
655 f->updateVisibleIDs(*idCache, status);
656 }
657 if (U_FAILURE(status)) {
658 delete idCache;
659 ncthis->idCache = NULL;
660 }
661 }
662 }
663
664 return idCache;
665 }
666
667
668 UnicodeString&
getDisplayName(const UnicodeString & id,UnicodeString & result) const669 ICUService::getDisplayName(const UnicodeString& id, UnicodeString& result) const
670 {
671 return getDisplayName(id, result, Locale::getDefault());
672 }
673
674 UnicodeString&
getDisplayName(const UnicodeString & id,UnicodeString & result,const Locale & locale) const675 ICUService::getDisplayName(const UnicodeString& id, UnicodeString& result, const Locale& locale) const
676 {
677 {
678 UErrorCode status = U_ZERO_ERROR;
679 Mutex mutex(&lock);
680 const Hashtable* map = getVisibleIDMap(status);
681 if (map != NULL) {
682 ICUServiceFactory* f = (ICUServiceFactory*)map->get(id);
683 if (f != NULL) {
684 f->getDisplayName(id, locale, result);
685 return result;
686 }
687
688 // fallback
689 status = U_ZERO_ERROR;
690 ICUServiceKey* fallbackKey = createKey(&id, status);
691 while (fallbackKey != NULL && fallbackKey->fallback()) {
692 UnicodeString us;
693 fallbackKey->currentID(us);
694 f = (ICUServiceFactory*)map->get(us);
695 if (f != NULL) {
696 f->getDisplayName(id, locale, result);
697 delete fallbackKey;
698 return result;
699 }
700 }
701 delete fallbackKey;
702 }
703 }
704 result.setToBogus();
705 return result;
706 }
707
708 UVector&
getDisplayNames(UVector & result,UErrorCode & status) const709 ICUService::getDisplayNames(UVector& result, UErrorCode& status) const
710 {
711 return getDisplayNames(result, Locale::getDefault(), NULL, status);
712 }
713
714
715 UVector&
getDisplayNames(UVector & result,const Locale & locale,UErrorCode & status) const716 ICUService::getDisplayNames(UVector& result, const Locale& locale, UErrorCode& status) const
717 {
718 return getDisplayNames(result, locale, NULL, status);
719 }
720
721 UVector&
getDisplayNames(UVector & result,const Locale & locale,const UnicodeString * matchID,UErrorCode & status) const722 ICUService::getDisplayNames(UVector& result,
723 const Locale& locale,
724 const UnicodeString* matchID,
725 UErrorCode& status) const
726 {
727 result.removeAllElements();
728 result.setDeleter(userv_deleteStringPair);
729 if (U_SUCCESS(status)) {
730 ICUService* ncthis = (ICUService*)this; // cast away semantic const
731 Mutex mutex(&lock);
732
733 if (dnCache != NULL && dnCache->locale != locale) {
734 delete dnCache;
735 ncthis->dnCache = NULL;
736 }
737
738 if (dnCache == NULL) {
739 const Hashtable* m = getVisibleIDMap(status);
740 if (U_FAILURE(status)) {
741 return result;
742 }
743 ncthis->dnCache = new DNCache(locale);
744 if (dnCache == NULL) {
745 status = U_MEMORY_ALLOCATION_ERROR;
746 return result;
747 }
748
749 int32_t pos = UHASH_FIRST;
750 const UHashElement* entry = NULL;
751 while ((entry = m->nextElement(pos)) != NULL) {
752 const UnicodeString* id = (const UnicodeString*)entry->key.pointer;
753 ICUServiceFactory* f = (ICUServiceFactory*)entry->value.pointer;
754 UnicodeString dname;
755 f->getDisplayName(*id, locale, dname);
756 if (dname.isBogus()) {
757 status = U_MEMORY_ALLOCATION_ERROR;
758 } else {
759 dnCache->cache.put(dname, (void*)id, status); // share pointer with visibleIDMap
760 if (U_SUCCESS(status)) {
761 continue;
762 }
763 }
764 delete dnCache;
765 ncthis->dnCache = NULL;
766 return result;
767 }
768 }
769 }
770
771 ICUServiceKey* matchKey = createKey(matchID, status);
772 /* To ensure that all elements in the hashtable are iterated, set pos to -1.
773 * nextElement(pos) will skip the position at pos and begin the iteration
774 * at the next position, which in this case will be 0.
775 */
776 int32_t pos = UHASH_FIRST;
777 const UHashElement *entry = NULL;
778 while ((entry = dnCache->cache.nextElement(pos)) != NULL) {
779 const UnicodeString* id = (const UnicodeString*)entry->value.pointer;
780 if (matchKey != NULL && !matchKey->isFallbackOf(*id)) {
781 continue;
782 }
783 const UnicodeString* dn = (const UnicodeString*)entry->key.pointer;
784 StringPair* sp = StringPair::create(*id, *dn, status);
785 result.adoptElement(sp, status);
786 if (U_FAILURE(status)) {
787 result.removeAllElements();
788 break;
789 }
790 }
791 delete matchKey;
792
793 return result;
794 }
795
796 URegistryKey
registerInstance(UObject * objToAdopt,const UnicodeString & id,UErrorCode & status)797 ICUService::registerInstance(UObject* objToAdopt, const UnicodeString& id, UErrorCode& status)
798 {
799 return registerInstance(objToAdopt, id, true, status);
800 }
801
802 URegistryKey
registerInstance(UObject * objToAdopt,const UnicodeString & id,UBool visible,UErrorCode & status)803 ICUService::registerInstance(UObject* objToAdopt, const UnicodeString& id, UBool visible, UErrorCode& status)
804 {
805 ICUServiceKey* key = createKey(&id, status);
806 if (key != NULL) {
807 UnicodeString canonicalID;
808 key->canonicalID(canonicalID);
809 delete key;
810
811 ICUServiceFactory* f = createSimpleFactory(objToAdopt, canonicalID, visible, status);
812 if (f != NULL) {
813 return registerFactory(f, status);
814 }
815 }
816 delete objToAdopt;
817 return NULL;
818 }
819
820 ICUServiceFactory*
createSimpleFactory(UObject * objToAdopt,const UnicodeString & id,UBool visible,UErrorCode & status)821 ICUService::createSimpleFactory(UObject* objToAdopt, const UnicodeString& id, UBool visible, UErrorCode& status)
822 {
823 if (U_SUCCESS(status)) {
824 if ((objToAdopt != NULL) && (!id.isBogus())) {
825 return new SimpleFactory(objToAdopt, id, visible);
826 }
827 status = U_ILLEGAL_ARGUMENT_ERROR;
828 }
829 return NULL;
830 }
831
832 URegistryKey
registerFactory(ICUServiceFactory * factoryToAdopt,UErrorCode & status)833 ICUService::registerFactory(ICUServiceFactory* factoryToAdopt, UErrorCode& status)
834 {
835 LocalPointer<ICUServiceFactory>lpFactoryToAdopt(factoryToAdopt);
836 if (U_FAILURE(status) || factoryToAdopt == nullptr) {
837 return nullptr;
838 }
839 {
840 Mutex mutex(&lock);
841
842 if (factories == nullptr) {
843 LocalPointer<UVector> lpFactories(new UVector(uprv_deleteUObject, nullptr, status), status);
844 if (U_FAILURE(status)) {
845 return nullptr;
846 }
847 factories = lpFactories.orphan();
848 }
849 factories->insertElementAt(lpFactoryToAdopt.orphan(), 0, status);
850 if (U_SUCCESS(status)) {
851 clearCaches();
852 }
853 } // Close of mutex lock block.
854
855 if (U_SUCCESS(status)) {
856 notifyChanged();
857 return (URegistryKey)factoryToAdopt;
858 } else {
859 return nullptr;
860 }
861 }
862
863 UBool
unregister(URegistryKey rkey,UErrorCode & status)864 ICUService::unregister(URegistryKey rkey, UErrorCode& status)
865 {
866 ICUServiceFactory *factory = (ICUServiceFactory*)rkey;
867 UBool result = false;
868 if (factory != NULL && factories != NULL) {
869 Mutex mutex(&lock);
870
871 if (factories->removeElement(factory)) {
872 clearCaches();
873 result = true;
874 } else {
875 status = U_ILLEGAL_ARGUMENT_ERROR;
876 delete factory;
877 }
878 }
879 if (result) {
880 notifyChanged();
881 }
882 return result;
883 }
884
885 void
reset()886 ICUService::reset()
887 {
888 {
889 Mutex mutex(&lock);
890 reInitializeFactories();
891 clearCaches();
892 }
893 notifyChanged();
894 }
895
896 void
reInitializeFactories()897 ICUService::reInitializeFactories()
898 {
899 if (factories != NULL) {
900 factories->removeAllElements();
901 }
902 }
903
904 UBool
isDefault() const905 ICUService::isDefault() const
906 {
907 return countFactories() == 0;
908 }
909
910 ICUServiceKey*
createKey(const UnicodeString * id,UErrorCode & status) const911 ICUService::createKey(const UnicodeString* id, UErrorCode& status) const
912 {
913 return (U_FAILURE(status) || id == NULL) ? NULL : new ICUServiceKey(*id);
914 }
915
916 void
clearCaches()917 ICUService::clearCaches()
918 {
919 // callers synchronize before use
920 ++timestamp;
921 delete dnCache;
922 dnCache = NULL;
923 delete idCache;
924 idCache = NULL;
925 delete serviceCache; serviceCache = NULL;
926 }
927
928 void
clearServiceCache()929 ICUService::clearServiceCache()
930 {
931 // callers synchronize before use
932 delete serviceCache; serviceCache = NULL;
933 }
934
935 UBool
acceptsListener(const EventListener & l) const936 ICUService::acceptsListener(const EventListener& l) const
937 {
938 return dynamic_cast<const ServiceListener*>(&l) != NULL;
939 }
940
941 void
notifyListener(EventListener & l) const942 ICUService::notifyListener(EventListener& l) const
943 {
944 ((ServiceListener&)l).serviceChanged(*this);
945 }
946
947 UnicodeString&
getName(UnicodeString & result) const948 ICUService::getName(UnicodeString& result) const
949 {
950 return result.append(name);
951 }
952
953 int32_t
countFactories() const954 ICUService::countFactories() const
955 {
956 return factories == NULL ? 0 : factories->size();
957 }
958
959 int32_t
getTimestamp() const960 ICUService::getTimestamp() const
961 {
962 return timestamp;
963 }
964
965 U_NAMESPACE_END
966
967 /* UCONFIG_NO_SERVICE */
968 #endif
969