1 /*
2  ********************************************************************
3  * COPYRIGHT:
4  * Copyright (c) 1996-2015, International Business Machines Corporation and
5  * others. All Rights Reserved.
6  ********************************************************************
7  *
8  *  ucnv_bld.cpp:
9  *
10  *  Defines functions that are used in the creation/initialization/deletion
11  *  of converters and related structures.
12  *  uses uconv_io.h routines to access disk information
13  *  is used by ucnv.h to implement public API create/delete/flushCache routines
14  * Modification History:
15  *
16  *   Date        Name        Description
17  *
18  *   06/20/2000  helena      OS/400 port changes; mostly typecast.
19  *   06/29/2000  helena      Major rewrite of the callback interface.
20 */
21 
22 #include "unicode/utypes.h"
23 
24 #if !UCONFIG_NO_CONVERSION
25 
26 #include "unicode/putil.h"
27 #include "unicode/udata.h"
28 #include "unicode/ucnv.h"
29 #include "unicode/uloc.h"
30 #include "mutex.h"
31 #include "putilimp.h"
32 #include "uassert.h"
33 #include "utracimp.h"
34 #include "ucnv_io.h"
35 #include "ucnv_bld.h"
36 #include "ucnvmbcs.h"
37 #include "ucnv_ext.h"
38 #include "ucnv_cnv.h"
39 #include "ucnv_imp.h"
40 #include "uhash.h"
41 #include "umutex.h"
42 #include "cstring.h"
43 #include "cmemory.h"
44 #include "ucln_cmn.h"
45 #include "ustr_cnv.h"
46 
47 
48 #if 0
49 #include <stdio.h>
50 extern void UCNV_DEBUG_LOG(char *what, char *who, void *p, int l);
51 #define UCNV_DEBUG_LOG(x,y,z) UCNV_DEBUG_LOG(x,y,z,__LINE__)
52 #else
53 # define UCNV_DEBUG_LOG(x,y,z)
54 #endif
55 
56 static const UConverterSharedData * const
57 converterData[UCNV_NUMBER_OF_SUPPORTED_CONVERTER_TYPES]={
58     NULL, NULL,
59 
60 #if UCONFIG_NO_LEGACY_CONVERSION
61     NULL,
62 #else
63     &_MBCSData,
64 #endif
65 
66     &_Latin1Data,
67     &_UTF8Data, &_UTF16BEData, &_UTF16LEData,
68 #if UCONFIG_ONLY_HTML_CONVERSION
69     NULL, NULL,
70 #else
71     &_UTF32BEData, &_UTF32LEData,
72 #endif
73     NULL,
74 
75 #if UCONFIG_NO_LEGACY_CONVERSION
76     NULL,
77 #else
78     &_ISO2022Data,
79 #endif
80 
81 #if UCONFIG_NO_LEGACY_CONVERSION || UCONFIG_ONLY_HTML_CONVERSION
82     NULL, NULL, NULL, NULL, NULL, NULL,
83     NULL, NULL, NULL, NULL, NULL, NULL,
84     NULL,
85 #else
86     &_LMBCSData1,&_LMBCSData2, &_LMBCSData3, &_LMBCSData4, &_LMBCSData5, &_LMBCSData6,
87     &_LMBCSData8,&_LMBCSData11,&_LMBCSData16,&_LMBCSData17,&_LMBCSData18,&_LMBCSData19,
88     &_HZData,
89 #endif
90 
91 #if UCONFIG_ONLY_HTML_CONVERSION
92     NULL,
93 #else
94     &_SCSUData,
95 #endif
96 
97 
98 #if UCONFIG_NO_LEGACY_CONVERSION || UCONFIG_ONLY_HTML_CONVERSION
99     NULL,
100 #else
101     &_ISCIIData,
102 #endif
103 
104     &_ASCIIData,
105 #if UCONFIG_ONLY_HTML_CONVERSION
106     NULL, NULL, &_UTF16Data, NULL, NULL, NULL,
107 #else
108     &_UTF7Data, &_Bocu1Data, &_UTF16Data, &_UTF32Data, &_CESU8Data, &_IMAPData,
109 #endif
110 
111 #if UCONFIG_NO_LEGACY_CONVERSION || UCONFIG_ONLY_HTML_CONVERSION
112     NULL,
113 #else
114     &_CompoundTextData
115 #endif
116 };
117 
118 /* Please keep this in binary sorted order for getAlgorithmicTypeFromName.
119    Also the name should be in lower case and all spaces, dashes and underscores
120    removed
121 */
122 static struct {
123   const char *name;
124   const UConverterType type;
125 } const cnvNameType[] = {
126 #if !UCONFIG_ONLY_HTML_CONVERSION
127   { "bocu1", UCNV_BOCU1 },
128   { "cesu8", UCNV_CESU8 },
129 #endif
130 #if !UCONFIG_NO_LEGACY_CONVERSION && !UCONFIG_ONLY_HTML_CONVERSION
131   { "hz",UCNV_HZ },
132 #endif
133 #if !UCONFIG_ONLY_HTML_CONVERSION
134   { "imapmailboxname", UCNV_IMAP_MAILBOX },
135 #endif
136 #if !UCONFIG_NO_LEGACY_CONVERSION && !UCONFIG_ONLY_HTML_CONVERSION
137   { "iscii", UCNV_ISCII },
138 #endif
139 #if !UCONFIG_NO_LEGACY_CONVERSION
140   { "iso2022", UCNV_ISO_2022 },
141 #endif
142   { "iso88591", UCNV_LATIN_1 },
143 #if !UCONFIG_NO_LEGACY_CONVERSION && !UCONFIG_ONLY_HTML_CONVERSION
144   { "lmbcs1", UCNV_LMBCS_1 },
145   { "lmbcs11",UCNV_LMBCS_11 },
146   { "lmbcs16",UCNV_LMBCS_16 },
147   { "lmbcs17",UCNV_LMBCS_17 },
148   { "lmbcs18",UCNV_LMBCS_18 },
149   { "lmbcs19",UCNV_LMBCS_19 },
150   { "lmbcs2", UCNV_LMBCS_2 },
151   { "lmbcs3", UCNV_LMBCS_3 },
152   { "lmbcs4", UCNV_LMBCS_4 },
153   { "lmbcs5", UCNV_LMBCS_5 },
154   { "lmbcs6", UCNV_LMBCS_6 },
155   { "lmbcs8", UCNV_LMBCS_8 },
156 #endif
157 #if !UCONFIG_ONLY_HTML_CONVERSION
158   { "scsu", UCNV_SCSU },
159 #endif
160   { "usascii", UCNV_US_ASCII },
161   { "utf16", UCNV_UTF16 },
162   { "utf16be", UCNV_UTF16_BigEndian },
163   { "utf16le", UCNV_UTF16_LittleEndian },
164 #if U_IS_BIG_ENDIAN
165   { "utf16oppositeendian", UCNV_UTF16_LittleEndian },
166   { "utf16platformendian", UCNV_UTF16_BigEndian },
167 #else
168   { "utf16oppositeendian", UCNV_UTF16_BigEndian},
169   { "utf16platformendian", UCNV_UTF16_LittleEndian },
170 #endif
171 #if !UCONFIG_ONLY_HTML_CONVERSION
172   { "utf32", UCNV_UTF32 },
173   { "utf32be", UCNV_UTF32_BigEndian },
174   { "utf32le", UCNV_UTF32_LittleEndian },
175 #if U_IS_BIG_ENDIAN
176   { "utf32oppositeendian", UCNV_UTF32_LittleEndian },
177   { "utf32platformendian", UCNV_UTF32_BigEndian },
178 #else
179   { "utf32oppositeendian", UCNV_UTF32_BigEndian },
180   { "utf32platformendian", UCNV_UTF32_LittleEndian },
181 #endif
182 #endif
183 #if !UCONFIG_ONLY_HTML_CONVERSION
184   { "utf7", UCNV_UTF7 },
185 #endif
186   { "utf8", UCNV_UTF8 },
187 #if !UCONFIG_ONLY_HTML_CONVERSION
188   { "x11compoundtext", UCNV_COMPOUND_TEXT}
189 #endif
190 };
191 
192 
193 /*initializes some global variables */
194 static UHashtable *SHARED_DATA_HASHTABLE = NULL;
195 static UMutex cnvCacheMutex = U_MUTEX_INITIALIZER;  /* Mutex for synchronizing cnv cache access. */
196                                                     /*  Note:  the global mutex is used for      */
197                                                     /*         reference count updates.          */
198 
199 static const char **gAvailableConverters = NULL;
200 static uint16_t gAvailableConverterCount = 0;
201 static icu::UInitOnce gAvailableConvertersInitOnce = U_INITONCE_INITIALIZER;
202 
203 #if !U_CHARSET_IS_UTF8
204 
205 /* This contains the resolved converter name. So no further alias lookup is needed again. */
206 static char gDefaultConverterNameBuffer[UCNV_MAX_CONVERTER_NAME_LENGTH + 1]; /* +1 for NULL */
207 static const char *gDefaultConverterName = NULL;
208 
209 /*
210 If the default converter is an algorithmic converter, this is the cached value.
211 We don't cache a full UConverter and clone it because ucnv_clone doesn't have
212 less overhead than an algorithmic open. We don't cache non-algorithmic converters
213 because ucnv_flushCache must be able to unload the default converter and its table.
214 */
215 static const UConverterSharedData *gDefaultAlgorithmicSharedData = NULL;
216 
217 /* Does gDefaultConverterName have a converter option and require extra parsing? */
218 static UBool gDefaultConverterContainsOption;
219 
220 #endif  /* !U_CHARSET_IS_UTF8 */
221 
222 static const char DATA_TYPE[] = "cnv";
223 
224 /* ucnv_flushAvailableConverterCache. This is only called from ucnv_cleanup().
225  *                       If it is ever to be called from elsewhere, synchronization
226  *                       will need to be considered.
227  */
228 static void
ucnv_flushAvailableConverterCache()229 ucnv_flushAvailableConverterCache() {
230     gAvailableConverterCount = 0;
231     if (gAvailableConverters) {
232         uprv_free((char **)gAvailableConverters);
233         gAvailableConverters = NULL;
234     }
235     gAvailableConvertersInitOnce.reset();
236 }
237 
238 /* ucnv_cleanup - delete all storage held by the converter cache, except any  */
239 /*                in use by open converters.                                  */
240 /*                Not thread safe.                                            */
241 /*                Not supported API.                                          */
ucnv_cleanup(void)242 static UBool U_CALLCONV ucnv_cleanup(void) {
243     ucnv_flushCache();
244     if (SHARED_DATA_HASHTABLE != NULL && uhash_count(SHARED_DATA_HASHTABLE) == 0) {
245         uhash_close(SHARED_DATA_HASHTABLE);
246         SHARED_DATA_HASHTABLE = NULL;
247     }
248 
249     /* Isn't called from flushCache because other threads may have preexisting references to the table. */
250     ucnv_flushAvailableConverterCache();
251 
252 #if !U_CHARSET_IS_UTF8
253     gDefaultConverterName = NULL;
254     gDefaultConverterNameBuffer[0] = 0;
255     gDefaultConverterContainsOption = FALSE;
256     gDefaultAlgorithmicSharedData = NULL;
257 #endif
258 
259     return (SHARED_DATA_HASHTABLE == NULL);
260 }
261 
262 static UBool U_CALLCONV
isCnvAcceptable(void *,const char *,const char *,const UDataInfo * pInfo)263 isCnvAcceptable(void * /*context*/,
264                 const char * /*type*/, const char * /*name*/,
265                 const UDataInfo *pInfo) {
266     return (UBool)(
267         pInfo->size>=20 &&
268         pInfo->isBigEndian==U_IS_BIG_ENDIAN &&
269         pInfo->charsetFamily==U_CHARSET_FAMILY &&
270         pInfo->sizeofUChar==U_SIZEOF_UCHAR &&
271         pInfo->dataFormat[0]==0x63 &&   /* dataFormat="cnvt" */
272         pInfo->dataFormat[1]==0x6e &&
273         pInfo->dataFormat[2]==0x76 &&
274         pInfo->dataFormat[3]==0x74 &&
275         pInfo->formatVersion[0]==6);  /* Everything will be version 6 */
276 }
277 
278 /**
279  * Un flatten shared data from a UDATA..
280  */
281 static UConverterSharedData*
ucnv_data_unFlattenClone(UConverterLoadArgs * pArgs,UDataMemory * pData,UErrorCode * status)282 ucnv_data_unFlattenClone(UConverterLoadArgs *pArgs, UDataMemory *pData, UErrorCode *status)
283 {
284     /* UDataInfo info; -- necessary only if some converters have different formatVersion */
285     const uint8_t *raw = (const uint8_t *)udata_getMemory(pData);
286     const UConverterStaticData *source = (const UConverterStaticData *) raw;
287     UConverterSharedData *data;
288     UConverterType type = (UConverterType)source->conversionType;
289 
290     if(U_FAILURE(*status))
291         return NULL;
292 
293     if( (uint16_t)type >= UCNV_NUMBER_OF_SUPPORTED_CONVERTER_TYPES ||
294         converterData[type] == NULL ||
295         converterData[type]->referenceCounter != 1 ||
296         source->structSize != sizeof(UConverterStaticData))
297     {
298         *status = U_INVALID_TABLE_FORMAT;
299         return NULL;
300     }
301 
302     data = (UConverterSharedData *)uprv_malloc(sizeof(UConverterSharedData));
303     if(data == NULL) {
304         *status = U_MEMORY_ALLOCATION_ERROR;
305         return NULL;
306     }
307 
308     /* copy initial values from the static structure for this type */
309     uprv_memcpy(data, converterData[type], sizeof(UConverterSharedData));
310 
311 #if 0 /* made UConverterMBCSTable part of UConverterSharedData -- markus 20031107 */
312     /*
313      * It would be much more efficient if the table were a direct member, not a pointer.
314      * However, that would add to the size of all UConverterSharedData objects
315      * even if they do not use this table (especially algorithmic ones).
316      * If this changes, then the static templates from converterData[type]
317      * need more entries.
318      *
319      * In principle, it would be cleaner if the load() function below
320      * allocated the table.
321      */
322     data->table = (UConverterTable *)uprv_malloc(sizeof(UConverterTable));
323     if(data->table == NULL) {
324         uprv_free(data);
325         *status = U_MEMORY_ALLOCATION_ERROR;
326         return NULL;
327     }
328     uprv_memset(data->table, 0, sizeof(UConverterTable));
329 #endif
330 
331     data->staticData = source;
332 
333     data->sharedDataCached = FALSE;
334 
335     /* fill in fields from the loaded data */
336     data->dataMemory = (void*)pData; /* for future use */
337 
338     if(data->impl->load != NULL) {
339         data->impl->load(data, pArgs, raw + source->structSize, status);
340         if(U_FAILURE(*status)) {
341             uprv_free(data->table);
342             uprv_free(data);
343             return NULL;
344         }
345     }
346     return data;
347 }
348 
349 /*Takes an alias name gets an actual converter file name
350  *goes to disk and opens it.
351  *allocates the memory and returns a new UConverter object
352  */
createConverterFromFile(UConverterLoadArgs * pArgs,UErrorCode * err)353 static UConverterSharedData *createConverterFromFile(UConverterLoadArgs *pArgs, UErrorCode * err)
354 {
355     UDataMemory *data;
356     UConverterSharedData *sharedData;
357 
358     UTRACE_ENTRY_OC(UTRACE_UCNV_LOAD);
359 
360     if (U_FAILURE (*err)) {
361         UTRACE_EXIT_STATUS(*err);
362         return NULL;
363     }
364 
365     UTRACE_DATA2(UTRACE_OPEN_CLOSE, "load converter %s from package %s", pArgs->name, pArgs->pkg);
366 
367     data = udata_openChoice(pArgs->pkg, DATA_TYPE, pArgs->name, isCnvAcceptable, NULL, err);
368     if(U_FAILURE(*err))
369     {
370         UTRACE_EXIT_STATUS(*err);
371         return NULL;
372     }
373 
374     sharedData = ucnv_data_unFlattenClone(pArgs, data, err);
375     if(U_FAILURE(*err))
376     {
377         udata_close(data);
378         UTRACE_EXIT_STATUS(*err);
379         return NULL;
380     }
381 
382     /*
383      * TODO Store pkg in a field in the shared data so that delta-only converters
384      * can load base converters from the same package.
385      * If the pkg name is longer than the field, then either do not load the converter
386      * in the first place, or just set the pkg field to "".
387      */
388 
389     UTRACE_EXIT_PTR_STATUS(sharedData, *err);
390     return sharedData;
391 }
392 
393 /*returns a converter type from a string
394  */
395 static const UConverterSharedData *
getAlgorithmicTypeFromName(const char * realName)396 getAlgorithmicTypeFromName(const char *realName)
397 {
398     uint32_t mid, start, limit;
399     uint32_t lastMid;
400     int result;
401     char strippedName[UCNV_MAX_CONVERTER_NAME_LENGTH];
402 
403     /* Lower case and remove ignoreable characters. */
404     ucnv_io_stripForCompare(strippedName, realName);
405 
406     /* do a binary search for the alias */
407     start = 0;
408     limit = sizeof(cnvNameType)/sizeof(cnvNameType[0]);
409     mid = limit;
410     lastMid = UINT32_MAX;
411 
412     for (;;) {
413         mid = (uint32_t)((start + limit) / 2);
414         if (lastMid == mid) {   /* Have we moved? */
415             break;  /* We haven't moved, and it wasn't found. */
416         }
417         lastMid = mid;
418         result = uprv_strcmp(strippedName, cnvNameType[mid].name);
419 
420         if (result < 0) {
421             limit = mid;
422         } else if (result > 0) {
423             start = mid;
424         } else {
425             return converterData[cnvNameType[mid].type];
426         }
427     }
428 
429     return NULL;
430 }
431 
432 /*
433 * Based on the number of known converters, this determines how many times larger
434 * the shared data hash table should be. When on small platforms, or just a couple
435 * of converters are used, this number should be 2. When memory is plentiful, or
436 * when ucnv_countAvailable is ever used with a lot of available converters,
437 * this should be 4.
438 * Larger numbers reduce the number of hash collisions, but use more memory.
439 */
440 #define UCNV_CACHE_LOAD_FACTOR 2
441 
442 /* Puts the shared data in the static hashtable SHARED_DATA_HASHTABLE */
443 /*   Will always be called with the cnvCacheMutex alrady being held   */
444 /*     by the calling function.                                       */
445 /* Stores the shared data in the SHARED_DATA_HASHTABLE
446  * @param data The shared data
447  */
448 static void
ucnv_shareConverterData(UConverterSharedData * data)449 ucnv_shareConverterData(UConverterSharedData * data)
450 {
451     UErrorCode err = U_ZERO_ERROR;
452     /*Lazy evaluates the Hashtable itself */
453     /*void *sanity = NULL;*/
454 
455     if (SHARED_DATA_HASHTABLE == NULL)
456     {
457         SHARED_DATA_HASHTABLE = uhash_openSize(uhash_hashChars, uhash_compareChars, NULL,
458                             ucnv_io_countKnownConverters(&err)*UCNV_CACHE_LOAD_FACTOR,
459                             &err);
460         ucln_common_registerCleanup(UCLN_COMMON_UCNV, ucnv_cleanup);
461 
462         if (U_FAILURE(err))
463             return;
464     }
465 
466     /* ### check to see if the element is not already there! */
467 
468     /*
469     sanity =   ucnv_getSharedConverterData (data->staticData->name);
470     if(sanity != NULL)
471     {
472     UCNV_DEBUG_LOG("put:overwrite!",data->staticData->name,sanity);
473     }
474     UCNV_DEBUG_LOG("put:chk",data->staticData->name,sanity);
475     */
476 
477     /* Mark it shared */
478     data->sharedDataCached = TRUE;
479 
480     uhash_put(SHARED_DATA_HASHTABLE,
481             (void*) data->staticData->name, /* Okay to cast away const as long as
482             keyDeleter == NULL */
483             data,
484             &err);
485     UCNV_DEBUG_LOG("put", data->staticData->name,data);
486 
487 }
488 
489 /*  Look up a converter name in the shared data cache.                    */
490 /*    cnvCacheMutex must be held by the caller to protect the hash table. */
491 /* gets the shared data from the SHARED_DATA_HASHTABLE (might return NULL if it isn't there)
492  * @param name The name of the shared data
493  * @return the shared data from the SHARED_DATA_HASHTABLE
494  */
495 static UConverterSharedData *
ucnv_getSharedConverterData(const char * name)496 ucnv_getSharedConverterData(const char *name)
497 {
498     /*special case when no Table has yet been created we return NULL */
499     if (SHARED_DATA_HASHTABLE == NULL)
500     {
501         return NULL;
502     }
503     else
504     {
505         UConverterSharedData *rc;
506 
507         rc = (UConverterSharedData*)uhash_get(SHARED_DATA_HASHTABLE, name);
508         UCNV_DEBUG_LOG("get",name,rc);
509         return rc;
510     }
511 }
512 
513 /*frees the string of memory blocks associates with a sharedConverter
514  *if and only if the referenceCounter == 0
515  */
516 /* Deletes (frees) the Shared data it's passed. first it checks the referenceCounter to
517  * see if anyone is using it, if not it frees all the memory stemming from sharedConverterData and
518  * returns TRUE,
519  * otherwise returns FALSE
520  * @param sharedConverterData The shared data
521  * @return if not it frees all the memory stemming from sharedConverterData and
522  * returns TRUE, otherwise returns FALSE
523  */
524 static UBool
ucnv_deleteSharedConverterData(UConverterSharedData * deadSharedData)525 ucnv_deleteSharedConverterData(UConverterSharedData * deadSharedData)
526 {
527     UTRACE_ENTRY_OC(UTRACE_UCNV_UNLOAD);
528     UTRACE_DATA2(UTRACE_OPEN_CLOSE, "unload converter %s shared data %p", deadSharedData->staticData->name, deadSharedData);
529 
530     if (deadSharedData->referenceCounter > 0) {
531         UTRACE_EXIT_VALUE((int32_t)FALSE);
532         return FALSE;
533     }
534 
535     if (deadSharedData->impl->unload != NULL) {
536         deadSharedData->impl->unload(deadSharedData);
537     }
538 
539     if(deadSharedData->dataMemory != NULL)
540     {
541         UDataMemory *data = (UDataMemory*)deadSharedData->dataMemory;
542         udata_close(data);
543     }
544 
545     if(deadSharedData->table != NULL)
546     {
547         uprv_free(deadSharedData->table);
548     }
549 
550 #if 0
551     /* if the static data is actually owned by the shared data */
552     /* enable if we ever have this situation. */
553     if(deadSharedData->staticDataOwned == TRUE) /* see ucnv_bld.h */
554     {
555         uprv_free((void*)deadSharedData->staticData);
556     }
557 #endif
558 
559 #if 0
560     /* Zap it ! */
561     uprv_memset(deadSharedData->0, sizeof(*deadSharedData));
562 #endif
563 
564     uprv_free(deadSharedData);
565 
566     UTRACE_EXIT_VALUE((int32_t)TRUE);
567     return TRUE;
568 }
569 
570 /**
571  * Load a non-algorithmic converter.
572  * If pkg==NULL, then this function must be called inside umtx_lock(&cnvCacheMutex).
573  */
574 UConverterSharedData *
ucnv_load(UConverterLoadArgs * pArgs,UErrorCode * err)575 ucnv_load(UConverterLoadArgs *pArgs, UErrorCode *err) {
576     UConverterSharedData *mySharedConverterData;
577 
578     if(err == NULL || U_FAILURE(*err)) {
579         return NULL;
580     }
581 
582     if(pArgs->pkg != NULL && *pArgs->pkg != 0) {
583         /* application-provided converters are not currently cached */
584         return createConverterFromFile(pArgs, err);
585     }
586 
587     mySharedConverterData = ucnv_getSharedConverterData(pArgs->name);
588     if (mySharedConverterData == NULL)
589     {
590         /*Not cached, we need to stream it in from file */
591         mySharedConverterData = createConverterFromFile(pArgs, err);
592         if (U_FAILURE (*err) || (mySharedConverterData == NULL))
593         {
594             return NULL;
595         }
596         else if (!pArgs->onlyTestIsLoadable)
597         {
598             /* share it with other library clients */
599             ucnv_shareConverterData(mySharedConverterData);
600         }
601     }
602     else
603     {
604         /* The data for this converter was already in the cache.            */
605         /* Update the reference counter on the shared data: one more client */
606         mySharedConverterData->referenceCounter++;
607     }
608 
609     return mySharedConverterData;
610 }
611 
612 /**
613  * Unload a non-algorithmic converter.
614  * It must be sharedData->referenceCounter != ~0
615  * and this function must be called inside umtx_lock(&cnvCacheMutex).
616  */
617 U_CAPI void
ucnv_unload(UConverterSharedData * sharedData)618 ucnv_unload(UConverterSharedData *sharedData) {
619     if(sharedData != NULL) {
620         if (sharedData->referenceCounter > 0) {
621             sharedData->referenceCounter--;
622         }
623 
624         if((sharedData->referenceCounter <= 0)&&(sharedData->sharedDataCached == FALSE)) {
625             ucnv_deleteSharedConverterData(sharedData);
626         }
627     }
628 }
629 
630 U_CFUNC void
ucnv_unloadSharedDataIfReady(UConverterSharedData * sharedData)631 ucnv_unloadSharedDataIfReady(UConverterSharedData *sharedData)
632 {
633     /*
634     Checking whether it's an algorithic converter is okay
635     in multithreaded applications because the value never changes.
636     Don't check referenceCounter for any other value.
637     */
638     if(sharedData != NULL && sharedData->referenceCounter != (uint32_t)~0) {
639         umtx_lock(&cnvCacheMutex);
640         ucnv_unload(sharedData);
641         umtx_unlock(&cnvCacheMutex);
642     }
643 }
644 
645 U_CFUNC void
ucnv_incrementRefCount(UConverterSharedData * sharedData)646 ucnv_incrementRefCount(UConverterSharedData *sharedData)
647 {
648     /*
649     Checking whether it's an algorithic converter is okay
650     in multithreaded applications because the value never changes.
651     Don't check referenceCounter for any other value.
652     */
653     if(sharedData != NULL && sharedData->referenceCounter != (uint32_t)~0) {
654         umtx_lock(&cnvCacheMutex);
655         sharedData->referenceCounter++;
656         umtx_unlock(&cnvCacheMutex);
657     }
658 }
659 
660 /*
661  * *pPieces must be initialized.
662  * The name without options will be copied to pPieces->cnvName.
663  * The locale and options will be copied to pPieces only if present in inName,
664  * otherwise the existing values in pPieces remain.
665  * *pArgs will be set to the pPieces values.
666  */
667 static void
parseConverterOptions(const char * inName,UConverterNamePieces * pPieces,UConverterLoadArgs * pArgs,UErrorCode * err)668 parseConverterOptions(const char *inName,
669                       UConverterNamePieces *pPieces,
670                       UConverterLoadArgs *pArgs,
671                       UErrorCode *err)
672 {
673     char *cnvName = pPieces->cnvName;
674     char c;
675     int32_t len = 0;
676 
677     pArgs->name=inName;
678     pArgs->locale=pPieces->locale;
679     pArgs->options=pPieces->options;
680 
681     /* copy the converter name itself to cnvName */
682     while((c=*inName)!=0 && c!=UCNV_OPTION_SEP_CHAR) {
683         if (++len>=UCNV_MAX_CONVERTER_NAME_LENGTH) {
684             *err = U_ILLEGAL_ARGUMENT_ERROR;    /* bad name */
685             pPieces->cnvName[0]=0;
686             return;
687         }
688         *cnvName++=c;
689         inName++;
690     }
691     *cnvName=0;
692     pArgs->name=pPieces->cnvName;
693 
694     /* parse options. No more name copying should occur. */
695     while((c=*inName)!=0) {
696         if(c==UCNV_OPTION_SEP_CHAR) {
697             ++inName;
698         }
699 
700         /* inName is behind an option separator */
701         if(uprv_strncmp(inName, "locale=", 7)==0) {
702             /* do not modify locale itself in case we have multiple locale options */
703             char *dest=pPieces->locale;
704 
705             /* copy the locale option value */
706             inName+=7;
707             len=0;
708             while((c=*inName)!=0 && c!=UCNV_OPTION_SEP_CHAR) {
709                 ++inName;
710 
711                 if(++len>=ULOC_FULLNAME_CAPACITY) {
712                     *err=U_ILLEGAL_ARGUMENT_ERROR;    /* bad name */
713                     pPieces->locale[0]=0;
714                     return;
715                 }
716 
717                 *dest++=c;
718             }
719             *dest=0;
720         } else if(uprv_strncmp(inName, "version=", 8)==0) {
721             /* copy the version option value into bits 3..0 of pPieces->options */
722             inName+=8;
723             c=*inName;
724             if(c==0) {
725                 pArgs->options=(pPieces->options&=~UCNV_OPTION_VERSION);
726                 return;
727             } else if((uint8_t)(c-'0')<10) {
728                 pArgs->options=pPieces->options=(pPieces->options&~UCNV_OPTION_VERSION)|(uint32_t)(c-'0');
729                 ++inName;
730             }
731         } else if(uprv_strncmp(inName, "swaplfnl", 8)==0) {
732             inName+=8;
733             pArgs->options=(pPieces->options|=UCNV_OPTION_SWAP_LFNL);
734         /* add processing for new options here with another } else if(uprv_strncmp(inName, "option-name=", XX)==0) { */
735         } else {
736             /* ignore any other options until we define some */
737             while(((c = *inName++) != 0) && (c != UCNV_OPTION_SEP_CHAR)) {
738             }
739             if(c==0) {
740                 return;
741             }
742         }
743     }
744 }
745 
746 /*Logic determines if the converter is Algorithmic AND/OR cached
747  *depending on that:
748  * -we either go to get data from disk and cache it (Data=TRUE, Cached=False)
749  * -Get it from a Hashtable (Data=X, Cached=TRUE)
750  * -Call dataConverter initializer (Data=TRUE, Cached=TRUE)
751  * -Call AlgorithmicConverter initializer (Data=FALSE, Cached=TRUE)
752  */
753 U_CFUNC UConverterSharedData *
ucnv_loadSharedData(const char * converterName,UConverterNamePieces * pPieces,UConverterLoadArgs * pArgs,UErrorCode * err)754 ucnv_loadSharedData(const char *converterName,
755                     UConverterNamePieces *pPieces,
756                     UConverterLoadArgs *pArgs,
757                     UErrorCode * err) {
758     UConverterNamePieces stackPieces;
759     UConverterLoadArgs stackArgs;
760     UConverterSharedData *mySharedConverterData = NULL;
761     UErrorCode internalErrorCode = U_ZERO_ERROR;
762     UBool mayContainOption = TRUE;
763     UBool checkForAlgorithmic = TRUE;
764 
765     if (U_FAILURE (*err)) {
766         return NULL;
767     }
768 
769     if(pPieces == NULL) {
770         if(pArgs != NULL) {
771             /*
772              * Bad: We may set pArgs pointers to stackPieces fields
773              * which will be invalid after this function returns.
774              */
775             *err = U_INTERNAL_PROGRAM_ERROR;
776             return NULL;
777         }
778         pPieces = &stackPieces;
779     }
780     if(pArgs == NULL) {
781         uprv_memset(&stackArgs, 0, sizeof(stackArgs));
782         stackArgs.size = (int32_t)sizeof(stackArgs);
783         pArgs = &stackArgs;
784     }
785 
786     pPieces->cnvName[0] = 0;
787     pPieces->locale[0] = 0;
788     pPieces->options = 0;
789 
790     pArgs->name = converterName;
791     pArgs->locale = pPieces->locale;
792     pArgs->options = pPieces->options;
793 
794     /* In case "name" is NULL we want to open the default converter. */
795     if (converterName == NULL) {
796 #if U_CHARSET_IS_UTF8
797         pArgs->name = "UTF-8";
798         return (UConverterSharedData *)converterData[UCNV_UTF8];
799 #else
800         /* Call ucnv_getDefaultName first to query the name from the OS. */
801         pArgs->name = ucnv_getDefaultName();
802         if (pArgs->name == NULL) {
803             *err = U_MISSING_RESOURCE_ERROR;
804             return NULL;
805         }
806         mySharedConverterData = (UConverterSharedData *)gDefaultAlgorithmicSharedData;
807         checkForAlgorithmic = FALSE;
808         mayContainOption = gDefaultConverterContainsOption;
809         /* the default converter name is already canonical */
810 #endif
811     }
812     else if(UCNV_FAST_IS_UTF8(converterName)) {
813         /* fastpath for UTF-8 */
814         pArgs->name = "UTF-8";
815         return (UConverterSharedData *)converterData[UCNV_UTF8];
816     }
817     else {
818         /* separate the converter name from the options */
819         parseConverterOptions(converterName, pPieces, pArgs, err);
820         if (U_FAILURE(*err)) {
821             /* Very bad name used. */
822             return NULL;
823         }
824 
825         /* get the canonical converter name */
826         pArgs->name = ucnv_io_getConverterName(pArgs->name, &mayContainOption, &internalErrorCode);
827         if (U_FAILURE(internalErrorCode) || pArgs->name == NULL) {
828             /*
829             * set the input name in case the converter was added
830             * without updating the alias table, or when there is no alias table
831             */
832             pArgs->name = pPieces->cnvName;
833         } else if (internalErrorCode == U_AMBIGUOUS_ALIAS_WARNING) {
834             *err = U_AMBIGUOUS_ALIAS_WARNING;
835         }
836     }
837 
838     /* separate the converter name from the options */
839     if(mayContainOption && pArgs->name != pPieces->cnvName) {
840         parseConverterOptions(pArgs->name, pPieces, pArgs, err);
841     }
842 
843     /* get the shared data for an algorithmic converter, if it is one */
844     if (checkForAlgorithmic) {
845         mySharedConverterData = (UConverterSharedData *)getAlgorithmicTypeFromName(pArgs->name);
846     }
847     if (mySharedConverterData == NULL)
848     {
849         /* it is a data-based converter, get its shared data.               */
850         /* Hold the cnvCacheMutex through the whole process of checking the */
851         /*   converter data cache, and adding new entries to the cache      */
852         /*   to prevent other threads from modifying the cache during the   */
853         /*   process.                                                       */
854         pArgs->nestedLoads=1;
855         pArgs->pkg=NULL;
856 
857         umtx_lock(&cnvCacheMutex);
858         mySharedConverterData = ucnv_load(pArgs, err);
859         umtx_unlock(&cnvCacheMutex);
860         if (U_FAILURE (*err) || (mySharedConverterData == NULL))
861         {
862             return NULL;
863         }
864     }
865 
866     return mySharedConverterData;
867 }
868 
869 U_CAPI UConverter *
ucnv_createConverter(UConverter * myUConverter,const char * converterName,UErrorCode * err)870 ucnv_createConverter(UConverter *myUConverter, const char *converterName, UErrorCode * err)
871 {
872     UConverterNamePieces stackPieces;
873     UConverterLoadArgs stackArgs=UCNV_LOAD_ARGS_INITIALIZER;
874     UConverterSharedData *mySharedConverterData;
875 
876     UTRACE_ENTRY_OC(UTRACE_UCNV_OPEN);
877 
878     if(U_SUCCESS(*err)) {
879         UTRACE_DATA1(UTRACE_OPEN_CLOSE, "open converter %s", converterName);
880 
881         mySharedConverterData = ucnv_loadSharedData(converterName, &stackPieces, &stackArgs, err);
882 
883         myUConverter = ucnv_createConverterFromSharedData(
884             myUConverter, mySharedConverterData,
885             &stackArgs,
886             err);
887 
888         if(U_SUCCESS(*err)) {
889             UTRACE_EXIT_PTR_STATUS(myUConverter, *err);
890             return myUConverter;
891         }
892     }
893 
894     /* exit with error */
895     UTRACE_EXIT_STATUS(*err);
896     return NULL;
897 }
898 
899 U_CFUNC UBool
ucnv_canCreateConverter(const char * converterName,UErrorCode * err)900 ucnv_canCreateConverter(const char *converterName, UErrorCode *err) {
901     UConverter myUConverter;
902     UConverterNamePieces stackPieces;
903     UConverterLoadArgs stackArgs=UCNV_LOAD_ARGS_INITIALIZER;
904     UConverterSharedData *mySharedConverterData;
905 
906     UTRACE_ENTRY_OC(UTRACE_UCNV_OPEN);
907 
908     if(U_SUCCESS(*err)) {
909         UTRACE_DATA1(UTRACE_OPEN_CLOSE, "test if can open converter %s", converterName);
910 
911         stackArgs.onlyTestIsLoadable=TRUE;
912         mySharedConverterData = ucnv_loadSharedData(converterName, &stackPieces, &stackArgs, err);
913         ucnv_createConverterFromSharedData(
914             &myUConverter, mySharedConverterData,
915             &stackArgs,
916             err);
917         ucnv_unloadSharedDataIfReady(mySharedConverterData);
918     }
919 
920     UTRACE_EXIT_STATUS(*err);
921     return U_SUCCESS(*err);
922 }
923 
924 UConverter *
ucnv_createAlgorithmicConverter(UConverter * myUConverter,UConverterType type,const char * locale,uint32_t options,UErrorCode * err)925 ucnv_createAlgorithmicConverter(UConverter *myUConverter,
926                                 UConverterType type,
927                                 const char *locale, uint32_t options,
928                                 UErrorCode *err) {
929     UConverter *cnv;
930     const UConverterSharedData *sharedData;
931     UConverterLoadArgs stackArgs=UCNV_LOAD_ARGS_INITIALIZER;
932 
933     UTRACE_ENTRY_OC(UTRACE_UCNV_OPEN_ALGORITHMIC);
934     UTRACE_DATA1(UTRACE_OPEN_CLOSE, "open algorithmic converter type %d", (int32_t)type);
935 
936     if(type<0 || UCNV_NUMBER_OF_SUPPORTED_CONVERTER_TYPES<=type) {
937         *err = U_ILLEGAL_ARGUMENT_ERROR;
938         UTRACE_EXIT_STATUS(U_ILLEGAL_ARGUMENT_ERROR);
939         return NULL;
940     }
941 
942     sharedData = converterData[type];
943     /*
944     Checking whether it's an algorithic converter is okay
945     in multithreaded applications because the value never changes.
946     Don't check referenceCounter for any other value.
947     */
948     if(sharedData == NULL || sharedData->referenceCounter != (uint32_t)~0) {
949         /* not a valid type, or not an algorithmic converter */
950         *err = U_ILLEGAL_ARGUMENT_ERROR;
951         UTRACE_EXIT_STATUS(U_ILLEGAL_ARGUMENT_ERROR);
952         return NULL;
953     }
954 
955     stackArgs.name = "";
956     stackArgs.options = options;
957     stackArgs.locale=locale;
958     cnv = ucnv_createConverterFromSharedData(
959             myUConverter, (UConverterSharedData *)sharedData,
960             &stackArgs, err);
961 
962     UTRACE_EXIT_PTR_STATUS(cnv, *err);
963     return cnv;
964 }
965 
966 U_CFUNC UConverter*
ucnv_createConverterFromPackage(const char * packageName,const char * converterName,UErrorCode * err)967 ucnv_createConverterFromPackage(const char *packageName, const char *converterName, UErrorCode * err)
968 {
969     UConverter *myUConverter;
970     UConverterSharedData *mySharedConverterData;
971     UConverterNamePieces stackPieces;
972     UConverterLoadArgs stackArgs=UCNV_LOAD_ARGS_INITIALIZER;
973 
974     UTRACE_ENTRY_OC(UTRACE_UCNV_OPEN_PACKAGE);
975 
976     if(U_FAILURE(*err)) {
977         UTRACE_EXIT_STATUS(*err);
978         return NULL;
979     }
980 
981     UTRACE_DATA2(UTRACE_OPEN_CLOSE, "open converter %s from package %s", converterName, packageName);
982 
983     /* first, get the options out of the converterName string */
984     stackPieces.cnvName[0] = 0;
985     stackPieces.locale[0] = 0;
986     stackPieces.options = 0;
987     parseConverterOptions(converterName, &stackPieces, &stackArgs, err);
988     if (U_FAILURE(*err)) {
989         /* Very bad name used. */
990         UTRACE_EXIT_STATUS(*err);
991         return NULL;
992     }
993     stackArgs.nestedLoads=1;
994     stackArgs.pkg=packageName;
995 
996     /* open the data, unflatten the shared structure */
997     mySharedConverterData = createConverterFromFile(&stackArgs, err);
998 
999     if (U_FAILURE(*err)) {
1000         UTRACE_EXIT_STATUS(*err);
1001         return NULL;
1002     }
1003 
1004     /* create the actual converter */
1005     myUConverter = ucnv_createConverterFromSharedData(NULL, mySharedConverterData, &stackArgs, err);
1006 
1007     if (U_FAILURE(*err)) {
1008         ucnv_close(myUConverter);
1009         UTRACE_EXIT_STATUS(*err);
1010         return NULL;
1011     }
1012 
1013     UTRACE_EXIT_PTR_STATUS(myUConverter, *err);
1014     return myUConverter;
1015 }
1016 
1017 
1018 U_CFUNC UConverter*
ucnv_createConverterFromSharedData(UConverter * myUConverter,UConverterSharedData * mySharedConverterData,UConverterLoadArgs * pArgs,UErrorCode * err)1019 ucnv_createConverterFromSharedData(UConverter *myUConverter,
1020                                    UConverterSharedData *mySharedConverterData,
1021                                    UConverterLoadArgs *pArgs,
1022                                    UErrorCode *err)
1023 {
1024     UBool isCopyLocal;
1025 
1026     if(U_FAILURE(*err)) {
1027         ucnv_unloadSharedDataIfReady(mySharedConverterData);
1028         return myUConverter;
1029     }
1030     if(myUConverter == NULL)
1031     {
1032         myUConverter = (UConverter *) uprv_malloc (sizeof (UConverter));
1033         if(myUConverter == NULL)
1034         {
1035             *err = U_MEMORY_ALLOCATION_ERROR;
1036             ucnv_unloadSharedDataIfReady(mySharedConverterData);
1037             return NULL;
1038         }
1039         isCopyLocal = FALSE;
1040     } else {
1041         isCopyLocal = TRUE;
1042     }
1043 
1044     /* initialize the converter */
1045     uprv_memset(myUConverter, 0, sizeof(UConverter));
1046     myUConverter->isCopyLocal = isCopyLocal;
1047     /*myUConverter->isExtraLocal = FALSE;*/ /* Set by the memset call */
1048     myUConverter->sharedData = mySharedConverterData;
1049     myUConverter->options = pArgs->options;
1050     if(!pArgs->onlyTestIsLoadable) {
1051         myUConverter->preFromUFirstCP = U_SENTINEL;
1052         myUConverter->fromCharErrorBehaviour = UCNV_TO_U_DEFAULT_CALLBACK;
1053         myUConverter->fromUCharErrorBehaviour = UCNV_FROM_U_DEFAULT_CALLBACK;
1054         myUConverter->toUnicodeStatus = mySharedConverterData->toUnicodeStatus;
1055         myUConverter->maxBytesPerUChar = mySharedConverterData->staticData->maxBytesPerChar;
1056         myUConverter->subChar1 = mySharedConverterData->staticData->subChar1;
1057         myUConverter->subCharLen = mySharedConverterData->staticData->subCharLen;
1058         myUConverter->subChars = (uint8_t *)myUConverter->subUChars;
1059         uprv_memcpy(myUConverter->subChars, mySharedConverterData->staticData->subChar, myUConverter->subCharLen);
1060         myUConverter->toUCallbackReason = UCNV_ILLEGAL; /* default reason to invoke (*fromCharErrorBehaviour) */
1061     }
1062 
1063     if(mySharedConverterData->impl->open != NULL) {
1064         mySharedConverterData->impl->open(myUConverter, pArgs, err);
1065         if(U_FAILURE(*err) && !pArgs->onlyTestIsLoadable) {
1066             /* don't ucnv_close() if onlyTestIsLoadable because not fully initialized */
1067             ucnv_close(myUConverter);
1068             return NULL;
1069         }
1070     }
1071 
1072     return myUConverter;
1073 }
1074 
1075 /*Frees all shared immutable objects that aren't referred to (reference count = 0)
1076  */
1077 U_CAPI int32_t U_EXPORT2
ucnv_flushCache()1078 ucnv_flushCache ()
1079 {
1080     UConverterSharedData *mySharedData = NULL;
1081     int32_t pos;
1082     int32_t tableDeletedNum = 0;
1083     const UHashElement *e;
1084     /*UErrorCode status = U_ILLEGAL_ARGUMENT_ERROR;*/
1085     int32_t i, remaining;
1086 
1087     UTRACE_ENTRY_OC(UTRACE_UCNV_FLUSH_CACHE);
1088 
1089     /* Close the default converter without creating a new one so that everything will be flushed. */
1090     u_flushDefaultConverter();
1091 
1092     /*if shared data hasn't even been lazy evaluated yet
1093     * return 0
1094     */
1095     if (SHARED_DATA_HASHTABLE == NULL) {
1096         UTRACE_EXIT_VALUE((int32_t)0);
1097         return 0;
1098     }
1099 
1100     /*creates an enumeration to iterate through every element in the
1101     * table
1102     *
1103     * Synchronization:  holding cnvCacheMutex will prevent any other thread from
1104     *                   accessing or modifying the hash table during the iteration.
1105     *                   The reference count of an entry may be decremented by
1106     *                   ucnv_close while the iteration is in process, but this is
1107     *                   benign.  It can't be incremented (in ucnv_createConverter())
1108     *                   because the sequence of looking up in the cache + incrementing
1109     *                   is protected by cnvCacheMutex.
1110     */
1111     umtx_lock(&cnvCacheMutex);
1112     /*
1113      * double loop: A delta/extension-only converter has a pointer to its base table's
1114      * shared data; the first iteration of the outer loop may see the delta converter
1115      * before the base converter, and unloading the delta converter may get the base
1116      * converter's reference counter down to 0.
1117      */
1118     i = 0;
1119     do {
1120         remaining = 0;
1121         pos = UHASH_FIRST;
1122         while ((e = uhash_nextElement (SHARED_DATA_HASHTABLE, &pos)) != NULL)
1123         {
1124             mySharedData = (UConverterSharedData *) e->value.pointer;
1125             /*deletes only if reference counter == 0 */
1126             if (mySharedData->referenceCounter == 0)
1127             {
1128                 tableDeletedNum++;
1129 
1130                 UCNV_DEBUG_LOG("del",mySharedData->staticData->name,mySharedData);
1131 
1132                 uhash_removeElement(SHARED_DATA_HASHTABLE, e);
1133                 mySharedData->sharedDataCached = FALSE;
1134                 ucnv_deleteSharedConverterData (mySharedData);
1135             } else {
1136                 ++remaining;
1137             }
1138         }
1139     } while(++i == 1 && remaining > 0);
1140     umtx_unlock(&cnvCacheMutex);
1141 
1142     UTRACE_DATA1(UTRACE_INFO, "ucnv_flushCache() exits with %d converters remaining", remaining);
1143 
1144     UTRACE_EXIT_VALUE(tableDeletedNum);
1145     return tableDeletedNum;
1146 }
1147 
1148 /* available converters list --------------------------------------------------- */
1149 
initAvailableConvertersList(UErrorCode & errCode)1150 static void U_CALLCONV initAvailableConvertersList(UErrorCode &errCode) {
1151     U_ASSERT(gAvailableConverterCount == 0);
1152     U_ASSERT(gAvailableConverters == NULL);
1153 
1154     ucln_common_registerCleanup(UCLN_COMMON_UCNV, ucnv_cleanup);
1155     UEnumeration *allConvEnum = ucnv_openAllNames(&errCode);
1156     int32_t allConverterCount = uenum_count(allConvEnum, &errCode);
1157     if (U_FAILURE(errCode)) {
1158         return;
1159     }
1160 
1161     /* We can't have more than "*converterTable" converters to open */
1162     gAvailableConverters = (const char **) uprv_malloc(allConverterCount * sizeof(char*));
1163     if (!gAvailableConverters) {
1164         errCode = U_MEMORY_ALLOCATION_ERROR;
1165         return;
1166     }
1167 
1168     /* Open the default converter to make sure that it has first dibs in the hash table. */
1169     UErrorCode localStatus = U_ZERO_ERROR;
1170     UConverter tempConverter;
1171     ucnv_close(ucnv_createConverter(&tempConverter, NULL, &localStatus));
1172 
1173     gAvailableConverterCount = 0;
1174 
1175     for (int32_t idx = 0; idx < allConverterCount; idx++) {
1176         localStatus = U_ZERO_ERROR;
1177         const char *converterName = uenum_next(allConvEnum, NULL, &localStatus);
1178         if (ucnv_canCreateConverter(converterName, &localStatus)) {
1179             gAvailableConverters[gAvailableConverterCount++] = converterName;
1180         }
1181     }
1182 
1183     uenum_close(allConvEnum);
1184 }
1185 
1186 
haveAvailableConverterList(UErrorCode * pErrorCode)1187 static UBool haveAvailableConverterList(UErrorCode *pErrorCode) {
1188     umtx_initOnce(gAvailableConvertersInitOnce, &initAvailableConvertersList, *pErrorCode);
1189     return U_SUCCESS(*pErrorCode);
1190 }
1191 
1192 U_CFUNC uint16_t
ucnv_bld_countAvailableConverters(UErrorCode * pErrorCode)1193 ucnv_bld_countAvailableConverters(UErrorCode *pErrorCode) {
1194     if (haveAvailableConverterList(pErrorCode)) {
1195         return gAvailableConverterCount;
1196     }
1197     return 0;
1198 }
1199 
1200 U_CFUNC const char *
ucnv_bld_getAvailableConverter(uint16_t n,UErrorCode * pErrorCode)1201 ucnv_bld_getAvailableConverter(uint16_t n, UErrorCode *pErrorCode) {
1202     if (haveAvailableConverterList(pErrorCode)) {
1203         if (n < gAvailableConverterCount) {
1204             return gAvailableConverters[n];
1205         }
1206         *pErrorCode = U_INDEX_OUTOFBOUNDS_ERROR;
1207     }
1208     return NULL;
1209 }
1210 
1211 /* default converter name --------------------------------------------------- */
1212 
1213 #if !U_CHARSET_IS_UTF8
1214 /*
1215 Copy the canonical converter name.
1216 ucnv_getDefaultName must be thread safe, which can call this function.
1217 
1218 ucnv_setDefaultName calls this function and it doesn't have to be
1219 thread safe because there is no reliable/safe way to reset the
1220 converter in use in all threads. If you did reset the converter, you
1221 would not be sure that retrieving a default converter for one string
1222 would be the same type of default converter for a successive string.
1223 Since the name is a returned via ucnv_getDefaultName without copying,
1224 you shouldn't be modifying or deleting the string from a separate thread.
1225 */
1226 static inline void
internalSetName(const char * name,UErrorCode * status)1227 internalSetName(const char *name, UErrorCode *status) {
1228     UConverterNamePieces stackPieces;
1229     UConverterLoadArgs stackArgs=UCNV_LOAD_ARGS_INITIALIZER;
1230     int32_t length=(int32_t)(uprv_strlen(name));
1231     UBool containsOption = (UBool)(uprv_strchr(name, UCNV_OPTION_SEP_CHAR) != NULL);
1232     const UConverterSharedData *algorithmicSharedData;
1233 
1234     stackArgs.name = name;
1235     if(containsOption) {
1236         stackPieces.cnvName[0] = 0;
1237         stackPieces.locale[0] = 0;
1238         stackPieces.options = 0;
1239         parseConverterOptions(name, &stackPieces, &stackArgs, status);
1240         if(U_FAILURE(*status)) {
1241             return;
1242         }
1243     }
1244     algorithmicSharedData = getAlgorithmicTypeFromName(stackArgs.name);
1245 
1246     umtx_lock(&cnvCacheMutex);
1247 
1248     gDefaultAlgorithmicSharedData = algorithmicSharedData;
1249     gDefaultConverterContainsOption = containsOption;
1250     uprv_memcpy(gDefaultConverterNameBuffer, name, length);
1251     gDefaultConverterNameBuffer[length]=0;
1252 
1253     /* gDefaultConverterName MUST be the last global var set by this function.  */
1254     /*    It is the variable checked in ucnv_getDefaultName() to see if initialization is required. */
1255     //    But there is nothing here preventing that from being reordered, either by the compiler
1256     //             or hardware. I'm adding the mutex to ucnv_getDefaultName for now. UMTX_CHECK is not enough.
1257     //             -- Andy
1258     gDefaultConverterName = gDefaultConverterNameBuffer;
1259 
1260     ucln_common_registerCleanup(UCLN_COMMON_UCNV, ucnv_cleanup);
1261 
1262     umtx_unlock(&cnvCacheMutex);
1263 }
1264 #endif
1265 
1266 /*
1267  * In order to be really thread-safe, the get function would have to take
1268  * a buffer parameter and copy the current string inside a mutex block.
1269  * This implementation only tries to be really thread-safe while
1270  * setting the name.
1271  * It assumes that setting a pointer is atomic.
1272  */
1273 
1274 U_CAPI const char*  U_EXPORT2
ucnv_getDefaultName()1275 ucnv_getDefaultName() {
1276 #if U_CHARSET_IS_UTF8
1277     return "UTF-8";
1278 #else
1279     /* local variable to be thread-safe */
1280     const char *name;
1281 
1282     /*
1283     Concurrent calls to ucnv_getDefaultName must be thread safe,
1284     but ucnv_setDefaultName is not thread safe.
1285     */
1286     {
1287         icu::Mutex lock(&cnvCacheMutex);
1288         name = gDefaultConverterName;
1289     }
1290     if(name==NULL) {
1291         UErrorCode errorCode = U_ZERO_ERROR;
1292         UConverter *cnv = NULL;
1293 
1294         name = uprv_getDefaultCodepage();
1295 
1296         /* if the name is there, test it out and get the canonical name with options */
1297         if(name != NULL) {
1298             cnv = ucnv_open(name, &errorCode);
1299             if(U_SUCCESS(errorCode) && cnv != NULL) {
1300                 name = ucnv_getName(cnv, &errorCode);
1301             }
1302         }
1303 
1304         if(name == NULL || name[0] == 0
1305             || U_FAILURE(errorCode) || cnv == NULL
1306             || uprv_strlen(name)>=sizeof(gDefaultConverterNameBuffer))
1307         {
1308             /* Panic time, let's use a fallback. */
1309 #if (U_CHARSET_FAMILY == U_ASCII_FAMILY)
1310             name = "US-ASCII";
1311             /* there is no 'algorithmic' converter for EBCDIC */
1312 #elif U_PLATFORM == U_PF_OS390
1313             name = "ibm-1047_P100-1995" UCNV_SWAP_LFNL_OPTION_STRING;
1314 #else
1315             name = "ibm-37_P100-1995";
1316 #endif
1317         }
1318 
1319         internalSetName(name, &errorCode);
1320 
1321         /* The close may make the current name go away. */
1322         ucnv_close(cnv);
1323     }
1324 
1325     return name;
1326 #endif
1327 }
1328 
1329 #if U_CHARSET_IS_UTF8
ucnv_setDefaultName(const char *)1330 U_CAPI void U_EXPORT2 ucnv_setDefaultName(const char *) {}
1331 #else
1332 /*
1333 This function is not thread safe, and it can't be thread safe.
1334 See internalSetName or the API reference for details.
1335 */
1336 U_CAPI void U_EXPORT2
ucnv_setDefaultName(const char * converterName)1337 ucnv_setDefaultName(const char *converterName) {
1338     if(converterName==NULL) {
1339         /* reset to the default codepage */
1340         gDefaultConverterName=NULL;
1341     } else {
1342         UErrorCode errorCode = U_ZERO_ERROR;
1343         UConverter *cnv = NULL;
1344         const char *name = NULL;
1345 
1346         /* if the name is there, test it out and get the canonical name with options */
1347         cnv = ucnv_open(converterName, &errorCode);
1348         if(U_SUCCESS(errorCode) && cnv != NULL) {
1349             name = ucnv_getName(cnv, &errorCode);
1350         }
1351 
1352         if(U_SUCCESS(errorCode) && name!=NULL) {
1353             internalSetName(name, &errorCode);
1354         }
1355         /* else this converter is bad to use. Don't change it to a bad value. */
1356 
1357         /* The close may make the current name go away. */
1358         ucnv_close(cnv);
1359 
1360         /* reset the converter cache */
1361         u_flushDefaultConverter();
1362     }
1363 }
1364 #endif
1365 
1366 /* data swapping ------------------------------------------------------------ */
1367 
1368 /* most of this might belong more properly into ucnvmbcs.c, but that is so large */
1369 
1370 #if !UCONFIG_NO_LEGACY_CONVERSION
1371 
1372 U_CAPI int32_t U_EXPORT2
ucnv_swap(const UDataSwapper * ds,const void * inData,int32_t length,void * outData,UErrorCode * pErrorCode)1373 ucnv_swap(const UDataSwapper *ds,
1374           const void *inData, int32_t length, void *outData,
1375           UErrorCode *pErrorCode) {
1376     const UDataInfo *pInfo;
1377     int32_t headerSize;
1378 
1379     const uint8_t *inBytes;
1380     uint8_t *outBytes;
1381 
1382     uint32_t offset, count, staticDataSize;
1383     int32_t size;
1384 
1385     const UConverterStaticData *inStaticData;
1386     UConverterStaticData *outStaticData;
1387 
1388     const _MBCSHeader *inMBCSHeader;
1389     _MBCSHeader *outMBCSHeader;
1390     _MBCSHeader mbcsHeader;
1391     uint32_t mbcsHeaderLength;
1392     UBool noFromU=FALSE;
1393 
1394     uint8_t outputType;
1395 
1396     int32_t maxFastUChar, mbcsIndexLength;
1397 
1398     const int32_t *inExtIndexes;
1399     int32_t extOffset;
1400 
1401     /* udata_swapDataHeader checks the arguments */
1402     headerSize=udata_swapDataHeader(ds, inData, length, outData, pErrorCode);
1403     if(pErrorCode==NULL || U_FAILURE(*pErrorCode)) {
1404         return 0;
1405     }
1406 
1407     /* check data format and format version */
1408     pInfo=(const UDataInfo *)((const char *)inData+4);
1409     if(!(
1410         pInfo->dataFormat[0]==0x63 &&   /* dataFormat="cnvt" */
1411         pInfo->dataFormat[1]==0x6e &&
1412         pInfo->dataFormat[2]==0x76 &&
1413         pInfo->dataFormat[3]==0x74 &&
1414         pInfo->formatVersion[0]==6 &&
1415         pInfo->formatVersion[1]>=2
1416     )) {
1417         udata_printError(ds, "ucnv_swap(): data format %02x.%02x.%02x.%02x (format version %02x.%02x) is not recognized as an ICU .cnv conversion table\n",
1418                          pInfo->dataFormat[0], pInfo->dataFormat[1],
1419                          pInfo->dataFormat[2], pInfo->dataFormat[3],
1420                          pInfo->formatVersion[0], pInfo->formatVersion[1]);
1421         *pErrorCode=U_UNSUPPORTED_ERROR;
1422         return 0;
1423     }
1424 
1425     inBytes=(const uint8_t *)inData+headerSize;
1426     outBytes=(uint8_t *)outData+headerSize;
1427 
1428     /* read the initial UConverterStaticData structure after the UDataInfo header */
1429     inStaticData=(const UConverterStaticData *)inBytes;
1430     outStaticData=(UConverterStaticData *)outBytes;
1431 
1432     if(length<0) {
1433         staticDataSize=ds->readUInt32(inStaticData->structSize);
1434     } else {
1435         length-=headerSize;
1436         if( length<(int32_t)sizeof(UConverterStaticData) ||
1437             (uint32_t)length<(staticDataSize=ds->readUInt32(inStaticData->structSize))
1438         ) {
1439             udata_printError(ds, "ucnv_swap(): too few bytes (%d after header) for an ICU .cnv conversion table\n",
1440                              length);
1441             *pErrorCode=U_INDEX_OUTOFBOUNDS_ERROR;
1442             return 0;
1443         }
1444     }
1445 
1446     if(length>=0) {
1447         /* swap the static data */
1448         if(inStaticData!=outStaticData) {
1449             uprv_memcpy(outStaticData, inStaticData, staticDataSize);
1450         }
1451 
1452         ds->swapArray32(ds, &inStaticData->structSize, 4,
1453                            &outStaticData->structSize, pErrorCode);
1454         ds->swapArray32(ds, &inStaticData->codepage, 4,
1455                            &outStaticData->codepage, pErrorCode);
1456 
1457         ds->swapInvChars(ds, inStaticData->name, (int32_t)uprv_strlen(inStaticData->name),
1458                             outStaticData->name, pErrorCode);
1459         if(U_FAILURE(*pErrorCode)) {
1460             udata_printError(ds, "ucnv_swap(): error swapping converter name\n");
1461             return 0;
1462         }
1463     }
1464 
1465     inBytes+=staticDataSize;
1466     outBytes+=staticDataSize;
1467     if(length>=0) {
1468         length-=(int32_t)staticDataSize;
1469     }
1470 
1471     /* check for supported conversionType values */
1472     if(inStaticData->conversionType==UCNV_MBCS) {
1473         /* swap MBCS data */
1474         inMBCSHeader=(const _MBCSHeader *)inBytes;
1475         outMBCSHeader=(_MBCSHeader *)outBytes;
1476 
1477         if(0<=length && length<(int32_t)sizeof(_MBCSHeader)) {
1478             udata_printError(ds, "ucnv_swap(): too few bytes (%d after headers) for an ICU MBCS .cnv conversion table\n",
1479                                 length);
1480             *pErrorCode=U_INDEX_OUTOFBOUNDS_ERROR;
1481             return 0;
1482         }
1483         if(inMBCSHeader->version[0]==4 && inMBCSHeader->version[1]>=1) {
1484             mbcsHeaderLength=MBCS_HEADER_V4_LENGTH;
1485         } else if(inMBCSHeader->version[0]==5 && inMBCSHeader->version[1]>=3 &&
1486                   ((mbcsHeader.options=ds->readUInt32(inMBCSHeader->options))&
1487                    MBCS_OPT_UNKNOWN_INCOMPATIBLE_MASK)==0
1488         ) {
1489             mbcsHeaderLength=mbcsHeader.options&MBCS_OPT_LENGTH_MASK;
1490             noFromU=(UBool)((mbcsHeader.options&MBCS_OPT_NO_FROM_U)!=0);
1491         } else {
1492             udata_printError(ds, "ucnv_swap(): unsupported _MBCSHeader.version %d.%d\n",
1493                              inMBCSHeader->version[0], inMBCSHeader->version[1]);
1494             *pErrorCode=U_UNSUPPORTED_ERROR;
1495             return 0;
1496         }
1497 
1498         uprv_memcpy(mbcsHeader.version, inMBCSHeader->version, 4);
1499         mbcsHeader.countStates=         ds->readUInt32(inMBCSHeader->countStates);
1500         mbcsHeader.countToUFallbacks=   ds->readUInt32(inMBCSHeader->countToUFallbacks);
1501         mbcsHeader.offsetToUCodeUnits=  ds->readUInt32(inMBCSHeader->offsetToUCodeUnits);
1502         mbcsHeader.offsetFromUTable=    ds->readUInt32(inMBCSHeader->offsetFromUTable);
1503         mbcsHeader.offsetFromUBytes=    ds->readUInt32(inMBCSHeader->offsetFromUBytes);
1504         mbcsHeader.flags=               ds->readUInt32(inMBCSHeader->flags);
1505         mbcsHeader.fromUBytesLength=    ds->readUInt32(inMBCSHeader->fromUBytesLength);
1506         /* mbcsHeader.options have been read above */
1507 
1508         extOffset=(int32_t)(mbcsHeader.flags>>8);
1509         outputType=(uint8_t)mbcsHeader.flags;
1510         if(noFromU && outputType==MBCS_OUTPUT_1) {
1511             udata_printError(ds, "ucnv_swap(): unsupported combination of makeconv --small with SBCS\n");
1512             *pErrorCode=U_UNSUPPORTED_ERROR;
1513             return 0;
1514         }
1515 
1516         /* make sure that the output type is known */
1517         switch(outputType) {
1518         case MBCS_OUTPUT_1:
1519         case MBCS_OUTPUT_2:
1520         case MBCS_OUTPUT_3:
1521         case MBCS_OUTPUT_4:
1522         case MBCS_OUTPUT_3_EUC:
1523         case MBCS_OUTPUT_4_EUC:
1524         case MBCS_OUTPUT_2_SISO:
1525         case MBCS_OUTPUT_EXT_ONLY:
1526             /* OK */
1527             break;
1528         default:
1529             udata_printError(ds, "ucnv_swap(): unsupported MBCS output type 0x%x\n",
1530                              outputType);
1531             *pErrorCode=U_UNSUPPORTED_ERROR;
1532             return 0;
1533         }
1534 
1535         /* calculate the length of the MBCS data */
1536 
1537         /*
1538          * utf8Friendly MBCS files (mbcsHeader.version 4.3)
1539          * contain an additional mbcsIndex table:
1540          *   uint16_t[(maxFastUChar+1)>>6];
1541          * where maxFastUChar=((mbcsHeader.version[2]<<8)|0xff).
1542          */
1543         maxFastUChar=0;
1544         mbcsIndexLength=0;
1545         if( outputType!=MBCS_OUTPUT_EXT_ONLY && outputType!=MBCS_OUTPUT_1 &&
1546             mbcsHeader.version[1]>=3 && (maxFastUChar=mbcsHeader.version[2])!=0
1547         ) {
1548             maxFastUChar=(maxFastUChar<<8)|0xff;
1549             mbcsIndexLength=((maxFastUChar+1)>>6)*2;  /* number of bytes */
1550         }
1551 
1552         if(extOffset==0) {
1553             size=(int32_t)(mbcsHeader.offsetFromUBytes+mbcsIndexLength);
1554             if(!noFromU) {
1555                 size+=(int32_t)mbcsHeader.fromUBytesLength;
1556             }
1557 
1558             /* avoid compiler warnings - not otherwise necessary, and the value does not matter */
1559             inExtIndexes=NULL;
1560         } else {
1561             /* there is extension data after the base data, see ucnv_ext.h */
1562             if(length>=0 && length<(extOffset+UCNV_EXT_INDEXES_MIN_LENGTH*4)) {
1563                 udata_printError(ds, "ucnv_swap(): too few bytes (%d after headers) for an ICU MBCS .cnv conversion table with extension data\n",
1564                                  length);
1565                 *pErrorCode=U_INDEX_OUTOFBOUNDS_ERROR;
1566                 return 0;
1567             }
1568 
1569             inExtIndexes=(const int32_t *)(inBytes+extOffset);
1570             size=extOffset+udata_readInt32(ds, inExtIndexes[UCNV_EXT_SIZE]);
1571         }
1572 
1573         if(length>=0) {
1574             if(length<size) {
1575                 udata_printError(ds, "ucnv_swap(): too few bytes (%d after headers) for an ICU MBCS .cnv conversion table\n",
1576                                  length);
1577                 *pErrorCode=U_INDEX_OUTOFBOUNDS_ERROR;
1578                 return 0;
1579             }
1580 
1581             /* copy the data for inaccessible bytes */
1582             if(inBytes!=outBytes) {
1583                 uprv_memcpy(outBytes, inBytes, size);
1584             }
1585 
1586             /* swap the MBCSHeader, except for the version field */
1587             count=mbcsHeaderLength*4;
1588             ds->swapArray32(ds, &inMBCSHeader->countStates, count-4,
1589                                &outMBCSHeader->countStates, pErrorCode);
1590 
1591             if(outputType==MBCS_OUTPUT_EXT_ONLY) {
1592                 /*
1593                  * extension-only file,
1594                  * contains a base name instead of normal base table data
1595                  */
1596 
1597                 /* swap the base name, between the header and the extension data */
1598                 const char *inBaseName=(const char *)inBytes+count;
1599                 char *outBaseName=(char *)outBytes+count;
1600                 ds->swapInvChars(ds, inBaseName, (int32_t)uprv_strlen(inBaseName),
1601                                     outBaseName, pErrorCode);
1602             } else {
1603                 /* normal file with base table data */
1604 
1605                 /* swap the state table, 1kB per state */
1606                 offset=count;
1607                 count=mbcsHeader.countStates*1024;
1608                 ds->swapArray32(ds, inBytes+offset, (int32_t)count,
1609                                    outBytes+offset, pErrorCode);
1610 
1611                 /* swap the toUFallbacks[] */
1612                 offset+=count;
1613                 count=mbcsHeader.countToUFallbacks*8;
1614                 ds->swapArray32(ds, inBytes+offset, (int32_t)count,
1615                                    outBytes+offset, pErrorCode);
1616 
1617                 /* swap the unicodeCodeUnits[] */
1618                 offset=mbcsHeader.offsetToUCodeUnits;
1619                 count=mbcsHeader.offsetFromUTable-offset;
1620                 ds->swapArray16(ds, inBytes+offset, (int32_t)count,
1621                                    outBytes+offset, pErrorCode);
1622 
1623                 /* offset to the stage 1 table, independent of the outputType */
1624                 offset=mbcsHeader.offsetFromUTable;
1625 
1626                 if(outputType==MBCS_OUTPUT_1) {
1627                     /* SBCS: swap the fromU tables, all 16 bits wide */
1628                     count=(mbcsHeader.offsetFromUBytes-offset)+mbcsHeader.fromUBytesLength;
1629                     ds->swapArray16(ds, inBytes+offset, (int32_t)count,
1630                                        outBytes+offset, pErrorCode);
1631                 } else {
1632                     /* otherwise: swap the stage tables separately */
1633 
1634                     /* stage 1 table: uint16_t[0x440 or 0x40] */
1635                     if(inStaticData->unicodeMask&UCNV_HAS_SUPPLEMENTARY) {
1636                         count=0x440*2; /* for all of Unicode */
1637                     } else {
1638                         count=0x40*2; /* only BMP */
1639                     }
1640                     ds->swapArray16(ds, inBytes+offset, (int32_t)count,
1641                                        outBytes+offset, pErrorCode);
1642 
1643                     /* stage 2 table: uint32_t[] */
1644                     offset+=count;
1645                     count=mbcsHeader.offsetFromUBytes-offset;
1646                     ds->swapArray32(ds, inBytes+offset, (int32_t)count,
1647                                        outBytes+offset, pErrorCode);
1648 
1649                     /* stage 3/result bytes: sometimes uint16_t[] or uint32_t[] */
1650                     offset=mbcsHeader.offsetFromUBytes;
1651                     count= noFromU ? 0 : mbcsHeader.fromUBytesLength;
1652                     switch(outputType) {
1653                     case MBCS_OUTPUT_2:
1654                     case MBCS_OUTPUT_3_EUC:
1655                     case MBCS_OUTPUT_2_SISO:
1656                         ds->swapArray16(ds, inBytes+offset, (int32_t)count,
1657                                            outBytes+offset, pErrorCode);
1658                         break;
1659                     case MBCS_OUTPUT_4:
1660                         ds->swapArray32(ds, inBytes+offset, (int32_t)count,
1661                                            outBytes+offset, pErrorCode);
1662                         break;
1663                     default:
1664                         /* just uint8_t[], nothing to swap */
1665                         break;
1666                     }
1667 
1668                     if(mbcsIndexLength!=0) {
1669                         offset+=count;
1670                         count=mbcsIndexLength;
1671                         ds->swapArray16(ds, inBytes+offset, (int32_t)count,
1672                                            outBytes+offset, pErrorCode);
1673                     }
1674                 }
1675             }
1676 
1677             if(extOffset!=0) {
1678                 /* swap the extension data */
1679                 inBytes+=extOffset;
1680                 outBytes+=extOffset;
1681 
1682                 /* swap toUTable[] */
1683                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_TO_U_INDEX]);
1684                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_TO_U_LENGTH]);
1685                 ds->swapArray32(ds, inBytes+offset, length*4, outBytes+offset, pErrorCode);
1686 
1687                 /* swap toUUChars[] */
1688                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_TO_U_UCHARS_INDEX]);
1689                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_TO_U_UCHARS_LENGTH]);
1690                 ds->swapArray16(ds, inBytes+offset, length*2, outBytes+offset, pErrorCode);
1691 
1692                 /* swap fromUTableUChars[] */
1693                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_UCHARS_INDEX]);
1694                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_LENGTH]);
1695                 ds->swapArray16(ds, inBytes+offset, length*2, outBytes+offset, pErrorCode);
1696 
1697                 /* swap fromUTableValues[] */
1698                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_VALUES_INDEX]);
1699                 /* same length as for fromUTableUChars[] */
1700                 ds->swapArray32(ds, inBytes+offset, length*4, outBytes+offset, pErrorCode);
1701 
1702                 /* no need to swap fromUBytes[] */
1703 
1704                 /* swap fromUStage12[] */
1705                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_STAGE_12_INDEX]);
1706                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_STAGE_12_LENGTH]);
1707                 ds->swapArray16(ds, inBytes+offset, length*2, outBytes+offset, pErrorCode);
1708 
1709                 /* swap fromUStage3[] */
1710                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_STAGE_3_INDEX]);
1711                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_STAGE_3_LENGTH]);
1712                 ds->swapArray16(ds, inBytes+offset, length*2, outBytes+offset, pErrorCode);
1713 
1714                 /* swap fromUStage3b[] */
1715                 offset=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_STAGE_3B_INDEX]);
1716                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_FROM_U_STAGE_3B_LENGTH]);
1717                 ds->swapArray32(ds, inBytes+offset, length*4, outBytes+offset, pErrorCode);
1718 
1719                 /* swap indexes[] */
1720                 length=udata_readInt32(ds, inExtIndexes[UCNV_EXT_INDEXES_LENGTH]);
1721                 ds->swapArray32(ds, inBytes, length*4, outBytes, pErrorCode);
1722             }
1723         }
1724     } else {
1725         udata_printError(ds, "ucnv_swap(): unknown conversionType=%d!=UCNV_MBCS\n",
1726                          inStaticData->conversionType);
1727         *pErrorCode=U_UNSUPPORTED_ERROR;
1728         return 0;
1729     }
1730 
1731     return headerSize+(int32_t)staticDataSize+size;
1732 }
1733 
1734 #endif /* #if !UCONFIG_NO_LEGACY_CONVERSION */
1735 
1736 #endif
1737