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1 /*
2 * Copyright (c) 2009 Apple Inc. All rights reserved.
3 *
4 * @APPLE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. Please obtain a copy of the License at
10 * http://www.opensource.apple.com/apsl/ and read it before using this
11 * file.
12 *
13 * The Original Code and all software distributed under the License are
14 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
15 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
16 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
17 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
18 * Please see the License for the specific language governing rights and
19 * limitations under the License.
20 *
21 * @APPLE_LICENSE_HEADER_END@
22 */
23 /* CFError.c
24 Copyright 2006-2009, Apple Inc. All rights reserved.
25 Responsibility: Ali Ozer
26 */
27
28 #include <CoreFoundation/CFError.h>
29 #include <CoreFoundation/CFError_Private.h>
30 #include "CFInternal.h"
31 #include <CoreFoundation/CFPriv.h>
32 #if DEPLOYMENT_TARGET_MACOSX || DEPLOYMENT_TARGET_EMBEDDED
33 #include <objc/runtime.h>
34 #include <mach/mach_error.h>
35 #elif DEPLOYMENT_TARGET_WINDOWS
36 #else
37 #error Unknown or unspecified DEPLOYMENT_TARGET
38 #endif
39
40 /* Pre-defined userInfo keys
41 */
42 CONST_STRING_DECL(kCFErrorLocalizedDescriptionKey, "NSLocalizedDescription");
43 CONST_STRING_DECL(kCFErrorLocalizedFailureReasonKey, "NSLocalizedFailureReason");
44 CONST_STRING_DECL(kCFErrorLocalizedRecoverySuggestionKey, "NSLocalizedRecoverySuggestion");
45 CONST_STRING_DECL(kCFErrorDescriptionKey, "NSDescription");
46 CONST_STRING_DECL(kCFErrorDebugDescriptionKey, "NSDebugDescription");
47 CONST_STRING_DECL(kCFErrorUnderlyingErrorKey, "NSUnderlyingError");
48
49 /* Pre-defined error domains
50 */
51 CONST_STRING_DECL(kCFErrorDomainPOSIX, "NSPOSIXErrorDomain");
52 CONST_STRING_DECL(kCFErrorDomainOSStatus, "NSOSStatusErrorDomain");
53 CONST_STRING_DECL(kCFErrorDomainMach, "NSMachErrorDomain");
54 CONST_STRING_DECL(kCFErrorDomainCocoa, "NSCocoaErrorDomain");
55
56 /* We put the localized names of domain names here so genstrings can pick them out. Any additional domains that are added should be listed here if we'd like them localized.
57
58 CFCopyLocalizedStringWithDefaultValue(CFSTR("NSMachErrorDomain"), CFSTR("Error"), NULL, CFSTR("Mach"), "Name of the 'Mach' error domain when showing to user. This probably will not get localized, unless there is a generally recognized phrase for 'Mach' in the language.")
59 CFCopyLocalizedStringWithDefaultValue(CFSTR("NSCoreFoundationErrorDomain"), CFSTR("Error"), NULL, CFSTR("Core Foundation"), "Name of the 'Core Foundation' error domain when showing to user. Very likely this will not get localized differently in other languages.")
60 CFCopyLocalizedStringWithDefaultValue(CFSTR("NSPOSIXErrorDomain"), CFSTR("Error"), NULL, CFSTR("POSIX"), "Name of the 'POSIX' error domain when showing to user. This probably will not get localized, unless there is a generally recognized phrase for 'POSIX' in the language.")
61 CFCopyLocalizedStringWithDefaultValue(CFSTR("NSOSStatusErrorDomain"), CFSTR("Error"), NULL, CFSTR("OSStatus"), "Name of the 'OSStatus' error domain when showing to user. Very likely this will not get localized.")
62 CFCopyLocalizedStringWithDefaultValue(CFSTR("NSCocoaErrorDomain"), CFSTR("Error"), NULL, CFSTR("Cocoa"), "Name of the 'Cocoa' error domain when showing to user. Very likely this will not get localized.")
63 */
64
65
66
67 /* Forward declarations
68 */
69 static CFDictionaryRef _CFErrorGetUserInfo(CFErrorRef err);
70 static CFStringRef _CFErrorCopyUserInfoKey(CFErrorRef err, CFStringRef key);
71 static CFDictionaryRef _CFErrorCreateEmptyDictionary(CFAllocatorRef allocator);
72
73 /* Assertions and other macros/inlines
74 */
75 #define __CFAssertIsError(cf) __CFGenericValidateType(cf, __kCFErrorTypeID)
76
77 /* This lock is used in the few places in CFError where we create and access shared static objects. Should only be around tiny snippets of code; no recursion
78 */
79 static CFSpinLock_t _CFErrorSpinlock = CFSpinLockInit;
80
81
82
83
84 /**** CFError CF runtime stuff ****/
85
86 struct __CFError { // Potentially interesting to keep layout same as NSError (but currently not a requirement)
87 CFRuntimeBase _base;
88 CFIndex code;
89 CFStringRef domain; // !!! Could compress well-known domains down to few bits, but probably not worth its weight in code since CFErrors are rare
90 CFDictionaryRef userInfo; // !!! Could avoid allocating this slot if userInfo is NULL, but probably not worth its weight in code since CFErrors are rare
91 };
92
93 /* CFError equal checks for equality of domain, code, and userInfo.
94 */
95 static Boolean __CFErrorEqual(CFTypeRef cf1, CFTypeRef cf2) {
96 CFErrorRef err1 = (CFErrorRef)cf1;
97 CFErrorRef err2 = (CFErrorRef)cf2;
98
99 // First do quick checks of code and domain (in that order for performance)
100 if (CFErrorGetCode(err1) != CFErrorGetCode(err2)) return false;
101 if (!CFEqual(CFErrorGetDomain(err1), CFErrorGetDomain(err2))) return false;
102
103 // If those are equal, then check the dictionaries
104 CFDictionaryRef dict1 = CFErrorCopyUserInfo(err1);
105 CFDictionaryRef dict2 = CFErrorCopyUserInfo(err2);
106
107 Boolean result = false;
108
109 if (dict1 == dict2) {
110 result = true;
111 } else if (dict1 && dict2 && CFEqual(dict1, dict2)) {
112 result = true;
113 }
114
115 if (dict1) CFRelease(dict1);
116 if (dict2) CFRelease(dict2);
117
118 return result;
119 }
120
121 /* CFError hash code is hash(domain) + code
122 */
123 static CFHashCode __CFErrorHash(CFTypeRef cf) {
124 CFErrorRef err = (CFErrorRef)cf;
125 /* !!! We do not need an assertion here, as this is called by the CFBase runtime only */
126 return CFHash(err->domain) + err->code;
127 }
128
129 /* This is the full debug description. Shows the description (possibly localized), plus the domain, code, and userInfo explicitly. If there is a debug description, shows that as well.
130 */
131 static CFStringRef __CFErrorCopyDescription(CFTypeRef cf) {
132 return _CFErrorCreateDebugDescription((CFErrorRef)cf);
133 }
134
135 /* This is the description you get for %@; we tone it down a bit from what you get in __CFErrorCopyDescription().
136 */
137 static CFStringRef __CFErrorCopyFormattingDescription(CFTypeRef cf, CFDictionaryRef formatOptions) {
138 CFErrorRef err = (CFErrorRef)cf;
139 return CFErrorCopyDescription(err); // No need to release, since we are returning from a Copy function
140 }
141
142 static void __CFErrorDeallocate(CFTypeRef cf) {
143 CFErrorRef err = (CFErrorRef)cf;
144 CFRelease(err->domain);
145 CFRelease(err->userInfo);
146 }
147
148
149 static CFTypeID __kCFErrorTypeID = _kCFRuntimeNotATypeID;
150
151 static const CFRuntimeClass __CFErrorClass = {
152 0,
153 "CFError",
154 NULL, // init
155 NULL, // copy
156 __CFErrorDeallocate,
157 __CFErrorEqual,
158 __CFErrorHash,
159 __CFErrorCopyFormattingDescription,
160 __CFErrorCopyDescription
161 };
162
163 __private_extern__ void __CFErrorInitialize(void) {
164 __kCFErrorTypeID = _CFRuntimeRegisterClass(&__CFErrorClass);
165 }
166
167 CFTypeID CFErrorGetTypeID(void) {
168 return __kCFErrorTypeID;
169 }
170
171
172
173
174 /**** CFError support functions ****/
175
176 /* Returns a shared empty dictionary (unless the allocator is not kCFAllocatorSystemDefault, in which case returns a newly allocated one).
177 */
178 static CFDictionaryRef _CFErrorCreateEmptyDictionary(CFAllocatorRef allocator) {
179 if (allocator == NULL) allocator = __CFGetDefaultAllocator();
180 if (allocator == kCFAllocatorSystemDefault) {
181 static CFDictionaryRef emptyErrorDictionary = NULL;
182 if (emptyErrorDictionary == NULL) {
183 CFDictionaryRef tmp = CFDictionaryCreate(allocator, NULL, NULL, 0, &kCFCopyStringDictionaryKeyCallBacks, &kCFTypeDictionaryValueCallBacks);
184 __CFSpinLock(&_CFErrorSpinlock);
185 if (emptyErrorDictionary == NULL) {
186 emptyErrorDictionary = tmp;
187 __CFSpinUnlock(&_CFErrorSpinlock);
188 } else {
189 __CFSpinUnlock(&_CFErrorSpinlock);
190 CFRelease(tmp);
191 }
192 }
193 return (CFDictionaryRef)CFRetain(emptyErrorDictionary);
194 } else {
195 return CFDictionaryCreate(allocator, NULL, NULL, 0, &kCFCopyStringDictionaryKeyCallBacks, &kCFTypeDictionaryValueCallBacks);
196 }
197 }
198
199 /* A non-retained accessor for the userInfo. Might return NULL in some cases, if the subclass of NSError returned nil for some reason. It works with a CF or NSError.
200 */
201 static CFDictionaryRef _CFErrorGetUserInfo(CFErrorRef err) {
202 CF_OBJC_FUNCDISPATCH0(__kCFErrorTypeID, CFDictionaryRef, err, "userInfo");
203 __CFAssertIsError(err);
204 return err->userInfo;
205 }
206
207 /* This function retrieves the value of the specified key from the userInfo, or from the callback. It works with a CF or NSError.
208 */
209 static CFStringRef _CFErrorCopyUserInfoKey(CFErrorRef err, CFStringRef key) {
210 CFStringRef result = NULL;
211 // First consult the userInfo dictionary
212 CFDictionaryRef userInfo = _CFErrorGetUserInfo(err);
213 if (userInfo) result = (CFStringRef)CFDictionaryGetValue(userInfo, key);
214 // If that doesn't work, consult the callback
215 if (result) {
216 CFRetain(result);
217 } else {
218 CFErrorUserInfoKeyCallBack callBack = CFErrorGetCallBackForDomain(CFErrorGetDomain(err));
219 if (callBack) result = (CFStringRef)callBack(err, key);
220 }
221 return result;
222 }
223
224 /* The real guts of the description creation functionality. See the header file for the steps this function goes through to compute the description. This function can take a CF or NSError. It's called by NSError for the localizedDescription computation.
225 */
226 CFStringRef _CFErrorCreateLocalizedDescription(CFErrorRef err) {
227 // First look for kCFErrorLocalizedDescriptionKey; if non-NULL, return that as-is.
228 CFStringRef localizedDesc = _CFErrorCopyUserInfoKey(err, kCFErrorLocalizedDescriptionKey);
229 if (localizedDesc) return localizedDesc;
230
231 // Cache the CF bundle since we will be using it for localized strings.
232 CFBundleRef cfBundle = CFBundleGetBundleWithIdentifier(CFSTR("com.apple.CoreFoundation"));
233
234 if (!cfBundle) { // This should be rare, but has been observed in the wild, due to running out of file descriptors. Normally we might not go to such extremes, but since we want to be able to present reasonable errors even in the case of errors such as running out of file descriptors, why not. This is CFError after all. !!! Be sure to have the same logic here as below for going through various options for fetching the strings.
235
236 CFStringRef result = NULL, reasonOrDesc;
237
238 if ((reasonOrDesc = _CFErrorCopyUserInfoKey(err, kCFErrorLocalizedFailureReasonKey))) { // First look for kCFErrorLocalizedFailureReasonKey
239 result = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, CFSTR("The operation couldn\\U2019t be completed. %@"), reasonOrDesc);
240 } else if ((reasonOrDesc = _CFErrorCopyUserInfoKey(err, kCFErrorDescriptionKey))) { // Then try kCFErrorDescriptionKey
241 result = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, CFSTR("The operation couldn\\U2019t be completed. (%@ error %ld - %@)"), CFErrorGetDomain(err), (long)CFErrorGetCode(err), reasonOrDesc);
242 } else { // Last resort, just the domain and code
243 result = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, CFSTR("The operation couldn\\U2019t be completed. (%@ error %ld.)"), CFErrorGetDomain(err), (long)CFErrorGetCode(err));
244 }
245 if (reasonOrDesc) CFRelease(reasonOrDesc);
246 return result;
247 }
248
249 // Then look for kCFErrorLocalizedFailureReasonKey; if there, create a full sentence from that.
250 CFStringRef reason = _CFErrorCopyUserInfoKey(err, kCFErrorLocalizedFailureReasonKey);
251 if (reason) {
252 CFStringRef operationFailedStr = CFCopyLocalizedStringFromTableInBundle(CFSTR("The operation couldn\\U2019t be completed. %@"), CFSTR("Error"), cfBundle, "A generic error string indicating there was a problem. The %@ will be replaced by a second sentence which indicates why the operation failed.");
253 CFStringRef result = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, operationFailedStr, reason);
254 CFRelease(operationFailedStr);
255 CFRelease(reason);
256 return result;
257 }
258
259 // Otherwise, generate a semi-user presentable string from the domain, code, and if available, the presumably non-localized kCFErrorDescriptionKey.
260 CFStringRef result;
261 CFStringRef desc = _CFErrorCopyUserInfoKey(err, kCFErrorDescriptionKey);
262 CFStringRef localizedDomain = CFCopyLocalizedStringFromTableInBundle(CFErrorGetDomain(err), CFSTR("Error"), cfBundle, "These are localized in the comment above");
263 if (desc) { // We have kCFErrorDescriptionKey, so include that with the error domain and code
264 CFStringRef operationFailedStr = CFCopyLocalizedStringFromTableInBundle(CFSTR("The operation couldn\\U2019t be completed. (%@ error %ld - %@)"), CFSTR("Error"), cfBundle, "A generic error string indicating there was a problem, followed by a parenthetical sentence which indicates error domain, code, and a description when there is no other way to present an error to the user. The first %@ indicates the error domain, %ld indicates the error code, and the second %@ indicates the description; so this might become '(Mach error 42 - Server error.)' for instance.");
265 result = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, operationFailedStr, localizedDomain, (long)CFErrorGetCode(err), desc);
266 CFRelease(operationFailedStr);
267 CFRelease(desc);
268 } else { // We don't have kCFErrorDescriptionKey, so just use error domain and code
269 CFStringRef operationFailedStr = CFCopyLocalizedStringFromTableInBundle(CFSTR("The operation couldn\\U2019t be completed. (%@ error %ld.)"), CFSTR("Error"), cfBundle, "A generic error string indicating there was a problem, followed by a parenthetical sentence which indicates error domain and code when there is no other way to present an error to the user. The %@ indicates the error domain while %ld indicates the error code; so this might become '(Mach error 42.)' for instance.");
270 result = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, operationFailedStr, localizedDomain, (long)CFErrorGetCode(err));
271 CFRelease(operationFailedStr);
272 }
273 CFRelease(localizedDomain);
274 return result;
275 }
276
277 /* The real guts of the failure reason creation functionality. This function can take a CF or NSError. It's called by NSError for the localizedFailureReason computation.
278 */
279 CFStringRef _CFErrorCreateLocalizedFailureReason(CFErrorRef err) {
280 // We simply return the value of kCFErrorLocalizedFailureReasonKey; no other searching takes place
281 return _CFErrorCopyUserInfoKey(err, kCFErrorLocalizedFailureReasonKey);
282 }
283
284 /* The real guts of the recovery suggestion functionality. This function can take a CF or NSError. It's called by NSError for the localizedRecoverySuggestion computation.
285 */
286 CFStringRef _CFErrorCreateLocalizedRecoverySuggestion(CFErrorRef err) {
287 // We simply return the value of kCFErrorLocalizedRecoverySuggestionKey; no other searching takes place
288 return _CFErrorCopyUserInfoKey(err, kCFErrorLocalizedRecoverySuggestionKey);
289 }
290
291 /* The "debug" description, used by CFCopyDescription and -[NSObject description].
292 */
293 CFStringRef _CFErrorCreateDebugDescription(CFErrorRef err) {
294 CFStringRef desc = CFErrorCopyDescription(err);
295 CFStringRef debugDesc = _CFErrorCopyUserInfoKey(err, kCFErrorDebugDescriptionKey);
296 CFDictionaryRef userInfo = _CFErrorGetUserInfo(err);
297 CFErrorRef underlyingError = NULL;
298 CFMutableStringRef result = CFStringCreateMutable(kCFAllocatorSystemDefault, 0);
299 CFStringAppendFormat(result, NULL, CFSTR("Error Domain=%@ Code=%d"), CFErrorGetDomain(err), (long)CFErrorGetCode(err));
300 if (userInfo) {
301 CFStringAppendFormat(result, NULL, CFSTR(" UserInfo=%p"), userInfo);
302 underlyingError = (CFErrorRef)CFDictionaryGetValue(userInfo, kCFErrorUnderlyingErrorKey);
303 }
304 CFStringAppendFormat(result, NULL, CFSTR(" \"%@\""), desc);
305 if (debugDesc && CFStringGetLength(debugDesc) > 0) CFStringAppendFormat(result, NULL, CFSTR(" (%@)"), debugDesc);
306 if (underlyingError) {
307 CFStringRef underlyingErrorDesc = _CFErrorCreateDebugDescription(underlyingError);
308 CFStringAppendFormat(result, NULL, CFSTR(" Underlying Error=(%@)"), underlyingErrorDesc);
309 CFRelease(underlyingErrorDesc);
310 }
311 if (debugDesc) CFRelease(debugDesc);
312 if (desc) CFRelease(desc);
313 return result;
314 }
315
316
317
318
319 /**** CFError API/SPI ****/
320
321 /* Note that there are two entry points for creating CFErrors. This one does it with a presupplied userInfo dictionary.
322 */
323 CFErrorRef CFErrorCreate(CFAllocatorRef allocator, CFStringRef domain, CFIndex code, CFDictionaryRef userInfo) {
324 __CFGenericValidateType(domain, CFStringGetTypeID());
325 if (userInfo) __CFGenericValidateType(userInfo, CFDictionaryGetTypeID());
326
327 CFErrorRef err = (CFErrorRef)_CFRuntimeCreateInstance(allocator, __kCFErrorTypeID, sizeof(struct __CFError) - sizeof(CFRuntimeBase), NULL);
328 if (NULL == err) return NULL;
329
330 err->domain = CFStringCreateCopy(allocator, domain);
331 err->code = code;
332 err->userInfo = userInfo ? CFDictionaryCreateCopy(allocator, userInfo) : _CFErrorCreateEmptyDictionary(allocator);
333
334 return err;
335 }
336
337 /* Note that there are two entry points for creating CFErrors. This one does it with individual keys and values which are used to create the userInfo dictionary.
338 */
339 CFErrorRef CFErrorCreateWithUserInfoKeysAndValues(CFAllocatorRef allocator, CFStringRef domain, CFIndex code, const void *const *userInfoKeys, const void *const *userInfoValues, CFIndex numUserInfoValues) {
340 __CFGenericValidateType(domain, CFStringGetTypeID());
341
342 CFErrorRef err = (CFErrorRef)_CFRuntimeCreateInstance(allocator, __kCFErrorTypeID, sizeof(struct __CFError) - sizeof(CFRuntimeBase), NULL);
343 if (NULL == err) return NULL;
344
345 err->domain = CFStringCreateCopy(allocator, domain);
346 err->code = code;
347 err->userInfo = CFDictionaryCreate(allocator, (const void **)userInfoKeys, (const void **)userInfoValues, numUserInfoValues, &kCFCopyStringDictionaryKeyCallBacks, &kCFTypeDictionaryValueCallBacks);
348
349 return err;
350 }
351
352 CFStringRef CFErrorGetDomain(CFErrorRef err) {
353 CF_OBJC_FUNCDISPATCH0(__kCFErrorTypeID, CFStringRef, err, "domain");
354 __CFAssertIsError(err);
355 return err->domain;
356 }
357
358 CFIndex CFErrorGetCode(CFErrorRef err) {
359 CF_OBJC_FUNCDISPATCH0(__kCFErrorTypeID, CFIndex, err, "code");
360 __CFAssertIsError(err);
361 return err->code;
362 }
363
364 /* This accessor never returns NULL. For usage inside this file, consider __CFErrorGetUserInfo().
365 */
366 CFDictionaryRef CFErrorCopyUserInfo(CFErrorRef err) {
367 CFDictionaryRef userInfo = _CFErrorGetUserInfo(err);
368 return userInfo ? (CFDictionaryRef)CFRetain(userInfo) : _CFErrorCreateEmptyDictionary(CFGetAllocator(err));
369 }
370
371 CFStringRef CFErrorCopyDescription(CFErrorRef err) {
372 if (CF_IS_OBJC(__kCFErrorTypeID, err)) { // Since we have to return a retained result, we need to treat the toll-free bridging specially
373 CFStringRef desc;
374 CF_OBJC_CALL0(CFStringRef, desc, err, "localizedDescription");
375 return desc ? (CFStringRef)CFRetain(desc) : NULL; // !!! It really should never return nil.
376 }
377 __CFAssertIsError(err);
378 return _CFErrorCreateLocalizedDescription(err);
379 }
380
381 CFStringRef CFErrorCopyFailureReason(CFErrorRef err) {
382 if (CF_IS_OBJC(__kCFErrorTypeID, err)) { // Since we have to return a retained result, we need to treat the toll-free bridging specially
383 CFStringRef str;
384 CF_OBJC_CALL0(CFStringRef, str, err, "localizedFailureReason");
385 return str ? (CFStringRef)CFRetain(str) : NULL; // It's possible for localizedFailureReason to return nil
386 }
387 __CFAssertIsError(err);
388 return _CFErrorCreateLocalizedFailureReason(err);
389 }
390
391 CFStringRef CFErrorCopyRecoverySuggestion(CFErrorRef err) {
392 if (CF_IS_OBJC(__kCFErrorTypeID, err)) { // Since we have to return a retained result, we need to treat the toll-free bridging specially
393 CFStringRef str;
394 CF_OBJC_CALL0(CFStringRef, str, err, "localizedRecoverySuggestion");
395 return str ? (CFStringRef)CFRetain(str) : NULL; // It's possible for localizedRecoverySuggestion to return nil
396 }
397 __CFAssertIsError(err);
398 return _CFErrorCreateLocalizedRecoverySuggestion(err);
399 }
400
401
402 /**** CFError CallBack management ****/
403
404 /* Domain-to-callback mapping dictionary
405 */
406 static CFMutableDictionaryRef _CFErrorCallBackTable = NULL;
407
408
409 /* Built-in callback for POSIX domain. Note that we will pick up localizations from ErrnoErrors.strings in /System/Library/CoreServices/CoreTypes.bundle, if the file happens to be there.
410 */
411 static CFTypeRef _CFErrorPOSIXCallBack(CFErrorRef err, CFStringRef key) {
412 if (!CFEqual(key, kCFErrorDescriptionKey) && !CFEqual(key, kCFErrorLocalizedFailureReasonKey)) return NULL;
413
414 const char *errCStr = strerror(CFErrorGetCode(err));
415 CFStringRef errStr = (errCStr && strlen(errCStr)) ? CFStringCreateWithCString(kCFAllocatorSystemDefault, errCStr, kCFStringEncodingUTF8) : NULL;
416
417 if (!errStr) return NULL;
418 if (CFEqual(key, kCFErrorDescriptionKey)) return errStr; // If all we wanted was the non-localized description, we're done
419
420 // We need a kCFErrorLocalizedFailureReasonKey, so look up a possible localization for the error message
421 // Look for the bundle in /System/Library/CoreServices/CoreTypes.bundle
422 CFArrayRef paths = CFCopySearchPathForDirectoriesInDomains(kCFLibraryDirectory, kCFSystemDomainMask, false);
423 if (paths) {
424 if (CFArrayGetCount(paths) > 0) {
425 CFStringRef path = CFStringCreateWithFormat(kCFAllocatorSystemDefault, NULL, CFSTR("%@/CoreServices/CoreTypes.bundle"), CFArrayGetValueAtIndex(paths, 0));
426 CFURLRef url = CFURLCreateWithFileSystemPath(kCFAllocatorSystemDefault, path, kCFURLPOSIXPathStyle, false /* not a directory */);
427 if (url) {
428 CFBundleRef bundle = CFBundleCreate(kCFAllocatorSystemDefault, url);
429 if (bundle) {
430 // We only want to return a result if there was a localization
431 CFStringRef localizedErrStr = CFBundleCopyLocalizedString(bundle, errStr, errStr, CFSTR("ErrnoErrors"));
432 if (localizedErrStr == errStr) {
433 CFRelease(localizedErrStr);
434 CFRelease(errStr);
435 errStr = NULL;
436 } else {
437 CFRelease(errStr);
438 errStr = localizedErrStr;
439 }
440 CFRelease(bundle);
441 }
442 CFRelease(url);
443 }
444 CFRelease(path);
445 }
446 CFRelease(paths);
447 }
448
449 return errStr;
450 }
451
452 #if DEPLOYMENT_TARGET_MACOSX || DEPLOYMENT_TARGET_EMBEDDED
453 /* Built-in callback for Mach domain.
454 */
455 static CFTypeRef _CFErrorMachCallBack(CFErrorRef err, CFStringRef key) {
456 if (CFEqual(key, kCFErrorDescriptionKey)) {
457 const char *errStr = mach_error_string(CFErrorGetCode(err));
458 if (errStr && strlen(errStr)) return CFStringCreateWithCString(kCFAllocatorSystemDefault, errStr, kCFStringEncodingUTF8);
459 }
460 return NULL;
461 }
462 #elif DEPLOYMENT_TARGET_WINDOWS
463 #else
464 #error Unknown or unspecified DEPLOYMENT_TARGET
465 #endif
466
467
468 /* This initialize function is meant to be called lazily, the first time a callback is registered or requested. It creates the table and registers the built-in callbacks. Clearly doing this non-lazily in _CFErrorInitialize() would be simpler, but this is a fine example of something that should not have to happen at launch time.
469 */
470 static void _CFErrorInitializeCallBackTable(void) {
471 // Create the table outside the lock
472 CFMutableDictionaryRef table = CFDictionaryCreateMutable(kCFAllocatorSystemDefault, 0, &kCFCopyStringDictionaryKeyCallBacks, NULL);
473 __CFSpinLock(&_CFErrorSpinlock);
474 if (!_CFErrorCallBackTable) {
475 _CFErrorCallBackTable = table;
476 __CFSpinUnlock(&_CFErrorSpinlock);
477 } else {
478 __CFSpinUnlock(&_CFErrorSpinlock);
479 CFRelease(table);
480 // Note, even though the table looks like it was initialized, we go on to register the items on this thread as well, since otherwise we might consult the table before the items are actually registered.
481 }
482 CFErrorSetCallBackForDomain(kCFErrorDomainPOSIX, _CFErrorPOSIXCallBack);
483 #if DEPLOYMENT_TARGET_MACOSX || DEPLOYMENT_TARGET_EMBEDDED
484 CFErrorSetCallBackForDomain(kCFErrorDomainMach, _CFErrorMachCallBack);
485 #elif DEPLOYMENT_TARGET_WINDOWS
486 #else
487 #error Unknown or unspecified DEPLOYMENT_TARGET
488 #endif
489 }
490
491 void CFErrorSetCallBackForDomain(CFStringRef domainName, CFErrorUserInfoKeyCallBack callBack) {
492 if (!_CFErrorCallBackTable) _CFErrorInitializeCallBackTable();
493 __CFSpinLock(&_CFErrorSpinlock);
494 if (callBack) {
495 CFDictionarySetValue(_CFErrorCallBackTable, domainName, callBack);
496 } else {
497 CFDictionaryRemoveValue(_CFErrorCallBackTable, domainName);
498 }
499 __CFSpinUnlock(&_CFErrorSpinlock);
500 }
501
502 CFErrorUserInfoKeyCallBack CFErrorGetCallBackForDomain(CFStringRef domainName) {
503 if (!_CFErrorCallBackTable) _CFErrorInitializeCallBackTable();
504 __CFSpinLock(&_CFErrorSpinlock);
505 CFErrorUserInfoKeyCallBack callBack = (CFErrorUserInfoKeyCallBack)CFDictionaryGetValue(_CFErrorCallBackTable, domainName);
506 __CFSpinUnlock(&_CFErrorSpinlock);
507 return callBack;
508 }
509
510
511