dyld-733.8.tar.gz
[apple/dyld.git] / src / dyld2.cpp
1 /* -*- mode: C++; c-basic-offset: 4; tab-width: 4 -*-
2 *
3 * Copyright (c) 2004-2013 Apple Inc. All rights reserved.
4 *
5 * @APPLE_LICENSE_HEADER_START@
6 *
7 * This file contains Original Code and/or Modifications of Original Code
8 * as defined in and that are subject to the Apple Public Source License
9 * Version 2.0 (the 'License'). You may not use this file except in
10 * compliance with the License. Please obtain a copy of the License at
11 * http://www.opensource.apple.com/apsl/ and read it before using this
12 * file.
13 *
14 * The Original Code and all software distributed under the License are
15 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
16 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
17 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
19 * Please see the License for the specific language governing rights and
20 * limitations under the License.
21 *
22 * @APPLE_LICENSE_HEADER_END@
23 */
24
25 #include <stdint.h>
26 #include <string.h>
27 #include <unistd.h>
28 #include <errno.h>
29 #include <fcntl.h>
30 #include <stdlib.h>
31 #include <dirent.h>
32 #include <pthread.h>
33 #include <libproc.h>
34 #include <sys/param.h>
35 #include <mach/mach_time.h> // mach_absolute_time()
36 #include <mach/mach_init.h>
37 #include <sys/types.h>
38 #include <sys/stat.h>
39 #include <sys/syscall.h>
40 #include <sys/socket.h>
41 #include <sys/un.h>
42 #include <sys/syslog.h>
43 #include <sys/uio.h>
44 #include <mach/mach.h>
45 #include <mach-o/fat.h>
46 #include <mach-o/loader.h>
47 #include <mach-o/ldsyms.h>
48 #include <libkern/OSByteOrder.h>
49 #include <libkern/OSAtomic.h>
50 #include <mach/mach.h>
51 #include <sys/sysctl.h>
52 #include <sys/mman.h>
53 #include <sys/dtrace.h>
54 #include <libkern/OSAtomic.h>
55 #include <Availability.h>
56 #include <System/sys/codesign.h>
57 #include <System/sys/csr.h>
58 #include <_simple.h>
59 #include <os/lock_private.h>
60 #include <System/machine/cpu_capabilities.h>
61 #include <System/sys/reason.h>
62 #include <kern/kcdata.h>
63 #include <sys/attr.h>
64 #include <sys/fsgetpath.h>
65 #include <System/sys/content_protection.h>
66
67 #if TARGET_OS_SIMULATOR
68 enum {
69 AMFI_DYLD_INPUT_PROC_IN_SIMULATOR = (1 << 0),
70 };
71 enum amfi_dyld_policy_output_flag_set {
72 AMFI_DYLD_OUTPUT_ALLOW_AT_PATH = (1 << 0),
73 AMFI_DYLD_OUTPUT_ALLOW_PATH_VARS = (1 << 1),
74 AMFI_DYLD_OUTPUT_ALLOW_CUSTOM_SHARED_CACHE = (1 << 2),
75 AMFI_DYLD_OUTPUT_ALLOW_FALLBACK_PATHS = (1 << 3),
76 AMFI_DYLD_OUTPUT_ALLOW_PRINT_VARS = (1 << 4),
77 AMFI_DYLD_OUTPUT_ALLOW_FAILED_LIBRARY_INSERTION = (1 << 5),
78 AMFI_DYLD_OUTPUT_ALLOW_LIBRARY_INTERPOSING = (1 << 6),
79 };
80 extern "C" int amfi_check_dyld_policy_self(uint64_t input_flags, uint64_t* output_flags);
81 #else
82 #include <libamfi.h>
83 #endif
84
85 #include <sandbox.h>
86 #include <sandbox/private.h>
87 #if __has_feature(ptrauth_calls)
88 #include <ptrauth.h>
89 #endif
90
91 extern "C" int __fork();
92
93 #include <array>
94 #include <algorithm>
95 #include <vector>
96
97
98 #include "dyld2.h"
99 #include "ImageLoader.h"
100 #include "ImageLoaderMachO.h"
101 #include "dyldLibSystemInterface.h"
102 #include "dyld_cache_format.h"
103 #include "dyld_process_info_internal.h"
104
105 #if SUPPORT_ACCELERATE_TABLES
106 #include "ImageLoaderMegaDylib.h"
107 #endif
108
109 #if TARGET_OS_SIMULATOR
110 extern "C" void* gSyscallHelpers;
111 #else
112 #include "dyldSyscallInterface.h"
113 #endif
114
115 #include "Closure.h"
116 #include "libdyldEntryVector.h"
117 #include "MachOLoaded.h"
118 #include "Loading.h"
119 #include "DyldSharedCache.h"
120 #include "SharedCacheRuntime.h"
121 #include "StringUtils.h"
122 #include "Tracing.h"
123 #include "ClosureBuilder.h"
124 #include "ClosureFileSystemPhysical.h"
125 #include "FileUtils.h"
126 #include "BootArgs.h"
127
128 #ifndef MH_HAS_OBJC
129 #define MH_HAS_OBJC 0x40000000
130 #endif
131
132 // not libc header for send() syscall interface
133 extern "C" ssize_t __sendto(int, const void *, size_t, int, const struct sockaddr *, socklen_t);
134
135
136 // ARM and x86_64 are the only architecture that use cpu-sub-types
137 #define CPU_SUBTYPES_SUPPORTED ((__arm__ || __arm64__ || __x86_64__) && !TARGET_OS_SIMULATOR)
138
139 #if __LP64__
140 #define LC_SEGMENT_COMMAND LC_SEGMENT_64
141 #define LC_SEGMENT_COMMAND_WRONG LC_SEGMENT
142 #define LC_ENCRYPT_COMMAND LC_ENCRYPTION_INFO
143 #define macho_segment_command segment_command_64
144 #define macho_section section_64
145 #else
146 #define LC_SEGMENT_COMMAND LC_SEGMENT
147 #define LC_SEGMENT_COMMAND_WRONG LC_SEGMENT_64
148 #define LC_ENCRYPT_COMMAND LC_ENCRYPTION_INFO_64
149 #define macho_segment_command segment_command
150 #define macho_section section
151 #endif
152
153
154
155 #define CPU_TYPE_MASK 0x00FFFFFF /* complement of CPU_ARCH_MASK */
156
157
158 /* implemented in dyld_gdb.cpp */
159 extern void resetAllImages();
160 extern void addImagesToAllImages(uint32_t infoCount, const dyld_image_info info[]);
161 extern void removeImageFromAllImages(const mach_header* mh);
162 extern void addNonSharedCacheImageUUID(const dyld_uuid_info& info);
163 extern const char* notifyGDB(enum dyld_image_states state, uint32_t infoCount, const dyld_image_info info[]);
164 extern size_t allImagesCount();
165
166 // magic so CrashReporter logs message
167 extern "C" {
168 char error_string[1024];
169 }
170
171 // magic linker symbol for start of dyld binary
172 extern "C" const macho_header __dso_handle;
173
174
175 //
176 // The file contains the core of dyld used to get a process to main().
177 // The API's that dyld supports are implemented in dyldAPIs.cpp.
178 //
179 //
180 //
181 //
182 //
183 namespace dyld {
184 struct RegisteredDOF { const mach_header* mh; int registrationID; };
185 struct DylibOverride { const char* installName; const char* override; };
186 }
187
188
189 VECTOR_NEVER_DESTRUCTED(ImageLoader*);
190 VECTOR_NEVER_DESTRUCTED(dyld::RegisteredDOF);
191 VECTOR_NEVER_DESTRUCTED(dyld::ImageCallback);
192 VECTOR_NEVER_DESTRUCTED(dyld::DylibOverride);
193 VECTOR_NEVER_DESTRUCTED(ImageLoader::DynamicReference);
194
195 VECTOR_NEVER_DESTRUCTED(dyld_image_state_change_handler);
196
197 namespace dyld {
198
199
200 //
201 // state of all environment variables dyld uses
202 //
203 struct EnvironmentVariables {
204 const char* const * DYLD_FRAMEWORK_PATH;
205 const char* const * DYLD_FALLBACK_FRAMEWORK_PATH;
206 const char* const * DYLD_LIBRARY_PATH;
207 const char* const * DYLD_FALLBACK_LIBRARY_PATH;
208 const char* const * DYLD_INSERT_LIBRARIES;
209 const char* const * LD_LIBRARY_PATH; // for unix conformance
210 const char* const * DYLD_VERSIONED_LIBRARY_PATH;
211 const char* const * DYLD_VERSIONED_FRAMEWORK_PATH;
212 bool DYLD_PRINT_LIBRARIES_POST_LAUNCH;
213 bool DYLD_BIND_AT_LAUNCH;
214 bool DYLD_PRINT_STATISTICS;
215 bool DYLD_PRINT_STATISTICS_DETAILS;
216 bool DYLD_PRINT_OPTS;
217 bool DYLD_PRINT_ENV;
218 bool DYLD_DISABLE_DOFS;
219 bool hasOverride;
220 // DYLD_SHARED_CACHE_DIR ==> sSharedCacheOverrideDir
221 // DYLD_ROOT_PATH ==> gLinkContext.rootPaths
222 // DYLD_IMAGE_SUFFIX ==> gLinkContext.imageSuffix
223 // DYLD_PRINT_OPTS ==> gLinkContext.verboseOpts
224 // DYLD_PRINT_ENV ==> gLinkContext.verboseEnv
225 // DYLD_FORCE_FLAT_NAMESPACE ==> gLinkContext.bindFlat
226 // DYLD_PRINT_INITIALIZERS ==> gLinkContext.verboseInit
227 // DYLD_PRINT_SEGMENTS ==> gLinkContext.verboseMapping
228 // DYLD_PRINT_BINDINGS ==> gLinkContext.verboseBind
229 // DYLD_PRINT_WEAK_BINDINGS ==> gLinkContext.verboseWeakBind
230 // DYLD_PRINT_REBASINGS ==> gLinkContext.verboseRebase
231 // DYLD_PRINT_DOFS ==> gLinkContext.verboseDOF
232 // DYLD_PRINT_APIS ==> gLogAPIs
233 // DYLD_IGNORE_PREBINDING ==> gLinkContext.prebindUsage
234 // DYLD_PREBIND_DEBUG ==> gLinkContext.verbosePrebinding
235 // DYLD_NEW_LOCAL_SHARED_REGIONS ==> gLinkContext.sharedRegionMode
236 // DYLD_SHARED_REGION ==> gLinkContext.sharedRegionMode
237 // DYLD_PRINT_WARNINGS ==> gLinkContext.verboseWarnings
238 // DYLD_PRINT_RPATHS ==> gLinkContext.verboseRPaths
239 // DYLD_PRINT_INTERPOSING ==> gLinkContext.verboseInterposing
240 // DYLD_PRINT_LIBRARIES ==> gLinkContext.verboseLoading
241 };
242
243
244
245 typedef std::vector<dyld_image_state_change_handler> StateHandlers;
246
247
248 enum EnvVarMode { envNone, envPrintOnly, envAll };
249
250 // all global state
251 static const char* sExecPath = NULL;
252 static const char* sExecShortName = NULL;
253 static const macho_header* sMainExecutableMachHeader = NULL;
254 static uintptr_t sMainExecutableSlide = 0;
255 #if CPU_SUBTYPES_SUPPORTED
256 static cpu_type_t sHostCPU;
257 static cpu_subtype_t sHostCPUsubtype;
258 #endif
259 static ImageLoaderMachO* sMainExecutable = NULL;
260 static size_t sInsertedDylibCount = 0;
261 static std::vector<ImageLoader*> sAllImages;
262 static std::vector<ImageLoader*> sImageRoots;
263 static std::vector<ImageLoader*> sImageFilesNeedingTermination;
264 static std::vector<RegisteredDOF> sImageFilesNeedingDOFUnregistration;
265 static std::vector<ImageCallback> sAddImageCallbacks;
266 static std::vector<ImageCallback> sRemoveImageCallbacks;
267 static std::vector<LoadImageCallback> sAddLoadImageCallbacks;
268 static std::vector<LoadImageBulkCallback> sAddBulkLoadImageCallbacks;
269 static bool sRemoveImageCallbacksInUse = false;
270 static void* sSingleHandlers[7][3];
271 static void* sBatchHandlers[7][3];
272 static ImageLoader* sLastImageByAddressCache;
273 static EnvironmentVariables sEnv;
274 #if __MAC_OS_X_VERSION_MIN_REQUIRED
275 static const char* sFrameworkFallbackPaths[] = { "$HOME/Library/Frameworks", "/Library/Frameworks", "/Network/Library/Frameworks", "/System/Library/Frameworks", NULL };
276 static const char* sLibraryFallbackPaths[] = { "$HOME/lib", "/usr/local/lib", "/usr/lib", NULL };
277 static const char* sRestrictedFrameworkFallbackPaths[] = { "/System/Library/Frameworks", NULL };
278 static const char* sRestrictedLibraryFallbackPaths[] = { "/usr/lib", NULL };
279 #else
280 static const char* sFrameworkFallbackPaths[] = { "/System/Library/Frameworks", NULL };
281 static const char* sLibraryFallbackPaths[] = { "/usr/local/lib", "/usr/lib", NULL };
282 #endif
283 static UndefinedHandler sUndefinedHandler = NULL;
284 static ImageLoader* sBundleBeingLoaded = NULL; // hack until OFI is reworked
285 static dyld3::SharedCacheLoadInfo sSharedCacheLoadInfo;
286 static const char* sSharedCacheOverrideDir;
287 bool gSharedCacheOverridden = false;
288 ImageLoader::LinkContext gLinkContext;
289 bool gLogAPIs = false;
290 #if SUPPORT_ACCELERATE_TABLES
291 bool gLogAppAPIs = false;
292 #endif
293 const struct LibSystemHelpers* gLibSystemHelpers = NULL;
294 #if SUPPORT_OLD_CRT_INITIALIZATION
295 bool gRunInitializersOldWay = false;
296 #endif
297 static std::vector<DylibOverride> sDylibOverrides;
298 #if !TARGET_OS_SIMULATOR
299 static int sLogSocket = -1;
300 #endif
301 static bool sFrameworksFoundAsDylibs = false;
302 #if __x86_64__ && !TARGET_OS_SIMULATOR
303 static bool sHaswell = false;
304 #endif
305 static std::vector<ImageLoader::DynamicReference> sDynamicReferences;
306 #pragma clang diagnostic push
307 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
308 static OSSpinLock sDynamicReferencesLock = 0;
309 #pragma clang diagnostic pop
310 #if !TARGET_OS_SIMULATOR
311 static bool sLogToFile = false;
312 #endif
313 static char sLoadingCrashMessage[1024] = "dyld: launch, loading dependent libraries";
314 static _dyld_objc_notify_mapped sNotifyObjCMapped;
315 static _dyld_objc_notify_init sNotifyObjCInit;
316 static _dyld_objc_notify_unmapped sNotifyObjCUnmapped;
317
318 #if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
319 static bool sForceStderr = false;
320 #endif
321
322
323 #if SUPPORT_ACCELERATE_TABLES
324 static ImageLoaderMegaDylib* sAllCacheImagesProxy = NULL;
325 // Note these are now off by default as everything should use dyld3.
326 static bool sDisableAcceleratorTables = true;
327 #endif
328
329 bool gUseDyld3 = false;
330 static bool sSkipMain = false;
331 static void (*sEntryOveride)() = nullptr;
332 static bool sJustBuildClosure = false;
333 static bool sLogClosureFailure = false;
334
335 enum class ClosureMode {
336 // Unset means we haven't provided an env variable or boot-arg to explicitly choose a mode
337 Unset,
338 // On means we set DYLD_USE_CLOSURES=1, or we didn't have DYLD_USE_CLOSURES=0 but did have
339 // -force_dyld3=1 env variable or a customer cache on iOS
340 On,
341 // Off means we set DYLD_USE_CLOSURES=0, or we didn't have DYLD_USE_CLOSURES=1 but did have
342 // -force_dyld2=1 env variable or an internal cache on iOS
343 Off,
344 // PreBuiltOnly means only use a shared cache closure and don't try build a new one
345 PreBuiltOnly
346 };
347
348 static ClosureMode sClosureMode = ClosureMode::Unset;
349 static bool sForceInvalidSharedCacheClosureFormat = false;
350 static uint64_t launchTraceID = 0;
351
352 //
353 // The MappedRanges structure is used for fast address->image lookups.
354 // The table is only updated when the dyld lock is held, so we don't
355 // need to worry about multiple writers. But readers may look at this
356 // data without holding the lock. Therefore, all updates must be done
357 // in an order that will never cause readers to see inconsistent data.
358 // The general rule is that if the image field is non-NULL then
359 // the other fields are valid.
360 //
361 struct MappedRanges
362 {
363 MappedRanges* next;
364 unsigned long count;
365 struct {
366 ImageLoader* image;
367 uintptr_t start;
368 uintptr_t end;
369 } array[1];
370 };
371
372 static MappedRanges* sMappedRangesStart;
373
374 #pragma clang diagnostic push
375 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
376 void addMappedRange(ImageLoader* image, uintptr_t start, uintptr_t end)
377 {
378 //dyld::log("addMappedRange(0x%lX->0x%lX) for %s\n", start, end, image->getShortName());
379 for (MappedRanges* p = sMappedRangesStart; p != NULL; p = p->next) {
380 for (unsigned long i=0; i < p->count; ++i) {
381 if ( p->array[i].image == NULL ) {
382 p->array[i].start = start;
383 p->array[i].end = end;
384 // add image field last with a barrier so that any reader will see consistent records
385 OSMemoryBarrier();
386 p->array[i].image = image;
387 return;
388 }
389 }
390 }
391 // table must be full, chain another
392 #if SUPPORT_ACCELERATE_TABLES
393 unsigned count = (sAllCacheImagesProxy != NULL) ? 16 : 400;
394 #else
395 unsigned count = 400;
396 #endif
397 size_t allocationSize = sizeof(MappedRanges) + (count-1)*3*sizeof(void*);
398 MappedRanges* newRanges = (MappedRanges*)malloc(allocationSize);
399 bzero(newRanges, allocationSize);
400 newRanges->count = count;
401 newRanges->array[0].start = start;
402 newRanges->array[0].end = end;
403 newRanges->array[0].image = image;
404 OSMemoryBarrier();
405 if ( sMappedRangesStart == NULL ) {
406 sMappedRangesStart = newRanges;
407 }
408 else {
409 for (MappedRanges* p = sMappedRangesStart; p != NULL; p = p->next) {
410 if ( p->next == NULL ) {
411 OSMemoryBarrier();
412 p->next = newRanges;
413 break;
414 }
415 }
416 }
417 }
418
419 void removedMappedRanges(ImageLoader* image)
420 {
421 for (MappedRanges* p = sMappedRangesStart; p != NULL; p = p->next) {
422 for (unsigned long i=0; i < p->count; ++i) {
423 if ( p->array[i].image == image ) {
424 // clear with a barrier so that any reader will see consistent records
425 OSMemoryBarrier();
426 p->array[i].image = NULL;
427 }
428 }
429 }
430 }
431 #pragma clang diagnostic pop
432
433 ImageLoader* findMappedRange(uintptr_t target)
434 {
435 for (MappedRanges* p = sMappedRangesStart; p != NULL; p = p->next) {
436 for (unsigned long i=0; i < p->count; ++i) {
437 if ( p->array[i].image != NULL ) {
438 if ( (p->array[i].start <= target) && (target < p->array[i].end) )
439 return p->array[i].image;
440 }
441 }
442 }
443 return NULL;
444 }
445
446
447
448 const char* mkstringf(const char* format, ...)
449 {
450 _SIMPLE_STRING buf = _simple_salloc();
451 if ( buf != NULL ) {
452 va_list list;
453 va_start(list, format);
454 _simple_vsprintf(buf, format, list);
455 va_end(list);
456 const char* t = strdup(_simple_string(buf));
457 _simple_sfree(buf);
458 if ( t != NULL )
459 return t;
460 }
461 return "mkstringf, out of memory error";
462 }
463
464
465 void throwf(const char* format, ...)
466 {
467 _SIMPLE_STRING buf = _simple_salloc();
468 if ( buf != NULL ) {
469 va_list list;
470 va_start(list, format);
471 _simple_vsprintf(buf, format, list);
472 va_end(list);
473 const char* t = strdup(_simple_string(buf));
474 _simple_sfree(buf);
475 if ( t != NULL )
476 throw t;
477 }
478 throw "throwf, out of memory error";
479 }
480
481
482 #if !TARGET_OS_SIMULATOR
483 static int sLogfile = STDERR_FILENO;
484 #endif
485
486 #if !TARGET_OS_SIMULATOR
487 // based on CFUtilities.c: also_do_stderr()
488 static bool useSyslog()
489 {
490 // Use syslog() for processes managed by launchd
491 static bool launchdChecked = false;
492 static bool launchdOwned = false;
493 if ( !launchdChecked && gProcessInfo->libSystemInitialized ) {
494 if ( (gLibSystemHelpers != NULL) && (gLibSystemHelpers->version >= 11) ) {
495 // <rdar://problem/23520449> only call isLaunchdOwned() after libSystem is initialized
496 launchdOwned = (*gLibSystemHelpers->isLaunchdOwned)();
497 launchdChecked = true;
498 }
499 }
500 if ( launchdChecked && launchdOwned )
501 return true;
502
503 // If stderr is not available, use syslog()
504 struct stat sb;
505 int result = fstat(STDERR_FILENO, &sb);
506 if ( result < 0 )
507 return true; // file descriptor 2 is closed
508
509 return false;
510 }
511
512
513 static void socket_syslogv(int priority, const char* format, va_list list)
514 {
515 // lazily create socket and connection to syslogd
516 if ( sLogSocket == -1 ) {
517 sLogSocket = ::socket(AF_UNIX, SOCK_DGRAM, 0);
518 if (sLogSocket == -1)
519 return; // cannot log
520 ::fcntl(sLogSocket, F_SETFD, 1);
521
522 struct sockaddr_un addr;
523 addr.sun_family = AF_UNIX;
524 strncpy(addr.sun_path, _PATH_LOG, sizeof(addr.sun_path));
525 if ( ::connect(sLogSocket, (struct sockaddr *)&addr, sizeof(addr)) == -1 ) {
526 ::close(sLogSocket);
527 sLogSocket = -1;
528 return;
529 }
530 }
531
532 // format message to syslogd like: "<priority>Process[pid]: message"
533 _SIMPLE_STRING buf = _simple_salloc();
534 if ( buf == NULL )
535 return;
536 if ( _simple_sprintf(buf, "<%d>%s[%d]: ", LOG_USER|LOG_NOTICE, sExecShortName, getpid()) == 0 ) {
537 if ( _simple_vsprintf(buf, format, list) == 0 ) {
538 const char* p = _simple_string(buf);
539 ::__sendto(sLogSocket, p, strlen(p), 0, NULL, 0);
540 }
541 }
542 _simple_sfree(buf);
543 }
544
545
546
547 void vlog(const char* format, va_list list)
548 {
549 #if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
550 // <rdar://problem/25965832> log to console when running iOS app from Xcode
551 if ( !sLogToFile && !sForceStderr && useSyslog() )
552 #else
553 if ( !sLogToFile && useSyslog() )
554 #endif
555 socket_syslogv(LOG_ERR, format, list);
556 else {
557 _simple_vdprintf(sLogfile, format, list);
558 }
559 }
560
561 void log(const char* format, ...)
562 {
563 va_list list;
564 va_start(list, format);
565 vlog(format, list);
566 va_end(list);
567 }
568
569
570 void vwarn(const char* format, va_list list)
571 {
572 _simple_dprintf(sLogfile, "dyld: warning, ");
573 _simple_vdprintf(sLogfile, format, list);
574 }
575
576 void warn(const char* format, ...)
577 {
578 va_list list;
579 va_start(list, format);
580 vwarn(format, list);
581 va_end(list);
582 }
583
584 #else
585 extern void vlog(const char* format, va_list list);
586 #endif // !TARGET_OS_SIMULATOR
587
588
589 #pragma clang diagnostic push
590 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
591 // <rdar://problem/8867781> control access to sAllImages through a lock
592 // because global dyld lock is not held during initialization phase of dlopen()
593 // <rdar://problem/16145518> Use OSSpinLockLock to allow yielding
594 static OSSpinLock sAllImagesLock = 0;
595
596 static void allImagesLock()
597 {
598 OSSpinLockLock(&sAllImagesLock);
599 }
600
601 static void allImagesUnlock()
602 {
603 OSSpinLockUnlock(&sAllImagesLock);
604 }
605 #pragma clang diagnostic pop
606
607
608 // utility class to assure files are closed when an exception is thrown
609 class FileOpener {
610 public:
611 FileOpener(const char* path);
612 ~FileOpener();
613 int getFileDescriptor() { return fd; }
614 private:
615 int fd;
616 };
617
618 FileOpener::FileOpener(const char* path)
619 : fd(-1)
620 {
621 fd = my_open(path, O_RDONLY, 0);
622 }
623
624 FileOpener::~FileOpener()
625 {
626 if ( fd != -1 )
627 close(fd);
628 }
629
630
631 static void registerDOFs(const std::vector<ImageLoader::DOFInfo>& dofs)
632 {
633 const size_t dofSectionCount = dofs.size();
634 if ( !sEnv.DYLD_DISABLE_DOFS && (dofSectionCount != 0) ) {
635 int fd = open("/dev/" DTRACEMNR_HELPER, O_RDWR);
636 if ( fd < 0 ) {
637 //dyld::warn("can't open /dev/" DTRACEMNR_HELPER " to register dtrace DOF sections\n");
638 }
639 else {
640 // allocate a buffer on the stack for the variable length dof_ioctl_data_t type
641 uint8_t buffer[sizeof(dof_ioctl_data_t) + dofSectionCount*sizeof(dof_helper_t)];
642 dof_ioctl_data_t* ioctlData = (dof_ioctl_data_t*)buffer;
643
644 // fill in buffer with one dof_helper_t per DOF section
645 ioctlData->dofiod_count = dofSectionCount;
646 for (unsigned int i=0; i < dofSectionCount; ++i) {
647 strlcpy(ioctlData->dofiod_helpers[i].dofhp_mod, dofs[i].imageShortName, DTRACE_MODNAMELEN);
648 ioctlData->dofiod_helpers[i].dofhp_dof = (uintptr_t)(dofs[i].dof);
649 ioctlData->dofiod_helpers[i].dofhp_addr = (uintptr_t)(dofs[i].dof);
650 }
651
652 // tell kernel about all DOF sections en mas
653 // pass pointer to ioctlData because ioctl() only copies a fixed size amount of data into kernel
654 user_addr_t val = (user_addr_t)(unsigned long)ioctlData;
655 if ( ioctl(fd, DTRACEHIOC_ADDDOF, &val) != -1 ) {
656 // kernel returns a unique identifier for each section in the dofiod_helpers[].dofhp_dof field.
657 for (unsigned int i=0; i < dofSectionCount; ++i) {
658 RegisteredDOF info;
659 info.mh = dofs[i].imageHeader;
660 info.registrationID = (int)(ioctlData->dofiod_helpers[i].dofhp_dof);
661 sImageFilesNeedingDOFUnregistration.push_back(info);
662 if ( gLinkContext.verboseDOF ) {
663 dyld::log("dyld: registering DOF section %p in %s with dtrace, ID=0x%08X\n",
664 dofs[i].dof, dofs[i].imageShortName, info.registrationID);
665 }
666 }
667 }
668 else {
669 //dyld::log( "dyld: ioctl to register dtrace DOF section failed\n");
670 }
671 close(fd);
672 }
673 }
674 }
675
676 static void unregisterDOF(int registrationID)
677 {
678 int fd = open("/dev/" DTRACEMNR_HELPER, O_RDWR);
679 if ( fd < 0 ) {
680 dyld::warn("can't open /dev/" DTRACEMNR_HELPER " to unregister dtrace DOF section\n");
681 }
682 else {
683 ioctl(fd, DTRACEHIOC_REMOVE, registrationID);
684 close(fd);
685 if ( gLinkContext.verboseInit )
686 dyld::warn("unregistering DOF section ID=0x%08X with dtrace\n", registrationID);
687 }
688 }
689
690
691 //
692 // _dyld_register_func_for_add_image() is implemented as part of the general image state change notification
693 // Returns true if we did call add image callbacks on this image
694 //
695 static bool notifyAddImageCallbacks(ImageLoader* image)
696 {
697 // use guard so that we cannot notify about the same image twice
698 if ( ! image->addFuncNotified() ) {
699 for (std::vector<ImageCallback>::iterator it=sAddImageCallbacks.begin(); it != sAddImageCallbacks.end(); it++) {
700 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)image->machHeader(), (uint64_t)(*it), 0);
701 (*it)(image->machHeader(), image->getSlide());
702 }
703 for (LoadImageCallback func : sAddLoadImageCallbacks) {
704 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)image->machHeader(), (uint64_t)(*func), 0);
705 (*func)(image->machHeader(), image->getPath(), !image->neverUnload());
706 }
707 image->setAddFuncNotified();
708 return true;
709 }
710 return false;
711 }
712
713
714
715 // notify gdb about these new images
716 static const char* updateAllImages(enum dyld_image_states state, uint32_t infoCount, const struct dyld_image_info info[])
717 {
718 // <rdar://problem/8812589> don't add images without paths to all-image-info-list
719 if ( info[0].imageFilePath != NULL )
720 addImagesToAllImages(infoCount, info);
721 return NULL;
722 }
723
724
725 static StateHandlers* stateToHandlers(dyld_image_states state, void* handlersArray[7][3])
726 {
727 switch ( state ) {
728 case dyld_image_state_mapped:
729 return reinterpret_cast<StateHandlers*>(&handlersArray[0]);
730
731 case dyld_image_state_dependents_mapped:
732 return reinterpret_cast<StateHandlers*>(&handlersArray[1]);
733
734 case dyld_image_state_rebased:
735 return reinterpret_cast<StateHandlers*>(&handlersArray[2]);
736
737 case dyld_image_state_bound:
738 return reinterpret_cast<StateHandlers*>(&handlersArray[3]);
739
740 case dyld_image_state_dependents_initialized:
741 return reinterpret_cast<StateHandlers*>(&handlersArray[4]);
742
743 case dyld_image_state_initialized:
744 return reinterpret_cast<StateHandlers*>(&handlersArray[5]);
745
746 case dyld_image_state_terminated:
747 return reinterpret_cast<StateHandlers*>(&handlersArray[6]);
748 }
749 return NULL;
750 }
751
752 #if SUPPORT_ACCELERATE_TABLES
753 static dyld_image_state_change_handler getPreInitNotifyHandler(unsigned index)
754 {
755 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(dyld_image_state_dependents_initialized, sSingleHandlers);
756 if ( index >= handlers->size() )
757 return NULL;
758 return (*handlers)[index];
759 }
760
761 static dyld_image_state_change_handler getBoundBatchHandler(unsigned index)
762 {
763 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(dyld_image_state_bound, sBatchHandlers);
764 if ( index >= handlers->size() )
765 return NULL;
766 return (*handlers)[index];
767 }
768
769 static void notifySingleFromCache(dyld_image_states state, const mach_header* mh, const char* path)
770 {
771 //dyld::log("notifySingle(state=%d, image=%s)\n", state, image->getPath());
772 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(state, sSingleHandlers);
773 if ( handlers != NULL ) {
774 dyld_image_info info;
775 info.imageLoadAddress = mh;
776 info.imageFilePath = path;
777 info.imageFileModDate = 0;
778 for (dyld_image_state_change_handler handler : *handlers) {
779 const char* result = (*handler)(state, 1, &info);
780 if ( (result != NULL) && (state == dyld_image_state_mapped) ) {
781 //fprintf(stderr, " image rejected by handler=%p\n", *it);
782 // make copy of thrown string so that later catch clauses can free it
783 const char* str = strdup(result);
784 throw str;
785 }
786 }
787 }
788 if ( (state == dyld_image_state_dependents_initialized) && (sNotifyObjCInit != NULL) && (mh->flags & MH_HAS_OBJC) ) {
789 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_OBJC_INIT, (uint64_t)mh, 0, 0);
790 (*sNotifyObjCInit)(path, mh);
791 }
792 }
793 #endif
794
795 #if !TARGET_OS_SIMULATOR
796 static void sendMessage(unsigned portSlot, mach_msg_id_t msgId, mach_msg_size_t sendSize, mach_msg_header_t* buffer, mach_msg_size_t bufferSize) {
797 // Allocate a port to listen on in this monitoring task
798 mach_port_t sendPort = dyld::gProcessInfo->notifyPorts[portSlot];
799 if (sendPort == MACH_PORT_NULL) {
800 return;
801 }
802 mach_port_t replyPort = MACH_PORT_NULL;
803 mach_port_options_t options = { .flags = MPO_CONTEXT_AS_GUARD | MPO_STRICT,
804 .mpl = { 1 }};
805 kern_return_t kr = mach_port_construct(mach_task_self(), &options, (mach_port_context_t)&replyPort, &replyPort);
806 if (kr != KERN_SUCCESS) {
807 return;
808 }
809 // Assemble a message
810 mach_msg_header_t* h = buffer;
811 h->msgh_bits = MACH_MSGH_BITS(MACH_MSG_TYPE_COPY_SEND,MACH_MSG_TYPE_MAKE_SEND_ONCE);
812 h->msgh_id = msgId;
813 h->msgh_local_port = replyPort;
814 h->msgh_remote_port = sendPort;
815 h->msgh_reserved = 0;
816 h->msgh_size = sendSize;
817 kr = mach_msg(h, MACH_SEND_MSG | MACH_RCV_MSG, h->msgh_size, bufferSize, replyPort, 0, MACH_PORT_NULL);
818 mach_msg_destroy(h);
819 if ( kr == MACH_SEND_INVALID_DEST ) {
820 if (OSAtomicCompareAndSwap32(sendPort, 0, (volatile int32_t*)&dyld::gProcessInfo->notifyPorts[portSlot])) {
821 mach_port_deallocate(mach_task_self(), sendPort);
822 }
823 }
824 mach_port_destruct(mach_task_self(), replyPort, 0, (mach_port_context_t)&replyPort);
825 }
826
827 static void notifyMonitoringDyld(bool unloading, unsigned imageCount, const struct mach_header* loadAddresses[],
828 const char* imagePaths[])
829 {
830 dyld3::ScopedTimer(DBG_DYLD_REMOTE_IMAGE_NOTIFIER, 0, 0, 0);
831 for (int slot=0; slot < DYLD_MAX_PROCESS_INFO_NOTIFY_COUNT; ++slot) {
832 if ( dyld::gProcessInfo->notifyPorts[slot] == 0) continue;
833 unsigned entriesSize = imageCount*sizeof(dyld_process_info_image_entry);
834 unsigned pathsSize = 0;
835 for (unsigned j=0; j < imageCount; ++j) {
836 pathsSize += (strlen(imagePaths[j]) + 1);
837 }
838 unsigned totalSize = (sizeof(dyld_process_info_notify_header) + entriesSize + pathsSize + 127) & -128; // align
839 if ( totalSize > DYLD_PROCESS_INFO_NOTIFY_MAX_BUFFER_SIZE ) {
840 // Putting all image paths into one message would make buffer too big.
841 // Instead split into two messages. Recurse as needed until paths fit in buffer.
842 unsigned imageHalfCount = imageCount/2;
843 notifyMonitoringDyld(unloading, imageHalfCount, loadAddresses, imagePaths);
844 notifyMonitoringDyld(unloading, imageCount - imageHalfCount, &loadAddresses[imageHalfCount], &imagePaths[imageHalfCount]);
845 return;
846 }
847 uint8_t buffer[totalSize + MAX_TRAILER_SIZE];
848 dyld_process_info_notify_header* header = (dyld_process_info_notify_header*)buffer;
849 header->version = 1;
850 header->imageCount = imageCount;
851 header->imagesOffset = sizeof(dyld_process_info_notify_header);
852 header->stringsOffset = sizeof(dyld_process_info_notify_header) + entriesSize;
853 header->timestamp = dyld::gProcessInfo->infoArrayChangeTimestamp;
854 dyld_process_info_image_entry* entries = (dyld_process_info_image_entry*)&buffer[header->imagesOffset];
855 char* const pathPoolStart = (char*)&buffer[header->stringsOffset];
856 char* pathPool = pathPoolStart;
857 for (unsigned j=0; j < imageCount; ++j) {
858 strcpy(pathPool, imagePaths[j]);
859 uint32_t len = (uint32_t)strlen(pathPool);
860 bzero(entries->uuid, 16);
861 dyld3::MachOFile* mf = (dyld3::MachOFile*)loadAddresses[j];
862 mf->getUuid(entries->uuid);
863 entries->loadAddress = (uint64_t)loadAddresses[j];
864 entries->pathStringOffset = (uint32_t)(pathPool - pathPoolStart);
865 entries->pathLength = len;
866 pathPool += (len +1);
867 ++entries;
868 }
869 if (unloading) {
870 sendMessage(slot, DYLD_PROCESS_INFO_NOTIFY_UNLOAD_ID, totalSize, (mach_msg_header_t*)buffer, totalSize+MAX_TRAILER_SIZE);
871 } else {
872 sendMessage(slot, DYLD_PROCESS_INFO_NOTIFY_LOAD_ID, totalSize, (mach_msg_header_t*)buffer, totalSize+MAX_TRAILER_SIZE);
873 }
874 }
875 }
876
877 static void notifyMonitoringDyldMain()
878 {
879 dyld3::ScopedTimer(DBG_DYLD_REMOTE_IMAGE_NOTIFIER, 0, 0, 0);
880 for (int slot=0; slot < DYLD_MAX_PROCESS_INFO_NOTIFY_COUNT; ++slot) {
881 if ( dyld::gProcessInfo->notifyPorts[slot] == 0) continue;
882 uint8_t buffer[sizeof(mach_msg_header_t) + MAX_TRAILER_SIZE];
883 sendMessage(slot, DYLD_PROCESS_INFO_NOTIFY_MAIN_ID, sizeof(mach_msg_header_t), (mach_msg_header_t*)buffer, sizeof(mach_msg_header_t) + MAX_TRAILER_SIZE);
884 }
885 }
886 #else
887 extern void notifyMonitoringDyldMain() VIS_HIDDEN;
888 extern void notifyMonitoringDyld(bool unloading, unsigned imageCount, const struct mach_header* loadAddresses[],
889 const char* imagePaths[]) VIS_HIDDEN;
890 #endif
891
892 void notifyKernel(const ImageLoader& image, bool loading) {
893 uint32_t baseCode = loading ? DBG_DYLD_UUID_MAP_A : DBG_DYLD_UUID_UNMAP_A;
894 uuid_t uuid;
895 image.getUUID(uuid);
896 if ( image.inSharedCache() ) {
897 dyld3::kdebug_trace_dyld_image(baseCode, image.getInstallPath(), (const uuid_t *)&uuid, {0}, {{ 0, 0 }}, image.machHeader());
898 } else {
899 fsid_t fsid = {{0, 0}};
900 fsobj_id_t fsobj = {0};
901 ino_t inode = image.getInode();
902 fsobj.fid_objno = (uint32_t)inode;
903 fsobj.fid_generation = (uint32_t)(inode>>32);
904 fsid.val[0] = image.getDevice();
905 dyld3::kdebug_trace_dyld_image(baseCode, image.getPath(), (const uuid_t *)&uuid, fsobj, fsid, image.machHeader());
906 }
907 }
908
909 static void notifySingle(dyld_image_states state, const ImageLoader* image, ImageLoader::InitializerTimingList* timingInfo)
910 {
911 //dyld::log("notifySingle(state=%d, image=%s)\n", state, image->getPath());
912 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(state, sSingleHandlers);
913 if ( handlers != NULL ) {
914 dyld_image_info info;
915 info.imageLoadAddress = image->machHeader();
916 info.imageFilePath = image->getRealPath();
917 info.imageFileModDate = image->lastModified();
918 for (std::vector<dyld_image_state_change_handler>::iterator it = handlers->begin(); it != handlers->end(); ++it) {
919 const char* result = (*it)(state, 1, &info);
920 if ( (result != NULL) && (state == dyld_image_state_mapped) ) {
921 //fprintf(stderr, " image rejected by handler=%p\n", *it);
922 // make copy of thrown string so that later catch clauses can free it
923 const char* str = strdup(result);
924 throw str;
925 }
926 }
927 }
928 if ( state == dyld_image_state_mapped ) {
929 // <rdar://problem/7008875> Save load addr + UUID for images from outside the shared cache
930 if ( !image->inSharedCache() ) {
931 dyld_uuid_info info;
932 if ( image->getUUID(info.imageUUID) ) {
933 info.imageLoadAddress = image->machHeader();
934 addNonSharedCacheImageUUID(info);
935 }
936 }
937 }
938 if ( (state == dyld_image_state_dependents_initialized) && (sNotifyObjCInit != NULL) && image->notifyObjC() ) {
939 uint64_t t0 = mach_absolute_time();
940 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_OBJC_INIT, (uint64_t)image->machHeader(), 0, 0);
941 (*sNotifyObjCInit)(image->getRealPath(), image->machHeader());
942 uint64_t t1 = mach_absolute_time();
943 uint64_t t2 = mach_absolute_time();
944 uint64_t timeInObjC = t1-t0;
945 uint64_t emptyTime = (t2-t1)*100;
946 if ( (timeInObjC > emptyTime) && (timingInfo != NULL) ) {
947 timingInfo->addTime(image->getShortName(), timeInObjC);
948 }
949 }
950 // mach message csdlc about dynamically unloaded images
951 if ( image->addFuncNotified() && (state == dyld_image_state_terminated) ) {
952 notifyKernel(*image, false);
953 const struct mach_header* loadAddress[] = { image->machHeader() };
954 const char* loadPath[] = { image->getPath() };
955 notifyMonitoringDyld(true, 1, loadAddress, loadPath);
956 }
957 }
958
959
960 //
961 // Normally, dyld_all_image_infos is only updated in batches after an entire
962 // graph is loaded. But if there is an error loading the initial set of
963 // dylibs needed by the main executable, dyld_all_image_infos is not yet set
964 // up, leading to usually brief crash logs.
965 //
966 // This function manually adds the images loaded so far to dyld::gProcessInfo.
967 // It should only be called before terminating.
968 //
969 void syncAllImages()
970 {
971 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); ++it) {
972 dyld_image_info info;
973 ImageLoader* image = *it;
974 info.imageLoadAddress = image->machHeader();
975 info.imageFilePath = image->getRealPath();
976 info.imageFileModDate = image->lastModified();
977 // add to all_image_infos if not already there
978 bool found = false;
979 int existingCount = dyld::gProcessInfo->infoArrayCount;
980 const dyld_image_info* existing = dyld::gProcessInfo->infoArray;
981 if ( existing != NULL ) {
982 for (int i=0; i < existingCount; ++i) {
983 if ( existing[i].imageLoadAddress == info.imageLoadAddress ) {
984 //dyld::log("not adding %s\n", info.imageFilePath);
985 found = true;
986 break;
987 }
988 }
989 }
990 if ( ! found ) {
991 //dyld::log("adding %s\n", info.imageFilePath);
992 addImagesToAllImages(1, &info);
993 }
994 }
995 }
996
997
998 static int imageSorter(const void* l, const void* r)
999 {
1000 const ImageLoader* left = *((ImageLoader**)l);
1001 const ImageLoader* right= *((ImageLoader**)r);
1002 return left->compare(right);
1003 }
1004
1005 static void notifyBatchPartial(dyld_image_states state, bool orLater, dyld_image_state_change_handler onlyHandler, bool preflightOnly, bool onlyObjCMappedNotification)
1006 {
1007 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(state, sBatchHandlers);
1008 if ( (handlers != NULL) || ((state == dyld_image_state_bound) && (sNotifyObjCMapped != NULL)) ) {
1009 // don't use a vector because it will use malloc/free and we want notifcation to be low cost
1010 allImagesLock();
1011 dyld_image_info infos[allImagesCount()+1];
1012 ImageLoader* images[allImagesCount()+1];
1013 ImageLoader** end = images;
1014 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
1015 dyld_image_states imageState = (*it)->getState();
1016 if ( (imageState == state) || (orLater && (imageState > state)) )
1017 *end++ = *it;
1018 }
1019 if ( sBundleBeingLoaded != NULL ) {
1020 dyld_image_states imageState = sBundleBeingLoaded->getState();
1021 if ( (imageState == state) || (orLater && (imageState > state)) )
1022 *end++ = sBundleBeingLoaded;
1023 }
1024 const char* dontLoadReason = NULL;
1025 uint32_t imageCount = (uint32_t)(end-images);
1026 if ( imageCount != 0 ) {
1027 // sort bottom up
1028 qsort(images, imageCount, sizeof(ImageLoader*), &imageSorter);
1029
1030 const mach_header* mhs[imageCount];
1031 const char* paths[imageCount];
1032 uint32_t bulkNotifyImageCount = 0;
1033
1034 // build info array
1035 for (unsigned int i=0; i < imageCount; ++i) {
1036 dyld_image_info* p = &infos[i];
1037 ImageLoader* image = images[i];
1038 //dyld::log(" state=%d, name=%s\n", state, image->getPath());
1039 p->imageLoadAddress = image->machHeader();
1040 p->imageFilePath = image->getRealPath();
1041 p->imageFileModDate = image->lastModified();
1042 // get these registered with the kernel as early as possible
1043 if ( state == dyld_image_state_dependents_mapped)
1044 notifyKernel(*image, true);
1045 // special case for add_image hook
1046 if ( state == dyld_image_state_bound ) {
1047 if ( notifyAddImageCallbacks(image) ) {
1048 // Add this to the list of images to bulk notify
1049 mhs[bulkNotifyImageCount] = infos[i].imageLoadAddress;
1050 paths[bulkNotifyImageCount] = infos[i].imageFilePath;
1051 ++bulkNotifyImageCount;
1052 }
1053 }
1054 }
1055
1056 if ( (state == dyld_image_state_bound) && !sAddBulkLoadImageCallbacks.empty() && (bulkNotifyImageCount != 0) ) {
1057 for (LoadImageBulkCallback func : sAddBulkLoadImageCallbacks) {
1058 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)mhs[0], (uint64_t)func, 0);
1059 (*func)(bulkNotifyImageCount, mhs, paths);
1060 }
1061 }
1062 }
1063 #if SUPPORT_ACCELERATE_TABLES
1064 if ( sAllCacheImagesProxy != NULL ) {
1065 unsigned cacheCount = sAllCacheImagesProxy->appendImagesToNotify(state, orLater, &infos[imageCount]);
1066 // support _dyld_register_func_for_add_image()
1067 if ( state == dyld_image_state_bound ) {
1068 for (ImageCallback callback : sAddImageCallbacks) {
1069 for (unsigned i=0; i < cacheCount; ++i) {
1070 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)infos[imageCount+i].imageLoadAddress, (uint64_t)(*callback), 0);
1071 (*callback)(infos[imageCount+i].imageLoadAddress, sSharedCacheLoadInfo.slide);
1072 }
1073 }
1074 for (LoadImageCallback func : sAddLoadImageCallbacks) {
1075 for (unsigned i=0; i < cacheCount; ++i) {
1076 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)infos[imageCount+i].imageLoadAddress, (uint64_t)(*func), 0);
1077 (*func)(infos[imageCount+i].imageLoadAddress, infos[imageCount+i].imageFilePath, false);
1078 }
1079 }
1080 if ( !sAddBulkLoadImageCallbacks.empty() ) {
1081 const mach_header* bulk_mhs[cacheCount];
1082 const char* bulk_paths[cacheCount];
1083 for (int i=0; i < cacheCount; ++i) {
1084 bulk_mhs[i] = infos[imageCount+i].imageLoadAddress;
1085 bulk_paths[i] = infos[imageCount+i].imageFilePath;
1086 }
1087 for (LoadImageBulkCallback func : sAddBulkLoadImageCallbacks) {
1088 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)bulk_mhs[0], (uint64_t)func, 0);
1089 (*func)(cacheCount, bulk_mhs, bulk_paths);
1090 }
1091 }
1092 }
1093 imageCount += cacheCount;
1094 }
1095 #endif
1096 if ( imageCount != 0 ) {
1097 if ( !onlyObjCMappedNotification ) {
1098 if ( onlyHandler != NULL ) {
1099 const char* result = NULL;
1100 if ( result == NULL ) {
1101 result = (*onlyHandler)(state, imageCount, infos);
1102 }
1103 if ( (result != NULL) && (state == dyld_image_state_dependents_mapped) ) {
1104 //fprintf(stderr, " images rejected by handler=%p\n", onlyHandler);
1105 // make copy of thrown string so that later catch clauses can free it
1106 dontLoadReason = strdup(result);
1107 }
1108 }
1109 else {
1110 // call each handler with whole array
1111 if ( handlers != NULL ) {
1112 for (std::vector<dyld_image_state_change_handler>::iterator it = handlers->begin(); it != handlers->end(); ++it) {
1113 const char* result = (*it)(state, imageCount, infos);
1114 if ( (result != NULL) && (state == dyld_image_state_dependents_mapped) ) {
1115 //fprintf(stderr, " images rejected by handler=%p\n", *it);
1116 // make copy of thrown string so that later catch clauses can free it
1117 dontLoadReason = strdup(result);
1118 break;
1119 }
1120 }
1121 }
1122 }
1123 }
1124 // tell objc about new images
1125 if ( (onlyHandler == NULL) && ((state == dyld_image_state_bound) || (orLater && (dyld_image_state_bound > state))) && (sNotifyObjCMapped != NULL) ) {
1126 const char* paths[imageCount];
1127 const mach_header* mhs[imageCount];
1128 unsigned objcImageCount = 0;
1129 for (int i=0; i < imageCount; ++i) {
1130 ImageLoader* image = findImageByMachHeader(infos[i].imageLoadAddress);
1131 bool hasObjC = false;
1132 if ( image != NULL ) {
1133 if ( image->objCMappedNotified() )
1134 continue;
1135 hasObjC = image->notifyObjC();
1136 }
1137 #if SUPPORT_ACCELERATE_TABLES
1138 else if ( sAllCacheImagesProxy != NULL ) {
1139 const mach_header* mh;
1140 const char* path;
1141 unsigned index;
1142 if ( sAllCacheImagesProxy->addressInCache(infos[i].imageLoadAddress, &mh, &path, &index) ) {
1143 hasObjC = (mh->flags & MH_HAS_OBJC);
1144 }
1145 }
1146 #endif
1147 if ( hasObjC ) {
1148 paths[objcImageCount] = infos[i].imageFilePath;
1149 mhs[objcImageCount] = infos[i].imageLoadAddress;
1150 ++objcImageCount;
1151 if ( image != NULL )
1152 image->setObjCMappedNotified();
1153 }
1154 }
1155 if ( objcImageCount != 0 ) {
1156 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_OBJC_MAP, 0, 0, 0);
1157 uint64_t t0 = mach_absolute_time();
1158 (*sNotifyObjCMapped)(objcImageCount, paths, mhs);
1159 uint64_t t1 = mach_absolute_time();
1160 ImageLoader::fgTotalObjCSetupTime += (t1-t0);
1161 }
1162 }
1163 }
1164 allImagesUnlock();
1165 if ( dontLoadReason != NULL )
1166 throw dontLoadReason;
1167 if ( !preflightOnly && (state == dyld_image_state_dependents_mapped) ) {
1168 const struct mach_header* loadAddresses[imageCount];
1169 const char* loadPaths[imageCount];
1170 for(uint32_t i = 0; i<imageCount; ++i) {
1171 loadAddresses[i] = infos[i].imageLoadAddress;
1172 loadPaths[i] = infos[i].imageFilePath;
1173 }
1174 notifyMonitoringDyld(false, imageCount, loadAddresses, loadPaths);
1175 }
1176 }
1177 }
1178
1179 static void notifyBatch(dyld_image_states state, bool preflightOnly)
1180 {
1181 notifyBatchPartial(state, false, NULL, preflightOnly, false);
1182 }
1183
1184 #if __MAC_OS_X_VERSION_MIN_REQUIRED
1185 static
1186 void coresymbolication_load_notifier(void* connection, uint64_t timestamp, const char* path, const struct mach_header* mh)
1187 {
1188 const struct mach_header* loadAddress[] = { mh };
1189 const char* loadPath[] = { path };
1190 notifyMonitoringDyld(false, 1, loadAddress, loadPath);
1191 }
1192
1193 static
1194 void coresymbolication_unload_notifier(void* connection, uint64_t timestamp, const char* path, const struct mach_header* mh)
1195 {
1196 const struct mach_header* loadAddress = { mh };
1197 const char* loadPath = { path };
1198 notifyMonitoringDyld(true, 1, &loadAddress, &loadPath);
1199 }
1200
1201 static
1202 kern_return_t legacy_task_register_dyld_image_infos(task_t task, dyld_kernel_image_info_array_t dyld_images,
1203 mach_msg_type_number_t dyld_imagesCnt)
1204 {
1205 return KERN_SUCCESS;
1206 }
1207
1208 static
1209 kern_return_t legacy_task_unregister_dyld_image_infos(task_t task, dyld_kernel_image_info_array_t dyld_images,
1210 mach_msg_type_number_t dyld_imagesCnt)
1211 {
1212 return KERN_SUCCESS;
1213 }
1214
1215 static
1216 kern_return_t legacy_task_get_dyld_image_infos(task_inspect_t task, dyld_kernel_image_info_array_t *dyld_images,
1217 mach_msg_type_number_t *dyld_imagesCnt)
1218 {
1219 return KERN_SUCCESS;
1220 }
1221
1222 static
1223 kern_return_t legacy_task_register_dyld_shared_cache_image_info(task_t task, dyld_kernel_image_info_t dyld_cache_image,
1224 boolean_t no_cache, boolean_t private_cache)
1225 {
1226 return KERN_SUCCESS;
1227 }
1228
1229 static
1230 kern_return_t legacy_task_register_dyld_set_dyld_state(task_t task, uint8_t dyld_state)
1231 {
1232 return KERN_SUCCESS;
1233 }
1234
1235 static
1236 kern_return_t legacy_task_register_dyld_get_process_state(task_t task, dyld_kernel_process_info_t *dyld_process_state)
1237 {
1238 return KERN_SUCCESS;
1239 }
1240 #endif
1241
1242 // In order for register_func_for_add_image() callbacks to to be called bottom up,
1243 // we need to maintain a list of root images. The main executable is usally the
1244 // first root. Any images dynamically added are also roots (unless already loaded).
1245 // If DYLD_INSERT_LIBRARIES is used, those libraries are first.
1246 static void addRootImage(ImageLoader* image)
1247 {
1248 //dyld::log("addRootImage(%p, %s)\n", image, image->getPath());
1249 // add to list of roots
1250 sImageRoots.push_back(image);
1251 }
1252
1253
1254 static void clearAllDepths()
1255 {
1256 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++)
1257 (*it)->clearDepth();
1258 }
1259
1260 static void printAllDepths()
1261 {
1262 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++)
1263 dyld::log("%03d %s\n", (*it)->getDepth(), (*it)->getShortName());
1264 }
1265
1266
1267 static unsigned int imageCount()
1268 {
1269 allImagesLock();
1270 unsigned int result = (unsigned int)sAllImages.size();
1271 allImagesUnlock();
1272 return (result);
1273 }
1274
1275
1276 static void setNewProgramVars(const ProgramVars& newVars)
1277 {
1278 // make a copy of the pointers to program variables
1279 gLinkContext.programVars = newVars;
1280
1281 // now set each program global to their initial value
1282 *gLinkContext.programVars.NXArgcPtr = gLinkContext.argc;
1283 *gLinkContext.programVars.NXArgvPtr = gLinkContext.argv;
1284 *gLinkContext.programVars.environPtr = gLinkContext.envp;
1285 *gLinkContext.programVars.__prognamePtr = gLinkContext.progname;
1286 }
1287
1288 #if SUPPORT_OLD_CRT_INITIALIZATION
1289 static void setRunInitialzersOldWay()
1290 {
1291 gRunInitializersOldWay = true;
1292 }
1293 #endif
1294
1295 static bool sandboxBlocked(const char* path, const char* kind)
1296 {
1297 #if TARGET_OS_SIMULATOR
1298 // sandbox calls not yet supported in simulator runtime
1299 return false;
1300 #else
1301 sandbox_filter_type filter = (sandbox_filter_type)(SANDBOX_FILTER_PATH | SANDBOX_CHECK_NO_REPORT);
1302 return ( sandbox_check(getpid(), kind, filter, path) > 0 );
1303 #endif
1304 }
1305
1306 bool sandboxBlockedMmap(const char* path)
1307 {
1308 return sandboxBlocked(path, "file-map-executable");
1309 }
1310
1311 bool sandboxBlockedOpen(const char* path)
1312 {
1313 return sandboxBlocked(path, "file-read-data");
1314 }
1315
1316 bool sandboxBlockedStat(const char* path)
1317 {
1318 return sandboxBlocked(path, "file-read-metadata");
1319 }
1320
1321
1322 static void addDynamicReference(ImageLoader* from, ImageLoader* to) {
1323 // don't add dynamic reference if target is in the shared cache (since it can't be unloaded)
1324 if ( to->inSharedCache() )
1325 return;
1326
1327 // don't add dynamic reference if there already is a static one
1328 if ( from->dependsOn(to) )
1329 return;
1330
1331 #pragma clang diagnostic push
1332 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
1333 // don't add if this combination already exists
1334 OSSpinLockLock(&sDynamicReferencesLock);
1335 for (std::vector<ImageLoader::DynamicReference>::iterator it=sDynamicReferences.begin(); it != sDynamicReferences.end(); ++it) {
1336 if ( (it->from == from) && (it->to == to) ) {
1337 OSSpinLockUnlock(&sDynamicReferencesLock);
1338 return;
1339 }
1340 }
1341
1342 //dyld::log("addDynamicReference(%s, %s\n", from->getShortName(), to->getShortName());
1343 ImageLoader::DynamicReference t;
1344 t.from = from;
1345 t.to = to;
1346 sDynamicReferences.push_back(t);
1347 OSSpinLockUnlock(&sDynamicReferencesLock);
1348 #pragma clang diagnostic pop
1349 }
1350
1351 static void addImage(ImageLoader* image)
1352 {
1353 // add to master list
1354 allImagesLock();
1355 sAllImages.push_back(image);
1356 allImagesUnlock();
1357
1358 // update mapped ranges
1359 uintptr_t lastSegStart = 0;
1360 uintptr_t lastSegEnd = 0;
1361 for(unsigned int i=0, e=image->segmentCount(); i < e; ++i) {
1362 if ( image->segUnaccessible(i) )
1363 continue;
1364 uintptr_t start = image->segActualLoadAddress(i);
1365 uintptr_t end = image->segActualEndAddress(i);
1366 if ( start == lastSegEnd ) {
1367 // two segments are contiguous, just record combined segments
1368 lastSegEnd = end;
1369 }
1370 else {
1371 // non-contiguous segments, record last (if any)
1372 if ( lastSegEnd != 0 )
1373 addMappedRange(image, lastSegStart, lastSegEnd);
1374 lastSegStart = start;
1375 lastSegEnd = end;
1376 }
1377 }
1378 if ( lastSegEnd != 0 )
1379 addMappedRange(image, lastSegStart, lastSegEnd);
1380
1381
1382 if ( gLinkContext.verboseLoading || (sEnv.DYLD_PRINT_LIBRARIES_POST_LAUNCH && (sMainExecutable!=NULL) && sMainExecutable->isLinked()) ) {
1383 const char *imagePath = image->getPath();
1384 uuid_t imageUUID;
1385 if ( image->getUUID(imageUUID) ) {
1386 uuid_string_t imageUUIDStr;
1387 uuid_unparse_upper(imageUUID, imageUUIDStr);
1388 dyld::log("dyld: loaded: <%s> %s\n", imageUUIDStr, imagePath);
1389 }
1390 else {
1391 dyld::log("dyld: loaded: %s\n", imagePath);
1392 }
1393 }
1394
1395 }
1396
1397 //
1398 // Helper for std::remove_if
1399 //
1400 class RefUsesImage {
1401 public:
1402 RefUsesImage(ImageLoader* image) : _image(image) {}
1403 bool operator()(const ImageLoader::DynamicReference& ref) const {
1404 return ( (ref.from == _image) || (ref.to == _image) );
1405 }
1406 private:
1407 ImageLoader* _image;
1408 };
1409
1410
1411
1412 void removeImage(ImageLoader* image)
1413 {
1414 // if has dtrace DOF section, tell dtrace it is going away, then remove from sImageFilesNeedingDOFUnregistration
1415 for (std::vector<RegisteredDOF>::iterator it=sImageFilesNeedingDOFUnregistration.begin(); it != sImageFilesNeedingDOFUnregistration.end(); ) {
1416 if ( it->mh == image->machHeader() ) {
1417 unregisterDOF(it->registrationID);
1418 sImageFilesNeedingDOFUnregistration.erase(it);
1419 // don't increment iterator, the erase caused next element to be copied to where this iterator points
1420 }
1421 else {
1422 ++it;
1423 }
1424 }
1425
1426 // tell all registered remove image handlers about this
1427 // do this before removing image from internal data structures so that the callback can query dyld about the image
1428 if ( image->getState() >= dyld_image_state_bound ) {
1429 sRemoveImageCallbacksInUse = true; // This only runs inside dyld's global lock, so ok to use a global for the in-use flag.
1430 for (std::vector<ImageCallback>::iterator it=sRemoveImageCallbacks.begin(); it != sRemoveImageCallbacks.end(); it++) {
1431 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_REMOVE_IMAGE, (uint64_t)image->machHeader(), (uint64_t)(*it), 0);
1432 (*it)(image->machHeader(), image->getSlide());
1433 }
1434 sRemoveImageCallbacksInUse = false;
1435
1436 if ( sNotifyObjCUnmapped != NULL && image->notifyObjC() )
1437 (*sNotifyObjCUnmapped)(image->getRealPath(), image->machHeader());
1438 }
1439
1440 // notify
1441 notifySingle(dyld_image_state_terminated, image, NULL);
1442
1443 // remove from mapped images table
1444 removedMappedRanges(image);
1445
1446 // remove from master list
1447 allImagesLock();
1448 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
1449 if ( *it == image ) {
1450 sAllImages.erase(it);
1451 break;
1452 }
1453 }
1454 allImagesUnlock();
1455
1456 #pragma clang diagnostic push
1457 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
1458 // remove from sDynamicReferences
1459 OSSpinLockLock(&sDynamicReferencesLock);
1460 sDynamicReferences.erase(std::remove_if(sDynamicReferences.begin(), sDynamicReferences.end(), RefUsesImage(image)), sDynamicReferences.end());
1461 OSSpinLockUnlock(&sDynamicReferencesLock);
1462 #pragma clang diagnostic pop
1463
1464 // flush find-by-address cache (do this after removed from master list, so there is no chance it can come back)
1465 if ( sLastImageByAddressCache == image )
1466 sLastImageByAddressCache = NULL;
1467
1468 // if in root list, pull it out
1469 for (std::vector<ImageLoader*>::iterator it=sImageRoots.begin(); it != sImageRoots.end(); it++) {
1470 if ( *it == image ) {
1471 sImageRoots.erase(it);
1472 break;
1473 }
1474 }
1475
1476 // If this image is the potential canonical definition of any weak defs, then set them to a tombstone value
1477 if ( gLinkContext.weakDefMapInitialized && image->hasCoalescedExports() ) {
1478 Diagnostics diag;
1479 const dyld3::MachOAnalyzer* ma = (const dyld3::MachOAnalyzer*)image->machHeader();
1480 ma->forEachWeakDef(diag, ^(const char *symbolName, uintptr_t imageOffset, bool isFromExportTrie) {
1481 auto it = gLinkContext.weakDefMap.find(symbolName);
1482 assert(it != gLinkContext.weakDefMap.end());
1483 it->second = { nullptr, 0 };
1484 if ( !isFromExportTrie ) {
1485 // The string was already duplicated if we are an export trie
1486 // so only strdup as we are the nlist
1487 size_t hash1 = ImageLoader::HashCString::hash(it->first);
1488 it->first = strdup(it->first);
1489 size_t hash2 = ImageLoader::HashCString::hash(it->first);
1490 assert(hash1 == hash2);
1491 }
1492 });
1493 }
1494
1495 // log if requested
1496 if ( gLinkContext.verboseLoading || (sEnv.DYLD_PRINT_LIBRARIES_POST_LAUNCH && (sMainExecutable!=NULL) && sMainExecutable->isLinked()) ) {
1497 const char *imagePath = image->getPath();
1498 uuid_t imageUUID;
1499 if ( image->getUUID(imageUUID) ) {
1500 uuid_string_t imageUUIDStr;
1501 uuid_unparse_upper(imageUUID, imageUUIDStr);
1502 dyld::log("dyld: unloaded: <%s> %s\n", imageUUIDStr, imagePath);
1503 }
1504 else {
1505 dyld::log("dyld: unloaded: %s\n", imagePath);
1506 }
1507 }
1508
1509 // tell gdb, new way
1510 removeImageFromAllImages(image->machHeader());
1511 }
1512
1513
1514 void runImageStaticTerminators(ImageLoader* image)
1515 {
1516 // if in termination list, pull it out and run terminator
1517 bool mightBeMore;
1518 do {
1519 mightBeMore = false;
1520 for (std::vector<ImageLoader*>::iterator it=sImageFilesNeedingTermination.begin(); it != sImageFilesNeedingTermination.end(); it++) {
1521 if ( *it == image ) {
1522 sImageFilesNeedingTermination.erase(it);
1523 if (gLogAPIs) dyld::log("dlclose(), running static terminators for %p %s\n", image, image->getShortName());
1524 image->doTermination(gLinkContext);
1525 mightBeMore = true;
1526 break;
1527 }
1528 }
1529 } while ( mightBeMore );
1530 }
1531
1532 static void terminationRecorder(ImageLoader* image)
1533 {
1534 sImageFilesNeedingTermination.push_back(image);
1535 }
1536
1537 const char* getExecutablePath()
1538 {
1539 return sExecPath;
1540 }
1541
1542 static void runAllStaticTerminators(void* extra)
1543 {
1544 try {
1545 const size_t imageCount = sImageFilesNeedingTermination.size();
1546 for(size_t i=imageCount; i > 0; --i){
1547 ImageLoader* image = sImageFilesNeedingTermination[i-1];
1548 image->doTermination(gLinkContext);
1549 }
1550 sImageFilesNeedingTermination.clear();
1551 notifyBatch(dyld_image_state_terminated, false);
1552 }
1553 catch (const char* msg) {
1554 halt(msg);
1555 }
1556 }
1557
1558 void initializeMainExecutable()
1559 {
1560 // record that we've reached this step
1561 gLinkContext.startedInitializingMainExecutable = true;
1562
1563 // run initialzers for any inserted dylibs
1564 ImageLoader::InitializerTimingList initializerTimes[allImagesCount()];
1565 initializerTimes[0].count = 0;
1566 const size_t rootCount = sImageRoots.size();
1567 if ( rootCount > 1 ) {
1568 for(size_t i=1; i < rootCount; ++i) {
1569 sImageRoots[i]->runInitializers(gLinkContext, initializerTimes[0]);
1570 }
1571 }
1572
1573 // run initializers for main executable and everything it brings up
1574 sMainExecutable->runInitializers(gLinkContext, initializerTimes[0]);
1575
1576 // register cxa_atexit() handler to run static terminators in all loaded images when this process exits
1577 if ( gLibSystemHelpers != NULL )
1578 (*gLibSystemHelpers->cxa_atexit)(&runAllStaticTerminators, NULL, NULL);
1579
1580 // dump info if requested
1581 if ( sEnv.DYLD_PRINT_STATISTICS )
1582 ImageLoader::printStatistics((unsigned int)allImagesCount(), initializerTimes[0]);
1583 if ( sEnv.DYLD_PRINT_STATISTICS_DETAILS )
1584 ImageLoaderMachO::printStatisticsDetails((unsigned int)allImagesCount(), initializerTimes[0]);
1585 }
1586
1587 bool mainExecutablePrebound()
1588 {
1589 return sMainExecutable->usablePrebinding(gLinkContext);
1590 }
1591
1592 ImageLoader* mainExecutable()
1593 {
1594 return sMainExecutable;
1595 }
1596
1597
1598
1599
1600 #if SUPPORT_VERSIONED_PATHS
1601
1602 // forward reference
1603 static bool getDylibVersionAndInstallname(const char* dylibPath, uint32_t* version, char* installName);
1604
1605
1606 //
1607 // Examines a dylib file and if its current_version is newer than the installed
1608 // dylib at its install_name, then add the dylib file to sDylibOverrides.
1609 //
1610 static void checkDylibOverride(const char* dylibFile)
1611 {
1612 //dyld::log("checkDylibOverride('%s')\n", dylibFile);
1613 uint32_t altVersion;
1614 char sysInstallName[PATH_MAX];
1615 if ( getDylibVersionAndInstallname(dylibFile, &altVersion, sysInstallName) && (sysInstallName[0] =='/') ) {
1616 //dyld::log("%s has version 0x%08X and install name %s\n", dylibFile, altVersion, sysInstallName);
1617 uint32_t sysVersion;
1618 if ( getDylibVersionAndInstallname(sysInstallName, &sysVersion, NULL) ) {
1619 //dyld::log("%s has version 0x%08X\n", sysInstallName, sysVersion);
1620 if ( altVersion > sysVersion ) {
1621 //dyld::log("override found: %s -> %s\n", sysInstallName, dylibFile);
1622 // see if there already is an override for this dylib
1623 bool entryExists = false;
1624 for (std::vector<DylibOverride>::iterator it = sDylibOverrides.begin(); it != sDylibOverrides.end(); ++it) {
1625 if ( strcmp(it->installName, sysInstallName) == 0 ) {
1626 entryExists = true;
1627 uint32_t prevVersion;
1628 if ( getDylibVersionAndInstallname(it->override, &prevVersion, NULL) ) {
1629 if ( altVersion > prevVersion ) {
1630 // found an even newer override
1631 free((void*)(it->override));
1632 char resolvedPath[PATH_MAX];
1633 if ( realpath(dylibFile, resolvedPath) != NULL )
1634 it->override = strdup(resolvedPath);
1635 else
1636 it->override = strdup(dylibFile);
1637 break;
1638 }
1639 }
1640 }
1641 }
1642 if ( ! entryExists ) {
1643 DylibOverride entry;
1644 entry.installName = strdup(sysInstallName);
1645 char resolvedPath[PATH_MAX];
1646 if ( realpath(dylibFile, resolvedPath) != NULL )
1647 entry.override = strdup(resolvedPath);
1648 else
1649 entry.override = strdup(dylibFile);
1650 sDylibOverrides.push_back(entry);
1651 //dyld::log("added override: %s -> %s\n", entry.installName, entry.override);
1652 }
1653 }
1654 }
1655 }
1656
1657 }
1658
1659 static void checkDylibOverridesInDir(const char* dirPath)
1660 {
1661 //dyld::log("checkDylibOverridesInDir('%s')\n", dirPath);
1662 char dylibPath[PATH_MAX];
1663 long dirPathLen = strlcpy(dylibPath, dirPath, PATH_MAX-1);
1664 if ( dirPathLen >= PATH_MAX )
1665 return;
1666 DIR* dirp = opendir(dirPath);
1667 if ( dirp != NULL) {
1668 dirent entry;
1669 dirent* entp = NULL;
1670 while ( readdir_r(dirp, &entry, &entp) == 0 ) {
1671 if ( entp == NULL )
1672 break;
1673 if ( entp->d_type != DT_REG )
1674 continue;
1675 dylibPath[dirPathLen] = '/';
1676 dylibPath[dirPathLen+1] = '\0';
1677 if ( strlcat(dylibPath, entp->d_name, PATH_MAX) >= PATH_MAX )
1678 continue;
1679 checkDylibOverride(dylibPath);
1680 }
1681 closedir(dirp);
1682 }
1683 }
1684
1685
1686 static void checkFrameworkOverridesInDir(const char* dirPath)
1687 {
1688 //dyld::log("checkFrameworkOverridesInDir('%s')\n", dirPath);
1689 char frameworkPath[PATH_MAX];
1690 long dirPathLen = strlcpy(frameworkPath, dirPath, PATH_MAX-1);
1691 if ( dirPathLen >= PATH_MAX )
1692 return;
1693 DIR* dirp = opendir(dirPath);
1694 if ( dirp != NULL) {
1695 dirent entry;
1696 dirent* entp = NULL;
1697 while ( readdir_r(dirp, &entry, &entp) == 0 ) {
1698 if ( entp == NULL )
1699 break;
1700 if ( entp->d_type != DT_DIR )
1701 continue;
1702 frameworkPath[dirPathLen] = '/';
1703 frameworkPath[dirPathLen+1] = '\0';
1704 int dirNameLen = (int)strlen(entp->d_name);
1705 if ( dirNameLen < 11 )
1706 continue;
1707 if ( strcmp(&entp->d_name[dirNameLen-10], ".framework") != 0 )
1708 continue;
1709 if ( strlcat(frameworkPath, entp->d_name, PATH_MAX) >= PATH_MAX )
1710 continue;
1711 if ( strlcat(frameworkPath, "/", PATH_MAX) >= PATH_MAX )
1712 continue;
1713 if ( strlcat(frameworkPath, entp->d_name, PATH_MAX) >= PATH_MAX )
1714 continue;
1715 frameworkPath[strlen(frameworkPath)-10] = '\0';
1716 checkDylibOverride(frameworkPath);
1717 }
1718 closedir(dirp);
1719 }
1720 }
1721 #endif // SUPPORT_VERSIONED_PATHS
1722
1723
1724 //
1725 // Turns a colon separated list of strings into a NULL terminated array
1726 // of string pointers. If mainExecutableDir param is not NULL,
1727 // substitutes @loader_path with main executable's dir.
1728 //
1729 static const char** parseColonList(const char* list, const char* mainExecutableDir)
1730 {
1731 static const char* sEmptyList[] = { NULL };
1732
1733 if ( list[0] == '\0' )
1734 return sEmptyList;
1735
1736 int colonCount = 0;
1737 for(const char* s=list; *s != '\0'; ++s) {
1738 if (*s == ':')
1739 ++colonCount;
1740 }
1741
1742 int index = 0;
1743 const char* start = list;
1744 char** result = new char*[colonCount+2];
1745 for(const char* s=list; *s != '\0'; ++s) {
1746 if (*s == ':') {
1747 size_t len = s-start;
1748 if ( (mainExecutableDir != NULL) && (strncmp(start, "@loader_path/", 13) == 0) ) {
1749 if ( !gLinkContext.allowAtPaths ) {
1750 dyld::log("dyld: warning: @loader_path/ ignored because of amfi policy (Codesign main executable with Library Validation to allow @ paths)\n");
1751 continue;
1752 }
1753 size_t mainExecDirLen = strlen(mainExecutableDir);
1754 char* str = new char[mainExecDirLen+len+1];
1755 strcpy(str, mainExecutableDir);
1756 strlcat(str, &start[13], mainExecDirLen+len+1);
1757 str[mainExecDirLen+len-13] = '\0';
1758 start = &s[1];
1759 result[index++] = str;
1760 }
1761 else if ( (mainExecutableDir != NULL) && (strncmp(start, "@executable_path/", 17) == 0) ) {
1762 if ( !gLinkContext.allowAtPaths ) {
1763 dyld::log("dyld: warning: @executable_path/ ignored because of amfi policy (Codesign main executable with Library Validation to allow @ paths)\n");
1764 continue;
1765 }
1766 size_t mainExecDirLen = strlen(mainExecutableDir);
1767 char* str = new char[mainExecDirLen+len+1];
1768 strcpy(str, mainExecutableDir);
1769 strlcat(str, &start[17], mainExecDirLen+len+1);
1770 str[mainExecDirLen+len-17] = '\0';
1771 start = &s[1];
1772 result[index++] = str;
1773 }
1774 else {
1775 char* str = new char[len+1];
1776 strncpy(str, start, len);
1777 str[len] = '\0';
1778 start = &s[1];
1779 result[index++] = str;
1780 }
1781 }
1782 }
1783 size_t len = strlen(start);
1784 if ( (mainExecutableDir != NULL) && (strncmp(start, "@loader_path/", 13) == 0) ) {
1785 if ( !gLinkContext.allowAtPaths ) {
1786 dyld::log("dyld: warning: @loader_path/ ignored because of amfi policy (Codesign main executable with Library Validation to allow @ paths)\n");
1787 }
1788 else
1789 {
1790 size_t mainExecDirLen = strlen(mainExecutableDir);
1791 char* str = new char[mainExecDirLen+len+1];
1792 strcpy(str, mainExecutableDir);
1793 strlcat(str, &start[13], mainExecDirLen+len+1);
1794 str[mainExecDirLen+len-13] = '\0';
1795 result[index++] = str;
1796 }
1797 }
1798 else if ( (mainExecutableDir != NULL) && (strncmp(start, "@executable_path/", 17) == 0) ) {
1799 if ( !gLinkContext.allowAtPaths ) {
1800 dyld::log("dyld: warning: @executable_path/ ignored because of amfi policy (Codesign main executable with Library Validation to allow @ paths)\n");
1801 }
1802 else
1803 {
1804 size_t mainExecDirLen = strlen(mainExecutableDir);
1805 char* str = new char[mainExecDirLen+len+1];
1806 strcpy(str, mainExecutableDir);
1807 strlcat(str, &start[17], mainExecDirLen+len+1);
1808 str[mainExecDirLen+len-17] = '\0';
1809 result[index++] = str;
1810 }
1811 }
1812 else {
1813 char* str = new char[len+1];
1814 strcpy(str, start);
1815 result[index++] = str;
1816 }
1817 result[index] = NULL;
1818
1819 //dyld::log("parseColonList(%s)\n", list);
1820 //for(int i=0; result[i] != NULL; ++i)
1821 // dyld::log(" %s\n", result[i]);
1822 return (const char**)result;
1823 }
1824
1825 static void appendParsedColonList(const char* list, const char* mainExecutableDir, const char* const ** storage)
1826 {
1827 const char** newlist = parseColonList(list, mainExecutableDir);
1828 if ( *storage == NULL ) {
1829 // first time, just set
1830 *storage = newlist;
1831 }
1832 else {
1833 // need to append to existing list
1834 const char* const* existing = *storage;
1835 int count = 0;
1836 for(int i=0; existing[i] != NULL; ++i)
1837 ++count;
1838 for(int i=0; newlist[i] != NULL; ++i)
1839 ++count;
1840 const char** combinedList = new const char*[count+2];
1841 int index = 0;
1842 for(int i=0; existing[i] != NULL; ++i)
1843 combinedList[index++] = existing[i];
1844 for(int i=0; newlist[i] != NULL; ++i)
1845 combinedList[index++] = newlist[i];
1846 combinedList[index] = NULL;
1847 delete[] newlist; // free array, note: strings in newList may be leaked
1848 *storage = combinedList;
1849 }
1850 }
1851
1852 #if __MAC_OS_X_VERSION_MIN_REQUIRED
1853 static void paths_expand_roots(const char **paths, const char *key, const char *val)
1854 {
1855 // assert(val != NULL);
1856 // assert(paths != NULL);
1857 if(NULL != key) {
1858 size_t keyLen = strlen(key);
1859 for(int i=0; paths[i] != NULL; ++i) {
1860 if ( strncmp(paths[i], key, keyLen) == 0 ) {
1861 char* newPath = new char[strlen(val) + (strlen(paths[i]) - keyLen) + 1];
1862 strcpy(newPath, val);
1863 strcat(newPath, &paths[i][keyLen]);
1864 paths[i] = newPath;
1865 }
1866 }
1867 }
1868 return;
1869 }
1870
1871 static void removePathWithPrefix(const char* paths[], const char* prefix)
1872 {
1873 size_t prefixLen = strlen(prefix);
1874 int skip = 0;
1875 int i;
1876 for(i = 0; paths[i] != NULL; ++i) {
1877 if ( strncmp(paths[i], prefix, prefixLen) == 0 )
1878 ++skip;
1879 else
1880 paths[i-skip] = paths[i];
1881 }
1882 paths[i-skip] = NULL;
1883 }
1884 #endif
1885
1886
1887 #if 0
1888 static void paths_dump(const char **paths)
1889 {
1890 // assert(paths != NULL);
1891 const char **strs = paths;
1892 while(*strs != NULL)
1893 {
1894 dyld::log("\"%s\"\n", *strs);
1895 strs++;
1896 }
1897 return;
1898 }
1899 #endif
1900
1901
1902
1903 static void printOptions(const char* argv[])
1904 {
1905 uint32_t i = 0;
1906 while ( NULL != argv[i] ) {
1907 dyld::log("opt[%i] = \"%s\"\n", i, argv[i]);
1908 i++;
1909 }
1910 }
1911
1912 static void printEnvironmentVariables(const char* envp[])
1913 {
1914 while ( NULL != *envp ) {
1915 dyld::log("%s\n", *envp);
1916 envp++;
1917 }
1918 }
1919
1920 void processDyldEnvironmentVariable(const char* key, const char* value, const char* mainExecutableDir)
1921 {
1922 if ( strcmp(key, "DYLD_FRAMEWORK_PATH") == 0 ) {
1923 appendParsedColonList(value, mainExecutableDir, &sEnv.DYLD_FRAMEWORK_PATH);
1924 sEnv.hasOverride = true;
1925 }
1926 else if ( strcmp(key, "DYLD_FALLBACK_FRAMEWORK_PATH") == 0 ) {
1927 appendParsedColonList(value, mainExecutableDir, &sEnv.DYLD_FALLBACK_FRAMEWORK_PATH);
1928 sEnv.hasOverride = true;
1929 }
1930 else if ( strcmp(key, "DYLD_LIBRARY_PATH") == 0 ) {
1931 appendParsedColonList(value, mainExecutableDir, &sEnv.DYLD_LIBRARY_PATH);
1932 sEnv.hasOverride = true;
1933 }
1934 else if ( strcmp(key, "DYLD_FALLBACK_LIBRARY_PATH") == 0 ) {
1935 appendParsedColonList(value, mainExecutableDir, &sEnv.DYLD_FALLBACK_LIBRARY_PATH);
1936 sEnv.hasOverride = true;
1937 }
1938 #if SUPPORT_ROOT_PATH
1939 else if ( (strcmp(key, "DYLD_ROOT_PATH") == 0) || (strcmp(key, "DYLD_PATHS_ROOT") == 0) ) {
1940 if ( strcmp(value, "/") != 0 ) {
1941 gLinkContext.rootPaths = parseColonList(value, mainExecutableDir);
1942 for (int i=0; gLinkContext.rootPaths[i] != NULL; ++i) {
1943 if ( gLinkContext.rootPaths[i][0] != '/' ) {
1944 dyld::warn("DYLD_ROOT_PATH not used because it contains a non-absolute path\n");
1945 gLinkContext.rootPaths = NULL;
1946 break;
1947 }
1948 }
1949 }
1950 sEnv.hasOverride = true;
1951 }
1952 #endif
1953 else if ( strcmp(key, "DYLD_IMAGE_SUFFIX") == 0 ) {
1954 gLinkContext.imageSuffix = parseColonList(value, NULL);
1955 sEnv.hasOverride = true;
1956 }
1957 else if ( strcmp(key, "DYLD_INSERT_LIBRARIES") == 0 ) {
1958 sEnv.DYLD_INSERT_LIBRARIES = parseColonList(value, NULL);
1959 #if SUPPORT_ACCELERATE_TABLES
1960 sDisableAcceleratorTables = true;
1961 #endif
1962 sEnv.hasOverride = true;
1963 }
1964 else if ( strcmp(key, "DYLD_PRINT_OPTS") == 0 ) {
1965 sEnv.DYLD_PRINT_OPTS = true;
1966 }
1967 else if ( strcmp(key, "DYLD_PRINT_ENV") == 0 ) {
1968 sEnv.DYLD_PRINT_ENV = true;
1969 }
1970 else if ( strcmp(key, "DYLD_DISABLE_DOFS") == 0 ) {
1971 sEnv.DYLD_DISABLE_DOFS = true;
1972 }
1973 else if ( strcmp(key, "DYLD_PRINT_LIBRARIES") == 0 ) {
1974 gLinkContext.verboseLoading = true;
1975 }
1976 else if ( strcmp(key, "DYLD_PRINT_LIBRARIES_POST_LAUNCH") == 0 ) {
1977 sEnv.DYLD_PRINT_LIBRARIES_POST_LAUNCH = true;
1978 }
1979 else if ( strcmp(key, "DYLD_BIND_AT_LAUNCH") == 0 ) {
1980 sEnv.DYLD_BIND_AT_LAUNCH = true;
1981 }
1982 else if ( strcmp(key, "DYLD_FORCE_FLAT_NAMESPACE") == 0 ) {
1983 gLinkContext.bindFlat = true;
1984 }
1985 else if ( strcmp(key, "DYLD_NEW_LOCAL_SHARED_REGIONS") == 0 ) {
1986 // ignore, no longer relevant but some scripts still set it
1987 }
1988 else if ( strcmp(key, "DYLD_NO_FIX_PREBINDING") == 0 ) {
1989 }
1990 else if ( strcmp(key, "DYLD_PREBIND_DEBUG") == 0 ) {
1991 gLinkContext.verbosePrebinding = true;
1992 }
1993 else if ( strcmp(key, "DYLD_PRINT_INITIALIZERS") == 0 ) {
1994 gLinkContext.verboseInit = true;
1995 }
1996 else if ( strcmp(key, "DYLD_PRINT_DOFS") == 0 ) {
1997 gLinkContext.verboseDOF = true;
1998 }
1999 else if ( strcmp(key, "DYLD_PRINT_STATISTICS") == 0 ) {
2000 sEnv.DYLD_PRINT_STATISTICS = true;
2001 #if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
2002 // <rdar://problem/26614838> DYLD_PRINT_STATISTICS no longer logs to xcode console for device apps
2003 sForceStderr = true;
2004 #endif
2005 }
2006 else if ( strcmp(key, "DYLD_PRINT_TO_STDERR") == 0 ) {
2007 #if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
2008 // <rdar://problem/26633440> DYLD_PRINT_STATISTICS no longer logs to xcode console for device apps
2009 sForceStderr = true;
2010 #endif
2011 }
2012 else if ( strcmp(key, "DYLD_PRINT_STATISTICS_DETAILS") == 0 ) {
2013 sEnv.DYLD_PRINT_STATISTICS_DETAILS = true;
2014 }
2015 else if ( strcmp(key, "DYLD_PRINT_SEGMENTS") == 0 ) {
2016 gLinkContext.verboseMapping = true;
2017 }
2018 else if ( strcmp(key, "DYLD_PRINT_BINDINGS") == 0 ) {
2019 gLinkContext.verboseBind = true;
2020 }
2021 else if ( strcmp(key, "DYLD_PRINT_WEAK_BINDINGS") == 0 ) {
2022 gLinkContext.verboseWeakBind = true;
2023 }
2024 else if ( strcmp(key, "DYLD_PRINT_REBASINGS") == 0 ) {
2025 gLinkContext.verboseRebase = true;
2026 }
2027 else if ( strcmp(key, "DYLD_PRINT_APIS") == 0 ) {
2028 gLogAPIs = true;
2029 }
2030 #if SUPPORT_ACCELERATE_TABLES
2031 else if ( strcmp(key, "DYLD_PRINT_APIS_APP") == 0 ) {
2032 gLogAppAPIs = true;
2033 }
2034 #endif
2035 else if ( strcmp(key, "DYLD_PRINT_WARNINGS") == 0 ) {
2036 gLinkContext.verboseWarnings = true;
2037 }
2038 else if ( strcmp(key, "DYLD_PRINT_RPATHS") == 0 ) {
2039 gLinkContext.verboseRPaths = true;
2040 }
2041 else if ( strcmp(key, "DYLD_PRINT_INTERPOSING") == 0 ) {
2042 gLinkContext.verboseInterposing = true;
2043 }
2044 else if ( strcmp(key, "DYLD_PRINT_CODE_SIGNATURES") == 0 ) {
2045 gLinkContext.verboseCodeSignatures = true;
2046 }
2047 else if ( (strcmp(key, "DYLD_SHARED_REGION") == 0) && gLinkContext.allowEnvVarsSharedCache ) {
2048 if ( strcmp(value, "private") == 0 ) {
2049 gLinkContext.sharedRegionMode = ImageLoader::kUsePrivateSharedRegion;
2050 }
2051 else if ( strcmp(value, "avoid") == 0 ) {
2052 gLinkContext.sharedRegionMode = ImageLoader::kDontUseSharedRegion;
2053 }
2054 else if ( strcmp(value, "use") == 0 ) {
2055 gLinkContext.sharedRegionMode = ImageLoader::kUseSharedRegion;
2056 }
2057 else if ( value[0] == '\0' ) {
2058 gLinkContext.sharedRegionMode = ImageLoader::kUseSharedRegion;
2059 }
2060 else {
2061 dyld::warn("unknown option to DYLD_SHARED_REGION. Valid options are: use, private, avoid\n");
2062 }
2063 }
2064 else if ( (strcmp(key, "DYLD_SHARED_CACHE_DIR") == 0) && gLinkContext.allowEnvVarsSharedCache ) {
2065 sSharedCacheOverrideDir = value;
2066 }
2067 else if ( strcmp(key, "DYLD_USE_CLOSURES") == 0 ) {
2068 // Handled elsewhere
2069 }
2070 else if ( strcmp(key, "DYLD_FORCE_INVALID_CACHE_CLOSURES") == 0 ) {
2071 if ( dyld3::internalInstall() ) {
2072 sForceInvalidSharedCacheClosureFormat = true;
2073 }
2074 }
2075 else if ( strcmp(key, "DYLD_IGNORE_PREBINDING") == 0 ) {
2076 if ( strcmp(value, "all") == 0 ) {
2077 gLinkContext.prebindUsage = ImageLoader::kUseNoPrebinding;
2078 }
2079 else if ( strcmp(value, "app") == 0 ) {
2080 gLinkContext.prebindUsage = ImageLoader::kUseAllButAppPredbinding;
2081 }
2082 else if ( strcmp(value, "nonsplit") == 0 ) {
2083 gLinkContext.prebindUsage = ImageLoader::kUseSplitSegPrebinding;
2084 }
2085 else if ( value[0] == '\0' ) {
2086 gLinkContext.prebindUsage = ImageLoader::kUseSplitSegPrebinding;
2087 }
2088 else {
2089 dyld::warn("unknown option to DYLD_IGNORE_PREBINDING. Valid options are: all, app, nonsplit\n");
2090 }
2091 }
2092 #if SUPPORT_VERSIONED_PATHS
2093 else if ( strcmp(key, "DYLD_VERSIONED_LIBRARY_PATH") == 0 ) {
2094 appendParsedColonList(value, mainExecutableDir, &sEnv.DYLD_VERSIONED_LIBRARY_PATH);
2095 #if SUPPORT_ACCELERATE_TABLES
2096 sDisableAcceleratorTables = true;
2097 #endif
2098 sEnv.hasOverride = true;
2099 }
2100 else if ( strcmp(key, "DYLD_VERSIONED_FRAMEWORK_PATH") == 0 ) {
2101 appendParsedColonList(value, mainExecutableDir, &sEnv.DYLD_VERSIONED_FRAMEWORK_PATH);
2102 #if SUPPORT_ACCELERATE_TABLES
2103 sDisableAcceleratorTables = true;
2104 #endif
2105 sEnv.hasOverride = true;
2106 }
2107 #endif
2108 #if !TARGET_OS_SIMULATOR
2109 else if ( (strcmp(key, "DYLD_PRINT_TO_FILE") == 0) && (mainExecutableDir == NULL) && gLinkContext.allowEnvVarsSharedCache ) {
2110 int fd = open(value, O_WRONLY | O_CREAT | O_APPEND, 0644);
2111 if ( fd != -1 ) {
2112 sLogfile = fd;
2113 sLogToFile = true;
2114 }
2115 else {
2116 dyld::log("dyld: could not open DYLD_PRINT_TO_FILE='%s', errno=%d\n", value, errno);
2117 }
2118 }
2119 else if ( (strcmp(key, "DYLD_SKIP_MAIN") == 0)) {
2120 if ( dyld3::internalInstall() )
2121 sSkipMain = true;
2122 }
2123 else if ( (strcmp(key, "DYLD_JUST_BUILD_CLOSURE") == 0) ) {
2124 // handled elsewhere
2125 }
2126 #endif
2127 else if (strcmp(key, "DYLD_FORCE_PLATFORM") == 0) {
2128 // handled elsewhere
2129 }
2130 else if (strcmp(key, "DYLD_AMFI_FAKE") == 0) {
2131 // handled elsewhere
2132 }
2133 else {
2134 dyld::warn("unknown environment variable: %s\n", key);
2135 }
2136 }
2137
2138
2139 #if SUPPORT_LC_DYLD_ENVIRONMENT
2140 static void checkLoadCommandEnvironmentVariables()
2141 {
2142 // <rdar://problem/8440934> Support augmenting dyld environment variables in load commands
2143 const uint32_t cmd_count = sMainExecutableMachHeader->ncmds;
2144 const struct load_command* const cmds = (struct load_command*)(((char*)sMainExecutableMachHeader)+sizeof(macho_header));
2145 const struct load_command* cmd = cmds;
2146 for (uint32_t i = 0; i < cmd_count; ++i) {
2147 switch (cmd->cmd) {
2148 case LC_DYLD_ENVIRONMENT:
2149 {
2150 const struct dylinker_command* envcmd = (struct dylinker_command*)cmd;
2151 const char* keyEqualsValue = (char*)envcmd + envcmd->name.offset;
2152 char mainExecutableDir[strlen(sExecPath)+2];
2153 strcpy(mainExecutableDir, sExecPath);
2154 char* lastSlash = strrchr(mainExecutableDir, '/');
2155 if ( lastSlash != NULL)
2156 lastSlash[1] = '\0';
2157 // only process variables that start with DYLD_ and end in _PATH
2158 if ( (strncmp(keyEqualsValue, "DYLD_", 5) == 0) ) {
2159 const char* equals = strchr(keyEqualsValue, '=');
2160 if ( equals != NULL ) {
2161 if ( strncmp(&equals[-5], "_PATH", 5) == 0 ) {
2162 const char* value = &equals[1];
2163 const size_t keyLen = equals-keyEqualsValue;
2164 // <rdar://problem/22799635> don't let malformed load command overflow stack
2165 if ( keyLen < 40 ) {
2166 char key[keyLen+1];
2167 strncpy(key, keyEqualsValue, keyLen);
2168 key[keyLen] = '\0';
2169 //dyld::log("processing: %s\n", keyEqualsValue);
2170 //dyld::log("mainExecutableDir: %s\n", mainExecutableDir);
2171 #if SUPPORT_ROOT_PATH
2172 if ( (strcmp(key, "DYLD_ROOT_PATH") == 0) || (strcmp(key, "DYLD_PATHS_ROOT") == 0) )
2173 continue;
2174 #endif
2175 processDyldEnvironmentVariable(key, value, mainExecutableDir);
2176 }
2177 }
2178 }
2179 }
2180 }
2181 break;
2182 }
2183 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
2184 }
2185 }
2186 #endif // SUPPORT_LC_DYLD_ENVIRONMENT
2187
2188
2189 static bool hasCodeSignatureLoadCommand(const macho_header* mh)
2190 {
2191 const uint32_t cmd_count = mh->ncmds;
2192 const struct load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
2193 const struct load_command* cmd = cmds;
2194 for (uint32_t i = 0; i < cmd_count; ++i) {
2195 if (cmd->cmd == LC_CODE_SIGNATURE)
2196 return true;
2197 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
2198 }
2199 return false;
2200 }
2201
2202
2203 #if SUPPORT_VERSIONED_PATHS
2204 static void checkVersionedPaths()
2205 {
2206 // search DYLD_VERSIONED_LIBRARY_PATH directories for dylibs and check if they are newer
2207 if ( sEnv.DYLD_VERSIONED_LIBRARY_PATH != NULL ) {
2208 for(const char* const* lp = sEnv.DYLD_VERSIONED_LIBRARY_PATH; *lp != NULL; ++lp) {
2209 checkDylibOverridesInDir(*lp);
2210 }
2211 }
2212
2213 // search DYLD_VERSIONED_FRAMEWORK_PATH directories for dylibs and check if they are newer
2214 if ( sEnv.DYLD_VERSIONED_FRAMEWORK_PATH != NULL ) {
2215 for(const char* const* fp = sEnv.DYLD_VERSIONED_FRAMEWORK_PATH; *fp != NULL; ++fp) {
2216 checkFrameworkOverridesInDir(*fp);
2217 }
2218 }
2219 }
2220 #endif
2221
2222
2223 #if __MAC_OS_X_VERSION_MIN_REQUIRED
2224 //
2225 // For security, setuid programs ignore DYLD_* environment variables.
2226 // Additionally, the DYLD_* enviroment variables are removed
2227 // from the environment, so that any child processes don't see them.
2228 //
2229 static void pruneEnvironmentVariables(const char* envp[], const char*** applep)
2230 {
2231 #if SUPPORT_LC_DYLD_ENVIRONMENT
2232 checkLoadCommandEnvironmentVariables();
2233 #endif
2234
2235 // Are we testing dyld on an internal config?
2236 if ( _simple_getenv(envp, "DYLD_SKIP_MAIN") != NULL ) {
2237 if ( dyld3::internalInstall() )
2238 sSkipMain = true;
2239 }
2240
2241 // delete all DYLD_* and LD_LIBRARY_PATH environment variables
2242 int removedCount = 0;
2243 const char** d = envp;
2244 for(const char** s = envp; *s != NULL; s++) {
2245
2246 if ( (strncmp(*s, "DYLD_", 5) != 0) && (strncmp(*s, "LD_LIBRARY_PATH=", 16) != 0) ) {
2247 *d++ = *s;
2248 }
2249 else {
2250 ++removedCount;
2251 }
2252 }
2253 *d++ = NULL;
2254 // slide apple parameters
2255 if ( removedCount > 0 ) {
2256 *applep = d;
2257 do {
2258 *d = d[removedCount];
2259 } while ( *d++ != NULL );
2260 for(int i=0; i < removedCount; ++i)
2261 *d++ = NULL;
2262 }
2263
2264 // disable framework and library fallback paths for setuid binaries rdar://problem/4589305
2265 sEnv.DYLD_FALLBACK_FRAMEWORK_PATH = NULL;
2266 sEnv.DYLD_FALLBACK_LIBRARY_PATH = NULL;
2267
2268 if ( removedCount > 0 )
2269 strlcat(sLoadingCrashMessage, ", ignoring DYLD_* env vars", sizeof(sLoadingCrashMessage));
2270 }
2271 #endif
2272
2273 static void defaultUninitializedFallbackPaths(const char* envp[])
2274 {
2275 #if __MAC_OS_X_VERSION_MIN_REQUIRED
2276 if ( !gLinkContext.allowClassicFallbackPaths ) {
2277 sEnv.DYLD_FALLBACK_FRAMEWORK_PATH = sRestrictedFrameworkFallbackPaths;
2278 sEnv.DYLD_FALLBACK_LIBRARY_PATH = sRestrictedLibraryFallbackPaths;
2279 return;
2280 }
2281
2282 // default value for DYLD_FALLBACK_FRAMEWORK_PATH, if not set in environment
2283 const char* home = _simple_getenv(envp, "HOME");;
2284 if ( sEnv.DYLD_FALLBACK_FRAMEWORK_PATH == NULL ) {
2285 const char** fpaths = sFrameworkFallbackPaths;
2286 if ( home == NULL )
2287 removePathWithPrefix(fpaths, "$HOME");
2288 else
2289 paths_expand_roots(fpaths, "$HOME", home);
2290 sEnv.DYLD_FALLBACK_FRAMEWORK_PATH = fpaths;
2291 }
2292
2293 // default value for DYLD_FALLBACK_LIBRARY_PATH, if not set in environment
2294 if ( sEnv.DYLD_FALLBACK_LIBRARY_PATH == NULL ) {
2295 const char** lpaths = sLibraryFallbackPaths;
2296 if ( home == NULL )
2297 removePathWithPrefix(lpaths, "$HOME");
2298 else
2299 paths_expand_roots(lpaths, "$HOME", home);
2300 sEnv.DYLD_FALLBACK_LIBRARY_PATH = lpaths;
2301 }
2302 #else
2303 if ( sEnv.DYLD_FALLBACK_FRAMEWORK_PATH == NULL )
2304 sEnv.DYLD_FALLBACK_FRAMEWORK_PATH = sFrameworkFallbackPaths;
2305
2306 if ( sEnv.DYLD_FALLBACK_LIBRARY_PATH == NULL )
2307 sEnv.DYLD_FALLBACK_LIBRARY_PATH = sLibraryFallbackPaths;
2308 #endif
2309 }
2310
2311
2312 static void checkEnvironmentVariables(const char* envp[])
2313 {
2314 if ( !gLinkContext.allowEnvVarsPath && !gLinkContext.allowEnvVarsPrint )
2315 return;
2316 const char** p;
2317 for(p = envp; *p != NULL; p++) {
2318 const char* keyEqualsValue = *p;
2319 if ( strncmp(keyEqualsValue, "DYLD_", 5) == 0 ) {
2320 const char* equals = strchr(keyEqualsValue, '=');
2321 if ( equals != NULL ) {
2322 strlcat(sLoadingCrashMessage, "\n", sizeof(sLoadingCrashMessage));
2323 strlcat(sLoadingCrashMessage, keyEqualsValue, sizeof(sLoadingCrashMessage));
2324 const char* value = &equals[1];
2325 const size_t keyLen = equals-keyEqualsValue;
2326 char key[keyLen+1];
2327 strncpy(key, keyEqualsValue, keyLen);
2328 key[keyLen] = '\0';
2329 if ( (strncmp(key, "DYLD_PRINT_", 11) == 0) && !gLinkContext.allowEnvVarsPrint )
2330 continue;
2331 processDyldEnvironmentVariable(key, value, NULL);
2332 }
2333 }
2334 else if ( strncmp(keyEqualsValue, "LD_LIBRARY_PATH=", 16) == 0 ) {
2335 const char* path = &keyEqualsValue[16];
2336 sEnv.LD_LIBRARY_PATH = parseColonList(path, NULL);
2337 }
2338 }
2339
2340 #if SUPPORT_LC_DYLD_ENVIRONMENT
2341 checkLoadCommandEnvironmentVariables();
2342 #endif // SUPPORT_LC_DYLD_ENVIRONMENT
2343
2344 #if SUPPORT_ROOT_PATH
2345 // <rdar://problem/11281064> DYLD_IMAGE_SUFFIX and DYLD_ROOT_PATH cannot be used together
2346 if ( (gLinkContext.imageSuffix != NULL && *gLinkContext.imageSuffix != NULL) && (gLinkContext.rootPaths != NULL) ) {
2347 dyld::warn("Ignoring DYLD_IMAGE_SUFFIX because DYLD_ROOT_PATH is used.\n");
2348 gLinkContext.imageSuffix = NULL; // this leaks allocations from parseColonList
2349 }
2350 #endif
2351 }
2352
2353 #if __x86_64__ && !TARGET_OS_SIMULATOR
2354 static bool isGCProgram(const macho_header* mh, uintptr_t slide)
2355 {
2356 const uint32_t cmd_count = mh->ncmds;
2357 const struct load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
2358 const struct load_command* cmd = cmds;
2359 for (uint32_t i = 0; i < cmd_count; ++i) {
2360 switch (cmd->cmd) {
2361 case LC_SEGMENT_COMMAND:
2362 {
2363 const struct macho_segment_command* seg = (struct macho_segment_command*)cmd;
2364 if (strcmp(seg->segname, "__DATA") == 0) {
2365 const struct macho_section* const sectionsStart = (struct macho_section*)((char*)seg + sizeof(struct macho_segment_command));
2366 const struct macho_section* const sectionsEnd = &sectionsStart[seg->nsects];
2367 for (const struct macho_section* sect=sectionsStart; sect < sectionsEnd; ++sect) {
2368 if (strncmp(sect->sectname, "__objc_imageinfo", 16) == 0) {
2369 const uint32_t* objcInfo = (uint32_t*)(sect->addr + slide);
2370 return (objcInfo[1] & 6); // 6 = (OBJC_IMAGE_SUPPORTS_GC | OBJC_IMAGE_REQUIRES_GC)
2371 }
2372 }
2373 }
2374 }
2375 break;
2376 }
2377 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
2378 }
2379 return false;
2380 }
2381 #endif
2382
2383 static void getHostInfo(const macho_header* mainExecutableMH, uintptr_t mainExecutableSlide)
2384 {
2385 #if CPU_SUBTYPES_SUPPORTED
2386 #if __ARM_ARCH_7K__
2387 sHostCPU = CPU_TYPE_ARM;
2388 sHostCPUsubtype = CPU_SUBTYPE_ARM_V7K;
2389 #elif __ARM_ARCH_7A__
2390 sHostCPU = CPU_TYPE_ARM;
2391 sHostCPUsubtype = CPU_SUBTYPE_ARM_V7;
2392 #elif __ARM_ARCH_6K__
2393 sHostCPU = CPU_TYPE_ARM;
2394 sHostCPUsubtype = CPU_SUBTYPE_ARM_V6;
2395 #elif __ARM_ARCH_7F__
2396 sHostCPU = CPU_TYPE_ARM;
2397 sHostCPUsubtype = CPU_SUBTYPE_ARM_V7F;
2398 #elif __ARM_ARCH_7S__
2399 sHostCPU = CPU_TYPE_ARM;
2400 sHostCPUsubtype = CPU_SUBTYPE_ARM_V7S;
2401 #elif __ARM64_ARCH_8_32__
2402 sHostCPU = CPU_TYPE_ARM64_32;
2403 sHostCPUsubtype = CPU_SUBTYPE_ARM64_32_V8;
2404 #elif __arm64e__
2405 sHostCPU = CPU_TYPE_ARM64;
2406 sHostCPUsubtype = CPU_SUBTYPE_ARM64E;
2407 #elif __arm64__
2408 sHostCPU = CPU_TYPE_ARM64;
2409 sHostCPUsubtype = CPU_SUBTYPE_ARM64_V8;
2410 #else
2411 struct host_basic_info info;
2412 mach_msg_type_number_t count = HOST_BASIC_INFO_COUNT;
2413 mach_port_t hostPort = mach_host_self();
2414 kern_return_t result = host_info(hostPort, HOST_BASIC_INFO, (host_info_t)&info, &count);
2415 if ( result != KERN_SUCCESS )
2416 throw "host_info() failed";
2417 sHostCPU = info.cpu_type;
2418 sHostCPUsubtype = info.cpu_subtype;
2419 mach_port_deallocate(mach_task_self(), hostPort);
2420 #if __x86_64__
2421 // host_info returns CPU_TYPE_I386 even for x86_64. Override that here so that
2422 // we don't need to mask the cpu type later.
2423 sHostCPU = CPU_TYPE_X86_64;
2424 #if !TARGET_OS_SIMULATOR
2425 sHaswell = (sHostCPUsubtype == CPU_SUBTYPE_X86_64_H);
2426 // <rdar://problem/18528074> x86_64h: Fall back to the x86_64 slice if an app requires GC.
2427 if ( sHaswell ) {
2428 if ( isGCProgram(mainExecutableMH, mainExecutableSlide) ) {
2429 // When running a GC program on a haswell machine, don't use and 'h slices
2430 sHostCPUsubtype = CPU_SUBTYPE_X86_64_ALL;
2431 sHaswell = false;
2432 gLinkContext.sharedRegionMode = ImageLoader::kDontUseSharedRegion;
2433 }
2434 }
2435 #endif
2436 #endif
2437 #endif
2438 #endif
2439 }
2440
2441 static void checkSharedRegionDisable(const dyld3::MachOLoaded* mainExecutableMH, uintptr_t mainExecutableSlide)
2442 {
2443 #if __MAC_OS_X_VERSION_MIN_REQUIRED
2444 // if main executable has segments that overlap the shared region,
2445 // then disable using the shared region
2446 if ( mainExecutableMH->intersectsRange(SHARED_REGION_BASE, SHARED_REGION_SIZE) ) {
2447 gLinkContext.sharedRegionMode = ImageLoader::kDontUseSharedRegion;
2448 if ( gLinkContext.verboseMapping )
2449 dyld::warn("disabling shared region because main executable overlaps\n");
2450 }
2451 #if __i386__
2452 if ( !gLinkContext.allowEnvVarsPath ) {
2453 // <rdar://problem/15280847> use private or no shared region for suid processes
2454 gLinkContext.sharedRegionMode = ImageLoader::kUsePrivateSharedRegion;
2455 }
2456 #endif
2457 #endif
2458 // iOS cannot run without shared region
2459 }
2460
2461 bool validImage(const ImageLoader* possibleImage)
2462 {
2463 const size_t imageCount = sAllImages.size();
2464 for(size_t i=0; i < imageCount; ++i) {
2465 if ( possibleImage == sAllImages[i] ) {
2466 return true;
2467 }
2468 }
2469 return false;
2470 }
2471
2472 uint32_t getImageCount()
2473 {
2474 return (uint32_t)sAllImages.size();
2475 }
2476
2477 ImageLoader* getIndexedImage(unsigned int index)
2478 {
2479 if ( index < sAllImages.size() )
2480 return sAllImages[index];
2481 return NULL;
2482 }
2483
2484 ImageLoader* findImageByMachHeader(const struct mach_header* target)
2485 {
2486 return findMappedRange((uintptr_t)target);
2487 }
2488
2489
2490 ImageLoader* findImageContainingAddress(const void* addr)
2491 {
2492 #if SUPPORT_ACCELERATE_TABLES
2493 if ( sAllCacheImagesProxy != NULL ) {
2494 const mach_header* mh;
2495 const char* path;
2496 unsigned index;
2497 if ( sAllCacheImagesProxy->addressInCache(addr, &mh, &path, &index) )
2498 return sAllCacheImagesProxy;
2499 }
2500 #endif
2501 return findMappedRange((uintptr_t)addr);
2502 }
2503
2504
2505 ImageLoader* findImageContainingSymbol(const void* symbol)
2506 {
2507 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
2508 ImageLoader* anImage = *it;
2509 if ( anImage->containsSymbol(symbol) )
2510 return anImage;
2511 }
2512 return NULL;
2513 }
2514
2515
2516
2517 void forEachImageDo( void (*callback)(ImageLoader*, void* userData), void* userData)
2518 {
2519 const size_t imageCount = sAllImages.size();
2520 for(size_t i=0; i < imageCount; ++i) {
2521 ImageLoader* anImage = sAllImages[i];
2522 (*callback)(anImage, userData);
2523 }
2524 }
2525
2526 ImageLoader* findLoadedImage(const struct stat& stat_buf)
2527 {
2528 const size_t imageCount = sAllImages.size();
2529 for(size_t i=0; i < imageCount; ++i){
2530 ImageLoader* anImage = sAllImages[i];
2531 if ( anImage->statMatch(stat_buf) )
2532 return anImage;
2533 }
2534 return NULL;
2535 }
2536
2537 // based on ANSI-C strstr()
2538 static const char* strrstr(const char* str, const char* sub)
2539 {
2540 const size_t sublen = strlen(sub);
2541 for(const char* p = &str[strlen(str)]; p != str; --p) {
2542 if ( strncmp(p, sub, sublen) == 0 )
2543 return p;
2544 }
2545 return NULL;
2546 }
2547
2548
2549 //
2550 // Find framework path
2551 //
2552 // /path/foo.framework/foo => foo.framework/foo
2553 // /path/foo.framework/Versions/A/foo => foo.framework/Versions/A/foo
2554 // /path/foo.framework/Frameworks/bar.framework/bar => bar.framework/bar
2555 // /path/foo.framework/Libraries/bar.dylb => NULL
2556 // /path/foo.framework/bar => NULL
2557 //
2558 // Returns NULL if not a framework path
2559 //
2560 static const char* getFrameworkPartialPath(const char* path)
2561 {
2562 const char* dirDot = strrstr(path, ".framework/");
2563 if ( dirDot != NULL ) {
2564 const char* dirStart = dirDot;
2565 for ( ; dirStart >= path; --dirStart) {
2566 if ( (*dirStart == '/') || (dirStart == path) ) {
2567 const char* frameworkStart = &dirStart[1];
2568 if ( dirStart == path )
2569 --frameworkStart;
2570 size_t len = dirDot - frameworkStart;
2571 char framework[len+1];
2572 strncpy(framework, frameworkStart, len);
2573 framework[len] = '\0';
2574 const char* leaf = strrchr(path, '/');
2575 if ( leaf != NULL ) {
2576 if ( strcmp(framework, &leaf[1]) == 0 ) {
2577 return frameworkStart;
2578 }
2579 if ( gLinkContext.imageSuffix != NULL ) {
2580 // some debug frameworks have install names that end in _debug
2581 if ( strncmp(framework, &leaf[1], len) == 0 ) {
2582 for (const char* const* suffix=gLinkContext.imageSuffix; *suffix != NULL; ++suffix) {
2583 if ( strcmp(*suffix, &leaf[len+1]) == 0 )
2584 return frameworkStart;
2585 }
2586 }
2587 }
2588 }
2589 }
2590 }
2591 }
2592 return NULL;
2593 }
2594
2595
2596 static const char* getLibraryLeafName(const char* path)
2597 {
2598 const char* start = strrchr(path, '/');
2599 if ( start != NULL )
2600 return &start[1];
2601 else
2602 return path;
2603 }
2604
2605
2606 // only for architectures that use cpu-sub-types
2607 #if CPU_SUBTYPES_SUPPORTED
2608
2609 const cpu_subtype_t CPU_SUBTYPE_END_OF_LIST = -1;
2610
2611
2612 //
2613 // A fat file may contain multiple sub-images for the same CPU type.
2614 // In that case, dyld picks which sub-image to use by scanning a table
2615 // of preferred cpu-sub-types for the running cpu.
2616 //
2617 // There is one row in the table for each cpu-sub-type on which dyld might run.
2618 // The first entry in a row is that cpu-sub-type. It is followed by all
2619 // cpu-sub-types that can run on that cpu, if preferred order. Each row ends with
2620 // a "SUBTYPE_ALL" (to denote that images written to run on any cpu-sub-type are usable),
2621 // followed by one or more CPU_SUBTYPE_END_OF_LIST to pad out this row.
2622 //
2623
2624
2625 #if __arm__
2626 //
2627 // ARM sub-type lists
2628 //
2629 const int kARM_RowCount = 8;
2630 static const cpu_subtype_t kARM[kARM_RowCount][9] = {
2631
2632 // armv7f can run: v7f, v7, v6, v5, and v4
2633 { CPU_SUBTYPE_ARM_V7F, CPU_SUBTYPE_ARM_V7, CPU_SUBTYPE_ARM_V6, CPU_SUBTYPE_ARM_V5TEJ, CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST },
2634
2635 // armv7k can run: v7k
2636 { CPU_SUBTYPE_ARM_V7K, CPU_SUBTYPE_END_OF_LIST },
2637
2638 // armv7s can run: v7s, v7, v7f, v7k, v6, v5, and v4
2639 { CPU_SUBTYPE_ARM_V7S, CPU_SUBTYPE_ARM_V7, CPU_SUBTYPE_ARM_V7F, CPU_SUBTYPE_ARM_V6, CPU_SUBTYPE_ARM_V5TEJ, CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST },
2640
2641 // armv7 can run: v7, v6, v5, and v4
2642 { CPU_SUBTYPE_ARM_V7, CPU_SUBTYPE_ARM_V6, CPU_SUBTYPE_ARM_V5TEJ, CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST },
2643
2644 // armv6 can run: v6, v5, and v4
2645 { CPU_SUBTYPE_ARM_V6, CPU_SUBTYPE_ARM_V5TEJ, CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST },
2646
2647 // xscale can run: xscale, v5, and v4
2648 { CPU_SUBTYPE_ARM_XSCALE, CPU_SUBTYPE_ARM_V5TEJ, CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST },
2649
2650 // armv5 can run: v5 and v4
2651 { CPU_SUBTYPE_ARM_V5TEJ, CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST },
2652
2653 // armv4 can run: v4
2654 { CPU_SUBTYPE_ARM_V4T, CPU_SUBTYPE_ARM_ALL, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST, CPU_SUBTYPE_END_OF_LIST },
2655 };
2656 #endif
2657
2658 #if __arm64__
2659 //
2660 // ARM64 sub-type lists
2661 //
2662 const int kARM64_RowCount = 2;
2663 static const cpu_subtype_t kARM64[kARM64_RowCount][4] = {
2664
2665 // armv64e can run: 64e, 64
2666 { CPU_SUBTYPE_ARM64E, CPU_SUBTYPE_ARM64_V8, CPU_SUBTYPE_ARM64_ALL, CPU_SUBTYPE_END_OF_LIST },
2667
2668 // armv64 can run: 64
2669 { CPU_SUBTYPE_ARM64_V8, CPU_SUBTYPE_ARM64_ALL, CPU_SUBTYPE_END_OF_LIST },
2670 };
2671
2672 #if __ARM64_ARCH_8_32__
2673 const int kARM64_32_RowCount = 2;
2674 static const cpu_subtype_t kARM64_32[kARM64_32_RowCount][4] = {
2675
2676 // armv64_32 can run: v8
2677 { CPU_SUBTYPE_ARM64_32_V8, CPU_SUBTYPE_END_OF_LIST },
2678
2679 // armv64 can run: 64
2680 { CPU_SUBTYPE_ARM64_V8, CPU_SUBTYPE_ARM64_ALL, CPU_SUBTYPE_END_OF_LIST },
2681 };
2682 #endif
2683
2684 #endif
2685
2686 #if __x86_64__
2687 //
2688 // x86_64 sub-type lists
2689 //
2690 const int kX86_64_RowCount = 2;
2691 static const cpu_subtype_t kX86_64[kX86_64_RowCount][5] = {
2692
2693 // x86_64h can run: x86_64h, x86_64h(lib), x86_64(lib), and x86_64
2694 { CPU_SUBTYPE_X86_64_H, (cpu_subtype_t)(CPU_SUBTYPE_LIB64|CPU_SUBTYPE_X86_64_H), (cpu_subtype_t)(CPU_SUBTYPE_LIB64|CPU_SUBTYPE_X86_64_ALL), CPU_SUBTYPE_X86_64_ALL, CPU_SUBTYPE_END_OF_LIST },
2695
2696 // x86_64 can run: x86_64(lib) and x86_64
2697 { CPU_SUBTYPE_X86_64_ALL, (cpu_subtype_t)(CPU_SUBTYPE_LIB64|CPU_SUBTYPE_X86_64_ALL), CPU_SUBTYPE_END_OF_LIST },
2698
2699 };
2700 #endif
2701
2702
2703 // scan the tables above to find the cpu-sub-type-list for this machine
2704 static const cpu_subtype_t* findCPUSubtypeList(cpu_type_t cpu, cpu_subtype_t subtype)
2705 {
2706 switch (cpu) {
2707 #if __arm__
2708 case CPU_TYPE_ARM:
2709 for (int i=0; i < kARM_RowCount ; ++i) {
2710 if ( kARM[i][0] == subtype )
2711 return kARM[i];
2712 }
2713 break;
2714 #endif
2715 #if __arm64__
2716 case CPU_TYPE_ARM64:
2717 for (int i=0; i < kARM64_RowCount ; ++i) {
2718 if ( kARM64[i][0] == subtype )
2719 return kARM64[i];
2720 }
2721 break;
2722
2723 #if __ARM64_ARCH_8_32__
2724 case CPU_TYPE_ARM64_32:
2725 for (int i=0; i < kARM64_32_RowCount ; ++i) {
2726 if ( kARM64_32[i][0] == subtype )
2727 return kARM64_32[i];
2728 }
2729 break;
2730 #endif
2731
2732 #endif
2733 #if __x86_64__
2734 case CPU_TYPE_X86_64:
2735 for (int i=0; i < kX86_64_RowCount ; ++i) {
2736 if ( kX86_64[i][0] == subtype )
2737 return kX86_64[i];
2738 }
2739 break;
2740 #endif
2741 }
2742 return NULL;
2743 }
2744
2745
2746
2747
2748 // scan fat table-of-contents for best most preferred subtype
2749 static bool fatFindBestFromOrderedList(cpu_type_t cpu, const cpu_subtype_t list[], const fat_header* fh, uint64_t* offset, uint64_t* len)
2750 {
2751 const fat_arch* const archs = (fat_arch*)(((char*)fh)+sizeof(fat_header));
2752 for (uint32_t subTypeIndex=0; list[subTypeIndex] != CPU_SUBTYPE_END_OF_LIST; ++subTypeIndex) {
2753 for(uint32_t fatIndex=0; fatIndex < OSSwapBigToHostInt32(fh->nfat_arch); ++fatIndex) {
2754 if ( ((cpu_type_t)OSSwapBigToHostInt32(archs[fatIndex].cputype) == cpu)
2755 && (list[subTypeIndex] == (cpu_subtype_t)OSSwapBigToHostInt32(archs[fatIndex].cpusubtype)) ) {
2756 *offset = OSSwapBigToHostInt32(archs[fatIndex].offset);
2757 *len = OSSwapBigToHostInt32(archs[fatIndex].size);
2758 return true;
2759 }
2760 }
2761 }
2762 return false;
2763 }
2764
2765 // scan fat table-of-contents for exact match of cpu and cpu-sub-type
2766 static bool fatFindExactMatch(cpu_type_t cpu, cpu_subtype_t subtype, const fat_header* fh, uint64_t* offset, uint64_t* len)
2767 {
2768 const fat_arch* archs = (fat_arch*)(((char*)fh)+sizeof(fat_header));
2769 for(uint32_t i=0; i < OSSwapBigToHostInt32(fh->nfat_arch); ++i) {
2770 if ( ((cpu_type_t)OSSwapBigToHostInt32(archs[i].cputype) == cpu)
2771 && ((cpu_subtype_t)OSSwapBigToHostInt32(archs[i].cpusubtype) == subtype) ) {
2772 *offset = OSSwapBigToHostInt32(archs[i].offset);
2773 *len = OSSwapBigToHostInt32(archs[i].size);
2774 return true;
2775 }
2776 }
2777 return false;
2778 }
2779
2780 // scan fat table-of-contents for image with matching cpu-type and runs-on-all-sub-types
2781 static bool fatFindRunsOnAllCPUs(cpu_type_t cpu, const fat_header* fh, uint64_t* offset, uint64_t* len)
2782 {
2783 const fat_arch* archs = (fat_arch*)(((char*)fh)+sizeof(fat_header));
2784 for(uint32_t i=0; i < OSSwapBigToHostInt32(fh->nfat_arch); ++i) {
2785 if ( (cpu_type_t)OSSwapBigToHostInt32(archs[i].cputype) == cpu) {
2786 switch (cpu) {
2787 #if __arm__
2788 case CPU_TYPE_ARM:
2789 if ( (cpu_subtype_t)OSSwapBigToHostInt32(archs[i].cpusubtype) == CPU_SUBTYPE_ARM_ALL ) {
2790 *offset = OSSwapBigToHostInt32(archs[i].offset);
2791 *len = OSSwapBigToHostInt32(archs[i].size);
2792 return true;
2793 }
2794 break;
2795 #endif
2796 #if __arm64__
2797 case CPU_TYPE_ARM64:
2798 if ( (cpu_subtype_t)OSSwapBigToHostInt32(archs[i].cpusubtype) == CPU_SUBTYPE_ARM64_ALL ) {
2799 *offset = OSSwapBigToHostInt32(archs[i].offset);
2800 *len = OSSwapBigToHostInt32(archs[i].size);
2801 return true;
2802 }
2803 break;
2804 #endif
2805 #if __x86_64__
2806 case CPU_TYPE_X86_64:
2807 if ( (cpu_subtype_t)OSSwapBigToHostInt32(archs[i].cpusubtype) == CPU_SUBTYPE_X86_64_ALL ) {
2808 *offset = OSSwapBigToHostInt32(archs[i].offset);
2809 *len = OSSwapBigToHostInt32(archs[i].size);
2810 return true;
2811 }
2812 break;
2813 #endif
2814 }
2815 }
2816 }
2817 return false;
2818 }
2819
2820 #endif // CPU_SUBTYPES_SUPPORTED
2821
2822
2823 //
2824 // Validate the fat_header and fat_arch array:
2825 //
2826 // 1) arch count would not cause array to extend past 4096 byte read buffer
2827 // 2) no slice overlaps the fat_header and arch array
2828 // 3) arch list does not contain duplicate cputype/cpusubtype tuples
2829 // 4) arch list does not have two overlapping slices.
2830 //
2831 static bool fatValidate(const fat_header* fh)
2832 {
2833 if ( fh->magic != OSSwapBigToHostInt32(FAT_MAGIC) )
2834 return false;
2835
2836 // since only first 4096 bytes of file read, we can only handle up to 204 slices.
2837 const uint32_t sliceCount = OSSwapBigToHostInt32(fh->nfat_arch);
2838 if ( sliceCount > 204 )
2839 return false;
2840
2841 // compare all slices looking for conflicts
2842 const fat_arch* archs = (fat_arch*)(((char*)fh)+sizeof(fat_header));
2843 for (uint32_t i=0; i < sliceCount; ++i) {
2844 uint32_t i_offset = OSSwapBigToHostInt32(archs[i].offset);
2845 uint32_t i_size = OSSwapBigToHostInt32(archs[i].size);
2846 uint32_t i_cputype = OSSwapBigToHostInt32(archs[i].cputype);
2847 uint32_t i_cpusubtype = OSSwapBigToHostInt32(archs[i].cpusubtype);
2848 uint32_t i_end = i_offset + i_size;
2849 // slice cannot overlap with header
2850 if ( i_offset < 4096 )
2851 return false;
2852 // slice size cannot overflow
2853 if ( i_end < i_offset )
2854 return false;
2855 for (uint32_t j=i+1; j < sliceCount; ++j) {
2856 uint32_t j_offset = OSSwapBigToHostInt32(archs[j].offset);
2857 uint32_t j_size = OSSwapBigToHostInt32(archs[j].size);
2858 uint32_t j_cputype = OSSwapBigToHostInt32(archs[j].cputype);
2859 uint32_t j_cpusubtype = OSSwapBigToHostInt32(archs[j].cpusubtype);
2860 uint32_t j_end = j_offset + j_size;
2861 // duplicate slices types not allowed
2862 if ( (i_cputype == j_cputype) && (i_cpusubtype == j_cpusubtype) )
2863 return false;
2864 // slice size cannot overflow
2865 if ( j_end < j_offset )
2866 return false;
2867 // check for overlap of slices
2868 if ( i_offset <= j_offset ) {
2869 if ( j_offset < i_end )
2870 return false; // j overlaps end of i
2871 }
2872 else {
2873 // j overlaps end of i
2874 if ( i_offset < j_end )
2875 return false; // i overlaps end of j
2876 }
2877 }
2878 }
2879 return true;
2880 }
2881
2882 //
2883 // A fat file may contain multiple sub-images for the same cpu-type,
2884 // each optimized for a different cpu-sub-type (e.g G3 or G5).
2885 // This routine picks the optimal sub-image.
2886 //
2887 static bool fatFindBest(const fat_header* fh, uint64_t* offset, uint64_t* len)
2888 {
2889 if ( !fatValidate(fh) )
2890 return false;
2891
2892 #if CPU_SUBTYPES_SUPPORTED
2893 // assume all dylibs loaded must have same cpu type as main executable
2894 const cpu_type_t cpu = sMainExecutableMachHeader->cputype;
2895
2896 // We only know the subtype to use if the main executable cpu type matches the host
2897 if ( cpu == sHostCPU ) {
2898 // get preference ordered list of subtypes
2899 const cpu_subtype_t* subTypePreferenceList = findCPUSubtypeList(cpu, sHostCPUsubtype);
2900
2901 // use ordered list to find best sub-image in fat file
2902 if ( subTypePreferenceList != NULL ) {
2903 if ( fatFindBestFromOrderedList(cpu, subTypePreferenceList, fh, offset, len) )
2904 return true;
2905 }
2906
2907 // if running cpu is not in list, try for an exact match
2908 if ( fatFindExactMatch(cpu, sHostCPUsubtype, fh, offset, len) )
2909 return true;
2910 }
2911
2912 // running on an uknown cpu, can only load generic code
2913 return fatFindRunsOnAllCPUs(cpu, fh, offset, len);
2914 #else
2915 // just find first slice with matching architecture
2916 const fat_arch* archs = (fat_arch*)(((char*)fh)+sizeof(fat_header));
2917 for(uint32_t i=0; i < OSSwapBigToHostInt32(fh->nfat_arch); ++i) {
2918 if ( (cpu_type_t)OSSwapBigToHostInt32(archs[i].cputype) == sMainExecutableMachHeader->cputype) {
2919 *offset = OSSwapBigToHostInt32(archs[i].offset);
2920 *len = OSSwapBigToHostInt32(archs[i].size);
2921 return true;
2922 }
2923 }
2924 return false;
2925 #endif
2926 }
2927
2928
2929
2930 //
2931 // This is used to validate if a non-fat (aka thin or raw) mach-o file can be used
2932 // on the current processor. //
2933 bool isCompatibleMachO(const uint8_t* firstPage, const char* path)
2934 {
2935 #if CPU_SUBTYPES_SUPPORTED
2936 // It is deemed compatible if any of the following are true:
2937 // 1) mach_header subtype is in list of compatible subtypes for running processor
2938 // 2) mach_header subtype is same as running processor subtype
2939 // 3) mach_header subtype runs on all processor variants
2940 const mach_header* mh = (mach_header*)firstPage;
2941 if ( mh->magic == sMainExecutableMachHeader->magic ) {
2942 if ( mh->cputype == sMainExecutableMachHeader->cputype ) {
2943 if ( mh->cputype == sHostCPU ) {
2944 // get preference ordered list of subtypes that this machine can use
2945 const cpu_subtype_t* subTypePreferenceList = findCPUSubtypeList(mh->cputype, sHostCPUsubtype);
2946 if ( subTypePreferenceList != NULL ) {
2947 // if image's subtype is in the list, it is compatible
2948 for (const cpu_subtype_t* p = subTypePreferenceList; *p != CPU_SUBTYPE_END_OF_LIST; ++p) {
2949 if ( *p == mh->cpusubtype )
2950 return true;
2951 }
2952 // have list and not in list, so not compatible
2953 throwf("incompatible cpu-subtype: 0x%08X in %s", mh->cpusubtype, path);
2954 }
2955 // unknown cpu sub-type, but if exact match for current subtype then ok to use
2956 if ( mh->cpusubtype == sHostCPUsubtype )
2957 return true;
2958 }
2959
2960 // cpu type has no ordered list of subtypes
2961 switch (mh->cputype) {
2962 case CPU_TYPE_I386:
2963 case CPU_TYPE_X86_64:
2964 // subtypes are not used or these architectures
2965 return true;
2966 }
2967 }
2968 }
2969 #else
2970 // For architectures that don't support cpu-sub-types
2971 // this just check the cpu type.
2972 const mach_header* mh = (mach_header*)firstPage;
2973 if ( mh->magic == sMainExecutableMachHeader->magic ) {
2974 if ( mh->cputype == sMainExecutableMachHeader->cputype ) {
2975 return true;
2976 }
2977 }
2978 #endif
2979 return false;
2980 }
2981
2982
2983
2984
2985 // The kernel maps in main executable before dyld gets control. We need to
2986 // make an ImageLoader* for the already mapped in main executable.
2987 static ImageLoaderMachO* instantiateFromLoadedImage(const macho_header* mh, uintptr_t slide, const char* path)
2988 {
2989 // try mach-o loader
2990 if ( isCompatibleMachO((const uint8_t*)mh, path) ) {
2991 ImageLoader* image = ImageLoaderMachO::instantiateMainExecutable(mh, slide, path, gLinkContext);
2992 addImage(image);
2993 return (ImageLoaderMachO*)image;
2994 }
2995
2996 throw "main executable not a known format";
2997 }
2998
2999 #if SUPPORT_ACCELERATE_TABLES
3000 static bool dylibsCanOverrideCache()
3001 {
3002 if ( !dyld3::internalInstall() )
3003 return false;
3004 return ( (sSharedCacheLoadInfo.loadAddress != nullptr) && (sSharedCacheLoadInfo.loadAddress->header.cacheType == kDyldSharedCacheTypeDevelopment) );
3005 }
3006 #endif
3007
3008 const void* imMemorySharedCacheHeader()
3009 {
3010 return sSharedCacheLoadInfo.loadAddress;
3011 }
3012
3013
3014 const char* getStandardSharedCacheFilePath()
3015 {
3016 if ( sSharedCacheLoadInfo.loadAddress != nullptr )
3017 return sSharedCacheLoadInfo.path;
3018 else
3019 return nullptr;
3020 }
3021
3022 bool hasInsertedOrInterposingLibraries() {
3023 return (sInsertedDylibCount > 0) || ImageLoader::haveInterposingTuples();
3024 }
3025
3026
3027 #if SUPPORT_VERSIONED_PATHS
3028 static bool findInSharedCacheImage(const char* path, bool searchByPath, const struct stat* stat_buf, const macho_header** mh, const char** pathInCache, long* slide)
3029 {
3030 dyld3::SharedCacheFindDylibResults results;
3031 if ( dyld3::findInSharedCacheImage(sSharedCacheLoadInfo, path, &results) ) {
3032 *mh = (macho_header*)results.mhInCache;
3033 *pathInCache = results.pathInCache;
3034 *slide = results.slideInCache;
3035 return true;
3036 }
3037 return false;
3038 }
3039 #endif
3040
3041 bool inSharedCache(const char* path)
3042 {
3043 return dyld3::pathIsInSharedCacheImage(sSharedCacheLoadInfo, path);
3044 }
3045
3046
3047 static ImageLoader* checkandAddImage(ImageLoader* image, const LoadContext& context)
3048 {
3049 // now sanity check that this loaded image does not have the same install path as any existing image
3050 const char* loadedImageInstallPath = image->getInstallPath();
3051 if ( image->isDylib() && (loadedImageInstallPath != NULL) && (loadedImageInstallPath[0] == '/') ) {
3052 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
3053 ImageLoader* anImage = *it;
3054 const char* installPath = anImage->getInstallPath();
3055 if ( installPath != NULL) {
3056 if ( strcmp(loadedImageInstallPath, installPath) == 0 ) {
3057 //dyld::log("duplicate(%s) => %p\n", installPath, anImage);
3058 removeImage(image);
3059 ImageLoader::deleteImage(image);
3060 return anImage;
3061 }
3062 }
3063 }
3064 }
3065
3066 // some API's restrict what they can load
3067 if ( context.mustBeBundle && !image->isBundle() )
3068 throw "not a bundle";
3069 if ( context.mustBeDylib && !image->isDylib() )
3070 throw "not a dylib";
3071
3072 // regular main executables cannot be loaded
3073 if ( image->isExecutable() ) {
3074 if ( !context.canBePIE || !image->isPositionIndependentExecutable() )
3075 throw "can't load a main executable";
3076 }
3077
3078 // don't add bundles to global list, they can be loaded but not linked. When linked it will be added to list
3079 if ( ! image->isBundle() )
3080 addImage(image);
3081
3082 return image;
3083 }
3084
3085 #if TARGET_OS_SIMULATOR
3086 static bool isSimulatorBinary(const uint8_t* firstPages, const char* path)
3087 {
3088 const macho_header* mh = (macho_header*)firstPages;
3089 const uint32_t cmd_count = mh->ncmds;
3090 const load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
3091 const load_command* const cmdsEnd = (load_command*)((char*)cmds + mh->sizeofcmds);
3092 const struct load_command* cmd = cmds;
3093 for (uint32_t i = 0; i < cmd_count; ++i) {
3094 switch (cmd->cmd) {
3095 #if TARGET_OS_WATCH
3096 case LC_VERSION_MIN_WATCHOS:
3097 return true;
3098 #elif TARGET_OS_TV
3099 case LC_VERSION_MIN_TVOS:
3100 return true;
3101 #elif TARGET_OS_IOS
3102 case LC_VERSION_MIN_IPHONEOS:
3103 return true;
3104 #endif
3105 case LC_VERSION_MIN_MACOSX:
3106 // grandfather in a few libSystem dylibs
3107 if ((strcmp(path, "/usr/lib/system/libsystem_kernel.dylib") == 0) ||
3108 (strcmp(path, "/usr/lib/system/libsystem_platform.dylib") == 0) ||
3109 (strcmp(path, "/usr/lib/system/libsystem_pthread.dylib") == 0) ||
3110 (strcmp(path, "/usr/lib/system/libsystem_platform_debug.dylib") == 0) ||
3111 (strcmp(path, "/usr/lib/system/libsystem_pthread_debug.dylib") == 0) ||
3112 (strcmp(path, "/sbin/launchd_sim_trampoline") == 0) ||
3113 (strcmp(path, "/usr/sbin/iokitsimd") == 0) ||
3114 (strcmp(path, "/usr/lib/system/host/liblaunch_sim.dylib") == 0))
3115 return true;
3116 return false;
3117 case LC_BUILD_VERSION:
3118 {
3119 // Same logic as above, but for LC_BUILD_VERSION instead of legacy load commands
3120 const struct build_version_command* buildVersionCmd = (build_version_command*)cmd;
3121 switch(buildVersionCmd->platform) {
3122 case PLATFORM_IOSSIMULATOR:
3123 case PLATFORM_TVOSSIMULATOR:
3124 case PLATFORM_WATCHOSSIMULATOR:
3125 case PLATFORM_WATCHOS:
3126 return true;
3127 #if TARGET_OS_IOSMAC
3128 case 6:
3129 return true;
3130 #endif
3131 case PLATFORM_MACOS:
3132 if ((strcmp(path, "/usr/lib/system/libsystem_kernel.dylib") == 0) ||
3133 (strcmp(path, "/usr/lib/system/libsystem_platform.dylib") == 0) ||
3134 (strcmp(path, "/usr/lib/system/libsystem_pthread.dylib") == 0) ||
3135 (strcmp(path, "/usr/lib/system/libsystem_platform_debug.dylib") == 0) ||
3136 (strcmp(path, "/usr/lib/system/libsystem_pthread_debug.dylib") == 0) ||
3137 (strcmp(path, "/sbin/launchd_sim_trampoline") == 0) ||
3138 (strcmp(path, "/usr/sbin/iokitsimd") == 0) ||
3139 (strcmp(path, "/usr/lib/system/host/liblaunch_sim.dylib") == 0))
3140 return true;
3141 }
3142 }
3143 }
3144 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
3145 if ( cmd > cmdsEnd )
3146 return false;
3147 }
3148 return false;
3149 }
3150 #endif
3151
3152 #if __MAC_OS_X_VERSION_MIN_REQUIRED
3153 static bool iOSonMacDenied(const char* path)
3154 {
3155 static char* blackListBuffer = nullptr;
3156 static size_t blackListSize = 0;
3157 static bool tried = false;
3158 if ( !tried ) {
3159 // only try to map file once
3160 blackListBuffer = (char*)mapFileReadOnly("/System/iOSSupport/dyld/macOS-deny-list.txt", blackListSize);
3161 tried = true;
3162 }
3163 __block bool result = false;
3164 if ( blackListBuffer != nullptr ) {
3165 dyld3::forEachLineInFile(blackListBuffer, blackListSize, ^(const char* line, bool& stop) {
3166 // lines in the file are prefixes. Any path that starts with one of these lines is allowed to be unzippered
3167 size_t lineLen = strlen(line);
3168 if ( (*line == '/') && strncmp(line, path, lineLen) == 0 ) {
3169 result = true;
3170 stop = true;
3171 }
3172 });
3173 }
3174 return result;
3175 }
3176 #endif
3177
3178 // map in file and instantiate an ImageLoader
3179 static ImageLoader* loadPhase6(int fd, const struct stat& stat_buf, const char* path, const LoadContext& context)
3180 {
3181 //dyld::log("%s(%s)\n", __func__ , path);
3182 uint64_t fileOffset = 0;
3183 uint64_t fileLength = stat_buf.st_size;
3184
3185 // validate it is a file (not directory)
3186 if ( (stat_buf.st_mode & S_IFMT) != S_IFREG )
3187 throw "not a file";
3188
3189 uint8_t firstPages[MAX_MACH_O_HEADER_AND_LOAD_COMMANDS_SIZE];
3190 uint8_t *firstPagesPtr = firstPages;
3191 bool shortPage = false;
3192
3193 // min mach-o file is 4K
3194 if ( fileLength < 4096 ) {
3195 if ( pread(fd, firstPages, (size_t)fileLength, 0) != (ssize_t)fileLength )
3196 throwf("pread of short file failed: %d", errno);
3197 shortPage = true;
3198 }
3199 else {
3200 // optimistically read only first 4KB
3201 if ( pread(fd, firstPages, 4096, 0) != 4096 )
3202 throwf("pread of first 4K failed: %d", errno);
3203 }
3204
3205 // if fat wrapper, find usable sub-file
3206 const fat_header* fileStartAsFat = (fat_header*)firstPages;
3207 if ( fileStartAsFat->magic == OSSwapBigToHostInt32(FAT_MAGIC) ) {
3208 if ( OSSwapBigToHostInt32(fileStartAsFat->nfat_arch) > ((4096 - sizeof(fat_header)) / sizeof(fat_arch)) )
3209 throwf("fat header too large: %u entries", OSSwapBigToHostInt32(fileStartAsFat->nfat_arch));
3210 if ( fatFindBest(fileStartAsFat, &fileOffset, &fileLength) ) {
3211 if ( (fileOffset+fileLength) > (uint64_t)(stat_buf.st_size) )
3212 throwf("truncated fat file. file length=%llu, but needed slice goes to %llu", stat_buf.st_size, fileOffset+fileLength);
3213 if (pread(fd, firstPages, 4096, fileOffset) != 4096)
3214 throwf("pread of fat file failed: %d", errno);
3215 }
3216 else {
3217 throw "no matching architecture in universal wrapper";
3218 }
3219 }
3220
3221 // try mach-o loader
3222 if ( shortPage )
3223 throw "file too short";
3224
3225 if ( isCompatibleMachO(firstPages, path) ) {
3226
3227 // only MH_BUNDLE, MH_DYLIB, and some MH_EXECUTE can be dynamically loaded
3228 const mach_header* mh = (mach_header*)firstPages;
3229 switch ( mh->filetype ) {
3230 case MH_EXECUTE:
3231 case MH_DYLIB:
3232 case MH_BUNDLE:
3233 break;
3234 default:
3235 throw "mach-o, but wrong filetype";
3236 }
3237
3238 uint32_t headerAndLoadCommandsSize = sizeof(macho_header) + mh->sizeofcmds;
3239 if ( headerAndLoadCommandsSize > MAX_MACH_O_HEADER_AND_LOAD_COMMANDS_SIZE )
3240 throwf("malformed mach-o: load commands size (%u) > %u", headerAndLoadCommandsSize, MAX_MACH_O_HEADER_AND_LOAD_COMMANDS_SIZE);
3241
3242 if ( headerAndLoadCommandsSize > fileLength )
3243 dyld::throwf("malformed mach-o: load commands size (%u) > mach-o file size (%llu)", headerAndLoadCommandsSize, fileLength);
3244
3245 if ( headerAndLoadCommandsSize > 4096 ) {
3246 // read more pages
3247 unsigned readAmount = headerAndLoadCommandsSize - 4096;
3248 if ( pread(fd, &firstPages[4096], readAmount, fileOffset+4096) != readAmount )
3249 throwf("pread of extra load commands past 4KB failed: %d", errno);
3250 }
3251
3252 #if TARGET_OS_SIMULATOR
3253 // <rdar://problem/14168872> dyld_sim should restrict loading osx binaries
3254 if ( !isSimulatorBinary(firstPages, path) ) {
3255 #if TARGET_OS_WATCH
3256 throw "mach-o, but not built for watchOS simulator";
3257 #elif TARGET_OS_TV
3258 throw "mach-o, but not built for tvOS simulator";
3259 #else
3260 throw "mach-o, but not built for iOS simulator";
3261 #endif
3262 }
3263 #endif
3264
3265 #if __MAC_OS_X_VERSION_MIN_REQUIRED
3266 if ( gLinkContext.iOSonMac ) {
3267 const dyld3::MachOFile* mf = (dyld3::MachOFile*)firstPages;
3268 bool supportsiOSMac = mf->supportsPlatform(dyld3::Platform::iOSMac);
3269 if ( !supportsiOSMac && iOSonMacDenied(path) ) {
3270 throw "mach-o, but not built for UIKitForMac";
3271 }
3272 }
3273 else if ( gLinkContext.driverKit ) {
3274 const dyld3::MachOFile* mf = (dyld3::MachOFile*)firstPages;
3275 bool isDriverKitDylib = mf->supportsPlatform(dyld3::Platform::driverKit);
3276 if ( !isDriverKitDylib ) {
3277 throw "mach-o, but not built for driverkit";
3278 }
3279 }
3280 #endif
3281
3282 #if __arm64e__
3283 if ( (sMainExecutableMachHeader->cpusubtype == CPU_SUBTYPE_ARM64E) && (mh->cpusubtype != CPU_SUBTYPE_ARM64E) )
3284 throw "arm64 dylibs cannot be loaded into arm64e processes";
3285 #endif
3286 ImageLoader* image = nullptr;
3287 {
3288 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_MAP_IMAGE, path, 0, 0);
3289 image = ImageLoaderMachO::instantiateFromFile(path, fd, firstPagesPtr, headerAndLoadCommandsSize, fileOffset, fileLength, stat_buf, gLinkContext);
3290 timer.setData4((uint64_t)image->machHeader());
3291 }
3292
3293 // validate
3294 return checkandAddImage(image, context);
3295 }
3296
3297 // try other file formats here...
3298
3299
3300 // throw error about what was found
3301 switch (*(uint32_t*)firstPages) {
3302 case MH_MAGIC:
3303 case MH_CIGAM:
3304 case MH_MAGIC_64:
3305 case MH_CIGAM_64:
3306 throw "mach-o, but wrong architecture";
3307 default:
3308 throwf("unknown file type, first eight bytes: 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X",
3309 firstPages[0], firstPages[1], firstPages[2], firstPages[3], firstPages[4], firstPages[5], firstPages[6],firstPages[7]);
3310 }
3311 }
3312
3313
3314 static ImageLoader* loadPhase5open(const char* path, const LoadContext& context, const struct stat& stat_buf, std::vector<const char*>* exceptions)
3315 {
3316 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3317
3318 // open file (automagically closed when this function exits)
3319 FileOpener file(path);
3320
3321 // just return NULL if file not found, but record any other errors
3322 if ( file.getFileDescriptor() == -1 ) {
3323 int err = errno;
3324 if ( err != ENOENT ) {
3325 const char* newMsg;
3326 if ( (err == EPERM) && sandboxBlockedOpen(path) )
3327 newMsg = dyld::mkstringf("file system sandbox blocked open() of '%s'", path);
3328 else
3329 newMsg = dyld::mkstringf("%s: open() failed with errno=%d", path, err);
3330 exceptions->push_back(newMsg);
3331 }
3332 return NULL;
3333 }
3334
3335 try {
3336 return loadPhase6(file.getFileDescriptor(), stat_buf, path, context);
3337 }
3338 catch (const char* msg) {
3339 const char* newMsg = dyld::mkstringf("%s: %s", path, msg);
3340 exceptions->push_back(newMsg);
3341 free((void*)msg);
3342 return NULL;
3343 }
3344 }
3345
3346 static bool isFileRelativePath(const char* path)
3347 {
3348 if ( path[0] == '/' )
3349 return false;
3350 if ( path[0] != '.' )
3351 return true;
3352 if ( path[1] == '/' )
3353 return true;
3354 if ( (path[1] == '.') && (path[2] == '/') )
3355 return true;
3356 return false;
3357 }
3358
3359
3360 // try to open file
3361 static ImageLoader* loadPhase5load(const char* path, const char* orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions)
3362 {
3363 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3364
3365 // <rdar://problem/47682983> don't allow file system relative paths in hardened programs
3366 if ( (exceptions != NULL) && !gLinkContext.allowEnvVarsPath && isFileRelativePath(path) ) {
3367 exceptions->push_back("file system relative paths not allowed in hardened programs");
3368 return NULL;
3369 }
3370
3371 #if SUPPORT_ACCELERATE_TABLES
3372 if ( sAllCacheImagesProxy != NULL ) {
3373 if ( sAllCacheImagesProxy->hasDylib(path, &cacheIndex) )
3374 return sAllCacheImagesProxy;
3375 }
3376 #endif
3377 #if TARGET_OS_SIMULATOR
3378 // in simulators, 'path' has DYLD_ROOT_PATH prepended, but cache index does not have the prefix, so use orgPath
3379 const char* pathToFindInCache = orgPath;
3380 #else
3381 const char* pathToFindInCache = path;
3382 #endif
3383 uint statErrNo;
3384 struct stat statBuf;
3385 bool didStat = false;
3386 bool existsOnDisk;
3387 dyld3::SharedCacheFindDylibResults shareCacheResults;
3388 shareCacheResults.image = nullptr;
3389 if ( dyld3::findInSharedCacheImage(sSharedCacheLoadInfo, pathToFindInCache, &shareCacheResults) ) {
3390 // see if this image in the cache was already loaded via a different path
3391 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); ++it) {
3392 ImageLoader* anImage = *it;
3393 if ( (const mach_header*)anImage->machHeader() == shareCacheResults.mhInCache )
3394 return anImage;
3395 }
3396 // if RTLD_NOLOAD, do nothing if not already loaded
3397 if ( context.dontLoad ) {
3398 // <rdar://33412890> possible that there is an override of cache
3399 if ( my_stat(path, &statBuf) == 0 ) {
3400 ImageLoader* imageLoader = findLoadedImage(statBuf);
3401 if ( imageLoader != NULL )
3402 return imageLoader;
3403 }
3404 return NULL;
3405 }
3406 bool useCache = false;
3407 if ( shareCacheResults.image == nullptr ) {
3408 // HACK to support old caches
3409 existsOnDisk = ( my_stat(path, &statBuf) == 0 );
3410 didStat = true;
3411 statErrNo = errno;
3412 useCache = !existsOnDisk;
3413 }
3414 else {
3415 // <rdar://problem/7014995> zero out stat buffer so mtime, etc are zero for items from the shared cache
3416 bzero(&statBuf, sizeof(statBuf));
3417 if ( shareCacheResults.image->overridableDylib() ) {
3418 existsOnDisk = ( my_stat(path, &statBuf) == 0 );
3419 didStat = true;
3420 statErrNo = errno;
3421 if ( sSharedCacheLoadInfo.loadAddress->header.dylibsExpectedOnDisk ) {
3422 uint64_t expectedINode;
3423 uint64_t expectedMtime;
3424 if ( shareCacheResults.image->hasFileModTimeAndInode(expectedINode, expectedMtime) ) {
3425 if ( (expectedMtime == statBuf.st_mtime) && (expectedINode == statBuf.st_ino) )
3426 useCache = true;
3427 }
3428 }
3429 else {
3430 if ( !existsOnDisk )
3431 useCache = true;
3432 }
3433 }
3434 else {
3435 useCache = true;
3436 }
3437 }
3438 if ( useCache ) {
3439 #if __MAC_OS_X_VERSION_MIN_REQUIRED
3440 if ( gLinkContext.iOSonMac ) {
3441 const dyld3::MachOFile* mf = (dyld3::MachOFile*)shareCacheResults.mhInCache;
3442 bool supportsiOSMac = mf->supportsPlatform(dyld3::Platform::iOSMac);
3443 if ( !supportsiOSMac && iOSonMacDenied(path) ) {
3444 throw "mach-o, but not built for UIKitForMac";
3445 }
3446 }
3447 #endif
3448 ImageLoader* imageLoader = ImageLoaderMachO::instantiateFromCache((macho_header*)shareCacheResults.mhInCache, shareCacheResults.pathInCache, shareCacheResults.slideInCache, statBuf, gLinkContext);
3449 return checkandAddImage(imageLoader, context);
3450 }
3451 }
3452
3453 // not in cache or cache not usable
3454 if ( !didStat ) {
3455 existsOnDisk = ( my_stat(path, &statBuf) == 0 );
3456 statErrNo = errno;
3457 }
3458 if ( existsOnDisk ) {
3459 // in case image was renamed or found via symlinks, check for inode match
3460 ImageLoader* imageLoader = findLoadedImage(statBuf);
3461 if ( imageLoader != NULL )
3462 return imageLoader;
3463 // do nothing if not already loaded and if RTLD_NOLOAD
3464 if ( context.dontLoad )
3465 return NULL;
3466 // try opening file
3467 imageLoader = loadPhase5open(path, context, statBuf, exceptions);
3468 if ( imageLoader != NULL ) {
3469 if ( shareCacheResults.image != nullptr ) {
3470 // if image was found in cache, but is overridden by a newer file on disk, record what the image overrides
3471 imageLoader->setOverridesCachedDylib(shareCacheResults.image->imageNum());
3472 }
3473 return imageLoader;
3474 }
3475 }
3476
3477 // just return NULL if file not found, but record any other errors
3478 if ( (statErrNo != ENOENT) && (statErrNo != 0) ) {
3479 if ( (statErrNo == EPERM) && sandboxBlockedStat(path) )
3480 exceptions->push_back(dyld::mkstringf("%s: file system sandbox blocked stat()", path));
3481 else
3482 exceptions->push_back(dyld::mkstringf("%s: stat() failed with errno=%d", path, statErrNo));
3483 }
3484 return NULL;
3485 }
3486
3487 // look for path match with existing loaded images
3488 static ImageLoader* loadPhase5check(const char* path, const char* orgPath, const LoadContext& context)
3489 {
3490 //dyld::log("%s(%s, %s)\n", __func__ , path, orgPath);
3491 // search path against load-path and install-path of all already loaded images
3492 uint32_t hash = ImageLoader::hash(path);
3493 //dyld::log("check() hash=%d, path=%s\n", hash, path);
3494 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
3495 ImageLoader* anImage = *it;
3496 // check hash first to cut down on strcmp calls
3497 //dyld::log(" check() hash=%d, path=%s\n", anImage->getPathHash(), anImage->getPath());
3498 if ( anImage->getPathHash() == hash ) {
3499 if ( strcmp(path, anImage->getPath()) == 0 ) {
3500 // if we are looking for a dylib don't return something else
3501 if ( !context.mustBeDylib || anImage->isDylib() )
3502 return anImage;
3503 }
3504 }
3505 if ( context.matchByInstallName || anImage->matchInstallPath() ) {
3506 const char* installPath = anImage->getInstallPath();
3507 if ( installPath != NULL) {
3508 if ( strcmp(path, installPath) == 0 ) {
3509 // if we are looking for a dylib don't return something else
3510 if ( !context.mustBeDylib || anImage->isDylib() )
3511 return anImage;
3512 }
3513 }
3514 }
3515 // an install name starting with @rpath should match by install name, not just real path
3516 if ( (orgPath[0] == '@') && (strncmp(orgPath, "@rpath/", 7) == 0) ) {
3517 const char* installPath = anImage->getInstallPath();
3518 if ( installPath != NULL) {
3519 if ( !context.mustBeDylib || anImage->isDylib() ) {
3520 if ( strcmp(orgPath, installPath) == 0 )
3521 return anImage;
3522 }
3523 }
3524 }
3525 }
3526
3527 //dyld::log("%s(%s) => NULL\n", __func__, path);
3528 return NULL;
3529 }
3530
3531
3532 // open or check existing
3533 static ImageLoader* loadPhase5(const char* path, const char* orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions)
3534 {
3535 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3536
3537 // check for specific dylib overrides
3538 for (std::vector<DylibOverride>::iterator it = sDylibOverrides.begin(); it != sDylibOverrides.end(); ++it) {
3539 if ( strcmp(it->installName, path) == 0 ) {
3540 path = it->override;
3541 break;
3542 }
3543 }
3544
3545 if ( exceptions != NULL )
3546 return loadPhase5load(path, orgPath, context, cacheIndex, exceptions);
3547 else
3548 return loadPhase5check(path, orgPath, context);
3549 }
3550
3551 // try with and without image suffix
3552 static ImageLoader* loadPhase4(const char* path, const char* orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions)
3553 {
3554 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3555 ImageLoader* image = NULL;
3556 if ( gLinkContext.imageSuffix != NULL ) {
3557 for (const char* const* suffix=gLinkContext.imageSuffix; *suffix != NULL; ++suffix) {
3558 char pathWithSuffix[strlen(path)+strlen(*suffix)+2];
3559 ImageLoader::addSuffix(path, *suffix, pathWithSuffix);
3560 image = loadPhase5(pathWithSuffix, orgPath, context, cacheIndex, exceptions);
3561 if ( image != NULL )
3562 break;
3563 }
3564 if ( image != NULL ) {
3565 // if original path is in the dyld cache, then mark this one found as an override
3566 dyld3::SharedCacheFindDylibResults shareCacheResults;
3567 if ( dyld3::findInSharedCacheImage(sSharedCacheLoadInfo, path, &shareCacheResults) && (shareCacheResults.image != nullptr) )
3568 image->setOverridesCachedDylib(shareCacheResults.image->imageNum());
3569 }
3570 }
3571 if ( image == NULL )
3572 image = loadPhase5(path, orgPath, context, cacheIndex, exceptions);
3573 return image;
3574 }
3575
3576 static ImageLoader* loadPhase2(const char* path, const char* orgPath, const LoadContext& context,
3577 const char* const frameworkPaths[], const char* const libraryPaths[],
3578 unsigned& cacheIndex, std::vector<const char*>* exceptions); // forward reference
3579
3580
3581 // expand @ variables
3582 static ImageLoader* loadPhase3(const char* path, const char* orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions)
3583 {
3584 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3585 ImageLoader* image = NULL;
3586 if ( strncmp(path, "@executable_path/", 17) == 0 ) {
3587 // executable_path cannot be in used in any binary in a setuid process rdar://problem/4589305
3588 if ( !gLinkContext.allowAtPaths )
3589 throwf("unsafe use of @executable_path in %s with restricted binary (Codesign main executable with Library Validation to allow @ paths)", context.origin);
3590 // handle @executable_path path prefix
3591 const char* executablePath = sExecPath;
3592 char newPath[strlen(executablePath) + strlen(path)];
3593 strcpy(newPath, executablePath);
3594 char* addPoint = strrchr(newPath,'/');
3595 if ( addPoint != NULL )
3596 strcpy(&addPoint[1], &path[17]);
3597 else
3598 strcpy(newPath, &path[17]);
3599 image = loadPhase4(newPath, orgPath, context, cacheIndex, exceptions);
3600 if ( image != NULL )
3601 return image;
3602
3603 // perhaps main executable path is a sym link, find realpath and retry
3604 char resolvedPath[PATH_MAX];
3605 if ( realpath(sExecPath, resolvedPath) != NULL ) {
3606 char newRealPath[strlen(resolvedPath) + strlen(path)];
3607 strcpy(newRealPath, resolvedPath);
3608 addPoint = strrchr(newRealPath,'/');
3609 if ( addPoint != NULL )
3610 strcpy(&addPoint[1], &path[17]);
3611 else
3612 strcpy(newRealPath, &path[17]);
3613 image = loadPhase4(newRealPath, orgPath, context, cacheIndex, exceptions);
3614 if ( image != NULL )
3615 return image;
3616 }
3617 }
3618 else if ( (strncmp(path, "@loader_path/", 13) == 0) && (context.origin != NULL) ) {
3619 // @loader_path cannot be used from the main executable of a setuid process rdar://problem/4589305
3620 if ( !gLinkContext.allowAtPaths && (strcmp(context.origin, sExecPath) == 0) )
3621 throwf("unsafe use of @loader_path in %s with restricted binary (Codesign main executable with Library Validation to allow @ paths)", context.origin);
3622 // handle @loader_path path prefix
3623 char newPath[strlen(context.origin) + strlen(path)];
3624 strcpy(newPath, context.origin);
3625 char* addPoint = strrchr(newPath,'/');
3626 if ( addPoint != NULL )
3627 strcpy(&addPoint[1], &path[13]);
3628 else
3629 strcpy(newPath, &path[13]);
3630 image = loadPhase4(newPath, orgPath, context, cacheIndex, exceptions);
3631 if ( image != NULL )
3632 return image;
3633
3634 // perhaps loader path is a sym link, find realpath and retry
3635 char resolvedPath[PATH_MAX];
3636 if ( realpath(context.origin, resolvedPath) != NULL ) {
3637 char newRealPath[strlen(resolvedPath) + strlen(path)];
3638 strcpy(newRealPath, resolvedPath);
3639 addPoint = strrchr(newRealPath,'/');
3640 if ( addPoint != NULL )
3641 strcpy(&addPoint[1], &path[13]);
3642 else
3643 strcpy(newRealPath, &path[13]);
3644 image = loadPhase4(newRealPath, orgPath, context, cacheIndex, exceptions);
3645 if ( image != NULL )
3646 return image;
3647 }
3648 }
3649 else if ( context.implicitRPath || (strncmp(path, "@rpath/", 7) == 0) ) {
3650 const char* trailingPath = (strncmp(path, "@rpath/", 7) == 0) ? &path[7] : path;
3651 // substitute @rpath with all -rpath paths up the load chain
3652 for(const ImageLoader::RPathChain* rp=context.rpath; rp != NULL; rp=rp->next) {
3653 if (rp->paths != NULL ) {
3654 for(std::vector<const char*>::iterator it=rp->paths->begin(); it != rp->paths->end(); ++it) {
3655 const char* anRPath = *it;
3656 char newPath[strlen(anRPath) + strlen(trailingPath)+2];
3657 strcpy(newPath, anRPath);
3658 if ( newPath[strlen(newPath)-1] != '/' )
3659 strcat(newPath, "/");
3660 strcat(newPath, trailingPath);
3661 image = loadPhase4(newPath, orgPath, context, cacheIndex, exceptions);
3662 if ( gLinkContext.verboseRPaths && (exceptions != NULL) ) {
3663 if ( image != NULL )
3664 dyld::log("RPATH successful expansion of %s to: %s\n", orgPath, newPath);
3665 else
3666 dyld::log("RPATH failed expanding %s to: %s\n", orgPath, newPath);
3667 }
3668 if ( image != NULL )
3669 return image;
3670 }
3671 }
3672 }
3673
3674 // substitute @rpath with LD_LIBRARY_PATH
3675 if ( sEnv.LD_LIBRARY_PATH != NULL ) {
3676 image = loadPhase2(trailingPath, orgPath, context, NULL, sEnv.LD_LIBRARY_PATH, cacheIndex, exceptions);
3677 if ( image != NULL )
3678 return image;
3679 }
3680
3681 // if this is the "open" pass, don't try to open @rpath/... as a relative path
3682 if ( (exceptions != NULL) && (trailingPath != path) )
3683 return NULL;
3684 }
3685 else if ( !gLinkContext.allowEnvVarsPath && (path[0] != '/' ) ) {
3686 throwf("unsafe use of relative rpath %s in %s with restricted binary", path, context.origin);
3687 }
3688
3689 return loadPhase4(path, orgPath, context, cacheIndex, exceptions);
3690 }
3691
3692 static ImageLoader* loadPhase2cache(const char* path, const char *orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions) {
3693 ImageLoader* image = NULL;
3694 #if !TARGET_OS_SIMULATOR
3695 if ( (exceptions != NULL) && (gLinkContext.allowEnvVarsPath || !isFileRelativePath(path)) && (path[0] != '@') ) {
3696 char resolvedPath[PATH_MAX];
3697 realpath(path, resolvedPath);
3698 int myerr = errno;
3699 // If realpath() resolves to a path which does not exist on disk, errno is set to ENOENT
3700 if ( (myerr == ENOENT) || (myerr == 0) )
3701 {
3702 image = loadPhase4(resolvedPath, orgPath, context, cacheIndex, exceptions);
3703 }
3704 }
3705 #endif
3706 return image;
3707 }
3708
3709
3710 // try search paths
3711 static ImageLoader* loadPhase2(const char* path, const char* orgPath, const LoadContext& context,
3712 const char* const frameworkPaths[], const char* const libraryPaths[],
3713 unsigned& cacheIndex, std::vector<const char*>* exceptions)
3714 {
3715 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3716 ImageLoader* image = NULL;
3717 const char* frameworkPartialPath = getFrameworkPartialPath(path);
3718 if ( frameworkPaths != NULL ) {
3719 if ( frameworkPartialPath != NULL ) {
3720 const size_t frameworkPartialPathLen = strlen(frameworkPartialPath);
3721 for(const char* const* fp = frameworkPaths; *fp != NULL; ++fp) {
3722 char npath[strlen(*fp)+frameworkPartialPathLen+8];
3723 strcpy(npath, *fp);
3724 strcat(npath, "/");
3725 strcat(npath, frameworkPartialPath);
3726 //dyld::log("dyld: fallback framework path used: %s() -> loadPhase4(\"%s\", ...)\n", __func__, npath);
3727 image = loadPhase4(npath, orgPath, context, cacheIndex, exceptions);
3728 // Look in the cache if appropriate
3729 if ( image == NULL)
3730 image = loadPhase2cache(npath, orgPath, context, cacheIndex, exceptions);
3731 if ( image != NULL ) {
3732 // if original path is in the dyld cache, then mark this one found as an override
3733 dyld3::SharedCacheFindDylibResults shareCacheResults;
3734 if ( dyld3::findInSharedCacheImage(sSharedCacheLoadInfo, path, &shareCacheResults) && (shareCacheResults.image != nullptr) )
3735 image->setOverridesCachedDylib(shareCacheResults.image->imageNum());
3736 return image;
3737 }
3738 }
3739 }
3740 }
3741 // <rdar://problem/12649639> An executable with the same name as a framework & DYLD_LIBRARY_PATH pointing to it gets loaded twice
3742 // <rdar://problem/14160846> Some apps depend on frameworks being found via library paths
3743 if ( (libraryPaths != NULL) && ((frameworkPartialPath == NULL) || sFrameworksFoundAsDylibs) ) {
3744 const char* libraryLeafName = getLibraryLeafName(path);
3745 const size_t libraryLeafNameLen = strlen(libraryLeafName);
3746 for(const char* const* lp = libraryPaths; *lp != NULL; ++lp) {
3747 char libpath[strlen(*lp)+libraryLeafNameLen+8];
3748 strcpy(libpath, *lp);
3749 strcat(libpath, "/");
3750 strcat(libpath, libraryLeafName);
3751 //dyld::log("dyld: fallback library path used: %s() -> loadPhase4(\"%s\", ...)\n", __func__, libpath);
3752 image = loadPhase4(libpath, orgPath, context, cacheIndex, exceptions);
3753 // Look in the cache if appropriate
3754 if ( image == NULL)
3755 image = loadPhase2cache(libpath, orgPath, context, cacheIndex, exceptions);
3756 if ( image != NULL ) {
3757 // if original path is in the dyld cache, then mark this one found as an override
3758 dyld3::SharedCacheFindDylibResults shareCacheResults;
3759 if ( dyld3::findInSharedCacheImage(sSharedCacheLoadInfo, path, &shareCacheResults) && (shareCacheResults.image != nullptr) )
3760 image->setOverridesCachedDylib(shareCacheResults.image->imageNum());
3761 return image;
3762 }
3763 }
3764 }
3765 return NULL;
3766 }
3767
3768 // try search overrides and fallbacks
3769 static ImageLoader* loadPhase1(const char* path, const char* orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions)
3770 {
3771 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3772 ImageLoader* image = NULL;
3773
3774 bool pathIsInDyldCacheWhichCannotBeOverridden = false;
3775 if ( sSharedCacheLoadInfo.loadAddress != nullptr ) {
3776 pathIsInDyldCacheWhichCannotBeOverridden = sSharedCacheLoadInfo.loadAddress->hasNonOverridablePath(path);
3777 }
3778
3779 // <rdar://problem/48490116> dyld customer cache cannot be overridden
3780 if ( !pathIsInDyldCacheWhichCannotBeOverridden ) {
3781 // handle LD_LIBRARY_PATH environment variables that force searching
3782 if ( context.useLdLibraryPath && (sEnv.LD_LIBRARY_PATH != NULL) ) {
3783 image = loadPhase2(path, orgPath, context, NULL, sEnv.LD_LIBRARY_PATH, cacheIndex,exceptions);
3784 if ( image != NULL )
3785 return image;
3786 }
3787
3788 // handle DYLD_ environment variables that force searching
3789 if ( context.useSearchPaths && ((sEnv.DYLD_FRAMEWORK_PATH != NULL) || (sEnv.DYLD_LIBRARY_PATH != NULL)) ) {
3790 image = loadPhase2(path, orgPath, context, sEnv.DYLD_FRAMEWORK_PATH, sEnv.DYLD_LIBRARY_PATH, cacheIndex, exceptions);
3791 if ( image != NULL )
3792 return image;
3793 }
3794 }
3795
3796 // try raw path
3797 image = loadPhase3(path, orgPath, context, cacheIndex, exceptions);
3798 if ( image != NULL )
3799 return image;
3800
3801 // try fallback paths during second time (will open file)
3802 const char* const* fallbackLibraryPaths = sEnv.DYLD_FALLBACK_LIBRARY_PATH;
3803 if ( (fallbackLibraryPaths != NULL) && !context.useFallbackPaths )
3804 fallbackLibraryPaths = NULL;
3805 if ( !context.dontLoad && (exceptions != NULL) && ((sEnv.DYLD_FALLBACK_FRAMEWORK_PATH != NULL) || (fallbackLibraryPaths != NULL)) ) {
3806 image = loadPhase2(path, orgPath, context, sEnv.DYLD_FALLBACK_FRAMEWORK_PATH, fallbackLibraryPaths, cacheIndex, exceptions);
3807 if ( image != NULL )
3808 return image;
3809 }
3810
3811 // <rdar://problem/47682983> if hardened app calls dlopen() with a leaf path, dyld should only look in /usr/lib
3812 if ( context.useLdLibraryPath && (fallbackLibraryPaths == NULL) ) {
3813 const char* stdPaths[2] = { "/usr/lib", NULL };
3814 image = loadPhase2(path, orgPath, context, NULL, stdPaths, cacheIndex, exceptions);
3815 if ( image != NULL )
3816 return image;
3817 }
3818
3819 #if SUPPORT_VERSIONED_PATHS
3820 // <rdar://problem/53215116> DYLD_VERSIONED_FRAMEWORK_PATH fails to load a framework if it does not also exist at the system install path
3821 // Scan to see if the dylib appears in a versioned path. Don't worry if we find the newest, that will handled later
3822 if ( !context.dontLoad && (exceptions != NULL) && ((sEnv.DYLD_VERSIONED_FRAMEWORK_PATH != NULL) || (sEnv.DYLD_VERSIONED_LIBRARY_PATH != NULL)) ) {
3823 image = loadPhase2(path, orgPath, context, sEnv.DYLD_VERSIONED_FRAMEWORK_PATH, sEnv.DYLD_VERSIONED_LIBRARY_PATH, cacheIndex, exceptions);
3824 if ( image != NULL )
3825 return image;
3826 }
3827 #endif
3828
3829 return NULL;
3830 }
3831
3832 // try root substitutions
3833 static ImageLoader* loadPhase0(const char* path, const char* orgPath, const LoadContext& context, unsigned& cacheIndex, std::vector<const char*>* exceptions)
3834 {
3835 //dyld::log("%s(%s, %p)\n", __func__ , path, exceptions);
3836
3837 #if __MAC_OS_X_VERSION_MIN_REQUIRED
3838 // handle macOS dylibs dlopen()ing versioned path which needs to map to flat path in mazipan simulator
3839 if ( gLinkContext.iOSonMac && strstr(path, ".framework/Versions/")) {
3840 uintptr_t sourceOffset = 0;
3841 uintptr_t destOffset = 0;
3842 size_t sourceLangth = strlen(path);
3843 char flatPath[sourceLangth];
3844 flatPath[0] = 0;
3845 const char* frameworkBase = NULL;
3846 while ((frameworkBase = strstr(&path[sourceOffset], ".framework/Versions/"))) {
3847 uintptr_t foundLength = (frameworkBase - &path[sourceOffset]) + strlen(".framework/") ;
3848 strlcat(&flatPath[destOffset], &path[sourceOffset], foundLength);
3849 sourceOffset += foundLength + strlen("Versions/") + 1;
3850 destOffset += foundLength - 1;
3851 }
3852 strlcat(&flatPath[destOffset], &path[sourceOffset], sourceLangth);
3853 ImageLoader* image = loadPhase0(flatPath, orgPath, context, cacheIndex, exceptions);
3854 if ( image != NULL )
3855 return image;
3856 }
3857 #endif
3858
3859 #if SUPPORT_ROOT_PATH
3860 // handle DYLD_ROOT_PATH which forces absolute paths to use a new root
3861 if ( (gLinkContext.rootPaths != NULL) && (path[0] == '/') ) {
3862 for(const char* const* rootPath = gLinkContext.rootPaths; *rootPath != NULL; ++rootPath) {
3863 size_t rootLen = strlen(*rootPath);
3864 if ( strncmp(path, *rootPath, rootLen) != 0 ) {
3865 char newPath[rootLen + strlen(path)+2];
3866 strcpy(newPath, *rootPath);
3867 strcat(newPath, path);
3868 ImageLoader* image = loadPhase1(newPath, orgPath, context, cacheIndex, exceptions);
3869 if ( image != NULL )
3870 return image;
3871 }
3872 }
3873 }
3874 #endif
3875
3876 // try raw path
3877 return loadPhase1(path, orgPath, context, cacheIndex, exceptions);
3878 }
3879
3880 //
3881 // Given all the DYLD_ environment variables, the general case for loading libraries
3882 // is that any given path expands into a list of possible locations to load. We
3883 // also must take care to ensure two copies of the "same" library are never loaded.
3884 //
3885 // The algorithm used here is that there is a separate function for each "phase" of the
3886 // path expansion. Each phase function calls the next phase with each possible expansion
3887 // of that phase. The result is the last phase is called with all possible paths.
3888 //
3889 // To catch duplicates the algorithm is run twice. The first time, the last phase checks
3890 // the path against all loaded images. The second time, the last phase calls open() on
3891 // the path. Either time, if an image is found, the phases all unwind without checking
3892 // for other paths.
3893 //
3894 ImageLoader* load(const char* path, const LoadContext& context, unsigned& cacheIndex)
3895 {
3896 CRSetCrashLogMessage2(path);
3897 const char* orgPath = path;
3898 cacheIndex = UINT32_MAX;
3899
3900 //dyld::log("%s(%s)\n", __func__ , path);
3901 char realPath[PATH_MAX];
3902 // when DYLD_IMAGE_SUFFIX is in used, do a realpath(), otherwise a load of "Foo.framework/Foo" will not match
3903 if ( context.useSearchPaths && ( gLinkContext.imageSuffix != NULL && *gLinkContext.imageSuffix != NULL) ) {
3904 if ( realpath(path, realPath) != NULL )
3905 path = realPath;
3906 }
3907
3908 // try all path permutations and check against existing loaded images
3909
3910 ImageLoader* image = loadPhase0(path, orgPath, context, cacheIndex, NULL);
3911 if ( image != NULL ) {
3912 CRSetCrashLogMessage2(NULL);
3913 return image;
3914 }
3915
3916 // try all path permutations and try open() until first success
3917 std::vector<const char*> exceptions;
3918 image = loadPhase0(path, orgPath, context, cacheIndex, &exceptions);
3919 #if !TARGET_OS_SIMULATOR
3920 // <rdar://problem/16704628> support symlinks on disk to a path in dyld shared cache
3921 if ( image == NULL)
3922 image = loadPhase2cache(path, orgPath, context, cacheIndex, &exceptions);
3923 #endif
3924 CRSetCrashLogMessage2(NULL);
3925 if ( image != NULL ) {
3926 // <rdar://problem/6916014> leak in dyld during dlopen when using DYLD_ variables
3927 for (std::vector<const char*>::iterator it = exceptions.begin(); it != exceptions.end(); ++it) {
3928 free((void*)(*it));
3929 }
3930 // if loaded image is not from cache, but original path is in cache
3931 // set gSharedCacheOverridden flag to disable some ObjC optimizations
3932 if ( !gSharedCacheOverridden && !image->inSharedCache() && image->isDylib() && dyld3::MachOFile::isSharedCacheEligiblePath(path) && inSharedCache(path) ) {
3933 gSharedCacheOverridden = true;
3934 }
3935 return image;
3936 }
3937 else if ( exceptions.size() == 0 ) {
3938 if ( context.dontLoad ) {
3939 return NULL;
3940 }
3941 else
3942 throw "image not found";
3943 }
3944 else {
3945 const char* msgStart = "no suitable image found. Did find:";
3946 const char* delim = "\n\t";
3947 size_t allsizes = strlen(msgStart)+8;
3948 for (size_t i=0; i < exceptions.size(); ++i)
3949 allsizes += (strlen(exceptions[i]) + strlen(delim));
3950 char* fullMsg = new char[allsizes];
3951 strcpy(fullMsg, msgStart);
3952 for (size_t i=0; i < exceptions.size(); ++i) {
3953 strcat(fullMsg, delim);
3954 strcat(fullMsg, exceptions[i]);
3955 free((void*)exceptions[i]);
3956 }
3957 throw (const char*)fullMsg;
3958 }
3959 }
3960
3961
3962
3963
3964
3965 static void mapSharedCache()
3966 {
3967 dyld3::SharedCacheOptions opts;
3968 opts.cacheDirOverride = sSharedCacheOverrideDir;
3969 opts.forcePrivate = (gLinkContext.sharedRegionMode == ImageLoader::kUsePrivateSharedRegion);
3970
3971
3972 #if __x86_64__ && !TARGET_OS_SIMULATOR
3973 opts.useHaswell = sHaswell;
3974 #else
3975 opts.useHaswell = false;
3976 #endif
3977 opts.verbose = gLinkContext.verboseMapping;
3978 loadDyldCache(opts, &sSharedCacheLoadInfo);
3979
3980 // update global state
3981 if ( sSharedCacheLoadInfo.loadAddress != nullptr ) {
3982 gLinkContext.dyldCache = sSharedCacheLoadInfo.loadAddress;
3983 dyld::gProcessInfo->processDetachedFromSharedRegion = opts.forcePrivate;
3984 dyld::gProcessInfo->sharedCacheSlide = sSharedCacheLoadInfo.slide;
3985 dyld::gProcessInfo->sharedCacheBaseAddress = (unsigned long)sSharedCacheLoadInfo.loadAddress;
3986 sSharedCacheLoadInfo.loadAddress->getUUID(dyld::gProcessInfo->sharedCacheUUID);
3987 dyld3::kdebug_trace_dyld_image(DBG_DYLD_UUID_SHARED_CACHE_A, sSharedCacheLoadInfo.path, (const uuid_t *)&dyld::gProcessInfo->sharedCacheUUID[0], {0,0}, {{ 0, 0 }}, (const mach_header *)sSharedCacheLoadInfo.loadAddress);
3988 }
3989
3990 //#if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
3991 // RAM disk booting does not have shared cache yet
3992 // Don't make lack of a shared cache fatal in that case
3993 // if ( sSharedCacheLoadInfo.loadAddress == nullptr ) {
3994 // if ( sSharedCacheLoadInfo.errorMessage != nullptr )
3995 // halt(sSharedCacheLoadInfo.errorMessage);
3996 // else
3997 // halt("error loading dyld shared cache");
3998 // }
3999 //#endif
4000 }
4001
4002
4003
4004 // create when NSLinkModule is called for a second time on a bundle
4005 ImageLoader* cloneImage(ImageLoader* image)
4006 {
4007 // open file (automagically closed when this function exits)
4008 FileOpener file(image->getPath());
4009
4010 struct stat stat_buf;
4011 if ( fstat(file.getFileDescriptor(), &stat_buf) == -1)
4012 throw "stat error";
4013
4014 dyld::LoadContext context;
4015 context.useSearchPaths = false;
4016 context.useFallbackPaths = false;
4017 context.useLdLibraryPath = false;
4018 context.implicitRPath = false;
4019 context.matchByInstallName = false;
4020 context.dontLoad = false;
4021 context.mustBeBundle = true;
4022 context.mustBeDylib = false;
4023 context.canBePIE = false;
4024 context.origin = NULL;
4025 context.rpath = NULL;
4026 return loadPhase6(file.getFileDescriptor(), stat_buf, image->getPath(), context);
4027 }
4028
4029
4030 ImageLoader* loadFromMemory(const uint8_t* mem, uint64_t len, const char* moduleName)
4031 {
4032 // if fat wrapper, find usable sub-file
4033 const fat_header* memStartAsFat = (fat_header*)mem;
4034 uint64_t fileOffset = 0;
4035 uint64_t fileLength = len;
4036 if ( memStartAsFat->magic == OSSwapBigToHostInt32(FAT_MAGIC) ) {
4037 if ( fatFindBest(memStartAsFat, &fileOffset, &fileLength) ) {
4038 mem = &mem[fileOffset];
4039 len = fileLength;
4040 }
4041 else {
4042 throw "no matching architecture in universal wrapper";
4043 }
4044 }
4045
4046 // try each loader
4047 if ( isCompatibleMachO(mem, moduleName) ) {
4048 ImageLoader* image = ImageLoaderMachO::instantiateFromMemory(moduleName, (macho_header*)mem, len, gLinkContext);
4049 // don't add bundles to global list, they can be loaded but not linked. When linked it will be added to list
4050 if ( ! image->isBundle() )
4051 addImage(image);
4052 return image;
4053 }
4054
4055 // try other file formats here...
4056
4057 // throw error about what was found
4058 switch (*(uint32_t*)mem) {
4059 case MH_MAGIC:
4060 case MH_CIGAM:
4061 case MH_MAGIC_64:
4062 case MH_CIGAM_64:
4063 throw "mach-o, but wrong architecture";
4064 default:
4065 throwf("unknown file type, first eight bytes: 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X",
4066 mem[0], mem[1], mem[2], mem[3], mem[4], mem[5], mem[6],mem[7]);
4067 }
4068 }
4069
4070
4071 void registerAddCallback(ImageCallback func)
4072 {
4073 // now add to list to get notified when any more images are added
4074 sAddImageCallbacks.push_back(func);
4075
4076 // call callback with all existing images
4077 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4078 ImageLoader* image = *it;
4079 if ( image->getState() >= dyld_image_state_bound && image->getState() < dyld_image_state_terminated ) {
4080 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)image->machHeader(), (uint64_t)(*func), 0);
4081 (*func)(image->machHeader(), image->getSlide());
4082 }
4083 }
4084 #if SUPPORT_ACCELERATE_TABLES
4085 if ( sAllCacheImagesProxy != NULL ) {
4086 dyld_image_info infos[allImagesCount()+1];
4087 unsigned cacheCount = sAllCacheImagesProxy->appendImagesToNotify(dyld_image_state_bound, true, infos);
4088 for (unsigned i=0; i < cacheCount; ++i) {
4089 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)infos[i].imageLoadAddress, (uint64_t)(*func), 0);
4090 (*func)(infos[i].imageLoadAddress, sSharedCacheLoadInfo.slide);
4091 }
4092 }
4093 #endif
4094 }
4095
4096 void registerLoadCallback(LoadImageCallback func)
4097 {
4098 // now add to list to get notified when any more images are added
4099 sAddLoadImageCallbacks.push_back(func);
4100
4101 // call callback with all existing images
4102 for (ImageLoader* image : sAllImages) {
4103 if ( image->getState() >= dyld_image_state_bound && image->getState() < dyld_image_state_terminated ) {
4104 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)image->machHeader(), (uint64_t)(*func), 0);
4105 (*func)(image->machHeader(), image->getPath(), !image->neverUnload());
4106 }
4107 }
4108 #if SUPPORT_ACCELERATE_TABLES
4109 if ( sAllCacheImagesProxy != NULL ) {
4110 dyld_image_info infos[allImagesCount()+1];
4111 unsigned cacheCount = sAllCacheImagesProxy->appendImagesToNotify(dyld_image_state_bound, true, infos);
4112 for (unsigned i=0; i < cacheCount; ++i) {
4113 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)infos[i].imageLoadAddress, (uint64_t)(*func), 0);
4114 (*func)(infos[i].imageLoadAddress, infos[i].imageFilePath, false);
4115 }
4116 }
4117 #endif
4118 }
4119
4120 void registerBulkLoadCallback(LoadImageBulkCallback func)
4121 {
4122 // call callback with all existing images
4123 unsigned count = dyld::gProcessInfo->infoArrayCount;
4124 const dyld_image_info* infoArray = dyld::gProcessInfo->infoArray;
4125 if ( infoArray != NULL ) {
4126 const mach_header* mhs[count];
4127 const char* paths[count];
4128 for (unsigned i=0; i < count; ++i) {
4129 mhs[i] = infoArray[i].imageLoadAddress;
4130 paths[i] = infoArray[i].imageFilePath;
4131 }
4132 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_FUNC_FOR_ADD_IMAGE, (uint64_t)mhs[0], (uint64_t)func, 0);
4133 func(count, mhs, paths);
4134 }
4135
4136 // now add to list to get notified when any more images are added
4137 sAddBulkLoadImageCallbacks.push_back(func);
4138 }
4139
4140 void registerRemoveCallback(ImageCallback func)
4141 {
4142 // <rdar://problem/15025198> ignore calls to register a notification during a notification
4143 if ( sRemoveImageCallbacksInUse )
4144 return;
4145 sRemoveImageCallbacks.push_back(func);
4146 }
4147
4148 void clearErrorMessage()
4149 {
4150 error_string[0] = '\0';
4151 }
4152
4153 void setErrorMessage(const char* message)
4154 {
4155 // save off error message in global buffer for CrashReporter to find
4156 strlcpy(error_string, message, sizeof(error_string));
4157 }
4158
4159 const char* getErrorMessage()
4160 {
4161 return error_string;
4162 }
4163
4164 void halt(const char* message)
4165 {
4166 if ( sSharedCacheLoadInfo.errorMessage != nullptr ) {
4167 // <rdar://problem/45957449> if dyld fails with a missing dylib and there is no shared cache, display the shared cache load error message
4168 dyld::log("dyld: dyld cache load error: %s\n", sSharedCacheLoadInfo.errorMessage);
4169 dyld::log("dyld: %s\n", message);
4170 strlcpy(error_string, "dyld cache load error: ", sizeof(error_string));
4171 strlcat(error_string, sSharedCacheLoadInfo.errorMessage, sizeof(error_string));
4172 strlcat(error_string, "\n", sizeof(error_string));
4173 strlcat(error_string, message, sizeof(error_string));
4174 }
4175 else {
4176 dyld::log("dyld: %s\n", message);
4177 strlcpy(error_string, message, sizeof(error_string));
4178 }
4179
4180 dyld::gProcessInfo->errorMessage = error_string;
4181 if ( !gLinkContext.startedInitializingMainExecutable )
4182 dyld::gProcessInfo->terminationFlags = 1;
4183 else
4184 dyld::gProcessInfo->terminationFlags = 0;
4185
4186 char payloadBuffer[EXIT_REASON_PAYLOAD_MAX_LEN];
4187 dyld_abort_payload* payload = (dyld_abort_payload*)payloadBuffer;
4188 payload->version = 1;
4189 payload->flags = gLinkContext.startedInitializingMainExecutable ? 0 : 1;
4190 payload->targetDylibPathOffset = 0;
4191 payload->clientPathOffset = 0;
4192 payload->symbolOffset = 0;
4193 int payloadSize = sizeof(dyld_abort_payload);
4194
4195 if ( dyld::gProcessInfo->errorTargetDylibPath != NULL ) {
4196 payload->targetDylibPathOffset = payloadSize;
4197 payloadSize += strlcpy(&payloadBuffer[payloadSize], dyld::gProcessInfo->errorTargetDylibPath, sizeof(payloadBuffer)-payloadSize) + 1;
4198 }
4199 if ( dyld::gProcessInfo->errorClientOfDylibPath != NULL ) {
4200 payload->clientPathOffset = payloadSize;
4201 payloadSize += strlcpy(&payloadBuffer[payloadSize], dyld::gProcessInfo->errorClientOfDylibPath, sizeof(payloadBuffer)-payloadSize) + 1;
4202 }
4203 if ( dyld::gProcessInfo->errorSymbol != NULL ) {
4204 payload->symbolOffset = payloadSize;
4205 payloadSize += strlcpy(&payloadBuffer[payloadSize], dyld::gProcessInfo->errorSymbol, sizeof(payloadBuffer)-payloadSize) + 1;
4206 }
4207 char truncMessage[EXIT_REASON_USER_DESC_MAX_LEN];
4208 strlcpy(truncMessage, error_string, EXIT_REASON_USER_DESC_MAX_LEN);
4209 abort_with_payload(OS_REASON_DYLD, dyld::gProcessInfo->errorKind ? dyld::gProcessInfo->errorKind : DYLD_EXIT_REASON_OTHER, payloadBuffer, payloadSize, truncMessage, 0);
4210 }
4211
4212 static void setErrorStrings(unsigned errorCode, const char* errorClientOfDylibPath,
4213 const char* errorTargetDylibPath, const char* errorSymbol)
4214 {
4215 dyld::gProcessInfo->errorKind = errorCode;
4216 dyld::gProcessInfo->errorClientOfDylibPath = errorClientOfDylibPath;
4217 dyld::gProcessInfo->errorTargetDylibPath = errorTargetDylibPath;
4218 dyld::gProcessInfo->errorSymbol = errorSymbol;
4219 }
4220
4221
4222 uintptr_t bindLazySymbol(const mach_header* mh, uintptr_t* lazyPointer)
4223 {
4224 uintptr_t result = 0;
4225 // acquire read-lock on dyld's data structures
4226 #if 0 // rdar://problem/3811777 turn off locking until deadlock is resolved
4227 if ( gLibSystemHelpers != NULL )
4228 (*gLibSystemHelpers->lockForReading)();
4229 #endif
4230 // lookup and bind lazy pointer and get target address
4231 try {
4232 ImageLoader* target;
4233 #if __i386__
4234 // fast stubs pass NULL for mh and image is instead found via the location of stub (aka lazyPointer)
4235 if ( mh == NULL )
4236 target = dyld::findImageContainingAddress(lazyPointer);
4237 else
4238 target = dyld::findImageByMachHeader(mh);
4239 #else
4240 // note, target should always be mach-o, because only mach-o lazy handler wired up to this
4241 target = dyld::findImageByMachHeader(mh);
4242 #endif
4243 if ( target == NULL )
4244 throwf("image not found for lazy pointer at %p", lazyPointer);
4245 result = target->doBindLazySymbol(lazyPointer, gLinkContext);
4246 }
4247 catch (const char* message) {
4248 dyld::log("dyld: lazy symbol binding failed: %s\n", message);
4249 halt(message);
4250 }
4251 // release read-lock on dyld's data structures
4252 #if 0
4253 if ( gLibSystemHelpers != NULL )
4254 (*gLibSystemHelpers->unlockForReading)();
4255 #endif
4256 // return target address to glue which jumps to it with real parameters restored
4257 return result;
4258 }
4259
4260
4261 uintptr_t fastBindLazySymbol(ImageLoader** imageLoaderCache, uintptr_t lazyBindingInfoOffset)
4262 {
4263 uintptr_t result = 0;
4264 // get image
4265 if ( *imageLoaderCache == NULL ) {
4266 // save in cache
4267 *imageLoaderCache = dyld::findMappedRange((uintptr_t)imageLoaderCache);
4268 if ( *imageLoaderCache == NULL ) {
4269 #if SUPPORT_ACCELERATE_TABLES
4270 if ( sAllCacheImagesProxy != NULL ) {
4271 const mach_header* mh;
4272 const char* path;
4273 unsigned index;
4274 if ( sAllCacheImagesProxy->addressInCache(imageLoaderCache, &mh, &path, &index) ) {
4275 result = sAllCacheImagesProxy->bindLazy(lazyBindingInfoOffset, gLinkContext, mh, index);
4276 if ( result == 0 ) {
4277 halt("dyld: lazy symbol binding failed for image in dyld shared\n");
4278 }
4279 return result;
4280 }
4281 }
4282 #endif
4283 const char* message = "fast lazy binding from unknown image";
4284 dyld::log("dyld: %s\n", message);
4285 halt(message);
4286 }
4287 }
4288
4289 // bind lazy pointer and return it
4290 try {
4291 result = (*imageLoaderCache)->doBindFastLazySymbol((uint32_t)lazyBindingInfoOffset, gLinkContext,
4292 (dyld::gLibSystemHelpers != NULL) ? dyld::gLibSystemHelpers->acquireGlobalDyldLock : NULL,
4293 (dyld::gLibSystemHelpers != NULL) ? dyld::gLibSystemHelpers->releaseGlobalDyldLock : NULL);
4294 }
4295 catch (const char* message) {
4296 dyld::log("dyld: lazy symbol binding failed: %s\n", message);
4297 halt(message);
4298 }
4299
4300 // return target address to glue which jumps to it with real parameters restored
4301 return result;
4302 }
4303
4304
4305
4306 void registerUndefinedHandler(UndefinedHandler handler)
4307 {
4308 sUndefinedHandler = handler;
4309 }
4310
4311 static void undefinedHandler(const char* symboName)
4312 {
4313 if ( sUndefinedHandler != NULL ) {
4314 (*sUndefinedHandler)(symboName);
4315 }
4316 }
4317
4318 static bool findExportedSymbol(const char* name, bool onlyInCoalesced, const ImageLoader::Symbol** sym, const ImageLoader** image, ImageLoader::CoalesceNotifier notifier=NULL)
4319 {
4320 // search all images in order
4321 const ImageLoader* firstWeakImage = NULL;
4322 const ImageLoader::Symbol* firstWeakSym = NULL;
4323 const ImageLoader* firstNonWeakImage = NULL;
4324 const ImageLoader::Symbol* firstNonWeakSym = NULL;
4325 const size_t imageCount = sAllImages.size();
4326 for(size_t i=0; i < imageCount; ++i) {
4327 ImageLoader* anImage = sAllImages[i];
4328 // the use of inserted libraries alters search order
4329 // so that inserted libraries are found before the main executable
4330 if ( sInsertedDylibCount > 0 ) {
4331 if ( i < sInsertedDylibCount )
4332 anImage = sAllImages[i+1];
4333 else if ( i == sInsertedDylibCount )
4334 anImage = sAllImages[0];
4335 }
4336 //dyld::log("findExportedSymbol(%s) looking at %s\n", name, anImage->getPath());
4337 if ( ! anImage->hasHiddenExports() && (!onlyInCoalesced || anImage->hasCoalescedExports()) ) {
4338 const ImageLoader* foundInImage;
4339 *sym = anImage->findExportedSymbol(name, false, &foundInImage);
4340 //dyld::log("findExportedSymbol(%s) found: sym=%p, anImage=%p, foundInImage=%p\n", name, *sym, anImage, foundInImage /*, (foundInImage ? foundInImage->getPath() : "")*/);
4341 if ( *sym != NULL ) {
4342 if ( notifier && (foundInImage == anImage) )
4343 notifier(*sym, foundInImage, foundInImage->machHeader());
4344 // if weak definition found, record first one found
4345 if ( (foundInImage->getExportedSymbolInfo(*sym) & ImageLoader::kWeakDefinition) != 0 ) {
4346 if ( firstWeakImage == NULL ) {
4347 firstWeakImage = foundInImage;
4348 firstWeakSym = *sym;
4349 }
4350 }
4351 else {
4352 // found non-weak
4353 if ( !onlyInCoalesced ) {
4354 // for flat lookups, return first found
4355 *image = foundInImage;
4356 return true;
4357 }
4358 if ( firstNonWeakImage == NULL ) {
4359 firstNonWeakImage = foundInImage;
4360 firstNonWeakSym = *sym;
4361 }
4362 }
4363 }
4364 }
4365 }
4366 if ( firstNonWeakImage != NULL ) {
4367 // found a weak definition, but no non-weak, so return first weak found
4368 *sym = firstNonWeakSym;
4369 *image = firstNonWeakImage;
4370 return true;
4371 }
4372 if ( firstWeakSym != NULL ) {
4373 // found a weak definition, but no non-weak, so return first weak found
4374 *sym = firstWeakSym;
4375 *image = firstWeakImage;
4376 return true;
4377 }
4378 #if SUPPORT_ACCELERATE_TABLES
4379 if ( sAllCacheImagesProxy != NULL ) {
4380 if ( sAllCacheImagesProxy->flatFindSymbol(name, onlyInCoalesced, sym, image, notifier) )
4381 return true;
4382 }
4383 #endif
4384
4385 return false;
4386 }
4387
4388 bool flatFindExportedSymbol(const char* name, const ImageLoader::Symbol** sym, const ImageLoader** image)
4389 {
4390 return findExportedSymbol(name, false, sym, image);
4391 }
4392
4393 bool findCoalescedExportedSymbol(const char* name, const ImageLoader::Symbol** sym, const ImageLoader** image, ImageLoader::CoalesceNotifier notifier)
4394 {
4395 return findExportedSymbol(name, true, sym, image, notifier);
4396 }
4397
4398
4399 bool flatFindExportedSymbolWithHint(const char* name, const char* librarySubstring, const ImageLoader::Symbol** sym, const ImageLoader** image)
4400 {
4401 // search all images in order
4402 const size_t imageCount = sAllImages.size();
4403 for(size_t i=0; i < imageCount; ++i){
4404 ImageLoader* anImage = sAllImages[i];
4405 // only look at images whose paths contain the hint string (NULL hint string is wildcard)
4406 if ( ! anImage->isBundle() && ((librarySubstring==NULL) || (strstr(anImage->getPath(), librarySubstring) != NULL)) ) {
4407 *sym = anImage->findExportedSymbol(name, false, image);
4408 if ( *sym != NULL ) {
4409 return true;
4410 }
4411 }
4412 }
4413 return false;
4414 }
4415
4416
4417 unsigned int getCoalescedImages(ImageLoader* images[], unsigned imageIndex[])
4418 {
4419 unsigned int count = 0;
4420 const size_t imageCount = sAllImages.size();
4421 for(size_t i=0; i < imageCount; ++i) {
4422 ImageLoader* anImage = sAllImages[i];
4423 // the use of inserted libraries alters search order
4424 // so that inserted libraries are found before the main executable
4425 if ( sInsertedDylibCount > 0 ) {
4426 if ( i < sInsertedDylibCount )
4427 anImage = sAllImages[i+1];
4428 else if ( i == sInsertedDylibCount )
4429 anImage = sAllImages[0];
4430 }
4431 if ( anImage->participatesInCoalescing() ) {
4432 images[count] = anImage;
4433 imageIndex[count] = 0;
4434 ++count;
4435 }
4436 }
4437 #if SUPPORT_ACCELERATE_TABLES
4438 if ( sAllCacheImagesProxy != NULL ) {
4439 sAllCacheImagesProxy->appendImagesNeedingCoalescing(images, imageIndex, count);
4440 }
4441 #endif
4442 return count;
4443 }
4444
4445
4446 static ImageLoader::MappedRegion* getMappedRegions(ImageLoader::MappedRegion* regions)
4447 {
4448 ImageLoader::MappedRegion* end = regions;
4449 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4450 (*it)->getMappedRegions(end);
4451 }
4452 return end;
4453 }
4454
4455 void registerImageStateSingleChangeHandler(dyld_image_states state, dyld_image_state_change_handler handler)
4456 {
4457 // mark the image that the handler is in as never-unload because dyld has a reference into it
4458 ImageLoader* handlerImage = findImageContainingAddress((void*)handler);
4459 if ( handlerImage != NULL )
4460 handlerImage->setNeverUnload();
4461
4462 // add to list of handlers
4463 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(state, sSingleHandlers);
4464 if ( handlers != NULL ) {
4465 // <rdar://problem/10332417> need updateAllImages() to be last in dyld_image_state_mapped list
4466 // so that if ObjC adds a handler that prevents a load, it happens before the gdb list is updated
4467 if ( state == dyld_image_state_mapped )
4468 handlers->insert(handlers->begin(), handler);
4469 else
4470 handlers->push_back(handler);
4471
4472 // call callback with all existing images
4473 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4474 ImageLoader* image = *it;
4475 dyld_image_info info;
4476 info.imageLoadAddress = image->machHeader();
4477 info.imageFilePath = image->getRealPath();
4478 info.imageFileModDate = image->lastModified();
4479 // should only call handler if state == image->state
4480 if ( image->getState() == state )
4481 (*handler)(state, 1, &info);
4482 // ignore returned string, too late to do anything
4483 }
4484 }
4485 }
4486
4487 void registerImageStateBatchChangeHandler(dyld_image_states state, dyld_image_state_change_handler handler)
4488 {
4489 // mark the image that the handler is in as never-unload because dyld has a reference into it
4490 ImageLoader* handlerImage = findImageContainingAddress((void*)handler);
4491 if ( handlerImage != NULL )
4492 handlerImage->setNeverUnload();
4493
4494 // add to list of handlers
4495 std::vector<dyld_image_state_change_handler>* handlers = stateToHandlers(state, sBatchHandlers);
4496 if ( handlers != NULL ) {
4497 // insert at front, so that gdb handler is always last
4498 handlers->insert(handlers->begin(), handler);
4499
4500 // call callback with all existing images
4501 try {
4502 notifyBatchPartial(state, true, handler, false, false);
4503 }
4504 catch (const char* msg) {
4505 // ignore request to abort during registration
4506 }
4507 }
4508 }
4509
4510
4511 void registerObjCNotifiers(_dyld_objc_notify_mapped mapped, _dyld_objc_notify_init init, _dyld_objc_notify_unmapped unmapped)
4512 {
4513 // record functions to call
4514 sNotifyObjCMapped = mapped;
4515 sNotifyObjCInit = init;
4516 sNotifyObjCUnmapped = unmapped;
4517
4518 // call 'mapped' function with all images mapped so far
4519 try {
4520 notifyBatchPartial(dyld_image_state_bound, true, NULL, false, true);
4521 }
4522 catch (const char* msg) {
4523 // ignore request to abort during registration
4524 }
4525
4526 // <rdar://problem/32209809> call 'init' function on all images already init'ed (below libSystem)
4527 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4528 ImageLoader* image = *it;
4529 if ( (image->getState() == dyld_image_state_initialized) && image->notifyObjC() ) {
4530 dyld3::ScopedTimer timer(DBG_DYLD_TIMING_OBJC_INIT, (uint64_t)image->machHeader(), 0, 0);
4531 (*sNotifyObjCInit)(image->getRealPath(), image->machHeader());
4532 }
4533 }
4534 }
4535
4536 bool sharedCacheUUID(uuid_t uuid)
4537 {
4538 if ( sSharedCacheLoadInfo.loadAddress == nullptr )
4539 return false;
4540
4541 sSharedCacheLoadInfo.loadAddress->getUUID(uuid);
4542 return true;
4543 }
4544
4545 #if SUPPORT_ACCELERATE_TABLES
4546
4547 bool dlopenFromCache(const char* path, int mode, void** handle)
4548 {
4549 if ( sAllCacheImagesProxy == NULL )
4550 return false;
4551 char fallbackPath[PATH_MAX];
4552 bool result = sAllCacheImagesProxy->dlopenFromCache(gLinkContext, path, mode, handle);
4553 if ( !result && (strchr(path, '/') == NULL) ) {
4554 // POSIX says you can call dlopen() with a leaf name (e.g. dlopen("libz.dylb"))
4555 strcpy(fallbackPath, "/usr/lib/");
4556 strlcat(fallbackPath, path, PATH_MAX);
4557 result = sAllCacheImagesProxy->dlopenFromCache(gLinkContext, fallbackPath, mode, handle);
4558 if ( !result )
4559 path = fallbackPath;
4560 }
4561 if ( !result ) {
4562 // leaf name could be a symlink
4563 char resolvedPath[PATH_MAX];
4564 realpath(path, resolvedPath);
4565 int realpathErrno = errno;
4566 // If realpath() resolves to a path which does not exist on disk, errno is set to ENOENT
4567 if ( (realpathErrno == ENOENT) || (realpathErrno == 0) ) {
4568 result = sAllCacheImagesProxy->dlopenFromCache(gLinkContext, resolvedPath, mode, handle);
4569 }
4570 }
4571
4572 return result;
4573 }
4574
4575 bool makeCacheHandle(ImageLoader* image, unsigned cacheIndex, int mode, void** result)
4576 {
4577 if ( sAllCacheImagesProxy == NULL )
4578 return false;
4579 return sAllCacheImagesProxy->makeCacheHandle(gLinkContext, cacheIndex, mode, result);
4580 }
4581
4582 bool isCacheHandle(void* handle)
4583 {
4584 if ( sAllCacheImagesProxy == NULL )
4585 return false;
4586 return sAllCacheImagesProxy->isCacheHandle(handle, NULL, NULL);
4587 }
4588
4589 bool isPathInCache(const char* path)
4590 {
4591 if ( sAllCacheImagesProxy == NULL )
4592 return false;
4593 unsigned index;
4594 return sAllCacheImagesProxy->hasDylib(path, &index);
4595 }
4596
4597 const char* getPathFromIndex(unsigned cacheIndex)
4598 {
4599 if ( sAllCacheImagesProxy == NULL )
4600 return NULL;
4601 return sAllCacheImagesProxy->getIndexedPath(cacheIndex);
4602 }
4603
4604 void* dlsymFromCache(void* handle, const char* symName, unsigned index)
4605 {
4606 if ( sAllCacheImagesProxy == NULL )
4607 return NULL;
4608 return sAllCacheImagesProxy->dlsymFromCache(gLinkContext, handle, symName, index);
4609 }
4610
4611 bool addressInCache(const void* address, const mach_header** mh, const char** path, unsigned* index)
4612 {
4613 if ( sAllCacheImagesProxy == NULL )
4614 return false;
4615 unsigned ignore;
4616 return sAllCacheImagesProxy->addressInCache(address, mh, path, index ? index : &ignore);
4617 }
4618
4619 bool findUnwindSections(const void* addr, dyld_unwind_sections* info)
4620 {
4621 if ( sAllCacheImagesProxy == NULL )
4622 return false;
4623 return sAllCacheImagesProxy->findUnwindSections(addr, info);
4624 }
4625
4626 bool dladdrFromCache(const void* address, Dl_info* info)
4627 {
4628 if ( sAllCacheImagesProxy == NULL )
4629 return false;
4630 return sAllCacheImagesProxy->dladdrFromCache(address, info);
4631 }
4632 #endif
4633
4634 static ImageLoader* libraryLocator(const char* libraryName, bool search, const char* origin, const ImageLoader::RPathChain* rpaths, unsigned& cacheIndex)
4635 {
4636 dyld::LoadContext context;
4637 context.useSearchPaths = search;
4638 context.useFallbackPaths = search;
4639 context.useLdLibraryPath = false;
4640 context.implicitRPath = false;
4641 context.matchByInstallName = false;
4642 context.dontLoad = false;
4643 context.mustBeBundle = false;
4644 context.mustBeDylib = true;
4645 context.canBePIE = false;
4646 context.origin = origin;
4647 context.rpath = rpaths;
4648 return load(libraryName, context, cacheIndex);
4649 }
4650
4651 static const char* basename(const char* path)
4652 {
4653 const char* last = path;
4654 for (const char* s = path; *s != '\0'; s++) {
4655 if (*s == '/')
4656 last = s+1;
4657 }
4658 return last;
4659 }
4660
4661 static void setContext(const macho_header* mainExecutableMH, int argc, const char* argv[], const char* envp[], const char* apple[])
4662 {
4663 gLinkContext.loadLibrary = &libraryLocator;
4664 gLinkContext.terminationRecorder = &terminationRecorder;
4665 gLinkContext.flatExportFinder = &flatFindExportedSymbol;
4666 gLinkContext.coalescedExportFinder = &findCoalescedExportedSymbol;
4667 gLinkContext.getCoalescedImages = &getCoalescedImages;
4668 gLinkContext.undefinedHandler = &undefinedHandler;
4669 gLinkContext.getAllMappedRegions = &getMappedRegions;
4670 gLinkContext.bindingHandler = NULL;
4671 gLinkContext.notifySingle = &notifySingle;
4672 gLinkContext.notifyBatch = &notifyBatch;
4673 gLinkContext.removeImage = &removeImage;
4674 gLinkContext.registerDOFs = dyld3::Loader::dtraceUserProbesEnabled() ? &registerDOFs : NULL;
4675 gLinkContext.clearAllDepths = &clearAllDepths;
4676 gLinkContext.printAllDepths = &printAllDepths;
4677 gLinkContext.imageCount = &imageCount;
4678 gLinkContext.setNewProgramVars = &setNewProgramVars;
4679 gLinkContext.inSharedCache = &inSharedCache;
4680 gLinkContext.setErrorStrings = &setErrorStrings;
4681 #if SUPPORT_OLD_CRT_INITIALIZATION
4682 gLinkContext.setRunInitialzersOldWay= &setRunInitialzersOldWay;
4683 #endif
4684 gLinkContext.findImageContainingAddress = &findImageContainingAddress;
4685 gLinkContext.addDynamicReference = &addDynamicReference;
4686 #if SUPPORT_ACCELERATE_TABLES
4687 gLinkContext.notifySingleFromCache = &notifySingleFromCache;
4688 gLinkContext.getPreInitNotifyHandler= &getPreInitNotifyHandler;
4689 gLinkContext.getBoundBatchHandler = &getBoundBatchHandler;
4690 #endif
4691 gLinkContext.bindingOptions = ImageLoader::kBindingNone;
4692 gLinkContext.argc = argc;
4693 gLinkContext.argv = argv;
4694 gLinkContext.envp = envp;
4695 gLinkContext.apple = apple;
4696 gLinkContext.progname = (argv[0] != NULL) ? basename(argv[0]) : "";
4697 gLinkContext.programVars.mh = mainExecutableMH;
4698 gLinkContext.programVars.NXArgcPtr = &gLinkContext.argc;
4699 gLinkContext.programVars.NXArgvPtr = &gLinkContext.argv;
4700 gLinkContext.programVars.environPtr = &gLinkContext.envp;
4701 gLinkContext.programVars.__prognamePtr=&gLinkContext.progname;
4702 gLinkContext.mainExecutable = NULL;
4703 gLinkContext.imageSuffix = NULL;
4704 gLinkContext.dynamicInterposeArray = NULL;
4705 gLinkContext.dynamicInterposeCount = 0;
4706 gLinkContext.prebindUsage = ImageLoader::kUseAllPrebinding;
4707 gLinkContext.sharedRegionMode = ImageLoader::kUseSharedRegion;
4708 }
4709
4710
4711
4712 //
4713 // Look for a special segment in the mach header.
4714 // Its presences means that the binary wants to have DYLD ignore
4715 // DYLD_ environment variables.
4716 //
4717 #if __MAC_OS_X_VERSION_MIN_REQUIRED
4718 static bool hasRestrictedSegment(const macho_header* mh)
4719 {
4720 const uint32_t cmd_count = mh->ncmds;
4721 const struct load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
4722 const struct load_command* cmd = cmds;
4723 for (uint32_t i = 0; i < cmd_count; ++i) {
4724 switch (cmd->cmd) {
4725 case LC_SEGMENT_COMMAND:
4726 {
4727 const struct macho_segment_command* seg = (struct macho_segment_command*)cmd;
4728
4729 //dyld::log("seg name: %s\n", seg->segname);
4730 if (strcmp(seg->segname, "__RESTRICT") == 0) {
4731 const struct macho_section* const sectionsStart = (struct macho_section*)((char*)seg + sizeof(struct macho_segment_command));
4732 const struct macho_section* const sectionsEnd = &sectionsStart[seg->nsects];
4733 for (const struct macho_section* sect=sectionsStart; sect < sectionsEnd; ++sect) {
4734 if (strcmp(sect->sectname, "__restrict") == 0)
4735 return true;
4736 }
4737 }
4738 }
4739 break;
4740 }
4741 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
4742 }
4743
4744 return false;
4745 }
4746 #endif
4747
4748 #if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
4749 static bool isFairPlayEncrypted(const macho_header* mh)
4750 {
4751 const uint32_t cmd_count = mh->ncmds;
4752 const struct load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
4753 const struct load_command* cmd = cmds;
4754 for (uint32_t i = 0; i < cmd_count; ++i) {
4755 if ( cmd->cmd == LC_ENCRYPT_COMMAND ) {
4756 const encryption_info_command* enc = (encryption_info_command*)cmd;
4757 return (enc->cryptid != 0);
4758 }
4759 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
4760 }
4761
4762 return false;
4763 }
4764 #endif
4765
4766 #if SUPPORT_VERSIONED_PATHS
4767
4768 static bool readFirstPage(const char* dylibPath, uint8_t firstPage[4096])
4769 {
4770 firstPage[0] = 0;
4771 // open file (automagically closed when this function exits)
4772 FileOpener file(dylibPath);
4773
4774 if ( file.getFileDescriptor() == -1 )
4775 return false;
4776
4777 if ( pread(file.getFileDescriptor(), firstPage, 4096, 0) != 4096 )
4778 return false;
4779
4780 // if fat wrapper, find usable sub-file
4781 const fat_header* fileStartAsFat = (fat_header*)firstPage;
4782 if ( fileStartAsFat->magic == OSSwapBigToHostInt32(FAT_MAGIC) ) {
4783 uint64_t fileOffset;
4784 uint64_t fileLength;
4785 if ( fatFindBest(fileStartAsFat, &fileOffset, &fileLength) ) {
4786 if ( pread(file.getFileDescriptor(), firstPage, 4096, fileOffset) != 4096 )
4787 return false;
4788 }
4789 else {
4790 return false;
4791 }
4792 }
4793
4794 return true;
4795 }
4796
4797 //
4798 // Peeks at a dylib file and returns its current_version and install_name.
4799 // Returns false on error.
4800 //
4801 static bool getDylibVersionAndInstallname(const char* dylibPath, uint32_t* version, char* installName)
4802 {
4803 uint8_t firstPage[4096];
4804 const macho_header* mh = (macho_header*)firstPage;
4805 if ( !readFirstPage(dylibPath, firstPage) ) {
4806 // If file cannot be read, check to see if path is in shared cache
4807 const macho_header* mhInCache;
4808 const char* pathInCache;
4809 long slideInCache;
4810 if ( !findInSharedCacheImage(dylibPath, true, NULL, &mhInCache, &pathInCache, &slideInCache) )
4811 return false;
4812 mh = mhInCache;
4813 }
4814
4815 // check mach-o header
4816 if ( mh->magic != sMainExecutableMachHeader->magic )
4817 return false;
4818 if ( mh->cputype != sMainExecutableMachHeader->cputype )
4819 return false;
4820
4821 // scan load commands for LC_ID_DYLIB
4822 const uint32_t cmd_count = mh->ncmds;
4823 const struct load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
4824 const struct load_command* const cmdsReadEnd = (struct load_command*)(((char*)mh)+4096);
4825 const struct load_command* cmd = cmds;
4826 for (uint32_t i = 0; i < cmd_count; ++i) {
4827 switch (cmd->cmd) {
4828 case LC_ID_DYLIB:
4829 {
4830 const struct dylib_command* id = (struct dylib_command*)cmd;
4831 *version = id->dylib.current_version;
4832 if ( installName != NULL )
4833 strlcpy(installName, (char *)id + id->dylib.name.offset, PATH_MAX);
4834 return true;
4835 }
4836 break;
4837 }
4838 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
4839 if ( cmd > cmdsReadEnd )
4840 return false;
4841 }
4842
4843 return false;
4844 }
4845 #endif // SUPPORT_VERSIONED_PATHS
4846
4847
4848 #if 0
4849 static void printAllImages()
4850 {
4851 dyld::log("printAllImages()\n");
4852 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4853 ImageLoader* image = *it;
4854 dyld_image_states imageState = image->getState();
4855 dyld::log(" state=%d, dlopen-count=%d, never-unload=%d, in-use=%d, name=%s\n",
4856 imageState, image->dlopenCount(), image->neverUnload(), image->isMarkedInUse(), image->getShortName());
4857 }
4858 }
4859 #endif
4860
4861 void link(ImageLoader* image, bool forceLazysBound, bool neverUnload, const ImageLoader::RPathChain& loaderRPaths, unsigned cacheIndex)
4862 {
4863 // add to list of known images. This did not happen at creation time for bundles
4864 if ( image->isBundle() && !image->isLinked() )
4865 addImage(image);
4866
4867 // we detect root images as those not linked in yet
4868 if ( !image->isLinked() )
4869 addRootImage(image);
4870
4871 // process images
4872 try {
4873 const char* path = image->getPath();
4874 #if SUPPORT_ACCELERATE_TABLES
4875 if ( image == sAllCacheImagesProxy )
4876 path = sAllCacheImagesProxy->getIndexedPath(cacheIndex);
4877 #endif
4878 image->link(gLinkContext, forceLazysBound, false, neverUnload, loaderRPaths, path);
4879 }
4880 catch (const char* msg) {
4881 garbageCollectImages();
4882 throw;
4883 }
4884 }
4885
4886
4887 void runInitializers(ImageLoader* image)
4888 {
4889 // do bottom up initialization
4890 ImageLoader::InitializerTimingList initializerTimes[allImagesCount()];
4891 initializerTimes[0].count = 0;
4892 image->runInitializers(gLinkContext, initializerTimes[0]);
4893 }
4894
4895 // This function is called at the end of dlclose() when the reference count goes to zero.
4896 // The dylib being unloaded may have brought in other dependent dylibs when it was loaded.
4897 // Those dependent dylibs need to be unloaded, but only if they are not referenced by
4898 // something else. We use a standard mark and sweep garbage collection.
4899 //
4900 // The tricky part is that when a dylib is unloaded it may have a termination function that
4901 // can run and itself call dlclose() on yet another dylib. The problem is that this
4902 // sort of gabage collection is not re-entrant. Instead a terminator's call to dlclose()
4903 // which calls garbageCollectImages() will just set a flag to re-do the garbage collection
4904 // when the current pass is done.
4905 //
4906 // Also note that this is done within the dyld global lock, so it is always single threaded.
4907 //
4908 void garbageCollectImages()
4909 {
4910 static bool sDoingGC = false;
4911 static bool sRedo = false;
4912
4913 if ( sDoingGC ) {
4914 // GC is currently being run, just set a flag to have it run again.
4915 sRedo = true;
4916 return;
4917 }
4918
4919 sDoingGC = true;
4920 do {
4921 sRedo = false;
4922
4923 // mark phase: mark all images not-in-use
4924 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4925 ImageLoader* image = *it;
4926 //dyld::log("gc: neverUnload=%d name=%s\n", image->neverUnload(), image->getShortName());
4927 image->markNotUsed();
4928 }
4929
4930 #pragma clang diagnostic push
4931 #pragma clang diagnostic ignored "-Wdeprecated-declarations"
4932 // sweep phase: mark as in-use, images reachable from never-unload or in-use image
4933 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4934 ImageLoader* image = *it;
4935 if ( (image->dlopenCount() != 0) || (image->neverUnload() && (image->getState() >= dyld_image_state_bound)) || (image == sMainExecutable) ) {
4936 OSSpinLockLock(&sDynamicReferencesLock);
4937 image->markedUsedRecursive(sDynamicReferences);
4938 OSSpinLockUnlock(&sDynamicReferencesLock);
4939 }
4940 }
4941 #pragma clang diagnostic pop
4942
4943 // collect phase: build array of images not marked in-use
4944 ImageLoader* deadImages[sAllImages.size()];
4945 unsigned deadCount = 0;
4946 int maxRangeCount = 0;
4947 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4948 ImageLoader* image = *it;
4949 if ( ! image->isMarkedInUse() ) {
4950 deadImages[deadCount++] = image;
4951 if (gLogAPIs) dyld::log("dlclose(), found unused image %p %s\n", image, image->getShortName());
4952 maxRangeCount += image->segmentCount();
4953 }
4954 }
4955
4956 // collect phase: run termination routines for images not marked in-use
4957 if ( maxRangeCount != 0 ) {
4958 __cxa_range_t ranges[maxRangeCount];
4959 int rangeCount = 0;
4960 for (unsigned i=0; i < deadCount; ++i) {
4961 ImageLoader* image = deadImages[i];
4962 for (unsigned int j=0; j < image->segmentCount(); ++j) {
4963 if ( !image->segExecutable(j) )
4964 continue;
4965 if ( rangeCount < maxRangeCount ) {
4966 ranges[rangeCount].addr = (const void*)image->segActualLoadAddress(j);
4967 ranges[rangeCount].length = image->segSize(j);
4968 ++rangeCount;
4969 }
4970 }
4971 try {
4972 runImageStaticTerminators(image);
4973 }
4974 catch (const char* msg) {
4975 dyld::warn("problem running terminators for image: %s\n", msg);
4976 }
4977 }
4978
4979 // <rdar://problem/14718598> dyld should call __cxa_finalize_ranges()
4980 if ( (rangeCount > 0) && (gLibSystemHelpers != NULL) && (gLibSystemHelpers->version >= 13) )
4981 (*gLibSystemHelpers->cxa_finalize_ranges)(ranges, rangeCount);
4982 }
4983
4984 // collect phase: delete all images which are not marked in-use
4985 bool mightBeMore;
4986 do {
4987 mightBeMore = false;
4988 for (std::vector<ImageLoader*>::iterator it=sAllImages.begin(); it != sAllImages.end(); it++) {
4989 ImageLoader* image = *it;
4990 if ( ! image->isMarkedInUse() ) {
4991 try {
4992 if (gLogAPIs) dyld::log("dlclose(), deleting %p %s\n", image, image->getShortName());
4993 removeImage(image);
4994 ImageLoader::deleteImage(image);
4995 mightBeMore = true;
4996 break; // interator in invalidated by this removal
4997 }
4998 catch (const char* msg) {
4999 dyld::warn("problem deleting image: %s\n", msg);
5000 }
5001 }
5002 }
5003 } while ( mightBeMore );
5004 } while (sRedo);
5005 sDoingGC = false;
5006
5007 //printAllImages();
5008
5009 }
5010
5011
5012 static void preflight_finally(ImageLoader* image)
5013 {
5014 if ( image->isBundle() ) {
5015 removeImageFromAllImages(image->machHeader());
5016 ImageLoader::deleteImage(image);
5017 }
5018 sBundleBeingLoaded = NULL;
5019 dyld::garbageCollectImages();
5020 }
5021
5022
5023 void preflight(ImageLoader* image, const ImageLoader::RPathChain& loaderRPaths, unsigned cacheIndex)
5024 {
5025 try {
5026 if ( image->isBundle() )
5027 sBundleBeingLoaded = image; // hack
5028 const char* path = image->getPath();
5029 #if SUPPORT_ACCELERATE_TABLES
5030 if ( image == sAllCacheImagesProxy )
5031 path = sAllCacheImagesProxy->getIndexedPath(cacheIndex);
5032 #endif
5033 image->link(gLinkContext, false, true, false, loaderRPaths, path);
5034 }
5035 catch (const char* msg) {
5036 preflight_finally(image);
5037 throw;
5038 }
5039 preflight_finally(image);
5040 }
5041
5042 static void loadInsertedDylib(const char* path)
5043 {
5044 unsigned cacheIndex;
5045 try {
5046 LoadContext context;
5047 context.useSearchPaths = false;
5048 context.useFallbackPaths = false;
5049 context.useLdLibraryPath = false;
5050 context.implicitRPath = false;
5051 context.matchByInstallName = false;
5052 context.dontLoad = false;
5053 context.mustBeBundle = false;
5054 context.mustBeDylib = true;
5055 context.canBePIE = false;
5056 context.origin = NULL; // can't use @loader_path with DYLD_INSERT_LIBRARIES
5057 context.rpath = NULL;
5058 load(path, context, cacheIndex);
5059 }
5060 catch (const char* msg) {
5061 if ( gLinkContext.allowInsertFailures )
5062 dyld::log("dyld: warning: could not load inserted library '%s' into hardened process because %s\n", path, msg);
5063 else
5064 halt(dyld::mkstringf("could not load inserted library '%s' because %s\n", path, msg));
5065 }
5066 catch (...) {
5067 halt(dyld::mkstringf("could not load inserted library '%s'\n", path));
5068 }
5069 }
5070
5071
5072 static void configureProcessRestrictions(const macho_header* mainExecutableMH, const char* envp[])
5073 {
5074 uint64_t amfiInputFlags = 0;
5075 #if TARGET_OS_SIMULATOR
5076 amfiInputFlags |= AMFI_DYLD_INPUT_PROC_IN_SIMULATOR;
5077 #elif __MAC_OS_X_VERSION_MIN_REQUIRED
5078 if ( hasRestrictedSegment(mainExecutableMH) )
5079 amfiInputFlags |= AMFI_DYLD_INPUT_PROC_HAS_RESTRICT_SEG;
5080 #elif __IPHONE_OS_VERSION_MIN_REQUIRED
5081 if ( isFairPlayEncrypted(mainExecutableMH) )
5082 amfiInputFlags |= AMFI_DYLD_INPUT_PROC_IS_ENCRYPTED;
5083 #endif
5084 uint64_t amfiOutputFlags = 0;
5085 const char* amfiFake = nullptr;
5086 if ( dyld3::internalInstall() && dyld3::BootArgs::enableDyldTestMode() ) {
5087 amfiFake = _simple_getenv(envp, "DYLD_AMFI_FAKE");
5088 }
5089 if ( amfiFake != nullptr ) {
5090 amfiOutputFlags = hexToUInt64(amfiFake, nullptr);
5091 }
5092 if ( (amfiFake != nullptr) || (amfi_check_dyld_policy_self(amfiInputFlags, &amfiOutputFlags) == 0) ) {
5093 gLinkContext.allowAtPaths = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_AT_PATH);
5094 gLinkContext.allowEnvVarsPrint = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_PRINT_VARS);
5095 gLinkContext.allowEnvVarsPath = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_PATH_VARS);
5096 gLinkContext.allowEnvVarsSharedCache = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_CUSTOM_SHARED_CACHE);
5097 gLinkContext.allowClassicFallbackPaths = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_FALLBACK_PATHS);
5098 gLinkContext.allowInsertFailures = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_FAILED_LIBRARY_INSERTION);
5099 #ifdef AMFI_RETURNS_INTERPOSING_FLAG
5100 gLinkContext.allowInterposing = (amfiOutputFlags & AMFI_DYLD_OUTPUT_ALLOW_LIBRARY_INTERPOSING);
5101 #else
5102 gLinkContext.allowInterposing = true;
5103 #endif
5104 }
5105 else {
5106 #if __MAC_OS_X_VERSION_MIN_REQUIRED
5107 // support chrooting from old kernel
5108 bool isRestricted = false;
5109 bool libraryValidation = false;
5110 // any processes with setuid or setgid bit set or with __RESTRICT segment is restricted
5111 if ( issetugid() || hasRestrictedSegment(mainExecutableMH) ) {
5112 isRestricted = true;
5113 }
5114 bool usingSIP = (csr_check(CSR_ALLOW_TASK_FOR_PID) != 0);
5115 uint32_t flags;
5116 if ( csops(0, CS_OPS_STATUS, &flags, sizeof(flags)) != -1 ) {
5117 // On OS X CS_RESTRICT means the program was signed with entitlements
5118 if ( ((flags & CS_RESTRICT) == CS_RESTRICT) && usingSIP ) {
5119 isRestricted = true;
5120 }
5121 // Library Validation loosens searching but requires everything to be code signed
5122 if ( flags & CS_REQUIRE_LV ) {
5123 isRestricted = false;
5124 libraryValidation = true;
5125 }
5126 }
5127 gLinkContext.allowAtPaths = !isRestricted;
5128 gLinkContext.allowEnvVarsPrint = !isRestricted;
5129 gLinkContext.allowEnvVarsPath = !isRestricted;
5130 gLinkContext.allowEnvVarsSharedCache = !libraryValidation || !usingSIP;
5131 gLinkContext.allowClassicFallbackPaths = !isRestricted;
5132 gLinkContext.allowInsertFailures = false;
5133 gLinkContext.allowInterposing = true;
5134 #else
5135 halt("amfi_check_dyld_policy_self() failed\n");
5136 #endif
5137 }
5138 }
5139
5140 // called by _dyld_register_driverkit_main()
5141 void setMainEntry(void (*main)())
5142 {
5143 if ( sEntryOveride == nullptr )
5144 sEntryOveride = main;
5145 else
5146 halt("_dyld_register_driverkit_main() may only be called once");
5147 }
5148
5149 bool processIsRestricted()
5150 {
5151 #if __MAC_OS_X_VERSION_MIN_REQUIRED
5152 return !gLinkContext.allowEnvVarsPath;
5153 #else
5154 return false;
5155 #endif
5156 }
5157
5158
5159 // <rdar://problem/10583252> Add dyld to uuidArray to enable symbolication of stackshots
5160 static void addDyldImageToUUIDList()
5161 {
5162 const struct macho_header* mh = (macho_header*)&__dso_handle;
5163 const uint32_t cmd_count = mh->ncmds;
5164 const struct load_command* const cmds = (struct load_command*)((char*)mh + sizeof(macho_header));
5165 const struct load_command* cmd = cmds;
5166 for (uint32_t i = 0; i < cmd_count; ++i) {
5167 switch (cmd->cmd) {
5168 case LC_UUID: {
5169 uuid_command* uc = (uuid_command*)cmd;
5170 dyld_uuid_info info;
5171 info.imageLoadAddress = (mach_header*)mh;
5172 memcpy(info.imageUUID, uc->uuid, 16);
5173 addNonSharedCacheImageUUID(info);
5174 return;
5175 }
5176 }
5177 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
5178 }
5179 }
5180
5181 void notifyKernelAboutImage(const struct macho_header* mh, const char* fileInfo)
5182 {
5183 const char *endptr = nullptr;
5184 uint64_t tmp = hexToUInt64(fileInfo, &endptr);
5185 fsid_t fsid = *reinterpret_cast<fsid_t *>(&tmp);
5186 uint64_t fsobj_id_scalar = 0;
5187 fsobj_id_t fsobj_id = {0};
5188 if (endptr != nullptr) {
5189 fsobj_id_scalar = hexToUInt64(endptr+1, &endptr);
5190 fsobj_id = *reinterpret_cast<fsobj_id_t *>(&tmp);
5191 }
5192 const uint32_t cmd_count = mh->ncmds;
5193 const struct load_command* const cmds = (struct load_command*)((char*)mh + sizeof(macho_header));
5194 const struct load_command* cmd = cmds;
5195 for (uint32_t i = 0; i < cmd_count; ++i) {
5196 switch (cmd->cmd) {
5197 case LC_UUID: {
5198 // Add dyld to the kernel image info
5199 uuid_command* uc = (uuid_command*)cmd;
5200 char path[MAXPATHLEN];
5201 if (fsgetpath(path, MAXPATHLEN, &fsid, fsobj_id_scalar) < 0) {
5202 path[0] = 0;
5203 }
5204 dyld3::kdebug_trace_dyld_image(DBG_DYLD_UUID_MAP_A, path, (const uuid_t *)&uc->uuid[0], fsobj_id, fsid, (const mach_header *)mh);
5205 return;
5206 }
5207 }
5208 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
5209 }
5210 }
5211
5212 #if __MAC_OS_X_VERSION_MIN_REQUIRED
5213 typedef int (*open_proc_t)(const char*, int, int);
5214 typedef int (*fcntl_proc_t)(int, int, void*);
5215 typedef int (*ioctl_proc_t)(int, unsigned long, void*);
5216 static void* getProcessInfo() { return dyld::gProcessInfo; }
5217 static const SyscallHelpers sSysCalls = {
5218 12,
5219 // added in version 1
5220 (open_proc_t)&open,
5221 &close,
5222 &pread,
5223 &write,
5224 &mmap,
5225 &munmap,
5226 &madvise,
5227 &stat,
5228 (fcntl_proc_t)&fcntl,
5229 (ioctl_proc_t)&ioctl,
5230 &issetugid,
5231 &getcwd,
5232 &realpath,
5233 &vm_allocate,
5234 &vm_deallocate,
5235 &vm_protect,
5236 &vlog,
5237 &vwarn,
5238 &pthread_mutex_lock,
5239 &pthread_mutex_unlock,
5240 &mach_thread_self,
5241 &mach_port_deallocate,
5242 &task_self_trap,
5243 &mach_timebase_info,
5244 &OSAtomicCompareAndSwapPtrBarrier,
5245 &OSMemoryBarrier,
5246 &getProcessInfo,
5247 &__error,
5248 &mach_absolute_time,
5249 // added in version 2
5250 &thread_switch,
5251 // added in version 3
5252 &opendir,
5253 &readdir_r,
5254 &closedir,
5255 // added in version 4
5256 &coresymbolication_load_notifier,
5257 &coresymbolication_unload_notifier,
5258 // Added in version 5
5259 &proc_regionfilename,
5260 &getpid,
5261 &mach_port_insert_right,
5262 &mach_port_allocate,
5263 &mach_msg,
5264 // Added in version 6
5265 &abort_with_payload,
5266 // Added in version 7
5267 &legacy_task_register_dyld_image_infos,
5268 &legacy_task_unregister_dyld_image_infos,
5269 &legacy_task_get_dyld_image_infos,
5270 &legacy_task_register_dyld_shared_cache_image_info,
5271 &legacy_task_register_dyld_set_dyld_state,
5272 &legacy_task_register_dyld_get_process_state,
5273 // Added in version 8
5274 &task_info,
5275 &thread_info,
5276 &kdebug_is_enabled,
5277 &kdebug_trace,
5278 // Added in version 9
5279 &kdebug_trace_string,
5280 // Added in version 10
5281 &amfi_check_dyld_policy_self,
5282 // Added in version 11
5283 &notifyMonitoringDyldMain,
5284 &notifyMonitoringDyld,
5285 // Add in version 12
5286 &mach_msg_destroy,
5287 &mach_port_construct,
5288 &mach_port_destruct
5289 };
5290
5291 __attribute__((noinline))
5292 static const char* useSimulatorDyld(int fd, const macho_header* mainExecutableMH, const char* dyldPath,
5293 int argc, const char* argv[], const char* envp[], const char* apple[],
5294 uintptr_t* startGlue, uintptr_t* mainAddr)
5295 {
5296 *startGlue = 0;
5297 *mainAddr = 0;
5298
5299 // <rdar://problem/25311921> simulator does not support restricted processes
5300 uint32_t flags;
5301 if ( csops(0, CS_OPS_STATUS, &flags, sizeof(flags)) == -1 )
5302 return "csops() failed";
5303 if ( (flags & CS_RESTRICT) == CS_RESTRICT )
5304 return "dyld_sim cannot be loaded in a restricted process";
5305 if ( issetugid() )
5306 return "dyld_sim cannot be loaded in a setuid process";
5307 if ( hasRestrictedSegment(mainExecutableMH) )
5308 return "dyld_sim cannot be loaded in a restricted process";
5309
5310 // get file size of dyld_sim
5311 struct stat sb;
5312 if ( fstat(fd, &sb) == -1 )
5313 return "stat(dyld_sim) failed";
5314
5315 // read first page of dyld_sim file
5316 uint8_t firstPage[4096];
5317 if ( pread(fd, firstPage, 4096, 0) != 4096 )
5318 return "pread(dyld_sim) failed";
5319
5320 // if fat file, pick matching slice
5321 uint64_t fileOffset = 0;
5322 uint64_t fileLength = sb.st_size;
5323 const fat_header* fileStartAsFat = (fat_header*)firstPage;
5324 if ( fileStartAsFat->magic == OSSwapBigToHostInt32(FAT_MAGIC) ) {
5325 if ( !fatFindBest(fileStartAsFat, &fileOffset, &fileLength) )
5326 return "no matching arch in dyld_sim";
5327 // re-read buffer from start of mach-o slice in fat file
5328 if ( pread(fd, firstPage, 4096, fileOffset) != 4096 )
5329 return "pread(dyld_sim) failed";
5330 }
5331 else if ( !isCompatibleMachO(firstPage, dyldPath) ) {
5332 return "dyld_sim is not compatible with the loaded process, likely due to architecture mismatch";
5333 }
5334
5335 // calculate total size of dyld segments
5336 const macho_header* mh = (const macho_header*)firstPage;
5337 struct macho_segment_command* lastSeg = NULL;
5338 struct macho_segment_command* firstSeg = NULL;
5339 uintptr_t mappingSize = 0;
5340 uintptr_t preferredLoadAddress = 0;
5341 const uint32_t cmd_count = mh->ncmds;
5342 if ( mh->sizeofcmds > 4096 )
5343 return "dyld_sim load commands to large";
5344 if ( (sizeof(macho_header) + mh->sizeofcmds) > 4096 )
5345 return "dyld_sim load commands to large";
5346 struct linkedit_data_command* codeSigCmd = NULL;
5347 const struct load_command* const cmds = (struct load_command*)(((char*)mh)+sizeof(macho_header));
5348 const struct load_command* const endCmds = (struct load_command*)(((char*)mh) + sizeof(macho_header) + mh->sizeofcmds);
5349 const struct load_command* cmd = cmds;
5350 for (uint32_t i = 0; i < cmd_count; ++i) {
5351 uint32_t cmdLength = cmd->cmdsize;
5352 if ( cmdLength < 8 )
5353 return "dyld_sim load command too small";
5354 const struct load_command* const nextCmd = (const struct load_command*)(((char*)cmd)+cmdLength);
5355 if ( (nextCmd > endCmds) || (nextCmd < cmd) )
5356 return "dyld_sim load command too large";
5357 switch (cmd->cmd) {
5358 case LC_SEGMENT_COMMAND:
5359 {
5360 struct macho_segment_command* seg = (struct macho_segment_command*)cmd;
5361 if ( seg->vmaddr + seg->vmsize < seg->vmaddr )
5362 return "dyld_sim seg wraps address space";
5363 if ( seg->vmsize < seg->filesize )
5364 return "dyld_sim seg vmsize too small";
5365 if ( (seg->fileoff + seg->filesize) < seg->fileoff )
5366 return "dyld_sim seg size wraps address space";
5367 if ( lastSeg == NULL ) {
5368 // first segment must be __TEXT and start at beginning of file/slice
5369 firstSeg = seg;
5370 if ( strcmp(seg->segname, "__TEXT") != 0 )
5371 return "dyld_sim first segment not __TEXT";
5372 if ( seg->fileoff != 0 )
5373 return "dyld_sim first segment not at file offset zero";
5374 if ( seg->filesize < (sizeof(macho_header) + mh->sizeofcmds) )
5375 return "dyld_sim first segment smaller than load commands";
5376 preferredLoadAddress = seg->vmaddr;
5377 }
5378 else {
5379 // other sements must be continguous with previous segment and not executable
5380 if ( lastSeg->fileoff + lastSeg->filesize != seg->fileoff )
5381 return "dyld_sim segments not contiguous";
5382 if ( lastSeg->vmaddr + lastSeg->vmsize != seg->vmaddr )
5383 return "dyld_sim segments not address contiguous";
5384 if ( (seg->initprot & VM_PROT_EXECUTE) != 0 )
5385 return "dyld_sim non-first segment is executable";
5386 }
5387 mappingSize += seg->vmsize;
5388 lastSeg = seg;
5389 }
5390 break;
5391 case LC_SEGMENT_COMMAND_WRONG:
5392 return "dyld_sim wrong load segment load command";
5393 case LC_CODE_SIGNATURE:
5394 codeSigCmd = (struct linkedit_data_command*)cmd;
5395 break;
5396 }
5397 cmd = nextCmd;
5398 }
5399 // last segment must be named __LINKEDIT and not writable
5400 if ( lastSeg == NULL )
5401 return "dyld_sim has no segments";
5402 if ( strcmp(lastSeg->segname, "__LINKEDIT") != 0 )
5403 return "dyld_sim last segment not __LINKEDIT";
5404 if ( lastSeg->initprot & VM_PROT_WRITE )
5405 return "dyld_sim __LINKEDIT segment writable";
5406
5407 // must have code signature which is contained within LINKEDIT segment
5408 if ( codeSigCmd == NULL )
5409 return "dyld_sim not code signed";
5410 if ( codeSigCmd->dataoff < lastSeg->fileoff )
5411 return "dyld_sim code signature not in __LINKEDIT";
5412 if ( (codeSigCmd->dataoff + codeSigCmd->datasize) < codeSigCmd->dataoff )
5413 return "dyld_sim code signature size wraps";
5414 if ( (codeSigCmd->dataoff + codeSigCmd->datasize) > (lastSeg->fileoff + lastSeg->filesize) )
5415 return "dyld_sim code signature extends beyond __LINKEDIT";
5416
5417 // register code signature with kernel before mmap()ing segments
5418 fsignatures_t siginfo;
5419 siginfo.fs_file_start=fileOffset; // start of mach-o slice in fat file
5420 siginfo.fs_blob_start=(void*)(long)(codeSigCmd->dataoff); // start of code-signature in mach-o file
5421 siginfo.fs_blob_size=codeSigCmd->datasize; // size of code-signature
5422 int result = fcntl(fd, F_ADDFILESIGS_FOR_DYLD_SIM, &siginfo);
5423 if ( result == -1 ) {
5424 return mkstringf("dyld_sim fcntl(F_ADDFILESIGS_FOR_DYLD_SIM) failed with errno=%d", errno);
5425 }
5426 // file range covered by code signature must extend up to code signature itself
5427 if ( siginfo.fs_file_start < codeSigCmd->dataoff )
5428 return mkstringf("dyld_sim code signature does not cover all of dyld_sim. Signature covers up to 0x%08lX. Signature starts at 0x%08X", (unsigned long)siginfo.fs_file_start, codeSigCmd->dataoff);
5429
5430 // reserve space, then mmap each segment
5431 vm_address_t loadAddress = 0;
5432 if ( ::vm_allocate(mach_task_self(), &loadAddress, mappingSize, VM_FLAGS_ANYWHERE) != 0 )
5433 return "dyld_sim cannot allocate space";
5434 cmd = cmds;
5435 struct source_version_command* dyldVersionCmd = NULL;
5436 struct uuid_command* uuidCmd = NULL;
5437 for (uint32_t i = 0; i < cmd_count; ++i) {
5438 switch (cmd->cmd) {
5439 case LC_SEGMENT_COMMAND:
5440 {
5441 struct macho_segment_command* seg = (struct macho_segment_command*)cmd;
5442 uintptr_t requestedLoadAddress = seg->vmaddr - preferredLoadAddress + loadAddress;
5443 void* segAddress = ::mmap((void*)requestedLoadAddress, seg->filesize, seg->initprot, MAP_FIXED | MAP_PRIVATE, fd, fileOffset + seg->fileoff);
5444 //dyld::log("dyld_sim %s mapped at %p\n", seg->segname, segAddress);
5445 if ( segAddress == (void*)(-1) )
5446 return "dyld_sim mmap() of segment failed";
5447 if ( ((uintptr_t)segAddress < loadAddress) || ((uintptr_t)segAddress+seg->filesize > loadAddress+mappingSize) )
5448 return "dyld_sim mmap() to wrong location";
5449 }
5450 break;
5451 case LC_SOURCE_VERSION:
5452 dyldVersionCmd = (struct source_version_command*)cmd;
5453 break;
5454 case LC_UUID: {
5455 uuidCmd = (uuid_command*)cmd;
5456 break;
5457 }
5458 }
5459 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
5460 }
5461 close(fd);
5462
5463 // walk newly mapped dyld_sim __TEXT load commands to find entry point
5464 uintptr_t entry = 0;
5465 cmd = (struct load_command*)(((char*)loadAddress)+sizeof(macho_header));
5466 const uint32_t count = ((macho_header*)(loadAddress))->ncmds;
5467 for (uint32_t i = 0; i < count; ++i) {
5468 if (cmd->cmd == LC_UNIXTHREAD) {
5469 #if __i386__
5470 const i386_thread_state_t* registers = (i386_thread_state_t*)(((char*)cmd) + 16);
5471 // entry point must be in first segment
5472 if ( registers->__eip < firstSeg->vmaddr )
5473 return "dyld_sim entry point not in __TEXT segment";
5474 if ( registers->__eip > (firstSeg->vmaddr + firstSeg->vmsize) )
5475 return "dyld_sim entry point not in __TEXT segment";
5476 entry = (registers->__eip + loadAddress - preferredLoadAddress);
5477 #elif __x86_64__
5478 const x86_thread_state64_t* registers = (x86_thread_state64_t*)(((char*)cmd) + 16);
5479 // entry point must be in first segment
5480 if ( registers->__rip < firstSeg->vmaddr )
5481 return "dyld_sim entry point not in __TEXT segment";
5482 if ( registers->__rip > (firstSeg->vmaddr + firstSeg->vmsize) )
5483 return "dyld_sim entry point not in __TEXT segment";
5484 entry = (registers->__rip + loadAddress - preferredLoadAddress);
5485 #endif
5486 }
5487 cmd = (const struct load_command*)(((char*)cmd)+cmd->cmdsize);
5488 }
5489 if ( entry == 0 )
5490 return "dyld_sim entry not found";
5491
5492 // notify debugger that dyld_sim is loaded
5493 dyld_image_info info;
5494 info.imageLoadAddress = (mach_header*)loadAddress;
5495 info.imageFilePath = strdup(dyldPath);
5496 info.imageFileModDate = sb.st_mtime;
5497 addImagesToAllImages(1, &info);
5498 dyld::gProcessInfo->notification(dyld_image_adding, 1, &info);
5499
5500 fsid_t fsid = {{0, 0}};
5501 fsobj_id_t fsobj = {0};
5502 ino_t inode = sb.st_ino;
5503 fsobj.fid_objno = (uint32_t)inode;
5504 fsobj.fid_generation = (uint32_t)(inode>>32);
5505 fsid.val[0] = sb.st_dev;
5506 dyld3::kdebug_trace_dyld_image(DBG_DYLD_UUID_MAP_A, dyldPath, (const uuid_t *)&uuidCmd->uuid[0], fsobj, fsid, (const mach_header *)mh);
5507
5508 const char** appleParams = apple;
5509
5510 // <rdar://problem/5077374> have host dyld detach macOS shared cache from process before jumping into dyld_sim
5511 dyld3::deallocateExistingSharedCache();
5512
5513 // jump into new simulator dyld
5514 typedef uintptr_t (*sim_entry_proc_t)(int argc, const char* argv[], const char* envp[], const char* apple[],
5515 const macho_header* mainExecutableMH, const macho_header* dyldMH, uintptr_t dyldSlide,
5516 const dyld::SyscallHelpers* vtable, uintptr_t* startGlue);
5517 sim_entry_proc_t newDyld = (sim_entry_proc_t)entry;
5518 *mainAddr = (*newDyld)(argc, argv, envp, appleParams, mainExecutableMH, (macho_header*)loadAddress,
5519 loadAddress - preferredLoadAddress,
5520 &sSysCalls, startGlue);
5521 return NULL;
5522 }
5523 #endif
5524
5525 //
5526 // If the DYLD_SKIP_MAIN environment is set to 1, dyld will return the
5527 // address of this function instead of main() in the target program which
5528 // __dyld_start jumps to. Useful for qualifying dyld itself.
5529 //
5530 int
5531 fake_main()
5532 {
5533 return 0;
5534 }
5535
5536
5537
5538 #if !TARGET_OS_SIMULATOR
5539
5540 static bool envVarMatches(const dyld3::closure::LaunchClosure* mainClosure, const char* envp[], const char* varName)
5541 {
5542 __block const char* valueFromClosure = nullptr;
5543 mainClosure->forEachEnvVar(^(const char* keyEqualValue, bool& stop) {
5544 size_t keyLen = strlen(varName);
5545 if ( (strncmp(varName, keyEqualValue, keyLen) == 0) && (keyEqualValue[keyLen] == '=') ) {
5546 valueFromClosure = &keyEqualValue[keyLen+1];
5547 stop = true;
5548 }
5549 });
5550
5551 const char* valueFromEnv = _simple_getenv(envp, varName);
5552
5553 bool inClosure = (valueFromClosure != nullptr);
5554 bool inEnv = (valueFromEnv != nullptr);
5555 if ( inClosure != inEnv )
5556 return false;
5557 if ( !inClosure && !inEnv )
5558 return true;
5559 return ( strcmp(valueFromClosure, valueFromEnv) == 0 );
5560 }
5561
5562 static const char* const sEnvVarsToCheck[] = {
5563 "DYLD_LIBRARY_PATH",
5564 "DYLD_FRAMEWORK_PATH",
5565 "DYLD_FALLBACK_LIBRARY_PATH",
5566 "DYLD_FALLBACK_FRAMEWORK_PATH",
5567 "DYLD_INSERT_LIBRARIES",
5568 "DYLD_IMAGE_SUFFIX",
5569 "DYLD_VERSIONED_FRAMEWORK_PATH",
5570 "DYLD_VERSIONED_LIBRARY_PATH",
5571 "DYLD_ROOT_PATH"
5572 };
5573
5574 static bool envVarsMatch(const dyld3::closure::LaunchClosure* mainClosure, const char* envp[])
5575 {
5576 for (const char* envVar : sEnvVarsToCheck) {
5577 if ( !envVarMatches(mainClosure, envp, envVar) ) {
5578 if ( gLinkContext.verboseWarnings )
5579 dyld::log("dyld: closure %p not used because %s changed\n", mainClosure, envVar);
5580 return false;
5581 }
5582 }
5583
5584 // FIXME: dyld3 doesn't support versioned paths so we need to fall back to dyld2 if we have them.
5585 // <rdar://problem/37004660> dyld3: support DYLD_VERSIONED_*_PATHs ?
5586 if ( sEnv.DYLD_VERSIONED_LIBRARY_PATH != nullptr ) {
5587 if ( gLinkContext.verboseWarnings )
5588 dyld::log("dyld: closure %p not used because DYLD_VERSIONED_LIBRARY_PATH used\n", mainClosure);
5589 return false;
5590 }
5591 if ( sEnv.DYLD_VERSIONED_FRAMEWORK_PATH != nullptr ) {
5592 if ( gLinkContext.verboseWarnings )
5593 dyld::log("dyld: closure %p not used because DYLD_VERSIONED_FRAMEWORK_PATH used\n", mainClosure);
5594 return false;
5595 }
5596
5597 return true;
5598 }
5599
5600 static bool closureValid(const dyld3::closure::LaunchClosure* mainClosure, const dyld3::closure::LoadedFileInfo& mainFileInfo,
5601 const uint8_t* mainExecutableCDHash, bool closureInCache, const char* envp[])
5602 {
5603 if ( closureInCache ) {
5604 // We can only use the cache closure if the cache version is the same as dyld
5605 if (sSharedCacheLoadInfo.loadAddress->header.formatVersion != dyld3::closure::kFormatVersion) {
5606 if ( gLinkContext.verboseWarnings )
5607 dyld::log("dyld: dyld closure version 0x%08X does not match dyld cache version 0x%08X\n",
5608 dyld3::closure::kFormatVersion, sSharedCacheLoadInfo.loadAddress->header.formatVersion);
5609 return false;
5610 }
5611 if (sForceInvalidSharedCacheClosureFormat) {
5612 if ( gLinkContext.verboseWarnings )
5613 dyld::log("dyld: closure %p dyld cache version forced invalid\n", mainClosure);
5614 return false;
5615 }
5616 } else {
5617 // verify current dyld cache is same as expected
5618 uuid_t expectedCacheUUID;
5619 if ( mainClosure->builtAgainstDyldCache(expectedCacheUUID) ) {
5620 if ( sSharedCacheLoadInfo.loadAddress == nullptr ) {
5621 if ( gLinkContext.verboseWarnings )
5622 dyld::log("dyld: closure %p dyld cache not loaded\n", mainClosure);
5623 return false;
5624 }
5625 else {
5626 uuid_t actualCacheUUID;
5627 sSharedCacheLoadInfo.loadAddress->getUUID(actualCacheUUID);
5628 if ( memcmp(expectedCacheUUID, actualCacheUUID, sizeof(uuid_t)) != 0 ) {
5629 if ( gLinkContext.verboseWarnings )
5630 dyld::log("dyld: closure %p not used because built against different dyld cache\n", mainClosure);
5631 return false;
5632 }
5633 }
5634 }
5635 else {
5636 // closure built assume there is no dyld cache
5637 if ( sSharedCacheLoadInfo.loadAddress != nullptr ) {
5638 if ( gLinkContext.verboseWarnings )
5639 dyld::log("dyld: closure %p built expecting no dyld cache\n", mainClosure);
5640 return false;
5641 }
5642 }
5643 #if __IPHONE_OS_VERSION_MIN_REQUIRED
5644 // verify this closure is not from a previous reboot
5645 const char* expectedBootUUID = mainClosure->bootUUID();
5646 char actualBootSessionUUID[256] = { 0 };
5647 size_t bootSize = sizeof(actualBootSessionUUID);
5648 bool gotActualBootUUID = (sysctlbyname("kern.bootsessionuuid", actualBootSessionUUID, &bootSize, NULL, 0) == 0);
5649 if ( gotActualBootUUID ) {
5650 // If we got a boot UUID then we should have also recorded it in the closure
5651 if ( expectedBootUUID == nullptr) {
5652 // The closure didn't have a UUID but now we do. This isn't valid.
5653 if ( gLinkContext.verboseWarnings )
5654 dyld::log("dyld: closure %p missing boot-UUID\n", mainClosure);
5655 return false;
5656 } else if ( strcmp(expectedBootUUID, actualBootSessionUUID) != 0 ) {
5657 if ( gLinkContext.verboseWarnings )
5658 dyld::log("dyld: closure %p built in different boot context\n", mainClosure);
5659 return false;
5660 }
5661 } else {
5662 // We didn't get a UUID now, which is ok so long as the closure also doesn't have one.
5663 if ( expectedBootUUID != nullptr) {
5664 if ( gLinkContext.verboseWarnings )
5665 dyld::log("dyld: closure %p has boot-UUID\n", mainClosure);
5666 return false;
5667 }
5668 }
5669 #endif
5670 }
5671
5672 // verify all mach-o files have not changed since closure was built
5673 __block bool foundFileThatInvalidatesClosure = false;
5674 mainClosure->images()->forEachImage(^(const dyld3::closure::Image* image, bool& stop) {
5675 __block uint64_t expectedInode;
5676 __block uint64_t expectedMtime;
5677 if ( image->hasFileModTimeAndInode(expectedInode, expectedMtime) ) {
5678 struct stat statBuf;
5679 if ( ::stat(image->path(), &statBuf) == 0 ) {
5680 if ( (statBuf.st_mtime != expectedMtime) || (statBuf.st_ino != expectedInode) ) {
5681 if ( gLinkContext.verboseWarnings )
5682 dyld::log("dyld: closure %p not used because mtime/inode for '%s' has changed since closure was built\n", mainClosure, image->path());
5683 foundFileThatInvalidatesClosure = true;
5684 stop = true;
5685 }
5686 }
5687 else {
5688 if ( gLinkContext.verboseWarnings )
5689 dyld::log("dyld: closure %p not used because '%s' is needed by closure but is missing\n", mainClosure, image->path());
5690 foundFileThatInvalidatesClosure = true;
5691 stop = true;
5692 }
5693 }
5694 });
5695 if ( foundFileThatInvalidatesClosure )
5696 return false;
5697
5698 // verify cdHash of main executable is same as recorded in closure
5699 const dyld3::closure::Image* mainImage = mainClosure->images()->imageForNum(mainClosure->topImage());
5700
5701 __block bool foundCDHash = false;
5702 __block bool foundValidCDHash = false;
5703 mainImage->forEachCDHash(^(const uint8_t *expectedHash, bool& stop) {
5704 if ( mainExecutableCDHash == nullptr ) {
5705 if ( gLinkContext.verboseWarnings )
5706 dyld::log("dyld: closure %p not used because main executable is not code signed but was expected to be\n", mainClosure);
5707 stop = true;
5708 return;
5709 }
5710 foundCDHash = true;
5711 if ( memcmp(mainExecutableCDHash, expectedHash, 20) == 0 ) {
5712 // found a match, so lets use this one.
5713 foundValidCDHash = true;
5714 stop = true;
5715 return;
5716 }
5717 });
5718
5719 // If we found cd hashes, but they were all invalid, then print them out
5720 if ( foundCDHash && !foundValidCDHash ) {
5721 auto getCDHashString = [](const uint8_t cdHash[20], char* cdHashBuffer) {
5722 for (int i=0; i < 20; ++i) {
5723 uint8_t byte = cdHash[i];
5724 uint8_t nibbleL = byte & 0x0F;
5725 uint8_t nibbleH = byte >> 4;
5726 if ( nibbleH < 10 ) {
5727 *cdHashBuffer = '0' + nibbleH;
5728 ++cdHashBuffer;
5729 } else {
5730 *cdHashBuffer = 'a' + (nibbleH-10);
5731 ++cdHashBuffer;
5732 }
5733 if ( nibbleL < 10 ) {
5734 *cdHashBuffer = '0' + nibbleL;
5735 ++cdHashBuffer;
5736 } else {
5737 *cdHashBuffer = 'a' + (nibbleL-10);
5738 ++cdHashBuffer;
5739 }
5740 }
5741 };
5742 if ( gLinkContext.verboseWarnings ) {
5743 mainImage->forEachCDHash(^(const uint8_t *expectedHash, bool &stop) {
5744 char mainExecutableCDHashBuffer[128] = { '\0' };
5745 char expectedCDHashBuffer[128] = { '\0' };
5746
5747 getCDHashString(mainExecutableCDHash, mainExecutableCDHashBuffer);
5748 getCDHashString(expectedHash, expectedCDHashBuffer);
5749
5750 dyld::log("dyld: closure %p not used because main executable cd-hash (%s) changed since closure was built with (%s)\n",
5751 mainClosure, mainExecutableCDHashBuffer, expectedCDHashBuffer);
5752 });
5753 }
5754
5755 return false;
5756 }
5757
5758 // verify UUID of main executable is same as recorded in closure
5759 uuid_t expectedUUID;
5760 bool hasExpect = mainImage->getUuid(expectedUUID);
5761 uuid_t actualUUID;
5762 const dyld3::MachOLoaded* mainExecutableMH = (const dyld3::MachOLoaded*)mainFileInfo.fileContent;
5763 bool hasActual = mainExecutableMH->getUuid(actualUUID);
5764 if ( hasExpect != hasActual ) {
5765 if ( gLinkContext.verboseWarnings )
5766 dyld::log("dyld: closure %p not used because UUID of executable changed since closure was built\n", mainClosure);
5767 return false;
5768 }
5769 if ( hasExpect && hasActual && memcmp(actualUUID, expectedUUID, sizeof(uuid_t)) != 0 ) {
5770 if ( gLinkContext.verboseWarnings )
5771 dyld::log("dyld: closure %p not used because UUID of executable changed since closure was built\n", mainClosure);
5772 return false;
5773 }
5774
5775 // verify DYLD_* env vars are same as when closure was built
5776 if ( !envVarsMatch(mainClosure, envp) ) {
5777 return false;
5778 }
5779
5780 // verify files that are supposed to be missing actually are missing
5781 mainClosure->forEachMustBeMissingFile(^(const char* path, bool& stop) {
5782 struct stat statBuf;
5783 if ( ::stat(path, &statBuf) == 0 ) {
5784 stop = true;
5785 foundFileThatInvalidatesClosure = true;
5786 if ( gLinkContext.verboseWarnings )
5787 dyld::log("dyld: closure %p not used because found unexpected file '%s'\n", mainClosure, path);
5788 }
5789 });
5790
5791 // verify files that are supposed to exist are there with the
5792 mainClosure->forEachSkipIfExistsFile(^(const dyld3::closure::LaunchClosure::SkippedFile &file, bool &stop) {
5793 struct stat statBuf;
5794 if ( ::stat(file.path, &statBuf) == 0 ) {
5795 if ( (statBuf.st_mtime != file.mtime) || (statBuf.st_ino != file.inode) ) {
5796 if ( gLinkContext.verboseWarnings )
5797 dyld::log("dyld: closure %p not used because mtime/inode for '%s' has changed since closure was built\n", mainClosure, file.path);
5798 foundFileThatInvalidatesClosure = true;
5799 stop = true;
5800 }
5801 }
5802 });
5803
5804 // verify closure did not require anything unavailable
5805 if ( mainClosure->usedAtPaths() && !gLinkContext.allowAtPaths ) {
5806 if ( gLinkContext.verboseWarnings )
5807 dyld::log("dyld: closure %p not used because is used @paths, but process does not allow that\n", mainClosure);
5808 return false;
5809 }
5810 if ( mainClosure->usedFallbackPaths() && !gLinkContext.allowClassicFallbackPaths ) {
5811 if ( gLinkContext.verboseWarnings )
5812 dyld::log("dyld: closure %p not used because is used default fallback paths, but process does not allow that\n", mainClosure);
5813 return false;
5814 }
5815 if ( mainClosure->usedInterposing() && !gLinkContext.allowInterposing ) {
5816 if ( gLinkContext.verboseWarnings )
5817 dyld::log("dyld: closure %p not used because is uses interposing, but process does not allow that\n", mainClosure);
5818 return false;
5819 }
5820 return !foundFileThatInvalidatesClosure;
5821 }
5822
5823 static bool nolog(const char* format, ...)
5824 {
5825 return false;
5826 }
5827
5828 static bool dolog(const char* format, ...)
5829 {
5830 va_list list;
5831 va_start(list, format);
5832 vlog(format, list);
5833 va_end(list);
5834 return true;
5835 }
5836
5837 static bool launchWithClosure(const dyld3::closure::LaunchClosure* mainClosure,
5838 const DyldSharedCache* dyldCache,
5839 const dyld3::MachOLoaded* mainExecutableMH, uintptr_t mainExecutableSlide,
5840 int argc, const char* argv[], const char* envp[], const char* apple[],
5841 uintptr_t* entry, uintptr_t* startGlue)
5842 {
5843 // build list of all known ImageArrays (at most three: cached dylibs, other OS dylibs, and main prog)
5844 STACK_ALLOC_ARRAY(const dyld3::closure::ImageArray*, imagesArrays, 3);
5845 const dyld3::closure::ImageArray* mainClosureImages = mainClosure->images();
5846 if ( dyldCache != nullptr ) {
5847 imagesArrays.push_back(dyldCache->cachedDylibsImageArray());
5848 if ( auto others = dyldCache->otherOSImageArray() )
5849 imagesArrays.push_back(others);
5850 }
5851 imagesArrays.push_back(mainClosureImages);
5852
5853 // allocate space for Array<LoadedImage>
5854 STACK_ALLOC_ARRAY(dyld3::LoadedImage, allImages, mainClosure->initialLoadCount());
5855
5856 // Get the pre-optimized Objective-C so that we can bind the selectors
5857 const dyld3::closure::ObjCSelectorOpt* selectorOpt = nullptr;
5858 dyld3::Array<dyld3::closure::Image::ObjCSelectorImage> selectorImages;
5859 mainClosure->selectorHashTable(selectorImages, selectorOpt);
5860
5861 __block dyld3::Loader loader({}, allImages, dyldCache, imagesArrays,
5862 selectorOpt, selectorImages,
5863 (gLinkContext.verboseLoading ? &dolog : &nolog),
5864 (gLinkContext.verboseMapping ? &dolog : &nolog),
5865 (gLinkContext.verboseBind ? &dolog : &nolog),
5866 (gLinkContext.verboseDOF ? &dolog : &nolog));
5867 dyld3::closure::ImageNum mainImageNum = mainClosure->topImage();
5868 mainClosureImages->forEachImage(^(const dyld3::closure::Image* image, bool& stop) {
5869 if ( image->imageNum() == mainImageNum ) {
5870 // add main executable (which is already mapped by kernel) to list
5871 dyld3::LoadedImage mainLoadedImage = dyld3::LoadedImage::make(image, mainExecutableMH);
5872 mainLoadedImage.setState(dyld3::LoadedImage::State::mapped);
5873 mainLoadedImage.markLeaveMapped();
5874 loader.addImage(mainLoadedImage);
5875 stop = true;
5876 }
5877 else {
5878 // add inserted library to initial list
5879 loader.addImage(dyld3::LoadedImage::make(image));
5880 }
5881 });
5882
5883 // recursively load all dependents and fill in allImages array
5884 bool someCacheImageOverridden = false;
5885 Diagnostics diag;
5886 loader.completeAllDependents(diag, someCacheImageOverridden);
5887 if ( diag.noError() )
5888 loader.mapAndFixupAllImages(diag, dyld3::Loader::dtraceUserProbesEnabled());
5889 if ( diag.hasError() ) {
5890 if ( gLinkContext.verboseWarnings )
5891 dyld::log("dyld: %s\n", diag.errorMessage());
5892 return false;
5893 }
5894
5895 //dyld::log("loaded image list:\n");
5896 //for (const dyld3::LoadedImage& info : allImages) {
5897 // dyld::log("mh=%p, path=%s\n", info.loadedAddress(), info.image()->path());
5898 //}
5899
5900 // find libdyld entry
5901 dyld3::closure::Image::ResolvedSymbolTarget dyldEntry;
5902 mainClosure->libDyldEntry(dyldEntry);
5903 const dyld3::LibDyldEntryVector* libDyldEntry = (dyld3::LibDyldEntryVector*)loader.resolveTarget(dyldEntry);
5904
5905 // send info on all images to libdyld.dylb
5906 libDyldEntry->setVars(mainExecutableMH, argc, argv, envp, apple);
5907 if ( libDyldEntry->vectorVersion > 4 )
5908 libDyldEntry->setRestrictions(gLinkContext.allowAtPaths, gLinkContext.allowEnvVarsPath, gLinkContext.allowClassicFallbackPaths);
5909 libDyldEntry->setHaltFunction(&halt);
5910 if ( libDyldEntry->vectorVersion > 5 ) {
5911 libDyldEntry->setNotifyMonitoringDyldMain(&notifyMonitoringDyldMain);
5912 libDyldEntry->setNotifyMonitoringDyld(&notifyMonitoringDyld);
5913 }
5914
5915 if ( libDyldEntry->vectorVersion > 6 )
5916 libDyldEntry->setHasCacheOverrides(someCacheImageOverridden);
5917
5918 if ( libDyldEntry->vectorVersion > 2 )
5919 libDyldEntry->setChildForkFunction(&_dyld_fork_child);
5920 #if !TARGET_OS_SIMULATOR
5921 if ( libDyldEntry->vectorVersion > 3 )
5922 libDyldEntry->setLogFunction(&dyld::vlog);
5923 #endif
5924 libDyldEntry->setOldAllImageInfo(gProcessInfo);
5925 dyld3::LoadedImage* libSys = loader.findImage(mainClosure->libSystemImageNum());
5926 libDyldEntry->setInitialImageList(mainClosure, dyldCache, sSharedCacheLoadInfo.path, allImages, *libSys);
5927 // run initializers
5928 CRSetCrashLogMessage("dyld3: launch, running initializers");
5929 libDyldEntry->runInitialzersBottomUp((mach_header*)mainExecutableMH);
5930 //dyld::log("returned from runInitialzersBottomUp()\n");
5931
5932 if (dyld3::kdebug_trace_dyld_enabled(DBG_DYLD_TIMING_LAUNCH_EXECUTABLE)) {
5933 dyld3::kdebug_trace_dyld_duration_end(launchTraceID, DBG_DYLD_TIMING_LAUNCH_EXECUTABLE, 0, 0, 3);
5934 }
5935 #if __MAC_OS_X_VERSION_MIN_REQUIRED
5936 if ( gLinkContext.driverKit ) {
5937 *entry = (uintptr_t)sEntryOveride;
5938 if ( *entry == 0 )
5939 halt("no entry point registered");
5940 *startGlue = (uintptr_t)(libDyldEntry->startFunc);
5941 }
5942 else
5943 #endif
5944 {
5945 dyld3::closure::Image::ResolvedSymbolTarget progEntry;
5946 if ( mainClosure->mainEntry(progEntry) ) {
5947 // modern app with LC_MAIN
5948 // set startGlue to "start" function in libdyld.dylib
5949 // set entry to "main" function in program
5950 *startGlue = (uintptr_t)(libDyldEntry->startFunc);
5951 *entry = loader.resolveTarget(progEntry);
5952 }
5953 else if ( mainClosure->startEntry(progEntry) ) {
5954 // old style app linked with crt1.o
5955 // entry is "start" function in program
5956 *startGlue = 0;
5957 *entry = loader.resolveTarget(progEntry);
5958 }
5959 else {
5960 assert(0);
5961 }
5962 }
5963 CRSetCrashLogMessage("dyld3 mode");
5964 return true;
5965 }
5966
5967
5968 static const char* getTempDir(const char* envp[])
5969 {
5970 if (const char* tempDir = _simple_getenv(envp, "TMPDIR"))
5971 return tempDir;
5972
5973 #if __MAC_OS_X_VERSION_MIN_REQUIRED
5974 return "/private/tmp/";
5975 #else
5976 return "/private/var/tmp/";
5977 #endif
5978 }
5979
5980 static const dyld3::closure::LaunchClosure* mapClosureFile(const char* closurePath)
5981 {
5982 struct stat statbuf;
5983 if ( ::stat(closurePath, &statbuf) == -1 )
5984 return nullptr;
5985
5986 // check for tombstone file
5987 if ( statbuf.st_size == 0 )
5988 return nullptr;
5989
5990 int fd = ::open(closurePath, O_RDONLY);
5991 if ( fd < 0 )
5992 return nullptr;
5993
5994 const dyld3::closure::LaunchClosure* closure = (dyld3::closure::LaunchClosure*)::mmap(NULL, (size_t)statbuf.st_size, PROT_READ, MAP_PRIVATE, fd, 0);
5995 ::close(fd);
5996
5997 if ( closure == MAP_FAILED )
5998 return nullptr;
5999
6000 return closure;
6001 }
6002
6003 static bool needsDyld2ErrorMessage(const char* msg)
6004 {
6005 if ( strcmp(msg, "lazy bind opcodes missing binds") == 0 )
6006 return true;
6007 return false;
6008 }
6009
6010
6011 // Note: buildLaunchClosure calls halt() if there is an error building the closure
6012 static const dyld3::closure::LaunchClosure* buildLaunchClosure(const uint8_t* mainExecutableCDHash,
6013 const dyld3::closure::LoadedFileInfo& mainFileInfo, const char* envp[])
6014 {
6015 const dyld3::MachOLoaded* mainExecutableMH = (const dyld3::MachOLoaded*)mainFileInfo.fileContent;
6016 dyld3::closure::PathOverrides pathOverrides;
6017 pathOverrides.setFallbackPathHandling(gLinkContext.allowClassicFallbackPaths ? dyld3::closure::PathOverrides::FallbackPathMode::classic : dyld3::closure::PathOverrides::FallbackPathMode::restricted);
6018 pathOverrides.setEnvVars(envp, mainExecutableMH, mainFileInfo.path);
6019 STACK_ALLOC_ARRAY(const dyld3::closure::ImageArray*, imagesArrays, 3);
6020 if ( sSharedCacheLoadInfo.loadAddress != nullptr ) {
6021 imagesArrays.push_back(sSharedCacheLoadInfo.loadAddress->cachedDylibsImageArray());
6022 if ( auto others = sSharedCacheLoadInfo.loadAddress->otherOSImageArray() )
6023 imagesArrays.push_back(others);
6024 }
6025
6026 char closurePath[PATH_MAX];
6027 dyld3::closure::ClosureBuilder::LaunchErrorInfo* errorInfo = (dyld3::closure::ClosureBuilder::LaunchErrorInfo*)&gProcessInfo->errorKind;
6028 dyld3::closure::FileSystemPhysical fileSystem;
6029 const dyld3::GradedArchs& archs = dyld3::GradedArchs::forCurrentOS(mainExecutableMH);
6030 dyld3::closure::ClosureBuilder::AtPath atPathHanding = (gLinkContext.allowAtPaths ? dyld3::closure::ClosureBuilder::AtPath::all : dyld3::closure::ClosureBuilder::AtPath::none);
6031 dyld3::closure::ClosureBuilder builder(dyld3::closure::kFirstLaunchClosureImageNum, fileSystem, sSharedCacheLoadInfo.loadAddress, true,
6032 archs, pathOverrides, atPathHanding, gLinkContext.allowEnvVarsPath, errorInfo);
6033 if (sForceInvalidSharedCacheClosureFormat)
6034 builder.setDyldCacheInvalidFormatVersion();
6035 if ( !gLinkContext.allowInterposing )
6036 builder.disableInterposing();
6037 const dyld3::closure::LaunchClosure* result = builder.makeLaunchClosure(mainFileInfo, gLinkContext.allowInsertFailures);
6038 if ( builder.diagnostics().hasError() ) {
6039 const char* errMsg = builder.diagnostics().errorMessage();
6040 // let apps with this error fallback to dyld2 mode
6041 if ( needsDyld2ErrorMessage(errMsg) ) {
6042 if ( dyld3::closure::LaunchClosure::buildClosureCachePath(mainFileInfo.path, closurePath, getTempDir(envp), true) ) {
6043 // create empty file as a tombstone to not keep trying
6044 int fd = ::open(closurePath, O_WRONLY|O_CREAT, S_IRUSR|S_IWUSR);
6045 if ( fd != -1 ) {
6046 ::fchmod(fd, S_IRUSR);
6047 ::close(fd);
6048 if ( gLinkContext.verboseWarnings )
6049 dyld::log("dyld: just built tombstone closure for %s\n", sExecPath);
6050 // We only care about closure failures that do not also cause dyld2 to fail, so defer logging
6051 // until after dyld2 has tried to launch the binary
6052 sLogClosureFailure = true;
6053 }
6054 }
6055 return nullptr;
6056 }
6057 // terminate process
6058 halt(errMsg);
6059 }
6060
6061 if ( result == nullptr )
6062 return nullptr;
6063
6064 if ( !closureValid(result, mainFileInfo, mainExecutableCDHash, false, envp) ) {
6065 // some how the freshly generated closure is invalid...
6066 result->deallocate();
6067 if ( gLinkContext.verboseWarnings )
6068 dyld::log("dyld: somehow just built closure is invalid\n");
6069 return nullptr;
6070 }
6071 // try to atomically save closure to disk to speed up next launch
6072 if ( dyld3::closure::LaunchClosure::buildClosureCachePath(mainFileInfo.path, closurePath, getTempDir(envp), true) ) {
6073 char closurePathTemp[PATH_MAX];
6074 strlcpy(closurePathTemp, closurePath, PATH_MAX);
6075 int mypid = getpid();
6076 char pidBuf[16];
6077 char* s = pidBuf;
6078 *s++ = '.';
6079 putHexByte(mypid >> 24, s);
6080 putHexByte(mypid >> 16, s);
6081 putHexByte(mypid >> 8, s);
6082 putHexByte(mypid, s);
6083 *s = '\0';
6084 strlcat(closurePathTemp, pidBuf, PATH_MAX);
6085 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6086 int fd = ::open(closurePathTemp, O_WRONLY|O_CREAT, S_IRUSR|S_IWUSR);
6087 #else
6088 int fd = ::open_dprotected_np(closurePathTemp, O_WRONLY|O_CREAT, PROTECTION_CLASS_D, 0, S_IRUSR|S_IWUSR);
6089 #endif
6090 if ( fd != -1 ) {
6091 ::ftruncate(fd, result->size());
6092 ::write(fd, result, result->size());
6093 ::fchmod(fd, S_IRUSR);
6094 ::close(fd);
6095 ::rename(closurePathTemp, closurePath);
6096 // free built closure and mmap file() to reduce dirty memory
6097 result->deallocate();
6098 result = mapClosureFile(closurePath);
6099 }
6100 else if ( gLinkContext.verboseWarnings ) {
6101 dyld::log("could not save closure (errno=%d) to: %s\n", errno, closurePathTemp);
6102 }
6103 }
6104
6105 if ( gLinkContext.verboseWarnings )
6106 dyld::log("dyld: just built closure %p (size=%lu) for %s\n", result, result->size(), sExecPath);
6107
6108 return result;
6109 }
6110
6111 static const dyld3::closure::LaunchClosure* findCachedLaunchClosure(const uint8_t* mainExecutableCDHash,
6112 const dyld3::closure::LoadedFileInfo& mainFileInfo,
6113 const char* envp[])
6114 {
6115 char closurePath[PATH_MAX];
6116 // build base path of $TMPDIR/dyld/<prog-name>-
6117 if ( !dyld3::closure::LaunchClosure::buildClosureCachePath(mainFileInfo.path, closurePath, getTempDir(envp), false) )
6118 return nullptr;
6119 const dyld3::closure::LaunchClosure* closure = mapClosureFile(closurePath);
6120 if ( closure == nullptr )
6121 return nullptr;
6122
6123 if ( !closureValid(closure, mainFileInfo, mainExecutableCDHash, false, envp) ) {
6124 ::munmap((void*)closure, closure->size());
6125 return nullptr;
6126 }
6127
6128 if ( gLinkContext.verboseWarnings )
6129 dyld::log("dyld: used cached closure %p (size=%lu) for %s\n", closure, closure->size(), sExecPath);
6130
6131 return closure;
6132 }
6133
6134 #endif // !TARGET_OS_SIMULATOR
6135
6136
6137 static ClosureMode getPlatformDefaultClosureMode() {
6138 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6139 #if __i386__
6140 // rdar://problem/32701418: Don't use dyld3 for i386 for now.
6141 return ClosureMode::Off;
6142 #else
6143 // x86_64 defaults to using the shared cache closures
6144 return ClosureMode::PreBuiltOnly;
6145 #endif // __i386__
6146
6147 #else
6148 // <rdar://problem/33171968> enable dyld3 mode for all OS programs when using customer dyld cache (no roots)
6149 if ( (sSharedCacheLoadInfo.loadAddress != nullptr) && (sSharedCacheLoadInfo.loadAddress->header.cacheType == kDyldSharedCacheTypeProduction) )
6150 return ClosureMode::On;
6151 else
6152 return ClosureMode::Off;
6153 #endif // __MAC_OS_X_VERSION_MIN_REQUIRED
6154 }
6155
6156 //
6157 // Entry point for dyld. The kernel loads dyld and jumps to __dyld_start which
6158 // sets up some registers and call this function.
6159 //
6160 // Returns address of main() in target program which __dyld_start jumps to
6161 //
6162 uintptr_t
6163 _main(const macho_header* mainExecutableMH, uintptr_t mainExecutableSlide,
6164 int argc, const char* argv[], const char* envp[], const char* apple[],
6165 uintptr_t* startGlue)
6166 {
6167 if (dyld3::kdebug_trace_dyld_enabled(DBG_DYLD_TIMING_LAUNCH_EXECUTABLE)) {
6168 launchTraceID = dyld3::kdebug_trace_dyld_duration_start(DBG_DYLD_TIMING_LAUNCH_EXECUTABLE, (uint64_t)mainExecutableMH, 0, 0);
6169 }
6170
6171 //Check and see if there are any kernel flags
6172 dyld3::BootArgs::setFlags(hexToUInt64(_simple_getenv(apple, "dyld_flags"), nullptr));
6173
6174 // Grab the cdHash of the main executable from the environment
6175 uint8_t mainExecutableCDHashBuffer[20];
6176 const uint8_t* mainExecutableCDHash = nullptr;
6177 if ( hexToBytes(_simple_getenv(apple, "executable_cdhash"), 40, mainExecutableCDHashBuffer) )
6178 mainExecutableCDHash = mainExecutableCDHashBuffer;
6179
6180 #if !TARGET_OS_SIMULATOR
6181 // Trace dyld's load
6182 notifyKernelAboutImage((macho_header*)&__dso_handle, _simple_getenv(apple, "dyld_file"));
6183 // Trace the main executable's load
6184 notifyKernelAboutImage(mainExecutableMH, _simple_getenv(apple, "executable_file"));
6185 #endif
6186
6187 uintptr_t result = 0;
6188 sMainExecutableMachHeader = mainExecutableMH;
6189 sMainExecutableSlide = mainExecutableSlide;
6190
6191
6192 // Set the platform ID in the all image infos so debuggers can tell the process type
6193 // FIXME: This can all be removed once we make the kernel handle it in rdar://43369446
6194 if (gProcessInfo->version >= 16) {
6195 __block bool platformFound = false;
6196 ((dyld3::MachOFile*)mainExecutableMH)->forEachSupportedPlatform(^(dyld3::Platform platform, uint32_t minOS, uint32_t sdk) {
6197 if (platformFound) {
6198 halt("MH_EXECUTE binaries may only specify one platform");
6199 }
6200 gProcessInfo->platform = (uint32_t)platform;
6201 platformFound = true;
6202 });
6203 if (gProcessInfo->platform == (uint32_t)dyld3::Platform::unknown) {
6204 // There were no platforms found in the binary. This may occur on macOS for alternate toolchains and old binaries.
6205 // It should never occur on any of our embedded platforms.
6206 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6207 gProcessInfo->platform = (uint32_t)dyld3::Platform::macOS;
6208 #else
6209 halt("MH_EXECUTE binaries must specify a minimum supported OS version");
6210 #endif
6211 }
6212 }
6213
6214 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6215 // Check to see if we need to override the platform
6216 const char* forcedPlatform = _simple_getenv(envp, "DYLD_FORCE_PLATFORM");
6217 if (forcedPlatform) {
6218 if (strncmp(forcedPlatform, "6", 1) != 0) {
6219 halt("DYLD_FORCE_PLATFORM is only supported for platform 6");
6220 }
6221 const dyld3::MachOFile* mf = (dyld3::MachOFile*)sMainExecutableMachHeader;
6222 if (mf->allowsAlternatePlatform()) {
6223 gProcessInfo->platform = PLATFORM_IOSMAC;
6224 }
6225 }
6226
6227 // if this is host dyld, check to see if iOS simulator is being run
6228 const char* rootPath = _simple_getenv(envp, "DYLD_ROOT_PATH");
6229 if ( (rootPath != NULL) ) {
6230 // look to see if simulator has its own dyld
6231 char simDyldPath[PATH_MAX];
6232 strlcpy(simDyldPath, rootPath, PATH_MAX);
6233 strlcat(simDyldPath, "/usr/lib/dyld_sim", PATH_MAX);
6234 int fd = my_open(simDyldPath, O_RDONLY, 0);
6235 if ( fd != -1 ) {
6236 const char* errMessage = useSimulatorDyld(fd, mainExecutableMH, simDyldPath, argc, argv, envp, apple, startGlue, &result);
6237 if ( errMessage != NULL )
6238 halt(errMessage);
6239 return result;
6240 }
6241 }
6242 else {
6243 ((dyld3::MachOFile*)mainExecutableMH)->forEachSupportedPlatform(^(dyld3::Platform platform, uint32_t minOS, uint32_t sdk) {
6244 if ( dyld3::MachOFile::isSimulatorPlatform(platform) )
6245 halt("attempt to run simulator program outside simulator (DYLD_ROOT_PATH not set)");
6246 });
6247 }
6248 #endif
6249
6250 CRSetCrashLogMessage("dyld: launch started");
6251
6252 setContext(mainExecutableMH, argc, argv, envp, apple);
6253
6254 // Pickup the pointer to the exec path.
6255 sExecPath = _simple_getenv(apple, "executable_path");
6256
6257 // <rdar://problem/13868260> Remove interim apple[0] transition code from dyld
6258 if (!sExecPath) sExecPath = apple[0];
6259
6260 #if __IPHONE_OS_VERSION_MIN_REQUIRED && !TARGET_OS_SIMULATOR
6261 // <rdar://54095622> kernel is not passing a real path for main executable
6262 if ( strncmp(sExecPath, "/var/containers/Bundle/Application/", 35) == 0 ) {
6263 if ( char* newPath = (char*)malloc(strlen(sExecPath)+10) ) {
6264 strcpy(newPath, "/private");
6265 strcat(newPath, sExecPath);
6266 sExecPath = newPath;
6267 }
6268 }
6269 #endif
6270
6271 if ( sExecPath[0] != '/' ) {
6272 // have relative path, use cwd to make absolute
6273 char cwdbuff[MAXPATHLEN];
6274 if ( getcwd(cwdbuff, MAXPATHLEN) != NULL ) {
6275 // maybe use static buffer to avoid calling malloc so early...
6276 char* s = new char[strlen(cwdbuff) + strlen(sExecPath) + 2];
6277 strcpy(s, cwdbuff);
6278 strcat(s, "/");
6279 strcat(s, sExecPath);
6280 sExecPath = s;
6281 }
6282 }
6283
6284 // Remember short name of process for later logging
6285 sExecShortName = ::strrchr(sExecPath, '/');
6286 if ( sExecShortName != NULL )
6287 ++sExecShortName;
6288 else
6289 sExecShortName = sExecPath;
6290
6291 configureProcessRestrictions(mainExecutableMH, envp);
6292
6293 // Check if we should force dyld3. Note we have to do this outside of the regular env parsing due to AMFI
6294 if ( dyld3::internalInstall() ) {
6295 if (const char* useClosures = _simple_getenv(envp, "DYLD_USE_CLOSURES")) {
6296 if ( strcmp(useClosures, "0") == 0 ) {
6297 sClosureMode = ClosureMode::Off;
6298 } else if ( strcmp(useClosures, "1") == 0 ) {
6299 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6300
6301 #if __i386__
6302 // don't support dyld3 for 32-bit macOS
6303 #else
6304 // Also don't support dyld3 for iOSMac right now
6305 if ( gProcessInfo->platform != PLATFORM_IOSMAC ) {
6306 sClosureMode = ClosureMode::On;
6307 }
6308 #endif // __i386__
6309
6310 #else
6311 sClosureMode = ClosureMode::On;
6312 #endif // __MAC_OS_X_VERSION_MIN_REQUIRED
6313 } else {
6314 dyld::warn("unknown option to DYLD_USE_CLOSURES. Valid options are: 0 and 1\n");
6315 }
6316
6317 }
6318 }
6319
6320 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6321 if ( !gLinkContext.allowEnvVarsPrint && !gLinkContext.allowEnvVarsPath && !gLinkContext.allowEnvVarsSharedCache ) {
6322 pruneEnvironmentVariables(envp, &apple);
6323 // set again because envp and apple may have changed or moved
6324 setContext(mainExecutableMH, argc, argv, envp, apple);
6325 }
6326 else
6327 #endif
6328 {
6329 checkEnvironmentVariables(envp);
6330 defaultUninitializedFallbackPaths(envp);
6331 }
6332 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6333 if ( gProcessInfo->platform == PLATFORM_IOSMAC ) {
6334 gLinkContext.rootPaths = parseColonList("/System/iOSSupport", NULL);
6335 gLinkContext.iOSonMac = true;
6336 if ( sEnv.DYLD_FALLBACK_LIBRARY_PATH == sLibraryFallbackPaths )
6337 sEnv.DYLD_FALLBACK_LIBRARY_PATH = sRestrictedLibraryFallbackPaths;
6338 if ( sEnv.DYLD_FALLBACK_FRAMEWORK_PATH == sFrameworkFallbackPaths )
6339 sEnv.DYLD_FALLBACK_FRAMEWORK_PATH = sRestrictedFrameworkFallbackPaths;
6340 }
6341 else if ( ((dyld3::MachOFile*)mainExecutableMH)->supportsPlatform(dyld3::Platform::driverKit) ) {
6342 gLinkContext.driverKit = true;
6343 gLinkContext.sharedRegionMode = ImageLoader::kDontUseSharedRegion;
6344 }
6345 #endif
6346 if ( sEnv.DYLD_PRINT_OPTS )
6347 printOptions(argv);
6348 if ( sEnv.DYLD_PRINT_ENV )
6349 printEnvironmentVariables(envp);
6350
6351 // Parse this envirionment variable outside of the regular logic as we want to accept
6352 // this on binaries without an entitelment
6353 #if !TARGET_OS_SIMULATOR
6354 if ( _simple_getenv(envp, "DYLD_JUST_BUILD_CLOSURE") != nullptr ) {
6355 #if TARGET_OS_IPHONE
6356 const char* tempDir = getTempDir(envp);
6357 if ( (tempDir != nullptr) && (geteuid() != 0) ) {
6358 // Use realpath to prevent something like TMPRIR=/tmp/../usr/bin
6359 char realPath[PATH_MAX];
6360 if ( realpath(tempDir, realPath) != NULL )
6361 tempDir = realPath;
6362 if (strncmp(tempDir, "/private/var/mobile/Containers/", strlen("/private/var/mobile/Containers/")) == 0) {
6363 sJustBuildClosure = true;
6364 }
6365 }
6366 #endif
6367 // If we didn't like the format of TMPDIR, just exit. We don't want to launch the app as that would bring up the UI
6368 if (!sJustBuildClosure) {
6369 _exit(EXIT_SUCCESS);
6370 }
6371 }
6372 #endif
6373
6374 if ( sJustBuildClosure )
6375 sClosureMode = ClosureMode::On;
6376 getHostInfo(mainExecutableMH, mainExecutableSlide);
6377
6378 // load shared cache
6379 checkSharedRegionDisable((dyld3::MachOLoaded*)mainExecutableMH, mainExecutableSlide);
6380 if ( gLinkContext.sharedRegionMode != ImageLoader::kDontUseSharedRegion ) {
6381 #if TARGET_OS_SIMULATOR
6382 if ( sSharedCacheOverrideDir)
6383 mapSharedCache();
6384 #else
6385 mapSharedCache();
6386 #endif
6387 }
6388
6389 // If we haven't got a closure mode yet, then check the environment and cache type
6390 if ( sClosureMode == ClosureMode::Unset ) {
6391 // First test to see if we forced in dyld2 via a kernel boot-arg
6392 if ( dyld3::BootArgs::forceDyld2() ) {
6393 sClosureMode = ClosureMode::Off;
6394 } else if ( inDenyList(sExecPath) ) {
6395 sClosureMode = ClosureMode::Off;
6396 } else if ( sEnv.hasOverride ) {
6397 sClosureMode = ClosureMode::Off;
6398 } else if ( dyld3::BootArgs::forceDyld3() ) {
6399 sClosureMode = ClosureMode::On;
6400 } else {
6401 sClosureMode = getPlatformDefaultClosureMode();
6402 }
6403 }
6404
6405 #if !TARGET_OS_SIMULATOR
6406 if ( sClosureMode == ClosureMode::Off ) {
6407 if ( gLinkContext.verboseWarnings )
6408 dyld::log("dyld: not using closure because of DYLD_USE_CLOSURES or -force_dyld2=1 override\n");
6409 } else {
6410 const dyld3::closure::LaunchClosure* mainClosure = nullptr;
6411 dyld3::closure::LoadedFileInfo mainFileInfo;
6412 mainFileInfo.fileContent = mainExecutableMH;
6413 mainFileInfo.path = sExecPath;
6414 // FIXME: If we are saving this closure, this slice offset/length is probably wrong in the case of FAT files.
6415 mainFileInfo.sliceOffset = 0;
6416 mainFileInfo.sliceLen = -1;
6417 struct stat mainExeStatBuf;
6418 if ( ::stat(sExecPath, &mainExeStatBuf) == 0 ) {
6419 mainFileInfo.inode = mainExeStatBuf.st_ino;
6420 mainFileInfo.mtime = mainExeStatBuf.st_mtime;
6421 }
6422 // check for closure in cache first
6423 if ( sSharedCacheLoadInfo.loadAddress != nullptr ) {
6424 mainClosure = sSharedCacheLoadInfo.loadAddress->findClosure(sExecPath);
6425 if ( gLinkContext.verboseWarnings && (mainClosure != nullptr) )
6426 dyld::log("dyld: found closure %p (size=%lu) in dyld shared cache\n", mainClosure, mainClosure->size());
6427 }
6428
6429 // We only want to try build a closure at runtime if its an iOS third party binary, or a macOS binary from the shared cache
6430 bool allowClosureRebuilds = false;
6431 if ( sClosureMode == ClosureMode::On ) {
6432 allowClosureRebuilds = true;
6433 } else if ( (sClosureMode == ClosureMode::PreBuiltOnly) && (mainClosure != nullptr) ) {
6434 allowClosureRebuilds = true;
6435 }
6436
6437 if ( (mainClosure != nullptr) && !closureValid(mainClosure, mainFileInfo, mainExecutableCDHash, true, envp) )
6438 mainClosure = nullptr;
6439
6440 // If we didn't find a valid cache closure then try build a new one
6441 if ( (mainClosure == nullptr) && allowClosureRebuilds ) {
6442 // if forcing closures, and no closure in cache, or it is invalid, check for cached closure
6443 if ( !sForceInvalidSharedCacheClosureFormat )
6444 mainClosure = findCachedLaunchClosure(mainExecutableCDHash, mainFileInfo, envp);
6445 if ( mainClosure == nullptr ) {
6446 // if no cached closure found, build new one
6447 mainClosure = buildLaunchClosure(mainExecutableCDHash, mainFileInfo, envp);
6448 }
6449 }
6450
6451 // exit dyld after closure is built, without running program
6452 if ( sJustBuildClosure )
6453 _exit(EXIT_SUCCESS);
6454
6455 // try using launch closure
6456 if ( mainClosure != nullptr ) {
6457 CRSetCrashLogMessage("dyld3: launch started");
6458 bool launched = launchWithClosure(mainClosure, sSharedCacheLoadInfo.loadAddress, (dyld3::MachOLoaded*)mainExecutableMH,
6459 mainExecutableSlide, argc, argv, envp, apple, &result, startGlue);
6460 if ( !launched && allowClosureRebuilds ) {
6461 // closure is out of date, build new one
6462 mainClosure = buildLaunchClosure(mainExecutableCDHash, mainFileInfo, envp);
6463 if ( mainClosure != nullptr ) {
6464 launched = launchWithClosure(mainClosure, sSharedCacheLoadInfo.loadAddress, (dyld3::MachOLoaded*)mainExecutableMH,
6465 mainExecutableSlide, argc, argv, envp, apple, &result, startGlue);
6466 }
6467 }
6468 if ( launched ) {
6469 #if __has_feature(ptrauth_calls)
6470 // start() calls the result pointer as a function pointer so we need to sign it.
6471 result = (uintptr_t)__builtin_ptrauth_sign_unauthenticated((void*)result, 0, 0);
6472 #endif
6473 if (sSkipMain)
6474 result = (uintptr_t)&fake_main;
6475 return result;
6476 }
6477 else {
6478 if ( gLinkContext.verboseWarnings ) {
6479 dyld::log("dyld: unable to use closure %p\n", mainClosure);
6480 }
6481 }
6482 }
6483 }
6484 #endif // TARGET_OS_SIMULATOR
6485 // could not use closure info, launch old way
6486
6487
6488
6489 // install gdb notifier
6490 stateToHandlers(dyld_image_state_dependents_mapped, sBatchHandlers)->push_back(notifyGDB);
6491 stateToHandlers(dyld_image_state_mapped, sSingleHandlers)->push_back(updateAllImages);
6492 // make initial allocations large enough that it is unlikely to need to be re-alloced
6493 sImageRoots.reserve(16);
6494 sAddImageCallbacks.reserve(4);
6495 sRemoveImageCallbacks.reserve(4);
6496 sAddLoadImageCallbacks.reserve(4);
6497 sImageFilesNeedingTermination.reserve(16);
6498 sImageFilesNeedingDOFUnregistration.reserve(8);
6499
6500 #if !TARGET_OS_SIMULATOR
6501 #ifdef WAIT_FOR_SYSTEM_ORDER_HANDSHAKE
6502 // <rdar://problem/6849505> Add gating mechanism to dyld support system order file generation process
6503 WAIT_FOR_SYSTEM_ORDER_HANDSHAKE(dyld::gProcessInfo->systemOrderFlag);
6504 #endif
6505 #endif
6506
6507
6508 try {
6509 // add dyld itself to UUID list
6510 addDyldImageToUUIDList();
6511
6512 #if SUPPORT_ACCELERATE_TABLES
6513 #if __arm64e__
6514 // Disable accelerator tables when we have threaded rebase/bind, which is arm64e executables only for now.
6515 if (sMainExecutableMachHeader->cpusubtype == CPU_SUBTYPE_ARM64E)
6516 sDisableAcceleratorTables = true;
6517 #endif
6518 bool mainExcutableAlreadyRebased = false;
6519 if ( (sSharedCacheLoadInfo.loadAddress != nullptr) && !dylibsCanOverrideCache() && !sDisableAcceleratorTables && (sSharedCacheLoadInfo.loadAddress->header.accelerateInfoAddr != 0) ) {
6520 struct stat statBuf;
6521 if ( ::stat(IPHONE_DYLD_SHARED_CACHE_DIR "no-dyld2-accelerator-tables", &statBuf) != 0 )
6522 sAllCacheImagesProxy = ImageLoaderMegaDylib::makeImageLoaderMegaDylib(&sSharedCacheLoadInfo.loadAddress->header, sSharedCacheLoadInfo.slide, mainExecutableMH, gLinkContext);
6523 }
6524
6525 reloadAllImages:
6526 #endif
6527
6528
6529 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6530 gLinkContext.strictMachORequired = false;
6531 // <rdar://problem/22805519> be less strict about old macOS mach-o binaries
6532 ((dyld3::MachOFile*)mainExecutableMH)->forEachSupportedPlatform(^(dyld3::Platform platform, uint32_t minOS, uint32_t sdk) {
6533 if ( (platform == dyld3::Platform::macOS) && (sdk >= DYLD_PACKED_VERSION(10,15,0)) ) {
6534 gLinkContext.strictMachORequired = true;
6535 }
6536 });
6537 if ( gLinkContext.iOSonMac )
6538 gLinkContext.strictMachORequired = true;
6539 #else
6540 // simulators, iOS, tvOS, watchOS, are always strict
6541 gLinkContext.strictMachORequired = true;
6542 #endif
6543
6544
6545 CRSetCrashLogMessage(sLoadingCrashMessage);
6546 // instantiate ImageLoader for main executable
6547 sMainExecutable = instantiateFromLoadedImage(mainExecutableMH, mainExecutableSlide, sExecPath);
6548 gLinkContext.mainExecutable = sMainExecutable;
6549 gLinkContext.mainExecutableCodeSigned = hasCodeSignatureLoadCommand(mainExecutableMH);
6550
6551 #if TARGET_OS_SIMULATOR
6552 // check main executable is not too new for this OS
6553 {
6554 if ( ! isSimulatorBinary((uint8_t*)mainExecutableMH, sExecPath) ) {
6555 throwf("program was built for a platform that is not supported by this runtime");
6556 }
6557 uint32_t mainMinOS = sMainExecutable->minOSVersion();
6558
6559 // dyld is always built for the current OS, so we can get the current OS version
6560 // from the load command in dyld itself.
6561 uint32_t dyldMinOS = ImageLoaderMachO::minOSVersion((const mach_header*)&__dso_handle);
6562 if ( mainMinOS > dyldMinOS ) {
6563 #if TARGET_OS_WATCH
6564 throwf("app was built for watchOS %d.%d which is newer than this simulator %d.%d",
6565 mainMinOS >> 16, ((mainMinOS >> 8) & 0xFF),
6566 dyldMinOS >> 16, ((dyldMinOS >> 8) & 0xFF));
6567 #elif TARGET_OS_TV
6568 throwf("app was built for tvOS %d.%d which is newer than this simulator %d.%d",
6569 mainMinOS >> 16, ((mainMinOS >> 8) & 0xFF),
6570 dyldMinOS >> 16, ((dyldMinOS >> 8) & 0xFF));
6571 #else
6572 throwf("app was built for iOS %d.%d which is newer than this simulator %d.%d",
6573 mainMinOS >> 16, ((mainMinOS >> 8) & 0xFF),
6574 dyldMinOS >> 16, ((dyldMinOS >> 8) & 0xFF));
6575 #endif
6576 }
6577 }
6578 #endif
6579
6580
6581 #if SUPPORT_ACCELERATE_TABLES
6582 sAllImages.reserve((sAllCacheImagesProxy != NULL) ? 16 : INITIAL_IMAGE_COUNT);
6583 #else
6584 sAllImages.reserve(INITIAL_IMAGE_COUNT);
6585 #endif
6586
6587 // Now that shared cache is loaded, setup an versioned dylib overrides
6588 #if SUPPORT_VERSIONED_PATHS
6589 checkVersionedPaths();
6590 #endif
6591
6592
6593 // dyld_all_image_infos image list does not contain dyld
6594 // add it as dyldPath field in dyld_all_image_infos
6595 // for simulator, dyld_sim is in image list, need host dyld added
6596 #if TARGET_OS_SIMULATOR
6597 // get path of host dyld from table of syscall vectors in host dyld
6598 void* addressInDyld = gSyscallHelpers;
6599 #else
6600 // get path of dyld itself
6601 void* addressInDyld = (void*)&__dso_handle;
6602 #endif
6603 char dyldPathBuffer[MAXPATHLEN+1];
6604 int len = proc_regionfilename(getpid(), (uint64_t)(long)addressInDyld, dyldPathBuffer, MAXPATHLEN);
6605 if ( len > 0 ) {
6606 dyldPathBuffer[len] = '\0'; // proc_regionfilename() does not zero terminate returned string
6607 if ( strcmp(dyldPathBuffer, gProcessInfo->dyldPath) != 0 )
6608 gProcessInfo->dyldPath = strdup(dyldPathBuffer);
6609 }
6610
6611 // load any inserted libraries
6612 if ( sEnv.DYLD_INSERT_LIBRARIES != NULL ) {
6613 for (const char* const* lib = sEnv.DYLD_INSERT_LIBRARIES; *lib != NULL; ++lib)
6614 loadInsertedDylib(*lib);
6615 }
6616 // record count of inserted libraries so that a flat search will look at
6617 // inserted libraries, then main, then others.
6618 sInsertedDylibCount = sAllImages.size()-1;
6619
6620 // link main executable
6621 gLinkContext.linkingMainExecutable = true;
6622 #if SUPPORT_ACCELERATE_TABLES
6623 if ( mainExcutableAlreadyRebased ) {
6624 // previous link() on main executable has already adjusted its internal pointers for ASLR
6625 // work around that by rebasing by inverse amount
6626 sMainExecutable->rebase(gLinkContext, -mainExecutableSlide);
6627 }
6628 #endif
6629 link(sMainExecutable, sEnv.DYLD_BIND_AT_LAUNCH, true, ImageLoader::RPathChain(NULL, NULL), -1);
6630 sMainExecutable->setNeverUnloadRecursive();
6631 if ( sMainExecutable->forceFlat() ) {
6632 gLinkContext.bindFlat = true;
6633 gLinkContext.prebindUsage = ImageLoader::kUseNoPrebinding;
6634 }
6635
6636 // link any inserted libraries
6637 // do this after linking main executable so that any dylibs pulled in by inserted
6638 // dylibs (e.g. libSystem) will not be in front of dylibs the program uses
6639 if ( sInsertedDylibCount > 0 ) {
6640 for(unsigned int i=0; i < sInsertedDylibCount; ++i) {
6641 ImageLoader* image = sAllImages[i+1];
6642 link(image, sEnv.DYLD_BIND_AT_LAUNCH, true, ImageLoader::RPathChain(NULL, NULL), -1);
6643 image->setNeverUnloadRecursive();
6644 }
6645 if ( gLinkContext.allowInterposing ) {
6646 // only INSERTED libraries can interpose
6647 // register interposing info after all inserted libraries are bound so chaining works
6648 for(unsigned int i=0; i < sInsertedDylibCount; ++i) {
6649 ImageLoader* image = sAllImages[i+1];
6650 image->registerInterposing(gLinkContext);
6651 }
6652 }
6653 }
6654
6655 if ( gLinkContext.allowInterposing ) {
6656 // <rdar://problem/19315404> dyld should support interposition even without DYLD_INSERT_LIBRARIES
6657 for (long i=sInsertedDylibCount+1; i < sAllImages.size(); ++i) {
6658 ImageLoader* image = sAllImages[i];
6659 if ( image->inSharedCache() )
6660 continue;
6661 image->registerInterposing(gLinkContext);
6662 }
6663 }
6664 #if SUPPORT_ACCELERATE_TABLES
6665 if ( (sAllCacheImagesProxy != NULL) && ImageLoader::haveInterposingTuples() ) {
6666 // Accelerator tables cannot be used with implicit interposing, so relaunch with accelerator tables disabled
6667 ImageLoader::clearInterposingTuples();
6668 // unmap all loaded dylibs (but not main executable)
6669 for (long i=1; i < sAllImages.size(); ++i) {
6670 ImageLoader* image = sAllImages[i];
6671 if ( image == sMainExecutable )
6672 continue;
6673 if ( image == sAllCacheImagesProxy )
6674 continue;
6675 image->setCanUnload();
6676 ImageLoader::deleteImage(image);
6677 }
6678 // note: we don't need to worry about inserted images because if DYLD_INSERT_LIBRARIES was set we would not be using the accelerator table
6679 sAllImages.clear();
6680 sImageRoots.clear();
6681 sImageFilesNeedingTermination.clear();
6682 sImageFilesNeedingDOFUnregistration.clear();
6683 sAddImageCallbacks.clear();
6684 sRemoveImageCallbacks.clear();
6685 sAddLoadImageCallbacks.clear();
6686 sAddBulkLoadImageCallbacks.clear();
6687 sDisableAcceleratorTables = true;
6688 sAllCacheImagesProxy = NULL;
6689 sMappedRangesStart = NULL;
6690 mainExcutableAlreadyRebased = true;
6691 gLinkContext.linkingMainExecutable = false;
6692 resetAllImages();
6693 goto reloadAllImages;
6694 }
6695 #endif
6696
6697 // apply interposing to initial set of images
6698 for(int i=0; i < sImageRoots.size(); ++i) {
6699 sImageRoots[i]->applyInterposing(gLinkContext);
6700 }
6701 ImageLoader::applyInterposingToDyldCache(gLinkContext);
6702
6703 // Bind and notify for the main executable now that interposing has been registered
6704 uint64_t bindMainExecutableStartTime = mach_absolute_time();
6705 sMainExecutable->recursiveBindWithAccounting(gLinkContext, sEnv.DYLD_BIND_AT_LAUNCH, true);
6706 uint64_t bindMainExecutableEndTime = mach_absolute_time();
6707 ImageLoaderMachO::fgTotalBindTime += bindMainExecutableEndTime - bindMainExecutableStartTime;
6708 gLinkContext.notifyBatch(dyld_image_state_bound, false);
6709
6710 // Bind and notify for the inserted images now interposing has been registered
6711 if ( sInsertedDylibCount > 0 ) {
6712 for(unsigned int i=0; i < sInsertedDylibCount; ++i) {
6713 ImageLoader* image = sAllImages[i+1];
6714 image->recursiveBind(gLinkContext, sEnv.DYLD_BIND_AT_LAUNCH, true);
6715 }
6716 }
6717
6718 // <rdar://problem/12186933> do weak binding only after all inserted images linked
6719 sMainExecutable->weakBind(gLinkContext);
6720 gLinkContext.linkingMainExecutable = false;
6721
6722 sMainExecutable->recursiveMakeDataReadOnly(gLinkContext);
6723
6724 CRSetCrashLogMessage("dyld: launch, running initializers");
6725 #if SUPPORT_OLD_CRT_INITIALIZATION
6726 // Old way is to run initializers via a callback from crt1.o
6727 if ( ! gRunInitializersOldWay )
6728 initializeMainExecutable();
6729 #else
6730 // run all initializers
6731 initializeMainExecutable();
6732 #endif
6733
6734 // notify any montoring proccesses that this process is about to enter main()
6735 notifyMonitoringDyldMain();
6736 if (dyld3::kdebug_trace_dyld_enabled(DBG_DYLD_TIMING_LAUNCH_EXECUTABLE)) {
6737 dyld3::kdebug_trace_dyld_duration_end(launchTraceID, DBG_DYLD_TIMING_LAUNCH_EXECUTABLE, 0, 0, 2);
6738 }
6739 ARIADNEDBG_CODE(220, 1);
6740
6741 #if __MAC_OS_X_VERSION_MIN_REQUIRED
6742 if ( gLinkContext.driverKit ) {
6743 result = (uintptr_t)sEntryOveride;
6744 if ( result == 0 )
6745 halt("no entry point registered");
6746 *startGlue = (uintptr_t)gLibSystemHelpers->startGlueToCallExit;
6747 }
6748 else
6749 #endif
6750 {
6751 // find entry point for main executable
6752 result = (uintptr_t)sMainExecutable->getEntryFromLC_MAIN();
6753 if ( result != 0 ) {
6754 // main executable uses LC_MAIN, we need to use helper in libdyld to call into main()
6755 if ( (gLibSystemHelpers != NULL) && (gLibSystemHelpers->version >= 9) )
6756 *startGlue = (uintptr_t)gLibSystemHelpers->startGlueToCallExit;
6757 else
6758 halt("libdyld.dylib support not present for LC_MAIN");
6759 }
6760 else {
6761 // main executable uses LC_UNIXTHREAD, dyld needs to let "start" in program set up for main()
6762 result = (uintptr_t)sMainExecutable->getEntryFromLC_UNIXTHREAD();
6763 *startGlue = 0;
6764 }
6765 }
6766 #if __has_feature(ptrauth_calls)
6767 // start() calls the result pointer as a function pointer so we need to sign it.
6768 result = (uintptr_t)__builtin_ptrauth_sign_unauthenticated((void*)result, 0, 0);
6769 #endif
6770 }
6771 catch(const char* message) {
6772 syncAllImages();
6773 halt(message);
6774 }
6775 catch(...) {
6776 dyld::log("dyld: launch failed\n");
6777 }
6778
6779 CRSetCrashLogMessage("dyld2 mode");
6780 #if !TARGET_OS_SIMULATOR
6781 if (sLogClosureFailure) {
6782 // We failed to launch in dyld3, but dyld2 can handle it. synthesize a crash report for analytics
6783 dyld3::syntheticBacktrace("Could not generate launchClosure, falling back to dyld2", true);
6784 }
6785 #endif
6786
6787 if (sSkipMain) {
6788 notifyMonitoringDyldMain();
6789 if (dyld3::kdebug_trace_dyld_enabled(DBG_DYLD_TIMING_LAUNCH_EXECUTABLE)) {
6790 dyld3::kdebug_trace_dyld_duration_end(launchTraceID, DBG_DYLD_TIMING_LAUNCH_EXECUTABLE, 0, 0, 2);
6791 }
6792 ARIADNEDBG_CODE(220, 1);
6793 result = (uintptr_t)&fake_main;
6794 *startGlue = (uintptr_t)gLibSystemHelpers->startGlueToCallExit;
6795 }
6796
6797 return result;
6798 }
6799
6800
6801 } // namespace
6802
6803
6804