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1 //===-- asan_mac.cc -------------------------------------------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file is a part of AddressSanitizer, an address sanity checker.
11 //
12 // Mac-specific details.
13 //===----------------------------------------------------------------------===//
14 
15 #include "sanitizer_common/sanitizer_platform.h"
16 #if SANITIZER_MAC
17 
18 #include "asan_interceptors.h"
19 #include "asan_internal.h"
20 #include "asan_mac.h"
21 #include "asan_mapping.h"
22 #include "asan_stack.h"
23 #include "asan_thread.h"
24 #include "sanitizer_common/sanitizer_atomic.h"
25 #include "sanitizer_common/sanitizer_libc.h"
26 
27 #include <crt_externs.h>  // for _NSGetArgv
28 #include <dlfcn.h>  // for dladdr()
29 #include <mach-o/dyld.h>
30 #include <mach-o/loader.h>
31 #include <sys/mman.h>
32 #include <sys/resource.h>
33 #include <sys/sysctl.h>
34 #include <sys/ucontext.h>
35 #include <fcntl.h>
36 #include <pthread.h>
37 #include <stdlib.h>  // for free()
38 #include <unistd.h>
39 #include <libkern/OSAtomic.h>
40 
41 namespace __asan {
42 
GetPcSpBp(void * context,uptr * pc,uptr * sp,uptr * bp)43 void GetPcSpBp(void *context, uptr *pc, uptr *sp, uptr *bp) {
44   ucontext_t *ucontext = (ucontext_t*)context;
45 # if SANITIZER_WORDSIZE == 64
46   *pc = ucontext->uc_mcontext->__ss.__rip;
47   *bp = ucontext->uc_mcontext->__ss.__rbp;
48   *sp = ucontext->uc_mcontext->__ss.__rsp;
49 # else
50   *pc = ucontext->uc_mcontext->__ss.__eip;
51   *bp = ucontext->uc_mcontext->__ss.__ebp;
52   *sp = ucontext->uc_mcontext->__ss.__esp;
53 # endif  // SANITIZER_WORDSIZE
54 }
55 
56 MacosVersion cached_macos_version = MACOS_VERSION_UNINITIALIZED;
57 
GetMacosVersionInternal()58 MacosVersion GetMacosVersionInternal() {
59   int mib[2] = { CTL_KERN, KERN_OSRELEASE };
60   char version[100];
61   uptr len = 0, maxlen = sizeof(version) / sizeof(version[0]);
62   for (uptr i = 0; i < maxlen; i++) version[i] = '\0';
63   // Get the version length.
64   CHECK_NE(sysctl(mib, 2, 0, &len, 0, 0), -1);
65   CHECK_LT(len, maxlen);
66   CHECK_NE(sysctl(mib, 2, version, &len, 0, 0), -1);
67   switch (version[0]) {
68     case '9': return MACOS_VERSION_LEOPARD;
69     case '1': {
70       switch (version[1]) {
71         case '0': return MACOS_VERSION_SNOW_LEOPARD;
72         case '1': return MACOS_VERSION_LION;
73         case '2': return MACOS_VERSION_MOUNTAIN_LION;
74         case '3': return MACOS_VERSION_MAVERICKS;
75         default: return MACOS_VERSION_UNKNOWN;
76       }
77     }
78     default: return MACOS_VERSION_UNKNOWN;
79   }
80 }
81 
GetMacosVersion()82 MacosVersion GetMacosVersion() {
83   atomic_uint32_t *cache =
84       reinterpret_cast<atomic_uint32_t*>(&cached_macos_version);
85   MacosVersion result =
86       static_cast<MacosVersion>(atomic_load(cache, memory_order_acquire));
87   if (result == MACOS_VERSION_UNINITIALIZED) {
88     result = GetMacosVersionInternal();
89     atomic_store(cache, result, memory_order_release);
90   }
91   return result;
92 }
93 
PlatformHasDifferentMemcpyAndMemmove()94 bool PlatformHasDifferentMemcpyAndMemmove() {
95   // On OS X 10.7 memcpy() and memmove() are both resolved
96   // into memmove$VARIANT$sse42.
97   // See also http://code.google.com/p/address-sanitizer/issues/detail?id=34.
98   // TODO(glider): need to check dynamically that memcpy() and memmove() are
99   // actually the same function.
100   return GetMacosVersion() == MACOS_VERSION_SNOW_LEOPARD;
101 }
102 
103 extern "C"
104 void __asan_init();
105 
106 static const char kDyldInsertLibraries[] = "DYLD_INSERT_LIBRARIES";
107 LowLevelAllocator allocator_for_env;
108 
109 // Change the value of the env var |name|, leaking the original value.
110 // If |name_value| is NULL, the variable is deleted from the environment,
111 // otherwise the corresponding "NAME=value" string is replaced with
112 // |name_value|.
LeakyResetEnv(const char * name,const char * name_value)113 void LeakyResetEnv(const char *name, const char *name_value) {
114   char ***env_ptr = _NSGetEnviron();
115   CHECK(env_ptr);
116   char **environ = *env_ptr;
117   CHECK(environ);
118   uptr name_len = internal_strlen(name);
119   while (*environ != 0) {
120     uptr len = internal_strlen(*environ);
121     if (len > name_len) {
122       const char *p = *environ;
123       if (!internal_memcmp(p, name, name_len) && p[name_len] == '=') {
124         // Match.
125         if (name_value) {
126           // Replace the old value with the new one.
127           *environ = const_cast<char*>(name_value);
128         } else {
129           // Shift the subsequent pointers back.
130           char **del = environ;
131           do {
132             del[0] = del[1];
133           } while (*del++);
134         }
135       }
136     }
137     environ++;
138   }
139 }
140 
MaybeReexec()141 void MaybeReexec() {
142   if (!flags()->allow_reexec) return;
143   // Make sure the dynamic ASan runtime library is preloaded so that the
144   // wrappers work. If it is not, set DYLD_INSERT_LIBRARIES and re-exec
145   // ourselves.
146   Dl_info info;
147   CHECK(dladdr((void*)((uptr)__asan_init), &info));
148   char *dyld_insert_libraries =
149       const_cast<char*>(GetEnv(kDyldInsertLibraries));
150   uptr old_env_len = dyld_insert_libraries ?
151       internal_strlen(dyld_insert_libraries) : 0;
152   uptr fname_len = internal_strlen(info.dli_fname);
153   if (!dyld_insert_libraries ||
154       !REAL(strstr)(dyld_insert_libraries, info.dli_fname)) {
155     // DYLD_INSERT_LIBRARIES is not set or does not contain the runtime
156     // library.
157     char program_name[1024];
158     uint32_t buf_size = sizeof(program_name);
159     _NSGetExecutablePath(program_name, &buf_size);
160     char *new_env = const_cast<char*>(info.dli_fname);
161     if (dyld_insert_libraries) {
162       // Append the runtime dylib name to the existing value of
163       // DYLD_INSERT_LIBRARIES.
164       new_env = (char*)allocator_for_env.Allocate(old_env_len + fname_len + 2);
165       internal_strncpy(new_env, dyld_insert_libraries, old_env_len);
166       new_env[old_env_len] = ':';
167       // Copy fname_len and add a trailing zero.
168       internal_strncpy(new_env + old_env_len + 1, info.dli_fname,
169                        fname_len + 1);
170       // Ok to use setenv() since the wrappers don't depend on the value of
171       // asan_inited.
172       setenv(kDyldInsertLibraries, new_env, /*overwrite*/1);
173     } else {
174       // Set DYLD_INSERT_LIBRARIES equal to the runtime dylib name.
175       setenv(kDyldInsertLibraries, info.dli_fname, /*overwrite*/0);
176     }
177     if (flags()->verbosity >= 1) {
178       Report("exec()-ing the program with\n");
179       Report("%s=%s\n", kDyldInsertLibraries, new_env);
180       Report("to enable ASan wrappers.\n");
181       Report("Set ASAN_OPTIONS=allow_reexec=0 to disable this.\n");
182     }
183     execv(program_name, *_NSGetArgv());
184   } else {
185     // DYLD_INSERT_LIBRARIES is set and contains the runtime library.
186     if (old_env_len == fname_len) {
187       // It's just the runtime library name - fine to unset the variable.
188       LeakyResetEnv(kDyldInsertLibraries, NULL);
189     } else {
190       uptr env_name_len = internal_strlen(kDyldInsertLibraries);
191       // Allocate memory to hold the previous env var name, its value, the '='
192       // sign and the '\0' char.
193       char *new_env = (char*)allocator_for_env.Allocate(
194           old_env_len + 2 + env_name_len);
195       CHECK(new_env);
196       internal_memset(new_env, '\0', old_env_len + 2 + env_name_len);
197       internal_strncpy(new_env, kDyldInsertLibraries, env_name_len);
198       new_env[env_name_len] = '=';
199       char *new_env_pos = new_env + env_name_len + 1;
200 
201       // Iterate over colon-separated pieces of |dyld_insert_libraries|.
202       char *piece_start = dyld_insert_libraries;
203       char *piece_end = NULL;
204       char *old_env_end = dyld_insert_libraries + old_env_len;
205       do {
206         if (piece_start[0] == ':') piece_start++;
207         piece_end =  REAL(strchr)(piece_start, ':');
208         if (!piece_end) piece_end = dyld_insert_libraries + old_env_len;
209         if ((uptr)(piece_start - dyld_insert_libraries) > old_env_len) break;
210         uptr piece_len = piece_end - piece_start;
211 
212         // If the current piece isn't the runtime library name,
213         // append it to new_env.
214         if ((piece_len != fname_len) ||
215             (internal_strncmp(piece_start, info.dli_fname, fname_len) != 0)) {
216           if (new_env_pos != new_env + env_name_len + 1) {
217             new_env_pos[0] = ':';
218             new_env_pos++;
219           }
220           internal_strncpy(new_env_pos, piece_start, piece_len);
221         }
222         // Move on to the next piece.
223         new_env_pos += piece_len;
224         piece_start = piece_end;
225       } while (piece_start < old_env_end);
226 
227       // Can't use setenv() here, because it requires the allocator to be
228       // initialized.
229       // FIXME: instead of filtering DYLD_INSERT_LIBRARIES here, do it in
230       // a separate function called after InitializeAllocator().
231       LeakyResetEnv(kDyldInsertLibraries, new_env);
232     }
233   }
234 }
235 
236 // No-op. Mac does not support static linkage anyway.
AsanDoesNotSupportStaticLinkage()237 void *AsanDoesNotSupportStaticLinkage() {
238   return 0;
239 }
240 
AsanInterceptsSignal(int signum)241 bool AsanInterceptsSignal(int signum) {
242   return (signum == SIGSEGV || signum == SIGBUS) && flags()->handle_segv;
243 }
244 
AsanPlatformThreadInit()245 void AsanPlatformThreadInit() {
246 }
247 
ReadContextStack(void * context,uptr * stack,uptr * ssize)248 void ReadContextStack(void *context, uptr *stack, uptr *ssize) {
249   UNIMPLEMENTED();
250 }
251 
252 // Support for the following functions from libdispatch on Mac OS:
253 //   dispatch_async_f()
254 //   dispatch_async()
255 //   dispatch_sync_f()
256 //   dispatch_sync()
257 //   dispatch_after_f()
258 //   dispatch_after()
259 //   dispatch_group_async_f()
260 //   dispatch_group_async()
261 // TODO(glider): libdispatch API contains other functions that we don't support
262 // yet.
263 //
264 // dispatch_sync() and dispatch_sync_f() are synchronous, although chances are
265 // they can cause jobs to run on a thread different from the current one.
266 // TODO(glider): if so, we need a test for this (otherwise we should remove
267 // them).
268 //
269 // The following functions use dispatch_barrier_async_f() (which isn't a library
270 // function but is exported) and are thus supported:
271 //   dispatch_source_set_cancel_handler_f()
272 //   dispatch_source_set_cancel_handler()
273 //   dispatch_source_set_event_handler_f()
274 //   dispatch_source_set_event_handler()
275 //
276 // The reference manual for Grand Central Dispatch is available at
277 //   http://developer.apple.com/library/mac/#documentation/Performance/Reference/GCD_libdispatch_Ref/Reference/reference.html
278 // The implementation details are at
279 //   http://libdispatch.macosforge.org/trac/browser/trunk/src/queue.c
280 
281 typedef void* dispatch_group_t;
282 typedef void* dispatch_queue_t;
283 typedef void* dispatch_source_t;
284 typedef u64 dispatch_time_t;
285 typedef void (*dispatch_function_t)(void *block);
286 typedef void* (*worker_t)(void *block);
287 
288 // A wrapper for the ObjC blocks used to support libdispatch.
289 typedef struct {
290   void *block;
291   dispatch_function_t func;
292   u32 parent_tid;
293 } asan_block_context_t;
294 
295 ALWAYS_INLINE
asan_register_worker_thread(int parent_tid,StackTrace * stack)296 void asan_register_worker_thread(int parent_tid, StackTrace *stack) {
297   AsanThread *t = GetCurrentThread();
298   if (!t) {
299     t = AsanThread::Create(0, 0);
300     CreateThreadContextArgs args = { t, stack };
301     asanThreadRegistry().CreateThread(*(uptr*)t, true, parent_tid, &args);
302     t->Init();
303     asanThreadRegistry().StartThread(t->tid(), 0, 0);
304     SetCurrentThread(t);
305   }
306 }
307 
308 // For use by only those functions that allocated the context via
309 // alloc_asan_context().
310 extern "C"
asan_dispatch_call_block_and_release(void * block)311 void asan_dispatch_call_block_and_release(void *block) {
312   GET_STACK_TRACE_THREAD;
313   asan_block_context_t *context = (asan_block_context_t*)block;
314   if (flags()->verbosity >= 2) {
315     Report("asan_dispatch_call_block_and_release(): "
316            "context: %p, pthread_self: %p\n",
317            block, pthread_self());
318   }
319   asan_register_worker_thread(context->parent_tid, &stack);
320   // Call the original dispatcher for the block.
321   context->func(context->block);
322   asan_free(context, &stack, FROM_MALLOC);
323 }
324 
325 }  // namespace __asan
326 
327 using namespace __asan;  // NOLINT
328 
329 // Wrap |ctxt| and |func| into an asan_block_context_t.
330 // The caller retains control of the allocated context.
331 extern "C"
alloc_asan_context(void * ctxt,dispatch_function_t func,StackTrace * stack)332 asan_block_context_t *alloc_asan_context(void *ctxt, dispatch_function_t func,
333                                          StackTrace *stack) {
334   asan_block_context_t *asan_ctxt =
335       (asan_block_context_t*) asan_malloc(sizeof(asan_block_context_t), stack);
336   asan_ctxt->block = ctxt;
337   asan_ctxt->func = func;
338   asan_ctxt->parent_tid = GetCurrentTidOrInvalid();
339   return asan_ctxt;
340 }
341 
342 // Define interceptor for dispatch_*_f function with the three most common
343 // parameters: dispatch_queue_t, context, dispatch_function_t.
344 #define INTERCEPT_DISPATCH_X_F_3(dispatch_x_f)                                \
345   INTERCEPTOR(void, dispatch_x_f, dispatch_queue_t dq, void *ctxt,            \
346                                   dispatch_function_t func) {                 \
347     GET_STACK_TRACE_THREAD;                                                   \
348     asan_block_context_t *asan_ctxt = alloc_asan_context(ctxt, func, &stack); \
349     if (flags()->verbosity >= 2) {                                            \
350       Report(#dispatch_x_f "(): context: %p, pthread_self: %p\n",             \
351              asan_ctxt, pthread_self());                                      \
352        PRINT_CURRENT_STACK();                                                 \
353      }                                                                        \
354      return REAL(dispatch_x_f)(dq, (void*)asan_ctxt,                          \
355                                asan_dispatch_call_block_and_release);         \
356   }
357 
358 INTERCEPT_DISPATCH_X_F_3(dispatch_async_f)
INTERCEPT_DISPATCH_X_F_3(dispatch_sync_f)359 INTERCEPT_DISPATCH_X_F_3(dispatch_sync_f)
360 INTERCEPT_DISPATCH_X_F_3(dispatch_barrier_async_f)
361 
362 INTERCEPTOR(void, dispatch_after_f, dispatch_time_t when,
363                                     dispatch_queue_t dq, void *ctxt,
364                                     dispatch_function_t func) {
365   GET_STACK_TRACE_THREAD;
366   asan_block_context_t *asan_ctxt = alloc_asan_context(ctxt, func, &stack);
367   if (flags()->verbosity >= 2) {
368     Report("dispatch_after_f: %p\n", asan_ctxt);
369     PRINT_CURRENT_STACK();
370   }
371   return REAL(dispatch_after_f)(when, dq, (void*)asan_ctxt,
372                                 asan_dispatch_call_block_and_release);
373 }
374 
INTERCEPTOR(void,dispatch_group_async_f,dispatch_group_t group,dispatch_queue_t dq,void * ctxt,dispatch_function_t func)375 INTERCEPTOR(void, dispatch_group_async_f, dispatch_group_t group,
376                                           dispatch_queue_t dq, void *ctxt,
377                                           dispatch_function_t func) {
378   GET_STACK_TRACE_THREAD;
379   asan_block_context_t *asan_ctxt = alloc_asan_context(ctxt, func, &stack);
380   if (flags()->verbosity >= 2) {
381     Report("dispatch_group_async_f(): context: %p, pthread_self: %p\n",
382            asan_ctxt, pthread_self());
383     PRINT_CURRENT_STACK();
384   }
385   REAL(dispatch_group_async_f)(group, dq, (void*)asan_ctxt,
386                                asan_dispatch_call_block_and_release);
387 }
388 
389 #if !defined(MISSING_BLOCKS_SUPPORT)
390 extern "C" {
391 // FIXME: consolidate these declarations with asan_intercepted_functions.h.
392 void dispatch_async(dispatch_queue_t dq, void(^work)(void));
393 void dispatch_group_async(dispatch_group_t dg, dispatch_queue_t dq,
394                           void(^work)(void));
395 void dispatch_after(dispatch_time_t when, dispatch_queue_t queue,
396                     void(^work)(void));
397 void dispatch_source_set_cancel_handler(dispatch_source_t ds,
398                                         void(^work)(void));
399 void dispatch_source_set_event_handler(dispatch_source_t ds, void(^work)(void));
400 }
401 
402 #define GET_ASAN_BLOCK(work) \
403   void (^asan_block)(void);  \
404   int parent_tid = GetCurrentTidOrInvalid(); \
405   asan_block = ^(void) { \
406     GET_STACK_TRACE_THREAD; \
407     asan_register_worker_thread(parent_tid, &stack); \
408     work(); \
409   }
410 
411 INTERCEPTOR(void, dispatch_async,
412             dispatch_queue_t dq, void(^work)(void)) {
413   GET_ASAN_BLOCK(work);
414   REAL(dispatch_async)(dq, asan_block);
415 }
416 
417 INTERCEPTOR(void, dispatch_group_async,
418             dispatch_group_t dg, dispatch_queue_t dq, void(^work)(void)) {
419   GET_ASAN_BLOCK(work);
420   REAL(dispatch_group_async)(dg, dq, asan_block);
421 }
422 
423 INTERCEPTOR(void, dispatch_after,
424             dispatch_time_t when, dispatch_queue_t queue, void(^work)(void)) {
425   GET_ASAN_BLOCK(work);
426   REAL(dispatch_after)(when, queue, asan_block);
427 }
428 
429 INTERCEPTOR(void, dispatch_source_set_cancel_handler,
430             dispatch_source_t ds, void(^work)(void)) {
431   GET_ASAN_BLOCK(work);
432   REAL(dispatch_source_set_cancel_handler)(ds, asan_block);
433 }
434 
435 INTERCEPTOR(void, dispatch_source_set_event_handler,
436             dispatch_source_t ds, void(^work)(void)) {
437   GET_ASAN_BLOCK(work);
438   REAL(dispatch_source_set_event_handler)(ds, asan_block);
439 }
440 #endif
441 
442 #endif  // SANITIZER_MAC
443