1 /*
2  * Copyright (C) 2012 The Android Open Source Project
3  * All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  *  * Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  *  * Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in
12  *    the documentation and/or other materials provided with the
13  *    distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
16  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
17  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
18  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
19  * COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
20  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
22  * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
25  * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include <errno.h>
30 #include <inttypes.h>
31 #include <malloc.h>
32 #include <string.h>
33 #include <sys/cdefs.h>
34 #include <sys/param.h>
35 #include <unistd.h>
36 
37 #include <vector>
38 
39 #include <private/bionic_malloc_dispatch.h>
40 
41 #include "backtrace.h"
42 #include "Config.h"
43 #include "DebugData.h"
44 #include "debug_disable.h"
45 #include "debug_log.h"
46 #include "malloc_debug.h"
47 
48 // ------------------------------------------------------------------------
49 // Global Data
50 // ------------------------------------------------------------------------
51 DebugData* g_debug;
52 
53 int* g_malloc_zygote_child;
54 
55 const MallocDispatch* g_dispatch;
56 // ------------------------------------------------------------------------
57 
58 // ------------------------------------------------------------------------
59 // Use C style prototypes for all exported functions. This makes it easy
60 // to do dlsym lookups during libc initialization when malloc debug
61 // is enabled.
62 // ------------------------------------------------------------------------
63 __BEGIN_DECLS
64 
65 bool debug_initialize(const MallocDispatch* malloc_dispatch, int* malloc_zygote_child);
66 void debug_finalize();
67 void debug_get_malloc_leak_info(
68     uint8_t** info, size_t* overall_size, size_t* info_size, size_t* total_memory,
69     size_t* backtrace_size);
70 ssize_t debug_malloc_backtrace(void* pointer, uintptr_t* frames, size_t frame_count);
71 void debug_free_malloc_leak_info(uint8_t* info);
72 size_t debug_malloc_usable_size(void* pointer);
73 void* debug_malloc(size_t size);
74 void debug_free(void* pointer);
75 void* debug_memalign(size_t alignment, size_t bytes);
76 void* debug_realloc(void* pointer, size_t bytes);
77 void* debug_calloc(size_t nmemb, size_t bytes);
78 struct mallinfo debug_mallinfo();
79 int debug_posix_memalign(void** memptr, size_t alignment, size_t size);
80 int debug_iterate(uintptr_t base, size_t size,
81     void (*callback)(uintptr_t base, size_t size, void* arg), void* arg);
82 void debug_malloc_disable();
83 void debug_malloc_enable();
84 
85 #if defined(HAVE_DEPRECATED_MALLOC_FUNCS)
86 void* debug_pvalloc(size_t bytes);
87 void* debug_valloc(size_t size);
88 #endif
89 
90 __END_DECLS
91 // ------------------------------------------------------------------------
92 
InitAtfork()93 static void InitAtfork() {
94   static pthread_once_t atfork_init = PTHREAD_ONCE_INIT;
95   pthread_once(&atfork_init, [](){
96     pthread_atfork(
97         [](){
98           if (g_debug != nullptr) {
99             g_debug->PrepareFork();
100           }
101         },
102         [](){
103           if (g_debug != nullptr) {
104             g_debug->PostForkParent();
105           }
106         },
107         [](){
108           if (g_debug != nullptr) {
109             g_debug->PostForkChild();
110           }
111         }
112     );
113   });
114 }
115 
LogTagError(const Header * header,const void * pointer,const char * name)116 static void LogTagError(const Header* header, const void* pointer, const char* name) {
117   ScopedDisableDebugCalls disable;
118 
119   error_log(LOG_DIVIDER);
120   if (header->tag == DEBUG_FREE_TAG) {
121     error_log("+++ ALLOCATION %p USED AFTER FREE (%s)", pointer, name);
122     if (g_debug->config().options & FREE_TRACK) {
123       g_debug->free_track->LogBacktrace(header);
124     }
125   } else {
126     error_log("+++ ALLOCATION %p HAS INVALID TAG %" PRIx32 " (%s)", pointer, header->tag, name);
127   }
128   error_log("Backtrace at time of failure:");
129   std::vector<uintptr_t> frames(64);
130   size_t frame_num = backtrace_get(frames.data(), frames.size());
131   frames.resize(frame_num);
132   backtrace_log(frames.data(), frames.size());
133   error_log(LOG_DIVIDER);
134 }
135 
InitHeader(Header * header,void * orig_pointer,size_t size)136 static void* InitHeader(Header* header, void* orig_pointer, size_t size) {
137   header->tag = DEBUG_TAG;
138   header->orig_pointer = orig_pointer;
139   header->size = size;
140   if (*g_malloc_zygote_child) {
141     header->set_zygote();
142   }
143   header->usable_size = g_dispatch->malloc_usable_size(orig_pointer);
144   if (header->usable_size == 0) {
145     g_dispatch->free(orig_pointer);
146     return nullptr;
147   }
148   header->usable_size -= g_debug->pointer_offset() +
149       reinterpret_cast<uintptr_t>(header) - reinterpret_cast<uintptr_t>(orig_pointer);
150 
151   if (g_debug->config().options & FRONT_GUARD) {
152     uint8_t* guard = g_debug->GetFrontGuard(header);
153     memset(guard, g_debug->config().front_guard_value, g_debug->config().front_guard_bytes);
154   }
155 
156   if (g_debug->config().options & REAR_GUARD) {
157     uint8_t* guard = g_debug->GetRearGuard(header);
158     memset(guard, g_debug->config().rear_guard_value, g_debug->config().rear_guard_bytes);
159     // If the rear guard is enabled, set the usable size to the exact size
160     // of the allocation.
161     header->usable_size = header->real_size();
162   }
163 
164   bool backtrace_found = false;
165   if (g_debug->config().options & BACKTRACE) {
166     BacktraceHeader* back_header = g_debug->GetAllocBacktrace(header);
167     if (g_debug->backtrace->enabled()) {
168       ScopedDisableDebugCalls disable;
169       back_header->num_frames = backtrace_get(
170           &back_header->frames[0], g_debug->config().backtrace_frames);
171       backtrace_found = back_header->num_frames > 0;
172     } else {
173       back_header->num_frames = 0;
174     }
175   }
176 
177   if (g_debug->config().options & TRACK_ALLOCS) {
178     g_debug->track->Add(header, backtrace_found);
179   }
180 
181   return g_debug->GetPointer(header);
182 }
183 
debug_initialize(const MallocDispatch * malloc_dispatch,int * malloc_zygote_child)184 bool debug_initialize(const MallocDispatch* malloc_dispatch, int* malloc_zygote_child) {
185   if (malloc_zygote_child == nullptr) {
186     return false;
187   }
188 
189   InitAtfork();
190 
191   g_malloc_zygote_child = malloc_zygote_child;
192 
193   g_dispatch = malloc_dispatch;
194 
195   if (!DebugDisableInitialize()) {
196     return false;
197   }
198 
199   DebugData* debug = new DebugData();
200   if (!debug->Initialize()) {
201     delete debug;
202     DebugDisableFinalize();
203     return false;
204   }
205   g_debug = debug;
206 
207   // Always enable the backtrace code since we will use it in a number
208   // of different error cases.
209   backtrace_startup();
210 
211   return true;
212 }
213 
debug_finalize()214 void debug_finalize() {
215   if (g_debug == nullptr) {
216     return;
217   }
218 
219   if (g_debug->config().options & FREE_TRACK) {
220     g_debug->free_track->VerifyAll(*g_debug);
221   }
222 
223   if (g_debug->config().options & LEAK_TRACK) {
224     g_debug->track->DisplayLeaks(*g_debug);
225   }
226 
227   DebugDisableSet(true);
228 
229   backtrace_shutdown();
230 
231   delete g_debug;
232   g_debug = nullptr;
233 
234   DebugDisableFinalize();
235 }
236 
debug_get_malloc_leak_info(uint8_t ** info,size_t * overall_size,size_t * info_size,size_t * total_memory,size_t * backtrace_size)237 void debug_get_malloc_leak_info(uint8_t** info, size_t* overall_size,
238     size_t* info_size, size_t* total_memory, size_t* backtrace_size) {
239   ScopedDisableDebugCalls disable;
240 
241   // Verify the arguments.
242   if (info == nullptr || overall_size == nullptr || info_size == NULL ||
243       total_memory == nullptr || backtrace_size == nullptr) {
244     error_log("get_malloc_leak_info: At least one invalid parameter.");
245     return;
246   }
247 
248   *info = nullptr;
249   *overall_size = 0;
250   *info_size = 0;
251   *total_memory = 0;
252   *backtrace_size = 0;
253 
254   if (!(g_debug->config().options & BACKTRACE)) {
255     error_log("get_malloc_leak_info: Allocations not being tracked, to enable "
256               "set the option 'backtrace'.");
257     return;
258   }
259 
260   g_debug->track->GetInfo(*g_debug, info, overall_size, info_size, total_memory, backtrace_size);
261 }
262 
debug_free_malloc_leak_info(uint8_t * info)263 void debug_free_malloc_leak_info(uint8_t* info) {
264   g_dispatch->free(info);
265 }
266 
debug_malloc_usable_size(void * pointer)267 size_t debug_malloc_usable_size(void* pointer) {
268   if (DebugCallsDisabled() || !g_debug->need_header() || pointer == nullptr) {
269     return g_dispatch->malloc_usable_size(pointer);
270   }
271 
272   Header* header = g_debug->GetHeader(pointer);
273   if (header->tag != DEBUG_TAG) {
274     LogTagError(header, pointer, "malloc_usable_size");
275     return 0;
276   }
277 
278   return header->usable_size;
279 }
280 
debug_malloc(size_t size)281 void* debug_malloc(size_t size) {
282   if (DebugCallsDisabled()) {
283     return g_dispatch->malloc(size);
284   }
285 
286   if (size == 0) {
287     size = 1;
288   }
289 
290   size_t real_size = size + g_debug->extra_bytes();
291   if (real_size < size) {
292     // Overflow.
293     errno = ENOMEM;
294     return nullptr;
295   }
296 
297   void* pointer;
298   if (g_debug->need_header()) {
299     if (size > Header::max_size()) {
300       errno = ENOMEM;
301       return nullptr;
302     }
303 
304     Header* header = reinterpret_cast<Header*>(
305         g_dispatch->memalign(MINIMUM_ALIGNMENT_BYTES, real_size));
306     if (header == nullptr) {
307       return nullptr;
308     }
309     pointer = InitHeader(header, header, size);
310   } else {
311     pointer = g_dispatch->malloc(real_size);
312   }
313 
314   if (pointer != nullptr && g_debug->config().options & FILL_ON_ALLOC) {
315     size_t bytes = debug_malloc_usable_size(pointer);
316     size_t fill_bytes = g_debug->config().fill_on_alloc_bytes;
317     bytes = (bytes < fill_bytes) ? bytes : fill_bytes;
318     memset(pointer, g_debug->config().fill_alloc_value, bytes);
319   }
320   return pointer;
321 }
322 
debug_free(void * pointer)323 void debug_free(void* pointer) {
324   if (DebugCallsDisabled() || pointer == nullptr) {
325     return g_dispatch->free(pointer);
326   }
327 
328   void* free_pointer = pointer;
329   size_t bytes;
330   Header* header;
331   if (g_debug->need_header()) {
332     header = g_debug->GetHeader(pointer);
333     if (header->tag != DEBUG_TAG) {
334       LogTagError(header, pointer, "free");
335       return;
336     }
337     free_pointer = header->orig_pointer;
338 
339     if (g_debug->config().options & FRONT_GUARD) {
340       if (!g_debug->front_guard->Valid(*g_debug, header)) {
341         g_debug->front_guard->LogFailure(*g_debug, header);
342       }
343     }
344     if (g_debug->config().options & REAR_GUARD) {
345       if (!g_debug->rear_guard->Valid(*g_debug, header)) {
346         g_debug->rear_guard->LogFailure(*g_debug, header);
347       }
348     }
349 
350     if (g_debug->config().options & TRACK_ALLOCS) {
351       bool backtrace_found = false;
352       if (g_debug->config().options & BACKTRACE) {
353         BacktraceHeader* back_header = g_debug->GetAllocBacktrace(header);
354         backtrace_found = back_header->num_frames > 0;
355       }
356       g_debug->track->Remove(header, backtrace_found);
357     }
358     header->tag = DEBUG_FREE_TAG;
359 
360     bytes = header->usable_size;
361   } else {
362     bytes = g_dispatch->malloc_usable_size(pointer);
363   }
364 
365   if (g_debug->config().options & FILL_ON_FREE) {
366     size_t fill_bytes = g_debug->config().fill_on_free_bytes;
367     bytes = (bytes < fill_bytes) ? bytes : fill_bytes;
368     memset(pointer, g_debug->config().fill_free_value, bytes);
369   }
370 
371   if (g_debug->config().options & FREE_TRACK) {
372     // Do not add the allocation until we are done modifying the pointer
373     // itself. This avoids a race if a lot of threads are all doing
374     // frees at the same time and we wind up trying to really free this
375     // pointer from another thread, while still trying to free it in
376     // this function.
377     g_debug->free_track->Add(*g_debug, header);
378   } else {
379     g_dispatch->free(free_pointer);
380   }
381 }
382 
debug_memalign(size_t alignment,size_t bytes)383 void* debug_memalign(size_t alignment, size_t bytes) {
384   if (DebugCallsDisabled()) {
385     return g_dispatch->memalign(alignment, bytes);
386   }
387 
388   if (bytes == 0) {
389     bytes = 1;
390   }
391 
392   void* pointer;
393   if (g_debug->need_header()) {
394     if (bytes > Header::max_size()) {
395       errno = ENOMEM;
396       return nullptr;
397     }
398 
399     // Make the alignment a power of two.
400     if (!powerof2(alignment)) {
401       alignment = BIONIC_ROUND_UP_POWER_OF_2(alignment);
402     }
403     // Force the alignment to at least MINIMUM_ALIGNMENT_BYTES to guarantee
404     // that the header is aligned properly.
405     if (alignment < MINIMUM_ALIGNMENT_BYTES) {
406       alignment = MINIMUM_ALIGNMENT_BYTES;
407     }
408 
409     // We don't have any idea what the natural alignment of
410     // the underlying native allocator is, so we always need to
411     // over allocate.
412     size_t real_size = alignment + bytes + g_debug->extra_bytes();
413     if (real_size < bytes) {
414       // Overflow.
415       errno = ENOMEM;
416       return nullptr;
417     }
418 
419     pointer = g_dispatch->malloc(real_size);
420     if (pointer == nullptr) {
421       return nullptr;
422     }
423 
424     uintptr_t value = reinterpret_cast<uintptr_t>(pointer) + g_debug->pointer_offset();
425     // Now align the pointer.
426     value += (-value % alignment);
427 
428     Header* header = g_debug->GetHeader(reinterpret_cast<void*>(value));
429     pointer = InitHeader(header, pointer, bytes);
430   } else {
431     size_t real_size = bytes + g_debug->extra_bytes();
432     if (real_size < bytes) {
433       // Overflow.
434       errno = ENOMEM;
435       return nullptr;
436     }
437     pointer = g_dispatch->memalign(alignment, real_size);
438   }
439 
440   if (pointer != nullptr && g_debug->config().options & FILL_ON_ALLOC) {
441     size_t bytes = debug_malloc_usable_size(pointer);
442     size_t fill_bytes = g_debug->config().fill_on_alloc_bytes;
443     bytes = (bytes < fill_bytes) ? bytes : fill_bytes;
444     memset(pointer, g_debug->config().fill_alloc_value, bytes);
445   }
446   return pointer;
447 }
448 
debug_realloc(void * pointer,size_t bytes)449 void* debug_realloc(void* pointer, size_t bytes) {
450   if (DebugCallsDisabled()) {
451     return g_dispatch->realloc(pointer, bytes);
452   }
453 
454   if (pointer == nullptr) {
455     return debug_malloc(bytes);
456   }
457 
458   if (bytes == 0) {
459     debug_free(pointer);
460     return nullptr;
461   }
462 
463   size_t real_size = bytes;
464   if (g_debug->config().options & EXPAND_ALLOC) {
465     real_size += g_debug->config().expand_alloc_bytes;
466     if (real_size < bytes) {
467       // Overflow.
468       errno = ENOMEM;
469       return nullptr;
470     }
471   }
472 
473   void* new_pointer;
474   size_t prev_size;
475   if (g_debug->need_header()) {
476     if (bytes > Header::max_size()) {
477       errno = ENOMEM;
478       return nullptr;
479     }
480 
481     Header* header = g_debug->GetHeader(pointer);
482     if (header->tag != DEBUG_TAG) {
483       LogTagError(header, pointer, "realloc");
484       return nullptr;
485     }
486 
487     // Same size, do nothing.
488     if (real_size == header->real_size()) {
489       return pointer;
490     }
491 
492     // Allocation is shrinking.
493     if (real_size < header->usable_size) {
494       header->size = real_size;
495       if (*g_malloc_zygote_child) {
496         header->set_zygote();
497       }
498       if (g_debug->config().options & REAR_GUARD) {
499         // Don't bother allocating a smaller pointer in this case, simply
500         // change the header usable_size and reset the rear guard.
501         header->usable_size = header->real_size();
502         memset(g_debug->GetRearGuard(header), g_debug->config().rear_guard_value,
503                g_debug->config().rear_guard_bytes);
504       }
505       return pointer;
506     }
507 
508     // Allocate the new size.
509     new_pointer = debug_malloc(bytes);
510     if (new_pointer == nullptr) {
511       errno = ENOMEM;
512       return nullptr;
513     }
514 
515     prev_size = header->usable_size;
516     memcpy(new_pointer, pointer, prev_size);
517     debug_free(pointer);
518   } else {
519     prev_size = g_dispatch->malloc_usable_size(pointer);
520     new_pointer = g_dispatch->realloc(pointer, real_size);
521     if (new_pointer == nullptr) {
522       return nullptr;
523     }
524   }
525 
526   if (g_debug->config().options & FILL_ON_ALLOC) {
527     size_t bytes = debug_malloc_usable_size(new_pointer);
528     if (bytes > g_debug->config().fill_on_alloc_bytes) {
529       bytes = g_debug->config().fill_on_alloc_bytes;
530     }
531     if (bytes > prev_size) {
532       memset(reinterpret_cast<void*>(reinterpret_cast<uintptr_t>(new_pointer) + prev_size),
533              g_debug->config().fill_alloc_value, bytes - prev_size);
534     }
535   }
536 
537   return new_pointer;
538 }
539 
debug_calloc(size_t nmemb,size_t bytes)540 void* debug_calloc(size_t nmemb, size_t bytes) {
541   if (DebugCallsDisabled()) {
542     return g_dispatch->calloc(nmemb, bytes);
543   }
544 
545   size_t size;
546   if (__builtin_mul_overflow(nmemb, bytes, &size)) {
547     // Overflow
548     errno = ENOMEM;
549     return nullptr;
550   }
551 
552   if (size == 0) {
553     size = 1;
554   }
555 
556   size_t real_size;
557   if (__builtin_add_overflow(size, g_debug->extra_bytes(), &real_size)) {
558     // Overflow.
559     errno = ENOMEM;
560     return nullptr;
561   }
562 
563   if (g_debug->need_header()) {
564     // The above check will guarantee the multiply will not overflow.
565     if (size > Header::max_size()) {
566       errno = ENOMEM;
567       return nullptr;
568     }
569 
570     // Need to guarantee the alignment of the header.
571     Header* header = reinterpret_cast<Header*>(
572         g_dispatch->memalign(MINIMUM_ALIGNMENT_BYTES, real_size));
573     if (header == nullptr) {
574       return nullptr;
575     }
576     memset(header, 0, g_dispatch->malloc_usable_size(header));
577     return InitHeader(header, header, size);
578   } else {
579     return g_dispatch->calloc(1, real_size);
580   }
581 }
582 
debug_mallinfo()583 struct mallinfo debug_mallinfo() {
584   return g_dispatch->mallinfo();
585 }
586 
debug_posix_memalign(void ** memptr,size_t alignment,size_t size)587 int debug_posix_memalign(void** memptr, size_t alignment, size_t size) {
588   if (DebugCallsDisabled()) {
589     return g_dispatch->posix_memalign(memptr, alignment, size);
590   }
591 
592   if (!powerof2(alignment)) {
593     return EINVAL;
594   }
595   int saved_errno = errno;
596   *memptr = debug_memalign(alignment, size);
597   errno = saved_errno;
598   return (*memptr != nullptr) ? 0 : ENOMEM;
599 }
600 
debug_iterate(uintptr_t base,size_t size,void (* callback)(uintptr_t base,size_t size,void * arg),void * arg)601 int debug_iterate(uintptr_t base, size_t size,
602     void (*callback)(uintptr_t base, size_t size, void* arg), void* arg) {
603   // Can't allocate, malloc is disabled
604   // Manual capture of the arguments to pass to the lambda below as void* arg
605   struct iterate_ctx {
606     decltype(callback) callback;
607     decltype(arg) arg;
608   } ctx = { callback, arg };
609 
610   return g_dispatch->iterate(base, size,
611       [](uintptr_t base, size_t size, void* arg) {
612         const iterate_ctx* ctx = reinterpret_cast<iterate_ctx*>(arg);
613         const void* pointer = reinterpret_cast<void*>(base);
614         if (g_debug->need_header()) {
615           const Header* header = reinterpret_cast<const Header*>(pointer);
616           if (g_debug->config().options & TRACK_ALLOCS) {
617             if (g_debug->track->Contains(header)) {
618               // Return just the body of the allocation if we're sure the header exists
619               ctx->callback(reinterpret_cast<uintptr_t>(g_debug->GetPointer(header)),
620                   header->usable_size, ctx->arg);
621               return;
622             }
623           }
624         }
625         // Fall back to returning the whole allocation
626         ctx->callback(base, size, ctx->arg);
627       }, &ctx);
628 }
629 
debug_malloc_disable()630 void debug_malloc_disable() {
631   g_dispatch->malloc_disable();
632   if (g_debug->track) {
633     g_debug->track->PrepareFork();
634   }
635 }
636 
debug_malloc_enable()637 void debug_malloc_enable() {
638   if (g_debug->track) {
639     g_debug->track->PostForkParent();
640   }
641   g_dispatch->malloc_enable();
642 }
643 
debug_malloc_backtrace(void * pointer,uintptr_t * frames,size_t frame_count)644 ssize_t debug_malloc_backtrace(void* pointer, uintptr_t* frames, size_t frame_count) {
645   if (DebugCallsDisabled() || pointer == nullptr) {
646     return 0;
647   }
648 
649   if (g_debug->need_header()) {
650     Header* header;
651     if (g_debug->config().options & TRACK_ALLOCS) {
652       header = g_debug->GetHeader(pointer);
653       if (!g_debug->track->Contains(header)) {
654         return 0;
655       }
656     } else {
657       header = reinterpret_cast<Header*>(pointer);
658     }
659     if (header->tag != DEBUG_TAG) {
660       return 0;
661     }
662     if (g_debug->config().options & BACKTRACE) {
663       BacktraceHeader* back_header = g_debug->GetAllocBacktrace(header);
664       if (back_header->num_frames > 0) {
665         if (frame_count > back_header->num_frames) {
666           frame_count = back_header->num_frames;
667         }
668         memcpy(frames, &back_header->frames[0], frame_count * sizeof(uintptr_t));
669         return frame_count;
670       }
671     }
672   }
673 
674   return 0;
675 }
676 
677 #if defined(HAVE_DEPRECATED_MALLOC_FUNCS)
debug_pvalloc(size_t bytes)678 void* debug_pvalloc(size_t bytes) {
679   if (DebugCallsDisabled()) {
680     return g_dispatch->pvalloc(bytes);
681   }
682 
683   size_t pagesize = getpagesize();
684   size_t size = BIONIC_ALIGN(bytes, pagesize);
685   if (size < bytes) {
686     // Overflow
687     errno = ENOMEM;
688     return nullptr;
689   }
690   return debug_memalign(pagesize, size);
691 }
692 
debug_valloc(size_t size)693 void* debug_valloc(size_t size) {
694   if (DebugCallsDisabled()) {
695     return g_dispatch->valloc(size);
696   }
697   return debug_memalign(getpagesize(), size);
698 }
699 #endif
700