1 /*
2  * Copyright (C) 2009 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 #if defined(LIBC_STATIC)
30 #error This file should not be compiled for static targets.
31 #endif
32 
33 // Contains a thin layer that calls whatever real native allocator
34 // has been defined. For the libc shared library, this allows the
35 // implementation of a debug malloc that can intercept all of the allocation
36 // calls and add special debugging code to attempt to catch allocation
37 // errors. All of the debugging code is implemented in a separate shared
38 // library that is only loaded when the property "libc.debug.malloc.options"
39 // is set to a non-zero value. There are three functions exported to
40 // allow ddms, or other external users to get information from the debug
41 // allocation.
42 //   get_malloc_leak_info: Returns information about all of the known native
43 //                         allocations that are currently in use.
44 //   free_malloc_leak_info: Frees the data allocated by the call to
45 //                          get_malloc_leak_info.
46 //   write_malloc_leak_info: Writes the leak info data to a file.
47 
48 #include <dlfcn.h>
49 #include <errno.h>
50 #include <fcntl.h>
51 #include <pthread.h>
52 #include <stdatomic.h>
53 #include <stdbool.h>
54 #include <stdio.h>
55 #include <stdlib.h>
56 #include <unistd.h>
57 
58 #include <android/dlext.h>
59 
60 #include <platform/bionic/malloc.h>
61 #include <private/ScopedPthreadMutexLocker.h>
62 #include <private/bionic_config.h>
63 #include <private/bionic_defs.h>
64 #include <private/bionic_malloc_dispatch.h>
65 
66 #include <sys/system_properties.h>
67 
68 #include "gwp_asan_wrappers.h"
69 #include "heap_tagging.h"
70 #include "heap_zero_init.h"
71 #include "malloc_common.h"
72 #include "malloc_common_dynamic.h"
73 #include "malloc_heapprofd.h"
74 #include "malloc_limit.h"
75 
76 // =============================================================================
77 // Global variables instantations.
78 // =============================================================================
79 pthread_mutex_t gGlobalsMutateLock = PTHREAD_MUTEX_INITIALIZER;
80 
81 _Atomic bool gGlobalsMutating = false;
82 
83 static bool gZygoteChild = false;
84 
85 // In a Zygote child process, this is set to true if profiling of this process
86 // is allowed. Note that this is set at a later time than gZygoteChild. The
87 // latter is set during the fork (while still in zygote's SELinux domain). While
88 // this bit is set after the child is specialized (and has transferred SELinux
89 // domains if applicable). These two flags are read by the
90 // BIONIC_SIGNAL_PROFILER handler, which does nothing if the process is not
91 // profileable.
92 static _Atomic bool gZygoteChildProfileable = false;
93 
94 // =============================================================================
95 
96 static constexpr char kHooksSharedLib[] = "libc_malloc_hooks.so";
97 static constexpr char kHooksPrefix[] = "hooks";
98 static constexpr char kHooksPropertyEnable[] = "libc.debug.hooks.enable";
99 static constexpr char kHooksEnvEnable[] = "LIBC_HOOKS_ENABLE";
100 
101 static constexpr char kDebugSharedLib[] = "libc_malloc_debug.so";
102 static constexpr char kDebugPrefix[] = "debug";
103 static constexpr char kDebugPropertyOptions[] = "libc.debug.malloc.options";
104 static constexpr char kDebugPropertyProgram[] = "libc.debug.malloc.program";
105 static constexpr char kDebugEnvOptions[] = "LIBC_DEBUG_MALLOC_OPTIONS";
106 
107 typedef void (*finalize_func_t)();
108 typedef bool (*init_func_t)(const MallocDispatch*, bool*, const char*);
109 typedef void (*get_malloc_leak_info_func_t)(uint8_t**, size_t*, size_t*, size_t*, size_t*);
110 typedef void (*free_malloc_leak_info_func_t)(uint8_t*);
111 typedef bool (*write_malloc_leak_info_func_t)(FILE*);
112 typedef ssize_t (*malloc_backtrace_func_t)(void*, uintptr_t*, size_t);
113 
114 enum FunctionEnum : uint8_t {
115   FUNC_INITIALIZE,
116   FUNC_FINALIZE,
117   FUNC_GET_MALLOC_LEAK_INFO,
118   FUNC_FREE_MALLOC_LEAK_INFO,
119   FUNC_MALLOC_BACKTRACE,
120   FUNC_WRITE_LEAK_INFO,
121   FUNC_LAST,
122 };
123 static void* gFunctions[FUNC_LAST];
124 
125 extern "C" int __cxa_atexit(void (*func)(void *), void *arg, void *dso);
126 
127 template<typename FunctionType>
InitMallocFunction(void * malloc_impl_handler,FunctionType * func,const char * prefix,const char * suffix)128 static bool InitMallocFunction(void* malloc_impl_handler, FunctionType* func, const char* prefix, const char* suffix) {
129   char symbol[128];
130   snprintf(symbol, sizeof(symbol), "%s_%s", prefix, suffix);
131   *func = reinterpret_cast<FunctionType>(dlsym(malloc_impl_handler, symbol));
132   if (*func == nullptr) {
133     error_log("%s: dlsym(\"%s\") failed", getprogname(), symbol);
134     return false;
135   }
136   return true;
137 }
138 
InitMallocFunctions(void * impl_handler,MallocDispatch * table,const char * prefix)139 static bool InitMallocFunctions(void* impl_handler, MallocDispatch* table, const char* prefix) {
140   if (!InitMallocFunction<MallocFree>(impl_handler, &table->free, prefix, "free")) {
141     return false;
142   }
143   if (!InitMallocFunction<MallocCalloc>(impl_handler, &table->calloc, prefix, "calloc")) {
144     return false;
145   }
146   if (!InitMallocFunction<MallocMallinfo>(impl_handler, &table->mallinfo, prefix, "mallinfo")) {
147     return false;
148   }
149   if (!InitMallocFunction<MallocMallopt>(impl_handler, &table->mallopt, prefix, "mallopt")) {
150     return false;
151   }
152   if (!InitMallocFunction<MallocMalloc>(impl_handler, &table->malloc, prefix, "malloc")) {
153     return false;
154   }
155   if (!InitMallocFunction<MallocMallocInfo>(impl_handler, &table->malloc_info, prefix,
156                                                 "malloc_info")) {
157     return false;
158   }
159   if (!InitMallocFunction<MallocMallocUsableSize>(impl_handler, &table->malloc_usable_size, prefix,
160                                                   "malloc_usable_size")) {
161     return false;
162   }
163   if (!InitMallocFunction<MallocMemalign>(impl_handler, &table->memalign, prefix, "memalign")) {
164     return false;
165   }
166   if (!InitMallocFunction<MallocPosixMemalign>(impl_handler, &table->posix_memalign, prefix,
167                                                "posix_memalign")) {
168     return false;
169   }
170   if (!InitMallocFunction<MallocAlignedAlloc>(impl_handler, &table->aligned_alloc,
171                                               prefix, "aligned_alloc")) {
172     return false;
173   }
174   if (!InitMallocFunction<MallocRealloc>(impl_handler, &table->realloc, prefix, "realloc")) {
175     return false;
176   }
177   if (!InitMallocFunction<MallocIterate>(impl_handler, &table->malloc_iterate, prefix,
178                                          "malloc_iterate")) {
179     return false;
180   }
181   if (!InitMallocFunction<MallocMallocDisable>(impl_handler, &table->malloc_disable, prefix,
182                                                "malloc_disable")) {
183     return false;
184   }
185   if (!InitMallocFunction<MallocMallocEnable>(impl_handler, &table->malloc_enable, prefix,
186                                               "malloc_enable")) {
187     return false;
188   }
189 #if defined(HAVE_DEPRECATED_MALLOC_FUNCS)
190   if (!InitMallocFunction<MallocPvalloc>(impl_handler, &table->pvalloc, prefix, "pvalloc")) {
191     return false;
192   }
193   if (!InitMallocFunction<MallocValloc>(impl_handler, &table->valloc, prefix, "valloc")) {
194     return false;
195   }
196 #endif
197 
198   return true;
199 }
200 
MallocFiniImpl(void *)201 static void MallocFiniImpl(void*) {
202   // Our BSD stdio implementation doesn't close the standard streams,
203   // it only flushes them. Other unclosed FILE*s will show up as
204   // malloc leaks, but to avoid the standard streams showing up in
205   // leak reports, close them here.
206   fclose(stdin);
207   fclose(stdout);
208   fclose(stderr);
209 
210   reinterpret_cast<finalize_func_t>(gFunctions[FUNC_FINALIZE])();
211 }
212 
CheckLoadMallocHooks(char ** options)213 static bool CheckLoadMallocHooks(char** options) {
214   char* env = getenv(kHooksEnvEnable);
215   if ((env == nullptr || env[0] == '\0' || env[0] == '0') &&
216     (__system_property_get(kHooksPropertyEnable, *options) == 0 || *options[0] == '\0' || *options[0] == '0')) {
217     return false;
218   }
219   *options = nullptr;
220   return true;
221 }
222 
CheckLoadMallocDebug(char ** options)223 static bool CheckLoadMallocDebug(char** options) {
224   // If kDebugMallocEnvOptions is set then it overrides the system properties.
225   char* env = getenv(kDebugEnvOptions);
226   if (env == nullptr || env[0] == '\0') {
227     if (__system_property_get(kDebugPropertyOptions, *options) == 0 || *options[0] == '\0') {
228       return false;
229     }
230 
231     // Check to see if only a specific program should have debug malloc enabled.
232     char program[PROP_VALUE_MAX];
233     if (__system_property_get(kDebugPropertyProgram, program) != 0 &&
234         strstr(getprogname(), program) == nullptr) {
235       return false;
236     }
237   } else {
238     *options = env;
239   }
240   return true;
241 }
242 
SetGlobalFunctions(void * functions[])243 void SetGlobalFunctions(void* functions[]) {
244   for (size_t i = 0; i < FUNC_LAST; i++) {
245     gFunctions[i] = functions[i];
246   }
247 }
248 
ClearGlobalFunctions()249 static void ClearGlobalFunctions() {
250   for (size_t i = 0; i < FUNC_LAST; i++) {
251     gFunctions[i] = nullptr;
252   }
253 }
254 
InitSharedLibrary(void * impl_handle,const char * shared_lib,const char * prefix,MallocDispatch * dispatch_table)255 bool InitSharedLibrary(void* impl_handle, const char* shared_lib, const char* prefix, MallocDispatch* dispatch_table) {
256   static constexpr const char* names[] = {
257     "initialize",
258     "finalize",
259     "get_malloc_leak_info",
260     "free_malloc_leak_info",
261     "malloc_backtrace",
262     "write_malloc_leak_info",
263   };
264   for (size_t i = 0; i < FUNC_LAST; i++) {
265     char symbol[128];
266     snprintf(symbol, sizeof(symbol), "%s_%s", prefix, names[i]);
267     gFunctions[i] = dlsym(impl_handle, symbol);
268     if (gFunctions[i] == nullptr) {
269       error_log("%s: %s routine not found in %s", getprogname(), symbol, shared_lib);
270       ClearGlobalFunctions();
271       return false;
272     }
273   }
274 
275   if (!InitMallocFunctions(impl_handle, dispatch_table, prefix)) {
276     ClearGlobalFunctions();
277     return false;
278   }
279   return true;
280 }
281 
282 extern "C" struct android_namespace_t* android_get_exported_namespace(const char* name);
283 
LoadSharedLibrary(const char * shared_lib,const char * prefix,MallocDispatch * dispatch_table)284 void* LoadSharedLibrary(const char* shared_lib, const char* prefix, MallocDispatch* dispatch_table) {
285   void* impl_handle = nullptr;
286   // Try to load the libc_malloc_* libs from the "runtime" namespace and then
287   // fall back to dlopen() to load them from the default namespace.
288   //
289   // The libraries are packaged in the runtime APEX together with libc.so.
290   // However, since the libc.so is searched via the symlink in the system
291   // partition (/system/lib/libc.so -> /apex/com.android.runtime/bionic/libc.so)
292   // libc.so is loaded into the default namespace. If we just dlopen() here, the
293   // linker will load the libs found in /system/lib which might be incompatible
294   // with libc.so in the runtime APEX. Use android_dlopen_ext to explicitly load
295   // the ones in the runtime APEX.
296   struct android_namespace_t* runtime_ns = android_get_exported_namespace("com_android_runtime");
297   if (runtime_ns != nullptr) {
298     const android_dlextinfo dlextinfo = {
299       .flags = ANDROID_DLEXT_USE_NAMESPACE,
300       .library_namespace = runtime_ns,
301     };
302     impl_handle = android_dlopen_ext(shared_lib, RTLD_NOW | RTLD_LOCAL, &dlextinfo);
303   }
304 
305   if (impl_handle == nullptr) {
306     impl_handle = dlopen(shared_lib, RTLD_NOW | RTLD_LOCAL);
307   }
308 
309   if (impl_handle == nullptr) {
310     error_log("%s: Unable to open shared library %s: %s", getprogname(), shared_lib, dlerror());
311     return nullptr;
312   }
313 
314   if (!InitSharedLibrary(impl_handle, shared_lib, prefix, dispatch_table)) {
315     dlclose(impl_handle);
316     impl_handle = nullptr;
317   }
318 
319   return impl_handle;
320 }
321 
FinishInstallHooks(libc_globals * globals,const char * options,const char * prefix)322 bool FinishInstallHooks(libc_globals* globals, const char* options, const char* prefix) {
323   init_func_t init_func = reinterpret_cast<init_func_t>(gFunctions[FUNC_INITIALIZE]);
324 
325   // If GWP-ASan was initialised, we should use it as the dispatch table for
326   // heapprofd/malloc_debug/malloc_debug.
327   const MallocDispatch* prev_dispatch = GetDefaultDispatchTable();
328   if (prev_dispatch == nullptr) {
329     prev_dispatch = NativeAllocatorDispatch();
330   }
331 
332   if (!init_func(prev_dispatch, &gZygoteChild, options)) {
333     error_log("%s: failed to enable malloc %s", getprogname(), prefix);
334     ClearGlobalFunctions();
335     return false;
336   }
337 
338   // Do a pointer swap so that all of the functions become valid at once to
339   // avoid any initialization order problems.
340   atomic_store(&globals->default_dispatch_table, &globals->malloc_dispatch_table);
341   if (!MallocLimitInstalled()) {
342     atomic_store(&globals->current_dispatch_table, &globals->malloc_dispatch_table);
343   }
344 
345   // Use atexit to trigger the cleanup function. This avoids a problem
346   // where another atexit function is used to cleanup allocated memory,
347   // but the finalize function was already called. This particular error
348   // seems to be triggered by a zygote spawned process calling exit.
349   int ret_value = __cxa_atexit(MallocFiniImpl, nullptr, nullptr);
350   if (ret_value != 0) {
351     // We don't consider this a fatal error.
352     warning_log("failed to set atexit cleanup function: %d", ret_value);
353   }
354   return true;
355 }
356 
InstallHooks(libc_globals * globals,const char * options,const char * prefix,const char * shared_lib)357 static bool InstallHooks(libc_globals* globals, const char* options, const char* prefix,
358                          const char* shared_lib) {
359   void* impl_handle = LoadSharedLibrary(shared_lib, prefix, &globals->malloc_dispatch_table);
360   if (impl_handle == nullptr) {
361     return false;
362   }
363 
364   if (!FinishInstallHooks(globals, options, prefix)) {
365     dlclose(impl_handle);
366     return false;
367   }
368   return true;
369 }
370 
371 extern "C" const char* __scudo_get_stack_depot_addr();
372 extern "C" const char* __scudo_get_region_info_addr();
373 extern "C" const char* __scudo_get_ring_buffer_addr();
374 
375 // Initializes memory allocation framework once per process.
MallocInitImpl(libc_globals * globals)376 static void MallocInitImpl(libc_globals* globals) {
377   char prop[PROP_VALUE_MAX];
378   char* options = prop;
379 
380   MaybeInitGwpAsanFromLibc(globals);
381 
382 #if defined(USE_SCUDO)
383   __libc_shared_globals()->scudo_stack_depot = __scudo_get_stack_depot_addr();
384   __libc_shared_globals()->scudo_region_info = __scudo_get_region_info_addr();
385   __libc_shared_globals()->scudo_ring_buffer = __scudo_get_ring_buffer_addr();
386 #endif
387 
388   // Prefer malloc debug since it existed first and is a more complete
389   // malloc interceptor than the hooks.
390   bool hook_installed = false;
391   if (CheckLoadMallocDebug(&options)) {
392     hook_installed = InstallHooks(globals, options, kDebugPrefix, kDebugSharedLib);
393   } else if (CheckLoadMallocHooks(&options)) {
394     hook_installed = InstallHooks(globals, options, kHooksPrefix, kHooksSharedLib);
395   }
396 
397   if (!hook_installed) {
398     if (HeapprofdShouldLoad()) {
399       HeapprofdInstallHooksAtInit(globals);
400     }
401   } else {
402     // Record the fact that incompatible hooks are active, to skip any later
403     // heapprofd signal handler invocations.
404     HeapprofdRememberHookConflict();
405   }
406 }
407 
408 // Initializes memory allocation framework.
409 // This routine is called from __libc_init routines in libc_init_dynamic.cpp.
410 __BIONIC_WEAK_FOR_NATIVE_BRIDGE
__libc_init_malloc(libc_globals * globals)411 __LIBC_HIDDEN__ void __libc_init_malloc(libc_globals* globals) {
412   MallocInitImpl(globals);
413 }
414 
415 // =============================================================================
416 // Functions to support dumping of native heap allocations using malloc debug.
417 // =============================================================================
GetMallocLeakInfo(android_mallopt_leak_info_t * leak_info)418 bool GetMallocLeakInfo(android_mallopt_leak_info_t* leak_info) {
419   void* func = gFunctions[FUNC_GET_MALLOC_LEAK_INFO];
420   if (func == nullptr) {
421     errno = ENOTSUP;
422     return false;
423   }
424   reinterpret_cast<get_malloc_leak_info_func_t>(func)(
425       &leak_info->buffer, &leak_info->overall_size, &leak_info->info_size,
426       &leak_info->total_memory, &leak_info->backtrace_size);
427   return true;
428 }
429 
FreeMallocLeakInfo(android_mallopt_leak_info_t * leak_info)430 bool FreeMallocLeakInfo(android_mallopt_leak_info_t* leak_info) {
431   void* func = gFunctions[FUNC_FREE_MALLOC_LEAK_INFO];
432   if (func == nullptr) {
433     errno = ENOTSUP;
434     return false;
435   }
436   reinterpret_cast<free_malloc_leak_info_func_t>(func)(leak_info->buffer);
437   return true;
438 }
439 
WriteMallocLeakInfo(FILE * fp)440 bool WriteMallocLeakInfo(FILE* fp) {
441   void* func = gFunctions[FUNC_WRITE_LEAK_INFO];
442   bool written = false;
443   if (func != nullptr) {
444     written = reinterpret_cast<write_malloc_leak_info_func_t>(func)(fp);
445   }
446 
447   if (!written) {
448     fprintf(fp, "Native heap dump not available. To enable, run these commands (requires root):\n");
449     fprintf(fp, "# adb shell stop\n");
450     fprintf(fp, "# adb shell setprop libc.debug.malloc.options backtrace\n");
451     fprintf(fp, "# adb shell start\n");
452     errno = ENOTSUP;
453   }
454   return written;
455 }
456 // =============================================================================
457 
458 // =============================================================================
459 // Exported for use by libmemunreachable.
460 // =============================================================================
malloc_backtrace(void * pointer,uintptr_t * frames,size_t frame_count)461 extern "C" ssize_t malloc_backtrace(void* pointer, uintptr_t* frames, size_t frame_count) {
462   void* func = gFunctions[FUNC_MALLOC_BACKTRACE];
463   if (func == nullptr) {
464     return 0;
465   }
466   return reinterpret_cast<malloc_backtrace_func_t>(func)(pointer, frames, frame_count);
467 }
468 // =============================================================================
469 
470 // =============================================================================
471 // Platform-internal mallopt variant.
472 // =============================================================================
473 __BIONIC_WEAK_FOR_NATIVE_BRIDGE
android_mallopt(int opcode,void * arg,size_t arg_size)474 extern "C" bool android_mallopt(int opcode, void* arg, size_t arg_size) {
475   if (opcode == M_SET_ZYGOTE_CHILD) {
476     if (arg != nullptr || arg_size != 0) {
477       errno = EINVAL;
478       return false;
479     }
480     gZygoteChild = true;
481     return true;
482   }
483   if (opcode == M_INIT_ZYGOTE_CHILD_PROFILING) {
484     if (arg != nullptr || arg_size != 0) {
485       errno = EINVAL;
486       return false;
487     }
488     atomic_store_explicit(&gZygoteChildProfileable, true, memory_order_release);
489     // Also check if heapprofd should start profiling from app startup.
490     HeapprofdInitZygoteChildProfiling();
491     return true;
492   }
493   if (opcode == M_GET_PROCESS_PROFILEABLE) {
494     if (arg == nullptr || arg_size != sizeof(bool)) {
495       errno = EINVAL;
496       return false;
497     }
498     // Native processes are considered profileable. Zygote children are considered
499     // profileable only when appropriately tagged.
500     *reinterpret_cast<bool*>(arg) =
501         !gZygoteChild || atomic_load_explicit(&gZygoteChildProfileable, memory_order_acquire);
502     return true;
503   }
504   if (opcode == M_SET_ALLOCATION_LIMIT_BYTES) {
505     return LimitEnable(arg, arg_size);
506   }
507   if (opcode == M_WRITE_MALLOC_LEAK_INFO_TO_FILE) {
508     if (arg == nullptr || arg_size != sizeof(FILE*)) {
509       errno = EINVAL;
510       return false;
511     }
512     return WriteMallocLeakInfo(reinterpret_cast<FILE*>(arg));
513   }
514   if (opcode == M_GET_MALLOC_LEAK_INFO) {
515     if (arg == nullptr || arg_size != sizeof(android_mallopt_leak_info_t)) {
516       errno = EINVAL;
517       return false;
518     }
519     return GetMallocLeakInfo(reinterpret_cast<android_mallopt_leak_info_t*>(arg));
520   }
521   if (opcode == M_FREE_MALLOC_LEAK_INFO) {
522     if (arg == nullptr || arg_size != sizeof(android_mallopt_leak_info_t)) {
523       errno = EINVAL;
524       return false;
525     }
526     return FreeMallocLeakInfo(reinterpret_cast<android_mallopt_leak_info_t*>(arg));
527   }
528   if (opcode == M_INITIALIZE_GWP_ASAN) {
529     if (arg == nullptr || arg_size != sizeof(bool)) {
530       errno = EINVAL;
531       return false;
532     }
533     __libc_globals.mutate([&](libc_globals* globals) {
534       return MaybeInitGwpAsan(globals, *reinterpret_cast<bool*>(arg));
535     });
536   }
537   // Try heapprofd's mallopt, as it handles options not covered here.
538   return HeapprofdMallopt(opcode, arg, arg_size);
539 }
540 // =============================================================================
541 
542 #if !defined(__LP64__) && defined(__arm__)
543 // =============================================================================
544 // Old platform only functions that some old 32 bit apps are still using.
545 // See b/132175052.
546 // Only compile the functions for 32 bit arm, so that new apps do not use
547 // these functions.
548 // =============================================================================
get_malloc_leak_info(uint8_t ** info,size_t * overall_size,size_t * info_size,size_t * total_memory,size_t * backtrace_size)549 extern "C" void get_malloc_leak_info(uint8_t** info, size_t* overall_size, size_t* info_size,
550                                      size_t* total_memory, size_t* backtrace_size) {
551   if (info == nullptr || overall_size == nullptr || info_size == nullptr ||
552       total_memory == nullptr || backtrace_size == nullptr) {
553     return;
554   }
555 
556   *info = nullptr;
557   *overall_size = 0;
558   *info_size = 0;
559   *total_memory = 0;
560   *backtrace_size = 0;
561 
562   android_mallopt_leak_info_t leak_info = {};
563   if (android_mallopt(M_GET_MALLOC_LEAK_INFO, &leak_info, sizeof(leak_info))) {
564     *info = leak_info.buffer;
565     *overall_size = leak_info.overall_size;
566     *info_size = leak_info.info_size;
567     *total_memory = leak_info.total_memory;
568     *backtrace_size = leak_info.backtrace_size;
569   }
570 }
571 
free_malloc_leak_info(uint8_t * info)572 extern "C" void free_malloc_leak_info(uint8_t* info) {
573   android_mallopt_leak_info_t leak_info = { .buffer = info };
574   android_mallopt(M_FREE_MALLOC_LEAK_INFO, &leak_info, sizeof(leak_info));
575 }
576 // =============================================================================
577 #endif
578