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Christopher Ferris63860cb2015-11-16 17:30:32 -08001/*
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// Contains a thin layer that calls whatever real native allocator
30// has been defined. For the libc shared library, this allows the
31// implementation of a debug malloc that can intercept all of the allocation
32// calls and add special debugging code to attempt to catch allocation
33// errors. All of the debugging code is implemented in a separate shared
34// library that is only loaded when the property "libc.debug.malloc.options"
35// is set to a non-zero value. There are two functions exported to
36// allow ddms, or other external users to get information from the debug
37// allocation.
38// get_malloc_leak_info: Returns information about all of the known native
39// allocations that are currently in use.
40// free_malloc_leak_info: Frees the data allocated by the call to
41// get_malloc_leak_info.
Christopher Ferris2e1a40a2018-06-13 10:46:34 -070042// write_malloc_leak_info: Writes the leak info data to a file.
Christopher Ferris63860cb2015-11-16 17:30:32 -080043
Christopher Ferrise4cdbc42019-02-08 17:30:58 -080044#include <stdint.h>
Colin Cross869691c2016-01-29 12:48:18 -080045
Christopher Ferris63860cb2015-11-16 17:30:32 -080046#include <private/bionic_config.h>
Christopher Ferris63860cb2015-11-16 17:30:32 -080047
Christopher Ferrise4cdbc42019-02-08 17:30:58 -080048#include "malloc_common.h"
Evgenii Stepanovbe551f52018-08-13 16:46:15 -070049
Christopher Ferrise4cdbc42019-02-08 17:30:58 -080050// =============================================================================
51// Global variables instantations.
52// =============================================================================
Evgenii Stepanovbe551f52018-08-13 16:46:15 -070053
Christopher Ferrise4cdbc42019-02-08 17:30:58 -080054// Malloc hooks globals.
Christopher Ferrisdb478a62018-02-07 18:42:14 -080055void* (*volatile __malloc_hook)(size_t, const void*);
56void* (*volatile __realloc_hook)(void*, size_t, const void*);
57void (*volatile __free_hook)(void*, const void*);
58void* (*volatile __memalign_hook)(size_t, size_t, const void*);
59
Christopher Ferris63860cb2015-11-16 17:30:32 -080060// In a VM process, this is set to 1 after fork()ing out of zygote.
61int gMallocLeakZygoteChild = 0;
Christopher Ferrise4cdbc42019-02-08 17:30:58 -080062// =============================================================================
Christopher Ferris63860cb2015-11-16 17:30:32 -080063
64// =============================================================================
65// Allocation functions
66// =============================================================================
67extern "C" void* calloc(size_t n_elements, size_t elem_size) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -080068 auto dispatch_table = GetDispatchTable();
69 if (__predict_false(dispatch_table != nullptr)) {
70 return dispatch_table->calloc(n_elements, elem_size);
Christopher Ferris63860cb2015-11-16 17:30:32 -080071 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -080072 void* result = Malloc(calloc)(n_elements, elem_size);
73 if (__predict_false(result == nullptr)) {
74 warning_log("calloc(%zu, %zu) failed: returning null pointer", n_elements, elem_size);
75 }
76 return result;
Christopher Ferris63860cb2015-11-16 17:30:32 -080077}
78
79extern "C" void free(void* mem) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -080080 auto dispatch_table = GetDispatchTable();
81 if (__predict_false(dispatch_table != nullptr)) {
82 dispatch_table->free(mem);
Christopher Ferris63860cb2015-11-16 17:30:32 -080083 } else {
84 Malloc(free)(mem);
85 }
86}
87
88extern "C" struct mallinfo mallinfo() {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -080089 auto dispatch_table = GetDispatchTable();
90 if (__predict_false(dispatch_table != nullptr)) {
91 return dispatch_table->mallinfo();
Christopher Ferris63860cb2015-11-16 17:30:32 -080092 }
93 return Malloc(mallinfo)();
94}
95
Christopher Ferrisa1c0d2f2017-05-15 15:50:19 -070096extern "C" int mallopt(int param, int value) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -080097 auto dispatch_table = GetDispatchTable();
98 if (__predict_false(dispatch_table != nullptr)) {
99 return dispatch_table->mallopt(param, value);
Christopher Ferrisa1c0d2f2017-05-15 15:50:19 -0700100 }
101 return Malloc(mallopt)(param, value);
102}
103
Christopher Ferris63860cb2015-11-16 17:30:32 -0800104extern "C" void* malloc(size_t bytes) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800105 auto dispatch_table = GetDispatchTable();
106 if (__predict_false(dispatch_table != nullptr)) {
107 return dispatch_table->malloc(bytes);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800108 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800109 void* result = Malloc(malloc)(bytes);
110 if (__predict_false(result == nullptr)) {
111 warning_log("malloc(%zu) failed: returning null pointer", bytes);
112 }
113 return result;
Christopher Ferris63860cb2015-11-16 17:30:32 -0800114}
115
116extern "C" size_t malloc_usable_size(const void* mem) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800117 auto dispatch_table = GetDispatchTable();
118 if (__predict_false(dispatch_table != nullptr)) {
119 return dispatch_table->malloc_usable_size(mem);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800120 }
121 return Malloc(malloc_usable_size)(mem);
122}
123
124extern "C" void* memalign(size_t alignment, size_t bytes) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800125 auto dispatch_table = GetDispatchTable();
126 if (__predict_false(dispatch_table != nullptr)) {
127 return dispatch_table->memalign(alignment, bytes);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800128 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800129 void* result = Malloc(memalign)(alignment, bytes);
130 if (__predict_false(result == nullptr)) {
131 warning_log("memalign(%zu, %zu) failed: returning null pointer", alignment, bytes);
132 }
133 return result;
Christopher Ferris63860cb2015-11-16 17:30:32 -0800134}
135
136extern "C" int posix_memalign(void** memptr, size_t alignment, size_t size) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800137 auto dispatch_table = GetDispatchTable();
138 if (__predict_false(dispatch_table != nullptr)) {
139 return dispatch_table->posix_memalign(memptr, alignment, size);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800140 }
141 return Malloc(posix_memalign)(memptr, alignment, size);
142}
143
Christopher Ferriscae21a92018-02-05 18:14:55 -0800144extern "C" void* aligned_alloc(size_t alignment, size_t size) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800145 auto dispatch_table = GetDispatchTable();
146 if (__predict_false(dispatch_table != nullptr)) {
147 return dispatch_table->aligned_alloc(alignment, size);
Christopher Ferriscae21a92018-02-05 18:14:55 -0800148 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800149 void* result = Malloc(aligned_alloc)(alignment, size);
150 if (__predict_false(result == nullptr)) {
151 warning_log("aligned_alloc(%zu, %zu) failed: returning null pointer", alignment, size);
152 }
153 return result;
Christopher Ferriscae21a92018-02-05 18:14:55 -0800154}
155
Christopher Ferris63860cb2015-11-16 17:30:32 -0800156extern "C" void* realloc(void* old_mem, size_t bytes) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800157 auto dispatch_table = GetDispatchTable();
158 if (__predict_false(dispatch_table != nullptr)) {
159 return dispatch_table->realloc(old_mem, bytes);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800160 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800161 void* result = Malloc(realloc)(old_mem, bytes);
162 if (__predict_false(result == nullptr && bytes != 0)) {
163 warning_log("realloc(%p, %zu) failed: returning null pointer", old_mem, bytes);
164 }
165 return result;
Christopher Ferris63860cb2015-11-16 17:30:32 -0800166}
167
Elliott Hughesb1770852018-09-18 12:52:42 -0700168extern "C" void* reallocarray(void* old_mem, size_t item_count, size_t item_size) {
169 size_t new_size;
170 if (__builtin_mul_overflow(item_count, item_size, &new_size)) {
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800171 warning_log("reallocaray(%p, %zu, %zu) failed: returning null pointer",
172 old_mem, item_count, item_size);
Elliott Hughesb1770852018-09-18 12:52:42 -0700173 errno = ENOMEM;
174 return nullptr;
175 }
176 return realloc(old_mem, new_size);
177}
178
Christopher Ferris63860cb2015-11-16 17:30:32 -0800179#if defined(HAVE_DEPRECATED_MALLOC_FUNCS)
180extern "C" void* pvalloc(size_t bytes) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800181 auto dispatch_table = GetDispatchTable();
182 if (__predict_false(dispatch_table != nullptr)) {
183 return dispatch_table->pvalloc(bytes);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800184 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800185 void* result = Malloc(pvalloc)(bytes);
186 if (__predict_false(result == nullptr)) {
187 warning_log("pvalloc(%zu) failed: returning null pointer", bytes);
188 }
189 return result;
Christopher Ferris63860cb2015-11-16 17:30:32 -0800190}
191
192extern "C" void* valloc(size_t bytes) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800193 auto dispatch_table = GetDispatchTable();
194 if (__predict_false(dispatch_table != nullptr)) {
195 return dispatch_table->valloc(bytes);
Christopher Ferris63860cb2015-11-16 17:30:32 -0800196 }
Elliott Hughesa21f6cc2019-02-25 13:21:04 -0800197 void* result = Malloc(valloc)(bytes);
198 if (__predict_false(result == nullptr)) {
199 warning_log("valloc(%zu) failed: returning null pointer", bytes);
200 }
201 return result;
Christopher Ferris63860cb2015-11-16 17:30:32 -0800202}
203#endif
Christopher Ferris63860cb2015-11-16 17:30:32 -0800204// =============================================================================
Ryan Savitskiecc37e32018-12-14 15:57:21 +0000205
206// =============================================================================
Colin Cross869691c2016-01-29 12:48:18 -0800207// Exported for use by libmemunreachable.
208// =============================================================================
209
210// Calls callback for every allocation in the anonymous heap mapping
211// [base, base+size). Must be called between malloc_disable and malloc_enable.
212extern "C" int malloc_iterate(uintptr_t base, size_t size,
213 void (*callback)(uintptr_t base, size_t size, void* arg), void* arg) {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800214 auto dispatch_table = GetDispatchTable();
215 if (__predict_false(dispatch_table != nullptr)) {
216 return dispatch_table->iterate(base, size, callback, arg);
Colin Cross869691c2016-01-29 12:48:18 -0800217 }
218 return Malloc(iterate)(base, size, callback, arg);
219}
220
221// Disable calls to malloc so malloc_iterate gets a consistent view of
222// allocated memory.
223extern "C" void malloc_disable() {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800224 auto dispatch_table = GetDispatchTable();
225 if (__predict_false(dispatch_table != nullptr)) {
226 return dispatch_table->malloc_disable();
Colin Cross869691c2016-01-29 12:48:18 -0800227 }
228 return Malloc(malloc_disable)();
229}
230
231// Re-enable calls to malloc after a previous call to malloc_disable.
232extern "C" void malloc_enable() {
Christopher Ferris62e1e2c2019-02-04 12:26:02 -0800233 auto dispatch_table = GetDispatchTable();
234 if (__predict_false(dispatch_table != nullptr)) {
235 return dispatch_table->malloc_enable();
Colin Cross869691c2016-01-29 12:48:18 -0800236 }
237 return Malloc(malloc_enable)();
238}
Colin Cross2d4721c2016-02-02 11:57:54 -0800239
Christopher Ferrise4cdbc42019-02-08 17:30:58 -0800240#if defined(LIBC_STATIC)
Colin Cross2d4721c2016-02-02 11:57:54 -0800241extern "C" ssize_t malloc_backtrace(void*, uintptr_t*, size_t) {
242 return 0;
243}
244#endif
Christopher Ferrise4cdbc42019-02-08 17:30:58 -0800245
246#if __has_feature(hwaddress_sanitizer)
247// FIXME: implement these in HWASan allocator.
248extern "C" int __sanitizer_iterate(uintptr_t base __unused, size_t size __unused,
249 void (*callback)(uintptr_t base, size_t size, void* arg) __unused,
250 void* arg __unused) {
251 return 0;
252}
253
254extern "C" void __sanitizer_malloc_disable() {
255}
256
257extern "C" void __sanitizer_malloc_enable() {
258}
259#endif
260// =============================================================================
261
262// =============================================================================
263// Platform-internal mallopt variant.
264// =============================================================================
265#if defined(LIBC_STATIC)
266extern "C" bool android_mallopt(int, void*, size_t) {
267 // There are no options supported on static executables.
268 errno = ENOTSUP;
269 return false;
270}
271#endif
272// =============================================================================