1 /*
2 * Copyright (C) 2018 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 <android/fdsan.h>
30
31 #include <errno.h>
32 #include <inttypes.h>
33 #include <signal.h>
34 #include <stdarg.h>
35 #include <stdatomic.h>
36 #include <string.h>
37 #include <sys/cdefs.h>
38 #include <sys/mman.h>
39 #include <sys/syscall.h>
40 #include <unistd.h>
41
42 #include <async_safe/log.h>
43 #include <platform/bionic/reserved_signals.h>
44 #include <sys/system_properties.h>
45
46 #include "private/bionic_fdtrack.h"
47 #include "private/bionic_globals.h"
48 #include "private/bionic_inline_raise.h"
49 #include "pthread_internal.h"
50
51 extern "C" int __close(int fd);
52 pid_t __get_cached_pid();
53
54 static constexpr const char* kFdsanPropertyName = "debug.fdsan";
55
56 template<size_t inline_fds>
at(size_t idx)57 FdEntry* FdTableImpl<inline_fds>::at(size_t idx) {
58 if (idx < inline_fds) {
59 return &entries[idx];
60 }
61
62 // Try to create the overflow table ourselves.
63 FdTableOverflow* local_overflow = atomic_load(&overflow);
64 if (__predict_false(!local_overflow)) {
65 struct rlimit rlim = { .rlim_max = 32768 };
66 getrlimit(RLIMIT_NOFILE, &rlim);
67 rlim_t max = rlim.rlim_max;
68
69 if (max == RLIM_INFINITY) {
70 // This isn't actually possible (the kernel has a hard limit), but just
71 // in case...
72 max = 32768;
73 }
74
75 if (idx > max) {
76 // This can happen if an fd is created and then the rlimit is lowered.
77 // In this case, just return nullptr and ignore the fd.
78 return nullptr;
79 }
80
81 size_t required_count = max - inline_fds;
82 size_t required_size = sizeof(FdTableOverflow) + required_count * sizeof(FdEntry);
83 size_t aligned_size = __BIONIC_ALIGN(required_size, PAGE_SIZE);
84 size_t aligned_count = (aligned_size - sizeof(FdTableOverflow)) / sizeof(FdEntry);
85
86 void* allocation =
87 mmap(nullptr, aligned_size, PROT_READ | PROT_WRITE, MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
88 if (allocation == MAP_FAILED) {
89 async_safe_fatal("fdsan: mmap failed: %s", strerror(errno));
90 }
91
92 FdTableOverflow* new_overflow = reinterpret_cast<FdTableOverflow*>(allocation);
93 new_overflow->len = aligned_count;
94
95 if (atomic_compare_exchange_strong(&overflow, &local_overflow, new_overflow)) {
96 local_overflow = new_overflow;
97 } else {
98 // Someone beat us to it. Deallocate and use theirs.
99 munmap(allocation, aligned_size);
100 }
101 }
102
103 size_t offset = idx - inline_fds;
104 if (local_overflow->len < offset) {
105 return nullptr;
106 }
107 return &local_overflow->entries[offset];
108 }
109
__libc_init_fdsan()110 void __libc_init_fdsan() {
111 constexpr auto default_level = ANDROID_FDSAN_ERROR_LEVEL_FATAL;
112 android_fdsan_set_error_level_from_property(default_level);
113 }
114
GetFdTable()115 static FdTable& GetFdTable() {
116 return __libc_shared_globals()->fd_table;
117 }
118
119 // Exposed to the platform to allow crash_dump to print out the fd table.
android_fdsan_get_fd_table()120 extern "C" void* android_fdsan_get_fd_table() {
121 return &GetFdTable();
122 }
123
GetFdEntry(int fd)124 static FdEntry* GetFdEntry(int fd) {
125 if (fd < 0) {
126 return nullptr;
127 }
128
129 return GetFdTable().at(fd);
130 }
131
fdsan_error(const char * fmt,...)132 __printflike(1, 0) static void fdsan_error(const char* fmt, ...) {
133 auto& fd_table = GetFdTable();
134
135 auto error_level = atomic_load(&fd_table.error_level);
136 if (error_level == ANDROID_FDSAN_ERROR_LEVEL_DISABLED) {
137 return;
138 }
139
140 // Lots of code will (sensibly) fork, call close on all of their fds,
141 // and then exec. Compare our cached pid value against the real one to detect
142 // this scenario and permit it.
143 pid_t cached_pid = __get_cached_pid();
144 if (cached_pid == 0 || cached_pid != syscall(__NR_getpid)) {
145 return;
146 }
147
148 struct {
149 size_t size;
150 char buf[512];
151 } abort_message;
152
153 va_list va;
154 va_start(va, fmt);
155 if (error_level == ANDROID_FDSAN_ERROR_LEVEL_FATAL) {
156 async_safe_fatal_va_list("fdsan", fmt, va);
157 } else {
158 async_safe_format_log_va_list(ANDROID_LOG_ERROR, "fdsan", fmt, va);
159 va_end(va);
160 va_start(va, fmt);
161 size_t len =
162 async_safe_format_buffer_va_list(abort_message.buf, sizeof(abort_message.buf), fmt, va);
163 abort_message.size = len + sizeof(size_t);
164 }
165 va_end(va);
166
167 switch (error_level) {
168 case ANDROID_FDSAN_ERROR_LEVEL_WARN_ONCE:
169 atomic_compare_exchange_strong(&fd_table.error_level, &error_level,
170 ANDROID_FDSAN_ERROR_LEVEL_DISABLED);
171 __BIONIC_FALLTHROUGH;
172 case ANDROID_FDSAN_ERROR_LEVEL_WARN_ALWAYS:
173 inline_raise(BIONIC_SIGNAL_DEBUGGER, &abort_message);
174 break;
175
176 case ANDROID_FDSAN_ERROR_LEVEL_FATAL:
177 inline_raise(SIGABRT);
178 abort();
179
180 case ANDROID_FDSAN_ERROR_LEVEL_DISABLED:
181 break;
182 }
183 }
184
android_fdsan_create_owner_tag(android_fdsan_owner_type type,uint64_t tag)185 uint64_t android_fdsan_create_owner_tag(android_fdsan_owner_type type, uint64_t tag) {
186 if (tag == 0) {
187 return 0;
188 }
189
190 if (__predict_false((type & 0xff) != type)) {
191 async_safe_fatal("invalid android_fdsan_owner_type value: %x", type);
192 }
193
194 uint64_t result = static_cast<uint64_t>(type) << 56;
195 uint64_t mask = (static_cast<uint64_t>(1) << 56) - 1;
196 result |= tag & mask;
197 return result;
198 }
199
android_fdsan_get_tag_type(uint64_t tag)200 const char* android_fdsan_get_tag_type(uint64_t tag) {
201 uint64_t type = tag >> 56;
202 switch (type) {
203 case ANDROID_FDSAN_OWNER_TYPE_FILE:
204 return "FILE*";
205 case ANDROID_FDSAN_OWNER_TYPE_DIR:
206 return "DIR*";
207 case ANDROID_FDSAN_OWNER_TYPE_UNIQUE_FD:
208 return "unique_fd";
209 case ANDROID_FDSAN_OWNER_TYPE_FILEINPUTSTREAM:
210 return "FileInputStream";
211 case ANDROID_FDSAN_OWNER_TYPE_FILEOUTPUTSTREAM:
212 return "FileOutputStream";
213 case ANDROID_FDSAN_OWNER_TYPE_RANDOMACCESSFILE:
214 return "RandomAccessFile";
215 case ANDROID_FDSAN_OWNER_TYPE_PARCELFILEDESCRIPTOR:
216 return "ParcelFileDescriptor";
217 case ANDROID_FDSAN_OWNER_TYPE_SQLITE:
218 return "sqlite";
219 case ANDROID_FDSAN_OWNER_TYPE_ART_FDFILE:
220 return "ART FdFile";
221 case ANDROID_FDSAN_OWNER_TYPE_DATAGRAMSOCKETIMPL:
222 return "DatagramSocketImpl";
223 case ANDROID_FDSAN_OWNER_TYPE_SOCKETIMPL:
224 return "SocketImpl";
225 case ANDROID_FDSAN_OWNER_TYPE_ZIPARCHIVE:
226 return "ZipArchive";
227
228 case ANDROID_FDSAN_OWNER_TYPE_GENERIC_00:
229 default:
230 return "native object of unknown type";
231
232 case ANDROID_FDSAN_OWNER_TYPE_GENERIC_FF:
233 // If bits 48 to 56 are set, this is a sign-extended generic native pointer
234 uint64_t high_bits = tag >> 48;
235 if (high_bits == (1 << 16) - 1) {
236 return "native object of unknown type";
237 }
238
239 return "Java object of unknown type";
240 }
241 }
242
android_fdsan_get_tag_value(uint64_t tag)243 uint64_t android_fdsan_get_tag_value(uint64_t tag) {
244 // Lop off the most significant byte and sign extend.
245 return static_cast<uint64_t>(static_cast<int64_t>(tag << 8) >> 8);
246 }
247
android_fdsan_close_with_tag(int fd,uint64_t expected_tag)248 int android_fdsan_close_with_tag(int fd, uint64_t expected_tag) {
249 if (__get_thread()->is_vforked()) {
250 return __close(fd);
251 }
252
253 FDTRACK_CLOSE(fd);
254 FdEntry* fde = GetFdEntry(fd);
255 if (!fde) {
256 return __close(fd);
257 }
258
259 uint64_t tag = expected_tag;
260 if (!atomic_compare_exchange_strong(&fde->close_tag, &tag, 0)) {
261 const char* expected_type = android_fdsan_get_tag_type(expected_tag);
262 uint64_t expected_owner = android_fdsan_get_tag_value(expected_tag);
263 const char* actual_type = android_fdsan_get_tag_type(tag);
264 uint64_t actual_owner = android_fdsan_get_tag_value(tag);
265 if (expected_tag && tag) {
266 fdsan_error(
267 "attempted to close file descriptor %d, "
268 "expected to be owned by %s 0x%" PRIx64 ", actually owned by %s 0x%" PRIx64,
269 fd, expected_type, expected_owner, actual_type, actual_owner);
270 } else if (expected_tag && !tag) {
271 fdsan_error(
272 "attempted to close file descriptor %d, "
273 "expected to be owned by %s 0x%" PRIx64 ", actually unowned",
274 fd, expected_type, expected_owner);
275 } else if (!expected_tag && tag) {
276 fdsan_error(
277 "attempted to close file descriptor %d, "
278 "expected to be unowned, actually owned by %s 0x%" PRIx64,
279 fd, actual_type, actual_owner);
280 } else if (!expected_tag && !tag) {
281 // This should never happen: our CAS failed, but expected == actual?
282 async_safe_fatal("fdsan atomic_compare_exchange_strong failed unexpectedly while closing");
283 }
284 }
285
286 int rc = __close(fd);
287 // If we were expecting to close with a tag, abort on EBADF.
288 if (expected_tag && rc == -1 && errno == EBADF) {
289 fdsan_error("double-close of file descriptor %d detected", fd);
290 }
291 return rc;
292 }
293
android_fdsan_get_owner_tag(int fd)294 uint64_t android_fdsan_get_owner_tag(int fd) {
295 FdEntry* fde = GetFdEntry(fd);
296 if (!fde) {
297 return 0;
298 }
299 return fde->close_tag;
300 }
301
android_fdsan_exchange_owner_tag(int fd,uint64_t expected_tag,uint64_t new_tag)302 void android_fdsan_exchange_owner_tag(int fd, uint64_t expected_tag, uint64_t new_tag) {
303 if (__get_thread()->is_vforked()) {
304 return;
305 }
306
307 FdEntry* fde = GetFdEntry(fd);
308 if (!fde) {
309 return;
310 }
311
312 uint64_t tag = expected_tag;
313 if (!atomic_compare_exchange_strong(&fde->close_tag, &tag, new_tag)) {
314 if (expected_tag && tag) {
315 fdsan_error(
316 "failed to exchange ownership of file descriptor: fd %d is "
317 "owned by %s 0x%" PRIx64 ", was expected to be owned by %s 0x%" PRIx64,
318 fd, android_fdsan_get_tag_type(tag), android_fdsan_get_tag_value(tag),
319 android_fdsan_get_tag_type(expected_tag), android_fdsan_get_tag_value(expected_tag));
320 } else if (expected_tag && !tag) {
321 fdsan_error(
322 "failed to exchange ownership of file descriptor: fd %d is "
323 "unowned, was expected to be owned by %s 0x%" PRIx64,
324 fd, android_fdsan_get_tag_type(expected_tag), android_fdsan_get_tag_value(expected_tag));
325 } else if (!expected_tag && tag) {
326 fdsan_error(
327 "failed to exchange ownership of file descriptor: fd %d is "
328 "owned by %s 0x%" PRIx64 ", was expected to be unowned",
329 fd, android_fdsan_get_tag_type(tag), android_fdsan_get_tag_value(tag));
330 } else if (!expected_tag && !tag) {
331 // This should never happen: our CAS failed, but expected == actual?
332 async_safe_fatal(
333 "fdsan atomic_compare_exchange_strong failed unexpectedly while exchanging owner tag");
334 }
335 }
336 }
337
android_fdsan_get_error_level()338 android_fdsan_error_level android_fdsan_get_error_level() {
339 return GetFdTable().error_level;
340 }
341
android_fdsan_set_error_level(android_fdsan_error_level new_level)342 android_fdsan_error_level android_fdsan_set_error_level(android_fdsan_error_level new_level) {
343 if (__get_thread()->is_vforked()) {
344 return android_fdsan_get_error_level();
345 }
346
347 return atomic_exchange(&GetFdTable().error_level, new_level);
348 }
349
android_fdsan_set_error_level_from_property(android_fdsan_error_level default_level)350 android_fdsan_error_level android_fdsan_set_error_level_from_property(
351 android_fdsan_error_level default_level) {
352 const prop_info* pi = __system_property_find(kFdsanPropertyName);
353 if (!pi) {
354 return android_fdsan_set_error_level(default_level);
355 }
356
357 struct callback_data {
358 android_fdsan_error_level default_value;
359 android_fdsan_error_level result;
360 };
361
362 callback_data data;
363 data.default_value = default_level;
364
365 __system_property_read_callback(
366 pi,
367 [](void* arg, const char*, const char* value, uint32_t) {
368 callback_data* data = static_cast<callback_data*>(arg);
369
370 if (strcasecmp(value, "1") == 0 || strcasecmp(value, "fatal") == 0) {
371 data->result = android_fdsan_set_error_level(ANDROID_FDSAN_ERROR_LEVEL_FATAL);
372 } else if (strcasecmp(value, "warn") == 0) {
373 data->result = android_fdsan_set_error_level(ANDROID_FDSAN_ERROR_LEVEL_WARN_ALWAYS);
374 } else if (strcasecmp(value, "warn_once") == 0) {
375 data->result = android_fdsan_set_error_level(ANDROID_FDSAN_ERROR_LEVEL_WARN_ONCE);
376 } else {
377 if (strlen(value) != 0 && strcasecmp(value, "0") != 0) {
378 async_safe_format_log(ANDROID_LOG_ERROR, "libc",
379 "debug.fdsan set to unknown value '%s', disabling", value);
380 }
381 data->result = android_fdsan_set_error_level(data->default_value);
382 }
383 },
384 &data);
385
386 return data.result;
387 }
388
close(int fd)389 int close(int fd) {
390 int rc = android_fdsan_close_with_tag(fd, 0);
391 if (rc == -1 && errno == EINTR) {
392 return 0;
393 }
394 return rc;
395 }
396