1 /*
2  * Copyright 2016, The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *     http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include <err.h>
18 #include <fcntl.h>
19 #include <stdlib.h>
20 #include <sys/capability.h>
21 #include <sys/mman.h>
22 #include <sys/prctl.h>
23 #include <sys/ptrace.h>
24 #include <sys/resource.h>
25 #include <sys/syscall.h>
26 #include <sys/types.h>
27 #include <unistd.h>
28 
29 #include <chrono>
30 #include <regex>
31 #include <thread>
32 
33 #include <android/fdsan.h>
34 #include <android/set_abort_message.h>
35 #include <bionic/malloc.h>
36 #include <bionic/mte.h>
37 #include <bionic/mte_kernel.h>
38 #include <bionic/reserved_signals.h>
39 
40 #include <android-base/cmsg.h>
41 #include <android-base/file.h>
42 #include <android-base/logging.h>
43 #include <android-base/macros.h>
44 #include <android-base/parseint.h>
45 #include <android-base/properties.h>
46 #include <android-base/stringprintf.h>
47 #include <android-base/strings.h>
48 #include <android-base/test_utils.h>
49 #include <android-base/unique_fd.h>
50 #include <cutils/sockets.h>
51 #include <gtest/gtest.h>
52 
53 #include <libminijail.h>
54 #include <scoped_minijail.h>
55 
56 #include "debuggerd/handler.h"
57 #include "protocol.h"
58 #include "tombstoned/tombstoned.h"
59 #include "util.h"
60 
61 using namespace std::chrono_literals;
62 
63 using android::base::SendFileDescriptors;
64 using android::base::unique_fd;
65 
66 #if defined(__LP64__)
67 #define ARCH_SUFFIX "64"
68 #else
69 #define ARCH_SUFFIX ""
70 #endif
71 
72 constexpr char kWaitForGdbKey[] = "debug.debuggerd.wait_for_gdb";
73 
74 #define TIMEOUT(seconds, expr)                                     \
75   [&]() {                                                          \
76     struct sigaction old_sigaction;                                \
77     struct sigaction new_sigaction = {};                           \
78     new_sigaction.sa_handler = [](int) {};                         \
79     if (sigaction(SIGALRM, &new_sigaction, &new_sigaction) != 0) { \
80       err(1, "sigaction failed");                                  \
81     }                                                              \
82     alarm(seconds);                                                \
83     auto value = expr;                                             \
84     int saved_errno = errno;                                       \
85     if (sigaction(SIGALRM, &old_sigaction, nullptr) != 0) {        \
86       err(1, "sigaction failed");                                  \
87     }                                                              \
88     alarm(0);                                                      \
89     errno = saved_errno;                                           \
90     return value;                                                  \
91   }()
92 
93 // Backtrace frame dump could contain:
94 //   #01 pc 0001cded  /data/tmp/debuggerd_test32 (raise_debugger_signal+80)
95 // or
96 //   #01 pc 00022a09  /data/tmp/debuggerd_test32 (offset 0x12000) (raise_debugger_signal+80)
97 #define ASSERT_BACKTRACE_FRAME(result, frame_name) \
98   ASSERT_MATCH(result,                             \
99                R"(#\d\d pc [0-9a-f]+\s+ \S+ (\(offset 0x[0-9a-f]+\) )?\()" frame_name R"(\+)");
100 
tombstoned_intercept(pid_t target_pid,unique_fd * intercept_fd,unique_fd * output_fd,InterceptStatus * status,DebuggerdDumpType intercept_type)101 static void tombstoned_intercept(pid_t target_pid, unique_fd* intercept_fd, unique_fd* output_fd,
102                                  InterceptStatus* status, DebuggerdDumpType intercept_type) {
103   intercept_fd->reset(socket_local_client(kTombstonedInterceptSocketName,
104                                           ANDROID_SOCKET_NAMESPACE_RESERVED, SOCK_SEQPACKET));
105   if (intercept_fd->get() == -1) {
106     FAIL() << "failed to contact tombstoned: " << strerror(errno);
107   }
108 
109   InterceptRequest req = {
110       .dump_type = intercept_type,
111       .pid = target_pid,
112   };
113 
114   unique_fd output_pipe_write;
115   if (!Pipe(output_fd, &output_pipe_write)) {
116     FAIL() << "failed to create output pipe: " << strerror(errno);
117   }
118 
119   std::string pipe_size_str;
120   int pipe_buffer_size;
121   if (!android::base::ReadFileToString("/proc/sys/fs/pipe-max-size", &pipe_size_str)) {
122     FAIL() << "failed to read /proc/sys/fs/pipe-max-size: " << strerror(errno);
123   }
124 
125   pipe_size_str = android::base::Trim(pipe_size_str);
126 
127   if (!android::base::ParseInt(pipe_size_str.c_str(), &pipe_buffer_size, 0)) {
128     FAIL() << "failed to parse pipe max size";
129   }
130 
131   if (fcntl(output_fd->get(), F_SETPIPE_SZ, pipe_buffer_size) != pipe_buffer_size) {
132     FAIL() << "failed to set pipe size: " << strerror(errno);
133   }
134 
135   ASSERT_GE(pipe_buffer_size, 1024 * 1024);
136 
137   ssize_t rc = SendFileDescriptors(intercept_fd->get(), &req, sizeof(req), output_pipe_write.get());
138   output_pipe_write.reset();
139   if (rc != sizeof(req)) {
140     FAIL() << "failed to send output fd to tombstoned: " << strerror(errno);
141   }
142 
143   InterceptResponse response;
144   rc = TEMP_FAILURE_RETRY(read(intercept_fd->get(), &response, sizeof(response)));
145   if (rc == -1) {
146     FAIL() << "failed to read response from tombstoned: " << strerror(errno);
147   } else if (rc == 0) {
148     FAIL() << "failed to read response from tombstoned (EOF)";
149   } else if (rc != sizeof(response)) {
150     FAIL() << "received packet of unexpected length from tombstoned: expected " << sizeof(response)
151            << ", received " << rc;
152   }
153 
154   *status = response.status;
155 }
156 
157 class CrasherTest : public ::testing::Test {
158  public:
159   pid_t crasher_pid = -1;
160   bool previous_wait_for_gdb;
161   unique_fd crasher_pipe;
162   unique_fd intercept_fd;
163 
164   CrasherTest();
165   ~CrasherTest();
166 
167   void StartIntercept(unique_fd* output_fd, DebuggerdDumpType intercept_type = kDebuggerdTombstone);
168 
169   // Returns -1 if we fail to read a response from tombstoned, otherwise the received return code.
170   void FinishIntercept(int* result);
171 
172   void StartProcess(std::function<void()> function, std::function<pid_t()> forker = fork);
173   void StartCrasher(const std::string& crash_type);
174   void FinishCrasher();
175   void AssertDeath(int signo);
176 
177   static void Trap(void* ptr);
178 };
179 
CrasherTest()180 CrasherTest::CrasherTest() {
181   previous_wait_for_gdb = android::base::GetBoolProperty(kWaitForGdbKey, false);
182   android::base::SetProperty(kWaitForGdbKey, "0");
183 }
184 
~CrasherTest()185 CrasherTest::~CrasherTest() {
186   if (crasher_pid != -1) {
187     kill(crasher_pid, SIGKILL);
188     int status;
189     TEMP_FAILURE_RETRY(waitpid(crasher_pid, &status, WUNTRACED));
190   }
191 
192   android::base::SetProperty(kWaitForGdbKey, previous_wait_for_gdb ? "1" : "0");
193 }
194 
StartIntercept(unique_fd * output_fd,DebuggerdDumpType intercept_type)195 void CrasherTest::StartIntercept(unique_fd* output_fd, DebuggerdDumpType intercept_type) {
196   if (crasher_pid == -1) {
197     FAIL() << "crasher hasn't been started";
198   }
199 
200   InterceptStatus status;
201   tombstoned_intercept(crasher_pid, &this->intercept_fd, output_fd, &status, intercept_type);
202   ASSERT_EQ(InterceptStatus::kRegistered, status);
203 }
204 
FinishIntercept(int * result)205 void CrasherTest::FinishIntercept(int* result) {
206   InterceptResponse response;
207 
208   ssize_t rc = TIMEOUT(30, read(intercept_fd.get(), &response, sizeof(response)));
209   if (rc == -1) {
210     FAIL() << "failed to read response from tombstoned: " << strerror(errno);
211   } else if (rc == 0) {
212     *result = -1;
213   } else if (rc != sizeof(response)) {
214     FAIL() << "received packet of unexpected length from tombstoned: expected " << sizeof(response)
215            << ", received " << rc;
216   } else {
217     *result = response.status == InterceptStatus::kStarted ? 1 : 0;
218   }
219 }
220 
StartProcess(std::function<void ()> function,std::function<pid_t ()> forker)221 void CrasherTest::StartProcess(std::function<void()> function, std::function<pid_t()> forker) {
222   unique_fd read_pipe;
223   unique_fd crasher_read_pipe;
224   if (!Pipe(&crasher_read_pipe, &crasher_pipe)) {
225     FAIL() << "failed to create pipe: " << strerror(errno);
226   }
227 
228   crasher_pid = forker();
229   if (crasher_pid == -1) {
230     FAIL() << "fork failed: " << strerror(errno);
231   } else if (crasher_pid == 0) {
232     char dummy;
233     crasher_pipe.reset();
234     TEMP_FAILURE_RETRY(read(crasher_read_pipe.get(), &dummy, 1));
235     function();
236     _exit(0);
237   }
238 }
239 
FinishCrasher()240 void CrasherTest::FinishCrasher() {
241   if (crasher_pipe == -1) {
242     FAIL() << "crasher pipe uninitialized";
243   }
244 
245   ssize_t rc = TEMP_FAILURE_RETRY(write(crasher_pipe.get(), "\n", 1));
246   if (rc == -1) {
247     FAIL() << "failed to write to crasher pipe: " << strerror(errno);
248   } else if (rc == 0) {
249     FAIL() << "crasher pipe was closed";
250   }
251 }
252 
AssertDeath(int signo)253 void CrasherTest::AssertDeath(int signo) {
254   int status;
255   pid_t pid = TIMEOUT(30, waitpid(crasher_pid, &status, 0));
256   if (pid != crasher_pid) {
257     printf("failed to wait for crasher (expected pid %d, return value %d): %s\n", crasher_pid, pid,
258            strerror(errno));
259     sleep(100);
260     FAIL() << "failed to wait for crasher: " << strerror(errno);
261   }
262 
263   if (signo == 0) {
264     ASSERT_TRUE(WIFEXITED(status));
265     ASSERT_EQ(0, WEXITSTATUS(signo));
266   } else {
267     ASSERT_FALSE(WIFEXITED(status));
268     ASSERT_TRUE(WIFSIGNALED(status)) << "crasher didn't terminate via a signal";
269     ASSERT_EQ(signo, WTERMSIG(status));
270   }
271   crasher_pid = -1;
272 }
273 
ConsumeFd(unique_fd fd,std::string * output)274 static void ConsumeFd(unique_fd fd, std::string* output) {
275   constexpr size_t read_length = PAGE_SIZE;
276   std::string result;
277 
278   while (true) {
279     size_t offset = result.size();
280     result.resize(result.size() + PAGE_SIZE);
281     ssize_t rc = TEMP_FAILURE_RETRY(read(fd.get(), &result[offset], read_length));
282     if (rc == -1) {
283       FAIL() << "read failed: " << strerror(errno);
284     } else if (rc == 0) {
285       result.resize(result.size() - PAGE_SIZE);
286       break;
287     }
288 
289     result.resize(result.size() - PAGE_SIZE + rc);
290   }
291 
292   *output = std::move(result);
293 }
294 
TEST_F(CrasherTest,smoke)295 TEST_F(CrasherTest, smoke) {
296   int intercept_result;
297   unique_fd output_fd;
298   StartProcess([]() {
299     *reinterpret_cast<volatile char*>(0xdead) = '1';
300   });
301 
302   StartIntercept(&output_fd);
303   FinishCrasher();
304   AssertDeath(SIGSEGV);
305   FinishIntercept(&intercept_result);
306 
307   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
308 
309   std::string result;
310   ConsumeFd(std::move(output_fd), &result);
311   ASSERT_MATCH(result, R"(signal 11 \(SIGSEGV\), code 1 \(SEGV_MAPERR\), fault addr 0xdead)");
312 }
313 
TEST_F(CrasherTest,tagged_fault_addr)314 TEST_F(CrasherTest, tagged_fault_addr) {
315 #if !defined(__aarch64__)
316   GTEST_SKIP() << "Requires aarch64";
317 #endif
318   int intercept_result;
319   unique_fd output_fd;
320   StartProcess([]() {
321     *reinterpret_cast<volatile char*>(0x100000000000dead) = '1';
322   });
323 
324   StartIntercept(&output_fd);
325   FinishCrasher();
326   AssertDeath(SIGSEGV);
327   FinishIntercept(&intercept_result);
328 
329   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
330 
331   std::string result;
332   ConsumeFd(std::move(output_fd), &result);
333 
334   // The address can either be tagged (new kernels) or untagged (old kernels).
335   ASSERT_MATCH(
336       result,
337       R"(signal 11 \(SIGSEGV\), code 1 \(SEGV_MAPERR\), fault addr (0x100000000000dead|0xdead))");
338 }
339 
340 // Marked as weak to prevent the compiler from removing the malloc in the caller. In theory, the
341 // compiler could still clobber the argument register before trapping, but that's unlikely.
Trap(void * ptr ATTRIBUTE_UNUSED)342 __attribute__((weak)) void CrasherTest::Trap(void* ptr ATTRIBUTE_UNUSED) {
343   __builtin_trap();
344 }
345 
TEST_F(CrasherTest,heap_addr_in_register)346 TEST_F(CrasherTest, heap_addr_in_register) {
347 #if defined(__i386__)
348   GTEST_SKIP() << "architecture does not pass arguments in registers";
349 #endif
350   int intercept_result;
351   unique_fd output_fd;
352   StartProcess([]() {
353     // Crash with a heap pointer in the first argument register.
354     Trap(malloc(1));
355   });
356 
357   StartIntercept(&output_fd);
358   FinishCrasher();
359   int status;
360   ASSERT_EQ(crasher_pid, TIMEOUT(30, waitpid(crasher_pid, &status, 0)));
361   ASSERT_TRUE(WIFSIGNALED(status)) << "crasher didn't terminate via a signal";
362   // Don't test the signal number because different architectures use different signals for
363   // __builtin_trap().
364   FinishIntercept(&intercept_result);
365 
366   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
367 
368   std::string result;
369   ConsumeFd(std::move(output_fd), &result);
370 
371 #if defined(__aarch64__)
372   ASSERT_MATCH(result, "memory near x0");
373 #elif defined(__arm__)
374   ASSERT_MATCH(result, "memory near r0");
375 #elif defined(__x86_64__)
376   ASSERT_MATCH(result, "memory near rdi");
377 #else
378   ASSERT_TRUE(false) << "unsupported architecture";
379 #endif
380 }
381 
382 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
SetTagCheckingLevelSync()383 static void SetTagCheckingLevelSync() {
384   int tagged_addr_ctrl = prctl(PR_GET_TAGGED_ADDR_CTRL, 0, 0, 0, 0);
385   if (tagged_addr_ctrl < 0) {
386     abort();
387   }
388 
389   tagged_addr_ctrl = (tagged_addr_ctrl & ~PR_MTE_TCF_MASK) | PR_MTE_TCF_SYNC;
390   if (prctl(PR_SET_TAGGED_ADDR_CTRL, tagged_addr_ctrl, 0, 0, 0) != 0) {
391     abort();
392   }
393 
394   HeapTaggingLevel heap_tagging_level = M_HEAP_TAGGING_LEVEL_SYNC;
395   if (!android_mallopt(M_SET_HEAP_TAGGING_LEVEL, &heap_tagging_level, sizeof(heap_tagging_level))) {
396     abort();
397   }
398 }
399 #endif
400 
TEST_F(CrasherTest,mte_uaf)401 TEST_F(CrasherTest, mte_uaf) {
402 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
403   if (!mte_supported()) {
404     GTEST_SKIP() << "Requires MTE";
405   }
406 
407   int intercept_result;
408   unique_fd output_fd;
409   StartProcess([]() {
410     SetTagCheckingLevelSync();
411     volatile int* p = (volatile int*)malloc(16);
412     free((void *)p);
413     p[0] = 42;
414   });
415 
416   StartIntercept(&output_fd);
417   FinishCrasher();
418   AssertDeath(SIGSEGV);
419   FinishIntercept(&intercept_result);
420 
421   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
422 
423   std::string result;
424   ConsumeFd(std::move(output_fd), &result);
425 
426   ASSERT_MATCH(result, R"(signal 11 \(SIGSEGV\), code 9 \(SEGV_MTESERR\))");
427   ASSERT_MATCH(result, R"(Cause: \[MTE\]: Use After Free, 0 bytes into a 16-byte allocation.*
428 
429 allocated by thread .*
430       #00 pc)");
431   ASSERT_MATCH(result, R"(deallocated by thread .*
432       #00 pc)");
433 #else
434   GTEST_SKIP() << "Requires aarch64 + ANDROID_EXPERIMENTAL_MTE";
435 #endif
436 }
437 
TEST_F(CrasherTest,mte_overflow)438 TEST_F(CrasherTest, mte_overflow) {
439 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
440   if (!mte_supported()) {
441     GTEST_SKIP() << "Requires MTE";
442   }
443 
444   int intercept_result;
445   unique_fd output_fd;
446   StartProcess([]() {
447     SetTagCheckingLevelSync();
448     volatile int* p = (volatile int*)malloc(16);
449     p[4] = 42;
450   });
451 
452   StartIntercept(&output_fd);
453   FinishCrasher();
454   AssertDeath(SIGSEGV);
455   FinishIntercept(&intercept_result);
456 
457   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
458 
459   std::string result;
460   ConsumeFd(std::move(output_fd), &result);
461 
462   ASSERT_MATCH(result, R"(signal 11 \(SIGSEGV\))");
463   ASSERT_MATCH(result, R"(Cause: \[MTE\]: Buffer Overflow, 0 bytes right of a 16-byte allocation.*
464 
465 allocated by thread .*
466       #00 pc)");
467 #else
468   GTEST_SKIP() << "Requires aarch64 + ANDROID_EXPERIMENTAL_MTE";
469 #endif
470 }
471 
TEST_F(CrasherTest,mte_underflow)472 TEST_F(CrasherTest, mte_underflow) {
473 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
474   if (!mte_supported()) {
475     GTEST_SKIP() << "Requires MTE";
476   }
477 
478   int intercept_result;
479   unique_fd output_fd;
480   StartProcess([]() {
481     SetTagCheckingLevelSync();
482     volatile int* p = (volatile int*)malloc(16);
483     p[-1] = 42;
484   });
485 
486   StartIntercept(&output_fd);
487   FinishCrasher();
488   AssertDeath(SIGSEGV);
489   FinishIntercept(&intercept_result);
490 
491   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
492 
493   std::string result;
494   ConsumeFd(std::move(output_fd), &result);
495 
496   ASSERT_MATCH(result, R"(signal 11 \(SIGSEGV\), code 9 \(SEGV_MTESERR\))");
497   ASSERT_MATCH(result, R"(Cause: \[MTE\]: Buffer Underflow, 4 bytes left of a 16-byte allocation.*
498 
499 allocated by thread .*
500       #00 pc)");
501 #else
502   GTEST_SKIP() << "Requires aarch64 + ANDROID_EXPERIMENTAL_MTE";
503 #endif
504 }
505 
TEST_F(CrasherTest,mte_multiple_causes)506 TEST_F(CrasherTest, mte_multiple_causes) {
507 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
508   if (!mte_supported()) {
509     GTEST_SKIP() << "Requires MTE";
510   }
511 
512   int intercept_result;
513   unique_fd output_fd;
514   StartProcess([]() {
515     SetTagCheckingLevelSync();
516 
517     // Make two allocations with the same tag and close to one another. Check for both properties
518     // with a bounds check -- this relies on the fact that only if the allocations have the same tag
519     // would they be measured as closer than 128 bytes to each other. Otherwise they would be about
520     // (some non-zero value << 56) apart.
521     //
522     // The out-of-bounds access will be considered either an overflow of one or an underflow of the
523     // other.
524     std::set<uintptr_t> allocs;
525     for (int i = 0; i != 4096; ++i) {
526       uintptr_t alloc = reinterpret_cast<uintptr_t>(malloc(16));
527       auto it = allocs.insert(alloc).first;
528       if (it != allocs.begin() && *std::prev(it) + 128 > alloc) {
529         *reinterpret_cast<int*>(*std::prev(it) + 16) = 42;
530       }
531       if (std::next(it) != allocs.end() && alloc + 128 > *std::next(it)) {
532         *reinterpret_cast<int*>(alloc + 16) = 42;
533       }
534     }
535   });
536 
537   StartIntercept(&output_fd);
538   FinishCrasher();
539   AssertDeath(SIGSEGV);
540   FinishIntercept(&intercept_result);
541 
542   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
543 
544   std::string result;
545   ConsumeFd(std::move(output_fd), &result);
546 
547   ASSERT_MATCH(result, R"(signal 11 \(SIGSEGV\))");
548   ASSERT_MATCH(
549       result,
550       R"(Note: multiple potential causes for this crash were detected, listing them in decreasing order of probability.)");
551 
552   // Adjacent untracked allocations may cause us to see the wrong underflow here (or only
553   // overflows), so we can't match explicitly for an underflow message.
554   ASSERT_MATCH(result, R"(Cause: \[MTE\]: Buffer Overflow, 0 bytes right of a 16-byte allocation)");
555 #else
556   GTEST_SKIP() << "Requires aarch64 + ANDROID_EXPERIMENTAL_MTE";
557 #endif
558 }
559 
560 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
CreateTagMapping()561 static uintptr_t CreateTagMapping() {
562   uintptr_t mapping =
563       reinterpret_cast<uintptr_t>(mmap(nullptr, getpagesize(), PROT_READ | PROT_WRITE | PROT_MTE,
564                                        MAP_PRIVATE | MAP_ANONYMOUS, -1, 0));
565   if (reinterpret_cast<void*>(mapping) == MAP_FAILED) {
566     return 0;
567   }
568   __asm__ __volatile__(".arch_extension mte; stg %0, [%0]"
569                        :
570                        : "r"(mapping + (1ULL << 56))
571                        : "memory");
572   return mapping;
573 }
574 #endif
575 
TEST_F(CrasherTest,mte_tag_dump)576 TEST_F(CrasherTest, mte_tag_dump) {
577 #if defined(__aarch64__) && defined(ANDROID_EXPERIMENTAL_MTE)
578   if (!mte_supported()) {
579     GTEST_SKIP() << "Requires MTE";
580   }
581 
582   int intercept_result;
583   unique_fd output_fd;
584   StartProcess([&]() {
585     SetTagCheckingLevelSync();
586     Trap(reinterpret_cast<void *>(CreateTagMapping()));
587   });
588 
589   StartIntercept(&output_fd);
590   FinishCrasher();
591   AssertDeath(SIGTRAP);
592   FinishIntercept(&intercept_result);
593 
594   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
595 
596   std::string result;
597   ConsumeFd(std::move(output_fd), &result);
598 
599   ASSERT_MATCH(result, R"(memory near x0:
600 .*
601 .*
602     01.............0 0000000000000000 0000000000000000  ................
603     00.............0)");
604 #else
605   GTEST_SKIP() << "Requires aarch64 + ANDROID_EXPERIMENTAL_MTE";
606 #endif
607 }
608 
TEST_F(CrasherTest,LD_PRELOAD)609 TEST_F(CrasherTest, LD_PRELOAD) {
610   int intercept_result;
611   unique_fd output_fd;
612   StartProcess([]() {
613     setenv("LD_PRELOAD", "nonexistent.so", 1);
614     *reinterpret_cast<volatile char*>(0xdead) = '1';
615   });
616 
617   StartIntercept(&output_fd);
618   FinishCrasher();
619   AssertDeath(SIGSEGV);
620   FinishIntercept(&intercept_result);
621 
622   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
623 
624   std::string result;
625   ConsumeFd(std::move(output_fd), &result);
626   ASSERT_MATCH(result, R"(signal 11 \(SIGSEGV\), code 1 \(SEGV_MAPERR\), fault addr 0xdead)");
627 }
628 
TEST_F(CrasherTest,abort)629 TEST_F(CrasherTest, abort) {
630   int intercept_result;
631   unique_fd output_fd;
632   StartProcess([]() {
633     abort();
634   });
635   StartIntercept(&output_fd);
636   FinishCrasher();
637   AssertDeath(SIGABRT);
638   FinishIntercept(&intercept_result);
639 
640   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
641 
642   std::string result;
643   ConsumeFd(std::move(output_fd), &result);
644   ASSERT_BACKTRACE_FRAME(result, "abort");
645 }
646 
TEST_F(CrasherTest,signal)647 TEST_F(CrasherTest, signal) {
648   int intercept_result;
649   unique_fd output_fd;
650   StartProcess([]() {
651     while (true) {
652       sleep(1);
653     }
654   });
655   StartIntercept(&output_fd);
656   FinishCrasher();
657   ASSERT_EQ(0, kill(crasher_pid, SIGSEGV));
658 
659   AssertDeath(SIGSEGV);
660   FinishIntercept(&intercept_result);
661 
662   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
663 
664   std::string result;
665   ConsumeFd(std::move(output_fd), &result);
666   ASSERT_MATCH(
667       result,
668       R"(signal 11 \(SIGSEGV\), code 0 \(SI_USER from pid \d+, uid \d+\), fault addr --------)");
669   ASSERT_MATCH(result, R"(backtrace:)");
670 }
671 
TEST_F(CrasherTest,abort_message)672 TEST_F(CrasherTest, abort_message) {
673   int intercept_result;
674   unique_fd output_fd;
675   StartProcess([]() {
676     // Arrived at experimentally;
677     // logd truncates at 4062.
678     // strlen("Abort message: ''") is 17.
679     // That's 4045, but we also want a NUL.
680     char buf[4045 + 1];
681     memset(buf, 'x', sizeof(buf));
682     buf[sizeof(buf) - 1] = '\0';
683     android_set_abort_message(buf);
684     abort();
685   });
686   StartIntercept(&output_fd);
687   FinishCrasher();
688   AssertDeath(SIGABRT);
689   FinishIntercept(&intercept_result);
690 
691   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
692 
693   std::string result;
694   ConsumeFd(std::move(output_fd), &result);
695   ASSERT_MATCH(result, R"(Abort message: 'x{4045}')");
696 }
697 
TEST_F(CrasherTest,abort_message_backtrace)698 TEST_F(CrasherTest, abort_message_backtrace) {
699   int intercept_result;
700   unique_fd output_fd;
701   StartProcess([]() {
702     android_set_abort_message("not actually aborting");
703     raise(BIONIC_SIGNAL_DEBUGGER);
704     exit(0);
705   });
706   StartIntercept(&output_fd);
707   FinishCrasher();
708   AssertDeath(0);
709   FinishIntercept(&intercept_result);
710 
711   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
712 
713   std::string result;
714   ConsumeFd(std::move(output_fd), &result);
715   ASSERT_NOT_MATCH(result, R"(Abort message:)");
716 }
717 
TEST_F(CrasherTest,intercept_timeout)718 TEST_F(CrasherTest, intercept_timeout) {
719   int intercept_result;
720   unique_fd output_fd;
721   StartProcess([]() {
722     abort();
723   });
724   StartIntercept(&output_fd);
725 
726   // Don't let crasher finish until we timeout.
727   FinishIntercept(&intercept_result);
728 
729   ASSERT_NE(1, intercept_result) << "tombstoned reported success? (intercept_result = "
730                                  << intercept_result << ")";
731 
732   FinishCrasher();
733   AssertDeath(SIGABRT);
734 }
735 
TEST_F(CrasherTest,wait_for_gdb)736 TEST_F(CrasherTest, wait_for_gdb) {
737   if (!android::base::SetProperty(kWaitForGdbKey, "1")) {
738     FAIL() << "failed to enable wait_for_gdb";
739   }
740   sleep(1);
741 
742   StartProcess([]() {
743     abort();
744   });
745   FinishCrasher();
746 
747   int status;
748   ASSERT_EQ(crasher_pid, TEMP_FAILURE_RETRY(waitpid(crasher_pid, &status, WUNTRACED)));
749   ASSERT_TRUE(WIFSTOPPED(status));
750   ASSERT_EQ(SIGSTOP, WSTOPSIG(status));
751 
752   ASSERT_EQ(0, kill(crasher_pid, SIGCONT));
753 
754   AssertDeath(SIGABRT);
755 }
756 
TEST_F(CrasherTest,backtrace)757 TEST_F(CrasherTest, backtrace) {
758   std::string result;
759   int intercept_result;
760   unique_fd output_fd;
761 
762   StartProcess([]() {
763     abort();
764   });
765   StartIntercept(&output_fd, kDebuggerdNativeBacktrace);
766 
767   std::this_thread::sleep_for(500ms);
768 
769   sigval val;
770   val.sival_int = 1;
771   ASSERT_EQ(0, sigqueue(crasher_pid, BIONIC_SIGNAL_DEBUGGER, val)) << strerror(errno);
772   FinishIntercept(&intercept_result);
773   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
774   ConsumeFd(std::move(output_fd), &result);
775   ASSERT_BACKTRACE_FRAME(result, "read");
776 
777   int status;
778   ASSERT_EQ(0, waitpid(crasher_pid, &status, WNOHANG | WUNTRACED));
779 
780   StartIntercept(&output_fd);
781   FinishCrasher();
782   AssertDeath(SIGABRT);
783   FinishIntercept(&intercept_result);
784   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
785   ConsumeFd(std::move(output_fd), &result);
786   ASSERT_BACKTRACE_FRAME(result, "abort");
787 }
788 
TEST_F(CrasherTest,PR_SET_DUMPABLE_0_crash)789 TEST_F(CrasherTest, PR_SET_DUMPABLE_0_crash) {
790   int intercept_result;
791   unique_fd output_fd;
792   StartProcess([]() {
793     prctl(PR_SET_DUMPABLE, 0);
794     abort();
795   });
796 
797   StartIntercept(&output_fd);
798   FinishCrasher();
799   AssertDeath(SIGABRT);
800   FinishIntercept(&intercept_result);
801 
802   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
803 
804   std::string result;
805   ConsumeFd(std::move(output_fd), &result);
806   ASSERT_BACKTRACE_FRAME(result, "abort");
807 }
808 
TEST_F(CrasherTest,capabilities)809 TEST_F(CrasherTest, capabilities) {
810   ASSERT_EQ(0U, getuid()) << "capability test requires root";
811 
812   StartProcess([]() {
813     if (prctl(PR_SET_KEEPCAPS, 1, 0, 0, 0) != 0) {
814       err(1, "failed to set PR_SET_KEEPCAPS");
815     }
816 
817     if (setresuid(1, 1, 1) != 0) {
818       err(1, "setresuid failed");
819     }
820 
821     __user_cap_header_struct capheader;
822     __user_cap_data_struct capdata[2];
823     memset(&capheader, 0, sizeof(capheader));
824     memset(&capdata, 0, sizeof(capdata));
825 
826     capheader.version = _LINUX_CAPABILITY_VERSION_3;
827     capheader.pid = 0;
828 
829     // Turn on every third capability.
830     static_assert(CAP_LAST_CAP > 33, "CAP_LAST_CAP <= 32");
831     for (int i = 0; i < CAP_LAST_CAP; i += 3) {
832       capdata[CAP_TO_INDEX(i)].permitted |= CAP_TO_MASK(i);
833       capdata[CAP_TO_INDEX(i)].effective |= CAP_TO_MASK(i);
834     }
835 
836     // Make sure CAP_SYS_PTRACE is off.
837     capdata[CAP_TO_INDEX(CAP_SYS_PTRACE)].permitted &= ~(CAP_TO_MASK(CAP_SYS_PTRACE));
838     capdata[CAP_TO_INDEX(CAP_SYS_PTRACE)].effective &= ~(CAP_TO_MASK(CAP_SYS_PTRACE));
839 
840     if (capset(&capheader, &capdata[0]) != 0) {
841       err(1, "capset failed");
842     }
843 
844     if (prctl(PR_CAP_AMBIENT, PR_CAP_AMBIENT_CLEAR_ALL, 0, 0, 0) != 0) {
845       err(1, "failed to drop ambient capabilities");
846     }
847 
848     pthread_setname_np(pthread_self(), "thread_name");
849     raise(SIGSYS);
850   });
851 
852   unique_fd output_fd;
853   StartIntercept(&output_fd);
854   FinishCrasher();
855   AssertDeath(SIGSYS);
856 
857   std::string result;
858   int intercept_result;
859   FinishIntercept(&intercept_result);
860   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
861   ConsumeFd(std::move(output_fd), &result);
862   ASSERT_MATCH(result, R"(name: thread_name\s+>>> .+debuggerd_test(32|64) <<<)");
863   ASSERT_BACKTRACE_FRAME(result, "tgkill");
864 }
865 
TEST_F(CrasherTest,fake_pid)866 TEST_F(CrasherTest, fake_pid) {
867   int intercept_result;
868   unique_fd output_fd;
869 
870   // Prime the getpid/gettid caches.
871   UNUSED(getpid());
872   UNUSED(gettid());
873 
874   std::function<pid_t()> clone_fn = []() {
875     return syscall(__NR_clone, SIGCHLD, nullptr, nullptr, nullptr, nullptr);
876   };
877   StartProcess(
878       []() {
879         ASSERT_NE(getpid(), syscall(__NR_getpid));
880         ASSERT_NE(gettid(), syscall(__NR_gettid));
881         raise(SIGSEGV);
882       },
883       clone_fn);
884 
885   StartIntercept(&output_fd);
886   FinishCrasher();
887   AssertDeath(SIGSEGV);
888   FinishIntercept(&intercept_result);
889 
890   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
891 
892   std::string result;
893   ConsumeFd(std::move(output_fd), &result);
894   ASSERT_BACKTRACE_FRAME(result, "tgkill");
895 }
896 
897 static const char* const kDebuggerdSeccompPolicy =
898     "/system/etc/seccomp_policy/crash_dump." ABI_STRING ".policy";
899 
seccomp_fork_impl(void (* prejail)())900 static pid_t seccomp_fork_impl(void (*prejail)()) {
901   std::string policy;
902   if (!android::base::ReadFileToString(kDebuggerdSeccompPolicy, &policy)) {
903     PLOG(FATAL) << "failed to read policy file";
904   }
905 
906   // Allow a bunch of syscalls used by the tests.
907   policy += "\nclone: 1";
908   policy += "\nsigaltstack: 1";
909   policy += "\nnanosleep: 1";
910   policy += "\ngetrlimit: 1";
911   policy += "\nugetrlimit: 1";
912 
913   FILE* tmp_file = tmpfile();
914   if (!tmp_file) {
915     PLOG(FATAL) << "tmpfile failed";
916   }
917 
918   unique_fd tmp_fd(TEMP_FAILURE_RETRY(dup(fileno(tmp_file))));
919   if (!android::base::WriteStringToFd(policy, tmp_fd.get())) {
920     PLOG(FATAL) << "failed to write policy to tmpfile";
921   }
922 
923   if (lseek(tmp_fd.get(), 0, SEEK_SET) != 0) {
924     PLOG(FATAL) << "failed to seek tmp_fd";
925   }
926 
927   ScopedMinijail jail{minijail_new()};
928   if (!jail) {
929     LOG(FATAL) << "failed to create minijail";
930   }
931 
932   minijail_no_new_privs(jail.get());
933   minijail_log_seccomp_filter_failures(jail.get());
934   minijail_use_seccomp_filter(jail.get());
935   minijail_parse_seccomp_filters_from_fd(jail.get(), tmp_fd.release());
936 
937   pid_t result = fork();
938   if (result == -1) {
939     return result;
940   } else if (result != 0) {
941     return result;
942   }
943 
944   // Spawn and detach a thread that spins forever.
945   std::atomic<bool> thread_ready(false);
946   std::thread thread([&jail, &thread_ready]() {
947     minijail_enter(jail.get());
948     thread_ready = true;
949     for (;;)
950       ;
951   });
952   thread.detach();
953 
954   while (!thread_ready) {
955     continue;
956   }
957 
958   if (prejail) {
959     prejail();
960   }
961 
962   minijail_enter(jail.get());
963   return result;
964 }
965 
seccomp_fork()966 static pid_t seccomp_fork() {
967   return seccomp_fork_impl(nullptr);
968 }
969 
TEST_F(CrasherTest,seccomp_crash)970 TEST_F(CrasherTest, seccomp_crash) {
971   int intercept_result;
972   unique_fd output_fd;
973 
974   StartProcess([]() { abort(); }, &seccomp_fork);
975 
976   StartIntercept(&output_fd);
977   FinishCrasher();
978   AssertDeath(SIGABRT);
979   FinishIntercept(&intercept_result);
980   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
981 
982   std::string result;
983   ConsumeFd(std::move(output_fd), &result);
984   ASSERT_BACKTRACE_FRAME(result, "abort");
985 }
986 
seccomp_fork_rlimit()987 static pid_t seccomp_fork_rlimit() {
988   return seccomp_fork_impl([]() {
989     struct rlimit rlim = {
990         .rlim_cur = 512 * 1024 * 1024,
991         .rlim_max = 512 * 1024 * 1024,
992     };
993 
994     if (setrlimit(RLIMIT_AS, &rlim) != 0) {
995       raise(SIGINT);
996     }
997   });
998 }
999 
TEST_F(CrasherTest,seccomp_crash_oom)1000 TEST_F(CrasherTest, seccomp_crash_oom) {
1001   int intercept_result;
1002   unique_fd output_fd;
1003 
1004   StartProcess(
1005       []() {
1006         std::vector<void*> vec;
1007         for (int i = 0; i < 512; ++i) {
1008           char* buf = static_cast<char*>(malloc(1024 * 1024));
1009           if (!buf) {
1010             abort();
1011           }
1012           memset(buf, 0xff, 1024 * 1024);
1013           vec.push_back(buf);
1014         }
1015       },
1016       &seccomp_fork_rlimit);
1017 
1018   StartIntercept(&output_fd);
1019   FinishCrasher();
1020   AssertDeath(SIGABRT);
1021   FinishIntercept(&intercept_result);
1022   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
1023 
1024   // We can't actually generate a backtrace, just make sure that the process terminates.
1025 }
1026 
raise_debugger_signal(DebuggerdDumpType dump_type)1027 __attribute__((noinline)) extern "C" bool raise_debugger_signal(DebuggerdDumpType dump_type) {
1028   siginfo_t siginfo;
1029   siginfo.si_code = SI_QUEUE;
1030   siginfo.si_pid = getpid();
1031   siginfo.si_uid = getuid();
1032 
1033   if (dump_type != kDebuggerdNativeBacktrace && dump_type != kDebuggerdTombstone) {
1034     PLOG(FATAL) << "invalid dump type";
1035   }
1036 
1037   siginfo.si_value.sival_int = dump_type == kDebuggerdNativeBacktrace;
1038 
1039   if (syscall(__NR_rt_tgsigqueueinfo, getpid(), gettid(), BIONIC_SIGNAL_DEBUGGER, &siginfo) != 0) {
1040     PLOG(ERROR) << "libdebuggerd_client: failed to send signal to self";
1041     return false;
1042   }
1043 
1044   return true;
1045 }
1046 
TEST_F(CrasherTest,seccomp_tombstone)1047 TEST_F(CrasherTest, seccomp_tombstone) {
1048   int intercept_result;
1049   unique_fd output_fd;
1050 
1051   static const auto dump_type = kDebuggerdTombstone;
1052   StartProcess(
1053       []() {
1054         raise_debugger_signal(dump_type);
1055         _exit(0);
1056       },
1057       &seccomp_fork);
1058 
1059   StartIntercept(&output_fd, dump_type);
1060   FinishCrasher();
1061   AssertDeath(0);
1062   FinishIntercept(&intercept_result);
1063   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
1064 
1065   std::string result;
1066   ConsumeFd(std::move(output_fd), &result);
1067   ASSERT_BACKTRACE_FRAME(result, "raise_debugger_signal");
1068 }
1069 
foo()1070 extern "C" void foo() {
1071   LOG(INFO) << "foo";
1072   std::this_thread::sleep_for(1s);
1073 }
1074 
bar()1075 extern "C" void bar() {
1076   LOG(INFO) << "bar";
1077   std::this_thread::sleep_for(1s);
1078 }
1079 
TEST_F(CrasherTest,seccomp_backtrace)1080 TEST_F(CrasherTest, seccomp_backtrace) {
1081   int intercept_result;
1082   unique_fd output_fd;
1083 
1084   static const auto dump_type = kDebuggerdNativeBacktrace;
1085   StartProcess(
1086       []() {
1087         std::thread a(foo);
1088         std::thread b(bar);
1089 
1090         std::this_thread::sleep_for(100ms);
1091 
1092         raise_debugger_signal(dump_type);
1093         _exit(0);
1094       },
1095       &seccomp_fork);
1096 
1097   StartIntercept(&output_fd, dump_type);
1098   FinishCrasher();
1099   AssertDeath(0);
1100   FinishIntercept(&intercept_result);
1101   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
1102 
1103   std::string result;
1104   ConsumeFd(std::move(output_fd), &result);
1105   ASSERT_BACKTRACE_FRAME(result, "raise_debugger_signal");
1106   ASSERT_BACKTRACE_FRAME(result, "foo");
1107   ASSERT_BACKTRACE_FRAME(result, "bar");
1108 }
1109 
TEST_F(CrasherTest,seccomp_crash_logcat)1110 TEST_F(CrasherTest, seccomp_crash_logcat) {
1111   StartProcess([]() { abort(); }, &seccomp_fork);
1112   FinishCrasher();
1113 
1114   // Make sure we don't get SIGSYS when trying to dump a crash to logcat.
1115   AssertDeath(SIGABRT);
1116 }
1117 
TEST_F(CrasherTest,competing_tracer)1118 TEST_F(CrasherTest, competing_tracer) {
1119   int intercept_result;
1120   unique_fd output_fd;
1121   StartProcess([]() {
1122     raise(SIGABRT);
1123   });
1124 
1125   StartIntercept(&output_fd);
1126 
1127   ASSERT_EQ(0, ptrace(PTRACE_SEIZE, crasher_pid, 0, 0));
1128   FinishCrasher();
1129 
1130   int status;
1131   ASSERT_EQ(crasher_pid, TEMP_FAILURE_RETRY(waitpid(crasher_pid, &status, 0)));
1132   ASSERT_TRUE(WIFSTOPPED(status));
1133   ASSERT_EQ(SIGABRT, WSTOPSIG(status));
1134 
1135   ASSERT_EQ(0, ptrace(PTRACE_CONT, crasher_pid, 0, SIGABRT));
1136   FinishIntercept(&intercept_result);
1137   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
1138 
1139   std::string result;
1140   ConsumeFd(std::move(output_fd), &result);
1141   std::string regex = R"(failed to attach to thread \d+, already traced by )";
1142   regex += std::to_string(gettid());
1143   regex += R"( \(.+debuggerd_test)";
1144   ASSERT_MATCH(result, regex.c_str());
1145 
1146   ASSERT_EQ(crasher_pid, TEMP_FAILURE_RETRY(waitpid(crasher_pid, &status, 0)));
1147   ASSERT_TRUE(WIFSTOPPED(status));
1148   ASSERT_EQ(SIGABRT, WSTOPSIG(status));
1149 
1150   ASSERT_EQ(0, ptrace(PTRACE_DETACH, crasher_pid, 0, SIGABRT));
1151   AssertDeath(SIGABRT);
1152 }
1153 
TEST_F(CrasherTest,fdsan_warning_abort_message)1154 TEST_F(CrasherTest, fdsan_warning_abort_message) {
1155   int intercept_result;
1156   unique_fd output_fd;
1157 
1158   StartProcess([]() {
1159     android_fdsan_set_error_level(ANDROID_FDSAN_ERROR_LEVEL_WARN_ONCE);
1160     unique_fd fd(TEMP_FAILURE_RETRY(open("/dev/null", O_RDONLY | O_CLOEXEC)));
1161     if (fd == -1) {
1162       abort();
1163     }
1164     close(fd.get());
1165     _exit(0);
1166   });
1167 
1168   StartIntercept(&output_fd);
1169   FinishCrasher();
1170   AssertDeath(0);
1171   FinishIntercept(&intercept_result);
1172   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
1173 
1174   std::string result;
1175   ConsumeFd(std::move(output_fd), &result);
1176   ASSERT_MATCH(result, "Abort message: 'attempted to close");
1177 }
1178 
TEST(crash_dump,zombie)1179 TEST(crash_dump, zombie) {
1180   pid_t forkpid = fork();
1181 
1182   pid_t rc;
1183   int status;
1184 
1185   if (forkpid == 0) {
1186     errno = 0;
1187     rc = waitpid(-1, &status, WNOHANG | __WALL | __WNOTHREAD);
1188     if (rc != -1 || errno != ECHILD) {
1189       errx(2, "first waitpid returned %d (%s), expected failure with ECHILD", rc, strerror(errno));
1190     }
1191 
1192     raise(BIONIC_SIGNAL_DEBUGGER);
1193 
1194     errno = 0;
1195     rc = TEMP_FAILURE_RETRY(waitpid(-1, &status, __WALL | __WNOTHREAD));
1196     if (rc != -1 || errno != ECHILD) {
1197       errx(2, "second waitpid returned %d (%s), expected failure with ECHILD", rc, strerror(errno));
1198     }
1199     _exit(0);
1200   } else {
1201     rc = TEMP_FAILURE_RETRY(waitpid(forkpid, &status, 0));
1202     ASSERT_EQ(forkpid, rc);
1203     ASSERT_TRUE(WIFEXITED(status));
1204     ASSERT_EQ(0, WEXITSTATUS(status));
1205   }
1206 }
1207 
TEST(tombstoned,no_notify)1208 TEST(tombstoned, no_notify) {
1209   // Do this a few times.
1210   for (int i = 0; i < 3; ++i) {
1211     pid_t pid = 123'456'789 + i;
1212 
1213     unique_fd intercept_fd, output_fd;
1214     InterceptStatus status;
1215     tombstoned_intercept(pid, &intercept_fd, &output_fd, &status, kDebuggerdTombstone);
1216     ASSERT_EQ(InterceptStatus::kRegistered, status);
1217 
1218     {
1219       unique_fd tombstoned_socket, input_fd;
1220       ASSERT_TRUE(tombstoned_connect(pid, &tombstoned_socket, &input_fd, kDebuggerdTombstone));
1221       ASSERT_TRUE(android::base::WriteFully(input_fd.get(), &pid, sizeof(pid)));
1222     }
1223 
1224     pid_t read_pid;
1225     ASSERT_TRUE(android::base::ReadFully(output_fd.get(), &read_pid, sizeof(read_pid)));
1226     ASSERT_EQ(read_pid, pid);
1227   }
1228 }
1229 
TEST(tombstoned,stress)1230 TEST(tombstoned, stress) {
1231   // Spawn threads to simultaneously do a bunch of failing dumps and a bunch of successful dumps.
1232   static constexpr int kDumpCount = 100;
1233 
1234   std::atomic<bool> start(false);
1235   std::vector<std::thread> threads;
1236   threads.emplace_back([&start]() {
1237     while (!start) {
1238       continue;
1239     }
1240 
1241     // Use a way out of range pid, to avoid stomping on an actual process.
1242     pid_t pid_base = 1'000'000;
1243 
1244     for (int dump = 0; dump < kDumpCount; ++dump) {
1245       pid_t pid = pid_base + dump;
1246 
1247       unique_fd intercept_fd, output_fd;
1248       InterceptStatus status;
1249       tombstoned_intercept(pid, &intercept_fd, &output_fd, &status, kDebuggerdTombstone);
1250       ASSERT_EQ(InterceptStatus::kRegistered, status);
1251 
1252       // Pretend to crash, and then immediately close the socket.
1253       unique_fd sockfd(socket_local_client(kTombstonedCrashSocketName,
1254                                            ANDROID_SOCKET_NAMESPACE_RESERVED, SOCK_SEQPACKET));
1255       if (sockfd == -1) {
1256         FAIL() << "failed to connect to tombstoned: " << strerror(errno);
1257       }
1258       TombstonedCrashPacket packet = {};
1259       packet.packet_type = CrashPacketType::kDumpRequest;
1260       packet.packet.dump_request.pid = pid;
1261       if (TEMP_FAILURE_RETRY(write(sockfd, &packet, sizeof(packet))) != sizeof(packet)) {
1262         FAIL() << "failed to write to tombstoned: " << strerror(errno);
1263       }
1264 
1265       continue;
1266     }
1267   });
1268 
1269   threads.emplace_back([&start]() {
1270     while (!start) {
1271       continue;
1272     }
1273 
1274     // Use a way out of range pid, to avoid stomping on an actual process.
1275     pid_t pid_base = 2'000'000;
1276 
1277     for (int dump = 0; dump < kDumpCount; ++dump) {
1278       pid_t pid = pid_base + dump;
1279 
1280       unique_fd intercept_fd, output_fd;
1281       InterceptStatus status;
1282       tombstoned_intercept(pid, &intercept_fd, &output_fd, &status, kDebuggerdTombstone);
1283       ASSERT_EQ(InterceptStatus::kRegistered, status);
1284 
1285       {
1286         unique_fd tombstoned_socket, input_fd;
1287         ASSERT_TRUE(tombstoned_connect(pid, &tombstoned_socket, &input_fd, kDebuggerdTombstone));
1288         ASSERT_TRUE(android::base::WriteFully(input_fd.get(), &pid, sizeof(pid)));
1289         tombstoned_notify_completion(tombstoned_socket.get());
1290       }
1291 
1292       // TODO: Fix the race that requires this sleep.
1293       std::this_thread::sleep_for(50ms);
1294 
1295       pid_t read_pid;
1296       ASSERT_TRUE(android::base::ReadFully(output_fd.get(), &read_pid, sizeof(read_pid)));
1297       ASSERT_EQ(read_pid, pid);
1298     }
1299   });
1300 
1301   start = true;
1302 
1303   for (std::thread& thread : threads) {
1304     thread.join();
1305   }
1306 }
1307 
TEST(tombstoned,java_trace_intercept_smoke)1308 TEST(tombstoned, java_trace_intercept_smoke) {
1309   // Using a "real" PID is a little dangerous here - if the test fails
1310   // or crashes, we might end up getting a bogus / unreliable stack
1311   // trace.
1312   const pid_t self = getpid();
1313 
1314   unique_fd intercept_fd, output_fd;
1315   InterceptStatus status;
1316   tombstoned_intercept(self, &intercept_fd, &output_fd, &status, kDebuggerdJavaBacktrace);
1317   ASSERT_EQ(InterceptStatus::kRegistered, status);
1318 
1319   // First connect to tombstoned requesting a native backtrace. This
1320   // should result in a "regular" FD and not the installed intercept.
1321   const char native[] = "native";
1322   unique_fd tombstoned_socket, input_fd;
1323   ASSERT_TRUE(tombstoned_connect(self, &tombstoned_socket, &input_fd, kDebuggerdNativeBacktrace));
1324   ASSERT_TRUE(android::base::WriteFully(input_fd.get(), native, sizeof(native)));
1325   tombstoned_notify_completion(tombstoned_socket.get());
1326 
1327   // Then, connect to tombstoned asking for a java backtrace. This *should*
1328   // trigger the intercept.
1329   const char java[] = "java";
1330   ASSERT_TRUE(tombstoned_connect(self, &tombstoned_socket, &input_fd, kDebuggerdJavaBacktrace));
1331   ASSERT_TRUE(android::base::WriteFully(input_fd.get(), java, sizeof(java)));
1332   tombstoned_notify_completion(tombstoned_socket.get());
1333 
1334   char outbuf[sizeof(java)];
1335   ASSERT_TRUE(android::base::ReadFully(output_fd.get(), outbuf, sizeof(outbuf)));
1336   ASSERT_STREQ("java", outbuf);
1337 }
1338 
TEST(tombstoned,multiple_intercepts)1339 TEST(tombstoned, multiple_intercepts) {
1340   const pid_t fake_pid = 1'234'567;
1341   unique_fd intercept_fd, output_fd;
1342   InterceptStatus status;
1343   tombstoned_intercept(fake_pid, &intercept_fd, &output_fd, &status, kDebuggerdJavaBacktrace);
1344   ASSERT_EQ(InterceptStatus::kRegistered, status);
1345 
1346   unique_fd intercept_fd_2, output_fd_2;
1347   tombstoned_intercept(fake_pid, &intercept_fd_2, &output_fd_2, &status, kDebuggerdNativeBacktrace);
1348   ASSERT_EQ(InterceptStatus::kFailedAlreadyRegistered, status);
1349 }
1350 
TEST(tombstoned,intercept_any)1351 TEST(tombstoned, intercept_any) {
1352   const pid_t fake_pid = 1'234'567;
1353 
1354   unique_fd intercept_fd, output_fd;
1355   InterceptStatus status;
1356   tombstoned_intercept(fake_pid, &intercept_fd, &output_fd, &status, kDebuggerdNativeBacktrace);
1357   ASSERT_EQ(InterceptStatus::kRegistered, status);
1358 
1359   const char any[] = "any";
1360   unique_fd tombstoned_socket, input_fd;
1361   ASSERT_TRUE(tombstoned_connect(fake_pid, &tombstoned_socket, &input_fd, kDebuggerdAnyIntercept));
1362   ASSERT_TRUE(android::base::WriteFully(input_fd.get(), any, sizeof(any)));
1363   tombstoned_notify_completion(tombstoned_socket.get());
1364 
1365   char outbuf[sizeof(any)];
1366   ASSERT_TRUE(android::base::ReadFully(output_fd.get(), outbuf, sizeof(outbuf)));
1367   ASSERT_STREQ("any", outbuf);
1368 }
1369 
TEST(tombstoned,interceptless_backtrace)1370 TEST(tombstoned, interceptless_backtrace) {
1371   // Generate 50 backtraces, and then check to see that we haven't created 50 new tombstones.
1372   auto get_tombstone_timestamps = []() -> std::map<int, time_t> {
1373     std::map<int, time_t> result;
1374     for (int i = 0; i < 99; ++i) {
1375       std::string path = android::base::StringPrintf("/data/tombstones/tombstone_%02d", i);
1376       struct stat st;
1377       if (stat(path.c_str(), &st) == 0) {
1378         result[i] = st.st_mtim.tv_sec;
1379       }
1380     }
1381     return result;
1382   };
1383 
1384   auto before = get_tombstone_timestamps();
1385   for (int i = 0; i < 50; ++i) {
1386     raise_debugger_signal(kDebuggerdNativeBacktrace);
1387   }
1388   auto after = get_tombstone_timestamps();
1389 
1390   int diff = 0;
1391   for (int i = 0; i < 99; ++i) {
1392     if (after.count(i) == 0) {
1393       continue;
1394     }
1395     if (before.count(i) == 0) {
1396       ++diff;
1397       continue;
1398     }
1399     if (before[i] != after[i]) {
1400       ++diff;
1401     }
1402   }
1403 
1404   // We can't be sure that nothing's crash looping in the background.
1405   // This should be good enough, though...
1406   ASSERT_LT(diff, 10) << "too many new tombstones; is something crashing in the background?";
1407 }
1408 
overflow_stack(void * p)1409 static __attribute__((__noinline__)) void overflow_stack(void* p) {
1410   void* buf[1];
1411   buf[0] = p;
1412   static volatile void* global = buf;
1413   if (global) {
1414     global = buf;
1415     overflow_stack(&buf);
1416   }
1417 }
1418 
TEST_F(CrasherTest,stack_overflow)1419 TEST_F(CrasherTest, stack_overflow) {
1420   int intercept_result;
1421   unique_fd output_fd;
1422   StartProcess([]() { overflow_stack(nullptr); });
1423 
1424   StartIntercept(&output_fd);
1425   FinishCrasher();
1426   AssertDeath(SIGSEGV);
1427   FinishIntercept(&intercept_result);
1428 
1429   ASSERT_EQ(1, intercept_result) << "tombstoned reported failure";
1430 
1431   std::string result;
1432   ConsumeFd(std::move(output_fd), &result);
1433   ASSERT_MATCH(result, R"(Cause: stack pointer[^\n]*stack overflow.\n)");
1434 }
1435