1 /*
2  * Copyright (C) 2014 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 <dlfcn.h>
18 #include <errno.h>
19 #include <pthread.h>
20 #include <signal.h>
21 #include <stdio.h>
22 #include <stdlib.h>
23 #include <string.h>
24 
25 #if defined(__BIONIC__)
26 #include <bionic/macros.h>
27 #endif
28 
29 #include <algorithm>
30 #include <initializer_list>
31 #include <mutex>
32 #include <type_traits>
33 #include <utility>
34 
35 #include "log.h"
36 #include "sigchain.h"
37 
38 #if defined(__APPLE__)
39 #define _NSIG NSIG
40 #define sighandler_t sig_t
41 
42 // Darwin has an #error when ucontext.h is included without _XOPEN_SOURCE defined.
43 #define _XOPEN_SOURCE
44 #endif
45 
46 #define SA_UNSUPPORTED 0x00000400
47 #define SA_EXPOSE_TAGBITS 0x00000800
48 
49 #include <ucontext.h>
50 
51 // libsigchain provides an interception layer for signal handlers, to allow ART and others to give
52 // their signal handlers the first stab at handling signals before passing them on to user code.
53 //
54 // It implements wrapper functions for signal, sigaction, and sigprocmask, and a handler that
55 // forwards signals appropriately.
56 //
57 // In our handler, we start off with all signals blocked, fetch the original signal mask from the
58 // passed in ucontext, and then adjust our signal mask appropriately for the user handler.
59 //
60 // It's somewhat tricky for us to properly handle some flag cases:
61 //   SA_NOCLDSTOP and SA_NOCLDWAIT: shouldn't matter, we don't have special handlers for SIGCHLD.
62 //   SA_NODEFER: unimplemented, we can manually change the signal mask appropriately.
63 //  ~SA_ONSTACK: always silently enable this
64 //   SA_RESETHAND: unimplemented, but we can probably do this?
65 //  ~SA_RESTART: unimplemented, maybe we can reserve an RT signal, register an empty handler that
66 //               doesn't have SA_RESTART, and raise the signal to avoid restarting syscalls that are
67 //               expected to be interrupted?
68 
69 #if defined(__BIONIC__) && !defined(__LP64__)
sigismember(const sigset64_t * sigset,int signum)70 static int sigismember(const sigset64_t* sigset, int signum) {
71   return sigismember64(sigset, signum);
72 }
73 
sigemptyset(sigset64_t * sigset)74 static int sigemptyset(sigset64_t* sigset) {
75   return sigemptyset64(sigset);
76 }
77 
sigaddset(sigset64_t * sigset,int signum)78 static int sigaddset(sigset64_t* sigset, int signum) {
79   return sigaddset64(sigset, signum);
80 }
81 
sigdelset(sigset64_t * sigset,int signum)82 static int sigdelset(sigset64_t* sigset, int signum) {
83   return sigdelset64(sigset, signum);
84 }
85 #endif
86 
87 template<typename SigsetType>
sigorset(SigsetType * dest,SigsetType * left,SigsetType * right)88 static int sigorset(SigsetType* dest, SigsetType* left, SigsetType* right) {
89   sigemptyset(dest);
90   for (size_t i = 0; i < sizeof(SigsetType) * CHAR_BIT; ++i) {
91     if (sigismember(left, i) == 1 || sigismember(right, i) == 1) {
92       sigaddset(dest, i);
93     }
94   }
95   return 0;
96 }
97 
98 namespace art {
99 
100 static decltype(&sigaction) linked_sigaction;
101 static decltype(&sigprocmask) linked_sigprocmask;
102 
103 #if defined(__BIONIC__)
104 static decltype(&sigaction64) linked_sigaction64;
105 static decltype(&sigprocmask64) linked_sigprocmask64;
106 #endif
107 
108 template <typename T>
lookup_libc_symbol(T * output,T wrapper,const char * name)109 static void lookup_libc_symbol(T* output, T wrapper, const char* name) {
110 #if defined(__BIONIC__)
111   constexpr const char* libc_name = "libc.so";
112 #elif defined(__GLIBC__)
113 #if __GNU_LIBRARY__ != 6
114 #error unsupported glibc version
115 #endif
116   constexpr const char* libc_name = "libc.so.6";
117 #else
118 #error unsupported libc: not bionic or glibc?
119 #endif
120 
121   static void* libc = []() {
122     void* result = dlopen(libc_name, RTLD_LOCAL | RTLD_LAZY);
123     if (!result) {
124       fatal("failed to dlopen %s: %s", libc_name, dlerror());
125     }
126     return result;
127   }();
128 
129   void* sym = dlsym(libc, name);  // NOLINT glibc triggers cert-dcl16-c with RTLD_NEXT.
130   if (sym == nullptr) {
131     sym = dlsym(RTLD_DEFAULT, name);
132     if (sym == wrapper || sym == sigaction) {
133       fatal("Unable to find next %s in signal chain", name);
134     }
135   }
136   *output = reinterpret_cast<T>(sym);
137 }
138 
InitializeSignalChain()139 __attribute__((constructor)) static void InitializeSignalChain() {
140   static std::once_flag once;
141   std::call_once(once, []() {
142     lookup_libc_symbol(&linked_sigaction, sigaction, "sigaction");
143     lookup_libc_symbol(&linked_sigprocmask, sigprocmask, "sigprocmask");
144 
145 #if defined(__BIONIC__)
146     lookup_libc_symbol(&linked_sigaction64, sigaction64, "sigaction64");
147     lookup_libc_symbol(&linked_sigprocmask64, sigprocmask64, "sigprocmask64");
148 #endif
149   });
150 }
151 
GetHandlingSignalKey()152 static pthread_key_t GetHandlingSignalKey() {
153   static pthread_key_t key;
154   static std::once_flag once;
155   std::call_once(once, []() {
156     int rc = pthread_key_create(&key, nullptr);
157     if (rc != 0) {
158       fatal("failed to create sigchain pthread key: %s", strerror(rc));
159     }
160   });
161   return key;
162 }
163 
GetHandlingSignal()164 static bool GetHandlingSignal() {
165   void* result = pthread_getspecific(GetHandlingSignalKey());
166   return reinterpret_cast<uintptr_t>(result);
167 }
168 
SetHandlingSignal(bool value)169 static void SetHandlingSignal(bool value) {
170   pthread_setspecific(GetHandlingSignalKey(),
171                       reinterpret_cast<void*>(static_cast<uintptr_t>(value)));
172 }
173 
174 class ScopedHandlingSignal {
175  public:
ScopedHandlingSignal()176   ScopedHandlingSignal() : original_value_(GetHandlingSignal()) {
177   }
178 
~ScopedHandlingSignal()179   ~ScopedHandlingSignal() {
180     SetHandlingSignal(original_value_);
181   }
182 
183  private:
184   bool original_value_;
185 };
186 
187 class SignalChain {
188  public:
SignalChain()189   SignalChain() : claimed_(false) {
190   }
191 
IsClaimed()192   bool IsClaimed() {
193     return claimed_;
194   }
195 
Claim(int signo)196   void Claim(int signo) {
197     if (!claimed_) {
198       Register(signo);
199       claimed_ = true;
200     }
201   }
202 
203   // Register the signal chain with the kernel if needed.
Register(int signo)204   void Register(int signo) {
205 #if defined(__BIONIC__)
206     struct sigaction64 handler_action = {};
207     sigfillset64(&handler_action.sa_mask);
208 #else
209     struct sigaction handler_action = {};
210     sigfillset(&handler_action.sa_mask);
211 #endif
212 
213     handler_action.sa_sigaction = SignalChain::Handler;
214     handler_action.sa_flags = SA_RESTART | SA_SIGINFO | SA_ONSTACK |
215                               SA_UNSUPPORTED | SA_EXPOSE_TAGBITS;
216 
217 #if defined(__BIONIC__)
218     linked_sigaction64(signo, &handler_action, &action_);
219     linked_sigaction64(signo, nullptr, &handler_action);
220 #else
221     linked_sigaction(signo, &handler_action, &action_);
222     linked_sigaction(signo, nullptr, &handler_action);
223 #endif
224 
225     // Newer kernels clear unknown flags from sigaction.sa_flags in order to
226     // allow userspace to determine which flag bits are supported. We use this
227     // behavior in turn to implement the same flag bit support detection
228     // protocol regardless of kernel version. Due to the lack of a flag bit
229     // support detection protocol in older kernels we assume support for a base
230     // set of flags that have been supported since at least 2003 [1]. No flags
231     // were introduced since then until the introduction of SA_EXPOSE_TAGBITS
232     // handled below. glibc headers do not define SA_RESTORER so we define it
233     // ourselves.
234     //
235     // TODO(pcc): The new kernel behavior has been implemented in a kernel
236     // patch [2] that has not yet landed. Update the code if necessary once it
237     // lands.
238     //
239     // [1] https://github.com/mpe/linux-fullhistory/commit/c0f806c86fc8b07ad426df023f1a4bb0e53c64f6
240     // [2] https://lore.kernel.org/linux-arm-kernel/cover.1605235762.git.pcc@google.com/
241 #if !defined(__BIONIC__)
242 #define SA_RESTORER 0x04000000
243 #endif
244     kernel_supported_flags_ = SA_NOCLDSTOP | SA_NOCLDWAIT | SA_SIGINFO |
245                               SA_ONSTACK | SA_RESTART | SA_NODEFER |
246                               SA_RESETHAND | SA_RESTORER;
247 
248     // Determine whether the kernel supports SA_EXPOSE_TAGBITS. For newer
249     // kernels we use the flag support detection protocol described above. In
250     // order to allow userspace to distinguish old and new kernels,
251     // SA_UNSUPPORTED has been reserved as an unsupported flag. If the kernel
252     // did not clear it then we know that we have an old kernel that would not
253     // support SA_EXPOSE_TAGBITS anyway.
254     if (!(handler_action.sa_flags & SA_UNSUPPORTED) &&
255         (handler_action.sa_flags & SA_EXPOSE_TAGBITS)) {
256       kernel_supported_flags_ |= SA_EXPOSE_TAGBITS;
257     }
258   }
259 
260   template <typename SigactionType>
GetAction()261   SigactionType GetAction() {
262     if constexpr (std::is_same_v<decltype(action_), SigactionType>) {
263       return action_;
264     } else {
265       SigactionType result;
266       result.sa_flags = action_.sa_flags;
267       result.sa_handler = action_.sa_handler;
268 #if defined(SA_RESTORER)
269       result.sa_restorer = action_.sa_restorer;
270 #endif
271       memcpy(&result.sa_mask, &action_.sa_mask,
272              std::min(sizeof(action_.sa_mask), sizeof(result.sa_mask)));
273       return result;
274     }
275   }
276 
277   template <typename SigactionType>
SetAction(const SigactionType * new_action)278   void SetAction(const SigactionType* new_action) {
279     if constexpr (std::is_same_v<decltype(action_), SigactionType>) {
280       action_ = *new_action;
281     } else {
282       action_.sa_flags = new_action->sa_flags;
283       action_.sa_handler = new_action->sa_handler;
284 #if defined(SA_RESTORER)
285       action_.sa_restorer = new_action->sa_restorer;
286 #endif
287       sigemptyset(&action_.sa_mask);
288       memcpy(&action_.sa_mask, &new_action->sa_mask,
289              std::min(sizeof(action_.sa_mask), sizeof(new_action->sa_mask)));
290     }
291     action_.sa_flags &= kernel_supported_flags_;
292   }
293 
AddSpecialHandler(SigchainAction * sa)294   void AddSpecialHandler(SigchainAction* sa) {
295     for (SigchainAction& slot : special_handlers_) {
296       if (slot.sc_sigaction == nullptr) {
297         slot = *sa;
298         return;
299       }
300     }
301 
302     fatal("too many special signal handlers");
303   }
304 
RemoveSpecialHandler(bool (* fn)(int,siginfo_t *,void *))305   void RemoveSpecialHandler(bool (*fn)(int, siginfo_t*, void*)) {
306     // This isn't thread safe, but it's unlikely to be a real problem.
307     size_t len = sizeof(special_handlers_)/sizeof(*special_handlers_);
308     for (size_t i = 0; i < len; ++i) {
309       if (special_handlers_[i].sc_sigaction == fn) {
310         for (size_t j = i; j < len - 1; ++j) {
311           special_handlers_[j] = special_handlers_[j + 1];
312         }
313         special_handlers_[len - 1].sc_sigaction = nullptr;
314         return;
315       }
316     }
317 
318     fatal("failed to find special handler to remove");
319   }
320 
321 
322   static void Handler(int signo, siginfo_t* siginfo, void*);
323 
324  private:
325   bool claimed_;
326   int kernel_supported_flags_;
327 #if defined(__BIONIC__)
328   struct sigaction64 action_;
329 #else
330   struct sigaction action_;
331 #endif
332   SigchainAction special_handlers_[2];
333 };
334 
335 // _NSIG is 1 greater than the highest valued signal, but signals start from 1.
336 // Leave an empty element at index 0 for convenience.
337 static SignalChain chains[_NSIG + 1];
338 
339 static bool is_signal_hook_debuggable = false;
340 
Handler(int signo,siginfo_t * siginfo,void * ucontext_raw)341 void SignalChain::Handler(int signo, siginfo_t* siginfo, void* ucontext_raw) {
342   // Try the special handlers first.
343   // If one of them crashes, we'll reenter this handler and pass that crash onto the user handler.
344   if (!GetHandlingSignal()) {
345     for (const auto& handler : chains[signo].special_handlers_) {
346       if (handler.sc_sigaction == nullptr) {
347         break;
348       }
349 
350       // The native bridge signal handler might not return.
351       // Avoid setting the thread local flag in this case, since we'll never
352       // get a chance to restore it.
353       bool handler_noreturn = (handler.sc_flags & SIGCHAIN_ALLOW_NORETURN);
354       sigset_t previous_mask;
355       linked_sigprocmask(SIG_SETMASK, &handler.sc_mask, &previous_mask);
356 
357       ScopedHandlingSignal restorer;
358       if (!handler_noreturn) {
359         SetHandlingSignal(true);
360       }
361 
362       if (handler.sc_sigaction(signo, siginfo, ucontext_raw)) {
363         return;
364       }
365 
366       linked_sigprocmask(SIG_SETMASK, &previous_mask, nullptr);
367     }
368   }
369 
370   // Forward to the user's signal handler.
371   int handler_flags = chains[signo].action_.sa_flags;
372   ucontext_t* ucontext = static_cast<ucontext_t*>(ucontext_raw);
373 #if defined(__BIONIC__)
374   sigset64_t mask;
375   sigorset(&mask, &ucontext->uc_sigmask64, &chains[signo].action_.sa_mask);
376 #else
377   sigset_t mask;
378   sigorset(&mask, &ucontext->uc_sigmask, &chains[signo].action_.sa_mask);
379 #endif
380   if (!(handler_flags & SA_NODEFER)) {
381     sigaddset(&mask, signo);
382   }
383 
384 #if defined(__BIONIC__)
385   linked_sigprocmask64(SIG_SETMASK, &mask, nullptr);
386 #else
387   linked_sigprocmask(SIG_SETMASK, &mask, nullptr);
388 #endif
389 
390   if ((handler_flags & SA_SIGINFO)) {
391     // If the chained handler is not expecting tag bits in the fault address,
392     // mask them out now.
393 #if defined(__BIONIC__)
394     if (!(handler_flags & SA_EXPOSE_TAGBITS) &&
395         (signo == SIGILL || signo == SIGFPE || signo == SIGSEGV ||
396          signo == SIGBUS || signo == SIGTRAP) &&
397         siginfo->si_code > SI_USER && siginfo->si_code < SI_KERNEL &&
398         !(signo == SIGTRAP && siginfo->si_code == TRAP_HWBKPT)) {
399       siginfo->si_addr = untag_address(siginfo->si_addr);
400     }
401 #endif
402     chains[signo].action_.sa_sigaction(signo, siginfo, ucontext_raw);
403   } else {
404     auto handler = chains[signo].action_.sa_handler;
405     if (handler == SIG_IGN) {
406       return;
407     } else if (handler == SIG_DFL) {
408       fatal("exiting due to SIG_DFL handler for signal %d, ucontext %p", signo, ucontext);
409     } else {
410       handler(signo);
411     }
412   }
413 }
414 
415 template <typename SigactionType>
__sigaction(int signal,const SigactionType * new_action,SigactionType * old_action,int (* linked)(int,const SigactionType *,SigactionType *))416 static int __sigaction(int signal, const SigactionType* new_action,
417                        SigactionType* old_action,
418                        int (*linked)(int, const SigactionType*,
419                                      SigactionType*)) {
420   if (is_signal_hook_debuggable) {
421     return 0;
422   }
423 
424   // If this signal has been claimed as a signal chain, record the user's
425   // action but don't pass it on to the kernel.
426   // Note that we check that the signal number is in range here.  An out of range signal
427   // number should behave exactly as the libc sigaction.
428   if (signal <= 0 || signal >= _NSIG) {
429     errno = EINVAL;
430     return -1;
431   }
432 
433   if (chains[signal].IsClaimed()) {
434     SigactionType saved_action = chains[signal].GetAction<SigactionType>();
435     if (new_action != nullptr) {
436       chains[signal].SetAction(new_action);
437     }
438     if (old_action != nullptr) {
439       *old_action = saved_action;
440     }
441     return 0;
442   }
443 
444   // Will only get here if the signal chain has not been claimed.  We want
445   // to pass the sigaction on to the kernel via the real sigaction in libc.
446   return linked(signal, new_action, old_action);
447 }
448 
sigaction(int signal,const struct sigaction * new_action,struct sigaction * old_action)449 extern "C" int sigaction(int signal, const struct sigaction* new_action,
450                          struct sigaction* old_action) {
451   InitializeSignalChain();
452   return __sigaction(signal, new_action, old_action, linked_sigaction);
453 }
454 
455 #if defined(__BIONIC__)
sigaction64(int signal,const struct sigaction64 * new_action,struct sigaction64 * old_action)456 extern "C" int sigaction64(int signal, const struct sigaction64* new_action,
457                            struct sigaction64* old_action) {
458   InitializeSignalChain();
459   return __sigaction(signal, new_action, old_action, linked_sigaction64);
460 }
461 #endif
462 
signal(int signo,sighandler_t handler)463 extern "C" sighandler_t signal(int signo, sighandler_t handler) {
464   InitializeSignalChain();
465 
466   if (signo <= 0 || signo >= _NSIG) {
467     errno = EINVAL;
468     return SIG_ERR;
469   }
470 
471   struct sigaction sa = {};
472   sigemptyset(&sa.sa_mask);
473   sa.sa_handler = handler;
474   sa.sa_flags = SA_RESTART | SA_ONSTACK;
475   sighandler_t oldhandler;
476 
477   // If this signal has been claimed as a signal chain, record the user's
478   // action but don't pass it on to the kernel.
479   if (chains[signo].IsClaimed()) {
480     oldhandler = reinterpret_cast<sighandler_t>(
481         chains[signo].GetAction<struct sigaction>().sa_handler);
482     chains[signo].SetAction(&sa);
483     return oldhandler;
484   }
485 
486   // Will only get here if the signal chain has not been claimed.  We want
487   // to pass the sigaction on to the kernel via the real sigaction in libc.
488   if (linked_sigaction(signo, &sa, &sa) == -1) {
489     return SIG_ERR;
490   }
491 
492   return reinterpret_cast<sighandler_t>(sa.sa_handler);
493 }
494 
495 #if !defined(__LP64__)
bsd_signal(int signo,sighandler_t handler)496 extern "C" sighandler_t bsd_signal(int signo, sighandler_t handler) {
497   InitializeSignalChain();
498 
499   return signal(signo, handler);
500 }
501 #endif
502 
503 template <typename SigsetType>
__sigprocmask(int how,const SigsetType * new_set,SigsetType * old_set,int (* linked)(int,const SigsetType *,SigsetType *))504 int __sigprocmask(int how, const SigsetType* new_set, SigsetType* old_set,
505                   int (*linked)(int, const SigsetType*, SigsetType*)) {
506   // When inside a signal handler, forward directly to the actual sigprocmask.
507   if (GetHandlingSignal()) {
508     return linked(how, new_set, old_set);
509   }
510 
511   const SigsetType* new_set_ptr = new_set;
512   SigsetType tmpset;
513   if (new_set != nullptr) {
514     tmpset = *new_set;
515 
516     if (how == SIG_BLOCK || how == SIG_SETMASK) {
517       // Don't allow claimed signals in the mask.  If a signal chain has been claimed
518       // we can't allow the user to block that signal.
519       for (int i = 1; i < _NSIG; ++i) {
520         if (chains[i].IsClaimed() && sigismember(&tmpset, i)) {
521           sigdelset(&tmpset, i);
522         }
523       }
524     }
525     new_set_ptr = &tmpset;
526   }
527 
528   return linked(how, new_set_ptr, old_set);
529 }
530 
sigprocmask(int how,const sigset_t * new_set,sigset_t * old_set)531 extern "C" int sigprocmask(int how, const sigset_t* new_set,
532                            sigset_t* old_set) {
533   InitializeSignalChain();
534   return __sigprocmask(how, new_set, old_set, linked_sigprocmask);
535 }
536 
537 #if defined(__BIONIC__)
sigprocmask64(int how,const sigset64_t * new_set,sigset64_t * old_set)538 extern "C" int sigprocmask64(int how, const sigset64_t* new_set,
539                              sigset64_t* old_set) {
540   InitializeSignalChain();
541   return __sigprocmask(how, new_set, old_set, linked_sigprocmask64);
542 }
543 #endif
544 
AddSpecialSignalHandlerFn(int signal,SigchainAction * sa)545 extern "C" void AddSpecialSignalHandlerFn(int signal, SigchainAction* sa) {
546   InitializeSignalChain();
547 
548   if (signal <= 0 || signal >= _NSIG) {
549     fatal("Invalid signal %d", signal);
550   }
551 
552   // Set the managed_handler.
553   chains[signal].AddSpecialHandler(sa);
554   chains[signal].Claim(signal);
555 }
556 
RemoveSpecialSignalHandlerFn(int signal,bool (* fn)(int,siginfo_t *,void *))557 extern "C" void RemoveSpecialSignalHandlerFn(int signal, bool (*fn)(int, siginfo_t*, void*)) {
558   InitializeSignalChain();
559 
560   if (signal <= 0 || signal >= _NSIG) {
561     fatal("Invalid signal %d", signal);
562   }
563 
564   chains[signal].RemoveSpecialHandler(fn);
565 }
566 
EnsureFrontOfChain(int signal)567 extern "C" void EnsureFrontOfChain(int signal) {
568   InitializeSignalChain();
569 
570   if (signal <= 0 || signal >= _NSIG) {
571     fatal("Invalid signal %d", signal);
572   }
573 
574   // Read the current action without looking at the chain, it should be the expected action.
575 #if defined(__BIONIC__)
576   struct sigaction64 current_action;
577   linked_sigaction64(signal, nullptr, &current_action);
578 #else
579   struct sigaction current_action;
580   linked_sigaction(signal, nullptr, &current_action);
581 #endif
582 
583   // If the sigactions don't match then we put the current action on the chain and make ourself as
584   // the main action.
585   if (current_action.sa_sigaction != SignalChain::Handler) {
586     log("Warning: Unexpected sigaction action found %p\n", current_action.sa_sigaction);
587     chains[signal].Register(signal);
588   }
589 }
590 
SkipAddSignalHandler(bool value)591 extern "C" void SkipAddSignalHandler(bool value) {
592   is_signal_hook_debuggable = value;
593 }
594 
595 }   // namespace art
596 
597