1 //===-- NativeThreadLinux.cpp --------------------------------- -*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "NativeThreadLinux.h"
11 
12 #include <signal.h>
13 #include <sstream>
14 
15 #include "NativeProcessLinux.h"
16 #include "NativeRegisterContextLinux.h"
17 #include "SingleStepCheck.h"
18 
19 #include "lldb/Host/HostNativeThread.h"
20 #include "lldb/Host/linux/Ptrace.h"
21 #include "lldb/Host/linux/Support.h"
22 #include "lldb/Utility/LLDBAssert.h"
23 #include "lldb/Utility/Log.h"
24 #include "lldb/Utility/State.h"
25 #include "lldb/lldb-enumerations.h"
26 
27 #include "llvm/ADT/SmallString.h"
28 
29 #include "Plugins/Process/POSIX/CrashReason.h"
30 
31 #include <sys/syscall.h>
32 // Try to define a macro to encapsulate the tgkill syscall
33 #define tgkill(pid, tid, sig)                                                  \
34   syscall(__NR_tgkill, static_cast<::pid_t>(pid), static_cast<::pid_t>(tid),   \
35           sig)
36 
37 using namespace lldb;
38 using namespace lldb_private;
39 using namespace lldb_private::process_linux;
40 
41 namespace {
42 void LogThreadStopInfo(Log &log, const ThreadStopInfo &stop_info,
43                        const char *const header) {
44   switch (stop_info.reason) {
45   case eStopReasonNone:
46     log.Printf("%s: %s no stop reason", __FUNCTION__, header);
47     return;
48   case eStopReasonTrace:
49     log.Printf("%s: %s trace, stopping signal 0x%" PRIx32, __FUNCTION__, header,
50                stop_info.details.signal.signo);
51     return;
52   case eStopReasonBreakpoint:
53     log.Printf("%s: %s breakpoint, stopping signal 0x%" PRIx32, __FUNCTION__,
54                header, stop_info.details.signal.signo);
55     return;
56   case eStopReasonWatchpoint:
57     log.Printf("%s: %s watchpoint, stopping signal 0x%" PRIx32, __FUNCTION__,
58                header, stop_info.details.signal.signo);
59     return;
60   case eStopReasonSignal:
61     log.Printf("%s: %s signal 0x%02" PRIx32, __FUNCTION__, header,
62                stop_info.details.signal.signo);
63     return;
64   case eStopReasonException:
65     log.Printf("%s: %s exception type 0x%02" PRIx64, __FUNCTION__, header,
66                stop_info.details.exception.type);
67     return;
68   case eStopReasonExec:
69     log.Printf("%s: %s exec, stopping signal 0x%" PRIx32, __FUNCTION__, header,
70                stop_info.details.signal.signo);
71     return;
72   case eStopReasonPlanComplete:
73     log.Printf("%s: %s plan complete", __FUNCTION__, header);
74     return;
75   case eStopReasonThreadExiting:
76     log.Printf("%s: %s thread exiting", __FUNCTION__, header);
77     return;
78   case eStopReasonInstrumentation:
79     log.Printf("%s: %s instrumentation", __FUNCTION__, header);
80     return;
81   default:
82     log.Printf("%s: %s invalid stop reason %" PRIu32, __FUNCTION__, header,
83                static_cast<uint32_t>(stop_info.reason));
84   }
85 }
86 }
87 
88 NativeThreadLinux::NativeThreadLinux(NativeProcessLinux &process,
89                                      lldb::tid_t tid)
90     : NativeThreadProtocol(process, tid), m_state(StateType::eStateInvalid),
91       m_stop_info(),
92       m_reg_context_up(
93           NativeRegisterContextLinux::CreateHostNativeRegisterContextLinux(
94               process.GetArchitecture(), *this)),
95       m_stop_description() {}
96 
97 std::string NativeThreadLinux::GetName() {
98   NativeProcessLinux &process = GetProcess();
99 
100   auto BufferOrError = getProcFile(process.GetID(), GetID(), "comm");
101   if (!BufferOrError)
102     return "";
103   return BufferOrError.get()->getBuffer().rtrim('\n');
104 }
105 
106 lldb::StateType NativeThreadLinux::GetState() { return m_state; }
107 
108 bool NativeThreadLinux::GetStopReason(ThreadStopInfo &stop_info,
109                                       std::string &description) {
110   Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD));
111 
112   description.clear();
113 
114   switch (m_state) {
115   case eStateStopped:
116   case eStateCrashed:
117   case eStateExited:
118   case eStateSuspended:
119   case eStateUnloaded:
120     if (log)
121       LogThreadStopInfo(*log, m_stop_info, "m_stop_info in thread:");
122     stop_info = m_stop_info;
123     description = m_stop_description;
124     if (log)
125       LogThreadStopInfo(*log, stop_info, "returned stop_info:");
126 
127     return true;
128 
129   case eStateInvalid:
130   case eStateConnected:
131   case eStateAttaching:
132   case eStateLaunching:
133   case eStateRunning:
134   case eStateStepping:
135   case eStateDetached:
136     if (log) {
137       log->Printf("NativeThreadLinux::%s tid %" PRIu64
138                   " in state %s cannot answer stop reason",
139                   __FUNCTION__, GetID(), StateAsCString(m_state));
140     }
141     return false;
142   }
143   llvm_unreachable("unhandled StateType!");
144 }
145 
146 Status NativeThreadLinux::SetWatchpoint(lldb::addr_t addr, size_t size,
147                                         uint32_t watch_flags, bool hardware) {
148   if (!hardware)
149     return Status("not implemented");
150   if (m_state == eStateLaunching)
151     return Status();
152   Status error = RemoveWatchpoint(addr);
153   if (error.Fail())
154     return error;
155   uint32_t wp_index =
156       m_reg_context_up->SetHardwareWatchpoint(addr, size, watch_flags);
157   if (wp_index == LLDB_INVALID_INDEX32)
158     return Status("Setting hardware watchpoint failed.");
159   m_watchpoint_index_map.insert({addr, wp_index});
160   return Status();
161 }
162 
163 Status NativeThreadLinux::RemoveWatchpoint(lldb::addr_t addr) {
164   auto wp = m_watchpoint_index_map.find(addr);
165   if (wp == m_watchpoint_index_map.end())
166     return Status();
167   uint32_t wp_index = wp->second;
168   m_watchpoint_index_map.erase(wp);
169   if (m_reg_context_up->ClearHardwareWatchpoint(wp_index))
170     return Status();
171   return Status("Clearing hardware watchpoint failed.");
172 }
173 
174 Status NativeThreadLinux::SetHardwareBreakpoint(lldb::addr_t addr,
175                                                 size_t size) {
176   if (m_state == eStateLaunching)
177     return Status();
178 
179   Status error = RemoveHardwareBreakpoint(addr);
180   if (error.Fail())
181     return error;
182 
183   uint32_t bp_index = m_reg_context_up->SetHardwareBreakpoint(addr, size);
184 
185   if (bp_index == LLDB_INVALID_INDEX32)
186     return Status("Setting hardware breakpoint failed.");
187 
188   m_hw_break_index_map.insert({addr, bp_index});
189   return Status();
190 }
191 
192 Status NativeThreadLinux::RemoveHardwareBreakpoint(lldb::addr_t addr) {
193   auto bp = m_hw_break_index_map.find(addr);
194   if (bp == m_hw_break_index_map.end())
195     return Status();
196 
197   uint32_t bp_index = bp->second;
198   if (m_reg_context_up->ClearHardwareBreakpoint(bp_index)) {
199     m_hw_break_index_map.erase(bp);
200     return Status();
201   }
202 
203   return Status("Clearing hardware breakpoint failed.");
204 }
205 
206 Status NativeThreadLinux::Resume(uint32_t signo) {
207   const StateType new_state = StateType::eStateRunning;
208   MaybeLogStateChange(new_state);
209   m_state = new_state;
210 
211   m_stop_info.reason = StopReason::eStopReasonNone;
212   m_stop_description.clear();
213 
214   // If watchpoints have been set, but none on this thread, then this is a new
215   // thread. So set all existing watchpoints.
216   if (m_watchpoint_index_map.empty()) {
217     NativeProcessLinux &process = GetProcess();
218 
219     const auto &watchpoint_map = process.GetWatchpointMap();
220     m_reg_context_up->ClearAllHardwareWatchpoints();
221     for (const auto &pair : watchpoint_map) {
222       const auto &wp = pair.second;
223       SetWatchpoint(wp.m_addr, wp.m_size, wp.m_watch_flags, wp.m_hardware);
224     }
225   }
226 
227   // Set all active hardware breakpoint on all threads.
228   if (m_hw_break_index_map.empty()) {
229     NativeProcessLinux &process = GetProcess();
230 
231     const auto &hw_breakpoint_map = process.GetHardwareBreakpointMap();
232     m_reg_context_up->ClearAllHardwareBreakpoints();
233     for (const auto &pair : hw_breakpoint_map) {
234       const auto &bp = pair.second;
235       SetHardwareBreakpoint(bp.m_addr, bp.m_size);
236     }
237   }
238 
239   intptr_t data = 0;
240 
241   if (signo != LLDB_INVALID_SIGNAL_NUMBER)
242     data = signo;
243 
244   return NativeProcessLinux::PtraceWrapper(PTRACE_CONT, GetID(), nullptr,
245                                            reinterpret_cast<void *>(data));
246 }
247 
248 Status NativeThreadLinux::SingleStep(uint32_t signo) {
249   const StateType new_state = StateType::eStateStepping;
250   MaybeLogStateChange(new_state);
251   m_state = new_state;
252   m_stop_info.reason = StopReason::eStopReasonNone;
253 
254   if(!m_step_workaround) {
255     // If we already hava a workaround inplace, don't reset it. Otherwise, the
256     // destructor of the existing instance will run after the new instance has
257     // fetched the cpu mask, and the thread will end up with the wrong mask.
258     m_step_workaround = SingleStepWorkaround::Get(m_tid);
259   }
260 
261   intptr_t data = 0;
262   if (signo != LLDB_INVALID_SIGNAL_NUMBER)
263     data = signo;
264 
265   // If hardware single-stepping is not supported, we just do a continue. The
266   // breakpoint on the next instruction has been setup in
267   // NativeProcessLinux::Resume.
268   return NativeProcessLinux::PtraceWrapper(
269       GetProcess().SupportHardwareSingleStepping() ? PTRACE_SINGLESTEP
270                                                    : PTRACE_CONT,
271       m_tid, nullptr, reinterpret_cast<void *>(data));
272 }
273 
274 void NativeThreadLinux::SetStoppedBySignal(uint32_t signo,
275                                            const siginfo_t *info) {
276   Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD));
277   if (log)
278     log->Printf("NativeThreadLinux::%s called with signal 0x%02" PRIx32,
279                 __FUNCTION__, signo);
280 
281   SetStopped();
282 
283   m_stop_info.reason = StopReason::eStopReasonSignal;
284   m_stop_info.details.signal.signo = signo;
285 
286   m_stop_description.clear();
287   if (info) {
288     switch (signo) {
289     case SIGSEGV:
290     case SIGBUS:
291     case SIGFPE:
292     case SIGILL:
293       // In case of MIPS64 target, SI_KERNEL is generated for invalid 64bit
294       // address.
295       const auto reason =
296           (info->si_signo == SIGBUS && info->si_code == SI_KERNEL)
297               ? CrashReason::eInvalidAddress
298               : GetCrashReason(*info);
299       m_stop_description = GetCrashReasonString(reason, *info);
300       break;
301     }
302   }
303 }
304 
305 bool NativeThreadLinux::IsStopped(int *signo) {
306   if (!StateIsStoppedState(m_state, false))
307     return false;
308 
309   // If we are stopped by a signal, return the signo.
310   if (signo && m_state == StateType::eStateStopped &&
311       m_stop_info.reason == StopReason::eStopReasonSignal) {
312     *signo = m_stop_info.details.signal.signo;
313   }
314 
315   // Regardless, we are stopped.
316   return true;
317 }
318 
319 void NativeThreadLinux::SetStopped() {
320   if (m_state == StateType::eStateStepping)
321     m_step_workaround.reset();
322 
323   const StateType new_state = StateType::eStateStopped;
324   MaybeLogStateChange(new_state);
325   m_state = new_state;
326   m_stop_description.clear();
327 }
328 
329 void NativeThreadLinux::SetStoppedByExec() {
330   Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD));
331   if (log)
332     log->Printf("NativeThreadLinux::%s()", __FUNCTION__);
333 
334   SetStopped();
335 
336   m_stop_info.reason = StopReason::eStopReasonExec;
337   m_stop_info.details.signal.signo = SIGSTOP;
338 }
339 
340 void NativeThreadLinux::SetStoppedByBreakpoint() {
341   SetStopped();
342 
343   m_stop_info.reason = StopReason::eStopReasonBreakpoint;
344   m_stop_info.details.signal.signo = SIGTRAP;
345   m_stop_description.clear();
346 }
347 
348 void NativeThreadLinux::SetStoppedByWatchpoint(uint32_t wp_index) {
349   SetStopped();
350 
351   lldbassert(wp_index != LLDB_INVALID_INDEX32 && "wp_index cannot be invalid");
352 
353   std::ostringstream ostr;
354   ostr << m_reg_context_up->GetWatchpointAddress(wp_index) << " ";
355   ostr << wp_index;
356 
357   /*
358    * MIPS: Last 3bits of the watchpoint address are masked by the kernel. For
359    * example:
360    * 'n' is at 0x120010d00 and 'm' is 0x120010d04. When a watchpoint is set at
361    * 'm', then
362    * watch exception is generated even when 'n' is read/written. To handle this
363    * case,
364    * find the base address of the load/store instruction and append it in the
365    * stop-info
366    * packet.
367   */
368   ostr << " " << m_reg_context_up->GetWatchpointHitAddress(wp_index);
369 
370   m_stop_description = ostr.str();
371 
372   m_stop_info.reason = StopReason::eStopReasonWatchpoint;
373   m_stop_info.details.signal.signo = SIGTRAP;
374 }
375 
376 bool NativeThreadLinux::IsStoppedAtBreakpoint() {
377   return GetState() == StateType::eStateStopped &&
378          m_stop_info.reason == StopReason::eStopReasonBreakpoint;
379 }
380 
381 bool NativeThreadLinux::IsStoppedAtWatchpoint() {
382   return GetState() == StateType::eStateStopped &&
383          m_stop_info.reason == StopReason::eStopReasonWatchpoint;
384 }
385 
386 void NativeThreadLinux::SetStoppedByTrace() {
387   SetStopped();
388 
389   m_stop_info.reason = StopReason::eStopReasonTrace;
390   m_stop_info.details.signal.signo = SIGTRAP;
391 }
392 
393 void NativeThreadLinux::SetStoppedWithNoReason() {
394   SetStopped();
395 
396   m_stop_info.reason = StopReason::eStopReasonNone;
397   m_stop_info.details.signal.signo = 0;
398 }
399 
400 void NativeThreadLinux::SetExited() {
401   const StateType new_state = StateType::eStateExited;
402   MaybeLogStateChange(new_state);
403   m_state = new_state;
404 
405   m_stop_info.reason = StopReason::eStopReasonThreadExiting;
406 }
407 
408 Status NativeThreadLinux::RequestStop() {
409   Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD));
410 
411   NativeProcessLinux &process = GetProcess();
412 
413   lldb::pid_t pid = process.GetID();
414   lldb::tid_t tid = GetID();
415 
416   if (log)
417     log->Printf("NativeThreadLinux::%s requesting thread stop(pid: %" PRIu64
418                 ", tid: %" PRIu64 ")",
419                 __FUNCTION__, pid, tid);
420 
421   Status err;
422   errno = 0;
423   if (::tgkill(pid, tid, SIGSTOP) != 0) {
424     err.SetErrorToErrno();
425     if (log)
426       log->Printf("NativeThreadLinux::%s tgkill(%" PRIu64 ", %" PRIu64
427                   ", SIGSTOP) failed: %s",
428                   __FUNCTION__, pid, tid, err.AsCString());
429   }
430 
431   return err;
432 }
433 
434 void NativeThreadLinux::MaybeLogStateChange(lldb::StateType new_state) {
435   Log *log(GetLogIfAllCategoriesSet(LIBLLDB_LOG_THREAD));
436   // If we're not logging, we're done.
437   if (!log)
438     return;
439 
440   // If this is a state change to the same state, we're done.
441   lldb::StateType old_state = m_state;
442   if (new_state == old_state)
443     return;
444 
445   LLDB_LOG(log, "pid={0}, tid={1}: changing from state {2} to {3}",
446            m_process.GetID(), GetID(), old_state, new_state);
447 }
448 
449 NativeProcessLinux &NativeThreadLinux::GetProcess() {
450   return static_cast<NativeProcessLinux &>(m_process);
451 }
452