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Todd Fialaaf245d12014-06-30 21:05:18 +00001//===-- NativeProcessLinux.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 "lldb/lldb-python.h"
11
12#include "NativeProcessLinux.h"
13
14// C Includes
15#include <errno.h>
16#include <poll.h>
17#include <string.h>
18#include <stdint.h>
19#include <unistd.h>
20#include <linux/unistd.h>
Todd Fiala0bce1b62014-08-17 00:10:50 +000021#include <sys/personality.h>
Todd Fialaaf245d12014-06-30 21:05:18 +000022#include <sys/ptrace.h>
Todd Fiala6ac1be42014-08-21 16:34:03 +000023#include <sys/uio.h>
Todd Fialaaf245d12014-06-30 21:05:18 +000024#include <sys/socket.h>
25#include <sys/syscall.h>
26#include <sys/types.h>
27#include <sys/user.h>
28#include <sys/wait.h>
29
Todd Fiala6ac1be42014-08-21 16:34:03 +000030#if defined (__arm64__) || defined (__aarch64__)
31// NT_PRSTATUS and NT_FPREGSET definition
32#include <elf.h>
33#endif
34
Todd Fialaaf245d12014-06-30 21:05:18 +000035// C++ Includes
36#include <fstream>
37#include <string>
38
39// Other libraries and framework includes
40#include "lldb/Core/Debugger.h"
41#include "lldb/Core/Error.h"
42#include "lldb/Core/Module.h"
43#include "lldb/Core/RegisterValue.h"
44#include "lldb/Core/Scalar.h"
45#include "lldb/Core/State.h"
46#include "lldb/Host/Host.h"
Zachary Turner13b18262014-08-20 16:42:51 +000047#include "lldb/Host/HostInfo.h"
Zachary Turner39de3112014-09-09 20:54:56 +000048#include "lldb/Host/ThreadLauncher.h"
Todd Fialaaf245d12014-06-30 21:05:18 +000049#include "lldb/Symbol/ObjectFile.h"
50#include "lldb/Target/NativeRegisterContext.h"
51#include "lldb/Target/ProcessLaunchInfo.h"
52#include "lldb/Utility/PseudoTerminal.h"
53
54#include "Host/common/NativeBreakpoint.h"
55#include "Utility/StringExtractor.h"
56
57#include "Plugins/Process/Utility/LinuxSignals.h"
58#include "NativeThreadLinux.h"
59#include "ProcFileReader.h"
60#include "ProcessPOSIXLog.h"
61
62#define DEBUG_PTRACE_MAXBYTES 20
63
64// Support ptrace extensions even when compiled without required kernel support
Todd Fialadda61942014-07-02 21:34:04 +000065#ifndef PT_GETREGS
Todd Fialaaf245d12014-06-30 21:05:18 +000066#ifndef PTRACE_GETREGS
Todd Fialadda61942014-07-02 21:34:04 +000067 #define PTRACE_GETREGS 12
Todd Fialaaf245d12014-06-30 21:05:18 +000068#endif
Todd Fialadda61942014-07-02 21:34:04 +000069#endif
70#ifndef PT_SETREGS
Todd Fialaaf245d12014-06-30 21:05:18 +000071#ifndef PTRACE_SETREGS
72 #define PTRACE_SETREGS 13
73#endif
Todd Fialadda61942014-07-02 21:34:04 +000074#endif
75#ifndef PT_GETFPREGS
76#ifndef PTRACE_GETFPREGS
77 #define PTRACE_GETFPREGS 14
78#endif
79#endif
80#ifndef PT_SETFPREGS
81#ifndef PTRACE_SETFPREGS
82 #define PTRACE_SETFPREGS 15
83#endif
84#endif
Todd Fialaaf245d12014-06-30 21:05:18 +000085#ifndef PTRACE_GETREGSET
86 #define PTRACE_GETREGSET 0x4204
87#endif
88#ifndef PTRACE_SETREGSET
89 #define PTRACE_SETREGSET 0x4205
90#endif
91#ifndef PTRACE_GET_THREAD_AREA
92 #define PTRACE_GET_THREAD_AREA 25
93#endif
94#ifndef PTRACE_ARCH_PRCTL
95 #define PTRACE_ARCH_PRCTL 30
96#endif
97#ifndef ARCH_GET_FS
98 #define ARCH_SET_GS 0x1001
99 #define ARCH_SET_FS 0x1002
100 #define ARCH_GET_FS 0x1003
101 #define ARCH_GET_GS 0x1004
102#endif
103
Todd Fiala0bce1b62014-08-17 00:10:50 +0000104#define LLDB_PERSONALITY_GET_CURRENT_SETTINGS 0xffffffff
Todd Fialaaf245d12014-06-30 21:05:18 +0000105
106// Support hardware breakpoints in case it has not been defined
107#ifndef TRAP_HWBKPT
108 #define TRAP_HWBKPT 4
109#endif
110
111// Try to define a macro to encapsulate the tgkill syscall
112// fall back on kill() if tgkill isn't available
113#define tgkill(pid, tid, sig) syscall(SYS_tgkill, pid, tid, sig)
114
115// We disable the tracing of ptrace calls for integration builds to
116// avoid the additional indirection and checks.
117#ifndef LLDB_CONFIGURATION_BUILDANDINTEGRATION
118#define PTRACE(req, pid, addr, data, data_size) \
119 PtraceWrapper((req), (pid), (addr), (data), (data_size), #req, __FILE__, __LINE__)
120#else
121#define PTRACE(req, pid, addr, data, data_size) \
122 PtraceWrapper((req), (pid), (addr), (data), (data_size))
123#endif
124
125// Private bits we only need internally.
126namespace
127{
128 using namespace lldb;
129 using namespace lldb_private;
130
131 const UnixSignals&
132 GetUnixSignals ()
133 {
134 static process_linux::LinuxSignals signals;
135 return signals;
136 }
137
138 const char *
Zachary Turnerc00cf4a2014-08-15 22:04:21 +0000139 GetFilePath(const lldb_private::FileAction *file_action, const char *default_path)
Todd Fialaaf245d12014-06-30 21:05:18 +0000140 {
141 const char *pts_name = "/dev/pts/";
142 const char *path = NULL;
143
144 if (file_action)
145 {
Zachary Turnerc00cf4a2014-08-15 22:04:21 +0000146 if (file_action->GetAction() == FileAction::eFileActionOpen)
Todd Fialaaf245d12014-06-30 21:05:18 +0000147 {
148 path = file_action->GetPath ();
149 // By default the stdio paths passed in will be pseudo-terminal
150 // (/dev/pts). If so, convert to using a different default path
151 // instead to redirect I/O to the debugger console. This should
152 // also handle user overrides to /dev/null or a different file.
153 if (!path || ::strncmp (path, pts_name, ::strlen (pts_name)) == 0)
154 path = default_path;
155 }
156 }
157
158 return path;
159 }
160
161 Error
162 ResolveProcessArchitecture (lldb::pid_t pid, Platform &platform, ArchSpec &arch)
163 {
164 // Grab process info for the running process.
165 ProcessInstanceInfo process_info;
166 if (!platform.GetProcessInfo (pid, process_info))
167 return lldb_private::Error("failed to get process info");
168
169 // Resolve the executable module.
170 ModuleSP exe_module_sp;
171 FileSpecList executable_search_paths (Target::GetDefaultExecutableSearchPaths ());
172 Error error = platform.ResolveExecutable(
173 process_info.GetExecutableFile (),
174 platform.GetSystemArchitecture (),
175 exe_module_sp,
176 executable_search_paths.GetSize () ? &executable_search_paths : NULL);
177
178 if (!error.Success ())
179 return error;
180
181 // Check if we've got our architecture from the exe_module.
182 arch = exe_module_sp->GetArchitecture ();
183 if (arch.IsValid ())
184 return Error();
185 else
186 return Error("failed to retrieve a valid architecture from the exe module");
187 }
188
189 void
190 DisplayBytes (lldb_private::StreamString &s, void *bytes, uint32_t count)
191 {
192 uint8_t *ptr = (uint8_t *)bytes;
193 const uint32_t loop_count = std::min<uint32_t>(DEBUG_PTRACE_MAXBYTES, count);
194 for(uint32_t i=0; i<loop_count; i++)
195 {
196 s.Printf ("[%x]", *ptr);
197 ptr++;
198 }
199 }
200
201 void
202 PtraceDisplayBytes(int &req, void *data, size_t data_size)
203 {
204 StreamString buf;
205 Log *verbose_log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (
206 POSIX_LOG_PTRACE | POSIX_LOG_VERBOSE));
207
208 if (verbose_log)
209 {
210 switch(req)
211 {
212 case PTRACE_POKETEXT:
213 {
214 DisplayBytes(buf, &data, 8);
215 verbose_log->Printf("PTRACE_POKETEXT %s", buf.GetData());
216 break;
217 }
218 case PTRACE_POKEDATA:
219 {
220 DisplayBytes(buf, &data, 8);
221 verbose_log->Printf("PTRACE_POKEDATA %s", buf.GetData());
222 break;
223 }
224 case PTRACE_POKEUSER:
225 {
226 DisplayBytes(buf, &data, 8);
227 verbose_log->Printf("PTRACE_POKEUSER %s", buf.GetData());
228 break;
229 }
230 case PTRACE_SETREGS:
231 {
232 DisplayBytes(buf, data, data_size);
233 verbose_log->Printf("PTRACE_SETREGS %s", buf.GetData());
234 break;
235 }
236 case PTRACE_SETFPREGS:
237 {
238 DisplayBytes(buf, data, data_size);
239 verbose_log->Printf("PTRACE_SETFPREGS %s", buf.GetData());
240 break;
241 }
242 case PTRACE_SETSIGINFO:
243 {
244 DisplayBytes(buf, data, sizeof(siginfo_t));
245 verbose_log->Printf("PTRACE_SETSIGINFO %s", buf.GetData());
246 break;
247 }
248 case PTRACE_SETREGSET:
249 {
250 // Extract iov_base from data, which is a pointer to the struct IOVEC
251 DisplayBytes(buf, *(void **)data, data_size);
252 verbose_log->Printf("PTRACE_SETREGSET %s", buf.GetData());
253 break;
254 }
255 default:
256 {
257 }
258 }
259 }
260 }
261
262 // Wrapper for ptrace to catch errors and log calls.
263 // Note that ptrace sets errno on error because -1 can be a valid result (i.e. for PTRACE_PEEK*)
264 long
265 PtraceWrapper(int req, lldb::pid_t pid, void *addr, void *data, size_t data_size,
266 const char* reqName, const char* file, int line)
267 {
268 long int result;
269
270 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_PTRACE));
271
272 PtraceDisplayBytes(req, data, data_size);
273
274 errno = 0;
275 if (req == PTRACE_GETREGSET || req == PTRACE_SETREGSET)
Todd Fiala202ecd22014-07-10 04:39:13 +0000276 result = ptrace(static_cast<__ptrace_request>(req), static_cast< ::pid_t>(pid), *(unsigned int *)addr, data);
Todd Fialaaf245d12014-06-30 21:05:18 +0000277 else
Todd Fiala202ecd22014-07-10 04:39:13 +0000278 result = ptrace(static_cast<__ptrace_request>(req), static_cast< ::pid_t>(pid), addr, data);
Todd Fialaaf245d12014-06-30 21:05:18 +0000279
280 if (log)
281 log->Printf("ptrace(%s, %" PRIu64 ", %p, %p, %zu)=%lX called from file %s line %d",
282 reqName, pid, addr, data, data_size, result, file, line);
283
284 PtraceDisplayBytes(req, data, data_size);
285
286 if (log && errno != 0)
287 {
288 const char* str;
289 switch (errno)
290 {
291 case ESRCH: str = "ESRCH"; break;
292 case EINVAL: str = "EINVAL"; break;
293 case EBUSY: str = "EBUSY"; break;
294 case EPERM: str = "EPERM"; break;
295 default: str = "<unknown>";
296 }
297 log->Printf("ptrace() failed; errno=%d (%s)", errno, str);
298 }
299
300 return result;
301 }
302
303#ifdef LLDB_CONFIGURATION_BUILDANDINTEGRATION
304 // Wrapper for ptrace when logging is not required.
305 // Sets errno to 0 prior to calling ptrace.
306 long
307 PtraceWrapper(int req, lldb::pid_t pid, void *addr, void *data, size_t data_size)
308 {
309 long result = 0;
310 errno = 0;
311 if (req == PTRACE_GETREGSET || req == PTRACE_SETREGSET)
Todd Fiala202ecd22014-07-10 04:39:13 +0000312 result = ptrace(static_cast<__ptrace_request>(req), static_cast< ::pid_t>(pid), *(unsigned int *)addr, data);
Todd Fialaaf245d12014-06-30 21:05:18 +0000313 else
Todd Fiala202ecd22014-07-10 04:39:13 +0000314 result = ptrace(static_cast<__ptrace_request>(req), static_cast< ::pid_t>(pid), addr, data);
Todd Fialaaf245d12014-06-30 21:05:18 +0000315 return result;
316 }
317#endif
318
319 //------------------------------------------------------------------------------
320 // Static implementations of NativeProcessLinux::ReadMemory and
321 // NativeProcessLinux::WriteMemory. This enables mutual recursion between these
322 // functions without needed to go thru the thread funnel.
323
324 static lldb::addr_t
325 DoReadMemory (
326 lldb::pid_t pid,
327 lldb::addr_t vm_addr,
328 void *buf,
329 lldb::addr_t size,
330 Error &error)
331 {
332 // ptrace word size is determined by the host, not the child
333 static const unsigned word_size = sizeof(void*);
334 unsigned char *dst = static_cast<unsigned char*>(buf);
335 lldb::addr_t bytes_read;
336 lldb::addr_t remainder;
337 long data;
338
339 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_ALL));
340 if (log)
341 ProcessPOSIXLog::IncNestLevel();
342 if (log && ProcessPOSIXLog::AtTopNestLevel() && log->GetMask().Test(POSIX_LOG_MEMORY))
343 log->Printf ("NativeProcessLinux::%s(%" PRIu64 ", %d, %p, %p, %zd, _)", __FUNCTION__,
344 pid, word_size, (void*)vm_addr, buf, size);
345
346 assert(sizeof(data) >= word_size);
347 for (bytes_read = 0; bytes_read < size; bytes_read += remainder)
348 {
349 errno = 0;
350 data = PTRACE(PTRACE_PEEKDATA, pid, (void*)vm_addr, NULL, 0);
351 if (errno)
352 {
353 error.SetErrorToErrno();
354 if (log)
355 ProcessPOSIXLog::DecNestLevel();
356 return bytes_read;
357 }
358
359 remainder = size - bytes_read;
360 remainder = remainder > word_size ? word_size : remainder;
361
362 // Copy the data into our buffer
363 for (unsigned i = 0; i < remainder; ++i)
364 dst[i] = ((data >> i*8) & 0xFF);
365
366 if (log && ProcessPOSIXLog::AtTopNestLevel() &&
367 (log->GetMask().Test(POSIX_LOG_MEMORY_DATA_LONG) ||
368 (log->GetMask().Test(POSIX_LOG_MEMORY_DATA_SHORT) &&
369 size <= POSIX_LOG_MEMORY_SHORT_BYTES)))
370 {
371 uintptr_t print_dst = 0;
372 // Format bytes from data by moving into print_dst for log output
373 for (unsigned i = 0; i < remainder; ++i)
374 print_dst |= (((data >> i*8) & 0xFF) << i*8);
375 log->Printf ("NativeProcessLinux::%s() [%p]:0x%lx (0x%lx)", __FUNCTION__,
376 (void*)vm_addr, print_dst, (unsigned long)data);
377 }
378
379 vm_addr += word_size;
380 dst += word_size;
381 }
382
383 if (log)
384 ProcessPOSIXLog::DecNestLevel();
385 return bytes_read;
386 }
387
388 static lldb::addr_t
389 DoWriteMemory(
390 lldb::pid_t pid,
391 lldb::addr_t vm_addr,
392 const void *buf,
393 lldb::addr_t size,
394 Error &error)
395 {
396 // ptrace word size is determined by the host, not the child
397 static const unsigned word_size = sizeof(void*);
398 const unsigned char *src = static_cast<const unsigned char*>(buf);
399 lldb::addr_t bytes_written = 0;
400 lldb::addr_t remainder;
401
402 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_ALL));
403 if (log)
404 ProcessPOSIXLog::IncNestLevel();
405 if (log && ProcessPOSIXLog::AtTopNestLevel() && log->GetMask().Test(POSIX_LOG_MEMORY))
406 log->Printf ("NativeProcessLinux::%s(%" PRIu64 ", %u, %p, %p, %" PRIu64 ")", __FUNCTION__,
407 pid, word_size, (void*)vm_addr, buf, size);
408
409 for (bytes_written = 0; bytes_written < size; bytes_written += remainder)
410 {
411 remainder = size - bytes_written;
412 remainder = remainder > word_size ? word_size : remainder;
413
414 if (remainder == word_size)
415 {
416 unsigned long data = 0;
417 assert(sizeof(data) >= word_size);
418 for (unsigned i = 0; i < word_size; ++i)
419 data |= (unsigned long)src[i] << i*8;
420
421 if (log && ProcessPOSIXLog::AtTopNestLevel() &&
422 (log->GetMask().Test(POSIX_LOG_MEMORY_DATA_LONG) ||
423 (log->GetMask().Test(POSIX_LOG_MEMORY_DATA_SHORT) &&
424 size <= POSIX_LOG_MEMORY_SHORT_BYTES)))
425 log->Printf ("NativeProcessLinux::%s() [%p]:0x%lx (0x%lx)", __FUNCTION__,
426 (void*)vm_addr, *(unsigned long*)src, data);
427
428 if (PTRACE(PTRACE_POKEDATA, pid, (void*)vm_addr, (void*)data, 0))
429 {
430 error.SetErrorToErrno();
431 if (log)
432 ProcessPOSIXLog::DecNestLevel();
433 return bytes_written;
434 }
435 }
436 else
437 {
438 unsigned char buff[8];
439 if (DoReadMemory(pid, vm_addr,
440 buff, word_size, error) != word_size)
441 {
442 if (log)
443 ProcessPOSIXLog::DecNestLevel();
444 return bytes_written;
445 }
446
447 memcpy(buff, src, remainder);
448
449 if (DoWriteMemory(pid, vm_addr,
450 buff, word_size, error) != word_size)
451 {
452 if (log)
453 ProcessPOSIXLog::DecNestLevel();
454 return bytes_written;
455 }
456
457 if (log && ProcessPOSIXLog::AtTopNestLevel() &&
458 (log->GetMask().Test(POSIX_LOG_MEMORY_DATA_LONG) ||
459 (log->GetMask().Test(POSIX_LOG_MEMORY_DATA_SHORT) &&
460 size <= POSIX_LOG_MEMORY_SHORT_BYTES)))
461 log->Printf ("NativeProcessLinux::%s() [%p]:0x%lx (0x%lx)", __FUNCTION__,
462 (void*)vm_addr, *(unsigned long*)src, *(unsigned long*)buff);
463 }
464
465 vm_addr += word_size;
466 src += word_size;
467 }
468 if (log)
469 ProcessPOSIXLog::DecNestLevel();
470 return bytes_written;
471 }
472
473 //------------------------------------------------------------------------------
474 /// @class Operation
475 /// @brief Represents a NativeProcessLinux operation.
476 ///
477 /// Under Linux, it is not possible to ptrace() from any other thread but the
478 /// one that spawned or attached to the process from the start. Therefore, when
479 /// a NativeProcessLinux is asked to deliver or change the state of an inferior
480 /// process the operation must be "funneled" to a specific thread to perform the
481 /// task. The Operation class provides an abstract base for all services the
482 /// NativeProcessLinux must perform via the single virtual function Execute, thus
483 /// encapsulating the code that needs to run in the privileged context.
484 class Operation
485 {
486 public:
487 Operation () : m_error() { }
488
489 virtual
490 ~Operation() {}
491
492 virtual void
493 Execute (NativeProcessLinux *process) = 0;
494
495 const Error &
496 GetError () const { return m_error; }
497
498 protected:
499 Error m_error;
500 };
501
502 //------------------------------------------------------------------------------
503 /// @class ReadOperation
504 /// @brief Implements NativeProcessLinux::ReadMemory.
505 class ReadOperation : public Operation
506 {
507 public:
508 ReadOperation (
509 lldb::addr_t addr,
510 void *buff,
511 lldb::addr_t size,
Todd Fialab35103e2014-07-10 05:25:39 +0000512 lldb::addr_t &result) :
Todd Fialaaf245d12014-06-30 21:05:18 +0000513 Operation (),
514 m_addr (addr),
515 m_buff (buff),
516 m_size (size),
517 m_result (result)
518 {
519 }
520
521 void Execute (NativeProcessLinux *process) override;
522
523 private:
524 lldb::addr_t m_addr;
525 void *m_buff;
526 lldb::addr_t m_size;
527 lldb::addr_t &m_result;
528 };
529
530 void
531 ReadOperation::Execute (NativeProcessLinux *process)
532 {
533 m_result = DoReadMemory (process->GetID (), m_addr, m_buff, m_size, m_error);
534 }
535
536 //------------------------------------------------------------------------------
537 /// @class WriteOperation
538 /// @brief Implements NativeProcessLinux::WriteMemory.
539 class WriteOperation : public Operation
540 {
541 public:
542 WriteOperation (
543 lldb::addr_t addr,
544 const void *buff,
545 lldb::addr_t size,
546 lldb::addr_t &result) :
547 Operation (),
548 m_addr (addr),
549 m_buff (buff),
550 m_size (size),
551 m_result (result)
552 {
553 }
554
555 void Execute (NativeProcessLinux *process) override;
556
557 private:
558 lldb::addr_t m_addr;
559 const void *m_buff;
560 lldb::addr_t m_size;
561 lldb::addr_t &m_result;
562 };
563
564 void
565 WriteOperation::Execute(NativeProcessLinux *process)
566 {
567 m_result = DoWriteMemory (process->GetID (), m_addr, m_buff, m_size, m_error);
568 }
569
570 //------------------------------------------------------------------------------
571 /// @class ReadRegOperation
572 /// @brief Implements NativeProcessLinux::ReadRegisterValue.
573 class ReadRegOperation : public Operation
574 {
575 public:
576 ReadRegOperation(lldb::tid_t tid, uint32_t offset, const char *reg_name,
577 RegisterValue &value, bool &result)
578 : m_tid(tid), m_offset(static_cast<uintptr_t> (offset)), m_reg_name(reg_name),
579 m_value(value), m_result(result)
580 { }
581
582 void Execute(NativeProcessLinux *monitor);
583
584 private:
585 lldb::tid_t m_tid;
586 uintptr_t m_offset;
587 const char *m_reg_name;
588 RegisterValue &m_value;
589 bool &m_result;
590 };
591
592 void
593 ReadRegOperation::Execute(NativeProcessLinux *monitor)
594 {
595 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_REGISTERS));
596
597 // Set errno to zero so that we can detect a failed peek.
598 errno = 0;
599 lldb::addr_t data = PTRACE(PTRACE_PEEKUSER, m_tid, (void*)m_offset, NULL, 0);
600 if (errno)
601 m_result = false;
602 else
603 {
604 m_value = data;
605 m_result = true;
606 }
607 if (log)
608 log->Printf ("NativeProcessLinux::%s() reg %s: 0x%" PRIx64, __FUNCTION__,
609 m_reg_name, data);
610 }
611
612 //------------------------------------------------------------------------------
613 /// @class WriteRegOperation
614 /// @brief Implements NativeProcessLinux::WriteRegisterValue.
615 class WriteRegOperation : public Operation
616 {
617 public:
618 WriteRegOperation(lldb::tid_t tid, unsigned offset, const char *reg_name,
619 const RegisterValue &value, bool &result)
620 : m_tid(tid), m_offset(offset), m_reg_name(reg_name),
621 m_value(value), m_result(result)
622 { }
623
624 void Execute(NativeProcessLinux *monitor);
625
626 private:
627 lldb::tid_t m_tid;
628 uintptr_t m_offset;
629 const char *m_reg_name;
630 const RegisterValue &m_value;
631 bool &m_result;
632 };
633
634 void
635 WriteRegOperation::Execute(NativeProcessLinux *monitor)
636 {
637 void* buf;
638 Log *log (ProcessPOSIXLog::GetLogIfAllCategoriesSet (POSIX_LOG_REGISTERS));
639
640 buf = (void*) m_value.GetAsUInt64();
641
642 if (log)
643 log->Printf ("NativeProcessLinux::%s() reg %s: %p", __FUNCTION__, m_reg_name, buf);
644 if (PTRACE(PTRACE_POKEUSER, m_tid, (void*)m_offset, buf, 0))
645 m_result = false;
646 else
647 m_result = true;
648 }
649
650 //------------------------------------------------------------------------------
651 /// @class ReadGPROperation
652 /// @brief Implements NativeProcessLinux::ReadGPR.
653 class ReadGPROperation : public Operation
654 {
655 public:
656 ReadGPROperation(lldb::tid_t tid, void *buf, size_t buf_size, bool &result)
657 : m_tid(tid), m_buf(buf), m_buf_size(buf_size), m_result(result)
658 { }
659
660 void Execute(NativeProcessLinux *monitor);
661
662 private:
663 lldb::tid_t m_tid;
664 void *m_buf;
665 size_t m_buf_size;
666 bool &m_result;
667 };
668
669 void
670 ReadGPROperation::Execute(NativeProcessLinux *monitor)
671 {
Todd Fiala6ac1be42014-08-21 16:34:03 +0000672#if defined (__arm64__) || defined (__aarch64__)
673 int regset = NT_PRSTATUS;
674 struct iovec ioVec;
675
676 ioVec.iov_base = m_buf;
677 ioVec.iov_len = m_buf_size;
678 if (PTRACE(PTRACE_GETREGSET, m_tid, &regset, &ioVec, m_buf_size) < 0)
679 m_result = false;
680 else
681 m_result = true;
682#else
Todd Fialaaf245d12014-06-30 21:05:18 +0000683 if (PTRACE(PTRACE_GETREGS, m_tid, NULL, m_buf, m_buf_size) < 0)
684 m_result = false;
685 else
686 m_result = true;
Todd Fiala6ac1be42014-08-21 16:34:03 +0000687#endif
Todd Fialaaf245d12014-06-30 21:05:18 +0000688 }
689
690 //------------------------------------------------------------------------------
691 /// @class ReadFPROperation
692 /// @brief Implements NativeProcessLinux::ReadFPR.
693 class ReadFPROperation : public Operation
694 {
695 public:
696 ReadFPROperation(lldb::tid_t tid, void *buf, size_t buf_size, bool &result)
697 : m_tid(tid), m_buf(buf), m_buf_size(buf_size), m_result(result)
698 { }
699
700 void Execute(NativeProcessLinux *monitor);
701
702 private:
703 lldb::tid_t m_tid;
704 void *m_buf;
705 size_t m_buf_size;
706 bool &m_result;
707 };
708
709 void
710 ReadFPROperation::Execute(NativeProcessLinux *monitor)
711 {
Todd Fiala6ac1be42014-08-21 16:34:03 +0000712#if defined (__arm64__) || defined (__aarch64__)
713 int regset = NT_FPREGSET;
714 struct iovec ioVec;
715
716 ioVec.iov_base = m_buf;
717 ioVec.iov_len = m_buf_size;
718 if (PTRACE(PTRACE_GETREGSET, m_tid, &regset, &ioVec, m_buf_size) < 0)
719 m_result = false;
720 else
721 m_result = true;
722#else
Todd Fialaaf245d12014-06-30 21:05:18 +0000723 if (PTRACE(PTRACE_GETFPREGS, m_tid, NULL, m_buf, m_buf_size) < 0)
724 m_result = false;
725 else
726 m_result = true;
Todd Fiala6ac1be42014-08-21 16:34:03 +0000727#endif
Todd Fialaaf245d12014-06-30 21:05:18 +0000728 }
729
730 //------------------------------------------------------------------------------
731 /// @class ReadRegisterSetOperation
732 /// @brief Implements NativeProcessLinux::ReadRegisterSet.
733 class ReadRegisterSetOperation : public Operation
734 {
735 public:
736 ReadRegisterSetOperation(lldb::tid_t tid, void *buf, size_t buf_size, unsigned int regset, bool &result)
737 : m_tid(tid), m_buf(buf), m_buf_size(buf_size), m_regset(regset), m_result(result)
738 { }
739
740 void Execute(NativeProcessLinux *monitor);
741
742 private:
743 lldb::tid_t m_tid;
744 void *m_buf;
745 size_t m_buf_size;
746 const unsigned int m_regset;
747 bool &m_result;
748 };
749
750 void
751 ReadRegisterSetOperation::Execute(NativeProcessLinux *monitor)
752 {
753 if (PTRACE(PTRACE_GETREGSET, m_tid, (void *)&m_regset, m_buf, m_buf_size) < 0)
754 m_result = false;
755 else
756 m_result = true;
757 }
758
759 //------------------------------------------------------------------------------
760 /// @class WriteGPROperation
761 /// @brief Implements NativeProcessLinux::WriteGPR.
762 class WriteGPROperation : public Operation
763 {
764 public:
765 WriteGPROperation(lldb::tid_t tid, void *buf, size_t buf_size, bool &result)
766 : m_tid(tid), m_buf(buf), m_buf_size(buf_size), m_result(result)
767 { }
768
769 void Execute(NativeProcessLinux *monitor);
770
771 private:
772 lldb::tid_t m_tid;
773 void *m_buf;
774 size_t m_buf_size;
775 bool &m_result;
776 };
777
778 void
779 WriteGPROperation::Execute(NativeProcessLinux *monitor)
780 {
Todd Fiala6ac1be42014-08-21 16:34:03 +0000781#if defined (__arm64__) || defined (__aarch64__)
782 int regset = NT_PRSTATUS;
783 struct iovec ioVec;
784
785 ioVec.iov_base = m_buf;
786 ioVec.iov_len = m_buf_size;
787 if (PTRACE(PTRACE_SETREGSET, m_tid, &regset, &ioVec, m_buf_size) < 0)
788 m_result = false;
789 else
790 m_result = true;
791#else
Todd Fialaaf245d12014-06-30 21:05:18 +0000792 if (PTRACE(PTRACE_SETREGS, m_tid, NULL, m_buf, m_buf_size) < 0)
793 m_result = false;
794 else
795 m_result = true;
Todd Fiala6ac1be42014-08-21 16:34:03 +0000796#endif
Todd Fialaaf245d12014-06-30 21:05:18 +0000797 }
798
799 //------------------------------------------------------------------------------
800 /// @class WriteFPROperation
801 /// @brief Implements NativeProcessLinux::WriteFPR.
802 class WriteFPROperation : public Operation
803 {
804 public:
805 WriteFPROperation(lldb::tid_t tid, void *buf, size_t buf_size, bool &result)
806 : m_tid(tid), m_buf(buf), m_buf_size(buf_size), m_result(result)
807 { }
808
809 void Execute(NativeProcessLinux *monitor);
810
811 private:
812 lldb::tid_t m_tid;
813 void *m_buf;
814 size_t m_buf_size;
815 bool &m_result;
816 };
817
818 void
819 WriteFPROperation::Execute(NativeProcessLinux *monitor)
820 {
Todd Fiala6ac1be42014-08-21 16:34:03 +0000821#if defined (__arm64__) || defined (__aarch64__)
822 int regset = NT_FPREGSET;
823 struct iovec ioVec;
824
825 ioVec.iov_base = m_buf;
826 ioVec.iov_len = m_buf_size;
827 if (PTRACE(PTRACE_SETREGSET, m_tid, &regset, &ioVec, m_buf_size) < 0)
828 m_result = false;
829 else
830 m_result = true;
831#else
Todd Fialaaf245d12014-06-30 21:05:18 +0000832 if (PTRACE(PTRACE_SETFPREGS, m_tid, NULL, m_buf, m_buf_size) < 0)
833 m_result = false;
834 else
835 m_result = true;
Todd Fiala6ac1be42014-08-21 16:34:03 +0000836#endif
Todd Fialaaf245d12014-06-30 21:05:18 +0000837 }
838
839 //------------------------------------------------------------------------------
840 /// @class WriteRegisterSetOperation
841 /// @brief Implements NativeProcessLinux::WriteRegisterSet.
842 class WriteRegisterSetOperation : public Operation
843 {
844 public:
845 WriteRegisterSetOperation(lldb::tid_t tid, void *buf, size_t buf_size, unsigned int regset, bool &result)
846 : m_tid(tid), m_buf(buf), m_buf_size(buf_size), m_regset(regset), m_result(result)
847 { }
848
849 void Execute(NativeProcessLinux *monitor);
850
851 private:
852 lldb::tid_t m_tid;
853 void *m_buf;
854 size_t m_buf_size;
855 const unsigned int m_regset;
856 bool &m_result;
857 };
858
859 void
860 WriteRegisterSetOperation::Execute(NativeProcessLinux *monitor)
861 {
862 if (PTRACE(PTRACE_SETREGSET, m_tid, (void *)&m_regset, m_buf, m_buf_size) < 0)
863 m_result = false;
864 else
865 m_result = true;
866 }
867
868 //------------------------------------------------------------------------------
869 /// @class ResumeOperation
870 /// @brief Implements NativeProcessLinux::Resume.
871 class ResumeOperation : public Operation
872 {
873 public:
874 ResumeOperation(lldb::tid_t tid, uint32_t signo, bool &result) :
875 m_tid(tid), m_signo(signo), m_result(result) { }
876
877 void Execute(NativeProcessLinux *monitor);
878
879 private:
880 lldb::tid_t m_tid;
881 uint32_t m_signo;
882 bool &m_result;
883 };
884
885 void
886 ResumeOperation::Execute(NativeProcessLinux *monitor)
887 {
888 intptr_t data = 0;
889
890 if (m_signo != LLDB_INVALID_SIGNAL_NUMBER)
891 data = m_signo;
892
893 if (PTRACE(PTRACE_CONT, m_tid, NULL, (void*)data, 0))
894 {
895 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
896
897 if (log)
898 log->Printf ("ResumeOperation (%" PRIu64 ") failed: %s", m_tid, strerror(errno));
899 m_result = false;
900 }
901 else
902 m_result = true;
903 }
904
905 //------------------------------------------------------------------------------
906 /// @class SingleStepOperation
907 /// @brief Implements NativeProcessLinux::SingleStep.
908 class SingleStepOperation : public Operation
909 {
910 public:
911 SingleStepOperation(lldb::tid_t tid, uint32_t signo, bool &result)
912 : m_tid(tid), m_signo(signo), m_result(result) { }
913
914 void Execute(NativeProcessLinux *monitor);
915
916 private:
917 lldb::tid_t m_tid;
918 uint32_t m_signo;
919 bool &m_result;
920 };
921
922 void
923 SingleStepOperation::Execute(NativeProcessLinux *monitor)
924 {
925 intptr_t data = 0;
926
927 if (m_signo != LLDB_INVALID_SIGNAL_NUMBER)
928 data = m_signo;
929
930 if (PTRACE(PTRACE_SINGLESTEP, m_tid, NULL, (void*)data, 0))
931 m_result = false;
932 else
933 m_result = true;
934 }
935
936 //------------------------------------------------------------------------------
937 /// @class SiginfoOperation
938 /// @brief Implements NativeProcessLinux::GetSignalInfo.
939 class SiginfoOperation : public Operation
940 {
941 public:
942 SiginfoOperation(lldb::tid_t tid, void *info, bool &result, int &ptrace_err)
943 : m_tid(tid), m_info(info), m_result(result), m_err(ptrace_err) { }
944
945 void Execute(NativeProcessLinux *monitor);
946
947 private:
948 lldb::tid_t m_tid;
949 void *m_info;
950 bool &m_result;
951 int &m_err;
952 };
953
954 void
955 SiginfoOperation::Execute(NativeProcessLinux *monitor)
956 {
957 if (PTRACE(PTRACE_GETSIGINFO, m_tid, NULL, m_info, 0)) {
958 m_result = false;
959 m_err = errno;
960 }
961 else
962 m_result = true;
963 }
964
965 //------------------------------------------------------------------------------
966 /// @class EventMessageOperation
967 /// @brief Implements NativeProcessLinux::GetEventMessage.
968 class EventMessageOperation : public Operation
969 {
970 public:
971 EventMessageOperation(lldb::tid_t tid, unsigned long *message, bool &result)
972 : m_tid(tid), m_message(message), m_result(result) { }
973
974 void Execute(NativeProcessLinux *monitor);
975
976 private:
977 lldb::tid_t m_tid;
978 unsigned long *m_message;
979 bool &m_result;
980 };
981
982 void
983 EventMessageOperation::Execute(NativeProcessLinux *monitor)
984 {
985 if (PTRACE(PTRACE_GETEVENTMSG, m_tid, NULL, m_message, 0))
986 m_result = false;
987 else
988 m_result = true;
989 }
990
991 class DetachOperation : public Operation
992 {
993 public:
994 DetachOperation(lldb::tid_t tid, Error &result) : m_tid(tid), m_error(result) { }
995
996 void Execute(NativeProcessLinux *monitor);
997
998 private:
999 lldb::tid_t m_tid;
1000 Error &m_error;
1001 };
1002
1003 void
1004 DetachOperation::Execute(NativeProcessLinux *monitor)
1005 {
1006 if (ptrace(PT_DETACH, m_tid, NULL, 0) < 0)
1007 m_error.SetErrorToErrno();
1008 }
1009
1010}
1011
1012using namespace lldb_private;
1013
1014// Simple helper function to ensure flags are enabled on the given file
1015// descriptor.
1016static bool
1017EnsureFDFlags(int fd, int flags, Error &error)
1018{
1019 int status;
1020
1021 if ((status = fcntl(fd, F_GETFL)) == -1)
1022 {
1023 error.SetErrorToErrno();
1024 return false;
1025 }
1026
1027 if (fcntl(fd, F_SETFL, status | flags) == -1)
1028 {
1029 error.SetErrorToErrno();
1030 return false;
1031 }
1032
1033 return true;
1034}
1035
1036NativeProcessLinux::OperationArgs::OperationArgs(NativeProcessLinux *monitor)
1037 : m_monitor(monitor)
1038{
1039 sem_init(&m_semaphore, 0, 0);
1040}
1041
1042NativeProcessLinux::OperationArgs::~OperationArgs()
1043{
1044 sem_destroy(&m_semaphore);
1045}
1046
1047NativeProcessLinux::LaunchArgs::LaunchArgs(NativeProcessLinux *monitor,
1048 lldb_private::Module *module,
1049 char const **argv,
1050 char const **envp,
1051 const char *stdin_path,
1052 const char *stdout_path,
1053 const char *stderr_path,
Todd Fiala0bce1b62014-08-17 00:10:50 +00001054 const char *working_dir,
1055 const lldb_private::ProcessLaunchInfo &launch_info)
Todd Fialaaf245d12014-06-30 21:05:18 +00001056 : OperationArgs(monitor),
1057 m_module(module),
1058 m_argv(argv),
1059 m_envp(envp),
1060 m_stdin_path(stdin_path),
1061 m_stdout_path(stdout_path),
1062 m_stderr_path(stderr_path),
Todd Fiala0bce1b62014-08-17 00:10:50 +00001063 m_working_dir(working_dir),
1064 m_launch_info(launch_info)
1065{
1066}
Todd Fialaaf245d12014-06-30 21:05:18 +00001067
1068NativeProcessLinux::LaunchArgs::~LaunchArgs()
1069{ }
1070
1071NativeProcessLinux::AttachArgs::AttachArgs(NativeProcessLinux *monitor,
1072 lldb::pid_t pid)
1073 : OperationArgs(monitor), m_pid(pid) { }
1074
1075NativeProcessLinux::AttachArgs::~AttachArgs()
1076{ }
1077
1078// -----------------------------------------------------------------------------
1079// Public Static Methods
1080// -----------------------------------------------------------------------------
1081
1082lldb_private::Error
1083NativeProcessLinux::LaunchProcess (
1084 lldb_private::Module *exe_module,
1085 lldb_private::ProcessLaunchInfo &launch_info,
1086 lldb_private::NativeProcessProtocol::NativeDelegate &native_delegate,
1087 NativeProcessProtocolSP &native_process_sp)
1088{
1089 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
1090
1091 Error error;
1092
1093 // Verify the working directory is valid if one was specified.
1094 const char* working_dir = launch_info.GetWorkingDirectory ();
1095 if (working_dir)
1096 {
1097 FileSpec working_dir_fs (working_dir, true);
1098 if (!working_dir_fs || working_dir_fs.GetFileType () != FileSpec::eFileTypeDirectory)
1099 {
1100 error.SetErrorStringWithFormat ("No such file or directory: %s", working_dir);
1101 return error;
1102 }
1103 }
1104
Zachary Turner696b5282014-08-14 16:01:25 +00001105 const lldb_private::FileAction *file_action;
Todd Fialaaf245d12014-06-30 21:05:18 +00001106
1107 // Default of NULL will mean to use existing open file descriptors.
1108 const char *stdin_path = NULL;
1109 const char *stdout_path = NULL;
1110 const char *stderr_path = NULL;
1111
1112 file_action = launch_info.GetFileActionForFD (STDIN_FILENO);
1113 stdin_path = GetFilePath (file_action, stdin_path);
1114
1115 file_action = launch_info.GetFileActionForFD (STDOUT_FILENO);
1116 stdout_path = GetFilePath (file_action, stdout_path);
1117
1118 file_action = launch_info.GetFileActionForFD (STDERR_FILENO);
1119 stderr_path = GetFilePath (file_action, stderr_path);
1120
1121 // Create the NativeProcessLinux in launch mode.
1122 native_process_sp.reset (new NativeProcessLinux ());
1123
1124 if (log)
1125 {
1126 int i = 0;
1127 for (const char **args = launch_info.GetArguments ().GetConstArgumentVector (); *args; ++args, ++i)
1128 {
1129 log->Printf ("NativeProcessLinux::%s arg %d: \"%s\"", __FUNCTION__, i, *args ? *args : "nullptr");
1130 ++i;
1131 }
1132 }
1133
1134 if (!native_process_sp->RegisterNativeDelegate (native_delegate))
1135 {
1136 native_process_sp.reset ();
1137 error.SetErrorStringWithFormat ("failed to register the native delegate");
1138 return error;
1139 }
1140
1141 reinterpret_cast<NativeProcessLinux*> (native_process_sp.get ())->LaunchInferior (
1142 exe_module,
1143 launch_info.GetArguments ().GetConstArgumentVector (),
1144 launch_info.GetEnvironmentEntries ().GetConstArgumentVector (),
1145 stdin_path,
1146 stdout_path,
1147 stderr_path,
1148 working_dir,
Todd Fiala0bce1b62014-08-17 00:10:50 +00001149 launch_info,
Todd Fialaaf245d12014-06-30 21:05:18 +00001150 error);
1151
1152 if (error.Fail ())
1153 {
1154 native_process_sp.reset ();
1155 if (log)
1156 log->Printf ("NativeProcessLinux::%s failed to launch process: %s", __FUNCTION__, error.AsCString ());
1157 return error;
1158 }
1159
1160 launch_info.SetProcessID (native_process_sp->GetID ());
1161
1162 return error;
1163}
1164
1165lldb_private::Error
1166NativeProcessLinux::AttachToProcess (
1167 lldb::pid_t pid,
1168 lldb_private::NativeProcessProtocol::NativeDelegate &native_delegate,
1169 NativeProcessProtocolSP &native_process_sp)
1170{
1171 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
1172 if (log && log->GetMask ().Test (POSIX_LOG_VERBOSE))
1173 log->Printf ("NativeProcessLinux::%s(pid = %" PRIi64 ")", __FUNCTION__, pid);
1174
1175 // Grab the current platform architecture. This should be Linux,
1176 // since this code is only intended to run on a Linux host.
1177 PlatformSP platform_sp (Platform::GetDefaultPlatform ());
1178 if (!platform_sp)
1179 return Error("failed to get a valid default platform");
1180
1181 // Retrieve the architecture for the running process.
1182 ArchSpec process_arch;
1183 Error error = ResolveProcessArchitecture (pid, *platform_sp.get (), process_arch);
1184 if (!error.Success ())
1185 return error;
1186
1187 native_process_sp.reset (new NativeProcessLinux ());
1188
1189 if (!native_process_sp->RegisterNativeDelegate (native_delegate))
1190 {
1191 native_process_sp.reset (new NativeProcessLinux ());
1192 error.SetErrorStringWithFormat ("failed to register the native delegate");
1193 return error;
1194 }
1195
1196 reinterpret_cast<NativeProcessLinux*> (native_process_sp.get ())->AttachToInferior (pid, error);
1197 if (!error.Success ())
1198 {
1199 native_process_sp.reset ();
1200 return error;
1201 }
1202
1203 return error;
1204}
1205
1206// -----------------------------------------------------------------------------
1207// Public Instance Methods
1208// -----------------------------------------------------------------------------
1209
1210NativeProcessLinux::NativeProcessLinux () :
1211 NativeProcessProtocol (LLDB_INVALID_PROCESS_ID),
1212 m_arch (),
Todd Fialaaf245d12014-06-30 21:05:18 +00001213 m_operation (nullptr),
1214 m_operation_mutex (),
1215 m_operation_pending (),
1216 m_operation_done (),
1217 m_wait_for_stop_tids (),
1218 m_wait_for_stop_tids_mutex (),
1219 m_supports_mem_region (eLazyBoolCalculate),
1220 m_mem_region_cache (),
1221 m_mem_region_cache_mutex ()
1222{
1223}
1224
1225//------------------------------------------------------------------------------
1226/// The basic design of the NativeProcessLinux is built around two threads.
1227///
1228/// One thread (@see SignalThread) simply blocks on a call to waitpid() looking
1229/// for changes in the debugee state. When a change is detected a
1230/// ProcessMessage is sent to the associated ProcessLinux instance. This thread
1231/// "drives" state changes in the debugger.
1232///
1233/// The second thread (@see OperationThread) is responsible for two things 1)
1234/// launching or attaching to the inferior process, and then 2) servicing
1235/// operations such as register reads/writes, stepping, etc. See the comments
1236/// on the Operation class for more info as to why this is needed.
1237void
1238NativeProcessLinux::LaunchInferior (
1239 Module *module,
1240 const char *argv[],
1241 const char *envp[],
1242 const char *stdin_path,
1243 const char *stdout_path,
1244 const char *stderr_path,
1245 const char *working_dir,
Todd Fiala0bce1b62014-08-17 00:10:50 +00001246 const lldb_private::ProcessLaunchInfo &launch_info,
Todd Fialaaf245d12014-06-30 21:05:18 +00001247 lldb_private::Error &error)
1248{
1249 if (module)
1250 m_arch = module->GetArchitecture ();
1251
1252 SetState(eStateLaunching);
1253
1254 std::unique_ptr<LaunchArgs> args(
1255 new LaunchArgs(
1256 this, module, argv, envp,
1257 stdin_path, stdout_path, stderr_path,
Todd Fiala0bce1b62014-08-17 00:10:50 +00001258 working_dir, launch_info));
Todd Fialaaf245d12014-06-30 21:05:18 +00001259
1260 sem_init(&m_operation_pending, 0, 0);
1261 sem_init(&m_operation_done, 0, 0);
1262
1263 StartLaunchOpThread(args.get(), error);
1264 if (!error.Success())
1265 return;
1266
1267WAIT_AGAIN:
1268 // Wait for the operation thread to initialize.
1269 if (sem_wait(&args->m_semaphore))
1270 {
1271 if (errno == EINTR)
1272 goto WAIT_AGAIN;
1273 else
1274 {
1275 error.SetErrorToErrno();
1276 return;
1277 }
1278 }
1279
1280 // Check that the launch was a success.
1281 if (!args->m_error.Success())
1282 {
1283 StopOpThread();
1284 error = args->m_error;
1285 return;
1286 }
1287
1288 // Finally, start monitoring the child process for change in state.
1289 m_monitor_thread = Host::StartMonitoringChildProcess(
1290 NativeProcessLinux::MonitorCallback, this, GetID(), true);
Zachary Turner39de3112014-09-09 20:54:56 +00001291 if (m_monitor_thread.GetState() != eThreadStateRunning)
Todd Fialaaf245d12014-06-30 21:05:18 +00001292 {
1293 error.SetErrorToGenericError();
1294 error.SetErrorString ("Process attach failed to create monitor thread for NativeProcessLinux::MonitorCallback.");
1295 return;
1296 }
1297}
1298
1299void
1300NativeProcessLinux::AttachToInferior (lldb::pid_t pid, lldb_private::Error &error)
1301{
1302 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
1303 if (log)
1304 log->Printf ("NativeProcessLinux::%s (pid = %" PRIi64 ")", __FUNCTION__, pid);
1305
1306 // We can use the Host for everything except the ResolveExecutable portion.
1307 PlatformSP platform_sp = Platform::GetDefaultPlatform ();
1308 if (!platform_sp)
1309 {
1310 if (log)
1311 log->Printf ("NativeProcessLinux::%s (pid = %" PRIi64 "): no default platform set", __FUNCTION__, pid);
1312 error.SetErrorString ("no default platform available");
1313 }
1314
1315 // Gather info about the process.
1316 ProcessInstanceInfo process_info;
1317 platform_sp->GetProcessInfo (pid, process_info);
1318
1319 // Resolve the executable module
1320 ModuleSP exe_module_sp;
1321 FileSpecList executable_search_paths (Target::GetDefaultExecutableSearchPaths());
1322
Zachary Turner13b18262014-08-20 16:42:51 +00001323 error = platform_sp->ResolveExecutable(process_info.GetExecutableFile(), HostInfo::GetArchitecture(), exe_module_sp,
1324 executable_search_paths.GetSize() ? &executable_search_paths : NULL);
Todd Fialaaf245d12014-06-30 21:05:18 +00001325 if (!error.Success())
1326 return;
1327
1328 // Set the architecture to the exe architecture.
1329 m_arch = exe_module_sp->GetArchitecture();
1330 if (log)
1331 log->Printf ("NativeProcessLinux::%s (pid = %" PRIi64 ") detected architecture %s", __FUNCTION__, pid, m_arch.GetArchitectureName ());
1332
1333 m_pid = pid;
1334 SetState(eStateAttaching);
1335
1336 sem_init (&m_operation_pending, 0, 0);
1337 sem_init (&m_operation_done, 0, 0);
1338
1339 std::unique_ptr<AttachArgs> args (new AttachArgs (this, pid));
1340
1341 StartAttachOpThread(args.get (), error);
1342 if (!error.Success ())
1343 return;
1344
1345WAIT_AGAIN:
1346 // Wait for the operation thread to initialize.
1347 if (sem_wait (&args->m_semaphore))
1348 {
1349 if (errno == EINTR)
1350 goto WAIT_AGAIN;
1351 else
1352 {
1353 error.SetErrorToErrno ();
1354 return;
1355 }
1356 }
1357
1358 // Check that the attach was a success.
1359 if (!args->m_error.Success ())
1360 {
1361 StopOpThread ();
1362 error = args->m_error;
1363 return;
1364 }
1365
1366 // Finally, start monitoring the child process for change in state.
1367 m_monitor_thread = Host::StartMonitoringChildProcess (
1368 NativeProcessLinux::MonitorCallback, this, GetID (), true);
Zachary Turner39de3112014-09-09 20:54:56 +00001369 if (m_monitor_thread.GetState() != eThreadStateRunning)
Todd Fialaaf245d12014-06-30 21:05:18 +00001370 {
1371 error.SetErrorToGenericError ();
1372 error.SetErrorString ("Process attach failed to create monitor thread for NativeProcessLinux::MonitorCallback.");
1373 return;
1374 }
1375}
1376
1377NativeProcessLinux::~NativeProcessLinux()
1378{
1379 StopMonitor();
1380}
1381
1382//------------------------------------------------------------------------------
1383// Thread setup and tear down.
1384
1385void
1386NativeProcessLinux::StartLaunchOpThread(LaunchArgs *args, Error &error)
1387{
1388 static const char *g_thread_name = "lldb.process.nativelinux.operation";
1389
Zachary Turner39de3112014-09-09 20:54:56 +00001390 if (m_operation_thread.GetState() == eThreadStateRunning)
Todd Fialaaf245d12014-06-30 21:05:18 +00001391 return;
1392
Zachary Turner39de3112014-09-09 20:54:56 +00001393 m_operation_thread = ThreadLauncher::LaunchThread(g_thread_name, LaunchOpThread, args, &error);
Todd Fialaaf245d12014-06-30 21:05:18 +00001394}
1395
1396void *
1397NativeProcessLinux::LaunchOpThread(void *arg)
1398{
1399 LaunchArgs *args = static_cast<LaunchArgs*>(arg);
1400
1401 if (!Launch(args)) {
1402 sem_post(&args->m_semaphore);
1403 return NULL;
1404 }
1405
1406 ServeOperation(args);
1407 return NULL;
1408}
1409
1410bool
1411NativeProcessLinux::Launch(LaunchArgs *args)
1412{
Todd Fiala0bce1b62014-08-17 00:10:50 +00001413 assert (args && "null args");
1414 if (!args)
1415 return false;
1416
Todd Fialaaf245d12014-06-30 21:05:18 +00001417 NativeProcessLinux *monitor = args->m_monitor;
1418 assert (monitor && "monitor is NULL");
1419 if (!monitor)
1420 return false;
1421
1422 const char **argv = args->m_argv;
1423 const char **envp = args->m_envp;
1424 const char *stdin_path = args->m_stdin_path;
1425 const char *stdout_path = args->m_stdout_path;
1426 const char *stderr_path = args->m_stderr_path;
1427 const char *working_dir = args->m_working_dir;
1428
1429 lldb_utility::PseudoTerminal terminal;
1430 const size_t err_len = 1024;
1431 char err_str[err_len];
1432 lldb::pid_t pid;
1433 NativeThreadProtocolSP thread_sp;
1434
1435 lldb::ThreadSP inferior;
1436 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
1437
1438 // Propagate the environment if one is not supplied.
1439 if (envp == NULL || envp[0] == NULL)
1440 envp = const_cast<const char **>(environ);
1441
1442 if ((pid = terminal.Fork(err_str, err_len)) == static_cast<lldb::pid_t> (-1))
1443 {
1444 args->m_error.SetErrorToGenericError();
1445 args->m_error.SetErrorString("Process fork failed.");
1446 goto FINISH;
1447 }
1448
1449 // Recognized child exit status codes.
1450 enum {
1451 ePtraceFailed = 1,
1452 eDupStdinFailed,
1453 eDupStdoutFailed,
1454 eDupStderrFailed,
1455 eChdirFailed,
1456 eExecFailed,
1457 eSetGidFailed
1458 };
1459
1460 // Child process.
1461 if (pid == 0)
1462 {
1463 if (log)
1464 log->Printf ("NativeProcessLinux::%s inferior process preparing to fork", __FUNCTION__);
1465
1466 // Trace this process.
1467 if (log)
1468 log->Printf ("NativeProcessLinux::%s inferior process issuing PTRACE_TRACEME", __FUNCTION__);
1469
1470 if (PTRACE(PTRACE_TRACEME, 0, NULL, NULL, 0) < 0)
1471 {
1472 if (log)
1473 log->Printf ("NativeProcessLinux::%s inferior process PTRACE_TRACEME failed", __FUNCTION__);
1474 exit(ePtraceFailed);
1475 }
1476
1477 // Do not inherit setgid powers.
1478 if (log)
1479 log->Printf ("NativeProcessLinux::%s inferior process resetting gid", __FUNCTION__);
1480
1481 if (setgid(getgid()) != 0)
1482 {
1483 if (log)
1484 log->Printf ("NativeProcessLinux::%s inferior process setgid() failed", __FUNCTION__);
1485 exit(eSetGidFailed);
1486 }
1487
1488 // Attempt to have our own process group.
1489 // TODO verify if we really want this.
1490 if (log)
1491 log->Printf ("NativeProcessLinux::%s inferior process resetting process group", __FUNCTION__);
1492
1493 if (setpgid(0, 0) != 0)
1494 {
1495 if (log)
1496 {
1497 const int error_code = errno;
1498 log->Printf ("NativeProcessLinux::%s inferior setpgid() failed, errno=%d (%s), continuing with existing proccess group %" PRIu64,
1499 __FUNCTION__,
1500 error_code,
1501 strerror (error_code),
1502 static_cast<lldb::pid_t> (getpgid (0)));
1503 }
1504 // Don't allow this to prevent an inferior exec.
1505 }
1506
1507 // Dup file descriptors if needed.
1508 //
1509 // FIXME: If two or more of the paths are the same we needlessly open
1510 // the same file multiple times.
1511 if (stdin_path != NULL && stdin_path[0])
1512 if (!DupDescriptor(stdin_path, STDIN_FILENO, O_RDONLY))
1513 exit(eDupStdinFailed);
1514
1515 if (stdout_path != NULL && stdout_path[0])
1516 if (!DupDescriptor(stdout_path, STDOUT_FILENO, O_WRONLY | O_CREAT))
1517 exit(eDupStdoutFailed);
1518
1519 if (stderr_path != NULL && stderr_path[0])
1520 if (!DupDescriptor(stderr_path, STDERR_FILENO, O_WRONLY | O_CREAT))
1521 exit(eDupStderrFailed);
1522
1523 // Change working directory
1524 if (working_dir != NULL && working_dir[0])
1525 if (0 != ::chdir(working_dir))
1526 exit(eChdirFailed);
1527
Todd Fiala0bce1b62014-08-17 00:10:50 +00001528 // Disable ASLR if requested.
1529 if (args->m_launch_info.GetFlags ().Test (lldb::eLaunchFlagDisableASLR))
1530 {
1531 const int old_personality = personality (LLDB_PERSONALITY_GET_CURRENT_SETTINGS);
1532 if (old_personality == -1)
1533 {
1534 if (log)
1535 log->Printf ("NativeProcessLinux::%s retrieval of Linux personality () failed: %s. Cannot disable ASLR.", __FUNCTION__, strerror (errno));
1536 }
1537 else
1538 {
1539 const int new_personality = personality (ADDR_NO_RANDOMIZE | old_personality);
1540 if (new_personality == -1)
1541 {
1542 if (log)
1543 log->Printf ("NativeProcessLinux::%s setting of Linux personality () to disable ASLR failed, ignoring: %s", __FUNCTION__, strerror (errno));
1544
1545 }
1546 else
1547 {
1548 if (log)
1549 log->Printf ("NativeProcessLinux::%s disbling ASLR: SUCCESS", __FUNCTION__);
1550
1551 }
1552 }
1553 }
1554
Todd Fialaaf245d12014-06-30 21:05:18 +00001555 // Execute. We should never return.
1556 execve(argv[0],
1557 const_cast<char *const *>(argv),
1558 const_cast<char *const *>(envp));
1559 exit(eExecFailed);
1560 }
1561
1562 // Wait for the child process to trap on its call to execve.
1563 ::pid_t wpid;
1564 int status;
1565 if ((wpid = waitpid(pid, &status, 0)) < 0)
1566 {
1567 args->m_error.SetErrorToErrno();
1568
1569 if (log)
1570 log->Printf ("NativeProcessLinux::%s waitpid for inferior failed with %s", __FUNCTION__, args->m_error.AsCString ());
1571
1572 // Mark the inferior as invalid.
1573 // FIXME this could really use a new state - eStateLaunchFailure. For now, using eStateInvalid.
1574 monitor->SetState (StateType::eStateInvalid);
1575
1576 goto FINISH;
1577 }
1578 else if (WIFEXITED(status))
1579 {
1580 // open, dup or execve likely failed for some reason.
1581 args->m_error.SetErrorToGenericError();
1582 switch (WEXITSTATUS(status))
1583 {
1584 case ePtraceFailed:
1585 args->m_error.SetErrorString("Child ptrace failed.");
1586 break;
1587 case eDupStdinFailed:
1588 args->m_error.SetErrorString("Child open stdin failed.");
1589 break;
1590 case eDupStdoutFailed:
1591 args->m_error.SetErrorString("Child open stdout failed.");
1592 break;
1593 case eDupStderrFailed:
1594 args->m_error.SetErrorString("Child open stderr failed.");
1595 break;
1596 case eChdirFailed:
1597 args->m_error.SetErrorString("Child failed to set working directory.");
1598 break;
1599 case eExecFailed:
1600 args->m_error.SetErrorString("Child exec failed.");
1601 break;
1602 case eSetGidFailed:
1603 args->m_error.SetErrorString("Child setgid failed.");
1604 break;
1605 default:
1606 args->m_error.SetErrorString("Child returned unknown exit status.");
1607 break;
1608 }
1609
1610 if (log)
1611 {
1612 log->Printf ("NativeProcessLinux::%s inferior exited with status %d before issuing a STOP",
1613 __FUNCTION__,
1614 WEXITSTATUS(status));
1615 }
1616
1617 // Mark the inferior as invalid.
1618 // FIXME this could really use a new state - eStateLaunchFailure. For now, using eStateInvalid.
1619 monitor->SetState (StateType::eStateInvalid);
1620
1621 goto FINISH;
1622 }
Todd Fiala202ecd22014-07-10 04:39:13 +00001623 assert(WIFSTOPPED(status) && (wpid == static_cast< ::pid_t> (pid)) &&
Todd Fialaaf245d12014-06-30 21:05:18 +00001624 "Could not sync with inferior process.");
1625
1626 if (log)
1627 log->Printf ("NativeProcessLinux::%s inferior started, now in stopped state", __FUNCTION__);
1628
1629 if (!SetDefaultPtraceOpts(pid))
1630 {
1631 args->m_error.SetErrorToErrno();
1632 if (log)
1633 log->Printf ("NativeProcessLinux::%s inferior failed to set default ptrace options: %s",
1634 __FUNCTION__,
1635 args->m_error.AsCString ());
1636
1637 // Mark the inferior as invalid.
1638 // FIXME this could really use a new state - eStateLaunchFailure. For now, using eStateInvalid.
1639 monitor->SetState (StateType::eStateInvalid);
1640
1641 goto FINISH;
1642 }
1643
1644 // Release the master terminal descriptor and pass it off to the
1645 // NativeProcessLinux instance. Similarly stash the inferior pid.
1646 monitor->m_terminal_fd = terminal.ReleaseMasterFileDescriptor();
1647 monitor->m_pid = pid;
1648
1649 // Set the terminal fd to be in non blocking mode (it simplifies the
1650 // implementation of ProcessLinux::GetSTDOUT to have a non-blocking
1651 // descriptor to read from).
1652 if (!EnsureFDFlags(monitor->m_terminal_fd, O_NONBLOCK, args->m_error))
1653 {
1654 if (log)
1655 log->Printf ("NativeProcessLinux::%s inferior EnsureFDFlags failed for ensuring terminal O_NONBLOCK setting: %s",
1656 __FUNCTION__,
1657 args->m_error.AsCString ());
1658
1659 // Mark the inferior as invalid.
1660 // FIXME this could really use a new state - eStateLaunchFailure. For now, using eStateInvalid.
1661 monitor->SetState (StateType::eStateInvalid);
1662
1663 goto FINISH;
1664 }
1665
1666 if (log)
1667 log->Printf ("NativeProcessLinux::%s() adding pid = %" PRIu64, __FUNCTION__, pid);
1668
1669 thread_sp = monitor->AddThread (static_cast<lldb::tid_t> (pid));
1670 assert (thread_sp && "AddThread() returned a nullptr thread");
1671 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (SIGSTOP);
1672 monitor->SetCurrentThreadID (thread_sp->GetID ());
1673
1674 // Let our process instance know the thread has stopped.
1675 monitor->SetState (StateType::eStateStopped);
1676
1677FINISH:
1678 if (log)
1679 {
1680 if (args->m_error.Success ())
1681 {
1682 log->Printf ("NativeProcessLinux::%s inferior launching succeeded", __FUNCTION__);
1683 }
1684 else
1685 {
1686 log->Printf ("NativeProcessLinux::%s inferior launching failed: %s",
1687 __FUNCTION__,
1688 args->m_error.AsCString ());
1689 }
1690 }
1691 return args->m_error.Success();
1692}
1693
1694void
1695NativeProcessLinux::StartAttachOpThread(AttachArgs *args, lldb_private::Error &error)
1696{
1697 static const char *g_thread_name = "lldb.process.linux.operation";
1698
Zachary Turner39de3112014-09-09 20:54:56 +00001699 if (m_operation_thread.GetState() == eThreadStateRunning)
Todd Fialaaf245d12014-06-30 21:05:18 +00001700 return;
1701
Zachary Turner39de3112014-09-09 20:54:56 +00001702 m_operation_thread = ThreadLauncher::LaunchThread(g_thread_name, AttachOpThread, args, &error);
Todd Fialaaf245d12014-06-30 21:05:18 +00001703}
1704
1705void *
1706NativeProcessLinux::AttachOpThread(void *arg)
1707{
1708 AttachArgs *args = static_cast<AttachArgs*>(arg);
1709
1710 if (!Attach(args)) {
1711 sem_post(&args->m_semaphore);
1712 return NULL;
1713 }
1714
1715 ServeOperation(args);
1716 return NULL;
1717}
1718
1719bool
1720NativeProcessLinux::Attach(AttachArgs *args)
1721{
1722 lldb::pid_t pid = args->m_pid;
1723
1724 NativeProcessLinux *monitor = args->m_monitor;
1725 lldb::ThreadSP inferior;
1726 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
1727
1728 // Use a map to keep track of the threads which we have attached/need to attach.
1729 Host::TidMap tids_to_attach;
1730 if (pid <= 1)
1731 {
1732 args->m_error.SetErrorToGenericError();
1733 args->m_error.SetErrorString("Attaching to process 1 is not allowed.");
1734 goto FINISH;
1735 }
1736
1737 while (Host::FindProcessThreads(pid, tids_to_attach))
1738 {
1739 for (Host::TidMap::iterator it = tids_to_attach.begin();
1740 it != tids_to_attach.end();)
1741 {
1742 if (it->second == false)
1743 {
1744 lldb::tid_t tid = it->first;
1745
1746 // Attach to the requested process.
1747 // An attach will cause the thread to stop with a SIGSTOP.
1748 if (PTRACE(PTRACE_ATTACH, tid, NULL, NULL, 0) < 0)
1749 {
1750 // No such thread. The thread may have exited.
1751 // More error handling may be needed.
1752 if (errno == ESRCH)
1753 {
1754 it = tids_to_attach.erase(it);
1755 continue;
1756 }
1757 else
1758 {
1759 args->m_error.SetErrorToErrno();
1760 goto FINISH;
1761 }
1762 }
1763
1764 int status;
1765 // Need to use __WALL otherwise we receive an error with errno=ECHLD
1766 // At this point we should have a thread stopped if waitpid succeeds.
1767 if ((status = waitpid(tid, NULL, __WALL)) < 0)
1768 {
1769 // No such thread. The thread may have exited.
1770 // More error handling may be needed.
1771 if (errno == ESRCH)
1772 {
1773 it = tids_to_attach.erase(it);
1774 continue;
1775 }
1776 else
1777 {
1778 args->m_error.SetErrorToErrno();
1779 goto FINISH;
1780 }
1781 }
1782
1783 if (!SetDefaultPtraceOpts(tid))
1784 {
1785 args->m_error.SetErrorToErrno();
1786 goto FINISH;
1787 }
1788
1789
1790 if (log)
1791 log->Printf ("NativeProcessLinux::%s() adding tid = %" PRIu64, __FUNCTION__, tid);
1792
1793 it->second = true;
1794
1795 // Create the thread, mark it as stopped.
1796 NativeThreadProtocolSP thread_sp (monitor->AddThread (static_cast<lldb::tid_t> (tid)));
1797 assert (thread_sp && "AddThread() returned a nullptr");
1798 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (SIGSTOP);
1799 monitor->SetCurrentThreadID (thread_sp->GetID ());
1800 }
1801
1802 // move the loop forward
1803 ++it;
1804 }
1805 }
1806
1807 if (tids_to_attach.size() > 0)
1808 {
1809 monitor->m_pid = pid;
1810 // Let our process instance know the thread has stopped.
1811 monitor->SetState (StateType::eStateStopped);
1812 }
1813 else
1814 {
1815 args->m_error.SetErrorToGenericError();
1816 args->m_error.SetErrorString("No such process.");
1817 }
1818
1819 FINISH:
1820 return args->m_error.Success();
1821}
1822
1823bool
1824NativeProcessLinux::SetDefaultPtraceOpts(lldb::pid_t pid)
1825{
1826 long ptrace_opts = 0;
1827
1828 // Have the child raise an event on exit. This is used to keep the child in
1829 // limbo until it is destroyed.
1830 ptrace_opts |= PTRACE_O_TRACEEXIT;
1831
1832 // Have the tracer trace threads which spawn in the inferior process.
1833 // TODO: if we want to support tracing the inferiors' child, add the
1834 // appropriate ptrace flags here (PTRACE_O_TRACEFORK, PTRACE_O_TRACEVFORK)
1835 ptrace_opts |= PTRACE_O_TRACECLONE;
1836
1837 // Have the tracer notify us before execve returns
1838 // (needed to disable legacy SIGTRAP generation)
1839 ptrace_opts |= PTRACE_O_TRACEEXEC;
1840
1841 return PTRACE(PTRACE_SETOPTIONS, pid, NULL, (void*)ptrace_opts, 0) >= 0;
1842}
1843
1844static ExitType convert_pid_status_to_exit_type (int status)
1845{
1846 if (WIFEXITED (status))
1847 return ExitType::eExitTypeExit;
1848 else if (WIFSIGNALED (status))
1849 return ExitType::eExitTypeSignal;
1850 else if (WIFSTOPPED (status))
1851 return ExitType::eExitTypeStop;
1852 else
1853 {
1854 // We don't know what this is.
1855 return ExitType::eExitTypeInvalid;
1856 }
1857}
1858
1859static int convert_pid_status_to_return_code (int status)
1860{
1861 if (WIFEXITED (status))
1862 return WEXITSTATUS (status);
1863 else if (WIFSIGNALED (status))
1864 return WTERMSIG (status);
1865 else if (WIFSTOPPED (status))
1866 return WSTOPSIG (status);
1867 else
1868 {
1869 // We don't know what this is.
1870 return ExitType::eExitTypeInvalid;
1871 }
1872}
1873
1874// Main process monitoring waitpid-loop handler.
1875bool
1876NativeProcessLinux::MonitorCallback(void *callback_baton,
1877 lldb::pid_t pid,
1878 bool exited,
1879 int signal,
1880 int status)
1881{
1882 Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PROCESS));
1883
1884 NativeProcessLinux *const process = static_cast<NativeProcessLinux*>(callback_baton);
1885 assert (process && "process is null");
1886 if (!process)
1887 {
1888 if (log)
1889 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " callback_baton was null, can't determine process to use", __FUNCTION__, pid);
1890 return true;
1891 }
1892
1893 // Certain activities differ based on whether the pid is the tid of the main thread.
1894 const bool is_main_thread = (pid == process->GetID ());
1895
1896 // Assume we keep monitoring by default.
1897 bool stop_monitoring = false;
1898
1899 // Handle when the thread exits.
1900 if (exited)
1901 {
1902 if (log)
1903 log->Printf ("NativeProcessLinux::%s() got exit signal, tid = %" PRIu64 " (%s main thread)", __FUNCTION__, pid, is_main_thread ? "is" : "is not");
1904
1905 // This is a thread that exited. Ensure we're not tracking it anymore.
1906 const bool thread_found = process->StopTrackingThread (pid);
1907
1908 if (is_main_thread)
1909 {
1910 // We only set the exit status and notify the delegate if we haven't already set the process
1911 // state to an exited state. We normally should have received a SIGTRAP | (PTRACE_EVENT_EXIT << 8)
1912 // for the main thread.
1913 const bool already_notified = (process->GetState() == StateType::eStateExited) | (process->GetState () == StateType::eStateCrashed);
1914 if (!already_notified)
1915 {
1916 if (log)
1917 log->Printf ("NativeProcessLinux::%s() tid = %" PRIu64 " handling main thread exit (%s), expected exit state already set but state was %s instead, setting exit state now", __FUNCTION__, pid, thread_found ? "stopped tracking thread metadata" : "thread metadata not found", StateAsCString (process->GetState ()));
1918 // The main thread exited. We're done monitoring. Report to delegate.
1919 process->SetExitStatus (convert_pid_status_to_exit_type (status), convert_pid_status_to_return_code (status), nullptr, true);
1920
1921 // Notify delegate that our process has exited.
1922 process->SetState (StateType::eStateExited, true);
1923 }
1924 else
1925 {
1926 if (log)
1927 log->Printf ("NativeProcessLinux::%s() tid = %" PRIu64 " main thread now exited (%s)", __FUNCTION__, pid, thread_found ? "stopped tracking thread metadata" : "thread metadata not found");
1928 }
1929 return true;
1930 }
1931 else
1932 {
1933 // Do we want to report to the delegate in this case? I think not. If this was an orderly
1934 // thread exit, we would already have received the SIGTRAP | (PTRACE_EVENT_EXIT << 8) signal,
1935 // and we would have done an all-stop then.
1936 if (log)
1937 log->Printf ("NativeProcessLinux::%s() tid = %" PRIu64 " handling non-main thread exit (%s)", __FUNCTION__, pid, thread_found ? "stopped tracking thread metadata" : "thread metadata not found");
1938
1939 // Not the main thread, we keep going.
1940 return false;
1941 }
1942 }
1943
1944 // Get details on the signal raised.
1945 siginfo_t info;
1946 int ptrace_err = 0;
1947
1948 if (!process->GetSignalInfo (pid, &info, ptrace_err))
1949 {
1950 if (ptrace_err == EINVAL)
1951 {
1952 // This is the first part of the Linux ptrace group-stop mechanism.
Todd Fialaa9882ce2014-08-28 15:46:54 +00001953 // (The other thing it can conceivably be is a call on a pid that no
1954 // longer exists for some reason).
Todd Fialaaf245d12014-06-30 21:05:18 +00001955 // The tracer (i.e. NativeProcessLinux) is expected to inject the signal
1956 // into the tracee (i.e. inferior) at this point.
1957 if (log)
Todd Fialaa9882ce2014-08-28 15:46:54 +00001958 log->Printf ("NativeProcessLinux::%s resuming from group-stop", __FUNCTION__);
Todd Fialaaf245d12014-06-30 21:05:18 +00001959
1960 // The inferior process is in 'group-stop', so deliver the stopping signal.
1961 const bool signal_delivered = process->Resume (pid, info.si_signo);
1962 if (log)
Todd Fialaa9882ce2014-08-28 15:46:54 +00001963 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " group-stop signal delivery of signal 0x%x (%s) - %s", __FUNCTION__, pid, info.si_signo, GetUnixSignals ().GetSignalAsCString (info.si_signo), signal_delivered ? "success" : "failed");
Todd Fialaaf245d12014-06-30 21:05:18 +00001964
Todd Fialaa9882ce2014-08-28 15:46:54 +00001965 if (signal_delivered)
1966 {
1967 // All is well.
1968 stop_monitoring = false;
1969 }
1970 else
1971 {
1972 if (log)
1973 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " something looks horribly wrong - like the process we're monitoring died. Stop monitoring it.", __FUNCTION__, pid);
Todd Fialaaf245d12014-06-30 21:05:18 +00001974
Todd Fialaa9882ce2014-08-28 15:46:54 +00001975 // Stop monitoring now.
1976 return true;
1977 }
Todd Fialaaf245d12014-06-30 21:05:18 +00001978 }
1979 else
1980 {
1981 // ptrace(GETSIGINFO) failed (but not due to group-stop).
1982
1983 // A return value of ESRCH means the thread/process is no longer on the system,
1984 // so it was killed somehow outside of our control. Either way, we can't do anything
1985 // with it anymore.
1986
1987 // We stop monitoring if it was the main thread.
1988 stop_monitoring = is_main_thread;
1989
1990 // Stop tracking the metadata for the thread since it's entirely off the system now.
1991 const bool thread_found = process->StopTrackingThread (pid);
1992
1993 if (log)
1994 log->Printf ("NativeProcessLinux::%s GetSignalInfo failed: %s, tid = %" PRIu64 ", signal = %d, status = %d (%s, %s, %s)",
1995 __FUNCTION__, strerror(ptrace_err), pid, signal, status, ptrace_err == ESRCH ? "thread/process killed" : "unknown reason", is_main_thread ? "is main thread" : "is not main thread", thread_found ? "thread metadata removed" : "thread metadata not found");
1996
1997 if (is_main_thread)
1998 {
1999 // Notify the delegate - our process is not available but appears to have been killed outside
2000 // our control. Is eStateExited the right exit state in this case?
2001 process->SetExitStatus (convert_pid_status_to_exit_type (status), convert_pid_status_to_return_code (status), nullptr, true);
2002 process->SetState (StateType::eStateExited, true);
2003 }
2004 else
2005 {
2006 // This thread was pulled out from underneath us. Anything to do here? Do we want to do an all stop?
2007 if (log)
2008 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 " non-main thread exit occurred, didn't tell delegate anything since thread disappeared out from underneath us", __FUNCTION__, process->GetID (), pid);
2009 }
2010 }
2011 }
2012 else
2013 {
2014 // We have retrieved the signal info. Dispatch appropriately.
2015 if (info.si_signo == SIGTRAP)
2016 process->MonitorSIGTRAP(&info, pid);
2017 else
2018 process->MonitorSignal(&info, pid, exited);
2019
2020 stop_monitoring = false;
2021 }
2022
2023 return stop_monitoring;
2024}
2025
2026void
2027NativeProcessLinux::MonitorSIGTRAP(const siginfo_t *info, lldb::pid_t pid)
2028{
2029 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2030 const bool is_main_thread = (pid == GetID ());
2031
2032 assert(info && info->si_signo == SIGTRAP && "Unexpected child signal!");
2033 if (!info)
2034 return;
2035
2036 // See if we can find a thread for this signal.
2037 NativeThreadProtocolSP thread_sp = GetThreadByID (pid);
2038 if (!thread_sp)
2039 {
2040 if (log)
2041 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " no thread found for tid %" PRIu64, __FUNCTION__, GetID (), pid);
2042 }
2043
2044 switch (info->si_code)
2045 {
2046 // TODO: these two cases are required if we want to support tracing of the inferiors' children. We'd need this to debug a monitor.
2047 // case (SIGTRAP | (PTRACE_EVENT_FORK << 8)):
2048 // case (SIGTRAP | (PTRACE_EVENT_VFORK << 8)):
2049
2050 case (SIGTRAP | (PTRACE_EVENT_CLONE << 8)):
2051 {
2052 lldb::tid_t tid = LLDB_INVALID_THREAD_ID;
2053
2054 unsigned long event_message = 0;
2055 if (GetEventMessage(pid, &event_message))
2056 tid = static_cast<lldb::tid_t> (event_message);
2057
2058 if (log)
2059 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " received thread creation event for tid %" PRIu64, __FUNCTION__, pid, tid);
2060
2061 // If we don't track the thread yet: create it, mark as stopped.
2062 // If we do track it, this is the wait we needed. Now resume the new thread.
2063 // In all cases, resume the current (i.e. main process) thread.
2064 bool already_tracked = false;
2065 thread_sp = GetOrCreateThread (tid, already_tracked);
2066 assert (thread_sp.get() && "failed to get or create the tracking data for newly created inferior thread");
2067
2068 // If the thread was already tracked, it means the created thread already received its SI_USER notification of creation.
2069 if (already_tracked)
2070 {
2071 // FIXME loops like we want to stop all theads here.
2072 // StopAllThreads
2073
2074 // We can now resume the newly created thread since it is fully created.
2075 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetRunning ();
2076 Resume (tid, LLDB_INVALID_SIGNAL_NUMBER);
2077 }
2078 else
2079 {
2080 // Mark the thread as currently launching. Need to wait for SIGTRAP clone on the main thread before
2081 // this thread is ready to go.
2082 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetLaunching ();
2083 }
2084
2085 // In all cases, we can resume the main thread here.
2086 Resume (pid, LLDB_INVALID_SIGNAL_NUMBER);
2087 break;
2088 }
2089
2090 case (SIGTRAP | (PTRACE_EVENT_EXEC << 8)):
Todd Fialaa9882ce2014-08-28 15:46:54 +00002091 {
2092 NativeThreadProtocolSP main_thread_sp;
2093
Todd Fialaaf245d12014-06-30 21:05:18 +00002094 if (log)
2095 log->Printf ("NativeProcessLinux::%s() received exec event, code = %d", __FUNCTION__, info->si_code ^ SIGTRAP);
Todd Fialaa9882ce2014-08-28 15:46:54 +00002096
2097 // Remove all but the main thread here.
2098 // FIXME check if we really need to do this - how does ptrace behave under exec when multiple threads were present
2099 // before the exec? If we get all the detach signals right, we don't need to do this. However, it makes it clearer
2100 // what we should really be tracking.
2101 {
2102 Mutex::Locker locker (m_threads_mutex);
2103
2104 if (log)
2105 log->Printf ("NativeProcessLinux::%s exec received, stop tracking all but main thread", __FUNCTION__);
2106
2107 for (auto thread_sp : m_threads)
2108 {
2109 const bool is_main_thread = thread_sp && thread_sp->GetID () == GetID ();
2110 if (is_main_thread)
2111 {
2112 main_thread_sp = thread_sp;
2113 if (log)
2114 log->Printf ("NativeProcessLinux::%s found main thread with tid %" PRIu64 ", keeping", __FUNCTION__, main_thread_sp->GetID ());
2115 }
2116 else
2117 {
2118 if (log)
2119 log->Printf ("NativeProcessLinux::%s discarding non-main-thread tid %" PRIu64 " due to exec", __FUNCTION__, thread_sp->GetID ());
2120 }
2121 }
2122
2123 m_threads.clear ();
2124
2125 if (main_thread_sp)
2126 {
2127 m_threads.push_back (main_thread_sp);
2128 SetCurrentThreadID (main_thread_sp->GetID ());
2129 reinterpret_cast<NativeThreadLinux*>(main_thread_sp.get())->SetStoppedByExec ();
2130 }
2131 else
2132 {
2133 SetCurrentThreadID (LLDB_INVALID_THREAD_ID);
2134 if (log)
2135 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 "no main thread found, discarded all threads, we're in a no-thread state!", __FUNCTION__, GetID ());
2136 }
2137 }
2138
2139 // Let our delegate know we have just exec'd.
2140 NotifyDidExec ();
2141
2142 // If we have a main thread, indicate we are stopped.
2143 assert (main_thread_sp && "exec called during ptraced process but no main thread metadata tracked");
2144 SetState (StateType::eStateStopped);
2145
Todd Fialaaf245d12014-06-30 21:05:18 +00002146 break;
Todd Fialaa9882ce2014-08-28 15:46:54 +00002147 }
Todd Fialaaf245d12014-06-30 21:05:18 +00002148
2149 case (SIGTRAP | (PTRACE_EVENT_EXIT << 8)):
2150 {
2151 // The inferior process or one of its threads is about to exit.
2152 // Maintain the process or thread in a state of "limbo" until we are
2153 // explicitly commanded to detach, destroy, resume, etc.
2154 unsigned long data = 0;
2155 if (!GetEventMessage(pid, &data))
2156 data = -1;
2157
2158 if (log)
2159 {
2160 log->Printf ("NativeProcessLinux::%s() received PTRACE_EVENT_EXIT, data = %lx (WIFEXITED=%s,WIFSIGNALED=%s), pid = %" PRIu64 " (%s)",
2161 __FUNCTION__,
2162 data, WIFEXITED (data) ? "true" : "false", WIFSIGNALED (data) ? "true" : "false",
2163 pid,
2164 is_main_thread ? "is main thread" : "not main thread");
2165 }
2166
2167 // Set the thread to exited.
2168 if (thread_sp)
2169 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetExited ();
2170 else
2171 {
2172 if (log)
2173 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " failed to retrieve thread for tid %" PRIu64", cannot set thread state", __FUNCTION__, GetID (), pid);
2174 }
2175
2176 if (is_main_thread)
2177 {
2178 SetExitStatus (convert_pid_status_to_exit_type (data), convert_pid_status_to_return_code (data), nullptr, true);
2179 // Resume the thread so it completely exits.
2180 Resume (pid, LLDB_INVALID_SIGNAL_NUMBER);
2181 }
2182 else
2183 {
2184 // FIXME figure out the path where we plan to reap the metadata for the thread.
2185 }
2186
2187 break;
2188 }
2189
2190 case 0:
2191 case TRAP_TRACE:
2192 // We receive this on single stepping.
2193 if (log)
2194 log->Printf ("NativeProcessLinux::%s() received trace event, pid = %" PRIu64 " (single stepping)", __FUNCTION__, pid);
2195
2196 if (thread_sp)
2197 {
2198 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (SIGTRAP);
2199 SetCurrentThreadID (thread_sp->GetID ());
2200 }
2201 else
2202 {
2203 if (log)
2204 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " tid %" PRIu64 " single stepping received trace but thread not found", __FUNCTION__, GetID (), pid);
2205 }
2206
2207 // Tell the process we have a stop (from single stepping).
2208 SetState (StateType::eStateStopped, true);
2209 break;
2210
2211 case SI_KERNEL:
2212 case TRAP_BRKPT:
2213 if (log)
2214 log->Printf ("NativeProcessLinux::%s() received breakpoint event, pid = %" PRIu64, __FUNCTION__, pid);
2215
2216 // Mark the thread as stopped at breakpoint.
2217 if (thread_sp)
2218 {
2219 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (SIGTRAP);
2220 Error error = FixupBreakpointPCAsNeeded (thread_sp);
2221 if (error.Fail ())
2222 {
2223 if (log)
2224 log->Printf ("NativeProcessLinux::%s() pid = %" PRIu64 " fixup: %s", __FUNCTION__, pid, error.AsCString ());
2225 }
2226 }
2227 else
2228 {
2229 if (log)
2230 log->Printf ("NativeProcessLinux::%s() pid = %" PRIu64 ": warning, cannot process software breakpoint since no thread metadata", __FUNCTION__, pid);
2231 }
2232
2233
2234 // Tell the process we have a stop from this thread.
2235 SetCurrentThreadID (pid);
2236 SetState (StateType::eStateStopped, true);
2237 break;
2238
2239 case TRAP_HWBKPT:
2240 if (log)
2241 log->Printf ("NativeProcessLinux::%s() received watchpoint event, pid = %" PRIu64, __FUNCTION__, pid);
2242
2243 // Mark the thread as stopped at watchpoint.
2244 // The address is at (lldb::addr_t)info->si_addr if we need it.
2245 if (thread_sp)
2246 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (SIGTRAP);
2247 else
2248 {
2249 if (log)
2250 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " tid %" PRIu64 ": warning, cannot process hardware breakpoint since no thread metadata", __FUNCTION__, GetID (), pid);
2251 }
2252
2253 // Tell the process we have a stop from this thread.
2254 SetCurrentThreadID (pid);
2255 SetState (StateType::eStateStopped, true);
2256 break;
2257
2258 case SIGTRAP:
2259 case (SIGTRAP | 0x80):
2260 if (log)
2261 log->Printf ("NativeProcessLinux::%s() received system call stop event, pid %" PRIu64 "tid %" PRIu64, __FUNCTION__, GetID (), pid);
2262 // Ignore these signals until we know more about them.
2263 Resume(pid, 0);
2264 break;
2265
2266 default:
2267 assert(false && "Unexpected SIGTRAP code!");
2268 if (log)
2269 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 "tid %" PRIu64 " received unhandled SIGTRAP code: 0x%" PRIx64, __FUNCTION__, GetID (), pid, static_cast<uint64_t> (SIGTRAP | (PTRACE_EVENT_CLONE << 8)));
2270 break;
2271
2272 }
2273}
2274
2275void
2276NativeProcessLinux::MonitorSignal(const siginfo_t *info, lldb::pid_t pid, bool exited)
2277{
2278 int signo = info->si_signo;
2279
2280 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2281
2282 // POSIX says that process behaviour is undefined after it ignores a SIGFPE,
2283 // SIGILL, SIGSEGV, or SIGBUS *unless* that signal was generated by a
2284 // kill(2) or raise(3). Similarly for tgkill(2) on Linux.
2285 //
2286 // IOW, user generated signals never generate what we consider to be a
2287 // "crash".
2288 //
2289 // Similarly, ACK signals generated by this monitor.
2290
2291 // See if we can find a thread for this signal.
2292 NativeThreadProtocolSP thread_sp = GetThreadByID (pid);
2293 if (!thread_sp)
2294 {
2295 if (log)
2296 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " no thread found for tid %" PRIu64, __FUNCTION__, GetID (), pid);
2297 }
2298
2299 // Handle the signal.
2300 if (info->si_code == SI_TKILL || info->si_code == SI_USER)
2301 {
2302 if (log)
2303 log->Printf ("NativeProcessLinux::%s() received signal %s (%d) with code %s, (siginfo pid = %d (%s), waitpid pid = %" PRIu64 ")",
2304 __FUNCTION__,
2305 GetUnixSignals ().GetSignalAsCString (signo),
2306 signo,
2307 (info->si_code == SI_TKILL ? "SI_TKILL" : "SI_USER"),
2308 info->si_pid,
2309 (info->si_pid == getpid ()) ? "is monitor" : "is not monitor",
2310 pid);
Todd Fiala58a2f662014-08-12 17:02:07 +00002311 }
Todd Fialaaf245d12014-06-30 21:05:18 +00002312
Todd Fiala58a2f662014-08-12 17:02:07 +00002313 // Check for new thread notification.
2314 if ((info->si_pid == 0) && (info->si_code == SI_USER))
2315 {
2316 // A new thread creation is being signaled. This is one of two parts that come in
2317 // a non-deterministic order. pid is the thread id.
2318 if (log)
2319 log->Printf ("NativeProcessLinux::%s() pid = %" PRIu64 " tid %" PRIu64 ": new thread notification",
2320 __FUNCTION__, GetID (), pid);
2321
2322 // Did we already create the thread?
2323 bool already_tracked = false;
2324 thread_sp = GetOrCreateThread (pid, already_tracked);
2325 assert (thread_sp.get() && "failed to get or create the tracking data for newly created inferior thread");
2326
2327 // If the thread was already tracked, it means the main thread already received its SIGTRAP for the create.
2328 if (already_tracked)
Todd Fialaaf245d12014-06-30 21:05:18 +00002329 {
Todd Fiala58a2f662014-08-12 17:02:07 +00002330 // We can now resume this thread up since it is fully created.
2331 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetRunning ();
2332 Resume (thread_sp->GetID (), LLDB_INVALID_SIGNAL_NUMBER);
Todd Fialaaf245d12014-06-30 21:05:18 +00002333 }
2334 else
2335 {
Todd Fiala58a2f662014-08-12 17:02:07 +00002336 // Mark the thread as currently launching. Need to wait for SIGTRAP clone on the main thread before
2337 // this thread is ready to go.
2338 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetLaunching ();
Todd Fialaaf245d12014-06-30 21:05:18 +00002339 }
2340
Todd Fiala58a2f662014-08-12 17:02:07 +00002341 // Done handling.
2342 return;
2343 }
2344
2345 // Check for thread stop notification.
2346 if ((info->si_pid == getpid ()) && (info->si_code == SI_TKILL) && (signo == SIGSTOP))
2347 {
2348 // This is a tgkill()-based stop.
2349 if (thread_sp)
2350 {
2351 // An inferior thread just stopped. Mark it as such.
2352 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (signo);
2353 SetCurrentThreadID (thread_sp->GetID ());
2354
2355 // Remove this tid from the wait-for-stop set.
2356 Mutex::Locker locker (m_wait_for_stop_tids_mutex);
2357
2358 auto removed_count = m_wait_for_stop_tids.erase (thread_sp->GetID ());
2359 if (removed_count < 1)
2360 {
2361 log->Printf ("NativeProcessLinux::%s() pid = %" PRIu64 " tid %" PRIu64 ": tgkill()-stopped thread not in m_wait_for_stop_tids",
2362 __FUNCTION__, GetID (), thread_sp->GetID ());
2363
2364 }
2365
2366 // If this is the last thread in the m_wait_for_stop_tids, we need to notify
2367 // the delegate that a stop has occurred now that every thread that was supposed
2368 // to stop has stopped.
2369 if (m_wait_for_stop_tids.empty ())
2370 {
2371 if (log)
2372 {
2373 log->Printf ("NativeProcessLinux::%s() pid %" PRIu64 " tid %" PRIu64 ", setting process state to stopped now that all tids marked for stop have completed",
2374 __FUNCTION__,
2375 GetID (),
2376 pid);
2377 }
2378 SetState (StateType::eStateStopped, true);
2379 }
2380 }
2381
2382 // Done handling.
Todd Fialaaf245d12014-06-30 21:05:18 +00002383 return;
2384 }
2385
2386 if (log)
2387 log->Printf ("NativeProcessLinux::%s() received signal %s", __FUNCTION__, GetUnixSignals ().GetSignalAsCString (signo));
2388
2389 switch (signo)
2390 {
2391 case SIGSEGV:
2392 {
2393 lldb::addr_t fault_addr = reinterpret_cast<lldb::addr_t>(info->si_addr);
2394
2395 // FIXME figure out how to propagate this properly. Seems like it
2396 // should go in ThreadStopInfo.
2397 // We can get more details on the exact nature of the crash here.
2398 // ProcessMessage::CrashReason reason = GetCrashReasonForSIGSEGV(info);
2399 if (!exited)
2400 {
2401 // This is just a pre-signal-delivery notification of the incoming signal.
2402 // Send a stop to the debugger.
2403 if (thread_sp)
2404 {
2405 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (signo);
2406 SetCurrentThreadID (thread_sp->GetID ());
2407 }
2408 SetState (StateType::eStateStopped, true);
2409 }
2410 else
2411 {
2412 if (thread_sp)
2413 {
2414 // FIXME figure out what type this is.
2415 const uint64_t exception_type = static_cast<uint64_t> (SIGSEGV);
2416 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetCrashedWithException (exception_type, fault_addr);
2417 }
2418 SetState (StateType::eStateCrashed, true);
2419 }
2420 }
2421 break;
2422
Todd Fiala58a2f662014-08-12 17:02:07 +00002423 case SIGABRT:
Todd Fialaaf245d12014-06-30 21:05:18 +00002424 case SIGILL:
Todd Fialaaf245d12014-06-30 21:05:18 +00002425 case SIGFPE:
Todd Fialaaf245d12014-06-30 21:05:18 +00002426 case SIGBUS:
2427 {
Todd Fiala58a2f662014-08-12 17:02:07 +00002428 // Break these out into separate cases once I have more data for each type of signal.
2429 lldb::addr_t fault_addr = reinterpret_cast<lldb::addr_t>(info->si_addr);
2430 if (!exited)
2431 {
2432 // This is just a pre-signal-delivery notification of the incoming signal.
2433 // Send a stop to the debugger.
2434 if (thread_sp)
2435 {
2436 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetStoppedBySignal (signo);
2437 SetCurrentThreadID (thread_sp->GetID ());
2438 }
2439 SetState (StateType::eStateStopped, true);
2440 }
2441 else
2442 {
2443 if (thread_sp)
2444 {
2445 // FIXME figure out how to report exit by signal correctly.
2446 const uint64_t exception_type = static_cast<uint64_t> (SIGABRT);
2447 reinterpret_cast<NativeThreadLinux*> (thread_sp.get ())->SetCrashedWithException (exception_type, fault_addr);
2448 }
2449 SetState (StateType::eStateCrashed, true);
2450 }
Todd Fialaaf245d12014-06-30 21:05:18 +00002451 }
2452 break;
2453
2454 default:
Todd Fiala58a2f662014-08-12 17:02:07 +00002455 if (log)
2456 log->Printf ("NativeProcessLinux::%s unhandled signal %s (%d)", __FUNCTION__, GetUnixSignals ().GetSignalAsCString (signo), signo);
Todd Fialaaf245d12014-06-30 21:05:18 +00002457 break;
2458 }
2459}
2460
2461Error
2462NativeProcessLinux::Resume (const ResumeActionList &resume_actions)
2463{
2464 Error error;
2465
2466 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS | LIBLLDB_LOG_THREAD));
2467 if (log)
2468 log->Printf ("NativeProcessLinux::%s called: pid %" PRIu64, __FUNCTION__, GetID ());
2469
2470 int run_thread_count = 0;
2471 int stop_thread_count = 0;
2472 int step_thread_count = 0;
2473
2474 std::vector<NativeThreadProtocolSP> new_stop_threads;
2475
2476 Mutex::Locker locker (m_threads_mutex);
2477 for (auto thread_sp : m_threads)
2478 {
2479 assert (thread_sp && "thread list should not contain NULL threads");
2480 NativeThreadLinux *const linux_thread_p = reinterpret_cast<NativeThreadLinux*> (thread_sp.get ());
2481
2482 const ResumeAction *const action = resume_actions.GetActionForThread (thread_sp->GetID (), true);
2483 assert (action && "NULL ResumeAction returned for thread during Resume ()");
2484
2485 if (log)
2486 {
2487 log->Printf ("NativeProcessLinux::%s processing resume action state %s for pid %" PRIu64 " tid %" PRIu64,
2488 __FUNCTION__, StateAsCString (action->state), GetID (), thread_sp->GetID ());
2489 }
2490
2491 switch (action->state)
2492 {
2493 case eStateRunning:
2494 // Run the thread, possibly feeding it the signal.
2495 linux_thread_p->SetRunning ();
2496 if (action->signal > 0)
2497 {
2498 // Resume the thread and deliver the given signal,
2499 // then mark as delivered.
2500 Resume (thread_sp->GetID (), action->signal);
2501 resume_actions.SetSignalHandledForThread (thread_sp->GetID ());
2502 }
2503 else
2504 {
2505 // Just resume the thread with no signal.
2506 Resume (thread_sp->GetID (), LLDB_INVALID_SIGNAL_NUMBER);
2507 }
2508 ++run_thread_count;
2509 break;
2510
2511 case eStateStepping:
2512 // Note: if we have multiple threads, we may need to stop
2513 // the other threads first, then step this one.
2514 linux_thread_p->SetStepping ();
2515 if (SingleStep (thread_sp->GetID (), 0))
2516 {
2517 if (log)
2518 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 " single step succeeded",
2519 __FUNCTION__, GetID (), thread_sp->GetID ());
2520 }
2521 else
2522 {
2523 if (log)
2524 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 " single step failed",
2525 __FUNCTION__, GetID (), thread_sp->GetID ());
2526 }
2527 ++step_thread_count;
2528 break;
2529
2530 case eStateSuspended:
2531 case eStateStopped:
2532 if (!StateIsStoppedState (linux_thread_p->GetState (), false))
2533 new_stop_threads.push_back (thread_sp);
2534 else
2535 {
2536 if (log)
2537 log->Printf ("NativeProcessLinux::%s no need to stop pid %" PRIu64 " tid %" PRIu64 ", thread state already %s",
2538 __FUNCTION__, GetID (), thread_sp->GetID (), StateAsCString (linux_thread_p->GetState ()));
2539 }
2540
2541 ++stop_thread_count;
2542 break;
2543
2544 default:
2545 return Error ("NativeProcessLinux::%s (): unexpected state %s specified for pid %" PRIu64 ", tid %" PRIu64,
2546 __FUNCTION__, StateAsCString (action->state), GetID (), thread_sp->GetID ());
2547 }
2548 }
2549
2550 // If any thread was set to run, notify the process state as running.
2551 if (run_thread_count > 0)
2552 SetState (StateType::eStateRunning, true);
2553
2554 // Now do a tgkill SIGSTOP on each thread we want to stop.
2555 if (!new_stop_threads.empty ())
2556 {
2557 // Lock the m_wait_for_stop_tids set so we can fill it with every thread we expect to have stopped.
2558 Mutex::Locker stop_thread_id_locker (m_wait_for_stop_tids_mutex);
2559 for (auto thread_sp : new_stop_threads)
2560 {
2561 // Send a stop signal to the thread.
2562 const int result = tgkill (GetID (), thread_sp->GetID (), SIGSTOP);
2563 if (result != 0)
2564 {
2565 // tgkill failed.
2566 if (log)
2567 log->Printf ("NativeProcessLinux::%s error: tgkill SIGSTOP for pid %" PRIu64 " tid %" PRIu64 "failed, retval %d",
2568 __FUNCTION__, GetID (), thread_sp->GetID (), result);
2569 }
2570 else
2571 {
2572 // tgkill succeeded. Don't mark the thread state, though. Let the signal
2573 // handling mark it.
2574 if (log)
2575 log->Printf ("NativeProcessLinux::%s tgkill SIGSTOP for pid %" PRIu64 " tid %" PRIu64 " succeeded",
2576 __FUNCTION__, GetID (), thread_sp->GetID ());
2577
2578 // Add it to the set of threads we expect to signal a stop.
2579 // We won't tell the delegate about it until this list drains to empty.
2580 m_wait_for_stop_tids.insert (thread_sp->GetID ());
2581 }
2582 }
2583 }
2584
2585 return error;
2586}
2587
2588Error
2589NativeProcessLinux::Halt ()
2590{
2591 Error error;
2592
2593 // FIXME check if we're already stopped
2594 const bool is_stopped = false;
2595 if (is_stopped)
2596 return error;
2597
2598 if (kill (GetID (), SIGSTOP) != 0)
2599 error.SetErrorToErrno ();
2600
2601 return error;
2602}
2603
2604Error
2605NativeProcessLinux::Detach ()
2606{
2607 Error error;
2608
2609 // Tell ptrace to detach from the process.
2610 if (GetID () != LLDB_INVALID_PROCESS_ID)
2611 error = Detach (GetID ());
2612
2613 // Stop monitoring the inferior.
2614 StopMonitor ();
2615
2616 // No error.
2617 return error;
2618}
2619
2620Error
2621NativeProcessLinux::Signal (int signo)
2622{
2623 Error error;
2624
2625 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2626 if (log)
2627 log->Printf ("NativeProcessLinux::%s: sending signal %d (%s) to pid %" PRIu64,
2628 __FUNCTION__, signo, GetUnixSignals ().GetSignalAsCString (signo), GetID ());
2629
2630 if (kill(GetID(), signo))
2631 error.SetErrorToErrno();
2632
2633 return error;
2634}
2635
2636Error
2637NativeProcessLinux::Kill ()
2638{
2639 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2640 if (log)
2641 log->Printf ("NativeProcessLinux::%s called for PID %" PRIu64, __FUNCTION__, GetID ());
2642
2643 Error error;
2644
2645 switch (m_state)
2646 {
2647 case StateType::eStateInvalid:
2648 case StateType::eStateExited:
2649 case StateType::eStateCrashed:
2650 case StateType::eStateDetached:
2651 case StateType::eStateUnloaded:
2652 // Nothing to do - the process is already dead.
2653 if (log)
2654 log->Printf ("NativeProcessLinux::%s ignored for PID %" PRIu64 " due to current state: %s", __FUNCTION__, GetID (), StateAsCString (m_state));
2655 return error;
2656
2657 case StateType::eStateConnected:
2658 case StateType::eStateAttaching:
2659 case StateType::eStateLaunching:
2660 case StateType::eStateStopped:
2661 case StateType::eStateRunning:
2662 case StateType::eStateStepping:
2663 case StateType::eStateSuspended:
2664 // We can try to kill a process in these states.
2665 break;
2666 }
2667
2668 if (kill (GetID (), SIGKILL) != 0)
2669 {
2670 error.SetErrorToErrno ();
2671 return error;
2672 }
2673
2674 return error;
2675}
2676
2677static Error
2678ParseMemoryRegionInfoFromProcMapsLine (const std::string &maps_line, MemoryRegionInfo &memory_region_info)
2679{
2680 memory_region_info.Clear();
2681
2682 StringExtractor line_extractor (maps_line.c_str ());
2683
2684 // Format: {address_start_hex}-{address_end_hex} perms offset dev inode pathname
2685 // perms: rwxp (letter is present if set, '-' if not, final character is p=private, s=shared).
2686
2687 // Parse out the starting address
2688 lldb::addr_t start_address = line_extractor.GetHexMaxU64 (false, 0);
2689
2690 // Parse out hyphen separating start and end address from range.
2691 if (!line_extractor.GetBytesLeft () || (line_extractor.GetChar () != '-'))
2692 return Error ("malformed /proc/{pid}/maps entry, missing dash between address range");
2693
2694 // Parse out the ending address
2695 lldb::addr_t end_address = line_extractor.GetHexMaxU64 (false, start_address);
2696
2697 // Parse out the space after the address.
2698 if (!line_extractor.GetBytesLeft () || (line_extractor.GetChar () != ' '))
2699 return Error ("malformed /proc/{pid}/maps entry, missing space after range");
2700
2701 // Save the range.
2702 memory_region_info.GetRange ().SetRangeBase (start_address);
2703 memory_region_info.GetRange ().SetRangeEnd (end_address);
2704
2705 // Parse out each permission entry.
2706 if (line_extractor.GetBytesLeft () < 4)
2707 return Error ("malformed /proc/{pid}/maps entry, missing some portion of permissions");
2708
2709 // Handle read permission.
2710 const char read_perm_char = line_extractor.GetChar ();
2711 if (read_perm_char == 'r')
2712 memory_region_info.SetReadable (MemoryRegionInfo::OptionalBool::eYes);
2713 else
2714 {
2715 assert ( (read_perm_char == '-') && "unexpected /proc/{pid}/maps read permission char" );
2716 memory_region_info.SetReadable (MemoryRegionInfo::OptionalBool::eNo);
2717 }
2718
2719 // Handle write permission.
2720 const char write_perm_char = line_extractor.GetChar ();
2721 if (write_perm_char == 'w')
2722 memory_region_info.SetWritable (MemoryRegionInfo::OptionalBool::eYes);
2723 else
2724 {
2725 assert ( (write_perm_char == '-') && "unexpected /proc/{pid}/maps write permission char" );
2726 memory_region_info.SetWritable (MemoryRegionInfo::OptionalBool::eNo);
2727 }
2728
2729 // Handle execute permission.
2730 const char exec_perm_char = line_extractor.GetChar ();
2731 if (exec_perm_char == 'x')
2732 memory_region_info.SetExecutable (MemoryRegionInfo::OptionalBool::eYes);
2733 else
2734 {
2735 assert ( (exec_perm_char == '-') && "unexpected /proc/{pid}/maps exec permission char" );
2736 memory_region_info.SetExecutable (MemoryRegionInfo::OptionalBool::eNo);
2737 }
2738
2739 return Error ();
2740}
2741
2742Error
2743NativeProcessLinux::GetMemoryRegionInfo (lldb::addr_t load_addr, MemoryRegionInfo &range_info)
2744{
2745 // FIXME review that the final memory region returned extends to the end of the virtual address space,
2746 // with no perms if it is not mapped.
2747
2748 // Use an approach that reads memory regions from /proc/{pid}/maps.
2749 // Assume proc maps entries are in ascending order.
2750 // FIXME assert if we find differently.
2751 Mutex::Locker locker (m_mem_region_cache_mutex);
2752
2753 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2754 Error error;
2755
2756 if (m_supports_mem_region == LazyBool::eLazyBoolNo)
2757 {
2758 // We're done.
2759 error.SetErrorString ("unsupported");
2760 return error;
2761 }
2762
2763 // If our cache is empty, pull the latest. There should always be at least one memory region
2764 // if memory region handling is supported.
2765 if (m_mem_region_cache.empty ())
2766 {
2767 error = ProcFileReader::ProcessLineByLine (GetID (), "maps",
2768 [&] (const std::string &line) -> bool
2769 {
2770 MemoryRegionInfo info;
2771 const Error parse_error = ParseMemoryRegionInfoFromProcMapsLine (line, info);
2772 if (parse_error.Success ())
2773 {
2774 m_mem_region_cache.push_back (info);
2775 return true;
2776 }
2777 else
2778 {
2779 if (log)
2780 log->Printf ("NativeProcessLinux::%s failed to parse proc maps line '%s': %s", __FUNCTION__, line.c_str (), error.AsCString ());
2781 return false;
2782 }
2783 });
2784
2785 // If we had an error, we'll mark unsupported.
2786 if (error.Fail ())
2787 {
2788 m_supports_mem_region = LazyBool::eLazyBoolNo;
2789 return error;
2790 }
2791 else if (m_mem_region_cache.empty ())
2792 {
2793 // No entries after attempting to read them. This shouldn't happen if /proc/{pid}/maps
2794 // is supported. Assume we don't support map entries via procfs.
2795 if (log)
2796 log->Printf ("NativeProcessLinux::%s failed to find any procfs maps entries, assuming no support for memory region metadata retrieval", __FUNCTION__);
2797 m_supports_mem_region = LazyBool::eLazyBoolNo;
2798 error.SetErrorString ("not supported");
2799 return error;
2800 }
2801
2802 if (log)
2803 log->Printf ("NativeProcessLinux::%s read %" PRIu64 " memory region entries from /proc/%" PRIu64 "/maps", __FUNCTION__, static_cast<uint64_t> (m_mem_region_cache.size ()), GetID ());
2804
2805 // We support memory retrieval, remember that.
2806 m_supports_mem_region = LazyBool::eLazyBoolYes;
2807 }
2808 else
2809 {
2810 if (log)
2811 log->Printf ("NativeProcessLinux::%s reusing %" PRIu64 " cached memory region entries", __FUNCTION__, static_cast<uint64_t> (m_mem_region_cache.size ()));
2812 }
2813
2814 lldb::addr_t prev_base_address = 0;
2815
2816 // FIXME start by finding the last region that is <= target address using binary search. Data is sorted.
2817 // There can be a ton of regions on pthreads apps with lots of threads.
2818 for (auto it = m_mem_region_cache.begin(); it != m_mem_region_cache.end (); ++it)
2819 {
2820 MemoryRegionInfo &proc_entry_info = *it;
2821
2822 // Sanity check assumption that /proc/{pid}/maps entries are ascending.
2823 assert ((proc_entry_info.GetRange ().GetRangeBase () >= prev_base_address) && "descending /proc/pid/maps entries detected, unexpected");
2824 prev_base_address = proc_entry_info.GetRange ().GetRangeBase ();
2825
2826 // If the target address comes before this entry, indicate distance to next region.
2827 if (load_addr < proc_entry_info.GetRange ().GetRangeBase ())
2828 {
2829 range_info.GetRange ().SetRangeBase (load_addr);
2830 range_info.GetRange ().SetByteSize (proc_entry_info.GetRange ().GetRangeBase () - load_addr);
2831 range_info.SetReadable (MemoryRegionInfo::OptionalBool::eNo);
2832 range_info.SetWritable (MemoryRegionInfo::OptionalBool::eNo);
2833 range_info.SetExecutable (MemoryRegionInfo::OptionalBool::eNo);
2834
2835 return error;
2836 }
2837 else if (proc_entry_info.GetRange ().Contains (load_addr))
2838 {
2839 // The target address is within the memory region we're processing here.
2840 range_info = proc_entry_info;
2841 return error;
2842 }
2843
2844 // The target memory address comes somewhere after the region we just parsed.
2845 }
2846
2847 // If we made it here, we didn't find an entry that contained the given address.
2848 error.SetErrorString ("address comes after final region");
2849
2850 if (log)
2851 log->Printf ("NativeProcessLinux::%s failed to find map entry for address 0x%" PRIx64 ": %s", __FUNCTION__, load_addr, error.AsCString ());
2852
2853 return error;
2854}
2855
2856void
2857NativeProcessLinux::DoStopIDBumped (uint32_t newBumpId)
2858{
2859 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2860 if (log)
2861 log->Printf ("NativeProcessLinux::%s(newBumpId=%" PRIu32 ") called", __FUNCTION__, newBumpId);
2862
2863 {
2864 Mutex::Locker locker (m_mem_region_cache_mutex);
2865 if (log)
2866 log->Printf ("NativeProcessLinux::%s clearing %" PRIu64 " entries from the cache", __FUNCTION__, static_cast<uint64_t> (m_mem_region_cache.size ()));
2867 m_mem_region_cache.clear ();
2868 }
2869}
2870
2871Error
2872NativeProcessLinux::AllocateMemory (
2873 lldb::addr_t size,
2874 uint32_t permissions,
2875 lldb::addr_t &addr)
2876{
2877 // FIXME implementing this requires the equivalent of
2878 // InferiorCallPOSIX::InferiorCallMmap, which depends on
2879 // functional ThreadPlans working with Native*Protocol.
2880#if 1
2881 return Error ("not implemented yet");
2882#else
2883 addr = LLDB_INVALID_ADDRESS;
2884
2885 unsigned prot = 0;
2886 if (permissions & lldb::ePermissionsReadable)
2887 prot |= eMmapProtRead;
2888 if (permissions & lldb::ePermissionsWritable)
2889 prot |= eMmapProtWrite;
2890 if (permissions & lldb::ePermissionsExecutable)
2891 prot |= eMmapProtExec;
2892
2893 // TODO implement this directly in NativeProcessLinux
2894 // (and lift to NativeProcessPOSIX if/when that class is
2895 // refactored out).
2896 if (InferiorCallMmap(this, addr, 0, size, prot,
2897 eMmapFlagsAnon | eMmapFlagsPrivate, -1, 0)) {
2898 m_addr_to_mmap_size[addr] = size;
2899 return Error ();
2900 } else {
2901 addr = LLDB_INVALID_ADDRESS;
2902 return Error("unable to allocate %" PRIu64 " bytes of memory with permissions %s", size, GetPermissionsAsCString (permissions));
2903 }
2904#endif
2905}
2906
2907Error
2908NativeProcessLinux::DeallocateMemory (lldb::addr_t addr)
2909{
2910 // FIXME see comments in AllocateMemory - required lower-level
2911 // bits not in place yet (ThreadPlans)
2912 return Error ("not implemented");
2913}
2914
2915lldb::addr_t
2916NativeProcessLinux::GetSharedLibraryInfoAddress ()
2917{
2918#if 1
2919 // punt on this for now
2920 return LLDB_INVALID_ADDRESS;
2921#else
2922 // Return the image info address for the exe module
2923#if 1
2924 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
2925
2926 ModuleSP module_sp;
2927 Error error = GetExeModuleSP (module_sp);
2928 if (error.Fail ())
2929 {
2930 if (log)
2931 log->Warning ("NativeProcessLinux::%s failed to retrieve exe module: %s", __FUNCTION__, error.AsCString ());
2932 return LLDB_INVALID_ADDRESS;
2933 }
2934
2935 if (module_sp == nullptr)
2936 {
2937 if (log)
2938 log->Warning ("NativeProcessLinux::%s exe module returned was NULL", __FUNCTION__);
2939 return LLDB_INVALID_ADDRESS;
2940 }
2941
2942 ObjectFileSP object_file_sp = module_sp->GetObjectFile ();
2943 if (object_file_sp == nullptr)
2944 {
2945 if (log)
2946 log->Warning ("NativeProcessLinux::%s exe module returned a NULL object file", __FUNCTION__);
2947 return LLDB_INVALID_ADDRESS;
2948 }
2949
2950 return obj_file_sp->GetImageInfoAddress();
2951#else
2952 Target *target = &GetTarget();
2953 ObjectFile *obj_file = target->GetExecutableModule()->GetObjectFile();
2954 Address addr = obj_file->GetImageInfoAddress(target);
2955
2956 if (addr.IsValid())
2957 return addr.GetLoadAddress(target);
2958 return LLDB_INVALID_ADDRESS;
2959#endif
2960#endif // punt on this for now
2961}
2962
2963size_t
2964NativeProcessLinux::UpdateThreads ()
2965{
2966 // The NativeProcessLinux monitoring threads are always up to date
2967 // with respect to thread state and they keep the thread list
2968 // populated properly. All this method needs to do is return the
2969 // thread count.
2970 Mutex::Locker locker (m_threads_mutex);
2971 return m_threads.size ();
2972}
2973
2974bool
2975NativeProcessLinux::GetArchitecture (ArchSpec &arch) const
2976{
2977 arch = m_arch;
2978 return true;
2979}
2980
2981Error
2982NativeProcessLinux::GetSoftwareBreakpointSize (NativeRegisterContextSP context_sp, uint32_t &actual_opcode_size)
2983{
2984 // FIXME put this behind a breakpoint protocol class that can be
2985 // set per architecture. Need ARM, MIPS support here.
Todd Fiala2afc5962014-08-21 16:42:31 +00002986 static const uint8_t g_aarch64_opcode[] = { 0x00, 0x00, 0x20, 0xd4 };
Todd Fialaaf245d12014-06-30 21:05:18 +00002987 static const uint8_t g_i386_opcode [] = { 0xCC };
2988
2989 switch (m_arch.GetMachine ())
2990 {
Todd Fiala2afc5962014-08-21 16:42:31 +00002991 case llvm::Triple::aarch64:
2992 actual_opcode_size = static_cast<uint32_t> (sizeof(g_aarch64_opcode));
2993 return Error ();
2994
Todd Fialaaf245d12014-06-30 21:05:18 +00002995 case llvm::Triple::x86:
2996 case llvm::Triple::x86_64:
2997 actual_opcode_size = static_cast<uint32_t> (sizeof(g_i386_opcode));
2998 return Error ();
2999
3000 default:
3001 assert(false && "CPU type not supported!");
3002 return Error ("CPU type not supported");
3003 }
3004}
3005
3006Error
3007NativeProcessLinux::SetBreakpoint (lldb::addr_t addr, uint32_t size, bool hardware)
3008{
3009 if (hardware)
3010 return Error ("NativeProcessLinux does not support hardware breakpoints");
3011 else
3012 return SetSoftwareBreakpoint (addr, size);
3013}
3014
3015Error
3016NativeProcessLinux::GetSoftwareBreakpointTrapOpcode (size_t trap_opcode_size_hint, size_t &actual_opcode_size, const uint8_t *&trap_opcode_bytes)
3017{
3018 // FIXME put this behind a breakpoint protocol class that can be
3019 // set per architecture. Need ARM, MIPS support here.
Todd Fiala2afc5962014-08-21 16:42:31 +00003020 static const uint8_t g_aarch64_opcode[] = { 0x00, 0x00, 0x20, 0xd4 };
Todd Fialaaf245d12014-06-30 21:05:18 +00003021 static const uint8_t g_i386_opcode [] = { 0xCC };
3022
3023 switch (m_arch.GetMachine ())
3024 {
Todd Fiala2afc5962014-08-21 16:42:31 +00003025 case llvm::Triple::aarch64:
3026 trap_opcode_bytes = g_aarch64_opcode;
3027 actual_opcode_size = sizeof(g_aarch64_opcode);
3028 return Error ();
3029
Todd Fialaaf245d12014-06-30 21:05:18 +00003030 case llvm::Triple::x86:
3031 case llvm::Triple::x86_64:
3032 trap_opcode_bytes = g_i386_opcode;
3033 actual_opcode_size = sizeof(g_i386_opcode);
3034 return Error ();
3035
3036 default:
3037 assert(false && "CPU type not supported!");
3038 return Error ("CPU type not supported");
3039 }
3040}
3041
3042#if 0
3043ProcessMessage::CrashReason
3044NativeProcessLinux::GetCrashReasonForSIGSEGV(const siginfo_t *info)
3045{
3046 ProcessMessage::CrashReason reason;
3047 assert(info->si_signo == SIGSEGV);
3048
3049 reason = ProcessMessage::eInvalidCrashReason;
3050
3051 switch (info->si_code)
3052 {
3053 default:
3054 assert(false && "unexpected si_code for SIGSEGV");
3055 break;
3056 case SI_KERNEL:
3057 // Linux will occasionally send spurious SI_KERNEL codes.
3058 // (this is poorly documented in sigaction)
3059 // One way to get this is via unaligned SIMD loads.
3060 reason = ProcessMessage::eInvalidAddress; // for lack of anything better
3061 break;
3062 case SEGV_MAPERR:
3063 reason = ProcessMessage::eInvalidAddress;
3064 break;
3065 case SEGV_ACCERR:
3066 reason = ProcessMessage::ePrivilegedAddress;
3067 break;
3068 }
3069
3070 return reason;
3071}
3072#endif
3073
3074
3075#if 0
3076ProcessMessage::CrashReason
3077NativeProcessLinux::GetCrashReasonForSIGILL(const siginfo_t *info)
3078{
3079 ProcessMessage::CrashReason reason;
3080 assert(info->si_signo == SIGILL);
3081
3082 reason = ProcessMessage::eInvalidCrashReason;
3083
3084 switch (info->si_code)
3085 {
3086 default:
3087 assert(false && "unexpected si_code for SIGILL");
3088 break;
3089 case ILL_ILLOPC:
3090 reason = ProcessMessage::eIllegalOpcode;
3091 break;
3092 case ILL_ILLOPN:
3093 reason = ProcessMessage::eIllegalOperand;
3094 break;
3095 case ILL_ILLADR:
3096 reason = ProcessMessage::eIllegalAddressingMode;
3097 break;
3098 case ILL_ILLTRP:
3099 reason = ProcessMessage::eIllegalTrap;
3100 break;
3101 case ILL_PRVOPC:
3102 reason = ProcessMessage::ePrivilegedOpcode;
3103 break;
3104 case ILL_PRVREG:
3105 reason = ProcessMessage::ePrivilegedRegister;
3106 break;
3107 case ILL_COPROC:
3108 reason = ProcessMessage::eCoprocessorError;
3109 break;
3110 case ILL_BADSTK:
3111 reason = ProcessMessage::eInternalStackError;
3112 break;
3113 }
3114
3115 return reason;
3116}
3117#endif
3118
3119#if 0
3120ProcessMessage::CrashReason
3121NativeProcessLinux::GetCrashReasonForSIGFPE(const siginfo_t *info)
3122{
3123 ProcessMessage::CrashReason reason;
3124 assert(info->si_signo == SIGFPE);
3125
3126 reason = ProcessMessage::eInvalidCrashReason;
3127
3128 switch (info->si_code)
3129 {
3130 default:
3131 assert(false && "unexpected si_code for SIGFPE");
3132 break;
3133 case FPE_INTDIV:
3134 reason = ProcessMessage::eIntegerDivideByZero;
3135 break;
3136 case FPE_INTOVF:
3137 reason = ProcessMessage::eIntegerOverflow;
3138 break;
3139 case FPE_FLTDIV:
3140 reason = ProcessMessage::eFloatDivideByZero;
3141 break;
3142 case FPE_FLTOVF:
3143 reason = ProcessMessage::eFloatOverflow;
3144 break;
3145 case FPE_FLTUND:
3146 reason = ProcessMessage::eFloatUnderflow;
3147 break;
3148 case FPE_FLTRES:
3149 reason = ProcessMessage::eFloatInexactResult;
3150 break;
3151 case FPE_FLTINV:
3152 reason = ProcessMessage::eFloatInvalidOperation;
3153 break;
3154 case FPE_FLTSUB:
3155 reason = ProcessMessage::eFloatSubscriptRange;
3156 break;
3157 }
3158
3159 return reason;
3160}
3161#endif
3162
3163#if 0
3164ProcessMessage::CrashReason
3165NativeProcessLinux::GetCrashReasonForSIGBUS(const siginfo_t *info)
3166{
3167 ProcessMessage::CrashReason reason;
3168 assert(info->si_signo == SIGBUS);
3169
3170 reason = ProcessMessage::eInvalidCrashReason;
3171
3172 switch (info->si_code)
3173 {
3174 default:
3175 assert(false && "unexpected si_code for SIGBUS");
3176 break;
3177 case BUS_ADRALN:
3178 reason = ProcessMessage::eIllegalAlignment;
3179 break;
3180 case BUS_ADRERR:
3181 reason = ProcessMessage::eIllegalAddress;
3182 break;
3183 case BUS_OBJERR:
3184 reason = ProcessMessage::eHardwareError;
3185 break;
3186 }
3187
3188 return reason;
3189}
3190#endif
3191
3192void
3193NativeProcessLinux::ServeOperation(OperationArgs *args)
3194{
3195 NativeProcessLinux *monitor = args->m_monitor;
3196
3197 // We are finised with the arguments and are ready to go. Sync with the
3198 // parent thread and start serving operations on the inferior.
3199 sem_post(&args->m_semaphore);
3200
3201 for(;;)
3202 {
3203 // wait for next pending operation
3204 if (sem_wait(&monitor->m_operation_pending))
3205 {
3206 if (errno == EINTR)
3207 continue;
3208 assert(false && "Unexpected errno from sem_wait");
3209 }
3210
3211 reinterpret_cast<Operation*>(monitor->m_operation)->Execute(monitor);
3212
3213 // notify calling thread that operation is complete
3214 sem_post(&monitor->m_operation_done);
3215 }
3216}
3217
3218void
3219NativeProcessLinux::DoOperation(void *op)
3220{
3221 Mutex::Locker lock(m_operation_mutex);
3222
3223 m_operation = op;
3224
3225 // notify operation thread that an operation is ready to be processed
3226 sem_post(&m_operation_pending);
3227
3228 // wait for operation to complete
3229 while (sem_wait(&m_operation_done))
3230 {
3231 if (errno == EINTR)
3232 continue;
3233 assert(false && "Unexpected errno from sem_wait");
3234 }
3235}
3236
3237Error
3238NativeProcessLinux::ReadMemory (lldb::addr_t addr, void *buf, lldb::addr_t size, lldb::addr_t &bytes_read)
3239{
3240 ReadOperation op(addr, buf, size, bytes_read);
3241 DoOperation(&op);
3242 return op.GetError ();
3243}
3244
3245Error
3246NativeProcessLinux::WriteMemory (lldb::addr_t addr, const void *buf, lldb::addr_t size, lldb::addr_t &bytes_written)
3247{
3248 WriteOperation op(addr, buf, size, bytes_written);
3249 DoOperation(&op);
3250 return op.GetError ();
3251}
3252
3253bool
3254NativeProcessLinux::ReadRegisterValue(lldb::tid_t tid, uint32_t offset, const char* reg_name,
3255 uint32_t size, RegisterValue &value)
3256{
3257 bool result;
3258 ReadRegOperation op(tid, offset, reg_name, value, result);
3259 DoOperation(&op);
3260 return result;
3261}
3262
3263bool
3264NativeProcessLinux::WriteRegisterValue(lldb::tid_t tid, unsigned offset,
3265 const char* reg_name, const RegisterValue &value)
3266{
3267 bool result;
3268 WriteRegOperation op(tid, offset, reg_name, value, result);
3269 DoOperation(&op);
3270 return result;
3271}
3272
3273bool
3274NativeProcessLinux::ReadGPR(lldb::tid_t tid, void *buf, size_t buf_size)
3275{
3276 bool result;
3277 ReadGPROperation op(tid, buf, buf_size, result);
3278 DoOperation(&op);
3279 return result;
3280}
3281
3282bool
3283NativeProcessLinux::ReadFPR(lldb::tid_t tid, void *buf, size_t buf_size)
3284{
3285 bool result;
3286 ReadFPROperation op(tid, buf, buf_size, result);
3287 DoOperation(&op);
3288 return result;
3289}
3290
3291bool
3292NativeProcessLinux::ReadRegisterSet(lldb::tid_t tid, void *buf, size_t buf_size, unsigned int regset)
3293{
3294 bool result;
3295 ReadRegisterSetOperation op(tid, buf, buf_size, regset, result);
3296 DoOperation(&op);
3297 return result;
3298}
3299
3300bool
3301NativeProcessLinux::WriteGPR(lldb::tid_t tid, void *buf, size_t buf_size)
3302{
3303 bool result;
3304 WriteGPROperation op(tid, buf, buf_size, result);
3305 DoOperation(&op);
3306 return result;
3307}
3308
3309bool
3310NativeProcessLinux::WriteFPR(lldb::tid_t tid, void *buf, size_t buf_size)
3311{
3312 bool result;
3313 WriteFPROperation op(tid, buf, buf_size, result);
3314 DoOperation(&op);
3315 return result;
3316}
3317
3318bool
3319NativeProcessLinux::WriteRegisterSet(lldb::tid_t tid, void *buf, size_t buf_size, unsigned int regset)
3320{
3321 bool result;
3322 WriteRegisterSetOperation op(tid, buf, buf_size, regset, result);
3323 DoOperation(&op);
3324 return result;
3325}
3326
3327bool
3328NativeProcessLinux::Resume (lldb::tid_t tid, uint32_t signo)
3329{
3330 bool result;
3331 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_PROCESS));
3332
3333 if (log)
3334 log->Printf ("NativeProcessLinux::%s() resuming thread = %" PRIu64 " with signal %s", __FUNCTION__, tid,
3335 GetUnixSignals().GetSignalAsCString (signo));
3336 ResumeOperation op (tid, signo, result);
3337 DoOperation (&op);
3338 if (log)
3339 log->Printf ("NativeProcessLinux::%s() resuming result = %s", __FUNCTION__, result ? "true" : "false");
3340 return result;
3341}
3342
3343bool
3344NativeProcessLinux::SingleStep(lldb::tid_t tid, uint32_t signo)
3345{
3346 bool result;
3347 SingleStepOperation op(tid, signo, result);
3348 DoOperation(&op);
3349 return result;
3350}
3351
3352bool
3353NativeProcessLinux::GetSignalInfo(lldb::tid_t tid, void *siginfo, int &ptrace_err)
3354{
3355 bool result;
3356 SiginfoOperation op(tid, siginfo, result, ptrace_err);
3357 DoOperation(&op);
3358 return result;
3359}
3360
3361bool
3362NativeProcessLinux::GetEventMessage(lldb::tid_t tid, unsigned long *message)
3363{
3364 bool result;
3365 EventMessageOperation op(tid, message, result);
3366 DoOperation(&op);
3367 return result;
3368}
3369
3370lldb_private::Error
3371NativeProcessLinux::Detach(lldb::tid_t tid)
3372{
3373 lldb_private::Error error;
3374 if (tid != LLDB_INVALID_THREAD_ID)
3375 {
3376 DetachOperation op(tid, error);
3377 DoOperation(&op);
3378 }
3379 return error;
3380}
3381
3382bool
3383NativeProcessLinux::DupDescriptor(const char *path, int fd, int flags)
3384{
3385 int target_fd = open(path, flags, 0666);
3386
3387 if (target_fd == -1)
3388 return false;
3389
3390 return (dup2(target_fd, fd) == -1) ? false : true;
3391}
3392
3393void
3394NativeProcessLinux::StopMonitoringChildProcess()
3395{
Zachary Turner39de3112014-09-09 20:54:56 +00003396 if (m_monitor_thread.GetState() == eThreadStateRunning)
Todd Fialaaf245d12014-06-30 21:05:18 +00003397 {
Zachary Turner39de3112014-09-09 20:54:56 +00003398 m_monitor_thread.Cancel();
3399 m_monitor_thread.Join(nullptr);
3400 m_monitor_thread.Reset();
Todd Fialaaf245d12014-06-30 21:05:18 +00003401 }
3402}
3403
3404void
3405NativeProcessLinux::StopMonitor()
3406{
3407 StopMonitoringChildProcess();
3408 StopOpThread();
3409 sem_destroy(&m_operation_pending);
3410 sem_destroy(&m_operation_done);
3411
3412 // TODO: validate whether this still holds, fix up comment.
3413 // Note: ProcessPOSIX passes the m_terminal_fd file descriptor to
3414 // Process::SetSTDIOFileDescriptor, which in turn transfers ownership of
3415 // the descriptor to a ConnectionFileDescriptor object. Consequently
3416 // even though still has the file descriptor, we shouldn't close it here.
3417}
3418
3419void
3420NativeProcessLinux::StopOpThread()
3421{
Zachary Turner39de3112014-09-09 20:54:56 +00003422 if (m_operation_thread.GetState() != eThreadStateRunning)
Todd Fialaaf245d12014-06-30 21:05:18 +00003423 return;
3424
Zachary Turner39de3112014-09-09 20:54:56 +00003425 m_operation_thread.Cancel();
3426 m_operation_thread.Join(nullptr);
3427 m_operation_thread.Reset();
Todd Fialaaf245d12014-06-30 21:05:18 +00003428}
3429
3430bool
3431NativeProcessLinux::HasThreadNoLock (lldb::tid_t thread_id)
3432{
3433 for (auto thread_sp : m_threads)
3434 {
3435 assert (thread_sp && "thread list should not contain NULL threads");
3436 if (thread_sp->GetID () == thread_id)
3437 {
3438 // We have this thread.
3439 return true;
3440 }
3441 }
3442
3443 // We don't have this thread.
3444 return false;
3445}
3446
3447NativeThreadProtocolSP
3448NativeProcessLinux::MaybeGetThreadNoLock (lldb::tid_t thread_id)
3449{
3450 // CONSIDER organize threads by map - we can do better than linear.
3451 for (auto thread_sp : m_threads)
3452 {
3453 if (thread_sp->GetID () == thread_id)
3454 return thread_sp;
3455 }
3456
3457 // We don't have this thread.
3458 return NativeThreadProtocolSP ();
3459}
3460
3461bool
3462NativeProcessLinux::StopTrackingThread (lldb::tid_t thread_id)
3463{
3464 Mutex::Locker locker (m_threads_mutex);
3465 for (auto it = m_threads.begin (); it != m_threads.end (); ++it)
3466 {
3467 if (*it && ((*it)->GetID () == thread_id))
3468 {
3469 m_threads.erase (it);
3470 return true;
3471 }
3472 }
3473
3474 // Didn't find it.
3475 return false;
3476}
3477
3478NativeThreadProtocolSP
3479NativeProcessLinux::AddThread (lldb::tid_t thread_id)
3480{
3481 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
3482
3483 Mutex::Locker locker (m_threads_mutex);
3484
3485 if (log)
3486 {
3487 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " adding thread with tid %" PRIu64,
3488 __FUNCTION__,
3489 GetID (),
3490 thread_id);
3491 }
3492
3493 assert (!HasThreadNoLock (thread_id) && "attempted to add a thread by id that already exists");
3494
3495 // If this is the first thread, save it as the current thread
3496 if (m_threads.empty ())
3497 SetCurrentThreadID (thread_id);
3498
3499 NativeThreadProtocolSP thread_sp (new NativeThreadLinux (this, thread_id));
3500 m_threads.push_back (thread_sp);
3501
3502 return thread_sp;
3503}
3504
3505NativeThreadProtocolSP
3506NativeProcessLinux::GetOrCreateThread (lldb::tid_t thread_id, bool &created)
3507{
3508 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
3509
3510 Mutex::Locker locker (m_threads_mutex);
3511 if (log)
3512 {
3513 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " get/create thread with tid %" PRIu64,
3514 __FUNCTION__,
3515 GetID (),
3516 thread_id);
3517 }
3518
3519 // Retrieve the thread if it is already getting tracked.
3520 NativeThreadProtocolSP thread_sp = MaybeGetThreadNoLock (thread_id);
3521 if (thread_sp)
3522 {
3523 if (log)
3524 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 ": thread already tracked, returning",
3525 __FUNCTION__,
3526 GetID (),
3527 thread_id);
3528 created = false;
3529 return thread_sp;
3530
3531 }
3532
3533 // Create the thread metadata since it isn't being tracked.
3534 if (log)
3535 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 ": thread didn't exist, tracking now",
3536 __FUNCTION__,
3537 GetID (),
3538 thread_id);
3539
3540 thread_sp.reset (new NativeThreadLinux (this, thread_id));
3541 m_threads.push_back (thread_sp);
3542 created = true;
3543
3544 return thread_sp;
3545}
3546
3547Error
3548NativeProcessLinux::FixupBreakpointPCAsNeeded (NativeThreadProtocolSP &thread_sp)
3549{
3550 Log *log (GetLogIfAllCategoriesSet (LIBLLDB_LOG_THREAD));
3551
3552 Error error;
3553
3554 // Get a linux thread pointer.
3555 if (!thread_sp)
3556 {
3557 error.SetErrorString ("null thread_sp");
3558 if (log)
3559 log->Printf ("NativeProcessLinux::%s failed: %s", __FUNCTION__, error.AsCString ());
3560 return error;
3561 }
3562 NativeThreadLinux *const linux_thread_p = reinterpret_cast<NativeThreadLinux*> (thread_sp.get());
3563
3564 // Find out the size of a breakpoint (might depend on where we are in the code).
3565 NativeRegisterContextSP context_sp = linux_thread_p->GetRegisterContext ();
3566 if (!context_sp)
3567 {
3568 error.SetErrorString ("cannot get a NativeRegisterContext for the thread");
3569 if (log)
3570 log->Printf ("NativeProcessLinux::%s failed: %s", __FUNCTION__, error.AsCString ());
3571 return error;
3572 }
3573
3574 uint32_t breakpoint_size = 0;
3575 error = GetSoftwareBreakpointSize (context_sp, breakpoint_size);
3576 if (error.Fail ())
3577 {
3578 if (log)
3579 log->Printf ("NativeProcessLinux::%s GetBreakpointSize() failed: %s", __FUNCTION__, error.AsCString ());
3580 return error;
3581 }
3582 else
3583 {
3584 if (log)
3585 log->Printf ("NativeProcessLinux::%s breakpoint size: %" PRIu32, __FUNCTION__, breakpoint_size);
3586 }
3587
3588 // First try probing for a breakpoint at a software breakpoint location: PC - breakpoint size.
3589 const lldb::addr_t initial_pc_addr = context_sp->GetPC ();
3590 lldb::addr_t breakpoint_addr = initial_pc_addr;
3591 if (breakpoint_size > static_cast<lldb::addr_t> (0))
3592 {
3593 // Do not allow breakpoint probe to wrap around.
3594 if (breakpoint_addr >= static_cast<lldb::addr_t> (breakpoint_size))
3595 breakpoint_addr -= static_cast<lldb::addr_t> (breakpoint_size);
3596 }
3597
3598 // Check if we stopped because of a breakpoint.
3599 NativeBreakpointSP breakpoint_sp;
3600 error = m_breakpoint_list.GetBreakpoint (breakpoint_addr, breakpoint_sp);
3601 if (!error.Success () || !breakpoint_sp)
3602 {
3603 // We didn't find one at a software probe location. Nothing to do.
3604 if (log)
3605 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " no lldb breakpoint found at current pc with adjustment: 0x%" PRIx64, __FUNCTION__, GetID (), breakpoint_addr);
3606 return Error ();
3607 }
3608
3609 // If the breakpoint is not a software breakpoint, nothing to do.
3610 if (!breakpoint_sp->IsSoftwareBreakpoint ())
3611 {
3612 if (log)
3613 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " breakpoint found at 0x%" PRIx64 ", not software, nothing to adjust", __FUNCTION__, GetID (), breakpoint_addr);
3614 return Error ();
3615 }
3616
3617 //
3618 // We have a software breakpoint and need to adjust the PC.
3619 //
3620
3621 // Sanity check.
3622 if (breakpoint_size == 0)
3623 {
3624 // Nothing to do! How did we get here?
3625 if (log)
3626 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " breakpoint found at 0x%" PRIx64 ", it is software, but the size is zero, nothing to do (unexpected)", __FUNCTION__, GetID (), breakpoint_addr);
3627 return Error ();
3628 }
3629
3630 // Change the program counter.
3631 if (log)
3632 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 ": changing PC from 0x%" PRIx64 " to 0x%" PRIx64, __FUNCTION__, GetID (), linux_thread_p->GetID (), initial_pc_addr, breakpoint_addr);
3633
3634 error = context_sp->SetPC (breakpoint_addr);
3635 if (error.Fail ())
3636 {
3637 if (log)
3638 log->Printf ("NativeProcessLinux::%s pid %" PRIu64 " tid %" PRIu64 ": failed to set PC: %s", __FUNCTION__, GetID (), linux_thread_p->GetID (), error.AsCString ());
3639 return error;
3640 }
3641
3642 return error;
3643}