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Tamas Berghammere13c2732015-02-11 10:29:30 +00001//===-- GDBRemoteCommunicationServerLLGS.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 <errno.h>
11
12#include "lldb/Host/Config.h"
13
14#include "GDBRemoteCommunicationServerLLGS.h"
15#include "lldb/Core/StreamGDBRemote.h"
16
17// C Includes
18// C++ Includes
19#include <cstring>
20#include <chrono>
21#include <thread>
22
23// Other libraries and framework includes
24#include "llvm/ADT/Triple.h"
25#include "lldb/Interpreter/Args.h"
Zachary Turner90aff472015-03-03 23:36:51 +000026#include "lldb/Core/DataBuffer.h"
Tamas Berghammere13c2732015-02-11 10:29:30 +000027#include "lldb/Core/Log.h"
Tamas Berghammer9c9ecce2015-05-27 13:34:04 +000028#include "lldb/Core/RegisterValue.h"
Tamas Berghammere13c2732015-02-11 10:29:30 +000029#include "lldb/Core/State.h"
30#include "lldb/Core/StreamString.h"
31#include "lldb/Host/ConnectionFileDescriptor.h"
32#include "lldb/Host/Debug.h"
33#include "lldb/Host/Endian.h"
34#include "lldb/Host/File.h"
35#include "lldb/Host/FileSystem.h"
36#include "lldb/Host/Host.h"
37#include "lldb/Host/HostInfo.h"
38#include "lldb/Host/StringConvert.h"
39#include "lldb/Host/TimeValue.h"
40#include "lldb/Target/FileAction.h"
Zachary Turner93749ab2015-03-03 21:51:25 +000041#include "lldb/Target/MemoryRegionInfo.h"
Tamas Berghammere13c2732015-02-11 10:29:30 +000042#include "lldb/Target/Platform.h"
Tamas Berghammere13c2732015-02-11 10:29:30 +000043#include "lldb/Host/common/NativeRegisterContext.h"
44#include "lldb/Host/common/NativeProcessProtocol.h"
45#include "lldb/Host/common/NativeThreadProtocol.h"
46
47// Project includes
48#include "Utility/StringExtractorGDBRemote.h"
49#include "Utility/UriParser.h"
50#include "ProcessGDBRemote.h"
51#include "ProcessGDBRemoteLog.h"
52
53using namespace lldb;
54using namespace lldb_private;
Tamas Berghammerdb264a62015-03-31 09:52:22 +000055using namespace lldb_private::process_gdb_remote;
Tamas Berghammere13c2732015-02-11 10:29:30 +000056
57//----------------------------------------------------------------------
58// GDBRemote Errors
59//----------------------------------------------------------------------
60
61namespace
62{
63 enum GDBRemoteServerError
64 {
65 // Set to the first unused error number in literal form below
66 eErrorFirst = 29,
67 eErrorNoProcess = eErrorFirst,
68 eErrorResume,
69 eErrorExitStatus
70 };
71}
72
73//----------------------------------------------------------------------
74// GDBRemoteCommunicationServerLLGS constructor
75//----------------------------------------------------------------------
76GDBRemoteCommunicationServerLLGS::GDBRemoteCommunicationServerLLGS(
Tamas Berghammer9c9ecce2015-05-27 13:34:04 +000077 const lldb::PlatformSP& platform_sp) :
Tamas Berghammere13c2732015-02-11 10:29:30 +000078 GDBRemoteCommunicationServerCommon ("gdb-remote.server", "gdb-remote.server.rx_packet"),
79 m_platform_sp (platform_sp),
80 m_async_thread (LLDB_INVALID_HOST_THREAD),
81 m_current_tid (LLDB_INVALID_THREAD_ID),
82 m_continue_tid (LLDB_INVALID_THREAD_ID),
83 m_debugged_process_mutex (Mutex::eMutexTypeRecursive),
84 m_debugged_process_sp (),
Tamas Berghammere13c2732015-02-11 10:29:30 +000085 m_stdio_communication ("process.stdio"),
86 m_inferior_prev_state (StateType::eStateInvalid),
87 m_active_auxv_buffer_sp (),
88 m_saved_registers_mutex (),
89 m_saved_registers_map (),
90 m_next_saved_registers_id (1)
91{
92 assert(platform_sp);
Tamas Berghammere13c2732015-02-11 10:29:30 +000093 RegisterPacketHandlers();
94}
95
96//----------------------------------------------------------------------
97// Destructor
98//----------------------------------------------------------------------
99GDBRemoteCommunicationServerLLGS::~GDBRemoteCommunicationServerLLGS()
100{
Oleksiy Vyalov8bc34f42015-02-19 17:58:04 +0000101 Mutex::Locker locker (m_debugged_process_mutex);
102
103 if (m_debugged_process_sp)
104 {
105 m_debugged_process_sp->Terminate ();
106 m_debugged_process_sp.reset ();
107 }
Tamas Berghammere13c2732015-02-11 10:29:30 +0000108}
109
110void
111GDBRemoteCommunicationServerLLGS::RegisterPacketHandlers()
112{
Tamas Berghammere13c2732015-02-11 10:29:30 +0000113 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_C,
114 &GDBRemoteCommunicationServerLLGS::Handle_C);
115 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_c,
116 &GDBRemoteCommunicationServerLLGS::Handle_c);
117 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_D,
118 &GDBRemoteCommunicationServerLLGS::Handle_D);
119 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_H,
120 &GDBRemoteCommunicationServerLLGS::Handle_H);
121 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_I,
122 &GDBRemoteCommunicationServerLLGS::Handle_I);
123 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_interrupt,
124 &GDBRemoteCommunicationServerLLGS::Handle_interrupt);
125 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_m,
126 &GDBRemoteCommunicationServerLLGS::Handle_m);
127 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_M,
128 &GDBRemoteCommunicationServerLLGS::Handle_M);
129 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_p,
130 &GDBRemoteCommunicationServerLLGS::Handle_p);
131 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_P,
132 &GDBRemoteCommunicationServerLLGS::Handle_P);
133 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qC,
134 &GDBRemoteCommunicationServerLLGS::Handle_qC);
135 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qfThreadInfo,
136 &GDBRemoteCommunicationServerLLGS::Handle_qfThreadInfo);
137 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qGetWorkingDir,
138 &GDBRemoteCommunicationServerLLGS::Handle_qGetWorkingDir);
139 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qMemoryRegionInfo,
140 &GDBRemoteCommunicationServerLLGS::Handle_qMemoryRegionInfo);
141 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qMemoryRegionInfoSupported,
142 &GDBRemoteCommunicationServerLLGS::Handle_qMemoryRegionInfoSupported);
143 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qProcessInfo,
144 &GDBRemoteCommunicationServerLLGS::Handle_qProcessInfo);
145 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qRegisterInfo,
146 &GDBRemoteCommunicationServerLLGS::Handle_qRegisterInfo);
147 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_QRestoreRegisterState,
148 &GDBRemoteCommunicationServerLLGS::Handle_QRestoreRegisterState);
149 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_QSaveRegisterState,
150 &GDBRemoteCommunicationServerLLGS::Handle_QSaveRegisterState);
151 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_QSetDisableASLR,
152 &GDBRemoteCommunicationServerLLGS::Handle_QSetDisableASLR);
153 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_QSetWorkingDir,
154 &GDBRemoteCommunicationServerLLGS::Handle_QSetWorkingDir);
155 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qsThreadInfo,
156 &GDBRemoteCommunicationServerLLGS::Handle_qsThreadInfo);
157 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qThreadStopInfo,
158 &GDBRemoteCommunicationServerLLGS::Handle_qThreadStopInfo);
159 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qWatchpointSupportInfo,
160 &GDBRemoteCommunicationServerLLGS::Handle_qWatchpointSupportInfo);
161 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_qXfer_auxv_read,
162 &GDBRemoteCommunicationServerLLGS::Handle_qXfer_auxv_read);
163 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_s,
164 &GDBRemoteCommunicationServerLLGS::Handle_s);
165 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_stop_reason,
166 &GDBRemoteCommunicationServerLLGS::Handle_stop_reason); // ?
167 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_vAttach,
168 &GDBRemoteCommunicationServerLLGS::Handle_vAttach);
169 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_vCont,
170 &GDBRemoteCommunicationServerLLGS::Handle_vCont);
171 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_vCont_actions,
172 &GDBRemoteCommunicationServerLLGS::Handle_vCont_actions);
173 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_Z,
174 &GDBRemoteCommunicationServerLLGS::Handle_Z);
175 RegisterMemberFunctionHandler(StringExtractorGDBRemote::eServerPacketType_z,
176 &GDBRemoteCommunicationServerLLGS::Handle_z);
177
178 RegisterPacketHandler(StringExtractorGDBRemote::eServerPacketType_k,
179 [this](StringExtractorGDBRemote packet,
180 Error &error,
181 bool &interrupt,
182 bool &quit)
183 {
184 quit = true;
185 return this->Handle_k (packet);
186 });
187}
188
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000189Error
Tamas Berghammere13c2732015-02-11 10:29:30 +0000190GDBRemoteCommunicationServerLLGS::SetLaunchArguments (const char *const args[], int argc)
191{
192 if ((argc < 1) || !args || !args[0] || !args[0][0])
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000193 return Error ("%s: no process command line specified to launch", __FUNCTION__);
Tamas Berghammere13c2732015-02-11 10:29:30 +0000194
195 m_process_launch_info.SetArguments (const_cast<const char**> (args), true);
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000196 return Error ();
Tamas Berghammere13c2732015-02-11 10:29:30 +0000197}
198
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000199Error
Tamas Berghammere13c2732015-02-11 10:29:30 +0000200GDBRemoteCommunicationServerLLGS::SetLaunchFlags (unsigned int launch_flags)
201{
202 m_process_launch_info.GetFlags ().Set (launch_flags);
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000203 return Error ();
Tamas Berghammere13c2732015-02-11 10:29:30 +0000204}
205
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000206Error
Tamas Berghammere13c2732015-02-11 10:29:30 +0000207GDBRemoteCommunicationServerLLGS::LaunchProcess ()
208{
209 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
210
211 if (!m_process_launch_info.GetArguments ().GetArgumentCount ())
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000212 return Error ("%s: no process command line specified to launch", __FUNCTION__);
Tamas Berghammere13c2732015-02-11 10:29:30 +0000213
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000214 Error error;
Tamas Berghammere13c2732015-02-11 10:29:30 +0000215 {
216 Mutex::Locker locker (m_debugged_process_mutex);
217 assert (!m_debugged_process_sp && "lldb-gdbserver creating debugged process but one already exists");
218 error = m_platform_sp->LaunchNativeProcess (
219 m_process_launch_info,
220 *this,
221 m_debugged_process_sp);
222 }
223
224 if (!error.Success ())
225 {
226 fprintf (stderr, "%s: failed to launch executable %s", __FUNCTION__, m_process_launch_info.GetArguments ().GetArgumentAtIndex (0));
227 return error;
228 }
229
Vince Harron4a8abd32015-02-13 19:15:24 +0000230 // Handle mirroring of inferior stdout/stderr over the gdb-remote protocol
231 // as needed.
232 // llgs local-process debugging may specify PTY paths, which will make these
233 // file actions non-null
234 // process launch -i/e/o will also make these file actions non-null
235 // nullptr means that the traffic is expected to flow over gdb-remote protocol
236 if (
237 m_process_launch_info.GetFileActionForFD(STDIN_FILENO) == nullptr ||
238 m_process_launch_info.GetFileActionForFD(STDOUT_FILENO) == nullptr ||
239 m_process_launch_info.GetFileActionForFD(STDERR_FILENO) == nullptr
240 )
Tamas Berghammere13c2732015-02-11 10:29:30 +0000241 {
Vince Harron4a8abd32015-02-13 19:15:24 +0000242 // nullptr means it's not redirected to file or pty (in case of LLGS local)
243 // at least one of stdio will be transferred pty<->gdb-remote
244 // we need to give the pty master handle to this object to read and/or write
Tamas Berghammere13c2732015-02-11 10:29:30 +0000245 if (log)
246 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " setting up stdout/stderr redirection via $O gdb-remote commands", __FUNCTION__, m_debugged_process_sp->GetID ());
247
248 // Setup stdout/stderr mapping from inferior to $O
249 auto terminal_fd = m_debugged_process_sp->GetTerminalFileDescriptor ();
250 if (terminal_fd >= 0)
251 {
252 if (log)
253 log->Printf ("ProcessGDBRemoteCommunicationServerLLGS::%s setting inferior STDIO fd to %d", __FUNCTION__, terminal_fd);
254 error = SetSTDIOFileDescriptor (terminal_fd);
255 if (error.Fail ())
256 return error;
257 }
258 else
259 {
260 if (log)
261 log->Printf ("ProcessGDBRemoteCommunicationServerLLGS::%s ignoring inferior STDIO since terminal fd reported as %d", __FUNCTION__, terminal_fd);
262 }
263 }
264 else
265 {
266 if (log)
267 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " skipping stdout/stderr redirection via $O: inferior will communicate over client-provided file descriptors", __FUNCTION__, m_debugged_process_sp->GetID ());
268 }
269
270 printf ("Launched '%s' as process %" PRIu64 "...\n", m_process_launch_info.GetArguments ().GetArgumentAtIndex (0), m_process_launch_info.GetProcessID ());
271
272 // Add to list of spawned processes.
273 lldb::pid_t pid;
274 if ((pid = m_process_launch_info.GetProcessID ()) != LLDB_INVALID_PROCESS_ID)
275 {
276 // add to spawned pids
277 Mutex::Locker locker (m_spawned_pids_mutex);
278 // On an lldb-gdbserver, we would expect there to be only one.
279 assert (m_spawned_pids.empty () && "lldb-gdbserver adding tracked process but one already existed");
280 m_spawned_pids.insert (pid);
281 }
282
283 return error;
284}
285
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000286Error
Tamas Berghammere13c2732015-02-11 10:29:30 +0000287GDBRemoteCommunicationServerLLGS::AttachToProcess (lldb::pid_t pid)
288{
289 Error error;
290
291 Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PROCESS));
292 if (log)
293 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64, __FUNCTION__, pid);
294
295 // Scope for mutex locker.
296 {
297 // Before we try to attach, make sure we aren't already monitoring something else.
298 Mutex::Locker locker (m_spawned_pids_mutex);
299 if (!m_spawned_pids.empty ())
300 {
301 error.SetErrorStringWithFormat ("cannot attach to a process %" PRIu64 " when another process with pid %" PRIu64 " is being debugged.", pid, *m_spawned_pids.begin());
302 return error;
303 }
304
305 // Try to attach.
306 error = m_platform_sp->AttachNativeProcess (pid, *this, m_debugged_process_sp);
307 if (!error.Success ())
308 {
309 fprintf (stderr, "%s: failed to attach to process %" PRIu64 ": %s", __FUNCTION__, pid, error.AsCString ());
310 return error;
311 }
312
313 // Setup stdout/stderr mapping from inferior.
314 auto terminal_fd = m_debugged_process_sp->GetTerminalFileDescriptor ();
315 if (terminal_fd >= 0)
316 {
317 if (log)
318 log->Printf ("ProcessGDBRemoteCommunicationServerLLGS::%s setting inferior STDIO fd to %d", __FUNCTION__, terminal_fd);
319 error = SetSTDIOFileDescriptor (terminal_fd);
320 if (error.Fail ())
321 return error;
322 }
323 else
324 {
325 if (log)
326 log->Printf ("ProcessGDBRemoteCommunicationServerLLGS::%s ignoring inferior STDIO since terminal fd reported as %d", __FUNCTION__, terminal_fd);
327 }
328
329 printf ("Attached to process %" PRIu64 "...\n", pid);
330
331 // Add to list of spawned processes.
332 assert (m_spawned_pids.empty () && "lldb-gdbserver adding tracked process but one already existed");
333 m_spawned_pids.insert (pid);
334
335 return error;
336 }
337}
338
339void
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000340GDBRemoteCommunicationServerLLGS::InitializeDelegate (NativeProcessProtocol *process)
Tamas Berghammere13c2732015-02-11 10:29:30 +0000341{
342 assert (process && "process cannot be NULL");
343 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
344 if (log)
345 {
346 log->Printf ("GDBRemoteCommunicationServerLLGS::%s called with NativeProcessProtocol pid %" PRIu64 ", current state: %s",
347 __FUNCTION__,
348 process->GetID (),
349 StateAsCString (process->GetState ()));
350 }
351}
352
353GDBRemoteCommunication::PacketResult
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000354GDBRemoteCommunicationServerLLGS::SendWResponse (NativeProcessProtocol *process)
Tamas Berghammere13c2732015-02-11 10:29:30 +0000355{
356 assert (process && "process cannot be NULL");
357 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
358
359 // send W notification
360 ExitType exit_type = ExitType::eExitTypeInvalid;
361 int return_code = 0;
362 std::string exit_description;
363
364 const bool got_exit_info = process->GetExitStatus (&exit_type, &return_code, exit_description);
365 if (!got_exit_info)
366 {
367 if (log)
368 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 ", failed to retrieve process exit status", __FUNCTION__, process->GetID ());
369
370 StreamGDBRemote response;
371 response.PutChar ('E');
372 response.PutHex8 (GDBRemoteServerError::eErrorExitStatus);
373 return SendPacketNoLock(response.GetData(), response.GetSize());
374 }
375 else
376 {
377 if (log)
378 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 ", returning exit type %d, return code %d [%s]", __FUNCTION__, process->GetID (), exit_type, return_code, exit_description.c_str ());
379
380 StreamGDBRemote response;
381
382 char return_type_code;
383 switch (exit_type)
384 {
385 case ExitType::eExitTypeExit:
386 return_type_code = 'W';
387 break;
388 case ExitType::eExitTypeSignal:
389 return_type_code = 'X';
390 break;
391 case ExitType::eExitTypeStop:
392 return_type_code = 'S';
393 break;
394 case ExitType::eExitTypeInvalid:
395 return_type_code = 'E';
396 break;
397 }
398 response.PutChar (return_type_code);
399
400 // POSIX exit status limited to unsigned 8 bits.
401 response.PutHex8 (return_code);
402
403 return SendPacketNoLock(response.GetData(), response.GetSize());
404 }
405}
406
407static void
408AppendHexValue (StreamString &response, const uint8_t* buf, uint32_t buf_size, bool swap)
409{
410 int64_t i;
411 if (swap)
412 {
413 for (i = buf_size-1; i >= 0; i--)
414 response.PutHex8 (buf[i]);
415 }
416 else
417 {
418 for (i = 0; i < buf_size; i++)
419 response.PutHex8 (buf[i]);
420 }
421}
422
423static void
424WriteRegisterValueInHexFixedWidth (StreamString &response,
425 NativeRegisterContextSP &reg_ctx_sp,
426 const RegisterInfo &reg_info,
427 const RegisterValue *reg_value_p)
428{
429 RegisterValue reg_value;
430 if (!reg_value_p)
431 {
432 Error error = reg_ctx_sp->ReadRegister (&reg_info, reg_value);
433 if (error.Success ())
434 reg_value_p = &reg_value;
435 // else log.
436 }
437
438 if (reg_value_p)
439 {
440 AppendHexValue (response, (const uint8_t*) reg_value_p->GetBytes (), reg_value_p->GetByteSize (), false);
441 }
442 else
443 {
444 // Zero-out any unreadable values.
445 if (reg_info.byte_size > 0)
446 {
447 std::basic_string<uint8_t> zeros(reg_info.byte_size, '\0');
448 AppendHexValue (response, zeros.data(), zeros.size(), false);
449 }
450 }
451}
452
Tamas Berghammere13c2732015-02-11 10:29:30 +0000453GDBRemoteCommunication::PacketResult
454GDBRemoteCommunicationServerLLGS::SendStopReplyPacketForThread (lldb::tid_t tid)
455{
456 Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PROCESS | LIBLLDB_LOG_THREAD));
457
458 // Ensure we have a debugged process.
459 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
460 return SendErrorResponse (50);
461
462 if (log)
463 log->Printf ("GDBRemoteCommunicationServerLLGS::%s preparing packet for pid %" PRIu64 " tid %" PRIu64,
464 __FUNCTION__, m_debugged_process_sp->GetID (), tid);
465
466 // Ensure we can get info on the given thread.
467 NativeThreadProtocolSP thread_sp (m_debugged_process_sp->GetThreadByID (tid));
468 if (!thread_sp)
469 return SendErrorResponse (51);
470
471 // Grab the reason this thread stopped.
472 struct ThreadStopInfo tid_stop_info;
473 std::string description;
474 if (!thread_sp->GetStopReason (tid_stop_info, description))
475 return SendErrorResponse (52);
476
477 // FIXME implement register handling for exec'd inferiors.
478 // if (tid_stop_info.reason == eStopReasonExec)
479 // {
480 // const bool force = true;
481 // InitializeRegisters(force);
482 // }
483
484 StreamString response;
485 // Output the T packet with the thread
486 response.PutChar ('T');
487 int signum = tid_stop_info.details.signal.signo;
488 if (log)
489 {
490 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " tid %" PRIu64 " got signal signo = %d, reason = %d, exc_type = %" PRIu64,
491 __FUNCTION__,
492 m_debugged_process_sp->GetID (),
493 tid,
494 signum,
495 tid_stop_info.reason,
496 tid_stop_info.details.exception.type);
497 }
498
499 // Print the signal number.
500 response.PutHex8 (signum & 0xff);
501
502 // Include the tid.
503 response.Printf ("thread:%" PRIx64 ";", tid);
504
505 // Include the thread name if there is one.
506 const std::string thread_name = thread_sp->GetName ();
507 if (!thread_name.empty ())
508 {
509 size_t thread_name_len = thread_name.length ();
510
511 if (::strcspn (thread_name.c_str (), "$#+-;:") == thread_name_len)
512 {
513 response.PutCString ("name:");
514 response.PutCString (thread_name.c_str ());
515 }
516 else
517 {
518 // The thread name contains special chars, send as hex bytes.
519 response.PutCString ("hexname:");
520 response.PutCStringAsRawHex8 (thread_name.c_str ());
521 }
522 response.PutChar (';');
523 }
524
525 // If a 'QListThreadsInStopReply' was sent to enable this feature, we
526 // will send all thread IDs back in the "threads" key whose value is
527 // a list of hex thread IDs separated by commas:
528 // "threads:10a,10b,10c;"
529 // This will save the debugger from having to send a pair of qfThreadInfo
530 // and qsThreadInfo packets, but it also might take a lot of room in the
531 // stop reply packet, so it must be enabled only on systems where there
532 // are no limits on packet lengths.
533 if (m_list_threads_in_stop_reply)
534 {
535 response.PutCString ("threads:");
536
537 uint32_t thread_index = 0;
538 NativeThreadProtocolSP listed_thread_sp;
539 for (listed_thread_sp = m_debugged_process_sp->GetThreadAtIndex (thread_index); listed_thread_sp; ++thread_index, listed_thread_sp = m_debugged_process_sp->GetThreadAtIndex (thread_index))
540 {
541 if (thread_index > 0)
542 response.PutChar (',');
543 response.Printf ("%" PRIx64, listed_thread_sp->GetID ());
544 }
545 response.PutChar (';');
546 }
547
548 //
549 // Expedite registers.
550 //
551
552 // Grab the register context.
553 NativeRegisterContextSP reg_ctx_sp = thread_sp->GetRegisterContext ();
554 if (reg_ctx_sp)
555 {
556 // Expedite all registers in the first register set (i.e. should be GPRs) that are not contained in other registers.
557 const RegisterSet *reg_set_p;
558 if (reg_ctx_sp->GetRegisterSetCount () > 0 && ((reg_set_p = reg_ctx_sp->GetRegisterSet (0)) != nullptr))
559 {
560 if (log)
561 log->Printf ("GDBRemoteCommunicationServerLLGS::%s expediting registers from set '%s' (registers set count: %zu)", __FUNCTION__, reg_set_p->name ? reg_set_p->name : "<unnamed-set>", reg_set_p->num_registers);
562
563 for (const uint32_t *reg_num_p = reg_set_p->registers; *reg_num_p != LLDB_INVALID_REGNUM; ++reg_num_p)
564 {
565 const RegisterInfo *const reg_info_p = reg_ctx_sp->GetRegisterInfoAtIndex (*reg_num_p);
566 if (reg_info_p == nullptr)
567 {
568 if (log)
569 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to get register info for register set '%s', register index %" PRIu32, __FUNCTION__, reg_set_p->name ? reg_set_p->name : "<unnamed-set>", *reg_num_p);
570 }
571 else if (reg_info_p->value_regs == nullptr)
572 {
573 // Only expediate registers that are not contained in other registers.
574 RegisterValue reg_value;
575 Error error = reg_ctx_sp->ReadRegister (reg_info_p, reg_value);
576 if (error.Success ())
Chaoren Lincaf31142015-02-17 15:41:28 +0000577 {
578 response.Printf ("%.02x:", *reg_num_p);
579 WriteRegisterValueInHexFixedWidth(response, reg_ctx_sp, *reg_info_p, &reg_value);
580 response.PutChar (';');
581 }
Tamas Berghammere13c2732015-02-11 10:29:30 +0000582 else
583 {
584 if (log)
585 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to read register '%s' index %" PRIu32 ": %s", __FUNCTION__, reg_info_p->name ? reg_info_p->name : "<unnamed-register>", *reg_num_p, error.AsCString ());
586
587 }
588 }
589 }
590 }
591 }
592
593 const char* reason_str = nullptr;
594 switch (tid_stop_info.reason)
595 {
596 case eStopReasonTrace:
597 reason_str = "trace";
598 break;
599 case eStopReasonBreakpoint:
600 reason_str = "breakpoint";
601 break;
602 case eStopReasonWatchpoint:
603 reason_str = "watchpoint";
604 break;
605 case eStopReasonSignal:
606 reason_str = "signal";
607 break;
608 case eStopReasonException:
609 reason_str = "exception";
610 break;
611 case eStopReasonExec:
612 reason_str = "exec";
613 break;
614 case eStopReasonInstrumentation:
615 case eStopReasonInvalid:
616 case eStopReasonPlanComplete:
617 case eStopReasonThreadExiting:
618 case eStopReasonNone:
619 break;
620 }
621 if (reason_str != nullptr)
622 {
623 response.Printf ("reason:%s;", reason_str);
624 }
625
626 if (!description.empty())
627 {
628 // Description may contains special chars, send as hex bytes.
629 response.PutCString ("description:");
630 response.PutCStringAsRawHex8 (description.c_str ());
631 response.PutChar (';');
632 }
633 else if ((tid_stop_info.reason == eStopReasonException) && tid_stop_info.details.exception.type)
634 {
635 response.PutCString ("metype:");
636 response.PutHex64 (tid_stop_info.details.exception.type);
637 response.PutCString (";mecount:");
638 response.PutHex32 (tid_stop_info.details.exception.data_count);
639 response.PutChar (';');
640
641 for (uint32_t i = 0; i < tid_stop_info.details.exception.data_count; ++i)
642 {
643 response.PutCString ("medata:");
644 response.PutHex64 (tid_stop_info.details.exception.data[i]);
645 response.PutChar (';');
646 }
647 }
648
649 return SendPacketNoLock (response.GetData(), response.GetSize());
650}
651
652void
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000653GDBRemoteCommunicationServerLLGS::HandleInferiorState_Exited (NativeProcessProtocol *process)
Tamas Berghammere13c2732015-02-11 10:29:30 +0000654{
655 assert (process && "process cannot be NULL");
656
657 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
658 if (log)
659 log->Printf ("GDBRemoteCommunicationServerLLGS::%s called", __FUNCTION__);
660
661 // Send the exit result, and don't flush output.
662 // Note: flushing output here would join the inferior stdio reflection thread, which
663 // would gunk up the waitpid monitor thread that is calling this.
664 PacketResult result = SendStopReasonForState (StateType::eStateExited, false);
665 if (result != PacketResult::Success)
666 {
667 if (log)
668 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to send stop notification for PID %" PRIu64 ", state: eStateExited", __FUNCTION__, process->GetID ());
669 }
670
671 // Remove the process from the list of spawned pids.
672 {
673 Mutex::Locker locker (m_spawned_pids_mutex);
674 if (m_spawned_pids.erase (process->GetID ()) < 1)
675 {
676 if (log)
677 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to remove PID %" PRIu64 " from the spawned pids list", __FUNCTION__, process->GetID ());
678
679 }
680 }
681
682 // FIXME can't do this yet - since process state propagation is currently
683 // synchronous, it is running off the NativeProcessProtocol's innards and
684 // will tear down the NPP while it still has code to execute.
685#if 0
686 // Clear the NativeProcessProtocol pointer.
687 {
688 Mutex::Locker locker (m_debugged_process_mutex);
689 m_debugged_process_sp.reset();
690 }
691#endif
692
693 // Close the pipe to the inferior terminal i/o if we launched it
694 // and set one up. Otherwise, 'k' and its flush of stdio could
695 // end up waiting on a thread join that will never end. Consider
696 // adding a timeout to the connection thread join call so we
697 // can avoid that scenario altogether.
698 MaybeCloseInferiorTerminalConnection ();
699
700 // We are ready to exit the debug monitor.
701 m_exit_now = true;
702}
703
704void
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000705GDBRemoteCommunicationServerLLGS::HandleInferiorState_Stopped (NativeProcessProtocol *process)
Tamas Berghammere13c2732015-02-11 10:29:30 +0000706{
707 assert (process && "process cannot be NULL");
708
709 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
710 if (log)
711 log->Printf ("GDBRemoteCommunicationServerLLGS::%s called", __FUNCTION__);
712
713 // Send the stop reason unless this is the stop after the
714 // launch or attach.
715 switch (m_inferior_prev_state)
716 {
717 case eStateLaunching:
718 case eStateAttaching:
719 // Don't send anything per debugserver behavior.
720 break;
721 default:
722 // In all other cases, send the stop reason.
723 PacketResult result = SendStopReasonForState (StateType::eStateStopped, false);
724 if (result != PacketResult::Success)
725 {
726 if (log)
727 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to send stop notification for PID %" PRIu64 ", state: eStateExited", __FUNCTION__, process->GetID ());
728 }
729 break;
730 }
731}
732
733void
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000734GDBRemoteCommunicationServerLLGS::ProcessStateChanged (NativeProcessProtocol *process, lldb::StateType state)
Tamas Berghammere13c2732015-02-11 10:29:30 +0000735{
736 assert (process && "process cannot be NULL");
737 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
738 if (log)
739 {
740 log->Printf ("GDBRemoteCommunicationServerLLGS::%s called with NativeProcessProtocol pid %" PRIu64 ", state: %s",
741 __FUNCTION__,
742 process->GetID (),
743 StateAsCString (state));
744 }
745
Vince Harron43d79052015-04-15 10:40:51 +0000746 // Make sure we get all of the pending stdout/stderr from the inferior
747 // and send it to the lldb host before we send the state change
748 // notification
749 m_stdio_communication.SynchronizeWithReadThread();
750
Tamas Berghammere13c2732015-02-11 10:29:30 +0000751 switch (state)
752 {
753 case StateType::eStateExited:
754 HandleInferiorState_Exited (process);
755 break;
756
757 case StateType::eStateStopped:
758 HandleInferiorState_Stopped (process);
759 break;
760
761 default:
762 if (log)
763 {
764 log->Printf ("GDBRemoteCommunicationServerLLGS::%s didn't handle state change for pid %" PRIu64 ", new state: %s",
765 __FUNCTION__,
766 process->GetID (),
767 StateAsCString (state));
768 }
769 break;
770 }
771
772 // Remember the previous state reported to us.
773 m_inferior_prev_state = state;
774}
775
776void
777GDBRemoteCommunicationServerLLGS::DidExec (NativeProcessProtocol *process)
778{
779 ClearProcessSpecificData ();
780}
781
782GDBRemoteCommunication::PacketResult
783GDBRemoteCommunicationServerLLGS::SendONotification (const char *buffer, uint32_t len)
784{
785 if ((buffer == nullptr) || (len == 0))
786 {
787 // Nothing to send.
788 return PacketResult::Success;
789 }
790
791 StreamString response;
792 response.PutChar ('O');
793 response.PutBytesAsRawHex8 (buffer, len);
794
795 return SendPacketNoLock (response.GetData (), response.GetSize ());
796}
797
Tamas Berghammerdb264a62015-03-31 09:52:22 +0000798Error
Tamas Berghammere13c2732015-02-11 10:29:30 +0000799GDBRemoteCommunicationServerLLGS::SetSTDIOFileDescriptor (int fd)
800{
801 Error error;
802
803 // Set up the Read Thread for reading/handling process I/O
804 std::unique_ptr<ConnectionFileDescriptor> conn_up (new ConnectionFileDescriptor (fd, true));
805 if (!conn_up)
806 {
807 error.SetErrorString ("failed to create ConnectionFileDescriptor");
808 return error;
809 }
810
Tamas Berghammer00bdca62015-03-19 14:58:36 +0000811 m_stdio_communication.SetCloseOnEOF (false);
Tamas Berghammere13c2732015-02-11 10:29:30 +0000812 m_stdio_communication.SetConnection (conn_up.release());
813 if (!m_stdio_communication.IsConnected ())
814 {
815 error.SetErrorString ("failed to set connection for inferior I/O communication");
816 return error;
817 }
818
Vince Harron4a8abd32015-02-13 19:15:24 +0000819 // llgs local-process debugging may specify PTY paths, which will make these
820 // file actions non-null
821 // process launch -e/o will also make these file actions non-null
822 // nullptr means that the traffic is expected to flow over gdb-remote protocol
823 if (
824 m_process_launch_info.GetFileActionForFD(STDOUT_FILENO) == nullptr ||
825 m_process_launch_info.GetFileActionForFD(STDERR_FILENO) == nullptr
826 )
827 {
828 // output from the process must be forwarded over gdb-remote
829 // create a thread to read the handle and send the data
830 m_stdio_communication.SetReadThreadBytesReceivedCallback (STDIOReadThreadBytesReceived, this);
831 m_stdio_communication.StartReadThread();
832 }
Tamas Berghammere13c2732015-02-11 10:29:30 +0000833
834 return error;
835}
836
837void
838GDBRemoteCommunicationServerLLGS::STDIOReadThreadBytesReceived (void *baton, const void *src, size_t src_len)
839{
840 GDBRemoteCommunicationServerLLGS *server = reinterpret_cast<GDBRemoteCommunicationServerLLGS*> (baton);
841 static_cast<void> (server->SendONotification (static_cast<const char *>(src), src_len));
842}
843
844GDBRemoteCommunication::PacketResult
845GDBRemoteCommunicationServerLLGS::Handle_qProcessInfo (StringExtractorGDBRemote &packet)
846{
847 // Fail if we don't have a current process.
848 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
849 return SendErrorResponse (68);
850
851 lldb::pid_t pid = m_debugged_process_sp->GetID ();
852
853 if (pid == LLDB_INVALID_PROCESS_ID)
854 return SendErrorResponse (1);
855
856 ProcessInstanceInfo proc_info;
857 if (!Host::GetProcessInfo (pid, proc_info))
858 return SendErrorResponse (1);
859
860 StreamString response;
861 CreateProcessInfoResponse_DebugServerStyle(proc_info, response);
862 return SendPacketNoLock (response.GetData (), response.GetSize ());
863}
864
865GDBRemoteCommunication::PacketResult
866GDBRemoteCommunicationServerLLGS::Handle_qC (StringExtractorGDBRemote &packet)
867{
868 // Fail if we don't have a current process.
869 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
870 return SendErrorResponse (68);
871
872 // Make sure we set the current thread so g and p packets return
873 // the data the gdb will expect.
874 lldb::tid_t tid = m_debugged_process_sp->GetCurrentThreadID ();
875 SetCurrentThreadID (tid);
876
877 NativeThreadProtocolSP thread_sp = m_debugged_process_sp->GetCurrentThread ();
878 if (!thread_sp)
879 return SendErrorResponse (69);
880
881 StreamString response;
882 response.Printf ("QC%" PRIx64, thread_sp->GetID ());
883
884 return SendPacketNoLock (response.GetData(), response.GetSize());
885}
886
887bool
888GDBRemoteCommunicationServerLLGS::DebuggedProcessReaped (lldb::pid_t pid)
889{
890 // reap a process that we were debugging (but not debugserver)
891 Mutex::Locker locker (m_spawned_pids_mutex);
892 return m_spawned_pids.erase(pid) > 0;
893}
894
895bool
896GDBRemoteCommunicationServerLLGS::ReapDebuggedProcess (void *callback_baton,
897 lldb::pid_t pid,
898 bool exited,
899 int signal, // Zero for no signal
900 int status) // Exit value of process if signal is zero
901{
902 GDBRemoteCommunicationServerLLGS *server = (GDBRemoteCommunicationServerLLGS *)callback_baton;
903 server->DebuggedProcessReaped (pid);
904 return true;
905}
906
907GDBRemoteCommunication::PacketResult
908GDBRemoteCommunicationServerLLGS::Handle_k (StringExtractorGDBRemote &packet)
909{
910 // shutdown all spawned processes
911 std::set<lldb::pid_t> spawned_pids_copy;
912
913 // copy pids
914 {
915 Mutex::Locker locker (m_spawned_pids_mutex);
916 spawned_pids_copy.insert (m_spawned_pids.begin (), m_spawned_pids.end ());
917 }
918
919 // nuke the spawned processes
920 for (auto it = spawned_pids_copy.begin (); it != spawned_pids_copy.end (); ++it)
921 {
922 lldb::pid_t spawned_pid = *it;
923 if (!KillSpawnedProcess (spawned_pid))
924 {
925 fprintf (stderr, "%s: failed to kill spawned pid %" PRIu64 ", ignoring.\n", __FUNCTION__, spawned_pid);
926 }
927 }
928
929 FlushInferiorOutput ();
930
931 // No OK response for kill packet.
932 // return SendOKResponse ();
933 return PacketResult::Success;
934}
935
936GDBRemoteCommunication::PacketResult
937GDBRemoteCommunicationServerLLGS::Handle_QSetDisableASLR (StringExtractorGDBRemote &packet)
938{
939 packet.SetFilePos(::strlen ("QSetDisableASLR:"));
940 if (packet.GetU32(0))
941 m_process_launch_info.GetFlags().Set (eLaunchFlagDisableASLR);
942 else
943 m_process_launch_info.GetFlags().Clear (eLaunchFlagDisableASLR);
944 return SendOKResponse ();
945}
946
947GDBRemoteCommunication::PacketResult
948GDBRemoteCommunicationServerLLGS::Handle_QSetWorkingDir (StringExtractorGDBRemote &packet)
949{
950 packet.SetFilePos (::strlen ("QSetWorkingDir:"));
951 std::string path;
952 packet.GetHexByteString (path);
Chaoren Lind3173f32015-05-29 19:52:29 +0000953 m_process_launch_info.SetWorkingDirectory(FileSpec{path, true});
Tamas Berghammere13c2732015-02-11 10:29:30 +0000954 return SendOKResponse ();
955}
956
957GDBRemoteCommunication::PacketResult
958GDBRemoteCommunicationServerLLGS::Handle_qGetWorkingDir (StringExtractorGDBRemote &packet)
959{
Chaoren Lind3173f32015-05-29 19:52:29 +0000960 FileSpec working_dir{m_process_launch_info.GetWorkingDirectory()};
961 if (working_dir)
Tamas Berghammere13c2732015-02-11 10:29:30 +0000962 {
963 StreamString response;
Chaoren Lind3173f32015-05-29 19:52:29 +0000964 response.PutCStringAsRawHex8(working_dir.GetCString());
Tamas Berghammere13c2732015-02-11 10:29:30 +0000965 return SendPacketNoLock(response.GetData(), response.GetSize());
966 }
967
968 return SendErrorResponse(14);
969}
970
971GDBRemoteCommunication::PacketResult
972GDBRemoteCommunicationServerLLGS::Handle_C (StringExtractorGDBRemote &packet)
973{
974 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS|LIBLLDB_LOG_THREAD));
975 if (log)
976 log->Printf ("GDBRemoteCommunicationServerLLGS::%s called", __FUNCTION__);
977
978 // Ensure we have a native process.
979 if (!m_debugged_process_sp)
980 {
981 if (log)
982 log->Printf ("GDBRemoteCommunicationServerLLGS::%s no debugged process shared pointer", __FUNCTION__);
983 return SendErrorResponse (0x36);
984 }
985
986 // Pull out the signal number.
987 packet.SetFilePos (::strlen ("C"));
988 if (packet.GetBytesLeft () < 1)
989 {
990 // Shouldn't be using a C without a signal.
991 return SendIllFormedResponse (packet, "C packet specified without signal.");
992 }
993 const uint32_t signo = packet.GetHexMaxU32 (false, std::numeric_limits<uint32_t>::max ());
994 if (signo == std::numeric_limits<uint32_t>::max ())
995 return SendIllFormedResponse (packet, "failed to parse signal number");
996
997 // Handle optional continue address.
998 if (packet.GetBytesLeft () > 0)
999 {
1000 // FIXME add continue at address support for $C{signo}[;{continue-address}].
1001 if (*packet.Peek () == ';')
1002 return SendUnimplementedResponse (packet.GetStringRef().c_str());
1003 else
1004 return SendIllFormedResponse (packet, "unexpected content after $C{signal-number}");
1005 }
1006
Tamas Berghammerdb264a62015-03-31 09:52:22 +00001007 ResumeActionList resume_actions (StateType::eStateRunning, 0);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001008 Error error;
1009
1010 // We have two branches: what to do if a continue thread is specified (in which case we target
1011 // sending the signal to that thread), or when we don't have a continue thread set (in which
1012 // case we send a signal to the process).
1013
1014 // TODO discuss with Greg Clayton, make sure this makes sense.
1015
1016 lldb::tid_t signal_tid = GetContinueThreadID ();
1017 if (signal_tid != LLDB_INVALID_THREAD_ID)
1018 {
1019 // The resume action for the continue thread (or all threads if a continue thread is not set).
Tamas Berghammerdb264a62015-03-31 09:52:22 +00001020 ResumeAction action = { GetContinueThreadID (), StateType::eStateRunning, static_cast<int> (signo) };
Tamas Berghammere13c2732015-02-11 10:29:30 +00001021
1022 // Add the action for the continue thread (or all threads when the continue thread isn't present).
1023 resume_actions.Append (action);
1024 }
1025 else
1026 {
1027 // Send the signal to the process since we weren't targeting a specific continue thread with the signal.
1028 error = m_debugged_process_sp->Signal (signo);
1029 if (error.Fail ())
1030 {
1031 if (log)
1032 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to send signal for process %" PRIu64 ": %s",
1033 __FUNCTION__,
1034 m_debugged_process_sp->GetID (),
1035 error.AsCString ());
1036
1037 return SendErrorResponse (0x52);
1038 }
1039 }
1040
1041 // Resume the threads.
1042 error = m_debugged_process_sp->Resume (resume_actions);
1043 if (error.Fail ())
1044 {
1045 if (log)
1046 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to resume threads for process %" PRIu64 ": %s",
1047 __FUNCTION__,
1048 m_debugged_process_sp->GetID (),
1049 error.AsCString ());
1050
1051 return SendErrorResponse (0x38);
1052 }
1053
1054 // Don't send an "OK" packet; response is the stopped/exited message.
1055 return PacketResult::Success;
1056}
1057
1058GDBRemoteCommunication::PacketResult
1059GDBRemoteCommunicationServerLLGS::Handle_c (StringExtractorGDBRemote &packet)
1060{
1061 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS|LIBLLDB_LOG_THREAD));
1062 if (log)
1063 log->Printf ("GDBRemoteCommunicationServerLLGS::%s called", __FUNCTION__);
1064
1065 packet.SetFilePos (packet.GetFilePos() + ::strlen ("c"));
1066
1067 // For now just support all continue.
1068 const bool has_continue_address = (packet.GetBytesLeft () > 0);
1069 if (has_continue_address)
1070 {
1071 if (log)
1072 log->Printf ("GDBRemoteCommunicationServerLLGS::%s not implemented for c{address} variant [%s remains]", __FUNCTION__, packet.Peek ());
1073 return SendUnimplementedResponse (packet.GetStringRef().c_str());
1074 }
1075
1076 // Ensure we have a native process.
1077 if (!m_debugged_process_sp)
1078 {
1079 if (log)
1080 log->Printf ("GDBRemoteCommunicationServerLLGS::%s no debugged process shared pointer", __FUNCTION__);
1081 return SendErrorResponse (0x36);
1082 }
1083
1084 // Build the ResumeActionList
Tamas Berghammerdb264a62015-03-31 09:52:22 +00001085 ResumeActionList actions (StateType::eStateRunning, 0);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001086
1087 Error error = m_debugged_process_sp->Resume (actions);
1088 if (error.Fail ())
1089 {
1090 if (log)
1091 {
1092 log->Printf ("GDBRemoteCommunicationServerLLGS::%s c failed for process %" PRIu64 ": %s",
1093 __FUNCTION__,
1094 m_debugged_process_sp->GetID (),
1095 error.AsCString ());
1096 }
1097 return SendErrorResponse (GDBRemoteServerError::eErrorResume);
1098 }
1099
1100 if (log)
1101 log->Printf ("GDBRemoteCommunicationServerLLGS::%s continued process %" PRIu64, __FUNCTION__, m_debugged_process_sp->GetID ());
1102
1103 // No response required from continue.
1104 return PacketResult::Success;
1105}
1106
1107GDBRemoteCommunication::PacketResult
1108GDBRemoteCommunicationServerLLGS::Handle_vCont_actions (StringExtractorGDBRemote &packet)
1109{
1110 StreamString response;
1111 response.Printf("vCont;c;C;s;S");
1112
1113 return SendPacketNoLock(response.GetData(), response.GetSize());
1114}
1115
1116GDBRemoteCommunication::PacketResult
1117GDBRemoteCommunicationServerLLGS::Handle_vCont (StringExtractorGDBRemote &packet)
1118{
1119 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1120 if (log)
1121 log->Printf ("GDBRemoteCommunicationServerLLGS::%s handling vCont packet", __FUNCTION__);
1122
1123 packet.SetFilePos (::strlen ("vCont"));
1124
1125 if (packet.GetBytesLeft() == 0)
1126 {
1127 if (log)
1128 log->Printf ("GDBRemoteCommunicationServerLLGS::%s missing action from vCont package", __FUNCTION__);
1129 return SendIllFormedResponse (packet, "Missing action from vCont package");
1130 }
1131
1132 // Check if this is all continue (no options or ";c").
1133 if (::strcmp (packet.Peek (), ";c") == 0)
1134 {
1135 // Move past the ';', then do a simple 'c'.
1136 packet.SetFilePos (packet.GetFilePos () + 1);
1137 return Handle_c (packet);
1138 }
1139 else if (::strcmp (packet.Peek (), ";s") == 0)
1140 {
1141 // Move past the ';', then do a simple 's'.
1142 packet.SetFilePos (packet.GetFilePos () + 1);
1143 return Handle_s (packet);
1144 }
1145
1146 // Ensure we have a native process.
1147 if (!m_debugged_process_sp)
1148 {
1149 if (log)
1150 log->Printf ("GDBRemoteCommunicationServerLLGS::%s no debugged process shared pointer", __FUNCTION__);
1151 return SendErrorResponse (0x36);
1152 }
1153
1154 ResumeActionList thread_actions;
1155
1156 while (packet.GetBytesLeft () && *packet.Peek () == ';')
1157 {
1158 // Skip the semi-colon.
1159 packet.GetChar ();
1160
1161 // Build up the thread action.
1162 ResumeAction thread_action;
1163 thread_action.tid = LLDB_INVALID_THREAD_ID;
1164 thread_action.state = eStateInvalid;
1165 thread_action.signal = 0;
1166
1167 const char action = packet.GetChar ();
1168 switch (action)
1169 {
1170 case 'C':
1171 thread_action.signal = packet.GetHexMaxU32 (false, 0);
1172 if (thread_action.signal == 0)
1173 return SendIllFormedResponse (packet, "Could not parse signal in vCont packet C action");
1174 // Fall through to next case...
1175
1176 case 'c':
1177 // Continue
1178 thread_action.state = eStateRunning;
1179 break;
1180
1181 case 'S':
1182 thread_action.signal = packet.GetHexMaxU32 (false, 0);
1183 if (thread_action.signal == 0)
1184 return SendIllFormedResponse (packet, "Could not parse signal in vCont packet S action");
1185 // Fall through to next case...
1186
1187 case 's':
1188 // Step
1189 thread_action.state = eStateStepping;
1190 break;
1191
1192 default:
1193 return SendIllFormedResponse (packet, "Unsupported vCont action");
1194 break;
1195 }
1196
1197 // Parse out optional :{thread-id} value.
1198 if (packet.GetBytesLeft () && (*packet.Peek () == ':'))
1199 {
1200 // Consume the separator.
1201 packet.GetChar ();
1202
1203 thread_action.tid = packet.GetHexMaxU32 (false, LLDB_INVALID_THREAD_ID);
1204 if (thread_action.tid == LLDB_INVALID_THREAD_ID)
1205 return SendIllFormedResponse (packet, "Could not parse thread number in vCont packet");
1206 }
1207
1208 thread_actions.Append (thread_action);
1209 }
1210
1211 Error error = m_debugged_process_sp->Resume (thread_actions);
1212 if (error.Fail ())
1213 {
1214 if (log)
1215 {
1216 log->Printf ("GDBRemoteCommunicationServerLLGS::%s vCont failed for process %" PRIu64 ": %s",
1217 __FUNCTION__,
1218 m_debugged_process_sp->GetID (),
1219 error.AsCString ());
1220 }
1221 return SendErrorResponse (GDBRemoteServerError::eErrorResume);
1222 }
1223
1224 if (log)
1225 log->Printf ("GDBRemoteCommunicationServerLLGS::%s continued process %" PRIu64, __FUNCTION__, m_debugged_process_sp->GetID ());
1226
1227 // No response required from vCont.
1228 return PacketResult::Success;
1229}
1230
1231void
1232GDBRemoteCommunicationServerLLGS::SetCurrentThreadID (lldb::tid_t tid)
1233{
1234 Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_THREAD));
1235 if (log)
1236 log->Printf ("GDBRemoteCommunicationServerLLGS::%s setting current thread id to %" PRIu64, __FUNCTION__, tid);
1237
1238 m_current_tid = tid;
1239 if (m_debugged_process_sp)
1240 m_debugged_process_sp->SetCurrentThreadID (m_current_tid);
1241}
1242
1243void
1244GDBRemoteCommunicationServerLLGS::SetContinueThreadID (lldb::tid_t tid)
1245{
1246 Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_THREAD));
1247 if (log)
1248 log->Printf ("GDBRemoteCommunicationServerLLGS::%s setting continue thread id to %" PRIu64, __FUNCTION__, tid);
1249
1250 m_continue_tid = tid;
1251}
1252
1253GDBRemoteCommunication::PacketResult
1254GDBRemoteCommunicationServerLLGS::Handle_stop_reason (StringExtractorGDBRemote &packet)
1255{
1256 // Handle the $? gdbremote command.
1257
1258 // If no process, indicate error
1259 if (!m_debugged_process_sp)
1260 return SendErrorResponse (02);
1261
1262 return SendStopReasonForState (m_debugged_process_sp->GetState (), true);
1263}
1264
1265GDBRemoteCommunication::PacketResult
1266GDBRemoteCommunicationServerLLGS::SendStopReasonForState (lldb::StateType process_state, bool flush_on_exit)
1267{
1268 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1269
1270 switch (process_state)
1271 {
1272 case eStateAttaching:
1273 case eStateLaunching:
1274 case eStateRunning:
1275 case eStateStepping:
1276 case eStateDetached:
1277 // NOTE: gdb protocol doc looks like it should return $OK
1278 // when everything is running (i.e. no stopped result).
1279 return PacketResult::Success; // Ignore
1280
1281 case eStateSuspended:
1282 case eStateStopped:
1283 case eStateCrashed:
1284 {
1285 lldb::tid_t tid = m_debugged_process_sp->GetCurrentThreadID ();
1286 // Make sure we set the current thread so g and p packets return
1287 // the data the gdb will expect.
1288 SetCurrentThreadID (tid);
1289 return SendStopReplyPacketForThread (tid);
1290 }
1291
1292 case eStateInvalid:
1293 case eStateUnloaded:
1294 case eStateExited:
1295 if (flush_on_exit)
1296 FlushInferiorOutput ();
1297 return SendWResponse(m_debugged_process_sp.get());
1298
1299 default:
1300 if (log)
1301 {
1302 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 ", current state reporting not handled: %s",
1303 __FUNCTION__,
1304 m_debugged_process_sp->GetID (),
1305 StateAsCString (process_state));
1306 }
1307 break;
1308 }
1309
1310 return SendErrorResponse (0);
1311}
1312
1313GDBRemoteCommunication::PacketResult
1314GDBRemoteCommunicationServerLLGS::Handle_qRegisterInfo (StringExtractorGDBRemote &packet)
1315{
1316 // Fail if we don't have a current process.
1317 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1318 return SendErrorResponse (68);
1319
1320 // Ensure we have a thread.
1321 NativeThreadProtocolSP thread_sp (m_debugged_process_sp->GetThreadAtIndex (0));
1322 if (!thread_sp)
1323 return SendErrorResponse (69);
1324
1325 // Get the register context for the first thread.
1326 NativeRegisterContextSP reg_context_sp (thread_sp->GetRegisterContext ());
1327 if (!reg_context_sp)
1328 return SendErrorResponse (69);
1329
1330 // Parse out the register number from the request.
1331 packet.SetFilePos (strlen("qRegisterInfo"));
1332 const uint32_t reg_index = packet.GetHexMaxU32 (false, std::numeric_limits<uint32_t>::max ());
1333 if (reg_index == std::numeric_limits<uint32_t>::max ())
1334 return SendErrorResponse (69);
1335
1336 // Return the end of registers response if we've iterated one past the end of the register set.
1337 if (reg_index >= reg_context_sp->GetUserRegisterCount ())
1338 return SendErrorResponse (69);
1339
1340 const RegisterInfo *reg_info = reg_context_sp->GetRegisterInfoAtIndex(reg_index);
1341 if (!reg_info)
1342 return SendErrorResponse (69);
1343
1344 // Build the reginfos response.
1345 StreamGDBRemote response;
1346
1347 response.PutCString ("name:");
1348 response.PutCString (reg_info->name);
1349 response.PutChar (';');
1350
1351 if (reg_info->alt_name && reg_info->alt_name[0])
1352 {
1353 response.PutCString ("alt-name:");
1354 response.PutCString (reg_info->alt_name);
1355 response.PutChar (';');
1356 }
1357
1358 response.Printf ("bitsize:%" PRIu32 ";offset:%" PRIu32 ";", reg_info->byte_size * 8, reg_info->byte_offset);
1359
1360 switch (reg_info->encoding)
1361 {
1362 case eEncodingUint: response.PutCString ("encoding:uint;"); break;
1363 case eEncodingSint: response.PutCString ("encoding:sint;"); break;
1364 case eEncodingIEEE754: response.PutCString ("encoding:ieee754;"); break;
1365 case eEncodingVector: response.PutCString ("encoding:vector;"); break;
1366 default: break;
1367 }
1368
1369 switch (reg_info->format)
1370 {
1371 case eFormatBinary: response.PutCString ("format:binary;"); break;
1372 case eFormatDecimal: response.PutCString ("format:decimal;"); break;
1373 case eFormatHex: response.PutCString ("format:hex;"); break;
1374 case eFormatFloat: response.PutCString ("format:float;"); break;
1375 case eFormatVectorOfSInt8: response.PutCString ("format:vector-sint8;"); break;
1376 case eFormatVectorOfUInt8: response.PutCString ("format:vector-uint8;"); break;
1377 case eFormatVectorOfSInt16: response.PutCString ("format:vector-sint16;"); break;
1378 case eFormatVectorOfUInt16: response.PutCString ("format:vector-uint16;"); break;
1379 case eFormatVectorOfSInt32: response.PutCString ("format:vector-sint32;"); break;
1380 case eFormatVectorOfUInt32: response.PutCString ("format:vector-uint32;"); break;
1381 case eFormatVectorOfFloat32: response.PutCString ("format:vector-float32;"); break;
1382 case eFormatVectorOfUInt128: response.PutCString ("format:vector-uint128;"); break;
1383 default: break;
1384 };
1385
1386 const char *const register_set_name = reg_context_sp->GetRegisterSetNameForRegisterAtIndex(reg_index);
1387 if (register_set_name)
1388 {
1389 response.PutCString ("set:");
1390 response.PutCString (register_set_name);
1391 response.PutChar (';');
1392 }
1393
1394 if (reg_info->kinds[RegisterKind::eRegisterKindGCC] != LLDB_INVALID_REGNUM)
1395 response.Printf ("gcc:%" PRIu32 ";", reg_info->kinds[RegisterKind::eRegisterKindGCC]);
1396
1397 if (reg_info->kinds[RegisterKind::eRegisterKindDWARF] != LLDB_INVALID_REGNUM)
1398 response.Printf ("dwarf:%" PRIu32 ";", reg_info->kinds[RegisterKind::eRegisterKindDWARF]);
1399
1400 switch (reg_info->kinds[RegisterKind::eRegisterKindGeneric])
1401 {
1402 case LLDB_REGNUM_GENERIC_PC: response.PutCString("generic:pc;"); break;
1403 case LLDB_REGNUM_GENERIC_SP: response.PutCString("generic:sp;"); break;
1404 case LLDB_REGNUM_GENERIC_FP: response.PutCString("generic:fp;"); break;
1405 case LLDB_REGNUM_GENERIC_RA: response.PutCString("generic:ra;"); break;
1406 case LLDB_REGNUM_GENERIC_FLAGS: response.PutCString("generic:flags;"); break;
1407 case LLDB_REGNUM_GENERIC_ARG1: response.PutCString("generic:arg1;"); break;
1408 case LLDB_REGNUM_GENERIC_ARG2: response.PutCString("generic:arg2;"); break;
1409 case LLDB_REGNUM_GENERIC_ARG3: response.PutCString("generic:arg3;"); break;
1410 case LLDB_REGNUM_GENERIC_ARG4: response.PutCString("generic:arg4;"); break;
1411 case LLDB_REGNUM_GENERIC_ARG5: response.PutCString("generic:arg5;"); break;
1412 case LLDB_REGNUM_GENERIC_ARG6: response.PutCString("generic:arg6;"); break;
1413 case LLDB_REGNUM_GENERIC_ARG7: response.PutCString("generic:arg7;"); break;
1414 case LLDB_REGNUM_GENERIC_ARG8: response.PutCString("generic:arg8;"); break;
1415 default: break;
1416 }
1417
1418 if (reg_info->value_regs && reg_info->value_regs[0] != LLDB_INVALID_REGNUM)
1419 {
1420 response.PutCString ("container-regs:");
1421 int i = 0;
1422 for (const uint32_t *reg_num = reg_info->value_regs; *reg_num != LLDB_INVALID_REGNUM; ++reg_num, ++i)
1423 {
1424 if (i > 0)
1425 response.PutChar (',');
1426 response.Printf ("%" PRIx32, *reg_num);
1427 }
1428 response.PutChar (';');
1429 }
1430
1431 if (reg_info->invalidate_regs && reg_info->invalidate_regs[0])
1432 {
1433 response.PutCString ("invalidate-regs:");
1434 int i = 0;
1435 for (const uint32_t *reg_num = reg_info->invalidate_regs; *reg_num != LLDB_INVALID_REGNUM; ++reg_num, ++i)
1436 {
1437 if (i > 0)
1438 response.PutChar (',');
1439 response.Printf ("%" PRIx32, *reg_num);
1440 }
1441 response.PutChar (';');
1442 }
1443
1444 return SendPacketNoLock(response.GetData(), response.GetSize());
1445}
1446
1447GDBRemoteCommunication::PacketResult
1448GDBRemoteCommunicationServerLLGS::Handle_qfThreadInfo (StringExtractorGDBRemote &packet)
1449{
1450 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
1451
1452 // Fail if we don't have a current process.
1453 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1454 {
1455 if (log)
1456 log->Printf ("GDBRemoteCommunicationServerLLGS::%s() no process (%s), returning OK", __FUNCTION__, m_debugged_process_sp ? "invalid process id" : "null m_debugged_process_sp");
1457 return SendOKResponse ();
1458 }
1459
1460 StreamGDBRemote response;
1461 response.PutChar ('m');
1462
1463 if (log)
1464 log->Printf ("GDBRemoteCommunicationServerLLGS::%s() starting thread iteration", __FUNCTION__);
1465
1466 NativeThreadProtocolSP thread_sp;
1467 uint32_t thread_index;
1468 for (thread_index = 0, thread_sp = m_debugged_process_sp->GetThreadAtIndex (thread_index);
1469 thread_sp;
1470 ++thread_index, thread_sp = m_debugged_process_sp->GetThreadAtIndex (thread_index))
1471 {
1472 if (log)
1473 log->Printf ("GDBRemoteCommunicationServerLLGS::%s() iterated thread %" PRIu32 "(%s, tid=0x%" PRIx64 ")", __FUNCTION__, thread_index, thread_sp ? "is not null" : "null", thread_sp ? thread_sp->GetID () : LLDB_INVALID_THREAD_ID);
1474 if (thread_index > 0)
1475 response.PutChar(',');
1476 response.Printf ("%" PRIx64, thread_sp->GetID ());
1477 }
1478
1479 if (log)
1480 log->Printf ("GDBRemoteCommunicationServerLLGS::%s() finished thread iteration", __FUNCTION__);
1481
1482 return SendPacketNoLock(response.GetData(), response.GetSize());
1483}
1484
1485GDBRemoteCommunication::PacketResult
1486GDBRemoteCommunicationServerLLGS::Handle_qsThreadInfo (StringExtractorGDBRemote &packet)
1487{
1488 // FIXME for now we return the full thread list in the initial packet and always do nothing here.
1489 return SendPacketNoLock ("l", 1);
1490}
1491
1492GDBRemoteCommunication::PacketResult
1493GDBRemoteCommunicationServerLLGS::Handle_p (StringExtractorGDBRemote &packet)
1494{
1495 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
1496
1497 // Parse out the register number from the request.
1498 packet.SetFilePos (strlen("p"));
1499 const uint32_t reg_index = packet.GetHexMaxU32 (false, std::numeric_limits<uint32_t>::max ());
1500 if (reg_index == std::numeric_limits<uint32_t>::max ())
1501 {
1502 if (log)
1503 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, could not parse register number from request \"%s\"", __FUNCTION__, packet.GetStringRef ().c_str ());
1504 return SendErrorResponse (0x15);
1505 }
1506
1507 // Get the thread to use.
1508 NativeThreadProtocolSP thread_sp = GetThreadFromSuffix (packet);
1509 if (!thread_sp)
1510 {
1511 if (log)
1512 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no thread available", __FUNCTION__);
1513 return SendErrorResponse (0x15);
1514 }
1515
1516 // Get the thread's register context.
1517 NativeRegisterContextSP reg_context_sp (thread_sp->GetRegisterContext ());
1518 if (!reg_context_sp)
1519 {
1520 if (log)
1521 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " tid %" PRIu64 " failed, no register context available for the thread", __FUNCTION__, m_debugged_process_sp->GetID (), thread_sp->GetID ());
1522 return SendErrorResponse (0x15);
1523 }
1524
1525 // Return the end of registers response if we've iterated one past the end of the register set.
1526 if (reg_index >= reg_context_sp->GetUserRegisterCount ())
1527 {
1528 if (log)
1529 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, requested register %" PRIu32 " beyond register count %" PRIu32, __FUNCTION__, reg_index, reg_context_sp->GetUserRegisterCount ());
1530 return SendErrorResponse (0x15);
1531 }
1532
1533 const RegisterInfo *reg_info = reg_context_sp->GetRegisterInfoAtIndex(reg_index);
1534 if (!reg_info)
1535 {
1536 if (log)
1537 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, requested register %" PRIu32 " returned NULL", __FUNCTION__, reg_index);
1538 return SendErrorResponse (0x15);
1539 }
1540
1541 // Build the reginfos response.
1542 StreamGDBRemote response;
1543
1544 // Retrieve the value
1545 RegisterValue reg_value;
1546 Error error = reg_context_sp->ReadRegister (reg_info, reg_value);
1547 if (error.Fail ())
1548 {
1549 if (log)
1550 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, read of requested register %" PRIu32 " (%s) failed: %s", __FUNCTION__, reg_index, reg_info->name, error.AsCString ());
1551 return SendErrorResponse (0x15);
1552 }
1553
1554 const uint8_t *const data = reinterpret_cast<const uint8_t*> (reg_value.GetBytes ());
1555 if (!data)
1556 {
1557 if (log)
1558 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to get data bytes from requested register %" PRIu32, __FUNCTION__, reg_index);
1559 return SendErrorResponse (0x15);
1560 }
1561
1562 // FIXME flip as needed to get data in big/little endian format for this host.
1563 for (uint32_t i = 0; i < reg_value.GetByteSize (); ++i)
1564 response.PutHex8 (data[i]);
1565
1566 return SendPacketNoLock (response.GetData (), response.GetSize ());
1567}
1568
1569GDBRemoteCommunication::PacketResult
1570GDBRemoteCommunicationServerLLGS::Handle_P (StringExtractorGDBRemote &packet)
1571{
1572 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
1573
1574 // Ensure there is more content.
1575 if (packet.GetBytesLeft () < 1)
1576 return SendIllFormedResponse (packet, "Empty P packet");
1577
1578 // Parse out the register number from the request.
1579 packet.SetFilePos (strlen("P"));
1580 const uint32_t reg_index = packet.GetHexMaxU32 (false, std::numeric_limits<uint32_t>::max ());
1581 if (reg_index == std::numeric_limits<uint32_t>::max ())
1582 {
1583 if (log)
1584 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, could not parse register number from request \"%s\"", __FUNCTION__, packet.GetStringRef ().c_str ());
1585 return SendErrorResponse (0x29);
1586 }
1587
1588 // Note debugserver would send an E30 here.
1589 if ((packet.GetBytesLeft () < 1) || (packet.GetChar () != '='))
1590 return SendIllFormedResponse (packet, "P packet missing '=' char after register number");
1591
1592 // Get process architecture.
1593 ArchSpec process_arch;
1594 if (!m_debugged_process_sp || !m_debugged_process_sp->GetArchitecture (process_arch))
1595 {
1596 if (log)
1597 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to retrieve inferior architecture", __FUNCTION__);
1598 return SendErrorResponse (0x49);
1599 }
1600
1601 // Parse out the value.
1602 uint8_t reg_bytes[32]; // big enough to support up to 256 bit ymmN register
1603 size_t reg_size = packet.GetHexBytesAvail (reg_bytes, sizeof(reg_bytes));
1604
1605 // Get the thread to use.
1606 NativeThreadProtocolSP thread_sp = GetThreadFromSuffix (packet);
1607 if (!thread_sp)
1608 {
1609 if (log)
1610 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no thread available (thread index 0)", __FUNCTION__);
1611 return SendErrorResponse (0x28);
1612 }
1613
1614 // Get the thread's register context.
1615 NativeRegisterContextSP reg_context_sp (thread_sp->GetRegisterContext ());
1616 if (!reg_context_sp)
1617 {
1618 if (log)
1619 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " tid %" PRIu64 " failed, no register context available for the thread", __FUNCTION__, m_debugged_process_sp->GetID (), thread_sp->GetID ());
1620 return SendErrorResponse (0x15);
1621 }
1622
1623 const RegisterInfo *reg_info = reg_context_sp->GetRegisterInfoAtIndex (reg_index);
1624 if (!reg_info)
1625 {
1626 if (log)
1627 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, requested register %" PRIu32 " returned NULL", __FUNCTION__, reg_index);
1628 return SendErrorResponse (0x48);
1629 }
1630
1631 // Return the end of registers response if we've iterated one past the end of the register set.
1632 if (reg_index >= reg_context_sp->GetUserRegisterCount ())
1633 {
1634 if (log)
1635 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, requested register %" PRIu32 " beyond register count %" PRIu32, __FUNCTION__, reg_index, reg_context_sp->GetUserRegisterCount ());
1636 return SendErrorResponse (0x47);
1637 }
1638
1639 if (reg_size != reg_info->byte_size)
1640 {
1641 return SendIllFormedResponse (packet, "P packet register size is incorrect");
1642 }
1643
1644 // Build the reginfos response.
1645 StreamGDBRemote response;
1646
1647 RegisterValue reg_value (reg_bytes, reg_size, process_arch.GetByteOrder ());
1648 Error error = reg_context_sp->WriteRegister (reg_info, reg_value);
1649 if (error.Fail ())
1650 {
1651 if (log)
1652 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, write of requested register %" PRIu32 " (%s) failed: %s", __FUNCTION__, reg_index, reg_info->name, error.AsCString ());
1653 return SendErrorResponse (0x32);
1654 }
1655
1656 return SendOKResponse();
1657}
1658
1659GDBRemoteCommunication::PacketResult
1660GDBRemoteCommunicationServerLLGS::Handle_H (StringExtractorGDBRemote &packet)
1661{
1662 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
1663
1664 // Fail if we don't have a current process.
1665 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1666 {
1667 if (log)
1668 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1669 return SendErrorResponse (0x15);
1670 }
1671
1672 // Parse out which variant of $H is requested.
1673 packet.SetFilePos (strlen("H"));
1674 if (packet.GetBytesLeft () < 1)
1675 {
1676 if (log)
1677 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, H command missing {g,c} variant", __FUNCTION__);
1678 return SendIllFormedResponse (packet, "H command missing {g,c} variant");
1679 }
1680
1681 const char h_variant = packet.GetChar ();
1682 switch (h_variant)
1683 {
1684 case 'g':
1685 break;
1686
1687 case 'c':
1688 break;
1689
1690 default:
1691 if (log)
1692 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, invalid $H variant %c", __FUNCTION__, h_variant);
1693 return SendIllFormedResponse (packet, "H variant unsupported, should be c or g");
1694 }
1695
1696 // Parse out the thread number.
1697 // FIXME return a parse success/fail value. All values are valid here.
1698 const lldb::tid_t tid = packet.GetHexMaxU64 (false, std::numeric_limits<lldb::tid_t>::max ());
1699
1700 // Ensure we have the given thread when not specifying -1 (all threads) or 0 (any thread).
1701 if (tid != LLDB_INVALID_THREAD_ID && tid != 0)
1702 {
1703 NativeThreadProtocolSP thread_sp (m_debugged_process_sp->GetThreadByID (tid));
1704 if (!thread_sp)
1705 {
1706 if (log)
1707 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, tid %" PRIu64 " not found", __FUNCTION__, tid);
1708 return SendErrorResponse (0x15);
1709 }
1710 }
1711
1712 // Now switch the given thread type.
1713 switch (h_variant)
1714 {
1715 case 'g':
1716 SetCurrentThreadID (tid);
1717 break;
1718
1719 case 'c':
1720 SetContinueThreadID (tid);
1721 break;
1722
1723 default:
1724 assert (false && "unsupported $H variant - shouldn't get here");
1725 return SendIllFormedResponse (packet, "H variant unsupported, should be c or g");
1726 }
1727
1728 return SendOKResponse();
1729}
1730
1731GDBRemoteCommunication::PacketResult
1732GDBRemoteCommunicationServerLLGS::Handle_I (StringExtractorGDBRemote &packet)
1733{
1734 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
1735
1736 // Fail if we don't have a current process.
1737 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1738 {
1739 if (log)
1740 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1741 return SendErrorResponse (0x15);
1742 }
1743
1744 packet.SetFilePos (::strlen("I"));
1745 char tmp[4096];
1746 for (;;)
1747 {
1748 size_t read = packet.GetHexBytesAvail(tmp, sizeof(tmp));
1749 if (read == 0)
1750 {
1751 break;
1752 }
1753 // write directly to stdin *this might block if stdin buffer is full*
1754 // TODO: enqueue this block in circular buffer and send window size to remote host
1755 ConnectionStatus status;
1756 Error error;
1757 m_stdio_communication.Write(tmp, read, status, &error);
1758 if (error.Fail())
1759 {
1760 return SendErrorResponse (0x15);
1761 }
1762 }
1763
1764 return SendOKResponse();
1765}
1766
1767GDBRemoteCommunication::PacketResult
1768GDBRemoteCommunicationServerLLGS::Handle_interrupt (StringExtractorGDBRemote &packet)
1769{
1770 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS | LIBLLDB_LOG_THREAD));
1771
1772 // Fail if we don't have a current process.
1773 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1774 {
1775 if (log)
1776 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1777 return SendErrorResponse (0x15);
1778 }
1779
1780 // Interrupt the process.
1781 Error error = m_debugged_process_sp->Interrupt ();
1782 if (error.Fail ())
1783 {
1784 if (log)
1785 {
1786 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed for process %" PRIu64 ": %s",
1787 __FUNCTION__,
1788 m_debugged_process_sp->GetID (),
1789 error.AsCString ());
1790 }
1791 return SendErrorResponse (GDBRemoteServerError::eErrorResume);
1792 }
1793
1794 if (log)
1795 log->Printf ("GDBRemoteCommunicationServerLLGS::%s stopped process %" PRIu64, __FUNCTION__, m_debugged_process_sp->GetID ());
1796
1797 // No response required from stop all.
1798 return PacketResult::Success;
1799}
1800
1801GDBRemoteCommunication::PacketResult
1802GDBRemoteCommunicationServerLLGS::Handle_m (StringExtractorGDBRemote &packet)
1803{
1804 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1805
1806 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1807 {
1808 if (log)
1809 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1810 return SendErrorResponse (0x15);
1811 }
1812
1813 // Parse out the memory address.
1814 packet.SetFilePos (strlen("m"));
1815 if (packet.GetBytesLeft() < 1)
1816 return SendIllFormedResponse(packet, "Too short m packet");
1817
1818 // Read the address. Punting on validation.
1819 // FIXME replace with Hex U64 read with no default value that fails on failed read.
1820 const lldb::addr_t read_addr = packet.GetHexMaxU64(false, 0);
1821
1822 // Validate comma.
1823 if ((packet.GetBytesLeft() < 1) || (packet.GetChar() != ','))
1824 return SendIllFormedResponse(packet, "Comma sep missing in m packet");
1825
1826 // Get # bytes to read.
1827 if (packet.GetBytesLeft() < 1)
1828 return SendIllFormedResponse(packet, "Length missing in m packet");
1829
1830 const uint64_t byte_count = packet.GetHexMaxU64(false, 0);
1831 if (byte_count == 0)
1832 {
1833 if (log)
1834 log->Printf ("GDBRemoteCommunicationServerLLGS::%s nothing to read: zero-length packet", __FUNCTION__);
1835 return PacketResult::Success;
1836 }
1837
1838 // Allocate the response buffer.
1839 std::string buf(byte_count, '\0');
1840 if (buf.empty())
1841 return SendErrorResponse (0x78);
1842
1843
1844 // Retrieve the process memory.
Chaoren Lin3eb4b452015-04-29 17:24:48 +00001845 size_t bytes_read = 0;
1846 Error error = m_debugged_process_sp->ReadMemoryWithoutTrap(read_addr, &buf[0], byte_count, bytes_read);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001847 if (error.Fail ())
1848 {
1849 if (log)
1850 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " mem 0x%" PRIx64 ": failed to read. Error: %s", __FUNCTION__, m_debugged_process_sp->GetID (), read_addr, error.AsCString ());
1851 return SendErrorResponse (0x08);
1852 }
1853
1854 if (bytes_read == 0)
1855 {
1856 if (log)
Ilia Kd50ea2f2015-05-15 09:15:27 +00001857 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " mem 0x%" PRIx64 ": read 0 of %" PRIu64 " requested bytes", __FUNCTION__, m_debugged_process_sp->GetID (), read_addr, byte_count);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001858 return SendErrorResponse (0x08);
1859 }
1860
1861 StreamGDBRemote response;
Chaoren Lin3eb4b452015-04-29 17:24:48 +00001862 for (size_t i = 0; i < bytes_read; ++i)
Tamas Berghammere13c2732015-02-11 10:29:30 +00001863 response.PutHex8(buf[i]);
1864
1865 return SendPacketNoLock(response.GetData(), response.GetSize());
1866}
1867
1868GDBRemoteCommunication::PacketResult
1869GDBRemoteCommunicationServerLLGS::Handle_M (StringExtractorGDBRemote &packet)
1870{
1871 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1872
1873 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1874 {
1875 if (log)
1876 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1877 return SendErrorResponse (0x15);
1878 }
1879
1880 // Parse out the memory address.
1881 packet.SetFilePos (strlen("M"));
1882 if (packet.GetBytesLeft() < 1)
1883 return SendIllFormedResponse(packet, "Too short M packet");
1884
1885 // Read the address. Punting on validation.
1886 // FIXME replace with Hex U64 read with no default value that fails on failed read.
1887 const lldb::addr_t write_addr = packet.GetHexMaxU64(false, 0);
1888
1889 // Validate comma.
1890 if ((packet.GetBytesLeft() < 1) || (packet.GetChar() != ','))
1891 return SendIllFormedResponse(packet, "Comma sep missing in M packet");
1892
1893 // Get # bytes to read.
1894 if (packet.GetBytesLeft() < 1)
1895 return SendIllFormedResponse(packet, "Length missing in M packet");
1896
1897 const uint64_t byte_count = packet.GetHexMaxU64(false, 0);
1898 if (byte_count == 0)
1899 {
1900 if (log)
1901 log->Printf ("GDBRemoteCommunicationServerLLGS::%s nothing to write: zero-length packet", __FUNCTION__);
1902 return PacketResult::Success;
1903 }
1904
1905 // Validate colon.
1906 if ((packet.GetBytesLeft() < 1) || (packet.GetChar() != ':'))
1907 return SendIllFormedResponse(packet, "Comma sep missing in M packet after byte length");
1908
1909 // Allocate the conversion buffer.
1910 std::vector<uint8_t> buf(byte_count, 0);
1911 if (buf.empty())
1912 return SendErrorResponse (0x78);
1913
1914 // Convert the hex memory write contents to bytes.
1915 StreamGDBRemote response;
Chaoren Lin3eb4b452015-04-29 17:24:48 +00001916 const uint64_t convert_count = packet.GetHexBytes(&buf[0], byte_count, 0);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001917 if (convert_count != byte_count)
1918 {
1919 if (log)
1920 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " mem 0x%" PRIx64 ": asked to write %" PRIu64 " bytes, but only found %" PRIu64 " to convert.", __FUNCTION__, m_debugged_process_sp->GetID (), write_addr, byte_count, convert_count);
1921 return SendIllFormedResponse (packet, "M content byte length specified did not match hex-encoded content length");
1922 }
1923
1924 // Write the process memory.
Chaoren Lin3eb4b452015-04-29 17:24:48 +00001925 size_t bytes_written = 0;
Tamas Berghammerdb264a62015-03-31 09:52:22 +00001926 Error error = m_debugged_process_sp->WriteMemory (write_addr, &buf[0], byte_count, bytes_written);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001927 if (error.Fail ())
1928 {
1929 if (log)
1930 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " mem 0x%" PRIx64 ": failed to write. Error: %s", __FUNCTION__, m_debugged_process_sp->GetID (), write_addr, error.AsCString ());
1931 return SendErrorResponse (0x09);
1932 }
1933
1934 if (bytes_written == 0)
1935 {
1936 if (log)
Ilia Kd50ea2f2015-05-15 09:15:27 +00001937 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " mem 0x%" PRIx64 ": wrote 0 of %" PRIu64 " requested bytes", __FUNCTION__, m_debugged_process_sp->GetID (), write_addr, byte_count);
Tamas Berghammere13c2732015-02-11 10:29:30 +00001938 return SendErrorResponse (0x09);
1939 }
1940
1941 return SendOKResponse ();
1942}
1943
1944GDBRemoteCommunication::PacketResult
1945GDBRemoteCommunicationServerLLGS::Handle_qMemoryRegionInfoSupported (StringExtractorGDBRemote &packet)
1946{
1947 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1948
1949 // Currently only the NativeProcessProtocol knows if it can handle a qMemoryRegionInfoSupported
1950 // request, but we're not guaranteed to be attached to a process. For now we'll assume the
1951 // client only asks this when a process is being debugged.
1952
1953 // Ensure we have a process running; otherwise, we can't figure this out
1954 // since we won't have a NativeProcessProtocol.
1955 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1956 {
1957 if (log)
1958 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1959 return SendErrorResponse (0x15);
1960 }
1961
1962 // Test if we can get any region back when asking for the region around NULL.
1963 MemoryRegionInfo region_info;
1964 const Error error = m_debugged_process_sp->GetMemoryRegionInfo (0, region_info);
1965 if (error.Fail ())
1966 {
1967 // We don't support memory region info collection for this NativeProcessProtocol.
1968 return SendUnimplementedResponse ("");
1969 }
1970
1971 return SendOKResponse();
1972}
1973
1974GDBRemoteCommunication::PacketResult
1975GDBRemoteCommunicationServerLLGS::Handle_qMemoryRegionInfo (StringExtractorGDBRemote &packet)
1976{
1977 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
1978
1979 // Ensure we have a process.
1980 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
1981 {
1982 if (log)
1983 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
1984 return SendErrorResponse (0x15);
1985 }
1986
1987 // Parse out the memory address.
1988 packet.SetFilePos (strlen("qMemoryRegionInfo:"));
1989 if (packet.GetBytesLeft() < 1)
1990 return SendIllFormedResponse(packet, "Too short qMemoryRegionInfo: packet");
1991
1992 // Read the address. Punting on validation.
1993 const lldb::addr_t read_addr = packet.GetHexMaxU64(false, 0);
1994
1995 StreamGDBRemote response;
1996
1997 // Get the memory region info for the target address.
1998 MemoryRegionInfo region_info;
1999 const Error error = m_debugged_process_sp->GetMemoryRegionInfo (read_addr, region_info);
2000 if (error.Fail ())
2001 {
2002 // Return the error message.
2003
2004 response.PutCString ("error:");
2005 response.PutCStringAsRawHex8 (error.AsCString ());
2006 response.PutChar (';');
2007 }
2008 else
2009 {
2010 // Range start and size.
2011 response.Printf ("start:%" PRIx64 ";size:%" PRIx64 ";", region_info.GetRange ().GetRangeBase (), region_info.GetRange ().GetByteSize ());
2012
2013 // Permissions.
2014 if (region_info.GetReadable () ||
2015 region_info.GetWritable () ||
2016 region_info.GetExecutable ())
2017 {
2018 // Write permissions info.
2019 response.PutCString ("permissions:");
2020
2021 if (region_info.GetReadable ())
2022 response.PutChar ('r');
2023 if (region_info.GetWritable ())
2024 response.PutChar('w');
2025 if (region_info.GetExecutable())
2026 response.PutChar ('x');
2027
2028 response.PutChar (';');
2029 }
2030 }
2031
2032 return SendPacketNoLock(response.GetData(), response.GetSize());
2033}
2034
2035GDBRemoteCommunication::PacketResult
2036GDBRemoteCommunicationServerLLGS::Handle_Z (StringExtractorGDBRemote &packet)
2037{
2038 // Ensure we have a process.
2039 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
2040 {
2041 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
2042 if (log)
2043 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
2044 return SendErrorResponse (0x15);
2045 }
2046
2047 // Parse out software or hardware breakpoint or watchpoint requested.
2048 packet.SetFilePos (strlen("Z"));
2049 if (packet.GetBytesLeft() < 1)
2050 return SendIllFormedResponse(packet, "Too short Z packet, missing software/hardware specifier");
2051
2052 bool want_breakpoint = true;
2053 bool want_hardware = false;
2054
2055 const GDBStoppointType stoppoint_type =
2056 GDBStoppointType(packet.GetS32 (eStoppointInvalid));
2057 switch (stoppoint_type)
2058 {
2059 case eBreakpointSoftware:
2060 want_hardware = false; want_breakpoint = true; break;
2061 case eBreakpointHardware:
2062 want_hardware = true; want_breakpoint = true; break;
2063 case eWatchpointWrite:
2064 want_hardware = true; want_breakpoint = false; break;
2065 case eWatchpointRead:
2066 want_hardware = true; want_breakpoint = false; break;
2067 case eWatchpointReadWrite:
2068 want_hardware = true; want_breakpoint = false; break;
2069 case eStoppointInvalid:
2070 return SendIllFormedResponse(packet, "Z packet had invalid software/hardware specifier");
2071
2072 }
2073
2074 if ((packet.GetBytesLeft() < 1) || packet.GetChar () != ',')
2075 return SendIllFormedResponse(packet, "Malformed Z packet, expecting comma after stoppoint type");
2076
2077 // Parse out the stoppoint address.
2078 if (packet.GetBytesLeft() < 1)
2079 return SendIllFormedResponse(packet, "Too short Z packet, missing address");
2080 const lldb::addr_t addr = packet.GetHexMaxU64(false, 0);
2081
2082 if ((packet.GetBytesLeft() < 1) || packet.GetChar () != ',')
2083 return SendIllFormedResponse(packet, "Malformed Z packet, expecting comma after address");
2084
2085 // Parse out the stoppoint size (i.e. size hint for opcode size).
2086 const uint32_t size = packet.GetHexMaxU32 (false, std::numeric_limits<uint32_t>::max ());
2087 if (size == std::numeric_limits<uint32_t>::max ())
2088 return SendIllFormedResponse(packet, "Malformed Z packet, failed to parse size argument");
2089
2090 if (want_breakpoint)
2091 {
2092 // Try to set the breakpoint.
2093 const Error error = m_debugged_process_sp->SetBreakpoint (addr, size, want_hardware);
2094 if (error.Success ())
2095 return SendOKResponse ();
2096 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_BREAKPOINTS));
2097 if (log)
2098 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64
2099 " failed to set breakpoint: %s",
2100 __FUNCTION__,
2101 m_debugged_process_sp->GetID (),
2102 error.AsCString ());
2103 return SendErrorResponse (0x09);
2104 }
2105 else
2106 {
2107 uint32_t watch_flags =
2108 stoppoint_type == eWatchpointWrite
Chaoren Line0c6ab52015-02-17 15:41:23 +00002109 ? 0x1 // Write
2110 : 0x3; // ReadWrite
Tamas Berghammere13c2732015-02-11 10:29:30 +00002111
2112 // Try to set the watchpoint.
2113 const Error error = m_debugged_process_sp->SetWatchpoint (
2114 addr, size, watch_flags, want_hardware);
2115 if (error.Success ())
2116 return SendOKResponse ();
2117 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_WATCHPOINTS));
2118 if (log)
2119 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64
2120 " failed to set watchpoint: %s",
2121 __FUNCTION__,
2122 m_debugged_process_sp->GetID (),
2123 error.AsCString ());
2124 return SendErrorResponse (0x09);
2125 }
2126}
2127
2128GDBRemoteCommunication::PacketResult
2129GDBRemoteCommunicationServerLLGS::Handle_z (StringExtractorGDBRemote &packet)
2130{
2131 // Ensure we have a process.
2132 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
2133 {
2134 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
2135 if (log)
2136 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
2137 return SendErrorResponse (0x15);
2138 }
2139
2140 // Parse out software or hardware breakpoint or watchpoint requested.
2141 packet.SetFilePos (strlen("z"));
2142 if (packet.GetBytesLeft() < 1)
2143 return SendIllFormedResponse(packet, "Too short z packet, missing software/hardware specifier");
2144
2145 bool want_breakpoint = true;
2146
2147 const GDBStoppointType stoppoint_type =
2148 GDBStoppointType(packet.GetS32 (eStoppointInvalid));
2149 switch (stoppoint_type)
2150 {
2151 case eBreakpointHardware: want_breakpoint = true; break;
2152 case eBreakpointSoftware: want_breakpoint = true; break;
2153 case eWatchpointWrite: want_breakpoint = false; break;
2154 case eWatchpointRead: want_breakpoint = false; break;
2155 case eWatchpointReadWrite: want_breakpoint = false; break;
2156 default:
2157 return SendIllFormedResponse(packet, "z packet had invalid software/hardware specifier");
2158
2159 }
2160
2161 if ((packet.GetBytesLeft() < 1) || packet.GetChar () != ',')
2162 return SendIllFormedResponse(packet, "Malformed z packet, expecting comma after stoppoint type");
2163
2164 // Parse out the stoppoint address.
2165 if (packet.GetBytesLeft() < 1)
2166 return SendIllFormedResponse(packet, "Too short z packet, missing address");
2167 const lldb::addr_t addr = packet.GetHexMaxU64(false, 0);
2168
2169 if ((packet.GetBytesLeft() < 1) || packet.GetChar () != ',')
2170 return SendIllFormedResponse(packet, "Malformed z packet, expecting comma after address");
2171
2172 /*
2173 // Parse out the stoppoint size (i.e. size hint for opcode size).
2174 const uint32_t size = packet.GetHexMaxU32 (false, std::numeric_limits<uint32_t>::max ());
2175 if (size == std::numeric_limits<uint32_t>::max ())
2176 return SendIllFormedResponse(packet, "Malformed z packet, failed to parse size argument");
2177 */
2178
2179 if (want_breakpoint)
2180 {
2181 // Try to clear the breakpoint.
2182 const Error error = m_debugged_process_sp->RemoveBreakpoint (addr);
2183 if (error.Success ())
2184 return SendOKResponse ();
2185 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_BREAKPOINTS));
2186 if (log)
2187 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64
2188 " failed to remove breakpoint: %s",
2189 __FUNCTION__,
2190 m_debugged_process_sp->GetID (),
2191 error.AsCString ());
2192 return SendErrorResponse (0x09);
2193 }
2194 else
2195 {
2196 // Try to clear the watchpoint.
2197 const Error error = m_debugged_process_sp->RemoveWatchpoint (addr);
2198 if (error.Success ())
2199 return SendOKResponse ();
2200 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_WATCHPOINTS));
2201 if (log)
2202 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64
2203 " failed to remove watchpoint: %s",
2204 __FUNCTION__,
2205 m_debugged_process_sp->GetID (),
2206 error.AsCString ());
2207 return SendErrorResponse (0x09);
2208 }
2209}
2210
2211GDBRemoteCommunication::PacketResult
2212GDBRemoteCommunicationServerLLGS::Handle_s (StringExtractorGDBRemote &packet)
2213{
2214 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS|LIBLLDB_LOG_THREAD));
2215
2216 // Ensure we have a process.
2217 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
2218 {
2219 if (log)
2220 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
2221 return SendErrorResponse (0x32);
2222 }
2223
2224 // We first try to use a continue thread id. If any one or any all set, use the current thread.
2225 // Bail out if we don't have a thread id.
2226 lldb::tid_t tid = GetContinueThreadID ();
2227 if (tid == 0 || tid == LLDB_INVALID_THREAD_ID)
2228 tid = GetCurrentThreadID ();
2229 if (tid == LLDB_INVALID_THREAD_ID)
2230 return SendErrorResponse (0x33);
2231
2232 // Double check that we have such a thread.
2233 // TODO investigate: on MacOSX we might need to do an UpdateThreads () here.
2234 NativeThreadProtocolSP thread_sp = m_debugged_process_sp->GetThreadByID (tid);
2235 if (!thread_sp || thread_sp->GetID () != tid)
2236 return SendErrorResponse (0x33);
2237
2238 // Create the step action for the given thread.
Tamas Berghammerdb264a62015-03-31 09:52:22 +00002239 ResumeAction action = { tid, eStateStepping, 0 };
Tamas Berghammere13c2732015-02-11 10:29:30 +00002240
2241 // Setup the actions list.
Tamas Berghammerdb264a62015-03-31 09:52:22 +00002242 ResumeActionList actions;
Tamas Berghammere13c2732015-02-11 10:29:30 +00002243 actions.Append (action);
2244
2245 // All other threads stop while we're single stepping a thread.
2246 actions.SetDefaultThreadActionIfNeeded(eStateStopped, 0);
2247 Error error = m_debugged_process_sp->Resume (actions);
2248 if (error.Fail ())
2249 {
2250 if (log)
2251 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " tid %" PRIu64 " Resume() failed with error: %s", __FUNCTION__, m_debugged_process_sp->GetID (), tid, error.AsCString ());
2252 return SendErrorResponse(0x49);
2253 }
2254
2255 // No response here - the stop or exit will come from the resulting action.
2256 return PacketResult::Success;
2257}
2258
2259GDBRemoteCommunication::PacketResult
2260GDBRemoteCommunicationServerLLGS::Handle_qXfer_auxv_read (StringExtractorGDBRemote &packet)
2261{
2262 // *BSD impls should be able to do this too.
2263#if defined(__linux__)
2264 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
2265
2266 // Parse out the offset.
2267 packet.SetFilePos (strlen("qXfer:auxv:read::"));
2268 if (packet.GetBytesLeft () < 1)
2269 return SendIllFormedResponse (packet, "qXfer:auxv:read:: packet missing offset");
2270
2271 const uint64_t auxv_offset = packet.GetHexMaxU64 (false, std::numeric_limits<uint64_t>::max ());
2272 if (auxv_offset == std::numeric_limits<uint64_t>::max ())
2273 return SendIllFormedResponse (packet, "qXfer:auxv:read:: packet missing offset");
2274
2275 // Parse out comma.
2276 if (packet.GetBytesLeft () < 1 || packet.GetChar () != ',')
2277 return SendIllFormedResponse (packet, "qXfer:auxv:read:: packet missing comma after offset");
2278
2279 // Parse out the length.
2280 const uint64_t auxv_length = packet.GetHexMaxU64 (false, std::numeric_limits<uint64_t>::max ());
2281 if (auxv_length == std::numeric_limits<uint64_t>::max ())
2282 return SendIllFormedResponse (packet, "qXfer:auxv:read:: packet missing length");
2283
2284 // Grab the auxv data if we need it.
2285 if (!m_active_auxv_buffer_sp)
2286 {
2287 // Make sure we have a valid process.
2288 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
2289 {
2290 if (log)
2291 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
2292 return SendErrorResponse (0x10);
2293 }
2294
2295 // Grab the auxv data.
2296 m_active_auxv_buffer_sp = Host::GetAuxvData (m_debugged_process_sp->GetID ());
2297 if (!m_active_auxv_buffer_sp || m_active_auxv_buffer_sp->GetByteSize () == 0)
2298 {
2299 // Hmm, no auxv data, call that an error.
2300 if (log)
2301 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no auxv data retrieved", __FUNCTION__);
2302 m_active_auxv_buffer_sp.reset ();
2303 return SendErrorResponse (0x11);
2304 }
2305 }
2306
2307 // FIXME find out if/how I lock the stream here.
2308
2309 StreamGDBRemote response;
2310 bool done_with_buffer = false;
2311
2312 if (auxv_offset >= m_active_auxv_buffer_sp->GetByteSize ())
2313 {
2314 // We have nothing left to send. Mark the buffer as complete.
2315 response.PutChar ('l');
2316 done_with_buffer = true;
2317 }
2318 else
2319 {
2320 // Figure out how many bytes are available starting at the given offset.
2321 const uint64_t bytes_remaining = m_active_auxv_buffer_sp->GetByteSize () - auxv_offset;
2322
2323 // Figure out how many bytes we're going to read.
2324 const uint64_t bytes_to_read = (auxv_length > bytes_remaining) ? bytes_remaining : auxv_length;
2325
2326 // Mark the response type according to whether we're reading the remainder of the auxv data.
2327 if (bytes_to_read >= bytes_remaining)
2328 {
2329 // There will be nothing left to read after this
2330 response.PutChar ('l');
2331 done_with_buffer = true;
2332 }
2333 else
2334 {
2335 // There will still be bytes to read after this request.
2336 response.PutChar ('m');
2337 }
2338
2339 // Now write the data in encoded binary form.
2340 response.PutEscapedBytes (m_active_auxv_buffer_sp->GetBytes () + auxv_offset, bytes_to_read);
2341 }
2342
2343 if (done_with_buffer)
2344 m_active_auxv_buffer_sp.reset ();
2345
2346 return SendPacketNoLock(response.GetData(), response.GetSize());
2347#else
2348 return SendUnimplementedResponse ("not implemented on this platform");
2349#endif
2350}
2351
2352GDBRemoteCommunication::PacketResult
2353GDBRemoteCommunicationServerLLGS::Handle_QSaveRegisterState (StringExtractorGDBRemote &packet)
2354{
2355 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
2356
2357 // Move past packet name.
2358 packet.SetFilePos (strlen ("QSaveRegisterState"));
2359
2360 // Get the thread to use.
2361 NativeThreadProtocolSP thread_sp = GetThreadFromSuffix (packet);
2362 if (!thread_sp)
2363 {
2364 if (m_thread_suffix_supported)
2365 return SendIllFormedResponse (packet, "No thread specified in QSaveRegisterState packet");
2366 else
2367 return SendIllFormedResponse (packet, "No thread was is set with the Hg packet");
2368 }
2369
2370 // Grab the register context for the thread.
2371 NativeRegisterContextSP reg_context_sp (thread_sp->GetRegisterContext ());
2372 if (!reg_context_sp)
2373 {
2374 if (log)
2375 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " tid %" PRIu64 " failed, no register context available for the thread", __FUNCTION__, m_debugged_process_sp->GetID (), thread_sp->GetID ());
2376 return SendErrorResponse (0x15);
2377 }
2378
2379 // Save registers to a buffer.
2380 DataBufferSP register_data_sp;
2381 Error error = reg_context_sp->ReadAllRegisterValues (register_data_sp);
2382 if (error.Fail ())
2383 {
2384 if (log)
2385 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " failed to save all register values: %s", __FUNCTION__, m_debugged_process_sp->GetID (), error.AsCString ());
2386 return SendErrorResponse (0x75);
2387 }
2388
2389 // Allocate a new save id.
2390 const uint32_t save_id = GetNextSavedRegistersID ();
2391 assert ((m_saved_registers_map.find (save_id) == m_saved_registers_map.end ()) && "GetNextRegisterSaveID() returned an existing register save id");
2392
2393 // Save the register data buffer under the save id.
2394 {
2395 Mutex::Locker locker (m_saved_registers_mutex);
2396 m_saved_registers_map[save_id] = register_data_sp;
2397 }
2398
2399 // Write the response.
2400 StreamGDBRemote response;
2401 response.Printf ("%" PRIu32, save_id);
2402 return SendPacketNoLock(response.GetData(), response.GetSize());
2403}
2404
2405GDBRemoteCommunication::PacketResult
2406GDBRemoteCommunicationServerLLGS::Handle_QRestoreRegisterState (StringExtractorGDBRemote &packet)
2407{
2408 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
2409
2410 // Parse out save id.
2411 packet.SetFilePos (strlen ("QRestoreRegisterState:"));
2412 if (packet.GetBytesLeft () < 1)
2413 return SendIllFormedResponse (packet, "QRestoreRegisterState packet missing register save id");
2414
2415 const uint32_t save_id = packet.GetU32 (0);
2416 if (save_id == 0)
2417 {
2418 if (log)
2419 log->Printf ("GDBRemoteCommunicationServerLLGS::%s QRestoreRegisterState packet has malformed save id, expecting decimal uint32_t", __FUNCTION__);
2420 return SendErrorResponse (0x76);
2421 }
2422
2423 // Get the thread to use.
2424 NativeThreadProtocolSP thread_sp = GetThreadFromSuffix (packet);
2425 if (!thread_sp)
2426 {
2427 if (m_thread_suffix_supported)
2428 return SendIllFormedResponse (packet, "No thread specified in QRestoreRegisterState packet");
2429 else
2430 return SendIllFormedResponse (packet, "No thread was is set with the Hg packet");
2431 }
2432
2433 // Grab the register context for the thread.
2434 NativeRegisterContextSP reg_context_sp (thread_sp->GetRegisterContext ());
2435 if (!reg_context_sp)
2436 {
2437 if (log)
2438 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " tid %" PRIu64 " failed, no register context available for the thread", __FUNCTION__, m_debugged_process_sp->GetID (), thread_sp->GetID ());
2439 return SendErrorResponse (0x15);
2440 }
2441
2442 // Retrieve register state buffer, then remove from the list.
2443 DataBufferSP register_data_sp;
2444 {
2445 Mutex::Locker locker (m_saved_registers_mutex);
2446
2447 // Find the register set buffer for the given save id.
2448 auto it = m_saved_registers_map.find (save_id);
2449 if (it == m_saved_registers_map.end ())
2450 {
2451 if (log)
2452 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " does not have a register set save buffer for id %" PRIu32, __FUNCTION__, m_debugged_process_sp->GetID (), save_id);
2453 return SendErrorResponse (0x77);
2454 }
2455 register_data_sp = it->second;
2456
2457 // Remove it from the map.
2458 m_saved_registers_map.erase (it);
2459 }
2460
2461 Error error = reg_context_sp->WriteAllRegisterValues (register_data_sp);
2462 if (error.Fail ())
2463 {
2464 if (log)
2465 log->Printf ("GDBRemoteCommunicationServerLLGS::%s pid %" PRIu64 " failed to restore all register values: %s", __FUNCTION__, m_debugged_process_sp->GetID (), error.AsCString ());
2466 return SendErrorResponse (0x77);
2467 }
2468
2469 return SendOKResponse();
2470}
2471
2472GDBRemoteCommunication::PacketResult
2473GDBRemoteCommunicationServerLLGS::Handle_vAttach (StringExtractorGDBRemote &packet)
2474{
2475 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
2476
2477 // Consume the ';' after vAttach.
2478 packet.SetFilePos (strlen ("vAttach"));
2479 if (!packet.GetBytesLeft () || packet.GetChar () != ';')
2480 return SendIllFormedResponse (packet, "vAttach missing expected ';'");
2481
2482 // Grab the PID to which we will attach (assume hex encoding).
2483 lldb::pid_t pid = packet.GetU32 (LLDB_INVALID_PROCESS_ID, 16);
2484 if (pid == LLDB_INVALID_PROCESS_ID)
2485 return SendIllFormedResponse (packet, "vAttach failed to parse the process id");
2486
2487 // Attempt to attach.
2488 if (log)
2489 log->Printf ("GDBRemoteCommunicationServerLLGS::%s attempting to attach to pid %" PRIu64, __FUNCTION__, pid);
2490
2491 Error error = AttachToProcess (pid);
2492
2493 if (error.Fail ())
2494 {
2495 if (log)
2496 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to attach to pid %" PRIu64 ": %s\n", __FUNCTION__, pid, error.AsCString());
2497 return SendErrorResponse (0x01);
2498 }
2499
2500 // Notify we attached by sending a stop packet.
2501 return SendStopReasonForState (m_debugged_process_sp->GetState (), true);
2502}
2503
2504GDBRemoteCommunication::PacketResult
2505GDBRemoteCommunicationServerLLGS::Handle_D (StringExtractorGDBRemote &packet)
2506{
2507 Log *log (GetLogIfAnyCategoriesSet (LIBLLDB_LOG_PROCESS));
2508
2509 // Scope for mutex locker.
2510 Mutex::Locker locker (m_spawned_pids_mutex);
2511
2512 // Fail if we don't have a current process.
2513 if (!m_debugged_process_sp || (m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID))
2514 {
2515 if (log)
2516 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, no process available", __FUNCTION__);
2517 return SendErrorResponse (0x15);
2518 }
2519
2520 if (m_spawned_pids.find(m_debugged_process_sp->GetID ()) == m_spawned_pids.end())
2521 {
2522 if (log)
2523 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to find PID %" PRIu64 " in spawned pids list",
2524 __FUNCTION__, m_debugged_process_sp->GetID ());
2525 return SendErrorResponse (0x1);
2526 }
2527
2528 lldb::pid_t pid = LLDB_INVALID_PROCESS_ID;
2529
2530 // Consume the ';' after D.
2531 packet.SetFilePos (1);
2532 if (packet.GetBytesLeft ())
2533 {
2534 if (packet.GetChar () != ';')
2535 return SendIllFormedResponse (packet, "D missing expected ';'");
2536
2537 // Grab the PID from which we will detach (assume hex encoding).
2538 pid = packet.GetU32 (LLDB_INVALID_PROCESS_ID, 16);
2539 if (pid == LLDB_INVALID_PROCESS_ID)
2540 return SendIllFormedResponse (packet, "D failed to parse the process id");
2541 }
2542
2543 if (pid != LLDB_INVALID_PROCESS_ID &&
2544 m_debugged_process_sp->GetID () != pid)
2545 {
2546 return SendIllFormedResponse (packet, "Invalid pid");
2547 }
2548
2549 if (m_stdio_communication.IsConnected ())
2550 {
2551 m_stdio_communication.StopReadThread ();
2552 }
2553
2554 const Error error = m_debugged_process_sp->Detach ();
2555 if (error.Fail ())
2556 {
2557 if (log)
2558 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed to detach from pid %" PRIu64 ": %s\n",
2559 __FUNCTION__, m_debugged_process_sp->GetID (), error.AsCString ());
2560 return SendErrorResponse (0x01);
2561 }
2562
2563 m_spawned_pids.erase (m_debugged_process_sp->GetID ());
2564 return SendOKResponse ();
2565}
2566
2567GDBRemoteCommunication::PacketResult
2568GDBRemoteCommunicationServerLLGS::Handle_qThreadStopInfo (StringExtractorGDBRemote &packet)
2569{
2570 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
2571
2572 packet.SetFilePos (strlen("qThreadStopInfo"));
2573 const lldb::tid_t tid = packet.GetHexMaxU32 (false, LLDB_INVALID_THREAD_ID);
2574 if (tid == LLDB_INVALID_THREAD_ID)
2575 {
2576 if (log)
2577 log->Printf ("GDBRemoteCommunicationServerLLGS::%s failed, could not parse thread id from request \"%s\"", __FUNCTION__, packet.GetStringRef ().c_str ());
2578 return SendErrorResponse (0x15);
2579 }
2580 return SendStopReplyPacketForThread (tid);
2581}
2582
2583GDBRemoteCommunication::PacketResult
2584GDBRemoteCommunicationServerLLGS::Handle_qWatchpointSupportInfo (StringExtractorGDBRemote &packet)
2585{
2586 // Fail if we don't have a current process.
2587 if (!m_debugged_process_sp ||
2588 m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID)
2589 return SendErrorResponse (68);
2590
2591 packet.SetFilePos(strlen("qWatchpointSupportInfo"));
2592 if (packet.GetBytesLeft() == 0)
2593 return SendOKResponse();
2594 if (packet.GetChar() != ':')
2595 return SendErrorResponse(67);
2596
2597 uint32_t num = m_debugged_process_sp->GetMaxWatchpoints();
2598 StreamGDBRemote response;
2599 response.Printf ("num:%d;", num);
2600 return SendPacketNoLock(response.GetData(), response.GetSize());
2601}
2602
2603void
2604GDBRemoteCommunicationServerLLGS::FlushInferiorOutput ()
2605{
2606 // If we're not monitoring an inferior's terminal, ignore this.
2607 if (!m_stdio_communication.IsConnected())
2608 return;
2609
2610 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS | LIBLLDB_LOG_THREAD));
2611 if (log)
2612 log->Printf ("GDBRemoteCommunicationServerLLGS::%s() called", __FUNCTION__);
2613
2614 // FIXME implement a timeout on the join.
2615 m_stdio_communication.JoinReadThread();
2616}
2617
2618void
2619GDBRemoteCommunicationServerLLGS::MaybeCloseInferiorTerminalConnection ()
2620{
2621 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS));
2622
2623 // Tell the stdio connection to shut down.
2624 if (m_stdio_communication.IsConnected())
2625 {
2626 auto connection = m_stdio_communication.GetConnection();
2627 if (connection)
2628 {
2629 Error error;
2630 connection->Disconnect (&error);
2631
2632 if (error.Success ())
2633 {
2634 if (log)
2635 log->Printf ("GDBRemoteCommunicationServerLLGS::%s disconnect process terminal stdio - SUCCESS", __FUNCTION__);
2636 }
2637 else
2638 {
2639 if (log)
2640 log->Printf ("GDBRemoteCommunicationServerLLGS::%s disconnect process terminal stdio - FAIL: %s", __FUNCTION__, error.AsCString ());
2641 }
2642 }
2643 }
2644}
2645
2646
Tamas Berghammerdb264a62015-03-31 09:52:22 +00002647NativeThreadProtocolSP
Tamas Berghammere13c2732015-02-11 10:29:30 +00002648GDBRemoteCommunicationServerLLGS::GetThreadFromSuffix (StringExtractorGDBRemote &packet)
2649{
2650 NativeThreadProtocolSP thread_sp;
2651
2652 // We have no thread if we don't have a process.
2653 if (!m_debugged_process_sp || m_debugged_process_sp->GetID () == LLDB_INVALID_PROCESS_ID)
2654 return thread_sp;
2655
2656 // If the client hasn't asked for thread suffix support, there will not be a thread suffix.
2657 // Use the current thread in that case.
2658 if (!m_thread_suffix_supported)
2659 {
2660 const lldb::tid_t current_tid = GetCurrentThreadID ();
2661 if (current_tid == LLDB_INVALID_THREAD_ID)
2662 return thread_sp;
2663 else if (current_tid == 0)
2664 {
2665 // Pick a thread.
2666 return m_debugged_process_sp->GetThreadAtIndex (0);
2667 }
2668 else
2669 return m_debugged_process_sp->GetThreadByID (current_tid);
2670 }
2671
2672 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_THREAD));
2673
2674 // Parse out the ';'.
2675 if (packet.GetBytesLeft () < 1 || packet.GetChar () != ';')
2676 {
2677 if (log)
2678 log->Printf ("GDBRemoteCommunicationServerLLGS::%s gdb-remote parse error: expected ';' prior to start of thread suffix: packet contents = '%s'", __FUNCTION__, packet.GetStringRef ().c_str ());
2679 return thread_sp;
2680 }
2681
2682 if (!packet.GetBytesLeft ())
2683 return thread_sp;
2684
2685 // Parse out thread: portion.
2686 if (strncmp (packet.Peek (), "thread:", strlen("thread:")) != 0)
2687 {
2688 if (log)
2689 log->Printf ("GDBRemoteCommunicationServerLLGS::%s gdb-remote parse error: expected 'thread:' but not found, packet contents = '%s'", __FUNCTION__, packet.GetStringRef ().c_str ());
2690 return thread_sp;
2691 }
2692 packet.SetFilePos (packet.GetFilePos () + strlen("thread:"));
2693 const lldb::tid_t tid = packet.GetHexMaxU64(false, 0);
2694 if (tid != 0)
2695 return m_debugged_process_sp->GetThreadByID (tid);
2696
2697 return thread_sp;
2698}
2699
2700lldb::tid_t
2701GDBRemoteCommunicationServerLLGS::GetCurrentThreadID () const
2702{
2703 if (m_current_tid == 0 || m_current_tid == LLDB_INVALID_THREAD_ID)
2704 {
2705 // Use whatever the debug process says is the current thread id
2706 // since the protocol either didn't specify or specified we want
2707 // any/all threads marked as the current thread.
2708 if (!m_debugged_process_sp)
2709 return LLDB_INVALID_THREAD_ID;
2710 return m_debugged_process_sp->GetCurrentThreadID ();
2711 }
2712 // Use the specific current thread id set by the gdb remote protocol.
2713 return m_current_tid;
2714}
2715
2716uint32_t
2717GDBRemoteCommunicationServerLLGS::GetNextSavedRegistersID ()
2718{
2719 Mutex::Locker locker (m_saved_registers_mutex);
2720 return m_next_saved_registers_id++;
2721}
2722
2723void
2724GDBRemoteCommunicationServerLLGS::ClearProcessSpecificData ()
2725{
2726 Log *log (GetLogIfAnyCategoriesSet(LIBLLDB_LOG_PROCESS|GDBR_LOG_PROCESS));
2727 if (log)
2728 log->Printf ("GDBRemoteCommunicationServerLLGS::%s()", __FUNCTION__);
2729
2730 // Clear any auxv cached data.
2731 // *BSD impls should be able to do this too.
2732#if defined(__linux__)
2733 if (log)
2734 log->Printf ("GDBRemoteCommunicationServerLLGS::%s clearing auxv buffer (previously %s)",
2735 __FUNCTION__,
2736 m_active_auxv_buffer_sp ? "was set" : "was not set");
2737 m_active_auxv_buffer_sp.reset ();
2738#endif
2739}
Tamas Berghammer7cb18bf2015-03-24 11:15:23 +00002740
2741FileSpec
2742GDBRemoteCommunicationServerLLGS::FindModuleFile(const std::string& module_path,
2743 const ArchSpec& arch)
2744{
2745 if (m_debugged_process_sp)
2746 {
2747 FileSpec file_spec;
2748 if (m_debugged_process_sp->GetLoadedModuleFileSpec(module_path.c_str(), file_spec).Success())
2749 {
2750 if (file_spec.Exists())
2751 return file_spec;
2752 }
2753 }
2754
2755 return GDBRemoteCommunicationServerCommon::FindModuleFile(module_path, arch);
2756}